(function e(t,n,r){function s(o,u){if(!n[o]){if(!t[o]){var a=typeof require=="function"&&require;if(!u&&a)return a(o,!0);if(i)return i(o,!0);var f=new Error("Cannot find module '"+o+"'");throw f.code="MODULE_NOT_FOUND",f}var l=n[o]={exports:{}};t[o][0].call(l.exports,function(e){var n=t[o][1][e];return s(n?n:e)},l,l.exports,e,t,n,r)}return n[o].exports}var i=typeof require=="function"&&require;for(var o=0;o> 6]; var primitive = (tag & 0x20) === 0; // Multi-octet tag - load if ((tag & 0x1f) === 0x1f) { var oct = tag; tag = 0; while ((oct & 0x80) === 0x80) { oct = buf.readUInt8(fail); if (buf.isError(oct)) return oct; tag <<= 7; tag |= oct & 0x7f; } } else { tag &= 0x1f; } var tagStr = der.tag[tag]; return { cls: cls, primitive: primitive, tag: tag, tagStr: tagStr }; } function derDecodeLen(buf, primitive, fail) { var len = buf.readUInt8(fail); if (buf.isError(len)) return len; // Indefinite form if (!primitive && len === 0x80) return null; // Definite form if ((len & 0x80) === 0) { // Short form return len; } // Long form var num = len & 0x7f; if (num >= 4) return buf.error('length octect is too long'); len = 0; for (var i = 0; i < num; i++) { len <<= 8; var j = buf.readUInt8(fail); if (buf.isError(j)) return j; len |= j; } return len; } },{"../../asn1":2,"inherits":97}],11:[function(require,module,exports){ var decoders = exports; decoders.der = require('./der'); decoders.pem = require('./pem'); },{"./der":10,"./pem":12}],12:[function(require,module,exports){ var inherits = require('inherits'); var Buffer = require('buffer').Buffer; var DERDecoder = require('./der'); function PEMDecoder(entity) { DERDecoder.call(this, entity); this.enc = 'pem'; }; inherits(PEMDecoder, DERDecoder); module.exports = PEMDecoder; PEMDecoder.prototype.decode = function decode(data, options) { var lines = data.toString().split(/[\r\n]+/g); var label = options.label.toUpperCase(); var re = /^-----(BEGIN|END) ([^-]+)-----$/; var start = -1; var end = -1; for (var i = 0; i < lines.length; i++) { var match = lines[i].match(re); if (match === null) continue; if (match[2] !== label) continue; if (start === -1) { if (match[1] !== 'BEGIN') break; start = i; } else { if (match[1] !== 'END') break; end = i; break; } } if (start === -1 || end === -1) throw new Error('PEM section not found for: ' + label); var base64 = lines.slice(start + 1, end).join(''); // Remove excessive symbols base64.replace(/[^a-z0-9\+\/=]+/gi, ''); var input = new Buffer(base64, 'base64'); return DERDecoder.prototype.decode.call(this, input, options); }; },{"./der":10,"buffer":49,"inherits":97}],13:[function(require,module,exports){ var inherits = require('inherits'); var Buffer = require('buffer').Buffer; var asn1 = require('../../asn1'); var base = asn1.base; // Import DER constants var der = asn1.constants.der; function DEREncoder(entity) { this.enc = 'der'; this.name = entity.name; this.entity = entity; // Construct base tree this.tree = new DERNode(); this.tree._init(entity.body); }; module.exports = DEREncoder; DEREncoder.prototype.encode = function encode(data, reporter) { return this.tree._encode(data, reporter).join(); }; // Tree methods function DERNode(parent) { base.Node.call(this, 'der', parent); } inherits(DERNode, base.Node); DERNode.prototype._encodeComposite = function encodeComposite(tag, primitive, cls, content) { var encodedTag = encodeTag(tag, primitive, cls, this.reporter); // Short form if (content.length < 0x80) { var header = new Buffer(2); header[0] = encodedTag; header[1] = content.length; return this._createEncoderBuffer([ header, content ]); } // Long form // Count octets required to store length var lenOctets = 1; for (var i = content.length; i >= 0x100; i >>= 8) lenOctets++; var header = new Buffer(1 + 1 + lenOctets); header[0] = encodedTag; header[1] = 0x80 | lenOctets; for (var i = 1 + lenOctets, j = content.length; j > 0; i--, j >>= 8) header[i] = j & 0xff; return this._createEncoderBuffer([ header, content ]); }; DERNode.prototype._encodeStr = function encodeStr(str, tag) { if (tag === 'bitstr') { return this._createEncoderBuffer([ str.unused | 0, str.data ]); } else if (tag === 'bmpstr') { var buf = new Buffer(str.length * 2); for (var i = 0; i < str.length; i++) { buf.writeUInt16BE(str.charCodeAt(i), i * 2); } return this._createEncoderBuffer(buf); } else if (tag === 'numstr') { if (!this._isNumstr(str)) { return this.reporter.error('Encoding of string type: numstr supports ' + 'only digits and space'); } return this._createEncoderBuffer(str); } else if (tag === 'printstr') { if (!this._isPrintstr(str)) { return this.reporter.error('Encoding of string type: printstr supports ' + 'only latin upper and lower case letters, ' + 'digits, space, apostrophe, left and rigth ' + 'parenthesis, plus sign, comma, hyphen, ' + 'dot, slash, colon, equal sign, ' + 'question mark'); } return this._createEncoderBuffer(str); } else if (/str$/.test(tag)) { return this._createEncoderBuffer(str); } else { return this.reporter.error('Encoding of string type: ' + tag + ' unsupported'); } }; DERNode.prototype._encodeObjid = function encodeObjid(id, values, relative) { if (typeof id === 'string') { if (!values) return this.reporter.error('string objid given, but no values map found'); if (!values.hasOwnProperty(id)) return this.reporter.error('objid not found in values map'); id = values[id].split(/[\s\.]+/g); for (var i = 0; i < id.length; i++) id[i] |= 0; } else if (Array.isArray(id)) { id = id.slice(); for (var i = 0; i < id.length; i++) id[i] |= 0; } if (!Array.isArray(id)) { return this.reporter.error('objid() should be either array or string, ' + 'got: ' + JSON.stringify(id)); } if (!relative) { if (id[1] >= 40) return this.reporter.error('Second objid identifier OOB'); id.splice(0, 2, id[0] * 40 + id[1]); } // Count number of octets var size = 0; for (var i = 0; i < id.length; i++) { var ident = id[i]; for (size++; ident >= 0x80; ident >>= 7) size++; } var objid = new Buffer(size); var offset = objid.length - 1; for (var i = id.length - 1; i >= 0; i--) { var ident = id[i]; objid[offset--] = ident & 0x7f; while ((ident >>= 7) > 0) objid[offset--] = 0x80 | (ident & 0x7f); } return this._createEncoderBuffer(objid); }; function two(num) { if (num < 10) return '0' + num; else return num; } DERNode.prototype._encodeTime = function encodeTime(time, tag) { var str; var date = new Date(time); if (tag === 'gentime') { str = [ two(date.getFullYear()), two(date.getUTCMonth() + 1), two(date.getUTCDate()), two(date.getUTCHours()), two(date.getUTCMinutes()), two(date.getUTCSeconds()), 'Z' ].join(''); } else if (tag === 'utctime') { str = [ two(date.getFullYear() % 100), two(date.getUTCMonth() + 1), two(date.getUTCDate()), two(date.getUTCHours()), two(date.getUTCMinutes()), two(date.getUTCSeconds()), 'Z' ].join(''); } else { this.reporter.error('Encoding ' + tag + ' time is not supported yet'); } return this._encodeStr(str, 'octstr'); }; DERNode.prototype._encodeNull = function encodeNull() { return this._createEncoderBuffer(''); }; DERNode.prototype._encodeInt = function encodeInt(num, values) { if (typeof num === 'string') { if (!values) return this.reporter.error('String int or enum given, but no values map'); if (!values.hasOwnProperty(num)) { return this.reporter.error('Values map doesn\'t contain: ' + JSON.stringify(num)); } num = values[num]; } // Bignum, assume big endian if (typeof num !== 'number' && !Buffer.isBuffer(num)) { var numArray = num.toArray(); if (!num.sign && numArray[0] & 0x80) { numArray.unshift(0); } num = new Buffer(numArray); } if (Buffer.isBuffer(num)) { var size = num.length; if (num.length === 0) size++; var out = new Buffer(size); num.copy(out); if (num.length === 0) out[0] = 0 return this._createEncoderBuffer(out); } if (num < 0x80) return this._createEncoderBuffer(num); if (num < 0x100) return this._createEncoderBuffer([0, num]); var size = 1; for (var i = num; i >= 0x100; i >>= 8) size++; var out = new Array(size); for (var i = out.length - 1; i >= 0; i--) { out[i] = num & 0xff; num >>= 8; } if(out[0] & 0x80) { out.unshift(0); } return this._createEncoderBuffer(new Buffer(out)); }; DERNode.prototype._encodeBool = function encodeBool(value) { return this._createEncoderBuffer(value ? 0xff : 0); }; DERNode.prototype._use = function use(entity, obj) { if (typeof entity === 'function') entity = entity(obj); return entity._getEncoder('der').tree; }; DERNode.prototype._skipDefault = function skipDefault(dataBuffer, reporter, parent) { var state = this._baseState; var i; if (state['default'] === null) return false; var data = dataBuffer.join(); if (state.defaultBuffer === undefined) state.defaultBuffer = this._encodeValue(state['default'], reporter, parent).join(); if (data.length !== state.defaultBuffer.length) return false; for (i=0; i < data.length; i++) if (data[i] !== state.defaultBuffer[i]) return false; return true; }; // Utility methods function encodeTag(tag, primitive, cls, reporter) { var res; if (tag === 'seqof') tag = 'seq'; else if (tag === 'setof') tag = 'set'; if (der.tagByName.hasOwnProperty(tag)) res = der.tagByName[tag]; else if (typeof tag === 'number' && (tag | 0) === tag) res = tag; else return reporter.error('Unknown tag: ' + tag); if (res >= 0x1f) return reporter.error('Multi-octet tag encoding unsupported'); if (!primitive) res |= 0x20; res |= (der.tagClassByName[cls || 'universal'] << 6); return res; } },{"../../asn1":2,"buffer":49,"inherits":97}],14:[function(require,module,exports){ var encoders = exports; encoders.der = require('./der'); encoders.pem = require('./pem'); },{"./der":13,"./pem":15}],15:[function(require,module,exports){ var inherits = require('inherits'); var DEREncoder = require('./der'); function PEMEncoder(entity) { DEREncoder.call(this, entity); this.enc = 'pem'; }; inherits(PEMEncoder, DEREncoder); module.exports = PEMEncoder; PEMEncoder.prototype.encode = function encode(data, options) { var buf = DEREncoder.prototype.encode.call(this, data); var p = buf.toString('base64'); var out = [ '-----BEGIN ' + options.label + '-----' ]; for (var i = 0; i < p.length; i += 64) out.push(p.slice(i, i + 64)); out.push('-----END ' + options.label + '-----'); return out.join('\n'); }; },{"./der":13,"inherits":97}],16:[function(require,module,exports){ // http://wiki.commonjs.org/wiki/Unit_Testing/1.0 // // THIS IS NOT TESTED NOR LIKELY TO WORK OUTSIDE V8! // // Originally from narwhal.js (http://narwhaljs.org) // Copyright (c) 2009 Thomas Robinson <280north.com> // // Permission is hereby granted, free of charge, to any person obtaining a copy // of this software and associated documentation files (the 'Software'), to // deal in the Software without restriction, including without limitation the // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or // sell copies of the Software, and to permit persons to whom the Software is // furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND, EXPRESS OR // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN // ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION // WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. // when used in node, this will actually load the util module we depend on // versus loading the builtin util module as happens otherwise // this is a bug in node module loading as far as I am concerned var util = require('util/'); var pSlice = Array.prototype.slice; var hasOwn = Object.prototype.hasOwnProperty; // 1. The assert module provides functions that throw // AssertionError's when particular conditions are not met. The // assert module must conform to the following interface. var assert = module.exports = ok; // 2. The AssertionError is defined in assert. // new assert.AssertionError({ message: message, // actual: actual, // expected: expected }) assert.AssertionError = function AssertionError(options) { this.name = 'AssertionError'; this.actual = options.actual; this.expected = options.expected; this.operator = options.operator; if (options.message) { this.message = options.message; this.generatedMessage = false; } else { this.message = getMessage(this); this.generatedMessage = true; } var stackStartFunction = options.stackStartFunction || fail; if (Error.captureStackTrace) { Error.captureStackTrace(this, stackStartFunction); } else { // non v8 browsers so we can have a stacktrace var err = new Error(); if (err.stack) { var out = err.stack; // try to strip useless frames var fn_name = stackStartFunction.name; var idx = out.indexOf('\n' + fn_name); if (idx >= 0) { // once we have located the function frame // we need to strip out everything before it (and its line) var next_line = out.indexOf('\n', idx + 1); out = out.substring(next_line + 1); } this.stack = out; } } }; // assert.AssertionError instanceof Error util.inherits(assert.AssertionError, Error); function replacer(key, value) { if (util.isUndefined(value)) { return '' + value; } if (util.isNumber(value) && !isFinite(value)) { return value.toString(); } if (util.isFunction(value) || util.isRegExp(value)) { return value.toString(); } return value; } function truncate(s, n) { if (util.isString(s)) { return s.length < n ? s : s.slice(0, n); } else { return s; } } function getMessage(self) { return truncate(JSON.stringify(self.actual, replacer), 128) + ' ' + self.operator + ' ' + truncate(JSON.stringify(self.expected, replacer), 128); } // At present only the three keys mentioned above are used and // understood by the spec. Implementations or sub modules can pass // other keys to the AssertionError's constructor - they will be // ignored. // 3. All of the following functions must throw an AssertionError // when a corresponding condition is not met, with a message that // may be undefined if not provided. All assertion methods provide // both the actual and expected values to the assertion error for // display purposes. function fail(actual, expected, message, operator, stackStartFunction) { throw new assert.AssertionError({ message: message, actual: actual, expected: expected, operator: operator, stackStartFunction: stackStartFunction }); } // EXTENSION! allows for well behaved errors defined elsewhere. assert.fail = fail; // 4. Pure assertion tests whether a value is truthy, as determined // by !!guard. // assert.ok(guard, message_opt); // This statement is equivalent to assert.equal(true, !!guard, // message_opt);. To test strictly for the value true, use // assert.strictEqual(true, guard, message_opt);. function ok(value, message) { if (!value) fail(value, true, message, '==', assert.ok); } assert.ok = ok; // 5. The equality assertion tests shallow, coercive equality with // ==. // assert.equal(actual, expected, message_opt); assert.equal = function equal(actual, expected, message) { if (actual != expected) fail(actual, expected, message, '==', assert.equal); }; // 6. The non-equality assertion tests for whether two objects are not equal // with != assert.notEqual(actual, expected, message_opt); assert.notEqual = function notEqual(actual, expected, message) { if (actual == expected) { fail(actual, expected, message, '!=', assert.notEqual); } }; // 7. The equivalence assertion tests a deep equality relation. // assert.deepEqual(actual, expected, message_opt); assert.deepEqual = function deepEqual(actual, expected, message) { if (!_deepEqual(actual, expected)) { fail(actual, expected, message, 'deepEqual', assert.deepEqual); } }; function _deepEqual(actual, expected) { // 7.1. All identical values are equivalent, as determined by ===. if (actual === expected) { return true; } else if (util.isBuffer(actual) && util.isBuffer(expected)) { if (actual.length != expected.length) return false; for (var i = 0; i < actual.length; i++) { if (actual[i] !== expected[i]) return false; } return true; // 7.2. If the expected value is a Date object, the actual value is // equivalent if it is also a Date object that refers to the same time. } else if (util.isDate(actual) && util.isDate(expected)) { return actual.getTime() === expected.getTime(); // 7.3 If the expected value is a RegExp object, the actual value is // equivalent if it is also a RegExp object with the same source and // properties (`global`, `multiline`, `lastIndex`, `ignoreCase`). } else if (util.isRegExp(actual) && util.isRegExp(expected)) { return actual.source === expected.source && actual.global === expected.global && actual.multiline === expected.multiline && actual.lastIndex === expected.lastIndex && actual.ignoreCase === expected.ignoreCase; // 7.4. Other pairs that do not both pass typeof value == 'object', // equivalence is determined by ==. } else if (!util.isObject(actual) && !util.isObject(expected)) { return actual == expected; // 7.5 For all other Object pairs, including Array objects, equivalence is // determined by having the same number of owned properties (as verified // with Object.prototype.hasOwnProperty.call), the same set of keys // (although not necessarily the same order), equivalent values for every // corresponding key, and an identical 'prototype' property. Note: this // accounts for both named and indexed properties on Arrays. } else { return objEquiv(actual, expected); } } function isArguments(object) { return Object.prototype.toString.call(object) == '[object Arguments]'; } function objEquiv(a, b) { if (util.isNullOrUndefined(a) || util.isNullOrUndefined(b)) return false; // an identical 'prototype' property. if (a.prototype !== b.prototype) return false; // if one is a primitive, the other must be same if (util.isPrimitive(a) || util.isPrimitive(b)) { return a === b; } var aIsArgs = isArguments(a), bIsArgs = isArguments(b); if ((aIsArgs && !bIsArgs) || (!aIsArgs && bIsArgs)) return false; if (aIsArgs) { a = pSlice.call(a); b = pSlice.call(b); return _deepEqual(a, b); } var ka = objectKeys(a), kb = objectKeys(b), key, i; // having the same number of owned properties (keys incorporates // hasOwnProperty) if (ka.length != kb.length) return false; //the same set of keys (although not necessarily the same order), ka.sort(); kb.sort(); //~~~cheap key test for (i = ka.length - 1; i >= 0; i--) { if (ka[i] != kb[i]) return false; } //equivalent values for every corresponding key, and //~~~possibly expensive deep test for (i = ka.length - 1; i >= 0; i--) { key = ka[i]; if (!_deepEqual(a[key], b[key])) return false; } return true; } // 8. The non-equivalence assertion tests for any deep inequality. // assert.notDeepEqual(actual, expected, message_opt); assert.notDeepEqual = function notDeepEqual(actual, expected, message) { if (_deepEqual(actual, expected)) { fail(actual, expected, message, 'notDeepEqual', assert.notDeepEqual); } }; // 9. The strict equality assertion tests strict equality, as determined by ===. // assert.strictEqual(actual, expected, message_opt); assert.strictEqual = function strictEqual(actual, expected, message) { if (actual !== expected) { fail(actual, expected, message, '===', assert.strictEqual); } }; // 10. The strict non-equality assertion tests for strict inequality, as // determined by !==. assert.notStrictEqual(actual, expected, message_opt); assert.notStrictEqual = function notStrictEqual(actual, expected, message) { if (actual === expected) { fail(actual, expected, message, '!==', assert.notStrictEqual); } }; function expectedException(actual, expected) { if (!actual || !expected) { return false; } if (Object.prototype.toString.call(expected) == '[object RegExp]') { return expected.test(actual); } else if (actual instanceof expected) { return true; } else if (expected.call({}, actual) === true) { return true; } return false; } function _throws(shouldThrow, block, expected, message) { var actual; if (util.isString(expected)) { message = expected; expected = null; } try { block(); } catch (e) { actual = e; } message = (expected && expected.name ? ' (' + expected.name + ').' : '.') + (message ? ' ' + message : '.'); if (shouldThrow && !actual) { fail(actual, expected, 'Missing expected exception' + message); } if (!shouldThrow && expectedException(actual, expected)) { fail(actual, expected, 'Got unwanted exception' + message); } if ((shouldThrow && actual && expected && !expectedException(actual, expected)) || (!shouldThrow && actual)) { throw actual; } } // 11. Expected to throw an error: // assert.throws(block, Error_opt, message_opt); assert.throws = function(block, /*optional*/error, /*optional*/message) { _throws.apply(this, [true].concat(pSlice.call(arguments))); }; // EXTENSION! This is annoying to write outside this module. assert.doesNotThrow = function(block, /*optional*/message) { _throws.apply(this, [false].concat(pSlice.call(arguments))); }; assert.ifError = function(err) { if (err) {throw err;}}; var objectKeys = Object.keys || function (obj) { var keys = []; for (var key in obj) { if (hasOwn.call(obj, key)) keys.push(key); } return keys; }; },{"util/":163}],17:[function(require,module,exports){ 'use strict' exports.toByteArray = toByteArray exports.fromByteArray = fromByteArray var lookup = [] var revLookup = [] var Arr = typeof Uint8Array !== 'undefined' ? Uint8Array : Array function init () { var code = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/' for (var i = 0, len = code.length; i < len; ++i) { lookup[i] = code[i] revLookup[code.charCodeAt(i)] = i } revLookup['-'.charCodeAt(0)] = 62 revLookup['_'.charCodeAt(0)] = 63 } init() function toByteArray (b64) { var i, j, l, tmp, placeHolders, arr var len = b64.length if (len % 4 > 0) { throw new Error('Invalid string. Length must be a multiple of 4') } // the number of equal signs (place holders) // if there are two placeholders, than the two characters before it // represent one byte // if there is only one, then the three characters before it represent 2 bytes // this is just a cheap hack to not do indexOf twice placeHolders = b64[len - 2] === '=' ? 2 : b64[len - 1] === '=' ? 1 : 0 // base64 is 4/3 + up to two characters of the original data arr = new Arr(len * 3 / 4 - placeHolders) // if there are placeholders, only get up to the last complete 4 chars l = placeHolders > 0 ? len - 4 : len var L = 0 for (i = 0, j = 0; i < l; i += 4, j += 3) { tmp = (revLookup[b64.charCodeAt(i)] << 18) | (revLookup[b64.charCodeAt(i + 1)] << 12) | (revLookup[b64.charCodeAt(i + 2)] << 6) | revLookup[b64.charCodeAt(i + 3)] arr[L++] = (tmp >> 16) & 0xFF arr[L++] = (tmp >> 8) & 0xFF arr[L++] = tmp & 0xFF } if (placeHolders === 2) { tmp = (revLookup[b64.charCodeAt(i)] << 2) | (revLookup[b64.charCodeAt(i + 1)] >> 4) arr[L++] = tmp & 0xFF } else if (placeHolders === 1) { tmp = (revLookup[b64.charCodeAt(i)] << 10) | (revLookup[b64.charCodeAt(i + 1)] << 4) | (revLookup[b64.charCodeAt(i + 2)] >> 2) arr[L++] = (tmp >> 8) & 0xFF arr[L++] = tmp & 0xFF } return arr } function tripletToBase64 (num) { return lookup[num >> 18 & 0x3F] + lookup[num >> 12 & 0x3F] + lookup[num >> 6 & 0x3F] + lookup[num & 0x3F] } function encodeChunk (uint8, start, end) { var tmp var output = [] for (var i = start; i < end; i += 3) { tmp = (uint8[i] << 16) + (uint8[i + 1] << 8) + (uint8[i + 2]) output.push(tripletToBase64(tmp)) } return output.join('') } function fromByteArray (uint8) { var tmp var len = uint8.length var extraBytes = len % 3 // if we have 1 byte left, pad 2 bytes var output = '' var parts = [] var maxChunkLength = 16383 // must be multiple of 3 // go through the array every three bytes, we'll deal with trailing stuff later for (var i = 0, len2 = len - extraBytes; i < len2; i += maxChunkLength) { parts.push(encodeChunk(uint8, i, (i + maxChunkLength) > len2 ? len2 : (i + maxChunkLength))) } // pad the end with zeros, but make sure to not forget the extra bytes if (extraBytes === 1) { tmp = uint8[len - 1] output += lookup[tmp >> 2] output += lookup[(tmp << 4) & 0x3F] output += '==' } else if (extraBytes === 2) { tmp = (uint8[len - 2] << 8) + (uint8[len - 1]) output += lookup[tmp >> 10] output += lookup[(tmp >> 4) & 0x3F] output += lookup[(tmp << 2) & 0x3F] output += '=' } parts.push(output) return parts.join('') } },{}],18:[function(require,module,exports){ (function (module, exports) { 'use strict'; // Utils function assert (val, msg) { if (!val) throw new Error(msg || 'Assertion failed'); } // Could use `inherits` module, but don't want to move from single file // architecture yet. function inherits (ctor, superCtor) { ctor.super_ = superCtor; var TempCtor = function () {}; TempCtor.prototype = superCtor.prototype; ctor.prototype = new TempCtor(); ctor.prototype.constructor = ctor; } // BN function BN (number, base, endian) { if (BN.isBN(number)) { return number; } this.negative = 0; this.words = null; this.length = 0; // Reduction context this.red = null; if (number !== null) { if (base === 'le' || base === 'be') { endian = base; base = 10; } this._init(number || 0, base || 10, endian || 'be'); } } if (typeof module === 'object') { module.exports = BN; } else { exports.BN = BN; } BN.BN = BN; BN.wordSize = 26; var Buffer; try { Buffer = require('buf' + 'fer').Buffer; } catch (e) { } BN.isBN = function isBN (num) { if (num instanceof BN) { return true; } return num !== null && typeof num === 'object' && num.constructor.wordSize === BN.wordSize && Array.isArray(num.words); }; BN.max = function max (left, right) { if (left.cmp(right) > 0) return left; return right; }; BN.min = function min (left, right) { if (left.cmp(right) < 0) return left; return right; }; BN.prototype._init = function init (number, base, endian) { if (typeof number === 'number') { return this._initNumber(number, base, endian); } if (typeof number === 'object') { return this._initArray(number, base, endian); } if (base === 'hex') { base = 16; } assert(base === (base | 0) && base >= 2 && base <= 36); number = number.toString().replace(/\s+/g, ''); var start = 0; if (number[0] === '-') { start++; } if (base === 16) { this._parseHex(number, start); } else { this._parseBase(number, base, start); } if (number[0] === '-') { this.negative = 1; } this.strip(); if (endian !== 'le') return; this._initArray(this.toArray(), base, endian); }; BN.prototype._initNumber = function _initNumber (number, base, endian) { if (number < 0) { this.negative = 1; number = -number; } if (number < 0x4000000) { this.words = [ number & 0x3ffffff ]; this.length = 1; } else if (number < 0x10000000000000) { this.words = [ number & 0x3ffffff, (number / 0x4000000) & 0x3ffffff ]; this.length = 2; } else { assert(number < 0x20000000000000); // 2 ^ 53 (unsafe) this.words = [ number & 0x3ffffff, (number / 0x4000000) & 0x3ffffff, 1 ]; this.length = 3; } if (endian !== 'le') return; // Reverse the bytes this._initArray(this.toArray(), base, endian); }; BN.prototype._initArray = function _initArray (number, base, endian) { // Perhaps a Uint8Array assert(typeof number.length === 'number'); if (number.length <= 0) { this.words = [ 0 ]; this.length = 1; return this; } this.length = Math.ceil(number.length / 3); this.words = new Array(this.length); for (var i = 0; i < this.length; i++) { this.words[i] = 0; } var j, w; var off = 0; if (endian === 'be') { for (i = number.length - 1, j = 0; i >= 0; i -= 3) { w = number[i] | (number[i - 1] << 8) | (number[i - 2] << 16); this.words[j] |= (w << off) & 0x3ffffff; this.words[j + 1] = (w >>> (26 - off)) & 0x3ffffff; off += 24; if (off >= 26) { off -= 26; j++; } } } else if (endian === 'le') { for (i = 0, j = 0; i < number.length; i += 3) { w = number[i] | (number[i + 1] << 8) | (number[i + 2] << 16); this.words[j] |= (w << off) & 0x3ffffff; this.words[j + 1] = (w >>> (26 - off)) & 0x3ffffff; off += 24; if (off >= 26) { off -= 26; j++; } } } return this.strip(); }; function parseHex (str, start, end) { var r = 0; var len = Math.min(str.length, end); for (var i = start; i < len; i++) { var c = str.charCodeAt(i) - 48; r <<= 4; // 'a' - 'f' if (c >= 49 && c <= 54) { r |= c - 49 + 0xa; // 'A' - 'F' } else if (c >= 17 && c <= 22) { r |= c - 17 + 0xa; // '0' - '9' } else { r |= c & 0xf; } } return r; } BN.prototype._parseHex = function _parseHex (number, start) { // Create possibly bigger array to ensure that it fits the number this.length = Math.ceil((number.length - start) / 6); this.words = new Array(this.length); for (var i = 0; i < this.length; i++) { this.words[i] = 0; } var j, w; // Scan 24-bit chunks and add them to the number var off = 0; for (i = number.length - 6, j = 0; i >= start; i -= 6) { w = parseHex(number, i, i + 6); this.words[j] |= (w << off) & 0x3ffffff; // NOTE: `0x3fffff` is intentional here, 26bits max shift + 24bit hex limb this.words[j + 1] |= w >>> (26 - off) & 0x3fffff; off += 24; if (off >= 26) { off -= 26; j++; } } if (i + 6 !== start) { w = parseHex(number, start, i + 6); this.words[j] |= (w << off) & 0x3ffffff; this.words[j + 1] |= w >>> (26 - off) & 0x3fffff; } this.strip(); }; function parseBase (str, start, end, mul) { var r = 0; var len = Math.min(str.length, end); for (var i = start; i < len; i++) { var c = str.charCodeAt(i) - 48; r *= mul; // 'a' if (c >= 49) { r += c - 49 + 0xa; // 'A' } else if (c >= 17) { r += c - 17 + 0xa; // '0' - '9' } else { r += c; } } return r; } BN.prototype._parseBase = function _parseBase (number, base, start) { // Initialize as zero this.words = [ 0 ]; this.length = 1; // Find length of limb in base for (var limbLen = 0, limbPow = 1; limbPow <= 0x3ffffff; limbPow *= base) { limbLen++; } limbLen--; limbPow = (limbPow / base) | 0; var total = number.length - start; var mod = total % limbLen; var end = Math.min(total, total - mod) + start; var word = 0; for (var i = start; i < end; i += limbLen) { word = parseBase(number, i, i + limbLen, base); this.imuln(limbPow); if (this.words[0] + word < 0x4000000) { this.words[0] += word; } else { this._iaddn(word); } } if (mod !== 0) { var pow = 1; word = parseBase(number, i, number.length, base); for (i = 0; i < mod; i++) { pow *= base; } this.imuln(pow); if (this.words[0] + word < 0x4000000) { this.words[0] += word; } else { this._iaddn(word); } } }; BN.prototype.copy = function copy (dest) { dest.words = new Array(this.length); for (var i = 0; i < this.length; i++) { dest.words[i] = this.words[i]; } dest.length = this.length; dest.negative = this.negative; dest.red = this.red; }; BN.prototype.clone = function clone () { var r = new BN(null); this.copy(r); return r; }; BN.prototype._expand = function _expand (size) { while (this.length < size) { this.words[this.length++] = 0; } return this; }; // Remove leading `0` from `this` BN.prototype.strip = function strip () { while (this.length > 1 && this.words[this.length - 1] === 0) { this.length--; } return this._normSign(); }; BN.prototype._normSign = function _normSign () { // -0 = 0 if (this.length === 1 && this.words[0] === 0) { this.negative = 0; } return this; }; BN.prototype.inspect = function inspect () { return (this.red ? ''; }; /* var zeros = []; var groupSizes = []; var groupBases = []; var s = ''; var i = -1; while (++i < BN.wordSize) { zeros[i] = s; s += '0'; } groupSizes[0] = 0; groupSizes[1] = 0; groupBases[0] = 0; groupBases[1] = 0; var base = 2 - 1; while (++base < 36 + 1) { var groupSize = 0; var groupBase = 1; while (groupBase < (1 << BN.wordSize) / base) { groupBase *= base; groupSize += 1; } groupSizes[base] = groupSize; groupBases[base] = groupBase; } */ var zeros = [ '', '0', '00', '000', '0000', '00000', '000000', '0000000', '00000000', '000000000', '0000000000', '00000000000', '000000000000', '0000000000000', '00000000000000', '000000000000000', '0000000000000000', '00000000000000000', '000000000000000000', '0000000000000000000', '00000000000000000000', '000000000000000000000', '0000000000000000000000', '00000000000000000000000', '000000000000000000000000', '0000000000000000000000000' ]; var groupSizes = [ 0, 0, 25, 16, 12, 11, 10, 9, 8, 8, 7, 7, 7, 7, 6, 6, 6, 6, 6, 6, 6, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5 ]; var groupBases = [ 0, 0, 33554432, 43046721, 16777216, 48828125, 60466176, 40353607, 16777216, 43046721, 10000000, 19487171, 35831808, 62748517, 7529536, 11390625, 16777216, 24137569, 34012224, 47045881, 64000000, 4084101, 5153632, 6436343, 7962624, 9765625, 11881376, 14348907, 17210368, 20511149, 24300000, 28629151, 33554432, 39135393, 45435424, 52521875, 60466176 ]; BN.prototype.toString = function toString (base, padding) { base = base || 10; padding = padding | 0 || 1; var out; if (base === 16 || base === 'hex') { out = ''; var off = 0; var carry = 0; for (var i = 0; i < this.length; i++) { var w = this.words[i]; var word = (((w << off) | carry) & 0xffffff).toString(16); carry = (w >>> (24 - off)) & 0xffffff; if (carry !== 0 || i !== this.length - 1) { out = zeros[6 - word.length] + word + out; } else { out = word + out; } off += 2; if (off >= 26) { off -= 26; i--; } } if (carry !== 0) { out = carry.toString(16) + out; } while (out.length % padding !== 0) { out = '0' + out; } if (this.negative !== 0) { out = '-' + out; } return out; } if (base === (base | 0) && base >= 2 && base <= 36) { // var groupSize = Math.floor(BN.wordSize * Math.LN2 / Math.log(base)); var groupSize = groupSizes[base]; // var groupBase = Math.pow(base, groupSize); var groupBase = groupBases[base]; out = ''; var c = this.clone(); c.negative = 0; while (!c.isZero()) { var r = c.modn(groupBase).toString(base); c = c.idivn(groupBase); if (!c.isZero()) { out = zeros[groupSize - r.length] + r + out; } else { out = r + out; } } if (this.isZero()) { out = '0' + out; } while (out.length % padding !== 0) { out = '0' + out; } if (this.negative !== 0) { out = '-' + out; } return out; } assert(false, 'Base should be between 2 and 36'); }; BN.prototype.toNumber = function toNumber () { var ret = this.words[0]; if (this.length === 2) { ret += this.words[1] * 0x4000000; } else if (this.length === 3 && this.words[2] === 0x01) { // NOTE: at this stage it is known that the top bit is set ret += 0x10000000000000 + (this.words[1] * 0x4000000); } else if (this.length > 2) { assert(false, 'Number can only safely store up to 53 bits'); } return (this.negative !== 0) ? -ret : ret; }; BN.prototype.toJSON = function toJSON () { return this.toString(16); }; BN.prototype.toBuffer = function toBuffer (endian, length) { assert(typeof Buffer !== 'undefined'); return this.toArrayLike(Buffer, endian, length); }; BN.prototype.toArray = function toArray (endian, length) { return this.toArrayLike(Array, endian, length); }; BN.prototype.toArrayLike = function toArrayLike (ArrayType, endian, length) { var byteLength = this.byteLength(); var reqLength = length || Math.max(1, byteLength); assert(byteLength <= reqLength, 'byte array longer than desired length'); assert(reqLength > 0, 'Requested array length <= 0'); this.strip(); var littleEndian = endian === 'le'; var res = new ArrayType(reqLength); var b, i; var q = this.clone(); if (!littleEndian) { // Assume big-endian for (i = 0; i < reqLength - byteLength; i++) { res[i] = 0; } for (i = 0; !q.isZero(); i++) { b = q.andln(0xff); q.iushrn(8); res[reqLength - i - 1] = b; } } else { for (i = 0; !q.isZero(); i++) { b = q.andln(0xff); q.iushrn(8); res[i] = b; } for (; i < reqLength; i++) { res[i] = 0; } } return res; }; if (Math.clz32) { BN.prototype._countBits = function _countBits (w) { return 32 - Math.clz32(w); }; } else { BN.prototype._countBits = function _countBits (w) { var t = w; var r = 0; if (t >= 0x1000) { r += 13; t >>>= 13; } if (t >= 0x40) { r += 7; t >>>= 7; } if (t >= 0x8) { r += 4; t >>>= 4; } if (t >= 0x02) { r += 2; t >>>= 2; } return r + t; }; } BN.prototype._zeroBits = function _zeroBits (w) { // Short-cut if (w === 0) return 26; var t = w; var r = 0; if ((t & 0x1fff) === 0) { r += 13; t >>>= 13; } if ((t & 0x7f) === 0) { r += 7; t >>>= 7; } if ((t & 0xf) === 0) { r += 4; t >>>= 4; } if ((t & 0x3) === 0) { r += 2; t >>>= 2; } if ((t & 0x1) === 0) { r++; } return r; }; // Return number of used bits in a BN BN.prototype.bitLength = function bitLength () { var w = this.words[this.length - 1]; var hi = this._countBits(w); return (this.length - 1) * 26 + hi; }; function toBitArray (num) { var w = new Array(num.bitLength()); for (var bit = 0; bit < w.length; bit++) { var off = (bit / 26) | 0; var wbit = bit % 26; w[bit] = (num.words[off] & (1 << wbit)) >>> wbit; } return w; } // Number of trailing zero bits BN.prototype.zeroBits = function zeroBits () { if (this.isZero()) return 0; var r = 0; for (var i = 0; i < this.length; i++) { var b = this._zeroBits(this.words[i]); r += b; if (b !== 26) break; } return r; }; BN.prototype.byteLength = function byteLength () { return Math.ceil(this.bitLength() / 8); }; BN.prototype.toTwos = function toTwos (width) { if (this.negative !== 0) { return this.abs().inotn(width).iaddn(1); } return this.clone(); }; BN.prototype.fromTwos = function fromTwos (width) { if (this.testn(width - 1)) { return this.notn(width).iaddn(1).ineg(); } return this.clone(); }; BN.prototype.isNeg = function isNeg () { return this.negative !== 0; }; // Return negative clone of `this` BN.prototype.neg = function neg () { return this.clone().ineg(); }; BN.prototype.ineg = function ineg () { if (!this.isZero()) { this.negative ^= 1; } return this; }; // Or `num` with `this` in-place BN.prototype.iuor = function iuor (num) { while (this.length < num.length) { this.words[this.length++] = 0; } for (var i = 0; i < num.length; i++) { this.words[i] = this.words[i] | num.words[i]; } return this.strip(); }; BN.prototype.ior = function ior (num) { assert((this.negative | num.negative) === 0); return this.iuor(num); }; // Or `num` with `this` BN.prototype.or = function or (num) { if (this.length > num.length) return this.clone().ior(num); return num.clone().ior(this); }; BN.prototype.uor = function uor (num) { if (this.length > num.length) return this.clone().iuor(num); return num.clone().iuor(this); }; // And `num` with `this` in-place BN.prototype.iuand = function iuand (num) { // b = min-length(num, this) var b; if (this.length > num.length) { b = num; } else { b = this; } for (var i = 0; i < b.length; i++) { this.words[i] = this.words[i] & num.words[i]; } this.length = b.length; return this.strip(); }; BN.prototype.iand = function iand (num) { assert((this.negative | num.negative) === 0); return this.iuand(num); }; // And `num` with `this` BN.prototype.and = function and (num) { if (this.length > num.length) return this.clone().iand(num); return num.clone().iand(this); }; BN.prototype.uand = function uand (num) { if (this.length > num.length) return this.clone().iuand(num); return num.clone().iuand(this); }; // Xor `num` with `this` in-place BN.prototype.iuxor = function iuxor (num) { // a.length > b.length var a; var b; if (this.length > num.length) { a = this; b = num; } else { a = num; b = this; } for (var i = 0; i < b.length; i++) { this.words[i] = a.words[i] ^ b.words[i]; } if (this !== a) { for (; i < a.length; i++) { this.words[i] = a.words[i]; } } this.length = a.length; return this.strip(); }; BN.prototype.ixor = function ixor (num) { assert((this.negative | num.negative) === 0); return this.iuxor(num); }; // Xor `num` with `this` BN.prototype.xor = function xor (num) { if (this.length > num.length) return this.clone().ixor(num); return num.clone().ixor(this); }; BN.prototype.uxor = function uxor (num) { if (this.length > num.length) return this.clone().iuxor(num); return num.clone().iuxor(this); }; // Not ``this`` with ``width`` bitwidth BN.prototype.inotn = function inotn (width) { assert(typeof width === 'number' && width >= 0); var bytesNeeded = Math.ceil(width / 26) | 0; var bitsLeft = width % 26; // Extend the buffer with leading zeroes this._expand(bytesNeeded); if (bitsLeft > 0) { bytesNeeded--; } // Handle complete words for (var i = 0; i < bytesNeeded; i++) { this.words[i] = ~this.words[i] & 0x3ffffff; } // Handle the residue if (bitsLeft > 0) { this.words[i] = ~this.words[i] & (0x3ffffff >> (26 - bitsLeft)); } // And remove leading zeroes return this.strip(); }; BN.prototype.notn = function notn (width) { return this.clone().inotn(width); }; // Set `bit` of `this` BN.prototype.setn = function setn (bit, val) { assert(typeof bit === 'number' && bit >= 0); var off = (bit / 26) | 0; var wbit = bit % 26; this._expand(off + 1); if (val) { this.words[off] = this.words[off] | (1 << wbit); } else { this.words[off] = this.words[off] & ~(1 << wbit); } return this.strip(); }; // Add `num` to `this` in-place BN.prototype.iadd = function iadd (num) { var r; // negative + positive if (this.negative !== 0 && num.negative === 0) { this.negative = 0; r = this.isub(num); this.negative ^= 1; return this._normSign(); // positive + negative } else if (this.negative === 0 && num.negative !== 0) { num.negative = 0; r = this.isub(num); num.negative = 1; return r._normSign(); } // a.length > b.length var a, b; if (this.length > num.length) { a = this; b = num; } else { a = num; b = this; } var carry = 0; for (var i = 0; i < b.length; i++) { r = (a.words[i] | 0) + (b.words[i] | 0) + carry; this.words[i] = r & 0x3ffffff; carry = r >>> 26; } for (; carry !== 0 && i < a.length; i++) { r = (a.words[i] | 0) + carry; this.words[i] = r & 0x3ffffff; carry = r >>> 26; } this.length = a.length; if (carry !== 0) { this.words[this.length] = carry; this.length++; // Copy the rest of the words } else if (a !== this) { for (; i < a.length; i++) { this.words[i] = a.words[i]; } } return this; }; // Add `num` to `this` BN.prototype.add = function add (num) { var res; if (num.negative !== 0 && this.negative === 0) { num.negative = 0; res = this.sub(num); num.negative ^= 1; return res; } else if (num.negative === 0 && this.negative !== 0) { this.negative = 0; res = num.sub(this); this.negative = 1; return res; } if (this.length > num.length) return this.clone().iadd(num); return num.clone().iadd(this); }; // Subtract `num` from `this` in-place BN.prototype.isub = function isub (num) { // this - (-num) = this + num if (num.negative !== 0) { num.negative = 0; var r = this.iadd(num); num.negative = 1; return r._normSign(); // -this - num = -(this + num) } else if (this.negative !== 0) { this.negative = 0; this.iadd(num); this.negative = 1; return this._normSign(); } // At this point both numbers are positive var cmp = this.cmp(num); // Optimization - zeroify if (cmp === 0) { this.negative = 0; this.length = 1; this.words[0] = 0; return this; } // a > b var a, b; if (cmp > 0) { a = this; b = num; } else { a = num; b = this; } var carry = 0; for (var i = 0; i < b.length; i++) { r = (a.words[i] | 0) - (b.words[i] | 0) + carry; carry = r >> 26; this.words[i] = r & 0x3ffffff; } for (; carry !== 0 && i < a.length; i++) { r = (a.words[i] | 0) + carry; carry = r >> 26; this.words[i] = r & 0x3ffffff; } // Copy rest of the words if (carry === 0 && i < a.length && a !== this) { for (; i < a.length; i++) { this.words[i] = a.words[i]; } } this.length = Math.max(this.length, i); if (a !== this) { this.negative = 1; } return this.strip(); }; // Subtract `num` from `this` BN.prototype.sub = function sub (num) { return this.clone().isub(num); }; function smallMulTo (self, num, out) { out.negative = num.negative ^ self.negative; var len = (self.length + num.length) | 0; out.length = len; len = (len - 1) | 0; // Peel one iteration (compiler can't do it, because of code complexity) var a = self.words[0] | 0; var b = num.words[0] | 0; var r = a * b; var lo = r & 0x3ffffff; var carry = (r / 0x4000000) | 0; out.words[0] = lo; for (var k = 1; k < len; k++) { // Sum all words with the same `i + j = k` and accumulate `ncarry`, // note that ncarry could be >= 0x3ffffff var ncarry = carry >>> 26; var rword = carry & 0x3ffffff; var maxJ = Math.min(k, num.length - 1); for (var j = Math.max(0, k - self.length + 1); j <= maxJ; j++) { var i = (k - j) | 0; a = self.words[i] | 0; b = num.words[j] | 0; r = a * b + rword; ncarry += (r / 0x4000000) | 0; rword = r & 0x3ffffff; } out.words[k] = rword | 0; carry = ncarry | 0; } if (carry !== 0) { out.words[k] = carry | 0; } else { out.length--; } return out.strip(); } // TODO(indutny): it may be reasonable to omit it for users who don't need // to work with 256-bit numbers, otherwise it gives 20% improvement for 256-bit // multiplication (like elliptic secp256k1). var comb10MulTo = function comb10MulTo (self, num, out) { var a = self.words; var b = num.words; var o = out.words; var c = 0; var lo; var mid; var hi; var a0 = a[0] | 0; var al0 = a0 & 0x1fff; var ah0 = a0 >>> 13; var a1 = a[1] | 0; var al1 = a1 & 0x1fff; var ah1 = a1 >>> 13; var a2 = a[2] | 0; var al2 = a2 & 0x1fff; var ah2 = a2 >>> 13; var a3 = a[3] | 0; var al3 = a3 & 0x1fff; var ah3 = a3 >>> 13; var a4 = a[4] | 0; var al4 = a4 & 0x1fff; var ah4 = a4 >>> 13; var a5 = a[5] | 0; var al5 = a5 & 0x1fff; var ah5 = a5 >>> 13; var a6 = a[6] | 0; var al6 = a6 & 0x1fff; var ah6 = a6 >>> 13; var a7 = a[7] | 0; var al7 = a7 & 0x1fff; var ah7 = a7 >>> 13; var a8 = a[8] | 0; var al8 = a8 & 0x1fff; var ah8 = a8 >>> 13; var a9 = a[9] | 0; var al9 = a9 & 0x1fff; var ah9 = a9 >>> 13; var b0 = b[0] | 0; var bl0 = b0 & 0x1fff; var bh0 = b0 >>> 13; var b1 = b[1] | 0; var bl1 = b1 & 0x1fff; var bh1 = b1 >>> 13; var b2 = b[2] | 0; var bl2 = b2 & 0x1fff; var bh2 = b2 >>> 13; var b3 = b[3] | 0; var bl3 = b3 & 0x1fff; var bh3 = b3 >>> 13; var b4 = b[4] | 0; var bl4 = b4 & 0x1fff; var bh4 = b4 >>> 13; var b5 = b[5] | 0; var bl5 = b5 & 0x1fff; var bh5 = b5 >>> 13; var b6 = b[6] | 0; var bl6 = b6 & 0x1fff; var bh6 = b6 >>> 13; var b7 = b[7] | 0; var bl7 = b7 & 0x1fff; var bh7 = b7 >>> 13; var b8 = b[8] | 0; var bl8 = b8 & 0x1fff; var bh8 = b8 >>> 13; var b9 = b[9] | 0; var bl9 = b9 & 0x1fff; var bh9 = b9 >>> 13; out.negative = self.negative ^ num.negative; out.length = 19; /* k = 0 */ lo = Math.imul(al0, bl0); mid = Math.imul(al0, bh0); mid = (mid + Math.imul(ah0, bl0)) | 0; hi = Math.imul(ah0, bh0); var w0 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w0 >>> 26)) | 0; w0 &= 0x3ffffff; /* k = 1 */ lo = Math.imul(al1, bl0); mid = Math.imul(al1, bh0); mid = (mid + Math.imul(ah1, bl0)) | 0; hi = Math.imul(ah1, bh0); lo = (lo + Math.imul(al0, bl1)) | 0; mid = (mid + Math.imul(al0, bh1)) | 0; mid = (mid + Math.imul(ah0, bl1)) | 0; hi = (hi + Math.imul(ah0, bh1)) | 0; var w1 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w1 >>> 26)) | 0; w1 &= 0x3ffffff; /* k = 2 */ lo = Math.imul(al2, bl0); mid = Math.imul(al2, bh0); mid = (mid + Math.imul(ah2, bl0)) | 0; hi = Math.imul(ah2, bh0); lo = (lo + Math.imul(al1, bl1)) | 0; mid = (mid + Math.imul(al1, bh1)) | 0; mid = (mid + Math.imul(ah1, bl1)) | 0; hi = (hi + Math.imul(ah1, bh1)) | 0; lo = (lo + Math.imul(al0, bl2)) | 0; mid = (mid + Math.imul(al0, bh2)) | 0; mid = (mid + Math.imul(ah0, bl2)) | 0; hi = (hi + Math.imul(ah0, bh2)) | 0; var w2 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w2 >>> 26)) | 0; w2 &= 0x3ffffff; /* k = 3 */ lo = Math.imul(al3, bl0); mid = Math.imul(al3, bh0); mid = (mid + Math.imul(ah3, bl0)) | 0; hi = Math.imul(ah3, bh0); lo = (lo + Math.imul(al2, bl1)) | 0; mid = (mid + Math.imul(al2, bh1)) | 0; mid = (mid + Math.imul(ah2, bl1)) | 0; hi = (hi + Math.imul(ah2, bh1)) | 0; lo = (lo + Math.imul(al1, bl2)) | 0; mid = (mid + Math.imul(al1, bh2)) | 0; mid = (mid + Math.imul(ah1, bl2)) | 0; hi = (hi + Math.imul(ah1, bh2)) | 0; lo = (lo + Math.imul(al0, bl3)) | 0; mid = (mid + Math.imul(al0, bh3)) | 0; mid = (mid + Math.imul(ah0, bl3)) | 0; hi = (hi + Math.imul(ah0, bh3)) | 0; var w3 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w3 >>> 26)) | 0; w3 &= 0x3ffffff; /* k = 4 */ lo = Math.imul(al4, bl0); mid = Math.imul(al4, bh0); mid = (mid + Math.imul(ah4, bl0)) | 0; hi = Math.imul(ah4, bh0); lo = (lo + Math.imul(al3, bl1)) | 0; mid = (mid + Math.imul(al3, bh1)) | 0; mid = (mid + Math.imul(ah3, bl1)) | 0; hi = (hi + Math.imul(ah3, bh1)) | 0; lo = (lo + Math.imul(al2, bl2)) | 0; mid = (mid + Math.imul(al2, bh2)) | 0; mid = (mid + Math.imul(ah2, bl2)) | 0; hi = (hi + Math.imul(ah2, bh2)) | 0; lo = (lo + Math.imul(al1, bl3)) | 0; mid = (mid + Math.imul(al1, bh3)) | 0; mid = (mid + Math.imul(ah1, bl3)) | 0; hi = (hi + Math.imul(ah1, bh3)) | 0; lo = (lo + Math.imul(al0, bl4)) | 0; mid = (mid + Math.imul(al0, bh4)) | 0; mid = (mid + Math.imul(ah0, bl4)) | 0; hi = (hi + Math.imul(ah0, bh4)) | 0; var w4 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w4 >>> 26)) | 0; w4 &= 0x3ffffff; /* k = 5 */ lo = Math.imul(al5, bl0); mid = Math.imul(al5, bh0); mid = (mid + Math.imul(ah5, bl0)) | 0; hi = Math.imul(ah5, bh0); lo = (lo + Math.imul(al4, bl1)) | 0; mid = (mid + Math.imul(al4, bh1)) | 0; mid = (mid + Math.imul(ah4, bl1)) | 0; hi = (hi + Math.imul(ah4, bh1)) | 0; lo = (lo + Math.imul(al3, bl2)) | 0; mid = (mid + Math.imul(al3, bh2)) | 0; mid = (mid + Math.imul(ah3, bl2)) | 0; hi = (hi + Math.imul(ah3, bh2)) | 0; lo = (lo + Math.imul(al2, bl3)) | 0; mid = (mid + Math.imul(al2, bh3)) | 0; mid = (mid + Math.imul(ah2, bl3)) | 0; hi = (hi + Math.imul(ah2, bh3)) | 0; lo = (lo + Math.imul(al1, bl4)) | 0; mid = (mid + Math.imul(al1, bh4)) | 0; mid = (mid + Math.imul(ah1, bl4)) | 0; hi = (hi + Math.imul(ah1, bh4)) | 0; lo = (lo + Math.imul(al0, bl5)) | 0; mid = (mid + Math.imul(al0, bh5)) | 0; mid = (mid + Math.imul(ah0, bl5)) | 0; hi = (hi + Math.imul(ah0, bh5)) | 0; var w5 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w5 >>> 26)) | 0; w5 &= 0x3ffffff; /* k = 6 */ lo = Math.imul(al6, bl0); mid = Math.imul(al6, bh0); mid = (mid + Math.imul(ah6, bl0)) | 0; hi = Math.imul(ah6, bh0); lo = (lo + Math.imul(al5, bl1)) | 0; mid = (mid + Math.imul(al5, bh1)) | 0; mid = (mid + Math.imul(ah5, bl1)) | 0; hi = (hi + Math.imul(ah5, bh1)) | 0; lo = (lo + Math.imul(al4, bl2)) | 0; mid = (mid + Math.imul(al4, bh2)) | 0; mid = (mid + Math.imul(ah4, bl2)) | 0; hi = (hi + Math.imul(ah4, bh2)) | 0; lo = (lo + Math.imul(al3, bl3)) | 0; mid = (mid + Math.imul(al3, bh3)) | 0; mid = (mid + Math.imul(ah3, bl3)) | 0; hi = (hi + Math.imul(ah3, bh3)) | 0; lo = (lo + Math.imul(al2, bl4)) | 0; mid = (mid + Math.imul(al2, bh4)) | 0; mid = (mid + Math.imul(ah2, bl4)) | 0; hi = (hi + Math.imul(ah2, bh4)) | 0; lo = (lo + Math.imul(al1, bl5)) | 0; mid = (mid + Math.imul(al1, bh5)) | 0; mid = (mid + Math.imul(ah1, bl5)) | 0; hi = (hi + Math.imul(ah1, bh5)) | 0; lo = (lo + Math.imul(al0, bl6)) | 0; mid = (mid + Math.imul(al0, bh6)) | 0; mid = (mid + Math.imul(ah0, bl6)) | 0; hi = (hi + Math.imul(ah0, bh6)) | 0; var w6 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w6 >>> 26)) | 0; w6 &= 0x3ffffff; /* k = 7 */ lo = Math.imul(al7, bl0); mid = Math.imul(al7, bh0); mid = (mid + Math.imul(ah7, bl0)) | 0; hi = Math.imul(ah7, bh0); lo = (lo + Math.imul(al6, bl1)) | 0; mid = (mid + Math.imul(al6, bh1)) | 0; mid = (mid + Math.imul(ah6, bl1)) | 0; hi = (hi + Math.imul(ah6, bh1)) | 0; lo = (lo + Math.imul(al5, bl2)) | 0; mid = (mid + Math.imul(al5, bh2)) | 0; mid = (mid + Math.imul(ah5, bl2)) | 0; hi = (hi + Math.imul(ah5, bh2)) | 0; lo = (lo + Math.imul(al4, bl3)) | 0; mid = (mid + Math.imul(al4, bh3)) | 0; mid = (mid + Math.imul(ah4, bl3)) | 0; hi = (hi + Math.imul(ah4, bh3)) | 0; lo = (lo + Math.imul(al3, bl4)) | 0; mid = (mid + Math.imul(al3, bh4)) | 0; mid = (mid + Math.imul(ah3, bl4)) | 0; hi = (hi + Math.imul(ah3, bh4)) | 0; lo = (lo + Math.imul(al2, bl5)) | 0; mid = (mid + Math.imul(al2, bh5)) | 0; mid = (mid + Math.imul(ah2, bl5)) | 0; hi = (hi + Math.imul(ah2, bh5)) | 0; lo = (lo + Math.imul(al1, bl6)) | 0; mid = (mid + Math.imul(al1, bh6)) | 0; mid = (mid + Math.imul(ah1, bl6)) | 0; hi = (hi + Math.imul(ah1, bh6)) | 0; lo = (lo + Math.imul(al0, bl7)) | 0; mid = (mid + Math.imul(al0, bh7)) | 0; mid = (mid + Math.imul(ah0, bl7)) | 0; hi = (hi + Math.imul(ah0, bh7)) | 0; var w7 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w7 >>> 26)) | 0; w7 &= 0x3ffffff; /* k = 8 */ lo = Math.imul(al8, bl0); mid = Math.imul(al8, bh0); mid = (mid + Math.imul(ah8, bl0)) | 0; hi = Math.imul(ah8, bh0); lo = (lo + Math.imul(al7, bl1)) | 0; mid = (mid + Math.imul(al7, bh1)) | 0; mid = (mid + Math.imul(ah7, bl1)) | 0; hi = (hi + Math.imul(ah7, bh1)) | 0; lo = (lo + Math.imul(al6, bl2)) | 0; mid = (mid + Math.imul(al6, bh2)) | 0; mid = (mid + Math.imul(ah6, bl2)) | 0; hi = (hi + Math.imul(ah6, bh2)) | 0; lo = (lo + Math.imul(al5, bl3)) | 0; mid = (mid + Math.imul(al5, bh3)) | 0; mid = (mid + Math.imul(ah5, bl3)) | 0; hi = (hi + Math.imul(ah5, bh3)) | 0; lo = (lo + Math.imul(al4, bl4)) | 0; mid = (mid + Math.imul(al4, bh4)) | 0; mid = (mid + Math.imul(ah4, bl4)) | 0; hi = (hi + Math.imul(ah4, bh4)) | 0; lo = (lo + Math.imul(al3, bl5)) | 0; mid = (mid + Math.imul(al3, bh5)) | 0; mid = (mid + Math.imul(ah3, bl5)) | 0; hi = (hi + Math.imul(ah3, bh5)) | 0; lo = (lo + Math.imul(al2, bl6)) | 0; mid = (mid + Math.imul(al2, bh6)) | 0; mid = (mid + Math.imul(ah2, bl6)) | 0; hi = (hi + Math.imul(ah2, bh6)) | 0; lo = (lo + Math.imul(al1, bl7)) | 0; mid = (mid + Math.imul(al1, bh7)) | 0; mid = (mid + Math.imul(ah1, bl7)) | 0; hi = (hi + Math.imul(ah1, bh7)) | 0; lo = (lo + Math.imul(al0, bl8)) | 0; mid = (mid + Math.imul(al0, bh8)) | 0; mid = (mid + Math.imul(ah0, bl8)) | 0; hi = (hi + Math.imul(ah0, bh8)) | 0; var w8 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w8 >>> 26)) | 0; w8 &= 0x3ffffff; /* k = 9 */ lo = Math.imul(al9, bl0); mid = Math.imul(al9, bh0); mid = (mid + Math.imul(ah9, bl0)) | 0; hi = Math.imul(ah9, bh0); lo = (lo + Math.imul(al8, bl1)) | 0; mid = (mid + Math.imul(al8, bh1)) | 0; mid = (mid + Math.imul(ah8, bl1)) | 0; hi = (hi + Math.imul(ah8, bh1)) | 0; lo = (lo + Math.imul(al7, bl2)) | 0; mid = (mid + Math.imul(al7, bh2)) | 0; mid = (mid + Math.imul(ah7, bl2)) | 0; hi = (hi + Math.imul(ah7, bh2)) | 0; lo = (lo + Math.imul(al6, bl3)) | 0; mid = (mid + Math.imul(al6, bh3)) | 0; mid = (mid + Math.imul(ah6, bl3)) | 0; hi = (hi + Math.imul(ah6, bh3)) | 0; lo = (lo + Math.imul(al5, bl4)) | 0; mid = (mid + Math.imul(al5, bh4)) | 0; mid = (mid + Math.imul(ah5, bl4)) | 0; hi = (hi + Math.imul(ah5, bh4)) | 0; lo = (lo + Math.imul(al4, bl5)) | 0; mid = (mid + Math.imul(al4, bh5)) | 0; mid = (mid + Math.imul(ah4, bl5)) | 0; hi = (hi + Math.imul(ah4, bh5)) | 0; lo = (lo + Math.imul(al3, bl6)) | 0; mid = (mid + Math.imul(al3, bh6)) | 0; mid = (mid + Math.imul(ah3, bl6)) | 0; hi = (hi + Math.imul(ah3, bh6)) | 0; lo = (lo + Math.imul(al2, bl7)) | 0; mid = (mid + Math.imul(al2, bh7)) | 0; mid = (mid + Math.imul(ah2, bl7)) | 0; hi = (hi + Math.imul(ah2, bh7)) | 0; lo = (lo + Math.imul(al1, bl8)) | 0; mid = (mid + Math.imul(al1, bh8)) | 0; mid = (mid + Math.imul(ah1, bl8)) | 0; hi = (hi + Math.imul(ah1, bh8)) | 0; lo = (lo + Math.imul(al0, bl9)) | 0; mid = (mid + Math.imul(al0, bh9)) | 0; mid = (mid + Math.imul(ah0, bl9)) | 0; hi = (hi + Math.imul(ah0, bh9)) | 0; var w9 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w9 >>> 26)) | 0; w9 &= 0x3ffffff; /* k = 10 */ lo = Math.imul(al9, bl1); mid = Math.imul(al9, bh1); mid = (mid + Math.imul(ah9, bl1)) | 0; hi = Math.imul(ah9, bh1); lo = (lo + Math.imul(al8, bl2)) | 0; mid = (mid + Math.imul(al8, bh2)) | 0; mid = (mid + Math.imul(ah8, bl2)) | 0; hi = (hi + Math.imul(ah8, bh2)) | 0; lo = (lo + Math.imul(al7, bl3)) | 0; mid = (mid + Math.imul(al7, bh3)) | 0; mid = (mid + Math.imul(ah7, bl3)) | 0; hi = (hi + Math.imul(ah7, bh3)) | 0; lo = (lo + Math.imul(al6, bl4)) | 0; mid = (mid + Math.imul(al6, bh4)) | 0; mid = (mid + Math.imul(ah6, bl4)) | 0; hi = (hi + Math.imul(ah6, bh4)) | 0; lo = (lo + Math.imul(al5, bl5)) | 0; mid = (mid + Math.imul(al5, bh5)) | 0; mid = (mid + Math.imul(ah5, bl5)) | 0; hi = (hi + Math.imul(ah5, bh5)) | 0; lo = (lo + Math.imul(al4, bl6)) | 0; mid = (mid + Math.imul(al4, bh6)) | 0; mid = (mid + Math.imul(ah4, bl6)) | 0; hi = (hi + Math.imul(ah4, bh6)) | 0; lo = (lo + Math.imul(al3, bl7)) | 0; mid = (mid + Math.imul(al3, bh7)) | 0; mid = (mid + Math.imul(ah3, bl7)) | 0; hi = (hi + Math.imul(ah3, bh7)) | 0; lo = (lo + Math.imul(al2, bl8)) | 0; mid = (mid + Math.imul(al2, bh8)) | 0; mid = (mid + Math.imul(ah2, bl8)) | 0; hi = (hi + Math.imul(ah2, bh8)) | 0; lo = (lo + Math.imul(al1, bl9)) | 0; mid = (mid + Math.imul(al1, bh9)) | 0; mid = (mid + Math.imul(ah1, bl9)) | 0; hi = (hi + Math.imul(ah1, bh9)) | 0; var w10 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w10 >>> 26)) | 0; w10 &= 0x3ffffff; /* k = 11 */ lo = Math.imul(al9, bl2); mid = Math.imul(al9, bh2); mid = (mid + Math.imul(ah9, bl2)) | 0; hi = Math.imul(ah9, bh2); lo = (lo + Math.imul(al8, bl3)) | 0; mid = (mid + Math.imul(al8, bh3)) | 0; mid = (mid + Math.imul(ah8, bl3)) | 0; hi = (hi + Math.imul(ah8, bh3)) | 0; lo = (lo + Math.imul(al7, bl4)) | 0; mid = (mid + Math.imul(al7, bh4)) | 0; mid = (mid + Math.imul(ah7, bl4)) | 0; hi = (hi + Math.imul(ah7, bh4)) | 0; lo = (lo + Math.imul(al6, bl5)) | 0; mid = (mid + Math.imul(al6, bh5)) | 0; mid = (mid + Math.imul(ah6, bl5)) | 0; hi = (hi + Math.imul(ah6, bh5)) | 0; lo = (lo + Math.imul(al5, bl6)) | 0; mid = (mid + Math.imul(al5, bh6)) | 0; mid = (mid + Math.imul(ah5, bl6)) | 0; hi = (hi + Math.imul(ah5, bh6)) | 0; lo = (lo + Math.imul(al4, bl7)) | 0; mid = (mid + Math.imul(al4, bh7)) | 0; mid = (mid + Math.imul(ah4, bl7)) | 0; hi = (hi + Math.imul(ah4, bh7)) | 0; lo = (lo + Math.imul(al3, bl8)) | 0; mid = (mid + Math.imul(al3, bh8)) | 0; mid = (mid + Math.imul(ah3, bl8)) | 0; hi = (hi + Math.imul(ah3, bh8)) | 0; lo = (lo + Math.imul(al2, bl9)) | 0; mid = (mid + Math.imul(al2, bh9)) | 0; mid = (mid + Math.imul(ah2, bl9)) | 0; hi = (hi + Math.imul(ah2, bh9)) | 0; var w11 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w11 >>> 26)) | 0; w11 &= 0x3ffffff; /* k = 12 */ lo = Math.imul(al9, bl3); mid = Math.imul(al9, bh3); mid = (mid + Math.imul(ah9, bl3)) | 0; hi = Math.imul(ah9, bh3); lo = (lo + Math.imul(al8, bl4)) | 0; mid = (mid + Math.imul(al8, bh4)) | 0; mid = (mid + Math.imul(ah8, bl4)) | 0; hi = (hi + Math.imul(ah8, bh4)) | 0; lo = (lo + Math.imul(al7, bl5)) | 0; mid = (mid + Math.imul(al7, bh5)) | 0; mid = (mid + Math.imul(ah7, bl5)) | 0; hi = (hi + Math.imul(ah7, bh5)) | 0; lo = (lo + Math.imul(al6, bl6)) | 0; mid = (mid + Math.imul(al6, bh6)) | 0; mid = (mid + Math.imul(ah6, bl6)) | 0; hi = (hi + Math.imul(ah6, bh6)) | 0; lo = (lo + Math.imul(al5, bl7)) | 0; mid = (mid + Math.imul(al5, bh7)) | 0; mid = (mid + Math.imul(ah5, bl7)) | 0; hi = (hi + Math.imul(ah5, bh7)) | 0; lo = (lo + Math.imul(al4, bl8)) | 0; mid = (mid + Math.imul(al4, bh8)) | 0; mid = (mid + Math.imul(ah4, bl8)) | 0; hi = (hi + Math.imul(ah4, bh8)) | 0; lo = (lo + Math.imul(al3, bl9)) | 0; mid = (mid + Math.imul(al3, bh9)) | 0; mid = (mid + Math.imul(ah3, bl9)) | 0; hi = (hi + Math.imul(ah3, bh9)) | 0; var w12 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w12 >>> 26)) | 0; w12 &= 0x3ffffff; /* k = 13 */ lo = Math.imul(al9, bl4); mid = Math.imul(al9, bh4); mid = (mid + Math.imul(ah9, bl4)) | 0; hi = Math.imul(ah9, bh4); lo = (lo + Math.imul(al8, bl5)) | 0; mid = (mid + Math.imul(al8, bh5)) | 0; mid = (mid + Math.imul(ah8, bl5)) | 0; hi = (hi + Math.imul(ah8, bh5)) | 0; lo = (lo + Math.imul(al7, bl6)) | 0; mid = (mid + Math.imul(al7, bh6)) | 0; mid = (mid + Math.imul(ah7, bl6)) | 0; hi = (hi + Math.imul(ah7, bh6)) | 0; lo = (lo + Math.imul(al6, bl7)) | 0; mid = (mid + Math.imul(al6, bh7)) | 0; mid = (mid + Math.imul(ah6, bl7)) | 0; hi = (hi + Math.imul(ah6, bh7)) | 0; lo = (lo + Math.imul(al5, bl8)) | 0; mid = (mid + Math.imul(al5, bh8)) | 0; mid = (mid + Math.imul(ah5, bl8)) | 0; hi = (hi + Math.imul(ah5, bh8)) | 0; lo = (lo + Math.imul(al4, bl9)) | 0; mid = (mid + Math.imul(al4, bh9)) | 0; mid = (mid + Math.imul(ah4, bl9)) | 0; hi = (hi + Math.imul(ah4, bh9)) | 0; var w13 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w13 >>> 26)) | 0; w13 &= 0x3ffffff; /* k = 14 */ lo = Math.imul(al9, bl5); mid = Math.imul(al9, bh5); mid = (mid + Math.imul(ah9, bl5)) | 0; hi = Math.imul(ah9, bh5); lo = (lo + Math.imul(al8, bl6)) | 0; mid = (mid + Math.imul(al8, bh6)) | 0; mid = (mid + Math.imul(ah8, bl6)) | 0; hi = (hi + Math.imul(ah8, bh6)) | 0; lo = (lo + Math.imul(al7, bl7)) | 0; mid = (mid + Math.imul(al7, bh7)) | 0; mid = (mid + Math.imul(ah7, bl7)) | 0; hi = (hi + Math.imul(ah7, bh7)) | 0; lo = (lo + Math.imul(al6, bl8)) | 0; mid = (mid + Math.imul(al6, bh8)) | 0; mid = (mid + Math.imul(ah6, bl8)) | 0; hi = (hi + Math.imul(ah6, bh8)) | 0; lo = (lo + Math.imul(al5, bl9)) | 0; mid = (mid + Math.imul(al5, bh9)) | 0; mid = (mid + Math.imul(ah5, bl9)) | 0; hi = (hi + Math.imul(ah5, bh9)) | 0; var w14 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w14 >>> 26)) | 0; w14 &= 0x3ffffff; /* k = 15 */ lo = Math.imul(al9, bl6); mid = Math.imul(al9, bh6); mid = (mid + Math.imul(ah9, bl6)) | 0; hi = Math.imul(ah9, bh6); lo = (lo + Math.imul(al8, bl7)) | 0; mid = (mid + Math.imul(al8, bh7)) | 0; mid = (mid + Math.imul(ah8, bl7)) | 0; hi = (hi + Math.imul(ah8, bh7)) | 0; lo = (lo + Math.imul(al7, bl8)) | 0; mid = (mid + Math.imul(al7, bh8)) | 0; mid = (mid + Math.imul(ah7, bl8)) | 0; hi = (hi + Math.imul(ah7, bh8)) | 0; lo = (lo + Math.imul(al6, bl9)) | 0; mid = (mid + Math.imul(al6, bh9)) | 0; mid = (mid + Math.imul(ah6, bl9)) | 0; hi = (hi + Math.imul(ah6, bh9)) | 0; var w15 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w15 >>> 26)) | 0; w15 &= 0x3ffffff; /* k = 16 */ lo = Math.imul(al9, bl7); mid = Math.imul(al9, bh7); mid = (mid + Math.imul(ah9, bl7)) | 0; hi = Math.imul(ah9, bh7); lo = (lo + Math.imul(al8, bl8)) | 0; mid = (mid + Math.imul(al8, bh8)) | 0; mid = (mid + Math.imul(ah8, bl8)) | 0; hi = (hi + Math.imul(ah8, bh8)) | 0; lo = (lo + Math.imul(al7, bl9)) | 0; mid = (mid + Math.imul(al7, bh9)) | 0; mid = (mid + Math.imul(ah7, bl9)) | 0; hi = (hi + Math.imul(ah7, bh9)) | 0; var w16 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w16 >>> 26)) | 0; w16 &= 0x3ffffff; /* k = 17 */ lo = Math.imul(al9, bl8); mid = Math.imul(al9, bh8); mid = (mid + Math.imul(ah9, bl8)) | 0; hi = Math.imul(ah9, bh8); lo = (lo + Math.imul(al8, bl9)) | 0; mid = (mid + Math.imul(al8, bh9)) | 0; mid = (mid + Math.imul(ah8, bl9)) | 0; hi = (hi + Math.imul(ah8, bh9)) | 0; var w17 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w17 >>> 26)) | 0; w17 &= 0x3ffffff; /* k = 18 */ lo = Math.imul(al9, bl9); mid = Math.imul(al9, bh9); mid = (mid + Math.imul(ah9, bl9)) | 0; hi = Math.imul(ah9, bh9); var w18 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0; c = (((hi + (mid >>> 13)) | 0) + (w18 >>> 26)) | 0; w18 &= 0x3ffffff; o[0] = w0; o[1] = w1; o[2] = w2; o[3] = w3; o[4] = w4; o[5] = w5; o[6] = w6; o[7] = w7; o[8] = w8; o[9] = w9; o[10] = w10; o[11] = w11; o[12] = w12; o[13] = w13; o[14] = w14; o[15] = w15; o[16] = w16; o[17] = w17; o[18] = w18; if (c !== 0) { o[19] = c; out.length++; } return out; }; // Polyfill comb if (!Math.imul) { comb10MulTo = smallMulTo; } function bigMulTo (self, num, out) { out.negative = num.negative ^ self.negative; out.length = self.length + num.length; var carry = 0; var hncarry = 0; for (var k = 0; k < out.length - 1; k++) { // Sum all words with the same `i + j = k` and accumulate `ncarry`, // note that ncarry could be >= 0x3ffffff var ncarry = hncarry; hncarry = 0; var rword = carry & 0x3ffffff; var maxJ = Math.min(k, num.length - 1); for (var j = Math.max(0, k - self.length + 1); j <= maxJ; j++) { var i = k - j; var a = self.words[i] | 0; var b = num.words[j] | 0; var r = a * b; var lo = r & 0x3ffffff; ncarry = (ncarry + ((r / 0x4000000) | 0)) | 0; lo = (lo + rword) | 0; rword = lo & 0x3ffffff; ncarry = (ncarry + (lo >>> 26)) | 0; hncarry += ncarry >>> 26; ncarry &= 0x3ffffff; } out.words[k] = rword; carry = ncarry; ncarry = hncarry; } if (carry !== 0) { out.words[k] = carry; } else { out.length--; } return out.strip(); } function jumboMulTo (self, num, out) { var fftm = new FFTM(); return fftm.mulp(self, num, out); } BN.prototype.mulTo = function mulTo (num, out) { var res; var len = this.length + num.length; if (this.length === 10 && num.length === 10) { res = comb10MulTo(this, num, out); } else if (len < 63) { res = smallMulTo(this, num, out); } else if (len < 1024) { res = bigMulTo(this, num, out); } else { res = jumboMulTo(this, num, out); } return res; }; // Cooley-Tukey algorithm for FFT // slightly revisited to rely on looping instead of recursion function FFTM (x, y) { this.x = x; this.y = y; } FFTM.prototype.makeRBT = function makeRBT (N) { var t = new Array(N); var l = BN.prototype._countBits(N) - 1; for (var i = 0; i < N; i++) { t[i] = this.revBin(i, l, N); } return t; }; // Returns binary-reversed representation of `x` FFTM.prototype.revBin = function revBin (x, l, N) { if (x === 0 || x === N - 1) return x; var rb = 0; for (var i = 0; i < l; i++) { rb |= (x & 1) << (l - i - 1); x >>= 1; } return rb; }; // Performs "tweedling" phase, therefore 'emulating' // behaviour of the recursive algorithm FFTM.prototype.permute = function permute (rbt, rws, iws, rtws, itws, N) { for (var i = 0; i < N; i++) { rtws[i] = rws[rbt[i]]; itws[i] = iws[rbt[i]]; } }; FFTM.prototype.transform = function transform (rws, iws, rtws, itws, N, rbt) { this.permute(rbt, rws, iws, rtws, itws, N); for (var s = 1; s < N; s <<= 1) { var l = s << 1; var rtwdf = Math.cos(2 * Math.PI / l); var itwdf = Math.sin(2 * Math.PI / l); for (var p = 0; p < N; p += l) { var rtwdf_ = rtwdf; var itwdf_ = itwdf; for (var j = 0; j < s; j++) { var re = rtws[p + j]; var ie = itws[p + j]; var ro = rtws[p + j + s]; var io = itws[p + j + s]; var rx = rtwdf_ * ro - itwdf_ * io; io = rtwdf_ * io + itwdf_ * ro; ro = rx; rtws[p + j] = re + ro; itws[p + j] = ie + io; rtws[p + j + s] = re - ro; itws[p + j + s] = ie - io; /* jshint maxdepth : false */ if (j !== l) { rx = rtwdf * rtwdf_ - itwdf * itwdf_; itwdf_ = rtwdf * itwdf_ + itwdf * rtwdf_; rtwdf_ = rx; } } } } }; FFTM.prototype.guessLen13b = function guessLen13b (n, m) { var N = Math.max(m, n) | 1; var odd = N & 1; var i = 0; for (N = N / 2 | 0; N; N = N >>> 1) { i++; } return 1 << i + 1 + odd; }; FFTM.prototype.conjugate = function conjugate (rws, iws, N) { if (N <= 1) return; for (var i = 0; i < N / 2; i++) { var t = rws[i]; rws[i] = rws[N - i - 1]; rws[N - i - 1] = t; t = iws[i]; iws[i] = -iws[N - i - 1]; iws[N - i - 1] = -t; } }; FFTM.prototype.normalize13b = function normalize13b (ws, N) { var carry = 0; for (var i = 0; i < N / 2; i++) { var w = Math.round(ws[2 * i + 1] / N) * 0x2000 + Math.round(ws[2 * i] / N) + carry; ws[i] = w & 0x3ffffff; if (w < 0x4000000) { carry = 0; } else { carry = w / 0x4000000 | 0; } } return ws; }; FFTM.prototype.convert13b = function convert13b (ws, len, rws, N) { var carry = 0; for (var i = 0; i < len; i++) { carry = carry + (ws[i] | 0); rws[2 * i] = carry & 0x1fff; carry = carry >>> 13; rws[2 * i + 1] = carry & 0x1fff; carry = carry >>> 13; } // Pad with zeroes for (i = 2 * len; i < N; ++i) { rws[i] = 0; } assert(carry === 0); assert((carry & ~0x1fff) === 0); }; FFTM.prototype.stub = function stub (N) { var ph = new Array(N); for (var i = 0; i < N; i++) { ph[i] = 0; } return ph; }; FFTM.prototype.mulp = function mulp (x, y, out) { var N = 2 * this.guessLen13b(x.length, y.length); var rbt = this.makeRBT(N); var _ = this.stub(N); var rws = new Array(N); var rwst = new Array(N); var iwst = new Array(N); var nrws = new Array(N); var nrwst = new Array(N); var niwst = new Array(N); var rmws = out.words; rmws.length = N; this.convert13b(x.words, x.length, rws, N); this.convert13b(y.words, y.length, nrws, N); this.transform(rws, _, rwst, iwst, N, rbt); this.transform(nrws, _, nrwst, niwst, N, rbt); for (var i = 0; i < N; i++) { var rx = rwst[i] * nrwst[i] - iwst[i] * niwst[i]; iwst[i] = rwst[i] * niwst[i] + iwst[i] * nrwst[i]; rwst[i] = rx; } this.conjugate(rwst, iwst, N); this.transform(rwst, iwst, rmws, _, N, rbt); this.conjugate(rmws, _, N); this.normalize13b(rmws, N); out.negative = x.negative ^ y.negative; out.length = x.length + y.length; return out.strip(); }; // Multiply `this` by `num` BN.prototype.mul = function mul (num) { var out = new BN(null); out.words = new Array(this.length + num.length); return this.mulTo(num, out); }; // Multiply employing FFT BN.prototype.mulf = function mulf (num) { var out = new BN(null); out.words = new Array(this.length + num.length); return jumboMulTo(this, num, out); }; // In-place Multiplication BN.prototype.imul = function imul (num) { return this.clone().mulTo(num, this); }; BN.prototype.imuln = function imuln (num) { assert(typeof num === 'number'); assert(num < 0x4000000); // Carry var carry = 0; for (var i = 0; i < this.length; i++) { var w = (this.words[i] | 0) * num; var lo = (w & 0x3ffffff) + (carry & 0x3ffffff); carry >>= 26; carry += (w / 0x4000000) | 0; // NOTE: lo is 27bit maximum carry += lo >>> 26; this.words[i] = lo & 0x3ffffff; } if (carry !== 0) { this.words[i] = carry; this.length++; } return this; }; BN.prototype.muln = function muln (num) { return this.clone().imuln(num); }; // `this` * `this` BN.prototype.sqr = function sqr () { return this.mul(this); }; // `this` * `this` in-place BN.prototype.isqr = function isqr () { return this.imul(this.clone()); }; // Math.pow(`this`, `num`) BN.prototype.pow = function pow (num) { var w = toBitArray(num); if (w.length === 0) return new BN(1); // Skip leading zeroes var res = this; for (var i = 0; i < w.length; i++, res = res.sqr()) { if (w[i] !== 0) break; } if (++i < w.length) { for (var q = res.sqr(); i < w.length; i++, q = q.sqr()) { if (w[i] === 0) continue; res = res.mul(q); } } return res; }; // Shift-left in-place BN.prototype.iushln = function iushln (bits) { assert(typeof bits === 'number' && bits >= 0); var r = bits % 26; var s = (bits - r) / 26; var carryMask = (0x3ffffff >>> (26 - r)) << (26 - r); var i; if (r !== 0) { var carry = 0; for (i = 0; i < this.length; i++) { var newCarry = this.words[i] & carryMask; var c = ((this.words[i] | 0) - newCarry) << r; this.words[i] = c | carry; carry = newCarry >>> (26 - r); } if (carry) { this.words[i] = carry; this.length++; } } if (s !== 0) { for (i = this.length - 1; i >= 0; i--) { this.words[i + s] = this.words[i]; } for (i = 0; i < s; i++) { this.words[i] = 0; } this.length += s; } return this.strip(); }; BN.prototype.ishln = function ishln (bits) { // TODO(indutny): implement me assert(this.negative === 0); return this.iushln(bits); }; // Shift-right in-place // NOTE: `hint` is a lowest bit before trailing zeroes // NOTE: if `extended` is present - it will be filled with destroyed bits BN.prototype.iushrn = function iushrn (bits, hint, extended) { assert(typeof bits === 'number' && bits >= 0); var h; if (hint) { h = (hint - (hint % 26)) / 26; } else { h = 0; } var r = bits % 26; var s = Math.min((bits - r) / 26, this.length); var mask = 0x3ffffff ^ ((0x3ffffff >>> r) << r); var maskedWords = extended; h -= s; h = Math.max(0, h); // Extended mode, copy masked part if (maskedWords) { for (var i = 0; i < s; i++) { maskedWords.words[i] = this.words[i]; } maskedWords.length = s; } if (s === 0) { // No-op, we should not move anything at all } else if (this.length > s) { this.length -= s; for (i = 0; i < this.length; i++) { this.words[i] = this.words[i + s]; } } else { this.words[0] = 0; this.length = 1; } var carry = 0; for (i = this.length - 1; i >= 0 && (carry !== 0 || i >= h); i--) { var word = this.words[i] | 0; this.words[i] = (carry << (26 - r)) | (word >>> r); carry = word & mask; } // Push carried bits as a mask if (maskedWords && carry !== 0) { maskedWords.words[maskedWords.length++] = carry; } if (this.length === 0) { this.words[0] = 0; this.length = 1; } return this.strip(); }; BN.prototype.ishrn = function ishrn (bits, hint, extended) { // TODO(indutny): implement me assert(this.negative === 0); return this.iushrn(bits, hint, extended); }; // Shift-left BN.prototype.shln = function shln (bits) { return this.clone().ishln(bits); }; BN.prototype.ushln = function ushln (bits) { return this.clone().iushln(bits); }; // Shift-right BN.prototype.shrn = function shrn (bits) { return this.clone().ishrn(bits); }; BN.prototype.ushrn = function ushrn (bits) { return this.clone().iushrn(bits); }; // Test if n bit is set BN.prototype.testn = function testn (bit) { assert(typeof bit === 'number' && bit >= 0); var r = bit % 26; var s = (bit - r) / 26; var q = 1 << r; // Fast case: bit is much higher than all existing words if (this.length <= s) return false; // Check bit and return var w = this.words[s]; return !!(w & q); }; // Return only lowers bits of number (in-place) BN.prototype.imaskn = function imaskn (bits) { assert(typeof bits === 'number' && bits >= 0); var r = bits % 26; var s = (bits - r) / 26; assert(this.negative === 0, 'imaskn works only with positive numbers'); if (this.length <= s) { return this; } if (r !== 0) { s++; } this.length = Math.min(s, this.length); if (r !== 0) { var mask = 0x3ffffff ^ ((0x3ffffff >>> r) << r); this.words[this.length - 1] &= mask; } return this.strip(); }; // Return only lowers bits of number BN.prototype.maskn = function maskn (bits) { return this.clone().imaskn(bits); }; // Add plain number `num` to `this` BN.prototype.iaddn = function iaddn (num) { assert(typeof num === 'number'); assert(num < 0x4000000); if (num < 0) return this.isubn(-num); // Possible sign change if (this.negative !== 0) { if (this.length === 1 && (this.words[0] | 0) < num) { this.words[0] = num - (this.words[0] | 0); this.negative = 0; return this; } this.negative = 0; this.isubn(num); this.negative = 1; return this; } // Add without checks return this._iaddn(num); }; BN.prototype._iaddn = function _iaddn (num) { this.words[0] += num; // Carry for (var i = 0; i < this.length && this.words[i] >= 0x4000000; i++) { this.words[i] -= 0x4000000; if (i === this.length - 1) { this.words[i + 1] = 1; } else { this.words[i + 1]++; } } this.length = Math.max(this.length, i + 1); return this; }; // Subtract plain number `num` from `this` BN.prototype.isubn = function isubn (num) { assert(typeof num === 'number'); assert(num < 0x4000000); if (num < 0) return this.iaddn(-num); if (this.negative !== 0) { this.negative = 0; this.iaddn(num); this.negative = 1; return this; } this.words[0] -= num; if (this.length === 1 && this.words[0] < 0) { this.words[0] = -this.words[0]; this.negative = 1; } else { // Carry for (var i = 0; i < this.length && this.words[i] < 0; i++) { this.words[i] += 0x4000000; this.words[i + 1] -= 1; } } return this.strip(); }; BN.prototype.addn = function addn (num) { return this.clone().iaddn(num); }; BN.prototype.subn = function subn (num) { return this.clone().isubn(num); }; BN.prototype.iabs = function iabs () { this.negative = 0; return this; }; BN.prototype.abs = function abs () { return this.clone().iabs(); }; BN.prototype._ishlnsubmul = function _ishlnsubmul (num, mul, shift) { var len = num.length + shift; var i; this._expand(len); var w; var carry = 0; for (i = 0; i < num.length; i++) { w = (this.words[i + shift] | 0) + carry; var right = (num.words[i] | 0) * mul; w -= right & 0x3ffffff; carry = (w >> 26) - ((right / 0x4000000) | 0); this.words[i + shift] = w & 0x3ffffff; } for (; i < this.length - shift; i++) { w = (this.words[i + shift] | 0) + carry; carry = w >> 26; this.words[i + shift] = w & 0x3ffffff; } if (carry === 0) return this.strip(); // Subtraction overflow assert(carry === -1); carry = 0; for (i = 0; i < this.length; i++) { w = -(this.words[i] | 0) + carry; carry = w >> 26; this.words[i] = w & 0x3ffffff; } this.negative = 1; return this.strip(); }; BN.prototype._wordDiv = function _wordDiv (num, mode) { var shift = this.length - num.length; var a = this.clone(); var b = num; // Normalize var bhi = b.words[b.length - 1] | 0; var bhiBits = this._countBits(bhi); shift = 26 - bhiBits; if (shift !== 0) { b = b.ushln(shift); a.iushln(shift); bhi = b.words[b.length - 1] | 0; } // Initialize quotient var m = a.length - b.length; var q; if (mode !== 'mod') { q = new BN(null); q.length = m + 1; q.words = new Array(q.length); for (var i = 0; i < q.length; i++) { q.words[i] = 0; } } var diff = a.clone()._ishlnsubmul(b, 1, m); if (diff.negative === 0) { a = diff; if (q) { q.words[m] = 1; } } for (var j = m - 1; j >= 0; j--) { var qj = (a.words[b.length + j] | 0) * 0x4000000 + (a.words[b.length + j - 1] | 0); // NOTE: (qj / bhi) is (0x3ffffff * 0x4000000 + 0x3ffffff) / 0x2000000 max // (0x7ffffff) qj = Math.min((qj / bhi) | 0, 0x3ffffff); a._ishlnsubmul(b, qj, j); while (a.negative !== 0) { qj--; a.negative = 0; a._ishlnsubmul(b, 1, j); if (!a.isZero()) { a.negative ^= 1; } } if (q) { q.words[j] = qj; } } if (q) { q.strip(); } a.strip(); // Denormalize if (mode !== 'div' && shift !== 0) { a.iushrn(shift); } return { div: q || null, mod: a }; }; // NOTE: 1) `mode` can be set to `mod` to request mod only, // to `div` to request div only, or be absent to // request both div & mod // 2) `positive` is true if unsigned mod is requested BN.prototype.divmod = function divmod (num, mode, positive) { assert(!num.isZero()); if (this.isZero()) { return { div: new BN(0), mod: new BN(0) }; } var div, mod, res; if (this.negative !== 0 && num.negative === 0) { res = this.neg().divmod(num, mode); if (mode !== 'mod') { div = res.div.neg(); } if (mode !== 'div') { mod = res.mod.neg(); if (positive && mod.negative !== 0) { mod.iadd(num); } } return { div: div, mod: mod }; } if (this.negative === 0 && num.negative !== 0) { res = this.divmod(num.neg(), mode); if (mode !== 'mod') { div = res.div.neg(); } return { div: div, mod: res.mod }; } if ((this.negative & num.negative) !== 0) { res = this.neg().divmod(num.neg(), mode); if (mode !== 'div') { mod = res.mod.neg(); if (positive && mod.negative !== 0) { mod.isub(num); } } return { div: res.div, mod: mod }; } // Both numbers are positive at this point // Strip both numbers to approximate shift value if (num.length > this.length || this.cmp(num) < 0) { return { div: new BN(0), mod: this }; } // Very short reduction if (num.length === 1) { if (mode === 'div') { return { div: this.divn(num.words[0]), mod: null }; } if (mode === 'mod') { return { div: null, mod: new BN(this.modn(num.words[0])) }; } return { div: this.divn(num.words[0]), mod: new BN(this.modn(num.words[0])) }; } return this._wordDiv(num, mode); }; // Find `this` / `num` BN.prototype.div = function div (num) { return this.divmod(num, 'div', false).div; }; // Find `this` % `num` BN.prototype.mod = function mod (num) { return this.divmod(num, 'mod', false).mod; }; BN.prototype.umod = function umod (num) { return this.divmod(num, 'mod', true).mod; }; // Find Round(`this` / `num`) BN.prototype.divRound = function divRound (num) { var dm = this.divmod(num); // Fast case - exact division if (dm.mod.isZero()) return dm.div; var mod = dm.div.negative !== 0 ? dm.mod.isub(num) : dm.mod; var half = num.ushrn(1); var r2 = num.andln(1); var cmp = mod.cmp(half); // Round down if (cmp < 0 || r2 === 1 && cmp === 0) return dm.div; // Round up return dm.div.negative !== 0 ? dm.div.isubn(1) : dm.div.iaddn(1); }; BN.prototype.modn = function modn (num) { assert(num <= 0x3ffffff); var p = (1 << 26) % num; var acc = 0; for (var i = this.length - 1; i >= 0; i--) { acc = (p * acc + (this.words[i] | 0)) % num; } return acc; }; // In-place division by number BN.prototype.idivn = function idivn (num) { assert(num <= 0x3ffffff); var carry = 0; for (var i = this.length - 1; i >= 0; i--) { var w = (this.words[i] | 0) + carry * 0x4000000; this.words[i] = (w / num) | 0; carry = w % num; } return this.strip(); }; BN.prototype.divn = function divn (num) { return this.clone().idivn(num); }; BN.prototype.egcd = function egcd (p) { assert(p.negative === 0); assert(!p.isZero()); var x = this; var y = p.clone(); if (x.negative !== 0) { x = x.umod(p); } else { x = x.clone(); } // A * x + B * y = x var A = new BN(1); var B = new BN(0); // C * x + D * y = y var C = new BN(0); var D = new BN(1); var g = 0; while (x.isEven() && y.isEven()) { x.iushrn(1); y.iushrn(1); ++g; } var yp = y.clone(); var xp = x.clone(); while (!x.isZero()) { for (var i = 0, im = 1; (x.words[0] & im) === 0 && i < 26; ++i, im <<= 1); if (i > 0) { x.iushrn(i); while (i-- > 0) { if (A.isOdd() || B.isOdd()) { A.iadd(yp); B.isub(xp); } A.iushrn(1); B.iushrn(1); } } for (var j = 0, jm = 1; (y.words[0] & jm) === 0 && j < 26; ++j, jm <<= 1); if (j > 0) { y.iushrn(j); while (j-- > 0) { if (C.isOdd() || D.isOdd()) { C.iadd(yp); D.isub(xp); } C.iushrn(1); D.iushrn(1); } } if (x.cmp(y) >= 0) { x.isub(y); A.isub(C); B.isub(D); } else { y.isub(x); C.isub(A); D.isub(B); } } return { a: C, b: D, gcd: y.iushln(g) }; }; // This is reduced incarnation of the binary EEA // above, designated to invert members of the // _prime_ fields F(p) at a maximal speed BN.prototype._invmp = function _invmp (p) { assert(p.negative === 0); assert(!p.isZero()); var a = this; var b = p.clone(); if (a.negative !== 0) { a = a.umod(p); } else { a = a.clone(); } var x1 = new BN(1); var x2 = new BN(0); var delta = b.clone(); while (a.cmpn(1) > 0 && b.cmpn(1) > 0) { for (var i = 0, im = 1; (a.words[0] & im) === 0 && i < 26; ++i, im <<= 1); if (i > 0) { a.iushrn(i); while (i-- > 0) { if (x1.isOdd()) { x1.iadd(delta); } x1.iushrn(1); } } for (var j = 0, jm = 1; (b.words[0] & jm) === 0 && j < 26; ++j, jm <<= 1); if (j > 0) { b.iushrn(j); while (j-- > 0) { if (x2.isOdd()) { x2.iadd(delta); } x2.iushrn(1); } } if (a.cmp(b) >= 0) { a.isub(b); x1.isub(x2); } else { b.isub(a); x2.isub(x1); } } var res; if (a.cmpn(1) === 0) { res = x1; } else { res = x2; } if (res.cmpn(0) < 0) { res.iadd(p); } return res; }; BN.prototype.gcd = function gcd (num) { if (this.isZero()) return num.abs(); if (num.isZero()) return this.abs(); var a = this.clone(); var b = num.clone(); a.negative = 0; b.negative = 0; // Remove common factor of two for (var shift = 0; a.isEven() && b.isEven(); shift++) { a.iushrn(1); b.iushrn(1); } do { while (a.isEven()) { a.iushrn(1); } while (b.isEven()) { b.iushrn(1); } var r = a.cmp(b); if (r < 0) { // Swap `a` and `b` to make `a` always bigger than `b` var t = a; a = b; b = t; } else if (r === 0 || b.cmpn(1) === 0) { break; } a.isub(b); } while (true); return b.iushln(shift); }; // Invert number in the field F(num) BN.prototype.invm = function invm (num) { return this.egcd(num).a.umod(num); }; BN.prototype.isEven = function isEven () { return (this.words[0] & 1) === 0; }; BN.prototype.isOdd = function isOdd () { return (this.words[0] & 1) === 1; }; // And first word and num BN.prototype.andln = function andln (num) { return this.words[0] & num; }; // Increment at the bit position in-line BN.prototype.bincn = function bincn (bit) { assert(typeof bit === 'number'); var r = bit % 26; var s = (bit - r) / 26; var q = 1 << r; // Fast case: bit is much higher than all existing words if (this.length <= s) { this._expand(s + 1); this.words[s] |= q; return this; } // Add bit and propagate, if needed var carry = q; for (var i = s; carry !== 0 && i < this.length; i++) { var w = this.words[i] | 0; w += carry; carry = w >>> 26; w &= 0x3ffffff; this.words[i] = w; } if (carry !== 0) { this.words[i] = carry; this.length++; } return this; }; BN.prototype.isZero = function isZero () { return this.length === 1 && this.words[0] === 0; }; BN.prototype.cmpn = function cmpn (num) { var negative = num < 0; if (this.negative !== 0 && !negative) return -1; if (this.negative === 0 && negative) return 1; this.strip(); var res; if (this.length > 1) { res = 1; } else { if (negative) { num = -num; } assert(num <= 0x3ffffff, 'Number is too big'); var w = this.words[0] | 0; res = w === num ? 0 : w < num ? -1 : 1; } if (this.negative !== 0) return -res | 0; return res; }; // Compare two numbers and return: // 1 - if `this` > `num` // 0 - if `this` == `num` // -1 - if `this` < `num` BN.prototype.cmp = function cmp (num) { if (this.negative !== 0 && num.negative === 0) return -1; if (this.negative === 0 && num.negative !== 0) return 1; var res = this.ucmp(num); if (this.negative !== 0) return -res | 0; return res; }; // Unsigned comparison BN.prototype.ucmp = function ucmp (num) { // At this point both numbers have the same sign if (this.length > num.length) return 1; if (this.length < num.length) return -1; var res = 0; for (var i = this.length - 1; i >= 0; i--) { var a = this.words[i] | 0; var b = num.words[i] | 0; if (a === b) continue; if (a < b) { res = -1; } else if (a > b) { res = 1; } break; } return res; }; BN.prototype.gtn = function gtn (num) { return this.cmpn(num) === 1; }; BN.prototype.gt = function gt (num) { return this.cmp(num) === 1; }; BN.prototype.gten = function gten (num) { return this.cmpn(num) >= 0; }; BN.prototype.gte = function gte (num) { return this.cmp(num) >= 0; }; BN.prototype.ltn = function ltn (num) { return this.cmpn(num) === -1; }; BN.prototype.lt = function lt (num) { return this.cmp(num) === -1; }; BN.prototype.lten = function lten (num) { return this.cmpn(num) <= 0; }; BN.prototype.lte = function lte (num) { return this.cmp(num) <= 0; }; BN.prototype.eqn = function eqn (num) { return this.cmpn(num) === 0; }; BN.prototype.eq = function eq (num) { return this.cmp(num) === 0; }; // // A reduce context, could be using montgomery or something better, depending // on the `m` itself. // BN.red = function red (num) { return new Red(num); }; BN.prototype.toRed = function toRed (ctx) { assert(!this.red, 'Already a number in reduction context'); assert(this.negative === 0, 'red works only with positives'); return ctx.convertTo(this)._forceRed(ctx); }; BN.prototype.fromRed = function fromRed () { assert(this.red, 'fromRed works only with numbers in reduction context'); return this.red.convertFrom(this); }; BN.prototype._forceRed = function _forceRed (ctx) { this.red = ctx; return this; }; BN.prototype.forceRed = function forceRed (ctx) { assert(!this.red, 'Already a number in reduction context'); return this._forceRed(ctx); }; BN.prototype.redAdd = function redAdd (num) { assert(this.red, 'redAdd works only with red numbers'); return this.red.add(this, num); }; BN.prototype.redIAdd = function redIAdd (num) { assert(this.red, 'redIAdd works only with red numbers'); return this.red.iadd(this, num); }; BN.prototype.redSub = function redSub (num) { assert(this.red, 'redSub works only with red numbers'); return this.red.sub(this, num); }; BN.prototype.redISub = function redISub (num) { assert(this.red, 'redISub works only with red numbers'); return this.red.isub(this, num); }; BN.prototype.redShl = function redShl (num) { assert(this.red, 'redShl works only with red numbers'); return this.red.shl(this, num); }; BN.prototype.redMul = function redMul (num) { assert(this.red, 'redMul works only with red numbers'); this.red._verify2(this, num); return this.red.mul(this, num); }; BN.prototype.redIMul = function redIMul (num) { assert(this.red, 'redMul works only with red numbers'); this.red._verify2(this, num); return this.red.imul(this, num); }; BN.prototype.redSqr = function redSqr () { assert(this.red, 'redSqr works only with red numbers'); this.red._verify1(this); return this.red.sqr(this); }; BN.prototype.redISqr = function redISqr () { assert(this.red, 'redISqr works only with red numbers'); this.red._verify1(this); return this.red.isqr(this); }; // Square root over p BN.prototype.redSqrt = function redSqrt () { assert(this.red, 'redSqrt works only with red numbers'); this.red._verify1(this); return this.red.sqrt(this); }; BN.prototype.redInvm = function redInvm () { assert(this.red, 'redInvm works only with red numbers'); this.red._verify1(this); return this.red.invm(this); }; // Return negative clone of `this` % `red modulo` BN.prototype.redNeg = function redNeg () { assert(this.red, 'redNeg works only with red numbers'); this.red._verify1(this); return this.red.neg(this); }; BN.prototype.redPow = function redPow (num) { assert(this.red && !num.red, 'redPow(normalNum)'); this.red._verify1(this); return this.red.pow(this, num); }; // Prime numbers with efficient reduction var primes = { k256: null, p224: null, p192: null, p25519: null }; // Pseudo-Mersenne prime function MPrime (name, p) { // P = 2 ^ N - K this.name = name; this.p = new BN(p, 16); this.n = this.p.bitLength(); this.k = new BN(1).iushln(this.n).isub(this.p); this.tmp = this._tmp(); } MPrime.prototype._tmp = function _tmp () { var tmp = new BN(null); tmp.words = new Array(Math.ceil(this.n / 13)); return tmp; }; MPrime.prototype.ireduce = function ireduce (num) { // Assumes that `num` is less than `P^2` // num = HI * (2 ^ N - K) + HI * K + LO = HI * K + LO (mod P) var r = num; var rlen; do { this.split(r, this.tmp); r = this.imulK(r); r = r.iadd(this.tmp); rlen = r.bitLength(); } while (rlen > this.n); var cmp = rlen < this.n ? -1 : r.ucmp(this.p); if (cmp === 0) { r.words[0] = 0; r.length = 1; } else if (cmp > 0) { r.isub(this.p); } else { r.strip(); } return r; }; MPrime.prototype.split = function split (input, out) { input.iushrn(this.n, 0, out); }; MPrime.prototype.imulK = function imulK (num) { return num.imul(this.k); }; function K256 () { MPrime.call( this, 'k256', 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f'); } inherits(K256, MPrime); K256.prototype.split = function split (input, output) { // 256 = 9 * 26 + 22 var mask = 0x3fffff; var outLen = Math.min(input.length, 9); for (var i = 0; i < outLen; i++) { output.words[i] = input.words[i]; } output.length = outLen; if (input.length <= 9) { input.words[0] = 0; input.length = 1; return; } // Shift by 9 limbs var prev = input.words[9]; output.words[output.length++] = prev & mask; for (i = 10; i < input.length; i++) { var next = input.words[i] | 0; input.words[i - 10] = ((next & mask) << 4) | (prev >>> 22); prev = next; } prev >>>= 22; input.words[i - 10] = prev; if (prev === 0 && input.length > 10) { input.length -= 10; } else { input.length -= 9; } }; K256.prototype.imulK = function imulK (num) { // K = 0x1000003d1 = [ 0x40, 0x3d1 ] num.words[num.length] = 0; num.words[num.length + 1] = 0; num.length += 2; // bounded at: 0x40 * 0x3ffffff + 0x3d0 = 0x100000390 var lo = 0; for (var i = 0; i < num.length; i++) { var w = num.words[i] | 0; lo += w * 0x3d1; num.words[i] = lo & 0x3ffffff; lo = w * 0x40 + ((lo / 0x4000000) | 0); } // Fast length reduction if (num.words[num.length - 1] === 0) { num.length--; if (num.words[num.length - 1] === 0) { num.length--; } } return num; }; function P224 () { MPrime.call( this, 'p224', 'ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001'); } inherits(P224, MPrime); function P192 () { MPrime.call( this, 'p192', 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff'); } inherits(P192, MPrime); function P25519 () { // 2 ^ 255 - 19 MPrime.call( this, '25519', '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed'); } inherits(P25519, MPrime); P25519.prototype.imulK = function imulK (num) { // K = 0x13 var carry = 0; for (var i = 0; i < num.length; i++) { var hi = (num.words[i] | 0) * 0x13 + carry; var lo = hi & 0x3ffffff; hi >>>= 26; num.words[i] = lo; carry = hi; } if (carry !== 0) { num.words[num.length++] = carry; } return num; }; // Exported mostly for testing purposes, use plain name instead BN._prime = function prime (name) { // Cached version of prime if (primes[name]) return primes[name]; var prime; if (name === 'k256') { prime = new K256(); } else if (name === 'p224') { prime = new P224(); } else if (name === 'p192') { prime = new P192(); } else if (name === 'p25519') { prime = new P25519(); } else { throw new Error('Unknown prime ' + name); } primes[name] = prime; return prime; }; // // Base reduction engine // function Red (m) { if (typeof m === 'string') { var prime = BN._prime(m); this.m = prime.p; this.prime = prime; } else { assert(m.gtn(1), 'modulus must be greater than 1'); this.m = m; this.prime = null; } } Red.prototype._verify1 = function _verify1 (a) { assert(a.negative === 0, 'red works only with positives'); assert(a.red, 'red works only with red numbers'); }; Red.prototype._verify2 = function _verify2 (a, b) { assert((a.negative | b.negative) === 0, 'red works only with positives'); assert(a.red && a.red === b.red, 'red works only with red numbers'); }; Red.prototype.imod = function imod (a) { if (this.prime) return this.prime.ireduce(a)._forceRed(this); return a.umod(this.m)._forceRed(this); }; Red.prototype.neg = function neg (a) { if (a.isZero()) { return a.clone(); } return this.m.sub(a)._forceRed(this); }; Red.prototype.add = function add (a, b) { this._verify2(a, b); var res = a.add(b); if (res.cmp(this.m) >= 0) { res.isub(this.m); } return res._forceRed(this); }; Red.prototype.iadd = function iadd (a, b) { this._verify2(a, b); var res = a.iadd(b); if (res.cmp(this.m) >= 0) { res.isub(this.m); } return res; }; Red.prototype.sub = function sub (a, b) { this._verify2(a, b); var res = a.sub(b); if (res.cmpn(0) < 0) { res.iadd(this.m); } return res._forceRed(this); }; Red.prototype.isub = function isub (a, b) { this._verify2(a, b); var res = a.isub(b); if (res.cmpn(0) < 0) { res.iadd(this.m); } return res; }; Red.prototype.shl = function shl (a, num) { this._verify1(a); return this.imod(a.ushln(num)); }; Red.prototype.imul = function imul (a, b) { this._verify2(a, b); return this.imod(a.imul(b)); }; Red.prototype.mul = function mul (a, b) { this._verify2(a, b); return this.imod(a.mul(b)); }; Red.prototype.isqr = function isqr (a) { return this.imul(a, a.clone()); }; Red.prototype.sqr = function sqr (a) { return this.mul(a, a); }; Red.prototype.sqrt = function sqrt (a) { if (a.isZero()) return a.clone(); var mod3 = this.m.andln(3); assert(mod3 % 2 === 1); // Fast case if (mod3 === 3) { var pow = this.m.add(new BN(1)).iushrn(2); return this.pow(a, pow); } // Tonelli-Shanks algorithm (Totally unoptimized and slow) // // Find Q and S, that Q * 2 ^ S = (P - 1) var q = this.m.subn(1); var s = 0; while (!q.isZero() && q.andln(1) === 0) { s++; q.iushrn(1); } assert(!q.isZero()); var one = new BN(1).toRed(this); var nOne = one.redNeg(); // Find quadratic non-residue // NOTE: Max is such because of generalized Riemann hypothesis. var lpow = this.m.subn(1).iushrn(1); var z = this.m.bitLength(); z = new BN(2 * z * z).toRed(this); while (this.pow(z, lpow).cmp(nOne) !== 0) { z.redIAdd(nOne); } var c = this.pow(z, q); var r = this.pow(a, q.addn(1).iushrn(1)); var t = this.pow(a, q); var m = s; while (t.cmp(one) !== 0) { var tmp = t; for (var i = 0; tmp.cmp(one) !== 0; i++) { tmp = tmp.redSqr(); } assert(i < m); var b = this.pow(c, new BN(1).iushln(m - i - 1)); r = r.redMul(b); c = b.redSqr(); t = t.redMul(c); m = i; } return r; }; Red.prototype.invm = function invm (a) { var inv = a._invmp(this.m); if (inv.negative !== 0) { inv.negative = 0; return this.imod(inv).redNeg(); } else { return this.imod(inv); } }; Red.prototype.pow = function pow (a, num) { if (num.isZero()) return new BN(1); if (num.cmpn(1) === 0) return a.clone(); var windowSize = 4; var wnd = new Array(1 << windowSize); wnd[0] = new BN(1).toRed(this); wnd[1] = a; for (var i = 2; i < wnd.length; i++) { wnd[i] = this.mul(wnd[i - 1], a); } var res = wnd[0]; var current = 0; var currentLen = 0; var start = num.bitLength() % 26; if (start === 0) { start = 26; } for (i = num.length - 1; i >= 0; i--) { var word = num.words[i]; for (var j = start - 1; j >= 0; j--) { var bit = (word >> j) & 1; if (res !== wnd[0]) { res = this.sqr(res); } if (bit === 0 && current === 0) { currentLen = 0; continue; } current <<= 1; current |= bit; currentLen++; if (currentLen !== windowSize && (i !== 0 || j !== 0)) continue; res = this.mul(res, wnd[current]); currentLen = 0; current = 0; } start = 26; } return res; }; Red.prototype.convertTo = function convertTo (num) { var r = num.umod(this.m); return r === num ? r.clone() : r; }; Red.prototype.convertFrom = function convertFrom (num) { var res = num.clone(); res.red = null; return res; }; // // Montgomery method engine // BN.mont = function mont (num) { return new Mont(num); }; function Mont (m) { Red.call(this, m); this.shift = this.m.bitLength(); if (this.shift % 26 !== 0) { this.shift += 26 - (this.shift % 26); } this.r = new BN(1).iushln(this.shift); this.r2 = this.imod(this.r.sqr()); this.rinv = this.r._invmp(this.m); this.minv = this.rinv.mul(this.r).isubn(1).div(this.m); this.minv = this.minv.umod(this.r); this.minv = this.r.sub(this.minv); } inherits(Mont, Red); Mont.prototype.convertTo = function convertTo (num) { return this.imod(num.ushln(this.shift)); }; Mont.prototype.convertFrom = function convertFrom (num) { var r = this.imod(num.mul(this.rinv)); r.red = null; return r; }; Mont.prototype.imul = function imul (a, b) { if (a.isZero() || b.isZero()) { a.words[0] = 0; a.length = 1; return a; } var t = a.imul(b); var c = t.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m); var u = t.isub(c).iushrn(this.shift); var res = u; if (u.cmp(this.m) >= 0) { res = u.isub(this.m); } else if (u.cmpn(0) < 0) { res = u.iadd(this.m); } return res._forceRed(this); }; Mont.prototype.mul = function mul (a, b) { if (a.isZero() || b.isZero()) return new BN(0)._forceRed(this); var t = a.mul(b); var c = t.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m); var u = t.isub(c).iushrn(this.shift); var res = u; if (u.cmp(this.m) >= 0) { res = u.isub(this.m); } else if (u.cmpn(0) < 0) { res = u.iadd(this.m); } return res._forceRed(this); }; Mont.prototype.invm = function invm (a) { // (AR)^-1 * R^2 = (A^-1 * R^-1) * R^2 = A^-1 * R var res = this.imod(a._invmp(this.m).mul(this.r2)); return res._forceRed(this); }; })(typeof module === 'undefined' || module, this); },{}],19:[function(require,module,exports){ var r; module.exports = function rand(len) { if (!r) r = new Rand(null); return r.generate(len); }; function Rand(rand) { this.rand = rand; } module.exports.Rand = Rand; Rand.prototype.generate = function generate(len) { return this._rand(len); }; if (typeof window === 'object') { if (window.crypto && window.crypto.getRandomValues) { // Modern browsers Rand.prototype._rand = function _rand(n) { var arr = new Uint8Array(n); window.crypto.getRandomValues(arr); return arr; }; } else if (window.msCrypto && window.msCrypto.getRandomValues) { // IE Rand.prototype._rand = function _rand(n) { var arr = new Uint8Array(n); window.msCrypto.getRandomValues(arr); return arr; }; } else { // Old junk Rand.prototype._rand = function() { throw new Error('Not implemented yet'); }; } } else { // Node.js or Web worker try { var crypto = require('cry' + 'pto'); Rand.prototype._rand = function _rand(n) { return crypto.randomBytes(n); }; } catch (e) { // Emulate crypto API using randy Rand.prototype._rand = function _rand(n) { var res = new Uint8Array(n); for (var i = 0; i < res.length; i++) res[i] = this.rand.getByte(); return res; }; } } },{}],20:[function(require,module,exports){ arguments[4][1][0].apply(exports,arguments) },{"dup":1}],21:[function(require,module,exports){ (function (Buffer){ // based on the aes implimentation in triple sec // https://github.com/keybase/triplesec // which is in turn based on the one from crypto-js // https://code.google.com/p/crypto-js/ var uint_max = Math.pow(2, 32) function fixup_uint32 (x) { var ret, x_pos ret = x > uint_max || x < 0 ? (x_pos = Math.abs(x) % uint_max, x < 0 ? uint_max - x_pos : x_pos) : x return ret } function scrub_vec (v) { for (var i = 0; i < v.length; v++) { v[i] = 0 } return false } function Global () { this.SBOX = [] this.INV_SBOX = [] this.SUB_MIX = [[], [], [], []] this.INV_SUB_MIX = [[], [], [], []] this.init() this.RCON = [0x00, 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36] } Global.prototype.init = function () { var d, i, sx, t, x, x2, x4, x8, xi, _i d = (function () { var _i, _results _results = [] for (i = _i = 0; _i < 256; i = ++_i) { if (i < 128) { _results.push(i << 1) } else { _results.push((i << 1) ^ 0x11b) } } return _results })() x = 0 xi = 0 for (i = _i = 0; _i < 256; i = ++_i) { sx = xi ^ (xi << 1) ^ (xi << 2) ^ (xi << 3) ^ (xi << 4) sx = (sx >>> 8) ^ (sx & 0xff) ^ 0x63 this.SBOX[x] = sx this.INV_SBOX[sx] = x x2 = d[x] x4 = d[x2] x8 = d[x4] t = (d[sx] * 0x101) ^ (sx * 0x1010100) this.SUB_MIX[0][x] = (t << 24) | (t >>> 8) this.SUB_MIX[1][x] = (t << 16) | (t >>> 16) this.SUB_MIX[2][x] = (t << 8) | (t >>> 24) this.SUB_MIX[3][x] = t t = (x8 * 0x1010101) ^ (x4 * 0x10001) ^ (x2 * 0x101) ^ (x * 0x1010100) this.INV_SUB_MIX[0][sx] = (t << 24) | (t >>> 8) this.INV_SUB_MIX[1][sx] = (t << 16) | (t >>> 16) this.INV_SUB_MIX[2][sx] = (t << 8) | (t >>> 24) this.INV_SUB_MIX[3][sx] = t if (x === 0) { x = xi = 1 } else { x = x2 ^ d[d[d[x8 ^ x2]]] xi ^= d[d[xi]] } } return true } var G = new Global() AES.blockSize = 4 * 4 AES.prototype.blockSize = AES.blockSize AES.keySize = 256 / 8 AES.prototype.keySize = AES.keySize function bufferToArray (buf) { var len = buf.length / 4 var out = new Array(len) var i = -1 while (++i < len) { out[i] = buf.readUInt32BE(i * 4) } return out } function AES (key) { this._key = bufferToArray(key) this._doReset() } AES.prototype._doReset = function () { var invKsRow, keySize, keyWords, ksRow, ksRows, t keyWords = this._key keySize = keyWords.length this._nRounds = keySize + 6 ksRows = (this._nRounds + 1) * 4 this._keySchedule = [] for (ksRow = 0; ksRow < ksRows; ksRow++) { this._keySchedule[ksRow] = ksRow < keySize ? keyWords[ksRow] : (t = this._keySchedule[ksRow - 1], (ksRow % keySize) === 0 ? (t = (t << 8) | (t >>> 24), t = (G.SBOX[t >>> 24] << 24) | (G.SBOX[(t >>> 16) & 0xff] << 16) | (G.SBOX[(t >>> 8) & 0xff] << 8) | G.SBOX[t & 0xff], t ^= G.RCON[(ksRow / keySize) | 0] << 24) : keySize > 6 && ksRow % keySize === 4 ? t = (G.SBOX[t >>> 24] << 24) | (G.SBOX[(t >>> 16) & 0xff] << 16) | (G.SBOX[(t >>> 8) & 0xff] << 8) | G.SBOX[t & 0xff] : void 0, this._keySchedule[ksRow - keySize] ^ t) } this._invKeySchedule = [] for (invKsRow = 0; invKsRow < ksRows; invKsRow++) { ksRow = ksRows - invKsRow t = this._keySchedule[ksRow - (invKsRow % 4 ? 0 : 4)] this._invKeySchedule[invKsRow] = invKsRow < 4 || ksRow <= 4 ? t : G.INV_SUB_MIX[0][G.SBOX[t >>> 24]] ^ G.INV_SUB_MIX[1][G.SBOX[(t >>> 16) & 0xff]] ^ G.INV_SUB_MIX[2][G.SBOX[(t >>> 8) & 0xff]] ^ G.INV_SUB_MIX[3][G.SBOX[t & 0xff]] } return true } AES.prototype.encryptBlock = function (M) { M = bufferToArray(new Buffer(M)) var out = this._doCryptBlock(M, this._keySchedule, G.SUB_MIX, G.SBOX) var buf = new Buffer(16) buf.writeUInt32BE(out[0], 0) buf.writeUInt32BE(out[1], 4) buf.writeUInt32BE(out[2], 8) buf.writeUInt32BE(out[3], 12) return buf } AES.prototype.decryptBlock = function (M) { M = bufferToArray(new Buffer(M)) var temp = [M[3], M[1]] M[1] = temp[0] M[3] = temp[1] var out = this._doCryptBlock(M, this._invKeySchedule, G.INV_SUB_MIX, G.INV_SBOX) var buf = new Buffer(16) buf.writeUInt32BE(out[0], 0) buf.writeUInt32BE(out[3], 4) buf.writeUInt32BE(out[2], 8) buf.writeUInt32BE(out[1], 12) return buf } AES.prototype.scrub = function () { scrub_vec(this._keySchedule) scrub_vec(this._invKeySchedule) scrub_vec(this._key) } AES.prototype._doCryptBlock = function (M, keySchedule, SUB_MIX, SBOX) { var ksRow, s0, s1, s2, s3, t0, t1, t2, t3 s0 = M[0] ^ keySchedule[0] s1 = M[1] ^ keySchedule[1] s2 = M[2] ^ keySchedule[2] s3 = M[3] ^ keySchedule[3] ksRow = 4 for (var round = 1; round < this._nRounds; round++) { t0 = SUB_MIX[0][s0 >>> 24] ^ SUB_MIX[1][(s1 >>> 16) & 0xff] ^ SUB_MIX[2][(s2 >>> 8) & 0xff] ^ SUB_MIX[3][s3 & 0xff] ^ keySchedule[ksRow++] t1 = SUB_MIX[0][s1 >>> 24] ^ SUB_MIX[1][(s2 >>> 16) & 0xff] ^ SUB_MIX[2][(s3 >>> 8) & 0xff] ^ SUB_MIX[3][s0 & 0xff] ^ keySchedule[ksRow++] t2 = SUB_MIX[0][s2 >>> 24] ^ SUB_MIX[1][(s3 >>> 16) & 0xff] ^ SUB_MIX[2][(s0 >>> 8) & 0xff] ^ SUB_MIX[3][s1 & 0xff] ^ keySchedule[ksRow++] t3 = SUB_MIX[0][s3 >>> 24] ^ SUB_MIX[1][(s0 >>> 16) & 0xff] ^ SUB_MIX[2][(s1 >>> 8) & 0xff] ^ SUB_MIX[3][s2 & 0xff] ^ keySchedule[ksRow++] s0 = t0 s1 = t1 s2 = t2 s3 = t3 } t0 = ((SBOX[s0 >>> 24] << 24) | (SBOX[(s1 >>> 16) & 0xff] << 16) | (SBOX[(s2 >>> 8) & 0xff] << 8) | SBOX[s3 & 0xff]) ^ keySchedule[ksRow++] t1 = ((SBOX[s1 >>> 24] << 24) | (SBOX[(s2 >>> 16) & 0xff] << 16) | (SBOX[(s3 >>> 8) & 0xff] << 8) | SBOX[s0 & 0xff]) ^ keySchedule[ksRow++] t2 = ((SBOX[s2 >>> 24] << 24) | (SBOX[(s3 >>> 16) & 0xff] << 16) | (SBOX[(s0 >>> 8) & 0xff] << 8) | SBOX[s1 & 0xff]) ^ keySchedule[ksRow++] t3 = ((SBOX[s3 >>> 24] << 24) | (SBOX[(s0 >>> 16) & 0xff] << 16) | (SBOX[(s1 >>> 8) & 0xff] << 8) | SBOX[s2 & 0xff]) ^ keySchedule[ksRow++] return [ fixup_uint32(t0), fixup_uint32(t1), fixup_uint32(t2), fixup_uint32(t3) ] } exports.AES = AES }).call(this,require("buffer").Buffer) },{"buffer":49}],22:[function(require,module,exports){ (function (Buffer){ var aes = require('./aes') var Transform = require('cipher-base') var inherits = require('inherits') var GHASH = require('./ghash') var xor = require('buffer-xor') inherits(StreamCipher, Transform) module.exports = StreamCipher function StreamCipher (mode, key, iv, decrypt) { if (!(this instanceof StreamCipher)) { return new StreamCipher(mode, key, iv) } Transform.call(this) this._finID = Buffer.concat([iv, new Buffer([0, 0, 0, 1])]) iv = Buffer.concat([iv, new Buffer([0, 0, 0, 2])]) this._cipher = new aes.AES(key) this._prev = new Buffer(iv.length) this._cache = new Buffer('') this._secCache = new Buffer('') this._decrypt = decrypt this._alen = 0 this._len = 0 iv.copy(this._prev) this._mode = mode var h = new Buffer(4) h.fill(0) this._ghash = new GHASH(this._cipher.encryptBlock(h)) this._authTag = null this._called = false } StreamCipher.prototype._update = function (chunk) { if (!this._called && this._alen) { var rump = 16 - (this._alen % 16) if (rump < 16) { rump = new Buffer(rump) rump.fill(0) this._ghash.update(rump) } } this._called = true var out = this._mode.encrypt(this, chunk) if (this._decrypt) { this._ghash.update(chunk) } else { this._ghash.update(out) } this._len += chunk.length return out } StreamCipher.prototype._final = function () { if (this._decrypt && !this._authTag) { throw new Error('Unsupported state or unable to authenticate data') } var tag = xor(this._ghash.final(this._alen * 8, this._len * 8), this._cipher.encryptBlock(this._finID)) if (this._decrypt) { if (xorTest(tag, this._authTag)) { throw new Error('Unsupported state or unable to authenticate data') } } else { this._authTag = tag } this._cipher.scrub() } StreamCipher.prototype.getAuthTag = function getAuthTag () { if (!this._decrypt && Buffer.isBuffer(this._authTag)) { return this._authTag } else { throw new Error('Attempting to get auth tag in unsupported state') } } StreamCipher.prototype.setAuthTag = function setAuthTag (tag) { if (this._decrypt) { this._authTag = tag } else { throw new Error('Attempting to set auth tag in unsupported state') } } StreamCipher.prototype.setAAD = function setAAD (buf) { if (!this._called) { this._ghash.update(buf) this._alen += buf.length } else { throw new Error('Attempting to set AAD in unsupported state') } } function xorTest (a, b) { var out = 0 if (a.length !== b.length) { out++ } var len = Math.min(a.length, b.length) var i = -1 while (++i < len) { out += (a[i] ^ b[i]) } return out } }).call(this,require("buffer").Buffer) },{"./aes":21,"./ghash":26,"buffer":49,"buffer-xor":48,"cipher-base":51,"inherits":97}],23:[function(require,module,exports){ var ciphers = require('./encrypter') exports.createCipher = exports.Cipher = ciphers.createCipher exports.createCipheriv = exports.Cipheriv = ciphers.createCipheriv var deciphers = require('./decrypter') exports.createDecipher = exports.Decipher = deciphers.createDecipher exports.createDecipheriv = exports.Decipheriv = deciphers.createDecipheriv var modes = require('./modes') function getCiphers () { return Object.keys(modes) } exports.listCiphers = exports.getCiphers = getCiphers },{"./decrypter":24,"./encrypter":25,"./modes":27}],24:[function(require,module,exports){ (function (Buffer){ var aes = require('./aes') var Transform = require('cipher-base') var inherits = require('inherits') var modes = require('./modes') var StreamCipher = require('./streamCipher') var AuthCipher = require('./authCipher') var ebtk = require('evp_bytestokey') inherits(Decipher, Transform) function Decipher (mode, key, iv) { if (!(this instanceof Decipher)) { return new Decipher(mode, key, iv) } Transform.call(this) this._cache = new Splitter() this._last = void 0 this._cipher = new aes.AES(key) this._prev = new Buffer(iv.length) iv.copy(this._prev) this._mode = mode this._autopadding = true } Decipher.prototype._update = function (data) { this._cache.add(data) var chunk var thing var out = [] while ((chunk = this._cache.get(this._autopadding))) { thing = this._mode.decrypt(this, chunk) out.push(thing) } return Buffer.concat(out) } Decipher.prototype._final = function () { var chunk = this._cache.flush() if (this._autopadding) { return unpad(this._mode.decrypt(this, chunk)) } else if (chunk) { throw new Error('data not multiple of block length') } } Decipher.prototype.setAutoPadding = function (setTo) { this._autopadding = !!setTo return this } function Splitter () { if (!(this instanceof Splitter)) { return new Splitter() } this.cache = new Buffer('') } Splitter.prototype.add = function (data) { this.cache = Buffer.concat([this.cache, data]) } Splitter.prototype.get = function (autoPadding) { var out if (autoPadding) { if (this.cache.length > 16) { out = this.cache.slice(0, 16) this.cache = this.cache.slice(16) return out } } else { if (this.cache.length >= 16) { out = this.cache.slice(0, 16) this.cache = this.cache.slice(16) return out } } return null } Splitter.prototype.flush = function () { if (this.cache.length) { return this.cache } } function unpad (last) { var padded = last[15] var i = -1 while (++i < padded) { if (last[(i + (16 - padded))] !== padded) { throw new Error('unable to decrypt data') } } if (padded === 16) { return } return last.slice(0, 16 - padded) } var modelist = { ECB: require('./modes/ecb'), CBC: require('./modes/cbc'), CFB: require('./modes/cfb'), CFB8: require('./modes/cfb8'), CFB1: require('./modes/cfb1'), OFB: require('./modes/ofb'), CTR: require('./modes/ctr'), GCM: require('./modes/ctr') } function createDecipheriv (suite, password, iv) { var config = modes[suite.toLowerCase()] if (!config) { throw new TypeError('invalid suite type') } if (typeof iv === 'string') { iv = new Buffer(iv) } if (typeof password === 'string') { password = new Buffer(password) } if (password.length !== config.key / 8) { throw new TypeError('invalid key length ' + password.length) } if (iv.length !== config.iv) { throw new TypeError('invalid iv length ' + iv.length) } if (config.type === 'stream') { return new StreamCipher(modelist[config.mode], password, iv, true) } else if (config.type === 'auth') { return new AuthCipher(modelist[config.mode], password, iv, true) } return new Decipher(modelist[config.mode], password, iv) } function createDecipher (suite, password) { var config = modes[suite.toLowerCase()] if (!config) { throw new TypeError('invalid suite type') } var keys = ebtk(password, false, config.key, config.iv) return createDecipheriv(suite, keys.key, keys.iv) } exports.createDecipher = createDecipher exports.createDecipheriv = createDecipheriv }).call(this,require("buffer").Buffer) },{"./aes":21,"./authCipher":22,"./modes":27,"./modes/cbc":28,"./modes/cfb":29,"./modes/cfb1":30,"./modes/cfb8":31,"./modes/ctr":32,"./modes/ecb":33,"./modes/ofb":34,"./streamCipher":35,"buffer":49,"cipher-base":51,"evp_bytestokey":87,"inherits":97}],25:[function(require,module,exports){ (function (Buffer){ var aes = require('./aes') var Transform = require('cipher-base') var inherits = require('inherits') var modes = require('./modes') var ebtk = require('evp_bytestokey') var StreamCipher = require('./streamCipher') var AuthCipher = require('./authCipher') inherits(Cipher, Transform) function Cipher (mode, key, iv) { if (!(this instanceof Cipher)) { return new Cipher(mode, key, iv) } Transform.call(this) this._cache = new Splitter() this._cipher = new aes.AES(key) this._prev = new Buffer(iv.length) iv.copy(this._prev) this._mode = mode this._autopadding = true } Cipher.prototype._update = function (data) { this._cache.add(data) var chunk var thing var out = [] while ((chunk = this._cache.get())) { thing = this._mode.encrypt(this, chunk) out.push(thing) } return Buffer.concat(out) } Cipher.prototype._final = function () { var chunk = this._cache.flush() if (this._autopadding) { chunk = this._mode.encrypt(this, chunk) this._cipher.scrub() return chunk } else if (chunk.toString('hex') !== '10101010101010101010101010101010') { this._cipher.scrub() throw new Error('data not multiple of block length') } } Cipher.prototype.setAutoPadding = function (setTo) { this._autopadding = !!setTo return this } function Splitter () { if (!(this instanceof Splitter)) { return new Splitter() } this.cache = new Buffer('') } Splitter.prototype.add = function (data) { this.cache = Buffer.concat([this.cache, data]) } Splitter.prototype.get = function () { if (this.cache.length > 15) { var out = this.cache.slice(0, 16) this.cache = this.cache.slice(16) return out } return null } Splitter.prototype.flush = function () { var len = 16 - this.cache.length var padBuff = new Buffer(len) var i = -1 while (++i < len) { padBuff.writeUInt8(len, i) } var out = Buffer.concat([this.cache, padBuff]) return out } var modelist = { ECB: require('./modes/ecb'), CBC: require('./modes/cbc'), CFB: require('./modes/cfb'), CFB8: require('./modes/cfb8'), CFB1: require('./modes/cfb1'), OFB: require('./modes/ofb'), CTR: require('./modes/ctr'), GCM: require('./modes/ctr') } function createCipheriv (suite, password, iv) { var config = modes[suite.toLowerCase()] if (!config) { throw new TypeError('invalid suite type') } if (typeof iv === 'string') { iv = new Buffer(iv) } if (typeof password === 'string') { password = new Buffer(password) } if (password.length !== config.key / 8) { throw new TypeError('invalid key length ' + password.length) } if (iv.length !== config.iv) { throw new TypeError('invalid iv length ' + iv.length) } if (config.type === 'stream') { return new StreamCipher(modelist[config.mode], password, iv) } else if (config.type === 'auth') { return new AuthCipher(modelist[config.mode], password, iv) } return new Cipher(modelist[config.mode], password, iv) } function createCipher (suite, password) { var config = modes[suite.toLowerCase()] if (!config) { throw new TypeError('invalid suite type') } var keys = ebtk(password, false, config.key, config.iv) return createCipheriv(suite, keys.key, keys.iv) } exports.createCipheriv = createCipheriv exports.createCipher = createCipher }).call(this,require("buffer").Buffer) },{"./aes":21,"./authCipher":22,"./modes":27,"./modes/cbc":28,"./modes/cfb":29,"./modes/cfb1":30,"./modes/cfb8":31,"./modes/ctr":32,"./modes/ecb":33,"./modes/ofb":34,"./streamCipher":35,"buffer":49,"cipher-base":51,"evp_bytestokey":87,"inherits":97}],26:[function(require,module,exports){ (function (Buffer){ var zeros = new Buffer(16) zeros.fill(0) module.exports = GHASH function GHASH (key) { this.h = key this.state = new Buffer(16) this.state.fill(0) this.cache = new Buffer('') } // from http://bitwiseshiftleft.github.io/sjcl/doc/symbols/src/core_gcm.js.html // by Juho Vähä-Herttua GHASH.prototype.ghash = function (block) { var i = -1 while (++i < block.length) { this.state[i] ^= block[i] } this._multiply() } GHASH.prototype._multiply = function () { var Vi = toArray(this.h) var Zi = [0, 0, 0, 0] var j, xi, lsb_Vi var i = -1 while (++i < 128) { xi = (this.state[~~(i / 8)] & (1 << (7 - i % 8))) !== 0 if (xi) { // Z_i+1 = Z_i ^ V_i Zi = xor(Zi, Vi) } // Store the value of LSB(V_i) lsb_Vi = (Vi[3] & 1) !== 0 // V_i+1 = V_i >> 1 for (j = 3; j > 0; j--) { Vi[j] = (Vi[j] >>> 1) | ((Vi[j - 1] & 1) << 31) } Vi[0] = Vi[0] >>> 1 // If LSB(V_i) is 1, V_i+1 = (V_i >> 1) ^ R if (lsb_Vi) { Vi[0] = Vi[0] ^ (0xe1 << 24) } } this.state = fromArray(Zi) } GHASH.prototype.update = function (buf) { this.cache = Buffer.concat([this.cache, buf]) var chunk while (this.cache.length >= 16) { chunk = this.cache.slice(0, 16) this.cache = this.cache.slice(16) this.ghash(chunk) } } GHASH.prototype.final = function (abl, bl) { if (this.cache.length) { this.ghash(Buffer.concat([this.cache, zeros], 16)) } this.ghash(fromArray([ 0, abl, 0, bl ])) return this.state } function toArray (buf) { return [ buf.readUInt32BE(0), buf.readUInt32BE(4), buf.readUInt32BE(8), buf.readUInt32BE(12) ] } function fromArray (out) { out = out.map(fixup_uint32) var buf = new Buffer(16) buf.writeUInt32BE(out[0], 0) buf.writeUInt32BE(out[1], 4) buf.writeUInt32BE(out[2], 8) buf.writeUInt32BE(out[3], 12) return buf } var uint_max = Math.pow(2, 32) function fixup_uint32 (x) { var ret, x_pos ret = x > uint_max || x < 0 ? (x_pos = Math.abs(x) % uint_max, x < 0 ? uint_max - x_pos : x_pos) : x return ret } function xor (a, b) { return [ a[0] ^ b[0], a[1] ^ b[1], a[2] ^ b[2], a[3] ^ b[3] ] } }).call(this,require("buffer").Buffer) },{"buffer":49}],27:[function(require,module,exports){ exports['aes-128-ecb'] = { cipher: 'AES', key: 128, iv: 0, mode: 'ECB', type: 'block' } exports['aes-192-ecb'] = { cipher: 'AES', key: 192, iv: 0, mode: 'ECB', type: 'block' } exports['aes-256-ecb'] = { cipher: 'AES', key: 256, iv: 0, mode: 'ECB', type: 'block' } exports['aes-128-cbc'] = { cipher: 'AES', key: 128, iv: 16, mode: 'CBC', type: 'block' } exports['aes-192-cbc'] = { cipher: 'AES', key: 192, iv: 16, mode: 'CBC', type: 'block' } exports['aes-256-cbc'] = { cipher: 'AES', key: 256, iv: 16, mode: 'CBC', type: 'block' } exports['aes128'] = exports['aes-128-cbc'] exports['aes192'] = exports['aes-192-cbc'] exports['aes256'] = exports['aes-256-cbc'] exports['aes-128-cfb'] = { cipher: 'AES', key: 128, iv: 16, mode: 'CFB', type: 'stream' } exports['aes-192-cfb'] = { cipher: 'AES', key: 192, iv: 16, mode: 'CFB', type: 'stream' } exports['aes-256-cfb'] = { cipher: 'AES', key: 256, iv: 16, mode: 'CFB', type: 'stream' } exports['aes-128-cfb8'] = { cipher: 'AES', key: 128, iv: 16, mode: 'CFB8', type: 'stream' } exports['aes-192-cfb8'] = { cipher: 'AES', key: 192, iv: 16, mode: 'CFB8', type: 'stream' } exports['aes-256-cfb8'] = { cipher: 'AES', key: 256, iv: 16, mode: 'CFB8', type: 'stream' } exports['aes-128-cfb1'] = { cipher: 'AES', key: 128, iv: 16, mode: 'CFB1', type: 'stream' } exports['aes-192-cfb1'] = { cipher: 'AES', key: 192, iv: 16, mode: 'CFB1', type: 'stream' } exports['aes-256-cfb1'] = { cipher: 'AES', key: 256, iv: 16, mode: 'CFB1', type: 'stream' } exports['aes-128-ofb'] = { cipher: 'AES', key: 128, iv: 16, mode: 'OFB', type: 'stream' } exports['aes-192-ofb'] = { cipher: 'AES', key: 192, iv: 16, mode: 'OFB', type: 'stream' } exports['aes-256-ofb'] = { cipher: 'AES', key: 256, iv: 16, mode: 'OFB', type: 'stream' } exports['aes-128-ctr'] = { cipher: 'AES', key: 128, iv: 16, mode: 'CTR', type: 'stream' } exports['aes-192-ctr'] = { cipher: 'AES', key: 192, iv: 16, mode: 'CTR', type: 'stream' } exports['aes-256-ctr'] = { cipher: 'AES', key: 256, iv: 16, mode: 'CTR', type: 'stream' } exports['aes-128-gcm'] = { cipher: 'AES', key: 128, iv: 12, mode: 'GCM', type: 'auth' } exports['aes-192-gcm'] = { cipher: 'AES', key: 192, iv: 12, mode: 'GCM', type: 'auth' } exports['aes-256-gcm'] = { cipher: 'AES', key: 256, iv: 12, mode: 'GCM', type: 'auth' } },{}],28:[function(require,module,exports){ var xor = require('buffer-xor') exports.encrypt = function (self, block) { var data = xor(block, self._prev) self._prev = self._cipher.encryptBlock(data) return self._prev } exports.decrypt = function (self, block) { var pad = self._prev self._prev = block var out = self._cipher.decryptBlock(block) return xor(out, pad) } },{"buffer-xor":48}],29:[function(require,module,exports){ (function (Buffer){ var xor = require('buffer-xor') exports.encrypt = function (self, data, decrypt) { var out = new Buffer('') var len while (data.length) { if (self._cache.length === 0) { self._cache = self._cipher.encryptBlock(self._prev) self._prev = new Buffer('') } if (self._cache.length <= data.length) { len = self._cache.length out = Buffer.concat([out, encryptStart(self, data.slice(0, len), decrypt)]) data = data.slice(len) } else { out = Buffer.concat([out, encryptStart(self, data, decrypt)]) break } } return out } function encryptStart (self, data, decrypt) { var len = data.length var out = xor(data, self._cache) self._cache = self._cache.slice(len) self._prev = Buffer.concat([self._prev, decrypt ? data : out]) return out } }).call(this,require("buffer").Buffer) },{"buffer":49,"buffer-xor":48}],30:[function(require,module,exports){ (function (Buffer){ function encryptByte (self, byteParam, decrypt) { var pad var i = -1 var len = 8 var out = 0 var bit, value while (++i < len) { pad = self._cipher.encryptBlock(self._prev) bit = (byteParam & (1 << (7 - i))) ? 0x80 : 0 value = pad[0] ^ bit out += ((value & 0x80) >> (i % 8)) self._prev = shiftIn(self._prev, decrypt ? bit : value) } return out } exports.encrypt = function (self, chunk, decrypt) { var len = chunk.length var out = new Buffer(len) var i = -1 while (++i < len) { out[i] = encryptByte(self, chunk[i], decrypt) } return out } function shiftIn (buffer, value) { var len = buffer.length var i = -1 var out = new Buffer(buffer.length) buffer = Buffer.concat([buffer, new Buffer([value])]) while (++i < len) { out[i] = buffer[i] << 1 | buffer[i + 1] >> (7) } return out } }).call(this,require("buffer").Buffer) },{"buffer":49}],31:[function(require,module,exports){ (function (Buffer){ function encryptByte (self, byteParam, decrypt) { var pad = self._cipher.encryptBlock(self._prev) var out = pad[0] ^ byteParam self._prev = Buffer.concat([self._prev.slice(1), new Buffer([decrypt ? byteParam : out])]) return out } exports.encrypt = function (self, chunk, decrypt) { var len = chunk.length var out = new Buffer(len) var i = -1 while (++i < len) { out[i] = encryptByte(self, chunk[i], decrypt) } return out } }).call(this,require("buffer").Buffer) },{"buffer":49}],32:[function(require,module,exports){ (function (Buffer){ var xor = require('buffer-xor') function incr32 (iv) { var len = iv.length var item while (len--) { item = iv.readUInt8(len) if (item === 255) { iv.writeUInt8(0, len) } else { item++ iv.writeUInt8(item, len) break } } } function getBlock (self) { var out = self._cipher.encryptBlock(self._prev) incr32(self._prev) return out } exports.encrypt = function (self, chunk) { while (self._cache.length < chunk.length) { self._cache = Buffer.concat([self._cache, getBlock(self)]) } var pad = self._cache.slice(0, chunk.length) self._cache = self._cache.slice(chunk.length) return xor(chunk, pad) } }).call(this,require("buffer").Buffer) },{"buffer":49,"buffer-xor":48}],33:[function(require,module,exports){ exports.encrypt = function (self, block) { return self._cipher.encryptBlock(block) } exports.decrypt = function (self, block) { return self._cipher.decryptBlock(block) } },{}],34:[function(require,module,exports){ (function (Buffer){ var xor = require('buffer-xor') function getBlock (self) { self._prev = self._cipher.encryptBlock(self._prev) return self._prev } exports.encrypt = function (self, chunk) { while (self._cache.length < chunk.length) { self._cache = Buffer.concat([self._cache, getBlock(self)]) } var pad = self._cache.slice(0, chunk.length) self._cache = self._cache.slice(chunk.length) return xor(chunk, pad) } }).call(this,require("buffer").Buffer) },{"buffer":49,"buffer-xor":48}],35:[function(require,module,exports){ (function (Buffer){ var aes = require('./aes') var Transform = require('cipher-base') var inherits = require('inherits') inherits(StreamCipher, Transform) module.exports = StreamCipher function StreamCipher (mode, key, iv, decrypt) { if (!(this instanceof StreamCipher)) { return new StreamCipher(mode, key, iv) } Transform.call(this) this._cipher = new aes.AES(key) this._prev = new Buffer(iv.length) this._cache = new Buffer('') this._secCache = new Buffer('') this._decrypt = decrypt iv.copy(this._prev) this._mode = mode } StreamCipher.prototype._update = function (chunk) { return this._mode.encrypt(this, chunk, this._decrypt) } StreamCipher.prototype._final = function () { this._cipher.scrub() } }).call(this,require("buffer").Buffer) },{"./aes":21,"buffer":49,"cipher-base":51,"inherits":97}],36:[function(require,module,exports){ var ebtk = require('evp_bytestokey') var aes = require('browserify-aes/browser') var DES = require('browserify-des') var desModes = require('browserify-des/modes') var aesModes = require('browserify-aes/modes') function createCipher (suite, password) { var keyLen, ivLen suite = suite.toLowerCase() if (aesModes[suite]) { keyLen = aesModes[suite].key ivLen = aesModes[suite].iv } else if (desModes[suite]) { keyLen = desModes[suite].key * 8 ivLen = desModes[suite].iv } else { throw new TypeError('invalid suite type') } var keys = ebtk(password, false, keyLen, ivLen) return createCipheriv(suite, keys.key, keys.iv) } function createDecipher (suite, password) { var keyLen, ivLen suite = suite.toLowerCase() if (aesModes[suite]) { keyLen = aesModes[suite].key ivLen = aesModes[suite].iv } else if (desModes[suite]) { keyLen = desModes[suite].key * 8 ivLen = desModes[suite].iv } else { throw new TypeError('invalid suite type') } var keys = ebtk(password, false, keyLen, ivLen) return createDecipheriv(suite, keys.key, keys.iv) } function createCipheriv (suite, key, iv) { suite = suite.toLowerCase() if (aesModes[suite]) { return aes.createCipheriv(suite, key, iv) } else if (desModes[suite]) { return new DES({ key: key, iv: iv, mode: suite }) } else { throw new TypeError('invalid suite type') } } function createDecipheriv (suite, key, iv) { suite = suite.toLowerCase() if (aesModes[suite]) { return aes.createDecipheriv(suite, key, iv) } else if (desModes[suite]) { return new DES({ key: key, iv: iv, mode: suite, decrypt: true }) } else { throw new TypeError('invalid suite type') } } exports.createCipher = exports.Cipher = createCipher exports.createCipheriv = exports.Cipheriv = createCipheriv exports.createDecipher = exports.Decipher = createDecipher exports.createDecipheriv = exports.Decipheriv = createDecipheriv function getCiphers () { return Object.keys(desModes).concat(aes.getCiphers()) } exports.listCiphers = exports.getCiphers = getCiphers },{"browserify-aes/browser":23,"browserify-aes/modes":27,"browserify-des":37,"browserify-des/modes":38,"evp_bytestokey":87}],37:[function(require,module,exports){ (function (Buffer){ var CipherBase = require('cipher-base') var des = require('des.js') var inherits = require('inherits') var modes = { 'des-ede3-cbc': des.CBC.instantiate(des.EDE), 'des-ede3': des.EDE, 'des-ede-cbc': des.CBC.instantiate(des.EDE), 'des-ede': des.EDE, 'des-cbc': des.CBC.instantiate(des.DES), 'des-ecb': des.DES } modes.des = modes['des-cbc'] modes.des3 = modes['des-ede3-cbc'] module.exports = DES inherits(DES, CipherBase) function DES (opts) { CipherBase.call(this) var modeName = opts.mode.toLowerCase() var mode = modes[modeName] var type if (opts.decrypt) { type = 'decrypt' } else { type = 'encrypt' } var key = opts.key if (modeName === 'des-ede' || modeName === 'des-ede-cbc') { key = Buffer.concat([key, key.slice(0, 8)]) } var iv = opts.iv this._des = mode.create({ key: key, iv: iv, type: type }) } DES.prototype._update = function (data) { return new Buffer(this._des.update(data)) } DES.prototype._final = function () { return new Buffer(this._des.final()) } }).call(this,require("buffer").Buffer) },{"buffer":49,"cipher-base":51,"des.js":59,"inherits":97}],38:[function(require,module,exports){ exports['des-ecb'] = { key: 8, iv: 0 } exports['des-cbc'] = exports.des = { key: 8, iv: 8 } exports['des-ede3-cbc'] = exports.des3 = { key: 24, iv: 8 } exports['des-ede3'] = { key: 24, iv: 0 } exports['des-ede-cbc'] = { key: 16, iv: 8 } exports['des-ede'] = { key: 16, iv: 0 } },{}],39:[function(require,module,exports){ (function (Buffer){ var bn = require('bn.js'); var randomBytes = require('randombytes'); module.exports = crt; function blind(priv) { var r = getr(priv); var blinder = r.toRed(bn.mont(priv.modulus)) .redPow(new bn(priv.publicExponent)).fromRed(); return { blinder: blinder, unblinder:r.invm(priv.modulus) }; } function crt(msg, priv) { var blinds = blind(priv); var len = priv.modulus.byteLength(); var mod = bn.mont(priv.modulus); var blinded = new bn(msg).mul(blinds.blinder).umod(priv.modulus); var c1 = blinded.toRed(bn.mont(priv.prime1)); var c2 = blinded.toRed(bn.mont(priv.prime2)); var qinv = priv.coefficient; var p = priv.prime1; var q = priv.prime2; var m1 = c1.redPow(priv.exponent1); var m2 = c2.redPow(priv.exponent2); m1 = m1.fromRed(); m2 = m2.fromRed(); var h = m1.isub(m2).imul(qinv).umod(p); h.imul(q); m2.iadd(h); return new Buffer(m2.imul(blinds.unblinder).umod(priv.modulus).toArray(false, len)); } crt.getr = getr; function getr(priv) { var len = priv.modulus.byteLength(); var r = new bn(randomBytes(len)); while (r.cmp(priv.modulus) >= 0 || !r.umod(priv.prime1) || !r.umod(priv.prime2)) { r = new bn(randomBytes(len)); } return r; } }).call(this,require("buffer").Buffer) },{"bn.js":18,"buffer":49,"randombytes":131}],40:[function(require,module,exports){ (function (Buffer){ 'use strict' exports['RSA-SHA224'] = exports.sha224WithRSAEncryption = { sign: 'rsa', hash: 'sha224', id: new Buffer('302d300d06096086480165030402040500041c', 'hex') } exports['RSA-SHA256'] = exports.sha256WithRSAEncryption = { sign: 'rsa', hash: 'sha256', id: new Buffer('3031300d060960864801650304020105000420', 'hex') } exports['RSA-SHA384'] = exports.sha384WithRSAEncryption = { sign: 'rsa', hash: 'sha384', id: new Buffer('3041300d060960864801650304020205000430', 'hex') } exports['RSA-SHA512'] = exports.sha512WithRSAEncryption = { sign: 'rsa', hash: 'sha512', id: new Buffer('3051300d060960864801650304020305000440', 'hex') } exports['RSA-SHA1'] = { sign: 'rsa', hash: 'sha1', id: new Buffer('3021300906052b0e03021a05000414', 'hex') } exports['ecdsa-with-SHA1'] = { sign: 'ecdsa', hash: 'sha1', id: new Buffer('', 'hex') } exports.DSA = exports['DSA-SHA1'] = exports['DSA-SHA'] = { sign: 'dsa', hash: 'sha1', id: new Buffer('', 'hex') } exports['DSA-SHA224'] = exports['DSA-WITH-SHA224'] = { sign: 'dsa', hash: 'sha224', id: new Buffer('', 'hex') } exports['DSA-SHA256'] = exports['DSA-WITH-SHA256'] = { sign: 'dsa', hash: 'sha256', id: new Buffer('', 'hex') } exports['DSA-SHA384'] = exports['DSA-WITH-SHA384'] = { sign: 'dsa', hash: 'sha384', id: new Buffer('', 'hex') } exports['DSA-SHA512'] = exports['DSA-WITH-SHA512'] = { sign: 'dsa', hash: 'sha512', id: new Buffer('', 'hex') } exports['DSA-RIPEMD160'] = { sign: 'dsa', hash: 'rmd160', id: new Buffer('', 'hex') } exports['RSA-RIPEMD160'] = exports.ripemd160WithRSA = { sign: 'rsa', hash: 'rmd160', id: new Buffer('3021300906052b2403020105000414', 'hex') } exports['RSA-MD5'] = exports.md5WithRSAEncryption = { sign: 'rsa', hash: 'md5', id: new Buffer('3020300c06082a864886f70d020505000410', 'hex') } }).call(this,require("buffer").Buffer) },{"buffer":49}],41:[function(require,module,exports){ (function (Buffer){ var _algos = require('./algos') var createHash = require('create-hash') var inherits = require('inherits') var sign = require('./sign') var stream = require('stream') var verify = require('./verify') var algos = {} Object.keys(_algos).forEach(function (key) { algos[key] = algos[key.toLowerCase()] = _algos[key] }) function Sign (algorithm) { stream.Writable.call(this) var data = algos[algorithm] if (!data) { throw new Error('Unknown message digest') } this._hashType = data.hash this._hash = createHash(data.hash) this._tag = data.id this._signType = data.sign } inherits(Sign, stream.Writable) Sign.prototype._write = function _write (data, _, done) { this._hash.update(data) done() } Sign.prototype.update = function update (data, enc) { if (typeof data === 'string') { data = new Buffer(data, enc) } this._hash.update(data) return this } Sign.prototype.sign = function signMethod (key, enc) { this.end() var hash = this._hash.digest() var sig = sign(Buffer.concat([this._tag, hash]), key, this._hashType, this._signType) return enc ? sig.toString(enc) : sig } function Verify (algorithm) { stream.Writable.call(this) var data = algos[algorithm] if (!data) { throw new Error('Unknown message digest') } this._hash = createHash(data.hash) this._tag = data.id this._signType = data.sign } inherits(Verify, stream.Writable) Verify.prototype._write = function _write (data, _, done) { this._hash.update(data) done() } Verify.prototype.update = function update (data, enc) { if (typeof data === 'string') { data = new Buffer(data, enc) } this._hash.update(data) return this } Verify.prototype.verify = function verifyMethod (key, sig, enc) { if (typeof sig === 'string') { sig = new Buffer(sig, enc) } this.end() var hash = this._hash.digest() return verify(sig, Buffer.concat([this._tag, hash]), key, this._signType) } function createSign (algorithm) { return new Sign(algorithm) } function createVerify (algorithm) { return new Verify(algorithm) } module.exports = { Sign: createSign, Verify: createVerify, createSign: createSign, createVerify: createVerify } }).call(this,require("buffer").Buffer) },{"./algos":40,"./sign":43,"./verify":44,"buffer":49,"create-hash":54,"inherits":97,"stream":152}],42:[function(require,module,exports){ 'use strict' exports['1.3.132.0.10'] = 'secp256k1' exports['1.3.132.0.33'] = 'p224' exports['1.2.840.10045.3.1.1'] = 'p192' exports['1.2.840.10045.3.1.7'] = 'p256' exports['1.3.132.0.34'] = 'p384' exports['1.3.132.0.35'] = 'p521' },{}],43:[function(require,module,exports){ (function (Buffer){ // much of this based on https://github.com/indutny/self-signed/blob/gh-pages/lib/rsa.js var createHmac = require('create-hmac') var crt = require('browserify-rsa') var curves = require('./curves') var elliptic = require('elliptic') var parseKeys = require('parse-asn1') var BN = require('bn.js') var EC = elliptic.ec function sign (hash, key, hashType, signType) { var priv = parseKeys(key) if (priv.curve) { if (signType !== 'ecdsa') throw new Error('wrong private key type') return ecSign(hash, priv) } else if (priv.type === 'dsa') { if (signType !== 'dsa') { throw new Error('wrong private key type') } return dsaSign(hash, priv, hashType) } else { if (signType !== 'rsa') throw new Error('wrong private key type') } var len = priv.modulus.byteLength() var pad = [ 0, 1 ] while (hash.length + pad.length + 1 < len) { pad.push(0xff) } pad.push(0x00) var i = -1 while (++i < hash.length) { pad.push(hash[i]) } var out = crt(pad, priv) return out } function ecSign (hash, priv) { var curveId = curves[priv.curve.join('.')] if (!curveId) throw new Error('unknown curve ' + priv.curve.join('.')) var curve = new EC(curveId) var key = curve.genKeyPair() key._importPrivate(priv.privateKey) var out = key.sign(hash) return new Buffer(out.toDER()) } function dsaSign (hash, priv, algo) { var x = priv.params.priv_key var p = priv.params.p var q = priv.params.q var g = priv.params.g var r = new BN(0) var k var H = bits2int(hash, q).mod(q) var s = false var kv = getKey(x, q, hash, algo) while (s === false) { k = makeKey(q, kv, algo) r = makeR(g, k, p, q) s = k.invm(q).imul(H.add(x.mul(r))).mod(q) if (!s.cmpn(0)) { s = false r = new BN(0) } } return toDER(r, s) } function toDER (r, s) { r = r.toArray() s = s.toArray() // Pad values if (r[0] & 0x80) { r = [ 0 ].concat(r) } // Pad values if (s[0] & 0x80) { s = [0].concat(s) } var total = r.length + s.length + 4 var res = [ 0x30, total, 0x02, r.length ] res = res.concat(r, [ 0x02, s.length ], s) return new Buffer(res) } function getKey (x, q, hash, algo) { x = new Buffer(x.toArray()) if (x.length < q.byteLength()) { var zeros = new Buffer(q.byteLength() - x.length) zeros.fill(0) x = Buffer.concat([zeros, x]) } var hlen = hash.length var hbits = bits2octets(hash, q) var v = new Buffer(hlen) v.fill(1) var k = new Buffer(hlen) k.fill(0) k = createHmac(algo, k) .update(v) .update(new Buffer([0])) .update(x) .update(hbits) .digest() v = createHmac(algo, k) .update(v) .digest() k = createHmac(algo, k) .update(v) .update(new Buffer([1])) .update(x) .update(hbits) .digest() v = createHmac(algo, k) .update(v) .digest() return { k: k, v: v } } function bits2int (obits, q) { var bits = new BN(obits) var shift = (obits.length << 3) - q.bitLength() if (shift > 0) { bits.ishrn(shift) } return bits } function bits2octets (bits, q) { bits = bits2int(bits, q) bits = bits.mod(q) var out = new Buffer(bits.toArray()) if (out.length < q.byteLength()) { var zeros = new Buffer(q.byteLength() - out.length) zeros.fill(0) out = Buffer.concat([zeros, out]) } return out } function makeKey (q, kv, algo) { var t, k do { t = new Buffer('') while (t.length * 8 < q.bitLength()) { kv.v = createHmac(algo, kv.k) .update(kv.v) .digest() t = Buffer.concat([t, kv.v]) } k = bits2int(t, q) kv.k = createHmac(algo, kv.k) .update(kv.v) .update(new Buffer([0])) .digest() kv.v = createHmac(algo, kv.k) .update(kv.v) .digest() } while (k.cmp(q) !== -1) return k } function makeR (g, k, p, q) { return g.toRed(BN.mont(p)).redPow(k).fromRed().mod(q) } module.exports = sign module.exports.getKey = getKey module.exports.makeKey = makeKey }).call(this,require("buffer").Buffer) },{"./curves":42,"bn.js":18,"browserify-rsa":39,"buffer":49,"create-hmac":57,"elliptic":69,"parse-asn1":116}],44:[function(require,module,exports){ (function (Buffer){ // much of this based on https://github.com/indutny/self-signed/blob/gh-pages/lib/rsa.js var curves = require('./curves') var elliptic = require('elliptic') var parseKeys = require('parse-asn1') var BN = require('bn.js') var EC = elliptic.ec function verify (sig, hash, key, signType) { var pub = parseKeys(key) if (pub.type === 'ec') { if (signType !== 'ecdsa') { throw new Error('wrong public key type') } return ecVerify(sig, hash, pub) } else if (pub.type === 'dsa') { if (signType !== 'dsa') { throw new Error('wrong public key type') } return dsaVerify(sig, hash, pub) } else { if (signType !== 'rsa') { throw new Error('wrong public key type') } } var len = pub.modulus.byteLength() var pad = [ 1 ] var padNum = 0 while (hash.length + pad.length + 2 < len) { pad.push(0xff) padNum++ } pad.push(0x00) var i = -1 while (++i < hash.length) { pad.push(hash[i]) } pad = new Buffer(pad) var red = BN.mont(pub.modulus) sig = new BN(sig).toRed(red) sig = sig.redPow(new BN(pub.publicExponent)) sig = new Buffer(sig.fromRed().toArray()) var out = 0 if (padNum < 8) { out = 1 } len = Math.min(sig.length, pad.length) if (sig.length !== pad.length) { out = 1 } i = -1 while (++i < len) { out |= (sig[i] ^ pad[i]) } return out === 0 } function ecVerify (sig, hash, pub) { var curveId = curves[pub.data.algorithm.curve.join('.')] if (!curveId) throw new Error('unknown curve ' + pub.data.algorithm.curve.join('.')) var curve = new EC(curveId) var pubkey = pub.data.subjectPrivateKey.data return curve.verify(hash, sig, pubkey) } function dsaVerify (sig, hash, pub) { var p = pub.data.p var q = pub.data.q var g = pub.data.g var y = pub.data.pub_key var unpacked = parseKeys.signature.decode(sig, 'der') var s = unpacked.s var r = unpacked.r checkValue(s, q) checkValue(r, q) var montp = BN.mont(p) var w = s.invm(q) var v = g.toRed(montp) .redPow(new BN(hash).mul(w).mod(q)) .fromRed() .mul( y.toRed(montp) .redPow(r.mul(w).mod(q)) .fromRed() ).mod(p).mod(q) return !v.cmp(r) } function checkValue (b, q) { if (b.cmpn(0) <= 0) { throw new Error('invalid sig') } if (b.cmp(q) >= q) { throw new Error('invalid sig') } } module.exports = verify }).call(this,require("buffer").Buffer) },{"./curves":42,"bn.js":18,"buffer":49,"elliptic":69,"parse-asn1":116}],45:[function(require,module,exports){ (function (process,Buffer){ var msg = require('pako/lib/zlib/messages'); var zstream = require('pako/lib/zlib/zstream'); var zlib_deflate = require('pako/lib/zlib/deflate.js'); var zlib_inflate = require('pako/lib/zlib/inflate.js'); var constants = require('pako/lib/zlib/constants'); for (var key in constants) { exports[key] = constants[key]; } // zlib modes exports.NONE = 0; exports.DEFLATE = 1; exports.INFLATE = 2; exports.GZIP = 3; exports.GUNZIP = 4; exports.DEFLATERAW = 5; exports.INFLATERAW = 6; exports.UNZIP = 7; /** * Emulate Node's zlib C++ layer for use by the JS layer in index.js */ function Zlib(mode) { if (mode < exports.DEFLATE || mode > exports.UNZIP) throw new TypeError("Bad argument"); this.mode = mode; this.init_done = false; this.write_in_progress = false; this.pending_close = false; this.windowBits = 0; this.level = 0; this.memLevel = 0; this.strategy = 0; this.dictionary = null; } Zlib.prototype.init = function(windowBits, level, memLevel, strategy, dictionary) { this.windowBits = windowBits; this.level = level; this.memLevel = memLevel; this.strategy = strategy; // dictionary not supported. if (this.mode === exports.GZIP || this.mode === exports.GUNZIP) this.windowBits += 16; if (this.mode === exports.UNZIP) this.windowBits += 32; if (this.mode === exports.DEFLATERAW || this.mode === exports.INFLATERAW) this.windowBits = -this.windowBits; this.strm = new zstream(); switch (this.mode) { case exports.DEFLATE: case exports.GZIP: case exports.DEFLATERAW: var status = zlib_deflate.deflateInit2( this.strm, this.level, exports.Z_DEFLATED, this.windowBits, this.memLevel, this.strategy ); break; case exports.INFLATE: case exports.GUNZIP: case exports.INFLATERAW: case exports.UNZIP: var status = zlib_inflate.inflateInit2( this.strm, this.windowBits ); break; default: throw new Error("Unknown mode " + this.mode); } if (status !== exports.Z_OK) { this._error(status); return; } this.write_in_progress = false; this.init_done = true; }; Zlib.prototype.params = function() { throw new Error("deflateParams Not supported"); }; Zlib.prototype._writeCheck = function() { if (!this.init_done) throw new Error("write before init"); if (this.mode === exports.NONE) throw new Error("already finalized"); if (this.write_in_progress) throw new Error("write already in progress"); if (this.pending_close) throw new Error("close is pending"); }; Zlib.prototype.write = function(flush, input, in_off, in_len, out, out_off, out_len) { this._writeCheck(); this.write_in_progress = true; var self = this; process.nextTick(function() { self.write_in_progress = false; var res = self._write(flush, input, in_off, in_len, out, out_off, out_len); self.callback(res[0], res[1]); if (self.pending_close) self.close(); }); return this; }; // set method for Node buffers, used by pako function bufferSet(data, offset) { for (var i = 0; i < data.length; i++) { this[offset + i] = data[i]; } } Zlib.prototype.writeSync = function(flush, input, in_off, in_len, out, out_off, out_len) { this._writeCheck(); return this._write(flush, input, in_off, in_len, out, out_off, out_len); }; Zlib.prototype._write = function(flush, input, in_off, in_len, out, out_off, out_len) { this.write_in_progress = true; if (flush !== exports.Z_NO_FLUSH && flush !== exports.Z_PARTIAL_FLUSH && flush !== exports.Z_SYNC_FLUSH && flush !== exports.Z_FULL_FLUSH && flush !== exports.Z_FINISH && flush !== exports.Z_BLOCK) { throw new Error("Invalid flush value"); } if (input == null) { input = new Buffer(0); in_len = 0; in_off = 0; } if (out._set) out.set = out._set; else out.set = bufferSet; var strm = this.strm; strm.avail_in = in_len; strm.input = input; strm.next_in = in_off; strm.avail_out = out_len; strm.output = out; strm.next_out = out_off; switch (this.mode) { case exports.DEFLATE: case exports.GZIP: case exports.DEFLATERAW: var status = zlib_deflate.deflate(strm, flush); break; case exports.UNZIP: case exports.INFLATE: case exports.GUNZIP: case exports.INFLATERAW: var status = zlib_inflate.inflate(strm, flush); break; default: throw new Error("Unknown mode " + this.mode); } if (status !== exports.Z_STREAM_END && status !== exports.Z_OK) { this._error(status); } this.write_in_progress = false; return [strm.avail_in, strm.avail_out]; }; Zlib.prototype.close = function() { if (this.write_in_progress) { this.pending_close = true; return; } this.pending_close = false; if (this.mode === exports.DEFLATE || this.mode === exports.GZIP || this.mode === exports.DEFLATERAW) { zlib_deflate.deflateEnd(this.strm); } else { zlib_inflate.inflateEnd(this.strm); } this.mode = exports.NONE; }; Zlib.prototype.reset = function() { switch (this.mode) { case exports.DEFLATE: case exports.DEFLATERAW: var status = zlib_deflate.deflateReset(this.strm); break; case exports.INFLATE: case exports.INFLATERAW: var status = zlib_inflate.inflateReset(this.strm); break; } if (status !== exports.Z_OK) { this._error(status); } }; Zlib.prototype._error = function(status) { this.onerror(msg[status] + ': ' + this.strm.msg, status); this.write_in_progress = false; if (this.pending_close) this.close(); }; exports.Zlib = Zlib; }).call(this,require('_process'),require("buffer").Buffer) },{"_process":120,"buffer":49,"pako/lib/zlib/constants":104,"pako/lib/zlib/deflate.js":106,"pako/lib/zlib/inflate.js":108,"pako/lib/zlib/messages":110,"pako/lib/zlib/zstream":112}],46:[function(require,module,exports){ (function (process,Buffer){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. var Transform = require('_stream_transform'); var binding = require('./binding'); var util = require('util'); var assert = require('assert').ok; // zlib doesn't provide these, so kludge them in following the same // const naming scheme zlib uses. binding.Z_MIN_WINDOWBITS = 8; binding.Z_MAX_WINDOWBITS = 15; binding.Z_DEFAULT_WINDOWBITS = 15; // fewer than 64 bytes per chunk is stupid. // technically it could work with as few as 8, but even 64 bytes // is absurdly low. Usually a MB or more is best. binding.Z_MIN_CHUNK = 64; binding.Z_MAX_CHUNK = Infinity; binding.Z_DEFAULT_CHUNK = (16 * 1024); binding.Z_MIN_MEMLEVEL = 1; binding.Z_MAX_MEMLEVEL = 9; binding.Z_DEFAULT_MEMLEVEL = 8; binding.Z_MIN_LEVEL = -1; binding.Z_MAX_LEVEL = 9; binding.Z_DEFAULT_LEVEL = binding.Z_DEFAULT_COMPRESSION; // expose all the zlib constants Object.keys(binding).forEach(function(k) { if (k.match(/^Z/)) exports[k] = binding[k]; }); // translation table for return codes. exports.codes = { Z_OK: binding.Z_OK, Z_STREAM_END: binding.Z_STREAM_END, Z_NEED_DICT: binding.Z_NEED_DICT, Z_ERRNO: binding.Z_ERRNO, Z_STREAM_ERROR: binding.Z_STREAM_ERROR, Z_DATA_ERROR: binding.Z_DATA_ERROR, Z_MEM_ERROR: binding.Z_MEM_ERROR, Z_BUF_ERROR: binding.Z_BUF_ERROR, Z_VERSION_ERROR: binding.Z_VERSION_ERROR }; Object.keys(exports.codes).forEach(function(k) { exports.codes[exports.codes[k]] = k; }); exports.Deflate = Deflate; exports.Inflate = Inflate; exports.Gzip = Gzip; exports.Gunzip = Gunzip; exports.DeflateRaw = DeflateRaw; exports.InflateRaw = InflateRaw; exports.Unzip = Unzip; exports.createDeflate = function(o) { return new Deflate(o); }; exports.createInflate = function(o) { return new Inflate(o); }; exports.createDeflateRaw = function(o) { return new DeflateRaw(o); }; exports.createInflateRaw = function(o) { return new InflateRaw(o); }; exports.createGzip = function(o) { return new Gzip(o); }; exports.createGunzip = function(o) { return new Gunzip(o); }; exports.createUnzip = function(o) { return new Unzip(o); }; // Convenience methods. // compress/decompress a string or buffer in one step. exports.deflate = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new Deflate(opts), buffer, callback); }; exports.deflateSync = function(buffer, opts) { return zlibBufferSync(new Deflate(opts), buffer); }; exports.gzip = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new Gzip(opts), buffer, callback); }; exports.gzipSync = function(buffer, opts) { return zlibBufferSync(new Gzip(opts), buffer); }; exports.deflateRaw = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new DeflateRaw(opts), buffer, callback); }; exports.deflateRawSync = function(buffer, opts) { return zlibBufferSync(new DeflateRaw(opts), buffer); }; exports.unzip = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new Unzip(opts), buffer, callback); }; exports.unzipSync = function(buffer, opts) { return zlibBufferSync(new Unzip(opts), buffer); }; exports.inflate = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new Inflate(opts), buffer, callback); }; exports.inflateSync = function(buffer, opts) { return zlibBufferSync(new Inflate(opts), buffer); }; exports.gunzip = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new Gunzip(opts), buffer, callback); }; exports.gunzipSync = function(buffer, opts) { return zlibBufferSync(new Gunzip(opts), buffer); }; exports.inflateRaw = function(buffer, opts, callback) { if (typeof opts === 'function') { callback = opts; opts = {}; } return zlibBuffer(new InflateRaw(opts), buffer, callback); }; exports.inflateRawSync = function(buffer, opts) { return zlibBufferSync(new InflateRaw(opts), buffer); }; function zlibBuffer(engine, buffer, callback) { var buffers = []; var nread = 0; engine.on('error', onError); engine.on('end', onEnd); engine.end(buffer); flow(); function flow() { var chunk; while (null !== (chunk = engine.read())) { buffers.push(chunk); nread += chunk.length; } engine.once('readable', flow); } function onError(err) { engine.removeListener('end', onEnd); engine.removeListener('readable', flow); callback(err); } function onEnd() { var buf = Buffer.concat(buffers, nread); buffers = []; callback(null, buf); engine.close(); } } function zlibBufferSync(engine, buffer) { if (typeof buffer === 'string') buffer = new Buffer(buffer); if (!Buffer.isBuffer(buffer)) throw new TypeError('Not a string or buffer'); var flushFlag = binding.Z_FINISH; return engine._processChunk(buffer, flushFlag); } // generic zlib // minimal 2-byte header function Deflate(opts) { if (!(this instanceof Deflate)) return new Deflate(opts); Zlib.call(this, opts, binding.DEFLATE); } function Inflate(opts) { if (!(this instanceof Inflate)) return new Inflate(opts); Zlib.call(this, opts, binding.INFLATE); } // gzip - bigger header, same deflate compression function Gzip(opts) { if (!(this instanceof Gzip)) return new Gzip(opts); Zlib.call(this, opts, binding.GZIP); } function Gunzip(opts) { if (!(this instanceof Gunzip)) return new Gunzip(opts); Zlib.call(this, opts, binding.GUNZIP); } // raw - no header function DeflateRaw(opts) { if (!(this instanceof DeflateRaw)) return new DeflateRaw(opts); Zlib.call(this, opts, binding.DEFLATERAW); } function InflateRaw(opts) { if (!(this instanceof InflateRaw)) return new InflateRaw(opts); Zlib.call(this, opts, binding.INFLATERAW); } // auto-detect header. function Unzip(opts) { if (!(this instanceof Unzip)) return new Unzip(opts); Zlib.call(this, opts, binding.UNZIP); } // the Zlib class they all inherit from // This thing manages the queue of requests, and returns // true or false if there is anything in the queue when // you call the .write() method. function Zlib(opts, mode) { this._opts = opts = opts || {}; this._chunkSize = opts.chunkSize || exports.Z_DEFAULT_CHUNK; Transform.call(this, opts); if (opts.flush) { if (opts.flush !== binding.Z_NO_FLUSH && opts.flush !== binding.Z_PARTIAL_FLUSH && opts.flush !== binding.Z_SYNC_FLUSH && opts.flush !== binding.Z_FULL_FLUSH && opts.flush !== binding.Z_FINISH && opts.flush !== binding.Z_BLOCK) { throw new Error('Invalid flush flag: ' + opts.flush); } } this._flushFlag = opts.flush || binding.Z_NO_FLUSH; if (opts.chunkSize) { if (opts.chunkSize < exports.Z_MIN_CHUNK || opts.chunkSize > exports.Z_MAX_CHUNK) { throw new Error('Invalid chunk size: ' + opts.chunkSize); } } if (opts.windowBits) { if (opts.windowBits < exports.Z_MIN_WINDOWBITS || opts.windowBits > exports.Z_MAX_WINDOWBITS) { throw new Error('Invalid windowBits: ' + opts.windowBits); } } if (opts.level) { if (opts.level < exports.Z_MIN_LEVEL || opts.level > exports.Z_MAX_LEVEL) { throw new Error('Invalid compression level: ' + opts.level); } } if (opts.memLevel) { if (opts.memLevel < exports.Z_MIN_MEMLEVEL || opts.memLevel > exports.Z_MAX_MEMLEVEL) { throw new Error('Invalid memLevel: ' + opts.memLevel); } } if (opts.strategy) { if (opts.strategy != exports.Z_FILTERED && opts.strategy != exports.Z_HUFFMAN_ONLY && opts.strategy != exports.Z_RLE && opts.strategy != exports.Z_FIXED && opts.strategy != exports.Z_DEFAULT_STRATEGY) { throw new Error('Invalid strategy: ' + opts.strategy); } } if (opts.dictionary) { if (!Buffer.isBuffer(opts.dictionary)) { throw new Error('Invalid dictionary: it should be a Buffer instance'); } } this._binding = new binding.Zlib(mode); var self = this; this._hadError = false; this._binding.onerror = function(message, errno) { // there is no way to cleanly recover. // continuing only obscures problems. self._binding = null; self._hadError = true; var error = new Error(message); error.errno = errno; error.code = exports.codes[errno]; self.emit('error', error); }; var level = exports.Z_DEFAULT_COMPRESSION; if (typeof opts.level === 'number') level = opts.level; var strategy = exports.Z_DEFAULT_STRATEGY; if (typeof opts.strategy === 'number') strategy = opts.strategy; this._binding.init(opts.windowBits || exports.Z_DEFAULT_WINDOWBITS, level, opts.memLevel || exports.Z_DEFAULT_MEMLEVEL, strategy, opts.dictionary); this._buffer = new Buffer(this._chunkSize); this._offset = 0; this._closed = false; this._level = level; this._strategy = strategy; this.once('end', this.close); } util.inherits(Zlib, Transform); Zlib.prototype.params = function(level, strategy, callback) { if (level < exports.Z_MIN_LEVEL || level > exports.Z_MAX_LEVEL) { throw new RangeError('Invalid compression level: ' + level); } if (strategy != exports.Z_FILTERED && strategy != exports.Z_HUFFMAN_ONLY && strategy != exports.Z_RLE && strategy != exports.Z_FIXED && strategy != exports.Z_DEFAULT_STRATEGY) { throw new TypeError('Invalid strategy: ' + strategy); } if (this._level !== level || this._strategy !== strategy) { var self = this; this.flush(binding.Z_SYNC_FLUSH, function() { self._binding.params(level, strategy); if (!self._hadError) { self._level = level; self._strategy = strategy; if (callback) callback(); } }); } else { process.nextTick(callback); } }; Zlib.prototype.reset = function() { return this._binding.reset(); }; // This is the _flush function called by the transform class, // internally, when the last chunk has been written. Zlib.prototype._flush = function(callback) { this._transform(new Buffer(0), '', callback); }; Zlib.prototype.flush = function(kind, callback) { var ws = this._writableState; if (typeof kind === 'function' || (kind === void 0 && !callback)) { callback = kind; kind = binding.Z_FULL_FLUSH; } if (ws.ended) { if (callback) process.nextTick(callback); } else if (ws.ending) { if (callback) this.once('end', callback); } else if (ws.needDrain) { var self = this; this.once('drain', function() { self.flush(callback); }); } else { this._flushFlag = kind; this.write(new Buffer(0), '', callback); } }; Zlib.prototype.close = function(callback) { if (callback) process.nextTick(callback); if (this._closed) return; this._closed = true; this._binding.close(); var self = this; process.nextTick(function() { self.emit('close'); }); }; Zlib.prototype._transform = function(chunk, encoding, cb) { var flushFlag; var ws = this._writableState; var ending = ws.ending || ws.ended; var last = ending && (!chunk || ws.length === chunk.length); if (!chunk === null && !Buffer.isBuffer(chunk)) return cb(new Error('invalid input')); // If it's the last chunk, or a final flush, we use the Z_FINISH flush flag. // If it's explicitly flushing at some other time, then we use // Z_FULL_FLUSH. Otherwise, use Z_NO_FLUSH for maximum compression // goodness. if (last) flushFlag = binding.Z_FINISH; else { flushFlag = this._flushFlag; // once we've flushed the last of the queue, stop flushing and // go back to the normal behavior. if (chunk.length >= ws.length) { this._flushFlag = this._opts.flush || binding.Z_NO_FLUSH; } } var self = this; this._processChunk(chunk, flushFlag, cb); }; Zlib.prototype._processChunk = function(chunk, flushFlag, cb) { var availInBefore = chunk && chunk.length; var availOutBefore = this._chunkSize - this._offset; var inOff = 0; var self = this; var async = typeof cb === 'function'; if (!async) { var buffers = []; var nread = 0; var error; this.on('error', function(er) { error = er; }); do { var res = this._binding.writeSync(flushFlag, chunk, // in inOff, // in_off availInBefore, // in_len this._buffer, // out this._offset, //out_off availOutBefore); // out_len } while (!this._hadError && callback(res[0], res[1])); if (this._hadError) { throw error; } var buf = Buffer.concat(buffers, nread); this.close(); return buf; } var req = this._binding.write(flushFlag, chunk, // in inOff, // in_off availInBefore, // in_len this._buffer, // out this._offset, //out_off availOutBefore); // out_len req.buffer = chunk; req.callback = callback; function callback(availInAfter, availOutAfter) { if (self._hadError) return; var have = availOutBefore - availOutAfter; assert(have >= 0, 'have should not go down'); if (have > 0) { var out = self._buffer.slice(self._offset, self._offset + have); self._offset += have; // serve some output to the consumer. if (async) { self.push(out); } else { buffers.push(out); nread += out.length; } } // exhausted the output buffer, or used all the input create a new one. if (availOutAfter === 0 || self._offset >= self._chunkSize) { availOutBefore = self._chunkSize; self._offset = 0; self._buffer = new Buffer(self._chunkSize); } if (availOutAfter === 0) { // Not actually done. Need to reprocess. // Also, update the availInBefore to the availInAfter value, // so that if we have to hit it a third (fourth, etc.) time, // it'll have the correct byte counts. inOff += (availInBefore - availInAfter); availInBefore = availInAfter; if (!async) return true; var newReq = self._binding.write(flushFlag, chunk, inOff, availInBefore, self._buffer, self._offset, self._chunkSize); newReq.callback = callback; // this same function newReq.buffer = chunk; return; } if (!async) return false; // finished with the chunk. cb(); } }; util.inherits(Deflate, Zlib); util.inherits(Inflate, Zlib); util.inherits(Gzip, Zlib); util.inherits(Gunzip, Zlib); util.inherits(DeflateRaw, Zlib); util.inherits(InflateRaw, Zlib); util.inherits(Unzip, Zlib); }).call(this,require('_process'),require("buffer").Buffer) },{"./binding":45,"_process":120,"_stream_transform":141,"assert":16,"buffer":49,"util":163}],47:[function(require,module,exports){ (function (global){ 'use strict'; var buffer = require('buffer'); var Buffer = buffer.Buffer; var SlowBuffer = buffer.SlowBuffer; var MAX_LEN = buffer.kMaxLength || 2147483647; exports.alloc = function alloc(size, fill, encoding) { if (typeof Buffer.alloc === 'function') { return Buffer.alloc(size, fill, encoding); } if (typeof encoding === 'number') { throw new TypeError('encoding must not be number'); } if (typeof size !== 'number') { throw new TypeError('size must be a number'); } if (size > MAX_LEN) { throw new RangeError('size is too large'); } var enc = encoding; var _fill = fill; if (_fill === undefined) { enc = undefined; _fill = 0; } var buf = new Buffer(size); if (typeof _fill === 'string') { var fillBuf = new Buffer(_fill, enc); var flen = fillBuf.length; var i = -1; while (++i < size) { buf[i] = fillBuf[i % flen]; } } else { buf.fill(_fill); } return buf; } exports.allocUnsafe = function allocUnsafe(size) { if (typeof Buffer.allocUnsafe === 'function') { return Buffer.allocUnsafe(size); } if (typeof size !== 'number') { throw new TypeError('size must be a number'); } if (size > MAX_LEN) { throw new RangeError('size is too large'); } return new Buffer(size); } exports.from = function from(value, encodingOrOffset, length) { if (typeof Buffer.from === 'function' && (!global.Uint8Array || Uint8Array.from !== Buffer.from)) { return Buffer.from(value, encodingOrOffset, length); } if (typeof value === 'number') { throw new TypeError('"value" argument must not be a number'); } if (typeof value === 'string') { return new Buffer(value, encodingOrOffset); } if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) { var offset = encodingOrOffset; if (arguments.length === 1) { return new Buffer(value); } if (typeof offset === 'undefined') { offset = 0; } var len = length; if (typeof len === 'undefined') { len = value.byteLength - offset; } if (offset >= value.byteLength) { throw new RangeError('\'offset\' is out of bounds'); } if (len > value.byteLength - offset) { throw new RangeError('\'length\' is out of bounds'); } return new Buffer(value.slice(offset, offset + len)); } if (Buffer.isBuffer(value)) { var out = new Buffer(value.length); value.copy(out, 0, 0, value.length); return out; } if (value) { if (Array.isArray(value) || (typeof ArrayBuffer !== 'undefined' && value.buffer instanceof ArrayBuffer) || 'length' in value) { return new Buffer(value); } if (value.type === 'Buffer' && Array.isArray(value.data)) { return new Buffer(value.data); } } throw new TypeError('First argument must be a string, Buffer, ' + 'ArrayBuffer, Array, or array-like object.'); } exports.allocUnsafeSlow = function allocUnsafeSlow(size) { if (typeof Buffer.allocUnsafeSlow === 'function') { return Buffer.allocUnsafeSlow(size); } if (typeof size !== 'number') { throw new TypeError('size must be a number'); } if (size >= MAX_LEN) { throw new RangeError('size is too large'); } return new SlowBuffer(size); } }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"buffer":49}],48:[function(require,module,exports){ (function (Buffer){ module.exports = function xor (a, b) { var length = Math.min(a.length, b.length) var buffer = new Buffer(length) for (var i = 0; i < length; ++i) { buffer[i] = a[i] ^ b[i] } return buffer } }).call(this,require("buffer").Buffer) },{"buffer":49}],49:[function(require,module,exports){ (function (global){ /*! * The buffer module from node.js, for the browser. * * @author Feross Aboukhadijeh * @license MIT */ /* eslint-disable no-proto */ 'use strict' var base64 = require('base64-js') var ieee754 = require('ieee754') var isArray = require('isarray') exports.Buffer = Buffer exports.SlowBuffer = SlowBuffer exports.INSPECT_MAX_BYTES = 50 /** * If `Buffer.TYPED_ARRAY_SUPPORT`: * === true Use Uint8Array implementation (fastest) * === false Use Object implementation (most compatible, even IE6) * * Browsers that support typed arrays are IE 10+, Firefox 4+, Chrome 7+, Safari 5.1+, * Opera 11.6+, iOS 4.2+. * * Due to various browser bugs, sometimes the Object implementation will be used even * when the browser supports typed arrays. * * Note: * * - Firefox 4-29 lacks support for adding new properties to `Uint8Array` instances, * See: https://bugzilla.mozilla.org/show_bug.cgi?id=695438. * * - Chrome 9-10 is missing the `TypedArray.prototype.subarray` function. * * - IE10 has a broken `TypedArray.prototype.subarray` function which returns arrays of * incorrect length in some situations. * We detect these buggy browsers and set `Buffer.TYPED_ARRAY_SUPPORT` to `false` so they * get the Object implementation, which is slower but behaves correctly. */ Buffer.TYPED_ARRAY_SUPPORT = global.TYPED_ARRAY_SUPPORT !== undefined ? global.TYPED_ARRAY_SUPPORT : typedArraySupport() /* * Export kMaxLength after typed array support is determined. */ exports.kMaxLength = kMaxLength() function typedArraySupport () { try { var arr = new Uint8Array(1) arr.__proto__ = {__proto__: Uint8Array.prototype, foo: function () { return 42 }} return arr.foo() === 42 && // typed array instances can be augmented typeof arr.subarray === 'function' && // chrome 9-10 lack `subarray` arr.subarray(1, 1).byteLength === 0 // ie10 has broken `subarray` } catch (e) { return false } } function kMaxLength () { return Buffer.TYPED_ARRAY_SUPPORT ? 0x7fffffff : 0x3fffffff } function createBuffer (that, length) { if (kMaxLength() < length) { throw new RangeError('Invalid typed array length') } if (Buffer.TYPED_ARRAY_SUPPORT) { // Return an augmented `Uint8Array` instance, for best performance that = new Uint8Array(length) that.__proto__ = Buffer.prototype } else { // Fallback: Return an object instance of the Buffer class if (that === null) { that = new Buffer(length) } that.length = length } return that } /** * The Buffer constructor returns instances of `Uint8Array` that have their * prototype changed to `Buffer.prototype`. Furthermore, `Buffer` is a subclass of * `Uint8Array`, so the returned instances will have all the node `Buffer` methods * and the `Uint8Array` methods. Square bracket notation works as expected -- it * returns a single octet. * * The `Uint8Array` prototype remains unmodified. */ function Buffer (arg, encodingOrOffset, length) { if (!Buffer.TYPED_ARRAY_SUPPORT && !(this instanceof Buffer)) { return new Buffer(arg, encodingOrOffset, length) } // Common case. if (typeof arg === 'number') { if (typeof encodingOrOffset === 'string') { throw new Error( 'If encoding is specified then the first argument must be a string' ) } return allocUnsafe(this, arg) } return from(this, arg, encodingOrOffset, length) } Buffer.poolSize = 8192 // not used by this implementation // TODO: Legacy, not needed anymore. Remove in next major version. Buffer._augment = function (arr) { arr.__proto__ = Buffer.prototype return arr } function from (that, value, encodingOrOffset, length) { if (typeof value === 'number') { throw new TypeError('"value" argument must not be a number') } if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) { return fromArrayBuffer(that, value, encodingOrOffset, length) } if (typeof value === 'string') { return fromString(that, value, encodingOrOffset) } return fromObject(that, value) } /** * Functionally equivalent to Buffer(arg, encoding) but throws a TypeError * if value is a number. * Buffer.from(str[, encoding]) * Buffer.from(array) * Buffer.from(buffer) * Buffer.from(arrayBuffer[, byteOffset[, length]]) **/ Buffer.from = function (value, encodingOrOffset, length) { return from(null, value, encodingOrOffset, length) } if (Buffer.TYPED_ARRAY_SUPPORT) { Buffer.prototype.__proto__ = Uint8Array.prototype Buffer.__proto__ = Uint8Array if (typeof Symbol !== 'undefined' && Symbol.species && Buffer[Symbol.species] === Buffer) { // Fix subarray() in ES2016. See: https://github.com/feross/buffer/pull/97 Object.defineProperty(Buffer, Symbol.species, { value: null, configurable: true }) } } function assertSize (size) { if (typeof size !== 'number') { throw new TypeError('"size" argument must be a number') } else if (size < 0) { throw new RangeError('"size" argument must not be negative') } } function alloc (that, size, fill, encoding) { assertSize(size) if (size <= 0) { return createBuffer(that, size) } if (fill !== undefined) { // Only pay attention to encoding if it's a string. This // prevents accidentally sending in a number that would // be interpretted as a start offset. return typeof encoding === 'string' ? createBuffer(that, size).fill(fill, encoding) : createBuffer(that, size).fill(fill) } return createBuffer(that, size) } /** * Creates a new filled Buffer instance. * alloc(size[, fill[, encoding]]) **/ Buffer.alloc = function (size, fill, encoding) { return alloc(null, size, fill, encoding) } function allocUnsafe (that, size) { assertSize(size) that = createBuffer(that, size < 0 ? 0 : checked(size) | 0) if (!Buffer.TYPED_ARRAY_SUPPORT) { for (var i = 0; i < size; ++i) { that[i] = 0 } } return that } /** * Equivalent to Buffer(num), by default creates a non-zero-filled Buffer instance. * */ Buffer.allocUnsafe = function (size) { return allocUnsafe(null, size) } /** * Equivalent to SlowBuffer(num), by default creates a non-zero-filled Buffer instance. */ Buffer.allocUnsafeSlow = function (size) { return allocUnsafe(null, size) } function fromString (that, string, encoding) { if (typeof encoding !== 'string' || encoding === '') { encoding = 'utf8' } if (!Buffer.isEncoding(encoding)) { throw new TypeError('"encoding" must be a valid string encoding') } var length = byteLength(string, encoding) | 0 that = createBuffer(that, length) var actual = that.write(string, encoding) if (actual !== length) { // Writing a hex string, for example, that contains invalid characters will // cause everything after the first invalid character to be ignored. (e.g. // 'abxxcd' will be treated as 'ab') that = that.slice(0, actual) } return that } function fromArrayLike (that, array) { var length = array.length < 0 ? 0 : checked(array.length) | 0 that = createBuffer(that, length) for (var i = 0; i < length; i += 1) { that[i] = array[i] & 255 } return that } function fromArrayBuffer (that, array, byteOffset, length) { array.byteLength // this throws if `array` is not a valid ArrayBuffer if (byteOffset < 0 || array.byteLength < byteOffset) { throw new RangeError('\'offset\' is out of bounds') } if (array.byteLength < byteOffset + (length || 0)) { throw new RangeError('\'length\' is out of bounds') } if (byteOffset === undefined && length === undefined) { array = new Uint8Array(array) } else if (length === undefined) { array = new Uint8Array(array, byteOffset) } else { array = new Uint8Array(array, byteOffset, length) } if (Buffer.TYPED_ARRAY_SUPPORT) { // Return an augmented `Uint8Array` instance, for best performance that = array that.__proto__ = Buffer.prototype } else { // Fallback: Return an object instance of the Buffer class that = fromArrayLike(that, array) } return that } function fromObject (that, obj) { if (Buffer.isBuffer(obj)) { var len = checked(obj.length) | 0 that = createBuffer(that, len) if (that.length === 0) { return that } obj.copy(that, 0, 0, len) return that } if (obj) { if ((typeof ArrayBuffer !== 'undefined' && obj.buffer instanceof ArrayBuffer) || 'length' in obj) { if (typeof obj.length !== 'number' || isnan(obj.length)) { return createBuffer(that, 0) } return fromArrayLike(that, obj) } if (obj.type === 'Buffer' && isArray(obj.data)) { return fromArrayLike(that, obj.data) } } throw new TypeError('First argument must be a string, Buffer, ArrayBuffer, Array, or array-like object.') } function checked (length) { // Note: cannot use `length < kMaxLength()` here because that fails when // length is NaN (which is otherwise coerced to zero.) if (length >= kMaxLength()) { throw new RangeError('Attempt to allocate Buffer larger than maximum ' + 'size: 0x' + kMaxLength().toString(16) + ' bytes') } return length | 0 } function SlowBuffer (length) { if (+length != length) { // eslint-disable-line eqeqeq length = 0 } return Buffer.alloc(+length) } Buffer.isBuffer = function isBuffer (b) { return !!(b != null && b._isBuffer) } Buffer.compare = function compare (a, b) { if (!Buffer.isBuffer(a) || !Buffer.isBuffer(b)) { throw new TypeError('Arguments must be Buffers') } if (a === b) return 0 var x = a.length var y = b.length for (var i = 0, len = Math.min(x, y); i < len; ++i) { if (a[i] !== b[i]) { x = a[i] y = b[i] break } } if (x < y) return -1 if (y < x) return 1 return 0 } Buffer.isEncoding = function isEncoding (encoding) { switch (String(encoding).toLowerCase()) { case 'hex': case 'utf8': case 'utf-8': case 'ascii': case 'latin1': case 'binary': case 'base64': case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': return true default: return false } } Buffer.concat = function concat (list, length) { if (!isArray(list)) { throw new TypeError('"list" argument must be an Array of Buffers') } if (list.length === 0) { return Buffer.alloc(0) } var i if (length === undefined) { length = 0 for (i = 0; i < list.length; ++i) { length += list[i].length } } var buffer = Buffer.allocUnsafe(length) var pos = 0 for (i = 0; i < list.length; ++i) { var buf = list[i] if (!Buffer.isBuffer(buf)) { throw new TypeError('"list" argument must be an Array of Buffers') } buf.copy(buffer, pos) pos += buf.length } return buffer } function byteLength (string, encoding) { if (Buffer.isBuffer(string)) { return string.length } if (typeof ArrayBuffer !== 'undefined' && typeof ArrayBuffer.isView === 'function' && (ArrayBuffer.isView(string) || string instanceof ArrayBuffer)) { return string.byteLength } if (typeof string !== 'string') { string = '' + string } var len = string.length if (len === 0) return 0 // Use a for loop to avoid recursion var loweredCase = false for (;;) { switch (encoding) { case 'ascii': case 'latin1': case 'binary': return len case 'utf8': case 'utf-8': case undefined: return utf8ToBytes(string).length case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': return len * 2 case 'hex': return len >>> 1 case 'base64': return base64ToBytes(string).length default: if (loweredCase) return utf8ToBytes(string).length // assume utf8 encoding = ('' + encoding).toLowerCase() loweredCase = true } } } Buffer.byteLength = byteLength function slowToString (encoding, start, end) { var loweredCase = false // No need to verify that "this.length <= MAX_UINT32" since it's a read-only // property of a typed array. // This behaves neither like String nor Uint8Array in that we set start/end // to their upper/lower bounds if the value passed is out of range. // undefined is handled specially as per ECMA-262 6th Edition, // Section 13.3.3.7 Runtime Semantics: KeyedBindingInitialization. if (start === undefined || start < 0) { start = 0 } // Return early if start > this.length. Done here to prevent potential uint32 // coercion fail below. if (start > this.length) { return '' } if (end === undefined || end > this.length) { end = this.length } if (end <= 0) { return '' } // Force coersion to uint32. This will also coerce falsey/NaN values to 0. end >>>= 0 start >>>= 0 if (end <= start) { return '' } if (!encoding) encoding = 'utf8' while (true) { switch (encoding) { case 'hex': return hexSlice(this, start, end) case 'utf8': case 'utf-8': return utf8Slice(this, start, end) case 'ascii': return asciiSlice(this, start, end) case 'latin1': case 'binary': return latin1Slice(this, start, end) case 'base64': return base64Slice(this, start, end) case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': return utf16leSlice(this, start, end) default: if (loweredCase) throw new TypeError('Unknown encoding: ' + encoding) encoding = (encoding + '').toLowerCase() loweredCase = true } } } // The property is used by `Buffer.isBuffer` and `is-buffer` (in Safari 5-7) to detect // Buffer instances. Buffer.prototype._isBuffer = true function swap (b, n, m) { var i = b[n] b[n] = b[m] b[m] = i } Buffer.prototype.swap16 = function swap16 () { var len = this.length if (len % 2 !== 0) { throw new RangeError('Buffer size must be a multiple of 16-bits') } for (var i = 0; i < len; i += 2) { swap(this, i, i + 1) } return this } Buffer.prototype.swap32 = function swap32 () { var len = this.length if (len % 4 !== 0) { throw new RangeError('Buffer size must be a multiple of 32-bits') } for (var i = 0; i < len; i += 4) { swap(this, i, i + 3) swap(this, i + 1, i + 2) } return this } Buffer.prototype.swap64 = function swap64 () { var len = this.length if (len % 8 !== 0) { throw new RangeError('Buffer size must be a multiple of 64-bits') } for (var i = 0; i < len; i += 8) { swap(this, i, i + 7) swap(this, i + 1, i + 6) swap(this, i + 2, i + 5) swap(this, i + 3, i + 4) } return this } Buffer.prototype.toString = function toString () { var length = this.length | 0 if (length === 0) return '' if (arguments.length === 0) return utf8Slice(this, 0, length) return slowToString.apply(this, arguments) } Buffer.prototype.equals = function equals (b) { if (!Buffer.isBuffer(b)) throw new TypeError('Argument must be a Buffer') if (this === b) return true return Buffer.compare(this, b) === 0 } Buffer.prototype.inspect = function inspect () { var str = '' var max = exports.INSPECT_MAX_BYTES if (this.length > 0) { str = this.toString('hex', 0, max).match(/.{2}/g).join(' ') if (this.length > max) str += ' ... ' } return '' } Buffer.prototype.compare = function compare (target, start, end, thisStart, thisEnd) { if (!Buffer.isBuffer(target)) { throw new TypeError('Argument must be a Buffer') } if (start === undefined) { start = 0 } if (end === undefined) { end = target ? target.length : 0 } if (thisStart === undefined) { thisStart = 0 } if (thisEnd === undefined) { thisEnd = this.length } if (start < 0 || end > target.length || thisStart < 0 || thisEnd > this.length) { throw new RangeError('out of range index') } if (thisStart >= thisEnd && start >= end) { return 0 } if (thisStart >= thisEnd) { return -1 } if (start >= end) { return 1 } start >>>= 0 end >>>= 0 thisStart >>>= 0 thisEnd >>>= 0 if (this === target) return 0 var x = thisEnd - thisStart var y = end - start var len = Math.min(x, y) var thisCopy = this.slice(thisStart, thisEnd) var targetCopy = target.slice(start, end) for (var i = 0; i < len; ++i) { if (thisCopy[i] !== targetCopy[i]) { x = thisCopy[i] y = targetCopy[i] break } } if (x < y) return -1 if (y < x) return 1 return 0 } // Finds either the first index of `val` in `buffer` at offset >= `byteOffset`, // OR the last index of `val` in `buffer` at offset <= `byteOffset`. // // Arguments: // - buffer - a Buffer to search // - val - a string, Buffer, or number // - byteOffset - an index into `buffer`; will be clamped to an int32 // - encoding - an optional encoding, relevant is val is a string // - dir - true for indexOf, false for lastIndexOf function bidirectionalIndexOf (buffer, val, byteOffset, encoding, dir) { // Empty buffer means no match if (buffer.length === 0) return -1 // Normalize byteOffset if (typeof byteOffset === 'string') { encoding = byteOffset byteOffset = 0 } else if (byteOffset > 0x7fffffff) { byteOffset = 0x7fffffff } else if (byteOffset < -0x80000000) { byteOffset = -0x80000000 } byteOffset = +byteOffset // Coerce to Number. if (isNaN(byteOffset)) { // byteOffset: it it's undefined, null, NaN, "foo", etc, search whole buffer byteOffset = dir ? 0 : (buffer.length - 1) } // Normalize byteOffset: negative offsets start from the end of the buffer if (byteOffset < 0) byteOffset = buffer.length + byteOffset if (byteOffset >= buffer.length) { if (dir) return -1 else byteOffset = buffer.length - 1 } else if (byteOffset < 0) { if (dir) byteOffset = 0 else return -1 } // Normalize val if (typeof val === 'string') { val = Buffer.from(val, encoding) } // Finally, search either indexOf (if dir is true) or lastIndexOf if (Buffer.isBuffer(val)) { // Special case: looking for empty string/buffer always fails if (val.length === 0) { return -1 } return arrayIndexOf(buffer, val, byteOffset, encoding, dir) } else if (typeof val === 'number') { val = val & 0xFF // Search for a byte value [0-255] if (Buffer.TYPED_ARRAY_SUPPORT && typeof Uint8Array.prototype.indexOf === 'function') { if (dir) { return Uint8Array.prototype.indexOf.call(buffer, val, byteOffset) } else { return Uint8Array.prototype.lastIndexOf.call(buffer, val, byteOffset) } } return arrayIndexOf(buffer, [ val ], byteOffset, encoding, dir) } throw new TypeError('val must be string, number or Buffer') } function arrayIndexOf (arr, val, byteOffset, encoding, dir) { var indexSize = 1 var arrLength = arr.length var valLength = val.length if (encoding !== undefined) { encoding = String(encoding).toLowerCase() if (encoding === 'ucs2' || encoding === 'ucs-2' || encoding === 'utf16le' || encoding === 'utf-16le') { if (arr.length < 2 || val.length < 2) { return -1 } indexSize = 2 arrLength /= 2 valLength /= 2 byteOffset /= 2 } } function read (buf, i) { if (indexSize === 1) { return buf[i] } else { return buf.readUInt16BE(i * indexSize) } } var i if (dir) { var foundIndex = -1 for (i = byteOffset; i < arrLength; i++) { if (read(arr, i) === read(val, foundIndex === -1 ? 0 : i - foundIndex)) { if (foundIndex === -1) foundIndex = i if (i - foundIndex + 1 === valLength) return foundIndex * indexSize } else { if (foundIndex !== -1) i -= i - foundIndex foundIndex = -1 } } } else { if (byteOffset + valLength > arrLength) byteOffset = arrLength - valLength for (i = byteOffset; i >= 0; i--) { var found = true for (var j = 0; j < valLength; j++) { if (read(arr, i + j) !== read(val, j)) { found = false break } } if (found) return i } } return -1 } Buffer.prototype.includes = function includes (val, byteOffset, encoding) { return this.indexOf(val, byteOffset, encoding) !== -1 } Buffer.prototype.indexOf = function indexOf (val, byteOffset, encoding) { return bidirectionalIndexOf(this, val, byteOffset, encoding, true) } Buffer.prototype.lastIndexOf = function lastIndexOf (val, byteOffset, encoding) { return bidirectionalIndexOf(this, val, byteOffset, encoding, false) } function hexWrite (buf, string, offset, length) { offset = Number(offset) || 0 var remaining = buf.length - offset if (!length) { length = remaining } else { length = Number(length) if (length > remaining) { length = remaining } } // must be an even number of digits var strLen = string.length if (strLen % 2 !== 0) throw new TypeError('Invalid hex string') if (length > strLen / 2) { length = strLen / 2 } for (var i = 0; i < length; ++i) { var parsed = parseInt(string.substr(i * 2, 2), 16) if (isNaN(parsed)) return i buf[offset + i] = parsed } return i } function utf8Write (buf, string, offset, length) { return blitBuffer(utf8ToBytes(string, buf.length - offset), buf, offset, length) } function asciiWrite (buf, string, offset, length) { return blitBuffer(asciiToBytes(string), buf, offset, length) } function latin1Write (buf, string, offset, length) { return asciiWrite(buf, string, offset, length) } function base64Write (buf, string, offset, length) { return blitBuffer(base64ToBytes(string), buf, offset, length) } function ucs2Write (buf, string, offset, length) { return blitBuffer(utf16leToBytes(string, buf.length - offset), buf, offset, length) } Buffer.prototype.write = function write (string, offset, length, encoding) { // Buffer#write(string) if (offset === undefined) { encoding = 'utf8' length = this.length offset = 0 // Buffer#write(string, encoding) } else if (length === undefined && typeof offset === 'string') { encoding = offset length = this.length offset = 0 // Buffer#write(string, offset[, length][, encoding]) } else if (isFinite(offset)) { offset = offset | 0 if (isFinite(length)) { length = length | 0 if (encoding === undefined) encoding = 'utf8' } else { encoding = length length = undefined } // legacy write(string, encoding, offset, length) - remove in v0.13 } else { throw new Error( 'Buffer.write(string, encoding, offset[, length]) is no longer supported' ) } var remaining = this.length - offset if (length === undefined || length > remaining) length = remaining if ((string.length > 0 && (length < 0 || offset < 0)) || offset > this.length) { throw new RangeError('Attempt to write outside buffer bounds') } if (!encoding) encoding = 'utf8' var loweredCase = false for (;;) { switch (encoding) { case 'hex': return hexWrite(this, string, offset, length) case 'utf8': case 'utf-8': return utf8Write(this, string, offset, length) case 'ascii': return asciiWrite(this, string, offset, length) case 'latin1': case 'binary': return latin1Write(this, string, offset, length) case 'base64': // Warning: maxLength not taken into account in base64Write return base64Write(this, string, offset, length) case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': return ucs2Write(this, string, offset, length) default: if (loweredCase) throw new TypeError('Unknown encoding: ' + encoding) encoding = ('' + encoding).toLowerCase() loweredCase = true } } } Buffer.prototype.toJSON = function toJSON () { return { type: 'Buffer', data: Array.prototype.slice.call(this._arr || this, 0) } } function base64Slice (buf, start, end) { if (start === 0 && end === buf.length) { return base64.fromByteArray(buf) } else { return base64.fromByteArray(buf.slice(start, end)) } } function utf8Slice (buf, start, end) { end = Math.min(buf.length, end) var res = [] var i = start while (i < end) { var firstByte = buf[i] var codePoint = null var bytesPerSequence = (firstByte > 0xEF) ? 4 : (firstByte > 0xDF) ? 3 : (firstByte > 0xBF) ? 2 : 1 if (i + bytesPerSequence <= end) { var secondByte, thirdByte, fourthByte, tempCodePoint switch (bytesPerSequence) { case 1: if (firstByte < 0x80) { codePoint = firstByte } break case 2: secondByte = buf[i + 1] if ((secondByte & 0xC0) === 0x80) { tempCodePoint = (firstByte & 0x1F) << 0x6 | (secondByte & 0x3F) if (tempCodePoint > 0x7F) { codePoint = tempCodePoint } } break case 3: secondByte = buf[i + 1] thirdByte = buf[i + 2] if ((secondByte & 0xC0) === 0x80 && (thirdByte & 0xC0) === 0x80) { tempCodePoint = (firstByte & 0xF) << 0xC | (secondByte & 0x3F) << 0x6 | (thirdByte & 0x3F) if (tempCodePoint > 0x7FF && (tempCodePoint < 0xD800 || tempCodePoint > 0xDFFF)) { codePoint = tempCodePoint } } break case 4: secondByte = buf[i + 1] thirdByte = buf[i + 2] fourthByte = buf[i + 3] if ((secondByte & 0xC0) === 0x80 && (thirdByte & 0xC0) === 0x80 && (fourthByte & 0xC0) === 0x80) { tempCodePoint = (firstByte & 0xF) << 0x12 | (secondByte & 0x3F) << 0xC | (thirdByte & 0x3F) << 0x6 | (fourthByte & 0x3F) if (tempCodePoint > 0xFFFF && tempCodePoint < 0x110000) { codePoint = tempCodePoint } } } } if (codePoint === null) { // we did not generate a valid codePoint so insert a // replacement char (U+FFFD) and advance only 1 byte codePoint = 0xFFFD bytesPerSequence = 1 } else if (codePoint > 0xFFFF) { // encode to utf16 (surrogate pair dance) codePoint -= 0x10000 res.push(codePoint >>> 10 & 0x3FF | 0xD800) codePoint = 0xDC00 | codePoint & 0x3FF } res.push(codePoint) i += bytesPerSequence } return decodeCodePointsArray(res) } // Based on http://stackoverflow.com/a/22747272/680742, the browser with // the lowest limit is Chrome, with 0x10000 args. // We go 1 magnitude less, for safety var MAX_ARGUMENTS_LENGTH = 0x1000 function decodeCodePointsArray (codePoints) { var len = codePoints.length if (len <= MAX_ARGUMENTS_LENGTH) { return String.fromCharCode.apply(String, codePoints) // avoid extra slice() } // Decode in chunks to avoid "call stack size exceeded". var res = '' var i = 0 while (i < len) { res += String.fromCharCode.apply( String, codePoints.slice(i, i += MAX_ARGUMENTS_LENGTH) ) } return res } function asciiSlice (buf, start, end) { var ret = '' end = Math.min(buf.length, end) for (var i = start; i < end; ++i) { ret += String.fromCharCode(buf[i] & 0x7F) } return ret } function latin1Slice (buf, start, end) { var ret = '' end = Math.min(buf.length, end) for (var i = start; i < end; ++i) { ret += String.fromCharCode(buf[i]) } return ret } function hexSlice (buf, start, end) { var len = buf.length if (!start || start < 0) start = 0 if (!end || end < 0 || end > len) end = len var out = '' for (var i = start; i < end; ++i) { out += toHex(buf[i]) } return out } function utf16leSlice (buf, start, end) { var bytes = buf.slice(start, end) var res = '' for (var i = 0; i < bytes.length; i += 2) { res += String.fromCharCode(bytes[i] + bytes[i + 1] * 256) } return res } Buffer.prototype.slice = function slice (start, end) { var len = this.length start = ~~start end = end === undefined ? len : ~~end if (start < 0) { start += len if (start < 0) start = 0 } else if (start > len) { start = len } if (end < 0) { end += len if (end < 0) end = 0 } else if (end > len) { end = len } if (end < start) end = start var newBuf if (Buffer.TYPED_ARRAY_SUPPORT) { newBuf = this.subarray(start, end) newBuf.__proto__ = Buffer.prototype } else { var sliceLen = end - start newBuf = new Buffer(sliceLen, undefined) for (var i = 0; i < sliceLen; ++i) { newBuf[i] = this[i + start] } } return newBuf } /* * Need to make sure that buffer isn't trying to write out of bounds. */ function checkOffset (offset, ext, length) { if ((offset % 1) !== 0 || offset < 0) throw new RangeError('offset is not uint') if (offset + ext > length) throw new RangeError('Trying to access beyond buffer length') } Buffer.prototype.readUIntLE = function readUIntLE (offset, byteLength, noAssert) { offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) checkOffset(offset, byteLength, this.length) var val = this[offset] var mul = 1 var i = 0 while (++i < byteLength && (mul *= 0x100)) { val += this[offset + i] * mul } return val } Buffer.prototype.readUIntBE = function readUIntBE (offset, byteLength, noAssert) { offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) { checkOffset(offset, byteLength, this.length) } var val = this[offset + --byteLength] var mul = 1 while (byteLength > 0 && (mul *= 0x100)) { val += this[offset + --byteLength] * mul } return val } Buffer.prototype.readUInt8 = function readUInt8 (offset, noAssert) { if (!noAssert) checkOffset(offset, 1, this.length) return this[offset] } Buffer.prototype.readUInt16LE = function readUInt16LE (offset, noAssert) { if (!noAssert) checkOffset(offset, 2, this.length) return this[offset] | (this[offset + 1] << 8) } Buffer.prototype.readUInt16BE = function readUInt16BE (offset, noAssert) { if (!noAssert) checkOffset(offset, 2, this.length) return (this[offset] << 8) | this[offset + 1] } Buffer.prototype.readUInt32LE = function readUInt32LE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return ((this[offset]) | (this[offset + 1] << 8) | (this[offset + 2] << 16)) + (this[offset + 3] * 0x1000000) } Buffer.prototype.readUInt32BE = function readUInt32BE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return (this[offset] * 0x1000000) + ((this[offset + 1] << 16) | (this[offset + 2] << 8) | this[offset + 3]) } Buffer.prototype.readIntLE = function readIntLE (offset, byteLength, noAssert) { offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) checkOffset(offset, byteLength, this.length) var val = this[offset] var mul = 1 var i = 0 while (++i < byteLength && (mul *= 0x100)) { val += this[offset + i] * mul } mul *= 0x80 if (val >= mul) val -= Math.pow(2, 8 * byteLength) return val } Buffer.prototype.readIntBE = function readIntBE (offset, byteLength, noAssert) { offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) checkOffset(offset, byteLength, this.length) var i = byteLength var mul = 1 var val = this[offset + --i] while (i > 0 && (mul *= 0x100)) { val += this[offset + --i] * mul } mul *= 0x80 if (val >= mul) val -= Math.pow(2, 8 * byteLength) return val } Buffer.prototype.readInt8 = function readInt8 (offset, noAssert) { if (!noAssert) checkOffset(offset, 1, this.length) if (!(this[offset] & 0x80)) return (this[offset]) return ((0xff - this[offset] + 1) * -1) } Buffer.prototype.readInt16LE = function readInt16LE (offset, noAssert) { if (!noAssert) checkOffset(offset, 2, this.length) var val = this[offset] | (this[offset + 1] << 8) return (val & 0x8000) ? val | 0xFFFF0000 : val } Buffer.prototype.readInt16BE = function readInt16BE (offset, noAssert) { if (!noAssert) checkOffset(offset, 2, this.length) var val = this[offset + 1] | (this[offset] << 8) return (val & 0x8000) ? val | 0xFFFF0000 : val } Buffer.prototype.readInt32LE = function readInt32LE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return (this[offset]) | (this[offset + 1] << 8) | (this[offset + 2] << 16) | (this[offset + 3] << 24) } Buffer.prototype.readInt32BE = function readInt32BE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return (this[offset] << 24) | (this[offset + 1] << 16) | (this[offset + 2] << 8) | (this[offset + 3]) } Buffer.prototype.readFloatLE = function readFloatLE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return ieee754.read(this, offset, true, 23, 4) } Buffer.prototype.readFloatBE = function readFloatBE (offset, noAssert) { if (!noAssert) checkOffset(offset, 4, this.length) return ieee754.read(this, offset, false, 23, 4) } Buffer.prototype.readDoubleLE = function readDoubleLE (offset, noAssert) { if (!noAssert) checkOffset(offset, 8, this.length) return ieee754.read(this, offset, true, 52, 8) } Buffer.prototype.readDoubleBE = function readDoubleBE (offset, noAssert) { if (!noAssert) checkOffset(offset, 8, this.length) return ieee754.read(this, offset, false, 52, 8) } function checkInt (buf, value, offset, ext, max, min) { if (!Buffer.isBuffer(buf)) throw new TypeError('"buffer" argument must be a Buffer instance') if (value > max || value < min) throw new RangeError('"value" argument is out of bounds') if (offset + ext > buf.length) throw new RangeError('Index out of range') } Buffer.prototype.writeUIntLE = function writeUIntLE (value, offset, byteLength, noAssert) { value = +value offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) { var maxBytes = Math.pow(2, 8 * byteLength) - 1 checkInt(this, value, offset, byteLength, maxBytes, 0) } var mul = 1 var i = 0 this[offset] = value & 0xFF while (++i < byteLength && (mul *= 0x100)) { this[offset + i] = (value / mul) & 0xFF } return offset + byteLength } Buffer.prototype.writeUIntBE = function writeUIntBE (value, offset, byteLength, noAssert) { value = +value offset = offset | 0 byteLength = byteLength | 0 if (!noAssert) { var maxBytes = Math.pow(2, 8 * byteLength) - 1 checkInt(this, value, offset, byteLength, maxBytes, 0) } var i = byteLength - 1 var mul = 1 this[offset + i] = value & 0xFF while (--i >= 0 && (mul *= 0x100)) { this[offset + i] = (value / mul) & 0xFF } return offset + byteLength } Buffer.prototype.writeUInt8 = function writeUInt8 (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 1, 0xff, 0) if (!Buffer.TYPED_ARRAY_SUPPORT) value = Math.floor(value) this[offset] = (value & 0xff) return offset + 1 } function objectWriteUInt16 (buf, value, offset, littleEndian) { if (value < 0) value = 0xffff + value + 1 for (var i = 0, j = Math.min(buf.length - offset, 2); i < j; ++i) { buf[offset + i] = (value & (0xff << (8 * (littleEndian ? i : 1 - i)))) >>> (littleEndian ? i : 1 - i) * 8 } } Buffer.prototype.writeUInt16LE = function writeUInt16LE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 2, 0xffff, 0) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value & 0xff) this[offset + 1] = (value >>> 8) } else { objectWriteUInt16(this, value, offset, true) } return offset + 2 } Buffer.prototype.writeUInt16BE = function writeUInt16BE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 2, 0xffff, 0) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value >>> 8) this[offset + 1] = (value & 0xff) } else { objectWriteUInt16(this, value, offset, false) } return offset + 2 } function objectWriteUInt32 (buf, value, offset, littleEndian) { if (value < 0) value = 0xffffffff + value + 1 for (var i = 0, j = Math.min(buf.length - offset, 4); i < j; ++i) { buf[offset + i] = (value >>> (littleEndian ? i : 3 - i) * 8) & 0xff } } Buffer.prototype.writeUInt32LE = function writeUInt32LE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 4, 0xffffffff, 0) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset + 3] = (value >>> 24) this[offset + 2] = (value >>> 16) this[offset + 1] = (value >>> 8) this[offset] = (value & 0xff) } else { objectWriteUInt32(this, value, offset, true) } return offset + 4 } Buffer.prototype.writeUInt32BE = function writeUInt32BE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 4, 0xffffffff, 0) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value >>> 24) this[offset + 1] = (value >>> 16) this[offset + 2] = (value >>> 8) this[offset + 3] = (value & 0xff) } else { objectWriteUInt32(this, value, offset, false) } return offset + 4 } Buffer.prototype.writeIntLE = function writeIntLE (value, offset, byteLength, noAssert) { value = +value offset = offset | 0 if (!noAssert) { var limit = Math.pow(2, 8 * byteLength - 1) checkInt(this, value, offset, byteLength, limit - 1, -limit) } var i = 0 var mul = 1 var sub = 0 this[offset] = value & 0xFF while (++i < byteLength && (mul *= 0x100)) { if (value < 0 && sub === 0 && this[offset + i - 1] !== 0) { sub = 1 } this[offset + i] = ((value / mul) >> 0) - sub & 0xFF } return offset + byteLength } Buffer.prototype.writeIntBE = function writeIntBE (value, offset, byteLength, noAssert) { value = +value offset = offset | 0 if (!noAssert) { var limit = Math.pow(2, 8 * byteLength - 1) checkInt(this, value, offset, byteLength, limit - 1, -limit) } var i = byteLength - 1 var mul = 1 var sub = 0 this[offset + i] = value & 0xFF while (--i >= 0 && (mul *= 0x100)) { if (value < 0 && sub === 0 && this[offset + i + 1] !== 0) { sub = 1 } this[offset + i] = ((value / mul) >> 0) - sub & 0xFF } return offset + byteLength } Buffer.prototype.writeInt8 = function writeInt8 (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 1, 0x7f, -0x80) if (!Buffer.TYPED_ARRAY_SUPPORT) value = Math.floor(value) if (value < 0) value = 0xff + value + 1 this[offset] = (value & 0xff) return offset + 1 } Buffer.prototype.writeInt16LE = function writeInt16LE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 2, 0x7fff, -0x8000) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value & 0xff) this[offset + 1] = (value >>> 8) } else { objectWriteUInt16(this, value, offset, true) } return offset + 2 } Buffer.prototype.writeInt16BE = function writeInt16BE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 2, 0x7fff, -0x8000) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value >>> 8) this[offset + 1] = (value & 0xff) } else { objectWriteUInt16(this, value, offset, false) } return offset + 2 } Buffer.prototype.writeInt32LE = function writeInt32LE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 4, 0x7fffffff, -0x80000000) if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value & 0xff) this[offset + 1] = (value >>> 8) this[offset + 2] = (value >>> 16) this[offset + 3] = (value >>> 24) } else { objectWriteUInt32(this, value, offset, true) } return offset + 4 } Buffer.prototype.writeInt32BE = function writeInt32BE (value, offset, noAssert) { value = +value offset = offset | 0 if (!noAssert) checkInt(this, value, offset, 4, 0x7fffffff, -0x80000000) if (value < 0) value = 0xffffffff + value + 1 if (Buffer.TYPED_ARRAY_SUPPORT) { this[offset] = (value >>> 24) this[offset + 1] = (value >>> 16) this[offset + 2] = (value >>> 8) this[offset + 3] = (value & 0xff) } else { objectWriteUInt32(this, value, offset, false) } return offset + 4 } function checkIEEE754 (buf, value, offset, ext, max, min) { if (offset + ext > buf.length) throw new RangeError('Index out of range') if (offset < 0) throw new RangeError('Index out of range') } function writeFloat (buf, value, offset, littleEndian, noAssert) { if (!noAssert) { checkIEEE754(buf, value, offset, 4, 3.4028234663852886e+38, -3.4028234663852886e+38) } ieee754.write(buf, value, offset, littleEndian, 23, 4) return offset + 4 } Buffer.prototype.writeFloatLE = function writeFloatLE (value, offset, noAssert) { return writeFloat(this, value, offset, true, noAssert) } Buffer.prototype.writeFloatBE = function writeFloatBE (value, offset, noAssert) { return writeFloat(this, value, offset, false, noAssert) } function writeDouble (buf, value, offset, littleEndian, noAssert) { if (!noAssert) { checkIEEE754(buf, value, offset, 8, 1.7976931348623157E+308, -1.7976931348623157E+308) } ieee754.write(buf, value, offset, littleEndian, 52, 8) return offset + 8 } Buffer.prototype.writeDoubleLE = function writeDoubleLE (value, offset, noAssert) { return writeDouble(this, value, offset, true, noAssert) } Buffer.prototype.writeDoubleBE = function writeDoubleBE (value, offset, noAssert) { return writeDouble(this, value, offset, false, noAssert) } // copy(targetBuffer, targetStart=0, sourceStart=0, sourceEnd=buffer.length) Buffer.prototype.copy = function copy (target, targetStart, start, end) { if (!start) start = 0 if (!end && end !== 0) end = this.length if (targetStart >= target.length) targetStart = target.length if (!targetStart) targetStart = 0 if (end > 0 && end < start) end = start // Copy 0 bytes; we're done if (end === start) return 0 if (target.length === 0 || this.length === 0) return 0 // Fatal error conditions if (targetStart < 0) { throw new RangeError('targetStart out of bounds') } if (start < 0 || start >= this.length) throw new RangeError('sourceStart out of bounds') if (end < 0) throw new RangeError('sourceEnd out of bounds') // Are we oob? if (end > this.length) end = this.length if (target.length - targetStart < end - start) { end = target.length - targetStart + start } var len = end - start var i if (this === target && start < targetStart && targetStart < end) { // descending copy from end for (i = len - 1; i >= 0; --i) { target[i + targetStart] = this[i + start] } } else if (len < 1000 || !Buffer.TYPED_ARRAY_SUPPORT) { // ascending copy from start for (i = 0; i < len; ++i) { target[i + targetStart] = this[i + start] } } else { Uint8Array.prototype.set.call( target, this.subarray(start, start + len), targetStart ) } return len } // Usage: // buffer.fill(number[, offset[, end]]) // buffer.fill(buffer[, offset[, end]]) // buffer.fill(string[, offset[, end]][, encoding]) Buffer.prototype.fill = function fill (val, start, end, encoding) { // Handle string cases: if (typeof val === 'string') { if (typeof start === 'string') { encoding = start start = 0 end = this.length } else if (typeof end === 'string') { encoding = end end = this.length } if (val.length === 1) { var code = val.charCodeAt(0) if (code < 256) { val = code } } if (encoding !== undefined && typeof encoding !== 'string') { throw new TypeError('encoding must be a string') } if (typeof encoding === 'string' && !Buffer.isEncoding(encoding)) { throw new TypeError('Unknown encoding: ' + encoding) } } else if (typeof val === 'number') { val = val & 255 } // Invalid ranges are not set to a default, so can range check early. if (start < 0 || this.length < start || this.length < end) { throw new RangeError('Out of range index') } if (end <= start) { return this } start = start >>> 0 end = end === undefined ? this.length : end >>> 0 if (!val) val = 0 var i if (typeof val === 'number') { for (i = start; i < end; ++i) { this[i] = val } } else { var bytes = Buffer.isBuffer(val) ? val : utf8ToBytes(new Buffer(val, encoding).toString()) var len = bytes.length for (i = 0; i < end - start; ++i) { this[i + start] = bytes[i % len] } } return this } // HELPER FUNCTIONS // ================ var INVALID_BASE64_RE = /[^+\/0-9A-Za-z-_]/g function base64clean (str) { // Node strips out invalid characters like \n and \t from the string, base64-js does not str = stringtrim(str).replace(INVALID_BASE64_RE, '') // Node converts strings with length < 2 to '' if (str.length < 2) return '' // Node allows for non-padded base64 strings (missing trailing ===), base64-js does not while (str.length % 4 !== 0) { str = str + '=' } return str } function stringtrim (str) { if (str.trim) return str.trim() return str.replace(/^\s+|\s+$/g, '') } function toHex (n) { if (n < 16) return '0' + n.toString(16) return n.toString(16) } function utf8ToBytes (string, units) { units = units || Infinity var codePoint var length = string.length var leadSurrogate = null var bytes = [] for (var i = 0; i < length; ++i) { codePoint = string.charCodeAt(i) // is surrogate component if (codePoint > 0xD7FF && codePoint < 0xE000) { // last char was a lead if (!leadSurrogate) { // no lead yet if (codePoint > 0xDBFF) { // unexpected trail if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD) continue } else if (i + 1 === length) { // unpaired lead if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD) continue } // valid lead leadSurrogate = codePoint continue } // 2 leads in a row if (codePoint < 0xDC00) { if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD) leadSurrogate = codePoint continue } // valid surrogate pair codePoint = (leadSurrogate - 0xD800 << 10 | codePoint - 0xDC00) + 0x10000 } else if (leadSurrogate) { // valid bmp char, but last char was a lead if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD) } leadSurrogate = null // encode utf8 if (codePoint < 0x80) { if ((units -= 1) < 0) break bytes.push(codePoint) } else if (codePoint < 0x800) { if ((units -= 2) < 0) break bytes.push( codePoint >> 0x6 | 0xC0, codePoint & 0x3F | 0x80 ) } else if (codePoint < 0x10000) { if ((units -= 3) < 0) break bytes.push( codePoint >> 0xC | 0xE0, codePoint >> 0x6 & 0x3F | 0x80, codePoint & 0x3F | 0x80 ) } else if (codePoint < 0x110000) { if ((units -= 4) < 0) break bytes.push( codePoint >> 0x12 | 0xF0, codePoint >> 0xC & 0x3F | 0x80, codePoint >> 0x6 & 0x3F | 0x80, codePoint & 0x3F | 0x80 ) } else { throw new Error('Invalid code point') } } return bytes } function asciiToBytes (str) { var byteArray = [] for (var i = 0; i < str.length; ++i) { // Node's code seems to be doing this and not & 0x7F.. byteArray.push(str.charCodeAt(i) & 0xFF) } return byteArray } function utf16leToBytes (str, units) { var c, hi, lo var byteArray = [] for (var i = 0; i < str.length; ++i) { if ((units -= 2) < 0) break c = str.charCodeAt(i) hi = c >> 8 lo = c % 256 byteArray.push(lo) byteArray.push(hi) } return byteArray } function base64ToBytes (str) { return base64.toByteArray(base64clean(str)) } function blitBuffer (src, dst, offset, length) { for (var i = 0; i < length; ++i) { if ((i + offset >= dst.length) || (i >= src.length)) break dst[i + offset] = src[i] } return i } function isnan (val) { return val !== val // eslint-disable-line no-self-compare } }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"base64-js":17,"ieee754":95,"isarray":99}],50:[function(require,module,exports){ module.exports = { "100": "Continue", "101": "Switching Protocols", "102": "Processing", "200": "OK", "201": "Created", "202": "Accepted", "203": "Non-Authoritative Information", "204": "No Content", "205": "Reset Content", "206": "Partial Content", "207": "Multi-Status", "208": "Already Reported", "226": "IM Used", "300": "Multiple Choices", "301": "Moved Permanently", "302": "Found", "303": "See Other", "304": "Not Modified", "305": "Use Proxy", "307": "Temporary Redirect", "308": "Permanent Redirect", "400": "Bad Request", "401": "Unauthorized", "402": "Payment Required", "403": "Forbidden", "404": "Not Found", "405": "Method Not Allowed", "406": "Not Acceptable", "407": "Proxy Authentication Required", "408": "Request Timeout", "409": "Conflict", "410": "Gone", "411": "Length Required", "412": "Precondition Failed", "413": "Payload Too Large", "414": "URI Too Long", "415": "Unsupported Media Type", "416": "Range Not Satisfiable", "417": "Expectation Failed", "418": "I'm a teapot", "421": "Misdirected Request", "422": "Unprocessable Entity", "423": "Locked", "424": "Failed Dependency", "425": "Unordered Collection", "426": "Upgrade Required", "428": "Precondition Required", "429": "Too Many Requests", "431": "Request Header Fields Too Large", "500": "Internal Server Error", "501": "Not Implemented", "502": "Bad Gateway", "503": "Service Unavailable", "504": "Gateway Timeout", "505": "HTTP Version Not Supported", "506": "Variant Also Negotiates", "507": "Insufficient Storage", "508": "Loop Detected", "509": "Bandwidth Limit Exceeded", "510": "Not Extended", "511": "Network Authentication Required" } },{}],51:[function(require,module,exports){ (function (Buffer){ var Transform = require('stream').Transform var inherits = require('inherits') var StringDecoder = require('string_decoder').StringDecoder module.exports = CipherBase inherits(CipherBase, Transform) function CipherBase (hashMode) { Transform.call(this) this.hashMode = typeof hashMode === 'string' if (this.hashMode) { this[hashMode] = this._finalOrDigest } else { this.final = this._finalOrDigest } this._decoder = null this._encoding = null } CipherBase.prototype.update = function (data, inputEnc, outputEnc) { if (typeof data === 'string') { data = new Buffer(data, inputEnc) } var outData = this._update(data) if (this.hashMode) { return this } if (outputEnc) { outData = this._toString(outData, outputEnc) } return outData } CipherBase.prototype.setAutoPadding = function () {} CipherBase.prototype.getAuthTag = function () { throw new Error('trying to get auth tag in unsupported state') } CipherBase.prototype.setAuthTag = function () { throw new Error('trying to set auth tag in unsupported state') } CipherBase.prototype.setAAD = function () { throw new Error('trying to set aad in unsupported state') } CipherBase.prototype._transform = function (data, _, next) { var err try { if (this.hashMode) { this._update(data) } else { this.push(this._update(data)) } } catch (e) { err = e } finally { next(err) } } CipherBase.prototype._flush = function (done) { var err try { this.push(this._final()) } catch (e) { err = e } finally { done(err) } } CipherBase.prototype._finalOrDigest = function (outputEnc) { var outData = this._final() || new Buffer('') if (outputEnc) { outData = this._toString(outData, outputEnc, true) } return outData } CipherBase.prototype._toString = function (value, enc, final) { if (!this._decoder) { this._decoder = new StringDecoder(enc) this._encoding = enc } if (this._encoding !== enc) { throw new Error('can\'t switch encodings') } var out = this._decoder.write(value) if (final) { out += this._decoder.end() } return out } }).call(this,require("buffer").Buffer) },{"buffer":49,"inherits":97,"stream":152,"string_decoder":157}],52:[function(require,module,exports){ (function (Buffer){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. // NOTE: These type checking functions intentionally don't use `instanceof` // because it is fragile and can be easily faked with `Object.create()`. function isArray(arg) { if (Array.isArray) { return Array.isArray(arg); } return objectToString(arg) === '[object Array]'; } exports.isArray = isArray; function isBoolean(arg) { return typeof arg === 'boolean'; } exports.isBoolean = isBoolean; function isNull(arg) { return arg === null; } exports.isNull = isNull; function isNullOrUndefined(arg) { return arg == null; } exports.isNullOrUndefined = isNullOrUndefined; function isNumber(arg) { return typeof arg === 'number'; } exports.isNumber = isNumber; function isString(arg) { return typeof arg === 'string'; } exports.isString = isString; function isSymbol(arg) { return typeof arg === 'symbol'; } exports.isSymbol = isSymbol; function isUndefined(arg) { return arg === void 0; } exports.isUndefined = isUndefined; function isRegExp(re) { return objectToString(re) === '[object RegExp]'; } exports.isRegExp = isRegExp; function isObject(arg) { return typeof arg === 'object' && arg !== null; } exports.isObject = isObject; function isDate(d) { return objectToString(d) === '[object Date]'; } exports.isDate = isDate; function isError(e) { return (objectToString(e) === '[object Error]' || e instanceof Error); } exports.isError = isError; function isFunction(arg) { return typeof arg === 'function'; } exports.isFunction = isFunction; function isPrimitive(arg) { return arg === null || typeof arg === 'boolean' || typeof arg === 'number' || typeof arg === 'string' || typeof arg === 'symbol' || // ES6 symbol typeof arg === 'undefined'; } exports.isPrimitive = isPrimitive; exports.isBuffer = Buffer.isBuffer; function objectToString(o) { return Object.prototype.toString.call(o); } }).call(this,{"isBuffer":require("../../is-buffer/index.js")}) },{"../../is-buffer/index.js":98}],53:[function(require,module,exports){ (function (Buffer){ var elliptic = require('elliptic'); var BN = require('bn.js'); module.exports = function createECDH(curve) { return new ECDH(curve); }; var aliases = { secp256k1: { name: 'secp256k1', byteLength: 32 }, secp224r1: { name: 'p224', byteLength: 28 }, prime256v1: { name: 'p256', byteLength: 32 }, prime192v1: { name: 'p192', byteLength: 24 }, ed25519: { name: 'ed25519', byteLength: 32 }, secp384r1: { name: 'p384', byteLength: 48 }, secp521r1: { name: 'p521', byteLength: 66 } }; aliases.p224 = aliases.secp224r1; aliases.p256 = aliases.secp256r1 = aliases.prime256v1; aliases.p192 = aliases.secp192r1 = aliases.prime192v1; aliases.p384 = aliases.secp384r1; aliases.p521 = aliases.secp521r1; function ECDH(curve) { this.curveType = aliases[curve]; if (!this.curveType ) { this.curveType = { name: curve }; } this.curve = new elliptic.ec(this.curveType.name); this.keys = void 0; } ECDH.prototype.generateKeys = function (enc, format) { this.keys = this.curve.genKeyPair(); return this.getPublicKey(enc, format); }; ECDH.prototype.computeSecret = function (other, inenc, enc) { inenc = inenc || 'utf8'; if (!Buffer.isBuffer(other)) { other = new Buffer(other, inenc); } var otherPub = this.curve.keyFromPublic(other).getPublic(); var out = otherPub.mul(this.keys.getPrivate()).getX(); return formatReturnValue(out, enc, this.curveType.byteLength); }; ECDH.prototype.getPublicKey = function (enc, format) { var key = this.keys.getPublic(format === 'compressed', true); if (format === 'hybrid') { if (key[key.length - 1] % 2) { key[0] = 7; } else { key [0] = 6; } } return formatReturnValue(key, enc); }; ECDH.prototype.getPrivateKey = function (enc) { return formatReturnValue(this.keys.getPrivate(), enc); }; ECDH.prototype.setPublicKey = function (pub, enc) { enc = enc || 'utf8'; if (!Buffer.isBuffer(pub)) { pub = new Buffer(pub, enc); } this.keys._importPublic(pub); return this; }; ECDH.prototype.setPrivateKey = function (priv, enc) { enc = enc || 'utf8'; if (!Buffer.isBuffer(priv)) { priv = new Buffer(priv, enc); } var _priv = new BN(priv); _priv = _priv.toString(16); this.keys._importPrivate(_priv); return this; }; function formatReturnValue(bn, enc, len) { if (!Array.isArray(bn)) { bn = bn.toArray(); } var buf = new Buffer(bn); if (len && buf.length < len) { var zeros = new Buffer(len - buf.length); zeros.fill(0); buf = Buffer.concat([zeros, buf]); } if (!enc) { return buf; } else { return buf.toString(enc); } } }).call(this,require("buffer").Buffer) },{"bn.js":18,"buffer":49,"elliptic":69}],54:[function(require,module,exports){ (function (Buffer){ 'use strict'; var inherits = require('inherits') var md5 = require('./md5') var rmd160 = require('ripemd160') var sha = require('sha.js') var Base = require('cipher-base') function HashNoConstructor(hash) { Base.call(this, 'digest') this._hash = hash this.buffers = [] } inherits(HashNoConstructor, Base) HashNoConstructor.prototype._update = function (data) { this.buffers.push(data) } HashNoConstructor.prototype._final = function () { var buf = Buffer.concat(this.buffers) var r = this._hash(buf) this.buffers = null return r } function Hash(hash) { Base.call(this, 'digest') this._hash = hash } inherits(Hash, Base) Hash.prototype._update = function (data) { this._hash.update(data) } Hash.prototype._final = function () { return this._hash.digest() } module.exports = function createHash (alg) { alg = alg.toLowerCase() if ('md5' === alg) return new HashNoConstructor(md5) if ('rmd160' === alg || 'ripemd160' === alg) return new HashNoConstructor(rmd160) return new Hash(sha(alg)) } }).call(this,require("buffer").Buffer) },{"./md5":56,"buffer":49,"cipher-base":51,"inherits":97,"ripemd160":143,"sha.js":145}],55:[function(require,module,exports){ (function (Buffer){ 'use strict'; var intSize = 4; var zeroBuffer = new Buffer(intSize); zeroBuffer.fill(0); var chrsz = 8; function toArray(buf, bigEndian) { if ((buf.length % intSize) !== 0) { var len = buf.length + (intSize - (buf.length % intSize)); buf = Buffer.concat([buf, zeroBuffer], len); } var arr = []; var fn = bigEndian ? buf.readInt32BE : buf.readInt32LE; for (var i = 0; i < buf.length; i += intSize) { arr.push(fn.call(buf, i)); } return arr; } function toBuffer(arr, size, bigEndian) { var buf = new Buffer(size); var fn = bigEndian ? buf.writeInt32BE : buf.writeInt32LE; for (var i = 0; i < arr.length; i++) { fn.call(buf, arr[i], i * 4, true); } return buf; } function hash(buf, fn, hashSize, bigEndian) { if (!Buffer.isBuffer(buf)) buf = new Buffer(buf); var arr = fn(toArray(buf, bigEndian), buf.length * chrsz); return toBuffer(arr, hashSize, bigEndian); } exports.hash = hash; }).call(this,require("buffer").Buffer) },{"buffer":49}],56:[function(require,module,exports){ 'use strict'; /* * A JavaScript implementation of the RSA Data Security, Inc. MD5 Message * Digest Algorithm, as defined in RFC 1321. * Version 2.1 Copyright (C) Paul Johnston 1999 - 2002. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * Distributed under the BSD License * See http://pajhome.org.uk/crypt/md5 for more info. */ var helpers = require('./helpers'); /* * Calculate the MD5 of an array of little-endian words, and a bit length */ function core_md5(x, len) { /* append padding */ x[len >> 5] |= 0x80 << ((len) % 32); x[(((len + 64) >>> 9) << 4) + 14] = len; var a = 1732584193; var b = -271733879; var c = -1732584194; var d = 271733878; for(var i = 0; i < x.length; i += 16) { var olda = a; var oldb = b; var oldc = c; var oldd = d; a = md5_ff(a, b, c, d, x[i+ 0], 7 , -680876936); d = md5_ff(d, a, b, c, x[i+ 1], 12, -389564586); c = md5_ff(c, d, a, b, x[i+ 2], 17, 606105819); b = md5_ff(b, c, d, a, x[i+ 3], 22, -1044525330); a = md5_ff(a, b, c, d, x[i+ 4], 7 , -176418897); d = md5_ff(d, a, b, c, x[i+ 5], 12, 1200080426); c = md5_ff(c, d, a, b, x[i+ 6], 17, -1473231341); b = md5_ff(b, c, d, a, x[i+ 7], 22, -45705983); a = md5_ff(a, b, c, d, x[i+ 8], 7 , 1770035416); d = md5_ff(d, a, b, c, x[i+ 9], 12, -1958414417); c = md5_ff(c, d, a, b, x[i+10], 17, -42063); b = md5_ff(b, c, d, a, x[i+11], 22, -1990404162); a = md5_ff(a, b, c, d, x[i+12], 7 , 1804603682); d = md5_ff(d, a, b, c, x[i+13], 12, -40341101); c = md5_ff(c, d, a, b, x[i+14], 17, -1502002290); b = md5_ff(b, c, d, a, x[i+15], 22, 1236535329); a = md5_gg(a, b, c, d, x[i+ 1], 5 , -165796510); d = md5_gg(d, a, b, c, x[i+ 6], 9 , -1069501632); c = md5_gg(c, d, a, b, x[i+11], 14, 643717713); b = md5_gg(b, c, d, a, x[i+ 0], 20, -373897302); a = md5_gg(a, b, c, d, x[i+ 5], 5 , -701558691); d = md5_gg(d, a, b, c, x[i+10], 9 , 38016083); c = md5_gg(c, d, a, b, x[i+15], 14, -660478335); b = md5_gg(b, c, d, a, x[i+ 4], 20, -405537848); a = md5_gg(a, b, c, d, x[i+ 9], 5 , 568446438); d = md5_gg(d, a, b, c, x[i+14], 9 , -1019803690); c = md5_gg(c, d, a, b, x[i+ 3], 14, -187363961); b = md5_gg(b, c, d, a, x[i+ 8], 20, 1163531501); a = md5_gg(a, b, c, d, x[i+13], 5 , -1444681467); d = md5_gg(d, a, b, c, x[i+ 2], 9 , -51403784); c = md5_gg(c, d, a, b, x[i+ 7], 14, 1735328473); b = md5_gg(b, c, d, a, x[i+12], 20, -1926607734); a = md5_hh(a, b, c, d, x[i+ 5], 4 , -378558); d = md5_hh(d, a, b, c, x[i+ 8], 11, -2022574463); c = md5_hh(c, d, a, b, x[i+11], 16, 1839030562); b = md5_hh(b, c, d, a, x[i+14], 23, -35309556); a = md5_hh(a, b, c, d, x[i+ 1], 4 , -1530992060); d = md5_hh(d, a, b, c, x[i+ 4], 11, 1272893353); c = md5_hh(c, d, a, b, x[i+ 7], 16, -155497632); b = md5_hh(b, c, d, a, x[i+10], 23, -1094730640); a = md5_hh(a, b, c, d, x[i+13], 4 , 681279174); d = md5_hh(d, a, b, c, x[i+ 0], 11, -358537222); c = md5_hh(c, d, a, b, x[i+ 3], 16, -722521979); b = md5_hh(b, c, d, a, x[i+ 6], 23, 76029189); a = md5_hh(a, b, c, d, x[i+ 9], 4 , -640364487); d = md5_hh(d, a, b, c, x[i+12], 11, -421815835); c = md5_hh(c, d, a, b, x[i+15], 16, 530742520); b = md5_hh(b, c, d, a, x[i+ 2], 23, -995338651); a = md5_ii(a, b, c, d, x[i+ 0], 6 , -198630844); d = md5_ii(d, a, b, c, x[i+ 7], 10, 1126891415); c = md5_ii(c, d, a, b, x[i+14], 15, -1416354905); b = md5_ii(b, c, d, a, x[i+ 5], 21, -57434055); a = md5_ii(a, b, c, d, x[i+12], 6 , 1700485571); d = md5_ii(d, a, b, c, x[i+ 3], 10, -1894986606); c = md5_ii(c, d, a, b, x[i+10], 15, -1051523); b = md5_ii(b, c, d, a, x[i+ 1], 21, -2054922799); a = md5_ii(a, b, c, d, x[i+ 8], 6 , 1873313359); d = md5_ii(d, a, b, c, x[i+15], 10, -30611744); c = md5_ii(c, d, a, b, x[i+ 6], 15, -1560198380); b = md5_ii(b, c, d, a, x[i+13], 21, 1309151649); a = md5_ii(a, b, c, d, x[i+ 4], 6 , -145523070); d = md5_ii(d, a, b, c, x[i+11], 10, -1120210379); c = md5_ii(c, d, a, b, x[i+ 2], 15, 718787259); b = md5_ii(b, c, d, a, x[i+ 9], 21, -343485551); a = safe_add(a, olda); b = safe_add(b, oldb); c = safe_add(c, oldc); d = safe_add(d, oldd); } return Array(a, b, c, d); } /* * These functions implement the four basic operations the algorithm uses. */ function md5_cmn(q, a, b, x, s, t) { return safe_add(bit_rol(safe_add(safe_add(a, q), safe_add(x, t)), s),b); } function md5_ff(a, b, c, d, x, s, t) { return md5_cmn((b & c) | ((~b) & d), a, b, x, s, t); } function md5_gg(a, b, c, d, x, s, t) { return md5_cmn((b & d) | (c & (~d)), a, b, x, s, t); } function md5_hh(a, b, c, d, x, s, t) { return md5_cmn(b ^ c ^ d, a, b, x, s, t); } function md5_ii(a, b, c, d, x, s, t) { return md5_cmn(c ^ (b | (~d)), a, b, x, s, t); } /* * Add integers, wrapping at 2^32. This uses 16-bit operations internally * to work around bugs in some JS interpreters. */ function safe_add(x, y) { var lsw = (x & 0xFFFF) + (y & 0xFFFF); var msw = (x >> 16) + (y >> 16) + (lsw >> 16); return (msw << 16) | (lsw & 0xFFFF); } /* * Bitwise rotate a 32-bit number to the left. */ function bit_rol(num, cnt) { return (num << cnt) | (num >>> (32 - cnt)); } module.exports = function md5(buf) { return helpers.hash(buf, core_md5, 16); }; },{"./helpers":55}],57:[function(require,module,exports){ (function (Buffer){ 'use strict'; var createHash = require('create-hash/browser'); var inherits = require('inherits') var Transform = require('stream').Transform var ZEROS = new Buffer(128) ZEROS.fill(0) function Hmac(alg, key) { Transform.call(this) alg = alg.toLowerCase() if (typeof key === 'string') { key = new Buffer(key) } var blocksize = (alg === 'sha512' || alg === 'sha384') ? 128 : 64 this._alg = alg this._key = key if (key.length > blocksize) { key = createHash(alg).update(key).digest() } else if (key.length < blocksize) { key = Buffer.concat([key, ZEROS], blocksize) } var ipad = this._ipad = new Buffer(blocksize) var opad = this._opad = new Buffer(blocksize) for (var i = 0; i < blocksize; i++) { ipad[i] = key[i] ^ 0x36 opad[i] = key[i] ^ 0x5C } this._hash = createHash(alg).update(ipad) } inherits(Hmac, Transform) Hmac.prototype.update = function (data, enc) { this._hash.update(data, enc) return this } Hmac.prototype._transform = function (data, _, next) { this._hash.update(data) next() } Hmac.prototype._flush = function (next) { this.push(this.digest()) next() } Hmac.prototype.digest = function (enc) { var h = this._hash.digest() return createHash(this._alg).update(this._opad).update(h).digest(enc) } module.exports = function createHmac(alg, key) { return new Hmac(alg, key) } }).call(this,require("buffer").Buffer) },{"buffer":49,"create-hash/browser":54,"inherits":97,"stream":152}],58:[function(require,module,exports){ 'use strict' exports.randomBytes = exports.rng = exports.pseudoRandomBytes = exports.prng = require('randombytes') exports.createHash = exports.Hash = require('create-hash') exports.createHmac = exports.Hmac = require('create-hmac') var hashes = ['sha1', 'sha224', 'sha256', 'sha384', 'sha512', 'md5', 'rmd160'].concat(Object.keys(require('browserify-sign/algos'))) exports.getHashes = function () { return hashes } var p = require('pbkdf2') exports.pbkdf2 = p.pbkdf2 exports.pbkdf2Sync = p.pbkdf2Sync var aes = require('browserify-cipher') ;[ 'Cipher', 'createCipher', 'Cipheriv', 'createCipheriv', 'Decipher', 'createDecipher', 'Decipheriv', 'createDecipheriv', 'getCiphers', 'listCiphers' ].forEach(function (key) { exports[key] = aes[key] }) var dh = require('diffie-hellman') ;[ 'DiffieHellmanGroup', 'createDiffieHellmanGroup', 'getDiffieHellman', 'createDiffieHellman', 'DiffieHellman' ].forEach(function (key) { exports[key] = dh[key] }) var sign = require('browserify-sign') ;[ 'createSign', 'Sign', 'createVerify', 'Verify' ].forEach(function (key) { exports[key] = sign[key] }) exports.createECDH = require('create-ecdh') var publicEncrypt = require('public-encrypt') ;[ 'publicEncrypt', 'privateEncrypt', 'publicDecrypt', 'privateDecrypt' ].forEach(function (key) { exports[key] = publicEncrypt[key] }) // the least I can do is make error messages for the rest of the node.js/crypto api. ;[ 'createCredentials' ].forEach(function (name) { exports[name] = function () { throw new Error([ 'sorry, ' + name + ' is not implemented yet', 'we accept pull requests', 'https://github.com/crypto-browserify/crypto-browserify' ].join('\n')) } }) },{"browserify-cipher":36,"browserify-sign":41,"browserify-sign/algos":40,"create-ecdh":53,"create-hash":54,"create-hmac":57,"diffie-hellman":65,"pbkdf2":118,"public-encrypt":121,"randombytes":131}],59:[function(require,module,exports){ 'use strict'; exports.utils = require('./des/utils'); exports.Cipher = require('./des/cipher'); exports.DES = require('./des/des'); exports.CBC = require('./des/cbc'); exports.EDE = require('./des/ede'); },{"./des/cbc":60,"./des/cipher":61,"./des/des":62,"./des/ede":63,"./des/utils":64}],60:[function(require,module,exports){ 'use strict'; var assert = require('minimalistic-assert'); var inherits = require('inherits'); var proto = {}; function CBCState(iv) { assert.equal(iv.length, 8, 'Invalid IV length'); this.iv = new Array(8); for (var i = 0; i < this.iv.length; i++) this.iv[i] = iv[i]; } function instantiate(Base) { function CBC(options) { Base.call(this, options); this._cbcInit(); } inherits(CBC, Base); var keys = Object.keys(proto); for (var i = 0; i < keys.length; i++) { var key = keys[i]; CBC.prototype[key] = proto[key]; } CBC.create = function create(options) { return new CBC(options); }; return CBC; } exports.instantiate = instantiate; proto._cbcInit = function _cbcInit() { var state = new CBCState(this.options.iv); this._cbcState = state; }; proto._update = function _update(inp, inOff, out, outOff) { var state = this._cbcState; var superProto = this.constructor.super_.prototype; var iv = state.iv; if (this.type === 'encrypt') { for (var i = 0; i < this.blockSize; i++) iv[i] ^= inp[inOff + i]; superProto._update.call(this, iv, 0, out, outOff); for (var i = 0; i < this.blockSize; i++) iv[i] = out[outOff + i]; } else { superProto._update.call(this, inp, inOff, out, outOff); for (var i = 0; i < this.blockSize; i++) out[outOff + i] ^= iv[i]; for (var i = 0; i < this.blockSize; i++) iv[i] = inp[inOff + i]; } }; },{"inherits":97,"minimalistic-assert":101}],61:[function(require,module,exports){ 'use strict'; var assert = require('minimalistic-assert'); function Cipher(options) { this.options = options; this.type = this.options.type; this.blockSize = 8; this._init(); this.buffer = new Array(this.blockSize); this.bufferOff = 0; } module.exports = Cipher; Cipher.prototype._init = function _init() { // Might be overrided }; Cipher.prototype.update = function update(data) { if (data.length === 0) return []; if (this.type === 'decrypt') return this._updateDecrypt(data); else return this._updateEncrypt(data); }; Cipher.prototype._buffer = function _buffer(data, off) { // Append data to buffer var min = Math.min(this.buffer.length - this.bufferOff, data.length - off); for (var i = 0; i < min; i++) this.buffer[this.bufferOff + i] = data[off + i]; this.bufferOff += min; // Shift next return min; }; Cipher.prototype._flushBuffer = function _flushBuffer(out, off) { this._update(this.buffer, 0, out, off); this.bufferOff = 0; return this.blockSize; }; Cipher.prototype._updateEncrypt = function _updateEncrypt(data) { var inputOff = 0; var outputOff = 0; var count = ((this.bufferOff + data.length) / this.blockSize) | 0; var out = new Array(count * this.blockSize); if (this.bufferOff !== 0) { inputOff += this._buffer(data, inputOff); if (this.bufferOff === this.buffer.length) outputOff += this._flushBuffer(out, outputOff); } // Write blocks var max = data.length - ((data.length - inputOff) % this.blockSize); for (; inputOff < max; inputOff += this.blockSize) { this._update(data, inputOff, out, outputOff); outputOff += this.blockSize; } // Queue rest for (; inputOff < data.length; inputOff++, this.bufferOff++) this.buffer[this.bufferOff] = data[inputOff]; return out; }; Cipher.prototype._updateDecrypt = function _updateDecrypt(data) { var inputOff = 0; var outputOff = 0; var count = Math.ceil((this.bufferOff + data.length) / this.blockSize) - 1; var out = new Array(count * this.blockSize); // TODO(indutny): optimize it, this is far from optimal for (; count > 0; count--) { inputOff += this._buffer(data, inputOff); outputOff += this._flushBuffer(out, outputOff); } // Buffer rest of the input inputOff += this._buffer(data, inputOff); return out; }; Cipher.prototype.final = function final(buffer) { var first; if (buffer) first = this.update(buffer); var last; if (this.type === 'encrypt') last = this._finalEncrypt(); else last = this._finalDecrypt(); if (first) return first.concat(last); else return last; }; Cipher.prototype._pad = function _pad(buffer, off) { if (off === 0) return false; while (off < buffer.length) buffer[off++] = 0; return true; }; Cipher.prototype._finalEncrypt = function _finalEncrypt() { if (!this._pad(this.buffer, this.bufferOff)) return []; var out = new Array(this.blockSize); this._update(this.buffer, 0, out, 0); return out; }; Cipher.prototype._unpad = function _unpad(buffer) { return buffer; }; Cipher.prototype._finalDecrypt = function _finalDecrypt() { assert.equal(this.bufferOff, this.blockSize, 'Not enough data to decrypt'); var out = new Array(this.blockSize); this._flushBuffer(out, 0); return this._unpad(out); }; },{"minimalistic-assert":101}],62:[function(require,module,exports){ 'use strict'; var assert = require('minimalistic-assert'); var inherits = require('inherits'); var des = require('../des'); var utils = des.utils; var Cipher = des.Cipher; function DESState() { this.tmp = new Array(2); this.keys = null; } function DES(options) { Cipher.call(this, options); var state = new DESState(); this._desState = state; this.deriveKeys(state, options.key); } inherits(DES, Cipher); module.exports = DES; DES.create = function create(options) { return new DES(options); }; var shiftTable = [ 1, 1, 2, 2, 2, 2, 2, 2, 1, 2, 2, 2, 2, 2, 2, 1 ]; DES.prototype.deriveKeys = function deriveKeys(state, key) { state.keys = new Array(16 * 2); assert.equal(key.length, this.blockSize, 'Invalid key length'); var kL = utils.readUInt32BE(key, 0); var kR = utils.readUInt32BE(key, 4); utils.pc1(kL, kR, state.tmp, 0); kL = state.tmp[0]; kR = state.tmp[1]; for (var i = 0; i < state.keys.length; i += 2) { var shift = shiftTable[i >>> 1]; kL = utils.r28shl(kL, shift); kR = utils.r28shl(kR, shift); utils.pc2(kL, kR, state.keys, i); } }; DES.prototype._update = function _update(inp, inOff, out, outOff) { var state = this._desState; var l = utils.readUInt32BE(inp, inOff); var r = utils.readUInt32BE(inp, inOff + 4); // Initial Permutation utils.ip(l, r, state.tmp, 0); l = state.tmp[0]; r = state.tmp[1]; if (this.type === 'encrypt') this._encrypt(state, l, r, state.tmp, 0); else this._decrypt(state, l, r, state.tmp, 0); l = state.tmp[0]; r = state.tmp[1]; utils.writeUInt32BE(out, l, outOff); utils.writeUInt32BE(out, r, outOff + 4); }; DES.prototype._pad = function _pad(buffer, off) { var value = buffer.length - off; for (var i = off; i < buffer.length; i++) buffer[i] = value; return true; }; DES.prototype._unpad = function _unpad(buffer) { var pad = buffer[buffer.length - 1]; for (var i = buffer.length - pad; i < buffer.length; i++) assert.equal(buffer[i], pad); return buffer.slice(0, buffer.length - pad); }; DES.prototype._encrypt = function _encrypt(state, lStart, rStart, out, off) { var l = lStart; var r = rStart; // Apply f() x16 times for (var i = 0; i < state.keys.length; i += 2) { var keyL = state.keys[i]; var keyR = state.keys[i + 1]; // f(r, k) utils.expand(r, state.tmp, 0); keyL ^= state.tmp[0]; keyR ^= state.tmp[1]; var s = utils.substitute(keyL, keyR); var f = utils.permute(s); var t = r; r = (l ^ f) >>> 0; l = t; } // Reverse Initial Permutation utils.rip(r, l, out, off); }; DES.prototype._decrypt = function _decrypt(state, lStart, rStart, out, off) { var l = rStart; var r = lStart; // Apply f() x16 times for (var i = state.keys.length - 2; i >= 0; i -= 2) { var keyL = state.keys[i]; var keyR = state.keys[i + 1]; // f(r, k) utils.expand(l, state.tmp, 0); keyL ^= state.tmp[0]; keyR ^= state.tmp[1]; var s = utils.substitute(keyL, keyR); var f = utils.permute(s); var t = l; l = (r ^ f) >>> 0; r = t; } // Reverse Initial Permutation utils.rip(l, r, out, off); }; },{"../des":59,"inherits":97,"minimalistic-assert":101}],63:[function(require,module,exports){ 'use strict'; var assert = require('minimalistic-assert'); var inherits = require('inherits'); var des = require('../des'); var Cipher = des.Cipher; var DES = des.DES; function EDEState(type, key) { assert.equal(key.length, 24, 'Invalid key length'); var k1 = key.slice(0, 8); var k2 = key.slice(8, 16); var k3 = key.slice(16, 24); if (type === 'encrypt') { this.ciphers = [ DES.create({ type: 'encrypt', key: k1 }), DES.create({ type: 'decrypt', key: k2 }), DES.create({ type: 'encrypt', key: k3 }) ]; } else { this.ciphers = [ DES.create({ type: 'decrypt', key: k3 }), DES.create({ type: 'encrypt', key: k2 }), DES.create({ type: 'decrypt', key: k1 }) ]; } } function EDE(options) { Cipher.call(this, options); var state = new EDEState(this.type, this.options.key); this._edeState = state; } inherits(EDE, Cipher); module.exports = EDE; EDE.create = function create(options) { return new EDE(options); }; EDE.prototype._update = function _update(inp, inOff, out, outOff) { var state = this._edeState; state.ciphers[0]._update(inp, inOff, out, outOff); state.ciphers[1]._update(out, outOff, out, outOff); state.ciphers[2]._update(out, outOff, out, outOff); }; EDE.prototype._pad = DES.prototype._pad; EDE.prototype._unpad = DES.prototype._unpad; },{"../des":59,"inherits":97,"minimalistic-assert":101}],64:[function(require,module,exports){ 'use strict'; exports.readUInt32BE = function readUInt32BE(bytes, off) { var res = (bytes[0 + off] << 24) | (bytes[1 + off] << 16) | (bytes[2 + off] << 8) | bytes[3 + off]; return res >>> 0; }; exports.writeUInt32BE = function writeUInt32BE(bytes, value, off) { bytes[0 + off] = value >>> 24; bytes[1 + off] = (value >>> 16) & 0xff; bytes[2 + off] = (value >>> 8) & 0xff; bytes[3 + off] = value & 0xff; }; exports.ip = function ip(inL, inR, out, off) { var outL = 0; var outR = 0; for (var i = 6; i >= 0; i -= 2) { for (var j = 0; j <= 24; j += 8) { outL <<= 1; outL |= (inR >>> (j + i)) & 1; } for (var j = 0; j <= 24; j += 8) { outL <<= 1; outL |= (inL >>> (j + i)) & 1; } } for (var i = 6; i >= 0; i -= 2) { for (var j = 1; j <= 25; j += 8) { outR <<= 1; outR |= (inR >>> (j + i)) & 1; } for (var j = 1; j <= 25; j += 8) { outR <<= 1; outR |= (inL >>> (j + i)) & 1; } } out[off + 0] = outL >>> 0; out[off + 1] = outR >>> 0; }; exports.rip = function rip(inL, inR, out, off) { var outL = 0; var outR = 0; for (var i = 0; i < 4; i++) { for (var j = 24; j >= 0; j -= 8) { outL <<= 1; outL |= (inR >>> (j + i)) & 1; outL <<= 1; outL |= (inL >>> (j + i)) & 1; } } for (var i = 4; i < 8; i++) { for (var j = 24; j >= 0; j -= 8) { outR <<= 1; outR |= (inR >>> (j + i)) & 1; outR <<= 1; outR |= (inL >>> (j + i)) & 1; } } out[off + 0] = outL >>> 0; out[off + 1] = outR >>> 0; }; exports.pc1 = function pc1(inL, inR, out, off) { var outL = 0; var outR = 0; // 7, 15, 23, 31, 39, 47, 55, 63 // 6, 14, 22, 30, 39, 47, 55, 63 // 5, 13, 21, 29, 39, 47, 55, 63 // 4, 12, 20, 28 for (var i = 7; i >= 5; i--) { for (var j = 0; j <= 24; j += 8) { outL <<= 1; outL |= (inR >> (j + i)) & 1; } for (var j = 0; j <= 24; j += 8) { outL <<= 1; outL |= (inL >> (j + i)) & 1; } } for (var j = 0; j <= 24; j += 8) { outL <<= 1; outL |= (inR >> (j + i)) & 1; } // 1, 9, 17, 25, 33, 41, 49, 57 // 2, 10, 18, 26, 34, 42, 50, 58 // 3, 11, 19, 27, 35, 43, 51, 59 // 36, 44, 52, 60 for (var i = 1; i <= 3; i++) { for (var j = 0; j <= 24; j += 8) { outR <<= 1; outR |= (inR >> (j + i)) & 1; } for (var j = 0; j <= 24; j += 8) { outR <<= 1; outR |= (inL >> (j + i)) & 1; } } for (var j = 0; j <= 24; j += 8) { outR <<= 1; outR |= (inL >> (j + i)) & 1; } out[off + 0] = outL >>> 0; out[off + 1] = outR >>> 0; }; exports.r28shl = function r28shl(num, shift) { return ((num << shift) & 0xfffffff) | (num >>> (28 - shift)); }; var pc2table = [ // inL => outL 14, 11, 17, 4, 27, 23, 25, 0, 13, 22, 7, 18, 5, 9, 16, 24, 2, 20, 12, 21, 1, 8, 15, 26, // inR => outR 15, 4, 25, 19, 9, 1, 26, 16, 5, 11, 23, 8, 12, 7, 17, 0, 22, 3, 10, 14, 6, 20, 27, 24 ]; exports.pc2 = function pc2(inL, inR, out, off) { var outL = 0; var outR = 0; var len = pc2table.length >>> 1; for (var i = 0; i < len; i++) { outL <<= 1; outL |= (inL >>> pc2table[i]) & 0x1; } for (var i = len; i < pc2table.length; i++) { outR <<= 1; outR |= (inR >>> pc2table[i]) & 0x1; } out[off + 0] = outL >>> 0; out[off + 1] = outR >>> 0; }; exports.expand = function expand(r, out, off) { var outL = 0; var outR = 0; outL = ((r & 1) << 5) | (r >>> 27); for (var i = 23; i >= 15; i -= 4) { outL <<= 6; outL |= (r >>> i) & 0x3f; } for (var i = 11; i >= 3; i -= 4) { outR |= (r >>> i) & 0x3f; outR <<= 6; } outR |= ((r & 0x1f) << 1) | (r >>> 31); out[off + 0] = outL >>> 0; out[off + 1] = outR >>> 0; }; var sTable = [ 14, 0, 4, 15, 13, 7, 1, 4, 2, 14, 15, 2, 11, 13, 8, 1, 3, 10, 10, 6, 6, 12, 12, 11, 5, 9, 9, 5, 0, 3, 7, 8, 4, 15, 1, 12, 14, 8, 8, 2, 13, 4, 6, 9, 2, 1, 11, 7, 15, 5, 12, 11, 9, 3, 7, 14, 3, 10, 10, 0, 5, 6, 0, 13, 15, 3, 1, 13, 8, 4, 14, 7, 6, 15, 11, 2, 3, 8, 4, 14, 9, 12, 7, 0, 2, 1, 13, 10, 12, 6, 0, 9, 5, 11, 10, 5, 0, 13, 14, 8, 7, 10, 11, 1, 10, 3, 4, 15, 13, 4, 1, 2, 5, 11, 8, 6, 12, 7, 6, 12, 9, 0, 3, 5, 2, 14, 15, 9, 10, 13, 0, 7, 9, 0, 14, 9, 6, 3, 3, 4, 15, 6, 5, 10, 1, 2, 13, 8, 12, 5, 7, 14, 11, 12, 4, 11, 2, 15, 8, 1, 13, 1, 6, 10, 4, 13, 9, 0, 8, 6, 15, 9, 3, 8, 0, 7, 11, 4, 1, 15, 2, 14, 12, 3, 5, 11, 10, 5, 14, 2, 7, 12, 7, 13, 13, 8, 14, 11, 3, 5, 0, 6, 6, 15, 9, 0, 10, 3, 1, 4, 2, 7, 8, 2, 5, 12, 11, 1, 12, 10, 4, 14, 15, 9, 10, 3, 6, 15, 9, 0, 0, 6, 12, 10, 11, 1, 7, 13, 13, 8, 15, 9, 1, 4, 3, 5, 14, 11, 5, 12, 2, 7, 8, 2, 4, 14, 2, 14, 12, 11, 4, 2, 1, 12, 7, 4, 10, 7, 11, 13, 6, 1, 8, 5, 5, 0, 3, 15, 15, 10, 13, 3, 0, 9, 14, 8, 9, 6, 4, 11, 2, 8, 1, 12, 11, 7, 10, 1, 13, 14, 7, 2, 8, 13, 15, 6, 9, 15, 12, 0, 5, 9, 6, 10, 3, 4, 0, 5, 14, 3, 12, 10, 1, 15, 10, 4, 15, 2, 9, 7, 2, 12, 6, 9, 8, 5, 0, 6, 13, 1, 3, 13, 4, 14, 14, 0, 7, 11, 5, 3, 11, 8, 9, 4, 14, 3, 15, 2, 5, 12, 2, 9, 8, 5, 12, 15, 3, 10, 7, 11, 0, 14, 4, 1, 10, 7, 1, 6, 13, 0, 11, 8, 6, 13, 4, 13, 11, 0, 2, 11, 14, 7, 15, 4, 0, 9, 8, 1, 13, 10, 3, 14, 12, 3, 9, 5, 7, 12, 5, 2, 10, 15, 6, 8, 1, 6, 1, 6, 4, 11, 11, 13, 13, 8, 12, 1, 3, 4, 7, 10, 14, 7, 10, 9, 15, 5, 6, 0, 8, 15, 0, 14, 5, 2, 9, 3, 2, 12, 13, 1, 2, 15, 8, 13, 4, 8, 6, 10, 15, 3, 11, 7, 1, 4, 10, 12, 9, 5, 3, 6, 14, 11, 5, 0, 0, 14, 12, 9, 7, 2, 7, 2, 11, 1, 4, 14, 1, 7, 9, 4, 12, 10, 14, 8, 2, 13, 0, 15, 6, 12, 10, 9, 13, 0, 15, 3, 3, 5, 5, 6, 8, 11 ]; exports.substitute = function substitute(inL, inR) { var out = 0; for (var i = 0; i < 4; i++) { var b = (inL >>> (18 - i * 6)) & 0x3f; var sb = sTable[i * 0x40 + b]; out <<= 4; out |= sb; } for (var i = 0; i < 4; i++) { var b = (inR >>> (18 - i * 6)) & 0x3f; var sb = sTable[4 * 0x40 + i * 0x40 + b]; out <<= 4; out |= sb; } return out >>> 0; }; var permuteTable = [ 16, 25, 12, 11, 3, 20, 4, 15, 31, 17, 9, 6, 27, 14, 1, 22, 30, 24, 8, 18, 0, 5, 29, 23, 13, 19, 2, 26, 10, 21, 28, 7 ]; exports.permute = function permute(num) { var out = 0; for (var i = 0; i < permuteTable.length; i++) { out <<= 1; out |= (num >>> permuteTable[i]) & 0x1; } return out >>> 0; }; exports.padSplit = function padSplit(num, size, group) { var str = num.toString(2); while (str.length < size) str = '0' + str; var out = []; for (var i = 0; i < size; i += group) out.push(str.slice(i, i + group)); return out.join(' '); }; },{}],65:[function(require,module,exports){ (function (Buffer){ var generatePrime = require('./lib/generatePrime') var primes = require('./lib/primes.json') var DH = require('./lib/dh') function getDiffieHellman (mod) { var prime = new Buffer(primes[mod].prime, 'hex') var gen = new Buffer(primes[mod].gen, 'hex') return new DH(prime, gen) } var ENCODINGS = { 'binary': true, 'hex': true, 'base64': true } function createDiffieHellman (prime, enc, generator, genc) { if (Buffer.isBuffer(enc) || ENCODINGS[enc] === undefined) { return createDiffieHellman(prime, 'binary', enc, generator) } enc = enc || 'binary' genc = genc || 'binary' generator = generator || new Buffer([2]) if (!Buffer.isBuffer(generator)) { generator = new Buffer(generator, genc) } if (typeof prime === 'number') { return new DH(generatePrime(prime, generator), generator, true) } if (!Buffer.isBuffer(prime)) { prime = new Buffer(prime, enc) } return new DH(prime, generator, true) } exports.DiffieHellmanGroup = exports.createDiffieHellmanGroup = exports.getDiffieHellman = getDiffieHellman exports.createDiffieHellman = exports.DiffieHellman = createDiffieHellman }).call(this,require("buffer").Buffer) },{"./lib/dh":66,"./lib/generatePrime":67,"./lib/primes.json":68,"buffer":49}],66:[function(require,module,exports){ (function (Buffer){ var BN = require('bn.js'); var MillerRabin = require('miller-rabin'); var millerRabin = new MillerRabin(); var TWENTYFOUR = new BN(24); var ELEVEN = new BN(11); var TEN = new BN(10); var THREE = new BN(3); var SEVEN = new BN(7); var primes = require('./generatePrime'); var randomBytes = require('randombytes'); module.exports = DH; function setPublicKey(pub, enc) { enc = enc || 'utf8'; if (!Buffer.isBuffer(pub)) { pub = new Buffer(pub, enc); } this._pub = new BN(pub); return this; } function setPrivateKey(priv, enc) { enc = enc || 'utf8'; if (!Buffer.isBuffer(priv)) { priv = new Buffer(priv, enc); } this._priv = new BN(priv); return this; } var primeCache = {}; function checkPrime(prime, generator) { var gen = generator.toString('hex'); var hex = [gen, prime.toString(16)].join('_'); if (hex in primeCache) { return primeCache[hex]; } var error = 0; if (prime.isEven() || !primes.simpleSieve || !primes.fermatTest(prime) || !millerRabin.test(prime)) { //not a prime so +1 error += 1; if (gen === '02' || gen === '05') { // we'd be able to check the generator // it would fail so +8 error += 8; } else { //we wouldn't be able to test the generator // so +4 error += 4; } primeCache[hex] = error; return error; } if (!millerRabin.test(prime.shrn(1))) { //not a safe prime error += 2; } var rem; switch (gen) { case '02': if (prime.mod(TWENTYFOUR).cmp(ELEVEN)) { // unsuidable generator error += 8; } break; case '05': rem = prime.mod(TEN); if (rem.cmp(THREE) && rem.cmp(SEVEN)) { // prime mod 10 needs to equal 3 or 7 error += 8; } break; default: error += 4; } primeCache[hex] = error; return error; } function DH(prime, generator, malleable) { this.setGenerator(generator); this.__prime = new BN(prime); this._prime = BN.mont(this.__prime); this._primeLen = prime.length; this._pub = undefined; this._priv = undefined; this._primeCode = undefined; if (malleable) { this.setPublicKey = setPublicKey; this.setPrivateKey = setPrivateKey; } else { this._primeCode = 8; } } Object.defineProperty(DH.prototype, 'verifyError', { enumerable: true, get: function () { if (typeof this._primeCode !== 'number') { this._primeCode = checkPrime(this.__prime, this.__gen); } return this._primeCode; } }); DH.prototype.generateKeys = function () { if (!this._priv) { this._priv = new BN(randomBytes(this._primeLen)); } this._pub = this._gen.toRed(this._prime).redPow(this._priv).fromRed(); return this.getPublicKey(); }; DH.prototype.computeSecret = function (other) { other = new BN(other); other = other.toRed(this._prime); var secret = other.redPow(this._priv).fromRed(); var out = new Buffer(secret.toArray()); var prime = this.getPrime(); if (out.length < prime.length) { var front = new Buffer(prime.length - out.length); front.fill(0); out = Buffer.concat([front, out]); } return out; }; DH.prototype.getPublicKey = function getPublicKey(enc) { return formatReturnValue(this._pub, enc); }; DH.prototype.getPrivateKey = function getPrivateKey(enc) { return formatReturnValue(this._priv, enc); }; DH.prototype.getPrime = function (enc) { return formatReturnValue(this.__prime, enc); }; DH.prototype.getGenerator = function (enc) { return formatReturnValue(this._gen, enc); }; DH.prototype.setGenerator = function (gen, enc) { enc = enc || 'utf8'; if (!Buffer.isBuffer(gen)) { gen = new Buffer(gen, enc); } this.__gen = gen; this._gen = new BN(gen); return this; }; function formatReturnValue(bn, enc) { var buf = new Buffer(bn.toArray()); if (!enc) { return buf; } else { return buf.toString(enc); } } }).call(this,require("buffer").Buffer) },{"./generatePrime":67,"bn.js":18,"buffer":49,"miller-rabin":100,"randombytes":131}],67:[function(require,module,exports){ var randomBytes = require('randombytes'); module.exports = findPrime; findPrime.simpleSieve = simpleSieve; findPrime.fermatTest = fermatTest; var BN = require('bn.js'); var TWENTYFOUR = new BN(24); var MillerRabin = require('miller-rabin'); var millerRabin = new MillerRabin(); var ONE = new BN(1); var TWO = new BN(2); var FIVE = new BN(5); var SIXTEEN = new BN(16); var EIGHT = new BN(8); var TEN = new BN(10); var THREE = new BN(3); var SEVEN = new BN(7); var ELEVEN = new BN(11); var FOUR = new BN(4); var TWELVE = new BN(12); var primes = null; function _getPrimes() { if (primes !== null) return primes; var limit = 0x100000; var res = []; res[0] = 2; for (var i = 1, k = 3; k < limit; k += 2) { var sqrt = Math.ceil(Math.sqrt(k)); for (var j = 0; j < i && res[j] <= sqrt; j++) if (k % res[j] === 0) break; if (i !== j && res[j] <= sqrt) continue; res[i++] = k; } primes = res; return res; } function simpleSieve(p) { var primes = _getPrimes(); for (var i = 0; i < primes.length; i++) if (p.modn(primes[i]) === 0) { if (p.cmpn(primes[i]) === 0) { return true; } else { return false; } } return true; } function fermatTest(p) { var red = BN.mont(p); return TWO.toRed(red).redPow(p.subn(1)).fromRed().cmpn(1) === 0; } function findPrime(bits, gen) { if (bits < 16) { // this is what openssl does if (gen === 2 || gen === 5) { return new BN([0x8c, 0x7b]); } else { return new BN([0x8c, 0x27]); } } gen = new BN(gen); var num, n2; while (true) { num = new BN(randomBytes(Math.ceil(bits / 8))); while (num.bitLength() > bits) { num.ishrn(1); } if (num.isEven()) { num.iadd(ONE); } if (!num.testn(1)) { num.iadd(TWO); } if (!gen.cmp(TWO)) { while (num.mod(TWENTYFOUR).cmp(ELEVEN)) { num.iadd(FOUR); } } else if (!gen.cmp(FIVE)) { while (num.mod(TEN).cmp(THREE)) { num.iadd(FOUR); } } n2 = num.shrn(1); if (simpleSieve(n2) && simpleSieve(num) && fermatTest(n2) && fermatTest(num) && millerRabin.test(n2) && millerRabin.test(num)) { return num; } } } },{"bn.js":18,"miller-rabin":100,"randombytes":131}],68:[function(require,module,exports){ module.exports={ "modp1": { "gen": "02", "prime": "ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a63a3620ffffffffffffffff" }, "modp2": { "gen": "02", "prime": "ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a637ed6b0bff5cb6f406b7edee386bfb5a899fa5ae9f24117c4b1fe649286651ece65381ffffffffffffffff" }, "modp5": { "gen": "02", "prime": "ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a637ed6b0bff5cb6f406b7edee386bfb5a899fa5ae9f24117c4b1fe649286651ece45b3dc2007cb8a163bf0598da48361c55d39a69163fa8fd24cf5f83655d23dca3ad961c62f356208552bb9ed529077096966d670c354e4abc9804f1746c08ca237327ffffffffffffffff" }, "modp14": { "gen": "02", "prime": "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" }, "modp15": { "gen": "02", "prime": "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" }, "modp16": { "gen": "02", "prime": "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" }, "modp17": { "gen": "02", "prime": "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" }, "modp18": { "gen": "02", "prime": "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" } } },{}],69:[function(require,module,exports){ 'use strict'; var elliptic = exports; elliptic.version = require('../package.json').version; elliptic.utils = require('./elliptic/utils'); elliptic.rand = require('brorand'); elliptic.hmacDRBG = require('./elliptic/hmac-drbg'); elliptic.curve = require('./elliptic/curve'); elliptic.curves = require('./elliptic/curves'); // Protocols elliptic.ec = require('./elliptic/ec'); elliptic.eddsa = require('./elliptic/eddsa'); },{"../package.json":85,"./elliptic/curve":72,"./elliptic/curves":75,"./elliptic/ec":76,"./elliptic/eddsa":79,"./elliptic/hmac-drbg":82,"./elliptic/utils":84,"brorand":19}],70:[function(require,module,exports){ 'use strict'; var BN = require('bn.js'); var elliptic = require('../../elliptic'); var utils = elliptic.utils; var getNAF = utils.getNAF; var getJSF = utils.getJSF; var assert = utils.assert; function BaseCurve(type, conf) { this.type = type; this.p = new BN(conf.p, 16); // Use Montgomery, when there is no fast reduction for the prime this.red = conf.prime ? BN.red(conf.prime) : BN.mont(this.p); // Useful for many curves this.zero = new BN(0).toRed(this.red); this.one = new BN(1).toRed(this.red); this.two = new BN(2).toRed(this.red); // Curve configuration, optional this.n = conf.n && new BN(conf.n, 16); this.g = conf.g && this.pointFromJSON(conf.g, conf.gRed); // Temporary arrays this._wnafT1 = new Array(4); this._wnafT2 = new Array(4); this._wnafT3 = new Array(4); this._wnafT4 = new Array(4); // Generalized Greg Maxwell's trick var adjustCount = this.n && this.p.div(this.n); if (!adjustCount || adjustCount.cmpn(100) > 0) { this.redN = null; } else { this._maxwellTrick = true; this.redN = this.n.toRed(this.red); } } module.exports = BaseCurve; BaseCurve.prototype.point = function point() { throw new Error('Not implemented'); }; BaseCurve.prototype.validate = function validate() { throw new Error('Not implemented'); }; BaseCurve.prototype._fixedNafMul = function _fixedNafMul(p, k) { assert(p.precomputed); var doubles = p._getDoubles(); var naf = getNAF(k, 1); var I = (1 << (doubles.step + 1)) - (doubles.step % 2 === 0 ? 2 : 1); I /= 3; // Translate into more windowed form var repr = []; for (var j = 0; j < naf.length; j += doubles.step) { var nafW = 0; for (var k = j + doubles.step - 1; k >= j; k--) nafW = (nafW << 1) + naf[k]; repr.push(nafW); } var a = this.jpoint(null, null, null); var b = this.jpoint(null, null, null); for (var i = I; i > 0; i--) { for (var j = 0; j < repr.length; j++) { var nafW = repr[j]; if (nafW === i) b = b.mixedAdd(doubles.points[j]); else if (nafW === -i) b = b.mixedAdd(doubles.points[j].neg()); } a = a.add(b); } return a.toP(); }; BaseCurve.prototype._wnafMul = function _wnafMul(p, k) { var w = 4; // Precompute window var nafPoints = p._getNAFPoints(w); w = nafPoints.wnd; var wnd = nafPoints.points; // Get NAF form var naf = getNAF(k, w); // Add `this`*(N+1) for every w-NAF index var acc = this.jpoint(null, null, null); for (var i = naf.length - 1; i >= 0; i--) { // Count zeroes for (var k = 0; i >= 0 && naf[i] === 0; i--) k++; if (i >= 0) k++; acc = acc.dblp(k); if (i < 0) break; var z = naf[i]; assert(z !== 0); if (p.type === 'affine') { // J +- P if (z > 0) acc = acc.mixedAdd(wnd[(z - 1) >> 1]); else acc = acc.mixedAdd(wnd[(-z - 1) >> 1].neg()); } else { // J +- J if (z > 0) acc = acc.add(wnd[(z - 1) >> 1]); else acc = acc.add(wnd[(-z - 1) >> 1].neg()); } } return p.type === 'affine' ? acc.toP() : acc; }; BaseCurve.prototype._wnafMulAdd = function _wnafMulAdd(defW, points, coeffs, len, jacobianResult) { var wndWidth = this._wnafT1; var wnd = this._wnafT2; var naf = this._wnafT3; // Fill all arrays var max = 0; for (var i = 0; i < len; i++) { var p = points[i]; var nafPoints = p._getNAFPoints(defW); wndWidth[i] = nafPoints.wnd; wnd[i] = nafPoints.points; } // Comb small window NAFs for (var i = len - 1; i >= 1; i -= 2) { var a = i - 1; var b = i; if (wndWidth[a] !== 1 || wndWidth[b] !== 1) { naf[a] = getNAF(coeffs[a], wndWidth[a]); naf[b] = getNAF(coeffs[b], wndWidth[b]); max = Math.max(naf[a].length, max); max = Math.max(naf[b].length, max); continue; } var comb = [ points[a], /* 1 */ null, /* 3 */ null, /* 5 */ points[b] /* 7 */ ]; // Try to avoid Projective points, if possible if (points[a].y.cmp(points[b].y) === 0) { comb[1] = points[a].add(points[b]); comb[2] = points[a].toJ().mixedAdd(points[b].neg()); } else if (points[a].y.cmp(points[b].y.redNeg()) === 0) { comb[1] = points[a].toJ().mixedAdd(points[b]); comb[2] = points[a].add(points[b].neg()); } else { comb[1] = points[a].toJ().mixedAdd(points[b]); comb[2] = points[a].toJ().mixedAdd(points[b].neg()); } var index = [ -3, /* -1 -1 */ -1, /* -1 0 */ -5, /* -1 1 */ -7, /* 0 -1 */ 0, /* 0 0 */ 7, /* 0 1 */ 5, /* 1 -1 */ 1, /* 1 0 */ 3 /* 1 1 */ ]; var jsf = getJSF(coeffs[a], coeffs[b]); max = Math.max(jsf[0].length, max); naf[a] = new Array(max); naf[b] = new Array(max); for (var j = 0; j < max; j++) { var ja = jsf[0][j] | 0; var jb = jsf[1][j] | 0; naf[a][j] = index[(ja + 1) * 3 + (jb + 1)]; naf[b][j] = 0; wnd[a] = comb; } } var acc = this.jpoint(null, null, null); var tmp = this._wnafT4; for (var i = max; i >= 0; i--) { var k = 0; while (i >= 0) { var zero = true; for (var j = 0; j < len; j++) { tmp[j] = naf[j][i] | 0; if (tmp[j] !== 0) zero = false; } if (!zero) break; k++; i--; } if (i >= 0) k++; acc = acc.dblp(k); if (i < 0) break; for (var j = 0; j < len; j++) { var z = tmp[j]; var p; if (z === 0) continue; else if (z > 0) p = wnd[j][(z - 1) >> 1]; else if (z < 0) p = wnd[j][(-z - 1) >> 1].neg(); if (p.type === 'affine') acc = acc.mixedAdd(p); else acc = acc.add(p); } } // Zeroify references for (var i = 0; i < len; i++) wnd[i] = null; if (jacobianResult) return acc; else return acc.toP(); }; function BasePoint(curve, type) { this.curve = curve; this.type = type; this.precomputed = null; } BaseCurve.BasePoint = BasePoint; BasePoint.prototype.eq = function eq(/*other*/) { throw new Error('Not implemented'); }; BasePoint.prototype.validate = function validate() { return this.curve.validate(this); }; BaseCurve.prototype.decodePoint = function decodePoint(bytes, enc) { bytes = utils.toArray(bytes, enc); var len = this.p.byteLength(); // uncompressed, hybrid-odd, hybrid-even if ((bytes[0] === 0x04 || bytes[0] === 0x06 || bytes[0] === 0x07) && bytes.length - 1 === 2 * len) { if (bytes[0] === 0x06) assert(bytes[bytes.length - 1] % 2 === 0); else if (bytes[0] === 0x07) assert(bytes[bytes.length - 1] % 2 === 1); var res = this.point(bytes.slice(1, 1 + len), bytes.slice(1 + len, 1 + 2 * len)); return res; } else if ((bytes[0] === 0x02 || bytes[0] === 0x03) && bytes.length - 1 === len) { return this.pointFromX(bytes.slice(1, 1 + len), bytes[0] === 0x03); } throw new Error('Unknown point format'); }; BasePoint.prototype.encodeCompressed = function encodeCompressed(enc) { return this.encode(enc, true); }; BasePoint.prototype._encode = function _encode(compact) { var len = this.curve.p.byteLength(); var x = this.getX().toArray('be', len); if (compact) return [ this.getY().isEven() ? 0x02 : 0x03 ].concat(x); return [ 0x04 ].concat(x, this.getY().toArray('be', len)) ; }; BasePoint.prototype.encode = function encode(enc, compact) { return utils.encode(this._encode(compact), enc); }; BasePoint.prototype.precompute = function precompute(power) { if (this.precomputed) return this; var precomputed = { doubles: null, naf: null, beta: null }; precomputed.naf = this._getNAFPoints(8); precomputed.doubles = this._getDoubles(4, power); precomputed.beta = this._getBeta(); this.precomputed = precomputed; return this; }; BasePoint.prototype._hasDoubles = function _hasDoubles(k) { if (!this.precomputed) return false; var doubles = this.precomputed.doubles; if (!doubles) return false; return doubles.points.length >= Math.ceil((k.bitLength() + 1) / doubles.step); }; BasePoint.prototype._getDoubles = function _getDoubles(step, power) { if (this.precomputed && this.precomputed.doubles) return this.precomputed.doubles; var doubles = [ this ]; var acc = this; for (var i = 0; i < power; i += step) { for (var j = 0; j < step; j++) acc = acc.dbl(); doubles.push(acc); } return { step: step, points: doubles }; }; BasePoint.prototype._getNAFPoints = function _getNAFPoints(wnd) { if (this.precomputed && this.precomputed.naf) return this.precomputed.naf; var res = [ this ]; var max = (1 << wnd) - 1; var dbl = max === 1 ? null : this.dbl(); for (var i = 1; i < max; i++) res[i] = res[i - 1].add(dbl); return { wnd: wnd, points: res }; }; BasePoint.prototype._getBeta = function _getBeta() { return null; }; BasePoint.prototype.dblp = function dblp(k) { var r = this; for (var i = 0; i < k; i++) r = r.dbl(); return r; }; },{"../../elliptic":69,"bn.js":18}],71:[function(require,module,exports){ 'use strict'; var curve = require('../curve'); var elliptic = require('../../elliptic'); var BN = require('bn.js'); var inherits = require('inherits'); var Base = curve.base; var assert = elliptic.utils.assert; function EdwardsCurve(conf) { // NOTE: Important as we are creating point in Base.call() this.twisted = (conf.a | 0) !== 1; this.mOneA = this.twisted && (conf.a | 0) === -1; this.extended = this.mOneA; Base.call(this, 'edwards', conf); this.a = new BN(conf.a, 16).umod(this.red.m); this.a = this.a.toRed(this.red); this.c = new BN(conf.c, 16).toRed(this.red); this.c2 = this.c.redSqr(); this.d = new BN(conf.d, 16).toRed(this.red); this.dd = this.d.redAdd(this.d); assert(!this.twisted || this.c.fromRed().cmpn(1) === 0); this.oneC = (conf.c | 0) === 1; } inherits(EdwardsCurve, Base); module.exports = EdwardsCurve; EdwardsCurve.prototype._mulA = function _mulA(num) { if (this.mOneA) return num.redNeg(); else return this.a.redMul(num); }; EdwardsCurve.prototype._mulC = function _mulC(num) { if (this.oneC) return num; else return this.c.redMul(num); }; // Just for compatibility with Short curve EdwardsCurve.prototype.jpoint = function jpoint(x, y, z, t) { return this.point(x, y, z, t); }; EdwardsCurve.prototype.pointFromX = function pointFromX(x, odd) { x = new BN(x, 16); if (!x.red) x = x.toRed(this.red); var x2 = x.redSqr(); var rhs = this.c2.redSub(this.a.redMul(x2)); var lhs = this.one.redSub(this.c2.redMul(this.d).redMul(x2)); var y2 = rhs.redMul(lhs.redInvm()); var y = y2.redSqrt(); if (y.redSqr().redSub(y2).cmp(this.zero) !== 0) throw new Error('invalid point'); var isOdd = y.fromRed().isOdd(); if (odd && !isOdd || !odd && isOdd) y = y.redNeg(); return this.point(x, y); }; EdwardsCurve.prototype.pointFromY = function pointFromY(y, odd) { y = new BN(y, 16); if (!y.red) y = y.toRed(this.red); // x^2 = (y^2 - 1) / (d y^2 + 1) var y2 = y.redSqr(); var lhs = y2.redSub(this.one); var rhs = y2.redMul(this.d).redAdd(this.one); var x2 = lhs.redMul(rhs.redInvm()); if (x2.cmp(this.zero) === 0) { if (odd) throw new Error('invalid point'); else return this.point(this.zero, y); } var x = x2.redSqrt(); if (x.redSqr().redSub(x2).cmp(this.zero) !== 0) throw new Error('invalid point'); if (x.isOdd() !== odd) x = x.redNeg(); return this.point(x, y); }; EdwardsCurve.prototype.validate = function validate(point) { if (point.isInfinity()) return true; // Curve: A * X^2 + Y^2 = C^2 * (1 + D * X^2 * Y^2) point.normalize(); var x2 = point.x.redSqr(); var y2 = point.y.redSqr(); var lhs = x2.redMul(this.a).redAdd(y2); var rhs = this.c2.redMul(this.one.redAdd(this.d.redMul(x2).redMul(y2))); return lhs.cmp(rhs) === 0; }; function Point(curve, x, y, z, t) { Base.BasePoint.call(this, curve, 'projective'); if (x === null && y === null && z === null) { this.x = this.curve.zero; this.y = this.curve.one; this.z = this.curve.one; this.t = this.curve.zero; this.zOne = true; } else { this.x = new BN(x, 16); this.y = new BN(y, 16); this.z = z ? new BN(z, 16) : this.curve.one; this.t = t && new BN(t, 16); if (!this.x.red) this.x = this.x.toRed(this.curve.red); if (!this.y.red) this.y = this.y.toRed(this.curve.red); if (!this.z.red) this.z = this.z.toRed(this.curve.red); if (this.t && !this.t.red) this.t = this.t.toRed(this.curve.red); this.zOne = this.z === this.curve.one; // Use extended coordinates if (this.curve.extended && !this.t) { this.t = this.x.redMul(this.y); if (!this.zOne) this.t = this.t.redMul(this.z.redInvm()); } } } inherits(Point, Base.BasePoint); EdwardsCurve.prototype.pointFromJSON = function pointFromJSON(obj) { return Point.fromJSON(this, obj); }; EdwardsCurve.prototype.point = function point(x, y, z, t) { return new Point(this, x, y, z, t); }; Point.fromJSON = function fromJSON(curve, obj) { return new Point(curve, obj[0], obj[1], obj[2]); }; Point.prototype.inspect = function inspect() { if (this.isInfinity()) return ''; return ''; }; Point.prototype.isInfinity = function isInfinity() { // XXX This code assumes that zero is always zero in red return this.x.cmpn(0) === 0 && this.y.cmp(this.z) === 0; }; Point.prototype._extDbl = function _extDbl() { // hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html // #doubling-dbl-2008-hwcd // 4M + 4S // A = X1^2 var a = this.x.redSqr(); // B = Y1^2 var b = this.y.redSqr(); // C = 2 * Z1^2 var c = this.z.redSqr(); c = c.redIAdd(c); // D = a * A var d = this.curve._mulA(a); // E = (X1 + Y1)^2 - A - B var e = this.x.redAdd(this.y).redSqr().redISub(a).redISub(b); // G = D + B var g = d.redAdd(b); // F = G - C var f = g.redSub(c); // H = D - B var h = d.redSub(b); // X3 = E * F var nx = e.redMul(f); // Y3 = G * H var ny = g.redMul(h); // T3 = E * H var nt = e.redMul(h); // Z3 = F * G var nz = f.redMul(g); return this.curve.point(nx, ny, nz, nt); }; Point.prototype._projDbl = function _projDbl() { // hyperelliptic.org/EFD/g1p/auto-twisted-projective.html // #doubling-dbl-2008-bbjlp // #doubling-dbl-2007-bl // and others // Generally 3M + 4S or 2M + 4S // B = (X1 + Y1)^2 var b = this.x.redAdd(this.y).redSqr(); // C = X1^2 var c = this.x.redSqr(); // D = Y1^2 var d = this.y.redSqr(); var nx; var ny; var nz; if (this.curve.twisted) { // E = a * C var e = this.curve._mulA(c); // F = E + D var f = e.redAdd(d); if (this.zOne) { // X3 = (B - C - D) * (F - 2) nx = b.redSub(c).redSub(d).redMul(f.redSub(this.curve.two)); // Y3 = F * (E - D) ny = f.redMul(e.redSub(d)); // Z3 = F^2 - 2 * F nz = f.redSqr().redSub(f).redSub(f); } else { // H = Z1^2 var h = this.z.redSqr(); // J = F - 2 * H var j = f.redSub(h).redISub(h); // X3 = (B-C-D)*J nx = b.redSub(c).redISub(d).redMul(j); // Y3 = F * (E - D) ny = f.redMul(e.redSub(d)); // Z3 = F * J nz = f.redMul(j); } } else { // E = C + D var e = c.redAdd(d); // H = (c * Z1)^2 var h = this.curve._mulC(this.c.redMul(this.z)).redSqr(); // J = E - 2 * H var j = e.redSub(h).redSub(h); // X3 = c * (B - E) * J nx = this.curve._mulC(b.redISub(e)).redMul(j); // Y3 = c * E * (C - D) ny = this.curve._mulC(e).redMul(c.redISub(d)); // Z3 = E * J nz = e.redMul(j); } return this.curve.point(nx, ny, nz); }; Point.prototype.dbl = function dbl() { if (this.isInfinity()) return this; // Double in extended coordinates if (this.curve.extended) return this._extDbl(); else return this._projDbl(); }; Point.prototype._extAdd = function _extAdd(p) { // hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html // #addition-add-2008-hwcd-3 // 8M // A = (Y1 - X1) * (Y2 - X2) var a = this.y.redSub(this.x).redMul(p.y.redSub(p.x)); // B = (Y1 + X1) * (Y2 + X2) var b = this.y.redAdd(this.x).redMul(p.y.redAdd(p.x)); // C = T1 * k * T2 var c = this.t.redMul(this.curve.dd).redMul(p.t); // D = Z1 * 2 * Z2 var d = this.z.redMul(p.z.redAdd(p.z)); // E = B - A var e = b.redSub(a); // F = D - C var f = d.redSub(c); // G = D + C var g = d.redAdd(c); // H = B + A var h = b.redAdd(a); // X3 = E * F var nx = e.redMul(f); // Y3 = G * H var ny = g.redMul(h); // T3 = E * H var nt = e.redMul(h); // Z3 = F * G var nz = f.redMul(g); return this.curve.point(nx, ny, nz, nt); }; Point.prototype._projAdd = function _projAdd(p) { // hyperelliptic.org/EFD/g1p/auto-twisted-projective.html // #addition-add-2008-bbjlp // #addition-add-2007-bl // 10M + 1S // A = Z1 * Z2 var a = this.z.redMul(p.z); // B = A^2 var b = a.redSqr(); // C = X1 * X2 var c = this.x.redMul(p.x); // D = Y1 * Y2 var d = this.y.redMul(p.y); // E = d * C * D var e = this.curve.d.redMul(c).redMul(d); // F = B - E var f = b.redSub(e); // G = B + E var g = b.redAdd(e); // X3 = A * F * ((X1 + Y1) * (X2 + Y2) - C - D) var tmp = this.x.redAdd(this.y).redMul(p.x.redAdd(p.y)).redISub(c).redISub(d); var nx = a.redMul(f).redMul(tmp); var ny; var nz; if (this.curve.twisted) { // Y3 = A * G * (D - a * C) ny = a.redMul(g).redMul(d.redSub(this.curve._mulA(c))); // Z3 = F * G nz = f.redMul(g); } else { // Y3 = A * G * (D - C) ny = a.redMul(g).redMul(d.redSub(c)); // Z3 = c * F * G nz = this.curve._mulC(f).redMul(g); } return this.curve.point(nx, ny, nz); }; Point.prototype.add = function add(p) { if (this.isInfinity()) return p; if (p.isInfinity()) return this; if (this.curve.extended) return this._extAdd(p); else return this._projAdd(p); }; Point.prototype.mul = function mul(k) { if (this._hasDoubles(k)) return this.curve._fixedNafMul(this, k); else return this.curve._wnafMul(this, k); }; Point.prototype.mulAdd = function mulAdd(k1, p, k2) { return this.curve._wnafMulAdd(1, [ this, p ], [ k1, k2 ], 2, false); }; Point.prototype.jmulAdd = function jmulAdd(k1, p, k2) { return this.curve._wnafMulAdd(1, [ this, p ], [ k1, k2 ], 2, true); }; Point.prototype.normalize = function normalize() { if (this.zOne) return this; // Normalize coordinates var zi = this.z.redInvm(); this.x = this.x.redMul(zi); this.y = this.y.redMul(zi); if (this.t) this.t = this.t.redMul(zi); this.z = this.curve.one; this.zOne = true; return this; }; Point.prototype.neg = function neg() { return this.curve.point(this.x.redNeg(), this.y, this.z, this.t && this.t.redNeg()); }; Point.prototype.getX = function getX() { this.normalize(); return this.x.fromRed(); }; Point.prototype.getY = function getY() { this.normalize(); return this.y.fromRed(); }; Point.prototype.eq = function eq(other) { return this === other || this.getX().cmp(other.getX()) === 0 && this.getY().cmp(other.getY()) === 0; }; Point.prototype.eqXToP = function eqXToP(x) { var rx = x.toRed(this.curve.red).redMul(this.z); if (this.x.cmp(rx) === 0) return true; var xc = x.clone(); var t = this.curve.redN.redMul(this.z); for (;;) { xc.iadd(this.curve.n); if (xc.cmp(this.curve.p) >= 0) return false; rx.redIAdd(t); if (this.x.cmp(rx) === 0) return true; } return false; }; // Compatibility with BaseCurve Point.prototype.toP = Point.prototype.normalize; Point.prototype.mixedAdd = Point.prototype.add; },{"../../elliptic":69,"../curve":72,"bn.js":18,"inherits":97}],72:[function(require,module,exports){ 'use strict'; var curve = exports; curve.base = require('./base'); curve.short = require('./short'); curve.mont = require('./mont'); curve.edwards = require('./edwards'); },{"./base":70,"./edwards":71,"./mont":73,"./short":74}],73:[function(require,module,exports){ 'use strict'; var curve = require('../curve'); var BN = require('bn.js'); var inherits = require('inherits'); var Base = curve.base; var elliptic = require('../../elliptic'); var utils = elliptic.utils; function MontCurve(conf) { Base.call(this, 'mont', conf); this.a = new BN(conf.a, 16).toRed(this.red); this.b = new BN(conf.b, 16).toRed(this.red); this.i4 = new BN(4).toRed(this.red).redInvm(); this.two = new BN(2).toRed(this.red); this.a24 = this.i4.redMul(this.a.redAdd(this.two)); } inherits(MontCurve, Base); module.exports = MontCurve; MontCurve.prototype.validate = function validate(point) { var x = point.normalize().x; var x2 = x.redSqr(); var rhs = x2.redMul(x).redAdd(x2.redMul(this.a)).redAdd(x); var y = rhs.redSqrt(); return y.redSqr().cmp(rhs) === 0; }; function Point(curve, x, z) { Base.BasePoint.call(this, curve, 'projective'); if (x === null && z === null) { this.x = this.curve.one; this.z = this.curve.zero; } else { this.x = new BN(x, 16); this.z = new BN(z, 16); if (!this.x.red) this.x = this.x.toRed(this.curve.red); if (!this.z.red) this.z = this.z.toRed(this.curve.red); } } inherits(Point, Base.BasePoint); MontCurve.prototype.decodePoint = function decodePoint(bytes, enc) { return this.point(utils.toArray(bytes, enc), 1); }; MontCurve.prototype.point = function point(x, z) { return new Point(this, x, z); }; MontCurve.prototype.pointFromJSON = function pointFromJSON(obj) { return Point.fromJSON(this, obj); }; Point.prototype.precompute = function precompute() { // No-op }; Point.prototype._encode = function _encode() { return this.getX().toArray('be', this.curve.p.byteLength()); }; Point.fromJSON = function fromJSON(curve, obj) { return new Point(curve, obj[0], obj[1] || curve.one); }; Point.prototype.inspect = function inspect() { if (this.isInfinity()) return ''; return ''; }; Point.prototype.isInfinity = function isInfinity() { // XXX This code assumes that zero is always zero in red return this.z.cmpn(0) === 0; }; Point.prototype.dbl = function dbl() { // http://hyperelliptic.org/EFD/g1p/auto-montgom-xz.html#doubling-dbl-1987-m-3 // 2M + 2S + 4A // A = X1 + Z1 var a = this.x.redAdd(this.z); // AA = A^2 var aa = a.redSqr(); // B = X1 - Z1 var b = this.x.redSub(this.z); // BB = B^2 var bb = b.redSqr(); // C = AA - BB var c = aa.redSub(bb); // X3 = AA * BB var nx = aa.redMul(bb); // Z3 = C * (BB + A24 * C) var nz = c.redMul(bb.redAdd(this.curve.a24.redMul(c))); return this.curve.point(nx, nz); }; Point.prototype.add = function add() { throw new Error('Not supported on Montgomery curve'); }; Point.prototype.diffAdd = function diffAdd(p, diff) { // http://hyperelliptic.org/EFD/g1p/auto-montgom-xz.html#diffadd-dadd-1987-m-3 // 4M + 2S + 6A // A = X2 + Z2 var a = this.x.redAdd(this.z); // B = X2 - Z2 var b = this.x.redSub(this.z); // C = X3 + Z3 var c = p.x.redAdd(p.z); // D = X3 - Z3 var d = p.x.redSub(p.z); // DA = D * A var da = d.redMul(a); // CB = C * B var cb = c.redMul(b); // X5 = Z1 * (DA + CB)^2 var nx = diff.z.redMul(da.redAdd(cb).redSqr()); // Z5 = X1 * (DA - CB)^2 var nz = diff.x.redMul(da.redISub(cb).redSqr()); return this.curve.point(nx, nz); }; Point.prototype.mul = function mul(k) { var t = k.clone(); var a = this; // (N / 2) * Q + Q var b = this.curve.point(null, null); // (N / 2) * Q var c = this; // Q for (var bits = []; t.cmpn(0) !== 0; t.iushrn(1)) bits.push(t.andln(1)); for (var i = bits.length - 1; i >= 0; i--) { if (bits[i] === 0) { // N * Q + Q = ((N / 2) * Q + Q)) + (N / 2) * Q a = a.diffAdd(b, c); // N * Q = 2 * ((N / 2) * Q + Q)) b = b.dbl(); } else { // N * Q = ((N / 2) * Q + Q) + ((N / 2) * Q) b = a.diffAdd(b, c); // N * Q + Q = 2 * ((N / 2) * Q + Q) a = a.dbl(); } } return b; }; Point.prototype.mulAdd = function mulAdd() { throw new Error('Not supported on Montgomery curve'); }; Point.prototype.jumlAdd = function jumlAdd() { throw new Error('Not supported on Montgomery curve'); }; Point.prototype.eq = function eq(other) { return this.getX().cmp(other.getX()) === 0; }; Point.prototype.normalize = function normalize() { this.x = this.x.redMul(this.z.redInvm()); this.z = this.curve.one; return this; }; Point.prototype.getX = function getX() { // Normalize coordinates this.normalize(); return this.x.fromRed(); }; },{"../../elliptic":69,"../curve":72,"bn.js":18,"inherits":97}],74:[function(require,module,exports){ 'use strict'; var curve = require('../curve'); var elliptic = require('../../elliptic'); var BN = require('bn.js'); var inherits = require('inherits'); var Base = curve.base; var assert = elliptic.utils.assert; function ShortCurve(conf) { Base.call(this, 'short', conf); this.a = new BN(conf.a, 16).toRed(this.red); this.b = new BN(conf.b, 16).toRed(this.red); this.tinv = this.two.redInvm(); this.zeroA = this.a.fromRed().cmpn(0) === 0; this.threeA = this.a.fromRed().sub(this.p).cmpn(-3) === 0; // If the curve is endomorphic, precalculate beta and lambda this.endo = this._getEndomorphism(conf); this._endoWnafT1 = new Array(4); this._endoWnafT2 = new Array(4); } inherits(ShortCurve, Base); module.exports = ShortCurve; ShortCurve.prototype._getEndomorphism = function _getEndomorphism(conf) { // No efficient endomorphism if (!this.zeroA || !this.g || !this.n || this.p.modn(3) !== 1) return; // Compute beta and lambda, that lambda * P = (beta * Px; Py) var beta; var lambda; if (conf.beta) { beta = new BN(conf.beta, 16).toRed(this.red); } else { var betas = this._getEndoRoots(this.p); // Choose the smallest beta beta = betas[0].cmp(betas[1]) < 0 ? betas[0] : betas[1]; beta = beta.toRed(this.red); } if (conf.lambda) { lambda = new BN(conf.lambda, 16); } else { // Choose the lambda that is matching selected beta var lambdas = this._getEndoRoots(this.n); if (this.g.mul(lambdas[0]).x.cmp(this.g.x.redMul(beta)) === 0) { lambda = lambdas[0]; } else { lambda = lambdas[1]; assert(this.g.mul(lambda).x.cmp(this.g.x.redMul(beta)) === 0); } } // Get basis vectors, used for balanced length-two representation var basis; if (conf.basis) { basis = conf.basis.map(function(vec) { return { a: new BN(vec.a, 16), b: new BN(vec.b, 16) }; }); } else { basis = this._getEndoBasis(lambda); } return { beta: beta, lambda: lambda, basis: basis }; }; ShortCurve.prototype._getEndoRoots = function _getEndoRoots(num) { // Find roots of for x^2 + x + 1 in F // Root = (-1 +- Sqrt(-3)) / 2 // var red = num === this.p ? this.red : BN.mont(num); var tinv = new BN(2).toRed(red).redInvm(); var ntinv = tinv.redNeg(); var s = new BN(3).toRed(red).redNeg().redSqrt().redMul(tinv); var l1 = ntinv.redAdd(s).fromRed(); var l2 = ntinv.redSub(s).fromRed(); return [ l1, l2 ]; }; ShortCurve.prototype._getEndoBasis = function _getEndoBasis(lambda) { // aprxSqrt >= sqrt(this.n) var aprxSqrt = this.n.ushrn(Math.floor(this.n.bitLength() / 2)); // 3.74 // Run EGCD, until r(L + 1) < aprxSqrt var u = lambda; var v = this.n.clone(); var x1 = new BN(1); var y1 = new BN(0); var x2 = new BN(0); var y2 = new BN(1); // NOTE: all vectors are roots of: a + b * lambda = 0 (mod n) var a0; var b0; // First vector var a1; var b1; // Second vector var a2; var b2; var prevR; var i = 0; var r; var x; while (u.cmpn(0) !== 0) { var q = v.div(u); r = v.sub(q.mul(u)); x = x2.sub(q.mul(x1)); var y = y2.sub(q.mul(y1)); if (!a1 && r.cmp(aprxSqrt) < 0) { a0 = prevR.neg(); b0 = x1; a1 = r.neg(); b1 = x; } else if (a1 && ++i === 2) { break; } prevR = r; v = u; u = r; x2 = x1; x1 = x; y2 = y1; y1 = y; } a2 = r.neg(); b2 = x; var len1 = a1.sqr().add(b1.sqr()); var len2 = a2.sqr().add(b2.sqr()); if (len2.cmp(len1) >= 0) { a2 = a0; b2 = b0; } // Normalize signs if (a1.negative) { a1 = a1.neg(); b1 = b1.neg(); } if (a2.negative) { a2 = a2.neg(); b2 = b2.neg(); } return [ { a: a1, b: b1 }, { a: a2, b: b2 } ]; }; ShortCurve.prototype._endoSplit = function _endoSplit(k) { var basis = this.endo.basis; var v1 = basis[0]; var v2 = basis[1]; var c1 = v2.b.mul(k).divRound(this.n); var c2 = v1.b.neg().mul(k).divRound(this.n); var p1 = c1.mul(v1.a); var p2 = c2.mul(v2.a); var q1 = c1.mul(v1.b); var q2 = c2.mul(v2.b); // Calculate answer var k1 = k.sub(p1).sub(p2); var k2 = q1.add(q2).neg(); return { k1: k1, k2: k2 }; }; ShortCurve.prototype.pointFromX = function pointFromX(x, odd) { x = new BN(x, 16); if (!x.red) x = x.toRed(this.red); var y2 = x.redSqr().redMul(x).redIAdd(x.redMul(this.a)).redIAdd(this.b); var y = y2.redSqrt(); if (y.redSqr().redSub(y2).cmp(this.zero) !== 0) throw new Error('invalid point'); // XXX Is there any way to tell if the number is odd without converting it // to non-red form? var isOdd = y.fromRed().isOdd(); if (odd && !isOdd || !odd && isOdd) y = y.redNeg(); return this.point(x, y); }; ShortCurve.prototype.validate = function validate(point) { if (point.inf) return true; var x = point.x; var y = point.y; var ax = this.a.redMul(x); var rhs = x.redSqr().redMul(x).redIAdd(ax).redIAdd(this.b); return y.redSqr().redISub(rhs).cmpn(0) === 0; }; ShortCurve.prototype._endoWnafMulAdd = function _endoWnafMulAdd(points, coeffs, jacobianResult) { var npoints = this._endoWnafT1; var ncoeffs = this._endoWnafT2; for (var i = 0; i < points.length; i++) { var split = this._endoSplit(coeffs[i]); var p = points[i]; var beta = p._getBeta(); if (split.k1.negative) { split.k1.ineg(); p = p.neg(true); } if (split.k2.negative) { split.k2.ineg(); beta = beta.neg(true); } npoints[i * 2] = p; npoints[i * 2 + 1] = beta; ncoeffs[i * 2] = split.k1; ncoeffs[i * 2 + 1] = split.k2; } var res = this._wnafMulAdd(1, npoints, ncoeffs, i * 2, jacobianResult); // Clean-up references to points and coefficients for (var j = 0; j < i * 2; j++) { npoints[j] = null; ncoeffs[j] = null; } return res; }; function Point(curve, x, y, isRed) { Base.BasePoint.call(this, curve, 'affine'); if (x === null && y === null) { this.x = null; this.y = null; this.inf = true; } else { this.x = new BN(x, 16); this.y = new BN(y, 16); // Force redgomery representation when loading from JSON if (isRed) { this.x.forceRed(this.curve.red); this.y.forceRed(this.curve.red); } if (!this.x.red) this.x = this.x.toRed(this.curve.red); if (!this.y.red) this.y = this.y.toRed(this.curve.red); this.inf = false; } } inherits(Point, Base.BasePoint); ShortCurve.prototype.point = function point(x, y, isRed) { return new Point(this, x, y, isRed); }; ShortCurve.prototype.pointFromJSON = function pointFromJSON(obj, red) { return Point.fromJSON(this, obj, red); }; Point.prototype._getBeta = function _getBeta() { if (!this.curve.endo) return; var pre = this.precomputed; if (pre && pre.beta) return pre.beta; var beta = this.curve.point(this.x.redMul(this.curve.endo.beta), this.y); if (pre) { var curve = this.curve; var endoMul = function(p) { return curve.point(p.x.redMul(curve.endo.beta), p.y); }; pre.beta = beta; beta.precomputed = { beta: null, naf: pre.naf && { wnd: pre.naf.wnd, points: pre.naf.points.map(endoMul) }, doubles: pre.doubles && { step: pre.doubles.step, points: pre.doubles.points.map(endoMul) } }; } return beta; }; Point.prototype.toJSON = function toJSON() { if (!this.precomputed) return [ this.x, this.y ]; return [ this.x, this.y, this.precomputed && { doubles: this.precomputed.doubles && { step: this.precomputed.doubles.step, points: this.precomputed.doubles.points.slice(1) }, naf: this.precomputed.naf && { wnd: this.precomputed.naf.wnd, points: this.precomputed.naf.points.slice(1) } } ]; }; Point.fromJSON = function fromJSON(curve, obj, red) { if (typeof obj === 'string') obj = JSON.parse(obj); var res = curve.point(obj[0], obj[1], red); if (!obj[2]) return res; function obj2point(obj) { return curve.point(obj[0], obj[1], red); } var pre = obj[2]; res.precomputed = { beta: null, doubles: pre.doubles && { step: pre.doubles.step, points: [ res ].concat(pre.doubles.points.map(obj2point)) }, naf: pre.naf && { wnd: pre.naf.wnd, points: [ res ].concat(pre.naf.points.map(obj2point)) } }; return res; }; Point.prototype.inspect = function inspect() { if (this.isInfinity()) return ''; return ''; }; Point.prototype.isInfinity = function isInfinity() { return this.inf; }; Point.prototype.add = function add(p) { // O + P = P if (this.inf) return p; // P + O = P if (p.inf) return this; // P + P = 2P if (this.eq(p)) return this.dbl(); // P + (-P) = O if (this.neg().eq(p)) return this.curve.point(null, null); // P + Q = O if (this.x.cmp(p.x) === 0) return this.curve.point(null, null); var c = this.y.redSub(p.y); if (c.cmpn(0) !== 0) c = c.redMul(this.x.redSub(p.x).redInvm()); var nx = c.redSqr().redISub(this.x).redISub(p.x); var ny = c.redMul(this.x.redSub(nx)).redISub(this.y); return this.curve.point(nx, ny); }; Point.prototype.dbl = function dbl() { if (this.inf) return this; // 2P = O var ys1 = this.y.redAdd(this.y); if (ys1.cmpn(0) === 0) return this.curve.point(null, null); var a = this.curve.a; var x2 = this.x.redSqr(); var dyinv = ys1.redInvm(); var c = x2.redAdd(x2).redIAdd(x2).redIAdd(a).redMul(dyinv); var nx = c.redSqr().redISub(this.x.redAdd(this.x)); var ny = c.redMul(this.x.redSub(nx)).redISub(this.y); return this.curve.point(nx, ny); }; Point.prototype.getX = function getX() { return this.x.fromRed(); }; Point.prototype.getY = function getY() { return this.y.fromRed(); }; Point.prototype.mul = function mul(k) { k = new BN(k, 16); if (this._hasDoubles(k)) return this.curve._fixedNafMul(this, k); else if (this.curve.endo) return this.curve._endoWnafMulAdd([ this ], [ k ]); else return this.curve._wnafMul(this, k); }; Point.prototype.mulAdd = function mulAdd(k1, p2, k2) { var points = [ this, p2 ]; var coeffs = [ k1, k2 ]; if (this.curve.endo) return this.curve._endoWnafMulAdd(points, coeffs); else return this.curve._wnafMulAdd(1, points, coeffs, 2); }; Point.prototype.jmulAdd = function jmulAdd(k1, p2, k2) { var points = [ this, p2 ]; var coeffs = [ k1, k2 ]; if (this.curve.endo) return this.curve._endoWnafMulAdd(points, coeffs, true); else return this.curve._wnafMulAdd(1, points, coeffs, 2, true); }; Point.prototype.eq = function eq(p) { return this === p || this.inf === p.inf && (this.inf || this.x.cmp(p.x) === 0 && this.y.cmp(p.y) === 0); }; Point.prototype.neg = function neg(_precompute) { if (this.inf) return this; var res = this.curve.point(this.x, this.y.redNeg()); if (_precompute && this.precomputed) { var pre = this.precomputed; var negate = function(p) { return p.neg(); }; res.precomputed = { naf: pre.naf && { wnd: pre.naf.wnd, points: pre.naf.points.map(negate) }, doubles: pre.doubles && { step: pre.doubles.step, points: pre.doubles.points.map(negate) } }; } return res; }; Point.prototype.toJ = function toJ() { if (this.inf) return this.curve.jpoint(null, null, null); var res = this.curve.jpoint(this.x, this.y, this.curve.one); return res; }; function JPoint(curve, x, y, z) { Base.BasePoint.call(this, curve, 'jacobian'); if (x === null && y === null && z === null) { this.x = this.curve.one; this.y = this.curve.one; this.z = new BN(0); } else { this.x = new BN(x, 16); this.y = new BN(y, 16); this.z = new BN(z, 16); } if (!this.x.red) this.x = this.x.toRed(this.curve.red); if (!this.y.red) this.y = this.y.toRed(this.curve.red); if (!this.z.red) this.z = this.z.toRed(this.curve.red); this.zOne = this.z === this.curve.one; } inherits(JPoint, Base.BasePoint); ShortCurve.prototype.jpoint = function jpoint(x, y, z) { return new JPoint(this, x, y, z); }; JPoint.prototype.toP = function toP() { if (this.isInfinity()) return this.curve.point(null, null); var zinv = this.z.redInvm(); var zinv2 = zinv.redSqr(); var ax = this.x.redMul(zinv2); var ay = this.y.redMul(zinv2).redMul(zinv); return this.curve.point(ax, ay); }; JPoint.prototype.neg = function neg() { return this.curve.jpoint(this.x, this.y.redNeg(), this.z); }; JPoint.prototype.add = function add(p) { // O + P = P if (this.isInfinity()) return p; // P + O = P if (p.isInfinity()) return this; // 12M + 4S + 7A var pz2 = p.z.redSqr(); var z2 = this.z.redSqr(); var u1 = this.x.redMul(pz2); var u2 = p.x.redMul(z2); var s1 = this.y.redMul(pz2.redMul(p.z)); var s2 = p.y.redMul(z2.redMul(this.z)); var h = u1.redSub(u2); var r = s1.redSub(s2); if (h.cmpn(0) === 0) { if (r.cmpn(0) !== 0) return this.curve.jpoint(null, null, null); else return this.dbl(); } var h2 = h.redSqr(); var h3 = h2.redMul(h); var v = u1.redMul(h2); var nx = r.redSqr().redIAdd(h3).redISub(v).redISub(v); var ny = r.redMul(v.redISub(nx)).redISub(s1.redMul(h3)); var nz = this.z.redMul(p.z).redMul(h); return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype.mixedAdd = function mixedAdd(p) { // O + P = P if (this.isInfinity()) return p.toJ(); // P + O = P if (p.isInfinity()) return this; // 8M + 3S + 7A var z2 = this.z.redSqr(); var u1 = this.x; var u2 = p.x.redMul(z2); var s1 = this.y; var s2 = p.y.redMul(z2).redMul(this.z); var h = u1.redSub(u2); var r = s1.redSub(s2); if (h.cmpn(0) === 0) { if (r.cmpn(0) !== 0) return this.curve.jpoint(null, null, null); else return this.dbl(); } var h2 = h.redSqr(); var h3 = h2.redMul(h); var v = u1.redMul(h2); var nx = r.redSqr().redIAdd(h3).redISub(v).redISub(v); var ny = r.redMul(v.redISub(nx)).redISub(s1.redMul(h3)); var nz = this.z.redMul(h); return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype.dblp = function dblp(pow) { if (pow === 0) return this; if (this.isInfinity()) return this; if (!pow) return this.dbl(); if (this.curve.zeroA || this.curve.threeA) { var r = this; for (var i = 0; i < pow; i++) r = r.dbl(); return r; } // 1M + 2S + 1A + N * (4S + 5M + 8A) // N = 1 => 6M + 6S + 9A var a = this.curve.a; var tinv = this.curve.tinv; var jx = this.x; var jy = this.y; var jz = this.z; var jz4 = jz.redSqr().redSqr(); // Reuse results var jyd = jy.redAdd(jy); for (var i = 0; i < pow; i++) { var jx2 = jx.redSqr(); var jyd2 = jyd.redSqr(); var jyd4 = jyd2.redSqr(); var c = jx2.redAdd(jx2).redIAdd(jx2).redIAdd(a.redMul(jz4)); var t1 = jx.redMul(jyd2); var nx = c.redSqr().redISub(t1.redAdd(t1)); var t2 = t1.redISub(nx); var dny = c.redMul(t2); dny = dny.redIAdd(dny).redISub(jyd4); var nz = jyd.redMul(jz); if (i + 1 < pow) jz4 = jz4.redMul(jyd4); jx = nx; jz = nz; jyd = dny; } return this.curve.jpoint(jx, jyd.redMul(tinv), jz); }; JPoint.prototype.dbl = function dbl() { if (this.isInfinity()) return this; if (this.curve.zeroA) return this._zeroDbl(); else if (this.curve.threeA) return this._threeDbl(); else return this._dbl(); }; JPoint.prototype._zeroDbl = function _zeroDbl() { var nx; var ny; var nz; // Z = 1 if (this.zOne) { // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html // #doubling-mdbl-2007-bl // 1M + 5S + 14A // XX = X1^2 var xx = this.x.redSqr(); // YY = Y1^2 var yy = this.y.redSqr(); // YYYY = YY^2 var yyyy = yy.redSqr(); // S = 2 * ((X1 + YY)^2 - XX - YYYY) var s = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy); s = s.redIAdd(s); // M = 3 * XX + a; a = 0 var m = xx.redAdd(xx).redIAdd(xx); // T = M ^ 2 - 2*S var t = m.redSqr().redISub(s).redISub(s); // 8 * YYYY var yyyy8 = yyyy.redIAdd(yyyy); yyyy8 = yyyy8.redIAdd(yyyy8); yyyy8 = yyyy8.redIAdd(yyyy8); // X3 = T nx = t; // Y3 = M * (S - T) - 8 * YYYY ny = m.redMul(s.redISub(t)).redISub(yyyy8); // Z3 = 2*Y1 nz = this.y.redAdd(this.y); } else { // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html // #doubling-dbl-2009-l // 2M + 5S + 13A // A = X1^2 var a = this.x.redSqr(); // B = Y1^2 var b = this.y.redSqr(); // C = B^2 var c = b.redSqr(); // D = 2 * ((X1 + B)^2 - A - C) var d = this.x.redAdd(b).redSqr().redISub(a).redISub(c); d = d.redIAdd(d); // E = 3 * A var e = a.redAdd(a).redIAdd(a); // F = E^2 var f = e.redSqr(); // 8 * C var c8 = c.redIAdd(c); c8 = c8.redIAdd(c8); c8 = c8.redIAdd(c8); // X3 = F - 2 * D nx = f.redISub(d).redISub(d); // Y3 = E * (D - X3) - 8 * C ny = e.redMul(d.redISub(nx)).redISub(c8); // Z3 = 2 * Y1 * Z1 nz = this.y.redMul(this.z); nz = nz.redIAdd(nz); } return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype._threeDbl = function _threeDbl() { var nx; var ny; var nz; // Z = 1 if (this.zOne) { // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html // #doubling-mdbl-2007-bl // 1M + 5S + 15A // XX = X1^2 var xx = this.x.redSqr(); // YY = Y1^2 var yy = this.y.redSqr(); // YYYY = YY^2 var yyyy = yy.redSqr(); // S = 2 * ((X1 + YY)^2 - XX - YYYY) var s = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy); s = s.redIAdd(s); // M = 3 * XX + a var m = xx.redAdd(xx).redIAdd(xx).redIAdd(this.curve.a); // T = M^2 - 2 * S var t = m.redSqr().redISub(s).redISub(s); // X3 = T nx = t; // Y3 = M * (S - T) - 8 * YYYY var yyyy8 = yyyy.redIAdd(yyyy); yyyy8 = yyyy8.redIAdd(yyyy8); yyyy8 = yyyy8.redIAdd(yyyy8); ny = m.redMul(s.redISub(t)).redISub(yyyy8); // Z3 = 2 * Y1 nz = this.y.redAdd(this.y); } else { // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html#doubling-dbl-2001-b // 3M + 5S // delta = Z1^2 var delta = this.z.redSqr(); // gamma = Y1^2 var gamma = this.y.redSqr(); // beta = X1 * gamma var beta = this.x.redMul(gamma); // alpha = 3 * (X1 - delta) * (X1 + delta) var alpha = this.x.redSub(delta).redMul(this.x.redAdd(delta)); alpha = alpha.redAdd(alpha).redIAdd(alpha); // X3 = alpha^2 - 8 * beta var beta4 = beta.redIAdd(beta); beta4 = beta4.redIAdd(beta4); var beta8 = beta4.redAdd(beta4); nx = alpha.redSqr().redISub(beta8); // Z3 = (Y1 + Z1)^2 - gamma - delta nz = this.y.redAdd(this.z).redSqr().redISub(gamma).redISub(delta); // Y3 = alpha * (4 * beta - X3) - 8 * gamma^2 var ggamma8 = gamma.redSqr(); ggamma8 = ggamma8.redIAdd(ggamma8); ggamma8 = ggamma8.redIAdd(ggamma8); ggamma8 = ggamma8.redIAdd(ggamma8); ny = alpha.redMul(beta4.redISub(nx)).redISub(ggamma8); } return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype._dbl = function _dbl() { var a = this.curve.a; // 4M + 6S + 10A var jx = this.x; var jy = this.y; var jz = this.z; var jz4 = jz.redSqr().redSqr(); var jx2 = jx.redSqr(); var jy2 = jy.redSqr(); var c = jx2.redAdd(jx2).redIAdd(jx2).redIAdd(a.redMul(jz4)); var jxd4 = jx.redAdd(jx); jxd4 = jxd4.redIAdd(jxd4); var t1 = jxd4.redMul(jy2); var nx = c.redSqr().redISub(t1.redAdd(t1)); var t2 = t1.redISub(nx); var jyd8 = jy2.redSqr(); jyd8 = jyd8.redIAdd(jyd8); jyd8 = jyd8.redIAdd(jyd8); jyd8 = jyd8.redIAdd(jyd8); var ny = c.redMul(t2).redISub(jyd8); var nz = jy.redAdd(jy).redMul(jz); return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype.trpl = function trpl() { if (!this.curve.zeroA) return this.dbl().add(this); // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html#tripling-tpl-2007-bl // 5M + 10S + ... // XX = X1^2 var xx = this.x.redSqr(); // YY = Y1^2 var yy = this.y.redSqr(); // ZZ = Z1^2 var zz = this.z.redSqr(); // YYYY = YY^2 var yyyy = yy.redSqr(); // M = 3 * XX + a * ZZ2; a = 0 var m = xx.redAdd(xx).redIAdd(xx); // MM = M^2 var mm = m.redSqr(); // E = 6 * ((X1 + YY)^2 - XX - YYYY) - MM var e = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy); e = e.redIAdd(e); e = e.redAdd(e).redIAdd(e); e = e.redISub(mm); // EE = E^2 var ee = e.redSqr(); // T = 16*YYYY var t = yyyy.redIAdd(yyyy); t = t.redIAdd(t); t = t.redIAdd(t); t = t.redIAdd(t); // U = (M + E)^2 - MM - EE - T var u = m.redIAdd(e).redSqr().redISub(mm).redISub(ee).redISub(t); // X3 = 4 * (X1 * EE - 4 * YY * U) var yyu4 = yy.redMul(u); yyu4 = yyu4.redIAdd(yyu4); yyu4 = yyu4.redIAdd(yyu4); var nx = this.x.redMul(ee).redISub(yyu4); nx = nx.redIAdd(nx); nx = nx.redIAdd(nx); // Y3 = 8 * Y1 * (U * (T - U) - E * EE) var ny = this.y.redMul(u.redMul(t.redISub(u)).redISub(e.redMul(ee))); ny = ny.redIAdd(ny); ny = ny.redIAdd(ny); ny = ny.redIAdd(ny); // Z3 = (Z1 + E)^2 - ZZ - EE var nz = this.z.redAdd(e).redSqr().redISub(zz).redISub(ee); return this.curve.jpoint(nx, ny, nz); }; JPoint.prototype.mul = function mul(k, kbase) { k = new BN(k, kbase); return this.curve._wnafMul(this, k); }; JPoint.prototype.eq = function eq(p) { if (p.type === 'affine') return this.eq(p.toJ()); if (this === p) return true; // x1 * z2^2 == x2 * z1^2 var z2 = this.z.redSqr(); var pz2 = p.z.redSqr(); if (this.x.redMul(pz2).redISub(p.x.redMul(z2)).cmpn(0) !== 0) return false; // y1 * z2^3 == y2 * z1^3 var z3 = z2.redMul(this.z); var pz3 = pz2.redMul(p.z); return this.y.redMul(pz3).redISub(p.y.redMul(z3)).cmpn(0) === 0; }; JPoint.prototype.eqXToP = function eqXToP(x) { var zs = this.z.redSqr(); var rx = x.toRed(this.curve.red).redMul(zs); if (this.x.cmp(rx) === 0) return true; var xc = x.clone(); var t = this.curve.redN.redMul(zs); for (;;) { xc.iadd(this.curve.n); if (xc.cmp(this.curve.p) >= 0) return false; rx.redIAdd(t); if (this.x.cmp(rx) === 0) return true; } return false; }; JPoint.prototype.inspect = function inspect() { if (this.isInfinity()) return ''; return ''; }; JPoint.prototype.isInfinity = function isInfinity() { // XXX This code assumes that zero is always zero in red return this.z.cmpn(0) === 0; }; },{"../../elliptic":69,"../curve":72,"bn.js":18,"inherits":97}],75:[function(require,module,exports){ 'use strict'; var curves = exports; var hash = require('hash.js'); var elliptic = require('../elliptic'); var assert = elliptic.utils.assert; function PresetCurve(options) { if (options.type === 'short') this.curve = new elliptic.curve.short(options); else if (options.type === 'edwards') this.curve = new elliptic.curve.edwards(options); else this.curve = new elliptic.curve.mont(options); this.g = this.curve.g; this.n = this.curve.n; this.hash = options.hash; assert(this.g.validate(), 'Invalid curve'); assert(this.g.mul(this.n).isInfinity(), 'Invalid curve, G*N != O'); } curves.PresetCurve = PresetCurve; function defineCurve(name, options) { Object.defineProperty(curves, name, { configurable: true, enumerable: true, get: function() { var curve = new PresetCurve(options); Object.defineProperty(curves, name, { configurable: true, enumerable: true, value: curve }); return curve; } }); } defineCurve('p192', { type: 'short', prime: 'p192', p: 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff', a: 'ffffffff ffffffff ffffffff fffffffe ffffffff fffffffc', b: '64210519 e59c80e7 0fa7e9ab 72243049 feb8deec c146b9b1', n: 'ffffffff ffffffff ffffffff 99def836 146bc9b1 b4d22831', hash: hash.sha256, gRed: false, g: [ '188da80e b03090f6 7cbf20eb 43a18800 f4ff0afd 82ff1012', '07192b95 ffc8da78 631011ed 6b24cdd5 73f977a1 1e794811' ] }); defineCurve('p224', { type: 'short', prime: 'p224', p: 'ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001', a: 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff fffffffe', b: 'b4050a85 0c04b3ab f5413256 5044b0b7 d7bfd8ba 270b3943 2355ffb4', n: 'ffffffff ffffffff ffffffff ffff16a2 e0b8f03e 13dd2945 5c5c2a3d', hash: hash.sha256, gRed: false, g: [ 'b70e0cbd 6bb4bf7f 321390b9 4a03c1d3 56c21122 343280d6 115c1d21', 'bd376388 b5f723fb 4c22dfe6 cd4375a0 5a074764 44d58199 85007e34' ] }); defineCurve('p256', { type: 'short', prime: null, p: 'ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff ffffffff', a: 'ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff fffffffc', b: '5ac635d8 aa3a93e7 b3ebbd55 769886bc 651d06b0 cc53b0f6 3bce3c3e 27d2604b', n: 'ffffffff 00000000 ffffffff ffffffff bce6faad a7179e84 f3b9cac2 fc632551', hash: hash.sha256, gRed: false, g: [ '6b17d1f2 e12c4247 f8bce6e5 63a440f2 77037d81 2deb33a0 f4a13945 d898c296', '4fe342e2 fe1a7f9b 8ee7eb4a 7c0f9e16 2bce3357 6b315ece cbb64068 37bf51f5' ] }); defineCurve('p384', { type: 'short', prime: null, p: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'fffffffe ffffffff 00000000 00000000 ffffffff', a: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'fffffffe ffffffff 00000000 00000000 fffffffc', b: 'b3312fa7 e23ee7e4 988e056b e3f82d19 181d9c6e fe814112 0314088f ' + '5013875a c656398d 8a2ed19d 2a85c8ed d3ec2aef', n: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff c7634d81 ' + 'f4372ddf 581a0db2 48b0a77a ecec196a ccc52973', hash: hash.sha384, gRed: false, g: [ 'aa87ca22 be8b0537 8eb1c71e f320ad74 6e1d3b62 8ba79b98 59f741e0 82542a38 ' + '5502f25d bf55296c 3a545e38 72760ab7', '3617de4a 96262c6f 5d9e98bf 9292dc29 f8f41dbd 289a147c e9da3113 b5f0b8c0 ' + '0a60b1ce 1d7e819d 7a431d7c 90ea0e5f' ] }); defineCurve('p521', { type: 'short', prime: null, p: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'ffffffff ffffffff ffffffff ffffffff ffffffff', a: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'ffffffff ffffffff ffffffff ffffffff fffffffc', b: '00000051 953eb961 8e1c9a1f 929a21a0 b68540ee a2da725b ' + '99b315f3 b8b48991 8ef109e1 56193951 ec7e937b 1652c0bd ' + '3bb1bf07 3573df88 3d2c34f1 ef451fd4 6b503f00', n: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' + 'ffffffff ffffffff fffffffa 51868783 bf2f966b 7fcc0148 ' + 'f709a5d0 3bb5c9b8 899c47ae bb6fb71e 91386409', hash: hash.sha512, gRed: false, g: [ '000000c6 858e06b7 0404e9cd 9e3ecb66 2395b442 9c648139 ' + '053fb521 f828af60 6b4d3dba a14b5e77 efe75928 fe1dc127 ' + 'a2ffa8de 3348b3c1 856a429b f97e7e31 c2e5bd66', '00000118 39296a78 9a3bc004 5c8a5fb4 2c7d1bd9 98f54449 ' + '579b4468 17afbd17 273e662c 97ee7299 5ef42640 c550b901 ' + '3fad0761 353c7086 a272c240 88be9476 9fd16650' ] }); defineCurve('curve25519', { type: 'mont', prime: 'p25519', p: '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed', a: '76d06', b: '0', n: '1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed', hash: hash.sha256, gRed: false, g: [ '9' ] }); defineCurve('ed25519', { type: 'edwards', prime: 'p25519', p: '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed', a: '-1', c: '1', // -121665 * (121666^(-1)) (mod P) d: '52036cee2b6ffe73 8cc740797779e898 00700a4d4141d8ab 75eb4dca135978a3', n: '1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed', hash: hash.sha256, gRed: false, g: [ '216936d3cd6e53fec0a4e231fdd6dc5c692cc7609525a7b2c9562d608f25d51a', // 4/5 '6666666666666666666666666666666666666666666666666666666666666658' ] }); var pre; try { pre = require('./precomputed/secp256k1'); } catch (e) { pre = undefined; } defineCurve('secp256k1', { type: 'short', prime: 'k256', p: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f', a: '0', b: '7', n: 'ffffffff ffffffff ffffffff fffffffe baaedce6 af48a03b bfd25e8c d0364141', h: '1', hash: hash.sha256, // Precomputed endomorphism beta: '7ae96a2b657c07106e64479eac3434e99cf0497512f58995c1396c28719501ee', lambda: '5363ad4cc05c30e0a5261c028812645a122e22ea20816678df02967c1b23bd72', basis: [ { a: '3086d221a7d46bcde86c90e49284eb15', b: '-e4437ed6010e88286f547fa90abfe4c3' }, { a: '114ca50f7a8e2f3f657c1108d9d44cfd8', b: '3086d221a7d46bcde86c90e49284eb15' } ], gRed: false, g: [ '79be667ef9dcbbac55a06295ce870b07029bfcdb2dce28d959f2815b16f81798', '483ada7726a3c4655da4fbfc0e1108a8fd17b448a68554199c47d08ffb10d4b8', pre ] }); },{"../elliptic":69,"./precomputed/secp256k1":83,"hash.js":88}],76:[function(require,module,exports){ 'use strict'; var BN = require('bn.js'); var elliptic = require('../../elliptic'); var utils = elliptic.utils; var assert = utils.assert; var KeyPair = require('./key'); var Signature = require('./signature'); function EC(options) { if (!(this instanceof EC)) return new EC(options); // Shortcut `elliptic.ec(curve-name)` if (typeof options === 'string') { assert(elliptic.curves.hasOwnProperty(options), 'Unknown curve ' + options); options = elliptic.curves[options]; } // Shortcut for `elliptic.ec(elliptic.curves.curveName)` if (options instanceof elliptic.curves.PresetCurve) options = { curve: options }; this.curve = options.curve.curve; this.n = this.curve.n; this.nh = this.n.ushrn(1); this.g = this.curve.g; // Point on curve this.g = options.curve.g; this.g.precompute(options.curve.n.bitLength() + 1); // Hash for function for DRBG this.hash = options.hash || options.curve.hash; } module.exports = EC; EC.prototype.keyPair = function keyPair(options) { return new KeyPair(this, options); }; EC.prototype.keyFromPrivate = function keyFromPrivate(priv, enc) { return KeyPair.fromPrivate(this, priv, enc); }; EC.prototype.keyFromPublic = function keyFromPublic(pub, enc) { return KeyPair.fromPublic(this, pub, enc); }; EC.prototype.genKeyPair = function genKeyPair(options) { if (!options) options = {}; // Instantiate Hmac_DRBG var drbg = new elliptic.hmacDRBG({ hash: this.hash, pers: options.pers, entropy: options.entropy || elliptic.rand(this.hash.hmacStrength), nonce: this.n.toArray() }); var bytes = this.n.byteLength(); var ns2 = this.n.sub(new BN(2)); do { var priv = new BN(drbg.generate(bytes)); if (priv.cmp(ns2) > 0) continue; priv.iaddn(1); return this.keyFromPrivate(priv); } while (true); }; EC.prototype._truncateToN = function truncateToN(msg, truncOnly) { var delta = msg.byteLength() * 8 - this.n.bitLength(); if (delta > 0) msg = msg.ushrn(delta); if (!truncOnly && msg.cmp(this.n) >= 0) return msg.sub(this.n); else return msg; }; EC.prototype.sign = function sign(msg, key, enc, options) { if (typeof enc === 'object') { options = enc; enc = null; } if (!options) options = {}; key = this.keyFromPrivate(key, enc); msg = this._truncateToN(new BN(msg, 16)); // Zero-extend key to provide enough entropy var bytes = this.n.byteLength(); var bkey = key.getPrivate().toArray('be', bytes); // Zero-extend nonce to have the same byte size as N var nonce = msg.toArray('be', bytes); // Instantiate Hmac_DRBG var drbg = new elliptic.hmacDRBG({ hash: this.hash, entropy: bkey, nonce: nonce, pers: options.pers, persEnc: options.persEnc }); // Number of bytes to generate var ns1 = this.n.sub(new BN(1)); for (var iter = 0; true; iter++) { var k = options.k ? options.k(iter) : new BN(drbg.generate(this.n.byteLength())); k = this._truncateToN(k, true); if (k.cmpn(1) <= 0 || k.cmp(ns1) >= 0) continue; var kp = this.g.mul(k); if (kp.isInfinity()) continue; var kpX = kp.getX(); var r = kpX.umod(this.n); if (r.cmpn(0) === 0) continue; var s = k.invm(this.n).mul(r.mul(key.getPrivate()).iadd(msg)); s = s.umod(this.n); if (s.cmpn(0) === 0) continue; var recoveryParam = (kp.getY().isOdd() ? 1 : 0) | (kpX.cmp(r) !== 0 ? 2 : 0); // Use complement of `s`, if it is > `n / 2` if (options.canonical && s.cmp(this.nh) > 0) { s = this.n.sub(s); recoveryParam ^= 1; } return new Signature({ r: r, s: s, recoveryParam: recoveryParam }); } }; EC.prototype.verify = function verify(msg, signature, key, enc) { msg = this._truncateToN(new BN(msg, 16)); key = this.keyFromPublic(key, enc); signature = new Signature(signature, 'hex'); // Perform primitive values validation var r = signature.r; var s = signature.s; if (r.cmpn(1) < 0 || r.cmp(this.n) >= 0) return false; if (s.cmpn(1) < 0 || s.cmp(this.n) >= 0) return false; // Validate signature var sinv = s.invm(this.n); var u1 = sinv.mul(msg).umod(this.n); var u2 = sinv.mul(r).umod(this.n); if (!this.curve._maxwellTrick) { var p = this.g.mulAdd(u1, key.getPublic(), u2); if (p.isInfinity()) return false; return p.getX().umod(this.n).cmp(r) === 0; } // NOTE: Greg Maxwell's trick, inspired by: // https://git.io/vad3K var p = this.g.jmulAdd(u1, key.getPublic(), u2); if (p.isInfinity()) return false; // Compare `p.x` of Jacobian point with `r`, // this will do `p.x == r * p.z^2` instead of multiplying `p.x` by the // inverse of `p.z^2` return p.eqXToP(r); }; EC.prototype.recoverPubKey = function(msg, signature, j, enc) { assert((3 & j) === j, 'The recovery param is more than two bits'); signature = new Signature(signature, enc); var n = this.n; var e = new BN(msg); var r = signature.r; var s = signature.s; // A set LSB signifies that the y-coordinate is odd var isYOdd = j & 1; var isSecondKey = j >> 1; if (r.cmp(this.curve.p.umod(this.curve.n)) >= 0 && isSecondKey) throw new Error('Unable to find sencond key candinate'); // 1.1. Let x = r + jn. if (isSecondKey) r = this.curve.pointFromX(r.add(this.curve.n), isYOdd); else r = this.curve.pointFromX(r, isYOdd); var eNeg = n.sub(e); // 1.6.1 Compute Q = r^-1 (sR - eG) // Q = r^-1 (sR + -eG) var rInv = signature.r.invm(n); return this.g.mulAdd(eNeg, r, s).mul(rInv); }; EC.prototype.getKeyRecoveryParam = function(e, signature, Q, enc) { signature = new Signature(signature, enc); if (signature.recoveryParam !== null) return signature.recoveryParam; for (var i = 0; i < 4; i++) { var Qprime; try { Qprime = this.recoverPubKey(e, signature, i); } catch (e) { continue; } if (Qprime.eq(Q)) return i; } throw new Error('Unable to find valid recovery factor'); }; },{"../../elliptic":69,"./key":77,"./signature":78,"bn.js":18}],77:[function(require,module,exports){ 'use strict'; var BN = require('bn.js'); function KeyPair(ec, options) { this.ec = ec; this.priv = null; this.pub = null; // KeyPair(ec, { priv: ..., pub: ... }) if (options.priv) this._importPrivate(options.priv, options.privEnc); if (options.pub) this._importPublic(options.pub, options.pubEnc); } module.exports = KeyPair; KeyPair.fromPublic = function fromPublic(ec, pub, enc) { if (pub instanceof KeyPair) return pub; return new KeyPair(ec, { pub: pub, pubEnc: enc }); }; KeyPair.fromPrivate = function fromPrivate(ec, priv, enc) { if (priv instanceof KeyPair) return priv; return new KeyPair(ec, { priv: priv, privEnc: enc }); }; KeyPair.prototype.validate = function validate() { var pub = this.getPublic(); if (pub.isInfinity()) return { result: false, reason: 'Invalid public key' }; if (!pub.validate()) return { result: false, reason: 'Public key is not a point' }; if (!pub.mul(this.ec.curve.n).isInfinity()) return { result: false, reason: 'Public key * N != O' }; return { result: true, reason: null }; }; KeyPair.prototype.getPublic = function getPublic(compact, enc) { // compact is optional argument if (typeof compact === 'string') { enc = compact; compact = null; } if (!this.pub) this.pub = this.ec.g.mul(this.priv); if (!enc) return this.pub; return this.pub.encode(enc, compact); }; KeyPair.prototype.getPrivate = function getPrivate(enc) { if (enc === 'hex') return this.priv.toString(16, 2); else return this.priv; }; KeyPair.prototype._importPrivate = function _importPrivate(key, enc) { this.priv = new BN(key, enc || 16); // Ensure that the priv won't be bigger than n, otherwise we may fail // in fixed multiplication method this.priv = this.priv.umod(this.ec.curve.n); }; KeyPair.prototype._importPublic = function _importPublic(key, enc) { if (key.x || key.y) { this.pub = this.ec.curve.point(key.x, key.y); return; } this.pub = this.ec.curve.decodePoint(key, enc); }; // ECDH KeyPair.prototype.derive = function derive(pub) { return pub.mul(this.priv).getX(); }; // ECDSA KeyPair.prototype.sign = function sign(msg, enc, options) { return this.ec.sign(msg, this, enc, options); }; KeyPair.prototype.verify = function verify(msg, signature) { return this.ec.verify(msg, signature, this); }; KeyPair.prototype.inspect = function inspect() { return ''; }; },{"bn.js":18}],78:[function(require,module,exports){ 'use strict'; var BN = require('bn.js'); var elliptic = require('../../elliptic'); var utils = elliptic.utils; var assert = utils.assert; function Signature(options, enc) { if (options instanceof Signature) return options; if (this._importDER(options, enc)) return; assert(options.r && options.s, 'Signature without r or s'); this.r = new BN(options.r, 16); this.s = new BN(options.s, 16); if (options.recoveryParam === undefined) this.recoveryParam = null; else this.recoveryParam = options.recoveryParam; } module.exports = Signature; function Position() { this.place = 0; } function getLength(buf, p) { var initial = buf[p.place++]; if (!(initial & 0x80)) { return initial; } var octetLen = initial & 0xf; var val = 0; for (var i = 0, off = p.place; i < octetLen; i++, off++) { val <<= 8; val |= buf[off]; } p.place = off; return val; } function rmPadding(buf) { var i = 0; var len = buf.length - 1; while (!buf[i] && !(buf[i + 1] & 0x80) && i < len) { i++; } if (i === 0) { return buf; } return buf.slice(i); } Signature.prototype._importDER = function _importDER(data, enc) { data = utils.toArray(data, enc); var p = new Position(); if (data[p.place++] !== 0x30) { return false; } var len = getLength(data, p); if ((len + p.place) !== data.length) { return false; } if (data[p.place++] !== 0x02) { return false; } var rlen = getLength(data, p); var r = data.slice(p.place, rlen + p.place); p.place += rlen; if (data[p.place++] !== 0x02) { return false; } var slen = getLength(data, p); if (data.length !== slen + p.place) { return false; } var s = data.slice(p.place, slen + p.place); if (r[0] === 0 && (r[1] & 0x80)) { r = r.slice(1); } if (s[0] === 0 && (s[1] & 0x80)) { s = s.slice(1); } this.r = new BN(r); this.s = new BN(s); this.recoveryParam = null; return true; }; function constructLength(arr, len) { if (len < 0x80) { arr.push(len); return; } var octets = 1 + (Math.log(len) / Math.LN2 >>> 3); arr.push(octets | 0x80); while (--octets) { arr.push((len >>> (octets << 3)) & 0xff); } arr.push(len); } Signature.prototype.toDER = function toDER(enc) { var r = this.r.toArray(); var s = this.s.toArray(); // Pad values if (r[0] & 0x80) r = [ 0 ].concat(r); // Pad values if (s[0] & 0x80) s = [ 0 ].concat(s); r = rmPadding(r); s = rmPadding(s); while (!s[0] && !(s[1] & 0x80)) { s = s.slice(1); } var arr = [ 0x02 ]; constructLength(arr, r.length); arr = arr.concat(r); arr.push(0x02); constructLength(arr, s.length); var backHalf = arr.concat(s); var res = [ 0x30 ]; constructLength(res, backHalf.length); res = res.concat(backHalf); return utils.encode(res, enc); }; },{"../../elliptic":69,"bn.js":18}],79:[function(require,module,exports){ 'use strict'; var hash = require('hash.js'); var elliptic = require('../../elliptic'); var utils = elliptic.utils; var assert = utils.assert; var parseBytes = utils.parseBytes; var KeyPair = require('./key'); var Signature = require('./signature'); function EDDSA(curve) { assert(curve === 'ed25519', 'only tested with ed25519 so far'); if (!(this instanceof EDDSA)) return new EDDSA(curve); var curve = elliptic.curves[curve].curve; this.curve = curve; this.g = curve.g; this.g.precompute(curve.n.bitLength() + 1); this.pointClass = curve.point().constructor; this.encodingLength = Math.ceil(curve.n.bitLength() / 8); this.hash = hash.sha512; } module.exports = EDDSA; /** * @param {Array|String} message - message bytes * @param {Array|String|KeyPair} secret - secret bytes or a keypair * @returns {Signature} - signature */ EDDSA.prototype.sign = function sign(message, secret) { message = parseBytes(message); var key = this.keyFromSecret(secret); var r = this.hashInt(key.messagePrefix(), message); var R = this.g.mul(r); var Rencoded = this.encodePoint(R); var s_ = this.hashInt(Rencoded, key.pubBytes(), message) .mul(key.priv()); var S = r.add(s_).umod(this.curve.n); return this.makeSignature({ R: R, S: S, Rencoded: Rencoded }); }; /** * @param {Array} message - message bytes * @param {Array|String|Signature} sig - sig bytes * @param {Array|String|Point|KeyPair} pub - public key * @returns {Boolean} - true if public key matches sig of message */ EDDSA.prototype.verify = function verify(message, sig, pub) { message = parseBytes(message); sig = this.makeSignature(sig); var key = this.keyFromPublic(pub); var h = this.hashInt(sig.Rencoded(), key.pubBytes(), message); var SG = this.g.mul(sig.S()); var RplusAh = sig.R().add(key.pub().mul(h)); return RplusAh.eq(SG); }; EDDSA.prototype.hashInt = function hashInt() { var hash = this.hash(); for (var i = 0; i < arguments.length; i++) hash.update(arguments[i]); return utils.intFromLE(hash.digest()).umod(this.curve.n); }; EDDSA.prototype.keyFromPublic = function keyFromPublic(pub) { return KeyPair.fromPublic(this, pub); }; EDDSA.prototype.keyFromSecret = function keyFromSecret(secret) { return KeyPair.fromSecret(this, secret); }; EDDSA.prototype.makeSignature = function makeSignature(sig) { if (sig instanceof Signature) return sig; return new Signature(this, sig); }; /** * * https://tools.ietf.org/html/draft-josefsson-eddsa-ed25519-03#section-5.2 * * EDDSA defines methods for encoding and decoding points and integers. These are * helper convenience methods, that pass along to utility functions implied * parameters. * */ EDDSA.prototype.encodePoint = function encodePoint(point) { var enc = point.getY().toArray('le', this.encodingLength); enc[this.encodingLength - 1] |= point.getX().isOdd() ? 0x80 : 0; return enc; }; EDDSA.prototype.decodePoint = function decodePoint(bytes) { bytes = utils.parseBytes(bytes); var lastIx = bytes.length - 1; var normed = bytes.slice(0, lastIx).concat(bytes[lastIx] & ~0x80); var xIsOdd = (bytes[lastIx] & 0x80) !== 0; var y = utils.intFromLE(normed); return this.curve.pointFromY(y, xIsOdd); }; EDDSA.prototype.encodeInt = function encodeInt(num) { return num.toArray('le', this.encodingLength); }; EDDSA.prototype.decodeInt = function decodeInt(bytes) { return utils.intFromLE(bytes); }; EDDSA.prototype.isPoint = function isPoint(val) { return val instanceof this.pointClass; }; },{"../../elliptic":69,"./key":80,"./signature":81,"hash.js":88}],80:[function(require,module,exports){ 'use strict'; var elliptic = require('../../elliptic'); var utils = elliptic.utils; var assert = utils.assert; var parseBytes = utils.parseBytes; var cachedProperty = utils.cachedProperty; /** * @param {EDDSA} eddsa - instance * @param {Object} params - public/private key parameters * * @param {Array} [params.secret] - secret seed bytes * @param {Point} [params.pub] - public key point (aka `A` in eddsa terms) * @param {Array} [params.pub] - public key point encoded as bytes * */ function KeyPair(eddsa, params) { this.eddsa = eddsa; this._secret = parseBytes(params.secret); if (eddsa.isPoint(params.pub)) this._pub = params.pub; else this._pubBytes = parseBytes(params.pub); } KeyPair.fromPublic = function fromPublic(eddsa, pub) { if (pub instanceof KeyPair) return pub; return new KeyPair(eddsa, { pub: pub }); }; KeyPair.fromSecret = function fromSecret(eddsa, secret) { if (secret instanceof KeyPair) return secret; return new KeyPair(eddsa, { secret: secret }); }; KeyPair.prototype.secret = function secret() { return this._secret; }; cachedProperty(KeyPair, 'pubBytes', function pubBytes() { return this.eddsa.encodePoint(this.pub()); }); cachedProperty(KeyPair, 'pub', function pub() { if (this._pubBytes) return this.eddsa.decodePoint(this._pubBytes); return this.eddsa.g.mul(this.priv()); }); cachedProperty(KeyPair, 'privBytes', function privBytes() { var eddsa = this.eddsa; var hash = this.hash(); var lastIx = eddsa.encodingLength - 1; var a = hash.slice(0, eddsa.encodingLength); a[0] &= 248; a[lastIx] &= 127; a[lastIx] |= 64; return a; }); cachedProperty(KeyPair, 'priv', function priv() { return this.eddsa.decodeInt(this.privBytes()); }); cachedProperty(KeyPair, 'hash', function hash() { return this.eddsa.hash().update(this.secret()).digest(); }); cachedProperty(KeyPair, 'messagePrefix', function messagePrefix() { return this.hash().slice(this.eddsa.encodingLength); }); KeyPair.prototype.sign = function sign(message) { assert(this._secret, 'KeyPair can only verify'); return this.eddsa.sign(message, this); }; KeyPair.prototype.verify = function verify(message, sig) { return this.eddsa.verify(message, sig, this); }; KeyPair.prototype.getSecret = function getSecret(enc) { assert(this._secret, 'KeyPair is public only'); return utils.encode(this.secret(), enc); }; KeyPair.prototype.getPublic = function getPublic(enc) { return utils.encode(this.pubBytes(), enc); }; module.exports = KeyPair; },{"../../elliptic":69}],81:[function(require,module,exports){ 'use strict'; var BN = require('bn.js'); var elliptic = require('../../elliptic'); var utils = elliptic.utils; var assert = utils.assert; var cachedProperty = utils.cachedProperty; var parseBytes = utils.parseBytes; /** * @param {EDDSA} eddsa - eddsa instance * @param {Array|Object} sig - * @param {Array|Point} [sig.R] - R point as Point or bytes * @param {Array|bn} [sig.S] - S scalar as bn or bytes * @param {Array} [sig.Rencoded] - R point encoded * @param {Array} [sig.Sencoded] - S scalar encoded */ function Signature(eddsa, sig) { this.eddsa = eddsa; if (typeof sig !== 'object') sig = parseBytes(sig); if (Array.isArray(sig)) { sig = { R: sig.slice(0, eddsa.encodingLength), S: sig.slice(eddsa.encodingLength) }; } assert(sig.R && sig.S, 'Signature without R or S'); if (eddsa.isPoint(sig.R)) this._R = sig.R; if (sig.S instanceof BN) this._S = sig.S; this._Rencoded = Array.isArray(sig.R) ? sig.R : sig.Rencoded; this._Sencoded = Array.isArray(sig.S) ? sig.S : sig.Sencoded; } cachedProperty(Signature, 'S', function S() { return this.eddsa.decodeInt(this.Sencoded()); }); cachedProperty(Signature, 'R', function R() { return this.eddsa.decodePoint(this.Rencoded()); }); cachedProperty(Signature, 'Rencoded', function Rencoded() { return this.eddsa.encodePoint(this.R()); }); cachedProperty(Signature, 'Sencoded', function Sencoded() { return this.eddsa.encodeInt(this.S()); }); Signature.prototype.toBytes = function toBytes() { return this.Rencoded().concat(this.Sencoded()); }; Signature.prototype.toHex = function toHex() { return utils.encode(this.toBytes(), 'hex').toUpperCase(); }; module.exports = Signature; },{"../../elliptic":69,"bn.js":18}],82:[function(require,module,exports){ 'use strict'; var hash = require('hash.js'); var elliptic = require('../elliptic'); var utils = elliptic.utils; var assert = utils.assert; function HmacDRBG(options) { if (!(this instanceof HmacDRBG)) return new HmacDRBG(options); this.hash = options.hash; this.predResist = !!options.predResist; this.outLen = this.hash.outSize; this.minEntropy = options.minEntropy || this.hash.hmacStrength; this.reseed = null; this.reseedInterval = null; this.K = null; this.V = null; var entropy = utils.toArray(options.entropy, options.entropyEnc); var nonce = utils.toArray(options.nonce, options.nonceEnc); var pers = utils.toArray(options.pers, options.persEnc); assert(entropy.length >= (this.minEntropy / 8), 'Not enough entropy. Minimum is: ' + this.minEntropy + ' bits'); this._init(entropy, nonce, pers); } module.exports = HmacDRBG; HmacDRBG.prototype._init = function init(entropy, nonce, pers) { var seed = entropy.concat(nonce).concat(pers); this.K = new Array(this.outLen / 8); this.V = new Array(this.outLen / 8); for (var i = 0; i < this.V.length; i++) { this.K[i] = 0x00; this.V[i] = 0x01; } this._update(seed); this.reseed = 1; this.reseedInterval = 0x1000000000000; // 2^48 }; HmacDRBG.prototype._hmac = function hmac() { return new hash.hmac(this.hash, this.K); }; HmacDRBG.prototype._update = function update(seed) { var kmac = this._hmac() .update(this.V) .update([ 0x00 ]); if (seed) kmac = kmac.update(seed); this.K = kmac.digest(); this.V = this._hmac().update(this.V).digest(); if (!seed) return; this.K = this._hmac() .update(this.V) .update([ 0x01 ]) .update(seed) .digest(); this.V = this._hmac().update(this.V).digest(); }; HmacDRBG.prototype.reseed = function reseed(entropy, entropyEnc, add, addEnc) { // Optional entropy enc if (typeof entropyEnc !== 'string') { addEnc = add; add = entropyEnc; entropyEnc = null; } entropy = utils.toBuffer(entropy, entropyEnc); add = utils.toBuffer(add, addEnc); assert(entropy.length >= (this.minEntropy / 8), 'Not enough entropy. Minimum is: ' + this.minEntropy + ' bits'); this._update(entropy.concat(add || [])); this.reseed = 1; }; HmacDRBG.prototype.generate = function generate(len, enc, add, addEnc) { if (this.reseed > this.reseedInterval) throw new Error('Reseed is required'); // Optional encoding if (typeof enc !== 'string') { addEnc = add; add = enc; enc = null; } // Optional additional data if (add) { add = utils.toArray(add, addEnc); this._update(add); } var temp = []; while (temp.length < len) { this.V = this._hmac().update(this.V).digest(); temp = temp.concat(this.V); } var res = temp.slice(0, len); this._update(add); this.reseed++; return utils.encode(res, enc); }; },{"../elliptic":69,"hash.js":88}],83:[function(require,module,exports){ module.exports = { doubles: { step: 4, points: [ [ 'e60fce93b59e9ec53011aabc21c23e97b2a31369b87a5ae9c44ee89e2a6dec0a', 'f7e3507399e595929db99f34f57937101296891e44d23f0be1f32cce69616821' ], [ '8282263212c609d9ea2a6e3e172de238d8c39cabd5ac1ca10646e23fd5f51508', 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msg.length; i += 2) res.push(parseInt(msg[i] + msg[i + 1], 16)); } return res; } utils.toArray = toArray; function zero2(word) { if (word.length === 1) return '0' + word; else return word; } utils.zero2 = zero2; function toHex(msg) { var res = ''; for (var i = 0; i < msg.length; i++) res += zero2(msg[i].toString(16)); return res; } utils.toHex = toHex; utils.encode = function encode(arr, enc) { if (enc === 'hex') return toHex(arr); else return arr; }; // Represent num in a w-NAF form function getNAF(num, w) { var naf = []; var ws = 1 << (w + 1); var k = num.clone(); while (k.cmpn(1) >= 0) { var z; if (k.isOdd()) { var mod = k.andln(ws - 1); if (mod > (ws >> 1) - 1) z = (ws >> 1) - mod; else z = mod; k.isubn(z); } else { z = 0; } naf.push(z); // Optimization, shift by word if possible var shift = (k.cmpn(0) !== 0 && k.andln(ws - 1) === 0) ? (w + 1) : 1; for (var i = 1; i < shift; i++) naf.push(0); k.iushrn(shift); } return naf; } utils.getNAF = getNAF; // Represent k1, k2 in a Joint Sparse Form function getJSF(k1, k2) { var jsf = [ [], [] ]; k1 = k1.clone(); k2 = k2.clone(); var d1 = 0; var d2 = 0; while (k1.cmpn(-d1) > 0 || k2.cmpn(-d2) > 0) { // First phase var m14 = (k1.andln(3) + d1) & 3; var m24 = (k2.andln(3) + d2) & 3; if (m14 === 3) m14 = -1; if (m24 === 3) m24 = -1; var u1; if ((m14 & 1) === 0) { u1 = 0; } else { var m8 = (k1.andln(7) + d1) & 7; if ((m8 === 3 || m8 === 5) && m24 === 2) u1 = -m14; else u1 = m14; } jsf[0].push(u1); var u2; if ((m24 & 1) === 0) { u2 = 0; } else { var m8 = (k2.andln(7) + d2) & 7; if ((m8 === 3 || m8 === 5) && m14 === 2) u2 = -m24; else u2 = m24; } jsf[1].push(u2); // Second phase if (2 * d1 === u1 + 1) d1 = 1 - d1; if (2 * d2 === u2 + 1) d2 = 1 - d2; k1.iushrn(1); k2.iushrn(1); } return jsf; } utils.getJSF = getJSF; function cachedProperty(obj, name, computer) { var key = '_' + name; obj.prototype[name] = function cachedProperty() { return this[key] !== undefined ? this[key] : this[key] = computer.call(this); }; } utils.cachedProperty = cachedProperty; function parseBytes(bytes) { return typeof bytes === 'string' ? utils.toArray(bytes, 'hex') : bytes; } utils.parseBytes = parseBytes; function intFromLE(bytes) { return new BN(bytes, 'hex', 'le'); } utils.intFromLE = intFromLE; },{"bn.js":18}],85:[function(require,module,exports){ module.exports={ "_args": [ [ { "raw": "elliptic@^6.0.0", "scope": null, "escapedName": "elliptic", "name": "elliptic", "rawSpec": "^6.0.0", "spec": ">=6.0.0 <7.0.0", "type": "range" }, "/home/cyborg/.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/browserify-sign" ] ], "_from": "elliptic@>=6.0.0 <7.0.0", "_id": "elliptic@6.3.1", "_inCache": true, "_installable": true, "_location": "/browserify/elliptic", "_nodeVersion": "6.0.0", "_npmOperationalInternal": { "host": "packages-16-east.internal.npmjs.com", "tmp": "tmp/elliptic-6.3.1.tgz_1465921413402_0.5202967382501811" }, "_npmUser": { "name": "indutny", "email": "fedor@indutny.com" }, "_npmVersion": "3.8.6", "_phantomChildren": {}, "_requested": { "raw": "elliptic@^6.0.0", "scope": null, "escapedName": "elliptic", "name": "elliptic", "rawSpec": "^6.0.0", "spec": ">=6.0.0 <7.0.0", "type": "range" }, "_requiredBy": [ "/browserify/browserify-sign", "/browserify/create-ecdh" ], "_resolved": "https://registry.npmjs.org/elliptic/-/elliptic-6.3.1.tgz", "_shasum": "17781f2109ab0ec686b146bdcff5d2e8c6aeceda", "_shrinkwrap": null, "_spec": "elliptic@^6.0.0", "_where": "/home/cyborg/.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/browserify-sign", "author": { "name": "Fedor Indutny", "email": "fedor@indutny.com" }, "bugs": { "url": "https://github.com/indutny/elliptic/issues" }, "dependencies": { "bn.js": "^4.4.0", "brorand": "^1.0.1", "hash.js": "^1.0.0", "inherits": "^2.0.1" }, "description": "EC cryptography", "devDependencies": { "brfs": "^1.4.3", "coveralls": "^2.11.3", "grunt": "^0.4.5", "grunt-browserify": "^5.0.0", "grunt-contrib-connect": "^1.0.0", "grunt-contrib-copy": "^1.0.0", "grunt-contrib-uglify": "^1.0.1", "grunt-mocha-istanbul": "^3.0.1", "grunt-saucelabs": "^8.6.2", "istanbul": "^0.4.2", "jscs": "^2.9.0", "jshint": "^2.6.0", "mocha": "^2.1.0" }, "directories": {}, "dist": { "shasum": "17781f2109ab0ec686b146bdcff5d2e8c6aeceda", "tarball": "https://registry.npmjs.org/elliptic/-/elliptic-6.3.1.tgz" }, "files": [ "lib" ], "gitHead": "c53f5cf3d832c0073eb4a4ed423a464cbce68f3e", "homepage": "https://github.com/indutny/elliptic", "keywords": [ "EC", "Elliptic", "curve", "Cryptography" ], "license": "MIT", "main": "lib/elliptic.js", "maintainers": [ { "name": "indutny", "email": "fedor@indutny.com" } ], "name": "elliptic", "optionalDependencies": {}, "readme": "ERROR: No README data found!", "repository": { "type": "git", "url": "git+ssh://git@github.com/indutny/elliptic.git" }, "scripts": { "jscs": "jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js", "jshint": "jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js", "lint": "npm run jscs && npm run jshint", "test": "npm run lint && npm run unit", "unit": "istanbul test _mocha --reporter=spec test/index.js", "version": "grunt dist && git add dist/" }, "version": "6.3.1" } },{}],86:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. function EventEmitter() { this._events = this._events || {}; this._maxListeners = this._maxListeners || undefined; } module.exports = EventEmitter; // Backwards-compat with node 0.10.x EventEmitter.EventEmitter = EventEmitter; EventEmitter.prototype._events = undefined; EventEmitter.prototype._maxListeners = undefined; // By default EventEmitters will print a warning if more than 10 listeners are // added to it. This is a useful default which helps finding memory leaks. EventEmitter.defaultMaxListeners = 10; // Obviously not all Emitters should be limited to 10. This function allows // that to be increased. Set to zero for unlimited. EventEmitter.prototype.setMaxListeners = function(n) { if (!isNumber(n) || n < 0 || isNaN(n)) throw TypeError('n must be a positive number'); this._maxListeners = n; return this; }; EventEmitter.prototype.emit = function(type) { var er, handler, len, args, i, listeners; if (!this._events) this._events = {}; // If there is no 'error' event listener then throw. if (type === 'error') { if (!this._events.error || (isObject(this._events.error) && !this._events.error.length)) { er = arguments[1]; if (er instanceof Error) { throw er; // Unhandled 'error' event } else { // At least give some kind of context to the user var err = new Error('Uncaught, unspecified "error" event. (' + er + ')'); err.context = er; throw err; } } } handler = this._events[type]; if (isUndefined(handler)) return false; if (isFunction(handler)) { switch (arguments.length) { // fast cases case 1: handler.call(this); break; case 2: handler.call(this, arguments[1]); break; case 3: handler.call(this, arguments[1], arguments[2]); break; // slower default: args = Array.prototype.slice.call(arguments, 1); handler.apply(this, args); } } else if (isObject(handler)) { args = Array.prototype.slice.call(arguments, 1); listeners = handler.slice(); len = listeners.length; for (i = 0; i < len; i++) listeners[i].apply(this, args); } return true; }; EventEmitter.prototype.addListener = function(type, listener) { var m; if (!isFunction(listener)) throw TypeError('listener must be a function'); if (!this._events) this._events = {}; // To avoid recursion in the case that type === "newListener"! Before // adding it to the listeners, first emit "newListener". if (this._events.newListener) this.emit('newListener', type, isFunction(listener.listener) ? listener.listener : listener); if (!this._events[type]) // Optimize the case of one listener. Don't need the extra array object. this._events[type] = listener; else if (isObject(this._events[type])) // If we've already got an array, just append. this._events[type].push(listener); else // Adding the second element, need to change to array. this._events[type] = [this._events[type], listener]; // Check for listener leak if (isObject(this._events[type]) && !this._events[type].warned) { if (!isUndefined(this._maxListeners)) { m = this._maxListeners; } else { m = EventEmitter.defaultMaxListeners; } if (m && m > 0 && this._events[type].length > m) { this._events[type].warned = true; console.error('(node) warning: possible EventEmitter memory ' + 'leak detected. %d listeners added. ' + 'Use emitter.setMaxListeners() to increase limit.', this._events[type].length); if (typeof console.trace === 'function') { // not supported in IE 10 console.trace(); } } } return this; }; EventEmitter.prototype.on = EventEmitter.prototype.addListener; EventEmitter.prototype.once = function(type, listener) { if (!isFunction(listener)) throw TypeError('listener must be a function'); var fired = false; function g() { this.removeListener(type, g); if (!fired) { fired = true; listener.apply(this, arguments); } } g.listener = listener; this.on(type, g); return this; }; // emits a 'removeListener' event iff the listener was removed EventEmitter.prototype.removeListener = function(type, listener) { var list, position, length, i; if (!isFunction(listener)) throw TypeError('listener must be a function'); if (!this._events || !this._events[type]) return this; list = this._events[type]; length = list.length; position = -1; if (list === listener || (isFunction(list.listener) && list.listener === listener)) { delete this._events[type]; if (this._events.removeListener) this.emit('removeListener', type, listener); } else if (isObject(list)) { for (i = length; i-- > 0;) { if (list[i] === listener || (list[i].listener && list[i].listener === listener)) { position = i; break; } } if (position < 0) return this; if (list.length === 1) { list.length = 0; delete this._events[type]; } else { list.splice(position, 1); } if (this._events.removeListener) this.emit('removeListener', type, listener); } return this; }; EventEmitter.prototype.removeAllListeners = function(type) { var key, listeners; if (!this._events) return this; // not listening for removeListener, no need to emit if (!this._events.removeListener) { if (arguments.length === 0) this._events = {}; else if (this._events[type]) delete this._events[type]; return this; } // emit removeListener for all listeners on all events if (arguments.length === 0) { for (key in this._events) { if (key === 'removeListener') continue; this.removeAllListeners(key); } this.removeAllListeners('removeListener'); this._events = {}; return this; } listeners = this._events[type]; if (isFunction(listeners)) { this.removeListener(type, listeners); } else if (listeners) { // LIFO order while (listeners.length) this.removeListener(type, listeners[listeners.length - 1]); } delete this._events[type]; return this; }; EventEmitter.prototype.listeners = function(type) { var ret; if (!this._events || !this._events[type]) ret = []; else if (isFunction(this._events[type])) ret = [this._events[type]]; else ret = this._events[type].slice(); return ret; }; EventEmitter.prototype.listenerCount = function(type) { if (this._events) { var evlistener = this._events[type]; if (isFunction(evlistener)) return 1; else if (evlistener) return evlistener.length; } return 0; }; EventEmitter.listenerCount = function(emitter, type) { return emitter.listenerCount(type); }; function isFunction(arg) { return typeof arg === 'function'; } function isNumber(arg) { return typeof arg === 'number'; } function isObject(arg) { return typeof arg === 'object' && arg !== null; } function isUndefined(arg) { return arg === void 0; } },{}],87:[function(require,module,exports){ (function (Buffer){ var md5 = require('create-hash/md5') module.exports = EVP_BytesToKey function EVP_BytesToKey (password, salt, keyLen, ivLen) { if (!Buffer.isBuffer(password)) { password = new Buffer(password, 'binary') } if (salt && !Buffer.isBuffer(salt)) { salt = new Buffer(salt, 'binary') } keyLen = keyLen / 8 ivLen = ivLen || 0 var ki = 0 var ii = 0 var key = new Buffer(keyLen) var iv = new Buffer(ivLen) var addmd = 0 var md_buf var i var bufs = [] while (true) { if (addmd++ > 0) { bufs.push(md_buf) } bufs.push(password) if (salt) { bufs.push(salt) } md_buf = md5(Buffer.concat(bufs)) bufs = [] i = 0 if (keyLen > 0) { while (true) { if (keyLen === 0) { break } if (i === md_buf.length) { break } key[ki++] = md_buf[i] keyLen-- i++ } } if (ivLen > 0 && i !== md_buf.length) { while (true) { if (ivLen === 0) { break } if (i === md_buf.length) { break } iv[ii++] = md_buf[i] ivLen-- i++ } } if (keyLen === 0 && ivLen === 0) { break } } for (i = 0; i < md_buf.length; i++) { md_buf[i] = 0 } return { key: key, iv: iv } } }).call(this,require("buffer").Buffer) },{"buffer":49,"create-hash/md5":56}],88:[function(require,module,exports){ var hash = exports; hash.utils = require('./hash/utils'); hash.common = require('./hash/common'); hash.sha = require('./hash/sha'); hash.ripemd = require('./hash/ripemd'); hash.hmac = require('./hash/hmac'); // Proxy hash functions to the main object hash.sha1 = hash.sha.sha1; hash.sha256 = hash.sha.sha256; hash.sha224 = hash.sha.sha224; hash.sha384 = hash.sha.sha384; hash.sha512 = hash.sha.sha512; hash.ripemd160 = hash.ripemd.ripemd160; },{"./hash/common":89,"./hash/hmac":90,"./hash/ripemd":91,"./hash/sha":92,"./hash/utils":93}],89:[function(require,module,exports){ var hash = require('../hash'); var utils = hash.utils; var assert = utils.assert; function BlockHash() { this.pending = null; this.pendingTotal = 0; this.blockSize = this.constructor.blockSize; this.outSize = this.constructor.outSize; this.hmacStrength = this.constructor.hmacStrength; this.padLength = this.constructor.padLength / 8; this.endian = 'big'; this._delta8 = this.blockSize / 8; this._delta32 = this.blockSize / 32; } exports.BlockHash = BlockHash; BlockHash.prototype.update = function update(msg, enc) { // Convert message to array, pad it, and join into 32bit blocks msg = utils.toArray(msg, enc); if (!this.pending) this.pending = msg; else this.pending = this.pending.concat(msg); this.pendingTotal += msg.length; // Enough data, try updating if (this.pending.length >= this._delta8) { msg = this.pending; // Process pending data in blocks var r = msg.length % this._delta8; this.pending = msg.slice(msg.length - r, msg.length); if (this.pending.length === 0) this.pending = null; msg = utils.join32(msg, 0, msg.length - r, this.endian); for (var i = 0; i < msg.length; i += this._delta32) this._update(msg, i, i + this._delta32); } return this; }; BlockHash.prototype.digest = function digest(enc) { this.update(this._pad()); assert(this.pending === null); return this._digest(enc); }; BlockHash.prototype._pad = function pad() { var len = this.pendingTotal; var bytes = this._delta8; var k = bytes - ((len + this.padLength) % bytes); var res = new Array(k + this.padLength); res[0] = 0x80; for (var i = 1; i < k; i++) res[i] = 0; // Append length len <<= 3; if (this.endian === 'big') { for (var t = 8; t < this.padLength; t++) res[i++] = 0; res[i++] = 0; res[i++] = 0; res[i++] = 0; res[i++] = 0; res[i++] = (len >>> 24) & 0xff; res[i++] = (len >>> 16) & 0xff; res[i++] = (len >>> 8) & 0xff; res[i++] = len & 0xff; } else { res[i++] = len & 0xff; res[i++] = (len >>> 8) & 0xff; res[i++] = (len >>> 16) & 0xff; res[i++] = (len >>> 24) & 0xff; res[i++] = 0; res[i++] = 0; res[i++] = 0; res[i++] = 0; for (var t = 8; t < this.padLength; t++) res[i++] = 0; } return res; }; },{"../hash":88}],90:[function(require,module,exports){ var hmac = exports; var hash = require('../hash'); var utils = hash.utils; var assert = utils.assert; function Hmac(hash, key, enc) { if (!(this instanceof Hmac)) return new Hmac(hash, key, enc); this.Hash = hash; this.blockSize = hash.blockSize / 8; this.outSize = hash.outSize / 8; this.inner = null; this.outer = null; this._init(utils.toArray(key, enc)); } module.exports = Hmac; Hmac.prototype._init = function init(key) { // Shorten key, if needed if (key.length > this.blockSize) key = new this.Hash().update(key).digest(); assert(key.length <= this.blockSize); // Add padding to key for (var i = key.length; i < this.blockSize; i++) key.push(0); for (var i = 0; i < key.length; i++) key[i] ^= 0x36; this.inner = new this.Hash().update(key); // 0x36 ^ 0x5c = 0x6a for (var i = 0; i < key.length; i++) key[i] ^= 0x6a; this.outer = new this.Hash().update(key); }; Hmac.prototype.update = function update(msg, enc) { this.inner.update(msg, enc); return this; }; Hmac.prototype.digest = function digest(enc) { this.outer.update(this.inner.digest()); return this.outer.digest(enc); }; },{"../hash":88}],91:[function(require,module,exports){ var hash = require('../hash'); var utils = hash.utils; var rotl32 = utils.rotl32; var sum32 = utils.sum32; var sum32_3 = utils.sum32_3; var sum32_4 = utils.sum32_4; var BlockHash = hash.common.BlockHash; function RIPEMD160() { if (!(this instanceof RIPEMD160)) return new RIPEMD160(); BlockHash.call(this); this.h = [ 0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0 ]; this.endian = 'little'; } utils.inherits(RIPEMD160, BlockHash); exports.ripemd160 = RIPEMD160; RIPEMD160.blockSize = 512; RIPEMD160.outSize = 160; RIPEMD160.hmacStrength = 192; RIPEMD160.padLength = 64; RIPEMD160.prototype._update = function update(msg, start) { var A = this.h[0]; var B = this.h[1]; var C = this.h[2]; var D = this.h[3]; var E = this.h[4]; var Ah = A; var Bh = B; var Ch = C; var Dh = D; var Eh = E; for (var j = 0; j < 80; j++) { var T = sum32( rotl32( sum32_4(A, f(j, B, C, D), msg[r[j] + start], K(j)), s[j]), E); A = E; E = D; D = rotl32(C, 10); C = B; B = T; T = sum32( rotl32( sum32_4(Ah, f(79 - j, Bh, Ch, Dh), msg[rh[j] + start], Kh(j)), sh[j]), Eh); Ah = Eh; Eh = Dh; Dh = rotl32(Ch, 10); Ch = Bh; Bh = T; } T = sum32_3(this.h[1], C, Dh); this.h[1] = sum32_3(this.h[2], D, Eh); this.h[2] = sum32_3(this.h[3], E, Ah); this.h[3] = sum32_3(this.h[4], A, Bh); this.h[4] = sum32_3(this.h[0], B, Ch); this.h[0] = T; }; RIPEMD160.prototype._digest = function digest(enc) { if (enc === 'hex') return utils.toHex32(this.h, 'little'); else return utils.split32(this.h, 'little'); }; function f(j, x, y, z) { if (j <= 15) return x ^ y ^ z; else if (j <= 31) return (x & y) | ((~x) & z); else if (j <= 47) return (x | (~y)) ^ z; else if (j <= 63) return (x & z) | (y & (~z)); else return x ^ (y | (~z)); } function K(j) { if (j <= 15) return 0x00000000; else if (j <= 31) return 0x5a827999; else if (j <= 47) return 0x6ed9eba1; else if (j <= 63) return 0x8f1bbcdc; else return 0xa953fd4e; } function Kh(j) { if (j <= 15) return 0x50a28be6; else if (j <= 31) return 0x5c4dd124; else if (j <= 47) return 0x6d703ef3; else if (j <= 63) return 0x7a6d76e9; else return 0x00000000; } var r = [ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13 ]; var rh = [ 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11 ]; var s = [ 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 ]; var sh = [ 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 ]; },{"../hash":88}],92:[function(require,module,exports){ var hash = require('../hash'); var utils = hash.utils; var assert = utils.assert; var rotr32 = utils.rotr32; var rotl32 = utils.rotl32; var sum32 = utils.sum32; var sum32_4 = utils.sum32_4; var sum32_5 = utils.sum32_5; var rotr64_hi = utils.rotr64_hi; var rotr64_lo = utils.rotr64_lo; var shr64_hi = utils.shr64_hi; var shr64_lo = utils.shr64_lo; var sum64 = utils.sum64; var sum64_hi = utils.sum64_hi; var sum64_lo = utils.sum64_lo; var sum64_4_hi = utils.sum64_4_hi; var sum64_4_lo = utils.sum64_4_lo; var sum64_5_hi = utils.sum64_5_hi; var sum64_5_lo = utils.sum64_5_lo; var BlockHash = hash.common.BlockHash; var sha256_K = [ 0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5, 0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174, 0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc, 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da, 0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967, 0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85, 0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070, 0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3, 0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208, 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2 ]; var sha512_K = [ 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd, 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc, 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019, 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118, 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe, 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2, 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1, 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694, 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3, 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65, 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483, 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5, 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210, 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4, 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725, 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70, 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926, 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df, 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8, 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b, 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001, 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30, 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910, 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8, 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53, 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8, 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb, 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3, 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60, 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec, 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9, 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b, 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207, 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178, 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6, 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b, 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493, 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c, 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a, 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817 ]; var sha1_K = [ 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xCA62C1D6 ]; function SHA256() { if (!(this instanceof SHA256)) return new SHA256(); BlockHash.call(this); this.h = [ 0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a, 0x510e527f, 0x9b05688c, 0x1f83d9ab, 0x5be0cd19 ]; this.k = sha256_K; this.W = new Array(64); } utils.inherits(SHA256, BlockHash); exports.sha256 = SHA256; SHA256.blockSize = 512; SHA256.outSize = 256; SHA256.hmacStrength = 192; SHA256.padLength = 64; SHA256.prototype._update = function _update(msg, start) { var W = this.W; for (var i = 0; i < 16; i++) W[i] = msg[start + i]; for (; i < W.length; i++) W[i] = sum32_4(g1_256(W[i - 2]), W[i - 7], g0_256(W[i - 15]), W[i - 16]); var a = this.h[0]; var b = this.h[1]; var c = this.h[2]; var d = this.h[3]; var e = this.h[4]; var f = this.h[5]; var g = this.h[6]; var h = this.h[7]; assert(this.k.length === W.length); for (var i = 0; i < W.length; i++) { var T1 = sum32_5(h, s1_256(e), ch32(e, f, g), this.k[i], W[i]); var T2 = sum32(s0_256(a), maj32(a, b, c)); h = g; g = f; f = e; e = sum32(d, T1); d = c; c = b; b = a; a = sum32(T1, T2); } this.h[0] = sum32(this.h[0], a); this.h[1] = sum32(this.h[1], b); this.h[2] = sum32(this.h[2], c); this.h[3] = sum32(this.h[3], d); this.h[4] = sum32(this.h[4], e); this.h[5] = sum32(this.h[5], f); this.h[6] = sum32(this.h[6], g); this.h[7] = sum32(this.h[7], h); }; SHA256.prototype._digest = function digest(enc) { if (enc === 'hex') return utils.toHex32(this.h, 'big'); else return utils.split32(this.h, 'big'); }; function SHA224() { if (!(this instanceof SHA224)) return new SHA224(); SHA256.call(this); this.h = [ 0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4 ]; } utils.inherits(SHA224, SHA256); exports.sha224 = SHA224; SHA224.blockSize = 512; SHA224.outSize = 224; SHA224.hmacStrength = 192; SHA224.padLength = 64; SHA224.prototype._digest = function digest(enc) { // Just truncate output if (enc === 'hex') return utils.toHex32(this.h.slice(0, 7), 'big'); else return utils.split32(this.h.slice(0, 7), 'big'); }; function SHA512() { if (!(this instanceof SHA512)) return new SHA512(); BlockHash.call(this); this.h = [ 0x6a09e667, 0xf3bcc908, 0xbb67ae85, 0x84caa73b, 0x3c6ef372, 0xfe94f82b, 0xa54ff53a, 0x5f1d36f1, 0x510e527f, 0xade682d1, 0x9b05688c, 0x2b3e6c1f, 0x1f83d9ab, 0xfb41bd6b, 0x5be0cd19, 0x137e2179 ]; this.k = sha512_K; this.W = new Array(160); } utils.inherits(SHA512, BlockHash); exports.sha512 = SHA512; SHA512.blockSize = 1024; SHA512.outSize = 512; SHA512.hmacStrength = 192; SHA512.padLength = 128; SHA512.prototype._prepareBlock = function _prepareBlock(msg, start) { var W = this.W; // 32 x 32bit words for (var i = 0; i < 32; i++) W[i] = msg[start + i]; for (; i < W.length; i += 2) { var c0_hi = g1_512_hi(W[i - 4], W[i - 3]); // i - 2 var c0_lo = g1_512_lo(W[i - 4], W[i - 3]); var c1_hi = W[i - 14]; // i - 7 var c1_lo = W[i - 13]; var c2_hi = g0_512_hi(W[i - 30], W[i - 29]); // i - 15 var c2_lo = g0_512_lo(W[i - 30], W[i - 29]); var c3_hi = W[i - 32]; // i - 16 var c3_lo = W[i - 31]; W[i] = sum64_4_hi(c0_hi, c0_lo, c1_hi, c1_lo, c2_hi, c2_lo, c3_hi, c3_lo); W[i + 1] = sum64_4_lo(c0_hi, c0_lo, c1_hi, c1_lo, c2_hi, c2_lo, c3_hi, c3_lo); } }; SHA512.prototype._update = function _update(msg, start) { this._prepareBlock(msg, start); var W = this.W; var ah = this.h[0]; var al = this.h[1]; var bh = this.h[2]; var bl = this.h[3]; var ch = this.h[4]; var cl = this.h[5]; var dh = this.h[6]; var dl = this.h[7]; var eh = this.h[8]; var el = this.h[9]; var fh = this.h[10]; var fl = this.h[11]; var gh = this.h[12]; var gl = this.h[13]; var hh = this.h[14]; var hl = this.h[15]; assert(this.k.length === W.length); for (var i = 0; i < W.length; i += 2) { var c0_hi = hh; var c0_lo = hl; var c1_hi = s1_512_hi(eh, el); var c1_lo = s1_512_lo(eh, el); var c2_hi = ch64_hi(eh, el, fh, fl, gh, gl); var c2_lo = ch64_lo(eh, el, fh, fl, gh, gl); var c3_hi = this.k[i]; var c3_lo = this.k[i + 1]; var c4_hi = W[i]; var c4_lo = W[i + 1]; var T1_hi = sum64_5_hi(c0_hi, c0_lo, c1_hi, c1_lo, c2_hi, c2_lo, c3_hi, c3_lo, c4_hi, c4_lo); var T1_lo = sum64_5_lo(c0_hi, c0_lo, c1_hi, c1_lo, c2_hi, c2_lo, c3_hi, c3_lo, c4_hi, c4_lo); var c0_hi = s0_512_hi(ah, al); var c0_lo = s0_512_lo(ah, al); var c1_hi = maj64_hi(ah, al, bh, bl, ch, cl); var c1_lo = maj64_lo(ah, al, bh, bl, ch, cl); var T2_hi = sum64_hi(c0_hi, c0_lo, c1_hi, c1_lo); var T2_lo = sum64_lo(c0_hi, c0_lo, c1_hi, c1_lo); hh = gh; hl = gl; gh = fh; gl = fl; fh = eh; fl = el; eh = sum64_hi(dh, dl, T1_hi, T1_lo); el = sum64_lo(dl, dl, T1_hi, T1_lo); dh = ch; dl = cl; ch = bh; cl = bl; bh = ah; bl = al; ah = sum64_hi(T1_hi, T1_lo, T2_hi, T2_lo); al = sum64_lo(T1_hi, T1_lo, T2_hi, T2_lo); } sum64(this.h, 0, ah, al); sum64(this.h, 2, bh, bl); sum64(this.h, 4, ch, cl); sum64(this.h, 6, dh, dl); sum64(this.h, 8, eh, el); sum64(this.h, 10, fh, fl); sum64(this.h, 12, gh, gl); sum64(this.h, 14, hh, hl); }; SHA512.prototype._digest = function digest(enc) { if (enc === 'hex') return utils.toHex32(this.h, 'big'); else return utils.split32(this.h, 'big'); }; function SHA384() { if (!(this instanceof SHA384)) return new SHA384(); SHA512.call(this); this.h = [ 0xcbbb9d5d, 0xc1059ed8, 0x629a292a, 0x367cd507, 0x9159015a, 0x3070dd17, 0x152fecd8, 0xf70e5939, 0x67332667, 0xffc00b31, 0x8eb44a87, 0x68581511, 0xdb0c2e0d, 0x64f98fa7, 0x47b5481d, 0xbefa4fa4 ]; } utils.inherits(SHA384, SHA512); exports.sha384 = SHA384; SHA384.blockSize = 1024; SHA384.outSize = 384; SHA384.hmacStrength = 192; SHA384.padLength = 128; SHA384.prototype._digest = function digest(enc) { if (enc === 'hex') return utils.toHex32(this.h.slice(0, 12), 'big'); else return utils.split32(this.h.slice(0, 12), 'big'); }; function SHA1() { if (!(this instanceof SHA1)) return new SHA1(); BlockHash.call(this); this.h = [ 0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0 ]; this.W = new Array(80); } utils.inherits(SHA1, BlockHash); exports.sha1 = SHA1; SHA1.blockSize = 512; SHA1.outSize = 160; SHA1.hmacStrength = 80; SHA1.padLength = 64; SHA1.prototype._update = function _update(msg, start) { var W = this.W; for (var i = 0; i < 16; i++) W[i] = msg[start + i]; for(; i < W.length; i++) W[i] = rotl32(W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16], 1); var a = this.h[0]; var b = this.h[1]; var c = this.h[2]; var d = this.h[3]; var e = this.h[4]; for (var i = 0; i < W.length; i++) { var s = ~~(i / 20); var t = sum32_5(rotl32(a, 5), ft_1(s, b, c, d), e, W[i], sha1_K[s]); e = d; d = c; c = rotl32(b, 30); b = a; a = t; } this.h[0] = sum32(this.h[0], a); this.h[1] = sum32(this.h[1], b); this.h[2] = sum32(this.h[2], c); this.h[3] = sum32(this.h[3], d); this.h[4] = sum32(this.h[4], e); }; SHA1.prototype._digest = function digest(enc) { if (enc === 'hex') return utils.toHex32(this.h, 'big'); else return utils.split32(this.h, 'big'); }; function ch32(x, y, z) { return (x & y) ^ ((~x) & z); } function maj32(x, y, z) { return (x & y) ^ (x & z) ^ (y & z); } function p32(x, y, z) { return x ^ y ^ z; } function s0_256(x) { return rotr32(x, 2) ^ rotr32(x, 13) ^ rotr32(x, 22); } function s1_256(x) { return rotr32(x, 6) ^ rotr32(x, 11) ^ rotr32(x, 25); } function g0_256(x) { return rotr32(x, 7) ^ rotr32(x, 18) ^ (x >>> 3); } function g1_256(x) { return rotr32(x, 17) ^ rotr32(x, 19) ^ (x >>> 10); } function ft_1(s, x, y, z) { if (s === 0) return ch32(x, y, z); if (s === 1 || s === 3) return p32(x, y, z); if (s === 2) return maj32(x, y, z); } function ch64_hi(xh, xl, yh, yl, zh, zl) { var r = (xh & yh) ^ ((~xh) & zh); if (r < 0) r += 0x100000000; return r; } function ch64_lo(xh, xl, yh, yl, zh, zl) { var r = (xl & yl) ^ ((~xl) & zl); if (r < 0) r += 0x100000000; return r; } function maj64_hi(xh, xl, yh, yl, zh, zl) { var r = (xh & yh) ^ (xh & zh) ^ (yh & zh); if (r < 0) r += 0x100000000; return r; } function maj64_lo(xh, xl, yh, yl, zh, zl) { var r = (xl & yl) ^ (xl & zl) ^ (yl & zl); if (r < 0) r += 0x100000000; return r; } function s0_512_hi(xh, xl) { var c0_hi = rotr64_hi(xh, xl, 28); var c1_hi = rotr64_hi(xl, xh, 2); // 34 var c2_hi = rotr64_hi(xl, xh, 7); // 39 var r = c0_hi ^ c1_hi ^ c2_hi; if (r < 0) r += 0x100000000; return r; } function s0_512_lo(xh, xl) { var c0_lo = rotr64_lo(xh, xl, 28); var c1_lo = rotr64_lo(xl, xh, 2); // 34 var c2_lo = rotr64_lo(xl, xh, 7); // 39 var r = c0_lo ^ c1_lo ^ c2_lo; if (r < 0) r += 0x100000000; return r; } function s1_512_hi(xh, xl) { var c0_hi = rotr64_hi(xh, xl, 14); var c1_hi = rotr64_hi(xh, xl, 18); var c2_hi = rotr64_hi(xl, xh, 9); // 41 var r = c0_hi ^ c1_hi ^ c2_hi; if (r < 0) r += 0x100000000; return r; } function s1_512_lo(xh, xl) { var c0_lo = rotr64_lo(xh, xl, 14); var c1_lo = rotr64_lo(xh, xl, 18); var c2_lo = rotr64_lo(xl, xh, 9); // 41 var r = c0_lo ^ c1_lo ^ c2_lo; if (r < 0) r += 0x100000000; return r; } function g0_512_hi(xh, xl) { var c0_hi = rotr64_hi(xh, xl, 1); var c1_hi = rotr64_hi(xh, xl, 8); var c2_hi = shr64_hi(xh, xl, 7); var r = c0_hi ^ c1_hi ^ c2_hi; if (r < 0) r += 0x100000000; return r; } function g0_512_lo(xh, xl) { var c0_lo = rotr64_lo(xh, xl, 1); var c1_lo = rotr64_lo(xh, xl, 8); var c2_lo = shr64_lo(xh, xl, 7); var r = c0_lo ^ c1_lo ^ c2_lo; if (r < 0) r += 0x100000000; return r; } function g1_512_hi(xh, xl) { var c0_hi = rotr64_hi(xh, xl, 19); var c1_hi = rotr64_hi(xl, xh, 29); // 61 var c2_hi = shr64_hi(xh, xl, 6); var r = c0_hi ^ c1_hi ^ c2_hi; if (r < 0) r += 0x100000000; return r; } function g1_512_lo(xh, xl) { var c0_lo = rotr64_lo(xh, xl, 19); var c1_lo = rotr64_lo(xl, xh, 29); // 61 var c2_lo = shr64_lo(xh, xl, 6); var r = c0_lo ^ c1_lo ^ c2_lo; if (r < 0) r += 0x100000000; return r; } },{"../hash":88}],93:[function(require,module,exports){ var utils = exports; var inherits = require('inherits'); function toArray(msg, enc) { if (Array.isArray(msg)) return msg.slice(); if (!msg) return []; var res = []; if (typeof msg === 'string') { if (!enc) { for (var i = 0; i < msg.length; i++) { var c = msg.charCodeAt(i); var hi = c >> 8; var lo = c & 0xff; if (hi) res.push(hi, lo); else res.push(lo); } } else if (enc === 'hex') { msg = msg.replace(/[^a-z0-9]+/ig, ''); if (msg.length % 2 !== 0) msg = '0' + msg; for (var i = 0; i < msg.length; i += 2) res.push(parseInt(msg[i] + msg[i + 1], 16)); } } else { for (var i = 0; i < msg.length; i++) res[i] = msg[i] | 0; } return res; } utils.toArray = toArray; function toHex(msg) { var res = ''; for (var i = 0; i < msg.length; i++) res += zero2(msg[i].toString(16)); return res; } utils.toHex = toHex; function htonl(w) { var res = (w >>> 24) | ((w >>> 8) & 0xff00) | ((w << 8) & 0xff0000) | ((w & 0xff) << 24); return res >>> 0; } utils.htonl = htonl; function toHex32(msg, endian) { var res = ''; for (var i = 0; i < msg.length; i++) { var w = msg[i]; if (endian === 'little') w = htonl(w); res += zero8(w.toString(16)); } return res; } utils.toHex32 = toHex32; function zero2(word) { if (word.length === 1) return '0' + word; else return word; } utils.zero2 = zero2; function zero8(word) { if (word.length === 7) return '0' + word; else if (word.length === 6) return '00' + word; else if (word.length === 5) return '000' + word; else if (word.length === 4) return '0000' + word; else if (word.length === 3) return '00000' + word; else if (word.length === 2) return '000000' + word; else if (word.length === 1) return '0000000' + word; else return word; } utils.zero8 = zero8; function join32(msg, start, end, endian) { var len = end - start; assert(len % 4 === 0); var res = new Array(len / 4); for (var i = 0, k = start; i < res.length; i++, k += 4) { var w; if (endian === 'big') w = (msg[k] << 24) | (msg[k + 1] << 16) | (msg[k + 2] << 8) | msg[k + 3]; else w = (msg[k + 3] << 24) | (msg[k + 2] << 16) | (msg[k + 1] << 8) | msg[k]; res[i] = w >>> 0; } return res; } utils.join32 = join32; function split32(msg, endian) { var res = new Array(msg.length * 4); for (var i = 0, k = 0; i < msg.length; i++, k += 4) { var m = msg[i]; if (endian === 'big') { res[k] = m >>> 24; res[k + 1] = (m >>> 16) & 0xff; res[k + 2] = (m >>> 8) & 0xff; res[k + 3] = m & 0xff; } else { res[k + 3] = m >>> 24; res[k + 2] = (m >>> 16) & 0xff; res[k + 1] = (m >>> 8) & 0xff; res[k] = m & 0xff; } } return res; } utils.split32 = split32; function rotr32(w, b) { return (w >>> b) | (w << (32 - b)); } utils.rotr32 = rotr32; function rotl32(w, b) { return (w << b) | (w >>> (32 - b)); } utils.rotl32 = rotl32; function sum32(a, b) { return (a + b) >>> 0; } utils.sum32 = sum32; function sum32_3(a, b, c) { return (a + b + c) >>> 0; } utils.sum32_3 = sum32_3; function sum32_4(a, b, c, d) { return (a + b + c + d) >>> 0; } utils.sum32_4 = sum32_4; function sum32_5(a, b, c, d, e) { return (a + b + c + d + e) >>> 0; } utils.sum32_5 = sum32_5; function assert(cond, msg) { if (!cond) throw new Error(msg || 'Assertion failed'); } utils.assert = assert; utils.inherits = inherits; function sum64(buf, pos, ah, al) { var bh = buf[pos]; var bl = buf[pos + 1]; var lo = (al + bl) >>> 0; var hi = (lo < al ? 1 : 0) + ah + bh; buf[pos] = hi >>> 0; buf[pos + 1] = lo; } exports.sum64 = sum64; function sum64_hi(ah, al, bh, bl) { var lo = (al + bl) >>> 0; var hi = (lo < al ? 1 : 0) + ah + bh; return hi >>> 0; }; exports.sum64_hi = sum64_hi; function sum64_lo(ah, al, bh, bl) { var lo = al + bl; return lo >>> 0; }; exports.sum64_lo = sum64_lo; function sum64_4_hi(ah, al, bh, bl, ch, cl, dh, dl) { var carry = 0; var lo = al; lo = (lo + bl) >>> 0; carry += lo < al ? 1 : 0; lo = (lo + cl) >>> 0; carry += lo < cl ? 1 : 0; lo = (lo + dl) >>> 0; carry += lo < dl ? 1 : 0; var hi = ah + bh + ch + dh + carry; return hi >>> 0; }; exports.sum64_4_hi = sum64_4_hi; function sum64_4_lo(ah, al, bh, bl, ch, cl, dh, dl) { var lo = al + bl + cl + dl; return lo >>> 0; }; exports.sum64_4_lo = sum64_4_lo; function sum64_5_hi(ah, al, bh, bl, ch, cl, dh, dl, eh, el) { var carry = 0; var lo = al; lo = (lo + bl) >>> 0; carry += lo < al ? 1 : 0; lo = (lo + cl) >>> 0; carry += lo < cl ? 1 : 0; lo = (lo + dl) >>> 0; carry += lo < dl ? 1 : 0; lo = (lo + el) >>> 0; carry += lo < el ? 1 : 0; var hi = ah + bh + ch + dh + eh + carry; return hi >>> 0; }; exports.sum64_5_hi = sum64_5_hi; function sum64_5_lo(ah, al, bh, bl, ch, cl, dh, dl, eh, el) { var lo = al + bl + cl + dl + el; return lo >>> 0; }; exports.sum64_5_lo = sum64_5_lo; function rotr64_hi(ah, al, num) { var r = (al << (32 - num)) | (ah >>> num); return r >>> 0; }; exports.rotr64_hi = rotr64_hi; function rotr64_lo(ah, al, num) { var r = (ah << (32 - num)) | (al >>> num); return r >>> 0; }; exports.rotr64_lo = rotr64_lo; function shr64_hi(ah, al, num) { return ah >>> num; }; exports.shr64_hi = shr64_hi; function shr64_lo(ah, al, num) { var r = (ah << (32 - num)) | (al >>> num); return r >>> 0; }; exports.shr64_lo = shr64_lo; },{"inherits":97}],94:[function(require,module,exports){ var http = require('http'); var https = module.exports; for (var key in http) { if (http.hasOwnProperty(key)) https[key] = http[key]; }; https.request = function (params, cb) { if (!params) params = {}; params.scheme = 'https'; params.protocol = 'https:'; return http.request.call(this, params, cb); } },{"http":153}],95:[function(require,module,exports){ exports.read = function (buffer, offset, isLE, mLen, nBytes) { var e, m var eLen = nBytes * 8 - mLen - 1 var eMax = (1 << eLen) - 1 var eBias = eMax >> 1 var nBits = -7 var i = isLE ? (nBytes - 1) : 0 var d = isLE ? -1 : 1 var s = buffer[offset + i] i += d e = s & ((1 << (-nBits)) - 1) s >>= (-nBits) nBits += eLen for (; nBits > 0; e = e * 256 + buffer[offset + i], i += d, nBits -= 8) {} m = e & ((1 << (-nBits)) - 1) e >>= (-nBits) nBits += mLen for (; nBits > 0; m = m * 256 + buffer[offset + i], i += d, nBits -= 8) {} if (e === 0) { e = 1 - eBias } else if (e === eMax) { return m ? NaN : ((s ? -1 : 1) * Infinity) } else { m = m + Math.pow(2, mLen) e = e - eBias } return (s ? -1 : 1) * m * Math.pow(2, e - mLen) } exports.write = function (buffer, value, offset, isLE, mLen, nBytes) { var e, m, c var eLen = nBytes * 8 - mLen - 1 var eMax = (1 << eLen) - 1 var eBias = eMax >> 1 var rt = (mLen === 23 ? Math.pow(2, -24) - Math.pow(2, -77) : 0) var i = isLE ? 0 : (nBytes - 1) var d = isLE ? 1 : -1 var s = value < 0 || (value === 0 && 1 / value < 0) ? 1 : 0 value = Math.abs(value) if (isNaN(value) || value === Infinity) { m = isNaN(value) ? 1 : 0 e = eMax } else { e = Math.floor(Math.log(value) / Math.LN2) if (value * (c = Math.pow(2, -e)) < 1) { e-- c *= 2 } if (e + eBias >= 1) { value += rt / c } else { value += rt * Math.pow(2, 1 - eBias) } if (value * c >= 2) { e++ c /= 2 } if (e + eBias >= eMax) { m = 0 e = eMax } else if (e + eBias >= 1) { m = (value * c - 1) * Math.pow(2, mLen) e = e + eBias } else { m = value * Math.pow(2, eBias - 1) * Math.pow(2, mLen) e = 0 } } for (; mLen >= 8; buffer[offset + i] = m & 0xff, i += d, m /= 256, mLen -= 8) {} e = (e << mLen) | m eLen += mLen for (; eLen > 0; buffer[offset + i] = e & 0xff, i += d, e /= 256, eLen -= 8) {} buffer[offset + i - d] |= s * 128 } },{}],96:[function(require,module,exports){ var indexOf = [].indexOf; module.exports = function(arr, obj){ if (indexOf) return arr.indexOf(obj); for (var i = 0; i < arr.length; ++i) { if (arr[i] === obj) return i; } return -1; }; },{}],97:[function(require,module,exports){ if (typeof Object.create === 'function') { // implementation from standard node.js 'util' module module.exports = function inherits(ctor, superCtor) { ctor.super_ = superCtor ctor.prototype = Object.create(superCtor.prototype, { constructor: { value: ctor, enumerable: false, writable: true, configurable: true } }); }; } else { // old school shim for old browsers module.exports = function inherits(ctor, superCtor) { ctor.super_ = superCtor var TempCtor = function () {} TempCtor.prototype = superCtor.prototype ctor.prototype = new TempCtor() ctor.prototype.constructor = ctor } } },{}],98:[function(require,module,exports){ /*! * Determine if an object is a Buffer * * @author Feross Aboukhadijeh * @license MIT */ // The _isBuffer check is for Safari 5-7 support, because it's missing // Object.prototype.constructor. Remove this eventually module.exports = function (obj) { return obj != null && (isBuffer(obj) || isSlowBuffer(obj) || !!obj._isBuffer) } function isBuffer (obj) { return !!obj.constructor && typeof obj.constructor.isBuffer === 'function' && obj.constructor.isBuffer(obj) } // For Node v0.10 support. Remove this eventually. function isSlowBuffer (obj) { return typeof obj.readFloatLE === 'function' && typeof obj.slice === 'function' && isBuffer(obj.slice(0, 0)) } },{}],99:[function(require,module,exports){ var toString = {}.toString; module.exports = Array.isArray || function (arr) { return toString.call(arr) == '[object Array]'; }; },{}],100:[function(require,module,exports){ var bn = require('bn.js'); var brorand = require('brorand'); function MillerRabin(rand) { this.rand = rand || new brorand.Rand(); } module.exports = MillerRabin; MillerRabin.create = function create(rand) { return new MillerRabin(rand); }; MillerRabin.prototype._rand = function _rand(n) { var len = n.bitLength(); var buf = this.rand.generate(Math.ceil(len / 8)); // Set low bits buf[0] |= 3; // Mask high bits var mask = len & 0x7; if (mask !== 0) buf[buf.length - 1] >>= 7 - mask; return new bn(buf); } MillerRabin.prototype.test = function test(n, k, cb) { var len = n.bitLength(); var red = bn.mont(n); var rone = new bn(1).toRed(red); if (!k) k = Math.max(1, (len / 48) | 0); // Find d and s, (n - 1) = (2 ^ s) * d; var n1 = n.subn(1); var n2 = n1.subn(1); for (var s = 0; !n1.testn(s); s++) {} var d = n.shrn(s); var rn1 = n1.toRed(red); var prime = true; for (; k > 0; k--) { var a = this._rand(n2); if (cb) cb(a); var x = a.toRed(red).redPow(d); if (x.cmp(rone) === 0 || x.cmp(rn1) === 0) continue; for (var i = 1; i < s; i++) { x = x.redSqr(); if (x.cmp(rone) === 0) return false; if (x.cmp(rn1) === 0) break; } if (i === s) return false; } return prime; }; MillerRabin.prototype.getDivisor = function getDivisor(n, k) { var len = n.bitLength(); var red = bn.mont(n); var rone = new bn(1).toRed(red); if (!k) k = Math.max(1, (len / 48) | 0); // Find d and s, (n - 1) = (2 ^ s) * d; var n1 = n.subn(1); var n2 = n1.subn(1); for (var s = 0; !n1.testn(s); s++) {} var d = n.shrn(s); var rn1 = n1.toRed(red); for (; k > 0; k--) { var a = this._rand(n2); var g = n.gcd(a); if (g.cmpn(1) !== 0) return g; var x = a.toRed(red).redPow(d); if (x.cmp(rone) === 0 || x.cmp(rn1) === 0) continue; for (var i = 1; i < s; i++) { x = x.redSqr(); if (x.cmp(rone) === 0) return x.fromRed().subn(1).gcd(n); if (x.cmp(rn1) === 0) break; } if (i === s) { x = x.redSqr(); return x.fromRed().subn(1).gcd(n); } } return false; }; },{"bn.js":18,"brorand":19}],101:[function(require,module,exports){ module.exports = assert; function assert(val, msg) { if (!val) throw new Error(msg || 'Assertion failed'); } assert.equal = function assertEqual(l, r, msg) { if (l != r) throw new Error(msg || ('Assertion failed: ' + l + ' != ' + r)); }; },{}],102:[function(require,module,exports){ 'use strict'; var TYPED_OK = (typeof Uint8Array !== 'undefined') && (typeof Uint16Array !== 'undefined') && (typeof Int32Array !== 'undefined'); exports.assign = function (obj /*from1, from2, from3, ...*/) { var sources = Array.prototype.slice.call(arguments, 1); while (sources.length) { var source = sources.shift(); if (!source) { continue; } if (typeof source !== 'object') { throw new TypeError(source + 'must be non-object'); } for (var p in source) { if (source.hasOwnProperty(p)) { obj[p] = source[p]; } } } return obj; }; // reduce buffer size, avoiding mem copy exports.shrinkBuf = function (buf, size) { if (buf.length === size) { return buf; } if (buf.subarray) { return buf.subarray(0, size); } buf.length = size; return buf; }; var fnTyped = { arraySet: function (dest, src, src_offs, len, dest_offs) { if (src.subarray && dest.subarray) { dest.set(src.subarray(src_offs, src_offs + len), dest_offs); return; } // Fallback to ordinary array for (var i = 0; i < len; i++) { dest[dest_offs + i] = src[src_offs + i]; } }, // Join array of chunks to single array. flattenChunks: function (chunks) { var i, l, len, pos, chunk, result; // calculate data length len = 0; for (i = 0, l = chunks.length; i < l; i++) { len += chunks[i].length; } // join chunks result = new Uint8Array(len); pos = 0; for (i = 0, l = chunks.length; i < l; i++) { chunk = chunks[i]; result.set(chunk, pos); pos += chunk.length; } return result; } }; var fnUntyped = { arraySet: function (dest, src, src_offs, len, dest_offs) { for (var i = 0; i < len; i++) { dest[dest_offs + i] = src[src_offs + i]; } }, // Join array of chunks to single array. flattenChunks: function (chunks) { return [].concat.apply([], chunks); } }; // Enable/Disable typed arrays use, for testing // exports.setTyped = function (on) { if (on) { exports.Buf8 = Uint8Array; exports.Buf16 = Uint16Array; exports.Buf32 = Int32Array; exports.assign(exports, fnTyped); } else { exports.Buf8 = Array; exports.Buf16 = Array; exports.Buf32 = Array; exports.assign(exports, fnUntyped); } }; exports.setTyped(TYPED_OK); },{}],103:[function(require,module,exports){ 'use strict'; // Note: adler32 takes 12% for level 0 and 2% for level 6. // It doesn't worth to make additional optimizationa as in original. // Small size is preferable. function adler32(adler, buf, len, pos) { var s1 = (adler & 0xffff) |0, s2 = ((adler >>> 16) & 0xffff) |0, n = 0; while (len !== 0) { // Set limit ~ twice less than 5552, to keep // s2 in 31-bits, because we force signed ints. // in other case %= will fail. n = len > 2000 ? 2000 : len; len -= n; do { s1 = (s1 + buf[pos++]) |0; s2 = (s2 + s1) |0; } while (--n); s1 %= 65521; s2 %= 65521; } return (s1 | (s2 << 16)) |0; } module.exports = adler32; },{}],104:[function(require,module,exports){ 'use strict'; module.exports = { /* Allowed flush values; see deflate() and inflate() below for details */ Z_NO_FLUSH: 0, Z_PARTIAL_FLUSH: 1, Z_SYNC_FLUSH: 2, Z_FULL_FLUSH: 3, Z_FINISH: 4, Z_BLOCK: 5, Z_TREES: 6, /* Return codes for the compression/decompression functions. Negative values * are errors, positive values are used for special but normal events. */ Z_OK: 0, Z_STREAM_END: 1, Z_NEED_DICT: 2, Z_ERRNO: -1, Z_STREAM_ERROR: -2, Z_DATA_ERROR: -3, //Z_MEM_ERROR: -4, Z_BUF_ERROR: -5, //Z_VERSION_ERROR: -6, /* compression levels */ Z_NO_COMPRESSION: 0, Z_BEST_SPEED: 1, Z_BEST_COMPRESSION: 9, Z_DEFAULT_COMPRESSION: -1, Z_FILTERED: 1, Z_HUFFMAN_ONLY: 2, Z_RLE: 3, Z_FIXED: 4, Z_DEFAULT_STRATEGY: 0, /* Possible values of the data_type field (though see inflate()) */ Z_BINARY: 0, Z_TEXT: 1, //Z_ASCII: 1, // = Z_TEXT (deprecated) Z_UNKNOWN: 2, /* The deflate compression method */ Z_DEFLATED: 8 //Z_NULL: null // Use -1 or null inline, depending on var type }; },{}],105:[function(require,module,exports){ 'use strict'; // Note: we can't get significant speed boost here. // So write code to minimize size - no pregenerated tables // and array tools dependencies. // Use ordinary array, since untyped makes no boost here function makeTable() { var c, table = []; for (var n = 0; n < 256; n++) { c = n; for (var k = 0; k < 8; k++) { c = ((c & 1) ? (0xEDB88320 ^ (c >>> 1)) : (c >>> 1)); } table[n] = c; } return table; } // Create table on load. Just 255 signed longs. Not a problem. var crcTable = makeTable(); function crc32(crc, buf, len, pos) { var t = crcTable, end = pos + len; crc ^= -1; for (var i = pos; i < end; i++) { crc = (crc >>> 8) ^ t[(crc ^ buf[i]) & 0xFF]; } return (crc ^ (-1)); // >>> 0; } module.exports = crc32; },{}],106:[function(require,module,exports){ 'use strict'; var utils = require('../utils/common'); var trees = require('./trees'); var adler32 = require('./adler32'); var crc32 = require('./crc32'); var msg = require('./messages'); /* Public constants ==========================================================*/ /* ===========================================================================*/ /* Allowed flush values; see deflate() and inflate() below for details */ var Z_NO_FLUSH = 0; var Z_PARTIAL_FLUSH = 1; //var Z_SYNC_FLUSH = 2; var Z_FULL_FLUSH = 3; var Z_FINISH = 4; var Z_BLOCK = 5; //var Z_TREES = 6; /* Return codes for the compression/decompression functions. Negative values * are errors, positive values are used for special but normal events. */ var Z_OK = 0; var Z_STREAM_END = 1; //var Z_NEED_DICT = 2; //var Z_ERRNO = -1; var Z_STREAM_ERROR = -2; var Z_DATA_ERROR = -3; //var Z_MEM_ERROR = -4; var Z_BUF_ERROR = -5; //var Z_VERSION_ERROR = -6; /* compression levels */ //var Z_NO_COMPRESSION = 0; //var Z_BEST_SPEED = 1; //var Z_BEST_COMPRESSION = 9; var Z_DEFAULT_COMPRESSION = -1; var Z_FILTERED = 1; var Z_HUFFMAN_ONLY = 2; var Z_RLE = 3; var Z_FIXED = 4; var Z_DEFAULT_STRATEGY = 0; /* Possible values of the data_type field (though see inflate()) */ //var Z_BINARY = 0; //var Z_TEXT = 1; //var Z_ASCII = 1; // = Z_TEXT var Z_UNKNOWN = 2; /* The deflate compression method */ var Z_DEFLATED = 8; /*============================================================================*/ var MAX_MEM_LEVEL = 9; /* Maximum value for memLevel in deflateInit2 */ var MAX_WBITS = 15; /* 32K LZ77 window */ var DEF_MEM_LEVEL = 8; var LENGTH_CODES = 29; /* number of length codes, not counting the special END_BLOCK code */ var LITERALS = 256; /* number of literal bytes 0..255 */ var L_CODES = LITERALS + 1 + LENGTH_CODES; /* number of Literal or Length codes, including the END_BLOCK code */ var D_CODES = 30; /* number of distance codes */ var BL_CODES = 19; /* number of codes used to transfer the bit lengths */ var HEAP_SIZE = 2 * L_CODES + 1; /* maximum heap size */ var MAX_BITS = 15; /* All codes must not exceed MAX_BITS bits */ var MIN_MATCH = 3; var MAX_MATCH = 258; var MIN_LOOKAHEAD = (MAX_MATCH + MIN_MATCH + 1); var PRESET_DICT = 0x20; var INIT_STATE = 42; var EXTRA_STATE = 69; var NAME_STATE = 73; var COMMENT_STATE = 91; var HCRC_STATE = 103; var BUSY_STATE = 113; var FINISH_STATE = 666; var BS_NEED_MORE = 1; /* block not completed, need more input or more output */ var BS_BLOCK_DONE = 2; /* block flush performed */ var BS_FINISH_STARTED = 3; /* finish started, need only more output at next deflate */ var BS_FINISH_DONE = 4; /* finish done, accept no more input or output */ var OS_CODE = 0x03; // Unix :) . Don't detect, use this default. function err(strm, errorCode) { strm.msg = msg[errorCode]; return errorCode; } function rank(f) { return ((f) << 1) - ((f) > 4 ? 9 : 0); } function zero(buf) { var len = buf.length; while (--len >= 0) { buf[len] = 0; } } /* ========================================================================= * Flush as much pending output as possible. All deflate() output goes * through this function so some applications may wish to modify it * to avoid allocating a large strm->output buffer and copying into it. * (See also read_buf()). */ function flush_pending(strm) { var s = strm.state; //_tr_flush_bits(s); var len = s.pending; if (len > strm.avail_out) { len = strm.avail_out; } if (len === 0) { return; } utils.arraySet(strm.output, s.pending_buf, s.pending_out, len, strm.next_out); strm.next_out += len; s.pending_out += len; strm.total_out += len; strm.avail_out -= len; s.pending -= len; if (s.pending === 0) { s.pending_out = 0; } } function flush_block_only(s, last) { trees._tr_flush_block(s, (s.block_start >= 0 ? s.block_start : -1), s.strstart - s.block_start, last); s.block_start = s.strstart; flush_pending(s.strm); } function put_byte(s, b) { s.pending_buf[s.pending++] = b; } /* ========================================================================= * Put a short in the pending buffer. The 16-bit value is put in MSB order. * IN assertion: the stream state is correct and there is enough room in * pending_buf. */ function putShortMSB(s, b) { // put_byte(s, (Byte)(b >> 8)); // put_byte(s, (Byte)(b & 0xff)); s.pending_buf[s.pending++] = (b >>> 8) & 0xff; s.pending_buf[s.pending++] = b & 0xff; } /* =========================================================================== * Read a new buffer from the current input stream, update the adler32 * and total number of bytes read. All deflate() input goes through * this function so some applications may wish to modify it to avoid * allocating a large strm->input buffer and copying from it. * (See also flush_pending()). */ function read_buf(strm, buf, start, size) { var len = strm.avail_in; if (len > size) { len = size; } if (len === 0) { return 0; } strm.avail_in -= len; // zmemcpy(buf, strm->next_in, len); utils.arraySet(buf, strm.input, strm.next_in, len, start); if (strm.state.wrap === 1) { strm.adler = adler32(strm.adler, buf, len, start); } else if (strm.state.wrap === 2) { strm.adler = crc32(strm.adler, buf, len, start); } strm.next_in += len; strm.total_in += len; return len; } /* =========================================================================== * Set match_start to the longest match starting at the given string and * return its length. Matches shorter or equal to prev_length are discarded, * in which case the result is equal to prev_length and match_start is * garbage. * IN assertions: cur_match is the head of the hash chain for the current * string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1 * OUT assertion: the match length is not greater than s->lookahead. */ function longest_match(s, cur_match) { var chain_length = s.max_chain_length; /* max hash chain length */ var scan = s.strstart; /* current string */ var match; /* matched string */ var len; /* length of current match */ var best_len = s.prev_length; /* best match length so far */ var nice_match = s.nice_match; /* stop if match long enough */ var limit = (s.strstart > (s.w_size - MIN_LOOKAHEAD)) ? s.strstart - (s.w_size - MIN_LOOKAHEAD) : 0/*NIL*/; var _win = s.window; // shortcut var wmask = s.w_mask; var prev = s.prev; /* Stop when cur_match becomes <= limit. To simplify the code, * we prevent matches with the string of window index 0. */ var strend = s.strstart + MAX_MATCH; var scan_end1 = _win[scan + best_len - 1]; var scan_end = _win[scan + best_len]; /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16. * It is easy to get rid of this optimization if necessary. */ // Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever"); /* Do not waste too much time if we already have a good match: */ if (s.prev_length >= s.good_match) { chain_length >>= 2; } /* Do not look for matches beyond the end of the input. This is necessary * to make deflate deterministic. */ if (nice_match > s.lookahead) { nice_match = s.lookahead; } // Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead"); do { // Assert(cur_match < s->strstart, "no future"); match = cur_match; /* Skip to next match if the match length cannot increase * or if the match length is less than 2. Note that the checks below * for insufficient lookahead only occur occasionally for performance * reasons. Therefore uninitialized memory will be accessed, and * conditional jumps will be made that depend on those values. * However the length of the match is limited to the lookahead, so * the output of deflate is not affected by the uninitialized values. */ if (_win[match + best_len] !== scan_end || _win[match + best_len - 1] !== scan_end1 || _win[match] !== _win[scan] || _win[++match] !== _win[scan + 1]) { continue; } /* The check at best_len-1 can be removed because it will be made * again later. (This heuristic is not always a win.) * It is not necessary to compare scan[2] and match[2] since they * are always equal when the other bytes match, given that * the hash keys are equal and that HASH_BITS >= 8. */ scan += 2; match++; // Assert(*scan == *match, "match[2]?"); /* We check for insufficient lookahead only every 8th comparison; * the 256th check will be made at strstart+258. */ do { /*jshint noempty:false*/ } while (_win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && _win[++scan] === _win[++match] && scan < strend); // Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan"); len = MAX_MATCH - (strend - scan); scan = strend - MAX_MATCH; if (len > best_len) { s.match_start = cur_match; best_len = len; if (len >= nice_match) { break; } scan_end1 = _win[scan + best_len - 1]; scan_end = _win[scan + best_len]; } } while ((cur_match = prev[cur_match & wmask]) > limit && --chain_length !== 0); if (best_len <= s.lookahead) { return best_len; } return s.lookahead; } /* =========================================================================== * Fill the window when the lookahead becomes insufficient. * Updates strstart and lookahead. * * IN assertion: lookahead < MIN_LOOKAHEAD * OUT assertions: strstart <= window_size-MIN_LOOKAHEAD * At least one byte has been read, or avail_in == 0; reads are * performed for at least two bytes (required for the zip translate_eol * option -- not supported here). */ function fill_window(s) { var _w_size = s.w_size; var p, n, m, more, str; //Assert(s->lookahead < MIN_LOOKAHEAD, "already enough lookahead"); do { more = s.window_size - s.lookahead - s.strstart; // JS ints have 32 bit, block below not needed /* Deal with !@#$% 64K limit: */ //if (sizeof(int) <= 2) { // if (more == 0 && s->strstart == 0 && s->lookahead == 0) { // more = wsize; // // } else if (more == (unsigned)(-1)) { // /* Very unlikely, but possible on 16 bit machine if // * strstart == 0 && lookahead == 1 (input done a byte at time) // */ // more--; // } //} /* If the window is almost full and there is insufficient lookahead, * move the upper half to the lower one to make room in the upper half. */ if (s.strstart >= _w_size + (_w_size - MIN_LOOKAHEAD)) { utils.arraySet(s.window, s.window, _w_size, _w_size, 0); s.match_start -= _w_size; s.strstart -= _w_size; /* we now have strstart >= MAX_DIST */ s.block_start -= _w_size; /* Slide the hash table (could be avoided with 32 bit values at the expense of memory usage). We slide even when level == 0 to keep the hash table consistent if we switch back to level > 0 later. (Using level 0 permanently is not an optimal usage of zlib, so we don't care about this pathological case.) */ n = s.hash_size; p = n; do { m = s.head[--p]; s.head[p] = (m >= _w_size ? m - _w_size : 0); } while (--n); n = _w_size; p = n; do { m = s.prev[--p]; s.prev[p] = (m >= _w_size ? m - _w_size : 0); /* If n is not on any hash chain, prev[n] is garbage but * its value will never be used. */ } while (--n); more += _w_size; } if (s.strm.avail_in === 0) { break; } /* If there was no sliding: * strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 && * more == window_size - lookahead - strstart * => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1) * => more >= window_size - 2*WSIZE + 2 * In the BIG_MEM or MMAP case (not yet supported), * window_size == input_size + MIN_LOOKAHEAD && * strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD. * Otherwise, window_size == 2*WSIZE so more >= 2. * If there was sliding, more >= WSIZE. So in all cases, more >= 2. */ //Assert(more >= 2, "more < 2"); n = read_buf(s.strm, s.window, s.strstart + s.lookahead, more); s.lookahead += n; /* Initialize the hash value now that we have some input: */ if (s.lookahead + s.insert >= MIN_MATCH) { str = s.strstart - s.insert; s.ins_h = s.window[str]; /* UPDATE_HASH(s, s->ins_h, s->window[str + 1]); */ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[str + 1]) & s.hash_mask; //#if MIN_MATCH != 3 // Call update_hash() MIN_MATCH-3 more times //#endif while (s.insert) { /* UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]); */ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[str + MIN_MATCH - 1]) & s.hash_mask; s.prev[str & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = str; str++; s.insert--; if (s.lookahead + s.insert < MIN_MATCH) { break; } } } /* If the whole input has less than MIN_MATCH bytes, ins_h is garbage, * but this is not important since only literal bytes will be emitted. */ } while (s.lookahead < MIN_LOOKAHEAD && s.strm.avail_in !== 0); /* If the WIN_INIT bytes after the end of the current data have never been * written, then zero those bytes in order to avoid memory check reports of * the use of uninitialized (or uninitialised as Julian writes) bytes by * the longest match routines. Update the high water mark for the next * time through here. WIN_INIT is set to MAX_MATCH since the longest match * routines allow scanning to strstart + MAX_MATCH, ignoring lookahead. */ // if (s.high_water < s.window_size) { // var curr = s.strstart + s.lookahead; // var init = 0; // // if (s.high_water < curr) { // /* Previous high water mark below current data -- zero WIN_INIT // * bytes or up to end of window, whichever is less. // */ // init = s.window_size - curr; // if (init > WIN_INIT) // init = WIN_INIT; // zmemzero(s->window + curr, (unsigned)init); // s->high_water = curr + init; // } // else if (s->high_water < (ulg)curr + WIN_INIT) { // /* High water mark at or above current data, but below current data // * plus WIN_INIT -- zero out to current data plus WIN_INIT, or up // * to end of window, whichever is less. // */ // init = (ulg)curr + WIN_INIT - s->high_water; // if (init > s->window_size - s->high_water) // init = s->window_size - s->high_water; // zmemzero(s->window + s->high_water, (unsigned)init); // s->high_water += init; // } // } // // Assert((ulg)s->strstart <= s->window_size - MIN_LOOKAHEAD, // "not enough room for search"); } /* =========================================================================== * Copy without compression as much as possible from the input stream, return * the current block state. * This function does not insert new strings in the dictionary since * uncompressible data is probably not useful. This function is used * only for the level=0 compression option. * NOTE: this function should be optimized to avoid extra copying from * window to pending_buf. */ function deflate_stored(s, flush) { /* Stored blocks are limited to 0xffff bytes, pending_buf is limited * to pending_buf_size, and each stored block has a 5 byte header: */ var max_block_size = 0xffff; if (max_block_size > s.pending_buf_size - 5) { max_block_size = s.pending_buf_size - 5; } /* Copy as much as possible from input to output: */ for (;;) { /* Fill the window as much as possible: */ if (s.lookahead <= 1) { //Assert(s->strstart < s->w_size+MAX_DIST(s) || // s->block_start >= (long)s->w_size, "slide too late"); // if (!(s.strstart < s.w_size + (s.w_size - MIN_LOOKAHEAD) || // s.block_start >= s.w_size)) { // throw new Error("slide too late"); // } fill_window(s); if (s.lookahead === 0 && flush === Z_NO_FLUSH) { return BS_NEED_MORE; } if (s.lookahead === 0) { break; } /* flush the current block */ } //Assert(s->block_start >= 0L, "block gone"); // if (s.block_start < 0) throw new Error("block gone"); s.strstart += s.lookahead; s.lookahead = 0; /* Emit a stored block if pending_buf will be full: */ var max_start = s.block_start + max_block_size; if (s.strstart === 0 || s.strstart >= max_start) { /* strstart == 0 is possible when wraparound on 16-bit machine */ s.lookahead = s.strstart - max_start; s.strstart = max_start; /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } /* Flush if we may have to slide, otherwise block_start may become * negative and the data will be gone: */ if (s.strstart - s.block_start >= (s.w_size - MIN_LOOKAHEAD)) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } } s.insert = 0; if (flush === Z_FINISH) { /*** FLUSH_BLOCK(s, 1); ***/ flush_block_only(s, true); if (s.strm.avail_out === 0) { return BS_FINISH_STARTED; } /***/ return BS_FINISH_DONE; } if (s.strstart > s.block_start) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } return BS_NEED_MORE; } /* =========================================================================== * Compress as much as possible from the input stream, return the current * block state. * This function does not perform lazy evaluation of matches and inserts * new strings in the dictionary only for unmatched strings or for short * matches. It is used only for the fast compression options. */ function deflate_fast(s, flush) { var hash_head; /* head of the hash chain */ var bflush; /* set if current block must be flushed */ for (;;) { /* Make sure that we always have enough lookahead, except * at the end of the input file. We need MAX_MATCH bytes * for the next match, plus MIN_MATCH bytes to insert the * string following the next match. */ if (s.lookahead < MIN_LOOKAHEAD) { fill_window(s); if (s.lookahead < MIN_LOOKAHEAD && flush === Z_NO_FLUSH) { return BS_NEED_MORE; } if (s.lookahead === 0) { break; /* flush the current block */ } } /* Insert the string window[strstart .. strstart+2] in the * dictionary, and set hash_head to the head of the hash chain: */ hash_head = 0/*NIL*/; if (s.lookahead >= MIN_MATCH) { /*** INSERT_STRING(s, s.strstart, hash_head); ***/ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask; hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = s.strstart; /***/ } /* Find the longest match, discarding those <= prev_length. * At this point we have always match_length < MIN_MATCH */ if (hash_head !== 0/*NIL*/ && ((s.strstart - hash_head) <= (s.w_size - MIN_LOOKAHEAD))) { /* To simplify the code, we prevent matches with the string * of window index 0 (in particular we have to avoid a match * of the string with itself at the start of the input file). */ s.match_length = longest_match(s, hash_head); /* longest_match() sets match_start */ } if (s.match_length >= MIN_MATCH) { // check_match(s, s.strstart, s.match_start, s.match_length); // for debug only /*** _tr_tally_dist(s, s.strstart - s.match_start, s.match_length - MIN_MATCH, bflush); ***/ bflush = trees._tr_tally(s, s.strstart - s.match_start, s.match_length - MIN_MATCH); s.lookahead -= s.match_length; /* Insert new strings in the hash table only if the match length * is not too large. This saves time but degrades compression. */ if (s.match_length <= s.max_lazy_match/*max_insert_length*/ && s.lookahead >= MIN_MATCH) { s.match_length--; /* string at strstart already in table */ do { s.strstart++; /*** INSERT_STRING(s, s.strstart, hash_head); ***/ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask; hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = s.strstart; /***/ /* strstart never exceeds WSIZE-MAX_MATCH, so there are * always MIN_MATCH bytes ahead. */ } while (--s.match_length !== 0); s.strstart++; } else { s.strstart += s.match_length; s.match_length = 0; s.ins_h = s.window[s.strstart]; /* UPDATE_HASH(s, s.ins_h, s.window[s.strstart+1]); */ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + 1]) & s.hash_mask; //#if MIN_MATCH != 3 // Call UPDATE_HASH() MIN_MATCH-3 more times //#endif /* If lookahead < MIN_MATCH, ins_h is garbage, but it does not * matter since it will be recomputed at next deflate call. */ } } else { /* No match, output a literal byte */ //Tracevv((stderr,"%c", s.window[s.strstart])); /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/ bflush = trees._tr_tally(s, 0, s.window[s.strstart]); s.lookahead--; s.strstart++; } if (bflush) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } } s.insert = ((s.strstart < (MIN_MATCH - 1)) ? s.strstart : MIN_MATCH - 1); if (flush === Z_FINISH) { /*** FLUSH_BLOCK(s, 1); ***/ flush_block_only(s, true); if (s.strm.avail_out === 0) { return BS_FINISH_STARTED; } /***/ return BS_FINISH_DONE; } if (s.last_lit) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } return BS_BLOCK_DONE; } /* =========================================================================== * Same as above, but achieves better compression. We use a lazy * evaluation for matches: a match is finally adopted only if there is * no better match at the next window position. */ function deflate_slow(s, flush) { var hash_head; /* head of hash chain */ var bflush; /* set if current block must be flushed */ var max_insert; /* Process the input block. */ for (;;) { /* Make sure that we always have enough lookahead, except * at the end of the input file. We need MAX_MATCH bytes * for the next match, plus MIN_MATCH bytes to insert the * string following the next match. */ if (s.lookahead < MIN_LOOKAHEAD) { fill_window(s); if (s.lookahead < MIN_LOOKAHEAD && flush === Z_NO_FLUSH) { return BS_NEED_MORE; } if (s.lookahead === 0) { break; } /* flush the current block */ } /* Insert the string window[strstart .. strstart+2] in the * dictionary, and set hash_head to the head of the hash chain: */ hash_head = 0/*NIL*/; if (s.lookahead >= MIN_MATCH) { /*** INSERT_STRING(s, s.strstart, hash_head); ***/ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask; hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = s.strstart; /***/ } /* Find the longest match, discarding those <= prev_length. */ s.prev_length = s.match_length; s.prev_match = s.match_start; s.match_length = MIN_MATCH - 1; if (hash_head !== 0/*NIL*/ && s.prev_length < s.max_lazy_match && s.strstart - hash_head <= (s.w_size - MIN_LOOKAHEAD)/*MAX_DIST(s)*/) { /* To simplify the code, we prevent matches with the string * of window index 0 (in particular we have to avoid a match * of the string with itself at the start of the input file). */ s.match_length = longest_match(s, hash_head); /* longest_match() sets match_start */ if (s.match_length <= 5 && (s.strategy === Z_FILTERED || (s.match_length === MIN_MATCH && s.strstart - s.match_start > 4096/*TOO_FAR*/))) { /* If prev_match is also MIN_MATCH, match_start is garbage * but we will ignore the current match anyway. */ s.match_length = MIN_MATCH - 1; } } /* If there was a match at the previous step and the current * match is not better, output the previous match: */ if (s.prev_length >= MIN_MATCH && s.match_length <= s.prev_length) { max_insert = s.strstart + s.lookahead - MIN_MATCH; /* Do not insert strings in hash table beyond this. */ //check_match(s, s.strstart-1, s.prev_match, s.prev_length); /***_tr_tally_dist(s, s.strstart - 1 - s.prev_match, s.prev_length - MIN_MATCH, bflush);***/ bflush = trees._tr_tally(s, s.strstart - 1 - s.prev_match, s.prev_length - MIN_MATCH); /* Insert in hash table all strings up to the end of the match. * strstart-1 and strstart are already inserted. If there is not * enough lookahead, the last two strings are not inserted in * the hash table. */ s.lookahead -= s.prev_length - 1; s.prev_length -= 2; do { if (++s.strstart <= max_insert) { /*** INSERT_STRING(s, s.strstart, hash_head); ***/ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask; hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = s.strstart; /***/ } } while (--s.prev_length !== 0); s.match_available = 0; s.match_length = MIN_MATCH - 1; s.strstart++; if (bflush) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } } else if (s.match_available) { /* If there was no match at the previous position, output a * single literal. If there was a match but the current match * is longer, truncate the previous match to a single literal. */ //Tracevv((stderr,"%c", s->window[s->strstart-1])); /*** _tr_tally_lit(s, s.window[s.strstart-1], bflush); ***/ bflush = trees._tr_tally(s, 0, s.window[s.strstart - 1]); if (bflush) { /*** FLUSH_BLOCK_ONLY(s, 0) ***/ flush_block_only(s, false); /***/ } s.strstart++; s.lookahead--; if (s.strm.avail_out === 0) { return BS_NEED_MORE; } } else { /* There is no previous match to compare with, wait for * the next step to decide. */ s.match_available = 1; s.strstart++; s.lookahead--; } } //Assert (flush != Z_NO_FLUSH, "no flush?"); if (s.match_available) { //Tracevv((stderr,"%c", s->window[s->strstart-1])); /*** _tr_tally_lit(s, s.window[s.strstart-1], bflush); ***/ bflush = trees._tr_tally(s, 0, s.window[s.strstart - 1]); s.match_available = 0; } s.insert = s.strstart < MIN_MATCH - 1 ? s.strstart : MIN_MATCH - 1; if (flush === Z_FINISH) { /*** FLUSH_BLOCK(s, 1); ***/ flush_block_only(s, true); if (s.strm.avail_out === 0) { return BS_FINISH_STARTED; } /***/ return BS_FINISH_DONE; } if (s.last_lit) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } return BS_BLOCK_DONE; } /* =========================================================================== * For Z_RLE, simply look for runs of bytes, generate matches only of distance * one. Do not maintain a hash table. (It will be regenerated if this run of * deflate switches away from Z_RLE.) */ function deflate_rle(s, flush) { var bflush; /* set if current block must be flushed */ var prev; /* byte at distance one to match */ var scan, strend; /* scan goes up to strend for length of run */ var _win = s.window; for (;;) { /* Make sure that we always have enough lookahead, except * at the end of the input file. We need MAX_MATCH bytes * for the longest run, plus one for the unrolled loop. */ if (s.lookahead <= MAX_MATCH) { fill_window(s); if (s.lookahead <= MAX_MATCH && flush === Z_NO_FLUSH) { return BS_NEED_MORE; } if (s.lookahead === 0) { break; } /* flush the current block */ } /* See how many times the previous byte repeats */ s.match_length = 0; if (s.lookahead >= MIN_MATCH && s.strstart > 0) { scan = s.strstart - 1; prev = _win[scan]; if (prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan]) { strend = s.strstart + MAX_MATCH; do { /*jshint noempty:false*/ } while (prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan] && scan < strend); s.match_length = MAX_MATCH - (strend - scan); if (s.match_length > s.lookahead) { s.match_length = s.lookahead; } } //Assert(scan <= s->window+(uInt)(s->window_size-1), "wild scan"); } /* Emit match if have run of MIN_MATCH or longer, else emit literal */ if (s.match_length >= MIN_MATCH) { //check_match(s, s.strstart, s.strstart - 1, s.match_length); /*** _tr_tally_dist(s, 1, s.match_length - MIN_MATCH, bflush); ***/ bflush = trees._tr_tally(s, 1, s.match_length - MIN_MATCH); s.lookahead -= s.match_length; s.strstart += s.match_length; s.match_length = 0; } else { /* No match, output a literal byte */ //Tracevv((stderr,"%c", s->window[s->strstart])); /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/ bflush = trees._tr_tally(s, 0, s.window[s.strstart]); s.lookahead--; s.strstart++; } if (bflush) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } } s.insert = 0; if (flush === Z_FINISH) { /*** FLUSH_BLOCK(s, 1); ***/ flush_block_only(s, true); if (s.strm.avail_out === 0) { return BS_FINISH_STARTED; } /***/ return BS_FINISH_DONE; } if (s.last_lit) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } return BS_BLOCK_DONE; } /* =========================================================================== * For Z_HUFFMAN_ONLY, do not look for matches. Do not maintain a hash table. * (It will be regenerated if this run of deflate switches away from Huffman.) */ function deflate_huff(s, flush) { var bflush; /* set if current block must be flushed */ for (;;) { /* Make sure that we have a literal to write. */ if (s.lookahead === 0) { fill_window(s); if (s.lookahead === 0) { if (flush === Z_NO_FLUSH) { return BS_NEED_MORE; } break; /* flush the current block */ } } /* Output a literal byte */ s.match_length = 0; //Tracevv((stderr,"%c", s->window[s->strstart])); /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/ bflush = trees._tr_tally(s, 0, s.window[s.strstart]); s.lookahead--; s.strstart++; if (bflush) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } } s.insert = 0; if (flush === Z_FINISH) { /*** FLUSH_BLOCK(s, 1); ***/ flush_block_only(s, true); if (s.strm.avail_out === 0) { return BS_FINISH_STARTED; } /***/ return BS_FINISH_DONE; } if (s.last_lit) { /*** FLUSH_BLOCK(s, 0); ***/ flush_block_only(s, false); if (s.strm.avail_out === 0) { return BS_NEED_MORE; } /***/ } return BS_BLOCK_DONE; } /* Values for max_lazy_match, good_match and max_chain_length, depending on * the desired pack level (0..9). The values given below have been tuned to * exclude worst case performance for pathological files. Better values may be * found for specific files. */ function Config(good_length, max_lazy, nice_length, max_chain, func) { this.good_length = good_length; this.max_lazy = max_lazy; this.nice_length = nice_length; this.max_chain = max_chain; this.func = func; } var configuration_table; configuration_table = [ /* good lazy nice chain */ new Config(0, 0, 0, 0, deflate_stored), /* 0 store only */ new Config(4, 4, 8, 4, deflate_fast), /* 1 max speed, no lazy matches */ new Config(4, 5, 16, 8, deflate_fast), /* 2 */ new Config(4, 6, 32, 32, deflate_fast), /* 3 */ new Config(4, 4, 16, 16, deflate_slow), /* 4 lazy matches */ new Config(8, 16, 32, 32, deflate_slow), /* 5 */ new Config(8, 16, 128, 128, deflate_slow), /* 6 */ new Config(8, 32, 128, 256, deflate_slow), /* 7 */ new Config(32, 128, 258, 1024, deflate_slow), /* 8 */ new Config(32, 258, 258, 4096, deflate_slow) /* 9 max compression */ ]; /* =========================================================================== * Initialize the "longest match" routines for a new zlib stream */ function lm_init(s) { s.window_size = 2 * s.w_size; /*** CLEAR_HASH(s); ***/ zero(s.head); // Fill with NIL (= 0); /* Set the default configuration parameters: */ s.max_lazy_match = configuration_table[s.level].max_lazy; s.good_match = configuration_table[s.level].good_length; s.nice_match = configuration_table[s.level].nice_length; s.max_chain_length = configuration_table[s.level].max_chain; s.strstart = 0; s.block_start = 0; s.lookahead = 0; s.insert = 0; s.match_length = s.prev_length = MIN_MATCH - 1; s.match_available = 0; s.ins_h = 0; } function DeflateState() { this.strm = null; /* pointer back to this zlib stream */ this.status = 0; /* as the name implies */ this.pending_buf = null; /* output still pending */ this.pending_buf_size = 0; /* size of pending_buf */ this.pending_out = 0; /* next pending byte to output to the stream */ this.pending = 0; /* nb of bytes in the pending buffer */ this.wrap = 0; /* bit 0 true for zlib, bit 1 true for gzip */ this.gzhead = null; /* gzip header information to write */ this.gzindex = 0; /* where in extra, name, or comment */ this.method = Z_DEFLATED; /* can only be DEFLATED */ this.last_flush = -1; /* value of flush param for previous deflate call */ this.w_size = 0; /* LZ77 window size (32K by default) */ this.w_bits = 0; /* log2(w_size) (8..16) */ this.w_mask = 0; /* w_size - 1 */ this.window = null; /* Sliding window. Input bytes are read into the second half of the window, * and move to the first half later to keep a dictionary of at least wSize * bytes. With this organization, matches are limited to a distance of * wSize-MAX_MATCH bytes, but this ensures that IO is always * performed with a length multiple of the block size. */ this.window_size = 0; /* Actual size of window: 2*wSize, except when the user input buffer * is directly used as sliding window. */ this.prev = null; /* Link to older string with same hash index. To limit the size of this * array to 64K, this link is maintained only for the last 32K strings. * An index in this array is thus a window index modulo 32K. */ this.head = null; /* Heads of the hash chains or NIL. */ this.ins_h = 0; /* hash index of string to be inserted */ this.hash_size = 0; /* number of elements in hash table */ this.hash_bits = 0; /* log2(hash_size) */ this.hash_mask = 0; /* hash_size-1 */ this.hash_shift = 0; /* Number of bits by which ins_h must be shifted at each input * step. It must be such that after MIN_MATCH steps, the oldest * byte no longer takes part in the hash key, that is: * hash_shift * MIN_MATCH >= hash_bits */ this.block_start = 0; /* Window position at the beginning of the current output block. Gets * negative when the window is moved backwards. */ this.match_length = 0; /* length of best match */ this.prev_match = 0; /* previous match */ this.match_available = 0; /* set if previous match exists */ this.strstart = 0; /* start of string to insert */ this.match_start = 0; /* start of matching string */ this.lookahead = 0; /* number of valid bytes ahead in window */ this.prev_length = 0; /* Length of the best match at previous step. Matches not greater than this * are discarded. This is used in the lazy match evaluation. */ this.max_chain_length = 0; /* To speed up deflation, hash chains are never searched beyond this * length. A higher limit improves compression ratio but degrades the * speed. */ this.max_lazy_match = 0; /* Attempt to find a better match only when the current match is strictly * smaller than this value. This mechanism is used only for compression * levels >= 4. */ // That's alias to max_lazy_match, don't use directly //this.max_insert_length = 0; /* Insert new strings in the hash table only if the match length is not * greater than this length. This saves time but degrades compression. * max_insert_length is used only for compression levels <= 3. */ this.level = 0; /* compression level (1..9) */ this.strategy = 0; /* favor or force Huffman coding*/ this.good_match = 0; /* Use a faster search when the previous match is longer than this */ this.nice_match = 0; /* Stop searching when current match exceeds this */ /* used by trees.c: */ /* Didn't use ct_data typedef below to suppress compiler warning */ // struct ct_data_s dyn_ltree[HEAP_SIZE]; /* literal and length tree */ // struct ct_data_s dyn_dtree[2*D_CODES+1]; /* distance tree */ // struct ct_data_s bl_tree[2*BL_CODES+1]; /* Huffman tree for bit lengths */ // Use flat array of DOUBLE size, with interleaved fata, // because JS does not support effective this.dyn_ltree = new utils.Buf16(HEAP_SIZE * 2); this.dyn_dtree = new utils.Buf16((2 * D_CODES + 1) * 2); this.bl_tree = new utils.Buf16((2 * BL_CODES + 1) * 2); zero(this.dyn_ltree); zero(this.dyn_dtree); zero(this.bl_tree); this.l_desc = null; /* desc. for literal tree */ this.d_desc = null; /* desc. for distance tree */ this.bl_desc = null; /* desc. for bit length tree */ //ush bl_count[MAX_BITS+1]; this.bl_count = new utils.Buf16(MAX_BITS + 1); /* number of codes at each bit length for an optimal tree */ //int heap[2*L_CODES+1]; /* heap used to build the Huffman trees */ this.heap = new utils.Buf16(2 * L_CODES + 1); /* heap used to build the Huffman trees */ zero(this.heap); this.heap_len = 0; /* number of elements in the heap */ this.heap_max = 0; /* element of largest frequency */ /* The sons of heap[n] are heap[2*n] and heap[2*n+1]. heap[0] is not used. * The same heap array is used to build all trees. */ this.depth = new utils.Buf16(2 * L_CODES + 1); //uch depth[2*L_CODES+1]; zero(this.depth); /* Depth of each subtree used as tie breaker for trees of equal frequency */ this.l_buf = 0; /* buffer index for literals or lengths */ this.lit_bufsize = 0; /* Size of match buffer for literals/lengths. There are 4 reasons for * limiting lit_bufsize to 64K: * - frequencies can be kept in 16 bit counters * - if compression is not successful for the first block, all input * data is still in the window so we can still emit a stored block even * when input comes from standard input. (This can also be done for * all blocks if lit_bufsize is not greater than 32K.) * - if compression is not successful for a file smaller than 64K, we can * even emit a stored file instead of a stored block (saving 5 bytes). * This is applicable only for zip (not gzip or zlib). * - creating new Huffman trees less frequently may not provide fast * adaptation to changes in the input data statistics. (Take for * example a binary file with poorly compressible code followed by * a highly compressible string table.) Smaller buffer sizes give * fast adaptation but have of course the overhead of transmitting * trees more frequently. * - I can't count above 4 */ this.last_lit = 0; /* running index in l_buf */ this.d_buf = 0; /* Buffer index for distances. To simplify the code, d_buf and l_buf have * the same number of elements. To use different lengths, an extra flag * array would be necessary. */ this.opt_len = 0; /* bit length of current block with optimal trees */ this.static_len = 0; /* bit length of current block with static trees */ this.matches = 0; /* number of string matches in current block */ this.insert = 0; /* bytes at end of window left to insert */ this.bi_buf = 0; /* Output buffer. bits are inserted starting at the bottom (least * significant bits). */ this.bi_valid = 0; /* Number of valid bits in bi_buf. All bits above the last valid bit * are always zero. */ // Used for window memory init. We safely ignore it for JS. That makes // sense only for pointers and memory check tools. //this.high_water = 0; /* High water mark offset in window for initialized bytes -- bytes above * this are set to zero in order to avoid memory check warnings when * longest match routines access bytes past the input. This is then * updated to the new high water mark. */ } function deflateResetKeep(strm) { var s; if (!strm || !strm.state) { return err(strm, Z_STREAM_ERROR); } strm.total_in = strm.total_out = 0; strm.data_type = Z_UNKNOWN; s = strm.state; s.pending = 0; s.pending_out = 0; if (s.wrap < 0) { s.wrap = -s.wrap; /* was made negative by deflate(..., Z_FINISH); */ } s.status = (s.wrap ? INIT_STATE : BUSY_STATE); strm.adler = (s.wrap === 2) ? 0 // crc32(0, Z_NULL, 0) : 1; // adler32(0, Z_NULL, 0) s.last_flush = Z_NO_FLUSH; trees._tr_init(s); return Z_OK; } function deflateReset(strm) { var ret = deflateResetKeep(strm); if (ret === Z_OK) { lm_init(strm.state); } return ret; } function deflateSetHeader(strm, head) { if (!strm || !strm.state) { return Z_STREAM_ERROR; } if (strm.state.wrap !== 2) { return Z_STREAM_ERROR; } strm.state.gzhead = head; return Z_OK; } function deflateInit2(strm, level, method, windowBits, memLevel, strategy) { if (!strm) { // === Z_NULL return Z_STREAM_ERROR; } var wrap = 1; if (level === Z_DEFAULT_COMPRESSION) { level = 6; } if (windowBits < 0) { /* suppress zlib wrapper */ wrap = 0; windowBits = -windowBits; } else if (windowBits > 15) { wrap = 2; /* write gzip wrapper instead */ windowBits -= 16; } if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method !== Z_DEFLATED || windowBits < 8 || windowBits > 15 || level < 0 || level > 9 || strategy < 0 || strategy > Z_FIXED) { return err(strm, Z_STREAM_ERROR); } if (windowBits === 8) { windowBits = 9; } /* until 256-byte window bug fixed */ var s = new DeflateState(); strm.state = s; s.strm = strm; s.wrap = wrap; s.gzhead = null; s.w_bits = windowBits; s.w_size = 1 << s.w_bits; s.w_mask = s.w_size - 1; s.hash_bits = memLevel + 7; s.hash_size = 1 << s.hash_bits; s.hash_mask = s.hash_size - 1; s.hash_shift = ~~((s.hash_bits + MIN_MATCH - 1) / MIN_MATCH); s.window = new utils.Buf8(s.w_size * 2); s.head = new utils.Buf16(s.hash_size); s.prev = new utils.Buf16(s.w_size); // Don't need mem init magic for JS. //s.high_water = 0; /* nothing written to s->window yet */ s.lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */ s.pending_buf_size = s.lit_bufsize * 4; //overlay = (ushf *) ZALLOC(strm, s->lit_bufsize, sizeof(ush)+2); //s->pending_buf = (uchf *) overlay; s.pending_buf = new utils.Buf8(s.pending_buf_size); // It is offset from `s.pending_buf` (size is `s.lit_bufsize * 2`) //s->d_buf = overlay + s->lit_bufsize/sizeof(ush); s.d_buf = 1 * s.lit_bufsize; //s->l_buf = s->pending_buf + (1+sizeof(ush))*s->lit_bufsize; s.l_buf = (1 + 2) * s.lit_bufsize; s.level = level; s.strategy = strategy; s.method = method; return deflateReset(strm); } function deflateInit(strm, level) { return deflateInit2(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL, Z_DEFAULT_STRATEGY); } function deflate(strm, flush) { var old_flush, s; var beg, val; // for gzip header write only if (!strm || !strm.state || flush > Z_BLOCK || flush < 0) { return strm ? err(strm, Z_STREAM_ERROR) : Z_STREAM_ERROR; } s = strm.state; if (!strm.output || (!strm.input && strm.avail_in !== 0) || (s.status === FINISH_STATE && flush !== Z_FINISH)) { return err(strm, (strm.avail_out === 0) ? Z_BUF_ERROR : Z_STREAM_ERROR); } s.strm = strm; /* just in case */ old_flush = s.last_flush; s.last_flush = flush; /* Write the header */ if (s.status === INIT_STATE) { if (s.wrap === 2) { // GZIP header strm.adler = 0; //crc32(0L, Z_NULL, 0); put_byte(s, 31); put_byte(s, 139); put_byte(s, 8); if (!s.gzhead) { // s->gzhead == Z_NULL put_byte(s, 0); put_byte(s, 0); put_byte(s, 0); put_byte(s, 0); put_byte(s, 0); put_byte(s, s.level === 9 ? 2 : (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2 ? 4 : 0)); put_byte(s, OS_CODE); s.status = BUSY_STATE; } else { put_byte(s, (s.gzhead.text ? 1 : 0) + (s.gzhead.hcrc ? 2 : 0) + (!s.gzhead.extra ? 0 : 4) + (!s.gzhead.name ? 0 : 8) + (!s.gzhead.comment ? 0 : 16) ); put_byte(s, s.gzhead.time & 0xff); put_byte(s, (s.gzhead.time >> 8) & 0xff); put_byte(s, (s.gzhead.time >> 16) & 0xff); put_byte(s, (s.gzhead.time >> 24) & 0xff); put_byte(s, s.level === 9 ? 2 : (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2 ? 4 : 0)); put_byte(s, s.gzhead.os & 0xff); if (s.gzhead.extra && s.gzhead.extra.length) { put_byte(s, s.gzhead.extra.length & 0xff); put_byte(s, (s.gzhead.extra.length >> 8) & 0xff); } if (s.gzhead.hcrc) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending, 0); } s.gzindex = 0; s.status = EXTRA_STATE; } } else // DEFLATE header { var header = (Z_DEFLATED + ((s.w_bits - 8) << 4)) << 8; var level_flags = -1; if (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2) { level_flags = 0; } else if (s.level < 6) { level_flags = 1; } else if (s.level === 6) { level_flags = 2; } else { level_flags = 3; } header |= (level_flags << 6); if (s.strstart !== 0) { header |= PRESET_DICT; } header += 31 - (header % 31); s.status = BUSY_STATE; putShortMSB(s, header); /* Save the adler32 of the preset dictionary: */ if (s.strstart !== 0) { putShortMSB(s, strm.adler >>> 16); putShortMSB(s, strm.adler & 0xffff); } strm.adler = 1; // adler32(0L, Z_NULL, 0); } } //#ifdef GZIP if (s.status === EXTRA_STATE) { if (s.gzhead.extra/* != Z_NULL*/) { beg = s.pending; /* start of bytes to update crc */ while (s.gzindex < (s.gzhead.extra.length & 0xffff)) { if (s.pending === s.pending_buf_size) { if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } flush_pending(strm); beg = s.pending; if (s.pending === s.pending_buf_size) { break; } } put_byte(s, s.gzhead.extra[s.gzindex] & 0xff); s.gzindex++; } if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } if (s.gzindex === s.gzhead.extra.length) { s.gzindex = 0; s.status = NAME_STATE; } } else { s.status = NAME_STATE; } } if (s.status === NAME_STATE) { if (s.gzhead.name/* != Z_NULL*/) { beg = s.pending; /* start of bytes to update crc */ //int val; do { if (s.pending === s.pending_buf_size) { if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } flush_pending(strm); beg = s.pending; if (s.pending === s.pending_buf_size) { val = 1; break; } } // JS specific: little magic to add zero terminator to end of string if (s.gzindex < s.gzhead.name.length) { val = s.gzhead.name.charCodeAt(s.gzindex++) & 0xff; } else { val = 0; } put_byte(s, val); } while (val !== 0); if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } if (val === 0) { s.gzindex = 0; s.status = COMMENT_STATE; } } else { s.status = COMMENT_STATE; } } if (s.status === COMMENT_STATE) { if (s.gzhead.comment/* != Z_NULL*/) { beg = s.pending; /* start of bytes to update crc */ //int val; do { if (s.pending === s.pending_buf_size) { if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } flush_pending(strm); beg = s.pending; if (s.pending === s.pending_buf_size) { val = 1; break; } } // JS specific: little magic to add zero terminator to end of string if (s.gzindex < s.gzhead.comment.length) { val = s.gzhead.comment.charCodeAt(s.gzindex++) & 0xff; } else { val = 0; } put_byte(s, val); } while (val !== 0); if (s.gzhead.hcrc && s.pending > beg) { strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg); } if (val === 0) { s.status = HCRC_STATE; } } else { s.status = HCRC_STATE; } } if (s.status === HCRC_STATE) { if (s.gzhead.hcrc) { if (s.pending + 2 > s.pending_buf_size) { flush_pending(strm); } if (s.pending + 2 <= s.pending_buf_size) { put_byte(s, strm.adler & 0xff); put_byte(s, (strm.adler >> 8) & 0xff); strm.adler = 0; //crc32(0L, Z_NULL, 0); s.status = BUSY_STATE; } } else { s.status = BUSY_STATE; } } //#endif /* Flush as much pending output as possible */ if (s.pending !== 0) { flush_pending(strm); if (strm.avail_out === 0) { /* Since avail_out is 0, deflate will be called again with * more output space, but possibly with both pending and * avail_in equal to zero. There won't be anything to do, * but this is not an error situation so make sure we * return OK instead of BUF_ERROR at next call of deflate: */ s.last_flush = -1; return Z_OK; } /* Make sure there is something to do and avoid duplicate consecutive * flushes. For repeated and useless calls with Z_FINISH, we keep * returning Z_STREAM_END instead of Z_BUF_ERROR. */ } else if (strm.avail_in === 0 && rank(flush) <= rank(old_flush) && flush !== Z_FINISH) { return err(strm, Z_BUF_ERROR); } /* User must not provide more input after the first FINISH: */ if (s.status === FINISH_STATE && strm.avail_in !== 0) { return err(strm, Z_BUF_ERROR); } /* Start a new block or continue the current one. */ if (strm.avail_in !== 0 || s.lookahead !== 0 || (flush !== Z_NO_FLUSH && s.status !== FINISH_STATE)) { var bstate = (s.strategy === Z_HUFFMAN_ONLY) ? deflate_huff(s, flush) : (s.strategy === Z_RLE ? deflate_rle(s, flush) : configuration_table[s.level].func(s, flush)); if (bstate === BS_FINISH_STARTED || bstate === BS_FINISH_DONE) { s.status = FINISH_STATE; } if (bstate === BS_NEED_MORE || bstate === BS_FINISH_STARTED) { if (strm.avail_out === 0) { s.last_flush = -1; /* avoid BUF_ERROR next call, see above */ } return Z_OK; /* If flush != Z_NO_FLUSH && avail_out == 0, the next call * of deflate should use the same flush parameter to make sure * that the flush is complete. So we don't have to output an * empty block here, this will be done at next call. This also * ensures that for a very small output buffer, we emit at most * one empty block. */ } if (bstate === BS_BLOCK_DONE) { if (flush === Z_PARTIAL_FLUSH) { trees._tr_align(s); } else if (flush !== Z_BLOCK) { /* FULL_FLUSH or SYNC_FLUSH */ trees._tr_stored_block(s, 0, 0, false); /* For a full flush, this empty block will be recognized * as a special marker by inflate_sync(). */ if (flush === Z_FULL_FLUSH) { /*** CLEAR_HASH(s); ***/ /* forget history */ zero(s.head); // Fill with NIL (= 0); if (s.lookahead === 0) { s.strstart = 0; s.block_start = 0; s.insert = 0; } } } flush_pending(strm); if (strm.avail_out === 0) { s.last_flush = -1; /* avoid BUF_ERROR at next call, see above */ return Z_OK; } } } //Assert(strm->avail_out > 0, "bug2"); //if (strm.avail_out <= 0) { throw new Error("bug2");} if (flush !== Z_FINISH) { return Z_OK; } if (s.wrap <= 0) { return Z_STREAM_END; } /* Write the trailer */ if (s.wrap === 2) { put_byte(s, strm.adler & 0xff); put_byte(s, (strm.adler >> 8) & 0xff); put_byte(s, (strm.adler >> 16) & 0xff); put_byte(s, (strm.adler >> 24) & 0xff); put_byte(s, strm.total_in & 0xff); put_byte(s, (strm.total_in >> 8) & 0xff); put_byte(s, (strm.total_in >> 16) & 0xff); put_byte(s, (strm.total_in >> 24) & 0xff); } else { putShortMSB(s, strm.adler >>> 16); putShortMSB(s, strm.adler & 0xffff); } flush_pending(strm); /* If avail_out is zero, the application will call deflate again * to flush the rest. */ if (s.wrap > 0) { s.wrap = -s.wrap; } /* write the trailer only once! */ return s.pending !== 0 ? Z_OK : Z_STREAM_END; } function deflateEnd(strm) { var status; if (!strm/*== Z_NULL*/ || !strm.state/*== Z_NULL*/) { return Z_STREAM_ERROR; } status = strm.state.status; if (status !== INIT_STATE && status !== EXTRA_STATE && status !== NAME_STATE && status !== COMMENT_STATE && status !== HCRC_STATE && status !== BUSY_STATE && status !== FINISH_STATE ) { return err(strm, Z_STREAM_ERROR); } strm.state = null; return status === BUSY_STATE ? err(strm, Z_DATA_ERROR) : Z_OK; } /* ========================================================================= * Initializes the compression dictionary from the given byte * sequence without producing any compressed output. */ function deflateSetDictionary(strm, dictionary) { var dictLength = dictionary.length; var s; var str, n; var wrap; var avail; var next; var input; var tmpDict; if (!strm/*== Z_NULL*/ || !strm.state/*== Z_NULL*/) { return Z_STREAM_ERROR; } s = strm.state; wrap = s.wrap; if (wrap === 2 || (wrap === 1 && s.status !== INIT_STATE) || s.lookahead) { return Z_STREAM_ERROR; } /* when using zlib wrappers, compute Adler-32 for provided dictionary */ if (wrap === 1) { /* adler32(strm->adler, dictionary, dictLength); */ strm.adler = adler32(strm.adler, dictionary, dictLength, 0); } s.wrap = 0; /* avoid computing Adler-32 in read_buf */ /* if dictionary would fill window, just replace the history */ if (dictLength >= s.w_size) { if (wrap === 0) { /* already empty otherwise */ /*** CLEAR_HASH(s); ***/ zero(s.head); // Fill with NIL (= 0); s.strstart = 0; s.block_start = 0; s.insert = 0; } /* use the tail */ // dictionary = dictionary.slice(dictLength - s.w_size); tmpDict = new utils.Buf8(s.w_size); utils.arraySet(tmpDict, dictionary, dictLength - s.w_size, s.w_size, 0); dictionary = tmpDict; dictLength = s.w_size; } /* insert dictionary into window and hash */ avail = strm.avail_in; next = strm.next_in; input = strm.input; strm.avail_in = dictLength; strm.next_in = 0; strm.input = dictionary; fill_window(s); while (s.lookahead >= MIN_MATCH) { str = s.strstart; n = s.lookahead - (MIN_MATCH - 1); do { /* UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]); */ s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[str + MIN_MATCH - 1]) & s.hash_mask; s.prev[str & s.w_mask] = s.head[s.ins_h]; s.head[s.ins_h] = str; str++; } while (--n); s.strstart = str; s.lookahead = MIN_MATCH - 1; fill_window(s); } s.strstart += s.lookahead; s.block_start = s.strstart; s.insert = s.lookahead; s.lookahead = 0; s.match_length = s.prev_length = MIN_MATCH - 1; s.match_available = 0; strm.next_in = next; strm.input = input; strm.avail_in = avail; s.wrap = wrap; return Z_OK; } exports.deflateInit = deflateInit; exports.deflateInit2 = deflateInit2; exports.deflateReset = deflateReset; exports.deflateResetKeep = deflateResetKeep; exports.deflateSetHeader = deflateSetHeader; exports.deflate = deflate; exports.deflateEnd = deflateEnd; exports.deflateSetDictionary = deflateSetDictionary; exports.deflateInfo = 'pako deflate (from Nodeca project)'; /* Not implemented exports.deflateBound = deflateBound; exports.deflateCopy = deflateCopy; exports.deflateParams = deflateParams; exports.deflatePending = deflatePending; exports.deflatePrime = deflatePrime; exports.deflateTune = deflateTune; */ },{"../utils/common":102,"./adler32":103,"./crc32":105,"./messages":110,"./trees":111}],107:[function(require,module,exports){ 'use strict'; // See state defs from inflate.js var BAD = 30; /* got a data error -- remain here until reset */ var TYPE = 12; /* i: waiting for type bits, including last-flag bit */ /* Decode literal, length, and distance codes and write out the resulting literal and match bytes until either not enough input or output is available, an end-of-block is encountered, or a data error is encountered. When large enough input and output buffers are supplied to inflate(), for example, a 16K input buffer and a 64K output buffer, more than 95% of the inflate execution time is spent in this routine. Entry assumptions: state.mode === LEN strm.avail_in >= 6 strm.avail_out >= 258 start >= strm.avail_out state.bits < 8 On return, state.mode is one of: LEN -- ran out of enough output space or enough available input TYPE -- reached end of block code, inflate() to interpret next block BAD -- error in block data Notes: - The maximum input bits used by a length/distance pair is 15 bits for the length code, 5 bits for the length extra, 15 bits for the distance code, and 13 bits for the distance extra. This totals 48 bits, or six bytes. Therefore if strm.avail_in >= 6, then there is enough input to avoid checking for available input while decoding. - The maximum bytes that a single length/distance pair can output is 258 bytes, which is the maximum length that can be coded. inflate_fast() requires strm.avail_out >= 258 for each loop to avoid checking for output space. */ module.exports = function inflate_fast(strm, start) { var state; var _in; /* local strm.input */ var last; /* have enough input while in < last */ var _out; /* local strm.output */ var beg; /* inflate()'s initial strm.output */ var end; /* while out < end, enough space available */ //#ifdef INFLATE_STRICT var dmax; /* maximum distance from zlib header */ //#endif var wsize; /* window size or zero if not using window */ var whave; /* valid bytes in the window */ var wnext; /* window write index */ // Use `s_window` instead `window`, avoid conflict with instrumentation tools var s_window; /* allocated sliding window, if wsize != 0 */ var hold; /* local strm.hold */ var bits; /* local strm.bits */ var lcode; /* local strm.lencode */ var dcode; /* local strm.distcode */ var lmask; /* mask for first level of length codes */ var dmask; /* mask for first level of distance codes */ var here; /* retrieved table entry */ var op; /* code bits, operation, extra bits, or */ /* window position, window bytes to copy */ var len; /* match length, unused bytes */ var dist; /* match distance */ var from; /* where to copy match from */ var from_source; var input, output; // JS specific, because we have no pointers /* copy state to local variables */ state = strm.state; //here = state.here; _in = strm.next_in; input = strm.input; last = _in + (strm.avail_in - 5); _out = strm.next_out; output = strm.output; beg = _out - (start - strm.avail_out); end = _out + (strm.avail_out - 257); //#ifdef INFLATE_STRICT dmax = state.dmax; //#endif wsize = state.wsize; whave = state.whave; wnext = state.wnext; s_window = state.window; hold = state.hold; bits = state.bits; lcode = state.lencode; dcode = state.distcode; lmask = (1 << state.lenbits) - 1; dmask = (1 << state.distbits) - 1; /* decode literals and length/distances until end-of-block or not enough input data or output space */ top: do { if (bits < 15) { hold += input[_in++] << bits; bits += 8; hold += input[_in++] << bits; bits += 8; } here = lcode[hold & lmask]; dolen: for (;;) { // Goto emulation op = here >>> 24/*here.bits*/; hold >>>= op; bits -= op; op = (here >>> 16) & 0xff/*here.op*/; if (op === 0) { /* literal */ //Tracevv((stderr, here.val >= 0x20 && here.val < 0x7f ? // "inflate: literal '%c'\n" : // "inflate: literal 0x%02x\n", here.val)); output[_out++] = here & 0xffff/*here.val*/; } else if (op & 16) { /* length base */ len = here & 0xffff/*here.val*/; op &= 15; /* number of extra bits */ if (op) { if (bits < op) { hold += input[_in++] << bits; bits += 8; } len += hold & ((1 << op) - 1); hold >>>= op; bits -= op; } //Tracevv((stderr, "inflate: length %u\n", len)); if (bits < 15) { hold += input[_in++] << bits; bits += 8; hold += input[_in++] << bits; bits += 8; } here = dcode[hold & dmask]; dodist: for (;;) { // goto emulation op = here >>> 24/*here.bits*/; hold >>>= op; bits -= op; op = (here >>> 16) & 0xff/*here.op*/; if (op & 16) { /* distance base */ dist = here & 0xffff/*here.val*/; op &= 15; /* number of extra bits */ if (bits < op) { hold += input[_in++] << bits; bits += 8; if (bits < op) { hold += input[_in++] << bits; bits += 8; } } dist += hold & ((1 << op) - 1); //#ifdef INFLATE_STRICT if (dist > dmax) { strm.msg = 'invalid distance too far back'; state.mode = BAD; break top; } //#endif hold >>>= op; bits -= op; //Tracevv((stderr, "inflate: distance %u\n", dist)); op = _out - beg; /* max distance in output */ if (dist > op) { /* see if copy from window */ op = dist - op; /* distance back in window */ if (op > whave) { if (state.sane) { strm.msg = 'invalid distance too far back'; state.mode = BAD; break top; } // (!) This block is disabled in zlib defailts, // don't enable it for binary compatibility //#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR // if (len <= op - whave) { // do { // output[_out++] = 0; // } while (--len); // continue top; // } // len -= op - whave; // do { // output[_out++] = 0; // } while (--op > whave); // if (op === 0) { // from = _out - dist; // do { // output[_out++] = output[from++]; // } while (--len); // continue top; // } //#endif } from = 0; // window index from_source = s_window; if (wnext === 0) { /* very common case */ from += wsize - op; if (op < len) { /* some from window */ len -= op; do { output[_out++] = s_window[from++]; } while (--op); from = _out - dist; /* rest from output */ from_source = output; } } else if (wnext < op) { /* wrap around window */ from += wsize + wnext - op; op -= wnext; if (op < len) { /* some from end of window */ len -= op; do { output[_out++] = s_window[from++]; } while (--op); from = 0; if (wnext < len) { /* some from start of window */ op = wnext; len -= op; do { output[_out++] = s_window[from++]; } while (--op); from = _out - dist; /* rest from output */ from_source = output; } } } else { /* contiguous in window */ from += wnext - op; if (op < len) { /* some from window */ len -= op; do { output[_out++] = s_window[from++]; } while (--op); from = _out - dist; /* rest from output */ from_source = output; } } while (len > 2) { output[_out++] = from_source[from++]; output[_out++] = from_source[from++]; output[_out++] = from_source[from++]; len -= 3; } if (len) { output[_out++] = from_source[from++]; if (len > 1) { output[_out++] = from_source[from++]; } } } else { from = _out - dist; /* copy direct from output */ do { /* minimum length is three */ output[_out++] = output[from++]; output[_out++] = output[from++]; output[_out++] = output[from++]; len -= 3; } while (len > 2); if (len) { output[_out++] = output[from++]; if (len > 1) { output[_out++] = output[from++]; } } } } else if ((op & 64) === 0) { /* 2nd level distance code */ here = dcode[(here & 0xffff)/*here.val*/ + (hold & ((1 << op) - 1))]; continue dodist; } else { strm.msg = 'invalid distance code'; state.mode = BAD; break top; } break; // need to emulate goto via "continue" } } else if ((op & 64) === 0) { /* 2nd level length code */ here = lcode[(here & 0xffff)/*here.val*/ + (hold & ((1 << op) - 1))]; continue dolen; } else if (op & 32) { /* end-of-block */ //Tracevv((stderr, "inflate: end of block\n")); state.mode = TYPE; break top; } else { strm.msg = 'invalid literal/length code'; state.mode = BAD; break top; } break; // need to emulate goto via "continue" } } while (_in < last && _out < end); /* return unused bytes (on entry, bits < 8, so in won't go too far back) */ len = bits >> 3; _in -= len; bits -= len << 3; hold &= (1 << bits) - 1; /* update state and return */ strm.next_in = _in; strm.next_out = _out; strm.avail_in = (_in < last ? 5 + (last - _in) : 5 - (_in - last)); strm.avail_out = (_out < end ? 257 + (end - _out) : 257 - (_out - end)); state.hold = hold; state.bits = bits; return; }; },{}],108:[function(require,module,exports){ 'use strict'; var utils = require('../utils/common'); var adler32 = require('./adler32'); var crc32 = require('./crc32'); var inflate_fast = require('./inffast'); var inflate_table = require('./inftrees'); var CODES = 0; var LENS = 1; var DISTS = 2; /* Public constants ==========================================================*/ /* ===========================================================================*/ /* Allowed flush values; see deflate() and inflate() below for details */ //var Z_NO_FLUSH = 0; //var Z_PARTIAL_FLUSH = 1; //var Z_SYNC_FLUSH = 2; //var Z_FULL_FLUSH = 3; var Z_FINISH = 4; var Z_BLOCK = 5; var Z_TREES = 6; /* Return codes for the compression/decompression functions. Negative values * are errors, positive values are used for special but normal events. */ var Z_OK = 0; var Z_STREAM_END = 1; var Z_NEED_DICT = 2; //var Z_ERRNO = -1; var Z_STREAM_ERROR = -2; var Z_DATA_ERROR = -3; var Z_MEM_ERROR = -4; var Z_BUF_ERROR = -5; //var Z_VERSION_ERROR = -6; /* The deflate compression method */ var Z_DEFLATED = 8; /* STATES ====================================================================*/ /* ===========================================================================*/ var HEAD = 1; /* i: waiting for magic header */ var FLAGS = 2; /* i: waiting for method and flags (gzip) */ var TIME = 3; /* i: waiting for modification time (gzip) */ var OS = 4; /* i: waiting for extra flags and operating system (gzip) */ var EXLEN = 5; /* i: waiting for extra length (gzip) */ var EXTRA = 6; /* i: waiting for extra bytes (gzip) */ var NAME = 7; /* i: waiting for end of file name (gzip) */ var COMMENT = 8; /* i: waiting for end of comment (gzip) */ var HCRC = 9; /* i: waiting for header crc (gzip) */ var DICTID = 10; /* i: waiting for dictionary check value */ var DICT = 11; /* waiting for inflateSetDictionary() call */ var TYPE = 12; /* i: waiting for type bits, including last-flag bit */ var TYPEDO = 13; /* i: same, but skip check to exit inflate on new block */ var STORED = 14; /* i: waiting for stored size (length and complement) */ var COPY_ = 15; /* i/o: same as COPY below, but only first time in */ var COPY = 16; /* i/o: waiting for input or output to copy stored block */ var TABLE = 17; /* i: waiting for dynamic block table lengths */ var LENLENS = 18; /* i: waiting for code length code lengths */ var CODELENS = 19; /* i: waiting for length/lit and distance code lengths */ var LEN_ = 20; /* i: same as LEN below, but only first time in */ var LEN = 21; /* i: waiting for length/lit/eob code */ var LENEXT = 22; /* i: waiting for length extra bits */ var DIST = 23; /* i: waiting for distance code */ var DISTEXT = 24; /* i: waiting for distance extra bits */ var MATCH = 25; /* o: waiting for output space to copy string */ var LIT = 26; /* o: waiting for output space to write literal */ var CHECK = 27; /* i: waiting for 32-bit check value */ var LENGTH = 28; /* i: waiting for 32-bit length (gzip) */ var DONE = 29; /* finished check, done -- remain here until reset */ var BAD = 30; /* got a data error -- remain here until reset */ var MEM = 31; /* got an inflate() memory error -- remain here until reset */ var SYNC = 32; /* looking for synchronization bytes to restart inflate() */ /* ===========================================================================*/ var ENOUGH_LENS = 852; var ENOUGH_DISTS = 592; //var ENOUGH = (ENOUGH_LENS+ENOUGH_DISTS); var MAX_WBITS = 15; /* 32K LZ77 window */ var DEF_WBITS = MAX_WBITS; function zswap32(q) { return (((q >>> 24) & 0xff) + ((q >>> 8) & 0xff00) + ((q & 0xff00) << 8) + ((q & 0xff) << 24)); } function InflateState() { this.mode = 0; /* current inflate mode */ this.last = false; /* true if processing last block */ this.wrap = 0; /* bit 0 true for zlib, bit 1 true for gzip */ this.havedict = false; /* true if dictionary provided */ this.flags = 0; /* gzip header method and flags (0 if zlib) */ this.dmax = 0; /* zlib header max distance (INFLATE_STRICT) */ this.check = 0; /* protected copy of check value */ this.total = 0; /* protected copy of output count */ // TODO: may be {} this.head = null; /* where to save gzip header information */ /* sliding window */ this.wbits = 0; /* log base 2 of requested window size */ this.wsize = 0; /* window size or zero if not using window */ this.whave = 0; /* valid bytes in the window */ this.wnext = 0; /* window write index */ this.window = null; /* allocated sliding window, if needed */ /* bit accumulator */ this.hold = 0; /* input bit accumulator */ this.bits = 0; /* number of bits in "in" */ /* for string and stored block copying */ this.length = 0; /* literal or length of data to copy */ this.offset = 0; /* distance back to copy string from */ /* for table and code decoding */ this.extra = 0; /* extra bits needed */ /* fixed and dynamic code tables */ this.lencode = null; /* starting table for length/literal codes */ this.distcode = null; /* starting table for distance codes */ this.lenbits = 0; /* index bits for lencode */ this.distbits = 0; /* index bits for distcode */ /* dynamic table building */ this.ncode = 0; /* number of code length code lengths */ this.nlen = 0; /* number of length code lengths */ this.ndist = 0; /* number of distance code lengths */ this.have = 0; /* number of code lengths in lens[] */ this.next = null; /* next available space in codes[] */ this.lens = new utils.Buf16(320); /* temporary storage for code lengths */ this.work = new utils.Buf16(288); /* work area for code table building */ /* because we don't have pointers in js, we use lencode and distcode directly as buffers so we don't need codes */ //this.codes = new utils.Buf32(ENOUGH); /* space for code tables */ this.lendyn = null; /* dynamic table for length/literal codes (JS specific) */ this.distdyn = null; /* dynamic table for distance codes (JS specific) */ this.sane = 0; /* if false, allow invalid distance too far */ this.back = 0; /* bits back of last unprocessed length/lit */ this.was = 0; /* initial length of match */ } function inflateResetKeep(strm) { var state; if (!strm || !strm.state) { return Z_STREAM_ERROR; } state = strm.state; strm.total_in = strm.total_out = state.total = 0; strm.msg = ''; /*Z_NULL*/ if (state.wrap) { /* to support ill-conceived Java test suite */ strm.adler = state.wrap & 1; } state.mode = HEAD; state.last = 0; state.havedict = 0; state.dmax = 32768; state.head = null/*Z_NULL*/; state.hold = 0; state.bits = 0; //state.lencode = state.distcode = state.next = state.codes; state.lencode = state.lendyn = new utils.Buf32(ENOUGH_LENS); state.distcode = state.distdyn = new utils.Buf32(ENOUGH_DISTS); state.sane = 1; state.back = -1; //Tracev((stderr, "inflate: reset\n")); return Z_OK; } function inflateReset(strm) { var state; if (!strm || !strm.state) { return Z_STREAM_ERROR; } state = strm.state; state.wsize = 0; state.whave = 0; state.wnext = 0; return inflateResetKeep(strm); } function inflateReset2(strm, windowBits) { var wrap; var state; /* get the state */ if (!strm || !strm.state) { return Z_STREAM_ERROR; } state = strm.state; /* extract wrap request from windowBits parameter */ if (windowBits < 0) { wrap = 0; windowBits = -windowBits; } else { wrap = (windowBits >> 4) + 1; if (windowBits < 48) { windowBits &= 15; } } /* set number of window bits, free window if different */ if (windowBits && (windowBits < 8 || windowBits > 15)) { return Z_STREAM_ERROR; } if (state.window !== null && state.wbits !== windowBits) { state.window = null; } /* update state and reset the rest of it */ state.wrap = wrap; state.wbits = windowBits; return inflateReset(strm); } function inflateInit2(strm, windowBits) { var ret; var state; if (!strm) { return Z_STREAM_ERROR; } //strm.msg = Z_NULL; /* in case we return an error */ state = new InflateState(); //if (state === Z_NULL) return Z_MEM_ERROR; //Tracev((stderr, "inflate: allocated\n")); strm.state = state; state.window = null/*Z_NULL*/; ret = inflateReset2(strm, windowBits); if (ret !== Z_OK) { strm.state = null/*Z_NULL*/; } return ret; } function inflateInit(strm) { return inflateInit2(strm, DEF_WBITS); } /* Return state with length and distance decoding tables and index sizes set to fixed code decoding. Normally this returns fixed tables from inffixed.h. If BUILDFIXED is defined, then instead this routine builds the tables the first time it's called, and returns those tables the first time and thereafter. This reduces the size of the code by about 2K bytes, in exchange for a little execution time. However, BUILDFIXED should not be used for threaded applications, since the rewriting of the tables and virgin may not be thread-safe. */ var virgin = true; var lenfix, distfix; // We have no pointers in JS, so keep tables separate function fixedtables(state) { /* build fixed huffman tables if first call (may not be thread safe) */ if (virgin) { var sym; lenfix = new utils.Buf32(512); distfix = new utils.Buf32(32); /* literal/length table */ sym = 0; while (sym < 144) { state.lens[sym++] = 8; } while (sym < 256) { state.lens[sym++] = 9; } while (sym < 280) { state.lens[sym++] = 7; } while (sym < 288) { state.lens[sym++] = 8; } inflate_table(LENS, state.lens, 0, 288, lenfix, 0, state.work, { bits: 9 }); /* distance table */ sym = 0; while (sym < 32) { state.lens[sym++] = 5; } inflate_table(DISTS, state.lens, 0, 32, distfix, 0, state.work, { bits: 5 }); /* do this just once */ virgin = false; } state.lencode = lenfix; state.lenbits = 9; state.distcode = distfix; state.distbits = 5; } /* Update the window with the last wsize (normally 32K) bytes written before returning. If window does not exist yet, create it. This is only called when a window is already in use, or when output has been written during this inflate call, but the end of the deflate stream has not been reached yet. It is also called to create a window for dictionary data when a dictionary is loaded. Providing output buffers larger than 32K to inflate() should provide a speed advantage, since only the last 32K of output is copied to the sliding window upon return from inflate(), and since all distances after the first 32K of output will fall in the output data, making match copies simpler and faster. The advantage may be dependent on the size of the processor's data caches. */ function updatewindow(strm, src, end, copy) { var dist; var state = strm.state; /* if it hasn't been done already, allocate space for the window */ if (state.window === null) { state.wsize = 1 << state.wbits; state.wnext = 0; state.whave = 0; state.window = new utils.Buf8(state.wsize); } /* copy state->wsize or less output bytes into the circular window */ if (copy >= state.wsize) { utils.arraySet(state.window, src, end - state.wsize, state.wsize, 0); state.wnext = 0; state.whave = state.wsize; } else { dist = state.wsize - state.wnext; if (dist > copy) { dist = copy; } //zmemcpy(state->window + state->wnext, end - copy, dist); utils.arraySet(state.window, src, end - copy, dist, state.wnext); copy -= dist; if (copy) { //zmemcpy(state->window, end - copy, copy); utils.arraySet(state.window, src, end - copy, copy, 0); state.wnext = copy; state.whave = state.wsize; } else { state.wnext += dist; if (state.wnext === state.wsize) { state.wnext = 0; } if (state.whave < state.wsize) { state.whave += dist; } } } return 0; } function inflate(strm, flush) { var state; var input, output; // input/output buffers var next; /* next input INDEX */ var put; /* next output INDEX */ var have, left; /* available input and output */ var hold; /* bit buffer */ var bits; /* bits in bit buffer */ var _in, _out; /* save starting available input and output */ var copy; /* number of stored or match bytes to copy */ var from; /* where to copy match bytes from */ var from_source; var here = 0; /* current decoding table entry */ var here_bits, here_op, here_val; // paked "here" denormalized (JS specific) //var last; /* parent table entry */ var last_bits, last_op, last_val; // paked "last" denormalized (JS specific) var len; /* length to copy for repeats, bits to drop */ var ret; /* return code */ var hbuf = new utils.Buf8(4); /* buffer for gzip header crc calculation */ var opts; var n; // temporary var for NEED_BITS var order = /* permutation of code lengths */ [ 16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15 ]; if (!strm || !strm.state || !strm.output || (!strm.input && strm.avail_in !== 0)) { return Z_STREAM_ERROR; } state = strm.state; if (state.mode === TYPE) { state.mode = TYPEDO; } /* skip check */ //--- LOAD() --- put = strm.next_out; output = strm.output; left = strm.avail_out; next = strm.next_in; input = strm.input; have = strm.avail_in; hold = state.hold; bits = state.bits; //--- _in = have; _out = left; ret = Z_OK; inf_leave: // goto emulation for (;;) { switch (state.mode) { case HEAD: if (state.wrap === 0) { state.mode = TYPEDO; break; } //=== NEEDBITS(16); while (bits < 16) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if ((state.wrap & 2) && hold === 0x8b1f) { /* gzip header */ state.check = 0/*crc32(0L, Z_NULL, 0)*/; //=== CRC2(state.check, hold); hbuf[0] = hold & 0xff; hbuf[1] = (hold >>> 8) & 0xff; state.check = crc32(state.check, hbuf, 2, 0); //===// //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = FLAGS; break; } state.flags = 0; /* expect zlib header */ if (state.head) { state.head.done = false; } if (!(state.wrap & 1) || /* check if zlib header allowed */ (((hold & 0xff)/*BITS(8)*/ << 8) + (hold >> 8)) % 31) { strm.msg = 'incorrect header check'; state.mode = BAD; break; } if ((hold & 0x0f)/*BITS(4)*/ !== Z_DEFLATED) { strm.msg = 'unknown compression method'; state.mode = BAD; break; } //--- DROPBITS(4) ---// hold >>>= 4; bits -= 4; //---// len = (hold & 0x0f)/*BITS(4)*/ + 8; if (state.wbits === 0) { state.wbits = len; } else if (len > state.wbits) { strm.msg = 'invalid window size'; state.mode = BAD; break; } state.dmax = 1 << len; //Tracev((stderr, "inflate: zlib header ok\n")); strm.adler = state.check = 1/*adler32(0L, Z_NULL, 0)*/; state.mode = hold & 0x200 ? DICTID : TYPE; //=== INITBITS(); hold = 0; bits = 0; //===// break; case FLAGS: //=== NEEDBITS(16); */ while (bits < 16) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.flags = hold; if ((state.flags & 0xff) !== Z_DEFLATED) { strm.msg = 'unknown compression method'; state.mode = BAD; break; } if (state.flags & 0xe000) { strm.msg = 'unknown header flags set'; state.mode = BAD; break; } if (state.head) { state.head.text = ((hold >> 8) & 1); } if (state.flags & 0x0200) { //=== CRC2(state.check, hold); hbuf[0] = hold & 0xff; hbuf[1] = (hold >>> 8) & 0xff; state.check = crc32(state.check, hbuf, 2, 0); //===// } //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = TIME; /* falls through */ case TIME: //=== NEEDBITS(32); */ while (bits < 32) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if (state.head) { state.head.time = hold; } if (state.flags & 0x0200) { //=== CRC4(state.check, hold) hbuf[0] = hold & 0xff; hbuf[1] = (hold >>> 8) & 0xff; hbuf[2] = (hold >>> 16) & 0xff; hbuf[3] = (hold >>> 24) & 0xff; state.check = crc32(state.check, hbuf, 4, 0); //=== } //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = OS; /* falls through */ case OS: //=== NEEDBITS(16); */ while (bits < 16) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if (state.head) { state.head.xflags = (hold & 0xff); state.head.os = (hold >> 8); } if (state.flags & 0x0200) { //=== CRC2(state.check, hold); hbuf[0] = hold & 0xff; hbuf[1] = (hold >>> 8) & 0xff; state.check = crc32(state.check, hbuf, 2, 0); //===// } //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = EXLEN; /* falls through */ case EXLEN: if (state.flags & 0x0400) { //=== NEEDBITS(16); */ while (bits < 16) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.length = hold; if (state.head) { state.head.extra_len = hold; } if (state.flags & 0x0200) { //=== CRC2(state.check, hold); hbuf[0] = hold & 0xff; hbuf[1] = (hold >>> 8) & 0xff; state.check = crc32(state.check, hbuf, 2, 0); //===// } //=== INITBITS(); hold = 0; bits = 0; //===// } else if (state.head) { state.head.extra = null/*Z_NULL*/; } state.mode = EXTRA; /* falls through */ case EXTRA: if (state.flags & 0x0400) { copy = state.length; if (copy > have) { copy = have; } if (copy) { if (state.head) { len = state.head.extra_len - state.length; if (!state.head.extra) { // Use untyped array for more conveniend processing later state.head.extra = new Array(state.head.extra_len); } utils.arraySet( state.head.extra, input, next, // extra field is limited to 65536 bytes // - no need for additional size check copy, /*len + copy > state.head.extra_max - len ? state.head.extra_max : copy,*/ len ); //zmemcpy(state.head.extra + len, next, // len + copy > state.head.extra_max ? // state.head.extra_max - len : copy); } if (state.flags & 0x0200) { state.check = crc32(state.check, input, copy, next); } have -= copy; next += copy; state.length -= copy; } if (state.length) { break inf_leave; } } state.length = 0; state.mode = NAME; /* falls through */ case NAME: if (state.flags & 0x0800) { if (have === 0) { break inf_leave; } copy = 0; do { // TODO: 2 or 1 bytes? len = input[next + copy++]; /* use constant limit because in js we should not preallocate memory */ if (state.head && len && (state.length < 65536 /*state.head.name_max*/)) { state.head.name += String.fromCharCode(len); } } while (len && copy < have); if (state.flags & 0x0200) { state.check = crc32(state.check, input, copy, next); } have -= copy; next += copy; if (len) { break inf_leave; } } else if (state.head) { state.head.name = null; } state.length = 0; state.mode = COMMENT; /* falls through */ case COMMENT: if (state.flags & 0x1000) { if (have === 0) { break inf_leave; } copy = 0; do { len = input[next + copy++]; /* use constant limit because in js we should not preallocate memory */ if (state.head && len && (state.length < 65536 /*state.head.comm_max*/)) { state.head.comment += String.fromCharCode(len); } } while (len && copy < have); if (state.flags & 0x0200) { state.check = crc32(state.check, input, copy, next); } have -= copy; next += copy; if (len) { break inf_leave; } } else if (state.head) { state.head.comment = null; } state.mode = HCRC; /* falls through */ case HCRC: if (state.flags & 0x0200) { //=== NEEDBITS(16); */ while (bits < 16) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if (hold !== (state.check & 0xffff)) { strm.msg = 'header crc mismatch'; state.mode = BAD; break; } //=== INITBITS(); hold = 0; bits = 0; //===// } if (state.head) { state.head.hcrc = ((state.flags >> 9) & 1); state.head.done = true; } strm.adler = state.check = 0; state.mode = TYPE; break; case DICTID: //=== NEEDBITS(32); */ while (bits < 32) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// strm.adler = state.check = zswap32(hold); //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = DICT; /* falls through */ case DICT: if (state.havedict === 0) { //--- RESTORE() --- strm.next_out = put; strm.avail_out = left; strm.next_in = next; strm.avail_in = have; state.hold = hold; state.bits = bits; //--- return Z_NEED_DICT; } strm.adler = state.check = 1/*adler32(0L, Z_NULL, 0)*/; state.mode = TYPE; /* falls through */ case TYPE: if (flush === Z_BLOCK || flush === Z_TREES) { break inf_leave; } /* falls through */ case TYPEDO: if (state.last) { //--- BYTEBITS() ---// hold >>>= bits & 7; bits -= bits & 7; //---// state.mode = CHECK; break; } //=== NEEDBITS(3); */ while (bits < 3) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.last = (hold & 0x01)/*BITS(1)*/; //--- DROPBITS(1) ---// hold >>>= 1; bits -= 1; //---// switch ((hold & 0x03)/*BITS(2)*/) { case 0: /* stored block */ //Tracev((stderr, "inflate: stored block%s\n", // state.last ? " (last)" : "")); state.mode = STORED; break; case 1: /* fixed block */ fixedtables(state); //Tracev((stderr, "inflate: fixed codes block%s\n", // state.last ? " (last)" : "")); state.mode = LEN_; /* decode codes */ if (flush === Z_TREES) { //--- DROPBITS(2) ---// hold >>>= 2; bits -= 2; //---// break inf_leave; } break; case 2: /* dynamic block */ //Tracev((stderr, "inflate: dynamic codes block%s\n", // state.last ? " (last)" : "")); state.mode = TABLE; break; case 3: strm.msg = 'invalid block type'; state.mode = BAD; } //--- DROPBITS(2) ---// hold >>>= 2; bits -= 2; //---// break; case STORED: //--- BYTEBITS() ---// /* go to byte boundary */ hold >>>= bits & 7; bits -= bits & 7; //---// //=== NEEDBITS(32); */ while (bits < 32) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if ((hold & 0xffff) !== ((hold >>> 16) ^ 0xffff)) { strm.msg = 'invalid stored block lengths'; state.mode = BAD; break; } state.length = hold & 0xffff; //Tracev((stderr, "inflate: stored length %u\n", // state.length)); //=== INITBITS(); hold = 0; bits = 0; //===// state.mode = COPY_; if (flush === Z_TREES) { break inf_leave; } /* falls through */ case COPY_: state.mode = COPY; /* falls through */ case COPY: copy = state.length; if (copy) { if (copy > have) { copy = have; } if (copy > left) { copy = left; } if (copy === 0) { break inf_leave; } //--- zmemcpy(put, next, copy); --- utils.arraySet(output, input, next, copy, put); //---// have -= copy; next += copy; left -= copy; put += copy; state.length -= copy; break; } //Tracev((stderr, "inflate: stored end\n")); state.mode = TYPE; break; case TABLE: //=== NEEDBITS(14); */ while (bits < 14) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.nlen = (hold & 0x1f)/*BITS(5)*/ + 257; //--- DROPBITS(5) ---// hold >>>= 5; bits -= 5; //---// state.ndist = (hold & 0x1f)/*BITS(5)*/ + 1; //--- DROPBITS(5) ---// hold >>>= 5; bits -= 5; //---// state.ncode = (hold & 0x0f)/*BITS(4)*/ + 4; //--- DROPBITS(4) ---// hold >>>= 4; bits -= 4; //---// //#ifndef PKZIP_BUG_WORKAROUND if (state.nlen > 286 || state.ndist > 30) { strm.msg = 'too many length or distance symbols'; state.mode = BAD; break; } //#endif //Tracev((stderr, "inflate: table sizes ok\n")); state.have = 0; state.mode = LENLENS; /* falls through */ case LENLENS: while (state.have < state.ncode) { //=== NEEDBITS(3); while (bits < 3) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.lens[order[state.have++]] = (hold & 0x07);//BITS(3); //--- DROPBITS(3) ---// hold >>>= 3; bits -= 3; //---// } while (state.have < 19) { state.lens[order[state.have++]] = 0; } // We have separate tables & no pointers. 2 commented lines below not needed. //state.next = state.codes; //state.lencode = state.next; // Switch to use dynamic table state.lencode = state.lendyn; state.lenbits = 7; opts = { bits: state.lenbits }; ret = inflate_table(CODES, state.lens, 0, 19, state.lencode, 0, state.work, opts); state.lenbits = opts.bits; if (ret) { strm.msg = 'invalid code lengths set'; state.mode = BAD; break; } //Tracev((stderr, "inflate: code lengths ok\n")); state.have = 0; state.mode = CODELENS; /* falls through */ case CODELENS: while (state.have < state.nlen + state.ndist) { for (;;) { here = state.lencode[hold & ((1 << state.lenbits) - 1)];/*BITS(state.lenbits)*/ here_bits = here >>> 24; here_op = (here >>> 16) & 0xff; here_val = here & 0xffff; if ((here_bits) <= bits) { break; } //--- PULLBYTE() ---// if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; //---// } if (here_val < 16) { //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// state.lens[state.have++] = here_val; } else { if (here_val === 16) { //=== NEEDBITS(here.bits + 2); n = here_bits + 2; while (bits < n) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// if (state.have === 0) { strm.msg = 'invalid bit length repeat'; state.mode = BAD; break; } len = state.lens[state.have - 1]; copy = 3 + (hold & 0x03);//BITS(2); //--- DROPBITS(2) ---// hold >>>= 2; bits -= 2; //---// } else if (here_val === 17) { //=== NEEDBITS(here.bits + 3); n = here_bits + 3; while (bits < n) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// len = 0; copy = 3 + (hold & 0x07);//BITS(3); //--- DROPBITS(3) ---// hold >>>= 3; bits -= 3; //---// } else { //=== NEEDBITS(here.bits + 7); n = here_bits + 7; while (bits < n) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// len = 0; copy = 11 + (hold & 0x7f);//BITS(7); //--- DROPBITS(7) ---// hold >>>= 7; bits -= 7; //---// } if (state.have + copy > state.nlen + state.ndist) { strm.msg = 'invalid bit length repeat'; state.mode = BAD; break; } while (copy--) { state.lens[state.have++] = len; } } } /* handle error breaks in while */ if (state.mode === BAD) { break; } /* check for end-of-block code (better have one) */ if (state.lens[256] === 0) { strm.msg = 'invalid code -- missing end-of-block'; state.mode = BAD; break; } /* build code tables -- note: do not change the lenbits or distbits values here (9 and 6) without reading the comments in inftrees.h concerning the ENOUGH constants, which depend on those values */ state.lenbits = 9; opts = { bits: state.lenbits }; ret = inflate_table(LENS, state.lens, 0, state.nlen, state.lencode, 0, state.work, opts); // We have separate tables & no pointers. 2 commented lines below not needed. // state.next_index = opts.table_index; state.lenbits = opts.bits; // state.lencode = state.next; if (ret) { strm.msg = 'invalid literal/lengths set'; state.mode = BAD; break; } state.distbits = 6; //state.distcode.copy(state.codes); // Switch to use dynamic table state.distcode = state.distdyn; opts = { bits: state.distbits }; ret = inflate_table(DISTS, state.lens, state.nlen, state.ndist, state.distcode, 0, state.work, opts); // We have separate tables & no pointers. 2 commented lines below not needed. // state.next_index = opts.table_index; state.distbits = opts.bits; // state.distcode = state.next; if (ret) { strm.msg = 'invalid distances set'; state.mode = BAD; break; } //Tracev((stderr, 'inflate: codes ok\n')); state.mode = LEN_; if (flush === Z_TREES) { break inf_leave; } /* falls through */ case LEN_: state.mode = LEN; /* falls through */ case LEN: if (have >= 6 && left >= 258) { //--- RESTORE() --- strm.next_out = put; strm.avail_out = left; strm.next_in = next; strm.avail_in = have; state.hold = hold; state.bits = bits; //--- inflate_fast(strm, _out); //--- LOAD() --- put = strm.next_out; output = strm.output; left = strm.avail_out; next = strm.next_in; input = strm.input; have = strm.avail_in; hold = state.hold; bits = state.bits; //--- if (state.mode === TYPE) { state.back = -1; } break; } state.back = 0; for (;;) { here = state.lencode[hold & ((1 << state.lenbits) - 1)]; /*BITS(state.lenbits)*/ here_bits = here >>> 24; here_op = (here >>> 16) & 0xff; here_val = here & 0xffff; if (here_bits <= bits) { break; } //--- PULLBYTE() ---// if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; //---// } if (here_op && (here_op & 0xf0) === 0) { last_bits = here_bits; last_op = here_op; last_val = here_val; for (;;) { here = state.lencode[last_val + ((hold & ((1 << (last_bits + last_op)) - 1))/*BITS(last.bits + last.op)*/ >> last_bits)]; here_bits = here >>> 24; here_op = (here >>> 16) & 0xff; here_val = here & 0xffff; if ((last_bits + here_bits) <= bits) { break; } //--- PULLBYTE() ---// if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; //---// } //--- DROPBITS(last.bits) ---// hold >>>= last_bits; bits -= last_bits; //---// state.back += last_bits; } //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// state.back += here_bits; state.length = here_val; if (here_op === 0) { //Tracevv((stderr, here.val >= 0x20 && here.val < 0x7f ? // "inflate: literal '%c'\n" : // "inflate: literal 0x%02x\n", here.val)); state.mode = LIT; break; } if (here_op & 32) { //Tracevv((stderr, "inflate: end of block\n")); state.back = -1; state.mode = TYPE; break; } if (here_op & 64) { strm.msg = 'invalid literal/length code'; state.mode = BAD; break; } state.extra = here_op & 15; state.mode = LENEXT; /* falls through */ case LENEXT: if (state.extra) { //=== NEEDBITS(state.extra); n = state.extra; while (bits < n) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.length += hold & ((1 << state.extra) - 1)/*BITS(state.extra)*/; //--- DROPBITS(state.extra) ---// hold >>>= state.extra; bits -= state.extra; //---// state.back += state.extra; } //Tracevv((stderr, "inflate: length %u\n", state.length)); state.was = state.length; state.mode = DIST; /* falls through */ case DIST: for (;;) { here = state.distcode[hold & ((1 << state.distbits) - 1)];/*BITS(state.distbits)*/ here_bits = here >>> 24; here_op = (here >>> 16) & 0xff; here_val = here & 0xffff; if ((here_bits) <= bits) { break; } //--- PULLBYTE() ---// if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; //---// } if ((here_op & 0xf0) === 0) { last_bits = here_bits; last_op = here_op; last_val = here_val; for (;;) { here = state.distcode[last_val + ((hold & ((1 << (last_bits + last_op)) - 1))/*BITS(last.bits + last.op)*/ >> last_bits)]; here_bits = here >>> 24; here_op = (here >>> 16) & 0xff; here_val = here & 0xffff; if ((last_bits + here_bits) <= bits) { break; } //--- PULLBYTE() ---// if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; //---// } //--- DROPBITS(last.bits) ---// hold >>>= last_bits; bits -= last_bits; //---// state.back += last_bits; } //--- DROPBITS(here.bits) ---// hold >>>= here_bits; bits -= here_bits; //---// state.back += here_bits; if (here_op & 64) { strm.msg = 'invalid distance code'; state.mode = BAD; break; } state.offset = here_val; state.extra = (here_op) & 15; state.mode = DISTEXT; /* falls through */ case DISTEXT: if (state.extra) { //=== NEEDBITS(state.extra); n = state.extra; while (bits < n) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// state.offset += hold & ((1 << state.extra) - 1)/*BITS(state.extra)*/; //--- DROPBITS(state.extra) ---// hold >>>= state.extra; bits -= state.extra; //---// state.back += state.extra; } //#ifdef INFLATE_STRICT if (state.offset > state.dmax) { strm.msg = 'invalid distance too far back'; state.mode = BAD; break; } //#endif //Tracevv((stderr, "inflate: distance %u\n", state.offset)); state.mode = MATCH; /* falls through */ case MATCH: if (left === 0) { break inf_leave; } copy = _out - left; if (state.offset > copy) { /* copy from window */ copy = state.offset - copy; if (copy > state.whave) { if (state.sane) { strm.msg = 'invalid distance too far back'; state.mode = BAD; break; } // (!) This block is disabled in zlib defailts, // don't enable it for binary compatibility //#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR // Trace((stderr, "inflate.c too far\n")); // copy -= state.whave; // if (copy > state.length) { copy = state.length; } // if (copy > left) { copy = left; } // left -= copy; // state.length -= copy; // do { // output[put++] = 0; // } while (--copy); // if (state.length === 0) { state.mode = LEN; } // break; //#endif } if (copy > state.wnext) { copy -= state.wnext; from = state.wsize - copy; } else { from = state.wnext - copy; } if (copy > state.length) { copy = state.length; } from_source = state.window; } else { /* copy from output */ from_source = output; from = put - state.offset; copy = state.length; } if (copy > left) { copy = left; } left -= copy; state.length -= copy; do { output[put++] = from_source[from++]; } while (--copy); if (state.length === 0) { state.mode = LEN; } break; case LIT: if (left === 0) { break inf_leave; } output[put++] = state.length; left--; state.mode = LEN; break; case CHECK: if (state.wrap) { //=== NEEDBITS(32); while (bits < 32) { if (have === 0) { break inf_leave; } have--; // Use '|' insdead of '+' to make sure that result is signed hold |= input[next++] << bits; bits += 8; } //===// _out -= left; strm.total_out += _out; state.total += _out; if (_out) { strm.adler = state.check = /*UPDATE(state.check, put - _out, _out);*/ (state.flags ? crc32(state.check, output, _out, put - _out) : adler32(state.check, output, _out, put - _out)); } _out = left; // NB: crc32 stored as signed 32-bit int, zswap32 returns signed too if ((state.flags ? hold : zswap32(hold)) !== state.check) { strm.msg = 'incorrect data check'; state.mode = BAD; break; } //=== INITBITS(); hold = 0; bits = 0; //===// //Tracev((stderr, "inflate: check matches trailer\n")); } state.mode = LENGTH; /* falls through */ case LENGTH: if (state.wrap && state.flags) { //=== NEEDBITS(32); while (bits < 32) { if (have === 0) { break inf_leave; } have--; hold += input[next++] << bits; bits += 8; } //===// if (hold !== (state.total & 0xffffffff)) { strm.msg = 'incorrect length check'; state.mode = BAD; break; } //=== INITBITS(); hold = 0; bits = 0; //===// //Tracev((stderr, "inflate: length matches trailer\n")); } state.mode = DONE; /* falls through */ case DONE: ret = Z_STREAM_END; break inf_leave; case BAD: ret = Z_DATA_ERROR; break inf_leave; case MEM: return Z_MEM_ERROR; case SYNC: /* falls through */ default: return Z_STREAM_ERROR; } } // inf_leave <- here is real place for "goto inf_leave", emulated via "break inf_leave" /* Return from inflate(), updating the total counts and the check value. If there was no progress during the inflate() call, return a buffer error. Call updatewindow() to create and/or update the window state. Note: a memory error from inflate() is non-recoverable. */ //--- RESTORE() --- strm.next_out = put; strm.avail_out = left; strm.next_in = next; strm.avail_in = have; state.hold = hold; state.bits = bits; //--- if (state.wsize || (_out !== strm.avail_out && state.mode < BAD && (state.mode < CHECK || flush !== Z_FINISH))) { if (updatewindow(strm, strm.output, strm.next_out, _out - strm.avail_out)) { state.mode = MEM; return Z_MEM_ERROR; } } _in -= strm.avail_in; _out -= strm.avail_out; strm.total_in += _in; strm.total_out += _out; state.total += _out; if (state.wrap && _out) { strm.adler = state.check = /*UPDATE(state.check, strm.next_out - _out, _out);*/ (state.flags ? crc32(state.check, output, _out, strm.next_out - _out) : adler32(state.check, output, _out, strm.next_out - _out)); } strm.data_type = state.bits + (state.last ? 64 : 0) + (state.mode === TYPE ? 128 : 0) + (state.mode === LEN_ || state.mode === COPY_ ? 256 : 0); if (((_in === 0 && _out === 0) || flush === Z_FINISH) && ret === Z_OK) { ret = Z_BUF_ERROR; } return ret; } function inflateEnd(strm) { if (!strm || !strm.state /*|| strm->zfree == (free_func)0*/) { return Z_STREAM_ERROR; } var state = strm.state; if (state.window) { state.window = null; } strm.state = null; return Z_OK; } function inflateGetHeader(strm, head) { var state; /* check state */ if (!strm || !strm.state) { return Z_STREAM_ERROR; } state = strm.state; if ((state.wrap & 2) === 0) { return Z_STREAM_ERROR; } /* save header structure */ state.head = head; head.done = false; return Z_OK; } function inflateSetDictionary(strm, dictionary) { var dictLength = dictionary.length; var state; var dictid; var ret; /* check state */ if (!strm /* == Z_NULL */ || !strm.state /* == Z_NULL */) { return Z_STREAM_ERROR; } state = strm.state; if (state.wrap !== 0 && state.mode !== DICT) { return Z_STREAM_ERROR; } /* check for correct dictionary identifier */ if (state.mode === DICT) { dictid = 1; /* adler32(0, null, 0)*/ /* dictid = adler32(dictid, dictionary, dictLength); */ dictid = adler32(dictid, dictionary, dictLength, 0); if (dictid !== state.check) { return Z_DATA_ERROR; } } /* copy dictionary to window using updatewindow(), which will amend the existing dictionary if appropriate */ ret = updatewindow(strm, dictionary, dictLength, dictLength); if (ret) { state.mode = MEM; return Z_MEM_ERROR; } state.havedict = 1; // Tracev((stderr, "inflate: dictionary set\n")); return Z_OK; } exports.inflateReset = inflateReset; exports.inflateReset2 = inflateReset2; exports.inflateResetKeep = inflateResetKeep; exports.inflateInit = inflateInit; exports.inflateInit2 = inflateInit2; exports.inflate = inflate; exports.inflateEnd = inflateEnd; exports.inflateGetHeader = inflateGetHeader; exports.inflateSetDictionary = inflateSetDictionary; exports.inflateInfo = 'pako inflate (from Nodeca project)'; /* Not implemented exports.inflateCopy = inflateCopy; exports.inflateGetDictionary = inflateGetDictionary; exports.inflateMark = inflateMark; exports.inflatePrime = inflatePrime; exports.inflateSync = inflateSync; exports.inflateSyncPoint = inflateSyncPoint; exports.inflateUndermine = inflateUndermine; */ },{"../utils/common":102,"./adler32":103,"./crc32":105,"./inffast":107,"./inftrees":109}],109:[function(require,module,exports){ 'use strict'; var utils = require('../utils/common'); var MAXBITS = 15; var ENOUGH_LENS = 852; var ENOUGH_DISTS = 592; //var ENOUGH = (ENOUGH_LENS+ENOUGH_DISTS); var CODES = 0; var LENS = 1; var DISTS = 2; var lbase = [ /* Length codes 257..285 base */ 3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31, 35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0 ]; var lext = [ /* Length codes 257..285 extra */ 16, 16, 16, 16, 16, 16, 16, 16, 17, 17, 17, 17, 18, 18, 18, 18, 19, 19, 19, 19, 20, 20, 20, 20, 21, 21, 21, 21, 16, 72, 78 ]; var dbase = [ /* Distance codes 0..29 base */ 1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193, 257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145, 8193, 12289, 16385, 24577, 0, 0 ]; var dext = [ /* Distance codes 0..29 extra */ 16, 16, 16, 16, 17, 17, 18, 18, 19, 19, 20, 20, 21, 21, 22, 22, 23, 23, 24, 24, 25, 25, 26, 26, 27, 27, 28, 28, 29, 29, 64, 64 ]; module.exports = function inflate_table(type, lens, lens_index, codes, table, table_index, work, opts) { var bits = opts.bits; //here = opts.here; /* table entry for duplication */ var len = 0; /* a code's length in bits */ var sym = 0; /* index of code symbols */ var min = 0, max = 0; /* minimum and maximum code lengths */ var root = 0; /* number of index bits for root table */ var curr = 0; /* number of index bits for current table */ var drop = 0; /* code bits to drop for sub-table */ var left = 0; /* number of prefix codes available */ var used = 0; /* code entries in table used */ var huff = 0; /* Huffman code */ var incr; /* for incrementing code, index */ var fill; /* index for replicating entries */ var low; /* low bits for current root entry */ var mask; /* mask for low root bits */ var next; /* next available space in table */ var base = null; /* base value table to use */ var base_index = 0; // var shoextra; /* extra bits table to use */ var end; /* use base and extra for symbol > end */ var count = new utils.Buf16(MAXBITS + 1); //[MAXBITS+1]; /* number of codes of each length */ var offs = new utils.Buf16(MAXBITS + 1); //[MAXBITS+1]; /* offsets in table for each length */ var extra = null; var extra_index = 0; var here_bits, here_op, here_val; /* Process a set of code lengths to create a canonical Huffman code. The code lengths are lens[0..codes-1]. Each length corresponds to the symbols 0..codes-1. The Huffman code is generated by first sorting the symbols by length from short to long, and retaining the symbol order for codes with equal lengths. Then the code starts with all zero bits for the first code of the shortest length, and the codes are integer increments for the same length, and zeros are appended as the length increases. For the deflate format, these bits are stored backwards from their more natural integer increment ordering, and so when the decoding tables are built in the large loop below, the integer codes are incremented backwards. This routine assumes, but does not check, that all of the entries in lens[] are in the range 0..MAXBITS. The caller must assure this. 1..MAXBITS is interpreted as that code length. zero means that that symbol does not occur in this code. The codes are sorted by computing a count of codes for each length, creating from that a table of starting indices for each length in the sorted table, and then entering the symbols in order in the sorted table. The sorted table is work[], with that space being provided by the caller. The length counts are used for other purposes as well, i.e. finding the minimum and maximum length codes, determining if there are any codes at all, checking for a valid set of lengths, and looking ahead at length counts to determine sub-table sizes when building the decoding tables. */ /* accumulate lengths for codes (assumes lens[] all in 0..MAXBITS) */ for (len = 0; len <= MAXBITS; len++) { count[len] = 0; } for (sym = 0; sym < codes; sym++) { count[lens[lens_index + sym]]++; } /* bound code lengths, force root to be within code lengths */ root = bits; for (max = MAXBITS; max >= 1; max--) { if (count[max] !== 0) { break; } } if (root > max) { root = max; } if (max === 0) { /* no symbols to code at all */ //table.op[opts.table_index] = 64; //here.op = (var char)64; /* invalid code marker */ //table.bits[opts.table_index] = 1; //here.bits = (var char)1; //table.val[opts.table_index++] = 0; //here.val = (var short)0; table[table_index++] = (1 << 24) | (64 << 16) | 0; //table.op[opts.table_index] = 64; //table.bits[opts.table_index] = 1; //table.val[opts.table_index++] = 0; table[table_index++] = (1 << 24) | (64 << 16) | 0; opts.bits = 1; return 0; /* no symbols, but wait for decoding to report error */ } for (min = 1; min < max; min++) { if (count[min] !== 0) { break; } } if (root < min) { root = min; } /* check for an over-subscribed or incomplete set of lengths */ left = 1; for (len = 1; len <= MAXBITS; len++) { left <<= 1; left -= count[len]; if (left < 0) { return -1; } /* over-subscribed */ } if (left > 0 && (type === CODES || max !== 1)) { return -1; /* incomplete set */ } /* generate offsets into symbol table for each length for sorting */ offs[1] = 0; for (len = 1; len < MAXBITS; len++) { offs[len + 1] = offs[len] + count[len]; } /* sort symbols by length, by symbol order within each length */ for (sym = 0; sym < codes; sym++) { if (lens[lens_index + sym] !== 0) { work[offs[lens[lens_index + sym]]++] = sym; } } /* Create and fill in decoding tables. In this loop, the table being filled is at next and has curr index bits. The code being used is huff with length len. That code is converted to an index by dropping drop bits off of the bottom. For codes where len is less than drop + curr, those top drop + curr - len bits are incremented through all values to fill the table with replicated entries. root is the number of index bits for the root table. When len exceeds root, sub-tables are created pointed to by the root entry with an index of the low root bits of huff. This is saved in low to check for when a new sub-table should be started. drop is zero when the root table is being filled, and drop is root when sub-tables are being filled. When a new sub-table is needed, it is necessary to look ahead in the code lengths to determine what size sub-table is needed. The length counts are used for this, and so count[] is decremented as codes are entered in the tables. used keeps track of how many table entries have been allocated from the provided *table space. It is checked for LENS and DIST tables against the constants ENOUGH_LENS and ENOUGH_DISTS to guard against changes in the initial root table size constants. See the comments in inftrees.h for more information. sym increments through all symbols, and the loop terminates when all codes of length max, i.e. all codes, have been processed. This routine permits incomplete codes, so another loop after this one fills in the rest of the decoding tables with invalid code markers. */ /* set up for code type */ // poor man optimization - use if-else instead of switch, // to avoid deopts in old v8 if (type === CODES) { base = extra = work; /* dummy value--not used */ end = 19; } else if (type === LENS) { base = lbase; base_index -= 257; extra = lext; extra_index -= 257; end = 256; } else { /* DISTS */ base = dbase; extra = dext; end = -1; } /* initialize opts for loop */ huff = 0; /* starting code */ sym = 0; /* starting code symbol */ len = min; /* starting code length */ next = table_index; /* current table to fill in */ curr = root; /* current table index bits */ drop = 0; /* current bits to drop from code for index */ low = -1; /* trigger new sub-table when len > root */ used = 1 << root; /* use root table entries */ mask = used - 1; /* mask for comparing low */ /* check available table space */ if ((type === LENS && used > ENOUGH_LENS) || (type === DISTS && used > ENOUGH_DISTS)) { return 1; } var i = 0; /* process all codes and make table entries */ for (;;) { i++; /* create table entry */ here_bits = len - drop; if (work[sym] < end) { here_op = 0; here_val = work[sym]; } else if (work[sym] > end) { here_op = extra[extra_index + work[sym]]; here_val = base[base_index + work[sym]]; } else { here_op = 32 + 64; /* end of block */ here_val = 0; } /* replicate for those indices with low len bits equal to huff */ incr = 1 << (len - drop); fill = 1 << curr; min = fill; /* save offset to next table */ do { fill -= incr; table[next + (huff >> drop) + fill] = (here_bits << 24) | (here_op << 16) | here_val |0; } while (fill !== 0); /* backwards increment the len-bit code huff */ incr = 1 << (len - 1); while (huff & incr) { incr >>= 1; } if (incr !== 0) { huff &= incr - 1; huff += incr; } else { huff = 0; } /* go to next symbol, update count, len */ sym++; if (--count[len] === 0) { if (len === max) { break; } len = lens[lens_index + work[sym]]; } /* create new sub-table if needed */ if (len > root && (huff & mask) !== low) { /* if first time, transition to sub-tables */ if (drop === 0) { drop = root; } /* increment past last table */ next += min; /* here min is 1 << curr */ /* determine length of next table */ curr = len - drop; left = 1 << curr; while (curr + drop < max) { left -= count[curr + drop]; if (left <= 0) { break; } curr++; left <<= 1; } /* check for enough space */ used += 1 << curr; if ((type === LENS && used > ENOUGH_LENS) || (type === DISTS && used > ENOUGH_DISTS)) { return 1; } /* point entry in root table to sub-table */ low = huff & mask; /*table.op[low] = curr; table.bits[low] = root; table.val[low] = next - opts.table_index;*/ table[low] = (root << 24) | (curr << 16) | (next - table_index) |0; } } /* fill in remaining table entry if code is incomplete (guaranteed to have at most one remaining entry, since if the code is incomplete, the maximum code length that was allowed to get this far is one bit) */ if (huff !== 0) { //table.op[next + huff] = 64; /* invalid code marker */ //table.bits[next + huff] = len - drop; //table.val[next + huff] = 0; table[next + huff] = ((len - drop) << 24) | (64 << 16) |0; } /* set return parameters */ //opts.table_index += used; opts.bits = root; return 0; }; },{"../utils/common":102}],110:[function(require,module,exports){ 'use strict'; module.exports = { 2: 'need dictionary', /* Z_NEED_DICT 2 */ 1: 'stream end', /* Z_STREAM_END 1 */ 0: '', /* Z_OK 0 */ '-1': 'file error', /* Z_ERRNO (-1) */ '-2': 'stream error', /* Z_STREAM_ERROR (-2) */ '-3': 'data error', /* Z_DATA_ERROR (-3) */ '-4': 'insufficient memory', /* Z_MEM_ERROR (-4) */ '-5': 'buffer error', /* Z_BUF_ERROR (-5) */ '-6': 'incompatible version' /* Z_VERSION_ERROR (-6) */ }; },{}],111:[function(require,module,exports){ 'use strict'; var utils = require('../utils/common'); /* Public constants ==========================================================*/ /* ===========================================================================*/ //var Z_FILTERED = 1; //var Z_HUFFMAN_ONLY = 2; //var Z_RLE = 3; var Z_FIXED = 4; //var Z_DEFAULT_STRATEGY = 0; /* Possible values of the data_type field (though see inflate()) */ var Z_BINARY = 0; var Z_TEXT = 1; //var Z_ASCII = 1; // = Z_TEXT var Z_UNKNOWN = 2; /*============================================================================*/ function zero(buf) { var len = buf.length; while (--len >= 0) { buf[len] = 0; } } // From zutil.h var STORED_BLOCK = 0; var STATIC_TREES = 1; var DYN_TREES = 2; /* The three kinds of block type */ var MIN_MATCH = 3; var MAX_MATCH = 258; /* The minimum and maximum match lengths */ // From deflate.h /* =========================================================================== * Internal compression state. */ var LENGTH_CODES = 29; /* number of length codes, not counting the special END_BLOCK code */ var LITERALS = 256; /* number of literal bytes 0..255 */ var L_CODES = LITERALS + 1 + LENGTH_CODES; /* number of Literal or Length codes, including the END_BLOCK code */ var D_CODES = 30; /* number of distance codes */ var BL_CODES = 19; /* number of codes used to transfer the bit lengths */ var HEAP_SIZE = 2 * L_CODES + 1; /* maximum heap size */ var MAX_BITS = 15; /* All codes must not exceed MAX_BITS bits */ var Buf_size = 16; /* size of bit buffer in bi_buf */ /* =========================================================================== * Constants */ var MAX_BL_BITS = 7; /* Bit length codes must not exceed MAX_BL_BITS bits */ var END_BLOCK = 256; /* end of block literal code */ var REP_3_6 = 16; /* repeat previous bit length 3-6 times (2 bits of repeat count) */ var REPZ_3_10 = 17; /* repeat a zero length 3-10 times (3 bits of repeat count) */ var REPZ_11_138 = 18; /* repeat a zero length 11-138 times (7 bits of repeat count) */ /* eslint-disable comma-spacing,array-bracket-spacing */ var extra_lbits = /* extra bits for each length code */ [0,0,0,0,0,0,0,0,1,1,1,1,2,2,2,2,3,3,3,3,4,4,4,4,5,5,5,5,0]; var extra_dbits = /* extra bits for each distance code */ [0,0,0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11,12,12,13,13]; var extra_blbits = /* extra bits for each bit length code */ [0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,2,3,7]; var bl_order = [16,17,18,0,8,7,9,6,10,5,11,4,12,3,13,2,14,1,15]; /* eslint-enable comma-spacing,array-bracket-spacing */ /* The lengths of the bit length codes are sent in order of decreasing * probability, to avoid transmitting the lengths for unused bit length codes. */ /* =========================================================================== * Local data. These are initialized only once. */ // We pre-fill arrays with 0 to avoid uninitialized gaps var DIST_CODE_LEN = 512; /* see definition of array dist_code below */ // !!!! Use flat array insdead of structure, Freq = i*2, Len = i*2+1 var static_ltree = new Array((L_CODES + 2) * 2); zero(static_ltree); /* The static literal tree. Since the bit lengths are imposed, there is no * need for the L_CODES extra codes used during heap construction. However * The codes 286 and 287 are needed to build a canonical tree (see _tr_init * below). */ var static_dtree = new Array(D_CODES * 2); zero(static_dtree); /* The static distance tree. (Actually a trivial tree since all codes use * 5 bits.) */ var _dist_code = new Array(DIST_CODE_LEN); zero(_dist_code); /* Distance codes. The first 256 values correspond to the distances * 3 .. 258, the last 256 values correspond to the top 8 bits of * the 15 bit distances. */ var _length_code = new Array(MAX_MATCH - MIN_MATCH + 1); zero(_length_code); /* length code for each normalized match length (0 == MIN_MATCH) */ var base_length = new Array(LENGTH_CODES); zero(base_length); /* First normalized length for each code (0 = MIN_MATCH) */ var base_dist = new Array(D_CODES); zero(base_dist); /* First normalized distance for each code (0 = distance of 1) */ function StaticTreeDesc(static_tree, extra_bits, extra_base, elems, max_length) { this.static_tree = static_tree; /* static tree or NULL */ this.extra_bits = extra_bits; /* extra bits for each code or NULL */ this.extra_base = extra_base; /* base index for extra_bits */ this.elems = elems; /* max number of elements in the tree */ this.max_length = max_length; /* max bit length for the codes */ // show if `static_tree` has data or dummy - needed for monomorphic objects this.has_stree = static_tree && static_tree.length; } var static_l_desc; var static_d_desc; var static_bl_desc; function TreeDesc(dyn_tree, stat_desc) { this.dyn_tree = dyn_tree; /* the dynamic tree */ this.max_code = 0; /* largest code with non zero frequency */ this.stat_desc = stat_desc; /* the corresponding static tree */ } function d_code(dist) { return dist < 256 ? _dist_code[dist] : _dist_code[256 + (dist >>> 7)]; } /* =========================================================================== * Output a short LSB first on the stream. * IN assertion: there is enough room in pendingBuf. */ function put_short(s, w) { // put_byte(s, (uch)((w) & 0xff)); // put_byte(s, (uch)((ush)(w) >> 8)); s.pending_buf[s.pending++] = (w) & 0xff; s.pending_buf[s.pending++] = (w >>> 8) & 0xff; } /* =========================================================================== * Send a value on a given number of bits. * IN assertion: length <= 16 and value fits in length bits. */ function send_bits(s, value, length) { if (s.bi_valid > (Buf_size - length)) { s.bi_buf |= (value << s.bi_valid) & 0xffff; put_short(s, s.bi_buf); s.bi_buf = value >> (Buf_size - s.bi_valid); s.bi_valid += length - Buf_size; } else { s.bi_buf |= (value << s.bi_valid) & 0xffff; s.bi_valid += length; } } function send_code(s, c, tree) { send_bits(s, tree[c * 2]/*.Code*/, tree[c * 2 + 1]/*.Len*/); } /* =========================================================================== * Reverse the first len bits of a code, using straightforward code (a faster * method would use a table) * IN assertion: 1 <= len <= 15 */ function bi_reverse(code, len) { var res = 0; do { res |= code & 1; code >>>= 1; res <<= 1; } while (--len > 0); return res >>> 1; } /* =========================================================================== * Flush the bit buffer, keeping at most 7 bits in it. */ function bi_flush(s) { if (s.bi_valid === 16) { put_short(s, s.bi_buf); s.bi_buf = 0; s.bi_valid = 0; } else if (s.bi_valid >= 8) { s.pending_buf[s.pending++] = s.bi_buf & 0xff; s.bi_buf >>= 8; s.bi_valid -= 8; } } /* =========================================================================== * Compute the optimal bit lengths for a tree and update the total bit length * for the current block. * IN assertion: the fields freq and dad are set, heap[heap_max] and * above are the tree nodes sorted by increasing frequency. * OUT assertions: the field len is set to the optimal bit length, the * array bl_count contains the frequencies for each bit length. * The length opt_len is updated; static_len is also updated if stree is * not null. */ function gen_bitlen(s, desc) // deflate_state *s; // tree_desc *desc; /* the tree descriptor */ { var tree = desc.dyn_tree; var max_code = desc.max_code; var stree = desc.stat_desc.static_tree; var has_stree = desc.stat_desc.has_stree; var extra = desc.stat_desc.extra_bits; var base = desc.stat_desc.extra_base; var max_length = desc.stat_desc.max_length; var h; /* heap index */ var n, m; /* iterate over the tree elements */ var bits; /* bit length */ var xbits; /* extra bits */ var f; /* frequency */ var overflow = 0; /* number of elements with bit length too large */ for (bits = 0; bits <= MAX_BITS; bits++) { s.bl_count[bits] = 0; } /* In a first pass, compute the optimal bit lengths (which may * overflow in the case of the bit length tree). */ tree[s.heap[s.heap_max] * 2 + 1]/*.Len*/ = 0; /* root of the heap */ for (h = s.heap_max + 1; h < HEAP_SIZE; h++) { n = s.heap[h]; bits = tree[tree[n * 2 + 1]/*.Dad*/ * 2 + 1]/*.Len*/ + 1; if (bits > max_length) { bits = max_length; overflow++; } tree[n * 2 + 1]/*.Len*/ = bits; /* We overwrite tree[n].Dad which is no longer needed */ if (n > max_code) { continue; } /* not a leaf node */ s.bl_count[bits]++; xbits = 0; if (n >= base) { xbits = extra[n - base]; } f = tree[n * 2]/*.Freq*/; s.opt_len += f * (bits + xbits); if (has_stree) { s.static_len += f * (stree[n * 2 + 1]/*.Len*/ + xbits); } } if (overflow === 0) { return; } // Trace((stderr,"\nbit length overflow\n")); /* This happens for example on obj2 and pic of the Calgary corpus */ /* Find the first bit length which could increase: */ do { bits = max_length - 1; while (s.bl_count[bits] === 0) { bits--; } s.bl_count[bits]--; /* move one leaf down the tree */ s.bl_count[bits + 1] += 2; /* move one overflow item as its brother */ s.bl_count[max_length]--; /* The brother of the overflow item also moves one step up, * but this does not affect bl_count[max_length] */ overflow -= 2; } while (overflow > 0); /* Now recompute all bit lengths, scanning in increasing frequency. * h is still equal to HEAP_SIZE. (It is simpler to reconstruct all * lengths instead of fixing only the wrong ones. This idea is taken * from 'ar' written by Haruhiko Okumura.) */ for (bits = max_length; bits !== 0; bits--) { n = s.bl_count[bits]; while (n !== 0) { m = s.heap[--h]; if (m > max_code) { continue; } if (tree[m * 2 + 1]/*.Len*/ !== bits) { // Trace((stderr,"code %d bits %d->%d\n", m, tree[m].Len, bits)); s.opt_len += (bits - tree[m * 2 + 1]/*.Len*/) * tree[m * 2]/*.Freq*/; tree[m * 2 + 1]/*.Len*/ = bits; } n--; } } } /* =========================================================================== * Generate the codes for a given tree and bit counts (which need not be * optimal). * IN assertion: the array bl_count contains the bit length statistics for * the given tree and the field len is set for all tree elements. * OUT assertion: the field code is set for all tree elements of non * zero code length. */ function gen_codes(tree, max_code, bl_count) // ct_data *tree; /* the tree to decorate */ // int max_code; /* largest code with non zero frequency */ // ushf *bl_count; /* number of codes at each bit length */ { var next_code = new Array(MAX_BITS + 1); /* next code value for each bit length */ var code = 0; /* running code value */ var bits; /* bit index */ var n; /* code index */ /* The distribution counts are first used to generate the code values * without bit reversal. */ for (bits = 1; bits <= MAX_BITS; bits++) { next_code[bits] = code = (code + bl_count[bits - 1]) << 1; } /* Check that the bit counts in bl_count are consistent. The last code * must be all ones. */ //Assert (code + bl_count[MAX_BITS]-1 == (1< length code (0..28) */ length = 0; for (code = 0; code < LENGTH_CODES - 1; code++) { base_length[code] = length; for (n = 0; n < (1 << extra_lbits[code]); n++) { _length_code[length++] = code; } } //Assert (length == 256, "tr_static_init: length != 256"); /* Note that the length 255 (match length 258) can be represented * in two different ways: code 284 + 5 bits or code 285, so we * overwrite length_code[255] to use the best encoding: */ _length_code[length - 1] = code; /* Initialize the mapping dist (0..32K) -> dist code (0..29) */ dist = 0; for (code = 0; code < 16; code++) { base_dist[code] = dist; for (n = 0; n < (1 << extra_dbits[code]); n++) { _dist_code[dist++] = code; } } //Assert (dist == 256, "tr_static_init: dist != 256"); dist >>= 7; /* from now on, all distances are divided by 128 */ for (; code < D_CODES; code++) { base_dist[code] = dist << 7; for (n = 0; n < (1 << (extra_dbits[code] - 7)); n++) { _dist_code[256 + dist++] = code; } } //Assert (dist == 256, "tr_static_init: 256+dist != 512"); /* Construct the codes of the static literal tree */ for (bits = 0; bits <= MAX_BITS; bits++) { bl_count[bits] = 0; } n = 0; while (n <= 143) { static_ltree[n * 2 + 1]/*.Len*/ = 8; n++; bl_count[8]++; } while (n <= 255) { static_ltree[n * 2 + 1]/*.Len*/ = 9; n++; bl_count[9]++; } while (n <= 279) { static_ltree[n * 2 + 1]/*.Len*/ = 7; n++; bl_count[7]++; } while (n <= 287) { static_ltree[n * 2 + 1]/*.Len*/ = 8; n++; bl_count[8]++; } /* Codes 286 and 287 do not exist, but we must include them in the * tree construction to get a canonical Huffman tree (longest code * all ones) */ gen_codes(static_ltree, L_CODES + 1, bl_count); /* The static distance tree is trivial: */ for (n = 0; n < D_CODES; n++) { static_dtree[n * 2 + 1]/*.Len*/ = 5; static_dtree[n * 2]/*.Code*/ = bi_reverse(n, 5); } // Now data ready and we can init static trees static_l_desc = new StaticTreeDesc(static_ltree, extra_lbits, LITERALS + 1, L_CODES, MAX_BITS); static_d_desc = new StaticTreeDesc(static_dtree, extra_dbits, 0, D_CODES, MAX_BITS); static_bl_desc = new StaticTreeDesc(new Array(0), extra_blbits, 0, BL_CODES, MAX_BL_BITS); //static_init_done = true; } /* =========================================================================== * Initialize a new block. */ function init_block(s) { var n; /* iterates over tree elements */ /* Initialize the trees. */ for (n = 0; n < L_CODES; n++) { s.dyn_ltree[n * 2]/*.Freq*/ = 0; } for (n = 0; n < D_CODES; n++) { s.dyn_dtree[n * 2]/*.Freq*/ = 0; } for (n = 0; n < BL_CODES; n++) { s.bl_tree[n * 2]/*.Freq*/ = 0; } s.dyn_ltree[END_BLOCK * 2]/*.Freq*/ = 1; s.opt_len = s.static_len = 0; s.last_lit = s.matches = 0; } /* =========================================================================== * Flush the bit buffer and align the output on a byte boundary */ function bi_windup(s) { if (s.bi_valid > 8) { put_short(s, s.bi_buf); } else if (s.bi_valid > 0) { //put_byte(s, (Byte)s->bi_buf); s.pending_buf[s.pending++] = s.bi_buf; } s.bi_buf = 0; s.bi_valid = 0; } /* =========================================================================== * Copy a stored block, storing first the length and its * one's complement if requested. */ function copy_block(s, buf, len, header) //DeflateState *s; //charf *buf; /* the input data */ //unsigned len; /* its length */ //int header; /* true if block header must be written */ { bi_windup(s); /* align on byte boundary */ if (header) { put_short(s, len); put_short(s, ~len); } // while (len--) { // put_byte(s, *buf++); // } utils.arraySet(s.pending_buf, s.window, buf, len, s.pending); s.pending += len; } /* =========================================================================== * Compares to subtrees, using the tree depth as tie breaker when * the subtrees have equal frequency. This minimizes the worst case length. */ function smaller(tree, n, m, depth) { var _n2 = n * 2; var _m2 = m * 2; return (tree[_n2]/*.Freq*/ < tree[_m2]/*.Freq*/ || (tree[_n2]/*.Freq*/ === tree[_m2]/*.Freq*/ && depth[n] <= depth[m])); } /* =========================================================================== * Restore the heap property by moving down the tree starting at node k, * exchanging a node with the smallest of its two sons if necessary, stopping * when the heap property is re-established (each father smaller than its * two sons). */ function pqdownheap(s, tree, k) // deflate_state *s; // ct_data *tree; /* the tree to restore */ // int k; /* node to move down */ { var v = s.heap[k]; var j = k << 1; /* left son of k */ while (j <= s.heap_len) { /* Set j to the smallest of the two sons: */ if (j < s.heap_len && smaller(tree, s.heap[j + 1], s.heap[j], s.depth)) { j++; } /* Exit if v is smaller than both sons */ if (smaller(tree, v, s.heap[j], s.depth)) { break; } /* Exchange v with the smallest son */ s.heap[k] = s.heap[j]; k = j; /* And continue down the tree, setting j to the left son of k */ j <<= 1; } s.heap[k] = v; } // inlined manually // var SMALLEST = 1; /* =========================================================================== * Send the block data compressed using the given Huffman trees */ function compress_block(s, ltree, dtree) // deflate_state *s; // const ct_data *ltree; /* literal tree */ // const ct_data *dtree; /* distance tree */ { var dist; /* distance of matched string */ var lc; /* match length or unmatched char (if dist == 0) */ var lx = 0; /* running index in l_buf */ var code; /* the code to send */ var extra; /* number of extra bits to send */ if (s.last_lit !== 0) { do { dist = (s.pending_buf[s.d_buf + lx * 2] << 8) | (s.pending_buf[s.d_buf + lx * 2 + 1]); lc = s.pending_buf[s.l_buf + lx]; lx++; if (dist === 0) { send_code(s, lc, ltree); /* send a literal byte */ //Tracecv(isgraph(lc), (stderr," '%c' ", lc)); } else { /* Here, lc is the match length - MIN_MATCH */ code = _length_code[lc]; send_code(s, code + LITERALS + 1, ltree); /* send the length code */ extra = extra_lbits[code]; if (extra !== 0) { lc -= base_length[code]; send_bits(s, lc, extra); /* send the extra length bits */ } dist--; /* dist is now the match distance - 1 */ code = d_code(dist); //Assert (code < D_CODES, "bad d_code"); send_code(s, code, dtree); /* send the distance code */ extra = extra_dbits[code]; if (extra !== 0) { dist -= base_dist[code]; send_bits(s, dist, extra); /* send the extra distance bits */ } } /* literal or match pair ? */ /* Check that the overlay between pending_buf and d_buf+l_buf is ok: */ //Assert((uInt)(s->pending) < s->lit_bufsize + 2*lx, // "pendingBuf overflow"); } while (lx < s.last_lit); } send_code(s, END_BLOCK, ltree); } /* =========================================================================== * Construct one Huffman tree and assigns the code bit strings and lengths. * Update the total bit length for the current block. * IN assertion: the field freq is set for all tree elements. * OUT assertions: the fields len and code are set to the optimal bit length * and corresponding code. The length opt_len is updated; static_len is * also updated if stree is not null. The field max_code is set. */ function build_tree(s, desc) // deflate_state *s; // tree_desc *desc; /* the tree descriptor */ { var tree = desc.dyn_tree; var stree = desc.stat_desc.static_tree; var has_stree = desc.stat_desc.has_stree; var elems = desc.stat_desc.elems; var n, m; /* iterate over heap elements */ var max_code = -1; /* largest code with non zero frequency */ var node; /* new node being created */ /* Construct the initial heap, with least frequent element in * heap[SMALLEST]. The sons of heap[n] are heap[2*n] and heap[2*n+1]. * heap[0] is not used. */ s.heap_len = 0; s.heap_max = HEAP_SIZE; for (n = 0; n < elems; n++) { if (tree[n * 2]/*.Freq*/ !== 0) { s.heap[++s.heap_len] = max_code = n; s.depth[n] = 0; } else { tree[n * 2 + 1]/*.Len*/ = 0; } } /* The pkzip format requires that at least one distance code exists, * and that at least one bit should be sent even if there is only one * possible code. So to avoid special checks later on we force at least * two codes of non zero frequency. */ while (s.heap_len < 2) { node = s.heap[++s.heap_len] = (max_code < 2 ? ++max_code : 0); tree[node * 2]/*.Freq*/ = 1; s.depth[node] = 0; s.opt_len--; if (has_stree) { s.static_len -= stree[node * 2 + 1]/*.Len*/; } /* node is 0 or 1 so it does not have extra bits */ } desc.max_code = max_code; /* The elements heap[heap_len/2+1 .. heap_len] are leaves of the tree, * establish sub-heaps of increasing lengths: */ for (n = (s.heap_len >> 1/*int /2*/); n >= 1; n--) { pqdownheap(s, tree, n); } /* Construct the Huffman tree by repeatedly combining the least two * frequent nodes. */ node = elems; /* next internal node of the tree */ do { //pqremove(s, tree, n); /* n = node of least frequency */ /*** pqremove ***/ n = s.heap[1/*SMALLEST*/]; s.heap[1/*SMALLEST*/] = s.heap[s.heap_len--]; pqdownheap(s, tree, 1/*SMALLEST*/); /***/ m = s.heap[1/*SMALLEST*/]; /* m = node of next least frequency */ s.heap[--s.heap_max] = n; /* keep the nodes sorted by frequency */ s.heap[--s.heap_max] = m; /* Create a new node father of n and m */ tree[node * 2]/*.Freq*/ = tree[n * 2]/*.Freq*/ + tree[m * 2]/*.Freq*/; s.depth[node] = (s.depth[n] >= s.depth[m] ? s.depth[n] : s.depth[m]) + 1; tree[n * 2 + 1]/*.Dad*/ = tree[m * 2 + 1]/*.Dad*/ = node; /* and insert the new node in the heap */ s.heap[1/*SMALLEST*/] = node++; pqdownheap(s, tree, 1/*SMALLEST*/); } while (s.heap_len >= 2); s.heap[--s.heap_max] = s.heap[1/*SMALLEST*/]; /* At this point, the fields freq and dad are set. We can now * generate the bit lengths. */ gen_bitlen(s, desc); /* The field len is now set, we can generate the bit codes */ gen_codes(tree, max_code, s.bl_count); } /* =========================================================================== * Scan a literal or distance tree to determine the frequencies of the codes * in the bit length tree. */ function scan_tree(s, tree, max_code) // deflate_state *s; // ct_data *tree; /* the tree to be scanned */ // int max_code; /* and its largest code of non zero frequency */ { var n; /* iterates over all tree elements */ var prevlen = -1; /* last emitted length */ var curlen; /* length of current code */ var nextlen = tree[0 * 2 + 1]/*.Len*/; /* length of next code */ var count = 0; /* repeat count of the current code */ var max_count = 7; /* max repeat count */ var min_count = 4; /* min repeat count */ if (nextlen === 0) { max_count = 138; min_count = 3; } tree[(max_code + 1) * 2 + 1]/*.Len*/ = 0xffff; /* guard */ for (n = 0; n <= max_code; n++) { curlen = nextlen; nextlen = tree[(n + 1) * 2 + 1]/*.Len*/; if (++count < max_count && curlen === nextlen) { continue; } else if (count < min_count) { s.bl_tree[curlen * 2]/*.Freq*/ += count; } else if (curlen !== 0) { if (curlen !== prevlen) { s.bl_tree[curlen * 2]/*.Freq*/++; } s.bl_tree[REP_3_6 * 2]/*.Freq*/++; } else if (count <= 10) { s.bl_tree[REPZ_3_10 * 2]/*.Freq*/++; } else { s.bl_tree[REPZ_11_138 * 2]/*.Freq*/++; } count = 0; prevlen = curlen; if (nextlen === 0) { max_count = 138; min_count = 3; } else if (curlen === nextlen) { max_count = 6; min_count = 3; } else { max_count = 7; min_count = 4; } } } /* =========================================================================== * Send a literal or distance tree in compressed form, using the codes in * bl_tree. */ function send_tree(s, tree, max_code) // deflate_state *s; // ct_data *tree; /* the tree to be scanned */ // int max_code; /* and its largest code of non zero frequency */ { var n; /* iterates over all tree elements */ var prevlen = -1; /* last emitted length */ var curlen; /* length of current code */ var nextlen = tree[0 * 2 + 1]/*.Len*/; /* length of next code */ var count = 0; /* repeat count of the current code */ var max_count = 7; /* max repeat count */ var min_count = 4; /* min repeat count */ /* tree[max_code+1].Len = -1; */ /* guard already set */ if (nextlen === 0) { max_count = 138; min_count = 3; } for (n = 0; n <= max_code; n++) { curlen = nextlen; nextlen = tree[(n + 1) * 2 + 1]/*.Len*/; if (++count < max_count && curlen === nextlen) { continue; } else if (count < min_count) { do { send_code(s, curlen, s.bl_tree); } while (--count !== 0); } else if (curlen !== 0) { if (curlen !== prevlen) { send_code(s, curlen, s.bl_tree); count--; } //Assert(count >= 3 && count <= 6, " 3_6?"); send_code(s, REP_3_6, s.bl_tree); send_bits(s, count - 3, 2); } else if (count <= 10) { send_code(s, REPZ_3_10, s.bl_tree); send_bits(s, count - 3, 3); } else { send_code(s, REPZ_11_138, s.bl_tree); send_bits(s, count - 11, 7); } count = 0; prevlen = curlen; if (nextlen === 0) { max_count = 138; min_count = 3; } else if (curlen === nextlen) { max_count = 6; min_count = 3; } else { max_count = 7; min_count = 4; } } } /* =========================================================================== * Construct the Huffman tree for the bit lengths and return the index in * bl_order of the last bit length code to send. */ function build_bl_tree(s) { var max_blindex; /* index of last bit length code of non zero freq */ /* Determine the bit length frequencies for literal and distance trees */ scan_tree(s, s.dyn_ltree, s.l_desc.max_code); scan_tree(s, s.dyn_dtree, s.d_desc.max_code); /* Build the bit length tree: */ build_tree(s, s.bl_desc); /* opt_len now includes the length of the tree representations, except * the lengths of the bit lengths codes and the 5+5+4 bits for the counts. */ /* Determine the number of bit length codes to send. The pkzip format * requires that at least 4 bit length codes be sent. (appnote.txt says * 3 but the actual value used is 4.) */ for (max_blindex = BL_CODES - 1; max_blindex >= 3; max_blindex--) { if (s.bl_tree[bl_order[max_blindex] * 2 + 1]/*.Len*/ !== 0) { break; } } /* Update opt_len to include the bit length tree and counts */ s.opt_len += 3 * (max_blindex + 1) + 5 + 5 + 4; //Tracev((stderr, "\ndyn trees: dyn %ld, stat %ld", // s->opt_len, s->static_len)); return max_blindex; } /* =========================================================================== * Send the header for a block using dynamic Huffman trees: the counts, the * lengths of the bit length codes, the literal tree and the distance tree. * IN assertion: lcodes >= 257, dcodes >= 1, blcodes >= 4. */ function send_all_trees(s, lcodes, dcodes, blcodes) // deflate_state *s; // int lcodes, dcodes, blcodes; /* number of codes for each tree */ { var rank; /* index in bl_order */ //Assert (lcodes >= 257 && dcodes >= 1 && blcodes >= 4, "not enough codes"); //Assert (lcodes <= L_CODES && dcodes <= D_CODES && blcodes <= BL_CODES, // "too many codes"); //Tracev((stderr, "\nbl counts: ")); send_bits(s, lcodes - 257, 5); /* not +255 as stated in appnote.txt */ send_bits(s, dcodes - 1, 5); send_bits(s, blcodes - 4, 4); /* not -3 as stated in appnote.txt */ for (rank = 0; rank < blcodes; rank++) { //Tracev((stderr, "\nbl code %2d ", bl_order[rank])); send_bits(s, s.bl_tree[bl_order[rank] * 2 + 1]/*.Len*/, 3); } //Tracev((stderr, "\nbl tree: sent %ld", s->bits_sent)); send_tree(s, s.dyn_ltree, lcodes - 1); /* literal tree */ //Tracev((stderr, "\nlit tree: sent %ld", s->bits_sent)); send_tree(s, s.dyn_dtree, dcodes - 1); /* distance tree */ //Tracev((stderr, "\ndist tree: sent %ld", s->bits_sent)); } /* =========================================================================== * Check if the data type is TEXT or BINARY, using the following algorithm: * - TEXT if the two conditions below are satisfied: * a) There are no non-portable control characters belonging to the * "black list" (0..6, 14..25, 28..31). * b) There is at least one printable character belonging to the * "white list" (9 {TAB}, 10 {LF}, 13 {CR}, 32..255). * - BINARY otherwise. * - The following partially-portable control characters form a * "gray list" that is ignored in this detection algorithm: * (7 {BEL}, 8 {BS}, 11 {VT}, 12 {FF}, 26 {SUB}, 27 {ESC}). * IN assertion: the fields Freq of dyn_ltree are set. */ function detect_data_type(s) { /* black_mask is the bit mask of black-listed bytes * set bits 0..6, 14..25, and 28..31 * 0xf3ffc07f = binary 11110011111111111100000001111111 */ var black_mask = 0xf3ffc07f; var n; /* Check for non-textual ("black-listed") bytes. */ for (n = 0; n <= 31; n++, black_mask >>>= 1) { if ((black_mask & 1) && (s.dyn_ltree[n * 2]/*.Freq*/ !== 0)) { return Z_BINARY; } } /* Check for textual ("white-listed") bytes. */ if (s.dyn_ltree[9 * 2]/*.Freq*/ !== 0 || s.dyn_ltree[10 * 2]/*.Freq*/ !== 0 || s.dyn_ltree[13 * 2]/*.Freq*/ !== 0) { return Z_TEXT; } for (n = 32; n < LITERALS; n++) { if (s.dyn_ltree[n * 2]/*.Freq*/ !== 0) { return Z_TEXT; } } /* There are no "black-listed" or "white-listed" bytes: * this stream either is empty or has tolerated ("gray-listed") bytes only. */ return Z_BINARY; } var static_init_done = false; /* =========================================================================== * Initialize the tree data structures for a new zlib stream. */ function _tr_init(s) { if (!static_init_done) { tr_static_init(); static_init_done = true; } s.l_desc = new TreeDesc(s.dyn_ltree, static_l_desc); s.d_desc = new TreeDesc(s.dyn_dtree, static_d_desc); s.bl_desc = new TreeDesc(s.bl_tree, static_bl_desc); s.bi_buf = 0; s.bi_valid = 0; /* Initialize the first block of the first file: */ init_block(s); } /* =========================================================================== * Send a stored block */ function _tr_stored_block(s, buf, stored_len, last) //DeflateState *s; //charf *buf; /* input block */ //ulg stored_len; /* length of input block */ //int last; /* one if this is the last block for a file */ { send_bits(s, (STORED_BLOCK << 1) + (last ? 1 : 0), 3); /* send block type */ copy_block(s, buf, stored_len, true); /* with header */ } /* =========================================================================== * Send one empty static block to give enough lookahead for inflate. * This takes 10 bits, of which 7 may remain in the bit buffer. */ function _tr_align(s) { send_bits(s, STATIC_TREES << 1, 3); send_code(s, END_BLOCK, static_ltree); bi_flush(s); } /* =========================================================================== * Determine the best encoding for the current block: dynamic trees, static * trees or store, and output the encoded block to the zip file. */ function _tr_flush_block(s, buf, stored_len, last) //DeflateState *s; //charf *buf; /* input block, or NULL if too old */ //ulg stored_len; /* length of input block */ //int last; /* one if this is the last block for a file */ { var opt_lenb, static_lenb; /* opt_len and static_len in bytes */ var max_blindex = 0; /* index of last bit length code of non zero freq */ /* Build the Huffman trees unless a stored block is forced */ if (s.level > 0) { /* Check if the file is binary or text */ if (s.strm.data_type === Z_UNKNOWN) { s.strm.data_type = detect_data_type(s); } /* Construct the literal and distance trees */ build_tree(s, s.l_desc); // Tracev((stderr, "\nlit data: dyn %ld, stat %ld", s->opt_len, // s->static_len)); build_tree(s, s.d_desc); // Tracev((stderr, "\ndist data: dyn %ld, stat %ld", s->opt_len, // s->static_len)); /* At this point, opt_len and static_len are the total bit lengths of * the compressed block data, excluding the tree representations. */ /* Build the bit length tree for the above two trees, and get the index * in bl_order of the last bit length code to send. */ max_blindex = build_bl_tree(s); /* Determine the best encoding. Compute the block lengths in bytes. */ opt_lenb = (s.opt_len + 3 + 7) >>> 3; static_lenb = (s.static_len + 3 + 7) >>> 3; // Tracev((stderr, "\nopt %lu(%lu) stat %lu(%lu) stored %lu lit %u ", // opt_lenb, s->opt_len, static_lenb, s->static_len, stored_len, // s->last_lit)); if (static_lenb <= opt_lenb) { opt_lenb = static_lenb; } } else { // Assert(buf != (char*)0, "lost buf"); opt_lenb = static_lenb = stored_len + 5; /* force a stored block */ } if ((stored_len + 4 <= opt_lenb) && (buf !== -1)) { /* 4: two words for the lengths */ /* The test buf != NULL is only necessary if LIT_BUFSIZE > WSIZE. * Otherwise we can't have processed more than WSIZE input bytes since * the last block flush, because compression would have been * successful. If LIT_BUFSIZE <= WSIZE, it is never too late to * transform a block into a stored block. */ _tr_stored_block(s, buf, stored_len, last); } else if (s.strategy === Z_FIXED || static_lenb === opt_lenb) { send_bits(s, (STATIC_TREES << 1) + (last ? 1 : 0), 3); compress_block(s, static_ltree, static_dtree); } else { send_bits(s, (DYN_TREES << 1) + (last ? 1 : 0), 3); send_all_trees(s, s.l_desc.max_code + 1, s.d_desc.max_code + 1, max_blindex + 1); compress_block(s, s.dyn_ltree, s.dyn_dtree); } // Assert (s->compressed_len == s->bits_sent, "bad compressed size"); /* The above check is made mod 2^32, for files larger than 512 MB * and uLong implemented on 32 bits. */ init_block(s); if (last) { bi_windup(s); } // Tracev((stderr,"\ncomprlen %lu(%lu) ", s->compressed_len>>3, // s->compressed_len-7*last)); } /* =========================================================================== * Save the match info and tally the frequency counts. Return true if * the current block must be flushed. */ function _tr_tally(s, dist, lc) // deflate_state *s; // unsigned dist; /* distance of matched string */ // unsigned lc; /* match length-MIN_MATCH or unmatched char (if dist==0) */ { //var out_length, in_length, dcode; s.pending_buf[s.d_buf + s.last_lit * 2] = (dist >>> 8) & 0xff; s.pending_buf[s.d_buf + s.last_lit * 2 + 1] = dist & 0xff; s.pending_buf[s.l_buf + s.last_lit] = lc & 0xff; s.last_lit++; if (dist === 0) { /* lc is the unmatched char */ s.dyn_ltree[lc * 2]/*.Freq*/++; } else { s.matches++; /* Here, lc is the match length - MIN_MATCH */ dist--; /* dist = match distance - 1 */ //Assert((ush)dist < (ush)MAX_DIST(s) && // (ush)lc <= (ush)(MAX_MATCH-MIN_MATCH) && // (ush)d_code(dist) < (ush)D_CODES, "_tr_tally: bad match"); s.dyn_ltree[(_length_code[lc] + LITERALS + 1) * 2]/*.Freq*/++; s.dyn_dtree[d_code(dist) * 2]/*.Freq*/++; } // (!) This block is disabled in zlib defailts, // don't enable it for binary compatibility //#ifdef TRUNCATE_BLOCK // /* Try to guess if it is profitable to stop the current block here */ // if ((s.last_lit & 0x1fff) === 0 && s.level > 2) { // /* Compute an upper bound for the compressed length */ // out_length = s.last_lit*8; // in_length = s.strstart - s.block_start; // // for (dcode = 0; dcode < D_CODES; dcode++) { // out_length += s.dyn_dtree[dcode*2]/*.Freq*/ * (5 + extra_dbits[dcode]); // } // out_length >>>= 3; // //Tracev((stderr,"\nlast_lit %u, in %ld, out ~%ld(%ld%%) ", // // s->last_lit, in_length, out_length, // // 100L - out_length*100L/in_length)); // if (s.matches < (s.last_lit>>1)/*int /2*/ && out_length < (in_length>>1)/*int /2*/) { // return true; // } // } //#endif return (s.last_lit === s.lit_bufsize - 1); /* We avoid equality with lit_bufsize because of wraparound at 64K * on 16 bit machines and because stored blocks are restricted to * 64K-1 bytes. */ } exports._tr_init = _tr_init; exports._tr_stored_block = _tr_stored_block; exports._tr_flush_block = _tr_flush_block; exports._tr_tally = _tr_tally; exports._tr_align = _tr_align; },{"../utils/common":102}],112:[function(require,module,exports){ 'use strict'; function ZStream() { /* next input byte */ this.input = null; // JS specific, because we have no pointers this.next_in = 0; /* number of bytes available at input */ this.avail_in = 0; /* total number of input bytes read so far */ this.total_in = 0; /* next output byte should be put there */ this.output = null; // JS specific, because we have no pointers this.next_out = 0; /* remaining free space at output */ this.avail_out = 0; /* total number of bytes output so far */ this.total_out = 0; /* last error message, NULL if no error */ this.msg = ''/*Z_NULL*/; /* not visible by applications */ this.state = null; /* best guess about the data type: binary or text */ this.data_type = 2/*Z_UNKNOWN*/; /* adler32 value of the uncompressed data */ this.adler = 0; } module.exports = ZStream; },{}],113:[function(require,module,exports){ module.exports={"2.16.840.1.101.3.4.1.1": "aes-128-ecb", "2.16.840.1.101.3.4.1.2": "aes-128-cbc", "2.16.840.1.101.3.4.1.3": "aes-128-ofb", "2.16.840.1.101.3.4.1.4": "aes-128-cfb", "2.16.840.1.101.3.4.1.21": "aes-192-ecb", "2.16.840.1.101.3.4.1.22": "aes-192-cbc", "2.16.840.1.101.3.4.1.23": "aes-192-ofb", "2.16.840.1.101.3.4.1.24": "aes-192-cfb", "2.16.840.1.101.3.4.1.41": "aes-256-ecb", "2.16.840.1.101.3.4.1.42": "aes-256-cbc", "2.16.840.1.101.3.4.1.43": "aes-256-ofb", "2.16.840.1.101.3.4.1.44": "aes-256-cfb" } },{}],114:[function(require,module,exports){ // from https://github.com/indutny/self-signed/blob/gh-pages/lib/asn1.js // Fedor, you are amazing. var asn1 = require('asn1.js') var RSAPrivateKey = asn1.define('RSAPrivateKey', function () { this.seq().obj( this.key('version').int(), this.key('modulus').int(), this.key('publicExponent').int(), this.key('privateExponent').int(), this.key('prime1').int(), this.key('prime2').int(), this.key('exponent1').int(), this.key('exponent2').int(), this.key('coefficient').int() ) }) exports.RSAPrivateKey = RSAPrivateKey var RSAPublicKey = asn1.define('RSAPublicKey', function () { this.seq().obj( this.key('modulus').int(), this.key('publicExponent').int() ) }) exports.RSAPublicKey = RSAPublicKey var PublicKey = asn1.define('SubjectPublicKeyInfo', function () { this.seq().obj( this.key('algorithm').use(AlgorithmIdentifier), this.key('subjectPublicKey').bitstr() ) }) exports.PublicKey = PublicKey var AlgorithmIdentifier = asn1.define('AlgorithmIdentifier', function () { this.seq().obj( this.key('algorithm').objid(), this.key('none').null_().optional(), this.key('curve').objid().optional(), this.key('params').seq().obj( this.key('p').int(), this.key('q').int(), this.key('g').int() ).optional() ) }) var PrivateKeyInfo = asn1.define('PrivateKeyInfo', function () { this.seq().obj( this.key('version').int(), this.key('algorithm').use(AlgorithmIdentifier), this.key('subjectPrivateKey').octstr() ) }) exports.PrivateKey = PrivateKeyInfo var EncryptedPrivateKeyInfo = asn1.define('EncryptedPrivateKeyInfo', function () { this.seq().obj( this.key('algorithm').seq().obj( this.key('id').objid(), this.key('decrypt').seq().obj( this.key('kde').seq().obj( this.key('id').objid(), this.key('kdeparams').seq().obj( this.key('salt').octstr(), this.key('iters').int() ) ), this.key('cipher').seq().obj( this.key('algo').objid(), this.key('iv').octstr() ) ) ), this.key('subjectPrivateKey').octstr() ) }) exports.EncryptedPrivateKey = EncryptedPrivateKeyInfo var DSAPrivateKey = asn1.define('DSAPrivateKey', function () { this.seq().obj( this.key('version').int(), this.key('p').int(), this.key('q').int(), this.key('g').int(), this.key('pub_key').int(), this.key('priv_key').int() ) }) exports.DSAPrivateKey = DSAPrivateKey exports.DSAparam = asn1.define('DSAparam', function () { this.int() }) var ECPrivateKey = asn1.define('ECPrivateKey', function () { this.seq().obj( this.key('version').int(), this.key('privateKey').octstr(), this.key('parameters').optional().explicit(0).use(ECParameters), this.key('publicKey').optional().explicit(1).bitstr() ) }) exports.ECPrivateKey = ECPrivateKey var ECParameters = asn1.define('ECParameters', function () { this.choice({ namedCurve: this.objid() }) }) exports.signature = asn1.define('signature', function () { this.seq().obj( this.key('r').int(), this.key('s').int() ) }) },{"asn1.js":2}],115:[function(require,module,exports){ (function (Buffer){ // adapted from https://github.com/apatil/pemstrip var findProc = /Proc-Type: 4,ENCRYPTED\r?\nDEK-Info: AES-((?:128)|(?:192)|(?:256))-CBC,([0-9A-H]+)\r?\n\r?\n([0-9A-z\n\r\+\/\=]+)\r?\n/m var startRegex = /^-----BEGIN (.*) KEY-----\r?\n/m var fullRegex = /^-----BEGIN (.*) KEY-----\r?\n([0-9A-z\n\r\+\/\=]+)\r?\n-----END \1 KEY-----$/m var evp = require('evp_bytestokey') var ciphers = require('browserify-aes') module.exports = function (okey, password) { var key = okey.toString() var match = key.match(findProc) var decrypted if (!match) { var match2 = key.match(fullRegex) decrypted = new Buffer(match2[2].replace(/\r?\n/g, ''), 'base64') } else { var suite = 'aes' + match[1] var iv = new Buffer(match[2], 'hex') var cipherText = new Buffer(match[3].replace(/\r?\n/g, ''), 'base64') var cipherKey = evp(password, iv.slice(0, 8), parseInt(match[1], 10)).key var out = [] var cipher = ciphers.createDecipheriv(suite, cipherKey, iv) out.push(cipher.update(cipherText)) out.push(cipher.final()) decrypted = Buffer.concat(out) } var tag = key.match(startRegex)[1] + ' KEY' return { tag: tag, data: decrypted } } }).call(this,require("buffer").Buffer) },{"browserify-aes":23,"buffer":49,"evp_bytestokey":87}],116:[function(require,module,exports){ (function (Buffer){ var asn1 = require('./asn1') var aesid = require('./aesid.json') var fixProc = require('./fixProc') var ciphers = require('browserify-aes') var compat = require('pbkdf2') module.exports = parseKeys function parseKeys (buffer) { var password if (typeof buffer === 'object' && !Buffer.isBuffer(buffer)) { password = buffer.passphrase buffer = buffer.key } if (typeof buffer === 'string') { buffer = new Buffer(buffer) } var stripped = fixProc(buffer, password) var type = stripped.tag var data = stripped.data var subtype, ndata switch (type) { case 'PUBLIC KEY': ndata = asn1.PublicKey.decode(data, 'der') subtype = ndata.algorithm.algorithm.join('.') switch (subtype) { case '1.2.840.113549.1.1.1': return asn1.RSAPublicKey.decode(ndata.subjectPublicKey.data, 'der') case '1.2.840.10045.2.1': ndata.subjectPrivateKey = ndata.subjectPublicKey return { type: 'ec', data: ndata } case '1.2.840.10040.4.1': ndata.algorithm.params.pub_key = asn1.DSAparam.decode(ndata.subjectPublicKey.data, 'der') return { type: 'dsa', data: ndata.algorithm.params } default: throw new Error('unknown key id ' + subtype) } throw new Error('unknown key type ' + type) case 'ENCRYPTED PRIVATE KEY': data = asn1.EncryptedPrivateKey.decode(data, 'der') data = decrypt(data, password) // falls through case 'PRIVATE KEY': ndata = asn1.PrivateKey.decode(data, 'der') subtype = ndata.algorithm.algorithm.join('.') switch (subtype) { case '1.2.840.113549.1.1.1': return asn1.RSAPrivateKey.decode(ndata.subjectPrivateKey, 'der') case '1.2.840.10045.2.1': return { curve: ndata.algorithm.curve, privateKey: asn1.ECPrivateKey.decode(ndata.subjectPrivateKey, 'der').privateKey } case '1.2.840.10040.4.1': ndata.algorithm.params.priv_key = asn1.DSAparam.decode(ndata.subjectPrivateKey, 'der') return { type: 'dsa', params: ndata.algorithm.params } default: throw new Error('unknown key id ' + subtype) } throw new Error('unknown key type ' + type) case 'RSA PUBLIC KEY': return asn1.RSAPublicKey.decode(data, 'der') case 'RSA PRIVATE KEY': return asn1.RSAPrivateKey.decode(data, 'der') case 'DSA PRIVATE KEY': return { type: 'dsa', params: asn1.DSAPrivateKey.decode(data, 'der') } case 'EC PRIVATE KEY': data = asn1.ECPrivateKey.decode(data, 'der') return { curve: data.parameters.value, privateKey: data.privateKey } default: throw new Error('unknown key type ' + type) } } parseKeys.signature = asn1.signature function decrypt (data, password) { var salt = data.algorithm.decrypt.kde.kdeparams.salt var iters = parseInt(data.algorithm.decrypt.kde.kdeparams.iters.toString(), 10) var algo = aesid[data.algorithm.decrypt.cipher.algo.join('.')] var iv = data.algorithm.decrypt.cipher.iv var cipherText = data.subjectPrivateKey var keylen = parseInt(algo.split('-')[1], 10) / 8 var key = compat.pbkdf2Sync(password, salt, iters, keylen) var cipher = ciphers.createDecipheriv(algo, key, iv) var out = [] out.push(cipher.update(cipherText)) out.push(cipher.final()) return Buffer.concat(out) } }).call(this,require("buffer").Buffer) },{"./aesid.json":113,"./asn1":114,"./fixProc":115,"browserify-aes":23,"buffer":49,"pbkdf2":118}],117:[function(require,module,exports){ (function (process){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. // resolves . and .. elements in a path array with directory names there // must be no slashes, empty elements, or device names (c:\) in the array // (so also no leading and trailing slashes - it does not distinguish // relative and absolute paths) function normalizeArray(parts, allowAboveRoot) { // if the path tries to go above the root, `up` ends up > 0 var up = 0; for (var i = parts.length - 1; i >= 0; i--) { var last = parts[i]; if (last === '.') { parts.splice(i, 1); } else if (last === '..') { parts.splice(i, 1); up++; } else if (up) { parts.splice(i, 1); up--; } } // if the path is allowed to go above the root, restore leading ..s if (allowAboveRoot) { for (; up--; up) { parts.unshift('..'); } } return parts; } // Split a filename into [root, dir, basename, ext], unix version // 'root' is just a slash, or nothing. var splitPathRe = /^(\/?|)([\s\S]*?)((?:\.{1,2}|[^\/]+?|)(\.[^.\/]*|))(?:[\/]*)$/; var splitPath = function(filename) { return splitPathRe.exec(filename).slice(1); }; // path.resolve([from ...], to) // posix version exports.resolve = function() { var resolvedPath = '', resolvedAbsolute = false; for (var i = arguments.length - 1; i >= -1 && !resolvedAbsolute; i--) { var path = (i >= 0) ? arguments[i] : process.cwd(); // Skip empty and invalid entries if (typeof path !== 'string') { throw new TypeError('Arguments to path.resolve must be strings'); } else if (!path) { continue; } resolvedPath = path + '/' + resolvedPath; resolvedAbsolute = path.charAt(0) === '/'; } // At this point the path should be resolved to a full absolute path, but // handle relative paths to be safe (might happen when process.cwd() fails) // Normalize the path resolvedPath = normalizeArray(filter(resolvedPath.split('/'), function(p) { return !!p; }), !resolvedAbsolute).join('/'); return ((resolvedAbsolute ? '/' : '') + resolvedPath) || '.'; }; // path.normalize(path) // posix version exports.normalize = function(path) { var isAbsolute = exports.isAbsolute(path), trailingSlash = substr(path, -1) === '/'; // Normalize the path path = normalizeArray(filter(path.split('/'), function(p) { return !!p; }), !isAbsolute).join('/'); if (!path && !isAbsolute) { path = '.'; } if (path && trailingSlash) { path += '/'; } return (isAbsolute ? '/' : '') + path; }; // posix version exports.isAbsolute = function(path) { return path.charAt(0) === '/'; }; // posix version exports.join = function() { var paths = Array.prototype.slice.call(arguments, 0); return exports.normalize(filter(paths, function(p, index) { if (typeof p !== 'string') { throw new TypeError('Arguments to path.join must be strings'); } return p; }).join('/')); }; // path.relative(from, to) // posix version exports.relative = function(from, to) { from = exports.resolve(from).substr(1); to = exports.resolve(to).substr(1); function trim(arr) { var start = 0; for (; start < arr.length; start++) { if (arr[start] !== '') break; } var end = arr.length - 1; for (; end >= 0; end--) { if (arr[end] !== '') break; } if (start > end) return []; return arr.slice(start, end - start + 1); } var fromParts = trim(from.split('/')); var toParts = trim(to.split('/')); var length = Math.min(fromParts.length, toParts.length); var samePartsLength = length; for (var i = 0; i < length; i++) { if (fromParts[i] !== toParts[i]) { samePartsLength = i; break; } } var outputParts = []; for (var i = samePartsLength; i < fromParts.length; i++) { outputParts.push('..'); } outputParts = outputParts.concat(toParts.slice(samePartsLength)); return outputParts.join('/'); }; exports.sep = '/'; exports.delimiter = ':'; exports.dirname = function(path) { var result = splitPath(path), root = result[0], dir = result[1]; if (!root && !dir) { // No dirname whatsoever return '.'; } if (dir) { // It has a dirname, strip trailing slash dir = dir.substr(0, dir.length - 1); } return root + dir; }; exports.basename = function(path, ext) { var f = splitPath(path)[2]; // TODO: make this comparison case-insensitive on windows? if (ext && f.substr(-1 * ext.length) === ext) { f = f.substr(0, f.length - ext.length); } return f; }; exports.extname = function(path) { return splitPath(path)[3]; }; function filter (xs, f) { if (xs.filter) return xs.filter(f); var res = []; for (var i = 0; i < xs.length; i++) { if (f(xs[i], i, xs)) res.push(xs[i]); } return res; } // String.prototype.substr - negative index don't work in IE8 var substr = 'ab'.substr(-1) === 'b' ? function (str, start, len) { return str.substr(start, len) } : function (str, start, len) { if (start < 0) start = str.length + start; return str.substr(start, len); } ; }).call(this,require('_process')) },{"_process":120}],118:[function(require,module,exports){ (function (Buffer){ var createHmac = require('create-hmac') var MAX_ALLOC = Math.pow(2, 30) - 1 // default in iojs exports.pbkdf2 = pbkdf2 function pbkdf2 (password, salt, iterations, keylen, digest, callback) { if (typeof digest === 'function') { callback = digest digest = undefined } if (typeof callback !== 'function') { throw new Error('No callback provided to pbkdf2') } var result = pbkdf2Sync(password, salt, iterations, keylen, digest) setTimeout(function () { callback(undefined, result) }) } exports.pbkdf2Sync = pbkdf2Sync function pbkdf2Sync (password, salt, iterations, keylen, digest) { if (typeof iterations !== 'number') { throw new TypeError('Iterations not a number') } if (iterations < 0) { throw new TypeError('Bad iterations') } if (typeof keylen !== 'number') { throw new TypeError('Key length not a number') } if (keylen < 0 || keylen > MAX_ALLOC) { throw new TypeError('Bad key length') } digest = digest || 'sha1' if (!Buffer.isBuffer(password)) password = new Buffer(password, 'binary') if (!Buffer.isBuffer(salt)) salt = new Buffer(salt, 'binary') var hLen var l = 1 var DK = new Buffer(keylen) var block1 = new Buffer(salt.length + 4) salt.copy(block1, 0, 0, salt.length) var r var T for (var i = 1; i <= l; i++) { block1.writeUInt32BE(i, salt.length) var U = createHmac(digest, password).update(block1).digest() if (!hLen) { hLen = U.length T = new Buffer(hLen) l = Math.ceil(keylen / hLen) r = keylen - (l - 1) * hLen } U.copy(T, 0, 0, hLen) for (var j = 1; j < iterations; j++) { U = createHmac(digest, password).update(U).digest() for (var k = 0; k < hLen; k++) { T[k] ^= U[k] } } var destPos = (i - 1) * hLen var len = (i === l ? r : hLen) T.copy(DK, destPos, 0, len) } return DK } }).call(this,require("buffer").Buffer) },{"buffer":49,"create-hmac":57}],119:[function(require,module,exports){ (function (process){ 'use strict'; if (!process.version || process.version.indexOf('v0.') === 0 || process.version.indexOf('v1.') === 0 && process.version.indexOf('v1.8.') !== 0) { module.exports = nextTick; } else { module.exports = process.nextTick; } function nextTick(fn, arg1, arg2, arg3) { if (typeof fn !== 'function') { throw new TypeError('"callback" argument must be a function'); } var len = arguments.length; var args, i; switch (len) { case 0: case 1: return process.nextTick(fn); case 2: return process.nextTick(function afterTickOne() { fn.call(null, arg1); }); case 3: return process.nextTick(function afterTickTwo() { fn.call(null, arg1, arg2); }); case 4: return process.nextTick(function afterTickThree() { fn.call(null, arg1, arg2, arg3); }); default: args = new Array(len - 1); i = 0; while (i < args.length) { args[i++] = arguments[i]; } return process.nextTick(function afterTick() { fn.apply(null, args); }); } } }).call(this,require('_process')) },{"_process":120}],120:[function(require,module,exports){ // shim for using process in browser var process = module.exports = {}; // cached from whatever global is present so that test runners that stub it // don't break things. But we need to wrap it in a try catch in case it is // wrapped in strict mode code which doesn't define any globals. It's inside a // function because try/catches deoptimize in certain engines. var cachedSetTimeout; var cachedClearTimeout; function defaultSetTimout() { throw new Error('setTimeout has not been defined'); } function defaultClearTimeout () { throw new Error('clearTimeout has not been defined'); } (function () { try { if (typeof setTimeout === 'function') { cachedSetTimeout = setTimeout; } else { cachedSetTimeout = defaultSetTimout; } } catch (e) { cachedSetTimeout = defaultSetTimout; } try { if (typeof clearTimeout === 'function') { cachedClearTimeout = clearTimeout; } else { cachedClearTimeout = defaultClearTimeout; } } catch (e) { cachedClearTimeout = defaultClearTimeout; } } ()) function runTimeout(fun) { if (cachedSetTimeout === setTimeout) { //normal enviroments in sane situations return setTimeout(fun, 0); } // if setTimeout wasn't available but was latter defined if ((cachedSetTimeout === defaultSetTimout || !cachedSetTimeout) && setTimeout) { cachedSetTimeout = setTimeout; return setTimeout(fun, 0); } try { // when when somebody has screwed with setTimeout but no I.E. maddness return cachedSetTimeout(fun, 0); } catch(e){ try { // When we are in I.E. but the script has been evaled so I.E. doesn't trust the global object when called normally return cachedSetTimeout.call(null, fun, 0); } catch(e){ // same as above but when it's a version of I.E. that must have the global object for 'this', hopfully our context correct otherwise it will throw a global error return cachedSetTimeout.call(this, fun, 0); } } } function runClearTimeout(marker) { if (cachedClearTimeout === clearTimeout) { //normal enviroments in sane situations return clearTimeout(marker); } // if clearTimeout wasn't available but was latter defined if ((cachedClearTimeout === defaultClearTimeout || !cachedClearTimeout) && clearTimeout) { cachedClearTimeout = clearTimeout; return clearTimeout(marker); } try { // when when somebody has screwed with setTimeout but no I.E. maddness return cachedClearTimeout(marker); } catch (e){ try { // When we are in I.E. but the script has been evaled so I.E. doesn't trust the global object when called normally return cachedClearTimeout.call(null, marker); } catch (e){ // same as above but when it's a version of I.E. that must have the global object for 'this', hopfully our context correct otherwise it will throw a global error. // Some versions of I.E. have different rules for clearTimeout vs setTimeout return cachedClearTimeout.call(this, marker); } } } var queue = []; var draining = false; var currentQueue; var queueIndex = -1; function cleanUpNextTick() { if (!draining || !currentQueue) { return; } draining = false; if (currentQueue.length) { queue = currentQueue.concat(queue); } else { queueIndex = -1; } if (queue.length) { drainQueue(); } } function drainQueue() { if (draining) { return; } var timeout = runTimeout(cleanUpNextTick); draining = true; var len = queue.length; while(len) { currentQueue = queue; queue = []; while (++queueIndex < len) { if (currentQueue) { currentQueue[queueIndex].run(); } } queueIndex = -1; len = queue.length; } currentQueue = null; draining = false; runClearTimeout(timeout); } process.nextTick = function (fun) { var args = new Array(arguments.length - 1); if (arguments.length > 1) { for (var i = 1; i < arguments.length; i++) { args[i - 1] = arguments[i]; } } queue.push(new Item(fun, args)); if (queue.length === 1 && !draining) { runTimeout(drainQueue); } }; // v8 likes predictible objects function Item(fun, array) { this.fun = fun; this.array = array; } Item.prototype.run = function () { this.fun.apply(null, this.array); }; process.title = 'browser'; process.browser = true; process.env = {}; process.argv = []; process.version = ''; // empty string to avoid regexp issues process.versions = {}; function noop() {} process.on = noop; process.addListener = noop; process.once = noop; process.off = noop; process.removeListener = noop; process.removeAllListeners = noop; process.emit = noop; process.binding = function (name) { throw new Error('process.binding is not supported'); }; process.cwd = function () { return '/' }; process.chdir = function (dir) { throw new Error('process.chdir is not supported'); }; process.umask = function() { return 0; }; },{}],121:[function(require,module,exports){ exports.publicEncrypt = require('./publicEncrypt'); exports.privateDecrypt = require('./privateDecrypt'); exports.privateEncrypt = function privateEncrypt(key, buf) { return exports.publicEncrypt(key, buf, true); }; exports.publicDecrypt = function publicDecrypt(key, buf) { return exports.privateDecrypt(key, buf, true); }; },{"./privateDecrypt":123,"./publicEncrypt":124}],122:[function(require,module,exports){ (function (Buffer){ var createHash = require('create-hash'); module.exports = function (seed, len) { var t = new Buffer(''); var i = 0, c; while (t.length < len) { c = i2ops(i++); t = Buffer.concat([t, createHash('sha1').update(seed).update(c).digest()]); } return t.slice(0, len); }; function i2ops(c) { var out = new Buffer(4); out.writeUInt32BE(c,0); return out; } }).call(this,require("buffer").Buffer) },{"buffer":49,"create-hash":54}],123:[function(require,module,exports){ (function (Buffer){ var parseKeys = require('parse-asn1'); var mgf = require('./mgf'); var xor = require('./xor'); var bn = require('bn.js'); var crt = require('browserify-rsa'); var createHash = require('create-hash'); var withPublic = require('./withPublic'); module.exports = function privateDecrypt(private_key, enc, reverse) { var padding; if (private_key.padding) { padding = private_key.padding; } else if (reverse) { padding = 1; } else { padding = 4; } var key = parseKeys(private_key); var k = key.modulus.byteLength(); if (enc.length > k || new bn(enc).cmp(key.modulus) >= 0) { throw new Error('decryption error'); } var msg; if (reverse) { msg = withPublic(new bn(enc), key); } else { msg = crt(enc, key); } var zBuffer = new Buffer(k - msg.length); zBuffer.fill(0); msg = Buffer.concat([zBuffer, msg], k); if (padding === 4) { return oaep(key, msg); } else if (padding === 1) { return pkcs1(key, msg, reverse); } else if (padding === 3) { return msg; } else { throw new Error('unknown padding'); } }; function oaep(key, msg){ var n = key.modulus; var k = key.modulus.byteLength(); var mLen = msg.length; var iHash = createHash('sha1').update(new Buffer('')).digest(); var hLen = iHash.length; var hLen2 = 2 * hLen; if (msg[0] !== 0) { throw new Error('decryption error'); } var maskedSeed = msg.slice(1, hLen + 1); var maskedDb = msg.slice(hLen + 1); var seed = xor(maskedSeed, mgf(maskedDb, hLen)); var db = xor(maskedDb, mgf(seed, k - hLen - 1)); if (compare(iHash, db.slice(0, hLen))) { throw new Error('decryption error'); } var i = hLen; while (db[i] === 0) { i++; } if (db[i++] !== 1) { throw new Error('decryption error'); } return db.slice(i); } function pkcs1(key, msg, reverse){ var p1 = msg.slice(0, 2); var i = 2; var status = 0; while (msg[i++] !== 0) { if (i >= msg.length) { status++; break; } } var ps = msg.slice(2, i - 1); var p2 = msg.slice(i - 1, i); if ((p1.toString('hex') !== '0002' && !reverse) || (p1.toString('hex') !== '0001' && reverse)){ status++; } if (ps.length < 8) { status++; } if (status) { throw new Error('decryption error'); } return msg.slice(i); } function compare(a, b){ a = new Buffer(a); b = new Buffer(b); var dif = 0; var len = a.length; if (a.length !== b.length) { dif++; len = Math.min(a.length, b.length); } var i = -1; while (++i < len) { dif += (a[i] ^ b[i]); } return dif; } }).call(this,require("buffer").Buffer) },{"./mgf":122,"./withPublic":125,"./xor":126,"bn.js":18,"browserify-rsa":39,"buffer":49,"create-hash":54,"parse-asn1":116}],124:[function(require,module,exports){ (function (Buffer){ var parseKeys = require('parse-asn1'); var randomBytes = require('randombytes'); var createHash = require('create-hash'); var mgf = require('./mgf'); var xor = require('./xor'); var bn = require('bn.js'); var withPublic = require('./withPublic'); var crt = require('browserify-rsa'); var constants = { RSA_PKCS1_OAEP_PADDING: 4, RSA_PKCS1_PADDIN: 1, RSA_NO_PADDING: 3 }; module.exports = function publicEncrypt(public_key, msg, reverse) { var padding; if (public_key.padding) { padding = public_key.padding; } else if (reverse) { padding = 1; } else { padding = 4; } var key = parseKeys(public_key); var paddedMsg; if (padding === 4) { paddedMsg = oaep(key, msg); } else if (padding === 1) { paddedMsg = pkcs1(key, msg, reverse); } else if (padding === 3) { paddedMsg = new bn(msg); if (paddedMsg.cmp(key.modulus) >= 0) { throw new Error('data too long for modulus'); } } else { throw new Error('unknown padding'); } if (reverse) { return crt(paddedMsg, key); } else { return withPublic(paddedMsg, key); } }; function oaep(key, msg){ var k = key.modulus.byteLength(); var mLen = msg.length; var iHash = createHash('sha1').update(new Buffer('')).digest(); var hLen = iHash.length; var hLen2 = 2 * hLen; if (mLen > k - hLen2 - 2) { throw new Error('message too long'); } var ps = new Buffer(k - mLen - hLen2 - 2); ps.fill(0); var dblen = k - hLen - 1; var seed = randomBytes(hLen); var maskedDb = xor(Buffer.concat([iHash, ps, new Buffer([1]), msg], dblen), mgf(seed, dblen)); var maskedSeed = xor(seed, mgf(maskedDb, hLen)); return new bn(Buffer.concat([new Buffer([0]), maskedSeed, maskedDb], k)); } function pkcs1(key, msg, reverse){ var mLen = msg.length; var k = key.modulus.byteLength(); if (mLen > k - 11) { throw new Error('message too long'); } var ps; if (reverse) { ps = new Buffer(k - mLen - 3); ps.fill(0xff); } else { ps = nonZero(k - mLen - 3); } return new bn(Buffer.concat([new Buffer([0, reverse?1:2]), ps, new Buffer([0]), msg], k)); } function nonZero(len, crypto) { var out = new Buffer(len); var i = 0; var cache = randomBytes(len*2); var cur = 0; var num; while (i < len) { if (cur === cache.length) { cache = randomBytes(len*2); cur = 0; } num = cache[cur++]; if (num) { out[i++] = num; } } return out; } }).call(this,require("buffer").Buffer) },{"./mgf":122,"./withPublic":125,"./xor":126,"bn.js":18,"browserify-rsa":39,"buffer":49,"create-hash":54,"parse-asn1":116,"randombytes":131}],125:[function(require,module,exports){ (function (Buffer){ var bn = require('bn.js'); function withPublic(paddedMsg, key) { return new Buffer(paddedMsg .toRed(bn.mont(key.modulus)) .redPow(new bn(key.publicExponent)) .fromRed() .toArray()); } module.exports = withPublic; }).call(this,require("buffer").Buffer) },{"bn.js":18,"buffer":49}],126:[function(require,module,exports){ module.exports = function xor(a, b) { var len = a.length; var i = -1; while (++i < len) { a[i] ^= b[i]; } return a }; },{}],127:[function(require,module,exports){ (function (global){ /*! https://mths.be/punycode v1.4.1 by @mathias */ ;(function(root) { /** Detect free variables */ var freeExports = typeof exports == 'object' && exports && !exports.nodeType && exports; var freeModule = typeof module == 'object' && module && !module.nodeType && module; var freeGlobal = typeof global == 'object' && global; if ( freeGlobal.global === freeGlobal || freeGlobal.window === freeGlobal || freeGlobal.self === freeGlobal ) { root = freeGlobal; } /** * The `punycode` object. * @name punycode * @type Object */ var punycode, /** Highest positive signed 32-bit float value */ maxInt = 2147483647, // aka. 0x7FFFFFFF or 2^31-1 /** Bootstring parameters */ base = 36, tMin = 1, tMax = 26, skew = 38, damp = 700, initialBias = 72, initialN = 128, // 0x80 delimiter = '-', // '\x2D' /** Regular expressions */ regexPunycode = /^xn--/, regexNonASCII = /[^\x20-\x7E]/, // unprintable ASCII chars + non-ASCII chars regexSeparators = /[\x2E\u3002\uFF0E\uFF61]/g, // RFC 3490 separators /** Error messages */ errors = { 'overflow': 'Overflow: input needs wider integers to process', 'not-basic': 'Illegal input >= 0x80 (not a basic code point)', 'invalid-input': 'Invalid input' }, /** Convenience shortcuts */ baseMinusTMin = base - tMin, floor = Math.floor, stringFromCharCode = String.fromCharCode, /** Temporary variable */ key; /*--------------------------------------------------------------------------*/ /** * A generic error utility function. * @private * @param {String} type The error type. * @returns {Error} Throws a `RangeError` with the applicable error message. */ function error(type) { throw new RangeError(errors[type]); } /** * A generic `Array#map` utility function. * @private * @param {Array} array The array to iterate over. * @param {Function} callback The function that gets called for every array * item. * @returns {Array} A new array of values returned by the callback function. */ function map(array, fn) { var length = array.length; var result = []; while (length--) { result[length] = fn(array[length]); } return result; } /** * A simple `Array#map`-like wrapper to work with domain name strings or email * addresses. * @private * @param {String} domain The domain name or email address. * @param {Function} callback The function that gets called for every * character. * @returns {Array} A new string of characters returned by the callback * function. */ function mapDomain(string, fn) { var parts = string.split('@'); var result = ''; if (parts.length > 1) { // In email addresses, only the domain name should be punycoded. Leave // the local part (i.e. everything up to `@`) intact. result = parts[0] + '@'; string = parts[1]; } // Avoid `split(regex)` for IE8 compatibility. See #17. string = string.replace(regexSeparators, '\x2E'); var labels = string.split('.'); var encoded = map(labels, fn).join('.'); return result + encoded; } /** * Creates an array containing the numeric code points of each Unicode * character in the string. While JavaScript uses UCS-2 internally, * this function will convert a pair of surrogate halves (each of which * UCS-2 exposes as separate characters) into a single code point, * matching UTF-16. * @see `punycode.ucs2.encode` * @see * @memberOf punycode.ucs2 * @name decode * @param {String} string The Unicode input string (UCS-2). * @returns {Array} The new array of code points. */ function ucs2decode(string) { var output = [], counter = 0, length = string.length, value, extra; while (counter < length) { value = string.charCodeAt(counter++); if (value >= 0xD800 && value <= 0xDBFF && counter < length) { // high surrogate, and there is a next character extra = string.charCodeAt(counter++); if ((extra & 0xFC00) == 0xDC00) { // low surrogate output.push(((value & 0x3FF) << 10) + (extra & 0x3FF) + 0x10000); } else { // unmatched surrogate; only append this code unit, in case the next // code unit is the high surrogate of a surrogate pair output.push(value); counter--; } } else { output.push(value); } } return output; } /** * Creates a string based on an array of numeric code points. * @see `punycode.ucs2.decode` * @memberOf punycode.ucs2 * @name encode * @param {Array} codePoints The array of numeric code points. * @returns {String} The new Unicode string (UCS-2). */ function ucs2encode(array) { return map(array, function(value) { var output = ''; if (value > 0xFFFF) { value -= 0x10000; output += stringFromCharCode(value >>> 10 & 0x3FF | 0xD800); value = 0xDC00 | value & 0x3FF; } output += stringFromCharCode(value); return output; }).join(''); } /** * Converts a basic code point into a digit/integer. * @see `digitToBasic()` * @private * @param {Number} codePoint The basic numeric code point value. * @returns {Number} The numeric value of a basic code point (for use in * representing integers) in the range `0` to `base - 1`, or `base` if * the code point does not represent a value. */ function basicToDigit(codePoint) { if (codePoint - 48 < 10) { return codePoint - 22; } if (codePoint - 65 < 26) { return codePoint - 65; } if (codePoint - 97 < 26) { return codePoint - 97; } return base; } /** * Converts a digit/integer into a basic code point. * @see `basicToDigit()` * @private * @param {Number} digit The numeric value of a basic code point. * @returns {Number} The basic code point whose value (when used for * representing integers) is `digit`, which needs to be in the range * `0` to `base - 1`. If `flag` is non-zero, the uppercase form is * used; else, the lowercase form is used. The behavior is undefined * if `flag` is non-zero and `digit` has no uppercase form. */ function digitToBasic(digit, flag) { // 0..25 map to ASCII a..z or A..Z // 26..35 map to ASCII 0..9 return digit + 22 + 75 * (digit < 26) - ((flag != 0) << 5); } /** * Bias adaptation function as per section 3.4 of RFC 3492. * https://tools.ietf.org/html/rfc3492#section-3.4 * @private */ function adapt(delta, numPoints, firstTime) { var k = 0; delta = firstTime ? floor(delta / damp) : delta >> 1; delta += floor(delta / numPoints); for (/* no initialization */; delta > baseMinusTMin * tMax >> 1; k += base) { delta = floor(delta / baseMinusTMin); } return floor(k + (baseMinusTMin + 1) * delta / (delta + skew)); } /** * Converts a Punycode string of ASCII-only symbols to a string of Unicode * symbols. * @memberOf punycode * @param {String} input The Punycode string of ASCII-only symbols. * @returns {String} The resulting string of Unicode symbols. */ function decode(input) { // Don't use UCS-2 var output = [], inputLength = input.length, out, i = 0, n = initialN, bias = initialBias, basic, j, index, oldi, w, k, digit, t, /** Cached calculation results */ baseMinusT; // Handle the basic code points: let `basic` be the number of input code // points before the last delimiter, or `0` if there is none, then copy // the first basic code points to the output. basic = input.lastIndexOf(delimiter); if (basic < 0) { basic = 0; } for (j = 0; j < basic; ++j) { // if it's not a basic code point if (input.charCodeAt(j) >= 0x80) { error('not-basic'); } output.push(input.charCodeAt(j)); } // Main decoding loop: start just after the last delimiter if any basic code // points were copied; start at the beginning otherwise. for (index = basic > 0 ? basic + 1 : 0; index < inputLength; /* no final expression */) { // `index` is the index of the next character to be consumed. // Decode a generalized variable-length integer into `delta`, // which gets added to `i`. The overflow checking is easier // if we increase `i` as we go, then subtract off its starting // value at the end to obtain `delta`. for (oldi = i, w = 1, k = base; /* no condition */; k += base) { if (index >= inputLength) { error('invalid-input'); } digit = basicToDigit(input.charCodeAt(index++)); if (digit >= base || digit > floor((maxInt - i) / w)) { error('overflow'); } i += digit * w; t = k <= bias ? tMin : (k >= bias + tMax ? tMax : k - bias); if (digit < t) { break; } baseMinusT = base - t; if (w > floor(maxInt / baseMinusT)) { error('overflow'); } w *= baseMinusT; } out = output.length + 1; bias = adapt(i - oldi, out, oldi == 0); // `i` was supposed to wrap around from `out` to `0`, // incrementing `n` each time, so we'll fix that now: if (floor(i / out) > maxInt - n) { error('overflow'); } n += floor(i / out); i %= out; // Insert `n` at position `i` of the output output.splice(i++, 0, n); } return ucs2encode(output); } /** * Converts a string of Unicode symbols (e.g. a domain name label) to a * Punycode string of ASCII-only symbols. * @memberOf punycode * @param {String} input The string of Unicode symbols. * @returns {String} The resulting Punycode string of ASCII-only symbols. */ function encode(input) { var n, delta, handledCPCount, basicLength, bias, j, m, q, k, t, currentValue, output = [], /** `inputLength` will hold the number of code points in `input`. */ inputLength, /** Cached calculation results */ handledCPCountPlusOne, baseMinusT, qMinusT; // Convert the input in UCS-2 to Unicode input = ucs2decode(input); // Cache the length inputLength = input.length; // Initialize the state n = initialN; delta = 0; bias = initialBias; // Handle the basic code points for (j = 0; j < inputLength; ++j) { currentValue = input[j]; if (currentValue < 0x80) { output.push(stringFromCharCode(currentValue)); } } handledCPCount = basicLength = output.length; // `handledCPCount` is the number of code points that have been handled; // `basicLength` is the number of basic code points. // Finish the basic string - if it is not empty - with a delimiter if (basicLength) { output.push(delimiter); } // Main encoding loop: while (handledCPCount < inputLength) { // All non-basic code points < n have been handled already. Find the next // larger one: for (m = maxInt, j = 0; j < inputLength; ++j) { currentValue = input[j]; if (currentValue >= n && currentValue < m) { m = currentValue; } } // Increase `delta` enough to advance the decoder's state to , // but guard against overflow handledCPCountPlusOne = handledCPCount + 1; if (m - n > floor((maxInt - delta) / handledCPCountPlusOne)) { error('overflow'); } delta += (m - n) * handledCPCountPlusOne; n = m; for (j = 0; j < inputLength; ++j) { currentValue = input[j]; if (currentValue < n && ++delta > maxInt) { error('overflow'); } if (currentValue == n) { // Represent delta as a generalized variable-length integer for (q = delta, k = base; /* no condition */; k += base) { t = k <= bias ? tMin : (k >= bias + tMax ? tMax : k - bias); if (q < t) { break; } qMinusT = q - t; baseMinusT = base - t; output.push( stringFromCharCode(digitToBasic(t + qMinusT % baseMinusT, 0)) ); q = floor(qMinusT / baseMinusT); } output.push(stringFromCharCode(digitToBasic(q, 0))); bias = adapt(delta, handledCPCountPlusOne, handledCPCount == basicLength); delta = 0; ++handledCPCount; } } ++delta; ++n; } return output.join(''); } /** * Converts a Punycode string representing a domain name or an email address * to Unicode. Only the Punycoded parts of the input will be converted, i.e. * it doesn't matter if you call it on a string that has already been * converted to Unicode. * @memberOf punycode * @param {String} input The Punycoded domain name or email address to * convert to Unicode. * @returns {String} The Unicode representation of the given Punycode * string. */ function toUnicode(input) { return mapDomain(input, function(string) { return regexPunycode.test(string) ? decode(string.slice(4).toLowerCase()) : string; }); } /** * Converts a Unicode string representing a domain name or an email address to * Punycode. Only the non-ASCII parts of the domain name will be converted, * i.e. it doesn't matter if you call it with a domain that's already in * ASCII. * @memberOf punycode * @param {String} input The domain name or email address to convert, as a * Unicode string. * @returns {String} The Punycode representation of the given domain name or * email address. */ function toASCII(input) { return mapDomain(input, function(string) { return regexNonASCII.test(string) ? 'xn--' + encode(string) : string; }); } /*--------------------------------------------------------------------------*/ /** Define the public API */ punycode = { /** * A string representing the current Punycode.js version number. * @memberOf punycode * @type String */ 'version': '1.4.1', /** * An object of methods to convert from JavaScript's internal character * representation (UCS-2) to Unicode code points, and back. * @see * @memberOf punycode * @type Object */ 'ucs2': { 'decode': ucs2decode, 'encode': ucs2encode }, 'decode': decode, 'encode': encode, 'toASCII': toASCII, 'toUnicode': toUnicode }; /** Expose `punycode` */ // Some AMD build optimizers, like r.js, check for specific condition patterns // like the following: if ( typeof define == 'function' && typeof define.amd == 'object' && define.amd ) { define('punycode', function() { return punycode; }); } else if (freeExports && freeModule) { if (module.exports == freeExports) { // in Node.js, io.js, or RingoJS v0.8.0+ freeModule.exports = punycode; } else { // in Narwhal or RingoJS v0.7.0- for (key in punycode) { punycode.hasOwnProperty(key) && (freeExports[key] = punycode[key]); } } } else { // in Rhino or a web browser root.punycode = punycode; } }(this)); }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{}],128:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. 'use strict'; // If obj.hasOwnProperty has been overridden, then calling // obj.hasOwnProperty(prop) will break. // See: https://github.com/joyent/node/issues/1707 function hasOwnProperty(obj, prop) { return Object.prototype.hasOwnProperty.call(obj, prop); } module.exports = function(qs, sep, eq, options) { sep = sep || '&'; eq = eq || '='; var obj = {}; if (typeof qs !== 'string' || qs.length === 0) { return obj; } var regexp = /\+/g; qs = qs.split(sep); var maxKeys = 1000; if (options && typeof options.maxKeys === 'number') { maxKeys = options.maxKeys; } var len = qs.length; // maxKeys <= 0 means that we should not limit keys count if (maxKeys > 0 && len > maxKeys) { len = maxKeys; } for (var i = 0; i < len; ++i) { var x = qs[i].replace(regexp, '%20'), idx = x.indexOf(eq), kstr, vstr, k, v; if (idx >= 0) { kstr = x.substr(0, idx); vstr = x.substr(idx + 1); } else { kstr = x; vstr = ''; } k = decodeURIComponent(kstr); v = decodeURIComponent(vstr); if (!hasOwnProperty(obj, k)) { obj[k] = v; } else if (isArray(obj[k])) { obj[k].push(v); } else { obj[k] = [obj[k], v]; } } return obj; }; var isArray = Array.isArray || function (xs) { return Object.prototype.toString.call(xs) === '[object Array]'; }; },{}],129:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. 'use strict'; var stringifyPrimitive = function(v) { switch (typeof v) { case 'string': return v; case 'boolean': return v ? 'true' : 'false'; case 'number': return isFinite(v) ? v : ''; default: return ''; } }; module.exports = function(obj, sep, eq, name) { sep = sep || '&'; eq = eq || '='; if (obj === null) { obj = undefined; } if (typeof obj === 'object') { return map(objectKeys(obj), function(k) { var ks = encodeURIComponent(stringifyPrimitive(k)) + eq; if (isArray(obj[k])) { return map(obj[k], function(v) { return ks + encodeURIComponent(stringifyPrimitive(v)); }).join(sep); } else { return ks + encodeURIComponent(stringifyPrimitive(obj[k])); } }).join(sep); } if (!name) return ''; return encodeURIComponent(stringifyPrimitive(name)) + eq + encodeURIComponent(stringifyPrimitive(obj)); }; var isArray = Array.isArray || function (xs) { return Object.prototype.toString.call(xs) === '[object Array]'; }; function map (xs, f) { if (xs.map) return xs.map(f); var res = []; for (var i = 0; i < xs.length; i++) { res.push(f(xs[i], i)); } return res; } var objectKeys = Object.keys || function (obj) { var res = []; for (var key in obj) { if (Object.prototype.hasOwnProperty.call(obj, key)) res.push(key); } return res; }; },{}],130:[function(require,module,exports){ 'use strict'; exports.decode = exports.parse = require('./decode'); exports.encode = exports.stringify = require('./encode'); },{"./decode":128,"./encode":129}],131:[function(require,module,exports){ (function (process,global,Buffer){ 'use strict' function oldBrowser () { throw new Error('secure random number generation not supported by this browser\nuse chrome, FireFox or Internet Explorer 11') } var crypto = global.crypto || global.msCrypto if (crypto && crypto.getRandomValues) { module.exports = randomBytes } else { module.exports = oldBrowser } function randomBytes (size, cb) { // phantomjs needs to throw if (size > 65536) throw new Error('requested too many random bytes') // in case browserify isn't using the Uint8Array version var rawBytes = new global.Uint8Array(size) // This will not work in older browsers. // See https://developer.mozilla.org/en-US/docs/Web/API/window.crypto.getRandomValues if (size > 0) { // getRandomValues fails on IE if size == 0 crypto.getRandomValues(rawBytes) } // phantomjs doesn't like a buffer being passed here var bytes = new Buffer(rawBytes.buffer) if (typeof cb === 'function') { return process.nextTick(function () { cb(null, bytes) }) } return bytes } }).call(this,require('_process'),typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {},require("buffer").Buffer) },{"_process":120,"buffer":49}],132:[function(require,module,exports){ module.exports = require("./lib/_stream_duplex.js") },{"./lib/_stream_duplex.js":133}],133:[function(require,module,exports){ // a duplex stream is just a stream that is both readable and writable. // Since JS doesn't have multiple prototypal inheritance, this class // prototypally inherits from Readable, and then parasitically from // Writable. 'use strict'; /**/ var objectKeys = Object.keys || function (obj) { var keys = []; for (var key in obj) { keys.push(key); }return keys; }; /**/ module.exports = Duplex; /**/ var processNextTick = require('process-nextick-args'); /**/ /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ var Readable = require('./_stream_readable'); var Writable = require('./_stream_writable'); util.inherits(Duplex, Readable); var keys = objectKeys(Writable.prototype); for (var v = 0; v < keys.length; v++) { var method = keys[v]; if (!Duplex.prototype[method]) Duplex.prototype[method] = Writable.prototype[method]; } function Duplex(options) { if (!(this instanceof Duplex)) return new Duplex(options); Readable.call(this, options); Writable.call(this, options); if (options && options.readable === false) this.readable = false; if (options && options.writable === false) this.writable = false; this.allowHalfOpen = true; if (options && options.allowHalfOpen === false) this.allowHalfOpen = false; this.once('end', onend); } // the no-half-open enforcer function onend() { // if we allow half-open state, or if the writable side ended, // then we're ok. if (this.allowHalfOpen || this._writableState.ended) return; // no more data can be written. // But allow more writes to happen in this tick. processNextTick(onEndNT, this); } function onEndNT(self) { self.end(); } function forEach(xs, f) { for (var i = 0, l = xs.length; i < l; i++) { f(xs[i], i); } } },{"./_stream_readable":135,"./_stream_writable":137,"core-util-is":52,"inherits":97,"process-nextick-args":119}],134:[function(require,module,exports){ // a passthrough stream. // basically just the most minimal sort of Transform stream. // Every written chunk gets output as-is. 'use strict'; module.exports = PassThrough; var Transform = require('./_stream_transform'); /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ util.inherits(PassThrough, Transform); function PassThrough(options) { if (!(this instanceof PassThrough)) return new PassThrough(options); Transform.call(this, options); } PassThrough.prototype._transform = function (chunk, encoding, cb) { cb(null, chunk); }; },{"./_stream_transform":136,"core-util-is":52,"inherits":97}],135:[function(require,module,exports){ (function (process){ 'use strict'; module.exports = Readable; /**/ var processNextTick = require('process-nextick-args'); /**/ /**/ var isArray = require('isarray'); /**/ Readable.ReadableState = ReadableState; /**/ var EE = require('events').EventEmitter; var EElistenerCount = function (emitter, type) { return emitter.listeners(type).length; }; /**/ /**/ var Stream; (function () { try { Stream = require('st' + 'ream'); } catch (_) {} finally { if (!Stream) Stream = require('events').EventEmitter; } })(); /**/ var Buffer = require('buffer').Buffer; /**/ var bufferShim = require('buffer-shims'); /**/ /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ /**/ var debugUtil = require('util'); var debug = void 0; if (debugUtil && debugUtil.debuglog) { debug = debugUtil.debuglog('stream'); } else { debug = function () {}; } /**/ var BufferList = require('./internal/streams/BufferList'); var StringDecoder; util.inherits(Readable, Stream); function prependListener(emitter, event, fn) { if (typeof emitter.prependListener === 'function') { return emitter.prependListener(event, fn); } else { // This is a hack to make sure that our error handler is attached before any // userland ones. NEVER DO THIS. This is here only because this code needs // to continue to work with older versions of Node.js that do not include // the prependListener() method. The goal is to eventually remove this hack. if (!emitter._events || !emitter._events[event]) emitter.on(event, fn);else if (isArray(emitter._events[event])) emitter._events[event].unshift(fn);else emitter._events[event] = [fn, emitter._events[event]]; } } var Duplex; function ReadableState(options, stream) { Duplex = Duplex || require('./_stream_duplex'); options = options || {}; // object stream flag. Used to make read(n) ignore n and to // make all the buffer merging and length checks go away this.objectMode = !!options.objectMode; if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.readableObjectMode; // the point at which it stops calling _read() to fill the buffer // Note: 0 is a valid value, means "don't call _read preemptively ever" var hwm = options.highWaterMark; var defaultHwm = this.objectMode ? 16 : 16 * 1024; this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm; // cast to ints. this.highWaterMark = ~ ~this.highWaterMark; // A linked list is used to store data chunks instead of an array because the // linked list can remove elements from the beginning faster than // array.shift() this.buffer = new BufferList(); this.length = 0; this.pipes = null; this.pipesCount = 0; this.flowing = null; this.ended = false; this.endEmitted = false; this.reading = false; // a flag to be able to tell if the onwrite cb is called immediately, // or on a later tick. We set this to true at first, because any // actions that shouldn't happen until "later" should generally also // not happen before the first write call. this.sync = true; // whenever we return null, then we set a flag to say // that we're awaiting a 'readable' event emission. this.needReadable = false; this.emittedReadable = false; this.readableListening = false; this.resumeScheduled = false; // Crypto is kind of old and crusty. Historically, its default string // encoding is 'binary' so we have to make this configurable. // Everything else in the universe uses 'utf8', though. this.defaultEncoding = options.defaultEncoding || 'utf8'; // when piping, we only care about 'readable' events that happen // after read()ing all the bytes and not getting any pushback. this.ranOut = false; // the number of writers that are awaiting a drain event in .pipe()s this.awaitDrain = 0; // if true, a maybeReadMore has been scheduled this.readingMore = false; this.decoder = null; this.encoding = null; if (options.encoding) { if (!StringDecoder) StringDecoder = require('string_decoder/').StringDecoder; this.decoder = new StringDecoder(options.encoding); this.encoding = options.encoding; } } var Duplex; function Readable(options) { Duplex = Duplex || require('./_stream_duplex'); if (!(this instanceof Readable)) return new Readable(options); this._readableState = new ReadableState(options, this); // legacy this.readable = true; if (options && typeof options.read === 'function') this._read = options.read; Stream.call(this); } // Manually shove something into the read() buffer. // This returns true if the highWaterMark has not been hit yet, // similar to how Writable.write() returns true if you should // write() some more. Readable.prototype.push = function (chunk, encoding) { var state = this._readableState; if (!state.objectMode && typeof chunk === 'string') { encoding = encoding || state.defaultEncoding; if (encoding !== state.encoding) { chunk = bufferShim.from(chunk, encoding); encoding = ''; } } return readableAddChunk(this, state, chunk, encoding, false); }; // Unshift should *always* be something directly out of read() Readable.prototype.unshift = function (chunk) { var state = this._readableState; return readableAddChunk(this, state, chunk, '', true); }; Readable.prototype.isPaused = function () { return this._readableState.flowing === false; }; function readableAddChunk(stream, state, chunk, encoding, addToFront) { var er = chunkInvalid(state, chunk); if (er) { stream.emit('error', er); } else if (chunk === null) { state.reading = false; onEofChunk(stream, state); } else if (state.objectMode || chunk && chunk.length > 0) { if (state.ended && !addToFront) { var e = new Error('stream.push() after EOF'); stream.emit('error', e); } else if (state.endEmitted && addToFront) { var _e = new Error('stream.unshift() after end event'); stream.emit('error', _e); } else { var skipAdd; if (state.decoder && !addToFront && !encoding) { chunk = state.decoder.write(chunk); skipAdd = !state.objectMode && chunk.length === 0; } if (!addToFront) state.reading = false; // Don't add to the buffer if we've decoded to an empty string chunk and // we're not in object mode if (!skipAdd) { // if we want the data now, just emit it. if (state.flowing && state.length === 0 && !state.sync) { stream.emit('data', chunk); stream.read(0); } else { // update the buffer info. state.length += state.objectMode ? 1 : chunk.length; if (addToFront) state.buffer.unshift(chunk);else state.buffer.push(chunk); if (state.needReadable) emitReadable(stream); } } maybeReadMore(stream, state); } } else if (!addToFront) { state.reading = false; } return needMoreData(state); } // if it's past the high water mark, we can push in some more. // Also, if we have no data yet, we can stand some // more bytes. This is to work around cases where hwm=0, // such as the repl. Also, if the push() triggered a // readable event, and the user called read(largeNumber) such that // needReadable was set, then we ought to push more, so that another // 'readable' event will be triggered. function needMoreData(state) { return !state.ended && (state.needReadable || state.length < state.highWaterMark || state.length === 0); } // backwards compatibility. Readable.prototype.setEncoding = function (enc) { if (!StringDecoder) StringDecoder = require('string_decoder/').StringDecoder; this._readableState.decoder = new StringDecoder(enc); this._readableState.encoding = enc; return this; }; // Don't raise the hwm > 8MB var MAX_HWM = 0x800000; function computeNewHighWaterMark(n) { if (n >= MAX_HWM) { n = MAX_HWM; } else { // Get the next highest power of 2 to prevent increasing hwm excessively in // tiny amounts n--; n |= n >>> 1; n |= n >>> 2; n |= n >>> 4; n |= n >>> 8; n |= n >>> 16; n++; } return n; } // This function is designed to be inlinable, so please take care when making // changes to the function body. function howMuchToRead(n, state) { if (n <= 0 || state.length === 0 && state.ended) return 0; if (state.objectMode) return 1; if (n !== n) { // Only flow one buffer at a time if (state.flowing && state.length) return state.buffer.head.data.length;else return state.length; } // If we're asking for more than the current hwm, then raise the hwm. if (n > state.highWaterMark) state.highWaterMark = computeNewHighWaterMark(n); if (n <= state.length) return n; // Don't have enough if (!state.ended) { state.needReadable = true; return 0; } return state.length; } // you can override either this method, or the async _read(n) below. Readable.prototype.read = function (n) { debug('read', n); n = parseInt(n, 10); var state = this._readableState; var nOrig = n; if (n !== 0) state.emittedReadable = false; // if we're doing read(0) to trigger a readable event, but we // already have a bunch of data in the buffer, then just trigger // the 'readable' event and move on. if (n === 0 && state.needReadable && (state.length >= state.highWaterMark || state.ended)) { debug('read: emitReadable', state.length, state.ended); if (state.length === 0 && state.ended) endReadable(this);else emitReadable(this); return null; } n = howMuchToRead(n, state); // if we've ended, and we're now clear, then finish it up. if (n === 0 && state.ended) { if (state.length === 0) endReadable(this); return null; } // All the actual chunk generation logic needs to be // *below* the call to _read. The reason is that in certain // synthetic stream cases, such as passthrough streams, _read // may be a completely synchronous operation which may change // the state of the read buffer, providing enough data when // before there was *not* enough. // // So, the steps are: // 1. Figure out what the state of things will be after we do // a read from the buffer. // // 2. If that resulting state will trigger a _read, then call _read. // Note that this may be asynchronous, or synchronous. Yes, it is // deeply ugly to write APIs this way, but that still doesn't mean // that the Readable class should behave improperly, as streams are // designed to be sync/async agnostic. // Take note if the _read call is sync or async (ie, if the read call // has returned yet), so that we know whether or not it's safe to emit // 'readable' etc. // // 3. Actually pull the requested chunks out of the buffer and return. // if we need a readable event, then we need to do some reading. var doRead = state.needReadable; debug('need readable', doRead); // if we currently have less than the highWaterMark, then also read some if (state.length === 0 || state.length - n < state.highWaterMark) { doRead = true; debug('length less than watermark', doRead); } // however, if we've ended, then there's no point, and if we're already // reading, then it's unnecessary. if (state.ended || state.reading) { doRead = false; debug('reading or ended', doRead); } else if (doRead) { debug('do read'); state.reading = true; state.sync = true; // if the length is currently zero, then we *need* a readable event. if (state.length === 0) state.needReadable = true; // call internal read method this._read(state.highWaterMark); state.sync = false; // If _read pushed data synchronously, then `reading` will be false, // and we need to re-evaluate how much data we can return to the user. if (!state.reading) n = howMuchToRead(nOrig, state); } var ret; if (n > 0) ret = fromList(n, state);else ret = null; if (ret === null) { state.needReadable = true; n = 0; } else { state.length -= n; } if (state.length === 0) { // If we have nothing in the buffer, then we want to know // as soon as we *do* get something into the buffer. if (!state.ended) state.needReadable = true; // If we tried to read() past the EOF, then emit end on the next tick. if (nOrig !== n && state.ended) endReadable(this); } if (ret !== null) this.emit('data', ret); return ret; }; function chunkInvalid(state, chunk) { var er = null; if (!Buffer.isBuffer(chunk) && typeof chunk !== 'string' && chunk !== null && chunk !== undefined && !state.objectMode) { er = new TypeError('Invalid non-string/buffer chunk'); } return er; } function onEofChunk(stream, state) { if (state.ended) return; if (state.decoder) { var chunk = state.decoder.end(); if (chunk && chunk.length) { state.buffer.push(chunk); state.length += state.objectMode ? 1 : chunk.length; } } state.ended = true; // emit 'readable' now to make sure it gets picked up. emitReadable(stream); } // Don't emit readable right away in sync mode, because this can trigger // another read() call => stack overflow. This way, it might trigger // a nextTick recursion warning, but that's not so bad. function emitReadable(stream) { var state = stream._readableState; state.needReadable = false; if (!state.emittedReadable) { debug('emitReadable', state.flowing); state.emittedReadable = true; if (state.sync) processNextTick(emitReadable_, stream);else emitReadable_(stream); } } function emitReadable_(stream) { debug('emit readable'); stream.emit('readable'); flow(stream); } // at this point, the user has presumably seen the 'readable' event, // and called read() to consume some data. that may have triggered // in turn another _read(n) call, in which case reading = true if // it's in progress. // However, if we're not ended, or reading, and the length < hwm, // then go ahead and try to read some more preemptively. function maybeReadMore(stream, state) { if (!state.readingMore) { state.readingMore = true; processNextTick(maybeReadMore_, stream, state); } } function maybeReadMore_(stream, state) { var len = state.length; while (!state.reading && !state.flowing && !state.ended && state.length < state.highWaterMark) { debug('maybeReadMore read 0'); stream.read(0); if (len === state.length) // didn't get any data, stop spinning. break;else len = state.length; } state.readingMore = false; } // abstract method. to be overridden in specific implementation classes. // call cb(er, data) where data is <= n in length. // for virtual (non-string, non-buffer) streams, "length" is somewhat // arbitrary, and perhaps not very meaningful. Readable.prototype._read = function (n) { this.emit('error', new Error('not implemented')); }; Readable.prototype.pipe = function (dest, pipeOpts) { var src = this; var state = this._readableState; switch (state.pipesCount) { case 0: state.pipes = dest; break; case 1: state.pipes = [state.pipes, dest]; break; default: state.pipes.push(dest); break; } state.pipesCount += 1; debug('pipe count=%d opts=%j', state.pipesCount, pipeOpts); var doEnd = (!pipeOpts || pipeOpts.end !== false) && dest !== process.stdout && dest !== process.stderr; var endFn = doEnd ? onend : cleanup; if (state.endEmitted) processNextTick(endFn);else src.once('end', endFn); dest.on('unpipe', onunpipe); function onunpipe(readable) { debug('onunpipe'); if (readable === src) { cleanup(); } } function onend() { debug('onend'); dest.end(); } // when the dest drains, it reduces the awaitDrain counter // on the source. This would be more elegant with a .once() // handler in flow(), but adding and removing repeatedly is // too slow. var ondrain = pipeOnDrain(src); dest.on('drain', ondrain); var cleanedUp = false; function cleanup() { debug('cleanup'); // cleanup event handlers once the pipe is broken dest.removeListener('close', onclose); dest.removeListener('finish', onfinish); dest.removeListener('drain', ondrain); dest.removeListener('error', onerror); dest.removeListener('unpipe', onunpipe); src.removeListener('end', onend); src.removeListener('end', cleanup); src.removeListener('data', ondata); cleanedUp = true; // if the reader is waiting for a drain event from this // specific writer, then it would cause it to never start // flowing again. // So, if this is awaiting a drain, then we just call it now. // If we don't know, then assume that we are waiting for one. if (state.awaitDrain && (!dest._writableState || dest._writableState.needDrain)) ondrain(); } // If the user pushes more data while we're writing to dest then we'll end up // in ondata again. However, we only want to increase awaitDrain once because // dest will only emit one 'drain' event for the multiple writes. // => Introduce a guard on increasing awaitDrain. var increasedAwaitDrain = false; src.on('data', ondata); function ondata(chunk) { debug('ondata'); increasedAwaitDrain = false; var ret = dest.write(chunk); if (false === ret && !increasedAwaitDrain) { // If the user unpiped during `dest.write()`, it is possible // to get stuck in a permanently paused state if that write // also returned false. // => Check whether `dest` is still a piping destination. if ((state.pipesCount === 1 && state.pipes === dest || state.pipesCount > 1 && indexOf(state.pipes, dest) !== -1) && !cleanedUp) { debug('false write response, pause', src._readableState.awaitDrain); src._readableState.awaitDrain++; increasedAwaitDrain = true; } src.pause(); } } // if the dest has an error, then stop piping into it. // however, don't suppress the throwing behavior for this. function onerror(er) { debug('onerror', er); unpipe(); dest.removeListener('error', onerror); if (EElistenerCount(dest, 'error') === 0) dest.emit('error', er); } // Make sure our error handler is attached before userland ones. prependListener(dest, 'error', onerror); // Both close and finish should trigger unpipe, but only once. function onclose() { dest.removeListener('finish', onfinish); unpipe(); } dest.once('close', onclose); function onfinish() { debug('onfinish'); dest.removeListener('close', onclose); unpipe(); } dest.once('finish', onfinish); function unpipe() { debug('unpipe'); src.unpipe(dest); } // tell the dest that it's being piped to dest.emit('pipe', src); // start the flow if it hasn't been started already. if (!state.flowing) { debug('pipe resume'); src.resume(); } return dest; }; function pipeOnDrain(src) { return function () { var state = src._readableState; debug('pipeOnDrain', state.awaitDrain); if (state.awaitDrain) state.awaitDrain--; if (state.awaitDrain === 0 && EElistenerCount(src, 'data')) { state.flowing = true; flow(src); } }; } Readable.prototype.unpipe = function (dest) { var state = this._readableState; // if we're not piping anywhere, then do nothing. if (state.pipesCount === 0) return this; // just one destination. most common case. if (state.pipesCount === 1) { // passed in one, but it's not the right one. if (dest && dest !== state.pipes) return this; if (!dest) dest = state.pipes; // got a match. state.pipes = null; state.pipesCount = 0; state.flowing = false; if (dest) dest.emit('unpipe', this); return this; } // slow case. multiple pipe destinations. if (!dest) { // remove all. var dests = state.pipes; var len = state.pipesCount; state.pipes = null; state.pipesCount = 0; state.flowing = false; for (var _i = 0; _i < len; _i++) { dests[_i].emit('unpipe', this); }return this; } // try to find the right one. var i = indexOf(state.pipes, dest); if (i === -1) return this; state.pipes.splice(i, 1); state.pipesCount -= 1; if (state.pipesCount === 1) state.pipes = state.pipes[0]; dest.emit('unpipe', this); return this; }; // set up data events if they are asked for // Ensure readable listeners eventually get something Readable.prototype.on = function (ev, fn) { var res = Stream.prototype.on.call(this, ev, fn); if (ev === 'data') { // Start flowing on next tick if stream isn't explicitly paused if (this._readableState.flowing !== false) this.resume(); } else if (ev === 'readable') { var state = this._readableState; if (!state.endEmitted && !state.readableListening) { state.readableListening = state.needReadable = true; state.emittedReadable = false; if (!state.reading) { processNextTick(nReadingNextTick, this); } else if (state.length) { emitReadable(this, state); } } } return res; }; Readable.prototype.addListener = Readable.prototype.on; function nReadingNextTick(self) { debug('readable nexttick read 0'); self.read(0); } // pause() and resume() are remnants of the legacy readable stream API // If the user uses them, then switch into old mode. Readable.prototype.resume = function () { var state = this._readableState; if (!state.flowing) { debug('resume'); state.flowing = true; resume(this, state); } return this; }; function resume(stream, state) { if (!state.resumeScheduled) { state.resumeScheduled = true; processNextTick(resume_, stream, state); } } function resume_(stream, state) { if (!state.reading) { debug('resume read 0'); stream.read(0); } state.resumeScheduled = false; state.awaitDrain = 0; stream.emit('resume'); flow(stream); if (state.flowing && !state.reading) stream.read(0); } Readable.prototype.pause = function () { debug('call pause flowing=%j', this._readableState.flowing); if (false !== this._readableState.flowing) { debug('pause'); this._readableState.flowing = false; this.emit('pause'); } return this; }; function flow(stream) { var state = stream._readableState; debug('flow', state.flowing); while (state.flowing && stream.read() !== null) {} } // wrap an old-style stream as the async data source. // This is *not* part of the readable stream interface. // It is an ugly unfortunate mess of history. Readable.prototype.wrap = function (stream) { var state = this._readableState; var paused = false; var self = this; stream.on('end', function () { debug('wrapped end'); if (state.decoder && !state.ended) { var chunk = state.decoder.end(); if (chunk && chunk.length) self.push(chunk); } self.push(null); }); stream.on('data', function (chunk) { debug('wrapped data'); if (state.decoder) chunk = state.decoder.write(chunk); // don't skip over falsy values in objectMode if (state.objectMode && (chunk === null || chunk === undefined)) return;else if (!state.objectMode && (!chunk || !chunk.length)) return; var ret = self.push(chunk); if (!ret) { paused = true; stream.pause(); } }); // proxy all the other methods. // important when wrapping filters and duplexes. for (var i in stream) { if (this[i] === undefined && typeof stream[i] === 'function') { this[i] = function (method) { return function () { return stream[method].apply(stream, arguments); }; }(i); } } // proxy certain important events. var events = ['error', 'close', 'destroy', 'pause', 'resume']; forEach(events, function (ev) { stream.on(ev, self.emit.bind(self, ev)); }); // when we try to consume some more bytes, simply unpause the // underlying stream. self._read = function (n) { debug('wrapped _read', n); if (paused) { paused = false; stream.resume(); } }; return self; }; // exposed for testing purposes only. Readable._fromList = fromList; // Pluck off n bytes from an array of buffers. // Length is the combined lengths of all the buffers in the list. // This function is designed to be inlinable, so please take care when making // changes to the function body. function fromList(n, state) { // nothing buffered if (state.length === 0) return null; var ret; if (state.objectMode) ret = state.buffer.shift();else if (!n || n >= state.length) { // read it all, truncate the list if (state.decoder) ret = state.buffer.join('');else if (state.buffer.length === 1) ret = state.buffer.head.data;else ret = state.buffer.concat(state.length); state.buffer.clear(); } else { // read part of list ret = fromListPartial(n, state.buffer, state.decoder); } return ret; } // Extracts only enough buffered data to satisfy the amount requested. // This function is designed to be inlinable, so please take care when making // changes to the function body. function fromListPartial(n, list, hasStrings) { var ret; if (n < list.head.data.length) { // slice is the same for buffers and strings ret = list.head.data.slice(0, n); list.head.data = list.head.data.slice(n); } else if (n === list.head.data.length) { // first chunk is a perfect match ret = list.shift(); } else { // result spans more than one buffer ret = hasStrings ? copyFromBufferString(n, list) : copyFromBuffer(n, list); } return ret; } // Copies a specified amount of characters from the list of buffered data // chunks. // This function is designed to be inlinable, so please take care when making // changes to the function body. function copyFromBufferString(n, list) { var p = list.head; var c = 1; var ret = p.data; n -= ret.length; while (p = p.next) { var str = p.data; var nb = n > str.length ? str.length : n; if (nb === str.length) ret += str;else ret += str.slice(0, n); n -= nb; if (n === 0) { if (nb === str.length) { ++c; if (p.next) list.head = p.next;else list.head = list.tail = null; } else { list.head = p; p.data = str.slice(nb); } break; } ++c; } list.length -= c; return ret; } // Copies a specified amount of bytes from the list of buffered data chunks. // This function is designed to be inlinable, so please take care when making // changes to the function body. function copyFromBuffer(n, list) { var ret = bufferShim.allocUnsafe(n); var p = list.head; var c = 1; p.data.copy(ret); n -= p.data.length; while (p = p.next) { var buf = p.data; var nb = n > buf.length ? buf.length : n; buf.copy(ret, ret.length - n, 0, nb); n -= nb; if (n === 0) { if (nb === buf.length) { ++c; if (p.next) list.head = p.next;else list.head = list.tail = null; } else { list.head = p; p.data = buf.slice(nb); } break; } ++c; } list.length -= c; return ret; } function endReadable(stream) { var state = stream._readableState; // If we get here before consuming all the bytes, then that is a // bug in node. Should never happen. if (state.length > 0) throw new Error('"endReadable()" called on non-empty stream'); if (!state.endEmitted) { state.ended = true; processNextTick(endReadableNT, state, stream); } } function endReadableNT(state, stream) { // Check that we didn't get one last unshift. if (!state.endEmitted && state.length === 0) { state.endEmitted = true; stream.readable = false; stream.emit('end'); } } function forEach(xs, f) { for (var i = 0, l = xs.length; i < l; i++) { f(xs[i], i); } } function indexOf(xs, x) { for (var i = 0, l = xs.length; i < l; i++) { if (xs[i] === x) return i; } return -1; } }).call(this,require('_process')) },{"./_stream_duplex":133,"./internal/streams/BufferList":138,"_process":120,"buffer":49,"buffer-shims":47,"core-util-is":52,"events":86,"inherits":97,"isarray":99,"process-nextick-args":119,"string_decoder/":157,"util":20}],136:[function(require,module,exports){ // a transform stream is a readable/writable stream where you do // something with the data. Sometimes it's called a "filter", // but that's not a great name for it, since that implies a thing where // some bits pass through, and others are simply ignored. (That would // be a valid example of a transform, of course.) // // While the output is causally related to the input, it's not a // necessarily symmetric or synchronous transformation. For example, // a zlib stream might take multiple plain-text writes(), and then // emit a single compressed chunk some time in the future. // // Here's how this works: // // The Transform stream has all the aspects of the readable and writable // stream classes. When you write(chunk), that calls _write(chunk,cb) // internally, and returns false if there's a lot of pending writes // buffered up. When you call read(), that calls _read(n) until // there's enough pending readable data buffered up. // // In a transform stream, the written data is placed in a buffer. When // _read(n) is called, it transforms the queued up data, calling the // buffered _write cb's as it consumes chunks. If consuming a single // written chunk would result in multiple output chunks, then the first // outputted bit calls the readcb, and subsequent chunks just go into // the read buffer, and will cause it to emit 'readable' if necessary. // // This way, back-pressure is actually determined by the reading side, // since _read has to be called to start processing a new chunk. However, // a pathological inflate type of transform can cause excessive buffering // here. For example, imagine a stream where every byte of input is // interpreted as an integer from 0-255, and then results in that many // bytes of output. Writing the 4 bytes {ff,ff,ff,ff} would result in // 1kb of data being output. In this case, you could write a very small // amount of input, and end up with a very large amount of output. In // such a pathological inflating mechanism, there'd be no way to tell // the system to stop doing the transform. A single 4MB write could // cause the system to run out of memory. // // However, even in such a pathological case, only a single written chunk // would be consumed, and then the rest would wait (un-transformed) until // the results of the previous transformed chunk were consumed. 'use strict'; module.exports = Transform; var Duplex = require('./_stream_duplex'); /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ util.inherits(Transform, Duplex); function TransformState(stream) { this.afterTransform = function (er, data) { return afterTransform(stream, er, data); }; this.needTransform = false; this.transforming = false; this.writecb = null; this.writechunk = null; this.writeencoding = null; } function afterTransform(stream, er, data) { var ts = stream._transformState; ts.transforming = false; var cb = ts.writecb; if (!cb) return stream.emit('error', new Error('no writecb in Transform class')); ts.writechunk = null; ts.writecb = null; if (data !== null && data !== undefined) stream.push(data); cb(er); var rs = stream._readableState; rs.reading = false; if (rs.needReadable || rs.length < rs.highWaterMark) { stream._read(rs.highWaterMark); } } function Transform(options) { if (!(this instanceof Transform)) return new Transform(options); Duplex.call(this, options); this._transformState = new TransformState(this); // when the writable side finishes, then flush out anything remaining. var stream = this; // start out asking for a readable event once data is transformed. this._readableState.needReadable = true; // we have implemented the _read method, and done the other things // that Readable wants before the first _read call, so unset the // sync guard flag. this._readableState.sync = false; if (options) { if (typeof options.transform === 'function') this._transform = options.transform; if (typeof options.flush === 'function') this._flush = options.flush; } this.once('prefinish', function () { if (typeof this._flush === 'function') this._flush(function (er) { done(stream, er); });else done(stream); }); } Transform.prototype.push = function (chunk, encoding) { this._transformState.needTransform = false; return Duplex.prototype.push.call(this, chunk, encoding); }; // This is the part where you do stuff! // override this function in implementation classes. // 'chunk' is an input chunk. // // Call `push(newChunk)` to pass along transformed output // to the readable side. You may call 'push' zero or more times. // // Call `cb(err)` when you are done with this chunk. If you pass // an error, then that'll put the hurt on the whole operation. If you // never call cb(), then you'll never get another chunk. Transform.prototype._transform = function (chunk, encoding, cb) { throw new Error('Not implemented'); }; Transform.prototype._write = function (chunk, encoding, cb) { var ts = this._transformState; ts.writecb = cb; ts.writechunk = chunk; ts.writeencoding = encoding; if (!ts.transforming) { var rs = this._readableState; if (ts.needTransform || rs.needReadable || rs.length < rs.highWaterMark) this._read(rs.highWaterMark); } }; // Doesn't matter what the args are here. // _transform does all the work. // That we got here means that the readable side wants more data. Transform.prototype._read = function (n) { var ts = this._transformState; if (ts.writechunk !== null && ts.writecb && !ts.transforming) { ts.transforming = true; this._transform(ts.writechunk, ts.writeencoding, ts.afterTransform); } else { // mark that we need a transform, so that any data that comes in // will get processed, now that we've asked for it. ts.needTransform = true; } }; function done(stream, er) { if (er) return stream.emit('error', er); // if there's nothing in the write buffer, then that means // that nothing more will ever be provided var ws = stream._writableState; var ts = stream._transformState; if (ws.length) throw new Error('Calling transform done when ws.length != 0'); if (ts.transforming) throw new Error('Calling transform done when still transforming'); return stream.push(null); } },{"./_stream_duplex":133,"core-util-is":52,"inherits":97}],137:[function(require,module,exports){ (function (process){ // A bit simpler than readable streams. // Implement an async ._write(chunk, encoding, cb), and it'll handle all // the drain event emission and buffering. 'use strict'; module.exports = Writable; /**/ var processNextTick = require('process-nextick-args'); /**/ /**/ var asyncWrite = !process.browser && ['v0.10', 'v0.9.'].indexOf(process.version.slice(0, 5)) > -1 ? setImmediate : processNextTick; /**/ Writable.WritableState = WritableState; /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ /**/ var internalUtil = { deprecate: require('util-deprecate') }; /**/ /**/ var Stream; (function () { try { Stream = require('st' + 'ream'); } catch (_) {} finally { if (!Stream) Stream = require('events').EventEmitter; } })(); /**/ var Buffer = require('buffer').Buffer; /**/ var bufferShim = require('buffer-shims'); /**/ util.inherits(Writable, Stream); function nop() {} function WriteReq(chunk, encoding, cb) { this.chunk = chunk; this.encoding = encoding; this.callback = cb; this.next = null; } var Duplex; function WritableState(options, stream) { Duplex = Duplex || require('./_stream_duplex'); options = options || {}; // object stream flag to indicate whether or not this stream // contains buffers or objects. this.objectMode = !!options.objectMode; if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.writableObjectMode; // the point at which write() starts returning false // Note: 0 is a valid value, means that we always return false if // the entire buffer is not flushed immediately on write() var hwm = options.highWaterMark; var defaultHwm = this.objectMode ? 16 : 16 * 1024; this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm; // cast to ints. this.highWaterMark = ~ ~this.highWaterMark; this.needDrain = false; // at the start of calling end() this.ending = false; // when end() has been called, and returned this.ended = false; // when 'finish' is emitted this.finished = false; // should we decode strings into buffers before passing to _write? // this is here so that some node-core streams can optimize string // handling at a lower level. var noDecode = options.decodeStrings === false; this.decodeStrings = !noDecode; // Crypto is kind of old and crusty. Historically, its default string // encoding is 'binary' so we have to make this configurable. // Everything else in the universe uses 'utf8', though. this.defaultEncoding = options.defaultEncoding || 'utf8'; // not an actual buffer we keep track of, but a measurement // of how much we're waiting to get pushed to some underlying // socket or file. this.length = 0; // a flag to see when we're in the middle of a write. this.writing = false; // when true all writes will be buffered until .uncork() call this.corked = 0; // a flag to be able to tell if the onwrite cb is called immediately, // or on a later tick. We set this to true at first, because any // actions that shouldn't happen until "later" should generally also // not happen before the first write call. this.sync = true; // a flag to know if we're processing previously buffered items, which // may call the _write() callback in the same tick, so that we don't // end up in an overlapped onwrite situation. this.bufferProcessing = false; // the callback that's passed to _write(chunk,cb) this.onwrite = function (er) { onwrite(stream, er); }; // the callback that the user supplies to write(chunk,encoding,cb) this.writecb = null; // the amount that is being written when _write is called. this.writelen = 0; this.bufferedRequest = null; this.lastBufferedRequest = null; // number of pending user-supplied write callbacks // this must be 0 before 'finish' can be emitted this.pendingcb = 0; // emit prefinish if the only thing we're waiting for is _write cbs // This is relevant for synchronous Transform streams this.prefinished = false; // True if the error was already emitted and should not be thrown again this.errorEmitted = false; // count buffered requests this.bufferedRequestCount = 0; // allocate the first CorkedRequest, there is always // one allocated and free to use, and we maintain at most two this.corkedRequestsFree = new CorkedRequest(this); } WritableState.prototype.getBuffer = function writableStateGetBuffer() { var current = this.bufferedRequest; var out = []; while (current) { out.push(current); current = current.next; } return out; }; (function () { try { Object.defineProperty(WritableState.prototype, 'buffer', { get: internalUtil.deprecate(function () { return this.getBuffer(); }, '_writableState.buffer is deprecated. Use _writableState.getBuffer ' + 'instead.') }); } catch (_) {} })(); var Duplex; function Writable(options) { Duplex = Duplex || require('./_stream_duplex'); // Writable ctor is applied to Duplexes, though they're not // instanceof Writable, they're instanceof Readable. if (!(this instanceof Writable) && !(this instanceof Duplex)) return new Writable(options); this._writableState = new WritableState(options, this); // legacy. this.writable = true; if (options) { if (typeof options.write === 'function') this._write = options.write; if (typeof options.writev === 'function') this._writev = options.writev; } Stream.call(this); } // Otherwise people can pipe Writable streams, which is just wrong. Writable.prototype.pipe = function () { this.emit('error', new Error('Cannot pipe, not readable')); }; function writeAfterEnd(stream, cb) { var er = new Error('write after end'); // TODO: defer error events consistently everywhere, not just the cb stream.emit('error', er); processNextTick(cb, er); } // If we get something that is not a buffer, string, null, or undefined, // and we're not in objectMode, then that's an error. // Otherwise stream chunks are all considered to be of length=1, and the // watermarks determine how many objects to keep in the buffer, rather than // how many bytes or characters. function validChunk(stream, state, chunk, cb) { var valid = true; var er = false; // Always throw error if a null is written // if we are not in object mode then throw // if it is not a buffer, string, or undefined. if (chunk === null) { er = new TypeError('May not write null values to stream'); } else if (!Buffer.isBuffer(chunk) && typeof chunk !== 'string' && chunk !== undefined && !state.objectMode) { er = new TypeError('Invalid non-string/buffer chunk'); } if (er) { stream.emit('error', er); processNextTick(cb, er); valid = false; } return valid; } Writable.prototype.write = function (chunk, encoding, cb) { var state = this._writableState; var ret = false; if (typeof encoding === 'function') { cb = encoding; encoding = null; } if (Buffer.isBuffer(chunk)) encoding = 'buffer';else if (!encoding) encoding = state.defaultEncoding; if (typeof cb !== 'function') cb = nop; if (state.ended) writeAfterEnd(this, cb);else if (validChunk(this, state, chunk, cb)) { state.pendingcb++; ret = writeOrBuffer(this, state, chunk, encoding, cb); } return ret; }; Writable.prototype.cork = function () { var state = this._writableState; state.corked++; }; Writable.prototype.uncork = function () { var state = this._writableState; if (state.corked) { state.corked--; if (!state.writing && !state.corked && !state.finished && !state.bufferProcessing && state.bufferedRequest) clearBuffer(this, state); } }; Writable.prototype.setDefaultEncoding = function setDefaultEncoding(encoding) { // node::ParseEncoding() requires lower case. if (typeof encoding === 'string') encoding = encoding.toLowerCase(); if (!(['hex', 'utf8', 'utf-8', 'ascii', 'binary', 'base64', 'ucs2', 'ucs-2', 'utf16le', 'utf-16le', 'raw'].indexOf((encoding + '').toLowerCase()) > -1)) throw new TypeError('Unknown encoding: ' + encoding); this._writableState.defaultEncoding = encoding; return this; }; function decodeChunk(state, chunk, encoding) { if (!state.objectMode && state.decodeStrings !== false && typeof chunk === 'string') { chunk = bufferShim.from(chunk, encoding); } return chunk; } // if we're already writing something, then just put this // in the queue, and wait our turn. Otherwise, call _write // If we return false, then we need a drain event, so set that flag. function writeOrBuffer(stream, state, chunk, encoding, cb) { chunk = decodeChunk(state, chunk, encoding); if (Buffer.isBuffer(chunk)) encoding = 'buffer'; var len = state.objectMode ? 1 : chunk.length; state.length += len; var ret = state.length < state.highWaterMark; // we must ensure that previous needDrain will not be reset to false. if (!ret) state.needDrain = true; if (state.writing || state.corked) { var last = state.lastBufferedRequest; state.lastBufferedRequest = new WriteReq(chunk, encoding, cb); if (last) { last.next = state.lastBufferedRequest; } else { state.bufferedRequest = state.lastBufferedRequest; } state.bufferedRequestCount += 1; } else { doWrite(stream, state, false, len, chunk, encoding, cb); } return ret; } function doWrite(stream, state, writev, len, chunk, encoding, cb) { state.writelen = len; state.writecb = cb; state.writing = true; state.sync = true; if (writev) stream._writev(chunk, state.onwrite);else stream._write(chunk, encoding, state.onwrite); state.sync = false; } function onwriteError(stream, state, sync, er, cb) { --state.pendingcb; if (sync) processNextTick(cb, er);else cb(er); stream._writableState.errorEmitted = true; stream.emit('error', er); } function onwriteStateUpdate(state) { state.writing = false; state.writecb = null; state.length -= state.writelen; state.writelen = 0; } function onwrite(stream, er) { var state = stream._writableState; var sync = state.sync; var cb = state.writecb; onwriteStateUpdate(state); if (er) onwriteError(stream, state, sync, er, cb);else { // Check if we're actually ready to finish, but don't emit yet var finished = needFinish(state); if (!finished && !state.corked && !state.bufferProcessing && state.bufferedRequest) { clearBuffer(stream, state); } if (sync) { /**/ asyncWrite(afterWrite, stream, state, finished, cb); /**/ } else { afterWrite(stream, state, finished, cb); } } } function afterWrite(stream, state, finished, cb) { if (!finished) onwriteDrain(stream, state); state.pendingcb--; cb(); finishMaybe(stream, state); } // Must force callback to be called on nextTick, so that we don't // emit 'drain' before the write() consumer gets the 'false' return // value, and has a chance to attach a 'drain' listener. function onwriteDrain(stream, state) { if (state.length === 0 && state.needDrain) { state.needDrain = false; stream.emit('drain'); } } // if there's something in the buffer waiting, then process it function clearBuffer(stream, state) { state.bufferProcessing = true; var entry = state.bufferedRequest; if (stream._writev && entry && entry.next) { // Fast case, write everything using _writev() var l = state.bufferedRequestCount; var buffer = new Array(l); var holder = state.corkedRequestsFree; holder.entry = entry; var count = 0; while (entry) { buffer[count] = entry; entry = entry.next; count += 1; } doWrite(stream, state, true, state.length, buffer, '', holder.finish); // doWrite is almost always async, defer these to save a bit of time // as the hot path ends with doWrite state.pendingcb++; state.lastBufferedRequest = null; if (holder.next) { state.corkedRequestsFree = holder.next; holder.next = null; } else { state.corkedRequestsFree = new CorkedRequest(state); } } else { // Slow case, write chunks one-by-one while (entry) { var chunk = entry.chunk; var encoding = entry.encoding; var cb = entry.callback; var len = state.objectMode ? 1 : chunk.length; doWrite(stream, state, false, len, chunk, encoding, cb); entry = entry.next; // if we didn't call the onwrite immediately, then // it means that we need to wait until it does. // also, that means that the chunk and cb are currently // being processed, so move the buffer counter past them. if (state.writing) { break; } } if (entry === null) state.lastBufferedRequest = null; } state.bufferedRequestCount = 0; state.bufferedRequest = entry; state.bufferProcessing = false; } Writable.prototype._write = function (chunk, encoding, cb) { cb(new Error('not implemented')); }; Writable.prototype._writev = null; Writable.prototype.end = function (chunk, encoding, cb) { var state = this._writableState; if (typeof chunk === 'function') { cb = chunk; chunk = null; encoding = null; } else if (typeof encoding === 'function') { cb = encoding; encoding = null; } if (chunk !== null && chunk !== undefined) this.write(chunk, encoding); // .end() fully uncorks if (state.corked) { state.corked = 1; this.uncork(); } // ignore unnecessary end() calls. if (!state.ending && !state.finished) endWritable(this, state, cb); }; function needFinish(state) { return state.ending && state.length === 0 && state.bufferedRequest === null && !state.finished && !state.writing; } function prefinish(stream, state) { if (!state.prefinished) { state.prefinished = true; stream.emit('prefinish'); } } function finishMaybe(stream, state) { var need = needFinish(state); if (need) { if (state.pendingcb === 0) { prefinish(stream, state); state.finished = true; stream.emit('finish'); } else { prefinish(stream, state); } } return need; } function endWritable(stream, state, cb) { state.ending = true; finishMaybe(stream, state); if (cb) { if (state.finished) processNextTick(cb);else stream.once('finish', cb); } state.ended = true; stream.writable = false; } // It seems a linked list but it is not // there will be only 2 of these for each stream function CorkedRequest(state) { var _this = this; this.next = null; this.entry = null; this.finish = function (err) { var entry = _this.entry; _this.entry = null; while (entry) { var cb = entry.callback; state.pendingcb--; cb(err); entry = entry.next; } if (state.corkedRequestsFree) { state.corkedRequestsFree.next = _this; } else { state.corkedRequestsFree = _this; } }; } }).call(this,require('_process')) },{"./_stream_duplex":133,"_process":120,"buffer":49,"buffer-shims":47,"core-util-is":52,"events":86,"inherits":97,"process-nextick-args":119,"util-deprecate":161}],138:[function(require,module,exports){ 'use strict'; var Buffer = require('buffer').Buffer; /**/ var bufferShim = require('buffer-shims'); /**/ module.exports = BufferList; function BufferList() { this.head = null; this.tail = null; this.length = 0; } BufferList.prototype.push = function (v) { var entry = { data: v, next: null }; if (this.length > 0) this.tail.next = entry;else this.head = entry; this.tail = entry; ++this.length; }; BufferList.prototype.unshift = function (v) { var entry = { data: v, next: this.head }; if (this.length === 0) this.tail = entry; this.head = entry; ++this.length; }; BufferList.prototype.shift = function () { if (this.length === 0) return; var ret = this.head.data; if (this.length === 1) this.head = this.tail = null;else this.head = this.head.next; --this.length; return ret; }; BufferList.prototype.clear = function () { this.head = this.tail = null; this.length = 0; }; BufferList.prototype.join = function (s) { if (this.length === 0) return ''; var p = this.head; var ret = '' + p.data; while (p = p.next) { ret += s + p.data; }return ret; }; BufferList.prototype.concat = function (n) { if (this.length === 0) return bufferShim.alloc(0); if (this.length === 1) return this.head.data; var ret = bufferShim.allocUnsafe(n >>> 0); var p = this.head; var i = 0; while (p) { p.data.copy(ret, i); i += p.data.length; p = p.next; } return ret; }; },{"buffer":49,"buffer-shims":47}],139:[function(require,module,exports){ module.exports = require("./lib/_stream_passthrough.js") },{"./lib/_stream_passthrough.js":134}],140:[function(require,module,exports){ (function (process){ var Stream = (function (){ try { return require('st' + 'ream'); // hack to fix a circular dependency issue when used with browserify } catch(_){} }()); exports = module.exports = require('./lib/_stream_readable.js'); exports.Stream = Stream || exports; exports.Readable = exports; exports.Writable = require('./lib/_stream_writable.js'); exports.Duplex = require('./lib/_stream_duplex.js'); exports.Transform = require('./lib/_stream_transform.js'); exports.PassThrough = require('./lib/_stream_passthrough.js'); if (!process.browser && process.env.READABLE_STREAM === 'disable' && Stream) { module.exports = Stream; } }).call(this,require('_process')) },{"./lib/_stream_duplex.js":133,"./lib/_stream_passthrough.js":134,"./lib/_stream_readable.js":135,"./lib/_stream_transform.js":136,"./lib/_stream_writable.js":137,"_process":120}],141:[function(require,module,exports){ module.exports = require("./lib/_stream_transform.js") },{"./lib/_stream_transform.js":136}],142:[function(require,module,exports){ module.exports = require("./lib/_stream_writable.js") },{"./lib/_stream_writable.js":137}],143:[function(require,module,exports){ (function (Buffer){ /* CryptoJS v3.1.2 code.google.com/p/crypto-js (c) 2009-2013 by Jeff Mott. All rights reserved. code.google.com/p/crypto-js/wiki/License */ /** @preserve (c) 2012 by Cédric Mesnil. All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ // constants table var zl = [ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13 ] var zr = [ 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11 ] var sl = [ 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 ] var sr = [ 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 ] var hl = [0x00000000, 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xA953FD4E] var hr = [0x50A28BE6, 0x5C4DD124, 0x6D703EF3, 0x7A6D76E9, 0x00000000] function bytesToWords (bytes) { var words = [] for (var i = 0, b = 0; i < bytes.length; i++, b += 8) { words[b >>> 5] |= bytes[i] << (24 - b % 32) } return words } function wordsToBytes (words) { var bytes = [] for (var b = 0; b < words.length * 32; b += 8) { bytes.push((words[b >>> 5] >>> (24 - b % 32)) & 0xFF) } return bytes } function processBlock (H, M, offset) { // swap endian for (var i = 0; i < 16; i++) { var offset_i = offset + i var M_offset_i = M[offset_i] // Swap M[offset_i] = ( (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) ) } // Working variables var al, bl, cl, dl, el var ar, br, cr, dr, er ar = al = H[0] br = bl = H[1] cr = cl = H[2] dr = dl = H[3] er = el = H[4] // computation var t for (i = 0; i < 80; i += 1) { t = (al + M[offset + zl[i]]) | 0 if (i < 16) { t += f1(bl, cl, dl) + hl[0] } else if (i < 32) { t += f2(bl, cl, dl) + hl[1] } else if (i < 48) { t += f3(bl, cl, dl) + hl[2] } else if (i < 64) { t += f4(bl, cl, dl) + hl[3] } else {// if (i<80) { t += f5(bl, cl, dl) + hl[4] } t = t | 0 t = rotl(t, sl[i]) t = (t + el) | 0 al = el el = dl dl = rotl(cl, 10) cl = bl bl = t t = (ar + M[offset + zr[i]]) | 0 if (i < 16) { t += f5(br, cr, dr) + hr[0] } else if (i < 32) { t += f4(br, cr, dr) + hr[1] } else if (i < 48) { t += f3(br, cr, dr) + hr[2] } else if (i < 64) { t += f2(br, cr, dr) + hr[3] } else {// if (i<80) { t += f1(br, cr, dr) + hr[4] } t = t | 0 t = rotl(t, sr[i]) t = (t + er) | 0 ar = er er = dr dr = rotl(cr, 10) cr = br br = t } // intermediate hash value t = (H[1] + cl + dr) | 0 H[1] = (H[2] + dl + er) | 0 H[2] = (H[3] + el + ar) | 0 H[3] = (H[4] + al + br) | 0 H[4] = (H[0] + bl + cr) | 0 H[0] = t } function f1 (x, y, z) { return ((x) ^ (y) ^ (z)) } function f2 (x, y, z) { return (((x) & (y)) | ((~x) & (z))) } function f3 (x, y, z) { return (((x) | (~(y))) ^ (z)) } function f4 (x, y, z) { return (((x) & (z)) | ((y) & (~(z)))) } function f5 (x, y, z) { return ((x) ^ ((y) | (~(z)))) } function rotl (x, n) { return (x << n) | (x >>> (32 - n)) } function ripemd160 (message) { var H = [0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0] if (typeof message === 'string') { message = new Buffer(message, 'utf8') } var m = bytesToWords(message) var nBitsLeft = message.length * 8 var nBitsTotal = message.length * 8 // Add padding m[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32) m[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( (((nBitsTotal << 8) | (nBitsTotal >>> 24)) & 0x00ff00ff) | (((nBitsTotal << 24) | (nBitsTotal >>> 8)) & 0xff00ff00) ) for (var i = 0; i < m.length; i += 16) { processBlock(H, m, i) } // swap endian for (i = 0; i < 5; i++) { // shortcut var H_i = H[i] // Swap H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00) } var digestbytes = wordsToBytes(H) return new Buffer(digestbytes) } module.exports = ripemd160 }).call(this,require("buffer").Buffer) },{"buffer":49}],144:[function(require,module,exports){ (function (Buffer){ // prototype class for hash functions function Hash (blockSize, finalSize) { this._block = new Buffer(blockSize) this._finalSize = finalSize this._blockSize = blockSize this._len = 0 this._s = 0 } Hash.prototype.update = function (data, enc) { if (typeof data === 'string') { enc = enc || 'utf8' data = new Buffer(data, enc) } var l = this._len += data.length var s = this._s || 0 var f = 0 var buffer = this._block while (s < l) { var t = Math.min(data.length, f + this._blockSize - (s % this._blockSize)) var ch = (t - f) for (var i = 0; i < ch; i++) { buffer[(s % this._blockSize) + i] = data[i + f] } s += ch f += ch if ((s % this._blockSize) === 0) { this._update(buffer) } } this._s = s return this } Hash.prototype.digest = function (enc) { // Suppose the length of the message M, in bits, is l var l = this._len * 8 // Append the bit 1 to the end of the message this._block[this._len % this._blockSize] = 0x80 // and then k zero bits, where k is the smallest non-negative solution to the equation (l + 1 + k) === finalSize mod blockSize this._block.fill(0, this._len % this._blockSize + 1) if (l % (this._blockSize * 8) >= this._finalSize * 8) { this._update(this._block) this._block.fill(0) } // to this append the block which is equal to the number l written in binary // TODO: handle case where l is > Math.pow(2, 29) this._block.writeInt32BE(l, this._blockSize - 4) var hash = this._update(this._block) || this._hash() return enc ? hash.toString(enc) : hash } Hash.prototype._update = function () { throw new Error('_update must be implemented by subclass') } module.exports = Hash }).call(this,require("buffer").Buffer) },{"buffer":49}],145:[function(require,module,exports){ var exports = module.exports = function SHA (algorithm) { algorithm = algorithm.toLowerCase() var Algorithm = exports[algorithm] if (!Algorithm) throw new Error(algorithm + ' is not supported (we accept pull requests)') return new Algorithm() } exports.sha = require('./sha') exports.sha1 = require('./sha1') exports.sha224 = require('./sha224') exports.sha256 = require('./sha256') exports.sha384 = require('./sha384') exports.sha512 = require('./sha512') },{"./sha":146,"./sha1":147,"./sha224":148,"./sha256":149,"./sha384":150,"./sha512":151}],146:[function(require,module,exports){ (function (Buffer){ /* * A JavaScript implementation of the Secure Hash Algorithm, SHA-0, as defined * in FIPS PUB 180-1 * This source code is derived from sha1.js of the same repository. * The difference between SHA-0 and SHA-1 is just a bitwise rotate left * operation was added. */ var inherits = require('inherits') var Hash = require('./hash') var K = [ 0x5a827999, 0x6ed9eba1, 0x8f1bbcdc | 0, 0xca62c1d6 | 0 ] var W = new Array(80) function Sha () { this.init() this._w = W Hash.call(this, 64, 56) } inherits(Sha, Hash) Sha.prototype.init = function () { this._a = 0x67452301 this._b = 0xefcdab89 this._c = 0x98badcfe this._d = 0x10325476 this._e = 0xc3d2e1f0 return this } function rotl5 (num) { return (num << 5) | (num >>> 27) } function rotl30 (num) { return (num << 30) | (num >>> 2) } function ft (s, b, c, d) { if (s === 0) return (b & c) | ((~b) & d) if (s === 2) return (b & c) | (b & d) | (c & d) return b ^ c ^ d } Sha.prototype._update = function (M) { var W = this._w var a = this._a | 0 var b = this._b | 0 var c = this._c | 0 var d = this._d | 0 var e = this._e | 0 for (var i = 0; i < 16; ++i) W[i] = M.readInt32BE(i * 4) for (; i < 80; ++i) W[i] = W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16] for (var j = 0; j < 80; ++j) { var s = ~~(j / 20) var t = (rotl5(a) + ft(s, b, c, d) + e + W[j] + K[s]) | 0 e = d d = c c = rotl30(b) b = a a = t } this._a = (a + this._a) | 0 this._b = (b + this._b) | 0 this._c = (c + this._c) | 0 this._d = (d + this._d) | 0 this._e = (e + this._e) | 0 } Sha.prototype._hash = function () { var H = new Buffer(20) H.writeInt32BE(this._a | 0, 0) H.writeInt32BE(this._b | 0, 4) H.writeInt32BE(this._c | 0, 8) H.writeInt32BE(this._d | 0, 12) H.writeInt32BE(this._e | 0, 16) return H } module.exports = Sha }).call(this,require("buffer").Buffer) },{"./hash":144,"buffer":49,"inherits":97}],147:[function(require,module,exports){ (function (Buffer){ /* * A JavaScript implementation of the Secure Hash Algorithm, SHA-1, as defined * in FIPS PUB 180-1 * Version 2.1a Copyright Paul Johnston 2000 - 2002. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * Distributed under the BSD License * See http://pajhome.org.uk/crypt/md5 for details. */ var inherits = require('inherits') var Hash = require('./hash') var K = [ 0x5a827999, 0x6ed9eba1, 0x8f1bbcdc | 0, 0xca62c1d6 | 0 ] var W = new Array(80) function Sha1 () { this.init() this._w = W Hash.call(this, 64, 56) } inherits(Sha1, Hash) Sha1.prototype.init = function () { this._a = 0x67452301 this._b = 0xefcdab89 this._c = 0x98badcfe this._d = 0x10325476 this._e = 0xc3d2e1f0 return this } function rotl1 (num) { return (num << 1) | (num >>> 31) } function rotl5 (num) { return (num << 5) | (num >>> 27) } function rotl30 (num) { return (num << 30) | (num >>> 2) } function ft (s, b, c, d) { if (s === 0) return (b & c) | ((~b) & d) if (s === 2) return (b & c) | (b & d) | (c & d) return b ^ c ^ d } Sha1.prototype._update = function (M) { var W = this._w var a = this._a | 0 var b = this._b | 0 var c = this._c | 0 var d = this._d | 0 var e = this._e | 0 for (var i = 0; i < 16; ++i) W[i] = M.readInt32BE(i * 4) for (; i < 80; ++i) W[i] = rotl1(W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16]) for (var j = 0; j < 80; ++j) { var s = ~~(j / 20) var t = (rotl5(a) + ft(s, b, c, d) + e + W[j] + K[s]) | 0 e = d d = c c = rotl30(b) b = a a = t } this._a = (a + this._a) | 0 this._b = (b + this._b) | 0 this._c = (c + this._c) | 0 this._d = (d + this._d) | 0 this._e = (e + this._e) | 0 } Sha1.prototype._hash = function () { var H = new Buffer(20) H.writeInt32BE(this._a | 0, 0) H.writeInt32BE(this._b | 0, 4) H.writeInt32BE(this._c | 0, 8) H.writeInt32BE(this._d | 0, 12) H.writeInt32BE(this._e | 0, 16) return H } module.exports = Sha1 }).call(this,require("buffer").Buffer) },{"./hash":144,"buffer":49,"inherits":97}],148:[function(require,module,exports){ (function (Buffer){ /** * A JavaScript implementation of the Secure Hash Algorithm, SHA-256, as defined * in FIPS 180-2 * Version 2.2-beta Copyright Angel Marin, Paul Johnston 2000 - 2009. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * */ var inherits = require('inherits') var Sha256 = require('./sha256') var Hash = require('./hash') var W = new Array(64) function Sha224 () { this.init() this._w = W // new Array(64) Hash.call(this, 64, 56) } inherits(Sha224, Sha256) Sha224.prototype.init = function () { this._a = 0xc1059ed8 this._b = 0x367cd507 this._c = 0x3070dd17 this._d = 0xf70e5939 this._e = 0xffc00b31 this._f = 0x68581511 this._g = 0x64f98fa7 this._h = 0xbefa4fa4 return this } Sha224.prototype._hash = function () { var H = new Buffer(28) H.writeInt32BE(this._a, 0) H.writeInt32BE(this._b, 4) H.writeInt32BE(this._c, 8) H.writeInt32BE(this._d, 12) H.writeInt32BE(this._e, 16) H.writeInt32BE(this._f, 20) H.writeInt32BE(this._g, 24) return H } module.exports = Sha224 }).call(this,require("buffer").Buffer) },{"./hash":144,"./sha256":149,"buffer":49,"inherits":97}],149:[function(require,module,exports){ (function (Buffer){ /** * A JavaScript implementation of the Secure Hash Algorithm, SHA-256, as defined * in FIPS 180-2 * Version 2.2-beta Copyright Angel Marin, Paul Johnston 2000 - 2009. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * */ var inherits = require('inherits') var Hash = require('./hash') var K = [ 0x428A2F98, 0x71374491, 0xB5C0FBCF, 0xE9B5DBA5, 0x3956C25B, 0x59F111F1, 0x923F82A4, 0xAB1C5ED5, 0xD807AA98, 0x12835B01, 0x243185BE, 0x550C7DC3, 0x72BE5D74, 0x80DEB1FE, 0x9BDC06A7, 0xC19BF174, 0xE49B69C1, 0xEFBE4786, 0x0FC19DC6, 0x240CA1CC, 0x2DE92C6F, 0x4A7484AA, 0x5CB0A9DC, 0x76F988DA, 0x983E5152, 0xA831C66D, 0xB00327C8, 0xBF597FC7, 0xC6E00BF3, 0xD5A79147, 0x06CA6351, 0x14292967, 0x27B70A85, 0x2E1B2138, 0x4D2C6DFC, 0x53380D13, 0x650A7354, 0x766A0ABB, 0x81C2C92E, 0x92722C85, 0xA2BFE8A1, 0xA81A664B, 0xC24B8B70, 0xC76C51A3, 0xD192E819, 0xD6990624, 0xF40E3585, 0x106AA070, 0x19A4C116, 0x1E376C08, 0x2748774C, 0x34B0BCB5, 0x391C0CB3, 0x4ED8AA4A, 0x5B9CCA4F, 0x682E6FF3, 0x748F82EE, 0x78A5636F, 0x84C87814, 0x8CC70208, 0x90BEFFFA, 0xA4506CEB, 0xBEF9A3F7, 0xC67178F2 ] var W = new Array(64) function Sha256 () { this.init() this._w = W // new Array(64) Hash.call(this, 64, 56) } inherits(Sha256, Hash) Sha256.prototype.init = function () { this._a = 0x6a09e667 this._b = 0xbb67ae85 this._c = 0x3c6ef372 this._d = 0xa54ff53a this._e = 0x510e527f this._f = 0x9b05688c this._g = 0x1f83d9ab this._h = 0x5be0cd19 return this } function ch (x, y, z) { return z ^ (x & (y ^ z)) } function maj (x, y, z) { return (x & y) | (z & (x | y)) } function sigma0 (x) { return (x >>> 2 | x << 30) ^ (x >>> 13 | x << 19) ^ (x >>> 22 | x << 10) } function sigma1 (x) { return (x >>> 6 | x << 26) ^ (x >>> 11 | x << 21) ^ (x >>> 25 | x << 7) } function gamma0 (x) { return (x >>> 7 | x << 25) ^ (x >>> 18 | x << 14) ^ (x >>> 3) } function gamma1 (x) { return (x >>> 17 | x << 15) ^ (x >>> 19 | x << 13) ^ (x >>> 10) } Sha256.prototype._update = function (M) { var W = this._w var a = this._a | 0 var b = this._b | 0 var c = this._c | 0 var d = this._d | 0 var e = this._e | 0 var f = this._f | 0 var g = this._g | 0 var h = this._h | 0 for (var i = 0; i < 16; ++i) W[i] = M.readInt32BE(i * 4) for (; i < 64; ++i) W[i] = (gamma1(W[i - 2]) + W[i - 7] + gamma0(W[i - 15]) + W[i - 16]) | 0 for (var j = 0; j < 64; ++j) { var T1 = (h + sigma1(e) + ch(e, f, g) + K[j] + W[j]) | 0 var T2 = (sigma0(a) + maj(a, b, c)) | 0 h = g g = f f = e e = (d + T1) | 0 d = c c = b b = a a = (T1 + T2) | 0 } this._a = (a + this._a) | 0 this._b = (b + this._b) | 0 this._c = (c + this._c) | 0 this._d = (d + this._d) | 0 this._e = (e + this._e) | 0 this._f = (f + this._f) | 0 this._g = (g + this._g) | 0 this._h = (h + this._h) | 0 } Sha256.prototype._hash = function () { var H = new Buffer(32) H.writeInt32BE(this._a, 0) H.writeInt32BE(this._b, 4) H.writeInt32BE(this._c, 8) H.writeInt32BE(this._d, 12) H.writeInt32BE(this._e, 16) H.writeInt32BE(this._f, 20) H.writeInt32BE(this._g, 24) H.writeInt32BE(this._h, 28) return H } module.exports = Sha256 }).call(this,require("buffer").Buffer) },{"./hash":144,"buffer":49,"inherits":97}],150:[function(require,module,exports){ (function (Buffer){ var inherits = require('inherits') var SHA512 = require('./sha512') var Hash = require('./hash') var W = new Array(160) function Sha384 () { this.init() this._w = W Hash.call(this, 128, 112) } inherits(Sha384, SHA512) Sha384.prototype.init = function () { this._ah = 0xcbbb9d5d this._bh = 0x629a292a this._ch = 0x9159015a this._dh = 0x152fecd8 this._eh = 0x67332667 this._fh = 0x8eb44a87 this._gh = 0xdb0c2e0d this._hh = 0x47b5481d this._al = 0xc1059ed8 this._bl = 0x367cd507 this._cl = 0x3070dd17 this._dl = 0xf70e5939 this._el = 0xffc00b31 this._fl = 0x68581511 this._gl = 0x64f98fa7 this._hl = 0xbefa4fa4 return this } Sha384.prototype._hash = function () { var H = new Buffer(48) function writeInt64BE (h, l, offset) { H.writeInt32BE(h, offset) H.writeInt32BE(l, offset + 4) } writeInt64BE(this._ah, this._al, 0) writeInt64BE(this._bh, this._bl, 8) writeInt64BE(this._ch, this._cl, 16) writeInt64BE(this._dh, this._dl, 24) writeInt64BE(this._eh, this._el, 32) writeInt64BE(this._fh, this._fl, 40) return H } module.exports = Sha384 }).call(this,require("buffer").Buffer) },{"./hash":144,"./sha512":151,"buffer":49,"inherits":97}],151:[function(require,module,exports){ (function (Buffer){ var inherits = require('inherits') var Hash = require('./hash') var K = [ 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd, 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc, 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019, 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118, 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe, 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2, 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1, 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694, 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3, 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65, 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483, 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5, 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210, 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4, 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725, 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70, 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926, 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df, 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8, 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b, 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001, 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30, 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910, 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8, 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53, 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8, 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb, 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3, 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60, 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec, 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9, 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b, 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207, 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178, 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6, 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b, 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493, 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c, 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a, 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817 ] var W = new Array(160) function Sha512 () { this.init() this._w = W Hash.call(this, 128, 112) } inherits(Sha512, Hash) Sha512.prototype.init = function () { this._ah = 0x6a09e667 this._bh = 0xbb67ae85 this._ch = 0x3c6ef372 this._dh = 0xa54ff53a this._eh = 0x510e527f this._fh = 0x9b05688c this._gh = 0x1f83d9ab this._hh = 0x5be0cd19 this._al = 0xf3bcc908 this._bl = 0x84caa73b this._cl = 0xfe94f82b this._dl = 0x5f1d36f1 this._el = 0xade682d1 this._fl = 0x2b3e6c1f this._gl = 0xfb41bd6b this._hl = 0x137e2179 return this } function Ch (x, y, z) { return z ^ (x & (y ^ z)) } function maj (x, y, z) { return (x & y) | (z & (x | y)) } function sigma0 (x, xl) { return (x >>> 28 | xl << 4) ^ (xl >>> 2 | x << 30) ^ (xl >>> 7 | x << 25) } function sigma1 (x, xl) { return (x >>> 14 | xl << 18) ^ (x >>> 18 | xl << 14) ^ (xl >>> 9 | x << 23) } function Gamma0 (x, xl) { return (x >>> 1 | xl << 31) ^ (x >>> 8 | xl << 24) ^ (x >>> 7) } function Gamma0l (x, xl) { return (x >>> 1 | xl << 31) ^ (x >>> 8 | xl << 24) ^ (x >>> 7 | xl << 25) } function Gamma1 (x, xl) { return (x >>> 19 | xl << 13) ^ (xl >>> 29 | x << 3) ^ (x >>> 6) } function Gamma1l (x, xl) { return (x >>> 19 | xl << 13) ^ (xl >>> 29 | x << 3) ^ (x >>> 6 | xl << 26) } function getCarry (a, b) { return (a >>> 0) < (b >>> 0) ? 1 : 0 } Sha512.prototype._update = function (M) { var W = this._w var ah = this._ah | 0 var bh = this._bh | 0 var ch = this._ch | 0 var dh = this._dh | 0 var eh = this._eh | 0 var fh = this._fh | 0 var gh = this._gh | 0 var hh = this._hh | 0 var al = this._al | 0 var bl = this._bl | 0 var cl = this._cl | 0 var dl = this._dl | 0 var el = this._el | 0 var fl = this._fl | 0 var gl = this._gl | 0 var hl = this._hl | 0 for (var i = 0; i < 32; i += 2) { W[i] = M.readInt32BE(i * 4) W[i + 1] = M.readInt32BE(i * 4 + 4) } for (; i < 160; i += 2) { var xh = W[i - 15 * 2] var xl = W[i - 15 * 2 + 1] var gamma0 = Gamma0(xh, xl) var gamma0l = Gamma0l(xl, xh) xh = W[i - 2 * 2] xl = W[i - 2 * 2 + 1] var gamma1 = Gamma1(xh, xl) var gamma1l = Gamma1l(xl, xh) // W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16] var Wi7h = W[i - 7 * 2] var Wi7l = W[i - 7 * 2 + 1] var Wi16h = W[i - 16 * 2] var Wi16l = W[i - 16 * 2 + 1] var Wil = (gamma0l + Wi7l) | 0 var Wih = (gamma0 + Wi7h + getCarry(Wil, gamma0l)) | 0 Wil = (Wil + gamma1l) | 0 Wih = (Wih + gamma1 + getCarry(Wil, gamma1l)) | 0 Wil = (Wil + Wi16l) | 0 Wih = (Wih + Wi16h + getCarry(Wil, Wi16l)) | 0 W[i] = Wih W[i + 1] = Wil } for (var j = 0; j < 160; j += 2) { Wih = W[j] Wil = W[j + 1] var majh = maj(ah, bh, ch) var majl = maj(al, bl, cl) var sigma0h = sigma0(ah, al) var sigma0l = sigma0(al, ah) var sigma1h = sigma1(eh, el) var sigma1l = sigma1(el, eh) // t1 = h + sigma1 + ch + K[j] + W[j] var Kih = K[j] var Kil = K[j + 1] var chh = Ch(eh, fh, gh) var chl = Ch(el, fl, gl) var t1l = (hl + sigma1l) | 0 var t1h = (hh + sigma1h + getCarry(t1l, hl)) | 0 t1l = (t1l + chl) | 0 t1h = (t1h + chh + getCarry(t1l, chl)) | 0 t1l = (t1l + Kil) | 0 t1h = (t1h + Kih + getCarry(t1l, Kil)) | 0 t1l = (t1l + Wil) | 0 t1h = (t1h + Wih + getCarry(t1l, Wil)) | 0 // t2 = sigma0 + maj var t2l = (sigma0l + majl) | 0 var t2h = (sigma0h + majh + getCarry(t2l, sigma0l)) | 0 hh = gh hl = gl gh = fh gl = fl fh = eh fl = el el = (dl + t1l) | 0 eh = (dh + t1h + getCarry(el, dl)) | 0 dh = ch dl = cl ch = bh cl = bl bh = ah bl = al al = (t1l + t2l) | 0 ah = (t1h + t2h + getCarry(al, t1l)) | 0 } this._al = (this._al + al) | 0 this._bl = (this._bl + bl) | 0 this._cl = (this._cl + cl) | 0 this._dl = (this._dl + dl) | 0 this._el = (this._el + el) | 0 this._fl = (this._fl + fl) | 0 this._gl = (this._gl + gl) | 0 this._hl = (this._hl + hl) | 0 this._ah = (this._ah + ah + getCarry(this._al, al)) | 0 this._bh = (this._bh + bh + getCarry(this._bl, bl)) | 0 this._ch = (this._ch + ch + getCarry(this._cl, cl)) | 0 this._dh = (this._dh + dh + getCarry(this._dl, dl)) | 0 this._eh = (this._eh + eh + getCarry(this._el, el)) | 0 this._fh = (this._fh + fh + getCarry(this._fl, fl)) | 0 this._gh = (this._gh + gh + getCarry(this._gl, gl)) | 0 this._hh = (this._hh + hh + getCarry(this._hl, hl)) | 0 } Sha512.prototype._hash = function () { var H = new Buffer(64) function writeInt64BE (h, l, offset) { H.writeInt32BE(h, offset) H.writeInt32BE(l, offset + 4) } writeInt64BE(this._ah, this._al, 0) writeInt64BE(this._bh, this._bl, 8) writeInt64BE(this._ch, this._cl, 16) writeInt64BE(this._dh, this._dl, 24) writeInt64BE(this._eh, this._el, 32) writeInt64BE(this._fh, this._fl, 40) writeInt64BE(this._gh, this._gl, 48) writeInt64BE(this._hh, this._hl, 56) return H } module.exports = Sha512 }).call(this,require("buffer").Buffer) },{"./hash":144,"buffer":49,"inherits":97}],152:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. module.exports = Stream; var EE = require('events').EventEmitter; var inherits = require('inherits'); inherits(Stream, EE); Stream.Readable = require('readable-stream/readable.js'); Stream.Writable = require('readable-stream/writable.js'); Stream.Duplex = require('readable-stream/duplex.js'); Stream.Transform = require('readable-stream/transform.js'); Stream.PassThrough = require('readable-stream/passthrough.js'); // Backwards-compat with node 0.4.x Stream.Stream = Stream; // old-style streams. Note that the pipe method (the only relevant // part of this class) is overridden in the Readable class. function Stream() { EE.call(this); } Stream.prototype.pipe = function(dest, options) { var source = this; function ondata(chunk) { if (dest.writable) { if (false === dest.write(chunk) && source.pause) { source.pause(); } } } source.on('data', ondata); function ondrain() { if (source.readable && source.resume) { source.resume(); } } dest.on('drain', ondrain); // If the 'end' option is not supplied, dest.end() will be called when // source gets the 'end' or 'close' events. Only dest.end() once. if (!dest._isStdio && (!options || options.end !== false)) { source.on('end', onend); source.on('close', onclose); } var didOnEnd = false; function onend() { if (didOnEnd) return; didOnEnd = true; dest.end(); } function onclose() { if (didOnEnd) return; didOnEnd = true; if (typeof dest.destroy === 'function') dest.destroy(); } // don't leave dangling pipes when there are errors. function onerror(er) { cleanup(); if (EE.listenerCount(this, 'error') === 0) { throw er; // Unhandled stream error in pipe. } } source.on('error', onerror); dest.on('error', onerror); // remove all the event listeners that were added. function cleanup() { source.removeListener('data', ondata); dest.removeListener('drain', ondrain); source.removeListener('end', onend); source.removeListener('close', onclose); source.removeListener('error', onerror); dest.removeListener('error', onerror); source.removeListener('end', cleanup); source.removeListener('close', cleanup); dest.removeListener('close', cleanup); } source.on('end', cleanup); source.on('close', cleanup); dest.on('close', cleanup); dest.emit('pipe', source); // Allow for unix-like usage: A.pipe(B).pipe(C) return dest; }; },{"events":86,"inherits":97,"readable-stream/duplex.js":132,"readable-stream/passthrough.js":139,"readable-stream/readable.js":140,"readable-stream/transform.js":141,"readable-stream/writable.js":142}],153:[function(require,module,exports){ (function (global){ var ClientRequest = require('./lib/request') var extend = require('xtend') var statusCodes = require('builtin-status-codes') var url = require('url') var http = exports http.request = function (opts, cb) { if (typeof opts === 'string') opts = url.parse(opts) else opts = extend(opts) // Normally, the page is loaded from http or https, so not specifying a protocol // will result in a (valid) protocol-relative url. However, this won't work if // the protocol is something else, like 'file:' var defaultProtocol = global.location.protocol.search(/^https?:$/) === -1 ? 'http:' : '' var protocol = opts.protocol || defaultProtocol var host = opts.hostname || opts.host var port = opts.port var path = opts.path || '/' // Necessary for IPv6 addresses if (host && host.indexOf(':') !== -1) host = '[' + host + ']' // This may be a relative url. The browser should always be able to interpret it correctly. opts.url = (host ? (protocol + '//' + host) : '') + (port ? ':' + port : '') + path opts.method = (opts.method || 'GET').toUpperCase() opts.headers = opts.headers || {} // Also valid opts.auth, opts.mode var req = new ClientRequest(opts) if (cb) req.on('response', cb) return req } http.get = function get (opts, cb) { var req = http.request(opts, cb) req.end() return req } http.Agent = function () {} http.Agent.defaultMaxSockets = 4 http.STATUS_CODES = statusCodes http.METHODS = [ 'CHECKOUT', 'CONNECT', 'COPY', 'DELETE', 'GET', 'HEAD', 'LOCK', 'M-SEARCH', 'MERGE', 'MKACTIVITY', 'MKCOL', 'MOVE', 'NOTIFY', 'OPTIONS', 'PATCH', 'POST', 'PROPFIND', 'PROPPATCH', 'PURGE', 'PUT', 'REPORT', 'SEARCH', 'SUBSCRIBE', 'TRACE', 'UNLOCK', 'UNSUBSCRIBE' ] }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"./lib/request":155,"builtin-status-codes":50,"url":159,"xtend":165}],154:[function(require,module,exports){ (function (global){ exports.fetch = isFunction(global.fetch) && isFunction(global.ReadableStream) exports.blobConstructor = false try { new Blob([new ArrayBuffer(1)]) exports.blobConstructor = true } catch (e) {} var xhr = new global.XMLHttpRequest() // If location.host is empty, e.g. if this page/worker was loaded // from a Blob, then use example.com to avoid an error xhr.open('GET', global.location.host ? '/' : 'https://example.com') function checkTypeSupport (type) { try { xhr.responseType = type return xhr.responseType === type } catch (e) {} return false } // For some strange reason, Safari 7.0 reports typeof global.ArrayBuffer === 'object'. // Safari 7.1 appears to have fixed this bug. var haveArrayBuffer = typeof global.ArrayBuffer !== 'undefined' var haveSlice = haveArrayBuffer && isFunction(global.ArrayBuffer.prototype.slice) exports.arraybuffer = haveArrayBuffer && checkTypeSupport('arraybuffer') // These next two tests unavoidably show warnings in Chrome. Since fetch will always // be used if it's available, just return false for these to avoid the warnings. exports.msstream = !exports.fetch && haveSlice && checkTypeSupport('ms-stream') exports.mozchunkedarraybuffer = !exports.fetch && haveArrayBuffer && checkTypeSupport('moz-chunked-arraybuffer') exports.overrideMimeType = isFunction(xhr.overrideMimeType) exports.vbArray = isFunction(global.VBArray) function isFunction (value) { return typeof value === 'function' } xhr = null // Help gc }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{}],155:[function(require,module,exports){ (function (process,global,Buffer){ var capability = require('./capability') var inherits = require('inherits') var response = require('./response') var stream = require('readable-stream') var toArrayBuffer = require('to-arraybuffer') var IncomingMessage = response.IncomingMessage var rStates = response.readyStates function decideMode (preferBinary) { if (capability.fetch) { return 'fetch' } else if (capability.mozchunkedarraybuffer) { return 'moz-chunked-arraybuffer' } else if (capability.msstream) { return 'ms-stream' } else if (capability.arraybuffer && preferBinary) { return 'arraybuffer' } else if (capability.vbArray && preferBinary) { return 'text:vbarray' } else { return 'text' } } var ClientRequest = module.exports = function (opts) { var self = this stream.Writable.call(self) self._opts = opts self._body = [] self._headers = {} if (opts.auth) self.setHeader('Authorization', 'Basic ' + new Buffer(opts.auth).toString('base64')) Object.keys(opts.headers).forEach(function (name) { self.setHeader(name, opts.headers[name]) }) var preferBinary if (opts.mode === 'prefer-streaming') { // If streaming is a high priority but binary compatibility and // the accuracy of the 'content-type' header aren't preferBinary = false } else if (opts.mode === 'allow-wrong-content-type') { // If streaming is more important than preserving the 'content-type' header preferBinary = !capability.overrideMimeType } else if (!opts.mode || opts.mode === 'default' || opts.mode === 'prefer-fast') { // Use binary if text streaming may corrupt data or the content-type header, or for speed preferBinary = true } else { throw new Error('Invalid value for opts.mode') } self._mode = decideMode(preferBinary) self.on('finish', function () { self._onFinish() }) } inherits(ClientRequest, stream.Writable) ClientRequest.prototype.setHeader = function (name, value) { var self = this var lowerName = name.toLowerCase() // This check is not necessary, but it prevents warnings from browsers about setting unsafe // headers. To be honest I'm not entirely sure hiding these warnings is a good thing, but // http-browserify did it, so I will too. if (unsafeHeaders.indexOf(lowerName) !== -1) return self._headers[lowerName] = { name: name, value: value } } ClientRequest.prototype.getHeader = function (name) { var self = this return self._headers[name.toLowerCase()].value } ClientRequest.prototype.removeHeader = function (name) { var self = this delete self._headers[name.toLowerCase()] } ClientRequest.prototype._onFinish = function () { var self = this if (self._destroyed) return var opts = self._opts var headersObj = self._headers var body if (opts.method === 'POST' || opts.method === 'PUT' || opts.method === 'PATCH') { if (capability.blobConstructor) { body = new global.Blob(self._body.map(function (buffer) { return toArrayBuffer(buffer) }), { type: (headersObj['content-type'] || {}).value || '' }) } else { // get utf8 string body = Buffer.concat(self._body).toString() } } if (self._mode === 'fetch') { var headers = Object.keys(headersObj).map(function (name) { return [headersObj[name].name, headersObj[name].value] }) global.fetch(self._opts.url, { method: self._opts.method, headers: headers, body: body, mode: 'cors', credentials: opts.withCredentials ? 'include' : 'same-origin' }).then(function (response) { self._fetchResponse = response self._connect() }, function (reason) { self.emit('error', reason) }) } else { var xhr = self._xhr = new global.XMLHttpRequest() try { xhr.open(self._opts.method, self._opts.url, true) } catch (err) { process.nextTick(function () { self.emit('error', err) }) return } // Can't set responseType on really old browsers if ('responseType' in xhr) xhr.responseType = self._mode.split(':')[0] if ('withCredentials' in xhr) xhr.withCredentials = !!opts.withCredentials if (self._mode === 'text' && 'overrideMimeType' in xhr) xhr.overrideMimeType('text/plain; charset=x-user-defined') Object.keys(headersObj).forEach(function (name) { xhr.setRequestHeader(headersObj[name].name, headersObj[name].value) }) self._response = null xhr.onreadystatechange = function () { switch (xhr.readyState) { case rStates.LOADING: case rStates.DONE: self._onXHRProgress() break } } // Necessary for streaming in Firefox, since xhr.response is ONLY defined // in onprogress, not in onreadystatechange with xhr.readyState = 3 if (self._mode === 'moz-chunked-arraybuffer') { xhr.onprogress = function () { self._onXHRProgress() } } xhr.onerror = function () { if (self._destroyed) return self.emit('error', new Error('XHR error')) } try { xhr.send(body) } catch (err) { process.nextTick(function () { self.emit('error', err) }) return } } } /** * Checks if xhr.status is readable and non-zero, indicating no error. * Even though the spec says it should be available in readyState 3, * accessing it throws an exception in IE8 */ function statusValid (xhr) { try { var status = xhr.status return (status !== null && status !== 0) } catch (e) { return false } } ClientRequest.prototype._onXHRProgress = function () { var self = this if (!statusValid(self._xhr) || self._destroyed) return if (!self._response) self._connect() self._response._onXHRProgress() } ClientRequest.prototype._connect = function () { var self = this if (self._destroyed) return self._response = new IncomingMessage(self._xhr, self._fetchResponse, self._mode) self.emit('response', self._response) } ClientRequest.prototype._write = function (chunk, encoding, cb) { var self = this self._body.push(chunk) cb() } ClientRequest.prototype.abort = ClientRequest.prototype.destroy = function () { var self = this self._destroyed = true if (self._response) self._response._destroyed = true if (self._xhr) self._xhr.abort() // Currently, there isn't a way to truly abort a fetch. // If you like bikeshedding, see https://github.com/whatwg/fetch/issues/27 } ClientRequest.prototype.end = function (data, encoding, cb) { var self = this if (typeof data === 'function') { cb = data data = undefined } stream.Writable.prototype.end.call(self, data, encoding, cb) } ClientRequest.prototype.flushHeaders = function () {} ClientRequest.prototype.setTimeout = function () {} ClientRequest.prototype.setNoDelay = function () {} ClientRequest.prototype.setSocketKeepAlive = function () {} // Taken from http://www.w3.org/TR/XMLHttpRequest/#the-setrequestheader%28%29-method var unsafeHeaders = [ 'accept-charset', 'accept-encoding', 'access-control-request-headers', 'access-control-request-method', 'connection', 'content-length', 'cookie', 'cookie2', 'date', 'dnt', 'expect', 'host', 'keep-alive', 'origin', 'referer', 'te', 'trailer', 'transfer-encoding', 'upgrade', 'user-agent', 'via' ] }).call(this,require('_process'),typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {},require("buffer").Buffer) },{"./capability":154,"./response":156,"_process":120,"buffer":49,"inherits":97,"readable-stream":140,"to-arraybuffer":158}],156:[function(require,module,exports){ (function (process,global,Buffer){ var capability = require('./capability') var inherits = require('inherits') var stream = require('readable-stream') var rStates = exports.readyStates = { UNSENT: 0, OPENED: 1, HEADERS_RECEIVED: 2, LOADING: 3, DONE: 4 } var IncomingMessage = exports.IncomingMessage = function (xhr, response, mode) { var self = this stream.Readable.call(self) self._mode = mode self.headers = {} self.rawHeaders = [] self.trailers = {} self.rawTrailers = [] // Fake the 'close' event, but only once 'end' fires self.on('end', function () { // The nextTick is necessary to prevent the 'request' module from causing an infinite loop process.nextTick(function () { self.emit('close') }) }) if (mode === 'fetch') { self._fetchResponse = response self.url = response.url self.statusCode = response.status self.statusMessage = response.statusText // backwards compatible version of for ( of ): // for (var ,_i,_it = [Symbol.iterator](); = (_i = _it.next()).value,!_i.done;) for (var header, _i, _it = response.headers[Symbol.iterator](); header = (_i = _it.next()).value, !_i.done;) { self.headers[header[0].toLowerCase()] = header[1] self.rawHeaders.push(header[0], header[1]) } // TODO: this doesn't respect backpressure. Once WritableStream is available, this can be fixed var reader = response.body.getReader() function read () { reader.read().then(function (result) { if (self._destroyed) return if (result.done) { self.push(null) return } self.push(new Buffer(result.value)) read() }) } read() } else { self._xhr = xhr self._pos = 0 self.url = xhr.responseURL self.statusCode = xhr.status self.statusMessage = xhr.statusText var headers = xhr.getAllResponseHeaders().split(/\r?\n/) headers.forEach(function (header) { var matches = header.match(/^([^:]+):\s*(.*)/) if (matches) { var key = matches[1].toLowerCase() if (key === 'set-cookie') { if (self.headers[key] === undefined) { self.headers[key] = [] } self.headers[key].push(matches[2]) } else if (self.headers[key] !== undefined) { self.headers[key] += ', ' + matches[2] } else { self.headers[key] = matches[2] } self.rawHeaders.push(matches[1], matches[2]) } }) self._charset = 'x-user-defined' if (!capability.overrideMimeType) { var mimeType = self.rawHeaders['mime-type'] if (mimeType) { var charsetMatch = mimeType.match(/;\s*charset=([^;])(;|$)/) if (charsetMatch) { self._charset = charsetMatch[1].toLowerCase() } } if (!self._charset) self._charset = 'utf-8' // best guess } } } inherits(IncomingMessage, stream.Readable) IncomingMessage.prototype._read = function () {} IncomingMessage.prototype._onXHRProgress = function () { var self = this var xhr = self._xhr var response = null switch (self._mode) { case 'text:vbarray': // For IE9 if (xhr.readyState !== rStates.DONE) break try { // This fails in IE8 response = new global.VBArray(xhr.responseBody).toArray() } catch (e) {} if (response !== null) { self.push(new Buffer(response)) break } // Falls through in IE8 case 'text': try { // This will fail when readyState = 3 in IE9. Switch mode and wait for readyState = 4 response = xhr.responseText } catch (e) { self._mode = 'text:vbarray' break } if (response.length > self._pos) { var newData = response.substr(self._pos) if (self._charset === 'x-user-defined') { var buffer = new Buffer(newData.length) for (var i = 0; i < newData.length; i++) buffer[i] = newData.charCodeAt(i) & 0xff self.push(buffer) } else { self.push(newData, self._charset) } self._pos = response.length } break case 'arraybuffer': if (xhr.readyState !== rStates.DONE) break response = xhr.response self.push(new Buffer(new Uint8Array(response))) break case 'moz-chunked-arraybuffer': // take whole response = xhr.response if (xhr.readyState !== rStates.LOADING || !response) break self.push(new Buffer(new Uint8Array(response))) break case 'ms-stream': response = xhr.response if (xhr.readyState !== rStates.LOADING) break var reader = new global.MSStreamReader() reader.onprogress = function () { if (reader.result.byteLength > self._pos) { self.push(new Buffer(new Uint8Array(reader.result.slice(self._pos)))) self._pos = reader.result.byteLength } } reader.onload = function () { self.push(null) } // reader.onerror = ??? // TODO: this reader.readAsArrayBuffer(response) break } // The ms-stream case handles end separately in reader.onload() if (self._xhr.readyState === rStates.DONE && self._mode !== 'ms-stream') { self.push(null) } } }).call(this,require('_process'),typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {},require("buffer").Buffer) },{"./capability":154,"_process":120,"buffer":49,"inherits":97,"readable-stream":140}],157:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. var Buffer = require('buffer').Buffer; var isBufferEncoding = Buffer.isEncoding || function(encoding) { switch (encoding && encoding.toLowerCase()) { case 'hex': case 'utf8': case 'utf-8': case 'ascii': case 'binary': case 'base64': case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': case 'raw': return true; default: return false; } } function assertEncoding(encoding) { if (encoding && !isBufferEncoding(encoding)) { throw new Error('Unknown encoding: ' + encoding); } } // StringDecoder provides an interface for efficiently splitting a series of // buffers into a series of JS strings without breaking apart multi-byte // characters. CESU-8 is handled as part of the UTF-8 encoding. // // @TODO Handling all encodings inside a single object makes it very difficult // to reason about this code, so it should be split up in the future. // @TODO There should be a utf8-strict encoding that rejects invalid UTF-8 code // points as used by CESU-8. var StringDecoder = exports.StringDecoder = function(encoding) { this.encoding = (encoding || 'utf8').toLowerCase().replace(/[-_]/, ''); assertEncoding(encoding); switch (this.encoding) { case 'utf8': // CESU-8 represents each of Surrogate Pair by 3-bytes this.surrogateSize = 3; break; case 'ucs2': case 'utf16le': // UTF-16 represents each of Surrogate Pair by 2-bytes this.surrogateSize = 2; this.detectIncompleteChar = utf16DetectIncompleteChar; break; case 'base64': // Base-64 stores 3 bytes in 4 chars, and pads the remainder. this.surrogateSize = 3; this.detectIncompleteChar = base64DetectIncompleteChar; break; default: this.write = passThroughWrite; return; } // Enough space to store all bytes of a single character. UTF-8 needs 4 // bytes, but CESU-8 may require up to 6 (3 bytes per surrogate). this.charBuffer = new Buffer(6); // Number of bytes received for the current incomplete multi-byte character. this.charReceived = 0; // Number of bytes expected for the current incomplete multi-byte character. this.charLength = 0; }; // write decodes the given buffer and returns it as JS string that is // guaranteed to not contain any partial multi-byte characters. Any partial // character found at the end of the buffer is buffered up, and will be // returned when calling write again with the remaining bytes. // // Note: Converting a Buffer containing an orphan surrogate to a String // currently works, but converting a String to a Buffer (via `new Buffer`, or // Buffer#write) will replace incomplete surrogates with the unicode // replacement character. See https://codereview.chromium.org/121173009/ . StringDecoder.prototype.write = function(buffer) { var charStr = ''; // if our last write ended with an incomplete multibyte character while (this.charLength) { // determine how many remaining bytes this buffer has to offer for this char var available = (buffer.length >= this.charLength - this.charReceived) ? this.charLength - this.charReceived : buffer.length; // add the new bytes to the char buffer buffer.copy(this.charBuffer, this.charReceived, 0, available); this.charReceived += available; if (this.charReceived < this.charLength) { // still not enough chars in this buffer? wait for more ... return ''; } // remove bytes belonging to the current character from the buffer buffer = buffer.slice(available, buffer.length); // get the character that was split charStr = this.charBuffer.slice(0, this.charLength).toString(this.encoding); // CESU-8: lead surrogate (D800-DBFF) is also the incomplete character var charCode = charStr.charCodeAt(charStr.length - 1); if (charCode >= 0xD800 && charCode <= 0xDBFF) { this.charLength += this.surrogateSize; charStr = ''; continue; } this.charReceived = this.charLength = 0; // if there are no more bytes in this buffer, just emit our char if (buffer.length === 0) { return charStr; } break; } // determine and set charLength / charReceived this.detectIncompleteChar(buffer); var end = buffer.length; if (this.charLength) { // buffer the incomplete character bytes we got buffer.copy(this.charBuffer, 0, buffer.length - this.charReceived, end); end -= this.charReceived; } charStr += buffer.toString(this.encoding, 0, end); var end = charStr.length - 1; var charCode = charStr.charCodeAt(end); // CESU-8: lead surrogate (D800-DBFF) is also the incomplete character if (charCode >= 0xD800 && charCode <= 0xDBFF) { var size = this.surrogateSize; this.charLength += size; this.charReceived += size; this.charBuffer.copy(this.charBuffer, size, 0, size); buffer.copy(this.charBuffer, 0, 0, size); return charStr.substring(0, end); } // or just emit the charStr return charStr; }; // detectIncompleteChar determines if there is an incomplete UTF-8 character at // the end of the given buffer. If so, it sets this.charLength to the byte // length that character, and sets this.charReceived to the number of bytes // that are available for this character. StringDecoder.prototype.detectIncompleteChar = function(buffer) { // determine how many bytes we have to check at the end of this buffer var i = (buffer.length >= 3) ? 3 : buffer.length; // Figure out if one of the last i bytes of our buffer announces an // incomplete char. for (; i > 0; i--) { var c = buffer[buffer.length - i]; // See http://en.wikipedia.org/wiki/UTF-8#Description // 110XXXXX if (i == 1 && c >> 5 == 0x06) { this.charLength = 2; break; } // 1110XXXX if (i <= 2 && c >> 4 == 0x0E) { this.charLength = 3; break; } // 11110XXX if (i <= 3 && c >> 3 == 0x1E) { this.charLength = 4; break; } } this.charReceived = i; }; StringDecoder.prototype.end = function(buffer) { var res = ''; if (buffer && buffer.length) res = this.write(buffer); if (this.charReceived) { var cr = this.charReceived; var buf = this.charBuffer; var enc = this.encoding; res += buf.slice(0, cr).toString(enc); } return res; }; function passThroughWrite(buffer) { return buffer.toString(this.encoding); } function utf16DetectIncompleteChar(buffer) { this.charReceived = buffer.length % 2; this.charLength = this.charReceived ? 2 : 0; } function base64DetectIncompleteChar(buffer) { this.charReceived = buffer.length % 3; this.charLength = this.charReceived ? 3 : 0; } },{"buffer":49}],158:[function(require,module,exports){ var Buffer = require('buffer').Buffer module.exports = function (buf) { // If the buffer is backed by a Uint8Array, a faster version will work if (buf instanceof Uint8Array) { // If the buffer isn't a subarray, return the underlying ArrayBuffer if (buf.byteOffset === 0 && buf.byteLength === buf.buffer.byteLength) { return buf.buffer } else if (typeof buf.buffer.slice === 'function') { // Otherwise we need to get a proper copy return buf.buffer.slice(buf.byteOffset, buf.byteOffset + buf.byteLength) } } if (Buffer.isBuffer(buf)) { // This is the slow version that will work with any Buffer // implementation (even in old browsers) var arrayCopy = new Uint8Array(buf.length) var len = buf.length for (var i = 0; i < len; i++) { arrayCopy[i] = buf[i] } return arrayCopy.buffer } else { throw new Error('Argument must be a Buffer') } } },{"buffer":49}],159:[function(require,module,exports){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. 'use strict'; var punycode = require('punycode'); var util = require('./util'); exports.parse = urlParse; exports.resolve = urlResolve; exports.resolveObject = urlResolveObject; exports.format = urlFormat; exports.Url = Url; function Url() { this.protocol = null; this.slashes = null; this.auth = null; this.host = null; this.port = null; this.hostname = null; this.hash = null; this.search = null; this.query = null; this.pathname = null; this.path = null; this.href = null; } // Reference: RFC 3986, RFC 1808, RFC 2396 // define these here so at least they only have to be // compiled once on the first module load. var protocolPattern = /^([a-z0-9.+-]+:)/i, portPattern = /:[0-9]*$/, // Special case for a simple path URL simplePathPattern = /^(\/\/?(?!\/)[^\?\s]*)(\?[^\s]*)?$/, // RFC 2396: characters reserved for delimiting URLs. // We actually just auto-escape these. delims = ['<', '>', '"', '`', ' ', '\r', '\n', '\t'], // RFC 2396: characters not allowed for various reasons. unwise = ['{', '}', '|', '\\', '^', '`'].concat(delims), // Allowed by RFCs, but cause of XSS attacks. Always escape these. autoEscape = ['\''].concat(unwise), // Characters that are never ever allowed in a hostname. // Note that any invalid chars are also handled, but these // are the ones that are *expected* to be seen, so we fast-path // them. nonHostChars = ['%', '/', '?', ';', '#'].concat(autoEscape), hostEndingChars = ['/', '?', '#'], hostnameMaxLen = 255, hostnamePartPattern = /^[+a-z0-9A-Z_-]{0,63}$/, hostnamePartStart = /^([+a-z0-9A-Z_-]{0,63})(.*)$/, // protocols that can allow "unsafe" and "unwise" chars. unsafeProtocol = { 'javascript': true, 'javascript:': true }, // protocols that never have a hostname. hostlessProtocol = { 'javascript': true, 'javascript:': true }, // protocols that always contain a // bit. slashedProtocol = { 'http': true, 'https': true, 'ftp': true, 'gopher': true, 'file': true, 'http:': true, 'https:': true, 'ftp:': true, 'gopher:': true, 'file:': true }, querystring = require('querystring'); function urlParse(url, parseQueryString, slashesDenoteHost) { if (url && util.isObject(url) && url instanceof Url) return url; var u = new Url; u.parse(url, parseQueryString, slashesDenoteHost); return u; } Url.prototype.parse = function(url, parseQueryString, slashesDenoteHost) { if (!util.isString(url)) { throw new TypeError("Parameter 'url' must be a string, not " + typeof url); } // Copy chrome, IE, opera backslash-handling behavior. // Back slashes before the query string get converted to forward slashes // See: https://code.google.com/p/chromium/issues/detail?id=25916 var queryIndex = url.indexOf('?'), splitter = (queryIndex !== -1 && queryIndex < url.indexOf('#')) ? '?' : '#', uSplit = url.split(splitter), slashRegex = /\\/g; uSplit[0] = uSplit[0].replace(slashRegex, '/'); url = uSplit.join(splitter); var rest = url; // trim before proceeding. // This is to support parse stuff like " http://foo.com \n" rest = rest.trim(); if (!slashesDenoteHost && url.split('#').length === 1) { // Try fast path regexp var simplePath = simplePathPattern.exec(rest); if (simplePath) { this.path = rest; this.href = rest; this.pathname = simplePath[1]; if (simplePath[2]) { this.search = simplePath[2]; if (parseQueryString) { this.query = querystring.parse(this.search.substr(1)); } else { this.query = this.search.substr(1); } } else if (parseQueryString) { this.search = ''; this.query = {}; } return this; } } var proto = protocolPattern.exec(rest); if (proto) { proto = proto[0]; var lowerProto = proto.toLowerCase(); this.protocol = lowerProto; rest = rest.substr(proto.length); } // figure out if it's got a host // user@server is *always* interpreted as a hostname, and url // resolution will treat //foo/bar as host=foo,path=bar because that's // how the browser resolves relative URLs. if (slashesDenoteHost || proto || rest.match(/^\/\/[^@\/]+@[^@\/]+/)) { var slashes = rest.substr(0, 2) === '//'; if (slashes && !(proto && hostlessProtocol[proto])) { rest = rest.substr(2); this.slashes = true; } } if (!hostlessProtocol[proto] && (slashes || (proto && !slashedProtocol[proto]))) { // there's a hostname. // the first instance of /, ?, ;, or # ends the host. // // If there is an @ in the hostname, then non-host chars *are* allowed // to the left of the last @ sign, unless some host-ending character // comes *before* the @-sign. // URLs are obnoxious. // // ex: // http://a@b@c/ => user:a@b host:c // http://a@b?@c => user:a host:c path:/?@c // v0.12 TODO(isaacs): This is not quite how Chrome does things. // Review our test case against browsers more comprehensively. // find the first instance of any hostEndingChars var hostEnd = -1; for (var i = 0; i < hostEndingChars.length; i++) { var hec = rest.indexOf(hostEndingChars[i]); if (hec !== -1 && (hostEnd === -1 || hec < hostEnd)) hostEnd = hec; } // at this point, either we have an explicit point where the // auth portion cannot go past, or the last @ char is the decider. var auth, atSign; if (hostEnd === -1) { // atSign can be anywhere. atSign = rest.lastIndexOf('@'); } else { // atSign must be in auth portion. // http://a@b/c@d => host:b auth:a path:/c@d atSign = rest.lastIndexOf('@', hostEnd); } // Now we have a portion which is definitely the auth. // Pull that off. if (atSign !== -1) { auth = rest.slice(0, atSign); rest = rest.slice(atSign + 1); this.auth = decodeURIComponent(auth); } // the host is the remaining to the left of the first non-host char hostEnd = -1; for (var i = 0; i < nonHostChars.length; i++) { var hec = rest.indexOf(nonHostChars[i]); if (hec !== -1 && (hostEnd === -1 || hec < hostEnd)) hostEnd = hec; } // if we still have not hit it, then the entire thing is a host. if (hostEnd === -1) hostEnd = rest.length; this.host = rest.slice(0, hostEnd); rest = rest.slice(hostEnd); // pull out port. this.parseHost(); // we've indicated that there is a hostname, // so even if it's empty, it has to be present. this.hostname = this.hostname || ''; // if hostname begins with [ and ends with ] // assume that it's an IPv6 address. var ipv6Hostname = this.hostname[0] === '[' && this.hostname[this.hostname.length - 1] === ']'; // validate a little. if (!ipv6Hostname) { var hostparts = this.hostname.split(/\./); for (var i = 0, l = hostparts.length; i < l; i++) { var part = hostparts[i]; if (!part) continue; if (!part.match(hostnamePartPattern)) { var newpart = ''; for (var j = 0, k = part.length; j < k; j++) { if (part.charCodeAt(j) > 127) { // we replace non-ASCII char with a temporary placeholder // we need this to make sure size of hostname is not // broken by replacing non-ASCII by nothing newpart += 'x'; } else { newpart += part[j]; } } // we test again with ASCII char only if (!newpart.match(hostnamePartPattern)) { var validParts = hostparts.slice(0, i); var notHost = hostparts.slice(i + 1); var bit = part.match(hostnamePartStart); if (bit) { validParts.push(bit[1]); notHost.unshift(bit[2]); } if (notHost.length) { rest = '/' + notHost.join('.') + rest; } this.hostname = validParts.join('.'); break; } } } } if (this.hostname.length > hostnameMaxLen) { this.hostname = ''; } else { // hostnames are always lower case. this.hostname = this.hostname.toLowerCase(); } if (!ipv6Hostname) { // IDNA Support: Returns a punycoded representation of "domain". // It only converts parts of the domain name that // have non-ASCII characters, i.e. it doesn't matter if // you call it with a domain that already is ASCII-only. this.hostname = punycode.toASCII(this.hostname); } var p = this.port ? ':' + this.port : ''; var h = this.hostname || ''; this.host = h + p; this.href += this.host; // strip [ and ] from the hostname // the host field still retains them, though if (ipv6Hostname) { this.hostname = this.hostname.substr(1, this.hostname.length - 2); if (rest[0] !== '/') { rest = '/' + rest; } } } // now rest is set to the post-host stuff. // chop off any delim chars. if (!unsafeProtocol[lowerProto]) { // First, make 100% sure that any "autoEscape" chars get // escaped, even if encodeURIComponent doesn't think they // need to be. for (var i = 0, l = autoEscape.length; i < l; i++) { var ae = autoEscape[i]; if (rest.indexOf(ae) === -1) continue; var esc = encodeURIComponent(ae); if (esc === ae) { esc = escape(ae); } rest = rest.split(ae).join(esc); } } // chop off from the tail first. var hash = rest.indexOf('#'); if (hash !== -1) { // got a fragment string. this.hash = rest.substr(hash); rest = rest.slice(0, hash); } var qm = rest.indexOf('?'); if (qm !== -1) { this.search = rest.substr(qm); this.query = rest.substr(qm + 1); if (parseQueryString) { this.query = querystring.parse(this.query); } rest = rest.slice(0, qm); } else if (parseQueryString) { // no query string, but parseQueryString still requested this.search = ''; this.query = {}; } if (rest) this.pathname = rest; if (slashedProtocol[lowerProto] && this.hostname && !this.pathname) { this.pathname = '/'; } //to support http.request if (this.pathname || this.search) { var p = this.pathname || ''; var s = this.search || ''; this.path = p + s; } // finally, reconstruct the href based on what has been validated. this.href = this.format(); return this; }; // format a parsed object into a url string function urlFormat(obj) { // ensure it's an object, and not a string url. // If it's an obj, this is a no-op. // this way, you can call url_format() on strings // to clean up potentially wonky urls. if (util.isString(obj)) obj = urlParse(obj); if (!(obj instanceof Url)) return Url.prototype.format.call(obj); return obj.format(); } Url.prototype.format = function() { var auth = this.auth || ''; if (auth) { auth = encodeURIComponent(auth); auth = auth.replace(/%3A/i, ':'); auth += '@'; } var protocol = this.protocol || '', pathname = this.pathname || '', hash = this.hash || '', host = false, query = ''; if (this.host) { host = auth + this.host; } else if (this.hostname) { host = auth + (this.hostname.indexOf(':') === -1 ? this.hostname : '[' + this.hostname + ']'); if (this.port) { host += ':' + this.port; } } if (this.query && util.isObject(this.query) && Object.keys(this.query).length) { query = querystring.stringify(this.query); } var search = this.search || (query && ('?' + query)) || ''; if (protocol && protocol.substr(-1) !== ':') protocol += ':'; // only the slashedProtocols get the //. Not mailto:, xmpp:, etc. // unless they had them to begin with. if (this.slashes || (!protocol || slashedProtocol[protocol]) && host !== false) { host = '//' + (host || ''); if (pathname && pathname.charAt(0) !== '/') pathname = '/' + pathname; } else if (!host) { host = ''; } if (hash && hash.charAt(0) !== '#') hash = '#' + hash; if (search && search.charAt(0) !== '?') search = '?' + search; pathname = pathname.replace(/[?#]/g, function(match) { return encodeURIComponent(match); }); search = search.replace('#', '%23'); return protocol + host + pathname + search + hash; }; function urlResolve(source, relative) { return urlParse(source, false, true).resolve(relative); } Url.prototype.resolve = function(relative) { return this.resolveObject(urlParse(relative, false, true)).format(); }; function urlResolveObject(source, relative) { if (!source) return relative; return urlParse(source, false, true).resolveObject(relative); } Url.prototype.resolveObject = function(relative) { if (util.isString(relative)) { var rel = new Url(); rel.parse(relative, false, true); relative = rel; } var result = new Url(); var tkeys = Object.keys(this); for (var tk = 0; tk < tkeys.length; tk++) { var tkey = tkeys[tk]; result[tkey] = this[tkey]; } // hash is always overridden, no matter what. // even href="" will remove it. result.hash = relative.hash; // if the relative url is empty, then there's nothing left to do here. if (relative.href === '') { result.href = result.format(); return result; } // hrefs like //foo/bar always cut to the protocol. if (relative.slashes && !relative.protocol) { // take everything except the protocol from relative var rkeys = Object.keys(relative); for (var rk = 0; rk < rkeys.length; rk++) { var rkey = rkeys[rk]; if (rkey !== 'protocol') result[rkey] = relative[rkey]; } //urlParse appends trailing / to urls like http://www.example.com if (slashedProtocol[result.protocol] && result.hostname && !result.pathname) { result.path = result.pathname = '/'; } result.href = result.format(); return result; } if (relative.protocol && relative.protocol !== result.protocol) { // if it's a known url protocol, then changing // the protocol does weird things // first, if it's not file:, then we MUST have a host, // and if there was a path // to begin with, then we MUST have a path. // if it is file:, then the host is dropped, // because that's known to be hostless. // anything else is assumed to be absolute. if (!slashedProtocol[relative.protocol]) { var keys = Object.keys(relative); for (var v = 0; v < keys.length; v++) { var k = keys[v]; result[k] = relative[k]; } result.href = result.format(); return result; } result.protocol = relative.protocol; if (!relative.host && !hostlessProtocol[relative.protocol]) { var relPath = (relative.pathname || '').split('/'); while (relPath.length && !(relative.host = relPath.shift())); if (!relative.host) relative.host = ''; if (!relative.hostname) relative.hostname = ''; if (relPath[0] !== '') relPath.unshift(''); if (relPath.length < 2) relPath.unshift(''); result.pathname = relPath.join('/'); } else { result.pathname = relative.pathname; } result.search = relative.search; result.query = relative.query; result.host = relative.host || ''; result.auth = relative.auth; result.hostname = relative.hostname || relative.host; result.port = relative.port; // to support http.request if (result.pathname || result.search) { var p = result.pathname || ''; var s = result.search || ''; result.path = p + s; } result.slashes = result.slashes || relative.slashes; result.href = result.format(); return result; } var isSourceAbs = (result.pathname && result.pathname.charAt(0) === '/'), isRelAbs = ( relative.host || relative.pathname && relative.pathname.charAt(0) === '/' ), mustEndAbs = (isRelAbs || isSourceAbs || (result.host && relative.pathname)), removeAllDots = mustEndAbs, srcPath = result.pathname && result.pathname.split('/') || [], relPath = relative.pathname && relative.pathname.split('/') || [], psychotic = result.protocol && !slashedProtocol[result.protocol]; // if the url is a non-slashed url, then relative // links like ../.. should be able // to crawl up to the hostname, as well. This is strange. // result.protocol has already been set by now. // Later on, put the first path part into the host field. if (psychotic) { result.hostname = ''; result.port = null; if (result.host) { if (srcPath[0] === '') srcPath[0] = result.host; else srcPath.unshift(result.host); } result.host = ''; if (relative.protocol) { relative.hostname = null; relative.port = null; if (relative.host) { if (relPath[0] === '') relPath[0] = relative.host; else relPath.unshift(relative.host); } relative.host = null; } mustEndAbs = mustEndAbs && (relPath[0] === '' || srcPath[0] === ''); } if (isRelAbs) { // it's absolute. result.host = (relative.host || relative.host === '') ? relative.host : result.host; result.hostname = (relative.hostname || relative.hostname === '') ? relative.hostname : result.hostname; result.search = relative.search; result.query = relative.query; srcPath = relPath; // fall through to the dot-handling below. } else if (relPath.length) { // it's relative // throw away the existing file, and take the new path instead. if (!srcPath) srcPath = []; srcPath.pop(); srcPath = srcPath.concat(relPath); result.search = relative.search; result.query = relative.query; } else if (!util.isNullOrUndefined(relative.search)) { // just pull out the search. // like href='?foo'. // Put this after the other two cases because it simplifies the booleans if (psychotic) { result.hostname = result.host = srcPath.shift(); //occationaly the auth can get stuck only in host //this especially happens in cases like //url.resolveObject('mailto:local1@domain1', 'local2@domain2') var authInHost = result.host && result.host.indexOf('@') > 0 ? result.host.split('@') : false; if (authInHost) { result.auth = authInHost.shift(); result.host = result.hostname = authInHost.shift(); } } result.search = relative.search; result.query = relative.query; //to support http.request if (!util.isNull(result.pathname) || !util.isNull(result.search)) { result.path = (result.pathname ? result.pathname : '') + (result.search ? result.search : ''); } result.href = result.format(); return result; } if (!srcPath.length) { // no path at all. easy. // we've already handled the other stuff above. result.pathname = null; //to support http.request if (result.search) { result.path = '/' + result.search; } else { result.path = null; } result.href = result.format(); return result; } // if a url ENDs in . or .., then it must get a trailing slash. // however, if it ends in anything else non-slashy, // then it must NOT get a trailing slash. var last = srcPath.slice(-1)[0]; var hasTrailingSlash = ( (result.host || relative.host || srcPath.length > 1) && (last === '.' || last === '..') || last === ''); // strip single dots, resolve double dots to parent dir // if the path tries to go above the root, `up` ends up > 0 var up = 0; for (var i = srcPath.length; i >= 0; i--) { last = srcPath[i]; if (last === '.') { srcPath.splice(i, 1); } else if (last === '..') { srcPath.splice(i, 1); up++; } else if (up) { srcPath.splice(i, 1); up--; } } // if the path is allowed to go above the root, restore leading ..s if (!mustEndAbs && !removeAllDots) { for (; up--; up) { srcPath.unshift('..'); } } if (mustEndAbs && srcPath[0] !== '' && (!srcPath[0] || srcPath[0].charAt(0) !== '/')) { srcPath.unshift(''); } if (hasTrailingSlash && (srcPath.join('/').substr(-1) !== '/')) { srcPath.push(''); } var isAbsolute = srcPath[0] === '' || (srcPath[0] && srcPath[0].charAt(0) === '/'); // put the host back if (psychotic) { result.hostname = result.host = isAbsolute ? '' : srcPath.length ? srcPath.shift() : ''; //occationaly the auth can get stuck only in host //this especially happens in cases like //url.resolveObject('mailto:local1@domain1', 'local2@domain2') var authInHost = result.host && result.host.indexOf('@') > 0 ? result.host.split('@') : false; if (authInHost) { result.auth = authInHost.shift(); result.host = result.hostname = authInHost.shift(); } } mustEndAbs = mustEndAbs || (result.host && srcPath.length); if (mustEndAbs && !isAbsolute) { srcPath.unshift(''); } if (!srcPath.length) { result.pathname = null; result.path = null; } else { result.pathname = srcPath.join('/'); } //to support request.http if (!util.isNull(result.pathname) || !util.isNull(result.search)) { result.path = (result.pathname ? result.pathname : '') + (result.search ? result.search : ''); } result.auth = relative.auth || result.auth; result.slashes = result.slashes || relative.slashes; result.href = result.format(); return result; }; Url.prototype.parseHost = function() { var host = this.host; var port = portPattern.exec(host); if (port) { port = port[0]; if (port !== ':') { this.port = port.substr(1); } host = host.substr(0, host.length - port.length); } if (host) this.hostname = host; }; },{"./util":160,"punycode":127,"querystring":130}],160:[function(require,module,exports){ 'use strict'; module.exports = { isString: function(arg) { return typeof(arg) === 'string'; }, isObject: function(arg) { return typeof(arg) === 'object' && arg !== null; }, isNull: function(arg) { return arg === null; }, isNullOrUndefined: function(arg) { return arg == null; } }; },{}],161:[function(require,module,exports){ (function (global){ /** * Module exports. */ module.exports = deprecate; /** * Mark that a method should not be used. * Returns a modified function which warns once by default. * * If `localStorage.noDeprecation = true` is set, then it is a no-op. * * If `localStorage.throwDeprecation = true` is set, then deprecated functions * will throw an Error when invoked. * * If `localStorage.traceDeprecation = true` is set, then deprecated functions * will invoke `console.trace()` instead of `console.error()`. * * @param {Function} fn - the function to deprecate * @param {String} msg - the string to print to the console when `fn` is invoked * @returns {Function} a new "deprecated" version of `fn` * @api public */ function deprecate (fn, msg) { if (config('noDeprecation')) { return fn; } var warned = false; function deprecated() { if (!warned) { if (config('throwDeprecation')) { throw new Error(msg); } else if (config('traceDeprecation')) { console.trace(msg); } else { console.warn(msg); } warned = true; } return fn.apply(this, arguments); } return deprecated; } /** * Checks `localStorage` for boolean values for the given `name`. * * @param {String} name * @returns {Boolean} * @api private */ function config (name) { // accessing global.localStorage can trigger a DOMException in sandboxed iframes try { if (!global.localStorage) return false; } catch (_) { return false; } var val = global.localStorage[name]; if (null == val) return false; return String(val).toLowerCase() === 'true'; } }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{}],162:[function(require,module,exports){ module.exports = function isBuffer(arg) { return arg && typeof arg === 'object' && typeof arg.copy === 'function' && typeof arg.fill === 'function' && typeof arg.readUInt8 === 'function'; } },{}],163:[function(require,module,exports){ (function (process,global){ // Copyright Joyent, Inc. and other Node contributors. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the // "Software"), to deal in the Software without restriction, including // without limitation the rights to use, copy, modify, merge, publish, // distribute, sublicense, and/or sell copies of the Software, and to permit // persons to whom the Software is furnished to do so, subject to the // following conditions: // // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE // USE OR OTHER DEALINGS IN THE SOFTWARE. var formatRegExp = /%[sdj%]/g; exports.format = function(f) { if (!isString(f)) { var objects = []; for (var i = 0; i < arguments.length; i++) { objects.push(inspect(arguments[i])); } return objects.join(' '); } var i = 1; var args = arguments; var len = args.length; var str = String(f).replace(formatRegExp, function(x) { if (x === '%%') return '%'; if (i >= len) return x; switch (x) { case '%s': return String(args[i++]); case '%d': return Number(args[i++]); case '%j': try { return JSON.stringify(args[i++]); } catch (_) { return '[Circular]'; } default: return x; } }); for (var x = args[i]; i < len; x = args[++i]) { if (isNull(x) || !isObject(x)) { str += ' ' + x; } else { str += ' ' + inspect(x); } } return str; }; // Mark that a method should not be used. // Returns a modified function which warns once by default. // If --no-deprecation is set, then it is a no-op. exports.deprecate = function(fn, msg) { // Allow for deprecating things in the process of starting up. if (isUndefined(global.process)) { return function() { return exports.deprecate(fn, msg).apply(this, arguments); }; } if (process.noDeprecation === true) { return fn; } var warned = false; function deprecated() { if (!warned) { if (process.throwDeprecation) { throw new Error(msg); } else if (process.traceDeprecation) { console.trace(msg); } else { console.error(msg); } warned = true; } return fn.apply(this, arguments); } return deprecated; }; var debugs = {}; var debugEnviron; exports.debuglog = function(set) { if (isUndefined(debugEnviron)) debugEnviron = process.env.NODE_DEBUG || ''; set = set.toUpperCase(); if (!debugs[set]) { if (new RegExp('\\b' + set + '\\b', 'i').test(debugEnviron)) { var pid = process.pid; debugs[set] = function() { var msg = exports.format.apply(exports, arguments); console.error('%s %d: %s', set, pid, msg); }; } else { debugs[set] = function() {}; } } return debugs[set]; }; /** * Echos the value of a value. Trys to print the value out * in the best way possible given the different types. * * @param {Object} obj The object to print out. * @param {Object} opts Optional options object that alters the output. */ /* legacy: obj, showHidden, depth, colors*/ function inspect(obj, opts) { // default options var ctx = { seen: [], stylize: stylizeNoColor }; // legacy... if (arguments.length >= 3) ctx.depth = arguments[2]; if (arguments.length >= 4) ctx.colors = arguments[3]; if (isBoolean(opts)) { // legacy... ctx.showHidden = opts; } else if (opts) { // got an "options" object exports._extend(ctx, opts); } // set default options if (isUndefined(ctx.showHidden)) ctx.showHidden = false; if (isUndefined(ctx.depth)) ctx.depth = 2; if (isUndefined(ctx.colors)) ctx.colors = false; if (isUndefined(ctx.customInspect)) ctx.customInspect = true; if (ctx.colors) ctx.stylize = stylizeWithColor; return formatValue(ctx, obj, ctx.depth); } exports.inspect = inspect; // http://en.wikipedia.org/wiki/ANSI_escape_code#graphics inspect.colors = { 'bold' : [1, 22], 'italic' : [3, 23], 'underline' : [4, 24], 'inverse' : [7, 27], 'white' : [37, 39], 'grey' : [90, 39], 'black' : [30, 39], 'blue' : [34, 39], 'cyan' : [36, 39], 'green' : [32, 39], 'magenta' : [35, 39], 'red' : [31, 39], 'yellow' : [33, 39] }; // Don't use 'blue' not visible on cmd.exe inspect.styles = { 'special': 'cyan', 'number': 'yellow', 'boolean': 'yellow', 'undefined': 'grey', 'null': 'bold', 'string': 'green', 'date': 'magenta', // "name": intentionally not styling 'regexp': 'red' }; function stylizeWithColor(str, styleType) { var style = inspect.styles[styleType]; if (style) { return '\u001b[' + inspect.colors[style][0] + 'm' + str + '\u001b[' + inspect.colors[style][1] + 'm'; } else { return str; } } function stylizeNoColor(str, styleType) { return str; } function arrayToHash(array) { var hash = {}; array.forEach(function(val, idx) { hash[val] = true; }); return hash; } function formatValue(ctx, value, recurseTimes) { // Provide a hook for user-specified inspect functions. // Check that value is an object with an inspect function on it if (ctx.customInspect && value && isFunction(value.inspect) && // Filter out the util module, it's inspect function is special value.inspect !== exports.inspect && // Also filter out any prototype objects using the circular check. !(value.constructor && value.constructor.prototype === value)) { var ret = value.inspect(recurseTimes, ctx); if (!isString(ret)) { ret = formatValue(ctx, ret, recurseTimes); } return ret; } // Primitive types cannot have properties var primitive = formatPrimitive(ctx, value); if (primitive) { return primitive; } // Look up the keys of the object. var keys = Object.keys(value); var visibleKeys = arrayToHash(keys); if (ctx.showHidden) { keys = Object.getOwnPropertyNames(value); } // IE doesn't make error fields non-enumerable // http://msdn.microsoft.com/en-us/library/ie/dww52sbt(v=vs.94).aspx if (isError(value) && (keys.indexOf('message') >= 0 || keys.indexOf('description') >= 0)) { return formatError(value); } // Some type of object without properties can be shortcutted. if (keys.length === 0) { if (isFunction(value)) { var name = value.name ? ': ' + value.name : ''; return ctx.stylize('[Function' + name + ']', 'special'); } if (isRegExp(value)) { return ctx.stylize(RegExp.prototype.toString.call(value), 'regexp'); } if (isDate(value)) { return ctx.stylize(Date.prototype.toString.call(value), 'date'); } if (isError(value)) { return formatError(value); } } var base = '', array = false, braces = ['{', '}']; // Make Array say that they are Array if (isArray(value)) { array = true; braces = ['[', ']']; } // Make functions say that they are functions if (isFunction(value)) { var n = value.name ? ': ' + value.name : ''; base = ' [Function' + n + ']'; } // Make RegExps say that they are RegExps if (isRegExp(value)) { base = ' ' + RegExp.prototype.toString.call(value); } // Make dates with properties first say the date if (isDate(value)) { base = ' ' + Date.prototype.toUTCString.call(value); } // Make error with message first say the error if (isError(value)) { base = ' ' + formatError(value); } if (keys.length === 0 && (!array || value.length == 0)) { return braces[0] + base + braces[1]; } if (recurseTimes < 0) { if (isRegExp(value)) { return ctx.stylize(RegExp.prototype.toString.call(value), 'regexp'); } else { return ctx.stylize('[Object]', 'special'); } } ctx.seen.push(value); var output; if (array) { output = formatArray(ctx, value, recurseTimes, visibleKeys, keys); } else { output = keys.map(function(key) { return formatProperty(ctx, value, recurseTimes, visibleKeys, key, array); }); } ctx.seen.pop(); return reduceToSingleString(output, base, braces); } function formatPrimitive(ctx, value) { if (isUndefined(value)) return ctx.stylize('undefined', 'undefined'); if (isString(value)) { var simple = '\'' + JSON.stringify(value).replace(/^"|"$/g, '') .replace(/'/g, "\\'") .replace(/\\"/g, '"') + '\''; return ctx.stylize(simple, 'string'); } if (isNumber(value)) return ctx.stylize('' + value, 'number'); if (isBoolean(value)) return ctx.stylize('' + value, 'boolean'); // For some reason typeof null is "object", so special case here. if (isNull(value)) return ctx.stylize('null', 'null'); } function formatError(value) { return '[' + Error.prototype.toString.call(value) + ']'; } function formatArray(ctx, value, recurseTimes, visibleKeys, keys) { var output = []; for (var i = 0, l = value.length; i < l; ++i) { if (hasOwnProperty(value, String(i))) { output.push(formatProperty(ctx, value, recurseTimes, visibleKeys, String(i), true)); } else { output.push(''); } } keys.forEach(function(key) { if (!key.match(/^\d+$/)) { output.push(formatProperty(ctx, value, recurseTimes, visibleKeys, key, true)); } }); return output; } function formatProperty(ctx, value, recurseTimes, visibleKeys, key, array) { var name, str, desc; desc = Object.getOwnPropertyDescriptor(value, key) || { value: value[key] }; if (desc.get) { if (desc.set) { str = ctx.stylize('[Getter/Setter]', 'special'); } else { str = ctx.stylize('[Getter]', 'special'); } } else { if (desc.set) { str = ctx.stylize('[Setter]', 'special'); } } if (!hasOwnProperty(visibleKeys, key)) { name = '[' + key + ']'; } if (!str) { if (ctx.seen.indexOf(desc.value) < 0) { if (isNull(recurseTimes)) { str = formatValue(ctx, desc.value, null); } else { str = formatValue(ctx, desc.value, recurseTimes - 1); } if (str.indexOf('\n') > -1) { if (array) { str = str.split('\n').map(function(line) { return ' ' + line; }).join('\n').substr(2); } else { str = '\n' + str.split('\n').map(function(line) { return ' ' + line; }).join('\n'); } } } else { str = ctx.stylize('[Circular]', 'special'); } } if (isUndefined(name)) { if (array && key.match(/^\d+$/)) { return str; } name = JSON.stringify('' + key); if (name.match(/^"([a-zA-Z_][a-zA-Z_0-9]*)"$/)) { name = name.substr(1, name.length - 2); name = ctx.stylize(name, 'name'); } else { name = name.replace(/'/g, "\\'") .replace(/\\"/g, '"') .replace(/(^"|"$)/g, "'"); name = ctx.stylize(name, 'string'); } } return name + ': ' + str; } function reduceToSingleString(output, base, braces) { var numLinesEst = 0; var length = output.reduce(function(prev, cur) { numLinesEst++; if (cur.indexOf('\n') >= 0) numLinesEst++; return prev + cur.replace(/\u001b\[\d\d?m/g, '').length + 1; }, 0); if (length > 60) { return braces[0] + (base === '' ? '' : base + '\n ') + ' ' + output.join(',\n ') + ' ' + braces[1]; } return braces[0] + base + ' ' + output.join(', ') + ' ' + braces[1]; } // NOTE: These type checking functions intentionally don't use `instanceof` // because it is fragile and can be easily faked with `Object.create()`. function isArray(ar) { return Array.isArray(ar); } exports.isArray = isArray; function isBoolean(arg) { return typeof arg === 'boolean'; } exports.isBoolean = isBoolean; function isNull(arg) { return arg === null; } exports.isNull = isNull; function isNullOrUndefined(arg) { return arg == null; } exports.isNullOrUndefined = isNullOrUndefined; function isNumber(arg) { return typeof arg === 'number'; } exports.isNumber = isNumber; function isString(arg) { return typeof arg === 'string'; } exports.isString = isString; function isSymbol(arg) { return typeof arg === 'symbol'; } exports.isSymbol = isSymbol; function isUndefined(arg) { return arg === void 0; } exports.isUndefined = isUndefined; function isRegExp(re) { return isObject(re) && objectToString(re) === '[object RegExp]'; } exports.isRegExp = isRegExp; function isObject(arg) { return typeof arg === 'object' && arg !== null; } exports.isObject = isObject; function isDate(d) { return isObject(d) && objectToString(d) === '[object Date]'; } exports.isDate = isDate; function isError(e) { return isObject(e) && (objectToString(e) === '[object Error]' || e instanceof Error); } exports.isError = isError; function isFunction(arg) { return typeof arg === 'function'; } exports.isFunction = isFunction; function isPrimitive(arg) { return arg === null || typeof arg === 'boolean' || typeof arg === 'number' || typeof arg === 'string' || typeof arg === 'symbol' || // ES6 symbol typeof arg === 'undefined'; } exports.isPrimitive = isPrimitive; exports.isBuffer = require('./support/isBuffer'); function objectToString(o) { return Object.prototype.toString.call(o); } function pad(n) { return n < 10 ? '0' + n.toString(10) : n.toString(10); } var months = ['Jan', 'Feb', 'Mar', 'Apr', 'May', 'Jun', 'Jul', 'Aug', 'Sep', 'Oct', 'Nov', 'Dec']; // 26 Feb 16:19:34 function timestamp() { var d = new Date(); var time = [pad(d.getHours()), pad(d.getMinutes()), pad(d.getSeconds())].join(':'); return [d.getDate(), months[d.getMonth()], time].join(' '); } // log is just a thin wrapper to console.log that prepends a timestamp exports.log = function() { console.log('%s - %s', timestamp(), exports.format.apply(exports, arguments)); }; /** * Inherit the prototype methods from one constructor into another. * * The Function.prototype.inherits from lang.js rewritten as a standalone * function (not on Function.prototype). NOTE: If this file is to be loaded * during bootstrapping this function needs to be rewritten using some native * functions as prototype setup using normal JavaScript does not work as * expected during bootstrapping (see mirror.js in r114903). * * @param {function} ctor Constructor function which needs to inherit the * prototype. * @param {function} superCtor Constructor function to inherit prototype from. */ exports.inherits = require('inherits'); exports._extend = function(origin, add) { // Don't do anything if add isn't an object if (!add || !isObject(add)) return origin; var keys = Object.keys(add); var i = keys.length; while (i--) { origin[keys[i]] = add[keys[i]]; } return origin; }; function hasOwnProperty(obj, prop) { return Object.prototype.hasOwnProperty.call(obj, prop); } }).call(this,require('_process'),typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"./support/isBuffer":162,"_process":120,"inherits":97}],164:[function(require,module,exports){ var indexOf = require('indexof'); var Object_keys = function (obj) { if (Object.keys) return Object.keys(obj) else { var res = []; for (var key in obj) res.push(key) return res; } }; var forEach = function (xs, fn) { if (xs.forEach) return xs.forEach(fn) else for (var i = 0; i < xs.length; i++) { fn(xs[i], i, xs); } }; var defineProp = (function() { try { Object.defineProperty({}, '_', {}); return function(obj, name, value) { Object.defineProperty(obj, name, { writable: true, enumerable: false, configurable: true, value: value }) }; } catch(e) { return function(obj, name, value) { obj[name] = value; }; } }()); var globals = ['Array', 'Boolean', 'Date', 'Error', 'EvalError', 'Function', 'Infinity', 'JSON', 'Math', 'NaN', 'Number', 'Object', 'RangeError', 'ReferenceError', 'RegExp', 'String', 'SyntaxError', 'TypeError', 'URIError', 'decodeURI', 'decodeURIComponent', 'encodeURI', 'encodeURIComponent', 'escape', 'eval', 'isFinite', 'isNaN', 'parseFloat', 'parseInt', 'undefined', 'unescape']; function Context() {} Context.prototype = {}; var Script = exports.Script = function NodeScript (code) { if (!(this instanceof Script)) return new Script(code); this.code = code; }; Script.prototype.runInContext = function (context) { if (!(context instanceof Context)) { throw new TypeError("needs a 'context' argument."); } var iframe = document.createElement('iframe'); if (!iframe.style) iframe.style = {}; iframe.style.display = 'none'; document.body.appendChild(iframe); var win = iframe.contentWindow; var wEval = win.eval, wExecScript = win.execScript; if (!wEval && wExecScript) { // win.eval() magically appears when this is called in IE: wExecScript.call(win, 'null'); wEval = win.eval; } forEach(Object_keys(context), function (key) { win[key] = context[key]; }); forEach(globals, function (key) { if (context[key]) { win[key] = context[key]; } }); var winKeys = Object_keys(win); var res = wEval.call(win, this.code); forEach(Object_keys(win), function (key) { // Avoid copying circular objects like `top` and `window` by only // updating existing context properties or new properties in the `win` // that was only introduced after the eval. if (key in context || indexOf(winKeys, key) === -1) { context[key] = win[key]; } }); forEach(globals, function (key) { if (!(key in context)) { defineProp(context, key, win[key]); } }); document.body.removeChild(iframe); return res; }; Script.prototype.runInThisContext = function () { return eval(this.code); // maybe... }; Script.prototype.runInNewContext = function (context) { var ctx = Script.createContext(context); var res = this.runInContext(ctx); forEach(Object_keys(ctx), function (key) { context[key] = ctx[key]; }); return res; }; forEach(Object_keys(Script.prototype), function (name) { exports[name] = Script[name] = function (code) { var s = Script(code); return s[name].apply(s, [].slice.call(arguments, 1)); }; }); exports.createScript = function (code) { return exports.Script(code); }; exports.createContext = Script.createContext = function (context) { var copy = new Context(); if(typeof context === 'object') { forEach(Object_keys(context), function (key) { copy[key] = context[key]; }); } return copy; }; },{"indexof":96}],165:[function(require,module,exports){ module.exports = extend var hasOwnProperty = Object.prototype.hasOwnProperty; function extend() { var target = {} for (var i = 0; i < arguments.length; i++) { var source = arguments[i] for (var key in source) { if (hasOwnProperty.call(source, key)) { target[key] = source[key] } } } return target } },{}],166:[function(require,module,exports){ // Copyright 2011 Mark Cavage All rights reserved. module.exports = { newInvalidAsn1Error: function(msg) { var e = new Error(); e.name = 'InvalidAsn1Error'; e.message = msg || ''; return e; } }; },{}],167:[function(require,module,exports){ // Copyright 2011 Mark Cavage All rights reserved. var errors = require('./errors'); var types = require('./types'); var Reader = require('./reader'); var Writer = require('./writer'); ///--- Exports module.exports = { Reader: Reader, Writer: Writer }; for (var t in types) { if (types.hasOwnProperty(t)) module.exports[t] = types[t]; } for (var e in errors) { if (errors.hasOwnProperty(e)) module.exports[e] = errors[e]; } },{"./errors":166,"./reader":168,"./types":169,"./writer":170}],168:[function(require,module,exports){ (function (Buffer){ // Copyright 2011 Mark Cavage All rights reserved. var assert = require('assert'); var ASN1 = require('./types'); var errors = require('./errors'); ///--- Globals var newInvalidAsn1Error = errors.newInvalidAsn1Error; ///--- API function Reader(data) { if (!data || !Buffer.isBuffer(data)) throw new TypeError('data must be a node Buffer'); this._buf = data; this._size = data.length; // These hold the "current" state this._len = 0; this._offset = 0; } Object.defineProperty(Reader.prototype, 'length', { enumerable: true, get: function () { return (this._len); } }); Object.defineProperty(Reader.prototype, 'offset', { enumerable: true, get: function () { return (this._offset); } }); Object.defineProperty(Reader.prototype, 'remain', { get: function () { return (this._size - this._offset); } }); Object.defineProperty(Reader.prototype, 'buffer', { get: function () { return (this._buf.slice(this._offset)); } }); /** * Reads a single byte and advances offset; you can pass in `true` to make this * a "peek" operation (i.e., get the byte, but don't advance the offset). * * @param {Boolean} peek true means don't move offset. * @return {Number} the next byte, null if not enough data. */ Reader.prototype.readByte = function(peek) { if (this._size - this._offset < 1) return null; var b = this._buf[this._offset] & 0xff; if (!peek) this._offset += 1; return b; }; Reader.prototype.peek = function() { return this.readByte(true); }; /** * Reads a (potentially) variable length off the BER buffer. This call is * not really meant to be called directly, as callers have to manipulate * the internal buffer afterwards. * * As a result of this call, you can call `Reader.length`, until the * next thing called that does a readLength. * * @return {Number} the amount of offset to advance the buffer. * @throws {InvalidAsn1Error} on bad ASN.1 */ Reader.prototype.readLength = function(offset) { if (offset === undefined) offset = this._offset; if (offset >= this._size) return null; var lenB = this._buf[offset++] & 0xff; if (lenB === null) return null; if ((lenB & 0x80) == 0x80) { lenB &= 0x7f; if (lenB == 0) throw newInvalidAsn1Error('Indefinite length not supported'); if (lenB > 4) throw newInvalidAsn1Error('encoding too long'); if (this._size - offset < lenB) return null; this._len = 0; for (var i = 0; i < lenB; i++) this._len = (this._len << 8) + (this._buf[offset++] & 0xff); } else { // Wasn't a variable length this._len = lenB; } return offset; }; /** * Parses the next sequence in this BER buffer. * * To get the length of the sequence, call `Reader.length`. * * @return {Number} the sequence's tag. */ Reader.prototype.readSequence = function(tag) { var seq = this.peek(); if (seq === null) return null; if (tag !== undefined && tag !== seq) throw newInvalidAsn1Error('Expected 0x' + tag.toString(16) + ': got 0x' + seq.toString(16)); var o = this.readLength(this._offset + 1); // stored in `length` if (o === null) return null; this._offset = o; return seq; }; Reader.prototype.readInt = function() { return this._readTag(ASN1.Integer); }; Reader.prototype.readBoolean = function() { return (this._readTag(ASN1.Boolean) === 0 ? false : true); }; Reader.prototype.readEnumeration = function() { return this._readTag(ASN1.Enumeration); }; Reader.prototype.readString = function(tag, retbuf) { if (!tag) tag = ASN1.OctetString; var b = this.peek(); if (b === null) return null; if (b !== tag) throw newInvalidAsn1Error('Expected 0x' + tag.toString(16) + ': got 0x' + b.toString(16)); var o = this.readLength(this._offset + 1); // stored in `length` if (o === null) return null; if (this.length > this._size - o) return null; this._offset = o; if (this.length === 0) return retbuf ? new Buffer(0) : ''; var str = this._buf.slice(this._offset, this._offset + this.length); this._offset += this.length; return retbuf ? str : str.toString('utf8'); }; Reader.prototype.readOID = function(tag) { if (!tag) tag = ASN1.OID; var b = this.readString(tag, true); if (b === null) return null; var values = []; var value = 0; for (var i = 0; i < b.length; i++) { var byte = b[i] & 0xff; value <<= 7; value += byte & 0x7f; if ((byte & 0x80) == 0) { values.push(value); value = 0; } } value = values.shift(); values.unshift(value % 40); values.unshift((value / 40) >> 0); return values.join('.'); }; Reader.prototype._readTag = function(tag) { assert.ok(tag !== undefined); var b = this.peek(); if (b === null) return null; if (b !== tag) throw newInvalidAsn1Error('Expected 0x' + tag.toString(16) + ': got 0x' + b.toString(16)); var o = this.readLength(this._offset + 1); // stored in `length` if (o === null) return null; if (this.length > 4) throw newInvalidAsn1Error('Integer too long: ' + this.length); if (this.length > this._size - o) return null; this._offset = o; var fb = this._buf[this._offset]; var value = 0; for (var i = 0; i < this.length; i++) { value <<= 8; value |= (this._buf[this._offset++] & 0xff); } if ((fb & 0x80) == 0x80 && i !== 4) value -= (1 << (i * 8)); return value >> 0; }; ///--- Exported API module.exports = Reader; }).call(this,require("buffer").Buffer) },{"./errors":166,"./types":169,"assert":16,"buffer":49}],169:[function(require,module,exports){ // Copyright 2011 Mark Cavage All rights reserved. module.exports = { EOC: 0, Boolean: 1, Integer: 2, BitString: 3, OctetString: 4, Null: 5, OID: 6, ObjectDescriptor: 7, External: 8, Real: 9, // float Enumeration: 10, PDV: 11, Utf8String: 12, RelativeOID: 13, Sequence: 16, Set: 17, NumericString: 18, PrintableString: 19, T61String: 20, VideotexString: 21, IA5String: 22, UTCTime: 23, GeneralizedTime: 24, GraphicString: 25, VisibleString: 26, GeneralString: 28, UniversalString: 29, CharacterString: 30, BMPString: 31, Constructor: 32, Context: 128 }; },{}],170:[function(require,module,exports){ (function (Buffer){ // Copyright 2011 Mark Cavage All rights reserved. var assert = require('assert'); var ASN1 = require('./types'); var errors = require('./errors'); ///--- Globals var newInvalidAsn1Error = errors.newInvalidAsn1Error; var DEFAULT_OPTS = { size: 1024, growthFactor: 8 }; ///--- Helpers function merge(from, to) { assert.ok(from); assert.equal(typeof(from), 'object'); assert.ok(to); assert.equal(typeof(to), 'object'); var keys = Object.getOwnPropertyNames(from); keys.forEach(function(key) { if (to[key]) return; var value = Object.getOwnPropertyDescriptor(from, key); Object.defineProperty(to, key, value); }); return to; } ///--- API function Writer(options) { options = merge(DEFAULT_OPTS, options || {}); this._buf = new Buffer(options.size || 1024); this._size = this._buf.length; this._offset = 0; this._options = options; // A list of offsets in the buffer where we need to insert // sequence tag/len pairs. this._seq = []; } Object.defineProperty(Writer.prototype, 'buffer', { get: function () { if (this._seq.length) throw new InvalidAsn1Error(this._seq.length + ' unended sequence(s)'); return (this._buf.slice(0, this._offset)); } }); Writer.prototype.writeByte = function(b) { if (typeof(b) !== 'number') throw new TypeError('argument must be a Number'); this._ensure(1); this._buf[this._offset++] = b; }; Writer.prototype.writeInt = function(i, tag) { if (typeof(i) !== 'number') throw new TypeError('argument must be a Number'); if (typeof(tag) !== 'number') tag = ASN1.Integer; var sz = 4; while ((((i & 0xff800000) === 0) || ((i & 0xff800000) === 0xff800000 >> 0)) && (sz > 1)) { sz--; i <<= 8; } if (sz > 4) throw new InvalidAsn1Error('BER ints cannot be > 0xffffffff'); this._ensure(2 + sz); this._buf[this._offset++] = tag; this._buf[this._offset++] = sz; while (sz-- > 0) { this._buf[this._offset++] = ((i & 0xff000000) >>> 24); i <<= 8; } }; Writer.prototype.writeNull = function() { this.writeByte(ASN1.Null); this.writeByte(0x00); }; Writer.prototype.writeEnumeration = function(i, tag) { if (typeof(i) !== 'number') throw new TypeError('argument must be a Number'); if (typeof(tag) !== 'number') tag = ASN1.Enumeration; return this.writeInt(i, tag); }; Writer.prototype.writeBoolean = function(b, tag) { if (typeof(b) !== 'boolean') throw new TypeError('argument must be a Boolean'); if (typeof(tag) !== 'number') tag = ASN1.Boolean; this._ensure(3); this._buf[this._offset++] = tag; this._buf[this._offset++] = 0x01; this._buf[this._offset++] = b ? 0xff : 0x00; }; Writer.prototype.writeString = function(s, tag) { if (typeof(s) !== 'string') throw new TypeError('argument must be a string (was: ' + typeof(s) + ')'); if (typeof(tag) !== 'number') tag = ASN1.OctetString; var len = Buffer.byteLength(s); this.writeByte(tag); this.writeLength(len); if (len) { this._ensure(len); this._buf.write(s, this._offset); this._offset += len; } }; Writer.prototype.writeBuffer = function(buf, tag) { if (typeof(tag) !== 'number') throw new TypeError('tag must be a number'); if (!Buffer.isBuffer(buf)) throw new TypeError('argument must be a buffer'); this.writeByte(tag); this.writeLength(buf.length); this._ensure(buf.length); buf.copy(this._buf, this._offset, 0, buf.length); this._offset += buf.length; }; Writer.prototype.writeStringArray = function(strings) { if ((!strings instanceof Array)) throw new TypeError('argument must be an Array[String]'); var self = this; strings.forEach(function(s) { self.writeString(s); }); }; // This is really to solve DER cases, but whatever for now Writer.prototype.writeOID = function(s, tag) { if (typeof(s) !== 'string') throw new TypeError('argument must be a string'); if (typeof(tag) !== 'number') tag = ASN1.OID; if (!/^([0-9]+\.){3,}[0-9]+$/.test(s)) throw new Error('argument is not a valid OID string'); function encodeOctet(bytes, octet) { if (octet < 128) { bytes.push(octet); } else if (octet < 16384) { bytes.push((octet >>> 7) | 0x80); bytes.push(octet & 0x7F); } else if (octet < 2097152) { bytes.push((octet >>> 14) | 0x80); bytes.push(((octet >>> 7) | 0x80) & 0xFF); bytes.push(octet & 0x7F); } else if (octet < 268435456) { bytes.push((octet >>> 21) | 0x80); bytes.push(((octet >>> 14) | 0x80) & 0xFF); bytes.push(((octet >>> 7) | 0x80) & 0xFF); bytes.push(octet & 0x7F); } else { bytes.push(((octet >>> 28) | 0x80) & 0xFF); bytes.push(((octet >>> 21) | 0x80) & 0xFF); bytes.push(((octet >>> 14) | 0x80) & 0xFF); bytes.push(((octet >>> 7) | 0x80) & 0xFF); bytes.push(octet & 0x7F); } } var tmp = s.split('.'); var bytes = []; bytes.push(parseInt(tmp[0], 10) * 40 + parseInt(tmp[1], 10)); tmp.slice(2).forEach(function(b) { encodeOctet(bytes, parseInt(b, 10)); }); var self = this; this._ensure(2 + bytes.length); this.writeByte(tag); this.writeLength(bytes.length); bytes.forEach(function(b) { self.writeByte(b); }); }; Writer.prototype.writeLength = function(len) { if (typeof(len) !== 'number') throw new TypeError('argument must be a Number'); this._ensure(4); if (len <= 0x7f) { this._buf[this._offset++] = len; } else if (len <= 0xff) { this._buf[this._offset++] = 0x81; this._buf[this._offset++] = len; } else if (len <= 0xffff) { this._buf[this._offset++] = 0x82; this._buf[this._offset++] = len >> 8; this._buf[this._offset++] = len; } else if (len <= 0xffffff) { this._buf[this._offset++] = 0x83; this._buf[this._offset++] = len >> 16; this._buf[this._offset++] = len >> 8; this._buf[this._offset++] = len; } else { throw new InvalidAsn1ERror('Length too long (> 4 bytes)'); } }; Writer.prototype.startSequence = function(tag) { if (typeof(tag) !== 'number') tag = ASN1.Sequence | ASN1.Constructor; this.writeByte(tag); this._seq.push(this._offset); this._ensure(3); this._offset += 3; }; Writer.prototype.endSequence = function() { var seq = this._seq.pop(); var start = seq + 3; var len = this._offset - start; if (len <= 0x7f) { this._shift(start, len, -2); this._buf[seq] = len; } else if (len <= 0xff) { this._shift(start, len, -1); this._buf[seq] = 0x81; this._buf[seq + 1] = len; } else if (len <= 0xffff) { this._buf[seq] = 0x82; this._buf[seq + 1] = len >> 8; this._buf[seq + 2] = len; } else if (len <= 0xffffff) { this._shift(start, len, 1); this._buf[seq] = 0x83; this._buf[seq + 1] = len >> 16; this._buf[seq + 2] = len >> 8; this._buf[seq + 3] = len; } else { throw new InvalidAsn1Error('Sequence too long'); } }; Writer.prototype._shift = function(start, len, shift) { assert.ok(start !== undefined); assert.ok(len !== undefined); assert.ok(shift); this._buf.copy(this._buf, start + shift, start, start + len); this._offset += shift; }; Writer.prototype._ensure = function(len) { assert.ok(len); if (this._size - this._offset < len) { var sz = this._size * this._options.growthFactor; if (sz - this._offset < len) sz += len; var buf = new Buffer(sz); this._buf.copy(buf, 0, 0, this._offset); this._buf = buf; this._size = sz; } }; ///--- Exported API module.exports = Writer; }).call(this,require("buffer").Buffer) },{"./errors":166,"./types":169,"assert":16,"buffer":49}],171:[function(require,module,exports){ // Copyright 2011 Mark Cavage All rights reserved. // If you have no idea what ASN.1 or BER is, see this: // ftp://ftp.rsa.com/pub/pkcs/ascii/layman.asc var Ber = require('./ber/index'); ///--- Exported API module.exports = { Ber: Ber, BerReader: Ber.Reader, BerWriter: Ber.Writer }; },{"./ber/index":167}],172:[function(require,module,exports){ (function (Buffer,process){ // Copyright (c) 2012, Mark Cavage. All rights reserved. // Copyright 2015 Joyent, Inc. var assert = require('assert'); var Stream = require('stream').Stream; var util = require('util'); ///--- Globals /* JSSTYLED */ var UUID_REGEXP = /^[a-fA-F0-9]{8}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{12}$/; ///--- Internal function _capitalize(str) { return (str.charAt(0).toUpperCase() + str.slice(1)); } function _toss(name, expected, oper, arg, actual) { throw new assert.AssertionError({ message: util.format('%s (%s) is required', name, expected), actual: (actual === undefined) ? typeof (arg) : actual(arg), expected: expected, operator: oper || '===', stackStartFunction: _toss.caller }); } function _getClass(arg) { return (Object.prototype.toString.call(arg).slice(8, -1)); } function noop() { // Why even bother with asserts? } ///--- Exports var types = { bool: { check: function (arg) { return typeof (arg) === 'boolean'; } }, func: { check: function (arg) { return typeof (arg) === 'function'; } }, string: { check: function (arg) { return typeof (arg) === 'string'; } }, object: { check: function (arg) { return typeof (arg) === 'object' && arg !== null; } }, number: { check: function (arg) { return typeof (arg) === 'number' && !isNaN(arg) && isFinite(arg); } }, buffer: { check: function (arg) { return Buffer.isBuffer(arg); }, operator: 'Buffer.isBuffer' }, array: { check: function (arg) { return Array.isArray(arg); }, operator: 'Array.isArray' }, stream: { check: function (arg) { return arg instanceof Stream; }, operator: 'instanceof', actual: _getClass }, date: { check: function (arg) { return arg instanceof Date; }, operator: 'instanceof', actual: _getClass }, regexp: { check: function (arg) { return arg instanceof RegExp; }, operator: 'instanceof', actual: _getClass }, uuid: { check: function (arg) { return typeof (arg) === 'string' && UUID_REGEXP.test(arg); }, operator: 'isUUID' } }; function _setExports(ndebug) { var keys = Object.keys(types); var out; /* re-export standard assert */ if (process.env.NODE_NDEBUG) { out = noop; } else { out = function (arg, msg) { if (!arg) { _toss(msg, 'true', arg); } }; } /* standard checks */ keys.forEach(function (k) { if (ndebug) { out[k] = noop; return; } var type = types[k]; out[k] = function (arg, msg) { if (!type.check(arg)) { _toss(msg, k, type.operator, arg, type.actual); } }; }); /* optional checks */ keys.forEach(function (k) { var name = 'optional' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; out[name] = function (arg, msg) { if (arg === undefined || arg === null) { return; } if (!type.check(arg)) { _toss(msg, k, type.operator, arg, type.actual); } }; }); /* arrayOf checks */ keys.forEach(function (k) { var name = 'arrayOf' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; var expected = '[' + k + ']'; out[name] = function (arg, msg) { if (!Array.isArray(arg)) { _toss(msg, expected, type.operator, arg, type.actual); } var i; for (i = 0; i < arg.length; i++) { if (!type.check(arg[i])) { _toss(msg, expected, type.operator, arg, type.actual); } } }; }); /* optionalArrayOf checks */ keys.forEach(function (k) { var name = 'optionalArrayOf' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; var expected = '[' + k + ']'; out[name] = function (arg, msg) { if (arg === undefined || arg === null) { return; } if (!Array.isArray(arg)) { _toss(msg, expected, type.operator, arg, type.actual); } var i; for (i = 0; i < arg.length; i++) { if (!type.check(arg[i])) { _toss(msg, expected, type.operator, arg, type.actual); } } }; }); /* re-export built-in assertions */ Object.keys(assert).forEach(function (k) { if (k === 'AssertionError') { out[k] = assert[k]; return; } if (ndebug) { out[k] = noop; return; } out[k] = assert[k]; }); /* export ourselves (for unit tests _only_) */ out._setExports = _setExports; return out; } module.exports = _setExports(process.env.NODE_NDEBUG); }).call(this,{"isBuffer":require("../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js")},require('_process')) },{"../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js":98,"_process":120,"assert":16,"stream":152,"util":163}],173:[function(require,module,exports){ /*! * Copyright 2010 LearnBoost * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ /** * Module dependencies. */ var crypto = require('crypto') , parse = require('url').parse ; /** * Valid keys. */ var keys = [ 'acl' , 'location' , 'logging' , 'notification' , 'partNumber' , 'policy' , 'requestPayment' , 'torrent' , 'uploadId' , 'uploads' , 'versionId' , 'versioning' , 'versions' , 'website' ] /** * Return an "Authorization" header value with the given `options` * in the form of "AWS :" * * @param {Object} options * @return {String} * @api private */ function authorization (options) { return 'AWS ' + options.key + ':' + sign(options) } module.exports = authorization module.exports.authorization = authorization /** * Simple HMAC-SHA1 Wrapper * * @param {Object} options * @return {String} * @api private */ function hmacSha1 (options) { return crypto.createHmac('sha1', options.secret).update(options.message).digest('base64') } module.exports.hmacSha1 = hmacSha1 /** * Create a base64 sha1 HMAC for `options`. * * @param {Object} options * @return {String} * @api private */ function sign (options) { options.message = stringToSign(options) return hmacSha1(options) } module.exports.sign = sign /** * Create a base64 sha1 HMAC for `options`. * * Specifically to be used with S3 presigned URLs * * @param {Object} options * @return {String} * @api private */ function signQuery (options) { options.message = queryStringToSign(options) return hmacSha1(options) } module.exports.signQuery= signQuery /** * Return a string for sign() with the given `options`. * * Spec: * * \n * \n * \n * \n * [headers\n] * * * @param {Object} options * @return {String} * @api private */ function stringToSign (options) { var headers = options.amazonHeaders || '' if (headers) headers += '\n' var r = [ options.verb , options.md5 , options.contentType , options.date ? options.date.toUTCString() : '' , headers + options.resource ] return r.join('\n') } module.exports.queryStringToSign = stringToSign /** * Return a string for sign() with the given `options`, but is meant exclusively * for S3 presigned URLs * * Spec: * * \n * * * @param {Object} options * @return {String} * @api private */ function queryStringToSign (options){ return 'GET\n\n\n' + options.date + '\n' + options.resource } module.exports.queryStringToSign = queryStringToSign /** * Perform the following: * * - ignore non-amazon headers * - lowercase fields * - sort lexicographically * - trim whitespace between ":" * - join with newline * * @param {Object} headers * @return {String} * @api private */ function canonicalizeHeaders (headers) { var buf = [] , fields = Object.keys(headers) ; for (var i = 0, len = fields.length; i < len; ++i) { var field = fields[i] , val = headers[field] , field = field.toLowerCase() ; if (0 !== field.indexOf('x-amz')) continue buf.push(field + ':' + val) } return buf.sort().join('\n') } module.exports.canonicalizeHeaders = canonicalizeHeaders /** * Perform the following: * * - ignore non sub-resources * - sort lexicographically * * @param {String} resource * @return {String} * @api private */ function canonicalizeResource (resource) { var url = parse(resource, true) , path = url.pathname , buf = [] ; Object.keys(url.query).forEach(function(key){ if (!~keys.indexOf(key)) return var val = '' == url.query[key] ? '' : '=' + encodeURIComponent(url.query[key]) buf.push(key + val) }) return path + (buf.length ? '?' + buf.sort().join('&') : '') } module.exports.canonicalizeResource = canonicalizeResource },{"crypto":58,"url":159}],174:[function(require,module,exports){ (function (process,Buffer){ var aws4 = exports, url = require('url'), querystring = require('querystring'), crypto = require('crypto'), lru = require('./lru'), credentialsCache = lru(1000) // http://docs.amazonwebservices.com/general/latest/gr/signature-version-4.html function hmac(key, string, encoding) { return crypto.createHmac('sha256', key).update(string, 'utf8').digest(encoding) } function hash(string, encoding) { return crypto.createHash('sha256').update(string, 'utf8').digest(encoding) } // This function assumes the string has already been percent encoded function encodeRfc3986(urlEncodedString) { return urlEncodedString.replace(/[!'()*]/g, function(c) { return '%' + c.charCodeAt(0).toString(16).toUpperCase() }) } // request: { path | body, [host], [method], [headers], [service], [region] } // credentials: { accessKeyId, secretAccessKey, [sessionToken] } function RequestSigner(request, credentials) { if (typeof request === 'string') request = url.parse(request) var headers = request.headers = (request.headers || {}), hostParts = this.matchHost(request.hostname || request.host || headers.Host || headers.host) this.request = request this.credentials = credentials || this.defaultCredentials() this.service = request.service || hostParts[0] || '' this.region = request.region || hostParts[1] || 'us-east-1' // SES uses a different domain from the service name if (this.service === 'email') this.service = 'ses' if (!request.method && request.body) request.method = 'POST' if (!headers.Host && !headers.host) { headers.Host = request.hostname || request.host || this.createHost() // If a port is specified explicitly, use it as is if (request.port) headers.Host += ':' + request.port } if (!request.hostname && !request.host) request.hostname = headers.Host || headers.host } RequestSigner.prototype.matchHost = function(host) { var match = (host || '').match(/([^\.]+)\.(?:([^\.]*)\.)?amazonaws\.com$/) var hostParts = (match || []).slice(1, 3) // ES's hostParts are sometimes the other way round, if the value that is expected // to be region equals ‘es’ switch them back // e.g. search-cluster-name-aaaa00aaaa0aaa0aaaaaaa0aaa.us-east-1.es.amazonaws.com if (hostParts[1] === 'es') hostParts = hostParts.reverse() return hostParts } // http://docs.aws.amazon.com/general/latest/gr/rande.html RequestSigner.prototype.isSingleRegion = function() { // Special case for S3 and SimpleDB in us-east-1 if (['s3', 'sdb'].indexOf(this.service) >= 0 && this.region === 'us-east-1') return true return ['cloudfront', 'ls', 'route53', 'iam', 'importexport', 'sts'] .indexOf(this.service) >= 0 } RequestSigner.prototype.createHost = function() { var region = this.isSingleRegion() ? '' : (this.service === 's3' && this.region !== 'us-east-1' ? '-' : '.') + this.region, service = this.service === 'ses' ? 'email' : this.service return service + region + '.amazonaws.com' } RequestSigner.prototype.prepareRequest = function() { this.parsePath() var request = this.request, headers = request.headers, query if (request.signQuery) { this.parsedPath.query = query = this.parsedPath.query || {} if (this.credentials.sessionToken) query['X-Amz-Security-Token'] = this.credentials.sessionToken if (this.service === 's3' && !query['X-Amz-Expires']) query['X-Amz-Expires'] = 86400 if (query['X-Amz-Date']) this.datetime = query['X-Amz-Date'] else query['X-Amz-Date'] = this.getDateTime() query['X-Amz-Algorithm'] = 'AWS4-HMAC-SHA256' query['X-Amz-Credential'] = this.credentials.accessKeyId + '/' + this.credentialString() query['X-Amz-SignedHeaders'] = this.signedHeaders() } else { if (!request.doNotModifyHeaders) { if (request.body && !headers['Content-Type'] && !headers['content-type']) headers['Content-Type'] = 'application/x-www-form-urlencoded; charset=utf-8' if (request.body && !headers['Content-Length'] && !headers['content-length']) headers['Content-Length'] = Buffer.byteLength(request.body) if (this.credentials.sessionToken) headers['X-Amz-Security-Token'] = this.credentials.sessionToken if (this.service === 's3') headers['X-Amz-Content-Sha256'] = hash(this.request.body || '', 'hex') if (headers['X-Amz-Date']) this.datetime = headers['X-Amz-Date'] else headers['X-Amz-Date'] = this.getDateTime() } delete headers.Authorization delete headers.authorization } } RequestSigner.prototype.sign = function() { if (!this.parsedPath) this.prepareRequest() if (this.request.signQuery) { this.parsedPath.query['X-Amz-Signature'] = this.signature() } else { this.request.headers.Authorization = this.authHeader() } this.request.path = this.formatPath() return this.request } RequestSigner.prototype.getDateTime = function() { if (!this.datetime) { var headers = this.request.headers, date = new Date(headers.Date || headers.date || new Date) this.datetime = date.toISOString().replace(/[:\-]|\.\d{3}/g, '') } return this.datetime } RequestSigner.prototype.getDate = function() { return this.getDateTime().substr(0, 8) } RequestSigner.prototype.authHeader = function() { return [ 'AWS4-HMAC-SHA256 Credential=' + this.credentials.accessKeyId + '/' + this.credentialString(), 'SignedHeaders=' + this.signedHeaders(), 'Signature=' + this.signature(), ].join(', ') } RequestSigner.prototype.signature = function() { var date = this.getDate(), cacheKey = [this.credentials.secretAccessKey, date, this.region, this.service].join(), kDate, kRegion, kService, kCredentials = credentialsCache.get(cacheKey) if (!kCredentials) { kDate = hmac('AWS4' + this.credentials.secretAccessKey, date) kRegion = hmac(kDate, this.region) kService = hmac(kRegion, this.service) kCredentials = hmac(kService, 'aws4_request') credentialsCache.set(cacheKey, kCredentials) } return hmac(kCredentials, this.stringToSign(), 'hex') } RequestSigner.prototype.stringToSign = function() { return [ 'AWS4-HMAC-SHA256', this.getDateTime(), this.credentialString(), hash(this.canonicalString(), 'hex'), ].join('\n') } RequestSigner.prototype.canonicalString = function() { if (!this.parsedPath) this.prepareRequest() var pathStr = this.parsedPath.path, query = this.parsedPath.query, queryStr = '', normalizePath = this.service !== 's3', decodePath = this.service === 's3' || this.request.doNotEncodePath, decodeSlashesInPath = this.service === 's3', firstValOnly = this.service === 's3', bodyHash = this.service === 's3' && this.request.signQuery ? 'UNSIGNED-PAYLOAD' : hash(this.request.body || '', 'hex') if (query) { queryStr = encodeRfc3986(querystring.stringify(Object.keys(query).sort().reduce(function(obj, key) { if (!key) return obj obj[key] = !Array.isArray(query[key]) ? query[key] : (firstValOnly ? query[key][0] : query[key].slice().sort()) return obj }, {}))) } if (pathStr !== '/') { if (normalizePath) pathStr = pathStr.replace(/\/{2,}/g, '/') pathStr = pathStr.split('/').reduce(function(path, piece) { if (normalizePath && piece === '..') { path.pop() } else if (!normalizePath || piece !== '.') { if (decodePath) piece = querystring.unescape(piece) path.push(encodeRfc3986(querystring.escape(piece))) } return path }, []).join('/') if (pathStr[0] !== '/') pathStr = '/' + pathStr if (decodeSlashesInPath) pathStr = pathStr.replace(/%2F/g, '/') } return [ this.request.method || 'GET', pathStr, queryStr, this.canonicalHeaders() + '\n', this.signedHeaders(), bodyHash, ].join('\n') } RequestSigner.prototype.canonicalHeaders = function() { var headers = this.request.headers function trimAll(header) { return header.toString().trim().replace(/\s+/g, ' ') } return Object.keys(headers) .sort(function(a, b) { return a.toLowerCase() < b.toLowerCase() ? -1 : 1 }) .map(function(key) { return key.toLowerCase() + ':' + trimAll(headers[key]) }) .join('\n') } RequestSigner.prototype.signedHeaders = function() { return Object.keys(this.request.headers) .map(function(key) { return key.toLowerCase() }) .sort() .join(';') } RequestSigner.prototype.credentialString = function() { return [ this.getDate(), this.region, this.service, 'aws4_request', ].join('/') } RequestSigner.prototype.defaultCredentials = function() { var env = process.env return { accessKeyId: env.AWS_ACCESS_KEY_ID || env.AWS_ACCESS_KEY, secretAccessKey: env.AWS_SECRET_ACCESS_KEY || env.AWS_SECRET_KEY, sessionToken: env.AWS_SESSION_TOKEN, } } RequestSigner.prototype.parsePath = function() { var path = this.request.path || '/', queryIx = path.indexOf('?'), query = null if (queryIx >= 0) { query = querystring.parse(path.slice(queryIx + 1)) path = path.slice(0, queryIx) } // S3 doesn't always encode characters > 127 correctly and // all services don't encode characters > 255 correctly // So if there are non-reserved chars (and it's not already all % encoded), just encode them all if (/[^0-9A-Za-z!'()*\-._~%/]/.test(path)) { path = path.split('/').map(function(piece) { return querystring.escape(querystring.unescape(piece)) }).join('/') } this.parsedPath = { path: path, query: query, } } RequestSigner.prototype.formatPath = function() { var path = this.parsedPath.path, query = this.parsedPath.query if (!query) return path // Services don't support empty query string keys if (query[''] != null) delete query[''] return path + '?' + encodeRfc3986(querystring.stringify(query)) } aws4.RequestSigner = RequestSigner aws4.sign = function(request, credentials) { return new RequestSigner(request, credentials).sign() } }).call(this,require('_process'),require("buffer").Buffer) },{"./lru":175,"_process":120,"buffer":49,"crypto":58,"querystring":130,"url":159}],175:[function(require,module,exports){ module.exports = function(size) { return new LruCache(size) } function LruCache(size) { this.capacity = size | 0 this.map = Object.create(null) this.list = new DoublyLinkedList() } LruCache.prototype.get = function(key) { var node = this.map[key] if (node == null) return undefined this.used(node) return node.val } LruCache.prototype.set = function(key, val) { var node = this.map[key] if (node != null) { node.val = val } else { if (!this.capacity) this.prune() if (!this.capacity) return false node = new DoublyLinkedNode(key, val) this.map[key] = node this.capacity-- } this.used(node) return true } LruCache.prototype.used = function(node) { this.list.moveToFront(node) } LruCache.prototype.prune = function() { var node = this.list.pop() if (node != null) { delete this.map[node.key] this.capacity++ } } function DoublyLinkedList() { this.firstNode = null this.lastNode = null } DoublyLinkedList.prototype.moveToFront = function(node) { if (this.firstNode == node) return this.remove(node) if (this.firstNode == null) { this.firstNode = node this.lastNode = node node.prev = null node.next = null } else { node.prev = null node.next = this.firstNode node.next.prev = node this.firstNode = node } } DoublyLinkedList.prototype.pop = function() { var lastNode = this.lastNode if (lastNode != null) { this.remove(lastNode) } return lastNode } DoublyLinkedList.prototype.remove = function(node) { if (this.firstNode == node) { this.firstNode = node.next } else if (node.prev != null) { node.prev.next = node.next } if (this.lastNode == node) { this.lastNode = node.prev } else if (node.next != null) { node.next.prev = node.prev } } function DoublyLinkedNode(key, val) { this.key = key this.val = val this.prev = null this.next = null } },{}],176:[function(require,module,exports){ 'use strict'; var crypto_hash_sha512 = require('tweetnacl').lowlevel.crypto_hash; /* * This file is a 1:1 port from the OpenBSD blowfish.c and bcrypt_pbkdf.c. As a * result, it retains the original copyright and license. The two files are * under slightly different (but compatible) licenses, and are here combined in * one file. * * Credit for the actual porting work goes to: * Devi Mandiri */ /* * The Blowfish portions are under the following license: * * Blowfish block cipher for OpenBSD * Copyright 1997 Niels Provos * All rights reserved. * * Implementation advice by David Mazieres . * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * 3. All advertising materials mentioning features or use of this software * must display the following acknowledgement: * This product includes software developed by Niels Provos. * 4. The name of the author may not be used to endorse or promote products * derived from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ /* * The bcrypt_pbkdf portions are under the following license: * * Copyright (c) 2013 Ted Unangst * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ /* * Performance improvements (Javascript-specific): * * Copyright 2016, Joyent Inc * Author: Alex Wilson * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ // Ported from OpenBSD bcrypt_pbkdf.c v1.9 var BLF_J = 0; var Blowfish = function() { this.S = [ new Uint32Array([ 0xd1310ba6, 0x98dfb5ac, 0x2ffd72db, 0xd01adfb7, 0xb8e1afed, 0x6a267e96, 0xba7c9045, 0xf12c7f99, 0x24a19947, 0xb3916cf7, 0x0801f2e2, 0x858efc16, 0x636920d8, 0x71574e69, 0xa458fea3, 0xf4933d7e, 0x0d95748f, 0x728eb658, 0x718bcd58, 0x82154aee, 0x7b54a41d, 0xc25a59b5, 0x9c30d539, 0x2af26013, 0xc5d1b023, 0x286085f0, 0xca417918, 0xb8db38ef, 0x8e79dcb0, 0x603a180e, 0x6c9e0e8b, 0xb01e8a3e, 0xd71577c1, 0xbd314b27, 0x78af2fda, 0x55605c60, 0xe65525f3, 0xaa55ab94, 0x57489862, 0x63e81440, 0x55ca396a, 0x2aab10b6, 0xb4cc5c34, 0x1141e8ce, 0xa15486af, 0x7c72e993, 0xb3ee1411, 0x636fbc2a, 0x2ba9c55d, 0x741831f6, 0xce5c3e16, 0x9b87931e, 0xafd6ba33, 0x6c24cf5c, 0x7a325381, 0x28958677, 0x3b8f4898, 0x6b4bb9af, 0xc4bfe81b, 0x66282193, 0x61d809cc, 0xfb21a991, 0x487cac60, 0x5dec8032, 0xef845d5d, 0xe98575b1, 0xdc262302, 0xeb651b88, 0x23893e81, 0xd396acc5, 0x0f6d6ff3, 0x83f44239, 0x2e0b4482, 0xa4842004, 0x69c8f04a, 0x9e1f9b5e, 0x21c66842, 0xf6e96c9a, 0x670c9c61, 0xabd388f0, 0x6a51a0d2, 0xd8542f68, 0x960fa728, 0xab5133a3, 0x6eef0b6c, 0x137a3be4, 0xba3bf050, 0x7efb2a98, 0xa1f1651d, 0x39af0176, 0x66ca593e, 0x82430e88, 0x8cee8619, 0x456f9fb4, 0x7d84a5c3, 0x3b8b5ebe, 0xe06f75d8, 0x85c12073, 0x401a449f, 0x56c16aa6, 0x4ed3aa62, 0x363f7706, 0x1bfedf72, 0x429b023d, 0x37d0d724, 0xd00a1248, 0xdb0fead3, 0x49f1c09b, 0x075372c9, 0x80991b7b, 0x25d479d8, 0xf6e8def7, 0xe3fe501a, 0xb6794c3b, 0x976ce0bd, 0x04c006ba, 0xc1a94fb6, 0x409f60c4, 0x5e5c9ec2, 0x196a2463, 0x68fb6faf, 0x3e6c53b5, 0x1339b2eb, 0x3b52ec6f, 0x6dfc511f, 0x9b30952c, 0xcc814544, 0xaf5ebd09, 0xbee3d004, 0xde334afd, 0x660f2807, 0x192e4bb3, 0xc0cba857, 0x45c8740f, 0xd20b5f39, 0xb9d3fbdb, 0x5579c0bd, 0x1a60320a, 0xd6a100c6, 0x402c7279, 0x679f25fe, 0xfb1fa3cc, 0x8ea5e9f8, 0xdb3222f8, 0x3c7516df, 0xfd616b15, 0x2f501ec8, 0xad0552ab, 0x323db5fa, 0xfd238760, 0x53317b48, 0x3e00df82, 0x9e5c57bb, 0xca6f8ca0, 0x1a87562e, 0xdf1769db, 0xd542a8f6, 0x287effc3, 0xac6732c6, 0x8c4f5573, 0x695b27b0, 0xbbca58c8, 0xe1ffa35d, 0xb8f011a0, 0x10fa3d98, 0xfd2183b8, 0x4afcb56c, 0x2dd1d35b, 0x9a53e479, 0xb6f84565, 0xd28e49bc, 0x4bfb9790, 0xe1ddf2da, 0xa4cb7e33, 0x62fb1341, 0xcee4c6e8, 0xef20cada, 0x36774c01, 0xd07e9efe, 0x2bf11fb4, 0x95dbda4d, 0xae909198, 0xeaad8e71, 0x6b93d5a0, 0xd08ed1d0, 0xafc725e0, 0x8e3c5b2f, 0x8e7594b7, 0x8ff6e2fb, 0xf2122b64, 0x8888b812, 0x900df01c, 0x4fad5ea0, 0x688fc31c, 0xd1cff191, 0xb3a8c1ad, 0x2f2f2218, 0xbe0e1777, 0xea752dfe, 0x8b021fa1, 0xe5a0cc0f, 0xb56f74e8, 0x18acf3d6, 0xce89e299, 0xb4a84fe0, 0xfd13e0b7, 0x7cc43b81, 0xd2ada8d9, 0x165fa266, 0x80957705, 0x93cc7314, 0x211a1477, 0xe6ad2065, 0x77b5fa86, 0xc75442f5, 0xfb9d35cf, 0xebcdaf0c, 0x7b3e89a0, 0xd6411bd3, 0xae1e7e49, 0x00250e2d, 0x2071b35e, 0x226800bb, 0x57b8e0af, 0x2464369b, 0xf009b91e, 0x5563911d, 0x59dfa6aa, 0x78c14389, 0xd95a537f, 0x207d5ba2, 0x02e5b9c5, 0x83260376, 0x6295cfa9, 0x11c81968, 0x4e734a41, 0xb3472dca, 0x7b14a94a, 0x1b510052, 0x9a532915, 0xd60f573f, 0xbc9bc6e4, 0x2b60a476, 0x81e67400, 0x08ba6fb5, 0x571be91f, 0xf296ec6b, 0x2a0dd915, 0xb6636521, 0xe7b9f9b6, 0xff34052e, 0xc5855664, 0x53b02d5d, 0xa99f8fa1, 0x08ba4799, 0x6e85076a]), new Uint32Array([ 0x4b7a70e9, 0xb5b32944, 0xdb75092e, 0xc4192623, 0xad6ea6b0, 0x49a7df7d, 0x9cee60b8, 0x8fedb266, 0xecaa8c71, 0x699a17ff, 0x5664526c, 0xc2b19ee1, 0x193602a5, 0x75094c29, 0xa0591340, 0xe4183a3e, 0x3f54989a, 0x5b429d65, 0x6b8fe4d6, 0x99f73fd6, 0xa1d29c07, 0xefe830f5, 0x4d2d38e6, 0xf0255dc1, 0x4cdd2086, 0x8470eb26, 0x6382e9c6, 0x021ecc5e, 0x09686b3f, 0x3ebaefc9, 0x3c971814, 0x6b6a70a1, 0x687f3584, 0x52a0e286, 0xb79c5305, 0xaa500737, 0x3e07841c, 0x7fdeae5c, 0x8e7d44ec, 0x5716f2b8, 0xb03ada37, 0xf0500c0d, 0xf01c1f04, 0x0200b3ff, 0xae0cf51a, 0x3cb574b2, 0x25837a58, 0xdc0921bd, 0xd19113f9, 0x7ca92ff6, 0x94324773, 0x22f54701, 0x3ae5e581, 0x37c2dadc, 0xc8b57634, 0x9af3dda7, 0xa9446146, 0x0fd0030e, 0xecc8c73e, 0xa4751e41, 0xe238cd99, 0x3bea0e2f, 0x3280bba1, 0x183eb331, 0x4e548b38, 0x4f6db908, 0x6f420d03, 0xf60a04bf, 0x2cb81290, 0x24977c79, 0x5679b072, 0xbcaf89af, 0xde9a771f, 0xd9930810, 0xb38bae12, 0xdccf3f2e, 0x5512721f, 0x2e6b7124, 0x501adde6, 0x9f84cd87, 0x7a584718, 0x7408da17, 0xbc9f9abc, 0xe94b7d8c, 0xec7aec3a, 0xdb851dfa, 0x63094366, 0xc464c3d2, 0xef1c1847, 0x3215d908, 0xdd433b37, 0x24c2ba16, 0x12a14d43, 0x2a65c451, 0x50940002, 0x133ae4dd, 0x71dff89e, 0x10314e55, 0x81ac77d6, 0x5f11199b, 0x043556f1, 0xd7a3c76b, 0x3c11183b, 0x5924a509, 0xf28fe6ed, 0x97f1fbfa, 0x9ebabf2c, 0x1e153c6e, 0x86e34570, 0xeae96fb1, 0x860e5e0a, 0x5a3e2ab3, 0x771fe71c, 0x4e3d06fa, 0x2965dcb9, 0x99e71d0f, 0x803e89d6, 0x5266c825, 0x2e4cc978, 0x9c10b36a, 0xc6150eba, 0x94e2ea78, 0xa5fc3c53, 0x1e0a2df4, 0xf2f74ea7, 0x361d2b3d, 0x1939260f, 0x19c27960, 0x5223a708, 0xf71312b6, 0xebadfe6e, 0xeac31f66, 0xe3bc4595, 0xa67bc883, 0xb17f37d1, 0x018cff28, 0xc332ddef, 0xbe6c5aa5, 0x65582185, 0x68ab9802, 0xeecea50f, 0xdb2f953b, 0x2aef7dad, 0x5b6e2f84, 0x1521b628, 0x29076170, 0xecdd4775, 0x619f1510, 0x13cca830, 0xeb61bd96, 0x0334fe1e, 0xaa0363cf, 0xb5735c90, 0x4c70a239, 0xd59e9e0b, 0xcbaade14, 0xeecc86bc, 0x60622ca7, 0x9cab5cab, 0xb2f3846e, 0x648b1eaf, 0x19bdf0ca, 0xa02369b9, 0x655abb50, 0x40685a32, 0x3c2ab4b3, 0x319ee9d5, 0xc021b8f7, 0x9b540b19, 0x875fa099, 0x95f7997e, 0x623d7da8, 0xf837889a, 0x97e32d77, 0x11ed935f, 0x16681281, 0x0e358829, 0xc7e61fd6, 0x96dedfa1, 0x7858ba99, 0x57f584a5, 0x1b227263, 0x9b83c3ff, 0x1ac24696, 0xcdb30aeb, 0x532e3054, 0x8fd948e4, 0x6dbc3128, 0x58ebf2ef, 0x34c6ffea, 0xfe28ed61, 0xee7c3c73, 0x5d4a14d9, 0xe864b7e3, 0x42105d14, 0x203e13e0, 0x45eee2b6, 0xa3aaabea, 0xdb6c4f15, 0xfacb4fd0, 0xc742f442, 0xef6abbb5, 0x654f3b1d, 0x41cd2105, 0xd81e799e, 0x86854dc7, 0xe44b476a, 0x3d816250, 0xcf62a1f2, 0x5b8d2646, 0xfc8883a0, 0xc1c7b6a3, 0x7f1524c3, 0x69cb7492, 0x47848a0b, 0x5692b285, 0x095bbf00, 0xad19489d, 0x1462b174, 0x23820e00, 0x58428d2a, 0x0c55f5ea, 0x1dadf43e, 0x233f7061, 0x3372f092, 0x8d937e41, 0xd65fecf1, 0x6c223bdb, 0x7cde3759, 0xcbee7460, 0x4085f2a7, 0xce77326e, 0xa6078084, 0x19f8509e, 0xe8efd855, 0x61d99735, 0xa969a7aa, 0xc50c06c2, 0x5a04abfc, 0x800bcadc, 0x9e447a2e, 0xc3453484, 0xfdd56705, 0x0e1e9ec9, 0xdb73dbd3, 0x105588cd, 0x675fda79, 0xe3674340, 0xc5c43465, 0x713e38d8, 0x3d28f89e, 0xf16dff20, 0x153e21e7, 0x8fb03d4a, 0xe6e39f2b, 0xdb83adf7]), new Uint32Array([ 0xe93d5a68, 0x948140f7, 0xf64c261c, 0x94692934, 0x411520f7, 0x7602d4f7, 0xbcf46b2e, 0xd4a20068, 0xd4082471, 0x3320f46a, 0x43b7d4b7, 0x500061af, 0x1e39f62e, 0x97244546, 0x14214f74, 0xbf8b8840, 0x4d95fc1d, 0x96b591af, 0x70f4ddd3, 0x66a02f45, 0xbfbc09ec, 0x03bd9785, 0x7fac6dd0, 0x31cb8504, 0x96eb27b3, 0x55fd3941, 0xda2547e6, 0xabca0a9a, 0x28507825, 0x530429f4, 0x0a2c86da, 0xe9b66dfb, 0x68dc1462, 0xd7486900, 0x680ec0a4, 0x27a18dee, 0x4f3ffea2, 0xe887ad8c, 0xb58ce006, 0x7af4d6b6, 0xaace1e7c, 0xd3375fec, 0xce78a399, 0x406b2a42, 0x20fe9e35, 0xd9f385b9, 0xee39d7ab, 0x3b124e8b, 0x1dc9faf7, 0x4b6d1856, 0x26a36631, 0xeae397b2, 0x3a6efa74, 0xdd5b4332, 0x6841e7f7, 0xca7820fb, 0xfb0af54e, 0xd8feb397, 0x454056ac, 0xba489527, 0x55533a3a, 0x20838d87, 0xfe6ba9b7, 0xd096954b, 0x55a867bc, 0xa1159a58, 0xcca92963, 0x99e1db33, 0xa62a4a56, 0x3f3125f9, 0x5ef47e1c, 0x9029317c, 0xfdf8e802, 0x04272f70, 0x80bb155c, 0x05282ce3, 0x95c11548, 0xe4c66d22, 0x48c1133f, 0xc70f86dc, 0x07f9c9ee, 0x41041f0f, 0x404779a4, 0x5d886e17, 0x325f51eb, 0xd59bc0d1, 0xf2bcc18f, 0x41113564, 0x257b7834, 0x602a9c60, 0xdff8e8a3, 0x1f636c1b, 0x0e12b4c2, 0x02e1329e, 0xaf664fd1, 0xcad18115, 0x6b2395e0, 0x333e92e1, 0x3b240b62, 0xeebeb922, 0x85b2a20e, 0xe6ba0d99, 0xde720c8c, 0x2da2f728, 0xd0127845, 0x95b794fd, 0x647d0862, 0xe7ccf5f0, 0x5449a36f, 0x877d48fa, 0xc39dfd27, 0xf33e8d1e, 0x0a476341, 0x992eff74, 0x3a6f6eab, 0xf4f8fd37, 0xa812dc60, 0xa1ebddf8, 0x991be14c, 0xdb6e6b0d, 0xc67b5510, 0x6d672c37, 0x2765d43b, 0xdcd0e804, 0xf1290dc7, 0xcc00ffa3, 0xb5390f92, 0x690fed0b, 0x667b9ffb, 0xcedb7d9c, 0xa091cf0b, 0xd9155ea3, 0xbb132f88, 0x515bad24, 0x7b9479bf, 0x763bd6eb, 0x37392eb3, 0xcc115979, 0x8026e297, 0xf42e312d, 0x6842ada7, 0xc66a2b3b, 0x12754ccc, 0x782ef11c, 0x6a124237, 0xb79251e7, 0x06a1bbe6, 0x4bfb6350, 0x1a6b1018, 0x11caedfa, 0x3d25bdd8, 0xe2e1c3c9, 0x44421659, 0x0a121386, 0xd90cec6e, 0xd5abea2a, 0x64af674e, 0xda86a85f, 0xbebfe988, 0x64e4c3fe, 0x9dbc8057, 0xf0f7c086, 0x60787bf8, 0x6003604d, 0xd1fd8346, 0xf6381fb0, 0x7745ae04, 0xd736fccc, 0x83426b33, 0xf01eab71, 0xb0804187, 0x3c005e5f, 0x77a057be, 0xbde8ae24, 0x55464299, 0xbf582e61, 0x4e58f48f, 0xf2ddfda2, 0xf474ef38, 0x8789bdc2, 0x5366f9c3, 0xc8b38e74, 0xb475f255, 0x46fcd9b9, 0x7aeb2661, 0x8b1ddf84, 0x846a0e79, 0x915f95e2, 0x466e598e, 0x20b45770, 0x8cd55591, 0xc902de4c, 0xb90bace1, 0xbb8205d0, 0x11a86248, 0x7574a99e, 0xb77f19b6, 0xe0a9dc09, 0x662d09a1, 0xc4324633, 0xe85a1f02, 0x09f0be8c, 0x4a99a025, 0x1d6efe10, 0x1ab93d1d, 0x0ba5a4df, 0xa186f20f, 0x2868f169, 0xdcb7da83, 0x573906fe, 0xa1e2ce9b, 0x4fcd7f52, 0x50115e01, 0xa70683fa, 0xa002b5c4, 0x0de6d027, 0x9af88c27, 0x773f8641, 0xc3604c06, 0x61a806b5, 0xf0177a28, 0xc0f586e0, 0x006058aa, 0x30dc7d62, 0x11e69ed7, 0x2338ea63, 0x53c2dd94, 0xc2c21634, 0xbbcbee56, 0x90bcb6de, 0xebfc7da1, 0xce591d76, 0x6f05e409, 0x4b7c0188, 0x39720a3d, 0x7c927c24, 0x86e3725f, 0x724d9db9, 0x1ac15bb4, 0xd39eb8fc, 0xed545578, 0x08fca5b5, 0xd83d7cd3, 0x4dad0fc4, 0x1e50ef5e, 0xb161e6f8, 0xa28514d9, 0x6c51133c, 0x6fd5c7e7, 0x56e14ec4, 0x362abfce, 0xddc6c837, 0xd79a3234, 0x92638212, 0x670efa8e, 0x406000e0]), new Uint32Array([ 0x3a39ce37, 0xd3faf5cf, 0xabc27737, 0x5ac52d1b, 0x5cb0679e, 0x4fa33742, 0xd3822740, 0x99bc9bbe, 0xd5118e9d, 0xbf0f7315, 0xd62d1c7e, 0xc700c47b, 0xb78c1b6b, 0x21a19045, 0xb26eb1be, 0x6a366eb4, 0x5748ab2f, 0xbc946e79, 0xc6a376d2, 0x6549c2c8, 0x530ff8ee, 0x468dde7d, 0xd5730a1d, 0x4cd04dc6, 0x2939bbdb, 0xa9ba4650, 0xac9526e8, 0xbe5ee304, 0xa1fad5f0, 0x6a2d519a, 0x63ef8ce2, 0x9a86ee22, 0xc089c2b8, 0x43242ef6, 0xa51e03aa, 0x9cf2d0a4, 0x83c061ba, 0x9be96a4d, 0x8fe51550, 0xba645bd6, 0x2826a2f9, 0xa73a3ae1, 0x4ba99586, 0xef5562e9, 0xc72fefd3, 0xf752f7da, 0x3f046f69, 0x77fa0a59, 0x80e4a915, 0x87b08601, 0x9b09e6ad, 0x3b3ee593, 0xe990fd5a, 0x9e34d797, 0x2cf0b7d9, 0x022b8b51, 0x96d5ac3a, 0x017da67d, 0xd1cf3ed6, 0x7c7d2d28, 0x1f9f25cf, 0xadf2b89b, 0x5ad6b472, 0x5a88f54c, 0xe029ac71, 0xe019a5e6, 0x47b0acfd, 0xed93fa9b, 0xe8d3c48d, 0x283b57cc, 0xf8d56629, 0x79132e28, 0x785f0191, 0xed756055, 0xf7960e44, 0xe3d35e8c, 0x15056dd4, 0x88f46dba, 0x03a16125, 0x0564f0bd, 0xc3eb9e15, 0x3c9057a2, 0x97271aec, 0xa93a072a, 0x1b3f6d9b, 0x1e6321f5, 0xf59c66fb, 0x26dcf319, 0x7533d928, 0xb155fdf5, 0x03563482, 0x8aba3cbb, 0x28517711, 0xc20ad9f8, 0xabcc5167, 0xccad925f, 0x4de81751, 0x3830dc8e, 0x379d5862, 0x9320f991, 0xea7a90c2, 0xfb3e7bce, 0x5121ce64, 0x774fbe32, 0xa8b6e37e, 0xc3293d46, 0x48de5369, 0x6413e680, 0xa2ae0810, 0xdd6db224, 0x69852dfd, 0x09072166, 0xb39a460a, 0x6445c0dd, 0x586cdecf, 0x1c20c8ae, 0x5bbef7dd, 0x1b588d40, 0xccd2017f, 0x6bb4e3bb, 0xdda26a7e, 0x3a59ff45, 0x3e350a44, 0xbcb4cdd5, 0x72eacea8, 0xfa6484bb, 0x8d6612ae, 0xbf3c6f47, 0xd29be463, 0x542f5d9e, 0xaec2771b, 0xf64e6370, 0x740e0d8d, 0xe75b1357, 0xf8721671, 0xaf537d5d, 0x4040cb08, 0x4eb4e2cc, 0x34d2466a, 0x0115af84, 0xe1b00428, 0x95983a1d, 0x06b89fb4, 0xce6ea048, 0x6f3f3b82, 0x3520ab82, 0x011a1d4b, 0x277227f8, 0x611560b1, 0xe7933fdc, 0xbb3a792b, 0x344525bd, 0xa08839e1, 0x51ce794b, 0x2f32c9b7, 0xa01fbac9, 0xe01cc87e, 0xbcc7d1f6, 0xcf0111c3, 0xa1e8aac7, 0x1a908749, 0xd44fbd9a, 0xd0dadecb, 0xd50ada38, 0x0339c32a, 0xc6913667, 0x8df9317c, 0xe0b12b4f, 0xf79e59b7, 0x43f5bb3a, 0xf2d519ff, 0x27d9459c, 0xbf97222c, 0x15e6fc2a, 0x0f91fc71, 0x9b941525, 0xfae59361, 0xceb69ceb, 0xc2a86459, 0x12baa8d1, 0xb6c1075e, 0xe3056a0c, 0x10d25065, 0xcb03a442, 0xe0ec6e0e, 0x1698db3b, 0x4c98a0be, 0x3278e964, 0x9f1f9532, 0xe0d392df, 0xd3a0342b, 0x8971f21e, 0x1b0a7441, 0x4ba3348c, 0xc5be7120, 0xc37632d8, 0xdf359f8d, 0x9b992f2e, 0xe60b6f47, 0x0fe3f11d, 0xe54cda54, 0x1edad891, 0xce6279cf, 0xcd3e7e6f, 0x1618b166, 0xfd2c1d05, 0x848fd2c5, 0xf6fb2299, 0xf523f357, 0xa6327623, 0x93a83531, 0x56cccd02, 0xacf08162, 0x5a75ebb5, 0x6e163697, 0x88d273cc, 0xde966292, 0x81b949d0, 0x4c50901b, 0x71c65614, 0xe6c6c7bd, 0x327a140a, 0x45e1d006, 0xc3f27b9a, 0xc9aa53fd, 0x62a80f00, 0xbb25bfe2, 0x35bdd2f6, 0x71126905, 0xb2040222, 0xb6cbcf7c, 0xcd769c2b, 0x53113ec0, 0x1640e3d3, 0x38abbd60, 0x2547adf0, 0xba38209c, 0xf746ce76, 0x77afa1c5, 0x20756060, 0x85cbfe4e, 0x8ae88dd8, 0x7aaaf9b0, 0x4cf9aa7e, 0x1948c25c, 0x02fb8a8c, 0x01c36ae4, 0xd6ebe1f9, 0x90d4f869, 0xa65cdea0, 0x3f09252d, 0xc208e69f, 0xb74e6132, 0xce77e25b, 0x578fdfe3, 0x3ac372e6]) ]; this.P = new Uint32Array([ 0x243f6a88, 0x85a308d3, 0x13198a2e, 0x03707344, 0xa4093822, 0x299f31d0, 0x082efa98, 0xec4e6c89, 0x452821e6, 0x38d01377, 0xbe5466cf, 0x34e90c6c, 0xc0ac29b7, 0xc97c50dd, 0x3f84d5b5, 0xb5470917, 0x9216d5d9, 0x8979fb1b]); }; function F(S, x8, i) { return (((S[0][x8[i+3]] + S[1][x8[i+2]]) ^ S[2][x8[i+1]]) + S[3][x8[i]]); }; Blowfish.prototype.encipher = function(x, x8) { if (x8 === undefined) { x8 = new Uint8Array(x.buffer); if (x.byteOffset !== 0) x8 = x8.subarray(x.byteOffset); } x[0] ^= this.P[0]; for (var i = 1; i < 16; i += 2) { x[1] ^= F(this.S, x8, 0) ^ this.P[i]; x[0] ^= F(this.S, x8, 4) ^ this.P[i+1]; } var t = x[0]; x[0] = x[1] ^ this.P[17]; x[1] = t; }; Blowfish.prototype.decipher = function(x) { var x8 = new Uint8Array(x.buffer); if (x.byteOffset !== 0) x8 = x8.subarray(x.byteOffset); x[0] ^= this.P[17]; for (var i = 16; i > 0; i -= 2) { x[1] ^= F(this.S, x8, 0) ^ this.P[i]; x[0] ^= F(this.S, x8, 4) ^ this.P[i-1]; } var t = x[0]; x[0] = x[1] ^ this.P[0]; x[1] = t; }; function stream2word(data, databytes){ var i, temp = 0; for (i = 0; i < 4; i++, BLF_J++) { if (BLF_J >= databytes) BLF_J = 0; temp = (temp << 8) | data[BLF_J]; } return temp; }; Blowfish.prototype.expand0state = function(key, keybytes) { var d = new Uint32Array(2), i, k; var d8 = new Uint8Array(d.buffer); for (i = 0, BLF_J = 0; i < 18; i++) { this.P[i] ^= stream2word(key, keybytes); } BLF_J = 0; for (i = 0; i < 18; i += 2) { this.encipher(d, d8); this.P[i] = d[0]; this.P[i+1] = d[1]; } for (i = 0; i < 4; i++) { for (k = 0; k < 256; k += 2) { this.encipher(d, d8); this.S[i][k] = d[0]; this.S[i][k+1] = d[1]; } } }; Blowfish.prototype.expandstate = function(data, databytes, key, keybytes) { var d = new Uint32Array(2), i, k; for (i = 0, BLF_J = 0; i < 18; i++) { this.P[i] ^= stream2word(key, keybytes); } for (i = 0, BLF_J = 0; i < 18; i += 2) { d[0] ^= stream2word(data, databytes); d[1] ^= stream2word(data, databytes); this.encipher(d); this.P[i] = d[0]; this.P[i+1] = d[1]; } for (i = 0; i < 4; i++) { for (k = 0; k < 256; k += 2) { d[0] ^= stream2word(data, databytes); d[1] ^= stream2word(data, databytes); this.encipher(d); this.S[i][k] = d[0]; this.S[i][k+1] = d[1]; } } BLF_J = 0; }; Blowfish.prototype.enc = function(data, blocks) { for (var i = 0; i < blocks; i++) { this.encipher(data.subarray(i*2)); } }; Blowfish.prototype.dec = function(data, blocks) { for (var i = 0; i < blocks; i++) { this.decipher(data.subarray(i*2)); } }; var BCRYPT_BLOCKS = 8, BCRYPT_HASHSIZE = 32; function bcrypt_hash(sha2pass, sha2salt, out) { var state = new Blowfish(), cdata = new Uint32Array(BCRYPT_BLOCKS), i, ciphertext = new Uint8Array([79,120,121,99,104,114,111,109,97,116,105, 99,66,108,111,119,102,105,115,104,83,119,97,116,68,121,110,97,109, 105,116,101]); //"OxychromaticBlowfishSwatDynamite" state.expandstate(sha2salt, 64, sha2pass, 64); for (i = 0; i < 64; i++) { state.expand0state(sha2salt, 64); state.expand0state(sha2pass, 64); } for (i = 0; i < BCRYPT_BLOCKS; i++) cdata[i] = stream2word(ciphertext, ciphertext.byteLength); for (i = 0; i < 64; i++) state.enc(cdata, cdata.byteLength / 8); for (i = 0; i < BCRYPT_BLOCKS; i++) { out[4*i+3] = cdata[i] >>> 24; out[4*i+2] = cdata[i] >>> 16; out[4*i+1] = cdata[i] >>> 8; out[4*i+0] = cdata[i]; } }; function bcrypt_pbkdf(pass, passlen, salt, saltlen, key, keylen, rounds) { var sha2pass = new Uint8Array(64), sha2salt = new Uint8Array(64), out = new Uint8Array(BCRYPT_HASHSIZE), tmpout = new Uint8Array(BCRYPT_HASHSIZE), countsalt = new Uint8Array(saltlen+4), i, j, amt, stride, dest, count, origkeylen = keylen; if (rounds < 1) return -1; if (passlen === 0 || saltlen === 0 || keylen === 0 || keylen > (out.byteLength * out.byteLength) || saltlen > (1<<20)) return -1; stride = Math.floor((keylen + out.byteLength - 1) / out.byteLength); amt = Math.floor((keylen + stride - 1) / stride); for (i = 0; i < saltlen; i++) countsalt[i] = salt[i]; crypto_hash_sha512(sha2pass, pass, passlen); for (count = 1; keylen > 0; count++) { countsalt[saltlen+0] = count >>> 24; countsalt[saltlen+1] = count >>> 16; countsalt[saltlen+2] = count >>> 8; countsalt[saltlen+3] = count; crypto_hash_sha512(sha2salt, countsalt, saltlen + 4); bcrypt_hash(sha2pass, sha2salt, tmpout); for (i = out.byteLength; i--;) out[i] = tmpout[i]; for (i = 1; i < rounds; i++) { crypto_hash_sha512(sha2salt, tmpout, tmpout.byteLength); bcrypt_hash(sha2pass, sha2salt, tmpout); for (j = 0; j < out.byteLength; j++) out[j] ^= tmpout[j]; } amt = Math.min(amt, keylen); for (i = 0; i < amt; i++) { dest = i * stride + (count - 1); if (dest >= origkeylen) break; key[dest] = out[i]; } keylen -= i; } return 0; }; module.exports = { BLOCKS: BCRYPT_BLOCKS, HASHSIZE: BCRYPT_HASHSIZE, hash: bcrypt_hash, pbkdf: bcrypt_pbkdf }; },{"tweetnacl":177}],177:[function(require,module,exports){ (function(nacl) { 'use strict'; // Ported in 2014 by Dmitry Chestnykh and Devi Mandiri. // Public domain. // // Implementation derived from TweetNaCl version 20140427. // See for details: http://tweetnacl.cr.yp.to/ var gf = function(init) { var i, r = new Float64Array(16); if (init) for (i = 0; i < init.length; i++) r[i] = init[i]; return r; }; // Pluggable, initialized in high-level API below. var randombytes = function(/* x, n */) { throw new Error('no PRNG'); }; var _0 = new Uint8Array(16); var _9 = new Uint8Array(32); _9[0] = 9; var gf0 = gf(), gf1 = gf([1]), _121665 = gf([0xdb41, 1]), D = gf([0x78a3, 0x1359, 0x4dca, 0x75eb, 0xd8ab, 0x4141, 0x0a4d, 0x0070, 0xe898, 0x7779, 0x4079, 0x8cc7, 0xfe73, 0x2b6f, 0x6cee, 0x5203]), D2 = gf([0xf159, 0x26b2, 0x9b94, 0xebd6, 0xb156, 0x8283, 0x149a, 0x00e0, 0xd130, 0xeef3, 0x80f2, 0x198e, 0xfce7, 0x56df, 0xd9dc, 0x2406]), X = gf([0xd51a, 0x8f25, 0x2d60, 0xc956, 0xa7b2, 0x9525, 0xc760, 0x692c, 0xdc5c, 0xfdd6, 0xe231, 0xc0a4, 0x53fe, 0xcd6e, 0x36d3, 0x2169]), Y = gf([0x6658, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666]), I = gf([0xa0b0, 0x4a0e, 0x1b27, 0xc4ee, 0xe478, 0xad2f, 0x1806, 0x2f43, 0xd7a7, 0x3dfb, 0x0099, 0x2b4d, 0xdf0b, 0x4fc1, 0x2480, 0x2b83]); function ts64(x, i, h, l) { x[i] = (h >> 24) & 0xff; x[i+1] = (h >> 16) & 0xff; x[i+2] = (h >> 8) & 0xff; x[i+3] = h & 0xff; x[i+4] = (l >> 24) & 0xff; x[i+5] = (l >> 16) & 0xff; x[i+6] = (l >> 8) & 0xff; x[i+7] = l & 0xff; } function vn(x, xi, y, yi, n) { var i,d = 0; for (i = 0; i < n; i++) d |= x[xi+i]^y[yi+i]; return (1 & ((d - 1) >>> 8)) - 1; } function crypto_verify_16(x, xi, y, yi) { return vn(x,xi,y,yi,16); } function crypto_verify_32(x, xi, y, yi) { return vn(x,xi,y,yi,32); } function core_salsa20(o, p, k, c) { var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24, j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24, j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24, j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24, j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24, j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24, j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24, j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24, j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24, j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24, j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24, j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24, j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24, j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24, j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24, j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24; var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7, x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14, x15 = j15, u; for (var i = 0; i < 20; i += 2) { u = x0 + x12 | 0; x4 ^= u<<7 | u>>>(32-7); u = x4 + x0 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x4 | 0; x12 ^= u<<13 | u>>>(32-13); u = x12 + x8 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x1 | 0; x9 ^= u<<7 | u>>>(32-7); u = x9 + x5 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x9 | 0; x1 ^= u<<13 | u>>>(32-13); u = x1 + x13 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x6 | 0; x14 ^= u<<7 | u>>>(32-7); u = x14 + x10 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x14 | 0; x6 ^= u<<13 | u>>>(32-13); u = x6 + x2 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x11 | 0; x3 ^= u<<7 | u>>>(32-7); u = x3 + x15 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x3 | 0; x11 ^= u<<13 | u>>>(32-13); u = x11 + x7 | 0; x15 ^= u<<18 | u>>>(32-18); u = x0 + x3 | 0; x1 ^= u<<7 | u>>>(32-7); u = x1 + x0 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x1 | 0; x3 ^= u<<13 | u>>>(32-13); u = x3 + x2 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x4 | 0; x6 ^= u<<7 | u>>>(32-7); u = x6 + x5 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x6 | 0; x4 ^= u<<13 | u>>>(32-13); u = x4 + x7 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x9 | 0; x11 ^= u<<7 | u>>>(32-7); u = x11 + x10 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x11 | 0; x9 ^= u<<13 | u>>>(32-13); u = x9 + x8 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x14 | 0; x12 ^= u<<7 | u>>>(32-7); u = x12 + x15 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x12 | 0; x14 ^= u<<13 | u>>>(32-13); u = x14 + x13 | 0; x15 ^= u<<18 | u>>>(32-18); } x0 = x0 + j0 | 0; x1 = x1 + j1 | 0; x2 = x2 + j2 | 0; x3 = x3 + j3 | 0; x4 = x4 + j4 | 0; x5 = x5 + j5 | 0; x6 = x6 + j6 | 0; x7 = x7 + j7 | 0; x8 = x8 + j8 | 0; x9 = x9 + j9 | 0; x10 = x10 + j10 | 0; x11 = x11 + j11 | 0; x12 = x12 + j12 | 0; x13 = x13 + j13 | 0; x14 = x14 + j14 | 0; x15 = x15 + j15 | 0; o[ 0] = x0 >>> 0 & 0xff; o[ 1] = x0 >>> 8 & 0xff; o[ 2] = x0 >>> 16 & 0xff; o[ 3] = x0 >>> 24 & 0xff; o[ 4] = x1 >>> 0 & 0xff; o[ 5] = x1 >>> 8 & 0xff; o[ 6] = x1 >>> 16 & 0xff; o[ 7] = x1 >>> 24 & 0xff; o[ 8] = x2 >>> 0 & 0xff; o[ 9] = x2 >>> 8 & 0xff; o[10] = x2 >>> 16 & 0xff; o[11] = x2 >>> 24 & 0xff; o[12] = x3 >>> 0 & 0xff; o[13] = x3 >>> 8 & 0xff; o[14] = x3 >>> 16 & 0xff; o[15] = x3 >>> 24 & 0xff; o[16] = x4 >>> 0 & 0xff; o[17] = x4 >>> 8 & 0xff; o[18] = x4 >>> 16 & 0xff; o[19] = x4 >>> 24 & 0xff; o[20] = x5 >>> 0 & 0xff; o[21] = x5 >>> 8 & 0xff; o[22] = x5 >>> 16 & 0xff; o[23] = x5 >>> 24 & 0xff; o[24] = x6 >>> 0 & 0xff; o[25] = x6 >>> 8 & 0xff; o[26] = x6 >>> 16 & 0xff; o[27] = x6 >>> 24 & 0xff; o[28] = x7 >>> 0 & 0xff; o[29] = x7 >>> 8 & 0xff; o[30] = x7 >>> 16 & 0xff; o[31] = x7 >>> 24 & 0xff; o[32] = x8 >>> 0 & 0xff; o[33] = x8 >>> 8 & 0xff; o[34] = x8 >>> 16 & 0xff; o[35] = x8 >>> 24 & 0xff; o[36] = x9 >>> 0 & 0xff; o[37] = x9 >>> 8 & 0xff; o[38] = x9 >>> 16 & 0xff; o[39] = x9 >>> 24 & 0xff; o[40] = x10 >>> 0 & 0xff; o[41] = x10 >>> 8 & 0xff; o[42] = x10 >>> 16 & 0xff; o[43] = x10 >>> 24 & 0xff; o[44] = x11 >>> 0 & 0xff; o[45] = x11 >>> 8 & 0xff; o[46] = x11 >>> 16 & 0xff; o[47] = x11 >>> 24 & 0xff; o[48] = x12 >>> 0 & 0xff; o[49] = x12 >>> 8 & 0xff; o[50] = x12 >>> 16 & 0xff; o[51] = x12 >>> 24 & 0xff; o[52] = x13 >>> 0 & 0xff; o[53] = x13 >>> 8 & 0xff; o[54] = x13 >>> 16 & 0xff; o[55] = x13 >>> 24 & 0xff; o[56] = x14 >>> 0 & 0xff; o[57] = x14 >>> 8 & 0xff; o[58] = x14 >>> 16 & 0xff; o[59] = x14 >>> 24 & 0xff; o[60] = x15 >>> 0 & 0xff; o[61] = x15 >>> 8 & 0xff; o[62] = x15 >>> 16 & 0xff; o[63] = x15 >>> 24 & 0xff; } function core_hsalsa20(o,p,k,c) { var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24, j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24, j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24, j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24, j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24, j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24, j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24, j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24, j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24, j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24, j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24, j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24, j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24, j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24, j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24, j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24; var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7, x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14, x15 = j15, u; for (var i = 0; i < 20; i += 2) { u = x0 + x12 | 0; x4 ^= u<<7 | u>>>(32-7); u = x4 + x0 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x4 | 0; x12 ^= u<<13 | u>>>(32-13); u = x12 + x8 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x1 | 0; x9 ^= u<<7 | u>>>(32-7); u = x9 + x5 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x9 | 0; x1 ^= u<<13 | u>>>(32-13); u = x1 + x13 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x6 | 0; x14 ^= u<<7 | u>>>(32-7); u = x14 + x10 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x14 | 0; x6 ^= u<<13 | u>>>(32-13); u = x6 + x2 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x11 | 0; x3 ^= u<<7 | u>>>(32-7); u = x3 + x15 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x3 | 0; x11 ^= u<<13 | u>>>(32-13); u = x11 + x7 | 0; x15 ^= u<<18 | u>>>(32-18); u = x0 + x3 | 0; x1 ^= u<<7 | u>>>(32-7); u = x1 + x0 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x1 | 0; x3 ^= u<<13 | u>>>(32-13); u = x3 + x2 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x4 | 0; x6 ^= u<<7 | u>>>(32-7); u = x6 + x5 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x6 | 0; x4 ^= u<<13 | u>>>(32-13); u = x4 + x7 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x9 | 0; x11 ^= u<<7 | u>>>(32-7); u = x11 + x10 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x11 | 0; x9 ^= u<<13 | u>>>(32-13); u = x9 + x8 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x14 | 0; x12 ^= u<<7 | u>>>(32-7); u = x12 + x15 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x12 | 0; x14 ^= u<<13 | u>>>(32-13); u = x14 + x13 | 0; x15 ^= u<<18 | u>>>(32-18); } o[ 0] = x0 >>> 0 & 0xff; o[ 1] = x0 >>> 8 & 0xff; o[ 2] = x0 >>> 16 & 0xff; o[ 3] = x0 >>> 24 & 0xff; o[ 4] = x5 >>> 0 & 0xff; o[ 5] = x5 >>> 8 & 0xff; o[ 6] = x5 >>> 16 & 0xff; o[ 7] = x5 >>> 24 & 0xff; o[ 8] = x10 >>> 0 & 0xff; o[ 9] = x10 >>> 8 & 0xff; o[10] = x10 >>> 16 & 0xff; o[11] = x10 >>> 24 & 0xff; o[12] = x15 >>> 0 & 0xff; o[13] = x15 >>> 8 & 0xff; o[14] = x15 >>> 16 & 0xff; o[15] = x15 >>> 24 & 0xff; o[16] = x6 >>> 0 & 0xff; o[17] = x6 >>> 8 & 0xff; o[18] = x6 >>> 16 & 0xff; o[19] = x6 >>> 24 & 0xff; o[20] = x7 >>> 0 & 0xff; o[21] = x7 >>> 8 & 0xff; o[22] = x7 >>> 16 & 0xff; o[23] = x7 >>> 24 & 0xff; o[24] = x8 >>> 0 & 0xff; o[25] = x8 >>> 8 & 0xff; o[26] = x8 >>> 16 & 0xff; o[27] = x8 >>> 24 & 0xff; o[28] = x9 >>> 0 & 0xff; o[29] = x9 >>> 8 & 0xff; o[30] = x9 >>> 16 & 0xff; o[31] = x9 >>> 24 & 0xff; } function crypto_core_salsa20(out,inp,k,c) { core_salsa20(out,inp,k,c); } function crypto_core_hsalsa20(out,inp,k,c) { core_hsalsa20(out,inp,k,c); } var sigma = new Uint8Array([101, 120, 112, 97, 110, 100, 32, 51, 50, 45, 98, 121, 116, 101, 32, 107]); // "expand 32-byte k" function crypto_stream_salsa20_xor(c,cpos,m,mpos,b,n,k) { var z = new Uint8Array(16), x = new Uint8Array(64); var u, i; for (i = 0; i < 16; i++) z[i] = 0; for (i = 0; i < 8; i++) z[i] = n[i]; while (b >= 64) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < 64; i++) c[cpos+i] = m[mpos+i] ^ x[i]; u = 1; for (i = 8; i < 16; i++) { u = u + (z[i] & 0xff) | 0; z[i] = u & 0xff; u >>>= 8; } b -= 64; cpos += 64; mpos += 64; } if (b > 0) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < b; i++) c[cpos+i] = m[mpos+i] ^ x[i]; } return 0; } function crypto_stream_salsa20(c,cpos,b,n,k) { var z = new Uint8Array(16), x = new Uint8Array(64); var u, i; for (i = 0; i < 16; i++) z[i] = 0; for (i = 0; i < 8; i++) z[i] = n[i]; while (b >= 64) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < 64; i++) c[cpos+i] = x[i]; u = 1; for (i = 8; i < 16; i++) { u = u + (z[i] & 0xff) | 0; z[i] = u & 0xff; u >>>= 8; } b -= 64; cpos += 64; } if (b > 0) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < b; i++) c[cpos+i] = x[i]; } return 0; } function crypto_stream(c,cpos,d,n,k) { var s = new Uint8Array(32); crypto_core_hsalsa20(s,n,k,sigma); var sn = new Uint8Array(8); for (var i = 0; i < 8; i++) sn[i] = n[i+16]; return crypto_stream_salsa20(c,cpos,d,sn,s); } function crypto_stream_xor(c,cpos,m,mpos,d,n,k) { var s = new Uint8Array(32); crypto_core_hsalsa20(s,n,k,sigma); var sn = new Uint8Array(8); for (var i = 0; i < 8; i++) sn[i] = n[i+16]; return crypto_stream_salsa20_xor(c,cpos,m,mpos,d,sn,s); } /* * Port of Andrew Moon's Poly1305-donna-16. Public domain. * https://github.com/floodyberry/poly1305-donna */ var poly1305 = function(key) { this.buffer = new Uint8Array(16); this.r = new Uint16Array(10); this.h = new Uint16Array(10); this.pad = new Uint16Array(8); this.leftover = 0; this.fin = 0; var t0, t1, t2, t3, t4, t5, t6, t7; t0 = key[ 0] & 0xff | (key[ 1] & 0xff) << 8; this.r[0] = ( t0 ) & 0x1fff; t1 = key[ 2] & 0xff | (key[ 3] & 0xff) << 8; this.r[1] = ((t0 >>> 13) | (t1 << 3)) & 0x1fff; t2 = key[ 4] & 0xff | (key[ 5] & 0xff) << 8; this.r[2] = ((t1 >>> 10) | (t2 << 6)) & 0x1f03; t3 = key[ 6] & 0xff | (key[ 7] & 0xff) << 8; this.r[3] = ((t2 >>> 7) | (t3 << 9)) & 0x1fff; t4 = key[ 8] & 0xff | (key[ 9] & 0xff) << 8; this.r[4] = ((t3 >>> 4) | (t4 << 12)) & 0x00ff; this.r[5] = ((t4 >>> 1)) & 0x1ffe; t5 = key[10] & 0xff | (key[11] & 0xff) << 8; this.r[6] = ((t4 >>> 14) | (t5 << 2)) & 0x1fff; t6 = key[12] & 0xff | (key[13] & 0xff) << 8; this.r[7] = ((t5 >>> 11) | (t6 << 5)) & 0x1f81; t7 = key[14] & 0xff | (key[15] & 0xff) << 8; this.r[8] = ((t6 >>> 8) | (t7 << 8)) & 0x1fff; this.r[9] = ((t7 >>> 5)) & 0x007f; this.pad[0] = key[16] & 0xff | (key[17] & 0xff) << 8; this.pad[1] = key[18] & 0xff | (key[19] & 0xff) << 8; this.pad[2] = key[20] & 0xff | (key[21] & 0xff) << 8; this.pad[3] = key[22] & 0xff | (key[23] & 0xff) << 8; this.pad[4] = key[24] & 0xff | (key[25] & 0xff) << 8; this.pad[5] = key[26] & 0xff | (key[27] & 0xff) << 8; this.pad[6] = key[28] & 0xff | (key[29] & 0xff) << 8; this.pad[7] = key[30] & 0xff | (key[31] & 0xff) << 8; }; poly1305.prototype.blocks = function(m, mpos, bytes) { var hibit = this.fin ? 0 : (1 << 11); var t0, t1, t2, t3, t4, t5, t6, t7, c; var d0, d1, d2, d3, d4, d5, d6, d7, d8, d9; var h0 = this.h[0], h1 = this.h[1], h2 = this.h[2], h3 = this.h[3], h4 = this.h[4], h5 = this.h[5], h6 = this.h[6], h7 = this.h[7], h8 = this.h[8], h9 = this.h[9]; var r0 = this.r[0], r1 = this.r[1], r2 = this.r[2], r3 = this.r[3], r4 = this.r[4], r5 = this.r[5], r6 = this.r[6], r7 = this.r[7], r8 = this.r[8], r9 = this.r[9]; while (bytes >= 16) { t0 = m[mpos+ 0] & 0xff | (m[mpos+ 1] & 0xff) << 8; h0 += ( t0 ) & 0x1fff; t1 = m[mpos+ 2] & 0xff | (m[mpos+ 3] & 0xff) << 8; h1 += ((t0 >>> 13) | (t1 << 3)) & 0x1fff; t2 = m[mpos+ 4] & 0xff | (m[mpos+ 5] & 0xff) << 8; h2 += ((t1 >>> 10) | (t2 << 6)) & 0x1fff; t3 = m[mpos+ 6] & 0xff | (m[mpos+ 7] & 0xff) << 8; h3 += ((t2 >>> 7) | (t3 << 9)) & 0x1fff; t4 = m[mpos+ 8] & 0xff | (m[mpos+ 9] & 0xff) << 8; h4 += ((t3 >>> 4) | (t4 << 12)) & 0x1fff; h5 += ((t4 >>> 1)) & 0x1fff; t5 = m[mpos+10] & 0xff | (m[mpos+11] & 0xff) << 8; h6 += ((t4 >>> 14) | (t5 << 2)) & 0x1fff; t6 = m[mpos+12] & 0xff | (m[mpos+13] & 0xff) << 8; h7 += ((t5 >>> 11) | (t6 << 5)) & 0x1fff; t7 = m[mpos+14] & 0xff | (m[mpos+15] & 0xff) << 8; h8 += ((t6 >>> 8) | (t7 << 8)) & 0x1fff; h9 += ((t7 >>> 5)) | hibit; c = 0; d0 = c; d0 += h0 * r0; d0 += h1 * (5 * r9); d0 += h2 * (5 * r8); d0 += h3 * (5 * r7); d0 += h4 * (5 * r6); c = (d0 >>> 13); d0 &= 0x1fff; d0 += h5 * (5 * r5); d0 += h6 * (5 * r4); d0 += h7 * (5 * r3); d0 += h8 * (5 * r2); d0 += h9 * (5 * r1); c += (d0 >>> 13); d0 &= 0x1fff; d1 = c; d1 += h0 * r1; d1 += h1 * r0; d1 += h2 * (5 * r9); d1 += h3 * (5 * r8); d1 += h4 * (5 * r7); c = (d1 >>> 13); d1 &= 0x1fff; d1 += h5 * (5 * r6); d1 += h6 * (5 * r5); d1 += h7 * (5 * r4); d1 += h8 * (5 * r3); d1 += h9 * (5 * r2); c += (d1 >>> 13); d1 &= 0x1fff; d2 = c; d2 += h0 * r2; d2 += h1 * r1; d2 += h2 * r0; d2 += h3 * (5 * r9); d2 += h4 * (5 * r8); c = (d2 >>> 13); d2 &= 0x1fff; d2 += h5 * (5 * r7); d2 += h6 * (5 * r6); d2 += h7 * (5 * r5); d2 += h8 * (5 * r4); d2 += h9 * (5 * r3); c += (d2 >>> 13); d2 &= 0x1fff; d3 = c; d3 += h0 * r3; d3 += h1 * r2; d3 += h2 * r1; d3 += h3 * r0; d3 += h4 * (5 * r9); c = (d3 >>> 13); d3 &= 0x1fff; d3 += h5 * (5 * r8); d3 += h6 * (5 * r7); d3 += h7 * (5 * r6); d3 += h8 * (5 * r5); d3 += h9 * (5 * r4); c += (d3 >>> 13); d3 &= 0x1fff; d4 = c; d4 += h0 * r4; d4 += h1 * r3; d4 += h2 * r2; d4 += h3 * r1; d4 += h4 * r0; c = (d4 >>> 13); d4 &= 0x1fff; d4 += h5 * (5 * r9); d4 += h6 * (5 * r8); d4 += h7 * (5 * r7); d4 += h8 * (5 * r6); d4 += h9 * (5 * r5); c += (d4 >>> 13); d4 &= 0x1fff; d5 = c; d5 += h0 * r5; d5 += h1 * r4; d5 += h2 * r3; d5 += h3 * r2; d5 += h4 * r1; c = (d5 >>> 13); d5 &= 0x1fff; d5 += h5 * r0; d5 += h6 * (5 * r9); d5 += h7 * (5 * r8); d5 += h8 * (5 * r7); d5 += h9 * (5 * r6); c += (d5 >>> 13); d5 &= 0x1fff; d6 = c; d6 += h0 * r6; d6 += h1 * r5; d6 += h2 * r4; d6 += h3 * r3; d6 += h4 * r2; c = (d6 >>> 13); d6 &= 0x1fff; d6 += h5 * r1; d6 += h6 * r0; d6 += h7 * (5 * r9); d6 += h8 * (5 * r8); d6 += h9 * (5 * r7); c += (d6 >>> 13); d6 &= 0x1fff; d7 = c; d7 += h0 * r7; d7 += h1 * r6; d7 += h2 * r5; d7 += h3 * r4; d7 += h4 * r3; c = (d7 >>> 13); d7 &= 0x1fff; d7 += h5 * r2; d7 += h6 * r1; d7 += h7 * r0; d7 += h8 * (5 * r9); d7 += h9 * (5 * r8); c += (d7 >>> 13); d7 &= 0x1fff; d8 = c; d8 += h0 * r8; d8 += h1 * r7; d8 += h2 * r6; d8 += h3 * r5; d8 += h4 * r4; c = (d8 >>> 13); d8 &= 0x1fff; d8 += h5 * r3; d8 += h6 * r2; d8 += h7 * r1; d8 += h8 * r0; d8 += h9 * (5 * r9); c += (d8 >>> 13); d8 &= 0x1fff; d9 = c; d9 += h0 * r9; d9 += h1 * r8; d9 += h2 * r7; d9 += h3 * r6; d9 += h4 * r5; c = (d9 >>> 13); d9 &= 0x1fff; d9 += h5 * r4; d9 += h6 * r3; d9 += h7 * r2; d9 += h8 * r1; d9 += h9 * r0; c += (d9 >>> 13); d9 &= 0x1fff; c = (((c << 2) + c)) | 0; c = (c + d0) | 0; d0 = c & 0x1fff; c = (c >>> 13); d1 += c; h0 = d0; h1 = d1; h2 = d2; h3 = d3; h4 = d4; h5 = d5; h6 = d6; h7 = d7; h8 = d8; h9 = d9; mpos += 16; bytes -= 16; } this.h[0] = h0; this.h[1] = h1; this.h[2] = h2; this.h[3] = h3; this.h[4] = h4; this.h[5] = h5; this.h[6] = h6; this.h[7] = h7; this.h[8] = h8; this.h[9] = h9; }; poly1305.prototype.finish = function(mac, macpos) { var g = new Uint16Array(10); var c, mask, f, i; if (this.leftover) { i = this.leftover; this.buffer[i++] = 1; for (; i < 16; i++) this.buffer[i] = 0; this.fin = 1; this.blocks(this.buffer, 0, 16); } c = this.h[1] >>> 13; this.h[1] &= 0x1fff; for (i = 2; i < 10; i++) { this.h[i] += c; c = this.h[i] >>> 13; this.h[i] &= 0x1fff; } this.h[0] += (c * 5); c = this.h[0] >>> 13; this.h[0] &= 0x1fff; this.h[1] += c; c = this.h[1] >>> 13; this.h[1] &= 0x1fff; this.h[2] += c; g[0] = this.h[0] + 5; c = g[0] >>> 13; g[0] &= 0x1fff; for (i = 1; i < 10; i++) { g[i] = this.h[i] + c; c = g[i] >>> 13; g[i] &= 0x1fff; } g[9] -= (1 << 13); mask = (c ^ 1) - 1; for (i = 0; i < 10; i++) g[i] &= mask; mask = ~mask; for (i = 0; i < 10; i++) this.h[i] = (this.h[i] & mask) | g[i]; this.h[0] = ((this.h[0] ) | (this.h[1] << 13) ) & 0xffff; this.h[1] = ((this.h[1] >>> 3) | (this.h[2] << 10) ) & 0xffff; this.h[2] = ((this.h[2] >>> 6) | (this.h[3] << 7) ) & 0xffff; this.h[3] = ((this.h[3] >>> 9) | (this.h[4] << 4) ) & 0xffff; this.h[4] = ((this.h[4] >>> 12) | (this.h[5] << 1) | (this.h[6] << 14)) & 0xffff; this.h[5] = ((this.h[6] >>> 2) | (this.h[7] << 11) ) & 0xffff; this.h[6] = ((this.h[7] >>> 5) | (this.h[8] << 8) ) & 0xffff; this.h[7] = ((this.h[8] >>> 8) | (this.h[9] << 5) ) & 0xffff; f = this.h[0] + this.pad[0]; this.h[0] = f & 0xffff; for (i = 1; i < 8; i++) { f = (((this.h[i] + this.pad[i]) | 0) + (f >>> 16)) | 0; this.h[i] = f & 0xffff; } mac[macpos+ 0] = (this.h[0] >>> 0) & 0xff; mac[macpos+ 1] = (this.h[0] >>> 8) & 0xff; mac[macpos+ 2] = (this.h[1] >>> 0) & 0xff; mac[macpos+ 3] = (this.h[1] >>> 8) & 0xff; mac[macpos+ 4] = (this.h[2] >>> 0) & 0xff; mac[macpos+ 5] = (this.h[2] >>> 8) & 0xff; mac[macpos+ 6] = (this.h[3] >>> 0) & 0xff; mac[macpos+ 7] = (this.h[3] >>> 8) & 0xff; mac[macpos+ 8] = (this.h[4] >>> 0) & 0xff; mac[macpos+ 9] = (this.h[4] >>> 8) & 0xff; mac[macpos+10] = (this.h[5] >>> 0) & 0xff; mac[macpos+11] = (this.h[5] >>> 8) & 0xff; mac[macpos+12] = (this.h[6] >>> 0) & 0xff; mac[macpos+13] = (this.h[6] >>> 8) & 0xff; mac[macpos+14] = (this.h[7] >>> 0) & 0xff; mac[macpos+15] = (this.h[7] >>> 8) & 0xff; }; poly1305.prototype.update = function(m, mpos, bytes) { var i, want; if (this.leftover) { want = (16 - this.leftover); if (want > bytes) want = bytes; for (i = 0; i < want; i++) this.buffer[this.leftover + i] = m[mpos+i]; bytes -= want; mpos += want; this.leftover += want; if (this.leftover < 16) return; this.blocks(this.buffer, 0, 16); this.leftover = 0; } if (bytes >= 16) { want = bytes - (bytes % 16); this.blocks(m, mpos, want); mpos += want; bytes -= want; } if (bytes) { for (i = 0; i < bytes; i++) this.buffer[this.leftover + i] = m[mpos+i]; this.leftover += bytes; } }; function crypto_onetimeauth(out, outpos, m, mpos, n, k) { var s = new poly1305(k); s.update(m, mpos, n); s.finish(out, outpos); return 0; } function crypto_onetimeauth_verify(h, hpos, m, mpos, n, k) { var x = new Uint8Array(16); crypto_onetimeauth(x,0,m,mpos,n,k); return crypto_verify_16(h,hpos,x,0); } function crypto_secretbox(c,m,d,n,k) { var i; if (d < 32) return -1; crypto_stream_xor(c,0,m,0,d,n,k); crypto_onetimeauth(c, 16, c, 32, d - 32, c); for (i = 0; i < 16; i++) c[i] = 0; return 0; } function crypto_secretbox_open(m,c,d,n,k) { var i; var x = new Uint8Array(32); if (d < 32) return -1; crypto_stream(x,0,32,n,k); if (crypto_onetimeauth_verify(c, 16,c, 32,d - 32,x) !== 0) return -1; crypto_stream_xor(m,0,c,0,d,n,k); for (i = 0; i < 32; i++) m[i] = 0; return 0; } function set25519(r, a) { var i; for (i = 0; i < 16; i++) r[i] = a[i]|0; } function car25519(o) { var i, v, c = 1; for (i = 0; i < 16; i++) { v = o[i] + c + 65535; c = Math.floor(v / 65536); o[i] = v - c * 65536; } o[0] += c-1 + 37 * (c-1); } function sel25519(p, q, b) { var t, c = ~(b-1); for (var i = 0; i < 16; i++) { t = c & (p[i] ^ q[i]); p[i] ^= t; q[i] ^= t; } } function pack25519(o, n) { var i, j, b; var m = gf(), t = gf(); for (i = 0; i < 16; i++) t[i] = n[i]; car25519(t); car25519(t); car25519(t); for (j = 0; j < 2; j++) { m[0] = t[0] - 0xffed; for (i = 1; i < 15; i++) { m[i] = t[i] - 0xffff - ((m[i-1]>>16) & 1); m[i-1] &= 0xffff; } m[15] = t[15] - 0x7fff - ((m[14]>>16) & 1); b = (m[15]>>16) & 1; m[14] &= 0xffff; sel25519(t, m, 1-b); } for (i = 0; i < 16; i++) { o[2*i] = t[i] & 0xff; o[2*i+1] = t[i]>>8; } } function neq25519(a, b) { var c = new Uint8Array(32), d = new Uint8Array(32); pack25519(c, a); pack25519(d, b); return crypto_verify_32(c, 0, d, 0); } function par25519(a) { var d = new Uint8Array(32); pack25519(d, a); return d[0] & 1; } function unpack25519(o, n) { var i; for (i = 0; i < 16; i++) o[i] = n[2*i] + (n[2*i+1] << 8); o[15] &= 0x7fff; } function A(o, a, b) { for (var i = 0; i < 16; i++) o[i] = a[i] + b[i]; } function Z(o, a, b) { for (var i = 0; i < 16; i++) o[i] = a[i] - b[i]; } function M(o, a, b) { var v, c, t0 = 0, t1 = 0, t2 = 0, t3 = 0, t4 = 0, t5 = 0, t6 = 0, t7 = 0, t8 = 0, t9 = 0, t10 = 0, t11 = 0, t12 = 0, t13 = 0, t14 = 0, t15 = 0, t16 = 0, t17 = 0, t18 = 0, t19 = 0, t20 = 0, t21 = 0, t22 = 0, t23 = 0, t24 = 0, t25 = 0, t26 = 0, t27 = 0, t28 = 0, t29 = 0, t30 = 0, b0 = b[0], b1 = b[1], b2 = b[2], b3 = b[3], b4 = b[4], b5 = b[5], b6 = b[6], b7 = b[7], b8 = b[8], b9 = b[9], b10 = b[10], b11 = b[11], b12 = b[12], b13 = b[13], b14 = b[14], b15 = b[15]; v = a[0]; t0 += v * b0; t1 += v * b1; t2 += v * b2; t3 += v * b3; t4 += v * b4; t5 += v * b5; t6 += v * b6; t7 += v * b7; t8 += v * b8; t9 += v * b9; t10 += v * b10; t11 += v * b11; t12 += v * b12; t13 += v * b13; t14 += v * b14; t15 += v * b15; v = a[1]; t1 += v * b0; t2 += v * b1; t3 += v * b2; t4 += v * b3; t5 += v * b4; t6 += v * b5; t7 += v * b6; t8 += v * b7; t9 += v * b8; t10 += v * b9; t11 += v * b10; t12 += v * b11; t13 += v * b12; t14 += v * b13; t15 += v * b14; t16 += v * b15; v = a[2]; t2 += v * b0; t3 += v * b1; t4 += v * b2; t5 += v * b3; t6 += v * b4; t7 += v * b5; t8 += v * b6; t9 += v * b7; t10 += v * b8; t11 += v * b9; t12 += v * b10; t13 += v * b11; t14 += v * b12; t15 += v * b13; t16 += v * b14; t17 += v * b15; v = a[3]; t3 += v * b0; t4 += v * b1; t5 += v * b2; t6 += v * b3; t7 += v * b4; t8 += v * b5; t9 += v * b6; t10 += v * b7; t11 += v * b8; t12 += v * b9; t13 += v * b10; t14 += v * b11; t15 += v * b12; t16 += v * b13; t17 += v * b14; t18 += v * b15; v = a[4]; t4 += v * b0; t5 += v * b1; t6 += v * b2; t7 += v * b3; t8 += v * b4; t9 += v * b5; t10 += v * b6; t11 += v * b7; t12 += v * b8; t13 += v * b9; t14 += v * b10; t15 += v * b11; t16 += v * b12; t17 += v * b13; t18 += v * b14; t19 += v * b15; v = a[5]; t5 += v * b0; t6 += v * b1; t7 += v * b2; t8 += v * b3; t9 += v * b4; t10 += v * b5; t11 += v * b6; t12 += v * b7; t13 += v * b8; t14 += v * b9; t15 += v * b10; t16 += v * b11; t17 += v * b12; t18 += v * b13; t19 += v * b14; t20 += v * b15; v = a[6]; t6 += v * b0; t7 += v * b1; t8 += v * b2; t9 += v * b3; t10 += v * b4; t11 += v * b5; t12 += v * b6; t13 += v * b7; t14 += v * b8; t15 += v * b9; t16 += v * b10; t17 += v * b11; t18 += v * b12; t19 += v * b13; t20 += v * b14; t21 += v * b15; v = a[7]; t7 += v * b0; t8 += v * b1; t9 += v * b2; t10 += v * b3; t11 += v * b4; t12 += v * b5; t13 += v * b6; t14 += v * b7; t15 += v * b8; t16 += v * b9; t17 += v * b10; t18 += v * b11; t19 += v * b12; t20 += v * b13; t21 += v * b14; t22 += v * b15; v = a[8]; t8 += v * b0; t9 += v * b1; t10 += v * b2; t11 += v * b3; t12 += v * b4; t13 += v * b5; t14 += v * b6; t15 += v * b7; t16 += v * b8; t17 += v * b9; t18 += v * b10; t19 += v * b11; t20 += v * b12; t21 += v * b13; t22 += v * b14; t23 += v * b15; v = a[9]; t9 += v * b0; t10 += v * b1; t11 += v * b2; t12 += v * b3; t13 += v * b4; t14 += v * b5; t15 += v * b6; t16 += v * b7; t17 += v * b8; t18 += v * b9; t19 += v * b10; t20 += v * b11; t21 += v * b12; t22 += v * b13; t23 += v * b14; t24 += v * b15; v = a[10]; t10 += v * b0; t11 += v * b1; t12 += v * b2; t13 += v * b3; t14 += v * b4; t15 += v * b5; t16 += v * b6; t17 += v * b7; t18 += v * b8; t19 += v * b9; t20 += v * b10; t21 += v * b11; t22 += v * b12; t23 += v * b13; t24 += v * b14; t25 += v * b15; v = a[11]; t11 += v * b0; t12 += v * b1; t13 += v * b2; t14 += v * b3; t15 += v * b4; t16 += v * b5; t17 += v * b6; t18 += v * b7; t19 += v * b8; t20 += v * b9; t21 += v * b10; t22 += v * b11; t23 += v * b12; t24 += v * b13; t25 += v * b14; t26 += v * b15; v = a[12]; t12 += v * b0; t13 += v * b1; t14 += v * b2; t15 += v * b3; t16 += v * b4; t17 += v * b5; t18 += v * b6; t19 += v * b7; t20 += v * b8; t21 += v * b9; t22 += v * b10; t23 += v * b11; t24 += v * b12; t25 += v * b13; t26 += v * b14; t27 += v * b15; v = a[13]; t13 += v * b0; t14 += v * b1; t15 += v * b2; t16 += v * b3; t17 += v * b4; t18 += v * b5; t19 += v * b6; t20 += v * b7; t21 += v * b8; t22 += v * b9; t23 += v * b10; t24 += v * b11; t25 += v * b12; t26 += v * b13; t27 += v * b14; t28 += v * b15; v = a[14]; t14 += v * b0; t15 += v * b1; t16 += v * b2; t17 += v * b3; t18 += v * b4; t19 += v * b5; t20 += v * b6; t21 += v * b7; t22 += v * b8; t23 += v * b9; t24 += v * b10; t25 += v * b11; t26 += v * b12; t27 += v * b13; t28 += v * b14; t29 += v * b15; v = a[15]; t15 += v * b0; t16 += v * b1; t17 += v * b2; t18 += v * b3; t19 += v * b4; t20 += v * b5; t21 += v * b6; t22 += v * b7; t23 += v * b8; t24 += v * b9; t25 += v * b10; t26 += v * b11; t27 += v * b12; t28 += v * b13; t29 += v * b14; t30 += v * b15; t0 += 38 * t16; t1 += 38 * t17; t2 += 38 * t18; t3 += 38 * t19; t4 += 38 * t20; t5 += 38 * t21; t6 += 38 * t22; t7 += 38 * t23; t8 += 38 * t24; t9 += 38 * t25; t10 += 38 * t26; t11 += 38 * t27; t12 += 38 * t28; t13 += 38 * t29; t14 += 38 * t30; // t15 left as is // first car c = 1; v = t0 + c + 65535; c = Math.floor(v / 65536); t0 = v - c * 65536; v = t1 + c + 65535; c = Math.floor(v / 65536); t1 = v - c * 65536; v = t2 + c + 65535; c = Math.floor(v / 65536); t2 = v - c * 65536; v = t3 + c + 65535; c = Math.floor(v / 65536); t3 = v - c * 65536; v = t4 + c + 65535; c = Math.floor(v / 65536); t4 = v - c * 65536; v = t5 + c + 65535; c = Math.floor(v / 65536); t5 = v - c * 65536; v = t6 + c + 65535; c = Math.floor(v / 65536); t6 = v - c * 65536; v = t7 + c + 65535; c = Math.floor(v / 65536); t7 = v - c * 65536; v = t8 + c + 65535; c = Math.floor(v / 65536); t8 = v - c * 65536; v = t9 + c + 65535; c = Math.floor(v / 65536); t9 = v - c * 65536; v = t10 + c + 65535; c = Math.floor(v / 65536); t10 = v - c * 65536; v = t11 + c + 65535; c = Math.floor(v / 65536); t11 = v - c * 65536; v = t12 + c + 65535; c = Math.floor(v / 65536); t12 = v - c * 65536; v = t13 + c + 65535; c = Math.floor(v / 65536); t13 = v - c * 65536; v = t14 + c + 65535; c = Math.floor(v / 65536); t14 = v - c * 65536; v = t15 + c + 65535; c = Math.floor(v / 65536); t15 = v - c * 65536; t0 += c-1 + 37 * (c-1); // second car c = 1; v = t0 + c + 65535; c = Math.floor(v / 65536); t0 = v - c * 65536; v = t1 + c + 65535; c = Math.floor(v / 65536); t1 = v - c * 65536; v = t2 + c + 65535; c = Math.floor(v / 65536); t2 = v - c * 65536; v = t3 + c + 65535; c = Math.floor(v / 65536); t3 = v - c * 65536; v = t4 + c + 65535; c = Math.floor(v / 65536); t4 = v - c * 65536; v = t5 + c + 65535; c = Math.floor(v / 65536); t5 = v - c * 65536; v = t6 + c + 65535; c = Math.floor(v / 65536); t6 = v - c * 65536; v = t7 + c + 65535; c = Math.floor(v / 65536); t7 = v - c * 65536; v = t8 + c + 65535; c = Math.floor(v / 65536); t8 = v - c * 65536; v = t9 + c + 65535; c = Math.floor(v / 65536); t9 = v - c * 65536; v = t10 + c + 65535; c = Math.floor(v / 65536); t10 = v - c * 65536; v = t11 + c + 65535; c = Math.floor(v / 65536); t11 = v - c * 65536; v = t12 + c + 65535; c = Math.floor(v / 65536); t12 = v - c * 65536; v = t13 + c + 65535; c = Math.floor(v / 65536); t13 = v - c * 65536; v = t14 + c + 65535; c = Math.floor(v / 65536); t14 = v - c * 65536; v = t15 + c + 65535; c = Math.floor(v / 65536); t15 = v - c * 65536; t0 += c-1 + 37 * (c-1); o[ 0] = t0; o[ 1] = t1; o[ 2] = t2; o[ 3] = t3; o[ 4] = t4; o[ 5] = t5; o[ 6] = t6; o[ 7] = t7; o[ 8] = t8; o[ 9] = t9; o[10] = t10; o[11] = t11; o[12] = t12; o[13] = t13; o[14] = t14; o[15] = t15; } function S(o, a) { M(o, a, a); } function inv25519(o, i) { var c = gf(); var a; for (a = 0; a < 16; a++) c[a] = i[a]; for (a = 253; a >= 0; a--) { S(c, c); if(a !== 2 && a !== 4) M(c, c, i); } for (a = 0; a < 16; a++) o[a] = c[a]; } function pow2523(o, i) { var c = gf(); var a; for (a = 0; a < 16; a++) c[a] = i[a]; for (a = 250; a >= 0; a--) { S(c, c); if(a !== 1) M(c, c, i); } for (a = 0; a < 16; a++) o[a] = c[a]; } function crypto_scalarmult(q, n, p) { var z = new Uint8Array(32); var x = new Float64Array(80), r, i; var a = gf(), b = gf(), c = gf(), d = gf(), e = gf(), f = gf(); for (i = 0; i < 31; i++) z[i] = n[i]; z[31]=(n[31]&127)|64; z[0]&=248; unpack25519(x,p); for (i = 0; i < 16; i++) { b[i]=x[i]; d[i]=a[i]=c[i]=0; } a[0]=d[0]=1; for (i=254; i>=0; --i) { r=(z[i>>>3]>>>(i&7))&1; sel25519(a,b,r); sel25519(c,d,r); A(e,a,c); Z(a,a,c); A(c,b,d); Z(b,b,d); S(d,e); S(f,a); M(a,c,a); M(c,b,e); A(e,a,c); Z(a,a,c); S(b,a); Z(c,d,f); M(a,c,_121665); A(a,a,d); M(c,c,a); M(a,d,f); M(d,b,x); S(b,e); sel25519(a,b,r); sel25519(c,d,r); } for (i = 0; i < 16; i++) { x[i+16]=a[i]; x[i+32]=c[i]; x[i+48]=b[i]; x[i+64]=d[i]; } var x32 = x.subarray(32); var x16 = x.subarray(16); inv25519(x32,x32); M(x16,x16,x32); pack25519(q,x16); return 0; } function crypto_scalarmult_base(q, n) { return crypto_scalarmult(q, n, _9); } function crypto_box_keypair(y, x) { randombytes(x, 32); return crypto_scalarmult_base(y, x); } function crypto_box_beforenm(k, y, x) { var s = new Uint8Array(32); crypto_scalarmult(s, x, y); return crypto_core_hsalsa20(k, _0, s, sigma); } var crypto_box_afternm = crypto_secretbox; var crypto_box_open_afternm = crypto_secretbox_open; function crypto_box(c, m, d, n, y, x) { var k = new Uint8Array(32); crypto_box_beforenm(k, y, x); return crypto_box_afternm(c, m, d, n, k); } function crypto_box_open(m, c, d, n, y, x) { var k = new Uint8Array(32); crypto_box_beforenm(k, y, x); return crypto_box_open_afternm(m, c, d, n, k); } var K = [ 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd, 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc, 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019, 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118, 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe, 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2, 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1, 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694, 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3, 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65, 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483, 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5, 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210, 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4, 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725, 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70, 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926, 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df, 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8, 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b, 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001, 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30, 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910, 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8, 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53, 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8, 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb, 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3, 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60, 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec, 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9, 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b, 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207, 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178, 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6, 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b, 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493, 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c, 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a, 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817 ]; function crypto_hashblocks_hl(hh, hl, m, n) { var wh = new Int32Array(16), wl = new Int32Array(16), bh0, bh1, bh2, bh3, bh4, bh5, bh6, bh7, bl0, bl1, bl2, bl3, bl4, bl5, bl6, bl7, th, tl, i, j, h, l, a, b, c, d; var ah0 = hh[0], ah1 = hh[1], ah2 = hh[2], ah3 = hh[3], ah4 = hh[4], ah5 = hh[5], ah6 = hh[6], ah7 = hh[7], al0 = hl[0], al1 = hl[1], al2 = hl[2], al3 = hl[3], al4 = hl[4], al5 = hl[5], al6 = hl[6], al7 = hl[7]; var pos = 0; while (n >= 128) { for (i = 0; i < 16; i++) { j = 8 * i + pos; wh[i] = (m[j+0] << 24) | (m[j+1] << 16) | (m[j+2] << 8) | m[j+3]; wl[i] = (m[j+4] << 24) | (m[j+5] << 16) | (m[j+6] << 8) | m[j+7]; } for (i = 0; i < 80; i++) { bh0 = ah0; bh1 = ah1; bh2 = ah2; bh3 = ah3; bh4 = ah4; bh5 = ah5; bh6 = ah6; bh7 = ah7; bl0 = al0; bl1 = al1; bl2 = al2; bl3 = al3; bl4 = al4; bl5 = al5; bl6 = al6; bl7 = al7; // add h = ah7; l = al7; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; // Sigma1 h = ((ah4 >>> 14) | (al4 << (32-14))) ^ ((ah4 >>> 18) | (al4 << (32-18))) ^ ((al4 >>> (41-32)) | (ah4 << (32-(41-32)))); l = ((al4 >>> 14) | (ah4 << (32-14))) ^ ((al4 >>> 18) | (ah4 << (32-18))) ^ ((ah4 >>> (41-32)) | (al4 << (32-(41-32)))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // Ch h = (ah4 & ah5) ^ (~ah4 & ah6); l = (al4 & al5) ^ (~al4 & al6); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // K h = K[i*2]; l = K[i*2+1]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // w h = wh[i%16]; l = wl[i%16]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; th = c & 0xffff | d << 16; tl = a & 0xffff | b << 16; // add h = th; l = tl; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; // Sigma0 h = ((ah0 >>> 28) | (al0 << (32-28))) ^ ((al0 >>> (34-32)) | (ah0 << (32-(34-32)))) ^ ((al0 >>> (39-32)) | (ah0 << (32-(39-32)))); l = ((al0 >>> 28) | (ah0 << (32-28))) ^ ((ah0 >>> (34-32)) | (al0 << (32-(34-32)))) ^ ((ah0 >>> (39-32)) | (al0 << (32-(39-32)))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // Maj h = (ah0 & ah1) ^ (ah0 & ah2) ^ (ah1 & ah2); l = (al0 & al1) ^ (al0 & al2) ^ (al1 & al2); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; bh7 = (c & 0xffff) | (d << 16); bl7 = (a & 0xffff) | (b << 16); // add h = bh3; l = bl3; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = th; l = tl; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; bh3 = (c & 0xffff) | (d << 16); bl3 = (a & 0xffff) | (b << 16); ah1 = bh0; ah2 = bh1; ah3 = bh2; ah4 = bh3; ah5 = bh4; ah6 = bh5; ah7 = bh6; ah0 = bh7; al1 = bl0; al2 = bl1; al3 = bl2; al4 = bl3; al5 = bl4; al6 = bl5; al7 = bl6; al0 = bl7; if (i%16 === 15) { for (j = 0; j < 16; j++) { // add h = wh[j]; l = wl[j]; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = wh[(j+9)%16]; l = wl[(j+9)%16]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // sigma0 th = wh[(j+1)%16]; tl = wl[(j+1)%16]; h = ((th >>> 1) | (tl << (32-1))) ^ ((th >>> 8) | (tl << (32-8))) ^ (th >>> 7); l = ((tl >>> 1) | (th << (32-1))) ^ ((tl >>> 8) | (th << (32-8))) ^ ((tl >>> 7) | (th << (32-7))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // sigma1 th = wh[(j+14)%16]; tl = wl[(j+14)%16]; h = ((th >>> 19) | (tl << (32-19))) ^ ((tl >>> (61-32)) | (th << (32-(61-32)))) ^ (th >>> 6); l = ((tl >>> 19) | (th << (32-19))) ^ ((th >>> (61-32)) | (tl << (32-(61-32)))) ^ ((tl >>> 6) | (th << (32-6))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; wh[j] = (c & 0xffff) | (d << 16); wl[j] = (a & 0xffff) | (b << 16); } } } // add h = ah0; l = al0; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[0]; l = hl[0]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[0] = ah0 = (c & 0xffff) | (d << 16); hl[0] = al0 = (a & 0xffff) | (b << 16); h = ah1; l = al1; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[1]; l = hl[1]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[1] = ah1 = (c & 0xffff) | (d << 16); hl[1] = al1 = (a & 0xffff) | (b << 16); h = ah2; l = al2; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[2]; l = hl[2]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[2] = ah2 = (c & 0xffff) | (d << 16); hl[2] = al2 = (a & 0xffff) | (b << 16); h = ah3; l = al3; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[3]; l = hl[3]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[3] = ah3 = (c & 0xffff) | (d << 16); hl[3] = al3 = (a & 0xffff) | (b << 16); h = ah4; l = al4; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[4]; l = hl[4]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[4] = ah4 = (c & 0xffff) | (d << 16); hl[4] = al4 = (a & 0xffff) | (b << 16); h = ah5; l = al5; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[5]; l = hl[5]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[5] = ah5 = (c & 0xffff) | (d << 16); hl[5] = al5 = (a & 0xffff) | (b << 16); h = ah6; l = al6; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[6]; l = hl[6]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[6] = ah6 = (c & 0xffff) | (d << 16); hl[6] = al6 = (a & 0xffff) | (b << 16); h = ah7; l = al7; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[7]; l = hl[7]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[7] = ah7 = (c & 0xffff) | (d << 16); hl[7] = al7 = (a & 0xffff) | (b << 16); pos += 128; n -= 128; } return n; } function crypto_hash(out, m, n) { var hh = new Int32Array(8), hl = new Int32Array(8), x = new Uint8Array(256), i, b = n; hh[0] = 0x6a09e667; hh[1] = 0xbb67ae85; hh[2] = 0x3c6ef372; hh[3] = 0xa54ff53a; hh[4] = 0x510e527f; hh[5] = 0x9b05688c; hh[6] = 0x1f83d9ab; hh[7] = 0x5be0cd19; hl[0] = 0xf3bcc908; hl[1] = 0x84caa73b; hl[2] = 0xfe94f82b; hl[3] = 0x5f1d36f1; hl[4] = 0xade682d1; hl[5] = 0x2b3e6c1f; hl[6] = 0xfb41bd6b; hl[7] = 0x137e2179; crypto_hashblocks_hl(hh, hl, m, n); n %= 128; for (i = 0; i < n; i++) x[i] = m[b-n+i]; x[n] = 128; n = 256-128*(n<112?1:0); x[n-9] = 0; ts64(x, n-8, (b / 0x20000000) | 0, b << 3); crypto_hashblocks_hl(hh, hl, x, n); for (i = 0; i < 8; i++) ts64(out, 8*i, hh[i], hl[i]); return 0; } function add(p, q) { var a = gf(), b = gf(), c = gf(), d = gf(), e = gf(), f = gf(), g = gf(), h = gf(), t = gf(); Z(a, p[1], p[0]); Z(t, q[1], q[0]); M(a, a, t); A(b, p[0], p[1]); A(t, q[0], q[1]); M(b, b, t); M(c, p[3], q[3]); M(c, c, D2); M(d, p[2], q[2]); A(d, d, d); Z(e, b, a); Z(f, d, c); A(g, d, c); A(h, b, a); M(p[0], e, f); M(p[1], h, g); M(p[2], g, f); M(p[3], e, h); } function cswap(p, q, b) { var i; for (i = 0; i < 4; i++) { sel25519(p[i], q[i], b); } } function pack(r, p) { var tx = gf(), ty = gf(), zi = gf(); inv25519(zi, p[2]); M(tx, p[0], zi); M(ty, p[1], zi); pack25519(r, ty); r[31] ^= par25519(tx) << 7; } function scalarmult(p, q, s) { var b, i; set25519(p[0], gf0); set25519(p[1], gf1); set25519(p[2], gf1); set25519(p[3], gf0); for (i = 255; i >= 0; --i) { b = (s[(i/8)|0] >> (i&7)) & 1; cswap(p, q, b); add(q, p); add(p, p); cswap(p, q, b); } } function scalarbase(p, s) { var q = [gf(), gf(), gf(), gf()]; set25519(q[0], X); set25519(q[1], Y); set25519(q[2], gf1); M(q[3], X, Y); scalarmult(p, q, s); } function crypto_sign_keypair(pk, sk, seeded) { var d = new Uint8Array(64); var p = [gf(), gf(), gf(), gf()]; var i; if (!seeded) randombytes(sk, 32); crypto_hash(d, sk, 32); d[0] &= 248; d[31] &= 127; d[31] |= 64; scalarbase(p, d); pack(pk, p); for (i = 0; i < 32; i++) sk[i+32] = pk[i]; return 0; } var L = new Float64Array([0xed, 0xd3, 0xf5, 0x5c, 0x1a, 0x63, 0x12, 0x58, 0xd6, 0x9c, 0xf7, 0xa2, 0xde, 0xf9, 0xde, 0x14, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0x10]); function modL(r, x) { var carry, i, j, k; for (i = 63; i >= 32; --i) { carry = 0; for (j = i - 32, k = i - 12; j < k; ++j) { x[j] += carry - 16 * x[i] * L[j - (i - 32)]; carry = (x[j] + 128) >> 8; x[j] -= carry * 256; } x[j] += carry; x[i] = 0; } carry = 0; for (j = 0; j < 32; j++) { x[j] += carry - (x[31] >> 4) * L[j]; carry = x[j] >> 8; x[j] &= 255; } for (j = 0; j < 32; j++) x[j] -= carry * L[j]; for (i = 0; i < 32; i++) { x[i+1] += x[i] >> 8; r[i] = x[i] & 255; } } function reduce(r) { var x = new Float64Array(64), i; for (i = 0; i < 64; i++) x[i] = r[i]; for (i = 0; i < 64; i++) r[i] = 0; modL(r, x); } // Note: difference from C - smlen returned, not passed as argument. function crypto_sign(sm, m, n, sk) { var d = new Uint8Array(64), h = new Uint8Array(64), r = new Uint8Array(64); var i, j, x = new Float64Array(64); var p = [gf(), gf(), gf(), gf()]; crypto_hash(d, sk, 32); d[0] &= 248; d[31] &= 127; d[31] |= 64; var smlen = n + 64; for (i = 0; i < n; i++) sm[64 + i] = m[i]; for (i = 0; i < 32; i++) sm[32 + i] = d[32 + i]; crypto_hash(r, sm.subarray(32), n+32); reduce(r); scalarbase(p, r); pack(sm, p); for (i = 32; i < 64; i++) sm[i] = sk[i]; crypto_hash(h, sm, n + 64); reduce(h); for (i = 0; i < 64; i++) x[i] = 0; for (i = 0; i < 32; i++) x[i] = r[i]; for (i = 0; i < 32; i++) { for (j = 0; j < 32; j++) { x[i+j] += h[i] * d[j]; } } modL(sm.subarray(32), x); return smlen; } function unpackneg(r, p) { var t = gf(), chk = gf(), num = gf(), den = gf(), den2 = gf(), den4 = gf(), den6 = gf(); set25519(r[2], gf1); unpack25519(r[1], p); S(num, r[1]); M(den, num, D); Z(num, num, r[2]); A(den, r[2], den); S(den2, den); S(den4, den2); M(den6, den4, den2); M(t, den6, num); M(t, t, den); pow2523(t, t); M(t, t, num); M(t, t, den); M(t, t, den); M(r[0], t, den); S(chk, r[0]); M(chk, chk, den); if (neq25519(chk, num)) M(r[0], r[0], I); S(chk, r[0]); M(chk, chk, den); if (neq25519(chk, num)) return -1; if (par25519(r[0]) === (p[31]>>7)) Z(r[0], gf0, r[0]); M(r[3], r[0], r[1]); return 0; } function crypto_sign_open(m, sm, n, pk) { var i, mlen; var t = new Uint8Array(32), h = new Uint8Array(64); var p = [gf(), gf(), gf(), gf()], q = [gf(), gf(), gf(), gf()]; mlen = -1; if (n < 64) return -1; if (unpackneg(q, pk)) return -1; for (i = 0; i < n; i++) m[i] = sm[i]; for (i = 0; i < 32; i++) m[i+32] = pk[i]; crypto_hash(h, m, n); reduce(h); scalarmult(p, q, h); scalarbase(q, sm.subarray(32)); add(p, q); pack(t, p); n -= 64; if (crypto_verify_32(sm, 0, t, 0)) { for (i = 0; i < n; i++) m[i] = 0; return -1; } for (i = 0; i < n; i++) m[i] = sm[i + 64]; mlen = n; return mlen; } var crypto_secretbox_KEYBYTES = 32, crypto_secretbox_NONCEBYTES = 24, crypto_secretbox_ZEROBYTES = 32, crypto_secretbox_BOXZEROBYTES = 16, crypto_scalarmult_BYTES = 32, crypto_scalarmult_SCALARBYTES = 32, crypto_box_PUBLICKEYBYTES = 32, crypto_box_SECRETKEYBYTES = 32, crypto_box_BEFORENMBYTES = 32, crypto_box_NONCEBYTES = crypto_secretbox_NONCEBYTES, crypto_box_ZEROBYTES = crypto_secretbox_ZEROBYTES, crypto_box_BOXZEROBYTES = crypto_secretbox_BOXZEROBYTES, crypto_sign_BYTES = 64, crypto_sign_PUBLICKEYBYTES = 32, crypto_sign_SECRETKEYBYTES = 64, crypto_sign_SEEDBYTES = 32, crypto_hash_BYTES = 64; nacl.lowlevel = { crypto_core_hsalsa20: crypto_core_hsalsa20, crypto_stream_xor: crypto_stream_xor, crypto_stream: crypto_stream, crypto_stream_salsa20_xor: crypto_stream_salsa20_xor, crypto_stream_salsa20: crypto_stream_salsa20, crypto_onetimeauth: crypto_onetimeauth, crypto_onetimeauth_verify: crypto_onetimeauth_verify, crypto_verify_16: crypto_verify_16, crypto_verify_32: crypto_verify_32, crypto_secretbox: crypto_secretbox, crypto_secretbox_open: crypto_secretbox_open, crypto_scalarmult: crypto_scalarmult, crypto_scalarmult_base: crypto_scalarmult_base, crypto_box_beforenm: crypto_box_beforenm, crypto_box_afternm: crypto_box_afternm, crypto_box: crypto_box, crypto_box_open: crypto_box_open, crypto_box_keypair: crypto_box_keypair, crypto_hash: crypto_hash, crypto_sign: crypto_sign, crypto_sign_keypair: crypto_sign_keypair, crypto_sign_open: crypto_sign_open, crypto_secretbox_KEYBYTES: crypto_secretbox_KEYBYTES, crypto_secretbox_NONCEBYTES: crypto_secretbox_NONCEBYTES, crypto_secretbox_ZEROBYTES: crypto_secretbox_ZEROBYTES, crypto_secretbox_BOXZEROBYTES: crypto_secretbox_BOXZEROBYTES, crypto_scalarmult_BYTES: crypto_scalarmult_BYTES, crypto_scalarmult_SCALARBYTES: crypto_scalarmult_SCALARBYTES, crypto_box_PUBLICKEYBYTES: crypto_box_PUBLICKEYBYTES, crypto_box_SECRETKEYBYTES: crypto_box_SECRETKEYBYTES, crypto_box_BEFORENMBYTES: crypto_box_BEFORENMBYTES, crypto_box_NONCEBYTES: crypto_box_NONCEBYTES, crypto_box_ZEROBYTES: crypto_box_ZEROBYTES, crypto_box_BOXZEROBYTES: crypto_box_BOXZEROBYTES, crypto_sign_BYTES: crypto_sign_BYTES, crypto_sign_PUBLICKEYBYTES: crypto_sign_PUBLICKEYBYTES, crypto_sign_SECRETKEYBYTES: crypto_sign_SECRETKEYBYTES, crypto_sign_SEEDBYTES: crypto_sign_SEEDBYTES, crypto_hash_BYTES: crypto_hash_BYTES }; /* High-level API */ function checkLengths(k, n) { if (k.length !== crypto_secretbox_KEYBYTES) throw new Error('bad key size'); if (n.length !== crypto_secretbox_NONCEBYTES) throw new Error('bad nonce size'); } function checkBoxLengths(pk, sk) { if (pk.length !== crypto_box_PUBLICKEYBYTES) throw new Error('bad public key size'); if (sk.length !== crypto_box_SECRETKEYBYTES) throw new Error('bad secret key size'); } function checkArrayTypes() { var t, i; for (i = 0; i < arguments.length; i++) { if ((t = Object.prototype.toString.call(arguments[i])) !== '[object Uint8Array]') throw new TypeError('unexpected type ' + t + ', use Uint8Array'); } } function cleanup(arr) { for (var i = 0; i < arr.length; i++) arr[i] = 0; } // TODO: Completely remove this in v0.15. if (!nacl.util) { nacl.util = {}; nacl.util.decodeUTF8 = nacl.util.encodeUTF8 = nacl.util.encodeBase64 = nacl.util.decodeBase64 = function() { throw new Error('nacl.util moved into separate package: https://github.com/dchest/tweetnacl-util-js'); }; } nacl.randomBytes = function(n) { var b = new Uint8Array(n); randombytes(b, n); return b; }; nacl.secretbox = function(msg, nonce, key) { checkArrayTypes(msg, nonce, key); checkLengths(key, nonce); var m = new Uint8Array(crypto_secretbox_ZEROBYTES + msg.length); var c = new Uint8Array(m.length); for (var i = 0; i < msg.length; i++) m[i+crypto_secretbox_ZEROBYTES] = msg[i]; crypto_secretbox(c, m, m.length, nonce, key); return c.subarray(crypto_secretbox_BOXZEROBYTES); }; nacl.secretbox.open = function(box, nonce, key) { checkArrayTypes(box, nonce, key); checkLengths(key, nonce); var c = new Uint8Array(crypto_secretbox_BOXZEROBYTES + box.length); var m = new Uint8Array(c.length); for (var i = 0; i < box.length; i++) c[i+crypto_secretbox_BOXZEROBYTES] = box[i]; if (c.length < 32) return false; if (crypto_secretbox_open(m, c, c.length, nonce, key) !== 0) return false; return m.subarray(crypto_secretbox_ZEROBYTES); }; nacl.secretbox.keyLength = crypto_secretbox_KEYBYTES; nacl.secretbox.nonceLength = crypto_secretbox_NONCEBYTES; nacl.secretbox.overheadLength = crypto_secretbox_BOXZEROBYTES; nacl.scalarMult = function(n, p) { checkArrayTypes(n, p); if (n.length !== crypto_scalarmult_SCALARBYTES) throw new Error('bad n size'); if (p.length !== crypto_scalarmult_BYTES) throw new Error('bad p size'); var q = new Uint8Array(crypto_scalarmult_BYTES); crypto_scalarmult(q, n, p); return q; }; nacl.scalarMult.base = function(n) { checkArrayTypes(n); if (n.length !== crypto_scalarmult_SCALARBYTES) throw new Error('bad n size'); var q = new Uint8Array(crypto_scalarmult_BYTES); crypto_scalarmult_base(q, n); return q; }; nacl.scalarMult.scalarLength = crypto_scalarmult_SCALARBYTES; nacl.scalarMult.groupElementLength = crypto_scalarmult_BYTES; nacl.box = function(msg, nonce, publicKey, secretKey) { var k = nacl.box.before(publicKey, secretKey); return nacl.secretbox(msg, nonce, k); }; nacl.box.before = function(publicKey, secretKey) { checkArrayTypes(publicKey, secretKey); checkBoxLengths(publicKey, secretKey); var k = new Uint8Array(crypto_box_BEFORENMBYTES); crypto_box_beforenm(k, publicKey, secretKey); return k; }; nacl.box.after = nacl.secretbox; nacl.box.open = function(msg, nonce, publicKey, secretKey) { var k = nacl.box.before(publicKey, secretKey); return nacl.secretbox.open(msg, nonce, k); }; nacl.box.open.after = nacl.secretbox.open; nacl.box.keyPair = function() { var pk = new Uint8Array(crypto_box_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_box_SECRETKEYBYTES); crypto_box_keypair(pk, sk); return {publicKey: pk, secretKey: sk}; }; nacl.box.keyPair.fromSecretKey = function(secretKey) { checkArrayTypes(secretKey); if (secretKey.length !== crypto_box_SECRETKEYBYTES) throw new Error('bad secret key size'); var pk = new Uint8Array(crypto_box_PUBLICKEYBYTES); crypto_scalarmult_base(pk, secretKey); return {publicKey: pk, secretKey: new Uint8Array(secretKey)}; }; nacl.box.publicKeyLength = crypto_box_PUBLICKEYBYTES; nacl.box.secretKeyLength = crypto_box_SECRETKEYBYTES; nacl.box.sharedKeyLength = crypto_box_BEFORENMBYTES; nacl.box.nonceLength = crypto_box_NONCEBYTES; nacl.box.overheadLength = nacl.secretbox.overheadLength; nacl.sign = function(msg, secretKey) { checkArrayTypes(msg, secretKey); if (secretKey.length !== crypto_sign_SECRETKEYBYTES) throw new Error('bad secret key size'); var signedMsg = new Uint8Array(crypto_sign_BYTES+msg.length); crypto_sign(signedMsg, msg, msg.length, secretKey); return signedMsg; }; nacl.sign.open = function(signedMsg, publicKey) { if (arguments.length !== 2) throw new Error('nacl.sign.open accepts 2 arguments; did you mean to use nacl.sign.detached.verify?'); checkArrayTypes(signedMsg, publicKey); if (publicKey.length !== crypto_sign_PUBLICKEYBYTES) throw new Error('bad public key size'); var tmp = new Uint8Array(signedMsg.length); var mlen = crypto_sign_open(tmp, signedMsg, signedMsg.length, publicKey); if (mlen < 0) return null; var m = new Uint8Array(mlen); for (var i = 0; i < m.length; i++) m[i] = tmp[i]; return m; }; nacl.sign.detached = function(msg, secretKey) { var signedMsg = nacl.sign(msg, secretKey); var sig = new Uint8Array(crypto_sign_BYTES); for (var i = 0; i < sig.length; i++) sig[i] = signedMsg[i]; return sig; }; nacl.sign.detached.verify = function(msg, sig, publicKey) { checkArrayTypes(msg, sig, publicKey); if (sig.length !== crypto_sign_BYTES) throw new Error('bad signature size'); if (publicKey.length !== crypto_sign_PUBLICKEYBYTES) throw new Error('bad public key size'); var sm = new Uint8Array(crypto_sign_BYTES + msg.length); var m = new Uint8Array(crypto_sign_BYTES + msg.length); var i; for (i = 0; i < crypto_sign_BYTES; i++) sm[i] = sig[i]; for (i = 0; i < msg.length; i++) sm[i+crypto_sign_BYTES] = msg[i]; return (crypto_sign_open(m, sm, sm.length, publicKey) >= 0); }; nacl.sign.keyPair = function() { var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_sign_SECRETKEYBYTES); crypto_sign_keypair(pk, sk); return {publicKey: pk, secretKey: sk}; }; nacl.sign.keyPair.fromSecretKey = function(secretKey) { checkArrayTypes(secretKey); if (secretKey.length !== crypto_sign_SECRETKEYBYTES) throw new Error('bad secret key size'); var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); for (var i = 0; i < pk.length; i++) pk[i] = secretKey[32+i]; return {publicKey: pk, secretKey: new Uint8Array(secretKey)}; }; nacl.sign.keyPair.fromSeed = function(seed) { checkArrayTypes(seed); if (seed.length !== crypto_sign_SEEDBYTES) throw new Error('bad seed size'); var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_sign_SECRETKEYBYTES); for (var i = 0; i < 32; i++) sk[i] = seed[i]; crypto_sign_keypair(pk, sk, true); return {publicKey: pk, secretKey: sk}; }; nacl.sign.publicKeyLength = crypto_sign_PUBLICKEYBYTES; nacl.sign.secretKeyLength = crypto_sign_SECRETKEYBYTES; nacl.sign.seedLength = crypto_sign_SEEDBYTES; nacl.sign.signatureLength = crypto_sign_BYTES; nacl.hash = function(msg) { checkArrayTypes(msg); var h = new Uint8Array(crypto_hash_BYTES); crypto_hash(h, msg, msg.length); return h; }; nacl.hash.hashLength = crypto_hash_BYTES; nacl.verify = function(x, y) { checkArrayTypes(x, y); // Zero length arguments are considered not equal. if (x.length === 0 || y.length === 0) return false; if (x.length !== y.length) return false; return (vn(x, 0, y, 0, x.length) === 0) ? true : false; }; nacl.setPRNG = function(fn) { randombytes = fn; }; (function() { // Initialize PRNG if environment provides CSPRNG. // If not, methods calling randombytes will throw. var crypto = typeof self !== 'undefined' ? (self.crypto || self.msCrypto) : null; if (crypto && crypto.getRandomValues) { // Browsers. var QUOTA = 65536; nacl.setPRNG(function(x, n) { var i, v = new Uint8Array(n); for (i = 0; i < n; i += QUOTA) { crypto.getRandomValues(v.subarray(i, i + Math.min(n - i, QUOTA))); } for (i = 0; i < n; i++) x[i] = v[i]; cleanup(v); }); } else if (typeof require !== 'undefined') { // Node.js. crypto = require('crypto'); if (crypto && crypto.randomBytes) { nacl.setPRNG(function(x, n) { var i, v = crypto.randomBytes(n); for (i = 0; i < n; i++) x[i] = v[i]; cleanup(v); }); } } })(); })(typeof module !== 'undefined' && module.exports ? module.exports : (self.nacl = self.nacl || {})); },{"crypto":20}],178:[function(require,module,exports){ (function (Buffer){ var DuplexStream = require('readable-stream/duplex') , util = require('util') function BufferList (callback) { if (!(this instanceof BufferList)) return new BufferList(callback) this._bufs = [] this.length = 0 if (typeof callback == 'function') { this._callback = callback var piper = function piper (err) { if (this._callback) { this._callback(err) this._callback = null } }.bind(this) this.on('pipe', function onPipe (src) { src.on('error', piper) }) this.on('unpipe', function onUnpipe (src) { src.removeListener('error', piper) }) } else { this.append(callback) } DuplexStream.call(this) } util.inherits(BufferList, DuplexStream) BufferList.prototype._offset = function _offset (offset) { var tot = 0, i = 0, _t for (; i < this._bufs.length; i++) { _t = tot + this._bufs[i].length if (offset < _t) return [ i, offset - tot ] tot = _t } } BufferList.prototype.append = function append (buf) { var i = 0 , newBuf if (Array.isArray(buf)) { for (; i < buf.length; i++) this.append(buf[i]) } else if (buf instanceof BufferList) { // unwrap argument into individual BufferLists for (; i < buf._bufs.length; i++) this.append(buf._bufs[i]) } else if (buf != null) { // coerce number arguments to strings, since Buffer(number) does // uninitialized memory allocation if (typeof buf == 'number') buf = buf.toString() newBuf = Buffer.isBuffer(buf) ? buf : new Buffer(buf) this._bufs.push(newBuf) this.length += newBuf.length } return this } BufferList.prototype._write = function _write (buf, encoding, callback) { this.append(buf) if (typeof callback == 'function') callback() } BufferList.prototype._read = function _read (size) { if (!this.length) return this.push(null) size = Math.min(size, this.length) this.push(this.slice(0, size)) this.consume(size) } BufferList.prototype.end = function end (chunk) { DuplexStream.prototype.end.call(this, chunk) if (this._callback) { this._callback(null, this.slice()) this._callback = null } } BufferList.prototype.get = function get (index) { return this.slice(index, index + 1)[0] } BufferList.prototype.slice = function slice (start, end) { return this.copy(null, 0, start, end) } BufferList.prototype.copy = function copy (dst, dstStart, srcStart, srcEnd) { if (typeof srcStart != 'number' || srcStart < 0) srcStart = 0 if (typeof srcEnd != 'number' || srcEnd > this.length) srcEnd = this.length if (srcStart >= this.length) return dst || new Buffer(0) if (srcEnd <= 0) return dst || new Buffer(0) var copy = !!dst , off = this._offset(srcStart) , len = srcEnd - srcStart , bytes = len , bufoff = (copy && dstStart) || 0 , start = off[1] , l , i // copy/slice everything if (srcStart === 0 && srcEnd == this.length) { if (!copy) // slice, just return a full concat return Buffer.concat(this._bufs) // copy, need to copy individual buffers for (i = 0; i < this._bufs.length; i++) { this._bufs[i].copy(dst, bufoff) bufoff += this._bufs[i].length } return dst } // easy, cheap case where it's a subset of one of the buffers if (bytes <= this._bufs[off[0]].length - start) { return copy ? this._bufs[off[0]].copy(dst, dstStart, start, start + bytes) : this._bufs[off[0]].slice(start, start + bytes) } if (!copy) // a slice, we need something to copy in to dst = new Buffer(len) for (i = off[0]; i < this._bufs.length; i++) { l = this._bufs[i].length - start if (bytes > l) { this._bufs[i].copy(dst, bufoff, start) } else { this._bufs[i].copy(dst, bufoff, start, start + bytes) break } bufoff += l bytes -= l if (start) start = 0 } return dst } BufferList.prototype.toString = function toString (encoding, start, end) { return this.slice(start, end).toString(encoding) } BufferList.prototype.consume = function consume (bytes) { while (this._bufs.length) { if (bytes >= this._bufs[0].length) { bytes -= this._bufs[0].length this.length -= this._bufs[0].length this._bufs.shift() } else { this._bufs[0] = this._bufs[0].slice(bytes) this.length -= bytes break } } return this } BufferList.prototype.duplicate = function duplicate () { var i = 0 , copy = new BufferList() for (; i < this._bufs.length; i++) copy.append(this._bufs[i]) return copy } BufferList.prototype.destroy = function destroy () { this._bufs.length = 0 this.length = 0 this.push(null) } ;(function () { var methods = { 'readDoubleBE' : 8 , 'readDoubleLE' : 8 , 'readFloatBE' : 4 , 'readFloatLE' : 4 , 'readInt32BE' : 4 , 'readInt32LE' : 4 , 'readUInt32BE' : 4 , 'readUInt32LE' : 4 , 'readInt16BE' : 2 , 'readInt16LE' : 2 , 'readUInt16BE' : 2 , 'readUInt16LE' : 2 , 'readInt8' : 1 , 'readUInt8' : 1 } for (var m in methods) { (function (m) { BufferList.prototype[m] = function (offset) { return this.slice(offset, offset + methods[m])[m](0) } }(m)) } }()) module.exports = BufferList }).call(this,require("buffer").Buffer) },{"buffer":49,"readable-stream/duplex":251,"util":163}],179:[function(require,module,exports){ (function (process,global){ /* @preserve * The MIT License (MIT) * * Copyright (c) 2013-2015 Petka Antonov * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal * in the Software without restriction, including without limitation the rights * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell * copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in * all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN * THE SOFTWARE. * */ /** * bluebird build version 3.4.6 * Features enabled: core, race, call_get, generators, map, nodeify, promisify, props, reduce, settle, some, using, timers, filter, any, each */ !function(e){if("object"==typeof exports&&"undefined"!=typeof module)module.exports=e();else if("function"==typeof define&&define.amd)define([],e);else{var f;"undefined"!=typeof window?f=window:"undefined"!=typeof global?f=global:"undefined"!=typeof self&&(f=self),f.Promise=e()}}(function(){var define,module,exports;return (function e(t,n,r){function s(o,u){if(!n[o]){if(!t[o]){var a=typeof _dereq_=="function"&&_dereq_;if(!u&&a)return a(o,!0);if(i)return i(o,!0);var f=new Error("Cannot find module '"+o+"'");throw f.code="MODULE_NOT_FOUND",f}var l=n[o]={exports:{}};t[o][0].call(l.exports,function(e){var n=t[o][1][e];return s(n?n:e)},l,l.exports,e,t,n,r)}return n[o].exports}var i=typeof _dereq_=="function"&&_dereq_;for(var o=0;o 0) { var fn = queue.shift(); if (typeof fn !== "function") { fn._settlePromises(); continue; } var receiver = queue.shift(); var arg = queue.shift(); fn.call(receiver, arg); } }; Async.prototype._drainQueues = function () { this._drainQueue(this._normalQueue); this._reset(); this._haveDrainedQueues = true; this._drainQueue(this._lateQueue); }; Async.prototype._queueTick = function () { if (!this._isTickUsed) { this._isTickUsed = true; this._schedule(this.drainQueues); } }; Async.prototype._reset = function () { this._isTickUsed = false; }; module.exports = Async; module.exports.firstLineError = firstLineError; },{"./queue":26,"./schedule":29,"./util":36}],3:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL, tryConvertToPromise, debug) { var calledBind = false; var rejectThis = function(_, e) { this._reject(e); }; var targetRejected = function(e, context) { context.promiseRejectionQueued = true; context.bindingPromise._then(rejectThis, rejectThis, null, this, e); }; var bindingResolved = function(thisArg, context) { if (((this._bitField & 50397184) === 0)) { this._resolveCallback(context.target); } }; var bindingRejected = function(e, context) { if (!context.promiseRejectionQueued) this._reject(e); }; Promise.prototype.bind = function (thisArg) { if (!calledBind) { calledBind = true; Promise.prototype._propagateFrom = debug.propagateFromFunction(); Promise.prototype._boundValue = debug.boundValueFunction(); } var maybePromise = tryConvertToPromise(thisArg); var ret = new Promise(INTERNAL); ret._propagateFrom(this, 1); var target = this._target(); ret._setBoundTo(maybePromise); if (maybePromise instanceof Promise) { var context = { promiseRejectionQueued: false, promise: ret, target: target, bindingPromise: maybePromise }; target._then(INTERNAL, targetRejected, undefined, ret, context); maybePromise._then( bindingResolved, bindingRejected, undefined, ret, context); ret._setOnCancel(maybePromise); } else { ret._resolveCallback(target); } return ret; }; Promise.prototype._setBoundTo = function (obj) { if (obj !== undefined) { this._bitField = this._bitField | 2097152; this._boundTo = obj; } else { this._bitField = this._bitField & (~2097152); } }; Promise.prototype._isBound = function () { return (this._bitField & 2097152) === 2097152; }; Promise.bind = function (thisArg, value) { return Promise.resolve(value).bind(thisArg); }; }; },{}],4:[function(_dereq_,module,exports){ "use strict"; var old; if (typeof Promise !== "undefined") old = Promise; function noConflict() { try { if (Promise === bluebird) Promise = old; } catch (e) {} return bluebird; } var bluebird = _dereq_("./promise")(); bluebird.noConflict = noConflict; module.exports = bluebird; },{"./promise":22}],5:[function(_dereq_,module,exports){ "use strict"; var cr = Object.create; if (cr) { var callerCache = cr(null); var getterCache = cr(null); callerCache[" size"] = getterCache[" size"] = 0; } module.exports = function(Promise) { var util = _dereq_("./util"); var canEvaluate = util.canEvaluate; var isIdentifier = util.isIdentifier; var getMethodCaller; var getGetter; if (!true) { var makeMethodCaller = function (methodName) { return new Function("ensureMethod", " \n\ return function(obj) { \n\ 'use strict' \n\ var len = this.length; \n\ ensureMethod(obj, 'methodName'); \n\ switch(len) { \n\ case 1: return obj.methodName(this[0]); \n\ case 2: return obj.methodName(this[0], this[1]); \n\ case 3: return obj.methodName(this[0], this[1], this[2]); \n\ case 0: return obj.methodName(); \n\ default: \n\ return obj.methodName.apply(obj, this); \n\ } \n\ }; \n\ ".replace(/methodName/g, methodName))(ensureMethod); }; var makeGetter = function (propertyName) { return new Function("obj", " \n\ 'use strict'; \n\ return obj.propertyName; \n\ ".replace("propertyName", propertyName)); }; var getCompiled = function(name, compiler, cache) { var ret = cache[name]; if (typeof ret !== "function") { if (!isIdentifier(name)) { return null; } ret = compiler(name); cache[name] = ret; cache[" size"]++; if (cache[" size"] > 512) { var keys = Object.keys(cache); for (var i = 0; i < 256; ++i) delete cache[keys[i]]; cache[" size"] = keys.length - 256; } } return ret; }; getMethodCaller = function(name) { return getCompiled(name, makeMethodCaller, callerCache); }; getGetter = function(name) { return getCompiled(name, makeGetter, getterCache); }; } function ensureMethod(obj, methodName) { var fn; if (obj != null) fn = obj[methodName]; if (typeof fn !== "function") { var message = "Object " + util.classString(obj) + " has no method '" + util.toString(methodName) + "'"; throw new Promise.TypeError(message); } return fn; } function caller(obj) { var methodName = this.pop(); var fn = ensureMethod(obj, methodName); return fn.apply(obj, this); } Promise.prototype.call = function (methodName) { var args = [].slice.call(arguments, 1);; if (!true) { if (canEvaluate) { var maybeCaller = getMethodCaller(methodName); if (maybeCaller !== null) { return this._then( maybeCaller, undefined, undefined, args, undefined); } } } args.push(methodName); return this._then(caller, undefined, undefined, args, undefined); }; function namedGetter(obj) { return obj[this]; } function indexedGetter(obj) { var index = +this; if (index < 0) index = Math.max(0, index + obj.length); return obj[index]; } Promise.prototype.get = function (propertyName) { var isIndex = (typeof propertyName === "number"); var getter; if (!isIndex) { if (canEvaluate) { var maybeGetter = getGetter(propertyName); getter = maybeGetter !== null ? maybeGetter : namedGetter; } else { getter = namedGetter; } } else { getter = indexedGetter; } return this._then(getter, undefined, undefined, propertyName, undefined); }; }; },{"./util":36}],6:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, apiRejection, debug) { var util = _dereq_("./util"); var tryCatch = util.tryCatch; var errorObj = util.errorObj; var async = Promise._async; Promise.prototype["break"] = Promise.prototype.cancel = function() { if (!debug.cancellation()) return this._warn("cancellation is disabled"); var promise = this; var child = promise; while (promise._isCancellable()) { if (!promise._cancelBy(child)) { if (child._isFollowing()) { child._followee().cancel(); } else { child._cancelBranched(); } break; } var parent = promise._cancellationParent; if (parent == null || !parent._isCancellable()) { if (promise._isFollowing()) { promise._followee().cancel(); } else { promise._cancelBranched(); } break; } else { if (promise._isFollowing()) promise._followee().cancel(); promise._setWillBeCancelled(); child = promise; promise = parent; } } }; Promise.prototype._branchHasCancelled = function() { this._branchesRemainingToCancel--; }; Promise.prototype._enoughBranchesHaveCancelled = function() { return this._branchesRemainingToCancel === undefined || this._branchesRemainingToCancel <= 0; }; Promise.prototype._cancelBy = function(canceller) { if (canceller === this) { this._branchesRemainingToCancel = 0; this._invokeOnCancel(); return true; } else { this._branchHasCancelled(); if (this._enoughBranchesHaveCancelled()) { this._invokeOnCancel(); return true; } } return false; }; Promise.prototype._cancelBranched = function() { if (this._enoughBranchesHaveCancelled()) { this._cancel(); } }; Promise.prototype._cancel = function() { if (!this._isCancellable()) return; this._setCancelled(); async.invoke(this._cancelPromises, this, undefined); }; Promise.prototype._cancelPromises = function() { if (this._length() > 0) this._settlePromises(); }; Promise.prototype._unsetOnCancel = function() { this._onCancelField = undefined; }; Promise.prototype._isCancellable = function() { return this.isPending() && !this._isCancelled(); }; Promise.prototype.isCancellable = function() { return this.isPending() && !this.isCancelled(); }; Promise.prototype._doInvokeOnCancel = function(onCancelCallback, internalOnly) { if (util.isArray(onCancelCallback)) { for (var i = 0; i < onCancelCallback.length; ++i) { this._doInvokeOnCancel(onCancelCallback[i], internalOnly); } } else if (onCancelCallback !== undefined) { if (typeof onCancelCallback === "function") { if (!internalOnly) { var e = tryCatch(onCancelCallback).call(this._boundValue()); if (e === errorObj) { this._attachExtraTrace(e.e); async.throwLater(e.e); } } } else { onCancelCallback._resultCancelled(this); } } }; Promise.prototype._invokeOnCancel = function() { var onCancelCallback = this._onCancel(); this._unsetOnCancel(); async.invoke(this._doInvokeOnCancel, this, onCancelCallback); }; Promise.prototype._invokeInternalOnCancel = function() { if (this._isCancellable()) { this._doInvokeOnCancel(this._onCancel(), true); this._unsetOnCancel(); } }; Promise.prototype._resultCancelled = function() { this.cancel(); }; }; },{"./util":36}],7:[function(_dereq_,module,exports){ "use strict"; module.exports = function(NEXT_FILTER) { var util = _dereq_("./util"); var getKeys = _dereq_("./es5").keys; var tryCatch = util.tryCatch; var errorObj = util.errorObj; function catchFilter(instances, cb, promise) { return function(e) { var boundTo = promise._boundValue(); predicateLoop: for (var i = 0; i < instances.length; ++i) { var item = instances[i]; if (item === Error || (item != null && item.prototype instanceof Error)) { if (e instanceof item) { return tryCatch(cb).call(boundTo, e); } } else if (typeof item === "function") { var matchesPredicate = tryCatch(item).call(boundTo, e); if (matchesPredicate === errorObj) { return matchesPredicate; } else if (matchesPredicate) { return tryCatch(cb).call(boundTo, e); } } else if (util.isObject(e)) { var keys = getKeys(item); for (var j = 0; j < keys.length; ++j) { var key = keys[j]; if (item[key] != e[key]) { continue predicateLoop; } } return tryCatch(cb).call(boundTo, e); } } return NEXT_FILTER; }; } return catchFilter; }; },{"./es5":13,"./util":36}],8:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise) { var longStackTraces = false; var contextStack = []; Promise.prototype._promiseCreated = function() {}; Promise.prototype._pushContext = function() {}; Promise.prototype._popContext = function() {return null;}; Promise._peekContext = Promise.prototype._peekContext = function() {}; function Context() { this._trace = new Context.CapturedTrace(peekContext()); } Context.prototype._pushContext = function () { if (this._trace !== undefined) { this._trace._promiseCreated = null; contextStack.push(this._trace); } }; Context.prototype._popContext = function () { if (this._trace !== undefined) { var trace = contextStack.pop(); var ret = trace._promiseCreated; trace._promiseCreated = null; return ret; } return null; }; function createContext() { if (longStackTraces) return new Context(); } function peekContext() { var lastIndex = contextStack.length - 1; if (lastIndex >= 0) { return contextStack[lastIndex]; } return undefined; } Context.CapturedTrace = null; Context.create = createContext; Context.deactivateLongStackTraces = function() {}; Context.activateLongStackTraces = function() { var Promise_pushContext = Promise.prototype._pushContext; var Promise_popContext = Promise.prototype._popContext; var Promise_PeekContext = Promise._peekContext; var Promise_peekContext = Promise.prototype._peekContext; var Promise_promiseCreated = Promise.prototype._promiseCreated; Context.deactivateLongStackTraces = function() { Promise.prototype._pushContext = Promise_pushContext; Promise.prototype._popContext = Promise_popContext; Promise._peekContext = Promise_PeekContext; Promise.prototype._peekContext = Promise_peekContext; Promise.prototype._promiseCreated = Promise_promiseCreated; longStackTraces = false; }; longStackTraces = true; Promise.prototype._pushContext = Context.prototype._pushContext; Promise.prototype._popContext = Context.prototype._popContext; Promise._peekContext = Promise.prototype._peekContext = peekContext; Promise.prototype._promiseCreated = function() { var ctx = this._peekContext(); if (ctx && ctx._promiseCreated == null) ctx._promiseCreated = this; }; }; return Context; }; },{}],9:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, Context) { var getDomain = Promise._getDomain; var async = Promise._async; var Warning = _dereq_("./errors").Warning; var util = _dereq_("./util"); var canAttachTrace = util.canAttachTrace; var unhandledRejectionHandled; var possiblyUnhandledRejection; var bluebirdFramePattern = /[\\\/]bluebird[\\\/]js[\\\/](release|debug|instrumented)/; var nodeFramePattern = /\((?:timers\.js):\d+:\d+\)/; var parseLinePattern = /[\/<\(](.+?):(\d+):(\d+)\)?\s*$/; var stackFramePattern = null; var formatStack = null; var indentStackFrames = false; var printWarning; var debugging = !!(util.env("BLUEBIRD_DEBUG") != 0 && (true || util.env("BLUEBIRD_DEBUG") || util.env("NODE_ENV") === "development")); var warnings = !!(util.env("BLUEBIRD_WARNINGS") != 0 && (debugging || util.env("BLUEBIRD_WARNINGS"))); var longStackTraces = !!(util.env("BLUEBIRD_LONG_STACK_TRACES") != 0 && (debugging || util.env("BLUEBIRD_LONG_STACK_TRACES"))); var wForgottenReturn = util.env("BLUEBIRD_W_FORGOTTEN_RETURN") != 0 && (warnings || !!util.env("BLUEBIRD_W_FORGOTTEN_RETURN")); Promise.prototype.suppressUnhandledRejections = function() { var target = this._target(); target._bitField = ((target._bitField & (~1048576)) | 524288); }; Promise.prototype._ensurePossibleRejectionHandled = function () { if ((this._bitField & 524288) !== 0) return; this._setRejectionIsUnhandled(); async.invokeLater(this._notifyUnhandledRejection, this, undefined); }; Promise.prototype._notifyUnhandledRejectionIsHandled = function () { fireRejectionEvent("rejectionHandled", unhandledRejectionHandled, undefined, this); }; Promise.prototype._setReturnedNonUndefined = function() { this._bitField = this._bitField | 268435456; }; Promise.prototype._returnedNonUndefined = function() { return (this._bitField & 268435456) !== 0; }; Promise.prototype._notifyUnhandledRejection = function () { if (this._isRejectionUnhandled()) { var reason = this._settledValue(); this._setUnhandledRejectionIsNotified(); fireRejectionEvent("unhandledRejection", possiblyUnhandledRejection, reason, this); } }; Promise.prototype._setUnhandledRejectionIsNotified = function () { this._bitField = this._bitField | 262144; }; Promise.prototype._unsetUnhandledRejectionIsNotified = function () { this._bitField = this._bitField & (~262144); }; Promise.prototype._isUnhandledRejectionNotified = function () { return (this._bitField & 262144) > 0; }; Promise.prototype._setRejectionIsUnhandled = function () { this._bitField = this._bitField | 1048576; }; Promise.prototype._unsetRejectionIsUnhandled = function () { this._bitField = this._bitField & (~1048576); if (this._isUnhandledRejectionNotified()) { this._unsetUnhandledRejectionIsNotified(); this._notifyUnhandledRejectionIsHandled(); } }; Promise.prototype._isRejectionUnhandled = function () { return (this._bitField & 1048576) > 0; }; Promise.prototype._warn = function(message, shouldUseOwnTrace, promise) { return warn(message, shouldUseOwnTrace, promise || this); }; Promise.onPossiblyUnhandledRejection = function (fn) { var domain = getDomain(); possiblyUnhandledRejection = typeof fn === "function" ? (domain === null ? fn : util.domainBind(domain, fn)) : undefined; }; Promise.onUnhandledRejectionHandled = function (fn) { var domain = getDomain(); unhandledRejectionHandled = typeof fn === "function" ? (domain === null ? fn : util.domainBind(domain, fn)) : undefined; }; var disableLongStackTraces = function() {}; Promise.longStackTraces = function () { if (async.haveItemsQueued() && !config.longStackTraces) { throw new Error("cannot enable long stack traces after promises have been created\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } if (!config.longStackTraces && longStackTracesIsSupported()) { var Promise_captureStackTrace = Promise.prototype._captureStackTrace; var Promise_attachExtraTrace = Promise.prototype._attachExtraTrace; config.longStackTraces = true; disableLongStackTraces = function() { if (async.haveItemsQueued() && !config.longStackTraces) { throw new Error("cannot enable long stack traces after promises have been created\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } Promise.prototype._captureStackTrace = Promise_captureStackTrace; Promise.prototype._attachExtraTrace = Promise_attachExtraTrace; Context.deactivateLongStackTraces(); async.enableTrampoline(); config.longStackTraces = false; }; Promise.prototype._captureStackTrace = longStackTracesCaptureStackTrace; Promise.prototype._attachExtraTrace = longStackTracesAttachExtraTrace; Context.activateLongStackTraces(); async.disableTrampolineIfNecessary(); } }; Promise.hasLongStackTraces = function () { return config.longStackTraces && longStackTracesIsSupported(); }; var fireDomEvent = (function() { try { if (typeof CustomEvent === "function") { var event = new CustomEvent("CustomEvent"); util.global.dispatchEvent(event); return function(name, event) { var domEvent = new CustomEvent(name.toLowerCase(), { detail: event, cancelable: true }); return !util.global.dispatchEvent(domEvent); }; } else if (typeof Event === "function") { var event = new Event("CustomEvent"); util.global.dispatchEvent(event); return function(name, event) { var domEvent = new Event(name.toLowerCase(), { cancelable: true }); domEvent.detail = event; return !util.global.dispatchEvent(domEvent); }; } else { var event = document.createEvent("CustomEvent"); event.initCustomEvent("testingtheevent", false, true, {}); util.global.dispatchEvent(event); return function(name, event) { var domEvent = document.createEvent("CustomEvent"); domEvent.initCustomEvent(name.toLowerCase(), false, true, event); return !util.global.dispatchEvent(domEvent); }; } } catch (e) {} return function() { return false; }; })(); var fireGlobalEvent = (function() { if (util.isNode) { return function() { return process.emit.apply(process, arguments); }; } else { if (!util.global) { return function() { return false; }; } return function(name) { var methodName = "on" + name.toLowerCase(); var method = util.global[methodName]; if (!method) return false; method.apply(util.global, [].slice.call(arguments, 1)); return true; }; } })(); function generatePromiseLifecycleEventObject(name, promise) { return {promise: promise}; } var eventToObjectGenerator = { promiseCreated: generatePromiseLifecycleEventObject, promiseFulfilled: generatePromiseLifecycleEventObject, promiseRejected: generatePromiseLifecycleEventObject, promiseResolved: generatePromiseLifecycleEventObject, promiseCancelled: generatePromiseLifecycleEventObject, promiseChained: function(name, promise, child) { return {promise: promise, child: child}; }, warning: function(name, warning) { return {warning: warning}; }, unhandledRejection: function (name, reason, promise) { return {reason: reason, promise: promise}; }, rejectionHandled: generatePromiseLifecycleEventObject }; var activeFireEvent = function (name) { var globalEventFired = false; try { globalEventFired = fireGlobalEvent.apply(null, arguments); } catch (e) { async.throwLater(e); globalEventFired = true; } var domEventFired = false; try { domEventFired = fireDomEvent(name, eventToObjectGenerator[name].apply(null, arguments)); } catch (e) { async.throwLater(e); domEventFired = true; } return domEventFired || globalEventFired; }; Promise.config = function(opts) { opts = Object(opts); if ("longStackTraces" in opts) { if (opts.longStackTraces) { Promise.longStackTraces(); } else if (!opts.longStackTraces && Promise.hasLongStackTraces()) { disableLongStackTraces(); } } if ("warnings" in opts) { var warningsOption = opts.warnings; config.warnings = !!warningsOption; wForgottenReturn = config.warnings; if (util.isObject(warningsOption)) { if ("wForgottenReturn" in warningsOption) { wForgottenReturn = !!warningsOption.wForgottenReturn; } } } if ("cancellation" in opts && opts.cancellation && !config.cancellation) { if (async.haveItemsQueued()) { throw new Error( "cannot enable cancellation after promises are in use"); } Promise.prototype._clearCancellationData = cancellationClearCancellationData; Promise.prototype._propagateFrom = cancellationPropagateFrom; Promise.prototype._onCancel = cancellationOnCancel; Promise.prototype._setOnCancel = cancellationSetOnCancel; Promise.prototype._attachCancellationCallback = cancellationAttachCancellationCallback; Promise.prototype._execute = cancellationExecute; propagateFromFunction = cancellationPropagateFrom; config.cancellation = true; } if ("monitoring" in opts) { if (opts.monitoring && !config.monitoring) { config.monitoring = true; Promise.prototype._fireEvent = activeFireEvent; } else if (!opts.monitoring && config.monitoring) { config.monitoring = false; Promise.prototype._fireEvent = defaultFireEvent; } } }; function defaultFireEvent() { return false; } Promise.prototype._fireEvent = defaultFireEvent; Promise.prototype._execute = function(executor, resolve, reject) { try { executor(resolve, reject); } catch (e) { return e; } }; Promise.prototype._onCancel = function () {}; Promise.prototype._setOnCancel = function (handler) { ; }; Promise.prototype._attachCancellationCallback = function(onCancel) { ; }; Promise.prototype._captureStackTrace = function () {}; Promise.prototype._attachExtraTrace = function () {}; Promise.prototype._clearCancellationData = function() {}; Promise.prototype._propagateFrom = function (parent, flags) { ; ; }; function cancellationExecute(executor, resolve, reject) { var promise = this; try { executor(resolve, reject, function(onCancel) { if (typeof onCancel !== "function") { throw new TypeError("onCancel must be a function, got: " + util.toString(onCancel)); } promise._attachCancellationCallback(onCancel); }); } catch (e) { return e; } } function cancellationAttachCancellationCallback(onCancel) { if (!this._isCancellable()) return this; var previousOnCancel = this._onCancel(); if (previousOnCancel !== undefined) { if (util.isArray(previousOnCancel)) { previousOnCancel.push(onCancel); } else { this._setOnCancel([previousOnCancel, onCancel]); } } else { this._setOnCancel(onCancel); } } function cancellationOnCancel() { return this._onCancelField; } function cancellationSetOnCancel(onCancel) { this._onCancelField = onCancel; } function cancellationClearCancellationData() { this._cancellationParent = undefined; this._onCancelField = undefined; } function cancellationPropagateFrom(parent, flags) { if ((flags & 1) !== 0) { this._cancellationParent = parent; var branchesRemainingToCancel = parent._branchesRemainingToCancel; if (branchesRemainingToCancel === undefined) { branchesRemainingToCancel = 0; } parent._branchesRemainingToCancel = branchesRemainingToCancel + 1; } if ((flags & 2) !== 0 && parent._isBound()) { this._setBoundTo(parent._boundTo); } } function bindingPropagateFrom(parent, flags) { if ((flags & 2) !== 0 && parent._isBound()) { this._setBoundTo(parent._boundTo); } } var propagateFromFunction = bindingPropagateFrom; function boundValueFunction() { var ret = this._boundTo; if (ret !== undefined) { if (ret instanceof Promise) { if (ret.isFulfilled()) { return ret.value(); } else { return undefined; } } } return ret; } function longStackTracesCaptureStackTrace() { this._trace = new CapturedTrace(this._peekContext()); } function longStackTracesAttachExtraTrace(error, ignoreSelf) { if (canAttachTrace(error)) { var trace = this._trace; if (trace !== undefined) { if (ignoreSelf) trace = trace._parent; } if (trace !== undefined) { trace.attachExtraTrace(error); } else if (!error.__stackCleaned__) { var parsed = parseStackAndMessage(error); util.notEnumerableProp(error, "stack", parsed.message + "\n" + parsed.stack.join("\n")); util.notEnumerableProp(error, "__stackCleaned__", true); } } } function checkForgottenReturns(returnValue, promiseCreated, name, promise, parent) { if (returnValue === undefined && promiseCreated !== null && wForgottenReturn) { if (parent !== undefined && parent._returnedNonUndefined()) return; if ((promise._bitField & 65535) === 0) return; if (name) name = name + " "; var handlerLine = ""; var creatorLine = ""; if (promiseCreated._trace) { var traceLines = promiseCreated._trace.stack.split("\n"); var stack = cleanStack(traceLines); for (var i = stack.length - 1; i >= 0; --i) { var line = stack[i]; if (!nodeFramePattern.test(line)) { var lineMatches = line.match(parseLinePattern); if (lineMatches) { handlerLine = "at " + lineMatches[1] + ":" + lineMatches[2] + ":" + lineMatches[3] + " "; } break; } } if (stack.length > 0) { var firstUserLine = stack[0]; for (var i = 0; i < traceLines.length; ++i) { if (traceLines[i] === firstUserLine) { if (i > 0) { creatorLine = "\n" + traceLines[i - 1]; } break; } } } } var msg = "a promise was created in a " + name + "handler " + handlerLine + "but was not returned from it, " + "see http://goo.gl/rRqMUw" + creatorLine; promise._warn(msg, true, promiseCreated); } } function deprecated(name, replacement) { var message = name + " is deprecated and will be removed in a future version."; if (replacement) message += " Use " + replacement + " instead."; return warn(message); } function warn(message, shouldUseOwnTrace, promise) { if (!config.warnings) return; var warning = new Warning(message); var ctx; if (shouldUseOwnTrace) { promise._attachExtraTrace(warning); } else if (config.longStackTraces && (ctx = Promise._peekContext())) { ctx.attachExtraTrace(warning); } else { var parsed = parseStackAndMessage(warning); warning.stack = parsed.message + "\n" + parsed.stack.join("\n"); } if (!activeFireEvent("warning", warning)) { formatAndLogError(warning, "", true); } } function reconstructStack(message, stacks) { for (var i = 0; i < stacks.length - 1; ++i) { stacks[i].push("From previous event:"); stacks[i] = stacks[i].join("\n"); } if (i < stacks.length) { stacks[i] = stacks[i].join("\n"); } return message + "\n" + stacks.join("\n"); } function removeDuplicateOrEmptyJumps(stacks) { for (var i = 0; i < stacks.length; ++i) { if (stacks[i].length === 0 || ((i + 1 < stacks.length) && stacks[i][0] === stacks[i+1][0])) { stacks.splice(i, 1); i--; } } } function removeCommonRoots(stacks) { var current = stacks[0]; for (var i = 1; i < stacks.length; ++i) { var prev = stacks[i]; var currentLastIndex = current.length - 1; var currentLastLine = current[currentLastIndex]; var commonRootMeetPoint = -1; for (var j = prev.length - 1; j >= 0; --j) { if (prev[j] === currentLastLine) { commonRootMeetPoint = j; break; } } for (var j = commonRootMeetPoint; j >= 0; --j) { var line = prev[j]; if (current[currentLastIndex] === line) { current.pop(); currentLastIndex--; } else { break; } } current = prev; } } function cleanStack(stack) { var ret = []; for (var i = 0; i < stack.length; ++i) { var line = stack[i]; var isTraceLine = " (No stack trace)" === line || stackFramePattern.test(line); var isInternalFrame = isTraceLine && shouldIgnore(line); if (isTraceLine && !isInternalFrame) { if (indentStackFrames && line.charAt(0) !== " ") { line = " " + line; } ret.push(line); } } return ret; } function stackFramesAsArray(error) { var stack = error.stack.replace(/\s+$/g, "").split("\n"); for (var i = 0; i < stack.length; ++i) { var line = stack[i]; if (" (No stack trace)" === line || stackFramePattern.test(line)) { break; } } if (i > 0) { stack = stack.slice(i); } return stack; } function parseStackAndMessage(error) { var stack = error.stack; var message = error.toString(); stack = typeof stack === "string" && stack.length > 0 ? stackFramesAsArray(error) : [" (No stack trace)"]; return { message: message, stack: cleanStack(stack) }; } function formatAndLogError(error, title, isSoft) { if (typeof console !== "undefined") { var message; if (util.isObject(error)) { var stack = error.stack; message = title + formatStack(stack, error); } else { message = title + String(error); } if (typeof printWarning === "function") { printWarning(message, isSoft); } else if (typeof console.log === "function" || typeof console.log === "object") { console.log(message); } } } function fireRejectionEvent(name, localHandler, reason, promise) { var localEventFired = false; try { if (typeof localHandler === "function") { localEventFired = true; if (name === "rejectionHandled") { localHandler(promise); } else { localHandler(reason, promise); } } } catch (e) { async.throwLater(e); } if (name === "unhandledRejection") { if (!activeFireEvent(name, reason, promise) && !localEventFired) { formatAndLogError(reason, "Unhandled rejection "); } } else { activeFireEvent(name, promise); } } function formatNonError(obj) { var str; if (typeof obj === "function") { str = "[function " + (obj.name || "anonymous") + "]"; } else { str = obj && typeof obj.toString === "function" ? obj.toString() : util.toString(obj); var ruselessToString = /\[object [a-zA-Z0-9$_]+\]/; if (ruselessToString.test(str)) { try { var newStr = JSON.stringify(obj); str = newStr; } catch(e) { } } if (str.length === 0) { str = "(empty array)"; } } return ("(<" + snip(str) + ">, no stack trace)"); } function snip(str) { var maxChars = 41; if (str.length < maxChars) { return str; } return str.substr(0, maxChars - 3) + "..."; } function longStackTracesIsSupported() { return typeof captureStackTrace === "function"; } var shouldIgnore = function() { return false; }; var parseLineInfoRegex = /[\/<\(]([^:\/]+):(\d+):(?:\d+)\)?\s*$/; function parseLineInfo(line) { var matches = line.match(parseLineInfoRegex); if (matches) { return { fileName: matches[1], line: parseInt(matches[2], 10) }; } } function setBounds(firstLineError, lastLineError) { if (!longStackTracesIsSupported()) return; var firstStackLines = firstLineError.stack.split("\n"); var lastStackLines = lastLineError.stack.split("\n"); var firstIndex = -1; var lastIndex = -1; var firstFileName; var lastFileName; for (var i = 0; i < firstStackLines.length; ++i) { var result = parseLineInfo(firstStackLines[i]); if (result) { firstFileName = result.fileName; firstIndex = result.line; break; } } for (var i = 0; i < lastStackLines.length; ++i) { var result = parseLineInfo(lastStackLines[i]); if (result) { lastFileName = result.fileName; lastIndex = result.line; break; } } if (firstIndex < 0 || lastIndex < 0 || !firstFileName || !lastFileName || firstFileName !== lastFileName || firstIndex >= lastIndex) { return; } shouldIgnore = function(line) { if (bluebirdFramePattern.test(line)) return true; var info = parseLineInfo(line); if (info) { if (info.fileName === firstFileName && (firstIndex <= info.line && info.line <= lastIndex)) { return true; } } return false; }; } function CapturedTrace(parent) { this._parent = parent; this._promisesCreated = 0; var length = this._length = 1 + (parent === undefined ? 0 : parent._length); captureStackTrace(this, CapturedTrace); if (length > 32) this.uncycle(); } util.inherits(CapturedTrace, Error); Context.CapturedTrace = CapturedTrace; CapturedTrace.prototype.uncycle = function() { var length = this._length; if (length < 2) return; var nodes = []; var stackToIndex = {}; for (var i = 0, node = this; node !== undefined; ++i) { nodes.push(node); node = node._parent; } length = this._length = i; for (var i = length - 1; i >= 0; --i) { var stack = nodes[i].stack; if (stackToIndex[stack] === undefined) { stackToIndex[stack] = i; } } for (var i = 0; i < length; ++i) { var currentStack = nodes[i].stack; var index = stackToIndex[currentStack]; if (index !== undefined && index !== i) { if (index > 0) { nodes[index - 1]._parent = undefined; nodes[index - 1]._length = 1; } nodes[i]._parent = undefined; nodes[i]._length = 1; var cycleEdgeNode = i > 0 ? nodes[i - 1] : this; if (index < length - 1) { cycleEdgeNode._parent = nodes[index + 1]; cycleEdgeNode._parent.uncycle(); cycleEdgeNode._length = cycleEdgeNode._parent._length + 1; } else { cycleEdgeNode._parent = undefined; cycleEdgeNode._length = 1; } var currentChildLength = cycleEdgeNode._length + 1; for (var j = i - 2; j >= 0; --j) { nodes[j]._length = currentChildLength; currentChildLength++; } return; } } }; CapturedTrace.prototype.attachExtraTrace = function(error) { if (error.__stackCleaned__) return; this.uncycle(); var parsed = parseStackAndMessage(error); var message = parsed.message; var stacks = [parsed.stack]; var trace = this; while (trace !== undefined) { stacks.push(cleanStack(trace.stack.split("\n"))); trace = trace._parent; } removeCommonRoots(stacks); removeDuplicateOrEmptyJumps(stacks); util.notEnumerableProp(error, "stack", reconstructStack(message, stacks)); util.notEnumerableProp(error, "__stackCleaned__", true); }; var captureStackTrace = (function stackDetection() { var v8stackFramePattern = /^\s*at\s*/; var v8stackFormatter = function(stack, error) { if (typeof stack === "string") return stack; if (error.name !== undefined && error.message !== undefined) { return error.toString(); } return formatNonError(error); }; if (typeof Error.stackTraceLimit === "number" && typeof Error.captureStackTrace === "function") { Error.stackTraceLimit += 6; stackFramePattern = v8stackFramePattern; formatStack = v8stackFormatter; var captureStackTrace = Error.captureStackTrace; shouldIgnore = function(line) { return bluebirdFramePattern.test(line); }; return function(receiver, ignoreUntil) { Error.stackTraceLimit += 6; captureStackTrace(receiver, ignoreUntil); Error.stackTraceLimit -= 6; }; } var err = new Error(); if (typeof err.stack === "string" && err.stack.split("\n")[0].indexOf("stackDetection@") >= 0) { stackFramePattern = /@/; formatStack = v8stackFormatter; indentStackFrames = true; return function captureStackTrace(o) { o.stack = new Error().stack; }; } var hasStackAfterThrow; try { throw new Error(); } catch(e) { hasStackAfterThrow = ("stack" in e); } if (!("stack" in err) && hasStackAfterThrow && typeof Error.stackTraceLimit === "number") { stackFramePattern = v8stackFramePattern; formatStack = v8stackFormatter; return function captureStackTrace(o) { Error.stackTraceLimit += 6; try { throw new Error(); } catch(e) { o.stack = e.stack; } Error.stackTraceLimit -= 6; }; } formatStack = function(stack, error) { if (typeof stack === "string") return stack; if ((typeof error === "object" || typeof error === "function") && error.name !== undefined && error.message !== undefined) { return error.toString(); } return formatNonError(error); }; return null; })([]); if (typeof console !== "undefined" && typeof console.warn !== "undefined") { printWarning = function (message) { console.warn(message); }; if (util.isNode && process.stderr.isTTY) { printWarning = function(message, isSoft) { var color = isSoft ? "\u001b[33m" : "\u001b[31m"; console.warn(color + message + "\u001b[0m\n"); }; } else if (!util.isNode && typeof (new Error().stack) === "string") { printWarning = function(message, isSoft) { console.warn("%c" + message, isSoft ? "color: darkorange" : "color: red"); }; } } var config = { warnings: warnings, longStackTraces: false, cancellation: false, monitoring: false }; if (longStackTraces) Promise.longStackTraces(); return { longStackTraces: function() { return config.longStackTraces; }, warnings: function() { return config.warnings; }, cancellation: function() { return config.cancellation; }, monitoring: function() { return config.monitoring; }, propagateFromFunction: function() { return propagateFromFunction; }, boundValueFunction: function() { return boundValueFunction; }, checkForgottenReturns: checkForgottenReturns, setBounds: setBounds, warn: warn, deprecated: deprecated, CapturedTrace: CapturedTrace, fireDomEvent: fireDomEvent, fireGlobalEvent: fireGlobalEvent }; }; },{"./errors":12,"./util":36}],10:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise) { function returner() { return this.value; } function thrower() { throw this.reason; } Promise.prototype["return"] = Promise.prototype.thenReturn = function (value) { if (value instanceof Promise) value.suppressUnhandledRejections(); return this._then( returner, undefined, undefined, {value: value}, undefined); }; Promise.prototype["throw"] = Promise.prototype.thenThrow = function (reason) { return this._then( thrower, undefined, undefined, {reason: reason}, undefined); }; Promise.prototype.catchThrow = function (reason) { if (arguments.length <= 1) { return this._then( undefined, thrower, undefined, {reason: reason}, undefined); } else { var _reason = arguments[1]; var handler = function() {throw _reason;}; return this.caught(reason, handler); } }; Promise.prototype.catchReturn = function (value) { if (arguments.length <= 1) { if (value instanceof Promise) value.suppressUnhandledRejections(); return this._then( undefined, returner, undefined, {value: value}, undefined); } else { var _value = arguments[1]; if (_value instanceof Promise) _value.suppressUnhandledRejections(); var handler = function() {return _value;}; return this.caught(value, handler); } }; }; },{}],11:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL) { var PromiseReduce = Promise.reduce; var PromiseAll = Promise.all; function promiseAllThis() { return PromiseAll(this); } function PromiseMapSeries(promises, fn) { return PromiseReduce(promises, fn, INTERNAL, INTERNAL); } Promise.prototype.each = function (fn) { return PromiseReduce(this, fn, INTERNAL, 0) ._then(promiseAllThis, undefined, undefined, this, undefined); }; Promise.prototype.mapSeries = function (fn) { return PromiseReduce(this, fn, INTERNAL, INTERNAL); }; Promise.each = function (promises, fn) { return PromiseReduce(promises, fn, INTERNAL, 0) ._then(promiseAllThis, undefined, undefined, promises, undefined); }; Promise.mapSeries = PromiseMapSeries; }; },{}],12:[function(_dereq_,module,exports){ "use strict"; var es5 = _dereq_("./es5"); var Objectfreeze = es5.freeze; var util = _dereq_("./util"); var inherits = util.inherits; var notEnumerableProp = util.notEnumerableProp; function subError(nameProperty, defaultMessage) { function SubError(message) { if (!(this instanceof SubError)) return new SubError(message); notEnumerableProp(this, "message", typeof message === "string" ? message : defaultMessage); notEnumerableProp(this, "name", nameProperty); if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } else { Error.call(this); } } inherits(SubError, Error); return SubError; } var _TypeError, _RangeError; var Warning = subError("Warning", "warning"); var CancellationError = subError("CancellationError", "cancellation error"); var TimeoutError = subError("TimeoutError", "timeout error"); var AggregateError = subError("AggregateError", "aggregate error"); try { _TypeError = TypeError; _RangeError = RangeError; } catch(e) { _TypeError = subError("TypeError", "type error"); _RangeError = subError("RangeError", "range error"); } var methods = ("join pop push shift unshift slice filter forEach some " + "every map indexOf lastIndexOf reduce reduceRight sort reverse").split(" "); for (var i = 0; i < methods.length; ++i) { if (typeof Array.prototype[methods[i]] === "function") { AggregateError.prototype[methods[i]] = Array.prototype[methods[i]]; } } es5.defineProperty(AggregateError.prototype, "length", { value: 0, configurable: false, writable: true, enumerable: true }); AggregateError.prototype["isOperational"] = true; var level = 0; AggregateError.prototype.toString = function() { var indent = Array(level * 4 + 1).join(" "); var ret = "\n" + indent + "AggregateError of:" + "\n"; level++; indent = Array(level * 4 + 1).join(" "); for (var i = 0; i < this.length; ++i) { var str = this[i] === this ? "[Circular AggregateError]" : this[i] + ""; var lines = str.split("\n"); for (var j = 0; j < lines.length; ++j) { lines[j] = indent + lines[j]; } str = lines.join("\n"); ret += str + "\n"; } level--; return ret; }; function OperationalError(message) { if (!(this instanceof OperationalError)) return new OperationalError(message); notEnumerableProp(this, "name", "OperationalError"); notEnumerableProp(this, "message", message); this.cause = message; this["isOperational"] = true; if (message instanceof Error) { notEnumerableProp(this, "message", message.message); notEnumerableProp(this, "stack", message.stack); } else if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } } inherits(OperationalError, Error); var errorTypes = Error["__BluebirdErrorTypes__"]; if (!errorTypes) { errorTypes = Objectfreeze({ CancellationError: CancellationError, TimeoutError: TimeoutError, OperationalError: OperationalError, RejectionError: OperationalError, AggregateError: AggregateError }); es5.defineProperty(Error, "__BluebirdErrorTypes__", { value: errorTypes, writable: false, enumerable: false, configurable: false }); } module.exports = { Error: Error, TypeError: _TypeError, RangeError: _RangeError, CancellationError: errorTypes.CancellationError, OperationalError: errorTypes.OperationalError, TimeoutError: errorTypes.TimeoutError, AggregateError: errorTypes.AggregateError, Warning: Warning }; },{"./es5":13,"./util":36}],13:[function(_dereq_,module,exports){ var isES5 = (function(){ "use strict"; return this === undefined; })(); if (isES5) { module.exports = { freeze: Object.freeze, defineProperty: Object.defineProperty, getDescriptor: Object.getOwnPropertyDescriptor, keys: Object.keys, names: Object.getOwnPropertyNames, getPrototypeOf: Object.getPrototypeOf, isArray: Array.isArray, isES5: isES5, propertyIsWritable: function(obj, prop) { var descriptor = Object.getOwnPropertyDescriptor(obj, prop); return !!(!descriptor || descriptor.writable || descriptor.set); } }; } else { var has = {}.hasOwnProperty; var str = {}.toString; var proto = {}.constructor.prototype; var ObjectKeys = function (o) { var ret = []; for (var key in o) { if (has.call(o, key)) { ret.push(key); } } return ret; }; var ObjectGetDescriptor = function(o, key) { return {value: o[key]}; }; var ObjectDefineProperty = function (o, key, desc) { o[key] = desc.value; return o; }; var ObjectFreeze = function (obj) { return obj; }; var ObjectGetPrototypeOf = function (obj) { try { return Object(obj).constructor.prototype; } catch (e) { return proto; } }; var ArrayIsArray = function (obj) { try { return str.call(obj) === "[object Array]"; } catch(e) { return false; } }; module.exports = { isArray: ArrayIsArray, keys: ObjectKeys, names: ObjectKeys, defineProperty: ObjectDefineProperty, getDescriptor: ObjectGetDescriptor, freeze: ObjectFreeze, getPrototypeOf: ObjectGetPrototypeOf, isES5: isES5, propertyIsWritable: function() { return true; } }; } },{}],14:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL) { var PromiseMap = Promise.map; Promise.prototype.filter = function (fn, options) { return PromiseMap(this, fn, options, INTERNAL); }; Promise.filter = function (promises, fn, options) { return PromiseMap(promises, fn, options, INTERNAL); }; }; },{}],15:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, tryConvertToPromise) { var util = _dereq_("./util"); var CancellationError = Promise.CancellationError; var errorObj = util.errorObj; function PassThroughHandlerContext(promise, type, handler) { this.promise = promise; this.type = type; this.handler = handler; this.called = false; this.cancelPromise = null; } PassThroughHandlerContext.prototype.isFinallyHandler = function() { return this.type === 0; }; function FinallyHandlerCancelReaction(finallyHandler) { this.finallyHandler = finallyHandler; } FinallyHandlerCancelReaction.prototype._resultCancelled = function() { checkCancel(this.finallyHandler); }; function checkCancel(ctx, reason) { if (ctx.cancelPromise != null) { if (arguments.length > 1) { ctx.cancelPromise._reject(reason); } else { ctx.cancelPromise._cancel(); } ctx.cancelPromise = null; return true; } return false; } function succeed() { return finallyHandler.call(this, this.promise._target()._settledValue()); } function fail(reason) { if (checkCancel(this, reason)) return; errorObj.e = reason; return errorObj; } function finallyHandler(reasonOrValue) { var promise = this.promise; var handler = this.handler; if (!this.called) { this.called = true; var ret = this.isFinallyHandler() ? handler.call(promise._boundValue()) : handler.call(promise._boundValue(), reasonOrValue); if (ret !== undefined) { promise._setReturnedNonUndefined(); var maybePromise = tryConvertToPromise(ret, promise); if (maybePromise instanceof Promise) { if (this.cancelPromise != null) { if (maybePromise._isCancelled()) { var reason = new CancellationError("late cancellation observer"); promise._attachExtraTrace(reason); errorObj.e = reason; return errorObj; } else if (maybePromise.isPending()) { maybePromise._attachCancellationCallback( new FinallyHandlerCancelReaction(this)); } } return maybePromise._then( succeed, fail, undefined, this, undefined); } } } if (promise.isRejected()) { checkCancel(this); errorObj.e = reasonOrValue; return errorObj; } else { checkCancel(this); return reasonOrValue; } } Promise.prototype._passThrough = function(handler, type, success, fail) { if (typeof handler !== "function") return this.then(); return this._then(success, fail, undefined, new PassThroughHandlerContext(this, type, handler), undefined); }; Promise.prototype.lastly = Promise.prototype["finally"] = function (handler) { return this._passThrough(handler, 0, finallyHandler, finallyHandler); }; Promise.prototype.tap = function (handler) { return this._passThrough(handler, 1, finallyHandler); }; return PassThroughHandlerContext; }; },{"./util":36}],16:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, apiRejection, INTERNAL, tryConvertToPromise, Proxyable, debug) { var errors = _dereq_("./errors"); var TypeError = errors.TypeError; var util = _dereq_("./util"); var errorObj = util.errorObj; var tryCatch = util.tryCatch; var yieldHandlers = []; function promiseFromYieldHandler(value, yieldHandlers, traceParent) { for (var i = 0; i < yieldHandlers.length; ++i) { traceParent._pushContext(); var result = tryCatch(yieldHandlers[i])(value); traceParent._popContext(); if (result === errorObj) { traceParent._pushContext(); var ret = Promise.reject(errorObj.e); traceParent._popContext(); return ret; } var maybePromise = tryConvertToPromise(result, traceParent); if (maybePromise instanceof Promise) return maybePromise; } return null; } function PromiseSpawn(generatorFunction, receiver, yieldHandler, stack) { if (debug.cancellation()) { var internal = new Promise(INTERNAL); var _finallyPromise = this._finallyPromise = new Promise(INTERNAL); this._promise = internal.lastly(function() { return _finallyPromise; }); internal._captureStackTrace(); internal._setOnCancel(this); } else { var promise = this._promise = new Promise(INTERNAL); promise._captureStackTrace(); } this._stack = stack; this._generatorFunction = generatorFunction; this._receiver = receiver; this._generator = undefined; this._yieldHandlers = typeof yieldHandler === "function" ? [yieldHandler].concat(yieldHandlers) : yieldHandlers; this._yieldedPromise = null; this._cancellationPhase = false; } util.inherits(PromiseSpawn, Proxyable); PromiseSpawn.prototype._isResolved = function() { return this._promise === null; }; PromiseSpawn.prototype._cleanup = function() { this._promise = this._generator = null; if (debug.cancellation() && this._finallyPromise !== null) { this._finallyPromise._fulfill(); this._finallyPromise = null; } }; PromiseSpawn.prototype._promiseCancelled = function() { if (this._isResolved()) return; var implementsReturn = typeof this._generator["return"] !== "undefined"; var result; if (!implementsReturn) { var reason = new Promise.CancellationError( "generator .return() sentinel"); Promise.coroutine.returnSentinel = reason; this._promise._attachExtraTrace(reason); this._promise._pushContext(); result = tryCatch(this._generator["throw"]).call(this._generator, reason); this._promise._popContext(); } else { this._promise._pushContext(); result = tryCatch(this._generator["return"]).call(this._generator, undefined); this._promise._popContext(); } this._cancellationPhase = true; this._yieldedPromise = null; this._continue(result); }; PromiseSpawn.prototype._promiseFulfilled = function(value) { this._yieldedPromise = null; this._promise._pushContext(); var result = tryCatch(this._generator.next).call(this._generator, value); this._promise._popContext(); this._continue(result); }; PromiseSpawn.prototype._promiseRejected = function(reason) { this._yieldedPromise = null; this._promise._attachExtraTrace(reason); this._promise._pushContext(); var result = tryCatch(this._generator["throw"]) .call(this._generator, reason); this._promise._popContext(); this._continue(result); }; PromiseSpawn.prototype._resultCancelled = function() { if (this._yieldedPromise instanceof Promise) { var promise = this._yieldedPromise; this._yieldedPromise = null; promise.cancel(); } }; PromiseSpawn.prototype.promise = function () { return this._promise; }; PromiseSpawn.prototype._run = function () { this._generator = this._generatorFunction.call(this._receiver); this._receiver = this._generatorFunction = undefined; this._promiseFulfilled(undefined); }; PromiseSpawn.prototype._continue = function (result) { var promise = this._promise; if (result === errorObj) { this._cleanup(); if (this._cancellationPhase) { return promise.cancel(); } else { return promise._rejectCallback(result.e, false); } } var value = result.value; if (result.done === true) { this._cleanup(); if (this._cancellationPhase) { return promise.cancel(); } else { return promise._resolveCallback(value); } } else { var maybePromise = tryConvertToPromise(value, this._promise); if (!(maybePromise instanceof Promise)) { maybePromise = promiseFromYieldHandler(maybePromise, this._yieldHandlers, this._promise); if (maybePromise === null) { this._promiseRejected( new TypeError( "A value %s was yielded that could not be treated as a promise\u000a\u000a See http://goo.gl/MqrFmX\u000a\u000a".replace("%s", value) + "From coroutine:\u000a" + this._stack.split("\n").slice(1, -7).join("\n") ) ); return; } } maybePromise = maybePromise._target(); var bitField = maybePromise._bitField; ; if (((bitField & 50397184) === 0)) { this._yieldedPromise = maybePromise; maybePromise._proxy(this, null); } else if (((bitField & 33554432) !== 0)) { Promise._async.invoke( this._promiseFulfilled, this, maybePromise._value() ); } else if (((bitField & 16777216) !== 0)) { Promise._async.invoke( this._promiseRejected, this, maybePromise._reason() ); } else { this._promiseCancelled(); } } }; Promise.coroutine = function (generatorFunction, options) { if (typeof generatorFunction !== "function") { throw new TypeError("generatorFunction must be a function\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } var yieldHandler = Object(options).yieldHandler; var PromiseSpawn$ = PromiseSpawn; var stack = new Error().stack; return function () { var generator = generatorFunction.apply(this, arguments); var spawn = new PromiseSpawn$(undefined, undefined, yieldHandler, stack); var ret = spawn.promise(); spawn._generator = generator; spawn._promiseFulfilled(undefined); return ret; }; }; Promise.coroutine.addYieldHandler = function(fn) { if (typeof fn !== "function") { throw new TypeError("expecting a function but got " + util.classString(fn)); } yieldHandlers.push(fn); }; Promise.spawn = function (generatorFunction) { debug.deprecated("Promise.spawn()", "Promise.coroutine()"); if (typeof generatorFunction !== "function") { return apiRejection("generatorFunction must be a function\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } var spawn = new PromiseSpawn(generatorFunction, this); var ret = spawn.promise(); spawn._run(Promise.spawn); return ret; }; }; },{"./errors":12,"./util":36}],17:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, tryConvertToPromise, INTERNAL, async, getDomain) { var util = _dereq_("./util"); var canEvaluate = util.canEvaluate; var tryCatch = util.tryCatch; var errorObj = util.errorObj; var reject; if (!true) { if (canEvaluate) { var thenCallback = function(i) { return new Function("value", "holder", " \n\ 'use strict'; \n\ holder.pIndex = value; \n\ holder.checkFulfillment(this); \n\ ".replace(/Index/g, i)); }; var promiseSetter = function(i) { return new Function("promise", "holder", " \n\ 'use strict'; \n\ holder.pIndex = promise; \n\ ".replace(/Index/g, i)); }; var generateHolderClass = function(total) { var props = new Array(total); for (var i = 0; i < props.length; ++i) { props[i] = "this.p" + (i+1); } var assignment = props.join(" = ") + " = null;"; var cancellationCode= "var promise;\n" + props.map(function(prop) { return " \n\ promise = " + prop + "; \n\ if (promise instanceof Promise) { \n\ promise.cancel(); \n\ } \n\ "; }).join("\n"); var passedArguments = props.join(", "); var name = "Holder$" + total; var code = "return function(tryCatch, errorObj, Promise, async) { \n\ 'use strict'; \n\ function [TheName](fn) { \n\ [TheProperties] \n\ this.fn = fn; \n\ this.asyncNeeded = true; \n\ this.now = 0; \n\ } \n\ \n\ [TheName].prototype._callFunction = function(promise) { \n\ promise._pushContext(); \n\ var ret = tryCatch(this.fn)([ThePassedArguments]); \n\ promise._popContext(); \n\ if (ret === errorObj) { \n\ promise._rejectCallback(ret.e, false); \n\ } else { \n\ promise._resolveCallback(ret); \n\ } \n\ }; \n\ \n\ [TheName].prototype.checkFulfillment = function(promise) { \n\ var now = ++this.now; \n\ if (now === [TheTotal]) { \n\ if (this.asyncNeeded) { \n\ async.invoke(this._callFunction, this, promise); \n\ } else { \n\ this._callFunction(promise); \n\ } \n\ \n\ } \n\ }; \n\ \n\ [TheName].prototype._resultCancelled = function() { \n\ [CancellationCode] \n\ }; \n\ \n\ return [TheName]; \n\ }(tryCatch, errorObj, Promise, async); \n\ "; code = code.replace(/\[TheName\]/g, name) .replace(/\[TheTotal\]/g, total) .replace(/\[ThePassedArguments\]/g, passedArguments) .replace(/\[TheProperties\]/g, assignment) .replace(/\[CancellationCode\]/g, cancellationCode); return new Function("tryCatch", "errorObj", "Promise", "async", code) (tryCatch, errorObj, Promise, async); }; var holderClasses = []; var thenCallbacks = []; var promiseSetters = []; for (var i = 0; i < 8; ++i) { holderClasses.push(generateHolderClass(i + 1)); thenCallbacks.push(thenCallback(i + 1)); promiseSetters.push(promiseSetter(i + 1)); } reject = function (reason) { this._reject(reason); }; }} Promise.join = function () { var last = arguments.length - 1; var fn; if (last > 0 && typeof arguments[last] === "function") { fn = arguments[last]; if (!true) { if (last <= 8 && canEvaluate) { var ret = new Promise(INTERNAL); ret._captureStackTrace(); var HolderClass = holderClasses[last - 1]; var holder = new HolderClass(fn); var callbacks = thenCallbacks; for (var i = 0; i < last; ++i) { var maybePromise = tryConvertToPromise(arguments[i], ret); if (maybePromise instanceof Promise) { maybePromise = maybePromise._target(); var bitField = maybePromise._bitField; ; if (((bitField & 50397184) === 0)) { maybePromise._then(callbacks[i], reject, undefined, ret, holder); promiseSetters[i](maybePromise, holder); holder.asyncNeeded = false; } else if (((bitField & 33554432) !== 0)) { callbacks[i].call(ret, maybePromise._value(), holder); } else if (((bitField & 16777216) !== 0)) { ret._reject(maybePromise._reason()); } else { ret._cancel(); } } else { callbacks[i].call(ret, maybePromise, holder); } } if (!ret._isFateSealed()) { if (holder.asyncNeeded) { var domain = getDomain(); if (domain !== null) { holder.fn = util.domainBind(domain, holder.fn); } } ret._setAsyncGuaranteed(); ret._setOnCancel(holder); } return ret; } } } var args = [].slice.call(arguments);; if (fn) args.pop(); var ret = new PromiseArray(args).promise(); return fn !== undefined ? ret.spread(fn) : ret; }; }; },{"./util":36}],18:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, apiRejection, tryConvertToPromise, INTERNAL, debug) { var getDomain = Promise._getDomain; var util = _dereq_("./util"); var tryCatch = util.tryCatch; var errorObj = util.errorObj; var async = Promise._async; function MappingPromiseArray(promises, fn, limit, _filter) { this.constructor$(promises); this._promise._captureStackTrace(); var domain = getDomain(); this._callback = domain === null ? fn : util.domainBind(domain, fn); this._preservedValues = _filter === INTERNAL ? new Array(this.length()) : null; this._limit = limit; this._inFlight = 0; this._queue = []; async.invoke(this._asyncInit, this, undefined); } util.inherits(MappingPromiseArray, PromiseArray); MappingPromiseArray.prototype._asyncInit = function() { this._init$(undefined, -2); }; MappingPromiseArray.prototype._init = function () {}; MappingPromiseArray.prototype._promiseFulfilled = function (value, index) { var values = this._values; var length = this.length(); var preservedValues = this._preservedValues; var limit = this._limit; if (index < 0) { index = (index * -1) - 1; values[index] = value; if (limit >= 1) { this._inFlight--; this._drainQueue(); if (this._isResolved()) return true; } } else { if (limit >= 1 && this._inFlight >= limit) { values[index] = value; this._queue.push(index); return false; } if (preservedValues !== null) preservedValues[index] = value; var promise = this._promise; var callback = this._callback; var receiver = promise._boundValue(); promise._pushContext(); var ret = tryCatch(callback).call(receiver, value, index, length); var promiseCreated = promise._popContext(); debug.checkForgottenReturns( ret, promiseCreated, preservedValues !== null ? "Promise.filter" : "Promise.map", promise ); if (ret === errorObj) { this._reject(ret.e); return true; } var maybePromise = tryConvertToPromise(ret, this._promise); if (maybePromise instanceof Promise) { maybePromise = maybePromise._target(); var bitField = maybePromise._bitField; ; if (((bitField & 50397184) === 0)) { if (limit >= 1) this._inFlight++; values[index] = maybePromise; maybePromise._proxy(this, (index + 1) * -1); return false; } else if (((bitField & 33554432) !== 0)) { ret = maybePromise._value(); } else if (((bitField & 16777216) !== 0)) { this._reject(maybePromise._reason()); return true; } else { this._cancel(); return true; } } values[index] = ret; } var totalResolved = ++this._totalResolved; if (totalResolved >= length) { if (preservedValues !== null) { this._filter(values, preservedValues); } else { this._resolve(values); } return true; } return false; }; MappingPromiseArray.prototype._drainQueue = function () { var queue = this._queue; var limit = this._limit; var values = this._values; while (queue.length > 0 && this._inFlight < limit) { if (this._isResolved()) return; var index = queue.pop(); this._promiseFulfilled(values[index], index); } }; MappingPromiseArray.prototype._filter = function (booleans, values) { var len = values.length; var ret = new Array(len); var j = 0; for (var i = 0; i < len; ++i) { if (booleans[i]) ret[j++] = values[i]; } ret.length = j; this._resolve(ret); }; MappingPromiseArray.prototype.preservedValues = function () { return this._preservedValues; }; function map(promises, fn, options, _filter) { if (typeof fn !== "function") { return apiRejection("expecting a function but got " + util.classString(fn)); } var limit = 0; if (options !== undefined) { if (typeof options === "object" && options !== null) { if (typeof options.concurrency !== "number") { return Promise.reject( new TypeError("'concurrency' must be a number but it is " + util.classString(options.concurrency))); } limit = options.concurrency; } else { return Promise.reject(new TypeError( "options argument must be an object but it is " + util.classString(options))); } } limit = typeof limit === "number" && isFinite(limit) && limit >= 1 ? limit : 0; return new MappingPromiseArray(promises, fn, limit, _filter).promise(); } Promise.prototype.map = function (fn, options) { return map(this, fn, options, null); }; Promise.map = function (promises, fn, options, _filter) { return map(promises, fn, options, _filter); }; }; },{"./util":36}],19:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL, tryConvertToPromise, apiRejection, debug) { var util = _dereq_("./util"); var tryCatch = util.tryCatch; Promise.method = function (fn) { if (typeof fn !== "function") { throw new Promise.TypeError("expecting a function but got " + util.classString(fn)); } return function () { var ret = new Promise(INTERNAL); ret._captureStackTrace(); ret._pushContext(); var value = tryCatch(fn).apply(this, arguments); var promiseCreated = ret._popContext(); debug.checkForgottenReturns( value, promiseCreated, "Promise.method", ret); ret._resolveFromSyncValue(value); return ret; }; }; Promise.attempt = Promise["try"] = function (fn) { if (typeof fn !== "function") { return apiRejection("expecting a function but got " + util.classString(fn)); } var ret = new Promise(INTERNAL); ret._captureStackTrace(); ret._pushContext(); var value; if (arguments.length > 1) { debug.deprecated("calling Promise.try with more than 1 argument"); var arg = arguments[1]; var ctx = arguments[2]; value = util.isArray(arg) ? tryCatch(fn).apply(ctx, arg) : tryCatch(fn).call(ctx, arg); } else { value = tryCatch(fn)(); } var promiseCreated = ret._popContext(); debug.checkForgottenReturns( value, promiseCreated, "Promise.try", ret); ret._resolveFromSyncValue(value); return ret; }; Promise.prototype._resolveFromSyncValue = function (value) { if (value === util.errorObj) { this._rejectCallback(value.e, false); } else { this._resolveCallback(value, true); } }; }; },{"./util":36}],20:[function(_dereq_,module,exports){ "use strict"; var util = _dereq_("./util"); var maybeWrapAsError = util.maybeWrapAsError; var errors = _dereq_("./errors"); var OperationalError = errors.OperationalError; var es5 = _dereq_("./es5"); function isUntypedError(obj) { return obj instanceof Error && es5.getPrototypeOf(obj) === Error.prototype; } var rErrorKey = /^(?:name|message|stack|cause)$/; function wrapAsOperationalError(obj) { var ret; if (isUntypedError(obj)) { ret = new OperationalError(obj); ret.name = obj.name; ret.message = obj.message; ret.stack = obj.stack; var keys = es5.keys(obj); for (var i = 0; i < keys.length; ++i) { var key = keys[i]; if (!rErrorKey.test(key)) { ret[key] = obj[key]; } } return ret; } util.markAsOriginatingFromRejection(obj); return obj; } function nodebackForPromise(promise, multiArgs) { return function(err, value) { if (promise === null) return; if (err) { var wrapped = wrapAsOperationalError(maybeWrapAsError(err)); promise._attachExtraTrace(wrapped); promise._reject(wrapped); } else if (!multiArgs) { promise._fulfill(value); } else { var args = [].slice.call(arguments, 1);; promise._fulfill(args); } promise = null; }; } module.exports = nodebackForPromise; },{"./errors":12,"./es5":13,"./util":36}],21:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise) { var util = _dereq_("./util"); var async = Promise._async; var tryCatch = util.tryCatch; var errorObj = util.errorObj; function spreadAdapter(val, nodeback) { var promise = this; if (!util.isArray(val)) return successAdapter.call(promise, val, nodeback); var ret = tryCatch(nodeback).apply(promise._boundValue(), [null].concat(val)); if (ret === errorObj) { async.throwLater(ret.e); } } function successAdapter(val, nodeback) { var promise = this; var receiver = promise._boundValue(); var ret = val === undefined ? tryCatch(nodeback).call(receiver, null) : tryCatch(nodeback).call(receiver, null, val); if (ret === errorObj) { async.throwLater(ret.e); } } function errorAdapter(reason, nodeback) { var promise = this; if (!reason) { var newReason = new Error(reason + ""); newReason.cause = reason; reason = newReason; } var ret = tryCatch(nodeback).call(promise._boundValue(), reason); if (ret === errorObj) { async.throwLater(ret.e); } } Promise.prototype.asCallback = Promise.prototype.nodeify = function (nodeback, options) { if (typeof nodeback == "function") { var adapter = successAdapter; if (options !== undefined && Object(options).spread) { adapter = spreadAdapter; } this._then( adapter, errorAdapter, undefined, this, nodeback ); } return this; }; }; },{"./util":36}],22:[function(_dereq_,module,exports){ "use strict"; module.exports = function() { var makeSelfResolutionError = function () { return new TypeError("circular promise resolution chain\u000a\u000a See http://goo.gl/MqrFmX\u000a"); }; var reflectHandler = function() { return new Promise.PromiseInspection(this._target()); }; var apiRejection = function(msg) { return Promise.reject(new TypeError(msg)); }; function Proxyable() {} var UNDEFINED_BINDING = {}; var util = _dereq_("./util"); var getDomain; if (util.isNode) { getDomain = function() { var ret = process.domain; if (ret === undefined) ret = null; return ret; }; } else { getDomain = function() { return null; }; } util.notEnumerableProp(Promise, "_getDomain", getDomain); var es5 = _dereq_("./es5"); var Async = _dereq_("./async"); var async = new Async(); es5.defineProperty(Promise, "_async", {value: async}); var errors = _dereq_("./errors"); var TypeError = Promise.TypeError = errors.TypeError; Promise.RangeError = errors.RangeError; var CancellationError = Promise.CancellationError = errors.CancellationError; Promise.TimeoutError = errors.TimeoutError; Promise.OperationalError = errors.OperationalError; Promise.RejectionError = errors.OperationalError; Promise.AggregateError = errors.AggregateError; var INTERNAL = function(){}; var APPLY = {}; var NEXT_FILTER = {}; var tryConvertToPromise = _dereq_("./thenables")(Promise, INTERNAL); var PromiseArray = _dereq_("./promise_array")(Promise, INTERNAL, tryConvertToPromise, apiRejection, Proxyable); var Context = _dereq_("./context")(Promise); /*jshint unused:false*/ var createContext = Context.create; var debug = _dereq_("./debuggability")(Promise, Context); var CapturedTrace = debug.CapturedTrace; var PassThroughHandlerContext = _dereq_("./finally")(Promise, tryConvertToPromise); var catchFilter = _dereq_("./catch_filter")(NEXT_FILTER); var nodebackForPromise = _dereq_("./nodeback"); var errorObj = util.errorObj; var tryCatch = util.tryCatch; function check(self, executor) { if (typeof executor !== "function") { throw new TypeError("expecting a function but got " + util.classString(executor)); } if (self.constructor !== Promise) { throw new TypeError("the promise constructor cannot be invoked directly\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } } function Promise(executor) { this._bitField = 0; this._fulfillmentHandler0 = undefined; this._rejectionHandler0 = undefined; this._promise0 = undefined; this._receiver0 = undefined; if (executor !== INTERNAL) { check(this, executor); this._resolveFromExecutor(executor); } this._promiseCreated(); this._fireEvent("promiseCreated", this); } Promise.prototype.toString = function () { return "[object Promise]"; }; Promise.prototype.caught = Promise.prototype["catch"] = function (fn) { var len = arguments.length; if (len > 1) { var catchInstances = new Array(len - 1), j = 0, i; for (i = 0; i < len - 1; ++i) { var item = arguments[i]; if (util.isObject(item)) { catchInstances[j++] = item; } else { return apiRejection("expecting an object but got " + "A catch statement predicate " + util.classString(item)); } } catchInstances.length = j; fn = arguments[i]; return this.then(undefined, catchFilter(catchInstances, fn, this)); } return this.then(undefined, fn); }; Promise.prototype.reflect = function () { return this._then(reflectHandler, reflectHandler, undefined, this, undefined); }; Promise.prototype.then = function (didFulfill, didReject) { if (debug.warnings() && arguments.length > 0 && typeof didFulfill !== "function" && typeof didReject !== "function") { var msg = ".then() only accepts functions but was passed: " + util.classString(didFulfill); if (arguments.length > 1) { msg += ", " + util.classString(didReject); } this._warn(msg); } return this._then(didFulfill, didReject, undefined, undefined, undefined); }; Promise.prototype.done = function (didFulfill, didReject) { var promise = this._then(didFulfill, didReject, undefined, undefined, undefined); promise._setIsFinal(); }; Promise.prototype.spread = function (fn) { if (typeof fn !== "function") { return apiRejection("expecting a function but got " + util.classString(fn)); } return this.all()._then(fn, undefined, undefined, APPLY, undefined); }; Promise.prototype.toJSON = function () { var ret = { isFulfilled: false, isRejected: false, fulfillmentValue: undefined, rejectionReason: undefined }; if (this.isFulfilled()) { ret.fulfillmentValue = this.value(); ret.isFulfilled = true; } else if (this.isRejected()) { ret.rejectionReason = this.reason(); ret.isRejected = true; } return ret; }; Promise.prototype.all = function () { if (arguments.length > 0) { this._warn(".all() was passed arguments but it does not take any"); } return new PromiseArray(this).promise(); }; Promise.prototype.error = function (fn) { return this.caught(util.originatesFromRejection, fn); }; Promise.getNewLibraryCopy = module.exports; Promise.is = function (val) { return val instanceof Promise; }; Promise.fromNode = Promise.fromCallback = function(fn) { var ret = new Promise(INTERNAL); ret._captureStackTrace(); var multiArgs = arguments.length > 1 ? !!Object(arguments[1]).multiArgs : false; var result = tryCatch(fn)(nodebackForPromise(ret, multiArgs)); if (result === errorObj) { ret._rejectCallback(result.e, true); } if (!ret._isFateSealed()) ret._setAsyncGuaranteed(); return ret; }; Promise.all = function (promises) { return new PromiseArray(promises).promise(); }; Promise.cast = function (obj) { var ret = tryConvertToPromise(obj); if (!(ret instanceof Promise)) { ret = new Promise(INTERNAL); ret._captureStackTrace(); ret._setFulfilled(); ret._rejectionHandler0 = obj; } return ret; }; Promise.resolve = Promise.fulfilled = Promise.cast; Promise.reject = Promise.rejected = function (reason) { var ret = new Promise(INTERNAL); ret._captureStackTrace(); ret._rejectCallback(reason, true); return ret; }; Promise.setScheduler = function(fn) { if (typeof fn !== "function") { throw new TypeError("expecting a function but got " + util.classString(fn)); } return async.setScheduler(fn); }; Promise.prototype._then = function ( didFulfill, didReject, _, receiver, internalData ) { var haveInternalData = internalData !== undefined; var promise = haveInternalData ? internalData : new Promise(INTERNAL); var target = this._target(); var bitField = target._bitField; if (!haveInternalData) { promise._propagateFrom(this, 3); promise._captureStackTrace(); if (receiver === undefined && ((this._bitField & 2097152) !== 0)) { if (!((bitField & 50397184) === 0)) { receiver = this._boundValue(); } else { receiver = target === this ? undefined : this._boundTo; } } this._fireEvent("promiseChained", this, promise); } var domain = getDomain(); if (!((bitField & 50397184) === 0)) { var handler, value, settler = target._settlePromiseCtx; if (((bitField & 33554432) !== 0)) { value = target._rejectionHandler0; handler = didFulfill; } else if (((bitField & 16777216) !== 0)) { value = target._fulfillmentHandler0; handler = didReject; target._unsetRejectionIsUnhandled(); } else { settler = target._settlePromiseLateCancellationObserver; value = new CancellationError("late cancellation observer"); target._attachExtraTrace(value); handler = didReject; } async.invoke(settler, target, { handler: domain === null ? handler : (typeof handler === "function" && util.domainBind(domain, handler)), promise: promise, receiver: receiver, value: value }); } else { target._addCallbacks(didFulfill, didReject, promise, receiver, domain); } return promise; }; Promise.prototype._length = function () { return this._bitField & 65535; }; Promise.prototype._isFateSealed = function () { return (this._bitField & 117506048) !== 0; }; Promise.prototype._isFollowing = function () { return (this._bitField & 67108864) === 67108864; }; Promise.prototype._setLength = function (len) { this._bitField = (this._bitField & -65536) | (len & 65535); }; Promise.prototype._setFulfilled = function () { this._bitField = this._bitField | 33554432; this._fireEvent("promiseFulfilled", this); }; Promise.prototype._setRejected = function () { this._bitField = this._bitField | 16777216; this._fireEvent("promiseRejected", this); }; Promise.prototype._setFollowing = function () { this._bitField = this._bitField | 67108864; this._fireEvent("promiseResolved", this); }; Promise.prototype._setIsFinal = function () { this._bitField = this._bitField | 4194304; }; Promise.prototype._isFinal = function () { return (this._bitField & 4194304) > 0; }; Promise.prototype._unsetCancelled = function() { this._bitField = this._bitField & (~65536); }; Promise.prototype._setCancelled = function() { this._bitField = this._bitField | 65536; this._fireEvent("promiseCancelled", this); }; Promise.prototype._setWillBeCancelled = function() { this._bitField = this._bitField | 8388608; }; Promise.prototype._setAsyncGuaranteed = function() { if (async.hasCustomScheduler()) return; this._bitField = this._bitField | 134217728; }; Promise.prototype._receiverAt = function (index) { var ret = index === 0 ? this._receiver0 : this[ index * 4 - 4 + 3]; if (ret === UNDEFINED_BINDING) { return undefined; } else if (ret === undefined && this._isBound()) { return this._boundValue(); } return ret; }; Promise.prototype._promiseAt = function (index) { return this[ index * 4 - 4 + 2]; }; Promise.prototype._fulfillmentHandlerAt = function (index) { return this[ index * 4 - 4 + 0]; }; Promise.prototype._rejectionHandlerAt = function (index) { return this[ index * 4 - 4 + 1]; }; Promise.prototype._boundValue = function() {}; Promise.prototype._migrateCallback0 = function (follower) { var bitField = follower._bitField; var fulfill = follower._fulfillmentHandler0; var reject = follower._rejectionHandler0; var promise = follower._promise0; var receiver = follower._receiverAt(0); if (receiver === undefined) receiver = UNDEFINED_BINDING; this._addCallbacks(fulfill, reject, promise, receiver, null); }; Promise.prototype._migrateCallbackAt = function (follower, index) { var fulfill = follower._fulfillmentHandlerAt(index); var reject = follower._rejectionHandlerAt(index); var promise = follower._promiseAt(index); var receiver = follower._receiverAt(index); if (receiver === undefined) receiver = UNDEFINED_BINDING; this._addCallbacks(fulfill, reject, promise, receiver, null); }; Promise.prototype._addCallbacks = function ( fulfill, reject, promise, receiver, domain ) { var index = this._length(); if (index >= 65535 - 4) { index = 0; this._setLength(0); } if (index === 0) { this._promise0 = promise; this._receiver0 = receiver; if (typeof fulfill === "function") { this._fulfillmentHandler0 = domain === null ? fulfill : util.domainBind(domain, fulfill); } if (typeof reject === "function") { this._rejectionHandler0 = domain === null ? reject : util.domainBind(domain, reject); } } else { var base = index * 4 - 4; this[base + 2] = promise; this[base + 3] = receiver; if (typeof fulfill === "function") { this[base + 0] = domain === null ? fulfill : util.domainBind(domain, fulfill); } if (typeof reject === "function") { this[base + 1] = domain === null ? reject : util.domainBind(domain, reject); } } this._setLength(index + 1); return index; }; Promise.prototype._proxy = function (proxyable, arg) { this._addCallbacks(undefined, undefined, arg, proxyable, null); }; Promise.prototype._resolveCallback = function(value, shouldBind) { if (((this._bitField & 117506048) !== 0)) return; if (value === this) return this._rejectCallback(makeSelfResolutionError(), false); var maybePromise = tryConvertToPromise(value, this); if (!(maybePromise instanceof Promise)) return this._fulfill(value); if (shouldBind) this._propagateFrom(maybePromise, 2); var promise = maybePromise._target(); if (promise === this) { this._reject(makeSelfResolutionError()); return; } var bitField = promise._bitField; if (((bitField & 50397184) === 0)) { var len = this._length(); if (len > 0) promise._migrateCallback0(this); for (var i = 1; i < len; ++i) { promise._migrateCallbackAt(this, i); } this._setFollowing(); this._setLength(0); this._setFollowee(promise); } else if (((bitField & 33554432) !== 0)) { this._fulfill(promise._value()); } else if (((bitField & 16777216) !== 0)) { this._reject(promise._reason()); } else { var reason = new CancellationError("late cancellation observer"); promise._attachExtraTrace(reason); this._reject(reason); } }; Promise.prototype._rejectCallback = function(reason, synchronous, ignoreNonErrorWarnings) { var trace = util.ensureErrorObject(reason); var hasStack = trace === reason; if (!hasStack && !ignoreNonErrorWarnings && debug.warnings()) { var message = "a promise was rejected with a non-error: " + util.classString(reason); this._warn(message, true); } this._attachExtraTrace(trace, synchronous ? hasStack : false); this._reject(reason); }; Promise.prototype._resolveFromExecutor = function (executor) { var promise = this; this._captureStackTrace(); this._pushContext(); var synchronous = true; var r = this._execute(executor, function(value) { promise._resolveCallback(value); }, function (reason) { promise._rejectCallback(reason, synchronous); }); synchronous = false; this._popContext(); if (r !== undefined) { promise._rejectCallback(r, true); } }; Promise.prototype._settlePromiseFromHandler = function ( handler, receiver, value, promise ) { var bitField = promise._bitField; if (((bitField & 65536) !== 0)) return; promise._pushContext(); var x; if (receiver === APPLY) { if (!value || typeof value.length !== "number") { x = errorObj; x.e = new TypeError("cannot .spread() a non-array: " + util.classString(value)); } else { x = tryCatch(handler).apply(this._boundValue(), value); } } else { x = tryCatch(handler).call(receiver, value); } var promiseCreated = promise._popContext(); bitField = promise._bitField; if (((bitField & 65536) !== 0)) return; if (x === NEXT_FILTER) { promise._reject(value); } else if (x === errorObj) { promise._rejectCallback(x.e, false); } else { debug.checkForgottenReturns(x, promiseCreated, "", promise, this); promise._resolveCallback(x); } }; Promise.prototype._target = function() { var ret = this; while (ret._isFollowing()) ret = ret._followee(); return ret; }; Promise.prototype._followee = function() { return this._rejectionHandler0; }; Promise.prototype._setFollowee = function(promise) { this._rejectionHandler0 = promise; }; Promise.prototype._settlePromise = function(promise, handler, receiver, value) { var isPromise = promise instanceof Promise; var bitField = this._bitField; var asyncGuaranteed = ((bitField & 134217728) !== 0); if (((bitField & 65536) !== 0)) { if (isPromise) promise._invokeInternalOnCancel(); if (receiver instanceof PassThroughHandlerContext && receiver.isFinallyHandler()) { receiver.cancelPromise = promise; if (tryCatch(handler).call(receiver, value) === errorObj) { promise._reject(errorObj.e); } } else if (handler === reflectHandler) { promise._fulfill(reflectHandler.call(receiver)); } else if (receiver instanceof Proxyable) { receiver._promiseCancelled(promise); } else if (isPromise || promise instanceof PromiseArray) { promise._cancel(); } else { receiver.cancel(); } } else if (typeof handler === "function") { if (!isPromise) { handler.call(receiver, value, promise); } else { if (asyncGuaranteed) promise._setAsyncGuaranteed(); this._settlePromiseFromHandler(handler, receiver, value, promise); } } else if (receiver instanceof Proxyable) { if (!receiver._isResolved()) { if (((bitField & 33554432) !== 0)) { receiver._promiseFulfilled(value, promise); } else { receiver._promiseRejected(value, promise); } } } else if (isPromise) { if (asyncGuaranteed) promise._setAsyncGuaranteed(); if (((bitField & 33554432) !== 0)) { promise._fulfill(value); } else { promise._reject(value); } } }; Promise.prototype._settlePromiseLateCancellationObserver = function(ctx) { var handler = ctx.handler; var promise = ctx.promise; var receiver = ctx.receiver; var value = ctx.value; if (typeof handler === "function") { if (!(promise instanceof Promise)) { handler.call(receiver, value, promise); } else { this._settlePromiseFromHandler(handler, receiver, value, promise); } } else if (promise instanceof Promise) { promise._reject(value); } }; Promise.prototype._settlePromiseCtx = function(ctx) { this._settlePromise(ctx.promise, ctx.handler, ctx.receiver, ctx.value); }; Promise.prototype._settlePromise0 = function(handler, value, bitField) { var promise = this._promise0; var receiver = this._receiverAt(0); this._promise0 = undefined; this._receiver0 = undefined; this._settlePromise(promise, handler, receiver, value); }; Promise.prototype._clearCallbackDataAtIndex = function(index) { var base = index * 4 - 4; this[base + 2] = this[base + 3] = this[base + 0] = this[base + 1] = undefined; }; Promise.prototype._fulfill = function (value) { var bitField = this._bitField; if (((bitField & 117506048) >>> 16)) return; if (value === this) { var err = makeSelfResolutionError(); this._attachExtraTrace(err); return this._reject(err); } this._setFulfilled(); this._rejectionHandler0 = value; if ((bitField & 65535) > 0) { if (((bitField & 134217728) !== 0)) { this._settlePromises(); } else { async.settlePromises(this); } } }; Promise.prototype._reject = function (reason) { var bitField = this._bitField; if (((bitField & 117506048) >>> 16)) return; this._setRejected(); this._fulfillmentHandler0 = reason; if (this._isFinal()) { return async.fatalError(reason, util.isNode); } if ((bitField & 65535) > 0) { async.settlePromises(this); } else { this._ensurePossibleRejectionHandled(); } }; Promise.prototype._fulfillPromises = function (len, value) { for (var i = 1; i < len; i++) { var handler = this._fulfillmentHandlerAt(i); var promise = this._promiseAt(i); var receiver = this._receiverAt(i); this._clearCallbackDataAtIndex(i); this._settlePromise(promise, handler, receiver, value); } }; Promise.prototype._rejectPromises = function (len, reason) { for (var i = 1; i < len; i++) { var handler = this._rejectionHandlerAt(i); var promise = this._promiseAt(i); var receiver = this._receiverAt(i); this._clearCallbackDataAtIndex(i); this._settlePromise(promise, handler, receiver, reason); } }; Promise.prototype._settlePromises = function () { var bitField = this._bitField; var len = (bitField & 65535); if (len > 0) { if (((bitField & 16842752) !== 0)) { var reason = this._fulfillmentHandler0; this._settlePromise0(this._rejectionHandler0, reason, bitField); this._rejectPromises(len, reason); } else { var value = this._rejectionHandler0; this._settlePromise0(this._fulfillmentHandler0, value, bitField); this._fulfillPromises(len, value); } this._setLength(0); } this._clearCancellationData(); }; Promise.prototype._settledValue = function() { var bitField = this._bitField; if (((bitField & 33554432) !== 0)) { return this._rejectionHandler0; } else if (((bitField & 16777216) !== 0)) { return this._fulfillmentHandler0; } }; function deferResolve(v) {this.promise._resolveCallback(v);} function deferReject(v) {this.promise._rejectCallback(v, false);} Promise.defer = Promise.pending = function() { debug.deprecated("Promise.defer", "new Promise"); var promise = new Promise(INTERNAL); return { promise: promise, resolve: deferResolve, reject: deferReject }; }; util.notEnumerableProp(Promise, "_makeSelfResolutionError", makeSelfResolutionError); _dereq_("./method")(Promise, INTERNAL, tryConvertToPromise, apiRejection, debug); _dereq_("./bind")(Promise, INTERNAL, tryConvertToPromise, debug); _dereq_("./cancel")(Promise, PromiseArray, apiRejection, debug); _dereq_("./direct_resolve")(Promise); _dereq_("./synchronous_inspection")(Promise); _dereq_("./join")( Promise, PromiseArray, tryConvertToPromise, INTERNAL, async, getDomain); Promise.Promise = Promise; Promise.version = "3.4.6"; _dereq_('./map.js')(Promise, PromiseArray, apiRejection, tryConvertToPromise, INTERNAL, debug); _dereq_('./call_get.js')(Promise); _dereq_('./using.js')(Promise, apiRejection, tryConvertToPromise, createContext, INTERNAL, debug); _dereq_('./timers.js')(Promise, INTERNAL, debug); _dereq_('./generators.js')(Promise, apiRejection, INTERNAL, tryConvertToPromise, Proxyable, debug); _dereq_('./nodeify.js')(Promise); _dereq_('./promisify.js')(Promise, INTERNAL); _dereq_('./props.js')(Promise, PromiseArray, tryConvertToPromise, apiRejection); _dereq_('./race.js')(Promise, INTERNAL, tryConvertToPromise, apiRejection); _dereq_('./reduce.js')(Promise, PromiseArray, apiRejection, tryConvertToPromise, INTERNAL, debug); _dereq_('./settle.js')(Promise, PromiseArray, debug); _dereq_('./some.js')(Promise, PromiseArray, apiRejection); _dereq_('./filter.js')(Promise, INTERNAL); _dereq_('./each.js')(Promise, INTERNAL); _dereq_('./any.js')(Promise); util.toFastProperties(Promise); util.toFastProperties(Promise.prototype); function fillTypes(value) { var p = new Promise(INTERNAL); p._fulfillmentHandler0 = value; p._rejectionHandler0 = value; p._promise0 = value; p._receiver0 = value; } // Complete slack tracking, opt out of field-type tracking and // stabilize map fillTypes({a: 1}); fillTypes({b: 2}); fillTypes({c: 3}); fillTypes(1); fillTypes(function(){}); fillTypes(undefined); fillTypes(false); fillTypes(new Promise(INTERNAL)); debug.setBounds(Async.firstLineError, util.lastLineError); return Promise; }; },{"./any.js":1,"./async":2,"./bind":3,"./call_get.js":5,"./cancel":6,"./catch_filter":7,"./context":8,"./debuggability":9,"./direct_resolve":10,"./each.js":11,"./errors":12,"./es5":13,"./filter.js":14,"./finally":15,"./generators.js":16,"./join":17,"./map.js":18,"./method":19,"./nodeback":20,"./nodeify.js":21,"./promise_array":23,"./promisify.js":24,"./props.js":25,"./race.js":27,"./reduce.js":28,"./settle.js":30,"./some.js":31,"./synchronous_inspection":32,"./thenables":33,"./timers.js":34,"./using.js":35,"./util":36}],23:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL, tryConvertToPromise, apiRejection, Proxyable) { var util = _dereq_("./util"); var isArray = util.isArray; function toResolutionValue(val) { switch(val) { case -2: return []; case -3: return {}; } } function PromiseArray(values) { var promise = this._promise = new Promise(INTERNAL); if (values instanceof Promise) { promise._propagateFrom(values, 3); } promise._setOnCancel(this); this._values = values; this._length = 0; this._totalResolved = 0; this._init(undefined, -2); } util.inherits(PromiseArray, Proxyable); PromiseArray.prototype.length = function () { return this._length; }; PromiseArray.prototype.promise = function () { return this._promise; }; PromiseArray.prototype._init = function init(_, resolveValueIfEmpty) { var values = tryConvertToPromise(this._values, this._promise); if (values instanceof Promise) { values = values._target(); var bitField = values._bitField; ; this._values = values; if (((bitField & 50397184) === 0)) { this._promise._setAsyncGuaranteed(); return values._then( init, this._reject, undefined, this, resolveValueIfEmpty ); } else if (((bitField & 33554432) !== 0)) { values = values._value(); } else if (((bitField & 16777216) !== 0)) { return this._reject(values._reason()); } else { return this._cancel(); } } values = util.asArray(values); if (values === null) { var err = apiRejection( "expecting an array or an iterable object but got " + util.classString(values)).reason(); this._promise._rejectCallback(err, false); return; } if (values.length === 0) { if (resolveValueIfEmpty === -5) { this._resolveEmptyArray(); } else { this._resolve(toResolutionValue(resolveValueIfEmpty)); } return; } this._iterate(values); }; PromiseArray.prototype._iterate = function(values) { var len = this.getActualLength(values.length); this._length = len; this._values = this.shouldCopyValues() ? new Array(len) : this._values; var result = this._promise; var isResolved = false; var bitField = null; for (var i = 0; i < len; ++i) { var maybePromise = tryConvertToPromise(values[i], result); if (maybePromise instanceof Promise) { maybePromise = maybePromise._target(); bitField = maybePromise._bitField; } else { bitField = null; } if (isResolved) { if (bitField !== null) { maybePromise.suppressUnhandledRejections(); } } else if (bitField !== null) { if (((bitField & 50397184) === 0)) { maybePromise._proxy(this, i); this._values[i] = maybePromise; } else if (((bitField & 33554432) !== 0)) { isResolved = this._promiseFulfilled(maybePromise._value(), i); } else if (((bitField & 16777216) !== 0)) { isResolved = this._promiseRejected(maybePromise._reason(), i); } else { isResolved = this._promiseCancelled(i); } } else { isResolved = this._promiseFulfilled(maybePromise, i); } } if (!isResolved) result._setAsyncGuaranteed(); }; PromiseArray.prototype._isResolved = function () { return this._values === null; }; PromiseArray.prototype._resolve = function (value) { this._values = null; this._promise._fulfill(value); }; PromiseArray.prototype._cancel = function() { if (this._isResolved() || !this._promise._isCancellable()) return; this._values = null; this._promise._cancel(); }; PromiseArray.prototype._reject = function (reason) { this._values = null; this._promise._rejectCallback(reason, false); }; PromiseArray.prototype._promiseFulfilled = function (value, index) { this._values[index] = value; var totalResolved = ++this._totalResolved; if (totalResolved >= this._length) { this._resolve(this._values); return true; } return false; }; PromiseArray.prototype._promiseCancelled = function() { this._cancel(); return true; }; PromiseArray.prototype._promiseRejected = function (reason) { this._totalResolved++; this._reject(reason); return true; }; PromiseArray.prototype._resultCancelled = function() { if (this._isResolved()) return; var values = this._values; this._cancel(); if (values instanceof Promise) { values.cancel(); } else { for (var i = 0; i < values.length; ++i) { if (values[i] instanceof Promise) { values[i].cancel(); } } } }; PromiseArray.prototype.shouldCopyValues = function () { return true; }; PromiseArray.prototype.getActualLength = function (len) { return len; }; return PromiseArray; }; },{"./util":36}],24:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL) { var THIS = {}; var util = _dereq_("./util"); var nodebackForPromise = _dereq_("./nodeback"); var withAppended = util.withAppended; var maybeWrapAsError = util.maybeWrapAsError; var canEvaluate = util.canEvaluate; var TypeError = _dereq_("./errors").TypeError; var defaultSuffix = "Async"; var defaultPromisified = {__isPromisified__: true}; var noCopyProps = [ "arity", "length", "name", "arguments", "caller", "callee", "prototype", "__isPromisified__" ]; var noCopyPropsPattern = new RegExp("^(?:" + noCopyProps.join("|") + ")$"); var defaultFilter = function(name) { return util.isIdentifier(name) && name.charAt(0) !== "_" && name !== "constructor"; }; function propsFilter(key) { return !noCopyPropsPattern.test(key); } function isPromisified(fn) { try { return fn.__isPromisified__ === true; } catch (e) { return false; } } function hasPromisified(obj, key, suffix) { var val = util.getDataPropertyOrDefault(obj, key + suffix, defaultPromisified); return val ? isPromisified(val) : false; } function checkValid(ret, suffix, suffixRegexp) { for (var i = 0; i < ret.length; i += 2) { var key = ret[i]; if (suffixRegexp.test(key)) { var keyWithoutAsyncSuffix = key.replace(suffixRegexp, ""); for (var j = 0; j < ret.length; j += 2) { if (ret[j] === keyWithoutAsyncSuffix) { throw new TypeError("Cannot promisify an API that has normal methods with '%s'-suffix\u000a\u000a See http://goo.gl/MqrFmX\u000a" .replace("%s", suffix)); } } } } } function promisifiableMethods(obj, suffix, suffixRegexp, filter) { var keys = util.inheritedDataKeys(obj); var ret = []; for (var i = 0; i < keys.length; ++i) { var key = keys[i]; var value = obj[key]; var passesDefaultFilter = filter === defaultFilter ? true : defaultFilter(key, value, obj); if (typeof value === "function" && !isPromisified(value) && !hasPromisified(obj, key, suffix) && filter(key, value, obj, passesDefaultFilter)) { ret.push(key, value); } } checkValid(ret, suffix, suffixRegexp); return ret; } var escapeIdentRegex = function(str) { return str.replace(/([$])/, "\\$"); }; var makeNodePromisifiedEval; if (!true) { var switchCaseArgumentOrder = function(likelyArgumentCount) { var ret = [likelyArgumentCount]; var min = Math.max(0, likelyArgumentCount - 1 - 3); for(var i = likelyArgumentCount - 1; i >= min; --i) { ret.push(i); } for(var i = likelyArgumentCount + 1; i <= 3; ++i) { ret.push(i); } return ret; }; var argumentSequence = function(argumentCount) { return util.filledRange(argumentCount, "_arg", ""); }; var parameterDeclaration = function(parameterCount) { return util.filledRange( Math.max(parameterCount, 3), "_arg", ""); }; var parameterCount = function(fn) { if (typeof fn.length === "number") { return Math.max(Math.min(fn.length, 1023 + 1), 0); } return 0; }; makeNodePromisifiedEval = function(callback, receiver, originalName, fn, _, multiArgs) { var newParameterCount = Math.max(0, parameterCount(fn) - 1); var argumentOrder = switchCaseArgumentOrder(newParameterCount); var shouldProxyThis = typeof callback === "string" || receiver === THIS; function generateCallForArgumentCount(count) { var args = argumentSequence(count).join(", "); var comma = count > 0 ? ", " : ""; var ret; if (shouldProxyThis) { ret = "ret = callback.call(this, {{args}}, nodeback); break;\n"; } else { ret = receiver === undefined ? "ret = callback({{args}}, nodeback); break;\n" : "ret = callback.call(receiver, {{args}}, nodeback); break;\n"; } return ret.replace("{{args}}", args).replace(", ", comma); } function generateArgumentSwitchCase() { var ret = ""; for (var i = 0; i < argumentOrder.length; ++i) { ret += "case " + argumentOrder[i] +":" + generateCallForArgumentCount(argumentOrder[i]); } ret += " \n\ default: \n\ var args = new Array(len + 1); \n\ var i = 0; \n\ for (var i = 0; i < len; ++i) { \n\ args[i] = arguments[i]; \n\ } \n\ args[i] = nodeback; \n\ [CodeForCall] \n\ break; \n\ ".replace("[CodeForCall]", (shouldProxyThis ? "ret = callback.apply(this, args);\n" : "ret = callback.apply(receiver, args);\n")); return ret; } var getFunctionCode = typeof callback === "string" ? ("this != null ? this['"+callback+"'] : fn") : "fn"; var body = "'use strict'; \n\ var ret = function (Parameters) { \n\ 'use strict'; \n\ var len = arguments.length; \n\ var promise = new Promise(INTERNAL); \n\ promise._captureStackTrace(); \n\ var nodeback = nodebackForPromise(promise, " + multiArgs + "); \n\ var ret; \n\ var callback = tryCatch([GetFunctionCode]); \n\ switch(len) { \n\ [CodeForSwitchCase] \n\ } \n\ if (ret === errorObj) { \n\ promise._rejectCallback(maybeWrapAsError(ret.e), true, true);\n\ } \n\ if (!promise._isFateSealed()) promise._setAsyncGuaranteed(); \n\ return promise; \n\ }; \n\ notEnumerableProp(ret, '__isPromisified__', true); \n\ return ret; \n\ ".replace("[CodeForSwitchCase]", generateArgumentSwitchCase()) .replace("[GetFunctionCode]", getFunctionCode); body = body.replace("Parameters", parameterDeclaration(newParameterCount)); return new Function("Promise", "fn", "receiver", "withAppended", "maybeWrapAsError", "nodebackForPromise", "tryCatch", "errorObj", "notEnumerableProp", "INTERNAL", body)( Promise, fn, receiver, withAppended, maybeWrapAsError, nodebackForPromise, util.tryCatch, util.errorObj, util.notEnumerableProp, INTERNAL); }; } function makeNodePromisifiedClosure(callback, receiver, _, fn, __, multiArgs) { var defaultThis = (function() {return this;})(); var method = callback; if (typeof method === "string") { callback = fn; } function promisified() { var _receiver = receiver; if (receiver === THIS) _receiver = this; var promise = new Promise(INTERNAL); promise._captureStackTrace(); var cb = typeof method === "string" && this !== defaultThis ? this[method] : callback; var fn = nodebackForPromise(promise, multiArgs); try { cb.apply(_receiver, withAppended(arguments, fn)); } catch(e) { promise._rejectCallback(maybeWrapAsError(e), true, true); } if (!promise._isFateSealed()) promise._setAsyncGuaranteed(); return promise; } util.notEnumerableProp(promisified, "__isPromisified__", true); return promisified; } var makeNodePromisified = canEvaluate ? makeNodePromisifiedEval : makeNodePromisifiedClosure; function promisifyAll(obj, suffix, filter, promisifier, multiArgs) { var suffixRegexp = new RegExp(escapeIdentRegex(suffix) + "$"); var methods = promisifiableMethods(obj, suffix, suffixRegexp, filter); for (var i = 0, len = methods.length; i < len; i+= 2) { var key = methods[i]; var fn = methods[i+1]; var promisifiedKey = key + suffix; if (promisifier === makeNodePromisified) { obj[promisifiedKey] = makeNodePromisified(key, THIS, key, fn, suffix, multiArgs); } else { var promisified = promisifier(fn, function() { return makeNodePromisified(key, THIS, key, fn, suffix, multiArgs); }); util.notEnumerableProp(promisified, "__isPromisified__", true); obj[promisifiedKey] = promisified; } } util.toFastProperties(obj); return obj; } function promisify(callback, receiver, multiArgs) { return makeNodePromisified(callback, receiver, undefined, callback, null, multiArgs); } Promise.promisify = function (fn, options) { if (typeof fn !== "function") { throw new TypeError("expecting a function but got " + util.classString(fn)); } if (isPromisified(fn)) { return fn; } options = Object(options); var receiver = options.context === undefined ? THIS : options.context; var multiArgs = !!options.multiArgs; var ret = promisify(fn, receiver, multiArgs); util.copyDescriptors(fn, ret, propsFilter); return ret; }; Promise.promisifyAll = function (target, options) { if (typeof target !== "function" && typeof target !== "object") { throw new TypeError("the target of promisifyAll must be an object or a function\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } options = Object(options); var multiArgs = !!options.multiArgs; var suffix = options.suffix; if (typeof suffix !== "string") suffix = defaultSuffix; var filter = options.filter; if (typeof filter !== "function") filter = defaultFilter; var promisifier = options.promisifier; if (typeof promisifier !== "function") promisifier = makeNodePromisified; if (!util.isIdentifier(suffix)) { throw new RangeError("suffix must be a valid identifier\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } var keys = util.inheritedDataKeys(target); for (var i = 0; i < keys.length; ++i) { var value = target[keys[i]]; if (keys[i] !== "constructor" && util.isClass(value)) { promisifyAll(value.prototype, suffix, filter, promisifier, multiArgs); promisifyAll(value, suffix, filter, promisifier, multiArgs); } } return promisifyAll(target, suffix, filter, promisifier, multiArgs); }; }; },{"./errors":12,"./nodeback":20,"./util":36}],25:[function(_dereq_,module,exports){ "use strict"; module.exports = function( Promise, PromiseArray, tryConvertToPromise, apiRejection) { var util = _dereq_("./util"); var isObject = util.isObject; var es5 = _dereq_("./es5"); var Es6Map; if (typeof Map === "function") Es6Map = Map; var mapToEntries = (function() { var index = 0; var size = 0; function extractEntry(value, key) { this[index] = value; this[index + size] = key; index++; } return function mapToEntries(map) { size = map.size; index = 0; var ret = new Array(map.size * 2); map.forEach(extractEntry, ret); return ret; }; })(); var entriesToMap = function(entries) { var ret = new Es6Map(); var length = entries.length / 2 | 0; for (var i = 0; i < length; ++i) { var key = entries[length + i]; var value = entries[i]; ret.set(key, value); } return ret; }; function PropertiesPromiseArray(obj) { var isMap = false; var entries; if (Es6Map !== undefined && obj instanceof Es6Map) { entries = mapToEntries(obj); isMap = true; } else { var keys = es5.keys(obj); var len = keys.length; entries = new Array(len * 2); for (var i = 0; i < len; ++i) { var key = keys[i]; entries[i] = obj[key]; entries[i + len] = key; } } this.constructor$(entries); this._isMap = isMap; this._init$(undefined, -3); } util.inherits(PropertiesPromiseArray, PromiseArray); PropertiesPromiseArray.prototype._init = function () {}; PropertiesPromiseArray.prototype._promiseFulfilled = function (value, index) { this._values[index] = value; var totalResolved = ++this._totalResolved; if (totalResolved >= this._length) { var val; if (this._isMap) { val = entriesToMap(this._values); } else { val = {}; var keyOffset = this.length(); for (var i = 0, len = this.length(); i < len; ++i) { val[this._values[i + keyOffset]] = this._values[i]; } } this._resolve(val); return true; } return false; }; PropertiesPromiseArray.prototype.shouldCopyValues = function () { return false; }; PropertiesPromiseArray.prototype.getActualLength = function (len) { return len >> 1; }; function props(promises) { var ret; var castValue = tryConvertToPromise(promises); if (!isObject(castValue)) { return apiRejection("cannot await properties of a non-object\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } else if (castValue instanceof Promise) { ret = castValue._then( Promise.props, undefined, undefined, undefined, undefined); } else { ret = new PropertiesPromiseArray(castValue).promise(); } if (castValue instanceof Promise) { ret._propagateFrom(castValue, 2); } return ret; } Promise.prototype.props = function () { return props(this); }; Promise.props = function (promises) { return props(promises); }; }; },{"./es5":13,"./util":36}],26:[function(_dereq_,module,exports){ "use strict"; function arrayMove(src, srcIndex, dst, dstIndex, len) { for (var j = 0; j < len; ++j) { dst[j + dstIndex] = src[j + srcIndex]; src[j + srcIndex] = void 0; } } function Queue(capacity) { this._capacity = capacity; this._length = 0; this._front = 0; } Queue.prototype._willBeOverCapacity = function (size) { return this._capacity < size; }; Queue.prototype._pushOne = function (arg) { var length = this.length(); this._checkCapacity(length + 1); var i = (this._front + length) & (this._capacity - 1); this[i] = arg; this._length = length + 1; }; Queue.prototype._unshiftOne = function(value) { var capacity = this._capacity; this._checkCapacity(this.length() + 1); var front = this._front; var i = (((( front - 1 ) & ( capacity - 1) ) ^ capacity ) - capacity ); this[i] = value; this._front = i; this._length = this.length() + 1; }; Queue.prototype.unshift = function(fn, receiver, arg) { this._unshiftOne(arg); this._unshiftOne(receiver); this._unshiftOne(fn); }; Queue.prototype.push = function (fn, receiver, arg) { var length = this.length() + 3; if (this._willBeOverCapacity(length)) { this._pushOne(fn); this._pushOne(receiver); this._pushOne(arg); return; } var j = this._front + length - 3; this._checkCapacity(length); var wrapMask = this._capacity - 1; this[(j + 0) & wrapMask] = fn; this[(j + 1) & wrapMask] = receiver; this[(j + 2) & wrapMask] = arg; this._length = length; }; Queue.prototype.shift = function () { var front = this._front, ret = this[front]; this[front] = undefined; this._front = (front + 1) & (this._capacity - 1); this._length--; return ret; }; Queue.prototype.length = function () { return this._length; }; Queue.prototype._checkCapacity = function (size) { if (this._capacity < size) { this._resizeTo(this._capacity << 1); } }; Queue.prototype._resizeTo = function (capacity) { var oldCapacity = this._capacity; this._capacity = capacity; var front = this._front; var length = this._length; var moveItemsCount = (front + length) & (oldCapacity - 1); arrayMove(this, 0, this, oldCapacity, moveItemsCount); }; module.exports = Queue; },{}],27:[function(_dereq_,module,exports){ "use strict"; module.exports = function( Promise, INTERNAL, tryConvertToPromise, apiRejection) { var util = _dereq_("./util"); var raceLater = function (promise) { return promise.then(function(array) { return race(array, promise); }); }; function race(promises, parent) { var maybePromise = tryConvertToPromise(promises); if (maybePromise instanceof Promise) { return raceLater(maybePromise); } else { promises = util.asArray(promises); if (promises === null) return apiRejection("expecting an array or an iterable object but got " + util.classString(promises)); } var ret = new Promise(INTERNAL); if (parent !== undefined) { ret._propagateFrom(parent, 3); } var fulfill = ret._fulfill; var reject = ret._reject; for (var i = 0, len = promises.length; i < len; ++i) { var val = promises[i]; if (val === undefined && !(i in promises)) { continue; } Promise.cast(val)._then(fulfill, reject, undefined, ret, null); } return ret; } Promise.race = function (promises) { return race(promises, undefined); }; Promise.prototype.race = function () { return race(this, undefined); }; }; },{"./util":36}],28:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, apiRejection, tryConvertToPromise, INTERNAL, debug) { var getDomain = Promise._getDomain; var util = _dereq_("./util"); var tryCatch = util.tryCatch; function ReductionPromiseArray(promises, fn, initialValue, _each) { this.constructor$(promises); var domain = getDomain(); this._fn = domain === null ? fn : util.domainBind(domain, fn); if (initialValue !== undefined) { initialValue = Promise.resolve(initialValue); initialValue._attachCancellationCallback(this); } this._initialValue = initialValue; this._currentCancellable = null; if(_each === INTERNAL) { this._eachValues = Array(this._length); } else if (_each === 0) { this._eachValues = null; } else { this._eachValues = undefined; } this._promise._captureStackTrace(); this._init$(undefined, -5); } util.inherits(ReductionPromiseArray, PromiseArray); ReductionPromiseArray.prototype._gotAccum = function(accum) { if (this._eachValues !== undefined && this._eachValues !== null && accum !== INTERNAL) { this._eachValues.push(accum); } }; ReductionPromiseArray.prototype._eachComplete = function(value) { if (this._eachValues !== null) { this._eachValues.push(value); } return this._eachValues; }; ReductionPromiseArray.prototype._init = function() {}; ReductionPromiseArray.prototype._resolveEmptyArray = function() { this._resolve(this._eachValues !== undefined ? this._eachValues : this._initialValue); }; ReductionPromiseArray.prototype.shouldCopyValues = function () { return false; }; ReductionPromiseArray.prototype._resolve = function(value) { this._promise._resolveCallback(value); this._values = null; }; ReductionPromiseArray.prototype._resultCancelled = function(sender) { if (sender === this._initialValue) return this._cancel(); if (this._isResolved()) return; this._resultCancelled$(); if (this._currentCancellable instanceof Promise) { this._currentCancellable.cancel(); } if (this._initialValue instanceof Promise) { this._initialValue.cancel(); } }; ReductionPromiseArray.prototype._iterate = function (values) { this._values = values; var value; var i; var length = values.length; if (this._initialValue !== undefined) { value = this._initialValue; i = 0; } else { value = Promise.resolve(values[0]); i = 1; } this._currentCancellable = value; if (!value.isRejected()) { for (; i < length; ++i) { var ctx = { accum: null, value: values[i], index: i, length: length, array: this }; value = value._then(gotAccum, undefined, undefined, ctx, undefined); } } if (this._eachValues !== undefined) { value = value ._then(this._eachComplete, undefined, undefined, this, undefined); } value._then(completed, completed, undefined, value, this); }; Promise.prototype.reduce = function (fn, initialValue) { return reduce(this, fn, initialValue, null); }; Promise.reduce = function (promises, fn, initialValue, _each) { return reduce(promises, fn, initialValue, _each); }; function completed(valueOrReason, array) { if (this.isFulfilled()) { array._resolve(valueOrReason); } else { array._reject(valueOrReason); } } function reduce(promises, fn, initialValue, _each) { if (typeof fn !== "function") { return apiRejection("expecting a function but got " + util.classString(fn)); } var array = new ReductionPromiseArray(promises, fn, initialValue, _each); return array.promise(); } function gotAccum(accum) { this.accum = accum; this.array._gotAccum(accum); var value = tryConvertToPromise(this.value, this.array._promise); if (value instanceof Promise) { this.array._currentCancellable = value; return value._then(gotValue, undefined, undefined, this, undefined); } else { return gotValue.call(this, value); } } function gotValue(value) { var array = this.array; var promise = array._promise; var fn = tryCatch(array._fn); promise._pushContext(); var ret; if (array._eachValues !== undefined) { ret = fn.call(promise._boundValue(), value, this.index, this.length); } else { ret = fn.call(promise._boundValue(), this.accum, value, this.index, this.length); } if (ret instanceof Promise) { array._currentCancellable = ret; } var promiseCreated = promise._popContext(); debug.checkForgottenReturns( ret, promiseCreated, array._eachValues !== undefined ? "Promise.each" : "Promise.reduce", promise ); return ret; } }; },{"./util":36}],29:[function(_dereq_,module,exports){ "use strict"; var util = _dereq_("./util"); var schedule; var noAsyncScheduler = function() { throw new Error("No async scheduler available\u000a\u000a See http://goo.gl/MqrFmX\u000a"); }; var NativePromise = util.getNativePromise(); if (util.isNode && typeof MutationObserver === "undefined") { var GlobalSetImmediate = global.setImmediate; var ProcessNextTick = process.nextTick; schedule = util.isRecentNode ? function(fn) { GlobalSetImmediate.call(global, fn); } : function(fn) { ProcessNextTick.call(process, fn); }; } else if (typeof NativePromise === "function" && typeof NativePromise.resolve === "function") { var nativePromise = NativePromise.resolve(); schedule = function(fn) { nativePromise.then(fn); }; } else if ((typeof MutationObserver !== "undefined") && !(typeof window !== "undefined" && window.navigator && (window.navigator.standalone || window.cordova))) { schedule = (function() { var div = document.createElement("div"); var opts = {attributes: true}; var toggleScheduled = false; var div2 = document.createElement("div"); var o2 = new MutationObserver(function() { div.classList.toggle("foo"); toggleScheduled = false; }); o2.observe(div2, opts); var scheduleToggle = function() { if (toggleScheduled) return; toggleScheduled = true; div2.classList.toggle("foo"); }; return function schedule(fn) { var o = new MutationObserver(function() { o.disconnect(); fn(); }); o.observe(div, opts); scheduleToggle(); }; })(); } else if (typeof setImmediate !== "undefined") { schedule = function (fn) { setImmediate(fn); }; } else if (typeof setTimeout !== "undefined") { schedule = function (fn) { setTimeout(fn, 0); }; } else { schedule = noAsyncScheduler; } module.exports = schedule; },{"./util":36}],30:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, debug) { var PromiseInspection = Promise.PromiseInspection; var util = _dereq_("./util"); function SettledPromiseArray(values) { this.constructor$(values); } util.inherits(SettledPromiseArray, PromiseArray); SettledPromiseArray.prototype._promiseResolved = function (index, inspection) { this._values[index] = inspection; var totalResolved = ++this._totalResolved; if (totalResolved >= this._length) { this._resolve(this._values); return true; } return false; }; SettledPromiseArray.prototype._promiseFulfilled = function (value, index) { var ret = new PromiseInspection(); ret._bitField = 33554432; ret._settledValueField = value; return this._promiseResolved(index, ret); }; SettledPromiseArray.prototype._promiseRejected = function (reason, index) { var ret = new PromiseInspection(); ret._bitField = 16777216; ret._settledValueField = reason; return this._promiseResolved(index, ret); }; Promise.settle = function (promises) { debug.deprecated(".settle()", ".reflect()"); return new SettledPromiseArray(promises).promise(); }; Promise.prototype.settle = function () { return Promise.settle(this); }; }; },{"./util":36}],31:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, PromiseArray, apiRejection) { var util = _dereq_("./util"); var RangeError = _dereq_("./errors").RangeError; var AggregateError = _dereq_("./errors").AggregateError; var isArray = util.isArray; var CANCELLATION = {}; function SomePromiseArray(values) { this.constructor$(values); this._howMany = 0; this._unwrap = false; this._initialized = false; } util.inherits(SomePromiseArray, PromiseArray); SomePromiseArray.prototype._init = function () { if (!this._initialized) { return; } if (this._howMany === 0) { this._resolve([]); return; } this._init$(undefined, -5); var isArrayResolved = isArray(this._values); if (!this._isResolved() && isArrayResolved && this._howMany > this._canPossiblyFulfill()) { this._reject(this._getRangeError(this.length())); } }; SomePromiseArray.prototype.init = function () { this._initialized = true; this._init(); }; SomePromiseArray.prototype.setUnwrap = function () { this._unwrap = true; }; SomePromiseArray.prototype.howMany = function () { return this._howMany; }; SomePromiseArray.prototype.setHowMany = function (count) { this._howMany = count; }; SomePromiseArray.prototype._promiseFulfilled = function (value) { this._addFulfilled(value); if (this._fulfilled() === this.howMany()) { this._values.length = this.howMany(); if (this.howMany() === 1 && this._unwrap) { this._resolve(this._values[0]); } else { this._resolve(this._values); } return true; } return false; }; SomePromiseArray.prototype._promiseRejected = function (reason) { this._addRejected(reason); return this._checkOutcome(); }; SomePromiseArray.prototype._promiseCancelled = function () { if (this._values instanceof Promise || this._values == null) { return this._cancel(); } this._addRejected(CANCELLATION); return this._checkOutcome(); }; SomePromiseArray.prototype._checkOutcome = function() { if (this.howMany() > this._canPossiblyFulfill()) { var e = new AggregateError(); for (var i = this.length(); i < this._values.length; ++i) { if (this._values[i] !== CANCELLATION) { e.push(this._values[i]); } } if (e.length > 0) { this._reject(e); } else { this._cancel(); } return true; } return false; }; SomePromiseArray.prototype._fulfilled = function () { return this._totalResolved; }; SomePromiseArray.prototype._rejected = function () { return this._values.length - this.length(); }; SomePromiseArray.prototype._addRejected = function (reason) { this._values.push(reason); }; SomePromiseArray.prototype._addFulfilled = function (value) { this._values[this._totalResolved++] = value; }; SomePromiseArray.prototype._canPossiblyFulfill = function () { return this.length() - this._rejected(); }; SomePromiseArray.prototype._getRangeError = function (count) { var message = "Input array must contain at least " + this._howMany + " items but contains only " + count + " items"; return new RangeError(message); }; SomePromiseArray.prototype._resolveEmptyArray = function () { this._reject(this._getRangeError(0)); }; function some(promises, howMany) { if ((howMany | 0) !== howMany || howMany < 0) { return apiRejection("expecting a positive integer\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } var ret = new SomePromiseArray(promises); var promise = ret.promise(); ret.setHowMany(howMany); ret.init(); return promise; } Promise.some = function (promises, howMany) { return some(promises, howMany); }; Promise.prototype.some = function (howMany) { return some(this, howMany); }; Promise._SomePromiseArray = SomePromiseArray; }; },{"./errors":12,"./util":36}],32:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise) { function PromiseInspection(promise) { if (promise !== undefined) { promise = promise._target(); this._bitField = promise._bitField; this._settledValueField = promise._isFateSealed() ? promise._settledValue() : undefined; } else { this._bitField = 0; this._settledValueField = undefined; } } PromiseInspection.prototype._settledValue = function() { return this._settledValueField; }; var value = PromiseInspection.prototype.value = function () { if (!this.isFulfilled()) { throw new TypeError("cannot get fulfillment value of a non-fulfilled promise\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } return this._settledValue(); }; var reason = PromiseInspection.prototype.error = PromiseInspection.prototype.reason = function () { if (!this.isRejected()) { throw new TypeError("cannot get rejection reason of a non-rejected promise\u000a\u000a See http://goo.gl/MqrFmX\u000a"); } return this._settledValue(); }; var isFulfilled = PromiseInspection.prototype.isFulfilled = function() { return (this._bitField & 33554432) !== 0; }; var isRejected = PromiseInspection.prototype.isRejected = function () { return (this._bitField & 16777216) !== 0; }; var isPending = PromiseInspection.prototype.isPending = function () { return (this._bitField & 50397184) === 0; }; var isResolved = PromiseInspection.prototype.isResolved = function () { return (this._bitField & 50331648) !== 0; }; PromiseInspection.prototype.isCancelled = function() { return (this._bitField & 8454144) !== 0; }; Promise.prototype.__isCancelled = function() { return (this._bitField & 65536) === 65536; }; Promise.prototype._isCancelled = function() { return this._target().__isCancelled(); }; Promise.prototype.isCancelled = function() { return (this._target()._bitField & 8454144) !== 0; }; Promise.prototype.isPending = function() { return isPending.call(this._target()); }; Promise.prototype.isRejected = function() { return isRejected.call(this._target()); }; Promise.prototype.isFulfilled = function() { return isFulfilled.call(this._target()); }; Promise.prototype.isResolved = function() { return isResolved.call(this._target()); }; Promise.prototype.value = function() { return value.call(this._target()); }; Promise.prototype.reason = function() { var target = this._target(); target._unsetRejectionIsUnhandled(); return reason.call(target); }; Promise.prototype._value = function() { return this._settledValue(); }; Promise.prototype._reason = function() { this._unsetRejectionIsUnhandled(); return this._settledValue(); }; Promise.PromiseInspection = PromiseInspection; }; },{}],33:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL) { var util = _dereq_("./util"); var errorObj = util.errorObj; var isObject = util.isObject; function tryConvertToPromise(obj, context) { if (isObject(obj)) { if (obj instanceof Promise) return obj; var then = getThen(obj); if (then === errorObj) { if (context) context._pushContext(); var ret = Promise.reject(then.e); if (context) context._popContext(); return ret; } else if (typeof then === "function") { if (isAnyBluebirdPromise(obj)) { var ret = new Promise(INTERNAL); obj._then( ret._fulfill, ret._reject, undefined, ret, null ); return ret; } return doThenable(obj, then, context); } } return obj; } function doGetThen(obj) { return obj.then; } function getThen(obj) { try { return doGetThen(obj); } catch (e) { errorObj.e = e; return errorObj; } } var hasProp = {}.hasOwnProperty; function isAnyBluebirdPromise(obj) { try { return hasProp.call(obj, "_promise0"); } catch (e) { return false; } } function doThenable(x, then, context) { var promise = new Promise(INTERNAL); var ret = promise; if (context) context._pushContext(); promise._captureStackTrace(); if (context) context._popContext(); var synchronous = true; var result = util.tryCatch(then).call(x, resolve, reject); synchronous = false; if (promise && result === errorObj) { promise._rejectCallback(result.e, true, true); promise = null; } function resolve(value) { if (!promise) return; promise._resolveCallback(value); promise = null; } function reject(reason) { if (!promise) return; promise._rejectCallback(reason, synchronous, true); promise = null; } return ret; } return tryConvertToPromise; }; },{"./util":36}],34:[function(_dereq_,module,exports){ "use strict"; module.exports = function(Promise, INTERNAL, debug) { var util = _dereq_("./util"); var TimeoutError = Promise.TimeoutError; function HandleWrapper(handle) { this.handle = handle; } HandleWrapper.prototype._resultCancelled = function() { clearTimeout(this.handle); }; var afterValue = function(value) { return delay(+this).thenReturn(value); }; var delay = Promise.delay = function (ms, value) { var ret; var handle; if (value !== undefined) { ret = Promise.resolve(value) ._then(afterValue, null, null, ms, undefined); if (debug.cancellation() && value instanceof Promise) { ret._setOnCancel(value); } } else { ret = new Promise(INTERNAL); handle = setTimeout(function() { ret._fulfill(); }, +ms); if (debug.cancellation()) { ret._setOnCancel(new HandleWrapper(handle)); } ret._captureStackTrace(); } ret._setAsyncGuaranteed(); return ret; }; Promise.prototype.delay = function (ms) { return delay(ms, this); }; var afterTimeout = function (promise, message, parent) { var err; if (typeof message !== "string") { if (message instanceof Error) { err = message; } else { err = new TimeoutError("operation timed out"); } } else { err = new TimeoutError(message); } util.markAsOriginatingFromRejection(err); promise._attachExtraTrace(err); promise._reject(err); if (parent != null) { parent.cancel(); } }; function successClear(value) { clearTimeout(this.handle); return value; } function failureClear(reason) { clearTimeout(this.handle); throw reason; } Promise.prototype.timeout = function (ms, message) { ms = +ms; var ret, parent; var handleWrapper = new HandleWrapper(setTimeout(function timeoutTimeout() { if (ret.isPending()) { afterTimeout(ret, message, parent); } }, ms)); if (debug.cancellation()) { parent = this.then(); ret = parent._then(successClear, failureClear, undefined, handleWrapper, undefined); ret._setOnCancel(handleWrapper); } else { ret = this._then(successClear, failureClear, undefined, handleWrapper, undefined); } return ret; }; }; },{"./util":36}],35:[function(_dereq_,module,exports){ "use strict"; module.exports = function (Promise, apiRejection, tryConvertToPromise, createContext, INTERNAL, debug) { var util = _dereq_("./util"); var TypeError = _dereq_("./errors").TypeError; var inherits = _dereq_("./util").inherits; var errorObj = util.errorObj; var tryCatch = util.tryCatch; var NULL = {}; function thrower(e) { setTimeout(function(){throw e;}, 0); } function castPreservingDisposable(thenable) { var maybePromise = tryConvertToPromise(thenable); if (maybePromise !== thenable && typeof thenable._isDisposable === "function" && typeof thenable._getDisposer === "function" && thenable._isDisposable()) { maybePromise._setDisposable(thenable._getDisposer()); } return maybePromise; } function dispose(resources, inspection) { var i = 0; var len = resources.length; var ret = new Promise(INTERNAL); function iterator() { if (i >= len) return ret._fulfill(); var maybePromise = castPreservingDisposable(resources[i++]); if (maybePromise instanceof Promise && maybePromise._isDisposable()) { try { maybePromise = tryConvertToPromise( maybePromise._getDisposer().tryDispose(inspection), resources.promise); } catch (e) { return thrower(e); } if (maybePromise instanceof Promise) { return maybePromise._then(iterator, thrower, null, null, null); } } iterator(); } iterator(); return ret; } function Disposer(data, promise, context) { this._data = data; this._promise = promise; this._context = context; } Disposer.prototype.data = function () { return this._data; }; Disposer.prototype.promise = function () { return this._promise; }; Disposer.prototype.resource = function () { if (this.promise().isFulfilled()) { return this.promise().value(); } return NULL; }; Disposer.prototype.tryDispose = function(inspection) { var resource = this.resource(); var context = this._context; if (context !== undefined) context._pushContext(); var ret = resource !== NULL ? this.doDispose(resource, inspection) : null; if (context !== undefined) context._popContext(); this._promise._unsetDisposable(); this._data = null; return ret; }; Disposer.isDisposer = function (d) { return (d != null && typeof d.resource === "function" && typeof d.tryDispose === "function"); }; function FunctionDisposer(fn, promise, context) { this.constructor$(fn, promise, context); } inherits(FunctionDisposer, Disposer); FunctionDisposer.prototype.doDispose = function (resource, inspection) { var fn = this.data(); return fn.call(resource, resource, inspection); }; function maybeUnwrapDisposer(value) { if (Disposer.isDisposer(value)) { this.resources[this.index]._setDisposable(value); return value.promise(); } return value; } function ResourceList(length) { this.length = length; this.promise = null; this[length-1] = null; } ResourceList.prototype._resultCancelled = function() { var len = this.length; for (var i = 0; i < len; ++i) { var item = this[i]; if (item instanceof Promise) { item.cancel(); } } }; Promise.using = function () { var len = arguments.length; if (len < 2) return apiRejection( "you must pass at least 2 arguments to Promise.using"); var fn = arguments[len - 1]; if (typeof fn !== "function") { return apiRejection("expecting a function but got " + util.classString(fn)); } var input; var spreadArgs = true; if (len === 2 && Array.isArray(arguments[0])) { input = arguments[0]; len = input.length; spreadArgs = false; } else { input = arguments; len--; } var resources = new ResourceList(len); for (var i = 0; i < len; ++i) { var resource = input[i]; if (Disposer.isDisposer(resource)) { var disposer = resource; resource = resource.promise(); resource._setDisposable(disposer); } else { var maybePromise = tryConvertToPromise(resource); if (maybePromise instanceof Promise) { resource = maybePromise._then(maybeUnwrapDisposer, null, null, { resources: resources, index: i }, undefined); } } resources[i] = resource; } var reflectedResources = new Array(resources.length); for (var i = 0; i < reflectedResources.length; ++i) { reflectedResources[i] = Promise.resolve(resources[i]).reflect(); } var resultPromise = Promise.all(reflectedResources) .then(function(inspections) { for (var i = 0; i < inspections.length; ++i) { var inspection = inspections[i]; if (inspection.isRejected()) { errorObj.e = inspection.error(); return errorObj; } else if (!inspection.isFulfilled()) { resultPromise.cancel(); return; } inspections[i] = inspection.value(); } promise._pushContext(); fn = tryCatch(fn); var ret = spreadArgs ? fn.apply(undefined, inspections) : fn(inspections); var promiseCreated = promise._popContext(); debug.checkForgottenReturns( ret, promiseCreated, "Promise.using", promise); return ret; }); var promise = resultPromise.lastly(function() { var inspection = new Promise.PromiseInspection(resultPromise); return dispose(resources, inspection); }); resources.promise = promise; promise._setOnCancel(resources); return promise; }; Promise.prototype._setDisposable = function (disposer) { this._bitField = this._bitField | 131072; this._disposer = disposer; }; Promise.prototype._isDisposable = function () { return (this._bitField & 131072) > 0; }; Promise.prototype._getDisposer = function () { return this._disposer; }; Promise.prototype._unsetDisposable = function () { this._bitField = this._bitField & (~131072); this._disposer = undefined; }; Promise.prototype.disposer = function (fn) { if (typeof fn === "function") { return new FunctionDisposer(fn, this, createContext()); } throw new TypeError(); }; }; },{"./errors":12,"./util":36}],36:[function(_dereq_,module,exports){ "use strict"; var es5 = _dereq_("./es5"); var canEvaluate = typeof navigator == "undefined"; var errorObj = {e: {}}; var tryCatchTarget; var globalObject = typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : typeof global !== "undefined" ? global : this !== undefined ? this : null; function tryCatcher() { try { var target = tryCatchTarget; tryCatchTarget = null; return target.apply(this, arguments); } catch (e) { errorObj.e = e; return errorObj; } } function tryCatch(fn) { tryCatchTarget = fn; return tryCatcher; } var inherits = function(Child, Parent) { var hasProp = {}.hasOwnProperty; function T() { this.constructor = Child; this.constructor$ = Parent; for (var propertyName in Parent.prototype) { if (hasProp.call(Parent.prototype, propertyName) && propertyName.charAt(propertyName.length-1) !== "$" ) { this[propertyName + "$"] = Parent.prototype[propertyName]; } } } T.prototype = Parent.prototype; Child.prototype = new T(); return Child.prototype; }; function isPrimitive(val) { return val == null || val === true || val === false || typeof val === "string" || typeof val === "number"; } function isObject(value) { return typeof value === "function" || typeof value === "object" && value !== null; } function maybeWrapAsError(maybeError) { if (!isPrimitive(maybeError)) return maybeError; return new Error(safeToString(maybeError)); } function withAppended(target, appendee) { var len = target.length; var ret = new Array(len + 1); var i; for (i = 0; i < len; ++i) { ret[i] = target[i]; } ret[i] = appendee; return ret; } function getDataPropertyOrDefault(obj, key, defaultValue) { if (es5.isES5) { var desc = Object.getOwnPropertyDescriptor(obj, key); if (desc != null) { return desc.get == null && desc.set == null ? desc.value : defaultValue; } } else { return {}.hasOwnProperty.call(obj, key) ? obj[key] : undefined; } } function notEnumerableProp(obj, name, value) { if (isPrimitive(obj)) return obj; var descriptor = { value: value, configurable: true, enumerable: false, writable: true }; es5.defineProperty(obj, name, descriptor); return obj; } function thrower(r) { throw r; } var inheritedDataKeys = (function() { var excludedPrototypes = [ Array.prototype, Object.prototype, Function.prototype ]; var isExcludedProto = function(val) { for (var i = 0; i < excludedPrototypes.length; ++i) { if (excludedPrototypes[i] === val) { return true; } } return false; }; if (es5.isES5) { var getKeys = Object.getOwnPropertyNames; return function(obj) { var ret = []; var visitedKeys = Object.create(null); while (obj != null && !isExcludedProto(obj)) { var keys; try { keys = getKeys(obj); } catch (e) { return ret; } for (var i = 0; i < keys.length; ++i) { var key = keys[i]; if (visitedKeys[key]) continue; visitedKeys[key] = true; var desc = Object.getOwnPropertyDescriptor(obj, key); if (desc != null && desc.get == null && desc.set == null) { ret.push(key); } } obj = es5.getPrototypeOf(obj); } return ret; }; } else { var hasProp = {}.hasOwnProperty; return function(obj) { if (isExcludedProto(obj)) return []; var ret = []; /*jshint forin:false */ enumeration: for (var key in obj) { if (hasProp.call(obj, key)) { ret.push(key); } else { for (var i = 0; i < excludedPrototypes.length; ++i) { if (hasProp.call(excludedPrototypes[i], key)) { continue enumeration; } } ret.push(key); } } return ret; }; } })(); var thisAssignmentPattern = /this\s*\.\s*\S+\s*=/; function isClass(fn) { try { if (typeof fn === "function") { var keys = es5.names(fn.prototype); var hasMethods = es5.isES5 && keys.length > 1; var hasMethodsOtherThanConstructor = keys.length > 0 && !(keys.length === 1 && keys[0] === "constructor"); var hasThisAssignmentAndStaticMethods = thisAssignmentPattern.test(fn + "") && es5.names(fn).length > 0; if (hasMethods || hasMethodsOtherThanConstructor || hasThisAssignmentAndStaticMethods) { return true; } } return false; } catch (e) { return false; } } function toFastProperties(obj) { /*jshint -W027,-W055,-W031*/ function FakeConstructor() {} FakeConstructor.prototype = obj; var l = 8; while (l--) new FakeConstructor(); return obj; eval(obj); } var rident = /^[a-z$_][a-z$_0-9]*$/i; function isIdentifier(str) { return rident.test(str); } function filledRange(count, prefix, suffix) { var ret = new Array(count); for(var i = 0; i < count; ++i) { ret[i] = prefix + i + suffix; } return ret; } function safeToString(obj) { try { return obj + ""; } catch (e) { return "[no string representation]"; } } function isError(obj) { return obj !== null && typeof obj === "object" && typeof obj.message === "string" && typeof obj.name === "string"; } function markAsOriginatingFromRejection(e) { try { notEnumerableProp(e, "isOperational", true); } catch(ignore) {} } function originatesFromRejection(e) { if (e == null) return false; return ((e instanceof Error["__BluebirdErrorTypes__"].OperationalError) || e["isOperational"] === true); } function canAttachTrace(obj) { return isError(obj) && es5.propertyIsWritable(obj, "stack"); } var ensureErrorObject = (function() { if (!("stack" in new Error())) { return function(value) { if (canAttachTrace(value)) return value; try {throw new Error(safeToString(value));} catch(err) {return err;} }; } else { return function(value) { if (canAttachTrace(value)) return value; return new Error(safeToString(value)); }; } })(); function classString(obj) { return {}.toString.call(obj); } function copyDescriptors(from, to, filter) { var keys = es5.names(from); for (var i = 0; i < keys.length; ++i) { var key = keys[i]; if (filter(key)) { try { es5.defineProperty(to, key, es5.getDescriptor(from, key)); } catch (ignore) {} } } } var asArray = function(v) { if (es5.isArray(v)) { return v; } return null; }; if (typeof Symbol !== "undefined" && Symbol.iterator) { var ArrayFrom = typeof Array.from === "function" ? function(v) { return Array.from(v); } : function(v) { var ret = []; var it = v[Symbol.iterator](); var itResult; while (!((itResult = it.next()).done)) { ret.push(itResult.value); } return ret; }; asArray = function(v) { if (es5.isArray(v)) { return v; } else if (v != null && typeof v[Symbol.iterator] === "function") { return ArrayFrom(v); } return null; }; } var isNode = typeof process !== "undefined" && classString(process).toLowerCase() === "[object process]"; function env(key, def) { return isNode ? process.env[key] : def; } function getNativePromise() { if (typeof Promise === "function") { try { var promise = new Promise(function(){}); if ({}.toString.call(promise) === "[object Promise]") { return Promise; } } catch (e) {} } } function domainBind(self, cb) { return self.bind(cb); } var ret = { isClass: isClass, isIdentifier: isIdentifier, inheritedDataKeys: inheritedDataKeys, getDataPropertyOrDefault: getDataPropertyOrDefault, thrower: thrower, isArray: es5.isArray, asArray: asArray, notEnumerableProp: notEnumerableProp, isPrimitive: isPrimitive, isObject: isObject, isError: isError, canEvaluate: canEvaluate, errorObj: errorObj, tryCatch: tryCatch, inherits: inherits, withAppended: withAppended, maybeWrapAsError: maybeWrapAsError, toFastProperties: toFastProperties, filledRange: filledRange, toString: safeToString, canAttachTrace: canAttachTrace, ensureErrorObject: ensureErrorObject, originatesFromRejection: originatesFromRejection, markAsOriginatingFromRejection: markAsOriginatingFromRejection, classString: classString, copyDescriptors: copyDescriptors, hasDevTools: typeof chrome !== "undefined" && chrome && typeof chrome.loadTimes === "function", isNode: isNode, env: env, global: globalObject, getNativePromise: getNativePromise, domainBind: domainBind }; ret.isRecentNode = ret.isNode && (function() { var version = process.versions.node.split(".").map(Number); return (version[0] === 0 && version[1] > 10) || (version[0] > 0); })(); if (ret.isNode) ret.toFastProperties(process); try {throw new Error(); } catch (e) {ret.lastLineError = e;} module.exports = ret; },{"./es5":13}]},{},[4])(4) }); ;if (typeof window !== 'undefined' && window !== null) { window.P = window.Promise; } else if (typeof self !== 'undefined' && self !== null) { self.P = self.Promise; } }).call(this,require('_process'),typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"_process":120}],180:[function(require,module,exports){ function Caseless (dict) { this.dict = dict || {} } Caseless.prototype.set = function (name, value, clobber) { if (typeof name === 'object') { for (var i in name) { this.set(i, name[i], value) } } else { if (typeof clobber === 'undefined') clobber = true var has = this.has(name) if (!clobber && has) this.dict[has] = this.dict[has] + ',' + value else this.dict[has || name] = value return has } } Caseless.prototype.has = function (name) { var keys = Object.keys(this.dict) , name = name.toLowerCase() ; for (var i=0;i= len) ? hex : unstupid("0"+hex,len); } exports.ECKey = function(curve, key, isPublic) { var priv; var c = curve(); var n = c.getN(); var bytes = Math.floor(n.bitLength()/8); if(key) { if(isPublic) { var curve = c.getCurve(); // var x = key.slice(1,bytes+1); // skip the 04 for uncompressed format // var y = key.slice(bytes+1); // this.P = new ECPointFp(curve, // curve.fromBigInteger(new BigInteger(x.toString("hex"), 16)), // curve.fromBigInteger(new BigInteger(y.toString("hex"), 16))); this.P = curve.decodePointHex(key.toString("hex")); }else{ if(key.length != bytes) return false; priv = new BigInteger(key.toString("hex"), 16); } }else{ var n1 = n.subtract(BigInteger.ONE); var r = new BigInteger(crypto.randomBytes(n.bitLength())); priv = r.mod(n1).add(BigInteger.ONE); this.P = c.getG().multiply(priv); } if(this.P) { // var pubhex = unstupid(this.P.getX().toBigInteger().toString(16),bytes*2)+unstupid(this.P.getY().toBigInteger().toString(16),bytes*2); // this.PublicKey = new Buffer("04"+pubhex,"hex"); this.PublicKey = new Buffer(c.getCurve().encodeCompressedPointHex(this.P),"hex"); } if(priv) { this.PrivateKey = new Buffer(unstupid(priv.toString(16),bytes*2),"hex"); this.deriveSharedSecret = function(key) { if(!key || !key.P) return false; var S = key.P.multiply(priv); return new Buffer(unstupid(S.getX().toBigInteger().toString(16),bytes*2),"hex"); } } } }).call(this,require("buffer").Buffer) },{"./lib/ec.js":186,"./lib/sec.js":187,"buffer":49,"crypto":58,"jsbn":233}],186:[function(require,module,exports){ // Basic Javascript Elliptic Curve implementation // Ported loosely from BouncyCastle's Java EC code // Only Fp curves implemented for now // Requires jsbn.js and jsbn2.js var BigInteger = require('jsbn').BigInteger var Barrett = BigInteger.prototype.Barrett // ---------------- // ECFieldElementFp // constructor function ECFieldElementFp(q,x) { this.x = x; // TODO if(x.compareTo(q) >= 0) error this.q = q; } function feFpEquals(other) { if(other == this) return true; return (this.q.equals(other.q) && this.x.equals(other.x)); } function feFpToBigInteger() { return this.x; } function feFpNegate() { return new ECFieldElementFp(this.q, this.x.negate().mod(this.q)); } function feFpAdd(b) { return new ECFieldElementFp(this.q, this.x.add(b.toBigInteger()).mod(this.q)); } function feFpSubtract(b) { return new ECFieldElementFp(this.q, this.x.subtract(b.toBigInteger()).mod(this.q)); } function feFpMultiply(b) { return new ECFieldElementFp(this.q, this.x.multiply(b.toBigInteger()).mod(this.q)); } function feFpSquare() { return new ECFieldElementFp(this.q, this.x.square().mod(this.q)); } function feFpDivide(b) { return new ECFieldElementFp(this.q, this.x.multiply(b.toBigInteger().modInverse(this.q)).mod(this.q)); } ECFieldElementFp.prototype.equals = feFpEquals; ECFieldElementFp.prototype.toBigInteger = feFpToBigInteger; ECFieldElementFp.prototype.negate = feFpNegate; ECFieldElementFp.prototype.add = feFpAdd; ECFieldElementFp.prototype.subtract = feFpSubtract; ECFieldElementFp.prototype.multiply = feFpMultiply; ECFieldElementFp.prototype.square = feFpSquare; ECFieldElementFp.prototype.divide = feFpDivide; // ---------------- // ECPointFp // constructor function ECPointFp(curve,x,y,z) { this.curve = curve; this.x = x; this.y = y; // Projective coordinates: either zinv == null or z * zinv == 1 // z and zinv are just BigIntegers, not fieldElements if(z == null) { this.z = BigInteger.ONE; } else { this.z = z; } this.zinv = null; //TODO: compression flag } function pointFpGetX() { if(this.zinv == null) { this.zinv = this.z.modInverse(this.curve.q); } var r = this.x.toBigInteger().multiply(this.zinv); this.curve.reduce(r); return this.curve.fromBigInteger(r); } function pointFpGetY() { if(this.zinv == null) { this.zinv = this.z.modInverse(this.curve.q); } var r = this.y.toBigInteger().multiply(this.zinv); this.curve.reduce(r); return this.curve.fromBigInteger(r); } function pointFpEquals(other) { if(other == this) return true; if(this.isInfinity()) return other.isInfinity(); if(other.isInfinity()) return this.isInfinity(); var u, v; // u = Y2 * Z1 - Y1 * Z2 u = other.y.toBigInteger().multiply(this.z).subtract(this.y.toBigInteger().multiply(other.z)).mod(this.curve.q); if(!u.equals(BigInteger.ZERO)) return false; // v = X2 * Z1 - X1 * Z2 v = other.x.toBigInteger().multiply(this.z).subtract(this.x.toBigInteger().multiply(other.z)).mod(this.curve.q); return v.equals(BigInteger.ZERO); } function pointFpIsInfinity() { if((this.x == null) && (this.y == null)) return true; return this.z.equals(BigInteger.ZERO) && !this.y.toBigInteger().equals(BigInteger.ZERO); } function pointFpNegate() { return new ECPointFp(this.curve, this.x, this.y.negate(), this.z); } function pointFpAdd(b) { if(this.isInfinity()) return b; if(b.isInfinity()) return this; // u = Y2 * Z1 - Y1 * Z2 var u = b.y.toBigInteger().multiply(this.z).subtract(this.y.toBigInteger().multiply(b.z)).mod(this.curve.q); // v = X2 * Z1 - X1 * Z2 var v = b.x.toBigInteger().multiply(this.z).subtract(this.x.toBigInteger().multiply(b.z)).mod(this.curve.q); if(BigInteger.ZERO.equals(v)) { if(BigInteger.ZERO.equals(u)) { return this.twice(); // this == b, so double } return this.curve.getInfinity(); // this = -b, so infinity } var THREE = new BigInteger("3"); var x1 = this.x.toBigInteger(); var y1 = this.y.toBigInteger(); var x2 = b.x.toBigInteger(); var y2 = b.y.toBigInteger(); var v2 = v.square(); var v3 = v2.multiply(v); var x1v2 = x1.multiply(v2); var zu2 = u.square().multiply(this.z); // x3 = v * (z2 * (z1 * u^2 - 2 * x1 * v^2) - v^3) var x3 = zu2.subtract(x1v2.shiftLeft(1)).multiply(b.z).subtract(v3).multiply(v).mod(this.curve.q); // y3 = z2 * (3 * x1 * u * v^2 - y1 * v^3 - z1 * u^3) + u * v^3 var y3 = x1v2.multiply(THREE).multiply(u).subtract(y1.multiply(v3)).subtract(zu2.multiply(u)).multiply(b.z).add(u.multiply(v3)).mod(this.curve.q); // z3 = v^3 * z1 * z2 var z3 = v3.multiply(this.z).multiply(b.z).mod(this.curve.q); return new ECPointFp(this.curve, this.curve.fromBigInteger(x3), this.curve.fromBigInteger(y3), z3); } function pointFpTwice() { if(this.isInfinity()) return this; if(this.y.toBigInteger().signum() == 0) return this.curve.getInfinity(); // TODO: optimized handling of constants var THREE = new BigInteger("3"); var x1 = this.x.toBigInteger(); var y1 = this.y.toBigInteger(); var y1z1 = y1.multiply(this.z); var y1sqz1 = y1z1.multiply(y1).mod(this.curve.q); var a = this.curve.a.toBigInteger(); // w = 3 * x1^2 + a * z1^2 var w = x1.square().multiply(THREE); if(!BigInteger.ZERO.equals(a)) { w = w.add(this.z.square().multiply(a)); } w = w.mod(this.curve.q); //this.curve.reduce(w); // x3 = 2 * y1 * z1 * (w^2 - 8 * x1 * y1^2 * z1) var x3 = w.square().subtract(x1.shiftLeft(3).multiply(y1sqz1)).shiftLeft(1).multiply(y1z1).mod(this.curve.q); // y3 = 4 * y1^2 * z1 * (3 * w * x1 - 2 * y1^2 * z1) - w^3 var y3 = w.multiply(THREE).multiply(x1).subtract(y1sqz1.shiftLeft(1)).shiftLeft(2).multiply(y1sqz1).subtract(w.square().multiply(w)).mod(this.curve.q); // z3 = 8 * (y1 * z1)^3 var z3 = y1z1.square().multiply(y1z1).shiftLeft(3).mod(this.curve.q); return new ECPointFp(this.curve, this.curve.fromBigInteger(x3), this.curve.fromBigInteger(y3), z3); } // Simple NAF (Non-Adjacent Form) multiplication algorithm // TODO: modularize the multiplication algorithm function pointFpMultiply(k) { if(this.isInfinity()) return this; if(k.signum() == 0) return this.curve.getInfinity(); var e = k; var h = e.multiply(new BigInteger("3")); var neg = this.negate(); var R = this; var i; for(i = h.bitLength() - 2; i > 0; --i) { R = R.twice(); var hBit = h.testBit(i); var eBit = e.testBit(i); if (hBit != eBit) { R = R.add(hBit ? this : neg); } } return R; } // Compute this*j + x*k (simultaneous multiplication) function pointFpMultiplyTwo(j,x,k) { var i; if(j.bitLength() > k.bitLength()) i = j.bitLength() - 1; else i = k.bitLength() - 1; var R = this.curve.getInfinity(); var both = this.add(x); while(i >= 0) { R = R.twice(); if(j.testBit(i)) { if(k.testBit(i)) { R = R.add(both); } else { R = R.add(this); } } else { if(k.testBit(i)) { R = R.add(x); } } --i; } return R; } ECPointFp.prototype.getX = pointFpGetX; ECPointFp.prototype.getY = pointFpGetY; ECPointFp.prototype.equals = pointFpEquals; ECPointFp.prototype.isInfinity = pointFpIsInfinity; ECPointFp.prototype.negate = pointFpNegate; ECPointFp.prototype.add = pointFpAdd; ECPointFp.prototype.twice = pointFpTwice; ECPointFp.prototype.multiply = pointFpMultiply; ECPointFp.prototype.multiplyTwo = pointFpMultiplyTwo; // ---------------- // ECCurveFp // constructor function ECCurveFp(q,a,b) { this.q = q; this.a = this.fromBigInteger(a); this.b = this.fromBigInteger(b); this.infinity = new ECPointFp(this, null, null); this.reducer = new Barrett(this.q); } function curveFpGetQ() { return this.q; } function curveFpGetA() { return this.a; } function curveFpGetB() { return this.b; } function curveFpEquals(other) { if(other == this) return true; return(this.q.equals(other.q) && this.a.equals(other.a) && this.b.equals(other.b)); } function curveFpGetInfinity() { return this.infinity; } function curveFpFromBigInteger(x) { return new ECFieldElementFp(this.q, x); } function curveReduce(x) { this.reducer.reduce(x); } // for now, work with hex strings because they're easier in JS function curveFpDecodePointHex(s) { switch(parseInt(s.substr(0,2), 16)) { // first byte case 0: return this.infinity; case 2: case 3: // point compression not supported yet return null; case 4: case 6: case 7: var len = (s.length - 2) / 2; var xHex = s.substr(2, len); var yHex = s.substr(len+2, len); return new ECPointFp(this, this.fromBigInteger(new BigInteger(xHex, 16)), this.fromBigInteger(new BigInteger(yHex, 16))); default: // unsupported return null; } } function curveFpEncodePointHex(p) { if (p.isInfinity()) return "00"; var xHex = p.getX().toBigInteger().toString(16); var yHex = p.getY().toBigInteger().toString(16); var oLen = this.getQ().toString(16).length; if ((oLen % 2) != 0) oLen++; while (xHex.length < oLen) { xHex = "0" + xHex; } while (yHex.length < oLen) { yHex = "0" + yHex; } return "04" + xHex + yHex; } ECCurveFp.prototype.getQ = curveFpGetQ; ECCurveFp.prototype.getA = curveFpGetA; ECCurveFp.prototype.getB = curveFpGetB; ECCurveFp.prototype.equals = curveFpEquals; ECCurveFp.prototype.getInfinity = curveFpGetInfinity; ECCurveFp.prototype.fromBigInteger = curveFpFromBigInteger; ECCurveFp.prototype.reduce = curveReduce; //ECCurveFp.prototype.decodePointHex = curveFpDecodePointHex; ECCurveFp.prototype.encodePointHex = curveFpEncodePointHex; // from: https://github.com/kaielvin/jsbn-ec-point-compression ECCurveFp.prototype.decodePointHex = function(s) { var yIsEven; switch(parseInt(s.substr(0,2), 16)) { // first byte case 0: return this.infinity; case 2: yIsEven = false; case 3: if(yIsEven == undefined) yIsEven = true; var len = s.length - 2; var xHex = s.substr(2, len); var x = this.fromBigInteger(new BigInteger(xHex,16)); var alpha = x.multiply(x.square().add(this.getA())).add(this.getB()); var beta = alpha.sqrt(); if (beta == null) throw "Invalid point compression"; var betaValue = beta.toBigInteger(); if (betaValue.testBit(0) != yIsEven) { // Use the other root beta = this.fromBigInteger(this.getQ().subtract(betaValue)); } return new ECPointFp(this,x,beta); case 4: case 6: case 7: var len = (s.length - 2) / 2; var xHex = s.substr(2, len); var yHex = s.substr(len+2, len); return new ECPointFp(this, this.fromBigInteger(new BigInteger(xHex, 16)), this.fromBigInteger(new BigInteger(yHex, 16))); default: // unsupported return null; } } ECCurveFp.prototype.encodeCompressedPointHex = function(p) { if (p.isInfinity()) return "00"; var xHex = p.getX().toBigInteger().toString(16); var oLen = this.getQ().toString(16).length; if ((oLen % 2) != 0) oLen++; while (xHex.length < oLen) xHex = "0" + xHex; var yPrefix; if(p.getY().toBigInteger().isEven()) yPrefix = "02"; else yPrefix = "03"; return yPrefix + xHex; } ECFieldElementFp.prototype.getR = function() { if(this.r != undefined) return this.r; this.r = null; var bitLength = this.q.bitLength(); if (bitLength > 128) { var firstWord = this.q.shiftRight(bitLength - 64); if (firstWord.intValue() == -1) { this.r = BigInteger.ONE.shiftLeft(bitLength).subtract(this.q); } } return this.r; } ECFieldElementFp.prototype.modMult = function(x1,x2) { return this.modReduce(x1.multiply(x2)); } ECFieldElementFp.prototype.modReduce = function(x) { if (this.getR() != null) { var qLen = q.bitLength(); while (x.bitLength() > (qLen + 1)) { var u = x.shiftRight(qLen); var v = x.subtract(u.shiftLeft(qLen)); if (!this.getR().equals(BigInteger.ONE)) { u = u.multiply(this.getR()); } x = u.add(v); } while (x.compareTo(q) >= 0) { x = x.subtract(q); } } else { x = x.mod(q); } return x; } ECFieldElementFp.prototype.sqrt = function() { if (!this.q.testBit(0)) throw "unsupported"; // p mod 4 == 3 if (this.q.testBit(1)) { var z = new ECFieldElementFp(this.q,this.x.modPow(this.q.shiftRight(2).add(BigInteger.ONE),this.q)); return z.square().equals(this) ? z : null; } // p mod 4 == 1 var qMinusOne = this.q.subtract(BigInteger.ONE); var legendreExponent = qMinusOne.shiftRight(1); if (!(this.x.modPow(legendreExponent, this.q).equals(BigInteger.ONE))) { return null; } var u = qMinusOne.shiftRight(2); var k = u.shiftLeft(1).add(BigInteger.ONE); var Q = this.x; var fourQ = modDouble(modDouble(Q)); var U, V; do { var P; do { P = new BigInteger(this.q.bitLength(), new SecureRandom()); } while (P.compareTo(this.q) >= 0 || !(P.multiply(P).subtract(fourQ).modPow(legendreExponent, this.q).equals(qMinusOne))); var result = this.lucasSequence(P, Q, k); U = result[0]; V = result[1]; if (this.modMult(V, V).equals(fourQ)) { // Integer division by 2, mod q if (V.testBit(0)) { V = V.add(q); } V = V.shiftRight(1); return new ECFieldElementFp(q,V); } } while (U.equals(BigInteger.ONE) || U.equals(qMinusOne)); return null; } ECFieldElementFp.prototype.lucasSequence = function(P,Q,k) { var n = k.bitLength(); var s = k.getLowestSetBit(); var Uh = BigInteger.ONE; var Vl = BigInteger.TWO; var Vh = P; var Ql = BigInteger.ONE; var Qh = BigInteger.ONE; for (var j = n - 1; j >= s + 1; --j) { Ql = this.modMult(Ql, Qh); if (k.testBit(j)) { Qh = this.modMult(Ql, Q); Uh = this.modMult(Uh, Vh); Vl = this.modReduce(Vh.multiply(Vl).subtract(P.multiply(Ql))); Vh = this.modReduce(Vh.multiply(Vh).subtract(Qh.shiftLeft(1))); } else { Qh = Ql; Uh = this.modReduce(Uh.multiply(Vl).subtract(Ql)); Vh = this.modReduce(Vh.multiply(Vl).subtract(P.multiply(Ql))); Vl = this.modReduce(Vl.multiply(Vl).subtract(Ql.shiftLeft(1))); } } Ql = this.modMult(Ql, Qh); Qh = this.modMult(Ql, Q); Uh = this.modReduce(Uh.multiply(Vl).subtract(Ql)); Vl = this.modReduce(Vh.multiply(Vl).subtract(P.multiply(Ql))); Ql = this.modMult(Ql, Qh); for (var j = 1; j <= s; ++j) { Uh = this.modMult(Uh, Vl); Vl = this.modReduce(Vl.multiply(Vl).subtract(Ql.shiftLeft(1))); Ql = this.modMult(Ql, Ql); } return [ Uh, Vl ]; } var exports = { ECCurveFp: ECCurveFp, ECPointFp: ECPointFp, ECFieldElementFp: ECFieldElementFp } module.exports = exports },{"jsbn":233}],187:[function(require,module,exports){ // Named EC curves // Requires ec.js, jsbn.js, and jsbn2.js var BigInteger = require('jsbn').BigInteger var ECCurveFp = require('./ec.js').ECCurveFp // ---------------- // X9ECParameters // constructor function X9ECParameters(curve,g,n,h) { this.curve = curve; this.g = g; this.n = n; this.h = h; } function x9getCurve() { return this.curve; } function x9getG() { return this.g; } function x9getN() { return this.n; } function x9getH() { return this.h; } X9ECParameters.prototype.getCurve = x9getCurve; X9ECParameters.prototype.getG = x9getG; X9ECParameters.prototype.getN = x9getN; X9ECParameters.prototype.getH = x9getH; // ---------------- // SECNamedCurves function fromHex(s) { return new BigInteger(s, 16); } function secp128r1() { // p = 2^128 - 2^97 - 1 var p = fromHex("FFFFFFFDFFFFFFFFFFFFFFFFFFFFFFFF"); var a = fromHex("FFFFFFFDFFFFFFFFFFFFFFFFFFFFFFFC"); var b = fromHex("E87579C11079F43DD824993C2CEE5ED3"); //byte[] S = Hex.decode("000E0D4D696E6768756151750CC03A4473D03679"); var n = fromHex("FFFFFFFE0000000075A30D1B9038A115"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "161FF7528B899B2D0C28607CA52C5B86" + "CF5AC8395BAFEB13C02DA292DDED7A83"); return new X9ECParameters(curve, G, n, h); } function secp160k1() { // p = 2^160 - 2^32 - 2^14 - 2^12 - 2^9 - 2^8 - 2^7 - 2^3 - 2^2 - 1 var p = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFAC73"); var a = BigInteger.ZERO; var b = fromHex("7"); //byte[] S = null; var n = fromHex("0100000000000000000001B8FA16DFAB9ACA16B6B3"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "3B4C382CE37AA192A4019E763036F4F5DD4D7EBB" + "938CF935318FDCED6BC28286531733C3F03C4FEE"); return new X9ECParameters(curve, G, n, h); } function secp160r1() { // p = 2^160 - 2^31 - 1 var p = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF7FFFFFFF"); var a = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF7FFFFFFC"); var b = fromHex("1C97BEFC54BD7A8B65ACF89F81D4D4ADC565FA45"); //byte[] S = Hex.decode("1053CDE42C14D696E67687561517533BF3F83345"); var n = fromHex("0100000000000000000001F4C8F927AED3CA752257"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "4A96B5688EF573284664698968C38BB913CBFC82" + "23A628553168947D59DCC912042351377AC5FB32"); return new X9ECParameters(curve, G, n, h); } function secp192k1() { // p = 2^192 - 2^32 - 2^12 - 2^8 - 2^7 - 2^6 - 2^3 - 1 var p = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFEE37"); var a = BigInteger.ZERO; var b = fromHex("3"); //byte[] S = null; var n = fromHex("FFFFFFFFFFFFFFFFFFFFFFFE26F2FC170F69466A74DEFD8D"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "DB4FF10EC057E9AE26B07D0280B7F4341DA5D1B1EAE06C7D" + "9B2F2F6D9C5628A7844163D015BE86344082AA88D95E2F9D"); return new X9ECParameters(curve, G, n, h); } function secp192r1() { // p = 2^192 - 2^64 - 1 var p = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFFFFFFFFFFFF"); var a = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFFFFFFFFFFFC"); var b = fromHex("64210519E59C80E70FA7E9AB72243049FEB8DEECC146B9B1"); //byte[] S = Hex.decode("3045AE6FC8422F64ED579528D38120EAE12196D5"); var n = fromHex("FFFFFFFFFFFFFFFFFFFFFFFF99DEF836146BC9B1B4D22831"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "188DA80EB03090F67CBF20EB43A18800F4FF0AFD82FF1012" + "07192B95FFC8DA78631011ED6B24CDD573F977A11E794811"); return new X9ECParameters(curve, G, n, h); } function secp224r1() { // p = 2^224 - 2^96 + 1 var p = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF000000000000000000000001"); var a = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFFFFFFFFFFFFFFFFFFFE"); var b = fromHex("B4050A850C04B3ABF54132565044B0B7D7BFD8BA270B39432355FFB4"); //byte[] S = Hex.decode("BD71344799D5C7FCDC45B59FA3B9AB8F6A948BC5"); var n = fromHex("FFFFFFFFFFFFFFFFFFFFFFFFFFFF16A2E0B8F03E13DD29455C5C2A3D"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "B70E0CBD6BB4BF7F321390B94A03C1D356C21122343280D6115C1D21" + "BD376388B5F723FB4C22DFE6CD4375A05A07476444D5819985007E34"); return new X9ECParameters(curve, G, n, h); } function secp256r1() { // p = 2^224 (2^32 - 1) + 2^192 + 2^96 - 1 var p = fromHex("FFFFFFFF00000001000000000000000000000000FFFFFFFFFFFFFFFFFFFFFFFF"); var a = fromHex("FFFFFFFF00000001000000000000000000000000FFFFFFFFFFFFFFFFFFFFFFFC"); var b = fromHex("5AC635D8AA3A93E7B3EBBD55769886BC651D06B0CC53B0F63BCE3C3E27D2604B"); //byte[] S = Hex.decode("C49D360886E704936A6678E1139D26B7819F7E90"); var n = fromHex("FFFFFFFF00000000FFFFFFFFFFFFFFFFBCE6FAADA7179E84F3B9CAC2FC632551"); var h = BigInteger.ONE; var curve = new ECCurveFp(p, a, b); var G = curve.decodePointHex("04" + "6B17D1F2E12C4247F8BCE6E563A440F277037D812DEB33A0F4A13945D898C296" + "4FE342E2FE1A7F9B8EE7EB4A7C0F9E162BCE33576B315ECECBB6406837BF51F5"); return new X9ECParameters(curve, G, n, h); } // TODO: make this into a proper hashtable function getSECCurveByName(name) { if(name == "secp128r1") return secp128r1(); if(name == "secp160k1") return secp160k1(); if(name == "secp160r1") return secp160r1(); if(name == "secp192k1") return secp192k1(); if(name == "secp192r1") return secp192r1(); if(name == "secp224r1") return secp224r1(); if(name == "secp256r1") return secp256r1(); return null; } module.exports = { "secp128r1":secp128r1, "secp160k1":secp160k1, "secp160r1":secp160r1, "secp192k1":secp192k1, "secp192r1":secp192r1, "secp224r1":secp224r1, "secp256r1":secp256r1 } },{"./ec.js":186,"jsbn":233}],188:[function(require,module,exports){ 'use strict'; var hasOwn = Object.prototype.hasOwnProperty; var toStr = Object.prototype.toString; var isArray = function isArray(arr) { if (typeof Array.isArray === 'function') { return Array.isArray(arr); } return toStr.call(arr) === '[object Array]'; }; var isPlainObject = function isPlainObject(obj) { if (!obj || toStr.call(obj) !== '[object Object]') { return false; } var hasOwnConstructor = hasOwn.call(obj, 'constructor'); var hasIsPrototypeOf = obj.constructor && obj.constructor.prototype && hasOwn.call(obj.constructor.prototype, 'isPrototypeOf'); // Not own constructor property must be Object if (obj.constructor && !hasOwnConstructor && !hasIsPrototypeOf) { return false; } // Own properties are enumerated firstly, so to speed up, // if last one is own, then all properties are own. var key; for (key in obj) {/**/} return typeof key === 'undefined' || hasOwn.call(obj, key); }; module.exports = function extend() { var options, name, src, copy, copyIsArray, clone, target = arguments[0], i = 1, length = arguments.length, deep = false; // Handle a deep copy situation if (typeof target === 'boolean') { deep = target; target = arguments[1] || {}; // skip the boolean and the target i = 2; } else if ((typeof target !== 'object' && typeof target !== 'function') || target == null) { target = {}; } for (; i < length; ++i) { options = arguments[i]; // Only deal with non-null/undefined values if (options != null) { // Extend the base object for (name in options) { src = target[name]; copy = options[name]; // Prevent never-ending loop if (target !== copy) { // Recurse if we're merging plain objects or arrays if (deep && copy && (isPlainObject(copy) || (copyIsArray = isArray(copy)))) { if (copyIsArray) { copyIsArray = false; clone = src && isArray(src) ? src : []; } else { clone = src && isPlainObject(src) ? src : {}; } // Never move original objects, clone them target[name] = extend(deep, clone, copy); // Don't bring in undefined values } else if (typeof copy !== 'undefined') { target[name] = copy; } } } } } // Return the modified object return target; }; },{}],189:[function(require,module,exports){ /* * extsprintf.js: extended POSIX-style sprintf */ var mod_assert = require('assert'); var mod_util = require('util'); /* * Public interface */ exports.sprintf = jsSprintf; /* * Stripped down version of s[n]printf(3c). We make a best effort to throw an * exception when given a format string we don't understand, rather than * ignoring it, so that we won't break existing programs if/when we go implement * the rest of this. * * This implementation currently supports specifying * - field alignment ('-' flag), * - zero-pad ('0' flag) * - always show numeric sign ('+' flag), * - field width * - conversions for strings, decimal integers, and floats (numbers). * - argument size specifiers. These are all accepted but ignored, since * Javascript has no notion of the physical size of an argument. * * Everything else is currently unsupported, most notably precision, unsigned * numbers, non-decimal numbers, and characters. */ function jsSprintf(fmt) { var regex = [ '([^%]*)', /* normal text */ '%', /* start of format */ '([\'\\-+ #0]*?)', /* flags (optional) */ '([1-9]\\d*)?', /* width (optional) */ '(\\.([1-9]\\d*))?', /* precision (optional) */ '[lhjztL]*?', /* length mods (ignored) */ '([diouxXfFeEgGaAcCsSp%jr])' /* conversion */ ].join(''); var re = new RegExp(regex); var args = Array.prototype.slice.call(arguments, 1); var flags, width, precision, conversion; var left, pad, sign, arg, match; var ret = ''; var argn = 1; mod_assert.equal('string', typeof (fmt)); while ((match = re.exec(fmt)) !== null) { ret += match[1]; fmt = fmt.substring(match[0].length); flags = match[2] || ''; width = match[3] || 0; precision = match[4] || ''; conversion = match[6]; left = false; sign = false; pad = ' '; if (conversion == '%') { ret += '%'; continue; } if (args.length === 0) throw (new Error('too few args to sprintf')); arg = args.shift(); argn++; if (flags.match(/[\' #]/)) throw (new Error( 'unsupported flags: ' + flags)); if (precision.length > 0) throw (new Error( 'non-zero precision not supported')); if (flags.match(/-/)) left = true; if (flags.match(/0/)) pad = '0'; if (flags.match(/\+/)) sign = true; switch (conversion) { case 's': if (arg === undefined || arg === null) throw (new Error('argument ' + argn + ': attempted to print undefined or null ' + 'as a string')); ret += doPad(pad, width, left, arg.toString()); break; case 'd': arg = Math.floor(arg); /*jsl:fallthru*/ case 'f': sign = sign && arg > 0 ? '+' : ''; ret += sign + doPad(pad, width, left, arg.toString()); break; case 'j': /* non-standard */ if (width === 0) width = 10; ret += mod_util.inspect(arg, false, width); break; case 'r': /* non-standard */ ret += dumpException(arg); break; default: throw (new Error('unsupported conversion: ' + conversion)); } } ret += fmt; return (ret); } function doPad(chr, width, left, str) { var ret = str; while (ret.length < width) { if (left) ret += chr; else ret = chr + ret; } return (ret); } /* * This function dumps long stack traces for exceptions having a cause() method. * See node-verror for an example. */ function dumpException(ex) { var ret; if (!(ex instanceof Error)) throw (new Error(jsSprintf('invalid type for %%r: %j', ex))); /* Note that V8 prepends "ex.stack" with ex.toString(). */ ret = 'EXCEPTION: ' + ex.constructor.name + ': ' + ex.stack; if (ex.cause && typeof (ex.cause) === 'function') { var cex = ex.cause(); if (cex) { ret += '\nCaused by: ' + dumpException(cex); } } return (ret); } },{"assert":16,"util":163}],190:[function(require,module,exports){ module.exports = ForeverAgent ForeverAgent.SSL = ForeverAgentSSL var util = require('util') , Agent = require('http').Agent , net = require('net') , tls = require('tls') , AgentSSL = require('https').Agent function getConnectionName(host, port) { var name = '' if (typeof host === 'string') { name = host + ':' + port } else { // For node.js v012.0 and iojs-v1.5.1, host is an object. And any existing localAddress is part of the connection name. name = host.host + ':' + host.port + ':' + (host.localAddress ? (host.localAddress + ':') : ':') } return name } function ForeverAgent(options) { var self = this self.options = options || {} self.requests = {} self.sockets = {} self.freeSockets = {} self.maxSockets = self.options.maxSockets || Agent.defaultMaxSockets self.minSockets = self.options.minSockets || ForeverAgent.defaultMinSockets self.on('free', function(socket, host, port) { var name = getConnectionName(host, port) if (self.requests[name] && self.requests[name].length) { self.requests[name].shift().onSocket(socket) } else if (self.sockets[name].length < self.minSockets) { if (!self.freeSockets[name]) self.freeSockets[name] = [] self.freeSockets[name].push(socket) // if an error happens while we don't use the socket anyway, meh, throw the socket away var onIdleError = function() { socket.destroy() } socket._onIdleError = onIdleError socket.on('error', onIdleError) } else { // If there are no pending requests just destroy the // socket and it will get removed from the pool. This // gets us out of timeout issues and allows us to // default to Connection:keep-alive. socket.destroy() } }) } util.inherits(ForeverAgent, Agent) ForeverAgent.defaultMinSockets = 5 ForeverAgent.prototype.createConnection = net.createConnection ForeverAgent.prototype.addRequestNoreuse = Agent.prototype.addRequest ForeverAgent.prototype.addRequest = function(req, host, port) { var name = getConnectionName(host, port) if (typeof host !== 'string') { var options = host port = options.port host = options.host } if (this.freeSockets[name] && this.freeSockets[name].length > 0 && !req.useChunkedEncodingByDefault) { var idleSocket = this.freeSockets[name].pop() idleSocket.removeListener('error', idleSocket._onIdleError) delete idleSocket._onIdleError req._reusedSocket = true req.onSocket(idleSocket) } else { this.addRequestNoreuse(req, host, port) } } ForeverAgent.prototype.removeSocket = function(s, name, host, port) { if (this.sockets[name]) { var index = this.sockets[name].indexOf(s) if (index !== -1) { this.sockets[name].splice(index, 1) } } else if (this.sockets[name] && this.sockets[name].length === 0) { // don't leak delete this.sockets[name] delete this.requests[name] } if (this.freeSockets[name]) { var index = this.freeSockets[name].indexOf(s) if (index !== -1) { this.freeSockets[name].splice(index, 1) if (this.freeSockets[name].length === 0) { delete this.freeSockets[name] } } } if (this.requests[name] && this.requests[name].length) { // If we have pending requests and a socket gets closed a new one // needs to be created to take over in the pool for the one that closed. this.createSocket(name, host, port).emit('free') } } function ForeverAgentSSL (options) { ForeverAgent.call(this, options) } util.inherits(ForeverAgentSSL, ForeverAgent) ForeverAgentSSL.prototype.createConnection = createConnectionSSL ForeverAgentSSL.prototype.addRequestNoreuse = AgentSSL.prototype.addRequest function createConnectionSSL (port, host, options) { if (typeof port === 'object') { options = port; } else if (typeof host === 'object') { options = host; } else if (typeof options === 'object') { options = options; } else { options = {}; } if (typeof port === 'number') { options.port = port; } if (typeof host === 'string') { options.host = host; } return tls.connect(options); } },{"http":153,"https":94,"net":1,"tls":1,"util":163}],191:[function(require,module,exports){ /* eslint-env browser */ module.exports = window.FormData; },{}],192:[function(require,module,exports){ /* * Fuzzy * https://github.com/myork/fuzzy * * Copyright (c) 2012 Matt York * Licensed under the MIT license. */ (function() { var root = this; var fuzzy = {}; // Use in node or in browser if (typeof exports !== 'undefined') { module.exports = fuzzy; } else { root.fuzzy = fuzzy; } // Return all elements of `array` that have a fuzzy // match against `pattern`. fuzzy.simpleFilter = function(pattern, array) { return array.filter(function(string) { return fuzzy.test(pattern, string); }); }; // Does `pattern` fuzzy match `string`? fuzzy.test = function(pattern, string) { return fuzzy.match(pattern, string) !== null; }; // If `pattern` matches `string`, wrap each matching character // in `opts.pre` and `opts.post`. If no match, return null fuzzy.match = function(pattern, string, opts) { opts = opts || {}; var patternIdx = 0 , result = [] , len = string.length , totalScore = 0 , currScore = 0 // prefix , pre = opts.pre || '' // suffix , post = opts.post || '' // String to compare against. This might be a lowercase version of the // raw string , compareString = opts.caseSensitive && string || string.toLowerCase() , ch, compareChar; pattern = opts.caseSensitive && pattern || pattern.toLowerCase(); // For each character in the string, either add it to the result // or wrap in template if it's the next string in the pattern for(var idx = 0; idx < len; idx++) { ch = string[idx]; if(compareString[idx] === pattern[patternIdx]) { ch = pre + ch + post; patternIdx += 1; // consecutive characters should increase the score more than linearly currScore += 1 + currScore; } else { currScore = 0; } totalScore += currScore; result[result.length] = ch; } // return rendered string if we have a match for every char if(patternIdx === pattern.length) { return {rendered: result.join(''), score: totalScore}; } return null; }; // The normal entry point. Filters `arr` for matches against `pattern`. // It returns an array with matching values of the type: // // [{ // string: 'lah' // The rendered string // , index: 2 // The index of the element in `arr` // , original: 'blah' // The original element in `arr` // }] // // `opts` is an optional argument bag. Details: // // opts = { // // string to put before a matching character // pre: '' // // // string to put after matching character // , post: '' // // // Optional function. Input is an entry in the given arr`, // // output should be the string to test `pattern` against. // // In this example, if `arr = [{crying: 'koala'}]` we would return // // 'koala'. // , extract: function(arg) { return arg.crying; } // } fuzzy.filter = function(pattern, arr, opts) { opts = opts || {}; return arr .reduce(function(prev, element, idx, arr) { var str = element; if(opts.extract) { str = opts.extract(element); } var rendered = fuzzy.match(pattern, str, opts); if(rendered != null) { prev[prev.length] = { string: rendered.rendered , score: rendered.score , index: idx , original: element }; } return prev; }, []) // Sort by score. Browsers are inconsistent wrt stable/unstable // sorting, so force stable by using the index in the case of tie. // See http://ofb.net/~sethml/is-sort-stable.html .sort(function(a,b) { var compare = b.score - a.score; if(compare) return compare; return a.index - b.index; }); }; }()); },{}],193:[function(require,module,exports){ var util = require('util') var INDENT_START = /[\{\[]/ var INDENT_END = /[\}\]]/ module.exports = function() { var lines = [] var indent = 0 var push = function(str) { var spaces = '' while (spaces.length < indent*2) spaces += ' ' lines.push(spaces+str) } var line = function(fmt) { if (!fmt) return line if (INDENT_END.test(fmt.trim()[0]) && INDENT_START.test(fmt[fmt.length-1])) { indent-- push(util.format.apply(util, arguments)) indent++ return line } if (INDENT_START.test(fmt[fmt.length-1])) { push(util.format.apply(util, arguments)) indent++ return line } if (INDENT_END.test(fmt.trim()[0])) { indent-- push(util.format.apply(util, arguments)) return line } push(util.format.apply(util, arguments)) return line } line.toString = function() { return lines.join('\n') } line.toFunction = function(scope) { var src = 'return ('+line.toString()+')' var keys = Object.keys(scope || {}).map(function(key) { return key }) var vals = keys.map(function(key) { return scope[key] }) return Function.apply(null, keys.concat(src)).apply(null, vals) } if (arguments.length) line.apply(null, arguments) return line } },{"util":163}],194:[function(require,module,exports){ var isProperty = require('is-property') var gen = function(obj, prop) { return isProperty(prop) ? obj+'.'+prop : obj+'['+JSON.stringify(prop)+']' } gen.valid = isProperty gen.property = function (prop) { return isProperty(prop) ? prop : JSON.stringify(prop) } module.exports = gen },{"is-property":223}],195:[function(require,module,exports){ 'use strict' function ValidationError (errors) { this.name = 'ValidationError' this.errors = errors } ValidationError.prototype = Error.prototype module.exports = ValidationError },{}],196:[function(require,module,exports){ 'use strict' var Promise = require('pinkie-promise') var runner = require('./runner') var schemas = require('./schemas') var promisify = function (schema) { return function (data) { return new Promise(function (resolve, reject) { runner(schema, data, function (err, valid) { return err === null ? resolve(data) : reject(err) }) }) } } module.exports = promisify(schemas.har) // utility methods for all parts of the schema Object.keys(schemas).map(function (name) { module.exports[name] = promisify(schemas[name]) }) },{"./runner":197,"./schemas":205,"pinkie-promise":244}],197:[function(require,module,exports){ 'use strict' var schemas = require('./schemas') var ValidationError = require('./error') var validator = require('is-my-json-valid') module.exports = function (schema, data, cb) { // default value var valid = false // validator config var validate = validator(schema, { greedy: true, verbose: true, schemas: schemas }) // execute is-my-json-valid if (data !== undefined) { valid = validate(data) } // callback? if (typeof cb === 'function') { return cb(validate.errors ? new ValidationError(validate.errors) : null, valid) } return valid } },{"./error":195,"./schemas":205,"is-my-json-valid":222}],198:[function(require,module,exports){ module.exports={ "properties": { "beforeRequest": { "$ref": "#cacheEntry" }, "afterRequest": { "$ref": "#cacheEntry" }, "comment": { "type": "string" } } } },{}],199:[function(require,module,exports){ module.exports={ "oneOf": [{ "type": "object", "optional": true, "required": [ "lastAccess", "eTag", "hitCount" ], "properties": { "expires": { "type": "string" }, "lastAccess": { "type": "string" }, "eTag": { "type": "string" }, "hitCount": { "type": "integer" }, "comment": { "type": "string" } } }, { "type": null, "additionalProperties": false }] } },{}],200:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "size", "mimeType" ], "properties": { "size": { "type": "integer" }, "compression": { "type": "integer" }, "mimeType": { "type": "string" }, "text": { "type": "string" }, "encoding": { "type": "string" }, "comment": { "type": "string" } } } },{}],201:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "name", "value" ], "properties": { "name": { "type": "string" }, "value": { "type": "string" }, "path": { "type": "string" }, "domain": { "type": "string" }, "expires": { "type": ["string", "null"], "format": "date-time" }, "httpOnly": { "type": "boolean" }, "secure": { "type": "boolean" }, "comment": { "type": "string" } } } },{}],202:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "name", "version" ], "properties": { "name": { "type": "string" }, "version": { "type": "string" }, "comment": { "type": "string" } } } },{}],203:[function(require,module,exports){ module.exports={ "type": "object", "optional": true, "required": [ "startedDateTime", "time", "request", "response", "cache", "timings" ], "properties": { "pageref": { "type": "string" }, "startedDateTime": { "type": "string", "format": "date-time", "pattern": "^(\\d{4})(-)?(\\d\\d)(-)?(\\d\\d)(T)?(\\d\\d)(:)?(\\d\\d)(:)?(\\d\\d)(\\.\\d+)?(Z|([+-])(\\d\\d)(:)?(\\d\\d))" }, "time": { "type": "number", "min": 0 }, "request": { "$ref": "#request" }, "response": { "$ref": "#response" }, "cache": { "$ref": "#cache" }, "timings": { "$ref": "#timings" }, "serverIPAddress": { "type": "string", "oneOf": [ { "format": "ipv4" }, { "format": "ipv6" } ] }, "connection": { "type": "string" }, "comment": { "type": "string" } } } },{}],204:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "log" ], "properties": { "log": { "$ref": "#log" } } } },{}],205:[function(require,module,exports){ 'use strict' var schemas = { cache: require('./cache.json'), cacheEntry: require('./cacheEntry.json'), content: require('./content.json'), cookie: require('./cookie.json'), creator: require('./creator.json'), entry: require('./entry.json'), har: require('./har.json'), log: require('./log.json'), page: require('./page.json'), pageTimings: require('./pageTimings.json'), postData: require('./postData.json'), record: require('./record.json'), request: require('./request.json'), response: require('./response.json'), timings: require('./timings.json') } // is-my-json-valid does not provide meaningful error messages for external schemas // this is a workaround schemas.cache.properties.beforeRequest = schemas.cacheEntry schemas.cache.properties.afterRequest = schemas.cacheEntry schemas.page.properties.pageTimings = schemas.pageTimings schemas.request.properties.cookies.items = schemas.cookie schemas.request.properties.headers.items = schemas.record schemas.request.properties.queryString.items = schemas.record schemas.request.properties.postData = schemas.postData schemas.response.properties.cookies.items = schemas.cookie schemas.response.properties.headers.items = schemas.record schemas.response.properties.content = schemas.content schemas.entry.properties.request = schemas.request schemas.entry.properties.response = schemas.response schemas.entry.properties.cache = schemas.cache schemas.entry.properties.timings = schemas.timings schemas.log.properties.creator = schemas.creator schemas.log.properties.browser = schemas.creator schemas.log.properties.pages.items = schemas.page schemas.log.properties.entries.items = schemas.entry schemas.har.properties.log = schemas.log module.exports = schemas },{"./cache.json":198,"./cacheEntry.json":199,"./content.json":200,"./cookie.json":201,"./creator.json":202,"./entry.json":203,"./har.json":204,"./log.json":206,"./page.json":207,"./pageTimings.json":208,"./postData.json":209,"./record.json":210,"./request.json":211,"./response.json":212,"./timings.json":213}],206:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "version", "creator", "entries" ], "properties": { "version": { "type": "string" }, "creator": { "$ref": "#creator" }, "browser": { "$ref": "#creator" }, "pages": { "type": "array", "items": { "$ref": "#page" } }, "entries": { "type": "array", "items": { "$ref": "#entry" } }, "comment": { "type": "string" } } } },{}],207:[function(require,module,exports){ module.exports={ "type": "object", "optional": true, "required": [ "startedDateTime", "id", "title", "pageTimings" ], "properties": { "startedDateTime": { "type": "string", "format": "date-time", "pattern": "^(\\d{4})(-)?(\\d\\d)(-)?(\\d\\d)(T)?(\\d\\d)(:)?(\\d\\d)(:)?(\\d\\d)(\\.\\d+)?(Z|([+-])(\\d\\d)(:)?(\\d\\d))" }, "id": { "type": "string", "unique": true }, "title": { "type": "string" }, "pageTimings": { "$ref": "#pageTimings" }, "comment": { "type": "string" } } } },{}],208:[function(require,module,exports){ module.exports={ "type": "object", "properties": { "onContentLoad": { "type": "number", "min": -1 }, "onLoad": { "type": "number", "min": -1 }, "comment": { "type": "string" } } } },{}],209:[function(require,module,exports){ module.exports={ "type": "object", "optional": true, "required": [ "mimeType" ], "properties": { "mimeType": { "type": "string" }, "text": { "type": "string" }, "params": { "type": "array", "required": [ "name" ], "properties": { "name": { "type": "string" }, "value": { "type": "string" }, "fileName": { "type": "string" }, "contentType": { "type": "string" }, "comment": { "type": "string" } } }, "comment": { "type": "string" } } } },{}],210:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "name", "value" ], "properties": { "name": { "type": "string" }, "value": { "type": "string" }, "comment": { "type": "string" } } } },{}],211:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "method", "url", "httpVersion", "cookies", "headers", "queryString", "headersSize", "bodySize" ], "properties": { "method": { "type": "string" }, "url": { "type": "string", "format": "uri" }, "httpVersion": { "type": "string" }, "cookies": { "type": "array", "items": { "$ref": "#cookie" } }, "headers": { "type": "array", "items": { "$ref": "#record" } }, "queryString": { "type": "array", "items": { "$ref": "#record" } }, "postData": { "$ref": "#postData" }, "headersSize": { "type": "integer" }, "bodySize": { "type": "integer" }, "comment": { "type": "string" } } } },{}],212:[function(require,module,exports){ module.exports={ "type": "object", "required": [ "status", "statusText", "httpVersion", "cookies", "headers", "content", "redirectURL", "headersSize", "bodySize" ], "properties": { "status": { "type": "integer" }, "statusText": { "type": "string" }, "httpVersion": { "type": "string" }, "cookies": { "type": "array", "items": { "$ref": "#cookie" } }, "headers": { "type": "array", "items": { "$ref": "#record" } }, "content": { "$ref": "#content" }, "redirectURL": { "type": "string" }, "headersSize": { "type": "integer" }, "bodySize": { "type": "integer" }, "comment": { "type": "string" } } } },{}],213:[function(require,module,exports){ module.exports={ "required": [ "send", "wait", "receive" ], "properties": { "dns": { "type": "number", "min": -1 }, "connect": { "type": "number", "min": -1 }, "blocked": { "type": "number", "min": -1 }, "send": { "type": "number", "min": -1 }, "wait": { "type": "number", "min": -1 }, "receive": { "type": "number", "min": -1 }, "ssl": { "type": "number", "min": -1 }, "comment": { "type": "string" } } } },{}],214:[function(require,module,exports){ /* HTTP Hawk Authentication Scheme Copyright (c) 2012-2014, Eran Hammer BSD Licensed */ // Declare namespace var hawk = { internals: {} }; hawk.client = { // Generate an Authorization header for a given request /* uri: 'http://example.com/resource?a=b' or object generated by hawk.utils.parseUri() method: HTTP verb (e.g. 'GET', 'POST') options: { // Required credentials: { id: 'dh37fgj492je', key: 'aoijedoaijsdlaksjdl', algorithm: 'sha256' // 'sha1', 'sha256' }, // Optional ext: 'application-specific', // Application specific data sent via the ext attribute timestamp: Date.now() / 1000, // A pre-calculated timestamp in seconds nonce: '2334f34f', // A pre-generated nonce localtimeOffsetMsec: 400, // Time offset to sync with server time (ignored if timestamp provided) payload: '{"some":"payload"}', // UTF-8 encoded string for body hash generation (ignored if hash provided) contentType: 'application/json', // Payload content-type (ignored if hash provided) hash: 'U4MKKSmiVxk37JCCrAVIjV=', // Pre-calculated payload hash app: '24s23423f34dx', // Oz application id dlg: '234sz34tww3sd' // Oz delegated-by application id } */ header: function (uri, method, options) { var result = { field: '', artifacts: {} }; // Validate inputs if (!uri || (typeof uri !== 'string' && typeof uri !== 'object') || !method || typeof method !== 'string' || !options || typeof options !== 'object') { result.err = 'Invalid argument type'; return result; } // Application time var timestamp = options.timestamp || hawk.utils.now(options.localtimeOffsetMsec); // Validate credentials var credentials = options.credentials; if (!credentials || !credentials.id || !credentials.key || !credentials.algorithm) { result.err = 'Invalid credentials object'; return result; } if (hawk.crypto.algorithms.indexOf(credentials.algorithm) === -1) { result.err = 'Unknown algorithm'; return result; } // Parse URI if (typeof uri === 'string') { uri = hawk.utils.parseUri(uri); } // Calculate signature var artifacts = { ts: timestamp, nonce: options.nonce || hawk.utils.randomString(6), method: method, resource: uri.resource, host: uri.host, port: uri.port, hash: options.hash, ext: options.ext, app: options.app, dlg: options.dlg }; result.artifacts = artifacts; // Calculate payload hash if (!artifacts.hash && (options.payload || options.payload === '')) { artifacts.hash = hawk.crypto.calculatePayloadHash(options.payload, credentials.algorithm, options.contentType); } var mac = hawk.crypto.calculateMac('header', credentials, artifacts); // Construct header var hasExt = artifacts.ext !== null && artifacts.ext !== undefined && artifacts.ext !== ''; // Other falsey values allowed var header = 'Hawk id="' + credentials.id + '", ts="' + artifacts.ts + '", nonce="' + artifacts.nonce + (artifacts.hash ? '", hash="' + artifacts.hash : '') + (hasExt ? '", ext="' + hawk.utils.escapeHeaderAttribute(artifacts.ext) : '') + '", mac="' + mac + '"'; if (artifacts.app) { header += ', app="' + artifacts.app + (artifacts.dlg ? '", dlg="' + artifacts.dlg : '') + '"'; } result.field = header; return result; }, // Generate a bewit value for a given URI /* uri: 'http://example.com/resource?a=b' options: { // Required credentials: { id: 'dh37fgj492je', key: 'aoijedoaijsdlaksjdl', algorithm: 'sha256' // 'sha1', 'sha256' }, ttlSec: 60 * 60, // TTL in seconds // Optional ext: 'application-specific', // Application specific data sent via the ext attribute localtimeOffsetMsec: 400 // Time offset to sync with server time }; */ bewit: function (uri, options) { // Validate inputs if (!uri || (typeof uri !== 'string') || !options || typeof options !== 'object' || !options.ttlSec) { return ''; } options.ext = (options.ext === null || options.ext === undefined ? '' : options.ext); // Zero is valid value // Application time var now = hawk.utils.now(options.localtimeOffsetMsec); // Validate credentials var credentials = options.credentials; if (!credentials || !credentials.id || !credentials.key || !credentials.algorithm) { return ''; } if (hawk.crypto.algorithms.indexOf(credentials.algorithm) === -1) { return ''; } // Parse URI uri = hawk.utils.parseUri(uri); // Calculate signature var exp = now + options.ttlSec; var mac = hawk.crypto.calculateMac('bewit', credentials, { ts: exp, nonce: '', method: 'GET', resource: uri.resource, // Maintain trailing '?' and query params host: uri.host, port: uri.port, ext: options.ext }); // Construct bewit: id\exp\mac\ext var bewit = credentials.id + '\\' + exp + '\\' + mac + '\\' + options.ext; return hawk.utils.base64urlEncode(bewit); }, // Validate server response /* request: object created via 'new XMLHttpRequest()' after response received artifacts: object received from header().artifacts options: { payload: optional payload received required: specifies if a Server-Authorization header is required. Defaults to 'false' } */ authenticate: function (request, credentials, artifacts, options) { options = options || {}; var getHeader = function (name) { return request.getResponseHeader ? request.getResponseHeader(name) : request.getHeader(name); }; var wwwAuthenticate = getHeader('www-authenticate'); if (wwwAuthenticate) { // Parse HTTP WWW-Authenticate header var wwwAttributes = hawk.utils.parseAuthorizationHeader(wwwAuthenticate, ['ts', 'tsm', 'error']); if (!wwwAttributes) { return false; } if (wwwAttributes.ts) { var tsm = hawk.crypto.calculateTsMac(wwwAttributes.ts, credentials); if (tsm !== wwwAttributes.tsm) { return false; } hawk.utils.setNtpOffset(wwwAttributes.ts - Math.floor((new Date()).getTime() / 1000)); // Keep offset at 1 second precision } } // Parse HTTP Server-Authorization header var serverAuthorization = getHeader('server-authorization'); if (!serverAuthorization && !options.required) { return true; } var attributes = hawk.utils.parseAuthorizationHeader(serverAuthorization, ['mac', 'ext', 'hash']); if (!attributes) { return false; } var modArtifacts = { ts: artifacts.ts, nonce: artifacts.nonce, method: artifacts.method, resource: artifacts.resource, host: artifacts.host, port: artifacts.port, hash: attributes.hash, ext: attributes.ext, app: artifacts.app, dlg: artifacts.dlg }; var mac = hawk.crypto.calculateMac('response', credentials, modArtifacts); if (mac !== attributes.mac) { return false; } if (!options.payload && options.payload !== '') { return true; } if (!attributes.hash) { return false; } var calculatedHash = hawk.crypto.calculatePayloadHash(options.payload, credentials.algorithm, getHeader('content-type')); return (calculatedHash === attributes.hash); }, message: function (host, port, message, options) { // Validate inputs if (!host || typeof host !== 'string' || !port || typeof port !== 'number' || message === null || message === undefined || typeof message !== 'string' || !options || typeof options !== 'object') { return null; } // Application time var timestamp = options.timestamp || hawk.utils.now(options.localtimeOffsetMsec); // Validate credentials var credentials = options.credentials; if (!credentials || !credentials.id || !credentials.key || !credentials.algorithm) { // Invalid credential object return null; } if (hawk.crypto.algorithms.indexOf(credentials.algorithm) === -1) { return null; } // Calculate signature var artifacts = { ts: timestamp, nonce: options.nonce || hawk.utils.randomString(6), host: host, port: port, hash: hawk.crypto.calculatePayloadHash(message, credentials.algorithm) }; // Construct authorization var result = { id: credentials.id, ts: artifacts.ts, nonce: artifacts.nonce, hash: artifacts.hash, mac: hawk.crypto.calculateMac('message', credentials, artifacts) }; return result; }, authenticateTimestamp: function (message, credentials, updateClock) { // updateClock defaults to true var tsm = hawk.crypto.calculateTsMac(message.ts, credentials); if (tsm !== message.tsm) { return false; } if (updateClock !== false) { hawk.utils.setNtpOffset(message.ts - Math.floor((new Date()).getTime() / 1000)); // Keep offset at 1 second precision } return true; } }; hawk.crypto = { headerVersion: '1', algorithms: ['sha1', 'sha256'], calculateMac: function (type, credentials, options) { var normalized = hawk.crypto.generateNormalizedString(type, options); var hmac = CryptoJS['Hmac' + credentials.algorithm.toUpperCase()](normalized, credentials.key); return hmac.toString(CryptoJS.enc.Base64); }, generateNormalizedString: function (type, options) { var normalized = 'hawk.' + hawk.crypto.headerVersion + '.' + type + '\n' + options.ts + '\n' + options.nonce + '\n' + (options.method || '').toUpperCase() + '\n' + (options.resource || '') + '\n' + options.host.toLowerCase() + '\n' + options.port + '\n' + (options.hash || '') + '\n'; if (options.ext) { normalized += options.ext.replace('\\', '\\\\').replace('\n', '\\n'); } normalized += '\n'; if (options.app) { normalized += options.app + '\n' + (options.dlg || '') + '\n'; } return normalized; }, calculatePayloadHash: function (payload, algorithm, contentType) { var hash = CryptoJS.algo[algorithm.toUpperCase()].create(); hash.update('hawk.' + hawk.crypto.headerVersion + '.payload\n'); hash.update(hawk.utils.parseContentType(contentType) + '\n'); hash.update(payload); hash.update('\n'); return hash.finalize().toString(CryptoJS.enc.Base64); }, calculateTsMac: function (ts, credentials) { var hash = CryptoJS['Hmac' + credentials.algorithm.toUpperCase()]('hawk.' + hawk.crypto.headerVersion + '.ts\n' + ts + '\n', credentials.key); return hash.toString(CryptoJS.enc.Base64); } }; // localStorage compatible interface hawk.internals.LocalStorage = function () { this._cache = {}; this.length = 0; this.getItem = function (key) { return this._cache.hasOwnProperty(key) ? String(this._cache[key]) : null; }; this.setItem = function (key, value) { this._cache[key] = String(value); this.length = Object.keys(this._cache).length; }; this.removeItem = function (key) { delete this._cache[key]; this.length = Object.keys(this._cache).length; }; this.clear = function () { this._cache = {}; this.length = 0; }; this.key = function (i) { return Object.keys(this._cache)[i || 0]; }; }; hawk.utils = { storage: new hawk.internals.LocalStorage(), setStorage: function (storage) { var ntpOffset = hawk.utils.storage.getItem('hawk_ntp_offset'); hawk.utils.storage = storage; if (ntpOffset) { hawk.utils.setNtpOffset(ntpOffset); } }, setNtpOffset: function (offset) { try { hawk.utils.storage.setItem('hawk_ntp_offset', offset); } catch (err) { console.error('[hawk] could not write to storage.'); console.error(err); } }, getNtpOffset: function () { var offset = hawk.utils.storage.getItem('hawk_ntp_offset'); if (!offset) { return 0; } return parseInt(offset, 10); }, now: function (localtimeOffsetMsec) { return Math.floor(((new Date()).getTime() + (localtimeOffsetMsec || 0)) / 1000) + hawk.utils.getNtpOffset(); }, escapeHeaderAttribute: function (attribute) { return attribute.replace(/\\/g, '\\\\').replace(/\"/g, '\\"'); }, parseContentType: function (header) { if (!header) { return ''; } return header.split(';')[0].replace(/^\s+|\s+$/g, '').toLowerCase(); }, parseAuthorizationHeader: function (header, keys) { if (!header) { return null; } var headerParts = header.match(/^(\w+)(?:\s+(.*))?$/); // Header: scheme[ something] if (!headerParts) { return null; } var scheme = headerParts[1]; if (scheme.toLowerCase() !== 'hawk') { return null; } var attributesString = headerParts[2]; if (!attributesString) { return null; } var attributes = {}; var verify = attributesString.replace(/(\w+)="([^"\\]*)"\s*(?:,\s*|$)/g, function ($0, $1, $2) { // Check valid attribute names if (keys.indexOf($1) === -1) { return; } // Allowed attribute value characters: !#$%&'()*+,-./:;<=>?@[]^_`{|}~ and space, a-z, A-Z, 0-9 if ($2.match(/^[ \w\!#\$%&'\(\)\*\+,\-\.\/\:;<\=>\?@\[\]\^`\{\|\}~]+$/) === null) { return; } // Check for duplicates if (attributes.hasOwnProperty($1)) { return; } attributes[$1] = $2; return ''; }); if (verify !== '') { return null; } return attributes; }, randomString: function (size) { var randomSource = 'abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789'; var len = randomSource.length; var result = []; for (var i = 0; i < size; ++i) { result[i] = randomSource[Math.floor(Math.random() * len)]; } return result.join(''); }, uriRegex: /^([^:]+)\:\/\/(?:[^@]*@)?([^\/:]+)(?:\:(\d+))?([^#]*)(?:#.*)?$/, // scheme://credentials@host:port/resource#fragment parseUri: function (input) { var parts = input.match(hawk.utils.uriRegex); if (!parts) { return { host: '', port: '', resource: '' }; } var scheme = parts[1].toLowerCase(); var uri = { host: parts[2], port: parts[3] || (scheme === 'http' ? '80' : (scheme === 'https' ? '443' : '')), resource: parts[4] }; return uri; }, base64urlEncode: function (value) { var wordArray = CryptoJS.enc.Utf8.parse(value); var encoded = CryptoJS.enc.Base64.stringify(wordArray); return encoded.replace(/\+/g, '-').replace(/\//g, '_').replace(/\=/g, ''); } }; // $lab:coverage:off$ /* eslint-disable */ // Based on: Crypto-JS v3.1.2 // Copyright (c) 2009-2013, Jeff Mott. All rights reserved. // http://code.google.com/p/crypto-js/ // http://code.google.com/p/crypto-js/wiki/License var CryptoJS = CryptoJS || function (h, r) { var k = {}, l = k.lib = {}, n = function () { }, f = l.Base = { extend: function (a) { n.prototype = this; var b = new n; a && b.mixIn(a); b.hasOwnProperty("init") || (b.init = function () { b.$super.init.apply(this, arguments) }); b.init.prototype = b; b.$super = this; return b }, create: function () { var a = this.extend(); a.init.apply(a, arguments); return a }, init: function () { }, mixIn: function (a) { for (var b in a) a.hasOwnProperty(b) && (this[b] = a[b]); a.hasOwnProperty("toString") && (this.toString = a.toString) }, clone: function () { return this.init.prototype.extend(this) } }, j = l.WordArray = f.extend({ init: function (a, b) { a = this.words = a || []; this.sigBytes = b != r ? b : 4 * a.length }, toString: function (a) { return (a || s).stringify(this) }, concat: function (a) { var b = this.words, d = a.words, c = this.sigBytes; a = a.sigBytes; this.clamp(); if (c % 4) for (var e = 0; e < a; e++) b[c + e >>> 2] |= (d[e >>> 2] >>> 24 - 8 * (e % 4) & 255) << 24 - 8 * ((c + e) % 4); else if (65535 < d.length) for (e = 0; e < a; e += 4) b[c + e >>> 2] = d[e >>> 2]; else b.push.apply(b, d); this.sigBytes += a; return this }, clamp: function () { var a = this.words, b = this.sigBytes; a[b >>> 2] &= 4294967295 << 32 - 8 * (b % 4); a.length = h.ceil(b / 4) }, clone: function () { var a = f.clone.call(this); a.words = this.words.slice(0); return a }, random: function (a) { for (var b = [], d = 0; d < a; d += 4) b.push(4294967296 * h.random() | 0); return new j.init(b, a) } }), m = k.enc = {}, s = m.Hex = { stringify: function (a) { var b = a.words; a = a.sigBytes; for (var d = [], c = 0; c < a; c++) { var e = b[c >>> 2] >>> 24 - 8 * (c % 4) & 255; d.push((e >>> 4).toString(16)); d.push((e & 15).toString(16)) } return d.join("") }, parse: function (a) { for (var b = a.length, d = [], c = 0; c < b; c += 2) d[c >>> 3] |= parseInt(a.substr(c, 2), 16) << 24 - 4 * (c % 8); return new j.init(d, b / 2) } }, p = m.Latin1 = { stringify: function (a) { var b = a.words; a = a.sigBytes; for (var d = [], c = 0; c < a; c++) d.push(String.fromCharCode(b[c >>> 2] >>> 24 - 8 * (c % 4) & 255)); return d.join("") }, parse: function (a) { for (var b = a.length, d = [], c = 0; c < b; c++) d[c >>> 2] |= (a.charCodeAt(c) & 255) << 24 - 8 * (c % 4); return new j.init(d, b) } }, t = m.Utf8 = { stringify: function (a) { try { return decodeURIComponent(escape(p.stringify(a))) } catch (b) { throw Error("Malformed UTF-8 data"); } }, parse: function (a) { return p.parse(unescape(encodeURIComponent(a))) } }, q = l.BufferedBlockAlgorithm = f.extend({ reset: function () { this._data = new j.init; this._nDataBytes = 0 }, _append: function (a) { "string" == typeof a && (a = t.parse(a)); this._data.concat(a); this._nDataBytes += a.sigBytes }, _process: function (a) { var b = this._data, d = b.words, c = b.sigBytes, e = this.blockSize, f = c / (4 * e), f = a ? h.ceil(f) : h.max((f | 0) - this._minBufferSize, 0); a = f * e; c = h.min(4 * a, c); if (a) { for (var g = 0; g < a; g += e) this._doProcessBlock(d, g); g = d.splice(0, a); b.sigBytes -= c } return new j.init(g, c) }, clone: function () { var a = f.clone.call(this); a._data = this._data.clone(); return a }, _minBufferSize: 0 }); l.Hasher = q.extend({ cfg: f.extend(), init: function (a) { this.cfg = this.cfg.extend(a); this.reset() }, reset: function () { q.reset.call(this); this._doReset() }, update: function (a) { this._append(a); this._process(); return this }, finalize: function (a) { a && this._append(a); return this._doFinalize() }, blockSize: 16, _createHelper: function (a) { return function (b, d) { return (new a.init(d)).finalize(b) } }, _createHmacHelper: function (a) { return function (b, d) { return (new u.HMAC.init(a, d)).finalize(b) } } }); var u = k.algo = {}; return k }(Math); (function () { var k = CryptoJS, b = k.lib, m = b.WordArray, l = b.Hasher, d = [], b = k.algo.SHA1 = l.extend({ _doReset: function () { this._hash = new m.init([1732584193, 4023233417, 2562383102, 271733878, 3285377520]) }, _doProcessBlock: function (n, p) { for (var a = this._hash.words, e = a[0], f = a[1], h = a[2], j = a[3], b = a[4], c = 0; 80 > c; c++) { if (16 > c) d[c] = n[p + c] | 0; else { var g = d[c - 3] ^ d[c - 8] ^ d[c - 14] ^ d[c - 16]; d[c] = g << 1 | g >>> 31 } g = (e << 5 | e >>> 27) + b + d[c]; g = 20 > c ? g + ((f & h | ~f & j) + 1518500249) : 40 > c ? g + ((f ^ h ^ j) + 1859775393) : 60 > c ? g + ((f & h | f & j | h & j) - 1894007588) : g + ((f ^ h ^ j) - 899497514); b = j; j = h; h = f << 30 | f >>> 2; f = e; e = g } a[0] = a[0] + e | 0; a[1] = a[1] + f | 0; a[2] = a[2] + h | 0; a[3] = a[3] + j | 0; a[4] = a[4] + b | 0 }, _doFinalize: function () { var b = this._data, d = b.words, a = 8 * this._nDataBytes, e = 8 * b.sigBytes; d[e >>> 5] |= 128 << 24 - e % 32; d[(e + 64 >>> 9 << 4) + 14] = Math.floor(a / 4294967296); d[(e + 64 >>> 9 << 4) + 15] = a; b.sigBytes = 4 * d.length; this._process(); return this._hash }, clone: function () { var b = l.clone.call(this); b._hash = this._hash.clone(); return b } }); k.SHA1 = l._createHelper(b); k.HmacSHA1 = l._createHmacHelper(b) })(); (function (k) { for (var g = CryptoJS, h = g.lib, v = h.WordArray, j = h.Hasher, h = g.algo, s = [], t = [], u = function (q) { return 4294967296 * (q - (q | 0)) | 0 }, l = 2, b = 0; 64 > b;) { var d; a: { d = l; for (var w = k.sqrt(d), r = 2; r <= w; r++) if (!(d % r)) { d = !1; break a } d = !0 } d && (8 > b && (s[b] = u(k.pow(l, 0.5))), t[b] = u(k.pow(l, 1 / 3)), b++); l++ } var n = [], h = h.SHA256 = j.extend({ _doReset: function () { this._hash = new v.init(s.slice(0)) }, _doProcessBlock: function (q, h) { for (var a = this._hash.words, c = a[0], d = a[1], b = a[2], k = a[3], f = a[4], g = a[5], j = a[6], l = a[7], e = 0; 64 > e; e++) { if (16 > e) n[e] = q[h + e] | 0; else { var m = n[e - 15], p = n[e - 2]; n[e] = ((m << 25 | m >>> 7) ^ (m << 14 | m >>> 18) ^ m >>> 3) + n[e - 7] + ((p << 15 | p >>> 17) ^ (p << 13 | p >>> 19) ^ p >>> 10) + n[e - 16] } m = l + ((f << 26 | f >>> 6) ^ (f << 21 | f >>> 11) ^ (f << 7 | f >>> 25)) + (f & g ^ ~f & j) + t[e] + n[e]; p = ((c << 30 | c >>> 2) ^ (c << 19 | c >>> 13) ^ (c << 10 | c >>> 22)) + (c & d ^ c & b ^ d & b); l = j; j = g; g = f; f = k + m | 0; k = b; b = d; d = c; c = m + p | 0 } a[0] = a[0] + c | 0; a[1] = a[1] + d | 0; a[2] = a[2] + b | 0; a[3] = a[3] + k | 0; a[4] = a[4] + f | 0; a[5] = a[5] + g | 0; a[6] = a[6] + j | 0; a[7] = a[7] + l | 0 }, _doFinalize: function () { var d = this._data, b = d.words, a = 8 * this._nDataBytes, c = 8 * d.sigBytes; b[c >>> 5] |= 128 << 24 - c % 32; b[(c + 64 >>> 9 << 4) + 14] = k.floor(a / 4294967296); b[(c + 64 >>> 9 << 4) + 15] = a; d.sigBytes = 4 * b.length; this._process(); return this._hash }, clone: function () { var b = j.clone.call(this); b._hash = this._hash.clone(); return b } }); g.SHA256 = j._createHelper(h); g.HmacSHA256 = j._createHmacHelper(h) })(Math); (function () { var c = CryptoJS, k = c.enc.Utf8; c.algo.HMAC = c.lib.Base.extend({ init: function (a, b) { a = this._hasher = new a.init; "string" == typeof b && (b = k.parse(b)); var c = a.blockSize, e = 4 * c; b.sigBytes > e && (b = a.finalize(b)); b.clamp(); for (var f = this._oKey = b.clone(), g = this._iKey = b.clone(), h = f.words, j = g.words, d = 0; d < c; d++) h[d] ^= 1549556828, j[d] ^= 909522486; f.sigBytes = g.sigBytes = e; this.reset() }, reset: function () { var a = this._hasher; a.reset(); a.update(this._iKey) }, update: function (a) { this._hasher.update(a); return this }, finalize: function (a) { var b = this._hasher; a = b.finalize(a); b.reset(); return b.finalize(this._oKey.clone().concat(a)) } }) })(); (function () { var h = CryptoJS, j = h.lib.WordArray; h.enc.Base64 = { stringify: function (b) { var e = b.words, f = b.sigBytes, c = this._map; b.clamp(); b = []; for (var a = 0; a < f; a += 3) for (var d = (e[a >>> 2] >>> 24 - 8 * (a % 4) & 255) << 16 | (e[a + 1 >>> 2] >>> 24 - 8 * ((a + 1) % 4) & 255) << 8 | e[a + 2 >>> 2] >>> 24 - 8 * ((a + 2) % 4) & 255, g = 0; 4 > g && a + 0.75 * g < f; g++) b.push(c.charAt(d >>> 6 * (3 - g) & 63)); if (e = c.charAt(64)) for (; b.length % 4;) b.push(e); return b.join("") }, parse: function (b) { var e = b.length, f = this._map, c = f.charAt(64); c && (c = b.indexOf(c), -1 != c && (e = c)); for (var c = [], a = 0, d = 0; d < e; d++) if (d % 4) { var g = f.indexOf(b.charAt(d - 1)) << 2 * (d % 4), h = f.indexOf(b.charAt(d)) >>> 6 - 2 * (d % 4); c[a >>> 2] |= (g | h) << 24 - 8 * (a % 4); a++ } return j.create(c, a) }, _map: "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=" } })(); hawk.crypto.internals = CryptoJS; // Export if used as a module if (typeof module !== 'undefined' && module.exports) { module.exports = hawk; } /* eslint-enable */ // $lab:coverage:on$ },{}],215:[function(require,module,exports){ // Copyright 2015 Joyent, Inc. var parser = require('./parser'); var signer = require('./signer'); var verify = require('./verify'); var utils = require('./utils'); ///--- API module.exports = { parse: parser.parseRequest, parseRequest: parser.parseRequest, sign: signer.signRequest, signRequest: signer.signRequest, createSigner: signer.createSigner, isSigner: signer.isSigner, sshKeyToPEM: utils.sshKeyToPEM, sshKeyFingerprint: utils.fingerprint, pemToRsaSSHKey: utils.pemToRsaSSHKey, verify: verify.verifySignature, verifySignature: verify.verifySignature, verifyHMAC: verify.verifyHMAC }; },{"./parser":216,"./signer":217,"./utils":218,"./verify":219}],216:[function(require,module,exports){ // Copyright 2012 Joyent, Inc. All rights reserved. var assert = require('assert-plus'); var util = require('util'); var utils = require('./utils'); ///--- Globals var HASH_ALGOS = utils.HASH_ALGOS; var PK_ALGOS = utils.PK_ALGOS; var HttpSignatureError = utils.HttpSignatureError; var InvalidAlgorithmError = utils.InvalidAlgorithmError; var validateAlgorithm = utils.validateAlgorithm; var State = { New: 0, Params: 1 }; var ParamsState = { Name: 0, Quote: 1, Value: 2, Comma: 3 }; ///--- Specific Errors function ExpiredRequestError(message) { HttpSignatureError.call(this, message, ExpiredRequestError); } util.inherits(ExpiredRequestError, HttpSignatureError); function InvalidHeaderError(message) { HttpSignatureError.call(this, message, InvalidHeaderError); } util.inherits(InvalidHeaderError, HttpSignatureError); function InvalidParamsError(message) { HttpSignatureError.call(this, message, InvalidParamsError); } util.inherits(InvalidParamsError, HttpSignatureError); function MissingHeaderError(message) { HttpSignatureError.call(this, message, MissingHeaderError); } util.inherits(MissingHeaderError, HttpSignatureError); function StrictParsingError(message) { HttpSignatureError.call(this, message, StrictParsingError); } util.inherits(StrictParsingError, HttpSignatureError); ///--- Exported API module.exports = { /** * Parses the 'Authorization' header out of an http.ServerRequest object. * * Note that this API will fully validate the Authorization header, and throw * on any error. It will not however check the signature, or the keyId format * as those are specific to your environment. You can use the options object * to pass in extra constraints. * * As a response object you can expect this: * * { * "scheme": "Signature", * "params": { * "keyId": "foo", * "algorithm": "rsa-sha256", * "headers": [ * "date" or "x-date", * "digest" * ], * "signature": "base64" * }, * "signingString": "ready to be passed to crypto.verify()" * } * * @param {Object} request an http.ServerRequest. * @param {Object} options an optional options object with: * - clockSkew: allowed clock skew in seconds (default 300). * - headers: required header names (def: date or x-date) * - algorithms: algorithms to support (default: all). * - strict: should enforce latest spec parsing * (default: false). * @return {Object} parsed out object (see above). * @throws {TypeError} on invalid input. * @throws {InvalidHeaderError} on an invalid Authorization header error. * @throws {InvalidParamsError} if the params in the scheme are invalid. * @throws {MissingHeaderError} if the params indicate a header not present, * either in the request headers from the params, * or not in the params from a required header * in options. * @throws {StrictParsingError} if old attributes are used in strict parsing * mode. * @throws {ExpiredRequestError} if the value of date or x-date exceeds skew. */ parseRequest: function parseRequest(request, options) { assert.object(request, 'request'); assert.object(request.headers, 'request.headers'); if (options === undefined) { options = {}; } if (options.headers === undefined) { options.headers = [request.headers['x-date'] ? 'x-date' : 'date']; } assert.object(options, 'options'); assert.arrayOfString(options.headers, 'options.headers'); assert.optionalNumber(options.clockSkew, 'options.clockSkew'); if (!request.headers.authorization) throw new MissingHeaderError('no authorization header present in ' + 'the request'); options.clockSkew = options.clockSkew || 300; var i = 0; var state = State.New; var substate = ParamsState.Name; var tmpName = ''; var tmpValue = ''; var parsed = { scheme: '', params: {}, signingString: '', get algorithm() { return this.params.algorithm.toUpperCase(); }, get keyId() { return this.params.keyId; } }; var authz = request.headers.authorization; for (i = 0; i < authz.length; i++) { var c = authz.charAt(i); switch (Number(state)) { case State.New: if (c !== ' ') parsed.scheme += c; else state = State.Params; break; case State.Params: switch (Number(substate)) { case ParamsState.Name: var code = c.charCodeAt(0); // restricted name of A-Z / a-z if ((code >= 0x41 && code <= 0x5a) || // A-Z (code >= 0x61 && code <= 0x7a)) { // a-z tmpName += c; } else if (c === '=') { if (tmpName.length === 0) throw new InvalidHeaderError('bad param format'); substate = ParamsState.Quote; } else { throw new InvalidHeaderError('bad param format'); } break; case ParamsState.Quote: if (c === '"') { tmpValue = ''; substate = ParamsState.Value; } else { throw new InvalidHeaderError('bad param format'); } break; case ParamsState.Value: if (c === '"') { parsed.params[tmpName] = tmpValue; substate = ParamsState.Comma; } else { tmpValue += c; } break; case ParamsState.Comma: if (c === ',') { tmpName = ''; substate = ParamsState.Name; } else { throw new InvalidHeaderError('bad param format'); } break; default: throw new Error('Invalid substate'); } break; default: throw new Error('Invalid substate'); } } if (!parsed.params.headers || parsed.params.headers === '') { if (request.headers['x-date']) { parsed.params.headers = ['x-date']; } else { parsed.params.headers = ['date']; } } else { parsed.params.headers = parsed.params.headers.split(' '); } // Minimally validate the parsed object if (!parsed.scheme || parsed.scheme !== 'Signature') throw new InvalidHeaderError('scheme was not "Signature"'); if (!parsed.params.keyId) throw new InvalidHeaderError('keyId was not specified'); if (!parsed.params.algorithm) throw new InvalidHeaderError('algorithm was not specified'); if (!parsed.params.signature) throw new InvalidHeaderError('signature was not specified'); // Check the algorithm against the official list parsed.params.algorithm = parsed.params.algorithm.toLowerCase(); try { validateAlgorithm(parsed.params.algorithm); } catch (e) { if (e instanceof InvalidAlgorithmError) throw (new InvalidParamsError(parsed.params.algorithm + ' is not ' + 'supported')); else throw (e); } // Build the signingString for (i = 0; i < parsed.params.headers.length; i++) { var h = parsed.params.headers[i].toLowerCase(); parsed.params.headers[i] = h; if (h === 'request-line') { if (!options.strict) { /* * We allow headers from the older spec drafts if strict parsing isn't * specified in options. */ parsed.signingString += request.method + ' ' + request.url + ' HTTP/' + request.httpVersion; } else { /* Strict parsing doesn't allow older draft headers. */ throw (new StrictParsingError('request-line is not a valid header ' + 'with strict parsing enabled.')); } } else if (h === '(request-target)') { parsed.signingString += '(request-target): ' + request.method.toLowerCase() + ' ' + request.url; } else { var value = request.headers[h]; if (value === undefined) throw new MissingHeaderError(h + ' was not in the request'); parsed.signingString += h + ': ' + value; } if ((i + 1) < parsed.params.headers.length) parsed.signingString += '\n'; } // Check against the constraints var date; if (request.headers.date || request.headers['x-date']) { if (request.headers['x-date']) { date = new Date(request.headers['x-date']); } else { date = new Date(request.headers.date); } var now = new Date(); var skew = Math.abs(now.getTime() - date.getTime()); if (skew > options.clockSkew * 1000) { throw new ExpiredRequestError('clock skew of ' + (skew / 1000) + 's was greater than ' + options.clockSkew + 's'); } } options.headers.forEach(function (hdr) { // Remember that we already checked any headers in the params // were in the request, so if this passes we're good. if (parsed.params.headers.indexOf(hdr) < 0) throw new MissingHeaderError(hdr + ' was not a signed header'); }); if (options.algorithms) { if (options.algorithms.indexOf(parsed.params.algorithm) === -1) throw new InvalidParamsError(parsed.params.algorithm + ' is not a supported algorithm'); } return parsed; } }; },{"./utils":218,"assert-plus":172,"util":163}],217:[function(require,module,exports){ (function (Buffer){ // Copyright 2012 Joyent, Inc. All rights reserved. var assert = require('assert-plus'); var crypto = require('crypto'); var http = require('http'); var util = require('util'); var sshpk = require('sshpk'); var jsprim = require('jsprim'); var utils = require('./utils'); var sprintf = require('util').format; var HASH_ALGOS = utils.HASH_ALGOS; var PK_ALGOS = utils.PK_ALGOS; var InvalidAlgorithmError = utils.InvalidAlgorithmError; var HttpSignatureError = utils.HttpSignatureError; var validateAlgorithm = utils.validateAlgorithm; ///--- Globals var AUTHZ_FMT = 'Signature keyId="%s",algorithm="%s",headers="%s",signature="%s"'; ///--- Specific Errors function MissingHeaderError(message) { HttpSignatureError.call(this, message, MissingHeaderError); } util.inherits(MissingHeaderError, HttpSignatureError); function StrictParsingError(message) { HttpSignatureError.call(this, message, StrictParsingError); } util.inherits(StrictParsingError, HttpSignatureError); /* See createSigner() */ function RequestSigner(options) { assert.object(options, 'options'); var alg = []; if (options.algorithm !== undefined) { assert.string(options.algorithm, 'options.algorithm'); alg = validateAlgorithm(options.algorithm); } this.rs_alg = alg; /* * RequestSigners come in two varieties: ones with an rs_signFunc, and ones * with an rs_signer. * * rs_signFunc-based RequestSigners have to build up their entire signing * string within the rs_lines array and give it to rs_signFunc as a single * concat'd blob. rs_signer-based RequestSigners can add a line at a time to * their signing state by using rs_signer.update(), thus only needing to * buffer the hash function state and one line at a time. */ if (options.sign !== undefined) { assert.func(options.sign, 'options.sign'); this.rs_signFunc = options.sign; } else if (alg[0] === 'hmac' && options.key !== undefined) { assert.string(options.keyId, 'options.keyId'); this.rs_keyId = options.keyId; if (typeof (options.key) !== 'string' && !Buffer.isBuffer(options.key)) throw (new TypeError('options.key for HMAC must be a string or Buffer')); /* * Make an rs_signer for HMACs, not a rs_signFunc -- HMACs digest their * data in chunks rather than requiring it all to be given in one go * at the end, so they are more similar to signers than signFuncs. */ this.rs_signer = crypto.createHmac(alg[1].toUpperCase(), options.key); this.rs_signer.sign = function () { var digest = this.digest('base64'); return ({ hashAlgorithm: alg[1], toString: function () { return (digest); } }); }; } else if (options.key !== undefined) { var key = options.key; if (typeof (key) === 'string' || Buffer.isBuffer(key)) key = sshpk.parsePrivateKey(key); assert.ok(sshpk.PrivateKey.isPrivateKey(key, [1, 2]), 'options.key must be a sshpk.PrivateKey'); this.rs_key = key; assert.string(options.keyId, 'options.keyId'); this.rs_keyId = options.keyId; if (!PK_ALGOS[key.type]) { throw (new InvalidAlgorithmError(key.type.toUpperCase() + ' type ' + 'keys are not supported')); } if (alg[0] !== undefined && key.type !== alg[0]) { throw (new InvalidAlgorithmError('options.key must be a ' + alg[0].toUpperCase() + ' key, was given a ' + key.type.toUpperCase() + ' key instead')); } this.rs_signer = key.createSign(alg[1]); } else { throw (new TypeError('options.sign (func) or options.key is required')); } this.rs_headers = []; this.rs_lines = []; } /** * Adds a header to be signed, with its value, into this signer. * * @param {String} header * @param {String} value * @return {String} value written */ RequestSigner.prototype.writeHeader = function (header, value) { assert.string(header, 'header'); header = header.toLowerCase(); assert.string(value, 'value'); this.rs_headers.push(header); if (this.rs_signFunc) { this.rs_lines.push(header + ': ' + value); } else { var line = header + ': ' + value; if (this.rs_headers.length > 0) line = '\n' + line; this.rs_signer.update(line); } return (value); }; /** * Adds a default Date header, returning its value. * * @return {String} */ RequestSigner.prototype.writeDateHeader = function () { return (this.writeHeader('date', jsprim.rfc1123(new Date()))); }; /** * Adds the request target line to be signed. * * @param {String} method, HTTP method (e.g. 'get', 'post', 'put') * @param {String} path */ RequestSigner.prototype.writeTarget = function (method, path) { assert.string(method, 'method'); assert.string(path, 'path'); method = method.toLowerCase(); this.writeHeader('(request-target)', method + ' ' + path); }; /** * Calculate the value for the Authorization header on this request * asynchronously. * * @param {Func} callback (err, authz) */ RequestSigner.prototype.sign = function (cb) { assert.func(cb, 'callback'); if (this.rs_headers.length < 1) throw (new Error('At least one header must be signed')); var alg, authz; if (this.rs_signFunc) { var data = this.rs_lines.join('\n'); var self = this; this.rs_signFunc(data, function (err, sig) { if (err) { cb(err); return; } try { assert.object(sig, 'signature'); assert.string(sig.keyId, 'signature.keyId'); assert.string(sig.algorithm, 'signature.algorithm'); assert.string(sig.signature, 'signature.signature'); alg = validateAlgorithm(sig.algorithm); authz = sprintf(AUTHZ_FMT, sig.keyId, sig.algorithm, self.rs_headers.join(' '), sig.signature); } catch (e) { cb(e); return; } cb(null, authz); }); } else { try { var sigObj = this.rs_signer.sign(); } catch (e) { cb(e); return; } alg = (this.rs_alg[0] || this.rs_key.type) + '-' + sigObj.hashAlgorithm; var signature = sigObj.toString(); authz = sprintf(AUTHZ_FMT, this.rs_keyId, alg, this.rs_headers.join(' '), signature); cb(null, authz); } }; ///--- Exported API module.exports = { /** * Identifies whether a given object is a request signer or not. * * @param {Object} object, the object to identify * @returns {Boolean} */ isSigner: function (obj) { if (typeof (obj) === 'object' && obj instanceof RequestSigner) return (true); return (false); }, /** * Creates a request signer, used to asynchronously build a signature * for a request (does not have to be an http.ClientRequest). * * @param {Object} options, either: * - {String} keyId * - {String|Buffer} key * - {String} algorithm (optional, required for HMAC) * or: * - {Func} sign (data, cb) * @return {RequestSigner} */ createSigner: function createSigner(options) { return (new RequestSigner(options)); }, /** * Adds an 'Authorization' header to an http.ClientRequest object. * * Note that this API will add a Date header if it's not already set. Any * other headers in the options.headers array MUST be present, or this * will throw. * * You shouldn't need to check the return type; it's just there if you want * to be pedantic. * * The optional flag indicates whether parsing should use strict enforcement * of the version draft-cavage-http-signatures-04 of the spec or beyond. * The default is to be loose and support * older versions for compatibility. * * @param {Object} request an instance of http.ClientRequest. * @param {Object} options signing parameters object: * - {String} keyId required. * - {String} key required (either a PEM or HMAC key). * - {Array} headers optional; defaults to ['date']. * - {String} algorithm optional (unless key is HMAC); * default is the same as the sshpk default * signing algorithm for the type of key given * - {String} httpVersion optional; defaults to '1.1'. * - {Boolean} strict optional; defaults to 'false'. * @return {Boolean} true if Authorization (and optionally Date) were added. * @throws {TypeError} on bad parameter types (input). * @throws {InvalidAlgorithmError} if algorithm was bad or incompatible with * the given key. * @throws {sshpk.KeyParseError} if key was bad. * @throws {MissingHeaderError} if a header to be signed was specified but * was not present. */ signRequest: function signRequest(request, options) { assert.object(request, 'request'); assert.object(options, 'options'); assert.optionalString(options.algorithm, 'options.algorithm'); assert.string(options.keyId, 'options.keyId'); assert.optionalArrayOfString(options.headers, 'options.headers'); assert.optionalString(options.httpVersion, 'options.httpVersion'); if (!request.getHeader('Date')) request.setHeader('Date', jsprim.rfc1123(new Date())); if (!options.headers) options.headers = ['date']; if (!options.httpVersion) options.httpVersion = '1.1'; var alg = []; if (options.algorithm) { options.algorithm = options.algorithm.toLowerCase(); alg = validateAlgorithm(options.algorithm); } var i; var stringToSign = ''; for (i = 0; i < options.headers.length; i++) { if (typeof (options.headers[i]) !== 'string') throw new TypeError('options.headers must be an array of Strings'); var h = options.headers[i].toLowerCase(); if (h === 'request-line') { if (!options.strict) { /** * We allow headers from the older spec drafts if strict parsing isn't * specified in options. */ stringToSign += request.method + ' ' + request.path + ' HTTP/' + options.httpVersion; } else { /* Strict parsing doesn't allow older draft headers. */ throw (new StrictParsingError('request-line is not a valid header ' + 'with strict parsing enabled.')); } } else if (h === '(request-target)') { stringToSign += '(request-target): ' + request.method.toLowerCase() + ' ' + request.path; } else { var value = request.getHeader(h); if (value === undefined || value === '') { throw new MissingHeaderError(h + ' was not in the request'); } stringToSign += h + ': ' + value; } if ((i + 1) < options.headers.length) stringToSign += '\n'; } /* This is just for unit tests. */ if (request.hasOwnProperty('_stringToSign')) { request._stringToSign = stringToSign; } var signature; if (alg[0] === 'hmac') { if (typeof (options.key) !== 'string' && !Buffer.isBuffer(options.key)) throw (new TypeError('options.key must be a string or Buffer')); var hmac = crypto.createHmac(alg[1].toUpperCase(), options.key); hmac.update(stringToSign); signature = hmac.digest('base64'); } else { var key = options.key; if (typeof (key) === 'string' || Buffer.isBuffer(key)) key = sshpk.parsePrivateKey(options.key); assert.ok(sshpk.PrivateKey.isPrivateKey(key, [1, 2]), 'options.key must be a sshpk.PrivateKey'); if (!PK_ALGOS[key.type]) { throw (new InvalidAlgorithmError(key.type.toUpperCase() + ' type ' + 'keys are not supported')); } if (alg[0] !== undefined && key.type !== alg[0]) { throw (new InvalidAlgorithmError('options.key must be a ' + alg[0].toUpperCase() + ' key, was given a ' + key.type.toUpperCase() + ' key instead')); } var signer = key.createSign(alg[1]); signer.update(stringToSign); var sigObj = signer.sign(); if (!HASH_ALGOS[sigObj.hashAlgorithm]) { throw (new InvalidAlgorithmError(sigObj.hashAlgorithm.toUpperCase() + ' is not a supported hash algorithm')); } options.algorithm = key.type + '-' + sigObj.hashAlgorithm; signature = sigObj.toString(); assert.notStrictEqual(signature, '', 'empty signature produced'); } request.setHeader('Authorization', sprintf(AUTHZ_FMT, options.keyId, options.algorithm, options.headers.join(' '), signature)); return true; } }; }).call(this,{"isBuffer":require("../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js")}) },{"../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js":98,"./utils":218,"assert-plus":172,"crypto":58,"http":153,"jsprim":237,"sshpk":284,"util":163}],218:[function(require,module,exports){ // Copyright 2012 Joyent, Inc. All rights reserved. var assert = require('assert-plus'); var sshpk = require('sshpk'); var util = require('util'); var HASH_ALGOS = { 'sha1': true, 'sha256': true, 'sha512': true }; var PK_ALGOS = { 'rsa': true, 'dsa': true, 'ecdsa': true }; function HttpSignatureError(message, caller) { if (Error.captureStackTrace) Error.captureStackTrace(this, caller || HttpSignatureError); this.message = message; this.name = caller.name; } util.inherits(HttpSignatureError, Error); function InvalidAlgorithmError(message) { HttpSignatureError.call(this, message, InvalidAlgorithmError); } util.inherits(InvalidAlgorithmError, HttpSignatureError); function validateAlgorithm(algorithm) { var alg = algorithm.toLowerCase().split('-'); if (alg.length !== 2) { throw (new InvalidAlgorithmError(alg[0].toUpperCase() + ' is not a ' + 'valid algorithm')); } if (alg[0] !== 'hmac' && !PK_ALGOS[alg[0]]) { throw (new InvalidAlgorithmError(alg[0].toUpperCase() + ' type keys ' + 'are not supported')); } if (!HASH_ALGOS[alg[1]]) { throw (new InvalidAlgorithmError(alg[1].toUpperCase() + ' is not a ' + 'supported hash algorithm')); } return (alg); } ///--- API module.exports = { HASH_ALGOS: HASH_ALGOS, PK_ALGOS: PK_ALGOS, HttpSignatureError: HttpSignatureError, InvalidAlgorithmError: InvalidAlgorithmError, validateAlgorithm: validateAlgorithm, /** * Converts an OpenSSH public key (rsa only) to a PKCS#8 PEM file. * * The intent of this module is to interoperate with OpenSSL only, * specifically the node crypto module's `verify` method. * * @param {String} key an OpenSSH public key. * @return {String} PEM encoded form of the RSA public key. * @throws {TypeError} on bad input. * @throws {Error} on invalid ssh key formatted data. */ sshKeyToPEM: function sshKeyToPEM(key) { assert.string(key, 'ssh_key'); var k = sshpk.parseKey(key, 'ssh'); return (k.toString('pem')); }, /** * Generates an OpenSSH fingerprint from an ssh public key. * * @param {String} key an OpenSSH public key. * @return {String} key fingerprint. * @throws {TypeError} on bad input. * @throws {Error} if what you passed doesn't look like an ssh public key. */ fingerprint: function fingerprint(key) { assert.string(key, 'ssh_key'); var k = sshpk.parseKey(key, 'ssh'); return (k.fingerprint('md5').toString('hex')); }, /** * Converts a PKGCS#8 PEM file to an OpenSSH public key (rsa) * * The reverse of the above function. */ pemToRsaSSHKey: function pemToRsaSSHKey(pem, comment) { assert.equal('string', typeof (pem), 'typeof pem'); var k = sshpk.parseKey(pem, 'pem'); k.comment = comment; return (k.toString('ssh')); } }; },{"assert-plus":172,"sshpk":284,"util":163}],219:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. var assert = require('assert-plus'); var crypto = require('crypto'); var sshpk = require('sshpk'); var utils = require('./utils'); var HASH_ALGOS = utils.HASH_ALGOS; var PK_ALGOS = utils.PK_ALGOS; var InvalidAlgorithmError = utils.InvalidAlgorithmError; var HttpSignatureError = utils.HttpSignatureError; var validateAlgorithm = utils.validateAlgorithm; ///--- Exported API module.exports = { /** * Verify RSA/DSA signature against public key. You are expected to pass in * an object that was returned from `parse()`. * * @param {Object} parsedSignature the object you got from `parse`. * @param {String} pubkey RSA/DSA private key PEM. * @return {Boolean} true if valid, false otherwise. * @throws {TypeError} if you pass in bad arguments. * @throws {InvalidAlgorithmError} */ verifySignature: function verifySignature(parsedSignature, pubkey) { assert.object(parsedSignature, 'parsedSignature'); if (typeof (pubkey) === 'string' || Buffer.isBuffer(pubkey)) pubkey = sshpk.parseKey(pubkey); assert.ok(sshpk.Key.isKey(pubkey, [1, 1]), 'pubkey must be a sshpk.Key'); var alg = validateAlgorithm(parsedSignature.algorithm); if (alg[0] === 'hmac' || alg[0] !== pubkey.type) return (false); var v = pubkey.createVerify(alg[1]); v.update(parsedSignature.signingString); return (v.verify(parsedSignature.params.signature, 'base64')); }, /** * Verify HMAC against shared secret. You are expected to pass in an object * that was returned from `parse()`. * * @param {Object} parsedSignature the object you got from `parse`. * @param {String} secret HMAC shared secret. * @return {Boolean} true if valid, false otherwise. * @throws {TypeError} if you pass in bad arguments. * @throws {InvalidAlgorithmError} */ verifyHMAC: function verifyHMAC(parsedSignature, secret) { assert.object(parsedSignature, 'parsedHMAC'); assert.string(secret, 'secret'); var alg = validateAlgorithm(parsedSignature.algorithm); if (alg[0] !== 'hmac') return (false); var hashAlg = alg[1].toUpperCase(); var hmac = crypto.createHmac(hashAlg, secret); hmac.update(parsedSignature.signingString); /* * Now double-hash to avoid leaking timing information - there's * no easy constant-time compare in JS, so we use this approach * instead. See for more info: * https://www.isecpartners.com/blog/2011/february/double-hmac- * verification.aspx */ var h1 = crypto.createHmac(hashAlg, secret); h1.update(hmac.digest()); h1 = h1.digest(); var h2 = crypto.createHmac(hashAlg, secret); h2.update(new Buffer(parsedSignature.params.signature, 'base64')); h2 = h2.digest(); /* Node 0.8 returns strings from .digest(). */ if (typeof (h1) === 'string') return (h1 === h2); /* And node 0.10 lacks the .equals() method on Buffers. */ if (Buffer.isBuffer(h1) && !h1.equals) return (h1.toString('binary') === h2.toString('binary')); return (h1.equals(h2)); } }; }).call(this,require("buffer").Buffer) },{"./utils":218,"assert-plus":172,"buffer":49,"crypto":58,"sshpk":284}],220:[function(require,module,exports){ arguments[4][97][0].apply(exports,arguments) },{"dup":97}],221:[function(require,module,exports){ exports['date-time'] = /^\d{4}-(?:0[0-9]{1}|1[0-2]{1})-[0-9]{2}[tT ]\d{2}:\d{2}:\d{2}(\.\d+)?([zZ]|[+-]\d{2}:\d{2})$/ exports['date'] = /^\d{4}-(?:0[0-9]{1}|1[0-2]{1})-[0-9]{2}$/ exports['time'] = /^\d{2}:\d{2}:\d{2}$/ exports['email'] = /^\S+@\S+$/ exports['ip-address'] = exports['ipv4'] = /^(?:(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)\.){3}(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)$/ exports['ipv6'] = /^\s*((([0-9A-Fa-f]{1,4}:){7}([0-9A-Fa-f]{1,4}|:))|(([0-9A-Fa-f]{1,4}:){6}(:[0-9A-Fa-f]{1,4}|((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9A-Fa-f]{1,4}:){5}(((:[0-9A-Fa-f]{1,4}){1,2})|:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9A-Fa-f]{1,4}:){4}(((:[0-9A-Fa-f]{1,4}){1,3})|((:[0-9A-Fa-f]{1,4})?:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){3}(((:[0-9A-Fa-f]{1,4}){1,4})|((:[0-9A-Fa-f]{1,4}){0,2}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){2}(((:[0-9A-Fa-f]{1,4}){1,5})|((:[0-9A-Fa-f]{1,4}){0,3}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9A-Fa-f]{1,4}:){1}(((:[0-9A-Fa-f]{1,4}){1,6})|((:[0-9A-Fa-f]{1,4}){0,4}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(:(((:[0-9A-Fa-f]{1,4}){1,7})|((:[0-9A-Fa-f]{1,4}){0,5}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:)))(%.+)?\s*$/ exports['uri'] = /^[a-zA-Z][a-zA-Z0-9+-.]*:[^\s]*$/ exports['color'] = /(#?([0-9A-Fa-f]{3,6})\b)|(aqua)|(black)|(blue)|(fuchsia)|(gray)|(green)|(lime)|(maroon)|(navy)|(olive)|(orange)|(purple)|(red)|(silver)|(teal)|(white)|(yellow)|(rgb\(\s*\b([0-9]|[1-9][0-9]|1[0-9][0-9]|2[0-4][0-9]|25[0-5])\b\s*,\s*\b([0-9]|[1-9][0-9]|1[0-9][0-9]|2[0-4][0-9]|25[0-5])\b\s*,\s*\b([0-9]|[1-9][0-9]|1[0-9][0-9]|2[0-4][0-9]|25[0-5])\b\s*\))|(rgb\(\s*(\d?\d%|100%)+\s*,\s*(\d?\d%|100%)+\s*,\s*(\d?\d%|100%)+\s*\))/ exports['hostname'] = /^([a-zA-Z0-9]|[a-zA-Z0-9][a-zA-Z0-9\-]{0,61}[a-zA-Z0-9])(\.([a-zA-Z0-9]|[a-zA-Z0-9][a-zA-Z0-9\-]{0,61}[a-zA-Z0-9]))*$/ exports['alpha'] = /^[a-zA-Z]+$/ exports['alphanumeric'] = /^[a-zA-Z0-9]+$/ exports['style'] = /\s*(.+?):\s*([^;]+);?/g exports['phone'] = /^\+(?:[0-9] ?){6,14}[0-9]$/ exports['utc-millisec'] = /^[0-9]{1,15}\.?[0-9]{0,15}$/ },{}],222:[function(require,module,exports){ var genobj = require('generate-object-property') var genfun = require('generate-function') var jsonpointer = require('jsonpointer') var xtend = require('xtend') var formats = require('./formats') var get = function(obj, additionalSchemas, ptr) { var visit = function(sub) { if (sub && sub.id === ptr) return sub if (typeof sub !== 'object' || !sub) return null return Object.keys(sub).reduce(function(res, k) { return res || visit(sub[k]) }, null) } var res = visit(obj) if (res) return res ptr = ptr.replace(/^#/, '') ptr = ptr.replace(/\/$/, '') try { return jsonpointer.get(obj, decodeURI(ptr)) } catch (err) { var end = ptr.indexOf('#') var other // external reference if (end !== 0) { // fragment doesn't exist. if (end === -1) { other = additionalSchemas[ptr] } else { var ext = ptr.slice(0, end) other = additionalSchemas[ext] var fragment = ptr.slice(end).replace(/^#/, '') try { return jsonpointer.get(other, fragment) } catch (err) {} } } else { other = additionalSchemas[ptr] } return other || null } } var formatName = function(field) { field = JSON.stringify(field) var pattern = /\[([^\[\]"]+)\]/ while (pattern.test(field)) field = field.replace(pattern, '."+$1+"') return field } var types = {} types.any = function() { return 'true' } types.null = function(name) { return name+' === null' } types.boolean = function(name) { return 'typeof '+name+' === "boolean"' } types.array = function(name) { return 'Array.isArray('+name+')' } types.object = function(name) { return 'typeof '+name+' === "object" && '+name+' && !Array.isArray('+name+')' } types.number = function(name) { return 'typeof '+name+' === "number"' } types.integer = function(name) { return 'typeof '+name+' === "number" && (Math.floor('+name+') === '+name+' || '+name+' > 9007199254740992 || '+name+' < -9007199254740992)' } types.string = function(name) { return 'typeof '+name+' === "string"' } var unique = function(array) { var list = [] for (var i = 0; i < array.length; i++) { list.push(typeof array[i] === 'object' ? JSON.stringify(array[i]) : array[i]) } for (var i = 1; i < list.length; i++) { if (list.indexOf(list[i]) !== i) return false } return true } var isMultipleOf = function(name, multipleOf) { var res; var factor = ((multipleOf | 0) !== multipleOf) ? Math.pow(10, multipleOf.toString().split('.').pop().length) : 1 if (factor > 1) { var factorName = ((name | 0) !== name) ? Math.pow(10, name.toString().split('.').pop().length) : 1 if (factorName > factor) res = true else res = Math.round(factor * name) % (factor * multipleOf) } else res = name % multipleOf; return !res; } var toType = function(node) { return node.type } var compile = function(schema, cache, root, reporter, opts) { var fmts = opts ? xtend(formats, opts.formats) : formats var scope = {unique:unique, formats:fmts, isMultipleOf:isMultipleOf} var verbose = opts ? !!opts.verbose : false; var greedy = opts && opts.greedy !== undefined ? opts.greedy : false; var syms = {} var gensym = function(name) { return name+(syms[name] = (syms[name] || 0)+1) } var reversePatterns = {} var patterns = function(p) { if (reversePatterns[p]) return reversePatterns[p] var n = gensym('pattern') scope[n] = new RegExp(p) reversePatterns[p] = n return n } var vars = ['i','j','k','l','m','n','o','p','q','r','s','t','u','v','x','y','z'] var genloop = function() { var v = vars.shift() vars.push(v+v[0]) return v } var visit = function(name, node, reporter, filter) { var properties = node.properties var type = node.type var tuple = false if (Array.isArray(node.items)) { // tuple type properties = {} node.items.forEach(function(item, i) { properties[i] = item }) type = 'array' tuple = true } var indent = 0 var error = function(msg, prop, value) { validate('errors++') if (reporter === true) { validate('if (validate.errors === null) validate.errors = []') if (verbose) { validate('validate.errors.push({field:%s,message:%s,value:%s,type:%s})', formatName(prop || name), JSON.stringify(msg), value || name, JSON.stringify(type)) } else { validate('validate.errors.push({field:%s,message:%s})', formatName(prop || name), JSON.stringify(msg)) } } } if (node.required === true) { indent++ validate('if (%s === undefined) {', name) error('is required') validate('} else {') } else { indent++ validate('if (%s !== undefined) {', name) } var valid = [].concat(type) .map(function(t) { return types[t || 'any'](name) }) .join(' || ') || 'true' if (valid !== 'true') { indent++ validate('if (!(%s)) {', valid) error('is the wrong type') validate('} else {') } if (tuple) { if (node.additionalItems === false) { validate('if (%s.length > %d) {', name, node.items.length) error('has additional items') validate('}') } else if (node.additionalItems) { var i = genloop() validate('for (var %s = %d; %s < %s.length; %s++) {', i, node.items.length, i, name, i) visit(name+'['+i+']', node.additionalItems, reporter, filter) validate('}') } } if (node.format && fmts[node.format]) { if (type !== 'string' && formats[node.format]) validate('if (%s) {', types.string(name)) var n = gensym('format') scope[n] = fmts[node.format] if (typeof scope[n] === 'function') validate('if (!%s(%s)) {', n, name) else validate('if (!%s.test(%s)) {', n, name) error('must be '+node.format+' format') validate('}') if (type !== 'string' && formats[node.format]) validate('}') } if (Array.isArray(node.required)) { var isUndefined = function(req) { return genobj(name, req) + ' === undefined' } var checkRequired = function (req) { var prop = genobj(name, req); validate('if (%s === undefined) {', prop) error('is required', prop) validate('missing++') validate('}') } validate('if ((%s)) {', type !== 'object' ? types.object(name) : 'true') validate('var missing = 0') node.required.map(checkRequired) validate('}'); if (!greedy) { validate('if (missing === 0) {') indent++ } } if (node.uniqueItems) { if (type !== 'array') validate('if (%s) {', types.array(name)) validate('if (!(unique(%s))) {', name) error('must be unique') validate('}') if (type !== 'array') validate('}') } if (node.enum) { var complex = node.enum.some(function(e) { return typeof e === 'object' }) var compare = complex ? function(e) { return 'JSON.stringify('+name+')'+' !== JSON.stringify('+JSON.stringify(e)+')' } : function(e) { return name+' !== '+JSON.stringify(e) } validate('if (%s) {', node.enum.map(compare).join(' && ') || 'false') error('must be an enum value') validate('}') } if (node.dependencies) { if (type !== 'object') validate('if (%s) {', types.object(name)) Object.keys(node.dependencies).forEach(function(key) { var deps = node.dependencies[key] if (typeof deps === 'string') deps = [deps] var exists = function(k) { return genobj(name, k) + ' !== undefined' } if (Array.isArray(deps)) { validate('if (%s !== undefined && !(%s)) {', genobj(name, key), deps.map(exists).join(' && ') || 'true') error('dependencies not set') validate('}') } if (typeof deps === 'object') { validate('if (%s !== undefined) {', genobj(name, key)) visit(name, deps, reporter, filter) validate('}') } }) if (type !== 'object') validate('}') } if (node.additionalProperties || node.additionalProperties === false) { if (type !== 'object') validate('if (%s) {', types.object(name)) var i = genloop() var keys = gensym('keys') var toCompare = function(p) { return keys+'['+i+'] !== '+JSON.stringify(p) } var toTest = function(p) { return '!'+patterns(p)+'.test('+keys+'['+i+'])' } var additionalProp = Object.keys(properties || {}).map(toCompare) .concat(Object.keys(node.patternProperties || {}).map(toTest)) .join(' && ') || 'true' validate('var %s = Object.keys(%s)', keys, name) ('for (var %s = 0; %s < %s.length; %s++) {', i, i, keys, i) ('if (%s) {', additionalProp) if (node.additionalProperties === false) { if (filter) validate('delete %s', name+'['+keys+'['+i+']]') error('has additional properties', null, JSON.stringify(name+'.') + ' + ' + keys + '['+i+']') } else { visit(name+'['+keys+'['+i+']]', node.additionalProperties, reporter, filter) } validate ('}') ('}') if (type !== 'object') validate('}') } if (node.$ref) { var sub = get(root, opts && opts.schemas || {}, node.$ref) if (sub) { var fn = cache[node.$ref] if (!fn) { cache[node.$ref] = function proxy(data) { return fn(data) } fn = compile(sub, cache, root, false, opts) } var n = gensym('ref') scope[n] = fn validate('if (!(%s(%s))) {', n, name) error('referenced schema does not match') validate('}') } } if (node.not) { var prev = gensym('prev') validate('var %s = errors', prev) visit(name, node.not, false, filter) validate('if (%s === errors) {', prev) error('negative schema matches') validate('} else {') ('errors = %s', prev) ('}') } if (node.items && !tuple) { if (type !== 'array') validate('if (%s) {', types.array(name)) var i = genloop() validate('for (var %s = 0; %s < %s.length; %s++) {', i, i, name, i) visit(name+'['+i+']', node.items, reporter, filter) validate('}') if (type !== 'array') validate('}') } if (node.patternProperties) { if (type !== 'object') validate('if (%s) {', types.object(name)) var keys = gensym('keys') var i = genloop() validate ('var %s = Object.keys(%s)', keys, name) ('for (var %s = 0; %s < %s.length; %s++) {', i, i, keys, i) Object.keys(node.patternProperties).forEach(function(key) { var p = patterns(key) validate('if (%s.test(%s)) {', p, keys+'['+i+']') visit(name+'['+keys+'['+i+']]', node.patternProperties[key], reporter, filter) validate('}') }) validate('}') if (type !== 'object') validate('}') } if (node.pattern) { var p = patterns(node.pattern) if (type !== 'string') validate('if (%s) {', types.string(name)) validate('if (!(%s.test(%s))) {', p, name) error('pattern mismatch') validate('}') if (type !== 'string') validate('}') } if (node.allOf) { node.allOf.forEach(function(sch) { visit(name, sch, reporter, filter) }) } if (node.anyOf && node.anyOf.length) { var prev = gensym('prev') node.anyOf.forEach(function(sch, i) { if (i === 0) { validate('var %s = errors', prev) } else { validate('if (errors !== %s) {', prev) ('errors = %s', prev) } visit(name, sch, false, false) }) node.anyOf.forEach(function(sch, i) { if (i) validate('}') }) validate('if (%s !== errors) {', prev) error('no schemas match') validate('}') } if (node.oneOf && node.oneOf.length) { var prev = gensym('prev') var passes = gensym('passes') validate ('var %s = errors', prev) ('var %s = 0', passes) node.oneOf.forEach(function(sch, i) { visit(name, sch, false, false) validate('if (%s === errors) {', prev) ('%s++', passes) ('} else {') ('errors = %s', prev) ('}') }) validate('if (%s !== 1) {', passes) error('no (or more than one) schemas match') validate('}') } if (node.multipleOf !== undefined) { if (type !== 'number' && type !== 'integer') validate('if (%s) {', types.number(name)) validate('if (!isMultipleOf(%s, %d)) {', name, node.multipleOf) error('has a remainder') validate('}') if (type !== 'number' && type !== 'integer') validate('}') } if (node.maxProperties !== undefined) { if (type !== 'object') validate('if (%s) {', types.object(name)) validate('if (Object.keys(%s).length > %d) {', name, node.maxProperties) error('has more properties than allowed') validate('}') if (type !== 'object') validate('}') } if (node.minProperties !== undefined) { if (type !== 'object') validate('if (%s) {', types.object(name)) validate('if (Object.keys(%s).length < %d) {', name, node.minProperties) error('has less properties than allowed') validate('}') if (type !== 'object') validate('}') } if (node.maxItems !== undefined) { if (type !== 'array') validate('if (%s) {', types.array(name)) validate('if (%s.length > %d) {', name, node.maxItems) error('has more items than allowed') validate('}') if (type !== 'array') validate('}') } if (node.minItems !== undefined) { if (type !== 'array') validate('if (%s) {', types.array(name)) validate('if (%s.length < %d) {', name, node.minItems) error('has less items than allowed') validate('}') if (type !== 'array') validate('}') } if (node.maxLength !== undefined) { if (type !== 'string') validate('if (%s) {', types.string(name)) validate('if (%s.length > %d) {', name, node.maxLength) error('has longer length than allowed') validate('}') if (type !== 'string') validate('}') } if (node.minLength !== undefined) { if (type !== 'string') validate('if (%s) {', types.string(name)) validate('if (%s.length < %d) {', name, node.minLength) error('has less length than allowed') validate('}') if (type !== 'string') validate('}') } if (node.minimum !== undefined) { validate('if (%s %s %d) {', name, node.exclusiveMinimum ? '<=' : '<', node.minimum) error('is less than minimum') validate('}') } if (node.maximum !== undefined) { validate('if (%s %s %d) {', name, node.exclusiveMaximum ? '>=' : '>', node.maximum) error('is more than maximum') validate('}') } if (properties) { Object.keys(properties).forEach(function(p) { if (Array.isArray(type) && type.indexOf('null') !== -1) validate('if (%s !== null) {', name) visit(genobj(name, p), properties[p], reporter, filter) if (Array.isArray(type) && type.indexOf('null') !== -1) validate('}') }) } while (indent--) validate('}') } var validate = genfun ('function validate(data) {') ('validate.errors = null') ('var errors = 0') visit('data', schema, reporter, opts && opts.filter) validate ('return errors === 0') ('}') validate = validate.toFunction(scope) validate.errors = null if (Object.defineProperty) { Object.defineProperty(validate, 'error', { get: function() { if (!validate.errors) return '' return validate.errors.map(function(err) { return err.field + ' ' + err.message; }).join('\n') } }) } validate.toJSON = function() { return schema } return validate } module.exports = function(schema, opts) { if (typeof schema === 'string') schema = JSON.parse(schema) return compile(schema, {}, schema, true, opts) } module.exports.filter = function(schema, opts) { var validate = module.exports(schema, xtend(opts, {filter: true})) return function(sch) { validate(sch) return sch } } },{"./formats":221,"generate-function":193,"generate-object-property":194,"jsonpointer":236,"xtend":304}],223:[function(require,module,exports){ "use strict" function isProperty(str) { return 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} module.exports = isProperty },{}],224:[function(require,module,exports){ module.exports = isTypedArray isTypedArray.strict = isStrictTypedArray isTypedArray.loose = isLooseTypedArray var toString = Object.prototype.toString var names = { '[object Int8Array]': true , '[object Int16Array]': true , '[object Int32Array]': true , '[object Uint8Array]': true , '[object Uint8ClampedArray]': true , '[object Uint16Array]': true , '[object Uint32Array]': true , '[object Float32Array]': true , '[object Float64Array]': true } function isTypedArray(arr) { return ( isStrictTypedArray(arr) || isLooseTypedArray(arr) ) } function isStrictTypedArray(arr) { return ( arr instanceof Int8Array || arr instanceof Int16Array || arr instanceof Int32Array || arr instanceof Uint8Array || arr instanceof Uint8ClampedArray || arr instanceof Uint16Array || arr instanceof Uint32Array || arr instanceof Float32Array || arr instanceof Float64Array ) } function isLooseTypedArray(arr) { return names[toString.call(arr)] } },{}],225:[function(require,module,exports){ arguments[4][99][0].apply(exports,arguments) },{"dup":99}],226:[function(require,module,exports){ var stream = require('stream') function isStream (obj) { return obj instanceof stream.Stream } function isReadable (obj) { return isStream(obj) && typeof obj._read == 'function' && typeof obj._readableState == 'object' } function isWritable (obj) { return isStream(obj) && typeof obj._write == 'function' && typeof obj._writableState == 'object' } function isDuplex (obj) { return isReadable(obj) && isWritable(obj) } module.exports = isStream module.exports.isReadable = isReadable module.exports.isWritable = isWritable module.exports.isDuplex = isDuplex },{"stream":152}],227:[function(require,module,exports){ "use strict"; /* * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss * * You should have received a copy of the license along with this program. */ var dh = require('./lib/dh'); var eddsa = require('./lib/eddsa'); var curve255 = require('./lib/curve255'); var utils = require('./lib/utils'); /** * @exports jodid25519 * Curve 25519-based cryptography collection. * * @description * EC Diffie-Hellman (ECDH) based on Curve25519 and digital signatures * (EdDSA) based on Ed25519. */ var ns = {}; /** Module version indicator as string (format: [major.minor.patch]). */ ns.VERSION = '0.7.1'; ns.dh = dh; ns.eddsa = eddsa; ns.curve255 = curve255; ns.utils = utils; module.exports = ns; },{"./lib/curve255":229,"./lib/dh":230,"./lib/eddsa":231,"./lib/utils":232}],228:[function(require,module,exports){ "use strict"; /** * @fileOverview * Core operations on curve 25519 required for the higher level modules. */ /* * Copyright (c) 2007, 2013, 2014 Michele Bini * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss, Michele Bini * * You should have received a copy of the license along with this program. */ var crypto = require('crypto'); /** * @exports jodid25519/core * Core operations on curve 25519 required for the higher level modules. * * @description * Core operations on curve 25519 required for the higher level modules. * *

* This core code is extracted from Michele Bini's curve255.js implementation, * which is used as a base for Curve25519 ECDH and Ed25519 EdDSA operations. *

*/ var ns = {}; function _setbit(n, c, v) { var i = c >> 4; var a = n[i]; a = a + (1 << (c & 0xf)) * v; n[i] = a; } function _getbit(n, c) { return (n[c >> 4] >> (c & 0xf)) & 1; } function _ZERO() { return [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]; } function _ONE() { return [1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]; } // Basepoint. function _BASE() { return [9, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]; } // return -1, 0, +1 when a is less than, equal, or greater than b function _bigintcmp(a, b) { // The following code is a bit tricky to avoid code branching var c, abs_r, mask; var r = 0; for (c = 15; c >= 0; c--) { var x = a[c]; var y = b[c]; r = r + (x - y) * (1 - r * r); // http://graphics.stanford.edu/~seander/bithacks.html#IntegerAbs // correct for [-294967295, 294967295] mask = r >> 31; abs_r = (r + mask) ^ mask; // http://stackoverflow.com/questions/596467/how-do-i-convert-a-number-to-an-integer-in-javascript // this rounds towards zero r = ~~((r << 1) / (abs_r + 1)); } return r; } function _bigintadd(a, b) { var r = []; var v; r[0] = (v = a[0] + b[0]) & 0xffff; r[1] = (v = (v >>> 16) + a[1] + b[1]) & 0xffff; r[2] = (v = (v >>> 16) + a[2] + b[2]) & 0xffff; r[3] = (v = (v >>> 16) + a[3] + b[3]) & 0xffff; r[4] = (v = (v >>> 16) + a[4] + b[4]) & 0xffff; r[5] = (v = (v >>> 16) + a[5] + b[5]) & 0xffff; r[6] = (v = (v >>> 16) + a[6] + b[6]) & 0xffff; r[7] = (v = (v >>> 16) + a[7] + b[7]) & 0xffff; r[8] = (v = (v >>> 16) + a[8] + b[8]) & 0xffff; r[9] = (v = (v >>> 16) + a[9] + b[9]) & 0xffff; r[10] = (v = (v >>> 16) + a[10] + b[10]) & 0xffff; r[11] = (v = (v >>> 16) + a[11] + b[11]) & 0xffff; r[12] = (v = (v >>> 16) + a[12] + b[12]) & 0xffff; r[13] = (v = (v >>> 16) + a[13] + b[13]) & 0xffff; r[14] = (v = (v >>> 16) + a[14] + b[14]) & 0xffff; r[15] = (v >>> 16) + a[15] + b[15]; return r; } function _bigintsub(a, b) { var r = []; var v; r[0] = (v = 0x80000 + a[0] - b[0]) & 0xffff; r[1] = (v = (v >>> 16) + 0x7fff8 + a[1] - b[1]) & 0xffff; r[2] = (v = (v >>> 16) + 0x7fff8 + a[2] - b[2]) & 0xffff; r[3] = (v = (v >>> 16) + 0x7fff8 + a[3] - b[3]) & 0xffff; r[4] = (v = (v >>> 16) + 0x7fff8 + a[4] - b[4]) & 0xffff; r[5] = (v = (v >>> 16) + 0x7fff8 + a[5] - b[5]) & 0xffff; r[6] = (v = (v >>> 16) + 0x7fff8 + a[6] - b[6]) & 0xffff; r[7] = (v = (v >>> 16) + 0x7fff8 + a[7] - b[7]) & 0xffff; r[8] = (v = (v >>> 16) + 0x7fff8 + a[8] - b[8]) & 0xffff; r[9] = (v = (v >>> 16) + 0x7fff8 + a[9] - b[9]) & 0xffff; r[10] = (v = (v >>> 16) + 0x7fff8 + a[10] - b[10]) & 0xffff; r[11] = (v = (v >>> 16) + 0x7fff8 + a[11] - b[11]) & 0xffff; r[12] = (v = (v >>> 16) + 0x7fff8 + a[12] - b[12]) & 0xffff; r[13] = (v = (v >>> 16) + 0x7fff8 + a[13] - b[13]) & 0xffff; r[14] = (v = (v >>> 16) + 0x7fff8 + a[14] - b[14]) & 0xffff; r[15] = (v >>> 16) - 8 + a[15] - b[15]; return r; } function _sqr8h(a7, a6, a5, a4, a3, a2, a1, a0) { // 'division by 0x10000' can not be replaced by '>> 16' because // more than 32 bits of precision are needed similarly // 'multiplication by 2' cannot be replaced by '<< 1' var r = []; var v; r[0] = (v = a0 * a0) & 0xffff; r[1] = (v = (0 | (v / 0x10000)) + 2 * a0 * a1) & 0xffff; r[2] = (v = (0 | (v / 0x10000)) + 2 * a0 * a2 + a1 * a1) & 0xffff; r[3] = (v = (0 | (v / 0x10000)) + 2 * a0 * a3 + 2 * a1 * a2) & 0xffff; r[4] = (v = (0 | (v / 0x10000)) + 2 * a0 * a4 + 2 * a1 * a3 + a2 * a2) & 0xffff; r[5] = (v = (0 | (v / 0x10000)) + 2 * a0 * a5 + 2 * a1 * a4 + 2 * a2 * a3) & 0xffff; r[6] = (v = (0 | (v / 0x10000)) + 2 * a0 * a6 + 2 * a1 * a5 + 2 * a2 * a4 + a3 * a3) & 0xffff; r[7] = (v = (0 | (v / 0x10000)) + 2 * a0 * a7 + 2 * a1 * a6 + 2 * a2 * a5 + 2 * a3 * a4) & 0xffff; r[8] = (v = (0 | (v / 0x10000)) + 2 * a1 * a7 + 2 * a2 * a6 + 2 * a3 * a5 + a4 * a4) & 0xffff; r[9] = (v = (0 | (v / 0x10000)) + 2 * a2 * a7 + 2 * a3 * a6 + 2 * a4 * a5) & 0xffff; r[10] = (v = (0 | (v / 0x10000)) + 2 * a3 * a7 + 2 * a4 * a6 + a5 * a5) & 0xffff; r[11] = (v = (0 | (v / 0x10000)) + 2 * a4 * a7 + 2 * a5 * a6) & 0xffff; r[12] = (v = (0 | (v / 0x10000)) + 2 * a5 * a7 + a6 * a6) & 0xffff; r[13] = (v = (0 | (v / 0x10000)) + 2 * a6 * a7) & 0xffff; r[14] = (v = (0 | (v / 0x10000)) + a7 * a7) & 0xffff; r[15] = 0 | (v / 0x10000); return r; } function _sqrmodp(a) { var x = _sqr8h(a[15], a[14], a[13], a[12], a[11], a[10], a[9], a[8]); var z = _sqr8h(a[7], a[6], a[5], a[4], a[3], a[2], a[1], a[0]); var y = _sqr8h(a[15] + a[7], a[14] + a[6], a[13] + a[5], a[12] + a[4], a[11] + a[3], a[10] + a[2], a[9] + a[1], a[8] + a[0]); var r = []; var v; r[0] = (v = 0x800000 + z[0] + (y[8] - x[8] - z[8] + x[0] - 0x80) * 38) & 0xffff; r[1] = (v = 0x7fff80 + (v >>> 16) + z[1] + (y[9] - x[9] - z[9] + x[1]) * 38) & 0xffff; r[2] = (v = 0x7fff80 + (v >>> 16) + z[2] + (y[10] - x[10] - z[10] + x[2]) * 38) & 0xffff; r[3] = (v = 0x7fff80 + (v >>> 16) + z[3] + (y[11] - x[11] - z[11] + x[3]) * 38) & 0xffff; r[4] = (v = 0x7fff80 + (v >>> 16) + z[4] + (y[12] - x[12] - z[12] + x[4]) * 38) & 0xffff; r[5] = (v = 0x7fff80 + (v >>> 16) + z[5] + (y[13] - x[13] - z[13] + x[5]) * 38) & 0xffff; r[6] = (v = 0x7fff80 + (v >>> 16) + z[6] + (y[14] - x[14] - z[14] + x[6]) * 38) & 0xffff; r[7] = (v = 0x7fff80 + (v >>> 16) + z[7] + (y[15] - x[15] - z[15] + x[7]) * 38) & 0xffff; r[8] = (v = 0x7fff80 + (v >>> 16) + z[8] + y[0] - x[0] - z[0] + x[8] * 38) & 0xffff; r[9] = (v = 0x7fff80 + (v >>> 16) + z[9] + y[1] - x[1] - z[1] + x[9] * 38) & 0xffff; r[10] = (v = 0x7fff80 + (v >>> 16) + z[10] + y[2] - x[2] - z[2] + x[10] * 38) & 0xffff; r[11] = (v = 0x7fff80 + (v >>> 16) + z[11] + y[3] - x[3] - z[3] + x[11] * 38) & 0xffff; r[12] = (v = 0x7fff80 + (v >>> 16) + z[12] + y[4] - x[4] - z[4] + x[12] * 38) & 0xffff; r[13] = (v = 0x7fff80 + (v >>> 16) + z[13] + y[5] - x[5] - z[5] + x[13] * 38) & 0xffff; r[14] = (v = 0x7fff80 + (v >>> 16) + z[14] + y[6] - x[6] - z[6] + x[14] * 38) & 0xffff; r[15] = 0x7fff80 + (v >>> 16) + z[15] + y[7] - x[7] - z[7] + x[15] * 38; _reduce(r); return r; } function _mul8h(a7, a6, a5, a4, a3, a2, a1, a0, b7, b6, b5, b4, b3, b2, b1, b0) { // 'division by 0x10000' can not be replaced by '>> 16' because // more than 32 bits of precision are needed var r = []; var v; r[0] = (v = a0 * b0) & 0xffff; r[1] = (v = (0 | (v / 0x10000)) + a0 * b1 + a1 * b0) & 0xffff; r[2] = (v = (0 | (v / 0x10000)) + a0 * b2 + a1 * b1 + a2 * b0) & 0xffff; r[3] = (v = (0 | (v / 0x10000)) + a0 * b3 + a1 * b2 + a2 * b1 + a3 * b0) & 0xffff; r[4] = (v = (0 | (v / 0x10000)) + a0 * b4 + a1 * b3 + a2 * b2 + a3 * b1 + a4 * b0) & 0xffff; r[5] = (v = (0 | (v / 0x10000)) + a0 * b5 + a1 * b4 + a2 * b3 + a3 * b2 + a4 * b1 + a5 * b0) & 0xffff; r[6] = (v = (0 | (v / 0x10000)) + a0 * b6 + a1 * b5 + a2 * b4 + a3 * b3 + a4 * b2 + a5 * b1 + a6 * b0) & 0xffff; r[7] = (v = (0 | (v / 0x10000)) + a0 * b7 + a1 * b6 + a2 * b5 + a3 * b4 + a4 * b3 + a5 * b2 + a6 * b1 + a7 * b0) & 0xffff; r[8] = (v = (0 | (v / 0x10000)) + a1 * b7 + a2 * b6 + a3 * b5 + a4 * b4 + a5 * b3 + a6 * b2 + a7 * b1) & 0xffff; r[9] = (v = (0 | (v / 0x10000)) + a2 * b7 + a3 * b6 + a4 * b5 + a5 * b4 + a6 * b3 + a7 * b2) & 0xffff; r[10] = (v = (0 | (v / 0x10000)) + a3 * b7 + a4 * b6 + a5 * b5 + a6 * b4 + a7 * b3) & 0xffff; r[11] = (v = (0 | (v / 0x10000)) + a4 * b7 + a5 * b6 + a6 * b5 + a7 * b4) & 0xffff; r[12] = (v = (0 | (v / 0x10000)) + a5 * b7 + a6 * b6 + a7 * b5) & 0xffff; r[13] = (v = (0 | (v / 0x10000)) + a6 * b7 + a7 * b6) & 0xffff; r[14] = (v = (0 | (v / 0x10000)) + a7 * b7) & 0xffff; r[15] = (0 | (v / 0x10000)); return r; } function _mulmodp(a, b) { // Karatsuba multiplication scheme: x*y = (b^2+b)*x1*y1 - // b*(x1-x0)*(y1-y0) + (b+1)*x0*y0 var x = _mul8h(a[15], a[14], a[13], a[12], a[11], a[10], a[9], a[8], b[15], b[14], b[13], b[12], b[11], b[10], b[9], b[8]); var z = _mul8h(a[7], a[6], a[5], a[4], a[3], a[2], a[1], a[0], b[7], b[6], b[5], b[4], b[3], b[2], b[1], b[0]); var y = _mul8h(a[15] + a[7], a[14] + a[6], a[13] + a[5], a[12] + a[4], a[11] + a[3], a[10] + a[2], a[9] + a[1], a[8] + a[0], b[15] + b[7], b[14] + b[6], b[13] + b[5], b[12] + b[4], b[11] + b[3], b[10] + b[2], b[9] + b[1], b[8] + b[0]); var r = []; var v; r[0] = (v = 0x800000 + z[0] + (y[8] - x[8] - z[8] + x[0] - 0x80) * 38) & 0xffff; r[1] = (v = 0x7fff80 + (v >>> 16) + z[1] + (y[9] - x[9] - z[9] + x[1]) * 38) & 0xffff; r[2] = (v = 0x7fff80 + (v >>> 16) + z[2] + (y[10] - x[10] - z[10] + x[2]) * 38) & 0xffff; r[3] = (v = 0x7fff80 + (v >>> 16) + z[3] + (y[11] - x[11] - z[11] + x[3]) * 38) & 0xffff; r[4] = (v = 0x7fff80 + (v >>> 16) + z[4] + (y[12] - x[12] - z[12] + x[4]) * 38) & 0xffff; r[5] = (v = 0x7fff80 + (v >>> 16) + z[5] + (y[13] - x[13] - z[13] + x[5]) * 38) & 0xffff; r[6] = (v = 0x7fff80 + (v >>> 16) + z[6] + (y[14] - x[14] - z[14] + x[6]) * 38) & 0xffff; r[7] = (v = 0x7fff80 + (v >>> 16) + z[7] + (y[15] - x[15] - z[15] + x[7]) * 38) & 0xffff; r[8] = (v = 0x7fff80 + (v >>> 16) + z[8] + y[0] - x[0] - z[0] + x[8] * 38) & 0xffff; r[9] = (v = 0x7fff80 + (v >>> 16) + z[9] + y[1] - x[1] - z[1] + x[9] * 38) & 0xffff; r[10] = (v = 0x7fff80 + (v >>> 16) + z[10] + y[2] - x[2] - z[2] + x[10] * 38) & 0xffff; r[11] = (v = 0x7fff80 + (v >>> 16) + z[11] + y[3] - x[3] - z[3] + x[11] * 38) & 0xffff; r[12] = (v = 0x7fff80 + (v >>> 16) + z[12] + y[4] - x[4] - z[4] + x[12] * 38) & 0xffff; r[13] = (v = 0x7fff80 + (v >>> 16) + z[13] + y[5] - x[5] - z[5] + x[13] * 38) & 0xffff; r[14] = (v = 0x7fff80 + (v >>> 16) + z[14] + y[6] - x[6] - z[6] + x[14] * 38) & 0xffff; r[15] = 0x7fff80 + (v >>> 16) + z[15] + y[7] - x[7] - z[7] + x[15] * 38; _reduce(r); return r; } function _reduce(arr) { var aCopy = arr.slice(0); var choice = [arr, aCopy]; var v = arr[15]; // Use the dummy copy instead of just returning to be more constant time. var a = choice[(v < 0x8000) & 1]; a[15] = v & 0x7fff; // >32-bits of precision are required here so '/ 0x8000' can not be // replaced by the arithmetic equivalent '>>> 15' v = (0 | (v / 0x8000)) * 19; a[0] = (v += a[0]) & 0xffff; v = v >>> 16; a[1] = (v += a[1]) & 0xffff; v = v >>> 16; a[2] = (v += a[2]) & 0xffff; v = v >>> 16; a[3] = (v += a[3]) & 0xffff; v = v >>> 16; a[4] = (v += a[4]) & 0xffff; v = v >>> 16; a[5] = (v += a[5]) & 0xffff; v = v >>> 16; a[6] = (v += a[6]) & 0xffff; v = v >>> 16; a[7] = (v += a[7]) & 0xffff; v = v >>> 16; a[8] = (v += a[8]) & 0xffff; v = v >>> 16; a[9] = (v += a[9]) & 0xffff; v = v >>> 16; a[10] = (v += a[10]) & 0xffff; v = v >>> 16; a[11] = (v += a[11]) & 0xffff; v = v >>> 16; a[12] = (v += a[12]) & 0xffff; v = v >>> 16; a[13] = (v += a[13]) & 0xffff; v = v >>> 16; a[14] = (v += a[14]) & 0xffff; v = v >>> 16; a[15] += v; } function _addmodp(a, b) { var r = []; var v; r[0] = (v = ((0 | (a[15] >>> 15)) + (0 | (b[15] >>> 15))) * 19 + a[0] + b[0]) & 0xffff; r[1] = (v = (v >>> 16) + a[1] + b[1]) & 0xffff; r[2] = (v = (v >>> 16) + a[2] + b[2]) & 0xffff; r[3] = (v = (v >>> 16) + a[3] + b[3]) & 0xffff; r[4] = (v = (v >>> 16) + a[4] + b[4]) & 0xffff; r[5] = (v = (v >>> 16) + a[5] + b[5]) & 0xffff; r[6] = (v = (v >>> 16) + a[6] + b[6]) & 0xffff; r[7] = (v = (v >>> 16) + a[7] + b[7]) & 0xffff; r[8] = (v = (v >>> 16) + a[8] + b[8]) & 0xffff; r[9] = (v = (v >>> 16) + a[9] + b[9]) & 0xffff; r[10] = (v = (v >>> 16) + a[10] + b[10]) & 0xffff; r[11] = (v = (v >>> 16) + a[11] + b[11]) & 0xffff; r[12] = (v = (v >>> 16) + a[12] + b[12]) & 0xffff; r[13] = (v = (v >>> 16) + a[13] + b[13]) & 0xffff; r[14] = (v = (v >>> 16) + a[14] + b[14]) & 0xffff; r[15] = (v >>> 16) + (a[15] & 0x7fff) + (b[15] & 0x7fff); return r; } function _submodp(a, b) { var r = []; var v; r[0] = (v = 0x80000 + ((0 | (a[15] >>> 15)) - (0 | (b[15] >>> 15)) - 1) * 19 + a[0] - b[0]) & 0xffff; r[1] = (v = (v >>> 16) + 0x7fff8 + a[1] - b[1]) & 0xffff; r[2] = (v = (v >>> 16) + 0x7fff8 + a[2] - b[2]) & 0xffff; r[3] = (v = (v >>> 16) + 0x7fff8 + a[3] - b[3]) & 0xffff; r[4] = (v = (v >>> 16) + 0x7fff8 + a[4] - b[4]) & 0xffff; r[5] = (v = (v >>> 16) + 0x7fff8 + a[5] - b[5]) & 0xffff; r[6] = (v = (v >>> 16) + 0x7fff8 + a[6] - b[6]) & 0xffff; r[7] = (v = (v >>> 16) + 0x7fff8 + a[7] - b[7]) & 0xffff; r[8] = (v = (v >>> 16) + 0x7fff8 + a[8] - b[8]) & 0xffff; r[9] = (v = (v >>> 16) + 0x7fff8 + a[9] - b[9]) & 0xffff; r[10] = (v = (v >>> 16) + 0x7fff8 + a[10] - b[10]) & 0xffff; r[11] = (v = (v >>> 16) + 0x7fff8 + a[11] - b[11]) & 0xffff; r[12] = (v = (v >>> 16) + 0x7fff8 + a[12] - b[12]) & 0xffff; r[13] = (v = (v >>> 16) + 0x7fff8 + a[13] - b[13]) & 0xffff; r[14] = (v = (v >>> 16) + 0x7fff8 + a[14] - b[14]) & 0xffff; r[15] = (v >>> 16) + 0x7ff8 + (a[15] & 0x7fff) - (b[15] & 0x7fff); return r; } function _invmodp(a) { var c = a; var i = 250; while (--i) { a = _sqrmodp(a); a = _mulmodp(a, c); } a = _sqrmodp(a); a = _sqrmodp(a); a = _mulmodp(a, c); a = _sqrmodp(a); a = _sqrmodp(a); a = _mulmodp(a, c); a = _sqrmodp(a); a = _mulmodp(a, c); return a; } function _mulasmall(a) { // 'division by 0x10000' can not be replaced by '>> 16' because // more than 32 bits of precision are needed var m = 121665; var r = []; var v; r[0] = (v = a[0] * m) & 0xffff; r[1] = (v = (0 | (v / 0x10000)) + a[1] * m) & 0xffff; r[2] = (v = (0 | (v / 0x10000)) + a[2] * m) & 0xffff; r[3] = (v = (0 | (v / 0x10000)) + a[3] * m) & 0xffff; r[4] = (v = (0 | (v / 0x10000)) + a[4] * m) & 0xffff; r[5] = (v = (0 | (v / 0x10000)) + a[5] * m) & 0xffff; r[6] = (v = (0 | (v / 0x10000)) + a[6] * m) & 0xffff; r[7] = (v = (0 | (v / 0x10000)) + a[7] * m) & 0xffff; r[8] = (v = (0 | (v / 0x10000)) + a[8] * m) & 0xffff; r[9] = (v = (0 | (v / 0x10000)) + a[9] * m) & 0xffff; r[10] = (v = (0 | (v / 0x10000)) + a[10] * m) & 0xffff; r[11] = (v = (0 | (v / 0x10000)) + a[11] * m) & 0xffff; r[12] = (v = (0 | (v / 0x10000)) + a[12] * m) & 0xffff; r[13] = (v = (0 | (v / 0x10000)) + a[13] * m) & 0xffff; r[14] = (v = (0 | (v / 0x10000)) + a[14] * m) & 0xffff; r[15] = (0 | (v / 0x10000)) + a[15] * m; _reduce(r); return r; } function _dbl(x, z) { var x_2, z_2, m, n, o; m = _sqrmodp(_addmodp(x, z)); n = _sqrmodp(_submodp(x, z)); o = _submodp(m, n); x_2 = _mulmodp(n, m); z_2 = _mulmodp(_addmodp(_mulasmall(o), m), o); return [x_2, z_2]; } function _sum(x, z, x_p, z_p, x_1) { var x_3, z_3, p, q; p = _mulmodp(_submodp(x, z), _addmodp(x_p, z_p)); q = _mulmodp(_addmodp(x, z), _submodp(x_p, z_p)); x_3 = _sqrmodp(_addmodp(p, q)); z_3 = _mulmodp(_sqrmodp(_submodp(p, q)), x_1); return [x_3, z_3]; } function _generateKey(curve25519) { var buffer = crypto.randomBytes(32); // For Curve25519 DH keys, we need to apply some bit mask on generated // keys: // * clear bit 0, 1, 2 of first byte // * clear bit 7 of last byte // * set bit 6 of last byte if (curve25519 === true) { buffer[0] &= 0xf8; buffer[31] = (buffer[31] & 0x7f) | 0x40; } var result = []; for (var i = 0; i < buffer.length; i++) { result.push(String.fromCharCode(buffer[i])); } return result.join(''); } // Expose some functions to the outside through this name space. // Note: This is not part of the public API. ns.getbit = _getbit; ns.setbit = _setbit; ns.addmodp = _addmodp; ns.invmodp = _invmodp; ns.mulmodp = _mulmodp; ns.reduce = _reduce; ns.dbl = _dbl; ns.sum = _sum; ns.ZERO = _ZERO; ns.ONE = _ONE; ns.BASE = _BASE; ns.bigintadd = _bigintadd; ns.bigintsub = _bigintsub; ns.bigintcmp = _bigintcmp; ns.mulmodp = _mulmodp; ns.sqrmodp = _sqrmodp; ns.generateKey = _generateKey; module.exports = ns; },{"crypto":58}],229:[function(require,module,exports){ "use strict"; /** * @fileOverview * Core operations on curve 25519 required for the higher level modules. */ /* * Copyright (c) 2007, 2013, 2014 Michele Bini * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss, Michele Bini * * You should have received a copy of the license along with this program. */ var core = require('./core'); var utils = require('./utils'); /** * @exports jodid25519/curve255 * Legacy compatibility module for Michele Bini's previous curve255.js. * * @description * Legacy compatibility module for Michele Bini's previous curve255.js. * *

* This code presents an API with all key formats as previously available * from Michele Bini's curve255.js implementation. *

*/ var ns = {}; function curve25519_raw(f, c) { var a, x_1, q; x_1 = c; a = core.dbl(x_1, core.ONE()); q = [x_1, core.ONE()]; var n = 255; while (core.getbit(f, n) == 0) { n--; // For correct constant-time operation, bit 255 should always be // set to 1 so the following 'while' loop is never entered. if (n < 0) { return core.ZERO(); } } n--; var aq = [a, q]; while (n >= 0) { var r, s; var b = core.getbit(f, n); r = core.sum(aq[0][0], aq[0][1], aq[1][0], aq[1][1], x_1); s = core.dbl(aq[1 - b][0], aq[1 - b][1]); aq[1 - b] = s; aq[b] = r; n--; } q = aq[1]; q[1] = core.invmodp(q[1]); q[0] = core.mulmodp(q[0], q[1]); core.reduce(q[0]); return q[0]; } function curve25519b32(a, b) { return _base32encode(curve25519(_base32decode(a), _base32decode(b))); } function curve25519(f, c) { if (!c) { c = core.BASE(); } f[0] &= 0xFFF8; f[15] = (f[15] & 0x7FFF) | 0x4000; return curve25519_raw(f, c); } function _hexEncodeVector(k) { var hexKey = utils.hexEncode(k); // Pad with '0' at the front. hexKey = new Array(64 + 1 - hexKey.length).join('0') + hexKey; // Invert bytes. return hexKey.split(/(..)/).reverse().join(''); } function _hexDecodeVector(v) { // assert(length(x) == 64); // Invert bytes. var hexKey = v.split(/(..)/).reverse().join(''); return utils.hexDecode(hexKey); } // Expose some functions to the outside through this name space. /** * Computes the scalar product of a point on the curve 25519. * * This function is used for the DH key-exchange protocol. * * Before multiplication, some bit operations are applied to the * private key to ensure it is a valid Curve25519 secret key. * It is the user's responsibility to make sure that the private * key is a uniformly random, secret value. * * @function * @param f {array} * Private key. * @param c {array} * Public point on the curve. If not given, the curve's base point is used. * @returns {array} * Key point resulting from scalar product. */ ns.curve25519 = curve25519; /** * Computes the scalar product of a point on the curve 25519. * * This variant does not make sure that the private key is valid. * The user has the responsibility to ensure the private key is * valid or that this results in a safe protocol. Unless you know * exactly what you are doing, you should not use this variant, * please use 'curve25519' instead. * * @function * @param f {array} * Private key. * @param c {array} * Public point on the curve. If not given, the curve's base point is used. * @returns {array} * Key point resulting from scalar product. */ ns.curve25519_raw = curve25519_raw; /** * Encodes the internal representation of a key to a canonical hex * representation. * * This is the format commonly used in other libraries and for * test vectors, and is equivalent to the hex dump of the key in * little-endian binary format. * * @function * @param n {array} * Array representation of key. * @returns {string} * Hexadecimal string representation of key. */ ns.hexEncodeVector = _hexEncodeVector; /** * Decodes a canonical hex representation of a key * to an internally compatible array representation. * * @function * @param n {string} * Hexadecimal string representation of key. * @returns {array} * Array representation of key. */ ns.hexDecodeVector = _hexDecodeVector; /** * Encodes the internal representation of a key into a * hexadecimal representation. * * This is a strict positional notation, most significant digit first. * * @function * @param n {array} * Array representation of key. * @returns {string} * Hexadecimal string representation of key. */ ns.hexencode = utils.hexEncode; /** * Decodes a hex representation of a key to an internally * compatible array representation. * * @function * @param n {string} * Hexadecimal string representation of key. * @returns {array} * Array representation of key. */ ns.hexdecode = utils.hexDecode; /** * Encodes the internal representation of a key to a base32 * representation. * * @function * @param n {array} * Array representation of key. * @returns {string} * Base32 string representation of key. */ ns.base32encode = utils.base32encode; /** * Decodes a base32 representation of a key to an internally * compatible array representation. * * @function * @param n {string} * Base32 string representation of key. * @returns {array} * Array representation of key. */ ns.base32decode = utils.base32decode; module.exports = ns; },{"./core":228,"./utils":232}],230:[function(require,module,exports){ (function (Buffer){ "use strict"; /** * @fileOverview * EC Diffie-Hellman operations on Curve25519. */ /* * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss * * You should have received a copy of the license along with this program. */ var core = require('./core'); var utils = require('./utils'); var curve255 = require('./curve255'); /** * @exports jodid25519/dh * EC Diffie-Hellman operations on Curve25519. * * @description * EC Diffie-Hellman operations on Curve25519. */ var ns = {}; function _toString(vector) { var u = new Uint16Array(vector); return (new Buffer(new Uint8Array(u.buffer))); } function _fromString(vector) { if (Buffer.isBuffer(vector)) { var u = new Uint8Array(vector); return (new Uint16Array(u.buffer)); } var result = new Array(16); for (var i = 0, l = 0; i < vector.length; i += 2) { result[l] = (vector.charCodeAt(i + 1) << 8) | vector.charCodeAt(i); l++; } return result; } /** * Computes a key through scalar multiplication of a point on the curve 25519. * * This function is used for the DH key-exchange protocol. It computes a * key based on a secret key with a public component (opponent's public key * or curve base point if not given) by using scalar multiplication. * * Before multiplication, some bit operations are applied to the * private key to ensure it is a valid Curve25519 secret key. * It is the user's responsibility to make sure that the private * key is a uniformly random, secret value. * * @function * @param privateComponent {string} * Private point as byte string on the curve. * @param publicComponent {string} * Public point as byte string on the curve. If not given, the curve's * base point is used. * @returns {string} * Key point as byte string resulting from scalar product. */ ns.computeKey = function(privateComponent, publicComponent) { if (publicComponent) { return _toString(curve255.curve25519(_fromString(privateComponent), _fromString(publicComponent))); } else { return _toString(curve255.curve25519(_fromString(privateComponent))); } }; /** * Computes the public key to a private key on the curve 25519. * * Before multiplication, some bit operations are applied to the * private key to ensure it is a valid Curve25519 secret key. * It is the user's responsibility to make sure that the private * key is a uniformly random, secret value. * * @function * @param privateKey {string} * Private point as byte string on the curve. * @returns {string} * Public key point as byte string resulting from scalar product. */ ns.publicKey = function(privateKey) { return _toString(curve255.curve25519(_fromString(privateKey))); }; /** * Generates a new random private key of 32 bytes length (256 bit). * * @function * @returns {string} * Byte string containing a new random private key seed. */ ns.generateKey = function() { return core.generateKey(true); }; module.exports = ns; }).call(this,require("buffer").Buffer) },{"./core":228,"./curve255":229,"./utils":232,"buffer":49}],231:[function(require,module,exports){ (function (Buffer){ "use strict"; /** * @fileOverview * Digital signature scheme based on Curve25519 (Ed25519 or EdDSA). */ /* * Copyright (c) 2011, 2012, 2014 Ron Garret * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss, Ron Garret * * You should have received a copy of the license along with this program. */ var core = require('./core'); var curve255 = require('./curve255'); var utils = require('./utils'); var BigInteger = require('jsbn').BigInteger; var crypto = require('crypto'); /** * @exports jodid25519/eddsa * Digital signature scheme based on Curve25519 (Ed25519 or EdDSA). * * @description * Digital signature scheme based on Curve25519 (Ed25519 or EdDSA). * *

* This code is adapted from fast-djbec.js, a faster but more complicated * version of the Ed25519 encryption scheme (as compared to djbec.js). * It uses two different representations for big integers: The jsbn * BigInteger class, which can represent arbitrary-length numbers, and a * special fixed-length representation optimised for 256-bit integers. * The reason both are needed is that the Ed25519 algorithm requires some * 512-bit numbers.

*/ var ns = {}; function _bi255(value) { if (!(this instanceof _bi255)) { return new _bi255(value); } if (typeof value === 'undefined') { return _ZERO; } var c = value.constructor; if ((c === Array || c === Uint16Array || c === Uint32Array) && (value.length === 16)) { this.n = value; } else if ((c === Array) && (value.length === 32)) { this.n = _bytes2bi255(value).n; } else if (c === String) { this.n = utils.hexDecode(value); } else if (c === Number) { this.n = [value & 0xffff, value >> 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]; } else if (value instanceof _bi255) { this.n = value.n.slice(0); // Copy constructor } else { throw "Bad argument for bignum: " + value; } } _bi255.prototype = { 'toString' : function() { return utils.hexEncode(this.n); }, 'toSource' : function() { return '_' + utils.hexEncode(this.n); }, 'plus' : function(n1) { return _bi255(core.bigintadd(this.n, n1.n)); }, 'minus' : function(n1) { return _bi255(core.bigintsub(this.n, n1.n)).modq(); }, 'times' : function(n1) { return _bi255(core.mulmodp(this.n, n1.n)); }, 'divide' : function(n1) { return this.times(n1.inv()); }, 'sqr' : function() { return _bi255(core.sqrmodp(this.n)); }, 'cmp' : function(n1) { return core.bigintcmp(this.n, n1.n); }, 'equals' : function(n1) { return this.cmp(n1) === 0; }, 'isOdd' : function() { return (this.n[0] & 1) === 1; }, 'shiftLeft' : function(cnt) { _shiftL(this.n, cnt); return this; }, 'shiftRight' : function(cnt) { _shiftR(this.n, cnt); return this; }, 'inv' : function() { return _bi255(core.invmodp(this.n)); }, 'pow' : function(e) { return _bi255(_pow(this.n, e.n)); }, 'modq' : function() { return _modq(this); }, 'bytes' : function() { return _bi255_bytes(this); } }; function _shiftL(n, cnt) { var lastcarry = 0; for (var i = 0; i < 16; i++) { var carry = n[i] >> (16 - cnt); n[i] = (n[i] << cnt) & 0xffff | lastcarry; lastcarry = carry; } return n; } function _shiftR(n, cnt) { var lastcarry = 0; for (var i = 15; i >= 0; i--) { var carry = n[i] << (16 - cnt) & 0xffff; n[i] = (n[i] >> cnt) | lastcarry; lastcarry = carry; } return n; } function _bi255_bytes(n) { n = _bi255(n); // Make a copy because shiftRight is destructive var a = new Array(32); for (var i = 31; i >= 0; i--) { a[i] = n.n[0] & 0xff; n.shiftRight(8); } return a; } function _bytes2bi255(a) { var n = _ZERO; for (var i = 0; i < 32; i++) { n.shiftLeft(8); n = n.plus(_bi255(a[i])); } return n; } function _pow(n, e) { var result = core.ONE(); for (var i = 0; i < 256; i++) { if (core.getbit(e, i) === 1) { result = core.mulmodp(result, n); } n = core.sqrmodp(n); } return result; } var _ZERO = _bi255(0); var _ONE = _bi255(1); var _TWO = _bi255(2); // This is the core prime. var _Q = _bi255([0xffff - 18, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0x7fff]); function _modq(n) { core.reduce(n.n); if (n.cmp(_Q) >= 0) { return _modq(n.minus(_Q)); } if (n.cmp(_ZERO) === -1) { return _modq(n.plus(_Q)); } else { return n; } } // _RECOVERY_EXPONENT = _Q.plus(_bi255(3)).divide(_bi255(8)); var _RECOVERY_EXPONENT = _bi255('0ffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffe'); // _D = _Q.minus(_bi255(121665)).divide(_bi255(121666)); var _D = _bi255('52036cee2b6ffe738cc740797779e89800700a4d4141d8ab75eb4dca135978a3'); // _I = _TWO.pow(_Q.minus(_ONE).divide(_bi255(4))); var _I = _bi255('2b8324804fc1df0b2b4d00993dfbd7a72f431806ad2fe478c4ee1b274a0ea0b0'); // _L = _TWO.pow(_bi255(252)).plus(_bi255('14def9dea2f79cd65812631a5cf5d3ed')); var _L = _bi255('1000000000000000000000000000000014def9dea2f79cd65812631a5cf5d3ed'); var _L_BI = _bi('1000000000000000000000000000000014def9dea2f79cd65812631a5cf5d3ed', 16); // //////////////////////////////////////////////////////////// function _isoncurve(p) { var x = p[0]; var y = p[1]; var xsqr = x.sqr(); var ysqr = y.sqr(); var v = _D.times(xsqr).times(ysqr); return ysqr.minus(xsqr).minus(_ONE).minus(v).modq().equals(_ZERO); } function _xrecover(y) { var ysquared = y.sqr(); var xx = ysquared.minus(_ONE).divide(_ONE.plus(_D.times(ysquared))); var x = xx.pow(_RECOVERY_EXPONENT); if (!(x.times(x).minus(xx).equals(_ZERO))) { x = x.times(_I); } if (x.isOdd()) { x = _Q.minus(x); } return x; } function _x_pt_add(pt1, pt2) { var x1 = pt1[0]; var y1 = pt1[1]; var z1 = pt1[2]; var t1 = pt1[3]; var x2 = pt2[0]; var y2 = pt2[1]; var z2 = pt2[2]; var t2 = pt2[3]; var A = y1.minus(x1).times(y2.plus(x2)); var B = y1.plus(x1).times(y2.minus(x2)); var C = z1.times(_TWO).times(t2); var D = t1.times(_TWO).times(z2); var E = D.plus(C); var F = B.minus(A); var G = B.plus(A); var H = D.minus(C); return [E.times(F), G.times(H), F.times(G), E.times(H)]; } function _xpt_double(pt1) { var x1 = pt1[0]; var y1 = pt1[1]; var z1 = pt1[2]; var A = x1.times(x1); var B = y1.times(y1); var C = _TWO.times(z1).times(z1); var D = _Q.minus(A); var J = x1.plus(y1); var E = J.times(J).minus(A).minus(B); var G = D.plus(B); var F = G.minus(C); var H = D.minus(B); return [E.times(F), G.times(H), F.times(G), E.times(H)]; } function _xpt_mult(pt, n) { if (n.equals(_ZERO)) { return [_ZERO, _ONE, _ONE, _ZERO]; } var odd = n.isOdd(); n.shiftRight(1); var value = _xpt_double(_xpt_mult(pt, n)); return odd ? _x_pt_add(value, pt) : value; } function _pt_xform(pt) { var x = pt[0]; var y = pt[1]; return [x, y, _ONE, x.times(y)]; } function _pt_unxform(pt) { var x = pt[0]; var y = pt[1]; var z = pt[2]; var invz = z.inv(); return [x.times(invz), y.times(invz)]; } function _scalarmult(pt, n) { return _pt_unxform(_xpt_mult(_pt_xform(pt), n)); } function _bytesgetbit(bytes, n) { return (bytes[bytes.length - (n >>> 3) - 1] >> (n & 7)) & 1; } function _xpt_mult_bytes(pt, bytes) { var r = [_ZERO, _ONE, _ONE, _ZERO]; for (var i = (bytes.length << 3) - 1; i >= 0; i--) { r = _xpt_double(r); if (_bytesgetbit(bytes, i) === 1) { r = _x_pt_add(r, pt); } } return r; } function _scalarmultBytes(pt, bytes) { return _pt_unxform(_xpt_mult_bytes(_pt_xform(pt), bytes)); } var _by = _bi255(4).divide(_bi255(5)); var _bx = _xrecover(_by); var _bp = [_bx, _by]; function _encodeint(n) { return n.bytes(32).reverse(); } function _decodeint(b) { return _bi255(b.slice(0).reverse()); } function _encodepoint(p) { var v = _encodeint(p[1]); if (p[0].isOdd()) { v[31] |= 0x80; } return v; } function _decodepoint(v) { v = v.slice(0); var signbit = v[31] >> 7; v[31] &= 127; var y = _decodeint(v); var x = _xrecover(y); if ((x.n[0] & 1) !== signbit) { x = _Q.minus(x); } var p = [x, y]; if (!_isoncurve(p)) { throw ('Point is not on curve'); } return p; } // ////////////////////////////////////////////////// /** * Factory function to create a suitable BigInteger. * * @param value * The value for the big integer. * @param base {integer} * Base of the conversion of elements in ``value``. * @returns * A BigInteger object. */ function _bi(value, base) { if (base !== undefined) { if (base === 256) { return _bi(utils.string2bytes(value)); } return new BigInteger(value, base); } else if (typeof value === 'string') { return new BigInteger(value, 10); } else if ((value instanceof Array) || (value instanceof Uint8Array) || Buffer.isBuffer(value)) { return new BigInteger(value); } else if (typeof value === 'number') { return new BigInteger(value.toString(), 10); } else { throw "Can't convert " + value + " to BigInteger"; } } function _bi2bytes(n, cnt) { if (cnt === undefined) { cnt = (n.bitLength() + 7) >>> 3; } var bytes = new Array(cnt); for (var i = cnt - 1; i >= 0; i--) { bytes[i] = n[0] & 255; // n.and(0xff); n = n.shiftRight(8); } return bytes; } BigInteger.prototype.bytes = function(n) { return _bi2bytes(this, n); }; // ///////////////////////////////////////////////////////// function _bytehash(s) { var sha = crypto.createHash('sha512').update(s).digest(); return _bi2bytes(_bi(sha), 64).reverse(); } function _stringhash(s) { var sha = crypto.createHash('sha512').update(s).digest(); return _map(_chr, _bi2bytes(_bi(sha), 64)).join(''); } function _inthash(s) { // Need a leading 0 to prevent sign extension return _bi([0].concat(_bytehash(s))); } function _inthash_lo(s) { return _bi255(_bytehash(s).slice(32, 64)); } function _inthash_mod_l(s) { return _inthash(s).mod(_L_BI); } function _get_a(sk) { var a = _inthash_lo(sk); a.n[0] &= 0xfff8; a.n[15] &= 0x3fff; a.n[15] |= 0x4000; return a; } function _publickey(sk) { return _encodepoint(_scalarmult(_bp, _get_a(sk))); } function _map(f, l) { var result = new Array(l.length); for (var i = 0; i < l.length; i++) { result[i] = f(l[i]); } return result; } function _chr(n) { return String.fromCharCode(n); } function _ord(c) { return c.charCodeAt(0); } function _pt_add(p1, p2) { return _pt_unxform(_x_pt_add(_pt_xform(p1), _pt_xform(p2))); } // Exports for the API. /** * Checks whether a point is on the curve. * * @function * @param point {string} * The point to check for in a byte string representation. * @returns {boolean} * true if the point is on the curve, false otherwise. */ ns.isOnCurve = function(point) { try { _isoncurve(_decodepoint(utils.string2bytes(point))); } catch(e) { if (e === 'Point is not on curve') { return false; } else { throw e; } } return true; }; /** * Computes the EdDSA public key. * *

Note: Seeds should be a byte string, not a unicode string containing * multi-byte characters.

* * @function * @param keySeed {string} * Private key seed in the form of a byte string. * @returns {string} * Public key as byte string computed from the private key seed * (32 bytes). */ ns.publicKey = function(keySeed) { return utils.bytes2string(_publickey(keySeed)); }; /** * Computes an EdDSA signature of a message. * *

Notes:

* *
    *
  • Unicode messages need to be converted to a byte representation * (e. g. UTF-8).
  • *
  • If `publicKey` is given, and it is *not* a point of the curve, * the signature will be faulty, but no error will be thrown.
  • *
* * @function * @param message {string} * Message in the form of a byte string. * @param keySeed {string} * Private key seed in the form of a byte string. * @param publicKey {string} * Public key as byte string (if not present, it will be computed from * the private key seed). * @returns {string} * Detached message signature in the form of a byte string (64 bytes). */ ns.sign = function(message, keySeed, publicKey) { if (publicKey === undefined) { publicKey = _publickey(keySeed); } else { publicKey = utils.string2bytes(publicKey); } var a = _bi(_get_a(keySeed).toString(), 16); var hs = _stringhash(keySeed); var r = _bytehash(hs.slice(32, 64) + message); var rp = _scalarmultBytes(_bp, r); var erp = _encodepoint(rp); r = _bi(r).mod(_bi(1, 10).shiftLeft(512)); var s = _map(_chr, erp).join('') + _map(_chr, publicKey).join('') + message; s = _inthash_mod_l(s).multiply(a).add(r).mod(_L_BI); return utils.bytes2string(erp.concat(_encodeint(s))); }; /** * Verifies an EdDSA signature of a message with the public key. * *

Note: Unicode messages need to be converted to a byte representation * (e. g. UTF-8).

* * @function * @param signature {string} * Message signature in the form of a byte string. Can be detached * (64 bytes), or attached to be sliced off. * @param message {string} * Message in the form of a byte string. * @param publicKey {string} * Public key as byte string (if not present, it will be computed from * the private key seed). * @returns {boolean} * true, if the signature verifies. */ ns.verify = function(signature, message, publicKey) { signature = utils.string2bytes(signature.slice(0, 64)); publicKey = utils.string2bytes(publicKey); var rpe = signature.slice(0, 32); var rp = _decodepoint(rpe); var a = _decodepoint(publicKey); var s = _decodeint(signature.slice(32, 64)); var h = _inthash(utils.bytes2string(rpe.concat(publicKey)) + message); var v1 = _scalarmult(_bp, s); var value = _scalarmultBytes(a, _bi2bytes(h)); var v2 = _pt_add(rp, value); return v1[0].equals(v2[0]) && v1[1].equals(v2[1]); }; /** * Generates a new random private key seed of 32 bytes length (256 bit). * * @function * @returns {string} * Byte string containing a new random private key seed. */ ns.generateKeySeed = function() { return core.generateKey(false); }; module.exports = ns; }).call(this,{"isBuffer":require("../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js")}) },{"../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js":98,"./core":228,"./curve255":229,"./utils":232,"crypto":58,"jsbn":233}],232:[function(require,module,exports){ "use strict"; /** * @fileOverview * A collection of general utility functions.. */ /* * Copyright (c) 2011, 2012, 2014 Ron Garret * Copyright (c) 2007, 2013, 2014 Michele Bini * Copyright (c) 2014 Mega Limited * under the MIT License. * * Authors: Guy K. Kloss, Michele Bini, Ron Garret * * You should have received a copy of the license along with this program. */ var core = require('./core'); /** * @exports jodid25519/utils * A collection of general utility functions.. * * @description * A collection of general utility functions.. */ var ns = {}; var _HEXCHARS = "0123456789abcdef"; function _hexencode(vector) { var result = []; for (var i = vector.length - 1; i >= 0; i--) { var value = vector[i]; result.push(_HEXCHARS.substr((value >>> 12) & 0x0f, 1)); result.push(_HEXCHARS.substr((value >>> 8) & 0x0f, 1)); result.push(_HEXCHARS.substr((value >>> 4) & 0x0f, 1)); result.push(_HEXCHARS.substr(value & 0x0f, 1)); } return result.join(''); } function _hexdecode(vector) { var result = [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]; for (var i = vector.length - 1, l = 0; i >= 0; i -= 4) { result[l] = (_HEXCHARS.indexOf(vector.charAt(i))) | (_HEXCHARS.indexOf(vector.charAt(i - 1)) << 4) | (_HEXCHARS.indexOf(vector.charAt(i - 2)) << 8) | (_HEXCHARS.indexOf(vector.charAt(i - 3)) << 12); l++; } return result; } var _BASE32CHARS = "abcdefghijklmnopqrstuvwxyz234567"; var _BASE32VALUES = (function () { var result = {}; for (var i = 0; i < _BASE32CHARS.length; i++) { result[_BASE32CHARS.charAt(i)] = i; } return result; })(); function _base32encode(n) { var c; var r = ""; for (c = 0; c < 255; c += 5) { r = _BASE32CHARS.substr(core.getbit(n, c) + (core.getbit(n, c + 1) << 1) + (core.getbit(n, c + 2) << 2) + (core.getbit(n, c + 3) << 3) + (core.getbit(n, c + 4) << 4), 1) + r; } return r; } function _base32decode(n) { var c = 0; var r = core.ZERO(); var l = n.length; for (c = 0; (l > 0) && (c < 255); c += 5) { l--; var v = _BASE32VALUES[n.substr(l, 1)]; core.setbit(r, c, v & 1); v >>= 1; core.setbit(r, c + 1, v & 1); v >>= 1; core.setbit(r, c + 2, v & 1); v >>= 1; core.setbit(r, c + 3, v & 1); v >>= 1; core.setbit(r, c + 4, v & 1); } return r; } function _map(f, l) { var result = new Array(l.length); for (var i = 0; i < l.length; i++) { result[i] = f(l[i]); } return result; } function _chr(n) { return String.fromCharCode(n); } function _ord(c) { return c.charCodeAt(0); } function _bytes2string(bytes) { return _map(_chr, bytes).join(''); } function _string2bytes(s) { return _map(_ord, s); } // Expose some functions to the outside through this name space. /** * Encodes an array of unsigned 8-bit integers to a hex string. * * @function * @param vector {array} * Array containing the byte values. * @returns {string} * String containing vector in a hexadecimal representation. */ ns.hexEncode = _hexencode; /** * Decodes a hex string to an array of unsigned 8-bit integers. * * @function * @param vector {string} * String containing vector in a hexadecimal representation. * @returns {array} * Array containing the byte values. */ ns.hexDecode = _hexdecode; /** * Encodes an array of unsigned 8-bit integers using base32 encoding. * * @function * @param vector {array} * Array containing the byte values. * @returns {string} * String containing vector in a hexadecimal representation. */ ns.base32encode = _base32encode; /** * Decodes a base32 encoded string to an array of unsigned 8-bit integers. * * @function * @param vector {string} * String containing vector in a hexadecimal representation. * @returns {array} * Array containing the byte values. */ ns.base32decode = _base32decode; /** * Converts an unsigned 8-bit integer array representation to a byte string. * * @function * @param vector {array} * Array containing the byte values. * @returns {string} * Byte string representation of vector. */ ns.bytes2string = _bytes2string; /** * Converts a byte string representation to an array of unsigned * 8-bit integers. * * @function * @param vector {array} * Array containing the byte values. * @returns {string} * Byte string representation of vector. */ ns.string2bytes = _string2bytes; module.exports = ns; },{"./core":228}],233:[function(require,module,exports){ (function(){ // Copyright (c) 2005 Tom Wu // All Rights Reserved. // See "LICENSE" for details. // Basic JavaScript BN library - subset useful for RSA encryption. // Bits per digit var dbits; // JavaScript engine analysis var canary = 0xdeadbeefcafe; var j_lm = ((canary&0xffffff)==0xefcafe); // (public) Constructor function BigInteger(a,b,c) { if(a != null) if("number" == typeof a) this.fromNumber(a,b,c); else if(b == null && "string" != typeof a) this.fromString(a,256); else this.fromString(a,b); } // return new, unset BigInteger function nbi() { return new BigInteger(null); } // am: Compute w_j += (x*this_i), propagate carries, // c is initial carry, returns final carry. // c < 3*dvalue, x < 2*dvalue, this_i < dvalue // We need to select the fastest one that works in this environment. // am1: use a single mult and divide to get the high bits, // max digit bits should be 26 because // max internal value = 2*dvalue^2-2*dvalue (< 2^53) function am1(i,x,w,j,c,n) { while(--n >= 0) { var v = x*this[i++]+w[j]+c; c = Math.floor(v/0x4000000); w[j++] = v&0x3ffffff; } return c; } // am2 avoids a big mult-and-extract completely. // Max digit bits should be <= 30 because we do bitwise ops // on values up to 2*hdvalue^2-hdvalue-1 (< 2^31) function am2(i,x,w,j,c,n) { var xl = x&0x7fff, xh = x>>15; while(--n >= 0) { var l = this[i]&0x7fff; var h = this[i++]>>15; var m = xh*l+h*xl; l = xl*l+((m&0x7fff)<<15)+w[j]+(c&0x3fffffff); c = (l>>>30)+(m>>>15)+xh*h+(c>>>30); w[j++] = l&0x3fffffff; } return c; } // Alternately, set max digit bits to 28 since some // browsers slow down when dealing with 32-bit numbers. function am3(i,x,w,j,c,n) { var xl = x&0x3fff, xh = x>>14; while(--n >= 0) { var l = this[i]&0x3fff; var h = this[i++]>>14; var m = xh*l+h*xl; l = xl*l+((m&0x3fff)<<14)+w[j]+c; c = (l>>28)+(m>>14)+xh*h; w[j++] = l&0xfffffff; } return c; } var inBrowser = typeof navigator !== "undefined"; if(inBrowser && j_lm && (navigator.appName == "Microsoft Internet Explorer")) { BigInteger.prototype.am = am2; dbits = 30; } else if(inBrowser && j_lm && (navigator.appName != "Netscape")) { BigInteger.prototype.am = am1; dbits = 26; } else { // Mozilla/Netscape seems to prefer am3 BigInteger.prototype.am = am3; dbits = 28; } BigInteger.prototype.DB = dbits; BigInteger.prototype.DM = ((1<= 0; --i) r[i] = this[i]; r.t = this.t; r.s = this.s; } // (protected) set from integer value x, -DV <= x < DV function bnpFromInt(x) { this.t = 1; this.s = (x<0)?-1:0; if(x > 0) this[0] = x; else if(x < -1) this[0] = x+this.DV; else this.t = 0; } // return bigint initialized to value function nbv(i) { var r = nbi(); r.fromInt(i); return r; } // (protected) set from string and radix function bnpFromString(s,b) { var k; if(b == 16) k = 4; else if(b == 8) k = 3; else if(b == 256) k = 8; // byte array else if(b == 2) k = 1; else if(b == 32) k = 5; else if(b == 4) k = 2; else { this.fromRadix(s,b); return; } this.t = 0; this.s = 0; var i = s.length, mi = false, sh = 0; while(--i >= 0) { var x = (k==8)?s[i]&0xff:intAt(s,i); if(x < 0) { if(s.charAt(i) == "-") mi = true; continue; } mi = false; if(sh == 0) this[this.t++] = x; else if(sh+k > this.DB) { this[this.t-1] |= (x&((1<<(this.DB-sh))-1))<>(this.DB-sh)); } else this[this.t-1] |= x<= this.DB) sh -= this.DB; } if(k == 8 && (s[0]&0x80) != 0) { this.s = -1; if(sh > 0) this[this.t-1] |= ((1<<(this.DB-sh))-1)< 0 && this[this.t-1] == c) --this.t; } // (public) return string representation in given radix function bnToString(b) { if(this.s < 0) return "-"+this.negate().toString(b); var k; if(b == 16) k = 4; else if(b == 8) k = 3; else if(b == 2) k = 1; else if(b == 32) k = 5; else if(b == 4) k = 2; else return this.toRadix(b); var km = (1< 0) { if(p < this.DB && (d = this[i]>>p) > 0) { m = true; r = int2char(d); } while(i >= 0) { if(p < k) { d = (this[i]&((1<>(p+=this.DB-k); } else { d = (this[i]>>(p-=k))&km; if(p <= 0) { p += this.DB; --i; } } if(d > 0) m = true; if(m) r += int2char(d); } } return m?r:"0"; } // (public) -this function bnNegate() { var r = nbi(); BigInteger.ZERO.subTo(this,r); return r; } // (public) |this| function bnAbs() { return (this.s<0)?this.negate():this; } // (public) return + if this > a, - if this < a, 0 if equal function bnCompareTo(a) { var r = this.s-a.s; if(r != 0) return r; var i = this.t; r = i-a.t; if(r != 0) return (this.s<0)?-r:r; while(--i >= 0) if((r=this[i]-a[i]) != 0) return r; return 0; } // returns bit length of the integer x function nbits(x) { var r = 1, t; if((t=x>>>16) != 0) { x = t; r += 16; } if((t=x>>8) != 0) { x = t; r += 8; } if((t=x>>4) != 0) { x = t; r += 4; } if((t=x>>2) != 0) { x = t; r += 2; } if((t=x>>1) != 0) { x = t; r += 1; } return r; } // (public) return the number of bits in "this" function bnBitLength() { if(this.t <= 0) return 0; return this.DB*(this.t-1)+nbits(this[this.t-1]^(this.s&this.DM)); } // (protected) r = this << n*DB function bnpDLShiftTo(n,r) { var i; for(i = this.t-1; i >= 0; --i) r[i+n] = this[i]; for(i = n-1; i >= 0; --i) r[i] = 0; r.t = this.t+n; r.s = this.s; } // (protected) r = this >> n*DB function bnpDRShiftTo(n,r) { for(var i = n; i < this.t; ++i) r[i-n] = this[i]; r.t = Math.max(this.t-n,0); r.s = this.s; } // (protected) r = this << n function bnpLShiftTo(n,r) { var bs = n%this.DB; var cbs = this.DB-bs; var bm = (1<= 0; --i) { r[i+ds+1] = (this[i]>>cbs)|c; c = (this[i]&bm)<= 0; --i) r[i] = 0; r[ds] = c; r.t = this.t+ds+1; r.s = this.s; r.clamp(); } // (protected) r = this >> n function bnpRShiftTo(n,r) { r.s = this.s; var ds = Math.floor(n/this.DB); if(ds >= this.t) { r.t = 0; return; } var bs = n%this.DB; var cbs = this.DB-bs; var bm = (1<>bs; for(var i = ds+1; i < this.t; ++i) { r[i-ds-1] |= (this[i]&bm)<>bs; } if(bs > 0) r[this.t-ds-1] |= (this.s&bm)<>= this.DB; } if(a.t < this.t) { c -= a.s; while(i < this.t) { c += this[i]; r[i++] = c&this.DM; c >>= this.DB; } c += this.s; } else { c += this.s; while(i < a.t) { c -= a[i]; r[i++] = c&this.DM; c >>= this.DB; } c -= a.s; } r.s = (c<0)?-1:0; if(c < -1) r[i++] = this.DV+c; else if(c > 0) r[i++] = c; r.t = i; r.clamp(); } // (protected) r = this * a, r != this,a (HAC 14.12) // "this" should be the larger one if appropriate. function bnpMultiplyTo(a,r) { var x = this.abs(), y = a.abs(); var i = x.t; r.t = i+y.t; while(--i >= 0) r[i] = 0; for(i = 0; i < y.t; ++i) r[i+x.t] = x.am(0,y[i],r,i,0,x.t); r.s = 0; r.clamp(); if(this.s != a.s) BigInteger.ZERO.subTo(r,r); } // (protected) r = this^2, r != this (HAC 14.16) function bnpSquareTo(r) { var x = this.abs(); var i = r.t = 2*x.t; while(--i >= 0) r[i] = 0; for(i = 0; i < x.t-1; ++i) { var c = x.am(i,x[i],r,2*i,0,1); if((r[i+x.t]+=x.am(i+1,2*x[i],r,2*i+1,c,x.t-i-1)) >= x.DV) { r[i+x.t] -= x.DV; r[i+x.t+1] = 1; } } if(r.t > 0) r[r.t-1] += x.am(i,x[i],r,2*i,0,1); r.s = 0; r.clamp(); } // (protected) divide this by m, quotient and remainder to q, r (HAC 14.20) // r != q, this != m. q or r may be null. function bnpDivRemTo(m,q,r) { var pm = m.abs(); if(pm.t <= 0) return; var pt = this.abs(); if(pt.t < pm.t) { if(q != null) q.fromInt(0); if(r != null) this.copyTo(r); return; } if(r == null) r = nbi(); var y = nbi(), ts = this.s, ms = m.s; var nsh = this.DB-nbits(pm[pm.t-1]); // normalize modulus if(nsh > 0) { pm.lShiftTo(nsh,y); pt.lShiftTo(nsh,r); } else { pm.copyTo(y); pt.copyTo(r); } var ys = y.t; var y0 = y[ys-1]; if(y0 == 0) return; var yt = y0*(1<1)?y[ys-2]>>this.F2:0); var d1 = this.FV/yt, d2 = (1<= 0) { r[r.t++] = 1; r.subTo(t,r); } BigInteger.ONE.dlShiftTo(ys,t); t.subTo(y,y); // "negative" y so we can replace sub with am later while(y.t < ys) y[y.t++] = 0; while(--j >= 0) { // Estimate quotient digit var qd = (r[--i]==y0)?this.DM:Math.floor(r[i]*d1+(r[i-1]+e)*d2); if((r[i]+=y.am(0,qd,r,j,0,ys)) < qd) { // Try it out y.dlShiftTo(j,t); r.subTo(t,r); while(r[i] < --qd) r.subTo(t,r); } } if(q != null) { r.drShiftTo(ys,q); if(ts != ms) BigInteger.ZERO.subTo(q,q); } r.t = ys; r.clamp(); if(nsh > 0) r.rShiftTo(nsh,r); // Denormalize remainder if(ts < 0) BigInteger.ZERO.subTo(r,r); } // (public) this mod a function bnMod(a) { var r = nbi(); this.abs().divRemTo(a,null,r); if(this.s < 0 && r.compareTo(BigInteger.ZERO) > 0) a.subTo(r,r); return r; } // Modular reduction using "classic" algorithm function Classic(m) { this.m = m; } function cConvert(x) { if(x.s < 0 || x.compareTo(this.m) >= 0) return x.mod(this.m); else return x; } function cRevert(x) { return x; } function cReduce(x) { x.divRemTo(this.m,null,x); } function cMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); } function cSqrTo(x,r) { x.squareTo(r); this.reduce(r); } Classic.prototype.convert = cConvert; Classic.prototype.revert = cRevert; Classic.prototype.reduce = cReduce; Classic.prototype.mulTo = cMulTo; Classic.prototype.sqrTo = cSqrTo; // (protected) return "-1/this % 2^DB"; useful for Mont. reduction // justification: // xy == 1 (mod m) // xy = 1+km // xy(2-xy) = (1+km)(1-km) // x[y(2-xy)] = 1-k^2m^2 // x[y(2-xy)] == 1 (mod m^2) // if y is 1/x mod m, then y(2-xy) is 1/x mod m^2 // should reduce x and y(2-xy) by m^2 at each step to keep size bounded. // JS multiply "overflows" differently from C/C++, so care is needed here. function bnpInvDigit() { if(this.t < 1) return 0; var x = this[0]; if((x&1) == 0) return 0; var y = x&3; // y == 1/x mod 2^2 y = (y*(2-(x&0xf)*y))&0xf; // y == 1/x mod 2^4 y = (y*(2-(x&0xff)*y))&0xff; // y == 1/x mod 2^8 y = (y*(2-(((x&0xffff)*y)&0xffff)))&0xffff; // y == 1/x mod 2^16 // last step - calculate inverse mod DV directly; // assumes 16 < DB <= 32 and assumes ability to handle 48-bit ints y = (y*(2-x*y%this.DV))%this.DV; // y == 1/x mod 2^dbits // we really want the negative inverse, and -DV < y < DV return (y>0)?this.DV-y:-y; } // Montgomery reduction function Montgomery(m) { this.m = m; this.mp = m.invDigit(); this.mpl = this.mp&0x7fff; this.mph = this.mp>>15; this.um = (1<<(m.DB-15))-1; this.mt2 = 2*m.t; } // xR mod m function montConvert(x) { var r = nbi(); x.abs().dlShiftTo(this.m.t,r); r.divRemTo(this.m,null,r); if(x.s < 0 && r.compareTo(BigInteger.ZERO) > 0) this.m.subTo(r,r); return r; } // x/R mod m function montRevert(x) { var r = nbi(); x.copyTo(r); this.reduce(r); return r; } // x = x/R mod m (HAC 14.32) function montReduce(x) { while(x.t <= this.mt2) // pad x so am has enough room later x[x.t++] = 0; for(var i = 0; i < this.m.t; ++i) { // faster way of calculating u0 = x[i]*mp mod DV var j = x[i]&0x7fff; var u0 = (j*this.mpl+(((j*this.mph+(x[i]>>15)*this.mpl)&this.um)<<15))&x.DM; // use am to combine the multiply-shift-add into one call j = i+this.m.t; x[j] += this.m.am(0,u0,x,i,0,this.m.t); // propagate carry while(x[j] >= x.DV) { x[j] -= x.DV; x[++j]++; } } x.clamp(); x.drShiftTo(this.m.t,x); if(x.compareTo(this.m) >= 0) x.subTo(this.m,x); } // r = "x^2/R mod m"; x != r function montSqrTo(x,r) { x.squareTo(r); this.reduce(r); } // r = "xy/R mod m"; x,y != r function montMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); } Montgomery.prototype.convert = montConvert; Montgomery.prototype.revert = montRevert; Montgomery.prototype.reduce = montReduce; Montgomery.prototype.mulTo = montMulTo; Montgomery.prototype.sqrTo = montSqrTo; // (protected) true iff this is even function bnpIsEven() { return ((this.t>0)?(this[0]&1):this.s) == 0; } // (protected) this^e, e < 2^32, doing sqr and mul with "r" (HAC 14.79) function bnpExp(e,z) { if(e > 0xffffffff || e < 1) return BigInteger.ONE; var r = nbi(), r2 = nbi(), g = z.convert(this), i = nbits(e)-1; g.copyTo(r); while(--i >= 0) { z.sqrTo(r,r2); if((e&(1< 0) z.mulTo(r2,g,r); else { var t = r; r = r2; r2 = t; } } return z.revert(r); } // (public) this^e % m, 0 <= e < 2^32 function bnModPowInt(e,m) { var z; if(e < 256 || m.isEven()) z = new Classic(m); else z = new Montgomery(m); return this.exp(e,z); } // protected BigInteger.prototype.copyTo = bnpCopyTo; BigInteger.prototype.fromInt = bnpFromInt; BigInteger.prototype.fromString = bnpFromString; BigInteger.prototype.clamp = bnpClamp; BigInteger.prototype.dlShiftTo = bnpDLShiftTo; BigInteger.prototype.drShiftTo = bnpDRShiftTo; BigInteger.prototype.lShiftTo = bnpLShiftTo; BigInteger.prototype.rShiftTo = bnpRShiftTo; BigInteger.prototype.subTo = bnpSubTo; BigInteger.prototype.multiplyTo = bnpMultiplyTo; BigInteger.prototype.squareTo = bnpSquareTo; BigInteger.prototype.divRemTo = bnpDivRemTo; BigInteger.prototype.invDigit = bnpInvDigit; BigInteger.prototype.isEven = bnpIsEven; BigInteger.prototype.exp = bnpExp; // public BigInteger.prototype.toString = bnToString; BigInteger.prototype.negate = bnNegate; BigInteger.prototype.abs = bnAbs; BigInteger.prototype.compareTo = bnCompareTo; BigInteger.prototype.bitLength = bnBitLength; BigInteger.prototype.mod = bnMod; BigInteger.prototype.modPowInt = bnModPowInt; // "constants" BigInteger.ZERO = nbv(0); BigInteger.ONE = nbv(1); // Copyright (c) 2005-2009 Tom Wu // All Rights Reserved. // See "LICENSE" for details. // Extended JavaScript BN functions, required for RSA private ops. // Version 1.1: new BigInteger("0", 10) returns "proper" zero // Version 1.2: square() API, isProbablePrime fix // (public) function bnClone() { var r = nbi(); this.copyTo(r); return r; } // (public) return value as integer function bnIntValue() { if(this.s < 0) { if(this.t == 1) return this[0]-this.DV; else if(this.t == 0) return -1; } else if(this.t == 1) return this[0]; else if(this.t == 0) return 0; // assumes 16 < DB < 32 return ((this[1]&((1<<(32-this.DB))-1))<>24; } // (public) return value as short (assumes DB>=16) function bnShortValue() { return (this.t==0)?this.s:(this[0]<<16)>>16; } // (protected) return x s.t. r^x < DV function bnpChunkSize(r) { return Math.floor(Math.LN2*this.DB/Math.log(r)); } // (public) 0 if this == 0, 1 if this > 0 function bnSigNum() { if(this.s < 0) return -1; else if(this.t <= 0 || (this.t == 1 && this[0] <= 0)) return 0; else return 1; } // (protected) convert to radix string function bnpToRadix(b) { if(b == null) b = 10; if(this.signum() == 0 || b < 2 || b > 36) return "0"; var cs = this.chunkSize(b); var a = Math.pow(b,cs); var d = nbv(a), y = nbi(), z = nbi(), r = ""; this.divRemTo(d,y,z); while(y.signum() > 0) { r = (a+z.intValue()).toString(b).substr(1) + r; y.divRemTo(d,y,z); } return z.intValue().toString(b) + r; } // (protected) convert from radix string function bnpFromRadix(s,b) { this.fromInt(0); if(b == null) b = 10; var cs = this.chunkSize(b); var d = Math.pow(b,cs), mi = false, j = 0, w = 0; for(var i = 0; i < s.length; ++i) { var x = intAt(s,i); if(x < 0) { if(s.charAt(i) == "-" && this.signum() == 0) mi = true; continue; } w = b*w+x; if(++j >= cs) { this.dMultiply(d); this.dAddOffset(w,0); j = 0; w = 0; } } if(j > 0) { this.dMultiply(Math.pow(b,j)); this.dAddOffset(w,0); } if(mi) BigInteger.ZERO.subTo(this,this); } // (protected) alternate constructor function bnpFromNumber(a,b,c) { if("number" == typeof b) { // new BigInteger(int,int,RNG) if(a < 2) this.fromInt(1); else { this.fromNumber(a,c); if(!this.testBit(a-1)) // force MSB set this.bitwiseTo(BigInteger.ONE.shiftLeft(a-1),op_or,this); if(this.isEven()) this.dAddOffset(1,0); // force odd while(!this.isProbablePrime(b)) { this.dAddOffset(2,0); if(this.bitLength() > a) this.subTo(BigInteger.ONE.shiftLeft(a-1),this); } } } else { // new BigInteger(int,RNG) var x = new Array(), t = a&7; x.length = (a>>3)+1; b.nextBytes(x); if(t > 0) x[0] &= ((1< 0) { if(p < this.DB && (d = this[i]>>p) != (this.s&this.DM)>>p) r[k++] = d|(this.s<<(this.DB-p)); while(i >= 0) { if(p < 8) { d = (this[i]&((1<>(p+=this.DB-8); } else { d = (this[i]>>(p-=8))&0xff; if(p <= 0) { p += this.DB; --i; } } if((d&0x80) != 0) d |= -256; if(k == 0 && (this.s&0x80) != (d&0x80)) ++k; if(k > 0 || d != this.s) r[k++] = d; } } return r; } function bnEquals(a) { return(this.compareTo(a)==0); } function bnMin(a) { return(this.compareTo(a)<0)?this:a; } function bnMax(a) { return(this.compareTo(a)>0)?this:a; } // (protected) r = this op a (bitwise) function bnpBitwiseTo(a,op,r) { var i, f, m = Math.min(a.t,this.t); for(i = 0; i < m; ++i) r[i] = op(this[i],a[i]); if(a.t < this.t) { f = a.s&this.DM; for(i = m; i < this.t; ++i) r[i] = op(this[i],f); r.t = this.t; } else { f = this.s&this.DM; for(i = m; i < a.t; ++i) r[i] = op(f,a[i]); r.t = a.t; } r.s = op(this.s,a.s); r.clamp(); } // (public) this & a function op_and(x,y) { return x&y; } function bnAnd(a) { var r = nbi(); this.bitwiseTo(a,op_and,r); return r; } // (public) this | a function op_or(x,y) { return x|y; } function bnOr(a) { var r = nbi(); this.bitwiseTo(a,op_or,r); return r; } // (public) this ^ a function op_xor(x,y) { return x^y; } function bnXor(a) { var r = nbi(); this.bitwiseTo(a,op_xor,r); return r; } // (public) this & ~a function op_andnot(x,y) { return x&~y; } function bnAndNot(a) { var r = nbi(); this.bitwiseTo(a,op_andnot,r); return r; } // (public) ~this function bnNot() { var r = nbi(); for(var i = 0; i < this.t; ++i) r[i] = this.DM&~this[i]; r.t = this.t; r.s = ~this.s; return r; } // (public) this << n function bnShiftLeft(n) { var r = nbi(); if(n < 0) this.rShiftTo(-n,r); else this.lShiftTo(n,r); return r; } // (public) this >> n function bnShiftRight(n) { var r = nbi(); if(n < 0) this.lShiftTo(-n,r); else this.rShiftTo(n,r); return r; } // return index of lowest 1-bit in x, x < 2^31 function lbit(x) { if(x == 0) return -1; var r = 0; if((x&0xffff) == 0) { x >>= 16; r += 16; } if((x&0xff) == 0) { x >>= 8; r += 8; } if((x&0xf) == 0) { x >>= 4; r += 4; } if((x&3) == 0) { x >>= 2; r += 2; } if((x&1) == 0) ++r; return r; } // (public) returns index of lowest 1-bit (or -1 if none) function bnGetLowestSetBit() { for(var i = 0; i < this.t; ++i) if(this[i] != 0) return i*this.DB+lbit(this[i]); if(this.s < 0) return this.t*this.DB; return -1; } // return number of 1 bits in x function cbit(x) { var r = 0; while(x != 0) { x &= x-1; ++r; } return r; } // (public) return number of set bits function bnBitCount() { var r = 0, x = this.s&this.DM; for(var i = 0; i < this.t; ++i) r += cbit(this[i]^x); return r; } // (public) true iff nth bit is set function bnTestBit(n) { var j = Math.floor(n/this.DB); if(j >= this.t) return(this.s!=0); return((this[j]&(1<<(n%this.DB)))!=0); } // (protected) this op (1<>= this.DB; } if(a.t < this.t) { c += a.s; while(i < this.t) { c += this[i]; r[i++] = c&this.DM; c >>= this.DB; } c += this.s; } else { c += this.s; while(i < a.t) { c += a[i]; r[i++] = c&this.DM; c >>= this.DB; } c += a.s; } r.s = (c<0)?-1:0; if(c > 0) r[i++] = c; else if(c < -1) r[i++] = this.DV+c; r.t = i; r.clamp(); } // (public) this + a function bnAdd(a) { var r = nbi(); this.addTo(a,r); return r; } // (public) this - a function bnSubtract(a) { var r = nbi(); this.subTo(a,r); return r; } // (public) this * a function bnMultiply(a) { var r = nbi(); this.multiplyTo(a,r); return r; } // (public) this^2 function bnSquare() { var r = nbi(); this.squareTo(r); return r; } // (public) this / a function bnDivide(a) { var r = nbi(); this.divRemTo(a,r,null); return r; } // (public) this % a function bnRemainder(a) { var r = nbi(); this.divRemTo(a,null,r); return r; } // (public) [this/a,this%a] function bnDivideAndRemainder(a) { var q = nbi(), r = nbi(); this.divRemTo(a,q,r); return new Array(q,r); } // (protected) this *= n, this >= 0, 1 < n < DV function bnpDMultiply(n) { this[this.t] = this.am(0,n-1,this,0,0,this.t); ++this.t; this.clamp(); } // (protected) this += n << w words, this >= 0 function bnpDAddOffset(n,w) { if(n == 0) return; while(this.t <= w) this[this.t++] = 0; this[w] += n; while(this[w] >= this.DV) { this[w] -= this.DV; if(++w >= this.t) this[this.t++] = 0; ++this[w]; } } // A "null" reducer function NullExp() {} function nNop(x) { return x; } function nMulTo(x,y,r) { x.multiplyTo(y,r); } function nSqrTo(x,r) { x.squareTo(r); } NullExp.prototype.convert = nNop; NullExp.prototype.revert = nNop; NullExp.prototype.mulTo = nMulTo; NullExp.prototype.sqrTo = nSqrTo; // (public) this^e function bnPow(e) { return this.exp(e,new NullExp()); } // (protected) r = lower n words of "this * a", a.t <= n // "this" should be the larger one if appropriate. function bnpMultiplyLowerTo(a,n,r) { var i = Math.min(this.t+a.t,n); r.s = 0; // assumes a,this >= 0 r.t = i; while(i > 0) r[--i] = 0; var j; for(j = r.t-this.t; i < j; ++i) r[i+this.t] = this.am(0,a[i],r,i,0,this.t); for(j = Math.min(a.t,n); i < j; ++i) this.am(0,a[i],r,i,0,n-i); r.clamp(); } // (protected) r = "this * a" without lower n words, n > 0 // "this" should be the larger one if appropriate. function bnpMultiplyUpperTo(a,n,r) { --n; var i = r.t = this.t+a.t-n; r.s = 0; // assumes a,this >= 0 while(--i >= 0) r[i] = 0; for(i = Math.max(n-this.t,0); i < a.t; ++i) r[this.t+i-n] = this.am(n-i,a[i],r,0,0,this.t+i-n); r.clamp(); r.drShiftTo(1,r); } // Barrett modular reduction function Barrett(m) { // setup Barrett this.r2 = nbi(); this.q3 = nbi(); BigInteger.ONE.dlShiftTo(2*m.t,this.r2); this.mu = this.r2.divide(m); this.m = m; } function barrettConvert(x) { if(x.s < 0 || x.t > 2*this.m.t) return x.mod(this.m); else if(x.compareTo(this.m) < 0) return x; else { var r = nbi(); x.copyTo(r); this.reduce(r); return r; } } function barrettRevert(x) { return x; } // x = x mod m (HAC 14.42) function barrettReduce(x) { x.drShiftTo(this.m.t-1,this.r2); if(x.t > this.m.t+1) { x.t = this.m.t+1; x.clamp(); } this.mu.multiplyUpperTo(this.r2,this.m.t+1,this.q3); this.m.multiplyLowerTo(this.q3,this.m.t+1,this.r2); while(x.compareTo(this.r2) < 0) x.dAddOffset(1,this.m.t+1); x.subTo(this.r2,x); while(x.compareTo(this.m) >= 0) x.subTo(this.m,x); } // r = x^2 mod m; x != r function barrettSqrTo(x,r) { x.squareTo(r); this.reduce(r); } // r = x*y mod m; x,y != r function barrettMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); } Barrett.prototype.convert = barrettConvert; Barrett.prototype.revert = barrettRevert; Barrett.prototype.reduce = barrettReduce; Barrett.prototype.mulTo = barrettMulTo; Barrett.prototype.sqrTo = barrettSqrTo; // (public) this^e % m (HAC 14.85) function bnModPow(e,m) { var i = e.bitLength(), k, r = nbv(1), z; if(i <= 0) return r; else if(i < 18) k = 1; else if(i < 48) k = 3; else if(i < 144) k = 4; else if(i < 768) k = 5; else k = 6; if(i < 8) z = new Classic(m); else if(m.isEven()) z = new Barrett(m); else z = new Montgomery(m); // precomputation var g = new Array(), n = 3, k1 = k-1, km = (1< 1) { var g2 = nbi(); z.sqrTo(g[1],g2); while(n <= km) { g[n] = nbi(); z.mulTo(g2,g[n-2],g[n]); n += 2; } } var j = e.t-1, w, is1 = true, r2 = nbi(), t; i = nbits(e[j])-1; while(j >= 0) { if(i >= k1) w = (e[j]>>(i-k1))&km; else { w = (e[j]&((1<<(i+1))-1))<<(k1-i); if(j > 0) w |= e[j-1]>>(this.DB+i-k1); } n = k; while((w&1) == 0) { w >>= 1; --n; } if((i -= n) < 0) { i += this.DB; --j; } if(is1) { // ret == 1, don't bother squaring or multiplying it g[w].copyTo(r); is1 = false; } else { while(n > 1) { z.sqrTo(r,r2); z.sqrTo(r2,r); n -= 2; } if(n > 0) z.sqrTo(r,r2); else { t = r; r = r2; r2 = t; } z.mulTo(r2,g[w],r); } while(j >= 0 && (e[j]&(1< 0) { x.rShiftTo(g,x); y.rShiftTo(g,y); } while(x.signum() > 0) { if((i = x.getLowestSetBit()) > 0) x.rShiftTo(i,x); if((i = y.getLowestSetBit()) > 0) y.rShiftTo(i,y); if(x.compareTo(y) >= 0) { x.subTo(y,x); x.rShiftTo(1,x); } else { y.subTo(x,y); y.rShiftTo(1,y); } } if(g > 0) y.lShiftTo(g,y); return y; } // (protected) this % n, n < 2^26 function bnpModInt(n) { if(n <= 0) return 0; var d = this.DV%n, r = (this.s<0)?n-1:0; if(this.t > 0) if(d == 0) r = this[0]%n; else for(var i = this.t-1; i >= 0; --i) r = (d*r+this[i])%n; return r; } // (public) 1/this % m (HAC 14.61) function bnModInverse(m) { var ac = m.isEven(); if((this.isEven() && ac) || m.signum() == 0) return BigInteger.ZERO; var u = m.clone(), v = this.clone(); var a = nbv(1), b = nbv(0), c = nbv(0), d = nbv(1); while(u.signum() != 0) { while(u.isEven()) { u.rShiftTo(1,u); if(ac) { if(!a.isEven() || !b.isEven()) { a.addTo(this,a); b.subTo(m,b); } a.rShiftTo(1,a); } else if(!b.isEven()) b.subTo(m,b); b.rShiftTo(1,b); } while(v.isEven()) { v.rShiftTo(1,v); if(ac) { if(!c.isEven() || !d.isEven()) { c.addTo(this,c); d.subTo(m,d); } c.rShiftTo(1,c); } else if(!d.isEven()) d.subTo(m,d); d.rShiftTo(1,d); } if(u.compareTo(v) >= 0) { u.subTo(v,u); if(ac) a.subTo(c,a); b.subTo(d,b); } else { v.subTo(u,v); if(ac) c.subTo(a,c); d.subTo(b,d); } } if(v.compareTo(BigInteger.ONE) != 0) return BigInteger.ZERO; if(d.compareTo(m) >= 0) return d.subtract(m); if(d.signum() < 0) d.addTo(m,d); else return d; if(d.signum() < 0) return d.add(m); else return d; } var lowprimes = [2,3,5,7,11,13,17,19,23,29,31,37,41,43,47,53,59,61,67,71,73,79,83,89,97,101,103,107,109,113,127,131,137,139,149,151,157,163,167,173,179,181,191,193,197,199,211,223,227,229,233,239,241,251,257,263,269,271,277,281,283,293,307,311,313,317,331,337,347,349,353,359,367,373,379,383,389,397,401,409,419,421,431,433,439,443,449,457,461,463,467,479,487,491,499,503,509,521,523,541,547,557,563,569,571,577,587,593,599,601,607,613,617,619,631,641,643,647,653,659,661,673,677,683,691,701,709,719,727,733,739,743,751,757,761,769,773,787,797,809,811,821,823,827,829,839,853,857,859,863,877,881,883,887,907,911,919,929,937,941,947,953,967,971,977,983,991,997]; var lplim = (1<<26)/lowprimes[lowprimes.length-1]; // (public) test primality with certainty >= 1-.5^t function bnIsProbablePrime(t) { var i, x = this.abs(); if(x.t == 1 && x[0] <= lowprimes[lowprimes.length-1]) { for(i = 0; i < lowprimes.length; ++i) if(x[0] == lowprimes[i]) return true; return false; } if(x.isEven()) return false; i = 1; while(i < lowprimes.length) { var m = lowprimes[i], j = i+1; while(j < lowprimes.length && m < lplim) m *= lowprimes[j++]; m = x.modInt(m); while(i < j) if(m%lowprimes[i++] == 0) return false; } return x.millerRabin(t); } // (protected) true if probably prime (HAC 4.24, Miller-Rabin) function bnpMillerRabin(t) { var n1 = this.subtract(BigInteger.ONE); var k = n1.getLowestSetBit(); if(k <= 0) return false; var r = n1.shiftRight(k); t = (t+1)>>1; if(t > lowprimes.length) t = lowprimes.length; var a = nbi(); for(var i = 0; i < t; ++i) { //Pick bases at random, instead of starting at 2 a.fromInt(lowprimes[Math.floor(Math.random()*lowprimes.length)]); var y = a.modPow(r,this); if(y.compareTo(BigInteger.ONE) != 0 && y.compareTo(n1) != 0) { var j = 1; while(j++ < k && y.compareTo(n1) != 0) { y = y.modPowInt(2,this); if(y.compareTo(BigInteger.ONE) == 0) return false; } if(y.compareTo(n1) != 0) return false; } } return true; } // protected BigInteger.prototype.chunkSize = bnpChunkSize; BigInteger.prototype.toRadix = bnpToRadix; BigInteger.prototype.fromRadix = bnpFromRadix; BigInteger.prototype.fromNumber = bnpFromNumber; BigInteger.prototype.bitwiseTo = bnpBitwiseTo; BigInteger.prototype.changeBit = bnpChangeBit; BigInteger.prototype.addTo = bnpAddTo; BigInteger.prototype.dMultiply = bnpDMultiply; BigInteger.prototype.dAddOffset = bnpDAddOffset; BigInteger.prototype.multiplyLowerTo = bnpMultiplyLowerTo; BigInteger.prototype.multiplyUpperTo = bnpMultiplyUpperTo; BigInteger.prototype.modInt = bnpModInt; BigInteger.prototype.millerRabin = bnpMillerRabin; // public BigInteger.prototype.clone = bnClone; BigInteger.prototype.intValue = bnIntValue; BigInteger.prototype.byteValue = bnByteValue; BigInteger.prototype.shortValue = bnShortValue; BigInteger.prototype.signum = bnSigNum; BigInteger.prototype.toByteArray = bnToByteArray; BigInteger.prototype.equals = bnEquals; BigInteger.prototype.min = bnMin; BigInteger.prototype.max = bnMax; BigInteger.prototype.and = bnAnd; BigInteger.prototype.or = bnOr; BigInteger.prototype.xor = bnXor; BigInteger.prototype.andNot = bnAndNot; BigInteger.prototype.not = bnNot; BigInteger.prototype.shiftLeft = bnShiftLeft; BigInteger.prototype.shiftRight = bnShiftRight; BigInteger.prototype.getLowestSetBit = bnGetLowestSetBit; BigInteger.prototype.bitCount = bnBitCount; BigInteger.prototype.testBit = bnTestBit; BigInteger.prototype.setBit = bnSetBit; BigInteger.prototype.clearBit = bnClearBit; BigInteger.prototype.flipBit = bnFlipBit; BigInteger.prototype.add = bnAdd; BigInteger.prototype.subtract = bnSubtract; BigInteger.prototype.multiply = bnMultiply; BigInteger.prototype.divide = bnDivide; BigInteger.prototype.remainder = bnRemainder; BigInteger.prototype.divideAndRemainder = bnDivideAndRemainder; BigInteger.prototype.modPow = bnModPow; BigInteger.prototype.modInverse = bnModInverse; BigInteger.prototype.pow = bnPow; BigInteger.prototype.gcd = bnGCD; BigInteger.prototype.isProbablePrime = bnIsProbablePrime; // JSBN-specific extension BigInteger.prototype.square = bnSquare; // Expose the Barrett function BigInteger.prototype.Barrett = Barrett // BigInteger interfaces not implemented in jsbn: // BigInteger(int signum, byte[] magnitude) // double doubleValue() // float floatValue() // int hashCode() // long longValue() // static BigInteger valueOf(long val) // Random number generator - requires a PRNG backend, e.g. prng4.js // For best results, put code like // // in your main HTML document. var rng_state; var rng_pool; var rng_pptr; // Mix in a 32-bit integer into the pool function rng_seed_int(x) { rng_pool[rng_pptr++] ^= x & 255; rng_pool[rng_pptr++] ^= (x >> 8) & 255; rng_pool[rng_pptr++] ^= (x >> 16) & 255; rng_pool[rng_pptr++] ^= (x >> 24) & 255; if(rng_pptr >= rng_psize) rng_pptr -= rng_psize; } // Mix in the current time (w/milliseconds) into the pool function rng_seed_time() { rng_seed_int(new Date().getTime()); } // Initialize the pool with junk if needed. if(rng_pool == null) { rng_pool = new Array(); rng_pptr = 0; var t; if(typeof window !== "undefined" && window.crypto) { if (window.crypto.getRandomValues) { // Use webcrypto if available var ua = new Uint8Array(32); window.crypto.getRandomValues(ua); for(t = 0; t < 32; ++t) rng_pool[rng_pptr++] = ua[t]; } else if(navigator.appName == "Netscape" && navigator.appVersion < "5") { // Extract entropy (256 bits) from NS4 RNG if available var z = window.crypto.random(32); for(t = 0; t < z.length; ++t) rng_pool[rng_pptr++] = z.charCodeAt(t) & 255; } } while(rng_pptr < rng_psize) { // extract some randomness from Math.random() t = Math.floor(65536 * Math.random()); rng_pool[rng_pptr++] = t >>> 8; rng_pool[rng_pptr++] = t & 255; } rng_pptr = 0; rng_seed_time(); //rng_seed_int(window.screenX); //rng_seed_int(window.screenY); } function rng_get_byte() { if(rng_state == null) { rng_seed_time(); rng_state = prng_newstate(); rng_state.init(rng_pool); for(rng_pptr = 0; rng_pptr < rng_pool.length; ++rng_pptr) rng_pool[rng_pptr] = 0; rng_pptr = 0; //rng_pool = null; } // TODO: allow reseeding after first request return rng_state.next(); } function rng_get_bytes(ba) { var i; for(i = 0; i < ba.length; ++i) ba[i] = rng_get_byte(); } function SecureRandom() {} SecureRandom.prototype.nextBytes = rng_get_bytes; // prng4.js - uses Arcfour as a PRNG function Arcfour() { this.i = 0; this.j = 0; this.S = new Array(); } // Initialize arcfour context from key, an array of ints, each from [0..255] function ARC4init(key) { var i, j, t; for(i = 0; i < 256; ++i) this.S[i] = i; j = 0; for(i = 0; i < 256; ++i) { j = (j + this.S[i] + key[i % key.length]) & 255; t = this.S[i]; this.S[i] = this.S[j]; this.S[j] = t; } this.i = 0; this.j = 0; } function ARC4next() { var t; this.i = (this.i + 1) & 255; this.j = (this.j + this.S[this.i]) & 255; t = this.S[this.i]; this.S[this.i] = this.S[this.j]; this.S[this.j] = t; return this.S[(t + this.S[this.i]) & 255]; } Arcfour.prototype.init = ARC4init; Arcfour.prototype.next = ARC4next; // Plug in your RNG constructor here function prng_newstate() { return new Arcfour(); } // Pool size must be a multiple of 4 and greater than 32. // An array of bytes the size of the pool will be passed to init() var rng_psize = 256; if (typeof exports !== 'undefined') { exports = module.exports = { BigInteger: BigInteger, SecureRandom: SecureRandom, }; } else { this.BigInteger = BigInteger; this.SecureRandom = SecureRandom; } }).call(this); },{}],234:[function(require,module,exports){ /** * JSONSchema Validator - Validates JavaScript objects using JSON Schemas * (http://www.json.com/json-schema-proposal/) * * Copyright (c) 2007 Kris Zyp SitePen (www.sitepen.com) * Licensed under the MIT (MIT-LICENSE.txt) license. To use the validator call the validate function with an instance object and an optional schema object. If a schema is provided, it will be used to validate. If the instance object refers to a schema (self-validating), that schema will be used to validate and the schema parameter is not necessary (if both exist, both validations will occur). The validate method will return an array of validation errors. If there are no errors, then an empty list will be returned. A validation error will have two properties: "property" which indicates which property had the error "message" which indicates what the error was */ ({define:typeof define!="undefined"?define:function(deps, factory){module.exports = factory();}}). define([], function(){ var exports = validate; // setup primitive classes to be JSON Schema types exports.Integer = {type:"integer"}; var primitiveConstructors = { String: String, Boolean: Boolean, Number: Number, Object: Object, Array: Array, Date: Date } exports.validate = validate; function validate(/*Any*/instance,/*Object*/schema) { // Summary: // To use the validator call JSONSchema.validate with an instance object and an optional schema object. // If a schema is provided, it will be used to validate. If the instance object refers to a schema (self-validating), // that schema will be used to validate and the schema parameter is not necessary (if both exist, // both validations will occur). // The validate method will return an object with two properties: // valid: A boolean indicating if the instance is valid by the schema // errors: An array of validation errors. If there are no errors, then an // empty list will be returned. A validation error will have two properties: // property: which indicates which property had the error // message: which indicates what the error was // return validate(instance, schema, {changing: false});//, coerce: false, existingOnly: false}); }; exports.checkPropertyChange = function(/*Any*/value,/*Object*/schema, /*String*/property) { // Summary: // The checkPropertyChange method will check to see if an value can legally be in property with the given schema // This is slightly different than the validate method in that it will fail if the schema is readonly and it will // not check for self-validation, it is assumed that the passed in value is already internally valid. // The checkPropertyChange method will return the same object type as validate, see JSONSchema.validate for // information. // return validate(value, schema, {changing: property || "property"}); }; var validate = exports._validate = function(/*Any*/instance,/*Object*/schema,/*Object*/options) { if (!options) options = {}; var _changing = options.changing; function getType(schema){ return schema.type || (primitiveConstructors[schema.name] == schema && schema.name.toLowerCase()); } var errors = []; // validate a value against a property definition function checkProp(value, schema, path,i){ var l; path += path ? typeof i == 'number' ? '[' + i + ']' : typeof i == 'undefined' ? '' : '.' + i : i; function addError(message){ errors.push({property:path,message:message}); } if((typeof schema != 'object' || schema instanceof Array) && (path || typeof schema != 'function') && !(schema && getType(schema))){ if(typeof schema == 'function'){ if(!(value instanceof schema)){ addError("is not an instance of the class/constructor " + schema.name); } }else if(schema){ addError("Invalid schema/property definition " + schema); } return null; } if(_changing && schema.readonly){ addError("is a readonly field, it can not be changed"); } if(schema['extends']){ // if it extends another schema, it must pass that schema as well checkProp(value,schema['extends'],path,i); } // validate a value against a type definition function checkType(type,value){ if(type){ if(typeof type == 'string' && type != 'any' && (type == 'null' ? value !== null : typeof value != type) && !(value instanceof Array && type == 'array') && !(value instanceof Date && type == 'date') && !(type == 'integer' && value%1===0)){ return [{property:path,message:(typeof value) + " value found, but a " + type + " is required"}]; } if(type instanceof Array){ var unionErrors=[]; for(var j = 0; j < type.length; j++){ // a union type if(!(unionErrors=checkType(type[j],value)).length){ break; } } if(unionErrors.length){ return unionErrors; } }else if(typeof type == 'object'){ var priorErrors = errors; errors = []; checkProp(value,type,path); var theseErrors = errors; errors = priorErrors; return theseErrors; } } return []; } if(value === undefined){ if(schema.required){ addError("is missing and it is required"); } }else{ errors = errors.concat(checkType(getType(schema),value)); if(schema.disallow && !checkType(schema.disallow,value).length){ addError(" disallowed value was matched"); } if(value !== null){ if(value instanceof Array){ if(schema.items){ var itemsIsArray = schema.items instanceof Array; var propDef = schema.items; for (i = 0, l = value.length; i < l; i += 1) { if (itemsIsArray) propDef = schema.items[i]; if (options.coerce) value[i] = options.coerce(value[i], propDef); errors.concat(checkProp(value[i],propDef,path,i)); } } if(schema.minItems && value.length < schema.minItems){ addError("There must be a minimum of " + schema.minItems + " in the array"); } if(schema.maxItems && value.length > schema.maxItems){ addError("There must be a maximum of " + schema.maxItems + " in the array"); } }else if(schema.properties || schema.additionalProperties){ errors.concat(checkObj(value, schema.properties, path, schema.additionalProperties)); } if(schema.pattern && typeof value == 'string' && !value.match(schema.pattern)){ addError("does not match the regex pattern " + schema.pattern); } if(schema.maxLength && typeof value == 'string' && value.length > schema.maxLength){ addError("may only be " + schema.maxLength + " characters long"); } if(schema.minLength && typeof value == 'string' && value.length < schema.minLength){ addError("must be at least " + schema.minLength + " characters long"); } if(typeof schema.minimum !== undefined && typeof value == typeof schema.minimum && schema.minimum > value){ addError("must have a minimum value of " + schema.minimum); } if(typeof schema.maximum !== undefined && typeof value == typeof schema.maximum && schema.maximum < value){ addError("must have a maximum value of " + schema.maximum); } if(schema['enum']){ var enumer = schema['enum']; l = enumer.length; var found; for(var j = 0; j < l; j++){ if(enumer[j]===value){ found=1; break; } } if(!found){ addError("does not have a value in the enumeration " + enumer.join(", ")); } } if(typeof schema.maxDecimal == 'number' && (value.toString().match(new RegExp("\\.[0-9]{" + (schema.maxDecimal + 1) + ",}")))){ addError("may only have " + schema.maxDecimal + " digits of decimal places"); } } } return null; } // validate an object against a schema function checkObj(instance,objTypeDef,path,additionalProp){ if(typeof objTypeDef =='object'){ if(typeof instance != 'object' || instance instanceof Array){ errors.push({property:path,message:"an object is required"}); } for(var i in objTypeDef){ if(objTypeDef.hasOwnProperty(i)){ var value = instance[i]; // skip _not_ specified properties if (value === undefined && options.existingOnly) continue; var propDef = objTypeDef[i]; // set default if(value === undefined && propDef["default"]){ value = instance[i] = propDef["default"]; } if(options.coerce && i in instance){ value = instance[i] = options.coerce(value, propDef); } checkProp(value,propDef,path,i); } } } for(i in instance){ if(instance.hasOwnProperty(i) && !(i.charAt(0) == '_' && i.charAt(1) == '_') && objTypeDef && !objTypeDef[i] && additionalProp===false){ if (options.filter) { delete instance[i]; continue; } else { errors.push({property:path,message:(typeof value) + "The property " + i + " is not defined in the schema and the schema does not allow additional properties"}); } } var requires = objTypeDef && objTypeDef[i] && objTypeDef[i].requires; if(requires && !(requires in instance)){ errors.push({property:path,message:"the presence of the property " + i + " requires that " + requires + " also be present"}); } value = instance[i]; if(additionalProp && (!(objTypeDef && typeof objTypeDef == 'object') || !(i in objTypeDef))){ if(options.coerce){ value = instance[i] = options.coerce(value, additionalProp); } checkProp(value,additionalProp,path,i); } if(!_changing && value && value.$schema){ errors = errors.concat(checkProp(value,value.$schema,path,i)); } } return errors; } if(schema){ checkProp(instance,schema,'',_changing || ''); } if(!_changing && instance && instance.$schema){ checkProp(instance,instance.$schema,'',''); } return {valid:!errors.length,errors:errors}; }; exports.mustBeValid = function(result){ // summary: // This checks to ensure that the result is valid and will throw an appropriate error message if it is not // result: the result returned from checkPropertyChange or validate if(!result.valid){ throw new TypeError(result.errors.map(function(error){return "for property " + error.property + ': ' + error.message;}).join(", \n")); } } return exports; }); },{}],235:[function(require,module,exports){ exports = module.exports = stringify exports.getSerialize = serializer function stringify(obj, replacer, spaces, cycleReplacer) { return JSON.stringify(obj, serializer(replacer, cycleReplacer), spaces) } function serializer(replacer, cycleReplacer) { var stack = [], keys = [] if (cycleReplacer == null) cycleReplacer = function(key, value) { if (stack[0] === value) return "[Circular ~]" return "[Circular ~." + keys.slice(0, stack.indexOf(value)).join(".") + "]" } return function(key, value) { if (stack.length > 0) { var thisPos = stack.indexOf(this) ~thisPos ? stack.splice(thisPos + 1) : stack.push(this) ~thisPos ? keys.splice(thisPos, Infinity, key) : keys.push(key) if (~stack.indexOf(value)) value = cycleReplacer.call(this, key, value) } else stack.push(value) return replacer == null ? value : replacer.call(this, key, value) } } },{}],236:[function(require,module,exports){ var untilde = function(str) { return str.replace(/~./g, function(m) { switch (m) { case "~0": return "~"; case "~1": return "/"; } throw new Error("Invalid tilde escape: " + m); }); } var traverse = function(obj, pointer, value) { // assert(isArray(pointer)) var part = untilde(pointer.shift()); if(!obj.hasOwnProperty(part)) { return null; } if(pointer.length !== 0) { // keep traversin! return traverse(obj[part], pointer, value); } // we're done if(typeof value === "undefined") { // just reading return obj[part]; } // set new value, return old value var old_value = obj[part]; if(value === null) { delete obj[part]; } else { obj[part] = value; } return old_value; } var validate_input = function(obj, pointer) { if(typeof obj !== "object") { throw new Error("Invalid input object."); } if(pointer === "") { return []; } if(!pointer) { throw new Error("Invalid JSON pointer."); } pointer = pointer.split("/"); var first = pointer.shift(); if (first !== "") { throw new Error("Invalid JSON pointer."); } return pointer; } var get = function(obj, pointer) { pointer = validate_input(obj, pointer); if (pointer.length === 0) { return obj; } return traverse(obj, pointer); } var set = function(obj, pointer, value) { pointer = validate_input(obj, pointer); if (pointer.length === 0) { throw new Error("Invalid JSON pointer for set.") } return traverse(obj, pointer, value); } exports.get = get exports.set = set },{}],237:[function(require,module,exports){ /* * lib/jsprim.js: utilities for primitive JavaScript types */ var mod_assert = require('assert'); var mod_util = require('util'); var mod_extsprintf = require('extsprintf'); var mod_verror = require('verror'); var mod_jsonschema = require('json-schema'); /* * Public interface */ exports.deepCopy = deepCopy; exports.deepEqual = deepEqual; exports.isEmpty = isEmpty; exports.hasKey = hasKey; exports.forEachKey = forEachKey; exports.pluck = pluck; exports.flattenObject = flattenObject; exports.flattenIter = flattenIter; exports.validateJsonObject = validateJsonObjectJS; exports.validateJsonObjectJS = validateJsonObjectJS; exports.randElt = randElt; exports.extraProperties = extraProperties; exports.mergeObjects = mergeObjects; exports.startsWith = startsWith; exports.endsWith = endsWith; exports.iso8601 = iso8601; exports.rfc1123 = rfc1123; exports.parseDateTime = parseDateTime; exports.hrtimediff = hrtimeDiff; exports.hrtimeDiff = hrtimeDiff; exports.hrtimeAccum = hrtimeAccum; exports.hrtimeAdd = hrtimeAdd; exports.hrtimeNanosec = hrtimeNanosec; exports.hrtimeMicrosec = hrtimeMicrosec; exports.hrtimeMillisec = hrtimeMillisec; /* * Deep copy an acyclic *basic* Javascript object. This only handles basic * scalars (strings, numbers, booleans) and arbitrarily deep arrays and objects * containing these. This does *not* handle instances of other classes. */ function deepCopy(obj) { var ret, key; var marker = '__deepCopy'; if (obj && obj[marker]) throw (new Error('attempted deep copy of cyclic object')); if (obj && obj.constructor == Object) { ret = {}; obj[marker] = true; for (key in obj) { if (key == marker) continue; ret[key] = deepCopy(obj[key]); } delete (obj[marker]); return (ret); } if (obj && obj.constructor == Array) { ret = []; obj[marker] = true; for (key = 0; key < obj.length; key++) ret.push(deepCopy(obj[key])); delete (obj[marker]); return (ret); } /* * It must be a primitive type -- just return it. */ return (obj); } function deepEqual(obj1, obj2) { if (typeof (obj1) != typeof (obj2)) return (false); if (obj1 === null || obj2 === null || typeof (obj1) != 'object') return (obj1 === obj2); if (obj1.constructor != obj2.constructor) return (false); var k; for (k in obj1) { if (!obj2.hasOwnProperty(k)) return (false); if (!deepEqual(obj1[k], obj2[k])) return (false); } for (k in obj2) { if (!obj1.hasOwnProperty(k)) return (false); } return (true); } function isEmpty(obj) { var key; for (key in obj) return (false); return (true); } function hasKey(obj, key) { mod_assert.equal(typeof (key), 'string'); return (Object.prototype.hasOwnProperty.call(obj, key)); } function forEachKey(obj, callback) { for (var key in obj) { if (hasKey(obj, key)) { callback(key, obj[key]); } } } function pluck(obj, key) { mod_assert.equal(typeof (key), 'string'); return (pluckv(obj, key)); } function pluckv(obj, key) { if (obj === null || typeof (obj) !== 'object') return (undefined); if (obj.hasOwnProperty(key)) return (obj[key]); var i = key.indexOf('.'); if (i == -1) return (undefined); var key1 = key.substr(0, i); if (!obj.hasOwnProperty(key1)) return (undefined); return (pluckv(obj[key1], key.substr(i + 1))); } /* * Invoke callback(row) for each entry in the array that would be returned by * flattenObject(data, depth). This is just like flattenObject(data, * depth).forEach(callback), except that the intermediate array is never * created. */ function flattenIter(data, depth, callback) { doFlattenIter(data, depth, [], callback); } function doFlattenIter(data, depth, accum, callback) { var each; var key; if (depth === 0) { each = accum.slice(0); each.push(data); callback(each); return; } mod_assert.ok(data !== null); mod_assert.equal(typeof (data), 'object'); mod_assert.equal(typeof (depth), 'number'); mod_assert.ok(depth >= 0); for (key in data) { each = accum.slice(0); each.push(key); doFlattenIter(data[key], depth - 1, each, callback); } } function flattenObject(data, depth) { if (depth === 0) return ([ data ]); mod_assert.ok(data !== null); mod_assert.equal(typeof (data), 'object'); mod_assert.equal(typeof (depth), 'number'); mod_assert.ok(depth >= 0); var rv = []; var key; for (key in data) { flattenObject(data[key], depth - 1).forEach(function (p) { rv.push([ key ].concat(p)); }); } return (rv); } function startsWith(str, prefix) { return (str.substr(0, prefix.length) == prefix); } function endsWith(str, suffix) { return (str.substr( str.length - suffix.length, suffix.length) == suffix); } function iso8601(d) { if (typeof (d) == 'number') d = new Date(d); mod_assert.ok(d.constructor === Date); return (mod_extsprintf.sprintf('%4d-%02d-%02dT%02d:%02d:%02d.%03dZ', d.getUTCFullYear(), d.getUTCMonth() + 1, d.getUTCDate(), d.getUTCHours(), d.getUTCMinutes(), d.getUTCSeconds(), d.getUTCMilliseconds())); } var RFC1123_MONTHS = [ 'Jan', 'Feb', 'Mar', 'Apr', 'May', 'Jun', 'Jul', 'Aug', 'Sep', 'Oct', 'Nov', 'Dec']; var RFC1123_DAYS = [ 'Sun', 'Mon', 'Tue', 'Wed', 'Thu', 'Fri', 'Sat']; function rfc1123(date) { return (mod_extsprintf.sprintf('%s, %02d %s %04d %02d:%02d:%02d GMT', RFC1123_DAYS[date.getUTCDay()], date.getUTCDate(), RFC1123_MONTHS[date.getUTCMonth()], date.getUTCFullYear(), date.getUTCHours(), date.getUTCMinutes(), date.getUTCSeconds())); } /* * Parses a date expressed as a string, as either a number of milliseconds since * the epoch or any string format that Date accepts, giving preference to the * former where these two sets overlap (e.g., small numbers). */ function parseDateTime(str) { /* * This is irritatingly implicit, but significantly more concise than * alternatives. The "+str" will convert a string containing only a * number directly to a Number, or NaN for other strings. Thus, if the * conversion succeeds, we use it (this is the milliseconds-since-epoch * case). Otherwise, we pass the string directly to the Date * constructor to parse. */ var numeric = +str; if (!isNaN(numeric)) { return (new Date(numeric)); } else { return (new Date(str)); } } function validateJsonObjectJS(schema, input) { var report = mod_jsonschema.validate(input, schema); if (report.errors.length === 0) return (null); /* Currently, we only do anything useful with the first error. */ var error = report.errors[0]; /* The failed property is given by a URI with an irrelevant prefix. */ var propname = error['property']; var reason = error['message'].toLowerCase(); var i, j; /* * There's at least one case where the property error message is * confusing at best. We work around this here. */ if ((i = reason.indexOf('the property ')) != -1 && (j = reason.indexOf(' is not defined in the schema and the ' + 'schema does not allow additional properties')) != -1) { i += 'the property '.length; if (propname === '') propname = reason.substr(i, j - i); else propname = propname + '.' + reason.substr(i, j - i); reason = 'unsupported property'; } var rv = new mod_verror.VError('property "%s": %s', propname, reason); rv.jsv_details = error; return (rv); } function randElt(arr) { mod_assert.ok(Array.isArray(arr) && arr.length > 0, 'randElt argument must be a non-empty array'); return (arr[Math.floor(Math.random() * arr.length)]); } function assertHrtime(a) { mod_assert.ok(a[0] >= 0 && a[1] >= 0, 'negative numbers not allowed in hrtimes'); mod_assert.ok(a[1] < 1e9, 'nanoseconds column overflow'); } /* * Compute the time elapsed between hrtime readings A and B, where A is later * than B. hrtime readings come from Node's process.hrtime(). There is no * defined way to represent negative deltas, so it's illegal to diff B from A * where the time denoted by B is later than the time denoted by A. If this * becomes valuable, we can define a representation and extend the * implementation to support it. */ function hrtimeDiff(a, b) { assertHrtime(a); assertHrtime(b); mod_assert.ok(a[0] > b[0] || (a[0] == b[0] && a[1] >= b[1]), 'negative differences not allowed'); var rv = [ a[0] - b[0], 0 ]; if (a[1] >= b[1]) { rv[1] = a[1] - b[1]; } else { rv[0]--; rv[1] = 1e9 - (b[1] - a[1]); } return (rv); } /* * Convert a hrtime reading from the array format returned by Node's * process.hrtime() into a scalar number of nanoseconds. */ function hrtimeNanosec(a) { assertHrtime(a); return (Math.floor(a[0] * 1e9 + a[1])); } /* * Convert a hrtime reading from the array format returned by Node's * process.hrtime() into a scalar number of microseconds. */ function hrtimeMicrosec(a) { assertHrtime(a); return (Math.floor(a[0] * 1e6 + a[1] / 1e3)); } /* * Convert a hrtime reading from the array format returned by Node's * process.hrtime() into a scalar number of milliseconds. */ function hrtimeMillisec(a) { assertHrtime(a); return (Math.floor(a[0] * 1e3 + a[1] / 1e6)); } /* * Add two hrtime readings A and B, overwriting A with the result of the * addition. This function is useful for accumulating several hrtime intervals * into a counter. Returns A. */ function hrtimeAccum(a, b) { assertHrtime(a); assertHrtime(b); /* * Accumulate the nanosecond component. */ a[1] += b[1]; if (a[1] >= 1e9) { /* * The nanosecond component overflowed, so carry to the seconds * field. */ a[0]++; a[1] -= 1e9; } /* * Accumulate the seconds component. */ a[0] += b[0]; return (a); } /* * Add two hrtime readings A and B, returning the result as a new hrtime array. * Does not modify either input argument. */ function hrtimeAdd(a, b) { assertHrtime(a); var rv = [ a[0], a[1] ]; return (hrtimeAccum(rv, b)); } /* * Check an object for unexpected properties. Accepts the object to check, and * an array of allowed property names (strings). Returns an array of key names * that were found on the object, but did not appear in the list of allowed * properties. If no properties were found, the returned array will be of * zero length. */ function extraProperties(obj, allowed) { mod_assert.ok(typeof (obj) === 'object' && obj !== null, 'obj argument must be a non-null object'); mod_assert.ok(Array.isArray(allowed), 'allowed argument must be an array of strings'); for (var i = 0; i < allowed.length; i++) { mod_assert.ok(typeof (allowed[i]) === 'string', 'allowed argument must be an array of strings'); } return (Object.keys(obj).filter(function (key) { return (allowed.indexOf(key) === -1); })); } /* * Given three sets of properties "provided" (may be undefined), "overrides" * (required), and "defaults" (may be undefined), construct an object containing * the union of these sets with "overrides" overriding "provided", and * "provided" overriding "defaults". None of the input objects are modified. */ function mergeObjects(provided, overrides, defaults) { var rv, k; rv = {}; if (defaults) { for (k in defaults) rv[k] = defaults[k]; } if (provided) { for (k in provided) rv[k] = provided[k]; } if (overrides) { for (k in overrides) rv[k] = overrides[k]; } return (rv); } },{"assert":16,"extsprintf":189,"json-schema":234,"util":163,"verror":303}],238:[function(require,module,exports){ 'use strict'; module.exports = leftPad; var cache = [ '', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ' ]; function leftPad (str, len, ch) { // convert `str` to `string` str = str + ''; // `len` is the `pad`'s length now len = len - str.length; // doesn't need to pad if (len <= 0) return str; // `ch` defaults to `' '` if (!ch && ch !== 0) ch = ' '; // convert `ch` to `string` ch = ch + ''; // cache common use cases if (ch === ' ' && len < 10) return cache[len] + str; // `pad` starts with an empty string var pad = ''; // loop while (true) { // add `ch` to `pad` if `len` is odd if (len & 1) pad += ch; // devide `len` by 2, ditch the fraction len >>= 1; // "double" the `ch` so this operation count grows logarithmically on `len` // each time `ch` is "doubled", the `len` would need to be "doubled" too // similar to finding a value in binary search tree, hence O(log(n)) if (len) ch += ch; // `len` is 0, exit the loop else break; } // pad `str`! return pad + str; } },{}],239:[function(require,module,exports){ module.exports={ "application/1d-interleaved-parityfec": { "source": "iana" }, "application/3gpdash-qoe-report+xml": { "source": "iana" }, "application/3gpp-ims+xml": { "source": "iana" }, "application/a2l": { "source": "iana" }, "application/activemessage": { "source": "iana" }, "application/alto-costmap+json": { "source": "iana", "compressible": true }, "application/alto-costmapfilter+json": { "source": "iana", "compressible": true }, "application/alto-directory+json": { "source": "iana", "compressible": true }, "application/alto-endpointcost+json": { "source": "iana", "compressible": true }, "application/alto-endpointcostparams+json": { "source": "iana", "compressible": true }, "application/alto-endpointprop+json": { "source": "iana", "compressible": true }, "application/alto-endpointpropparams+json": { "source": "iana", "compressible": true }, "application/alto-error+json": { "source": "iana", "compressible": true }, "application/alto-networkmap+json": { "source": "iana", "compressible": true }, "application/alto-networkmapfilter+json": { "source": "iana", "compressible": true }, "application/aml": { "source": "iana" }, "application/andrew-inset": { "source": "iana", "extensions": ["ez"] }, "application/applefile": { "source": "iana" }, "application/applixware": { "source": "apache", "extensions": ["aw"] }, "application/atf": { "source": "iana" }, "application/atfx": { "source": "iana" }, "application/atom+xml": { "source": "iana", "compressible": true, "extensions": ["atom"] }, "application/atomcat+xml": { "source": "iana", "extensions": ["atomcat"] }, "application/atomdeleted+xml": { "source": "iana" }, "application/atomicmail": { "source": "iana" }, "application/atomsvc+xml": { "source": "iana", "extensions": ["atomsvc"] }, "application/atxml": { "source": "iana" }, "application/auth-policy+xml": { "source": "iana" }, "application/bacnet-xdd+zip": { "source": "iana" }, "application/batch-smtp": { "source": "iana" }, "application/bdoc": { "compressible": false, "extensions": ["bdoc"] }, "application/beep+xml": { "source": "iana" }, "application/calendar+json": { "source": "iana", "compressible": true }, "application/calendar+xml": { "source": "iana" }, "application/call-completion": { "source": "iana" }, "application/cals-1840": { "source": "iana" }, "application/cbor": { "source": "iana" }, "application/ccmp+xml": { "source": "iana" }, "application/ccxml+xml": { "source": "iana", "extensions": ["ccxml"] }, "application/cdfx+xml": { "source": "iana" }, "application/cdmi-capability": { "source": "iana", "extensions": ["cdmia"] }, "application/cdmi-container": { "source": "iana", "extensions": ["cdmic"] }, "application/cdmi-domain": { "source": "iana", "extensions": ["cdmid"] }, "application/cdmi-object": { "source": "iana", "extensions": ["cdmio"] }, "application/cdmi-queue": { "source": "iana", "extensions": ["cdmiq"] }, "application/cdni": { "source": "iana" }, "application/cea": { "source": "iana" }, "application/cea-2018+xml": { "source": "iana" }, "application/cellml+xml": { "source": "iana" }, "application/cfw": { "source": "iana" }, "application/cms": { "source": "iana" }, "application/cnrp+xml": { "source": "iana" }, "application/coap-group+json": { "source": "iana", "compressible": true }, "application/commonground": { "source": "iana" }, "application/conference-info+xml": { "source": "iana" }, "application/cpl+xml": { "source": "iana" }, "application/csrattrs": { "source": "iana" }, "application/csta+xml": { "source": "iana" }, "application/cstadata+xml": { "source": "iana" }, "application/csvm+json": { "source": "iana", "compressible": true }, "application/cu-seeme": { "source": "apache", "extensions": ["cu"] }, "application/cybercash": { "source": "iana" }, "application/dart": { "compressible": true }, "application/dash+xml": { "source": "iana", "extensions": ["mpd"] }, "application/dashdelta": { "source": "iana" }, "application/davmount+xml": { "source": "iana", "extensions": ["davmount"] }, "application/dca-rft": { "source": "iana" }, "application/dcd": { "source": "iana" }, "application/dec-dx": { "source": "iana" }, "application/dialog-info+xml": { "source": "iana" }, "application/dicom": { "source": "iana" }, "application/dii": { "source": "iana" }, "application/dit": { "source": "iana" }, "application/dns": { "source": "iana" }, "application/docbook+xml": { "source": "apache", "extensions": ["dbk"] }, "application/dskpp+xml": { "source": "iana" }, "application/dssc+der": { "source": "iana", "extensions": ["dssc"] }, "application/dssc+xml": { "source": "iana", "extensions": ["xdssc"] }, "application/dvcs": { "source": "iana" }, "application/ecmascript": { "source": "iana", "compressible": true, "extensions": ["ecma"] }, "application/edi-consent": { "source": "iana" }, "application/edi-x12": { "source": "iana", "compressible": false }, "application/edifact": { "source": "iana", "compressible": false }, "application/efi": { "source": "iana" }, "application/emergencycalldata.comment+xml": { "source": "iana" }, "application/emergencycalldata.deviceinfo+xml": { "source": "iana" }, "application/emergencycalldata.providerinfo+xml": { "source": "iana" }, "application/emergencycalldata.serviceinfo+xml": { "source": "iana" }, "application/emergencycalldata.subscriberinfo+xml": { "source": "iana" }, "application/emma+xml": { "source": "iana", "extensions": ["emma"] }, "application/emotionml+xml": { "source": "iana" }, "application/encaprtp": { "source": "iana" }, "application/epp+xml": { "source": "iana" }, "application/epub+zip": { "source": "iana", "extensions": ["epub"] }, "application/eshop": { "source": "iana" }, "application/exi": { "source": "iana", "extensions": ["exi"] }, "application/fastinfoset": { "source": "iana" }, "application/fastsoap": { "source": "iana" }, "application/fdt+xml": { "source": "iana" }, "application/fits": { "source": "iana" }, "application/font-sfnt": { "source": "iana" }, "application/font-tdpfr": { "source": "iana", "extensions": ["pfr"] }, "application/font-woff": { "source": "iana", "compressible": false, "extensions": ["woff"] }, "application/font-woff2": { "compressible": false, "extensions": ["woff2"] }, "application/framework-attributes+xml": { "source": "iana" }, "application/gml+xml": { "source": "apache", "extensions": ["gml"] }, "application/gpx+xml": { "source": "apache", "extensions": ["gpx"] }, "application/gxf": { "source": "apache", "extensions": ["gxf"] }, "application/gzip": { "source": "iana", "compressible": false }, "application/h224": { "source": "iana" }, "application/held+xml": { "source": "iana" }, "application/http": { "source": "iana" }, "application/hyperstudio": { "source": "iana", "extensions": ["stk"] }, "application/ibe-key-request+xml": { "source": "iana" }, "application/ibe-pkg-reply+xml": { "source": "iana" }, "application/ibe-pp-data": { "source": "iana" }, "application/iges": { "source": "iana" }, "application/im-iscomposing+xml": { "source": "iana" }, "application/index": { "source": "iana" }, "application/index.cmd": { "source": "iana" }, "application/index.obj": { "source": "iana" }, "application/index.response": { "source": "iana" }, "application/index.vnd": { "source": "iana" }, "application/inkml+xml": { "source": "iana", "extensions": ["ink","inkml"] }, "application/iotp": { "source": "iana" }, "application/ipfix": { "source": "iana", "extensions": ["ipfix"] }, "application/ipp": { "source": "iana" }, "application/isup": { "source": "iana" }, "application/its+xml": { "source": "iana" }, "application/java-archive": { "source": "apache", "compressible": false, "extensions": ["jar","war","ear"] }, "application/java-serialized-object": { "source": "apache", "compressible": false, "extensions": ["ser"] }, "application/java-vm": { "source": "apache", "compressible": false, "extensions": ["class"] }, "application/javascript": { "source": "iana", "charset": "UTF-8", "compressible": true, "extensions": ["js"] }, "application/jose": { "source": "iana" }, "application/jose+json": { "source": "iana", "compressible": true }, "application/jrd+json": { "source": "iana", "compressible": true }, "application/json": { "source": "iana", "charset": "UTF-8", "compressible": true, "extensions": ["json","map"] }, "application/json-patch+json": { "source": "iana", "compressible": true }, "application/json-seq": { "source": "iana" }, "application/json5": { "extensions": ["json5"] }, "application/jsonml+json": { "source": "apache", "compressible": true, "extensions": ["jsonml"] }, "application/jwk+json": { "source": "iana", "compressible": true }, "application/jwk-set+json": { "source": "iana", "compressible": true }, "application/jwt": { "source": "iana" }, "application/kpml-request+xml": { "source": "iana" }, "application/kpml-response+xml": { "source": "iana" }, "application/ld+json": { "source": "iana", "compressible": true, "extensions": ["jsonld"] }, "application/link-format": { "source": "iana" }, "application/load-control+xml": { "source": "iana" }, "application/lost+xml": { "source": "iana", "extensions": ["lostxml"] }, "application/lostsync+xml": { "source": "iana" }, "application/lxf": { "source": "iana" }, "application/mac-binhex40": { "source": "iana", "extensions": ["hqx"] }, "application/mac-compactpro": { "source": "apache", "extensions": ["cpt"] }, "application/macwriteii": { "source": "iana" }, "application/mads+xml": { "source": "iana", "extensions": ["mads"] }, "application/manifest+json": { "charset": "UTF-8", "compressible": true, "extensions": ["webmanifest"] }, "application/marc": { "source": "iana", "extensions": ["mrc"] }, "application/marcxml+xml": { "source": "iana", "extensions": ["mrcx"] }, "application/mathematica": { "source": "iana", "extensions": ["ma","nb","mb"] }, "application/mathml+xml": { "source": "iana", "extensions": ["mathml"] }, "application/mathml-content+xml": { "source": "iana" }, "application/mathml-presentation+xml": { "source": "iana" }, "application/mbms-associated-procedure-description+xml": { "source": "iana" }, "application/mbms-deregister+xml": { "source": "iana" }, "application/mbms-envelope+xml": { "source": "iana" }, "application/mbms-msk+xml": { "source": "iana" }, "application/mbms-msk-response+xml": { "source": "iana" }, "application/mbms-protection-description+xml": { "source": "iana" }, "application/mbms-reception-report+xml": { "source": "iana" }, "application/mbms-register+xml": { "source": "iana" }, "application/mbms-register-response+xml": { "source": "iana" }, "application/mbms-schedule+xml": { "source": "iana" }, "application/mbms-user-service-description+xml": { "source": "iana" }, "application/mbox": { "source": "iana", "extensions": ["mbox"] }, "application/media-policy-dataset+xml": { "source": "iana" }, "application/media_control+xml": { "source": "iana" }, "application/mediaservercontrol+xml": { "source": "iana", "extensions": ["mscml"] }, "application/merge-patch+json": { "source": "iana", "compressible": true }, "application/metalink+xml": { "source": "apache", "extensions": ["metalink"] }, "application/metalink4+xml": { "source": "iana", "extensions": ["meta4"] }, "application/mets+xml": { "source": "iana", "extensions": ["mets"] }, "application/mf4": { "source": "iana" }, "application/mikey": { "source": "iana" }, "application/mods+xml": { "source": "iana", "extensions": ["mods"] }, "application/moss-keys": { "source": "iana" }, "application/moss-signature": { "source": "iana" }, "application/mosskey-data": { "source": "iana" }, "application/mosskey-request": { "source": "iana" }, "application/mp21": { "source": "iana", "extensions": ["m21","mp21"] }, "application/mp4": { "source": "iana", "extensions": ["mp4s","m4p"] }, "application/mpeg4-generic": { "source": "iana" }, "application/mpeg4-iod": { "source": "iana" }, "application/mpeg4-iod-xmt": { "source": "iana" }, "application/mrb-consumer+xml": { "source": "iana" }, "application/mrb-publish+xml": { "source": "iana" }, "application/msc-ivr+xml": { "source": "iana" }, "application/msc-mixer+xml": { "source": "iana" }, "application/msword": { "source": "iana", "compressible": false, "extensions": ["doc","dot"] }, "application/mxf": { "source": "iana", "extensions": ["mxf"] }, "application/nasdata": { "source": "iana" }, "application/news-checkgroups": { "source": "iana" }, "application/news-groupinfo": { "source": "iana" }, "application/news-transmission": { "source": "iana" }, 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"video/rtp-enc-aescm128": { "source": "apache" }, "video/rtploopback": { "source": "apache" }, "video/rtx": { "source": "apache" }, "video/smpte292m": { "source": "apache" }, "video/ulpfec": { "source": "apache" }, "video/vc1": { "source": "apache" }, "video/vnd.cctv": { "source": "apache" }, "video/vnd.dece.hd": { "source": "apache", "extensions": ["uvh","uvvh"] }, "video/vnd.dece.mobile": { "source": "apache", "extensions": ["uvm","uvvm"] }, "video/vnd.dece.mp4": { "source": "apache" }, "video/vnd.dece.pd": { "source": "apache", "extensions": ["uvp","uvvp"] }, "video/vnd.dece.sd": { "source": "apache", "extensions": ["uvs","uvvs"] }, "video/vnd.dece.video": { "source": "apache", "extensions": ["uvv","uvvv"] }, "video/vnd.directv.mpeg": { "source": "apache" }, "video/vnd.directv.mpeg-tts": { "source": "apache" }, "video/vnd.dlna.mpeg-tts": { "source": "apache" }, "video/vnd.dvb.file": { "source": "apache", "extensions": ["dvb"] }, "video/vnd.fvt": { "source": "apache", "extensions": ["fvt"] }, "video/vnd.hns.video": { "source": "apache" }, "video/vnd.iptvforum.1dparityfec-1010": { "source": "apache" }, "video/vnd.iptvforum.1dparityfec-2005": { "source": "apache" }, "video/vnd.iptvforum.2dparityfec-1010": { "source": "apache" }, "video/vnd.iptvforum.2dparityfec-2005": { "source": "apache" }, "video/vnd.iptvforum.ttsavc": { "source": "apache" }, "video/vnd.iptvforum.ttsmpeg2": { "source": "apache" }, "video/vnd.motorola.video": { "source": "apache" }, "video/vnd.motorola.videop": { "source": "apache" }, "video/vnd.mpegurl": { "source": "apache", "extensions": ["mxu","m4u"] }, "video/vnd.ms-playready.media.pyv": { "source": "apache", "extensions": ["pyv"] }, "video/vnd.nokia.interleaved-multimedia": { "source": "apache" }, "video/vnd.nokia.videovoip": { "source": "apache" }, "video/vnd.objectvideo": { "source": "apache" }, "video/vnd.radgamettools.bink": { "source": "apache" }, "video/vnd.radgamettools.smacker": { "source": "apache" }, "video/vnd.sealed.mpeg1": { "source": "apache" }, "video/vnd.sealed.mpeg4": { "source": "apache" }, "video/vnd.sealed.swf": { "source": "apache" }, "video/vnd.sealedmedia.softseal.mov": { "source": "apache" }, "video/vnd.uvvu.mp4": { "source": "apache", "extensions": ["uvu","uvvu"] }, "video/vnd.vivo": { "source": "apache", "extensions": ["viv"] }, "video/vp8": { "source": "apache" }, "video/webm": { "source": "apache", "compressible": false, "extensions": ["webm"] }, "video/x-f4v": { "source": "apache", "extensions": ["f4v"] }, "video/x-fli": { "source": "apache", "extensions": ["fli"] }, "video/x-flv": { "source": "apache", "compressible": false, "extensions": ["flv"] }, "video/x-m4v": { "source": "apache", "extensions": ["m4v"] }, "video/x-matroska": { "source": "apache", "compressible": false, "extensions": ["mkv","mk3d","mks"] }, "video/x-mng": { "source": "apache", "extensions": ["mng"] }, "video/x-ms-asf": { "source": "apache", "extensions": ["asf","asx"] }, "video/x-ms-vob": { "source": "apache", "extensions": ["vob"] }, "video/x-ms-wm": { "source": "apache", "extensions": ["wm"] }, "video/x-ms-wmv": { "source": "apache", "compressible": false, "extensions": ["wmv"] }, "video/x-ms-wmx": { "source": "apache", "extensions": ["wmx"] }, "video/x-ms-wvx": { "source": "apache", "extensions": ["wvx"] }, "video/x-msvideo": { "source": "apache", "extensions": ["avi"] }, "video/x-sgi-movie": { "source": "apache", "extensions": ["movie"] }, "video/x-smv": { "source": "apache", "extensions": ["smv"] }, "x-conference/x-cooltalk": { "source": "apache", "extensions": ["ice"] }, "x-shader/x-fragment": { "compressible": true }, "x-shader/x-vertex": { "compressible": true } } },{}],240:[function(require,module,exports){ /*! * mime-db * Copyright(c) 2014 Jonathan Ong * MIT Licensed */ /** * Module exports. */ module.exports = require('./db.json') },{"./db.json":239}],241:[function(require,module,exports){ /*! * mime-types * Copyright(c) 2014 Jonathan Ong * Copyright(c) 2015 Douglas Christopher Wilson * MIT Licensed */ 'use strict' /** * Module dependencies. * @private */ var db = require('mime-db') var extname = require('path').extname /** * Module variables. * @private */ var extractTypeRegExp = /^\s*([^;\s]*)(?:;|\s|$)/ var textTypeRegExp = /^text\//i /** * Module exports. * @public */ exports.charset = charset exports.charsets = { lookup: charset } exports.contentType = contentType exports.extension = extension exports.extensions = Object.create(null) exports.lookup = lookup exports.types = Object.create(null) // Populate the extensions/types maps populateMaps(exports.extensions, exports.types) /** * Get the default charset for a MIME type. * * @param {string} type * @return {boolean|string} */ function charset(type) { if (!type || typeof type !== 'string') { return false } // TODO: use media-typer var match = extractTypeRegExp.exec(type) var mime = match && db[match[1].toLowerCase()] if (mime && mime.charset) { return mime.charset } // default text/* to utf-8 if (match && textTypeRegExp.test(match[1])) { return 'UTF-8' } return false } /** * Create a full Content-Type header given a MIME type or extension. * * @param {string} str * @return {boolean|string} */ function contentType(str) { // TODO: should this even be in this module? if (!str || typeof str !== 'string') { return false } var mime = str.indexOf('/') === -1 ? exports.lookup(str) : str if (!mime) { return false } // TODO: use content-type or other module if (mime.indexOf('charset') === -1) { var charset = exports.charset(mime) if (charset) mime += '; charset=' + charset.toLowerCase() } return mime } /** * Get the default extension for a MIME type. * * @param {string} type * @return {boolean|string} */ function extension(type) { if (!type || typeof type !== 'string') { return false } // TODO: use media-typer var match = extractTypeRegExp.exec(type) // get extensions var exts = match && exports.extensions[match[1].toLowerCase()] if (!exts || !exts.length) { return false } return exts[0] } /** * Lookup the MIME type for a file path/extension. * * @param {string} path * @return {boolean|string} */ function lookup(path) { if (!path || typeof path !== 'string') { return false } // get the extension ("ext" or ".ext" or full path) var extension = extname('x.' + path) .toLowerCase() .substr(1) if (!extension) { return false } return exports.types[extension] || false } /** * Populate the extensions and types maps. * @private */ function populateMaps(extensions, types) { // source preference (least -> most) var preference = ['nginx', 'apache', undefined, 'iana'] Object.keys(db).forEach(function forEachMimeType(type) { var mime = db[type] var exts = mime.extensions if (!exts || !exts.length) { return } // mime -> extensions extensions[type] = exts // extension -> mime for (var i = 0; i < exts.length; i++) { var extension = exts[i] if (types[extension]) { var from = preference.indexOf(db[types[extension]].source) var to = preference.indexOf(mime.source) if (types[extension] !== 'application/octet-stream' && from > to || (from === to && types[extension].substr(0, 12) === 'application/')) { // skip the remapping continue } } // set the extension -> mime types[extension] = type } }) } },{"mime-db":240,"path":117}],242:[function(require,module,exports){ (function (Buffer){ // uuid.js // // Copyright (c) 2010-2012 Robert Kieffer // MIT License - http://opensource.org/licenses/mit-license.php /*global window, require, define */ (function(_window) { 'use strict'; // Unique ID creation requires a high quality random # generator. We feature // detect to determine the best RNG source, normalizing to a function that // returns 128-bits of randomness, since that's what's usually required var _rng, _mathRNG, _nodeRNG, _whatwgRNG, _previousRoot; function setupBrowser() { // Allow for MSIE11 msCrypto var _crypto = _window.crypto || _window.msCrypto; if (!_rng && _crypto && _crypto.getRandomValues) { // WHATWG crypto-based RNG - http://wiki.whatwg.org/wiki/Crypto // // Moderately fast, high quality try { var _rnds8 = new Uint8Array(16); _whatwgRNG = _rng = function whatwgRNG() { _crypto.getRandomValues(_rnds8); return _rnds8; }; _rng(); } catch(e) {} } if (!_rng) { // Math.random()-based (RNG) // // If all else fails, use Math.random(). It's fast, but is of unspecified // quality. var _rnds = new Array(16); _mathRNG = _rng = function() { for (var i = 0, r; i < 16; i++) { if ((i & 0x03) === 0) { r = Math.random() * 0x100000000; } _rnds[i] = r >>> ((i & 0x03) << 3) & 0xff; } return _rnds; }; if ('undefined' !== typeof console && console.warn) { console.warn("[SECURITY] node-uuid: crypto not usable, falling back to insecure Math.random()"); } } } function setupNode() { // Node.js crypto-based RNG - http://nodejs.org/docs/v0.6.2/api/crypto.html // // Moderately fast, high quality if ('function' === typeof require) { try { var _rb = require('crypto').randomBytes; _nodeRNG = _rng = _rb && function() {return _rb(16);}; _rng(); } catch(e) {} } } if (_window) { setupBrowser(); } else { setupNode(); } // Buffer class to use var BufferClass = ('function' === typeof Buffer) ? Buffer : Array; // Maps for number <-> hex string conversion var _byteToHex = []; var _hexToByte = {}; for (var i = 0; i < 256; i++) { _byteToHex[i] = (i + 0x100).toString(16).substr(1); _hexToByte[_byteToHex[i]] = i; } // **`parse()` - Parse a UUID into it's component bytes** function parse(s, buf, offset) { var i = (buf && offset) || 0, ii = 0; buf = buf || []; s.toLowerCase().replace(/[0-9a-f]{2}/g, function(oct) { if (ii < 16) { // Don't overflow! buf[i + ii++] = _hexToByte[oct]; } }); // Zero out remaining bytes if string was short while (ii < 16) { buf[i + ii++] = 0; } return buf; } // **`unparse()` - Convert UUID byte array (ala parse()) into a string** function unparse(buf, offset) { var i = offset || 0, bth = _byteToHex; return bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]] + '-' + bth[buf[i++]] + bth[buf[i++]] + '-' + bth[buf[i++]] + bth[buf[i++]] + '-' + bth[buf[i++]] + bth[buf[i++]] + '-' + bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]] + bth[buf[i++]]; } // **`v1()` - Generate time-based UUID** // // Inspired by https://github.com/LiosK/UUID.js // and http://docs.python.org/library/uuid.html // random #'s we need to init node and clockseq var _seedBytes = _rng(); // Per 4.5, create and 48-bit node id, (47 random bits + multicast bit = 1) var _nodeId = [ _seedBytes[0] | 0x01, _seedBytes[1], _seedBytes[2], _seedBytes[3], _seedBytes[4], _seedBytes[5] ]; // Per 4.2.2, randomize (14 bit) clockseq var _clockseq = (_seedBytes[6] << 8 | _seedBytes[7]) & 0x3fff; // Previous uuid creation time var _lastMSecs = 0, _lastNSecs = 0; // See https://github.com/broofa/node-uuid for API details function v1(options, buf, offset) { var i = buf && offset || 0; var b = buf || []; options = options || {}; var clockseq = (options.clockseq != null) ? options.clockseq : _clockseq; // UUID timestamps are 100 nano-second units since the Gregorian epoch, // (1582-10-15 00:00). JSNumbers aren't precise enough for this, so // time is handled internally as 'msecs' (integer milliseconds) and 'nsecs' // (100-nanoseconds offset from msecs) since unix epoch, 1970-01-01 00:00. var msecs = (options.msecs != null) ? options.msecs : new Date().getTime(); // Per 4.2.1.2, use count of uuid's generated during the current clock // cycle to simulate higher resolution clock var nsecs = (options.nsecs != null) ? options.nsecs : _lastNSecs + 1; // Time since last uuid creation (in msecs) var dt = (msecs - _lastMSecs) + (nsecs - _lastNSecs)/10000; // Per 4.2.1.2, Bump clockseq on clock regression if (dt < 0 && options.clockseq == null) { clockseq = clockseq + 1 & 0x3fff; } // Reset nsecs if clock regresses (new clockseq) or we've moved onto a new // time interval if ((dt < 0 || msecs > _lastMSecs) && options.nsecs == null) { nsecs = 0; } // Per 4.2.1.2 Throw error if too many uuids are requested if (nsecs >= 10000) { throw new Error('uuid.v1(): Can\'t create more than 10M uuids/sec'); } _lastMSecs = msecs; _lastNSecs = nsecs; _clockseq = clockseq; // Per 4.1.4 - Convert from unix epoch to Gregorian epoch msecs += 12219292800000; // `time_low` var tl = ((msecs & 0xfffffff) * 10000 + nsecs) % 0x100000000; b[i++] = tl >>> 24 & 0xff; b[i++] = tl >>> 16 & 0xff; b[i++] = tl >>> 8 & 0xff; b[i++] = tl & 0xff; // `time_mid` var tmh = (msecs / 0x100000000 * 10000) & 0xfffffff; b[i++] = tmh >>> 8 & 0xff; b[i++] = tmh & 0xff; // `time_high_and_version` b[i++] = tmh >>> 24 & 0xf | 0x10; // include version b[i++] = tmh >>> 16 & 0xff; // `clock_seq_hi_and_reserved` (Per 4.2.2 - include variant) b[i++] = clockseq >>> 8 | 0x80; // `clock_seq_low` b[i++] = clockseq & 0xff; // `node` var node = options.node || _nodeId; for (var n = 0; n < 6; n++) { b[i + n] = node[n]; } return buf ? buf : unparse(b); } // **`v4()` - Generate random UUID** // See https://github.com/broofa/node-uuid for API details function v4(options, buf, offset) { // Deprecated - 'format' argument, as supported in v1.2 var i = buf && offset || 0; if (typeof(options) === 'string') { buf = (options === 'binary') ? new BufferClass(16) : null; options = null; } options = options || {}; var rnds = options.random || (options.rng || _rng)(); // Per 4.4, set bits for version and `clock_seq_hi_and_reserved` rnds[6] = (rnds[6] & 0x0f) | 0x40; rnds[8] = (rnds[8] & 0x3f) | 0x80; // Copy bytes to buffer, if provided if (buf) { for (var ii = 0; ii < 16; ii++) { buf[i + ii] = rnds[ii]; } } return buf || unparse(rnds); } // Export public API var uuid = v4; uuid.v1 = v1; uuid.v4 = v4; uuid.parse = parse; uuid.unparse = unparse; uuid.BufferClass = BufferClass; uuid._rng = _rng; uuid._mathRNG = _mathRNG; uuid._nodeRNG = _nodeRNG; uuid._whatwgRNG = _whatwgRNG; if (('undefined' !== typeof module) && module.exports) { // Publish as node.js module module.exports = uuid; } else if (typeof define === 'function' && define.amd) { // Publish as AMD module define(function() {return uuid;}); } else { // Publish as global (in browsers) _previousRoot = _window.uuid; // **`noConflict()` - (browser only) to reset global 'uuid' var** uuid.noConflict = function() { _window.uuid = _previousRoot; return uuid; }; _window.uuid = uuid; } })('undefined' !== typeof window ? window : null); }).call(this,require("buffer").Buffer) },{"buffer":49,"crypto":58}],243:[function(require,module,exports){ var crypto = require('crypto') , qs = require('querystring') ; function sha1 (key, body) { return crypto.createHmac('sha1', key).update(body).digest('base64') } function rsa (key, body) { return crypto.createSign("RSA-SHA1").update(body).sign(key, 'base64'); } function rfc3986 (str) { return encodeURIComponent(str) .replace(/!/g,'%21') .replace(/\*/g,'%2A') .replace(/\(/g,'%28') .replace(/\)/g,'%29') .replace(/'/g,'%27') ; } // Maps object to bi-dimensional array // Converts { foo: 'A', bar: [ 'b', 'B' ]} to // [ ['foo', 'A'], ['bar', 'b'], ['bar', 'B'] ] function map (obj) { var key, val, arr = [] for (key in obj) { val = obj[key] if (Array.isArray(val)) for (var i = 0; i < val.length; i++) arr.push([key, val[i]]) else if (typeof val === "object") for (var prop in val) arr.push([key + '[' + prop + ']', val[prop]]); else arr.push([key, val]) } return arr } // Compare function for sort function compare (a, b) { return a > b ? 1 : a < b ? -1 : 0 } function generateBase (httpMethod, base_uri, params) { // adapted from https://dev.twitter.com/docs/auth/oauth and // https://dev.twitter.com/docs/auth/creating-signature // Parameter normalization // http://tools.ietf.org/html/rfc5849#section-3.4.1.3.2 var normalized = map(params) // 1. First, the name and value of each parameter are encoded .map(function (p) { return [ rfc3986(p[0]), rfc3986(p[1] || '') ] }) // 2. The parameters are sorted by name, using ascending byte value // ordering. If two or more parameters share the same name, they // are sorted by their value. .sort(function (a, b) { return compare(a[0], b[0]) || compare(a[1], b[1]) }) // 3. The name of each parameter is concatenated to its corresponding // value using an "=" character (ASCII code 61) as a separator, even // if the value is empty. .map(function (p) { return p.join('=') }) // 4. The sorted name/value pairs are concatenated together into a // single string by using an "&" character (ASCII code 38) as // separator. .join('&') var base = [ rfc3986(httpMethod ? httpMethod.toUpperCase() : 'GET'), rfc3986(base_uri), rfc3986(normalized) ].join('&') return base } function hmacsign (httpMethod, base_uri, params, consumer_secret, token_secret) { var base = generateBase(httpMethod, base_uri, params) var key = [ consumer_secret || '', token_secret || '' ].map(rfc3986).join('&') return sha1(key, base) } function rsasign (httpMethod, base_uri, params, private_key, token_secret) { var base = generateBase(httpMethod, base_uri, params) var key = private_key || '' return rsa(key, base) } function plaintext (consumer_secret, token_secret) { var key = [ consumer_secret || '', token_secret || '' ].map(rfc3986).join('&') return key } function sign (signMethod, httpMethod, base_uri, params, consumer_secret, token_secret) { var method var skipArgs = 1 switch (signMethod) { case 'RSA-SHA1': method = rsasign break case 'HMAC-SHA1': method = hmacsign break case 'PLAINTEXT': method = plaintext skipArgs = 4 break default: throw new Error("Signature method not supported: " + signMethod) } return method.apply(null, [].slice.call(arguments, skipArgs)) } exports.hmacsign = hmacsign exports.rsasign = rsasign exports.plaintext = plaintext exports.sign = sign exports.rfc3986 = rfc3986 exports.generateBase = generateBase },{"crypto":58,"querystring":130}],244:[function(require,module,exports){ 'use strict'; module.exports = typeof Promise === 'function' ? Promise : require('pinkie'); },{"pinkie":245}],245:[function(require,module,exports){ (function (global){ 'use strict'; var PENDING = 'pending'; var SETTLED = 'settled'; var FULFILLED = 'fulfilled'; var REJECTED = 'rejected'; var NOOP = function () {}; var isNode = typeof global !== 'undefined' && typeof global.process !== 'undefined' && typeof global.process.emit === 'function'; var asyncSetTimer = typeof setImmediate === 'undefined' ? setTimeout : setImmediate; var asyncQueue = []; var asyncTimer; function asyncFlush() { // run promise callbacks for (var i = 0; i < asyncQueue.length; i++) { asyncQueue[i][0](asyncQueue[i][1]); } // reset async asyncQueue asyncQueue = []; asyncTimer = false; } function asyncCall(callback, arg) { asyncQueue.push([callback, arg]); if (!asyncTimer) { asyncTimer = true; asyncSetTimer(asyncFlush, 0); } } function invokeResolver(resolver, promise) { function resolvePromise(value) { resolve(promise, value); } function rejectPromise(reason) { reject(promise, reason); } try { resolver(resolvePromise, rejectPromise); } catch (e) { rejectPromise(e); } } function invokeCallback(subscriber) { var owner = subscriber.owner; var settled = owner._state; var value = owner._data; var callback = subscriber[settled]; var promise = subscriber.then; if (typeof callback === 'function') { settled = FULFILLED; try { value = callback(value); } catch (e) { reject(promise, e); } } if (!handleThenable(promise, value)) { if (settled === FULFILLED) { resolve(promise, value); } if (settled === REJECTED) { reject(promise, value); } } } function handleThenable(promise, value) { var resolved; try { if (promise === value) { throw new TypeError('A promises callback cannot return that same promise.'); } if (value && (typeof value === 'function' || typeof value === 'object')) { // then should be retrieved only once var then = value.then; if (typeof then === 'function') { then.call(value, function (val) { if (!resolved) { resolved = true; if (value === val) { fulfill(promise, val); } else { resolve(promise, val); } } }, function (reason) { if (!resolved) { resolved = true; reject(promise, reason); } }); return true; } } } catch (e) { if (!resolved) { reject(promise, e); } return true; } return false; } function resolve(promise, value) { if (promise === value || !handleThenable(promise, value)) { fulfill(promise, value); } } function fulfill(promise, value) { if (promise._state === PENDING) { promise._state = SETTLED; promise._data = value; asyncCall(publishFulfillment, promise); } } function reject(promise, reason) { if (promise._state === PENDING) { promise._state = SETTLED; promise._data = reason; asyncCall(publishRejection, promise); } } function publish(promise) { promise._then = promise._then.forEach(invokeCallback); } function publishFulfillment(promise) { promise._state = FULFILLED; publish(promise); } function publishRejection(promise) { promise._state = REJECTED; publish(promise); if (!promise._handled && isNode) { global.process.emit('unhandledRejection', promise._data, promise); } } function notifyRejectionHandled(promise) { global.process.emit('rejectionHandled', promise); } /** * @class */ function Promise(resolver) { if (typeof resolver !== 'function') { throw new TypeError('Promise resolver ' + resolver + ' is not a function'); } if (this instanceof Promise === false) { throw new TypeError('Failed to construct \'Promise\': Please use the \'new\' operator, this object constructor cannot be called as a function.'); } this._then = []; invokeResolver(resolver, this); } Promise.prototype = { constructor: Promise, _state: PENDING, _then: null, _data: undefined, _handled: false, then: function (onFulfillment, onRejection) { var subscriber = { owner: this, then: new this.constructor(NOOP), fulfilled: onFulfillment, rejected: onRejection }; if ((onRejection || onFulfillment) && !this._handled) { this._handled = true; if (this._state === REJECTED && isNode) { asyncCall(notifyRejectionHandled, this); } } if (this._state === FULFILLED || this._state === REJECTED) { // already resolved, call callback async asyncCall(invokeCallback, subscriber); } else { // subscribe this._then.push(subscriber); } return subscriber.then; }, catch: function (onRejection) { return this.then(null, onRejection); } }; Promise.all = function (promises) { if (!Array.isArray(promises)) { throw new TypeError('You must pass an array to Promise.all().'); } return new Promise(function (resolve, reject) { var results = []; var remaining = 0; function resolver(index) { remaining++; return function (value) { results[index] = value; if (!--remaining) { resolve(results); } }; } for (var i = 0, promise; i < promises.length; i++) { promise = promises[i]; if (promise && typeof promise.then === 'function') { promise.then(resolver(i), reject); } else { results[i] = promise; } } if (!remaining) { resolve(results); } }); }; Promise.race = function (promises) { if (!Array.isArray(promises)) { throw new TypeError('You must pass an array to Promise.race().'); } return new Promise(function (resolve, reject) { for (var i = 0, promise; i < promises.length; i++) { promise = promises[i]; if (promise && typeof promise.then === 'function') { promise.then(resolve, reject); } else { resolve(promise); } } }); }; Promise.resolve = function (value) { if (value && typeof value === 'object' && value.constructor === Promise) { return value; } return new Promise(function (resolve) { resolve(value); }); }; Promise.reject = function (reason) { return new Promise(function (resolve, reject) { reject(reason); }); }; module.exports = Promise; }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{}],246:[function(require,module,exports){ arguments[4][119][0].apply(exports,arguments) },{"_process":120,"dup":119}],247:[function(require,module,exports){ 'use strict'; var Stringify = require('./stringify'); var Parse = require('./parse'); module.exports = { stringify: Stringify, parse: Parse }; },{"./parse":248,"./stringify":249}],248:[function(require,module,exports){ 'use strict'; var Utils = require('./utils'); var defaults = { delimiter: '&', depth: 5, arrayLimit: 20, parameterLimit: 1000, strictNullHandling: false, plainObjects: false, allowPrototypes: false, allowDots: false, decoder: Utils.decode }; var parseValues = function parseValues(str, options) { var obj = {}; var parts = str.split(options.delimiter, options.parameterLimit === Infinity ? undefined : options.parameterLimit); for (var i = 0; i < parts.length; ++i) { var part = parts[i]; var pos = part.indexOf(']=') === -1 ? part.indexOf('=') : part.indexOf(']=') + 1; if (pos === -1) { obj[options.decoder(part)] = ''; if (options.strictNullHandling) { obj[options.decoder(part)] = null; } } else { var key = options.decoder(part.slice(0, pos)); var val = options.decoder(part.slice(pos + 1)); if (Object.prototype.hasOwnProperty.call(obj, key)) { obj[key] = [].concat(obj[key]).concat(val); } else { obj[key] = val; } } } return obj; }; var parseObject = function parseObject(chain, val, options) { if (!chain.length) { return val; } var root = chain.shift(); var obj; if (root === '[]') { obj = []; obj = obj.concat(parseObject(chain, val, options)); } else { obj = options.plainObjects ? Object.create(null) : {}; var cleanRoot = root[0] === '[' && root[root.length - 1] === ']' ? root.slice(1, root.length - 1) : root; var index = parseInt(cleanRoot, 10); if ( !isNaN(index) && root !== cleanRoot && String(index) === cleanRoot && index >= 0 && (options.parseArrays && index <= options.arrayLimit) ) { obj = []; obj[index] = parseObject(chain, val, options); } else { obj[cleanRoot] = parseObject(chain, val, options); } } return obj; }; var parseKeys = function parseKeys(givenKey, val, options) { if (!givenKey) { return; } // Transform dot notation to bracket notation var key = options.allowDots ? givenKey.replace(/\.([^\.\[]+)/g, '[$1]') : givenKey; // The regex chunks var parent = /^([^\[\]]*)/; var child = /(\[[^\[\]]*\])/g; // Get the parent var segment = parent.exec(key); // Stash the parent if it exists var keys = []; if (segment[1]) { // If we aren't using plain objects, optionally prefix keys // that would overwrite object prototype properties if (!options.plainObjects && Object.prototype.hasOwnProperty(segment[1])) { if (!options.allowPrototypes) { return; } } keys.push(segment[1]); } // Loop through children appending to the array until we hit depth var i = 0; while ((segment = child.exec(key)) !== null && i < options.depth) { i += 1; if (!options.plainObjects && Object.prototype.hasOwnProperty(segment[1].replace(/\[|\]/g, ''))) { if (!options.allowPrototypes) { continue; } } keys.push(segment[1]); } // If there's a remainder, just add whatever is left if (segment) { keys.push('[' + key.slice(segment.index) + ']'); } return parseObject(keys, val, options); }; module.exports = function (str, opts) { var options = opts || {}; if (options.decoder !== null && options.decoder !== undefined && typeof options.decoder !== 'function') { throw new TypeError('Decoder has to be a function.'); } options.delimiter = typeof options.delimiter === 'string' || Utils.isRegExp(options.delimiter) ? options.delimiter : defaults.delimiter; options.depth = typeof options.depth === 'number' ? options.depth : defaults.depth; options.arrayLimit = typeof options.arrayLimit === 'number' ? options.arrayLimit : defaults.arrayLimit; options.parseArrays = options.parseArrays !== false; options.decoder = typeof options.decoder === 'function' ? options.decoder : defaults.decoder; options.allowDots = typeof options.allowDots === 'boolean' ? options.allowDots : defaults.allowDots; options.plainObjects = typeof options.plainObjects === 'boolean' ? options.plainObjects : defaults.plainObjects; options.allowPrototypes = typeof options.allowPrototypes === 'boolean' ? options.allowPrototypes : defaults.allowPrototypes; options.parameterLimit = typeof options.parameterLimit === 'number' ? options.parameterLimit : defaults.parameterLimit; options.strictNullHandling = typeof options.strictNullHandling === 'boolean' ? options.strictNullHandling : defaults.strictNullHandling; if (str === '' || str === null || typeof str === 'undefined') { return options.plainObjects ? Object.create(null) : {}; } var tempObj = typeof str === 'string' ? parseValues(str, options) : str; var obj = options.plainObjects ? Object.create(null) : {}; // Iterate over the keys and setup the new object var keys = Object.keys(tempObj); for (var i = 0; i < keys.length; ++i) { var key = keys[i]; var newObj = parseKeys(key, tempObj[key], options); obj = Utils.merge(obj, newObj, options); } return Utils.compact(obj); }; },{"./utils":250}],249:[function(require,module,exports){ 'use strict'; var Utils = require('./utils'); var arrayPrefixGenerators = { brackets: function brackets(prefix) { return prefix + '[]'; }, indices: function indices(prefix, key) { return prefix + '[' + key + ']'; }, repeat: function repeat(prefix) { return prefix; } }; var defaults = { delimiter: '&', strictNullHandling: false, skipNulls: false, encode: true, encoder: Utils.encode }; var stringify = function stringify(object, prefix, generateArrayPrefix, strictNullHandling, skipNulls, encoder, filter, sort, allowDots) { var obj = object; if (typeof filter === 'function') { obj = filter(prefix, obj); } else if (obj instanceof Date) { obj = obj.toISOString(); } else if (obj === null) { if (strictNullHandling) { return encoder ? encoder(prefix) : prefix; } obj = ''; } if (typeof obj === 'string' || typeof obj === 'number' || typeof obj === 'boolean' || Utils.isBuffer(obj)) { if (encoder) { return [encoder(prefix) + '=' + encoder(obj)]; } return [prefix + '=' + String(obj)]; } var values = []; if (typeof obj === 'undefined') { return values; } var objKeys; if (Array.isArray(filter)) { objKeys = filter; } else { var keys = Object.keys(obj); objKeys = sort ? keys.sort(sort) : keys; } for (var i = 0; i < objKeys.length; ++i) { var key = objKeys[i]; if (skipNulls && obj[key] === null) { continue; } if (Array.isArray(obj)) { values = values.concat(stringify(obj[key], generateArrayPrefix(prefix, key), generateArrayPrefix, strictNullHandling, skipNulls, encoder, filter, sort, allowDots)); } else { values = values.concat(stringify(obj[key], prefix + (allowDots ? '.' + key : '[' + key + ']'), generateArrayPrefix, strictNullHandling, skipNulls, encoder, filter, sort, allowDots)); } } return values; }; module.exports = function (object, opts) { var obj = object; var options = opts || {}; var delimiter = typeof options.delimiter === 'undefined' ? defaults.delimiter : options.delimiter; var strictNullHandling = typeof options.strictNullHandling === 'boolean' ? options.strictNullHandling : defaults.strictNullHandling; var skipNulls = typeof options.skipNulls === 'boolean' ? options.skipNulls : defaults.skipNulls; var encode = typeof options.encode === 'boolean' ? options.encode : defaults.encode; var encoder = encode ? (typeof options.encoder === 'function' ? options.encoder : defaults.encoder) : null; var sort = typeof options.sort === 'function' ? options.sort : null; var allowDots = typeof options.allowDots === 'undefined' ? false : options.allowDots; var objKeys; var filter; if (options.encoder !== null && options.encoder !== undefined && typeof options.encoder !== 'function') { throw new TypeError('Encoder has to be a function.'); } if (typeof options.filter === 'function') { filter = options.filter; obj = filter('', obj); } else if (Array.isArray(options.filter)) { objKeys = filter = options.filter; } var keys = []; if (typeof obj !== 'object' || obj === null) { return ''; } var arrayFormat; if (options.arrayFormat in arrayPrefixGenerators) { arrayFormat = options.arrayFormat; } else if ('indices' in options) { arrayFormat = options.indices ? 'indices' : 'repeat'; } else { arrayFormat = 'indices'; } var generateArrayPrefix = arrayPrefixGenerators[arrayFormat]; if (!objKeys) { objKeys = Object.keys(obj); } if (sort) { objKeys.sort(sort); } for (var i = 0; i < objKeys.length; ++i) { var key = objKeys[i]; if (skipNulls && obj[key] === null) { continue; } keys = keys.concat(stringify(obj[key], key, generateArrayPrefix, strictNullHandling, skipNulls, encoder, filter, sort, allowDots)); } return keys.join(delimiter); }; },{"./utils":250}],250:[function(require,module,exports){ 'use strict'; var hexTable = (function () { var array = new Array(256); for (var i = 0; i < 256; ++i) { array[i] = '%' + ((i < 16 ? '0' : '') + i.toString(16)).toUpperCase(); } return array; }()); exports.arrayToObject = function (source, options) { var obj = options.plainObjects ? Object.create(null) : {}; for (var i = 0; i < source.length; ++i) { if (typeof source[i] !== 'undefined') { obj[i] = source[i]; } } return obj; }; exports.merge = function (target, source, options) { if (!source) { return target; } if (typeof source !== 'object') { if (Array.isArray(target)) { target.push(source); } else if (typeof target === 'object') { target[source] = true; } else { return [target, source]; } return target; } if (typeof target !== 'object') { return [target].concat(source); } var mergeTarget = target; if (Array.isArray(target) && !Array.isArray(source)) { mergeTarget = exports.arrayToObject(target, options); } return Object.keys(source).reduce(function (acc, key) { var value = source[key]; if (Object.prototype.hasOwnProperty.call(acc, key)) { acc[key] = exports.merge(acc[key], value, options); } else { acc[key] = value; } return acc; }, mergeTarget); }; exports.decode = function (str) { try { return decodeURIComponent(str.replace(/\+/g, ' ')); } catch (e) { return str; } }; exports.encode = function (str) { // This code was originally written by Brian White (mscdex) for the io.js core querystring library. // It has been adapted here for stricter adherence to RFC 3986 if (str.length === 0) { return str; } var string = typeof str === 'string' ? str : String(str); var out = ''; for (var i = 0; i < string.length; ++i) { var c = string.charCodeAt(i); if ( c === 0x2D || // - c === 0x2E || // . c === 0x5F || // _ c === 0x7E || // ~ (c >= 0x30 && c <= 0x39) || // 0-9 (c >= 0x41 && c <= 0x5A) || // a-z (c >= 0x61 && c <= 0x7A) // A-Z ) { out += string.charAt(i); continue; } if (c < 0x80) { out = out + hexTable[c]; continue; } if (c < 0x800) { out = out + (hexTable[0xC0 | (c >> 6)] + hexTable[0x80 | (c & 0x3F)]); continue; } if (c < 0xD800 || c >= 0xE000) { out = out + (hexTable[0xE0 | (c >> 12)] + hexTable[0x80 | ((c >> 6) & 0x3F)] + hexTable[0x80 | (c & 0x3F)]); continue; } i += 1; c = 0x10000 + (((c & 0x3FF) << 10) | (string.charCodeAt(i) & 0x3FF)); out += hexTable[0xF0 | (c >> 18)] + hexTable[0x80 | ((c >> 12) & 0x3F)] + hexTable[0x80 | ((c >> 6) & 0x3F)] + hexTable[0x80 | (c & 0x3F)]; } return out; }; exports.compact = function (obj, references) { if (typeof obj !== 'object' || obj === null) { return obj; } var refs = references || []; var lookup = refs.indexOf(obj); if (lookup !== -1) { return refs[lookup]; } refs.push(obj); if (Array.isArray(obj)) { var compacted = []; for (var i = 0; i < obj.length; ++i) { if (obj[i] && typeof obj[i] === 'object') { compacted.push(exports.compact(obj[i], refs)); } else if (typeof obj[i] !== 'undefined') { compacted.push(obj[i]); } } return compacted; } var keys = Object.keys(obj); for (var j = 0; j < keys.length; ++j) { var key = keys[j]; obj[key] = exports.compact(obj[key], refs); } return obj; }; exports.isRegExp = function (obj) { return Object.prototype.toString.call(obj) === '[object RegExp]'; }; exports.isBuffer = function (obj) { if (obj === null || typeof obj === 'undefined') { return false; } return !!(obj.constructor && obj.constructor.isBuffer && obj.constructor.isBuffer(obj)); }; },{}],251:[function(require,module,exports){ arguments[4][132][0].apply(exports,arguments) },{"./lib/_stream_duplex.js":252,"dup":132}],252:[function(require,module,exports){ arguments[4][133][0].apply(exports,arguments) },{"./_stream_readable":253,"./_stream_writable":254,"core-util-is":182,"dup":133,"inherits":220,"process-nextick-args":246}],253:[function(require,module,exports){ (function (process){ 'use strict'; module.exports = Readable; /**/ var processNextTick = require('process-nextick-args'); /**/ /**/ var isArray = require('isarray'); /**/ /**/ var Buffer = require('buffer').Buffer; /**/ Readable.ReadableState = ReadableState; var EE = require('events'); /**/ var EElistenerCount = function (emitter, type) { return emitter.listeners(type).length; }; /**/ /**/ var Stream; (function () { try { Stream = require('st' + 'ream'); } catch (_) {} finally { if (!Stream) Stream = require('events').EventEmitter; } })(); /**/ var Buffer = require('buffer').Buffer; /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ /**/ var debugUtil = require('util'); var debug = undefined; if (debugUtil && debugUtil.debuglog) { debug = debugUtil.debuglog('stream'); } else { debug = function () {}; } /**/ var StringDecoder; util.inherits(Readable, Stream); var Duplex; function ReadableState(options, stream) { Duplex = Duplex || require('./_stream_duplex'); options = options || {}; // object stream flag. Used to make read(n) ignore n and to // make all the buffer merging and length checks go away this.objectMode = !!options.objectMode; if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.readableObjectMode; // the point at which it stops calling _read() to fill the buffer // Note: 0 is a valid value, means "don't call _read preemptively ever" var hwm = options.highWaterMark; var defaultHwm = this.objectMode ? 16 : 16 * 1024; this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm; // cast to ints. this.highWaterMark = ~ ~this.highWaterMark; this.buffer = []; this.length = 0; this.pipes = null; this.pipesCount = 0; this.flowing = null; this.ended = false; this.endEmitted = false; this.reading = false; // a flag to be able to tell if the onwrite cb is called immediately, // or on a later tick. We set this to true at first, because any // actions that shouldn't happen until "later" should generally also // not happen before the first write call. this.sync = true; // whenever we return null, then we set a flag to say // that we're awaiting a 'readable' event emission. this.needReadable = false; this.emittedReadable = false; this.readableListening = false; this.resumeScheduled = false; // Crypto is kind of old and crusty. Historically, its default string // encoding is 'binary' so we have to make this configurable. // Everything else in the universe uses 'utf8', though. this.defaultEncoding = options.defaultEncoding || 'utf8'; // when piping, we only care about 'readable' events that happen // after read()ing all the bytes and not getting any pushback. this.ranOut = false; // the number of writers that are awaiting a drain event in .pipe()s this.awaitDrain = 0; // if true, a maybeReadMore has been scheduled this.readingMore = false; this.decoder = null; this.encoding = null; if (options.encoding) { if (!StringDecoder) StringDecoder = require('string_decoder/').StringDecoder; this.decoder = new StringDecoder(options.encoding); this.encoding = options.encoding; } } var Duplex; function Readable(options) { Duplex = Duplex || require('./_stream_duplex'); if (!(this instanceof Readable)) return new Readable(options); this._readableState = new ReadableState(options, this); // legacy this.readable = true; if (options && typeof options.read === 'function') this._read = options.read; Stream.call(this); } // Manually shove something into the read() buffer. // This returns true if the highWaterMark has not been hit yet, // similar to how Writable.write() returns true if you should // write() some more. Readable.prototype.push = function (chunk, encoding) { var state = this._readableState; if (!state.objectMode && typeof chunk === 'string') { encoding = encoding || state.defaultEncoding; if (encoding !== state.encoding) { chunk = new Buffer(chunk, encoding); encoding = ''; } } return readableAddChunk(this, state, chunk, encoding, false); }; // Unshift should *always* be something directly out of read() Readable.prototype.unshift = function (chunk) { var state = this._readableState; return readableAddChunk(this, state, chunk, '', true); }; Readable.prototype.isPaused = function () { return this._readableState.flowing === false; }; function readableAddChunk(stream, state, chunk, encoding, addToFront) { var er = chunkInvalid(state, chunk); if (er) { stream.emit('error', er); } else if (chunk === null) { state.reading = false; onEofChunk(stream, state); } else if (state.objectMode || chunk && chunk.length > 0) { if (state.ended && !addToFront) { var e = new Error('stream.push() after EOF'); stream.emit('error', e); } else if (state.endEmitted && addToFront) { var e = new Error('stream.unshift() after end event'); stream.emit('error', e); } else { var skipAdd; if (state.decoder && !addToFront && !encoding) { chunk = state.decoder.write(chunk); skipAdd = !state.objectMode && chunk.length === 0; } if (!addToFront) state.reading = false; // Don't add to the buffer if we've decoded to an empty string chunk and // we're not in object mode if (!skipAdd) { // if we want the data now, just emit it. if (state.flowing && state.length === 0 && !state.sync) { stream.emit('data', chunk); stream.read(0); } else { // update the buffer info. state.length += state.objectMode ? 1 : chunk.length; if (addToFront) state.buffer.unshift(chunk);else state.buffer.push(chunk); if (state.needReadable) emitReadable(stream); } } maybeReadMore(stream, state); } } else if (!addToFront) { state.reading = false; } return needMoreData(state); } // if it's past the high water mark, we can push in some more. // Also, if we have no data yet, we can stand some // more bytes. This is to work around cases where hwm=0, // such as the repl. Also, if the push() triggered a // readable event, and the user called read(largeNumber) such that // needReadable was set, then we ought to push more, so that another // 'readable' event will be triggered. function needMoreData(state) { return !state.ended && (state.needReadable || state.length < state.highWaterMark || state.length === 0); } // backwards compatibility. Readable.prototype.setEncoding = function (enc) { if (!StringDecoder) StringDecoder = require('string_decoder/').StringDecoder; this._readableState.decoder = new StringDecoder(enc); this._readableState.encoding = enc; return this; }; // Don't raise the hwm > 8MB var MAX_HWM = 0x800000; function computeNewHighWaterMark(n) { if (n >= MAX_HWM) { n = MAX_HWM; } else { // Get the next highest power of 2 n--; n |= n >>> 1; n |= n >>> 2; n |= n >>> 4; n |= n >>> 8; n |= n >>> 16; n++; } return n; } function howMuchToRead(n, state) { if (state.length === 0 && state.ended) return 0; if (state.objectMode) return n === 0 ? 0 : 1; if (n === null || isNaN(n)) { // only flow one buffer at a time if (state.flowing && state.buffer.length) return state.buffer[0].length;else return state.length; } if (n <= 0) return 0; // If we're asking for more than the target buffer level, // then raise the water mark. Bump up to the next highest // power of 2, to prevent increasing it excessively in tiny // amounts. if (n > state.highWaterMark) state.highWaterMark = computeNewHighWaterMark(n); // don't have that much. return null, unless we've ended. if (n > state.length) { if (!state.ended) { state.needReadable = true; return 0; } else { return state.length; } } return n; } // you can override either this method, or the async _read(n) below. Readable.prototype.read = function (n) { debug('read', n); var state = this._readableState; var nOrig = n; if (typeof n !== 'number' || n > 0) state.emittedReadable = false; // if we're doing read(0) to trigger a readable event, but we // already have a bunch of data in the buffer, then just trigger // the 'readable' event and move on. if (n === 0 && state.needReadable && (state.length >= state.highWaterMark || state.ended)) { debug('read: emitReadable', state.length, state.ended); if (state.length === 0 && state.ended) endReadable(this);else emitReadable(this); return null; } n = howMuchToRead(n, state); // if we've ended, and we're now clear, then finish it up. if (n === 0 && state.ended) { if (state.length === 0) endReadable(this); return null; } // All the actual chunk generation logic needs to be // *below* the call to _read. The reason is that in certain // synthetic stream cases, such as passthrough streams, _read // may be a completely synchronous operation which may change // the state of the read buffer, providing enough data when // before there was *not* enough. // // So, the steps are: // 1. Figure out what the state of things will be after we do // a read from the buffer. // // 2. If that resulting state will trigger a _read, then call _read. // Note that this may be asynchronous, or synchronous. Yes, it is // deeply ugly to write APIs this way, but that still doesn't mean // that the Readable class should behave improperly, as streams are // designed to be sync/async agnostic. // Take note if the _read call is sync or async (ie, if the read call // has returned yet), so that we know whether or not it's safe to emit // 'readable' etc. // // 3. Actually pull the requested chunks out of the buffer and return. // if we need a readable event, then we need to do some reading. var doRead = state.needReadable; debug('need readable', doRead); // if we currently have less than the highWaterMark, then also read some if (state.length === 0 || state.length - n < state.highWaterMark) { doRead = true; debug('length less than watermark', doRead); } // however, if we've ended, then there's no point, and if we're already // reading, then it's unnecessary. if (state.ended || state.reading) { doRead = false; debug('reading or ended', doRead); } if (doRead) { debug('do read'); state.reading = true; state.sync = true; // if the length is currently zero, then we *need* a readable event. if (state.length === 0) state.needReadable = true; // call internal read method this._read(state.highWaterMark); state.sync = false; } // If _read pushed data synchronously, then `reading` will be false, // and we need to re-evaluate how much data we can return to the user. if (doRead && !state.reading) n = howMuchToRead(nOrig, state); var ret; if (n > 0) ret = fromList(n, state);else ret = null; if (ret === null) { state.needReadable = true; n = 0; } state.length -= n; // If we have nothing in the buffer, then we want to know // as soon as we *do* get something into the buffer. if (state.length === 0 && !state.ended) state.needReadable = true; // If we tried to read() past the EOF, then emit end on the next tick. if (nOrig !== n && state.ended && state.length === 0) endReadable(this); if (ret !== null) this.emit('data', ret); return ret; }; function chunkInvalid(state, chunk) { var er = null; if (!Buffer.isBuffer(chunk) && typeof chunk !== 'string' && chunk !== null && chunk !== undefined && !state.objectMode) { er = new TypeError('Invalid non-string/buffer chunk'); } return er; } function onEofChunk(stream, state) { if (state.ended) return; if (state.decoder) { var chunk = state.decoder.end(); if (chunk && chunk.length) { state.buffer.push(chunk); state.length += state.objectMode ? 1 : chunk.length; } } state.ended = true; // emit 'readable' now to make sure it gets picked up. emitReadable(stream); } // Don't emit readable right away in sync mode, because this can trigger // another read() call => stack overflow. This way, it might trigger // a nextTick recursion warning, but that's not so bad. function emitReadable(stream) { var state = stream._readableState; state.needReadable = false; if (!state.emittedReadable) { debug('emitReadable', state.flowing); state.emittedReadable = true; if (state.sync) processNextTick(emitReadable_, stream);else emitReadable_(stream); } } function emitReadable_(stream) { debug('emit readable'); stream.emit('readable'); flow(stream); } // at this point, the user has presumably seen the 'readable' event, // and called read() to consume some data. that may have triggered // in turn another _read(n) call, in which case reading = true if // it's in progress. // However, if we're not ended, or reading, and the length < hwm, // then go ahead and try to read some more preemptively. function maybeReadMore(stream, state) { if (!state.readingMore) { state.readingMore = true; processNextTick(maybeReadMore_, stream, state); } } function maybeReadMore_(stream, state) { var len = state.length; while (!state.reading && !state.flowing && !state.ended && state.length < state.highWaterMark) { debug('maybeReadMore read 0'); stream.read(0); if (len === state.length) // didn't get any data, stop spinning. break;else len = state.length; } state.readingMore = false; } // abstract method. to be overridden in specific implementation classes. // call cb(er, data) where data is <= n in length. // for virtual (non-string, non-buffer) streams, "length" is somewhat // arbitrary, and perhaps not very meaningful. Readable.prototype._read = function (n) { this.emit('error', new Error('not implemented')); }; Readable.prototype.pipe = function (dest, pipeOpts) { var src = this; var state = this._readableState; switch (state.pipesCount) { case 0: state.pipes = dest; break; case 1: state.pipes = [state.pipes, dest]; break; default: state.pipes.push(dest); break; } state.pipesCount += 1; debug('pipe count=%d opts=%j', state.pipesCount, pipeOpts); var doEnd = (!pipeOpts || pipeOpts.end !== false) && dest !== process.stdout && dest !== process.stderr; var endFn = doEnd ? onend : cleanup; if (state.endEmitted) processNextTick(endFn);else src.once('end', endFn); dest.on('unpipe', onunpipe); function onunpipe(readable) { debug('onunpipe'); if (readable === src) { cleanup(); } } function onend() { debug('onend'); dest.end(); } // when the dest drains, it reduces the awaitDrain counter // on the source. This would be more elegant with a .once() // handler in flow(), but adding and removing repeatedly is // too slow. var ondrain = pipeOnDrain(src); dest.on('drain', ondrain); var cleanedUp = false; function cleanup() { debug('cleanup'); // cleanup event handlers once the pipe is broken dest.removeListener('close', onclose); dest.removeListener('finish', onfinish); dest.removeListener('drain', ondrain); dest.removeListener('error', onerror); dest.removeListener('unpipe', onunpipe); src.removeListener('end', onend); src.removeListener('end', cleanup); src.removeListener('data', ondata); cleanedUp = true; // if the reader is waiting for a drain event from this // specific writer, then it would cause it to never start // flowing again. // So, if this is awaiting a drain, then we just call it now. // If we don't know, then assume that we are waiting for one. if (state.awaitDrain && (!dest._writableState || dest._writableState.needDrain)) ondrain(); } src.on('data', ondata); function ondata(chunk) { debug('ondata'); var ret = dest.write(chunk); if (false === ret) { // If the user unpiped during `dest.write()`, it is possible // to get stuck in a permanently paused state if that write // also returned false. if (state.pipesCount === 1 && state.pipes[0] === dest && src.listenerCount('data') === 1 && !cleanedUp) { debug('false write response, pause', src._readableState.awaitDrain); src._readableState.awaitDrain++; } src.pause(); } } // if the dest has an error, then stop piping into it. // however, don't suppress the throwing behavior for this. function onerror(er) { debug('onerror', er); unpipe(); dest.removeListener('error', onerror); if (EElistenerCount(dest, 'error') === 0) dest.emit('error', er); } // This is a brutally ugly hack to make sure that our error handler // is attached before any userland ones. NEVER DO THIS. if (!dest._events || !dest._events.error) dest.on('error', onerror);else if (isArray(dest._events.error)) dest._events.error.unshift(onerror);else dest._events.error = [onerror, dest._events.error]; // Both close and finish should trigger unpipe, but only once. function onclose() { dest.removeListener('finish', onfinish); unpipe(); } dest.once('close', onclose); function onfinish() { debug('onfinish'); dest.removeListener('close', onclose); unpipe(); } dest.once('finish', onfinish); function unpipe() { debug('unpipe'); src.unpipe(dest); } // tell the dest that it's being piped to dest.emit('pipe', src); // start the flow if it hasn't been started already. if (!state.flowing) { debug('pipe resume'); src.resume(); } return dest; }; function pipeOnDrain(src) { return function () { var state = src._readableState; debug('pipeOnDrain', state.awaitDrain); if (state.awaitDrain) state.awaitDrain--; if (state.awaitDrain === 0 && EElistenerCount(src, 'data')) { state.flowing = true; flow(src); } }; } Readable.prototype.unpipe = function (dest) { var state = this._readableState; // if we're not piping anywhere, then do nothing. if (state.pipesCount === 0) return this; // just one destination. most common case. if (state.pipesCount === 1) { // passed in one, but it's not the right one. if (dest && dest !== state.pipes) return this; if (!dest) dest = state.pipes; // got a match. state.pipes = null; state.pipesCount = 0; state.flowing = false; if (dest) dest.emit('unpipe', this); return this; } // slow case. multiple pipe destinations. if (!dest) { // remove all. var dests = state.pipes; var len = state.pipesCount; state.pipes = null; state.pipesCount = 0; state.flowing = false; for (var _i = 0; _i < len; _i++) { dests[_i].emit('unpipe', this); }return this; } // try to find the right one. var i = indexOf(state.pipes, dest); if (i === -1) return this; state.pipes.splice(i, 1); state.pipesCount -= 1; if (state.pipesCount === 1) state.pipes = state.pipes[0]; dest.emit('unpipe', this); return this; }; // set up data events if they are asked for // Ensure readable listeners eventually get something Readable.prototype.on = function (ev, fn) { var res = Stream.prototype.on.call(this, ev, fn); // If listening to data, and it has not explicitly been paused, // then call resume to start the flow of data on the next tick. if (ev === 'data' && false !== this._readableState.flowing) { this.resume(); } if (ev === 'readable' && !this._readableState.endEmitted) { var state = this._readableState; if (!state.readableListening) { state.readableListening = true; state.emittedReadable = false; state.needReadable = true; if (!state.reading) { processNextTick(nReadingNextTick, this); } else if (state.length) { emitReadable(this, state); } } } return res; }; Readable.prototype.addListener = Readable.prototype.on; function nReadingNextTick(self) { debug('readable nexttick read 0'); self.read(0); } // pause() and resume() are remnants of the legacy readable stream API // If the user uses them, then switch into old mode. Readable.prototype.resume = function () { var state = this._readableState; if (!state.flowing) { debug('resume'); state.flowing = true; resume(this, state); } return this; }; function resume(stream, state) { if (!state.resumeScheduled) { state.resumeScheduled = true; processNextTick(resume_, stream, state); } } function resume_(stream, state) { if (!state.reading) { debug('resume read 0'); stream.read(0); } state.resumeScheduled = false; stream.emit('resume'); flow(stream); if (state.flowing && !state.reading) stream.read(0); } Readable.prototype.pause = function () { debug('call pause flowing=%j', this._readableState.flowing); if (false !== this._readableState.flowing) { debug('pause'); this._readableState.flowing = false; this.emit('pause'); } return this; }; function flow(stream) { var state = stream._readableState; debug('flow', state.flowing); if (state.flowing) { do { var chunk = stream.read(); } while (null !== chunk && state.flowing); } } // wrap an old-style stream as the async data source. // This is *not* part of the readable stream interface. // It is an ugly unfortunate mess of history. Readable.prototype.wrap = function (stream) { var state = this._readableState; var paused = false; var self = this; stream.on('end', function () { debug('wrapped end'); if (state.decoder && !state.ended) { var chunk = state.decoder.end(); if (chunk && chunk.length) self.push(chunk); } self.push(null); }); stream.on('data', function (chunk) { debug('wrapped data'); if (state.decoder) chunk = state.decoder.write(chunk); // don't skip over falsy values in objectMode if (state.objectMode && (chunk === null || chunk === undefined)) return;else if (!state.objectMode && (!chunk || !chunk.length)) return; var ret = self.push(chunk); if (!ret) { paused = true; stream.pause(); } }); // proxy all the other methods. // important when wrapping filters and duplexes. for (var i in stream) { if (this[i] === undefined && typeof stream[i] === 'function') { this[i] = function (method) { return function () { return stream[method].apply(stream, arguments); }; }(i); } } // proxy certain important events. var events = ['error', 'close', 'destroy', 'pause', 'resume']; forEach(events, function (ev) { stream.on(ev, self.emit.bind(self, ev)); }); // when we try to consume some more bytes, simply unpause the // underlying stream. self._read = function (n) { debug('wrapped _read', n); if (paused) { paused = false; stream.resume(); } }; return self; }; // exposed for testing purposes only. Readable._fromList = fromList; // Pluck off n bytes from an array of buffers. // Length is the combined lengths of all the buffers in the list. function fromList(n, state) { var list = state.buffer; var length = state.length; var stringMode = !!state.decoder; var objectMode = !!state.objectMode; var ret; // nothing in the list, definitely empty. if (list.length === 0) return null; if (length === 0) ret = null;else if (objectMode) ret = list.shift();else if (!n || n >= length) { // read it all, truncate the array. if (stringMode) ret = list.join('');else if (list.length === 1) ret = list[0];else ret = Buffer.concat(list, length); list.length = 0; } else { // read just some of it. if (n < list[0].length) { // just take a part of the first list item. // slice is the same for buffers and strings. var buf = list[0]; ret = buf.slice(0, n); list[0] = buf.slice(n); } else if (n === list[0].length) { // first list is a perfect match ret = list.shift(); } else { // complex case. // we have enough to cover it, but it spans past the first buffer. if (stringMode) ret = '';else ret = new Buffer(n); var c = 0; for (var i = 0, l = list.length; i < l && c < n; i++) { var buf = list[0]; var cpy = Math.min(n - c, buf.length); if (stringMode) ret += buf.slice(0, cpy);else buf.copy(ret, c, 0, cpy); if (cpy < buf.length) list[0] = buf.slice(cpy);else list.shift(); c += cpy; } } } return ret; } function endReadable(stream) { var state = stream._readableState; // If we get here before consuming all the bytes, then that is a // bug in node. Should never happen. if (state.length > 0) throw new Error('endReadable called on non-empty stream'); if (!state.endEmitted) { state.ended = true; processNextTick(endReadableNT, state, stream); } } function endReadableNT(state, stream) { // Check that we didn't get one last unshift. if (!state.endEmitted && state.length === 0) { state.endEmitted = true; stream.readable = false; stream.emit('end'); } } function forEach(xs, f) { for (var i = 0, l = xs.length; i < l; i++) { f(xs[i], i); } } function indexOf(xs, x) { for (var i = 0, l = xs.length; i < l; i++) { if (xs[i] === x) return i; } return -1; } }).call(this,require('_process')) },{"./_stream_duplex":252,"_process":120,"buffer":49,"core-util-is":182,"events":86,"inherits":220,"isarray":225,"process-nextick-args":246,"string_decoder/":291,"util":20}],254:[function(require,module,exports){ (function (process){ // A bit simpler than readable streams. // Implement an async ._write(chunk, encoding, cb), and it'll handle all // the drain event emission and buffering. 'use strict'; module.exports = Writable; /**/ var processNextTick = require('process-nextick-args'); /**/ /**/ var asyncWrite = !process.browser && ['v0.10', 'v0.9.'].indexOf(process.version.slice(0, 5)) > -1 ? setImmediate : processNextTick; /**/ /**/ var Buffer = require('buffer').Buffer; /**/ Writable.WritableState = WritableState; /**/ var util = require('core-util-is'); util.inherits = require('inherits'); /**/ /**/ var internalUtil = { deprecate: require('util-deprecate') }; /**/ /**/ var Stream; (function () { try { Stream = require('st' + 'ream'); } catch (_) {} finally { if (!Stream) Stream = require('events').EventEmitter; } })(); /**/ var Buffer = require('buffer').Buffer; util.inherits(Writable, Stream); function nop() {} function WriteReq(chunk, encoding, cb) { this.chunk = chunk; this.encoding = encoding; this.callback = cb; this.next = null; } var Duplex; function WritableState(options, stream) { Duplex = Duplex || require('./_stream_duplex'); options = options || {}; // object stream flag to indicate whether or not this stream // contains buffers or objects. this.objectMode = !!options.objectMode; if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.writableObjectMode; // the point at which write() starts returning false // Note: 0 is a valid value, means that we always return false if // the entire buffer is not flushed immediately on write() var hwm = options.highWaterMark; var defaultHwm = this.objectMode ? 16 : 16 * 1024; this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm; // cast to ints. this.highWaterMark = ~ ~this.highWaterMark; this.needDrain = false; // at the start of calling end() this.ending = false; // when end() has been called, and returned this.ended = false; // when 'finish' is emitted this.finished = false; // should we decode strings into buffers before passing to _write? // this is here so that some node-core streams can optimize string // handling at a lower level. var noDecode = options.decodeStrings === false; this.decodeStrings = !noDecode; // Crypto is kind of old and crusty. Historically, its default string // encoding is 'binary' so we have to make this configurable. // Everything else in the universe uses 'utf8', though. this.defaultEncoding = options.defaultEncoding || 'utf8'; // not an actual buffer we keep track of, but a measurement // of how much we're waiting to get pushed to some underlying // socket or file. this.length = 0; // a flag to see when we're in the middle of a write. this.writing = false; // when true all writes will be buffered until .uncork() call this.corked = 0; // a flag to be able to tell if the onwrite cb is called immediately, // or on a later tick. We set this to true at first, because any // actions that shouldn't happen until "later" should generally also // not happen before the first write call. this.sync = true; // a flag to know if we're processing previously buffered items, which // may call the _write() callback in the same tick, so that we don't // end up in an overlapped onwrite situation. this.bufferProcessing = false; // the callback that's passed to _write(chunk,cb) this.onwrite = function (er) { onwrite(stream, er); }; // the callback that the user supplies to write(chunk,encoding,cb) this.writecb = null; // the amount that is being written when _write is called. this.writelen = 0; this.bufferedRequest = null; this.lastBufferedRequest = null; // number of pending user-supplied write callbacks // this must be 0 before 'finish' can be emitted this.pendingcb = 0; // emit prefinish if the only thing we're waiting for is _write cbs // This is relevant for synchronous Transform streams this.prefinished = false; // True if the error was already emitted and should not be thrown again this.errorEmitted = false; // count buffered requests this.bufferedRequestCount = 0; // create the two objects needed to store the corked requests // they are not a linked list, as no new elements are inserted in there this.corkedRequestsFree = new CorkedRequest(this); this.corkedRequestsFree.next = new CorkedRequest(this); } WritableState.prototype.getBuffer = function writableStateGetBuffer() { var current = this.bufferedRequest; var out = []; while (current) { out.push(current); current = current.next; } return out; }; (function () { try { Object.defineProperty(WritableState.prototype, 'buffer', { get: internalUtil.deprecate(function () { return this.getBuffer(); }, '_writableState.buffer is deprecated. Use _writableState.getBuffer ' + 'instead.') }); } catch (_) {} })(); var Duplex; function Writable(options) { Duplex = Duplex || require('./_stream_duplex'); // Writable ctor is applied to Duplexes, though they're not // instanceof Writable, they're instanceof Readable. if (!(this instanceof Writable) && !(this instanceof Duplex)) return new Writable(options); this._writableState = new WritableState(options, this); // legacy. this.writable = true; if (options) { if (typeof options.write === 'function') this._write = options.write; if (typeof options.writev === 'function') this._writev = options.writev; } Stream.call(this); } // Otherwise people can pipe Writable streams, which is just wrong. Writable.prototype.pipe = function () { this.emit('error', new Error('Cannot pipe. Not readable.')); }; function writeAfterEnd(stream, cb) { var er = new Error('write after end'); // TODO: defer error events consistently everywhere, not just the cb stream.emit('error', er); processNextTick(cb, er); } // If we get something that is not a buffer, string, null, or undefined, // and we're not in objectMode, then that's an error. // Otherwise stream chunks are all considered to be of length=1, and the // watermarks determine how many objects to keep in the buffer, rather than // how many bytes or characters. function validChunk(stream, state, chunk, cb) { var valid = true; if (!Buffer.isBuffer(chunk) && typeof chunk !== 'string' && chunk !== null && chunk !== undefined && !state.objectMode) { var er = new TypeError('Invalid non-string/buffer chunk'); stream.emit('error', er); processNextTick(cb, er); valid = false; } return valid; } Writable.prototype.write = function (chunk, encoding, cb) { var state = this._writableState; var ret = false; if (typeof encoding === 'function') { cb = encoding; encoding = null; } if (Buffer.isBuffer(chunk)) encoding = 'buffer';else if (!encoding) encoding = state.defaultEncoding; if (typeof cb !== 'function') cb = nop; if (state.ended) writeAfterEnd(this, cb);else if (validChunk(this, state, chunk, cb)) { state.pendingcb++; ret = writeOrBuffer(this, state, chunk, encoding, cb); } return ret; }; Writable.prototype.cork = function () { var state = this._writableState; state.corked++; }; Writable.prototype.uncork = function () { var state = this._writableState; if (state.corked) { state.corked--; if (!state.writing && !state.corked && !state.finished && !state.bufferProcessing && state.bufferedRequest) clearBuffer(this, state); } }; Writable.prototype.setDefaultEncoding = function setDefaultEncoding(encoding) { // node::ParseEncoding() requires lower case. if (typeof encoding === 'string') encoding = encoding.toLowerCase(); if (!(['hex', 'utf8', 'utf-8', 'ascii', 'binary', 'base64', 'ucs2', 'ucs-2', 'utf16le', 'utf-16le', 'raw'].indexOf((encoding + '').toLowerCase()) > -1)) throw new TypeError('Unknown encoding: ' + encoding); this._writableState.defaultEncoding = encoding; }; function decodeChunk(state, chunk, encoding) { if (!state.objectMode && state.decodeStrings !== false && typeof chunk === 'string') { chunk = new Buffer(chunk, encoding); } return chunk; } // if we're already writing something, then just put this // in the queue, and wait our turn. Otherwise, call _write // If we return false, then we need a drain event, so set that flag. function writeOrBuffer(stream, state, chunk, encoding, cb) { chunk = decodeChunk(state, chunk, encoding); if (Buffer.isBuffer(chunk)) encoding = 'buffer'; var len = state.objectMode ? 1 : chunk.length; state.length += len; var ret = state.length < state.highWaterMark; // we must ensure that previous needDrain will not be reset to false. if (!ret) state.needDrain = true; if (state.writing || state.corked) { var last = state.lastBufferedRequest; state.lastBufferedRequest = new WriteReq(chunk, encoding, cb); if (last) { last.next = state.lastBufferedRequest; } else { state.bufferedRequest = state.lastBufferedRequest; } state.bufferedRequestCount += 1; } else { doWrite(stream, state, false, len, chunk, encoding, cb); } return ret; } function doWrite(stream, state, writev, len, chunk, encoding, cb) { state.writelen = len; state.writecb = cb; state.writing = true; state.sync = true; if (writev) stream._writev(chunk, state.onwrite);else stream._write(chunk, encoding, state.onwrite); state.sync = false; } function onwriteError(stream, state, sync, er, cb) { --state.pendingcb; if (sync) processNextTick(cb, er);else cb(er); stream._writableState.errorEmitted = true; stream.emit('error', er); } function onwriteStateUpdate(state) { state.writing = false; state.writecb = null; state.length -= state.writelen; state.writelen = 0; } function onwrite(stream, er) { var state = stream._writableState; var sync = state.sync; var cb = state.writecb; onwriteStateUpdate(state); if (er) onwriteError(stream, state, sync, er, cb);else { // Check if we're actually ready to finish, but don't emit yet var finished = needFinish(state); if (!finished && !state.corked && !state.bufferProcessing && state.bufferedRequest) { clearBuffer(stream, state); } if (sync) { /**/ asyncWrite(afterWrite, stream, state, finished, cb); /**/ } else { afterWrite(stream, state, finished, cb); } } } function afterWrite(stream, state, finished, cb) { if (!finished) onwriteDrain(stream, state); state.pendingcb--; cb(); finishMaybe(stream, state); } // Must force callback to be called on nextTick, so that we don't // emit 'drain' before the write() consumer gets the 'false' return // value, and has a chance to attach a 'drain' listener. function onwriteDrain(stream, state) { if (state.length === 0 && state.needDrain) { state.needDrain = false; stream.emit('drain'); } } // if there's something in the buffer waiting, then process it function clearBuffer(stream, state) { state.bufferProcessing = true; var entry = state.bufferedRequest; if (stream._writev && entry && entry.next) { // Fast case, write everything using _writev() var l = state.bufferedRequestCount; var buffer = new Array(l); var holder = state.corkedRequestsFree; holder.entry = entry; var count = 0; while (entry) { buffer[count] = entry; entry = entry.next; count += 1; } doWrite(stream, state, true, state.length, buffer, '', holder.finish); // doWrite is always async, defer these to save a bit of time // as the hot path ends with doWrite state.pendingcb++; state.lastBufferedRequest = null; state.corkedRequestsFree = holder.next; holder.next = null; } else { // Slow case, write chunks one-by-one while (entry) { var chunk = entry.chunk; var encoding = entry.encoding; var cb = entry.callback; var len = state.objectMode ? 1 : chunk.length; doWrite(stream, state, false, len, chunk, encoding, cb); entry = entry.next; // if we didn't call the onwrite immediately, then // it means that we need to wait until it does. // also, that means that the chunk and cb are currently // being processed, so move the buffer counter past them. if (state.writing) { break; } } if (entry === null) state.lastBufferedRequest = null; } state.bufferedRequestCount = 0; state.bufferedRequest = entry; state.bufferProcessing = false; } Writable.prototype._write = function (chunk, encoding, cb) { cb(new Error('not implemented')); }; Writable.prototype._writev = null; Writable.prototype.end = function (chunk, encoding, cb) { var state = this._writableState; if (typeof chunk === 'function') { cb = chunk; chunk = null; encoding = null; } else if (typeof encoding === 'function') { cb = encoding; encoding = null; } if (chunk !== null && chunk !== undefined) this.write(chunk, encoding); // .end() fully uncorks if (state.corked) { state.corked = 1; this.uncork(); } // ignore unnecessary end() calls. if (!state.ending && !state.finished) endWritable(this, state, cb); }; function needFinish(state) { return state.ending && state.length === 0 && state.bufferedRequest === null && !state.finished && !state.writing; } function prefinish(stream, state) { if (!state.prefinished) { state.prefinished = true; stream.emit('prefinish'); } } function finishMaybe(stream, state) { var need = needFinish(state); if (need) { if (state.pendingcb === 0) { prefinish(stream, state); state.finished = true; stream.emit('finish'); } else { prefinish(stream, state); } } return need; } function endWritable(stream, state, cb) { state.ending = true; finishMaybe(stream, state); if (cb) { if (state.finished) processNextTick(cb);else stream.once('finish', cb); } state.ended = true; stream.writable = false; } // It seems a linked list but it is not // there will be only 2 of these for each stream function CorkedRequest(state) { var _this = this; this.next = null; this.entry = null; this.finish = function (err) { var entry = _this.entry; _this.entry = null; while (entry) { var cb = entry.callback; state.pendingcb--; cb(err); entry = entry.next; } if (state.corkedRequestsFree) { state.corkedRequestsFree.next = _this; } else { state.corkedRequestsFree = _this; } }; } }).call(this,require('_process')) },{"./_stream_duplex":252,"_process":120,"buffer":49,"core-util-is":182,"events":86,"inherits":220,"process-nextick-args":246,"util-deprecate":302}],255:[function(require,module,exports){ // Copyright 2010-2012 Mikeal Rogers // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. 'use strict' var extend = require('extend') , cookies = require('./lib/cookies') , helpers = require('./lib/helpers') var isFunction = helpers.isFunction , paramsHaveRequestBody = helpers.paramsHaveRequestBody // organize params for patch, post, put, head, del function initParams(uri, options, callback) { if (typeof options === 'function') { callback = options } var params = {} if (typeof options === 'object') { extend(params, options, {uri: uri}) } else if (typeof uri === 'string') { extend(params, {uri: uri}) } else { extend(params, uri) } params.callback = callback || params.callback return params } function request (uri, options, callback) { if (typeof uri === 'undefined') { throw new Error('undefined is not a valid uri or options object.') } var params = initParams(uri, options, callback) if (params.method === 'HEAD' && paramsHaveRequestBody(params)) { throw new Error('HTTP HEAD requests MUST NOT include a request body.') } return new request.Request(params) } function verbFunc (verb) { var method = verb.toUpperCase() return function (uri, options, callback) { var params = initParams(uri, options, callback) params.method = method return request(params, params.callback) } } // define like this to please codeintel/intellisense IDEs request.get = verbFunc('get') request.head = verbFunc('head') request.post = verbFunc('post') request.put = verbFunc('put') request.patch = verbFunc('patch') request.del = verbFunc('delete') request['delete'] = verbFunc('delete') request.jar = function (store) { return cookies.jar(store) } request.cookie = function (str) { return cookies.parse(str) } function wrapRequestMethod (method, options, requester, verb) { return function (uri, opts, callback) { var params = initParams(uri, opts, callback) var target = {} extend(true, target, options, params) target.pool = params.pool || options.pool if (verb) { target.method = verb.toUpperCase() } if (isFunction(requester)) { method = requester } return method(target, target.callback) } } request.defaults = function (options, requester) { var self = this options = options || {} if (typeof options === 'function') { requester = options options = {} } var defaults = wrapRequestMethod(self, options, requester) var verbs = ['get', 'head', 'post', 'put', 'patch', 'del', 'delete'] verbs.forEach(function(verb) { defaults[verb] = wrapRequestMethod(self[verb], options, requester, verb) }) defaults.cookie = wrapRequestMethod(self.cookie, options, requester) defaults.jar = self.jar defaults.defaults = self.defaults return defaults } request.forever = function (agentOptions, optionsArg) { var options = {} if (optionsArg) { extend(options, optionsArg) } if (agentOptions) { options.agentOptions = agentOptions } options.forever = true return request.defaults(options) } // Exports module.exports = request request.Request = require('./request') request.initParams = initParams // Backwards compatibility for request.debug Object.defineProperty(request, 'debug', { enumerable : true, get : function() { return request.Request.debug }, set : function(debug) { request.Request.debug = debug } }) },{"./lib/cookies":257,"./lib/helpers":260,"./request":266,"extend":188}],256:[function(require,module,exports){ 'use strict' var caseless = require('caseless') , uuid = require('node-uuid') , helpers = require('./helpers') var md5 = helpers.md5 , toBase64 = helpers.toBase64 function Auth (request) { // define all public properties here this.request = request this.hasAuth = false this.sentAuth = false this.bearerToken = null this.user = null this.pass = null } Auth.prototype.basic = function (user, pass, sendImmediately) { var self = this if (typeof user !== 'string' || (pass !== undefined && typeof pass !== 'string')) { self.request.emit('error', new Error('auth() received invalid user or password')) } self.user = user self.pass = pass self.hasAuth = true var header = user + ':' + (pass || '') if (sendImmediately || typeof sendImmediately === 'undefined') { var authHeader = 'Basic ' + toBase64(header) self.sentAuth = true return authHeader } } Auth.prototype.bearer = function (bearer, sendImmediately) { var self = this self.bearerToken = bearer self.hasAuth = true if (sendImmediately || typeof sendImmediately === 'undefined') { if (typeof bearer === 'function') { bearer = bearer() } var authHeader = 'Bearer ' + (bearer || '') self.sentAuth = true return authHeader } } Auth.prototype.digest = function (method, path, authHeader) { // TODO: More complete implementation of RFC 2617. // - handle challenge.domain // - support qop="auth-int" only // - handle Authentication-Info (not necessarily?) // - check challenge.stale (not necessarily?) // - increase nc (not necessarily?) // For reference: // http://tools.ietf.org/html/rfc2617#section-3 // https://github.com/bagder/curl/blob/master/lib/http_digest.c var self = this var challenge = {} var re = /([a-z0-9_-]+)=(?:"([^"]+)"|([a-z0-9_-]+))/gi for (;;) { var match = re.exec(authHeader) if (!match) { break } challenge[match[1]] = match[2] || match[3] } /** * RFC 2617: handle both MD5 and MD5-sess algorithms. * * If the algorithm directive's value is "MD5" or unspecified, then HA1 is * HA1=MD5(username:realm:password) * If the algorithm directive's value is "MD5-sess", then HA1 is * HA1=MD5(MD5(username:realm:password):nonce:cnonce) */ var ha1Compute = function (algorithm, user, realm, pass, nonce, cnonce) { var ha1 = md5(user + ':' + realm + ':' + pass) if (algorithm && algorithm.toLowerCase() === 'md5-sess') { return md5(ha1 + ':' + nonce + ':' + cnonce) } else { return ha1 } } var qop = /(^|,)\s*auth\s*($|,)/.test(challenge.qop) && 'auth' var nc = qop && '00000001' var cnonce = qop && uuid().replace(/-/g, '') var ha1 = ha1Compute(challenge.algorithm, self.user, challenge.realm, self.pass, challenge.nonce, cnonce) var ha2 = md5(method + ':' + path) var digestResponse = qop ? md5(ha1 + ':' + challenge.nonce + ':' + nc + ':' + cnonce + ':' + qop + ':' + ha2) : md5(ha1 + ':' + challenge.nonce + ':' + ha2) var authValues = { username: self.user, realm: challenge.realm, nonce: challenge.nonce, uri: path, qop: qop, response: digestResponse, nc: nc, cnonce: cnonce, algorithm: challenge.algorithm, opaque: challenge.opaque } authHeader = [] for (var k in authValues) { if (authValues[k]) { if (k === 'qop' || k === 'nc' || k === 'algorithm') { authHeader.push(k + '=' + authValues[k]) } else { authHeader.push(k + '="' + authValues[k] + '"') } } } authHeader = 'Digest ' + authHeader.join(', ') self.sentAuth = true return authHeader } Auth.prototype.onRequest = function (user, pass, sendImmediately, bearer) { var self = this , request = self.request var authHeader if (bearer === undefined && user === undefined) { self.request.emit('error', new Error('no auth mechanism defined')) } else if (bearer !== undefined) { authHeader = self.bearer(bearer, sendImmediately) } else { authHeader = self.basic(user, pass, sendImmediately) } if (authHeader) { request.setHeader('authorization', authHeader) } } Auth.prototype.onResponse = function (response) { var self = this , request = self.request if (!self.hasAuth || self.sentAuth) { return null } var c = caseless(response.headers) var authHeader = c.get('www-authenticate') var authVerb = authHeader && authHeader.split(' ')[0].toLowerCase() request.debug('reauth', authVerb) switch (authVerb) { case 'basic': return self.basic(self.user, self.pass, true) case 'bearer': return self.bearer(self.bearerToken, true) case 'digest': return self.digest(request.method, request.path, authHeader) } } exports.Auth = Auth },{"./helpers":260,"caseless":180,"node-uuid":242}],257:[function(require,module,exports){ 'use strict' var tough = require('tough-cookie') var Cookie = tough.Cookie , CookieJar = tough.CookieJar exports.parse = function(str) { if (str && str.uri) { str = str.uri } if (typeof str !== 'string') { throw new Error('The cookie function only accepts STRING as param') } return Cookie.parse(str, {loose: true}) } // Adapt the sometimes-Async api of tough.CookieJar to our requirements function RequestJar(store) { var self = this self._jar = new CookieJar(store, {looseMode: true}) } RequestJar.prototype.setCookie = function(cookieOrStr, uri, options) { var self = this return self._jar.setCookieSync(cookieOrStr, uri, options || {}) } RequestJar.prototype.getCookieString = function(uri) { var self = this return self._jar.getCookieStringSync(uri) } RequestJar.prototype.getCookies = function(uri) { var self = this return self._jar.getCookiesSync(uri) } exports.jar = function(store) { return new RequestJar(store) } },{"tough-cookie":293}],258:[function(require,module,exports){ (function (process){ 'use strict' function formatHostname(hostname) { // canonicalize the hostname, so that 'oogle.com' won't match 'google.com' return hostname.replace(/^\.*/, '.').toLowerCase() } function parseNoProxyZone(zone) { zone = zone.trim().toLowerCase() var zoneParts = zone.split(':', 2) , zoneHost = formatHostname(zoneParts[0]) , zonePort = zoneParts[1] , hasPort = zone.indexOf(':') > -1 return {hostname: zoneHost, port: zonePort, hasPort: hasPort} } function uriInNoProxy(uri, noProxy) { var port = uri.port || (uri.protocol === 'https:' ? '443' : '80') , hostname = formatHostname(uri.hostname) , noProxyList = noProxy.split(',') // iterate through the noProxyList until it finds a match. return noProxyList.map(parseNoProxyZone).some(function(noProxyZone) { var isMatchedAt = hostname.indexOf(noProxyZone.hostname) , hostnameMatched = ( isMatchedAt > -1 && (isMatchedAt === hostname.length - noProxyZone.hostname.length) ) if (noProxyZone.hasPort) { return (port === noProxyZone.port) && hostnameMatched } return hostnameMatched }) } function getProxyFromURI(uri) { // Decide the proper request proxy to use based on the request URI object and the // environmental variables (NO_PROXY, HTTP_PROXY, etc.) // respect NO_PROXY environment variables (see: http://lynx.isc.org/current/breakout/lynx_help/keystrokes/environments.html) var noProxy = process.env.NO_PROXY || process.env.no_proxy || '' // if the noProxy is a wildcard then return null if (noProxy === '*') { return null } // if the noProxy is not empty and the uri is found return null if (noProxy !== '' && uriInNoProxy(uri, noProxy)) { return null } // Check for HTTP or HTTPS Proxy in environment Else default to null if (uri.protocol === 'http:') { return process.env.HTTP_PROXY || process.env.http_proxy || null } if (uri.protocol === 'https:') { return process.env.HTTPS_PROXY || process.env.https_proxy || process.env.HTTP_PROXY || process.env.http_proxy || null } // if none of that works, return null // (What uri protocol are you using then?) return null } module.exports = getProxyFromURI }).call(this,require('_process')) },{"_process":120}],259:[function(require,module,exports){ 'use strict' var fs = require('fs') var qs = require('querystring') var validate = require('har-validator') var extend = require('extend') function Har (request) { this.request = request } Har.prototype.reducer = function (obj, pair) { // new property ? if (obj[pair.name] === undefined) { obj[pair.name] = pair.value return obj } // existing? convert to array var arr = [ obj[pair.name], pair.value ] obj[pair.name] = arr return obj } Har.prototype.prep = function (data) { // construct utility properties data.queryObj = {} data.headersObj = {} data.postData.jsonObj = false data.postData.paramsObj = false // construct query objects if (data.queryString && data.queryString.length) { data.queryObj = data.queryString.reduce(this.reducer, {}) } // construct headers objects if (data.headers && data.headers.length) { // loweCase header keys data.headersObj = data.headers.reduceRight(function (headers, header) { headers[header.name] = header.value return headers }, {}) } // construct Cookie header if (data.cookies && data.cookies.length) { var cookies = data.cookies.map(function (cookie) { return cookie.name + '=' + cookie.value }) if (cookies.length) { data.headersObj.cookie = cookies.join('; ') } } // prep body function some (arr) { return arr.some(function (type) { return data.postData.mimeType.indexOf(type) === 0 }) } if (some([ 'multipart/mixed', 'multipart/related', 'multipart/form-data', 'multipart/alternative'])) { // reset values data.postData.mimeType = 'multipart/form-data' } else if (some([ 'application/x-www-form-urlencoded'])) { if (!data.postData.params) { data.postData.text = '' } else { data.postData.paramsObj = data.postData.params.reduce(this.reducer, {}) // always overwrite data.postData.text = qs.stringify(data.postData.paramsObj) } } else if (some([ 'text/json', 'text/x-json', 'application/json', 'application/x-json'])) { data.postData.mimeType = 'application/json' if (data.postData.text) { try { data.postData.jsonObj = JSON.parse(data.postData.text) } catch (e) { this.request.debug(e) // force back to text/plain data.postData.mimeType = 'text/plain' } } } return data } Har.prototype.options = function (options) { // skip if no har property defined if (!options.har) { return options } var har = {} extend(har, options.har) // only process the first entry if (har.log && har.log.entries) { har = har.log.entries[0] } // add optional properties to make validation successful har.url = har.url || options.url || options.uri || options.baseUrl || '/' har.httpVersion = har.httpVersion || 'HTTP/1.1' har.queryString = har.queryString || [] har.headers = har.headers || [] har.cookies = har.cookies || [] har.postData = har.postData || {} har.postData.mimeType = har.postData.mimeType || 'application/octet-stream' har.bodySize = 0 har.headersSize = 0 har.postData.size = 0 if (!validate.request(har)) { return options } // clean up and get some utility properties var req = this.prep(har) // construct new options if (req.url) { options.url = req.url } if (req.method) { options.method = req.method } if (Object.keys(req.queryObj).length) { options.qs = req.queryObj } if (Object.keys(req.headersObj).length) { options.headers = req.headersObj } function test (type) { return req.postData.mimeType.indexOf(type) === 0 } if (test('application/x-www-form-urlencoded')) { options.form = req.postData.paramsObj } else if (test('application/json')) { if (req.postData.jsonObj) { options.body = req.postData.jsonObj options.json = true } } else if (test('multipart/form-data')) { options.formData = {} req.postData.params.forEach(function (param) { var attachment = {} if (!param.fileName && !param.fileName && !param.contentType) { options.formData[param.name] = param.value return } // attempt to read from disk! if (param.fileName && !param.value) { attachment.value = fs.createReadStream(param.fileName) } else if (param.value) { attachment.value = param.value } if (param.fileName) { attachment.options = { filename: param.fileName, contentType: param.contentType ? param.contentType : null } } options.formData[param.name] = attachment }) } else { if (req.postData.text) { options.body = req.postData.text } } return options } exports.Har = Har },{"extend":188,"fs":1,"har-validator":196,"querystring":130}],260:[function(require,module,exports){ (function (process,Buffer){ 'use strict' var jsonSafeStringify = require('json-stringify-safe') , crypto = require('crypto') function deferMethod() { if (typeof setImmediate === 'undefined') { return process.nextTick } return setImmediate } function isFunction(value) { return typeof value === 'function' } function paramsHaveRequestBody(params) { return ( params.body || params.requestBodyStream || (params.json && typeof params.json !== 'boolean') || params.multipart ) } function safeStringify (obj, replacer) { var ret try { ret = JSON.stringify(obj, replacer) } catch (e) { ret = jsonSafeStringify(obj, replacer) } return ret } function md5 (str) { return crypto.createHash('md5').update(str).digest('hex') } function isReadStream (rs) { return rs.readable && rs.path && rs.mode } function toBase64 (str) { return (new Buffer(str || '', 'utf8')).toString('base64') } function copy (obj) { var o = {} Object.keys(obj).forEach(function (i) { o[i] = obj[i] }) return o } function version () { var numbers = process.version.replace('v', '').split('.') return { major: parseInt(numbers[0], 10), minor: parseInt(numbers[1], 10), patch: parseInt(numbers[2], 10) } } exports.isFunction = isFunction exports.paramsHaveRequestBody = paramsHaveRequestBody exports.safeStringify = safeStringify exports.md5 = md5 exports.isReadStream = isReadStream exports.toBase64 = toBase64 exports.copy = copy exports.version = version exports.defer = deferMethod() }).call(this,require('_process'),require("buffer").Buffer) },{"_process":120,"buffer":49,"crypto":58,"json-stringify-safe":235}],261:[function(require,module,exports){ (function (Buffer){ 'use strict' var uuid = require('node-uuid') , CombinedStream = require('combined-stream') , isstream = require('isstream') function Multipart (request) { this.request = request this.boundary = uuid() this.chunked = false this.body = null } Multipart.prototype.isChunked = function (options) { var self = this , chunked = false , parts = options.data || options if (!parts.forEach) { self.request.emit('error', new Error('Argument error, options.multipart.')) } if (options.chunked !== undefined) { chunked = options.chunked } if (self.request.getHeader('transfer-encoding') === 'chunked') { chunked = true } if (!chunked) { parts.forEach(function (part) { if (typeof part.body === 'undefined') { self.request.emit('error', new Error('Body attribute missing in multipart.')) } if (isstream(part.body)) { chunked = true } }) } return chunked } Multipart.prototype.setHeaders = function (chunked) { var self = this if (chunked && !self.request.hasHeader('transfer-encoding')) { self.request.setHeader('transfer-encoding', 'chunked') } var header = self.request.getHeader('content-type') if (!header || header.indexOf('multipart') === -1) { self.request.setHeader('content-type', 'multipart/related; boundary=' + self.boundary) } else { if (header.indexOf('boundary') !== -1) { self.boundary = header.replace(/.*boundary=([^\s;]+).*/, '$1') } else { self.request.setHeader('content-type', header + '; boundary=' + self.boundary) } } } Multipart.prototype.build = function (parts, chunked) { var self = this var body = chunked ? new CombinedStream() : [] function add (part) { if (typeof part === 'number') { part = part.toString() } return chunked ? body.append(part) : body.push(new Buffer(part)) } if (self.request.preambleCRLF) { add('\r\n') } parts.forEach(function (part) { var preamble = '--' + self.boundary + '\r\n' Object.keys(part).forEach(function (key) { if (key === 'body') { return } preamble += key + ': ' + part[key] + '\r\n' }) preamble += '\r\n' add(preamble) add(part.body) add('\r\n') }) add('--' + self.boundary + '--') if (self.request.postambleCRLF) { add('\r\n') } return body } Multipart.prototype.onRequest = function (options) { var self = this var chunked = self.isChunked(options) , parts = options.data || options self.setHeaders(chunked) self.chunked = chunked self.body = self.build(parts, chunked) } exports.Multipart = Multipart }).call(this,require("buffer").Buffer) },{"buffer":49,"combined-stream":181,"isstream":226,"node-uuid":242}],262:[function(require,module,exports){ (function (Buffer){ 'use strict' var url = require('url') , qs = require('qs') , caseless = require('caseless') , uuid = require('node-uuid') , oauth = require('oauth-sign') , crypto = require('crypto') function OAuth (request) { this.request = request this.params = null } OAuth.prototype.buildParams = function (_oauth, uri, method, query, form, qsLib) { var oa = {} for (var i in _oauth) { oa['oauth_' + i] = _oauth[i] } if (!oa.oauth_version) { oa.oauth_version = '1.0' } if (!oa.oauth_timestamp) { oa.oauth_timestamp = Math.floor( Date.now() / 1000 ).toString() } if (!oa.oauth_nonce) { oa.oauth_nonce = uuid().replace(/-/g, '') } if (!oa.oauth_signature_method) { oa.oauth_signature_method = 'HMAC-SHA1' } var consumer_secret_or_private_key = oa.oauth_consumer_secret || oa.oauth_private_key delete oa.oauth_consumer_secret delete oa.oauth_private_key var token_secret = oa.oauth_token_secret delete oa.oauth_token_secret var realm = oa.oauth_realm delete oa.oauth_realm delete oa.oauth_transport_method var baseurl = uri.protocol + '//' + uri.host + uri.pathname var params = qsLib.parse([].concat(query, form, qsLib.stringify(oa)).join('&')) oa.oauth_signature = oauth.sign( oa.oauth_signature_method, method, baseurl, params, consumer_secret_or_private_key, token_secret) if (realm) { oa.realm = realm } return oa } OAuth.prototype.buildBodyHash = function(_oauth, body) { if (['HMAC-SHA1', 'RSA-SHA1'].indexOf(_oauth.signature_method || 'HMAC-SHA1') < 0) { this.request.emit('error', new Error('oauth: ' + _oauth.signature_method + ' signature_method not supported with body_hash signing.')) } var shasum = crypto.createHash('sha1') shasum.update(body || '') var sha1 = shasum.digest('hex') return new Buffer(sha1).toString('base64') } OAuth.prototype.concatParams = function (oa, sep, wrap) { wrap = wrap || '' var params = Object.keys(oa).filter(function (i) { return i !== 'realm' && i !== 'oauth_signature' }).sort() if (oa.realm) { params.splice(0, 0, 'realm') } params.push('oauth_signature') return params.map(function (i) { return i + '=' + wrap + oauth.rfc3986(oa[i]) + wrap }).join(sep) } OAuth.prototype.onRequest = function (_oauth) { var self = this self.params = _oauth var uri = self.request.uri || {} , method = self.request.method || '' , headers = caseless(self.request.headers) , body = self.request.body || '' , qsLib = self.request.qsLib || qs var form , query , contentType = headers.get('content-type') || '' , formContentType = 'application/x-www-form-urlencoded' , transport = _oauth.transport_method || 'header' if (contentType.slice(0, formContentType.length) === formContentType) { contentType = formContentType form = body } if (uri.query) { query = uri.query } if (transport === 'body' && (method !== 'POST' || contentType !== formContentType)) { self.request.emit('error', new Error('oauth: transport_method of body requires POST ' + 'and content-type ' + formContentType)) } if (!form && typeof _oauth.body_hash === 'boolean') { _oauth.body_hash = self.buildBodyHash(_oauth, self.request.body.toString()) } var oa = self.buildParams(_oauth, uri, method, query, form, qsLib) switch (transport) { case 'header': self.request.setHeader('Authorization', 'OAuth ' + self.concatParams(oa, ',', '"')) break case 'query': var href = self.request.uri.href += (query ? '&' : '?') + self.concatParams(oa, '&') self.request.uri = url.parse(href) self.request.path = self.request.uri.path break case 'body': self.request.body = (form ? form + '&' : '') + self.concatParams(oa, '&') break default: self.request.emit('error', new Error('oauth: transport_method invalid')) } } exports.OAuth = OAuth }).call(this,require("buffer").Buffer) },{"buffer":49,"caseless":180,"crypto":58,"node-uuid":242,"oauth-sign":243,"qs":247,"url":159}],263:[function(require,module,exports){ 'use strict' var qs = require('qs') , querystring = require('querystring') function Querystring (request) { this.request = request this.lib = null this.useQuerystring = null this.parseOptions = null this.stringifyOptions = null } Querystring.prototype.init = function (options) { if (this.lib) {return} this.useQuerystring = options.useQuerystring this.lib = (this.useQuerystring ? querystring : qs) this.parseOptions = options.qsParseOptions || {} this.stringifyOptions = options.qsStringifyOptions || {} } Querystring.prototype.stringify = function (obj) { return (this.useQuerystring) ? this.rfc3986(this.lib.stringify(obj, this.stringifyOptions.sep || null, this.stringifyOptions.eq || null, this.stringifyOptions)) : this.lib.stringify(obj, this.stringifyOptions) } Querystring.prototype.parse = function (str) { return (this.useQuerystring) ? this.lib.parse(str, this.parseOptions.sep || null, this.parseOptions.eq || null, this.parseOptions) : this.lib.parse(str, this.parseOptions) } Querystring.prototype.rfc3986 = function (str) { return str.replace(/[!'()*]/g, function (c) { return '%' + c.charCodeAt(0).toString(16).toUpperCase() }) } Querystring.prototype.unescape = querystring.unescape exports.Querystring = Querystring },{"qs":247,"querystring":130}],264:[function(require,module,exports){ 'use strict' var url = require('url') var isUrl = /^https?:/ function Redirect (request) { this.request = request this.followRedirect = true this.followRedirects = true this.followAllRedirects = false this.allowRedirect = function () {return true} this.maxRedirects = 10 this.redirects = [] this.redirectsFollowed = 0 this.removeRefererHeader = false } Redirect.prototype.onRequest = function (options) { var self = this if (options.maxRedirects !== undefined) { self.maxRedirects = options.maxRedirects } if (typeof options.followRedirect === 'function') { self.allowRedirect = options.followRedirect } if (options.followRedirect !== undefined) { self.followRedirects = !!options.followRedirect } if (options.followAllRedirects !== undefined) { self.followAllRedirects = options.followAllRedirects } if (self.followRedirects || self.followAllRedirects) { self.redirects = self.redirects || [] } if (options.removeRefererHeader !== undefined) { self.removeRefererHeader = options.removeRefererHeader } } Redirect.prototype.redirectTo = function (response) { var self = this , request = self.request var redirectTo = null if (response.statusCode >= 300 && response.statusCode < 400 && response.caseless.has('location')) { var location = response.caseless.get('location') request.debug('redirect', location) if (self.followAllRedirects) { redirectTo = location } else if (self.followRedirects) { switch (request.method) { case 'PATCH': case 'PUT': case 'POST': case 'DELETE': // Do not follow redirects break default: redirectTo = location break } } } else if (response.statusCode === 401) { var authHeader = request._auth.onResponse(response) if (authHeader) { request.setHeader('authorization', authHeader) redirectTo = request.uri } } return redirectTo } Redirect.prototype.onResponse = function (response) { var self = this , request = self.request var redirectTo = self.redirectTo(response) if (!redirectTo || !self.allowRedirect.call(request, response)) { return false } request.debug('redirect to', redirectTo) // ignore any potential response body. it cannot possibly be useful // to us at this point. // response.resume should be defined, but check anyway before calling. Workaround for browserify. if (response.resume) { response.resume() } if (self.redirectsFollowed >= self.maxRedirects) { request.emit('error', new Error('Exceeded maxRedirects. Probably stuck in a redirect loop ' + request.uri.href)) return false } self.redirectsFollowed += 1 if (!isUrl.test(redirectTo)) { redirectTo = url.resolve(request.uri.href, redirectTo) } var uriPrev = request.uri request.uri = url.parse(redirectTo) // handle the case where we change protocol from https to http or vice versa if (request.uri.protocol !== uriPrev.protocol) { delete request.agent } self.redirects.push( { statusCode : response.statusCode , redirectUri: redirectTo } ) if (self.followAllRedirects && request.method !== 'HEAD' && response.statusCode !== 401 && response.statusCode !== 307) { request.method = 'GET' } // request.method = 'GET' // Force all redirects to use GET || commented out fixes #215 delete request.src delete request.req delete request._started if (response.statusCode !== 401 && response.statusCode !== 307) { // Remove parameters from the previous response, unless this is the second request // for a server that requires digest authentication. delete request.body delete request._form if (request.headers) { request.removeHeader('host') request.removeHeader('content-type') request.removeHeader('content-length') if (request.uri.hostname !== request.originalHost.split(':')[0]) { // Remove authorization if changing hostnames (but not if just // changing ports or protocols). This matches the behavior of curl: // https://github.com/bagder/curl/blob/6beb0eee/lib/http.c#L710 request.removeHeader('authorization') } } } if (!self.removeRefererHeader) { request.setHeader('referer', uriPrev.href) } request.emit('redirect') request.init() return true } exports.Redirect = Redirect },{"url":159}],265:[function(require,module,exports){ 'use strict' var url = require('url') , tunnel = require('tunnel-agent') var defaultProxyHeaderWhiteList = [ 'accept', 'accept-charset', 'accept-encoding', 'accept-language', 'accept-ranges', 'cache-control', 'content-encoding', 'content-language', 'content-location', 'content-md5', 'content-range', 'content-type', 'connection', 'date', 'expect', 'max-forwards', 'pragma', 'referer', 'te', 'user-agent', 'via' ] var defaultProxyHeaderExclusiveList = [ 'proxy-authorization' ] function constructProxyHost(uriObject) { var port = uriObject.port , protocol = uriObject.protocol , proxyHost = uriObject.hostname + ':' if (port) { proxyHost += port } else if (protocol === 'https:') { proxyHost += '443' } else { proxyHost += '80' } return proxyHost } function constructProxyHeaderWhiteList(headers, proxyHeaderWhiteList) { var whiteList = proxyHeaderWhiteList .reduce(function (set, header) { set[header.toLowerCase()] = true return set }, {}) return Object.keys(headers) .filter(function (header) { return whiteList[header.toLowerCase()] }) .reduce(function (set, header) { set[header] = headers[header] return set }, {}) } function constructTunnelOptions (request, proxyHeaders) { var proxy = request.proxy var tunnelOptions = { proxy : { host : proxy.hostname, port : +proxy.port, proxyAuth : proxy.auth, headers : proxyHeaders }, headers : request.headers, ca : request.ca, cert : request.cert, key : request.key, passphrase : request.passphrase, pfx : request.pfx, ciphers : request.ciphers, rejectUnauthorized : request.rejectUnauthorized, secureOptions : request.secureOptions, secureProtocol : request.secureProtocol } return tunnelOptions } function constructTunnelFnName(uri, proxy) { var uriProtocol = (uri.protocol === 'https:' ? 'https' : 'http') var proxyProtocol = (proxy.protocol === 'https:' ? 'Https' : 'Http') return [uriProtocol, proxyProtocol].join('Over') } function getTunnelFn(request) { var uri = request.uri var proxy = request.proxy var tunnelFnName = constructTunnelFnName(uri, proxy) return tunnel[tunnelFnName] } function Tunnel (request) { this.request = request this.proxyHeaderWhiteList = defaultProxyHeaderWhiteList this.proxyHeaderExclusiveList = [] if (typeof request.tunnel !== 'undefined') { this.tunnelOverride = request.tunnel } } Tunnel.prototype.isEnabled = function () { var self = this , request = self.request // Tunnel HTTPS by default. Allow the user to override this setting. // If self.tunnelOverride is set (the user specified a value), use it. if (typeof self.tunnelOverride !== 'undefined') { return self.tunnelOverride } // If the destination is HTTPS, tunnel. if (request.uri.protocol === 'https:') { return true } // Otherwise, do not use tunnel. return false } Tunnel.prototype.setup = function (options) { var self = this , request = self.request options = options || {} if (typeof request.proxy === 'string') { request.proxy = url.parse(request.proxy) } if (!request.proxy || !request.tunnel) { return false } // Setup Proxy Header Exclusive List and White List if (options.proxyHeaderWhiteList) { self.proxyHeaderWhiteList = options.proxyHeaderWhiteList } if (options.proxyHeaderExclusiveList) { self.proxyHeaderExclusiveList = options.proxyHeaderExclusiveList } var proxyHeaderExclusiveList = self.proxyHeaderExclusiveList.concat(defaultProxyHeaderExclusiveList) var proxyHeaderWhiteList = self.proxyHeaderWhiteList.concat(proxyHeaderExclusiveList) // Setup Proxy Headers and Proxy Headers Host // Only send the Proxy White Listed Header names var proxyHeaders = constructProxyHeaderWhiteList(request.headers, proxyHeaderWhiteList) proxyHeaders.host = constructProxyHost(request.uri) proxyHeaderExclusiveList.forEach(request.removeHeader, request) // Set Agent from Tunnel Data var tunnelFn = getTunnelFn(request) var tunnelOptions = constructTunnelOptions(request, proxyHeaders) request.agent = tunnelFn(tunnelOptions) return true } Tunnel.defaultProxyHeaderWhiteList = defaultProxyHeaderWhiteList Tunnel.defaultProxyHeaderExclusiveList = defaultProxyHeaderExclusiveList exports.Tunnel = Tunnel },{"tunnel-agent":300,"url":159}],266:[function(require,module,exports){ (function (process,Buffer){ 'use strict' var http = require('http') , https = require('https') , url = require('url') , util = require('util') , stream = require('stream') , zlib = require('zlib') , bl = require('bl') , hawk = require('hawk') , aws2 = require('aws-sign2') , aws4 = require('aws4') , httpSignature = require('http-signature') , mime = require('mime-types') , stringstream = require('stringstream') , caseless = require('caseless') , ForeverAgent = require('forever-agent') , FormData = require('form-data') , extend = require('extend') , isstream = require('isstream') , isTypedArray = require('is-typedarray').strict , helpers = require('./lib/helpers') , cookies = require('./lib/cookies') , getProxyFromURI = require('./lib/getProxyFromURI') , Querystring = require('./lib/querystring').Querystring , Har = require('./lib/har').Har , Auth = require('./lib/auth').Auth , OAuth = require('./lib/oauth').OAuth , Multipart = require('./lib/multipart').Multipart , Redirect = require('./lib/redirect').Redirect , Tunnel = require('./lib/tunnel').Tunnel var safeStringify = helpers.safeStringify , isReadStream = helpers.isReadStream , toBase64 = helpers.toBase64 , defer = helpers.defer , copy = helpers.copy , version = helpers.version , globalCookieJar = cookies.jar() var globalPool = {} function filterForNonReserved(reserved, options) { // Filter out properties that are not reserved. // Reserved values are passed in at call site. var object = {} for (var i in options) { var notReserved = (reserved.indexOf(i) === -1) if (notReserved) { object[i] = options[i] } } return object } function filterOutReservedFunctions(reserved, options) { // Filter out properties that are functions and are reserved. // Reserved values are passed in at call site. var object = {} for (var i in options) { var isReserved = !(reserved.indexOf(i) === -1) var isFunction = (typeof options[i] === 'function') if (!(isReserved && isFunction)) { object[i] = options[i] } } return object } // Return a simpler request object to allow serialization function requestToJSON() { var self = this return { uri: self.uri, method: self.method, headers: self.headers } } // Return a simpler response object to allow serialization function responseToJSON() { var self = this return { statusCode: self.statusCode, body: self.body, headers: self.headers, request: requestToJSON.call(self.request) } } function Request (options) { // if given the method property in options, set property explicitMethod to true // extend the Request instance with any non-reserved properties // remove any reserved functions from the options object // set Request instance to be readable and writable // call init var self = this // start with HAR, then override with additional options if (options.har) { self._har = new Har(self) options = self._har.options(options) } stream.Stream.call(self) var reserved = Object.keys(Request.prototype) var nonReserved = filterForNonReserved(reserved, options) extend(self, nonReserved) options = filterOutReservedFunctions(reserved, options) self.readable = true self.writable = true if (options.method) { self.explicitMethod = true } self._qs = new Querystring(self) self._auth = new Auth(self) self._oauth = new OAuth(self) self._multipart = new Multipart(self) self._redirect = new Redirect(self) self._tunnel = new Tunnel(self) self.init(options) } util.inherits(Request, stream.Stream) // Debugging Request.debug = process.env.NODE_DEBUG && /\brequest\b/.test(process.env.NODE_DEBUG) function debug() { if (Request.debug) { console.error('REQUEST %s', util.format.apply(util, arguments)) } } Request.prototype.debug = debug Request.prototype.init = function (options) { // init() contains all the code to setup the request object. // the actual outgoing request is not started until start() is called // this function is called from both the constructor and on redirect. var self = this if (!options) { options = {} } self.headers = self.headers ? copy(self.headers) : {} // Delete headers with value undefined since they break // ClientRequest.OutgoingMessage.setHeader in node 0.12 for (var headerName in self.headers) { if (typeof self.headers[headerName] === 'undefined') { delete self.headers[headerName] } } caseless.httpify(self, self.headers) if (!self.method) { self.method = options.method || 'GET' } if (!self.localAddress) { self.localAddress = options.localAddress } self._qs.init(options) debug(options) if (!self.pool && self.pool !== false) { self.pool = globalPool } self.dests = self.dests || [] self.__isRequestRequest = true // Protect against double callback if (!self._callback && self.callback) { self._callback = self.callback self.callback = function () { if (self._callbackCalled) { return // Print a warning maybe? } self._callbackCalled = true self._callback.apply(self, arguments) } self.on('error', self.callback.bind()) self.on('complete', self.callback.bind(self, null)) } // People use this property instead all the time, so support it if (!self.uri && self.url) { self.uri = self.url delete self.url } // If there's a baseUrl, then use it as the base URL (i.e. uri must be // specified as a relative path and is appended to baseUrl). if (self.baseUrl) { if (typeof self.baseUrl !== 'string') { return self.emit('error', new Error('options.baseUrl must be a string')) } if (typeof self.uri !== 'string') { return self.emit('error', new Error('options.uri must be a string when using options.baseUrl')) } if (self.uri.indexOf('//') === 0 || self.uri.indexOf('://') !== -1) { return self.emit('error', new Error('options.uri must be a path when using options.baseUrl')) } // Handle all cases to make sure that there's only one slash between // baseUrl and uri. var baseUrlEndsWithSlash = self.baseUrl.lastIndexOf('/') === self.baseUrl.length - 1 var uriStartsWithSlash = self.uri.indexOf('/') === 0 if (baseUrlEndsWithSlash && uriStartsWithSlash) { self.uri = self.baseUrl + self.uri.slice(1) } else if (baseUrlEndsWithSlash || uriStartsWithSlash) { self.uri = self.baseUrl + self.uri } else if (self.uri === '') { self.uri = self.baseUrl } else { self.uri = self.baseUrl + '/' + self.uri } delete self.baseUrl } // A URI is needed by this point, emit error if we haven't been able to get one if (!self.uri) { return self.emit('error', new Error('options.uri is a required argument')) } // If a string URI/URL was given, parse it into a URL object if (typeof self.uri === 'string') { self.uri = url.parse(self.uri) } // Some URL objects are not from a URL parsed string and need href added if (!self.uri.href) { self.uri.href = url.format(self.uri) } // DEPRECATED: Warning for users of the old Unix Sockets URL Scheme if (self.uri.protocol === 'unix:') { return self.emit('error', new Error('`unix://` URL scheme is no longer supported. Please use the format `http://unix:SOCKET:PATH`')) } // Support Unix Sockets if (self.uri.host === 'unix') { self.enableUnixSocket() } if (self.strictSSL === false) { self.rejectUnauthorized = false } if (!self.uri.pathname) {self.uri.pathname = '/'} if (!(self.uri.host || (self.uri.hostname && self.uri.port)) && !self.uri.isUnix) { // Invalid URI: it may generate lot of bad errors, like 'TypeError: Cannot call method `indexOf` of undefined' in CookieJar // Detect and reject it as soon as possible var faultyUri = url.format(self.uri) var message = 'Invalid URI "' + faultyUri + '"' if (Object.keys(options).length === 0) { // No option ? This can be the sign of a redirect // As this is a case where the user cannot do anything (they didn't call request directly with this URL) // they should be warned that it can be caused by a redirection (can save some hair) message += '. This can be caused by a crappy redirection.' } // This error was fatal self.abort() return self.emit('error', new Error(message)) } if (!self.hasOwnProperty('proxy')) { self.proxy = getProxyFromURI(self.uri) } self.tunnel = self._tunnel.isEnabled() if (self.proxy) { self._tunnel.setup(options) } self._redirect.onRequest(options) self.setHost = false if (!self.hasHeader('host')) { var hostHeaderName = self.originalHostHeaderName || 'host' self.setHeader(hostHeaderName, self.uri.hostname) if (self.uri.port) { if ( !(self.uri.port === 80 && self.uri.protocol === 'http:') && !(self.uri.port === 443 && self.uri.protocol === 'https:') ) { self.setHeader(hostHeaderName, self.getHeader('host') + (':' + self.uri.port) ) } } self.setHost = true } self.jar(self._jar || options.jar) if (!self.uri.port) { if (self.uri.protocol === 'http:') {self.uri.port = 80} else if (self.uri.protocol === 'https:') {self.uri.port = 443} } if (self.proxy && !self.tunnel) { self.port = self.proxy.port self.host = self.proxy.hostname } else { self.port = self.uri.port self.host = self.uri.hostname } if (options.form) { self.form(options.form) } if (options.formData) { var formData = options.formData var requestForm = self.form() var appendFormValue = function (key, value) { if (value && value.hasOwnProperty('value') && value.hasOwnProperty('options')) { requestForm.append(key, value.value, value.options) } else { requestForm.append(key, value) } } for (var formKey in formData) { if (formData.hasOwnProperty(formKey)) { var formValue = formData[formKey] if (formValue instanceof Array) { for (var j = 0; j < formValue.length; j++) { appendFormValue(formKey, formValue[j]) } } else { appendFormValue(formKey, formValue) } } } } if (options.qs) { self.qs(options.qs) } if (self.uri.path) { self.path = self.uri.path } else { self.path = self.uri.pathname + (self.uri.search || '') } if (self.path.length === 0) { self.path = '/' } // Auth must happen last in case signing is dependent on other headers if (options.aws) { self.aws(options.aws) } if (options.hawk) { self.hawk(options.hawk) } if (options.httpSignature) { self.httpSignature(options.httpSignature) } if (options.auth) { if (Object.prototype.hasOwnProperty.call(options.auth, 'username')) { options.auth.user = options.auth.username } if (Object.prototype.hasOwnProperty.call(options.auth, 'password')) { options.auth.pass = options.auth.password } self.auth( options.auth.user, options.auth.pass, options.auth.sendImmediately, options.auth.bearer ) } if (self.gzip && !self.hasHeader('accept-encoding')) { self.setHeader('accept-encoding', 'gzip, deflate') } if (self.uri.auth && !self.hasHeader('authorization')) { var uriAuthPieces = self.uri.auth.split(':').map(function(item) {return self._qs.unescape(item)}) self.auth(uriAuthPieces[0], uriAuthPieces.slice(1).join(':'), true) } if (!self.tunnel && self.proxy && self.proxy.auth && !self.hasHeader('proxy-authorization')) { var proxyAuthPieces = self.proxy.auth.split(':').map(function(item) {return self._qs.unescape(item)}) var authHeader = 'Basic ' + toBase64(proxyAuthPieces.join(':')) self.setHeader('proxy-authorization', authHeader) } if (self.proxy && !self.tunnel) { self.path = (self.uri.protocol + '//' + self.uri.host + self.path) } if (options.json) { self.json(options.json) } if (options.multipart) { self.multipart(options.multipart) } if (options.time) { self.timing = true self.elapsedTime = self.elapsedTime || 0 } function setContentLength () { if (isTypedArray(self.body)) { self.body = new Buffer(self.body) } if (!self.hasHeader('content-length')) { var length if (typeof self.body === 'string') { length = Buffer.byteLength(self.body) } else if (Array.isArray(self.body)) { length = self.body.reduce(function (a, b) {return a + b.length}, 0) } else { length = self.body.length } if (length) { self.setHeader('content-length', length) } else { self.emit('error', new Error('Argument error, options.body.')) } } } if (self.body && !isstream(self.body)) { setContentLength() } if (options.oauth) { self.oauth(options.oauth) } else if (self._oauth.params && self.hasHeader('authorization')) { self.oauth(self._oauth.params) } var protocol = self.proxy && !self.tunnel ? self.proxy.protocol : self.uri.protocol , defaultModules = {'http:':http, 'https:':https} , httpModules = self.httpModules || {} self.httpModule = httpModules[protocol] || defaultModules[protocol] if (!self.httpModule) { return self.emit('error', new Error('Invalid protocol: ' + protocol)) } if (options.ca) { self.ca = options.ca } if (!self.agent) { if (options.agentOptions) { self.agentOptions = options.agentOptions } if (options.agentClass) { self.agentClass = options.agentClass } else if (options.forever) { var v = version() // use ForeverAgent in node 0.10- only if (v.major === 0 && v.minor <= 10) { self.agentClass = protocol === 'http:' ? ForeverAgent : ForeverAgent.SSL } else { self.agentClass = self.httpModule.Agent self.agentOptions = self.agentOptions || {} self.agentOptions.keepAlive = true } } else { self.agentClass = self.httpModule.Agent } } if (self.pool === false) { self.agent = false } else { self.agent = self.agent || self.getNewAgent() } self.on('pipe', function (src) { if (self.ntick && self._started) { self.emit('error', new Error('You cannot pipe to this stream after the outbound request has started.')) } self.src = src if (isReadStream(src)) { if (!self.hasHeader('content-type')) { self.setHeader('content-type', mime.lookup(src.path)) } } else { if (src.headers) { for (var i in src.headers) { if (!self.hasHeader(i)) { self.setHeader(i, src.headers[i]) } } } if (self._json && !self.hasHeader('content-type')) { self.setHeader('content-type', 'application/json') } if (src.method && !self.explicitMethod) { self.method = src.method } } // self.on('pipe', function () { // console.error('You have already piped to this stream. Pipeing twice is likely to break the request.') // }) }) defer(function () { if (self._aborted) { return } var end = function () { if (self._form) { if (!self._auth.hasAuth) { self._form.pipe(self) } else if (self._auth.hasAuth && self._auth.sentAuth) { self._form.pipe(self) } } if (self._multipart && self._multipart.chunked) { self._multipart.body.pipe(self) } if (self.body) { if (isstream(self.body)) { self.body.pipe(self) } else { setContentLength() if (Array.isArray(self.body)) { self.body.forEach(function (part) { self.write(part) }) } else { self.write(self.body) } self.end() } } else if (self.requestBodyStream) { console.warn('options.requestBodyStream is deprecated, please pass the request object to stream.pipe.') self.requestBodyStream.pipe(self) } else if (!self.src) { if (self._auth.hasAuth && !self._auth.sentAuth) { self.end() return } if (self.method !== 'GET' && typeof self.method !== 'undefined') { self.setHeader('content-length', 0) } self.end() } } if (self._form && !self.hasHeader('content-length')) { // Before ending the request, we had to compute the length of the whole form, asyncly self.setHeader(self._form.getHeaders(), true) self._form.getLength(function (err, length) { if (!err && !isNaN(length)) { self.setHeader('content-length', length) } end() }) } else { end() } self.ntick = true }) } Request.prototype.getNewAgent = function () { var self = this var Agent = self.agentClass var options = {} if (self.agentOptions) { for (var i in self.agentOptions) { options[i] = self.agentOptions[i] } } if (self.ca) { options.ca = self.ca } if (self.ciphers) { options.ciphers = self.ciphers } if (self.secureProtocol) { options.secureProtocol = self.secureProtocol } if (self.secureOptions) { options.secureOptions = self.secureOptions } if (typeof self.rejectUnauthorized !== 'undefined') { options.rejectUnauthorized = self.rejectUnauthorized } if (self.cert && self.key) { options.key = self.key options.cert = self.cert } if (self.pfx) { options.pfx = self.pfx } if (self.passphrase) { options.passphrase = self.passphrase } var poolKey = '' // different types of agents are in different pools if (Agent !== self.httpModule.Agent) { poolKey += Agent.name } // ca option is only relevant if proxy or destination are https var proxy = self.proxy if (typeof proxy === 'string') { proxy = url.parse(proxy) } var isHttps = (proxy && proxy.protocol === 'https:') || this.uri.protocol === 'https:' if (isHttps) { if (options.ca) { if (poolKey) { poolKey += ':' } poolKey += options.ca } if (typeof options.rejectUnauthorized !== 'undefined') { if (poolKey) { poolKey += ':' } poolKey += options.rejectUnauthorized } if (options.cert) { if (poolKey) { poolKey += ':' } poolKey += options.cert.toString('ascii') + options.key.toString('ascii') } if (options.pfx) { if (poolKey) { poolKey += ':' } poolKey += options.pfx.toString('ascii') } if (options.ciphers) { if (poolKey) { poolKey += ':' } poolKey += options.ciphers } if (options.secureProtocol) { if (poolKey) { poolKey += ':' } poolKey += options.secureProtocol } if (options.secureOptions) { if (poolKey) { poolKey += ':' } poolKey += options.secureOptions } } if (self.pool === globalPool && !poolKey && Object.keys(options).length === 0 && self.httpModule.globalAgent) { // not doing anything special. Use the globalAgent return self.httpModule.globalAgent } // we're using a stored agent. Make sure it's protocol-specific poolKey = self.uri.protocol + poolKey // generate a new agent for this setting if none yet exists if (!self.pool[poolKey]) { self.pool[poolKey] = new Agent(options) // properly set maxSockets on new agents if (self.pool.maxSockets) { self.pool[poolKey].maxSockets = self.pool.maxSockets } } return self.pool[poolKey] } Request.prototype.start = function () { // start() is called once we are ready to send the outgoing HTTP request. // this is usually called on the first write(), end() or on nextTick() var self = this if (self._aborted) { return } self._started = true self.method = self.method || 'GET' self.href = self.uri.href if (self.src && self.src.stat && self.src.stat.size && !self.hasHeader('content-length')) { self.setHeader('content-length', self.src.stat.size) } if (self._aws) { self.aws(self._aws, true) } // We have a method named auth, which is completely different from the http.request // auth option. If we don't remove it, we're gonna have a bad time. var reqOptions = copy(self) delete reqOptions.auth debug('make request', self.uri.href) try { self.req = self.httpModule.request(reqOptions) } catch (err) { self.emit('error', err) return } if (self.timing) { self.startTime = new Date().getTime() } if (self.timeout && !self.timeoutTimer) { var timeout = self.timeout < 0 ? 0 : self.timeout // Set a timeout in memory - this block will throw if the server takes more // than `timeout` to write the HTTP status and headers (corresponding to // the on('response') event on the client). NB: this measures wall-clock // time, not the time between bytes sent by the server. self.timeoutTimer = setTimeout(function () { var connectTimeout = self.req.socket && self.req.socket.readable === false self.abort() var e = new Error('ETIMEDOUT') e.code = 'ETIMEDOUT' e.connect = connectTimeout self.emit('error', e) }, timeout) if (self.req.setTimeout) { // only works on node 0.6+ // Set an additional timeout on the socket, via the `setsockopt` syscall. // This timeout sets the amount of time to wait *between* bytes sent // from the server, and may or may not correspond to the wall-clock time // elapsed from the start of the request. // // In particular, it's useful for erroring if the server fails to send // data halfway through streaming a response. self.req.setTimeout(timeout, function () { if (self.req) { self.req.abort() var e = new Error('ESOCKETTIMEDOUT') e.code = 'ESOCKETTIMEDOUT' e.connect = false self.emit('error', e) } }) } } self.req.on('response', self.onRequestResponse.bind(self)) self.req.on('error', self.onRequestError.bind(self)) self.req.on('drain', function() { self.emit('drain') }) self.req.on('socket', function(socket) { self.emit('socket', socket) }) self.emit('request', self.req) } Request.prototype.onRequestError = function (error) { var self = this if (self._aborted) { return } if (self.req && self.req._reusedSocket && error.code === 'ECONNRESET' && self.agent.addRequestNoreuse) { self.agent = { addRequest: self.agent.addRequestNoreuse.bind(self.agent) } self.start() self.req.end() return } if (self.timeout && self.timeoutTimer) { clearTimeout(self.timeoutTimer) self.timeoutTimer = null } self.emit('error', error) } Request.prototype.onRequestResponse = function (response) { var self = this debug('onRequestResponse', self.uri.href, response.statusCode, response.headers) response.on('end', function() { if (self.timing) { self.elapsedTime += (new Date().getTime() - self.startTime) debug('elapsed time', self.elapsedTime) response.elapsedTime = self.elapsedTime } debug('response end', self.uri.href, response.statusCode, response.headers) }) if (self._aborted) { debug('aborted', self.uri.href) response.resume() return } self.response = response response.request = self response.toJSON = responseToJSON // XXX This is different on 0.10, because SSL is strict by default if (self.httpModule === https && self.strictSSL && (!response.hasOwnProperty('socket') || !response.socket.authorized)) { debug('strict ssl error', self.uri.href) var sslErr = response.hasOwnProperty('socket') ? response.socket.authorizationError : self.uri.href + ' does not support SSL' self.emit('error', new Error('SSL Error: ' + sslErr)) return } // Save the original host before any redirect (if it changes, we need to // remove any authorization headers). Also remember the case of the header // name because lots of broken servers expect Host instead of host and we // want the caller to be able to specify this. self.originalHost = self.getHeader('host') if (!self.originalHostHeaderName) { self.originalHostHeaderName = self.hasHeader('host') } if (self.setHost) { self.removeHeader('host') } if (self.timeout && self.timeoutTimer) { clearTimeout(self.timeoutTimer) self.timeoutTimer = null } var targetCookieJar = (self._jar && self._jar.setCookie) ? self._jar : globalCookieJar var addCookie = function (cookie) { //set the cookie if it's domain in the href's domain. try { targetCookieJar.setCookie(cookie, self.uri.href, {ignoreError: true}) } catch (e) { self.emit('error', e) } } response.caseless = caseless(response.headers) if (response.caseless.has('set-cookie') && (!self._disableCookies)) { var headerName = response.caseless.has('set-cookie') if (Array.isArray(response.headers[headerName])) { response.headers[headerName].forEach(addCookie) } else { addCookie(response.headers[headerName]) } } if (self._redirect.onResponse(response)) { return // Ignore the rest of the response } else { // Be a good stream and emit end when the response is finished. // Hack to emit end on close because of a core bug that never fires end response.on('close', function () { if (!self._ended) { self.response.emit('end') } }) response.on('end', function () { self._ended = true }) var noBody = function (code) { return ( self.method === 'HEAD' // Informational || (code >= 100 && code < 200) // No Content || code === 204 // Not Modified || code === 304 ) } var responseContent if (self.gzip && !noBody(response.statusCode)) { var contentEncoding = response.headers['content-encoding'] || 'identity' contentEncoding = contentEncoding.trim().toLowerCase() if (contentEncoding === 'gzip') { responseContent = zlib.createGunzip() response.pipe(responseContent) } else if (contentEncoding === 'deflate') { responseContent = zlib.createInflate() response.pipe(responseContent) } else { // Since previous versions didn't check for Content-Encoding header, // ignore any invalid values to preserve backwards-compatibility if (contentEncoding !== 'identity') { debug('ignoring unrecognized Content-Encoding ' + contentEncoding) } responseContent = response } } else { responseContent = response } if (self.encoding) { if (self.dests.length !== 0) { console.error('Ignoring encoding parameter as this stream is being piped to another stream which makes the encoding option invalid.') } else if (responseContent.setEncoding) { responseContent.setEncoding(self.encoding) } else { // Should only occur on node pre-v0.9.4 (joyent/node@9b5abe5) with // zlib streams. // If/When support for 0.9.4 is dropped, this should be unnecessary. responseContent = responseContent.pipe(stringstream(self.encoding)) } } if (self._paused) { responseContent.pause() } self.responseContent = responseContent self.emit('response', response) self.dests.forEach(function (dest) { self.pipeDest(dest) }) responseContent.on('data', function (chunk) { self._destdata = true self.emit('data', chunk) }) responseContent.on('end', function (chunk) { self.emit('end', chunk) }) responseContent.on('error', function (error) { self.emit('error', error) }) responseContent.on('close', function () {self.emit('close')}) if (self.callback) { self.readResponseBody(response) } //if no callback else { self.on('end', function () { if (self._aborted) { debug('aborted', self.uri.href) return } self.emit('complete', response) }) } } debug('finish init function', self.uri.href) } Request.prototype.readResponseBody = function (response) { var self = this debug('reading response\'s body') var buffer = bl() , strings = [] self.on('data', function (chunk) { if (Buffer.isBuffer(chunk)) { buffer.append(chunk) } else { strings.push(chunk) } }) self.on('end', function () { debug('end event', self.uri.href) if (self._aborted) { debug('aborted', self.uri.href) // `buffer` is defined in the parent scope and used in a closure it exists for the life of the request. // This can lead to leaky behavior if the user retains a reference to the request object. buffer.destroy() return } if (buffer.length) { debug('has body', self.uri.href, buffer.length) if (self.encoding === null) { // response.body = buffer // can't move to this until https://github.com/rvagg/bl/issues/13 response.body = buffer.slice() } else { response.body = buffer.toString(self.encoding) } // `buffer` is defined in the parent scope and used in a closure it exists for the life of the Request. // This can lead to leaky behavior if the user retains a reference to the request object. buffer.destroy() } else if (strings.length) { // The UTF8 BOM [0xEF,0xBB,0xBF] is converted to [0xFE,0xFF] in the JS UTC16/UCS2 representation. // Strip this value out when the encoding is set to 'utf8', as upstream consumers won't expect it and it breaks JSON.parse(). if (self.encoding === 'utf8' && strings[0].length > 0 && strings[0][0] === '\uFEFF') { strings[0] = strings[0].substring(1) } response.body = strings.join('') } if (self._json) { try { response.body = JSON.parse(response.body, self._jsonReviver) } catch (e) { debug('invalid JSON received', self.uri.href) } } debug('emitting complete', self.uri.href) if (typeof response.body === 'undefined' && !self._json) { response.body = self.encoding === null ? new Buffer(0) : '' } self.emit('complete', response, response.body) }) } Request.prototype.abort = function () { var self = this self._aborted = true if (self.req) { self.req.abort() } else if (self.response) { self.response.destroy() } self.emit('abort') } Request.prototype.pipeDest = function (dest) { var self = this var response = self.response // Called after the response is received if (dest.headers && !dest.headersSent) { if (response.caseless.has('content-type')) { var ctname = response.caseless.has('content-type') if (dest.setHeader) { dest.setHeader(ctname, response.headers[ctname]) } else { dest.headers[ctname] = response.headers[ctname] } } if (response.caseless.has('content-length')) { var clname = response.caseless.has('content-length') if (dest.setHeader) { dest.setHeader(clname, response.headers[clname]) } else { dest.headers[clname] = response.headers[clname] } } } if (dest.setHeader && !dest.headersSent) { for (var i in response.headers) { // If the response content is being decoded, the Content-Encoding header // of the response doesn't represent the piped content, so don't pass it. if (!self.gzip || i !== 'content-encoding') { dest.setHeader(i, response.headers[i]) } } dest.statusCode = response.statusCode } if (self.pipefilter) { self.pipefilter(response, dest) } } Request.prototype.qs = function (q, clobber) { var self = this var base if (!clobber && self.uri.query) { base = self._qs.parse(self.uri.query) } else { base = {} } for (var i in q) { base[i] = q[i] } var qs = self._qs.stringify(base) if (qs === '') { return self } self.uri = url.parse(self.uri.href.split('?')[0] + '?' + qs) self.url = self.uri self.path = self.uri.path if (self.uri.host === 'unix') { self.enableUnixSocket() } return self } Request.prototype.form = function (form) { var self = this if (form) { if (!/^application\/x-www-form-urlencoded\b/.test(self.getHeader('content-type'))) { self.setHeader('content-type', 'application/x-www-form-urlencoded') } self.body = (typeof form === 'string') ? self._qs.rfc3986(form.toString('utf8')) : self._qs.stringify(form).toString('utf8') return self } // create form-data object self._form = new FormData() self._form.on('error', function(err) { err.message = 'form-data: ' + err.message self.emit('error', err) self.abort() }) return self._form } Request.prototype.multipart = function (multipart) { var self = this self._multipart.onRequest(multipart) if (!self._multipart.chunked) { self.body = self._multipart.body } return self } Request.prototype.json = function (val) { var self = this if (!self.hasHeader('accept')) { self.setHeader('accept', 'application/json') } if (typeof self.jsonReplacer === 'function') { self._jsonReplacer = self.jsonReplacer } self._json = true if (typeof val === 'boolean') { if (self.body !== undefined) { if (!/^application\/x-www-form-urlencoded\b/.test(self.getHeader('content-type'))) { self.body = safeStringify(self.body, self._jsonReplacer) } else { self.body = self._qs.rfc3986(self.body) } if (!self.hasHeader('content-type')) { self.setHeader('content-type', 'application/json') } } } else { self.body = safeStringify(val, self._jsonReplacer) if (!self.hasHeader('content-type')) { self.setHeader('content-type', 'application/json') } } if (typeof self.jsonReviver === 'function') { self._jsonReviver = self.jsonReviver } return self } Request.prototype.getHeader = function (name, headers) { var self = this var result, re, match if (!headers) { headers = self.headers } Object.keys(headers).forEach(function (key) { if (key.length !== name.length) { return } re = new RegExp(name, 'i') match = key.match(re) if (match) { result = headers[key] } }) return result } Request.prototype.enableUnixSocket = function () { // Get the socket & request paths from the URL var unixParts = this.uri.path.split(':') , host = unixParts[0] , path = unixParts[1] // Apply unix properties to request this.socketPath = host this.uri.pathname = path this.uri.path = path this.uri.host = host this.uri.hostname = host this.uri.isUnix = true } Request.prototype.auth = function (user, pass, sendImmediately, bearer) { var self = this self._auth.onRequest(user, pass, sendImmediately, bearer) return self } Request.prototype.aws = function (opts, now) { var self = this if (!now) { self._aws = opts return self } if (opts.sign_version == 4 || opts.sign_version == '4') { // use aws4 var options = { host: self.uri.host, path: self.uri.path, method: self.method, headers: { 'content-type': self.getHeader('content-type') || '' }, body: self.body } var signRes = aws4.sign(options, { accessKeyId: opts.key, secretAccessKey: opts.secret }) self.setHeader('authorization', signRes.headers.Authorization) self.setHeader('x-amz-date', signRes.headers['X-Amz-Date']) } else { // default: use aws-sign2 var date = new Date() self.setHeader('date', date.toUTCString()) var auth = { key: opts.key , secret: opts.secret , verb: self.method.toUpperCase() , date: date , contentType: self.getHeader('content-type') || '' , md5: self.getHeader('content-md5') || '' , amazonHeaders: aws2.canonicalizeHeaders(self.headers) } var path = self.uri.path if (opts.bucket && path) { auth.resource = '/' + opts.bucket + path } else if (opts.bucket && !path) { auth.resource = '/' + opts.bucket } else if (!opts.bucket && path) { auth.resource = path } else if (!opts.bucket && !path) { auth.resource = '/' } auth.resource = aws2.canonicalizeResource(auth.resource) self.setHeader('authorization', aws2.authorization(auth)) } return self } Request.prototype.httpSignature = function (opts) { var self = this httpSignature.signRequest({ getHeader: function(header) { return self.getHeader(header, self.headers) }, setHeader: function(header, value) { self.setHeader(header, value) }, method: self.method, path: self.path }, opts) debug('httpSignature authorization', self.getHeader('authorization')) return self } Request.prototype.hawk = function (opts) { var self = this self.setHeader('Authorization', hawk.client.header(self.uri, self.method, opts).field) } Request.prototype.oauth = function (_oauth) { var self = this self._oauth.onRequest(_oauth) return self } Request.prototype.jar = function (jar) { var self = this var cookies if (self._redirect.redirectsFollowed === 0) { self.originalCookieHeader = self.getHeader('cookie') } if (!jar) { // disable cookies cookies = false self._disableCookies = true } else { var targetCookieJar = (jar && jar.getCookieString) ? jar : globalCookieJar var urihref = self.uri.href //fetch cookie in the Specified host if (targetCookieJar) { cookies = targetCookieJar.getCookieString(urihref) } } //if need cookie and cookie is not empty if (cookies && cookies.length) { if (self.originalCookieHeader) { // Don't overwrite existing Cookie header self.setHeader('cookie', self.originalCookieHeader + '; ' + cookies) } else { self.setHeader('cookie', cookies) } } self._jar = jar return self } // Stream API Request.prototype.pipe = function (dest, opts) { var self = this if (self.response) { if (self._destdata) { self.emit('error', new Error('You cannot pipe after data has been emitted from the response.')) } else if (self._ended) { self.emit('error', new Error('You cannot pipe after the response has been ended.')) } else { stream.Stream.prototype.pipe.call(self, dest, opts) self.pipeDest(dest) return dest } } else { self.dests.push(dest) stream.Stream.prototype.pipe.call(self, dest, opts) return dest } } Request.prototype.write = function () { var self = this if (self._aborted) {return} if (!self._started) { self.start() } if (self.req) { return self.req.write.apply(self.req, arguments) } } Request.prototype.end = function (chunk) { var self = this if (self._aborted) {return} if (chunk) { self.write(chunk) } if (!self._started) { self.start() } if (self.req) { self.req.end() } } Request.prototype.pause = function () { var self = this if (!self.responseContent) { self._paused = true } else { self.responseContent.pause.apply(self.responseContent, arguments) } } Request.prototype.resume = function () { var self = this if (!self.responseContent) { self._paused = false } else { self.responseContent.resume.apply(self.responseContent, arguments) } } Request.prototype.destroy = function () { var self = this if (!self._ended) { self.end() } else if (self.response) { self.response.destroy() } } Request.defaultProxyHeaderWhiteList = Tunnel.defaultProxyHeaderWhiteList.slice() Request.defaultProxyHeaderExclusiveList = Tunnel.defaultProxyHeaderExclusiveList.slice() // Exports Request.prototype.toJSON = requestToJSON module.exports = Request }).call(this,require('_process'),require("buffer").Buffer) },{"./lib/auth":256,"./lib/cookies":257,"./lib/getProxyFromURI":258,"./lib/har":259,"./lib/helpers":260,"./lib/multipart":261,"./lib/oauth":262,"./lib/querystring":263,"./lib/redirect":264,"./lib/tunnel":265,"_process":120,"aws-sign2":173,"aws4":174,"bl":178,"buffer":49,"caseless":180,"extend":188,"forever-agent":190,"form-data":191,"hawk":214,"http":153,"http-signature":215,"https":94,"is-typedarray":224,"isstream":226,"mime-types":241,"stream":152,"stringstream":292,"url":159,"util":163,"zlib":46}],267:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. var algInfo = { 'dsa': { parts: ['p', 'q', 'g', 'y'], sizePart: 'p' }, 'rsa': { parts: ['e', 'n'], sizePart: 'n' }, 'ecdsa': { parts: ['curve', 'Q'], sizePart: 'Q' }, 'ed25519': { parts: ['R'], normalize: false, sizePart: 'R' } }; algInfo['curve25519'] = algInfo['ed25519']; var algPrivInfo = { 'dsa': { parts: ['p', 'q', 'g', 'y', 'x'] }, 'rsa': { parts: ['n', 'e', 'd', 'iqmp', 'p', 'q'] }, 'ecdsa': { parts: ['curve', 'Q', 'd'] }, 'ed25519': { parts: ['R', 'r'], normalize: false } }; algPrivInfo['curve25519'] = algPrivInfo['ed25519']; var hashAlgs = { 'md5': true, 'sha1': true, 'sha256': true, 'sha384': true, 'sha512': true }; /* * Taken from * http://csrc.nist.gov/groups/ST/toolkit/documents/dss/NISTReCur.pdf */ var curves = { 'nistp256': { size: 256, pkcs8oid: '1.2.840.10045.3.1.7', p: new Buffer(('00' + 'ffffffff 00000001 00000000 00000000' + '00000000 ffffffff ffffffff ffffffff'). replace(/ /g, ''), 'hex'), a: new Buffer(('00' + 'FFFFFFFF 00000001 00000000 00000000' + '00000000 FFFFFFFF FFFFFFFF FFFFFFFC'). replace(/ /g, ''), 'hex'), b: new Buffer(( '5ac635d8 aa3a93e7 b3ebbd55 769886bc' + '651d06b0 cc53b0f6 3bce3c3e 27d2604b'). replace(/ /g, ''), 'hex'), s: new Buffer(('00' + 'c49d3608 86e70493 6a6678e1 139d26b7' + '819f7e90'). replace(/ /g, ''), 'hex'), n: new Buffer(('00' + 'ffffffff 00000000 ffffffff ffffffff' + 'bce6faad a7179e84 f3b9cac2 fc632551'). replace(/ /g, ''), 'hex'), G: new Buffer(('04' + '6b17d1f2 e12c4247 f8bce6e5 63a440f2' + '77037d81 2deb33a0 f4a13945 d898c296' + '4fe342e2 fe1a7f9b 8ee7eb4a 7c0f9e16' + '2bce3357 6b315ece cbb64068 37bf51f5'). replace(/ /g, ''), 'hex') }, 'nistp384': { size: 384, pkcs8oid: '1.3.132.0.34', p: new Buffer(('00' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff ffffffff fffffffe' + 'ffffffff 00000000 00000000 ffffffff'). replace(/ /g, ''), 'hex'), a: new Buffer(('00' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFE' + 'FFFFFFFF 00000000 00000000 FFFFFFFC'). replace(/ /g, ''), 'hex'), b: new Buffer(( 'b3312fa7 e23ee7e4 988e056b e3f82d19' + '181d9c6e fe814112 0314088f 5013875a' + 'c656398d 8a2ed19d 2a85c8ed d3ec2aef'). replace(/ /g, ''), 'hex'), s: new Buffer(('00' + 'a335926a a319a27a 1d00896a 6773a482' + '7acdac73'). replace(/ /g, ''), 'hex'), n: new Buffer(('00' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff c7634d81 f4372ddf' + '581a0db2 48b0a77a ecec196a ccc52973'). replace(/ /g, ''), 'hex'), G: new Buffer(('04' + 'aa87ca22 be8b0537 8eb1c71e f320ad74' + '6e1d3b62 8ba79b98 59f741e0 82542a38' + '5502f25d bf55296c 3a545e38 72760ab7' + '3617de4a 96262c6f 5d9e98bf 9292dc29' + 'f8f41dbd 289a147c e9da3113 b5f0b8c0' + '0a60b1ce 1d7e819d 7a431d7c 90ea0e5f'). replace(/ /g, ''), 'hex') }, 'nistp521': { size: 521, pkcs8oid: '1.3.132.0.35', p: new Buffer(( '01ffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffff').replace(/ /g, ''), 'hex'), a: new Buffer(('01FF' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF' + 'FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFC'). replace(/ /g, ''), 'hex'), b: new Buffer(('51' + '953eb961 8e1c9a1f 929a21a0 b68540ee' + 'a2da725b 99b315f3 b8b48991 8ef109e1' + '56193951 ec7e937b 1652c0bd 3bb1bf07' + '3573df88 3d2c34f1 ef451fd4 6b503f00'). replace(/ /g, ''), 'hex'), s: new Buffer(('00' + 'd09e8800 291cb853 96cc6717 393284aa' + 'a0da64ba').replace(/ /g, ''), 'hex'), n: new Buffer(('01ff' + 'ffffffff ffffffff ffffffff ffffffff' + 'ffffffff ffffffff ffffffff fffffffa' + '51868783 bf2f966b 7fcc0148 f709a5d0' + '3bb5c9b8 899c47ae bb6fb71e 91386409'). replace(/ /g, ''), 'hex'), G: new Buffer(('04' + '00c6 858e06b7 0404e9cd 9e3ecb66 2395b442' + '9c648139 053fb521 f828af60 6b4d3dba' + 'a14b5e77 efe75928 fe1dc127 a2ffa8de' + '3348b3c1 856a429b f97e7e31 c2e5bd66' + '0118 39296a78 9a3bc004 5c8a5fb4 2c7d1bd9' + '98f54449 579b4468 17afbd17 273e662c' + '97ee7299 5ef42640 c550b901 3fad0761' + '353c7086 a272c240 88be9476 9fd16650'). replace(/ /g, ''), 'hex') } }; module.exports = { info: algInfo, privInfo: algPrivInfo, hashAlgs: hashAlgs, curves: curves }; }).call(this,require("buffer").Buffer) },{"buffer":49}],268:[function(require,module,exports){ (function (Buffer){ // Copyright 2016 Joyent, Inc. module.exports = Certificate; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var Fingerprint = require('./fingerprint'); var Signature = require('./signature'); var errs = require('./errors'); var util = require('util'); var utils = require('./utils'); var Key = require('./key'); var PrivateKey = require('./private-key'); var Identity = require('./identity'); var formats = {}; formats['openssh'] = require('./formats/openssh-cert'); formats['x509'] = require('./formats/x509'); formats['pem'] = require('./formats/x509-pem'); var CertificateParseError = errs.CertificateParseError; var InvalidAlgorithmError = errs.InvalidAlgorithmError; function Certificate(opts) { assert.object(opts, 'options'); assert.arrayOfObject(opts.subjects, 'options.subjects'); utils.assertCompatible(opts.subjects[0], Identity, [1, 0], 'options.subjects'); utils.assertCompatible(opts.subjectKey, Key, [1, 0], 'options.subjectKey'); utils.assertCompatible(opts.issuer, Identity, [1, 0], 'options.issuer'); if (opts.issuerKey !== undefined) { utils.assertCompatible(opts.issuerKey, Key, [1, 0], 'options.issuerKey'); } assert.object(opts.signatures, 'options.signatures'); assert.buffer(opts.serial, 'options.serial'); assert.date(opts.validFrom, 'options.validFrom'); assert.date(opts.validUntil, 'optons.validUntil'); this._hashCache = {}; this.subjects = opts.subjects; this.issuer = opts.issuer; this.subjectKey = opts.subjectKey; this.issuerKey = opts.issuerKey; this.signatures = opts.signatures; this.serial = opts.serial; this.validFrom = opts.validFrom; this.validUntil = opts.validUntil; } Certificate.formats = formats; Certificate.prototype.toBuffer = function (format, options) { if (format === undefined) format = 'x509'; assert.string(format, 'format'); assert.object(formats[format], 'formats[format]'); assert.optionalObject(options, 'options'); return (formats[format].write(this, options)); }; Certificate.prototype.toString = function (format, options) { if (format === undefined) format = 'pem'; return (this.toBuffer(format, options).toString()); }; Certificate.prototype.fingerprint = function (algo) { if (algo === undefined) algo = 'sha256'; assert.string(algo, 'algorithm'); var opts = { type: 'certificate', hash: this.hash(algo), algorithm: algo }; return (new Fingerprint(opts)); }; Certificate.prototype.hash = function (algo) { assert.string(algo, 'algorithm'); algo = algo.toLowerCase(); if (algs.hashAlgs[algo] === undefined) throw (new InvalidAlgorithmError(algo)); if (this._hashCache[algo]) return (this._hashCache[algo]); var hash = crypto.createHash(algo). update(this.toBuffer('x509')).digest(); this._hashCache[algo] = hash; return (hash); }; Certificate.prototype.isExpired = function (when) { if (when === undefined) when = new Date(); return (!((when.getTime() >= this.validFrom.getTime()) && (when.getTime() < this.validUntil.getTime()))); }; Certificate.prototype.isSignedBy = function (issuerCert) { utils.assertCompatible(issuerCert, Certificate, [1, 0], 'issuer'); if (!this.issuer.equals(issuerCert.subjects[0])) return (false); return (this.isSignedByKey(issuerCert.subjectKey)); }; Certificate.prototype.isSignedByKey = function (issuerKey) { utils.assertCompatible(issuerKey, Key, [1, 2], 'issuerKey'); if (this.issuerKey !== undefined) { return (this.issuerKey. fingerprint('sha512').matches(issuerKey)); } var fmt = Object.keys(this.signatures)[0]; var valid = formats[fmt].verify(this, issuerKey); if (valid) this.issuerKey = issuerKey; return (valid); }; Certificate.prototype.signWith = function (key) { utils.assertCompatible(key, PrivateKey, [1, 2], 'key'); var fmts = Object.keys(formats); var didOne = false; for (var i = 0; i < fmts.length; ++i) { if (fmts[i] !== 'pem') { var ret = formats[fmts[i]].sign(this, key); if (ret === true) didOne = true; } } if (!didOne) { throw (new Error('Failed to sign the certificate for any ' + 'available certificate formats')); } }; Certificate.createSelfSigned = function (subjectOrSubjects, key, options) { var subjects; if (Array.isArray(subjectOrSubjects)) subjects = subjectOrSubjects; else subjects = [subjectOrSubjects]; assert.arrayOfObject(subjects); subjects.forEach(function (subject) { utils.assertCompatible(subject, Identity, [1, 0], 'subject'); }); utils.assertCompatible(key, PrivateKey, [1, 2], 'private key'); assert.optionalObject(options, 'options'); if (options === undefined) options = {}; assert.optionalObject(options.validFrom, 'options.validFrom'); assert.optionalObject(options.validUntil, 'options.validUntil'); var validFrom = options.validFrom; var validUntil = options.validUntil; if (validFrom === undefined) validFrom = new Date(); if (validUntil === undefined) { assert.optionalNumber(options.lifetime, 'options.lifetime'); var lifetime = options.lifetime; if (lifetime === undefined) lifetime = 10*365*24*3600; validUntil = new Date(); validUntil.setTime(validUntil.getTime() + lifetime*1000); } assert.optionalBuffer(options.serial, 'options.serial'); var serial = options.serial; if (serial === undefined) serial = new Buffer('0000000000000001', 'hex'); var cert = new Certificate({ subjects: subjects, issuer: subjects[0], subjectKey: key.toPublic(), issuerKey: key.toPublic(), signatures: {}, serial: serial, validFrom: validFrom, validUntil: validUntil }); cert.signWith(key); return (cert); }; Certificate.create = function (subjectOrSubjects, key, issuer, issuerKey, options) { var subjects; if (Array.isArray(subjectOrSubjects)) subjects = subjectOrSubjects; else subjects = [subjectOrSubjects]; assert.arrayOfObject(subjects); subjects.forEach(function (subject) { utils.assertCompatible(subject, Identity, [1, 0], 'subject'); }); utils.assertCompatible(key, Key, [1, 0], 'key'); if (PrivateKey.isPrivateKey(key)) key = key.toPublic(); utils.assertCompatible(issuer, Identity, [1, 0], 'issuer'); utils.assertCompatible(issuerKey, PrivateKey, [1, 2], 'issuer key'); assert.optionalObject(options, 'options'); if (options === undefined) options = {}; assert.optionalObject(options.validFrom, 'options.validFrom'); assert.optionalObject(options.validUntil, 'options.validUntil'); var validFrom = options.validFrom; var validUntil = options.validUntil; if (validFrom === undefined) validFrom = new Date(); if (validUntil === undefined) { assert.optionalNumber(options.lifetime, 'options.lifetime'); var lifetime = options.lifetime; if (lifetime === undefined) lifetime = 10*365*24*3600; validUntil = new Date(); validUntil.setTime(validUntil.getTime() + lifetime*1000); } assert.optionalBuffer(options.serial, 'options.serial'); var serial = options.serial; if (serial === undefined) serial = new Buffer('0000000000000001', 'hex'); var cert = new Certificate({ subjects: subjects, issuer: issuer, subjectKey: key, issuerKey: issuerKey.toPublic(), signatures: {}, serial: serial, validFrom: validFrom, validUntil: validUntil }); cert.signWith(issuerKey); return (cert); }; Certificate.parse = function (data, format, options) { if (typeof (data) !== 'string') assert.buffer(data, 'data'); if (format === undefined) format = 'auto'; assert.string(format, 'format'); if (typeof (options) === 'string') options = { filename: options }; assert.optionalObject(options, 'options'); if (options === undefined) options = {}; assert.optionalString(options.filename, 'options.filename'); if (options.filename === undefined) options.filename = '(unnamed)'; assert.object(formats[format], 'formats[format]'); try { var k = formats[format].read(data, options); return (k); } catch (e) { throw (new CertificateParseError(options.filename, format, e)); } }; Certificate.isCertificate = function (obj, ver) { return (utils.isCompatible(obj, Certificate, ver)); }; /* * API versions for Certificate: * [1,0] -- initial ver */ Certificate.prototype._sshpkApiVersion = [1, 0]; Certificate._oldVersionDetect = function (obj) { return ([1, 0]); }; }).call(this,require("buffer").Buffer) },{"./algs":267,"./errors":271,"./fingerprint":272,"./formats/openssh-cert":274,"./formats/x509":282,"./formats/x509-pem":281,"./identity":283,"./key":285,"./private-key":286,"./signature":287,"./utils":289,"assert-plus":290,"buffer":49,"crypto":58,"util":163}],269:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = DiffieHellman; var assert = require('assert-plus'); var crypto = require('crypto'); var algs = require('./algs'); var utils = require('./utils'); var ed; var Key = require('./key'); var PrivateKey = require('./private-key'); var CRYPTO_HAVE_ECDH = (crypto.createECDH !== undefined); var ecdh, ec, jsbn; function DiffieHellman(key) { utils.assertCompatible(key, Key, [1, 4], 'key'); this._isPriv = PrivateKey.isPrivateKey(key, [1, 3]); this._algo = key.type; this._curve = key.curve; this._key = key; if (key.type === 'dsa') { if (!CRYPTO_HAVE_ECDH) { throw (new Error('Due to bugs in the node 0.10 ' + 'crypto API, node 0.12.x or later is required ' + 'to use DH')); } this._dh = crypto.createDiffieHellman( key.part.p.data, undefined, key.part.g.data, undefined); this._p = key.part.p; this._g = key.part.g; if (this._isPriv) this._dh.setPrivateKey(key.part.x.data); this._dh.setPublicKey(key.part.y.data); } else if (key.type === 'ecdsa') { if (!CRYPTO_HAVE_ECDH) { if (ecdh === undefined) ecdh = require('ecc-jsbn'); if (ec === undefined) ec = require('ecc-jsbn/lib/ec'); if (jsbn === undefined) jsbn = require('jsbn').BigInteger; this._ecParams = new X9ECParameters(this._curve); if (this._isPriv) { this._priv = new ECPrivate( this._ecParams, key.part.d.data); } return; } var curve = { 'nistp256': 'prime256v1', 'nistp384': 'secp384r1', 'nistp521': 'secp521r1' }[key.curve]; this._dh = crypto.createECDH(curve); if (typeof (this._dh) !== 'object' || typeof (this._dh.setPrivateKey) !== 'function') { CRYPTO_HAVE_ECDH = false; DiffieHellman.call(this, key); return; } if (this._isPriv) this._dh.setPrivateKey(key.part.d.data); this._dh.setPublicKey(key.part.Q.data); } else if (key.type === 'curve25519') { if (ed === undefined) ed = require('jodid25519'); if (this._isPriv) { this._priv = key.part.r.data; if (this._priv[0] === 0x00) this._priv = this._priv.slice(1); this._priv = this._priv.slice(0, 32); } } else { throw (new Error('DH not supported for ' + key.type + ' keys')); } } DiffieHellman.prototype.getPublicKey = function () { if (this._isPriv) return (this._key.toPublic()); return (this._key); }; DiffieHellman.prototype.getPrivateKey = function () { if (this._isPriv) return (this._key); else return (undefined); }; DiffieHellman.prototype.getKey = DiffieHellman.prototype.getPrivateKey; DiffieHellman.prototype._keyCheck = function (pk, isPub) { assert.object(pk, 'key'); if (!isPub) utils.assertCompatible(pk, PrivateKey, [1, 3], 'key'); utils.assertCompatible(pk, Key, [1, 4], 'key'); if (pk.type !== this._algo) { throw (new Error('A ' + pk.type + ' key cannot be used in ' + this._algo + ' Diffie-Hellman')); } if (pk.curve !== this._curve) { throw (new Error('A key from the ' + pk.curve + ' curve ' + 'cannot be used with a ' + this._curve + ' Diffie-Hellman')); } if (pk.type === 'dsa') { assert.deepEqual(pk.part.p, this._p, 'DSA key prime does not match'); assert.deepEqual(pk.part.g, this._g, 'DSA key generator does not match'); } }; DiffieHellman.prototype.setKey = function (pk) { this._keyCheck(pk); if (pk.type === 'dsa') { this._dh.setPrivateKey(pk.part.x.data); this._dh.setPublicKey(pk.part.y.data); } else if (pk.type === 'ecdsa') { if (CRYPTO_HAVE_ECDH) { this._dh.setPrivateKey(pk.part.d.data); this._dh.setPublicKey(pk.part.Q.data); } else { this._priv = new ECPrivate( this._ecParams, pk.part.d.data); } } else if (pk.type === 'curve25519') { this._priv = pk.part.r.data; if (this._priv[0] === 0x00) this._priv = this._priv.slice(1); this._priv = this._priv.slice(0, 32); } this._key = pk; this._isPriv = true; }; DiffieHellman.prototype.setPrivateKey = DiffieHellman.prototype.setKey; DiffieHellman.prototype.computeSecret = function (otherpk) { this._keyCheck(otherpk, true); if (!this._isPriv) throw (new Error('DH exchange has not been initialized with ' + 'a private key yet')); var pub; if (this._algo === 'dsa') { return (this._dh.computeSecret( otherpk.part.y.data)); } else if (this._algo === 'ecdsa') { if (CRYPTO_HAVE_ECDH) { return (this._dh.computeSecret( otherpk.part.Q.data)); } else { pub = new ECPublic( this._ecParams, otherpk.part.Q.data); return (this._priv.deriveSharedSecret(pub)); } } else if (this._algo === 'curve25519') { pub = otherpk.part.R.data; if (pub[0] === 0x00) pub = pub.slice(1); var secret = ed.dh.computeKey( this._priv.toString('binary'), pub.toString('binary')); return (new Buffer(secret, 'binary')); } throw (new Error('Invalid algorithm: ' + this._algo)); }; DiffieHellman.prototype.generateKey = function () { var parts = []; var priv, pub; if (this._algo === 'dsa') { this._dh.generateKeys(); parts.push({name: 'p', data: this._p.data}); parts.push({name: 'q', data: this._key.part.q.data}); parts.push({name: 'g', data: this._g.data}); parts.push({name: 'y', data: this._dh.getPublicKey()}); parts.push({name: 'x', data: this._dh.getPrivateKey()}); this._key = new PrivateKey({ type: 'dsa', parts: parts }); this._isPriv = true; return (this._key); } else if (this._algo === 'ecdsa') { if (CRYPTO_HAVE_ECDH) { this._dh.generateKeys(); parts.push({name: 'curve', data: new Buffer(this._curve)}); parts.push({name: 'Q', data: this._dh.getPublicKey()}); parts.push({name: 'd', data: this._dh.getPrivateKey()}); this._key = new PrivateKey({ type: 'ecdsa', curve: this._curve, parts: parts }); this._isPriv = true; return (this._key); } else { var n = this._ecParams.getN(); var r = new jsbn(crypto.randomBytes(n.bitLength())); var n1 = n.subtract(jsbn.ONE); priv = r.mod(n1).add(jsbn.ONE); pub = this._ecParams.getG().multiply(priv); priv = new Buffer(priv.toByteArray()); pub = new Buffer(this._ecParams.getCurve(). encodePointHex(pub), 'hex'); this._priv = new ECPrivate(this._ecParams, priv); parts.push({name: 'curve', data: new Buffer(this._curve)}); parts.push({name: 'Q', data: pub}); parts.push({name: 'd', data: priv}); this._key = new PrivateKey({ type: 'ecdsa', curve: this._curve, parts: parts }); this._isPriv = true; return (this._key); } } else if (this._algo === 'curve25519') { priv = ed.dh.generateKey(); pub = ed.dh.publicKey(priv); this._priv = priv = new Buffer(priv, 'binary'); pub = new Buffer(pub, 'binary'); parts.push({name: 'R', data: pub}); parts.push({name: 'r', data: Buffer.concat([priv, pub])}); this._key = new PrivateKey({ type: 'curve25519', parts: parts }); this._isPriv = true; return (this._key); } throw (new Error('Invalid algorithm: ' + this._algo)); }; DiffieHellman.prototype.generateKeys = DiffieHellman.prototype.generateKey; /* These are helpers for using ecc-jsbn (for node 0.10 compatibility). */ function X9ECParameters(name) { var params = algs.curves[name]; assert.object(params); var p = new jsbn(params.p); var a = new jsbn(params.a); var b = new jsbn(params.b); var n = new jsbn(params.n); var h = jsbn.ONE; var curve = new ec.ECCurveFp(p, a, b); var G = curve.decodePointHex(params.G.toString('hex')); this.curve = curve; this.g = G; this.n = n; this.h = h; } X9ECParameters.prototype.getCurve = function () { return (this.curve); }; X9ECParameters.prototype.getG = function () { return (this.g); }; X9ECParameters.prototype.getN = function () { return (this.n); }; X9ECParameters.prototype.getH = function () { return (this.h); }; function ECPublic(params, buffer) { this._params = params; if (buffer[0] === 0x00) buffer = buffer.slice(1); this._pub = params.getCurve().decodePointHex(buffer.toString('hex')); } function ECPrivate(params, buffer) { this._params = params; this._priv = new jsbn(utils.mpNormalize(buffer)); } ECPrivate.prototype.deriveSharedSecret = function (pubKey) { assert.ok(pubKey instanceof ECPublic); var S = pubKey._pub.multiply(this._priv); return (new Buffer(S.getX().toBigInteger().toByteArray())); }; }).call(this,require("buffer").Buffer) },{"./algs":267,"./key":285,"./private-key":286,"./utils":289,"assert-plus":290,"buffer":49,"crypto":58,"ecc-jsbn":185,"ecc-jsbn/lib/ec":186,"jodid25519":227,"jsbn":233}],270:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { Verifier: Verifier, Signer: Signer }; var nacl; var stream = require('stream'); var util = require('util'); var assert = require('assert-plus'); var Signature = require('./signature'); function Verifier(key, hashAlgo) { if (nacl === undefined) nacl = require('tweetnacl'); if (hashAlgo.toLowerCase() !== 'sha512') throw (new Error('ED25519 only supports the use of ' + 'SHA-512 hashes')); this.key = key; this.chunks = []; stream.Writable.call(this, {}); } util.inherits(Verifier, stream.Writable); Verifier.prototype._write = function (chunk, enc, cb) { this.chunks.push(chunk); cb(); }; Verifier.prototype.update = function (chunk) { if (typeof (chunk) === 'string') chunk = new Buffer(chunk, 'binary'); this.chunks.push(chunk); }; Verifier.prototype.verify = function (signature, fmt) { var sig; if (Signature.isSignature(signature, [2, 0])) { if (signature.type !== 'ed25519') return (false); sig = signature.toBuffer('raw'); } else if (typeof (signature) === 'string') { sig = new Buffer(signature, 'base64'); } else if (Signature.isSignature(signature, [1, 0])) { throw (new Error('signature was created by too old ' + 'a version of sshpk and cannot be verified')); } assert.buffer(sig); return (nacl.sign.detached.verify( new Uint8Array(Buffer.concat(this.chunks)), new Uint8Array(sig), new Uint8Array(this.key.part.R.data))); }; function Signer(key, hashAlgo) { if (nacl === undefined) nacl = require('tweetnacl'); if (hashAlgo.toLowerCase() !== 'sha512') throw (new Error('ED25519 only supports the use of ' + 'SHA-512 hashes')); this.key = key; this.chunks = []; stream.Writable.call(this, {}); } util.inherits(Signer, stream.Writable); Signer.prototype._write = function (chunk, enc, cb) { this.chunks.push(chunk); cb(); }; Signer.prototype.update = function (chunk) { if (typeof (chunk) === 'string') chunk = new Buffer(chunk, 'binary'); this.chunks.push(chunk); }; Signer.prototype.sign = function () { var sig = nacl.sign.detached( new Uint8Array(Buffer.concat(this.chunks)), new Uint8Array(this.key.part.r.data)); var sigBuf = new Buffer(sig); var sigObj = Signature.parse(sigBuf, 'ed25519', 'raw'); sigObj.hashAlgorithm = 'sha512'; return (sigObj); }; }).call(this,require("buffer").Buffer) },{"./signature":287,"assert-plus":290,"buffer":49,"stream":152,"tweetnacl":301,"util":163}],271:[function(require,module,exports){ // Copyright 2015 Joyent, Inc. var assert = require('assert-plus'); var util = require('util'); function FingerprintFormatError(fp, format) { if (Error.captureStackTrace) Error.captureStackTrace(this, FingerprintFormatError); this.name = 'FingerprintFormatError'; this.fingerprint = fp; this.format = format; this.message = 'Fingerprint format is not supported, or is invalid: '; if (fp !== undefined) this.message += ' fingerprint = ' + fp; if (format !== undefined) this.message += ' format = ' + format; } util.inherits(FingerprintFormatError, Error); function InvalidAlgorithmError(alg) { if (Error.captureStackTrace) Error.captureStackTrace(this, InvalidAlgorithmError); this.name = 'InvalidAlgorithmError'; this.algorithm = alg; this.message = 'Algorithm "' + alg + '" is not supported'; } util.inherits(InvalidAlgorithmError, Error); function KeyParseError(name, format, innerErr) { if (Error.captureStackTrace) Error.captureStackTrace(this, KeyParseError); this.name = 'KeyParseError'; this.format = format; this.keyName = name; this.innerErr = innerErr; this.message = 'Failed to parse ' + name + ' as a valid ' + format + ' format key: ' + innerErr.message; } util.inherits(KeyParseError, Error); function SignatureParseError(type, format, innerErr) { if (Error.captureStackTrace) Error.captureStackTrace(this, SignatureParseError); this.name = 'SignatureParseError'; this.type = type; this.format = format; this.innerErr = innerErr; this.message = 'Failed to parse the given data as a ' + type + ' signature in ' + format + ' format: ' + innerErr.message; } util.inherits(SignatureParseError, Error); function CertificateParseError(name, format, innerErr) { if (Error.captureStackTrace) Error.captureStackTrace(this, CertificateParseError); this.name = 'CertificateParseError'; this.format = format; this.certName = name; this.innerErr = innerErr; this.message = 'Failed to parse ' + name + ' as a valid ' + format + ' format certificate: ' + innerErr.message; } util.inherits(CertificateParseError, Error); function KeyEncryptedError(name, format) { if (Error.captureStackTrace) Error.captureStackTrace(this, KeyEncryptedError); this.name = 'KeyEncryptedError'; this.format = format; this.keyName = name; this.message = 'The ' + format + ' format key ' + name + ' is ' + 'encrypted (password-protected), and no passphrase was ' + 'provided in `options`'; } util.inherits(KeyEncryptedError, Error); module.exports = { FingerprintFormatError: FingerprintFormatError, InvalidAlgorithmError: InvalidAlgorithmError, KeyParseError: KeyParseError, SignatureParseError: SignatureParseError, KeyEncryptedError: KeyEncryptedError, CertificateParseError: CertificateParseError }; },{"assert-plus":290,"util":163}],272:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = Fingerprint; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var errs = require('./errors'); var Key = require('./key'); var Certificate = require('./certificate'); var utils = require('./utils'); var FingerprintFormatError = errs.FingerprintFormatError; var InvalidAlgorithmError = errs.InvalidAlgorithmError; function Fingerprint(opts) { assert.object(opts, 'options'); assert.string(opts.type, 'options.type'); assert.buffer(opts.hash, 'options.hash'); assert.string(opts.algorithm, 'options.algorithm'); this.algorithm = opts.algorithm.toLowerCase(); if (algs.hashAlgs[this.algorithm] !== true) throw (new InvalidAlgorithmError(this.algorithm)); this.hash = opts.hash; this.type = opts.type; } Fingerprint.prototype.toString = function (format) { if (format === undefined) { if (this.algorithm === 'md5') format = 'hex'; else format = 'base64'; } assert.string(format); switch (format) { case 'hex': return (addColons(this.hash.toString('hex'))); case 'base64': return (sshBase64Format(this.algorithm, this.hash.toString('base64'))); default: throw (new FingerprintFormatError(undefined, format)); } }; Fingerprint.prototype.matches = function (other) { assert.object(other, 'key or certificate'); if (this.type === 'key') { utils.assertCompatible(other, Key, [1, 0], 'key'); } else { utils.assertCompatible(other, Certificate, [1, 0], 'certificate'); } var theirHash = other.hash(this.algorithm); var theirHash2 = crypto.createHash(this.algorithm). update(theirHash).digest('base64'); if (this.hash2 === undefined) this.hash2 = crypto.createHash(this.algorithm). update(this.hash).digest('base64'); return (this.hash2 === theirHash2); }; Fingerprint.parse = function (fp, options) { assert.string(fp, 'fingerprint'); var alg, hash, enAlgs; if (Array.isArray(options)) { enAlgs = options; options = {}; } assert.optionalObject(options, 'options'); if (options === undefined) options = {}; if (options.enAlgs !== undefined) enAlgs = options.enAlgs; assert.optionalArrayOfString(enAlgs, 'algorithms'); var parts = fp.split(':'); if (parts.length == 2) { alg = parts[0].toLowerCase(); /*JSSTYLED*/ var base64RE = /^[A-Za-z0-9+\/=]+$/; if (!base64RE.test(parts[1])) throw (new FingerprintFormatError(fp)); try { hash = new Buffer(parts[1], 'base64'); } catch (e) { throw (new FingerprintFormatError(fp)); } } else if (parts.length > 2) { alg = 'md5'; if (parts[0].toLowerCase() === 'md5') parts = parts.slice(1); parts = parts.join(''); /*JSSTYLED*/ var md5RE = /^[a-fA-F0-9]+$/; if (!md5RE.test(parts)) throw (new FingerprintFormatError(fp)); try { hash = new Buffer(parts, 'hex'); } catch (e) { throw (new FingerprintFormatError(fp)); } } if (alg === undefined) throw (new FingerprintFormatError(fp)); if (algs.hashAlgs[alg] === undefined) throw (new InvalidAlgorithmError(alg)); if (enAlgs !== undefined) { enAlgs = enAlgs.map(function (a) { return a.toLowerCase(); }); if (enAlgs.indexOf(alg) === -1) throw (new InvalidAlgorithmError(alg)); } return (new Fingerprint({ algorithm: alg, hash: hash, type: options.type || 'key' })); }; function addColons(s) { /*JSSTYLED*/ return (s.replace(/(.{2})(?=.)/g, '$1:')); } function base64Strip(s) { /*JSSTYLED*/ return (s.replace(/=*$/, '')); } function sshBase64Format(alg, h) { return (alg.toUpperCase() + ':' + base64Strip(h)); } Fingerprint.isFingerprint = function (obj, ver) { return (utils.isCompatible(obj, Fingerprint, ver)); }; /* * API versions for Fingerprint: * [1,0] -- initial ver * [1,1] -- first tagged ver */ Fingerprint.prototype._sshpkApiVersion = [1, 1]; Fingerprint._oldVersionDetect = function (obj) { assert.func(obj.toString); assert.func(obj.matches); return ([1, 0]); }; }).call(this,require("buffer").Buffer) },{"./algs":267,"./certificate":268,"./errors":271,"./key":285,"./utils":289,"assert-plus":290,"buffer":49,"crypto":58}],273:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, write: write }; var assert = require('assert-plus'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); var ssh = require('./ssh'); var rfc4253 = require('./rfc4253'); function read(buf, options) { if (typeof (buf) === 'string') { if (buf.trim().match(/^[-]+[ ]*BEGIN/)) return (pem.read(buf, options)); if (buf.match(/^\s*ssh-[a-z]/)) return (ssh.read(buf, options)); if (buf.match(/^\s*ecdsa-/)) return (ssh.read(buf, options)); buf = new Buffer(buf, 'binary'); } else { assert.buffer(buf); if (findPEMHeader(buf)) return (pem.read(buf, options)); if (findSSHHeader(buf)) return (ssh.read(buf, options)); } if (buf.readUInt32BE(0) < buf.length) return (rfc4253.read(buf, options)); throw (new Error('Failed to auto-detect format of key')); } function findSSHHeader(buf) { var offset = 0; while (offset < buf.length && (buf[offset] === 32 || buf[offset] === 10 || buf[offset] === 9)) ++offset; if (offset + 4 <= buf.length && buf.slice(offset, offset + 4).toString('ascii') === 'ssh-') return (true); if (offset + 6 <= buf.length && buf.slice(offset, offset + 6).toString('ascii') === 'ecdsa-') return (true); return (false); } function findPEMHeader(buf) { var offset = 0; while (offset < buf.length && (buf[offset] === 32 || buf[offset] === 10)) ++offset; if (buf[offset] !== 45) return (false); while (offset < buf.length && (buf[offset] === 45)) ++offset; while (offset < buf.length && (buf[offset] === 32)) ++offset; if (offset + 5 > buf.length || buf.slice(offset, offset + 5).toString('ascii') !== 'BEGIN') return (false); return (true); } function write(key, options) { throw (new Error('"auto" format cannot be used for writing')); } }).call(this,require("buffer").Buffer) },{"../key":285,"../private-key":286,"../utils":289,"./pem":275,"./rfc4253":278,"./ssh":280,"assert-plus":290,"buffer":49}],274:[function(require,module,exports){ (function (Buffer){ // Copyright 2016 Joyent, Inc. module.exports = { read: read, verify: verify, sign: sign, write: write, /* Internal private API */ fromBuffer: fromBuffer, toBuffer: toBuffer }; var assert = require('assert-plus'); var SSHBuffer = require('../ssh-buffer'); var crypto = require('crypto'); var algs = require('../algs'); var Key = require('../key'); var PrivateKey = require('../private-key'); var Identity = require('../identity'); var rfc4253 = require('./rfc4253'); var Signature = require('../signature'); var utils = require('../utils'); var Certificate = require('../certificate'); function verify(cert, key) { /* * We always give an issuerKey, so if our verify() is being called then * there was no signature. Return false. */ return (false); } var TYPES = { 'user': 1, 'host': 2 }; Object.keys(TYPES).forEach(function (k) { TYPES[TYPES[k]] = k; }); var ECDSA_ALGO = /^ecdsa-sha2-([^@-]+)-cert-v01@openssh.com$/; function read(buf, options) { if (Buffer.isBuffer(buf)) buf = buf.toString('ascii'); var parts = buf.trim().split(/[ \t\n]+/g); if (parts.length < 2 || parts.length > 3) throw (new Error('Not a valid SSH certificate line')); var algo = parts[0]; var data = parts[1]; data = new Buffer(data, 'base64'); return (fromBuffer(data, algo)); } function fromBuffer(data, algo, partial) { var sshbuf = new SSHBuffer({ buffer: data }); var innerAlgo = sshbuf.readString(); if (algo !== undefined && innerAlgo !== algo) throw (new Error('SSH certificate algorithm mismatch')); if (algo === undefined) algo = innerAlgo; var cert = {}; cert.signatures = {}; cert.signatures.openssh = {}; cert.signatures.openssh.nonce = sshbuf.readBuffer(); var key = {}; var parts = (key.parts = []); key.type = getAlg(algo); var partCount = algs.info[key.type].parts.length; while (parts.length < partCount) parts.push(sshbuf.readPart()); assert.ok(parts.length >= 1, 'key must have at least one part'); var algInfo = algs.info[key.type]; if (key.type === 'ecdsa') { var res = ECDSA_ALGO.exec(algo); assert.ok(res !== null); assert.strictEqual(res[1], parts[0].data.toString()); } for (var i = 0; i < algInfo.parts.length; ++i) { parts[i].name = algInfo.parts[i]; if (parts[i].name !== 'curve' && algInfo.normalize !== false) { var p = parts[i]; p.data = utils.mpNormalize(p.data); } } cert.subjectKey = new Key(key); cert.serial = sshbuf.readInt64(); var type = TYPES[sshbuf.readInt()]; assert.string(type, 'valid cert type'); cert.signatures.openssh.keyId = sshbuf.readString(); var principals = []; var pbuf = sshbuf.readBuffer(); var psshbuf = new SSHBuffer({ buffer: pbuf }); while (!psshbuf.atEnd()) principals.push(psshbuf.readString()); if (principals.length === 0) principals = ['*']; cert.subjects = principals.map(function (pr) { if (type === 'user') return (Identity.forUser(pr)); else if (type === 'host') return (Identity.forHost(pr)); throw (new Error('Unknown identity type ' + type)); }); cert.validFrom = int64ToDate(sshbuf.readInt64()); cert.validUntil = int64ToDate(sshbuf.readInt64()); cert.signatures.openssh.critical = sshbuf.readBuffer(); cert.signatures.openssh.exts = sshbuf.readBuffer(); /* reserved */ sshbuf.readBuffer(); var signingKeyBuf = sshbuf.readBuffer(); cert.issuerKey = rfc4253.read(signingKeyBuf); /* * OpenSSH certs don't give the identity of the issuer, just their * public key. So, we use an Identity that matches anything. The * isSignedBy() function will later tell you if the key matches. */ cert.issuer = Identity.forHost('**'); var sigBuf = sshbuf.readBuffer(); cert.signatures.openssh.signature = Signature.parse(sigBuf, cert.issuerKey.type, 'ssh'); if (partial !== undefined) { partial.remainder = sshbuf.remainder(); partial.consumed = sshbuf._offset; } return (new Certificate(cert)); } function int64ToDate(buf) { var i = buf.readUInt32BE(0) * 4294967296; i += buf.readUInt32BE(4); var d = new Date(); d.setTime(i * 1000); d.sourceInt64 = buf; return (d); } function dateToInt64(date) { if (date.sourceInt64 !== undefined) return (date.sourceInt64); var i = Math.round(date.getTime() / 1000); var upper = Math.floor(i / 4294967296); var lower = Math.floor(i % 4294967296); var buf = new Buffer(8); buf.writeUInt32BE(upper, 0); buf.writeUInt32BE(lower, 4); return (buf); } function sign(cert, key) { if (cert.signatures.openssh === undefined) cert.signatures.openssh = {}; try { var blob = toBuffer(cert, true); } catch (e) { delete (cert.signatures.openssh); return (false); } var sig = cert.signatures.openssh; var hashAlgo = undefined; if (key.type === 'rsa' || key.type === 'dsa') hashAlgo = 'sha1'; var signer = key.createSign(hashAlgo); signer.write(blob); sig.signature = signer.sign(); return (true); } function write(cert, options) { if (options === undefined) options = {}; var blob = toBuffer(cert); var out = getCertType(cert.subjectKey) + ' ' + blob.toString('base64'); if (options.comment) out = out + ' ' + options.comment; return (out); } function toBuffer(cert, noSig) { assert.object(cert.signatures.openssh, 'signature for openssh format'); var sig = cert.signatures.openssh; if (sig.nonce === undefined) sig.nonce = crypto.randomBytes(16); var buf = new SSHBuffer({}); buf.writeString(getCertType(cert.subjectKey)); buf.writeBuffer(sig.nonce); var key = cert.subjectKey; var algInfo = algs.info[key.type]; algInfo.parts.forEach(function (part) { buf.writePart(key.part[part]); }); buf.writeInt64(cert.serial); var type = cert.subjects[0].type; assert.notStrictEqual(type, 'unknown'); cert.subjects.forEach(function (id) { assert.strictEqual(id.type, type); }); type = TYPES[type]; buf.writeInt(type); if (sig.keyId === undefined) { sig.keyId = cert.subjects[0].type + '_' + (cert.subjects[0].uid || cert.subjects[0].hostname); } buf.writeString(sig.keyId); var sub = new SSHBuffer({}); cert.subjects.forEach(function (id) { if (type === TYPES.host) sub.writeString(id.hostname); else if (type === TYPES.user) sub.writeString(id.uid); }); buf.writeBuffer(sub.toBuffer()); buf.writeInt64(dateToInt64(cert.validFrom)); buf.writeInt64(dateToInt64(cert.validUntil)); if (sig.critical === undefined) sig.critical = new Buffer(0); buf.writeBuffer(sig.critical); if (sig.exts === undefined) sig.exts = new Buffer(0); buf.writeBuffer(sig.exts); /* reserved */ buf.writeBuffer(new Buffer(0)); sub = rfc4253.write(cert.issuerKey); buf.writeBuffer(sub); if (!noSig) buf.writeBuffer(sig.signature.toBuffer('ssh')); return (buf.toBuffer()); } function getAlg(certType) { if (certType === 'ssh-rsa-cert-v01@openssh.com') return ('rsa'); if (certType === 'ssh-dss-cert-v01@openssh.com') return ('dsa'); if (certType.match(ECDSA_ALGO)) return ('ecdsa'); if (certType === 'ssh-ed25519-cert-v01@openssh.com') return ('ed25519'); throw (new Error('Unsupported cert type ' + certType)); } function getCertType(key) { if (key.type === 'rsa') return ('ssh-rsa-cert-v01@openssh.com'); if (key.type === 'dsa') return ('ssh-dss-cert-v01@openssh.com'); if (key.type === 'ecdsa') return ('ecdsa-sha2-' + key.curve + '-cert-v01@openssh.com'); if (key.type === 'ed25519') return ('ssh-ed25519-cert-v01@openssh.com'); throw (new Error('Unsupported key type ' + key.type)); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../certificate":268,"../identity":283,"../key":285,"../private-key":286,"../signature":287,"../ssh-buffer":288,"../utils":289,"./rfc4253":278,"assert-plus":290,"buffer":49,"crypto":58}],275:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, write: write }; var assert = require('assert-plus'); var asn1 = require('asn1'); var crypto = require('crypto'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pkcs1 = require('./pkcs1'); var pkcs8 = require('./pkcs8'); var sshpriv = require('./ssh-private'); var rfc4253 = require('./rfc4253'); var errors = require('../errors'); /* * For reading we support both PKCS#1 and PKCS#8. If we find a private key, * we just take the public component of it and use that. */ function read(buf, options, forceType) { var input = buf; if (typeof (buf) !== 'string') { assert.buffer(buf, 'buf'); buf = buf.toString('ascii'); } var lines = buf.trim().split('\n'); var m = lines[0].match(/*JSSTYLED*/ /[-]+[ ]*BEGIN ([A-Z0-9]+ )?(PUBLIC|PRIVATE) KEY[ ]*[-]+/); assert.ok(m, 'invalid PEM header'); var m2 = lines[lines.length - 1].match(/*JSSTYLED*/ /[-]+[ ]*END ([A-Z0-9]+ )?(PUBLIC|PRIVATE) KEY[ ]*[-]+/); assert.ok(m2, 'invalid PEM footer'); /* Begin and end banners must match key type */ assert.equal(m[2], m2[2]); var type = m[2].toLowerCase(); var alg; if (m[1]) { /* They also must match algorithms, if given */ assert.equal(m[1], m2[1], 'PEM header and footer mismatch'); alg = m[1].trim(); } var headers = {}; while (true) { lines = lines.slice(1); m = lines[0].match(/*JSSTYLED*/ /^([A-Za-z0-9-]+): (.+)$/); if (!m) break; headers[m[1].toLowerCase()] = m[2]; } var cipher, key, iv; if (headers['proc-type']) { var parts = headers['proc-type'].split(','); if (parts[0] === '4' && parts[1] === 'ENCRYPTED') { if (typeof (options.passphrase) === 'string') { options.passphrase = new Buffer( options.passphrase, 'utf-8'); } if (!Buffer.isBuffer(options.passphrase)) { throw (new errors.KeyEncryptedError( options.filename, 'PEM')); } else { parts = headers['dek-info'].split(','); assert.ok(parts.length === 2); cipher = parts[0].toLowerCase(); iv = new Buffer(parts[1], 'hex'); key = utils.opensslKeyDeriv(cipher, iv, options.passphrase, 1).key; } } } /* Chop off the first and last lines */ lines = lines.slice(0, -1).join(''); buf = new Buffer(lines, 'base64'); if (cipher && key && iv) { var cipherStream = crypto.createDecipheriv(cipher, key, iv); var chunk, chunks = []; cipherStream.once('error', function (e) { if (e.toString().indexOf('bad decrypt') !== -1) { throw (new Error('Incorrect passphrase ' + 'supplied, could not decrypt key')); } throw (e); }); cipherStream.write(buf); cipherStream.end(); while ((chunk = cipherStream.read()) !== null) chunks.push(chunk); buf = Buffer.concat(chunks); } /* The new OpenSSH internal format abuses PEM headers */ if (alg && alg.toLowerCase() === 'openssh') return (sshpriv.readSSHPrivate(type, buf, options)); if (alg && alg.toLowerCase() === 'ssh2') return (rfc4253.readType(type, buf, options)); var der = new asn1.BerReader(buf); der.originalInput = input; /* * All of the PEM file types start with a sequence tag, so chop it * off here */ der.readSequence(); /* PKCS#1 type keys name an algorithm in the banner explicitly */ if (alg) { if (forceType) assert.strictEqual(forceType, 'pkcs1'); return (pkcs1.readPkcs1(alg, type, der)); } else { if (forceType) assert.strictEqual(forceType, 'pkcs8'); return (pkcs8.readPkcs8(alg, type, der)); } } function write(key, options, type) { assert.object(key); var alg = {'ecdsa': 'EC', 'rsa': 'RSA', 'dsa': 'DSA'}[key.type]; var header; var der = new asn1.BerWriter(); if (PrivateKey.isPrivateKey(key)) { if (type && type === 'pkcs8') { header = 'PRIVATE KEY'; pkcs8.writePkcs8(der, key); } else { if (type) assert.strictEqual(type, 'pkcs1'); header = alg + ' PRIVATE KEY'; pkcs1.writePkcs1(der, key); } } else if (Key.isKey(key)) { if (type && type === 'pkcs1') { header = alg + ' PUBLIC KEY'; pkcs1.writePkcs1(der, key); } else { if (type) assert.strictEqual(type, 'pkcs8'); header = 'PUBLIC KEY'; pkcs8.writePkcs8(der, key); } } else { throw (new Error('key is not a Key or PrivateKey')); } var tmp = der.buffer.toString('base64'); var len = tmp.length + (tmp.length / 64) + 18 + 16 + header.length*2 + 10; var buf = new Buffer(len); var o = 0; o += buf.write('-----BEGIN ' + header + '-----\n', o); for (var i = 0; i < tmp.length; ) { var limit = i + 64; if (limit > tmp.length) limit = tmp.length; o += buf.write(tmp.slice(i, limit), o); buf[o++] = 10; i = limit; } o += buf.write('-----END ' + header + '-----\n', o); return (buf.slice(0, o)); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../errors":271,"../key":285,"../private-key":286,"../utils":289,"./pkcs1":276,"./pkcs8":277,"./rfc4253":278,"./ssh-private":279,"asn1":171,"assert-plus":290,"buffer":49,"crypto":58}],276:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, readPkcs1: readPkcs1, write: write, writePkcs1: writePkcs1 }; var assert = require('assert-plus'); var asn1 = require('asn1'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); var pkcs8 = require('./pkcs8'); var readECDSACurve = pkcs8.readECDSACurve; function read(buf, options) { return (pem.read(buf, options, 'pkcs1')); } function write(key, options) { return (pem.write(key, options, 'pkcs1')); } /* Helper to read in a single mpint */ function readMPInt(der, nm) { assert.strictEqual(der.peek(), asn1.Ber.Integer, nm + ' is not an Integer'); return (utils.mpNormalize(der.readString(asn1.Ber.Integer, true))); } function readPkcs1(alg, type, der) { switch (alg) { case 'RSA': if (type === 'public') return (readPkcs1RSAPublic(der)); else if (type === 'private') return (readPkcs1RSAPrivate(der)); throw (new Error('Unknown key type: ' + type)); case 'DSA': if (type === 'public') return (readPkcs1DSAPublic(der)); else if (type === 'private') return (readPkcs1DSAPrivate(der)); throw (new Error('Unknown key type: ' + type)); case 'EC': case 'ECDSA': if (type === 'private') return (readPkcs1ECDSAPrivate(der)); else if (type === 'public') return (readPkcs1ECDSAPublic(der)); throw (new Error('Unknown key type: ' + type)); default: throw (new Error('Unknown key algo: ' + alg)); } } function readPkcs1RSAPublic(der) { // modulus and exponent var n = readMPInt(der, 'modulus'); var e = readMPInt(der, 'exponent'); // now, make the key var key = { type: 'rsa', parts: [ { name: 'e', data: e }, { name: 'n', data: n } ] }; return (new Key(key)); } function readPkcs1RSAPrivate(der) { var version = readMPInt(der, 'version'); assert.strictEqual(version[0], 0); // modulus then public exponent var n = readMPInt(der, 'modulus'); var e = readMPInt(der, 'public exponent'); var d = readMPInt(der, 'private exponent'); var p = readMPInt(der, 'prime1'); var q = readMPInt(der, 'prime2'); var dmodp = readMPInt(der, 'exponent1'); var dmodq = readMPInt(der, 'exponent2'); var iqmp = readMPInt(der, 'iqmp'); // now, make the key var key = { type: 'rsa', parts: [ { name: 'n', data: n }, { name: 'e', data: e }, { name: 'd', data: d }, { name: 'iqmp', data: iqmp }, { name: 'p', data: p }, { name: 'q', data: q }, { name: 'dmodp', data: dmodp }, { name: 'dmodq', data: dmodq } ] }; return (new PrivateKey(key)); } function readPkcs1DSAPrivate(der) { var version = readMPInt(der, 'version'); assert.strictEqual(version.readUInt8(0), 0); var p = readMPInt(der, 'p'); var q = readMPInt(der, 'q'); var g = readMPInt(der, 'g'); var y = readMPInt(der, 'y'); var x = readMPInt(der, 'x'); // now, make the key var key = { type: 'dsa', parts: [ { name: 'p', data: p }, { name: 'q', data: q }, { name: 'g', data: g }, { name: 'y', data: y }, { name: 'x', data: x } ] }; return (new PrivateKey(key)); } function readPkcs1DSAPublic(der) { var y = readMPInt(der, 'y'); var p = readMPInt(der, 'p'); var q = readMPInt(der, 'q'); var g = readMPInt(der, 'g'); var key = { type: 'dsa', parts: [ { name: 'y', data: y }, { name: 'p', data: p }, { name: 'q', data: q }, { name: 'g', data: g } ] }; return (new Key(key)); } function readPkcs1ECDSAPublic(der) { der.readSequence(); var oid = der.readOID(); assert.strictEqual(oid, '1.2.840.10045.2.1', 'must be ecPublicKey'); var curveOid = der.readOID(); var curve; var curves = Object.keys(algs.curves); for (var j = 0; j < curves.length; ++j) { var c = curves[j]; var cd = algs.curves[c]; if (cd.pkcs8oid === curveOid) { curve = c; break; } } assert.string(curve, 'a known ECDSA named curve'); var Q = der.readString(asn1.Ber.BitString, true); Q = utils.ecNormalize(Q); var key = { type: 'ecdsa', parts: [ { name: 'curve', data: new Buffer(curve) }, { name: 'Q', data: Q } ] }; return (new Key(key)); } function readPkcs1ECDSAPrivate(der) { var version = readMPInt(der, 'version'); assert.strictEqual(version.readUInt8(0), 1); // private key var d = der.readString(asn1.Ber.OctetString, true); der.readSequence(0xa0); var curve = readECDSACurve(der); assert.string(curve, 'a known elliptic curve'); der.readSequence(0xa1); var Q = der.readString(asn1.Ber.BitString, true); Q = utils.ecNormalize(Q); var key = { type: 'ecdsa', parts: [ { name: 'curve', data: new Buffer(curve) }, { name: 'Q', data: Q }, { name: 'd', data: d } ] }; return (new PrivateKey(key)); } function writePkcs1(der, key) { der.startSequence(); switch (key.type) { case 'rsa': if (PrivateKey.isPrivateKey(key)) writePkcs1RSAPrivate(der, key); else writePkcs1RSAPublic(der, key); break; case 'dsa': if (PrivateKey.isPrivateKey(key)) writePkcs1DSAPrivate(der, key); else writePkcs1DSAPublic(der, key); break; case 'ecdsa': if (PrivateKey.isPrivateKey(key)) writePkcs1ECDSAPrivate(der, key); else writePkcs1ECDSAPublic(der, key); break; default: throw (new Error('Unknown key algo: ' + key.type)); } der.endSequence(); } function writePkcs1RSAPublic(der, key) { der.writeBuffer(key.part.n.data, asn1.Ber.Integer); der.writeBuffer(key.part.e.data, asn1.Ber.Integer); } function writePkcs1RSAPrivate(der, key) { var ver = new Buffer(1); ver[0] = 0; der.writeBuffer(ver, asn1.Ber.Integer); der.writeBuffer(key.part.n.data, asn1.Ber.Integer); der.writeBuffer(key.part.e.data, asn1.Ber.Integer); der.writeBuffer(key.part.d.data, asn1.Ber.Integer); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); if (!key.part.dmodp || !key.part.dmodq) utils.addRSAMissing(key); der.writeBuffer(key.part.dmodp.data, asn1.Ber.Integer); der.writeBuffer(key.part.dmodq.data, asn1.Ber.Integer); der.writeBuffer(key.part.iqmp.data, asn1.Ber.Integer); } function writePkcs1DSAPrivate(der, key) { var ver = new Buffer(1); ver[0] = 0; der.writeBuffer(ver, asn1.Ber.Integer); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); der.writeBuffer(key.part.g.data, asn1.Ber.Integer); der.writeBuffer(key.part.y.data, asn1.Ber.Integer); der.writeBuffer(key.part.x.data, asn1.Ber.Integer); } function writePkcs1DSAPublic(der, key) { der.writeBuffer(key.part.y.data, asn1.Ber.Integer); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); der.writeBuffer(key.part.g.data, asn1.Ber.Integer); } function writePkcs1ECDSAPublic(der, key) { der.startSequence(); der.writeOID('1.2.840.10045.2.1'); /* ecPublicKey */ var curve = key.part.curve.data.toString(); var curveOid = algs.curves[curve].pkcs8oid; assert.string(curveOid, 'a known ECDSA named curve'); der.writeOID(curveOid); der.endSequence(); var Q = utils.ecNormalize(key.part.Q.data, true); der.writeBuffer(Q, asn1.Ber.BitString); } function writePkcs1ECDSAPrivate(der, key) { var ver = new Buffer(1); ver[0] = 1; der.writeBuffer(ver, asn1.Ber.Integer); der.writeBuffer(key.part.d.data, asn1.Ber.OctetString); der.startSequence(0xa0); var curve = key.part.curve.data.toString(); var curveOid = algs.curves[curve].pkcs8oid; assert.string(curveOid, 'a known ECDSA named curve'); der.writeOID(curveOid); der.endSequence(); der.startSequence(0xa1); var Q = utils.ecNormalize(key.part.Q.data, true); der.writeBuffer(Q, asn1.Ber.BitString); der.endSequence(); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../key":285,"../private-key":286,"../utils":289,"./pem":275,"./pkcs8":277,"asn1":171,"assert-plus":290,"buffer":49}],277:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, readPkcs8: readPkcs8, write: write, writePkcs8: writePkcs8, readECDSACurve: readECDSACurve, writeECDSACurve: writeECDSACurve }; var assert = require('assert-plus'); var asn1 = require('asn1'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); function read(buf, options) { return (pem.read(buf, options, 'pkcs8')); } function write(key, options) { return (pem.write(key, options, 'pkcs8')); } /* Helper to read in a single mpint */ function readMPInt(der, nm) { assert.strictEqual(der.peek(), asn1.Ber.Integer, nm + ' is not an Integer'); return (utils.mpNormalize(der.readString(asn1.Ber.Integer, true))); } function readPkcs8(alg, type, der) { /* Private keys in pkcs#8 format have a weird extra int */ if (der.peek() === asn1.Ber.Integer) { assert.strictEqual(type, 'private', 'unexpected Integer at start of public key'); der.readString(asn1.Ber.Integer, true); } der.readSequence(); var next = der.offset + der.length; var oid = der.readOID(); switch (oid) { case '1.2.840.113549.1.1.1': der._offset = next; if (type === 'public') return (readPkcs8RSAPublic(der)); else return (readPkcs8RSAPrivate(der)); case '1.2.840.10040.4.1': if (type === 'public') return (readPkcs8DSAPublic(der)); else return (readPkcs8DSAPrivate(der)); case '1.2.840.10045.2.1': if (type === 'public') return (readPkcs8ECDSAPublic(der)); else return (readPkcs8ECDSAPrivate(der)); default: throw (new Error('Unknown key type OID ' + oid)); } } function readPkcs8RSAPublic(der) { // bit string sequence der.readSequence(asn1.Ber.BitString); der.readByte(); der.readSequence(); // modulus var n = readMPInt(der, 'modulus'); var e = readMPInt(der, 'exponent'); // now, make the key var key = { type: 'rsa', source: der.originalInput, parts: [ { name: 'e', data: e }, { name: 'n', data: n } ] }; return (new Key(key)); } function readPkcs8RSAPrivate(der) { der.readSequence(asn1.Ber.OctetString); der.readSequence(); var ver = readMPInt(der, 'version'); assert.equal(ver[0], 0x0, 'unknown RSA private key version'); // modulus then public exponent var n = readMPInt(der, 'modulus'); var e = readMPInt(der, 'public exponent'); var d = readMPInt(der, 'private exponent'); var p = readMPInt(der, 'prime1'); var q = readMPInt(der, 'prime2'); var dmodp = readMPInt(der, 'exponent1'); var dmodq = readMPInt(der, 'exponent2'); var iqmp = readMPInt(der, 'iqmp'); // now, make the key var key = { type: 'rsa', parts: [ { name: 'n', data: n }, { name: 'e', data: e }, { name: 'd', data: d }, { name: 'iqmp', data: iqmp }, { name: 'p', data: p }, { name: 'q', data: q }, { name: 'dmodp', data: dmodp }, { name: 'dmodq', data: dmodq } ] }; return (new PrivateKey(key)); } function readPkcs8DSAPublic(der) { der.readSequence(); var p = readMPInt(der, 'p'); var q = readMPInt(der, 'q'); var g = readMPInt(der, 'g'); // bit string sequence der.readSequence(asn1.Ber.BitString); der.readByte(); var y = readMPInt(der, 'y'); // now, make the key var key = { type: 'dsa', parts: [ { name: 'p', data: p }, { name: 'q', data: q }, { name: 'g', data: g }, { name: 'y', data: y } ] }; return (new Key(key)); } function readPkcs8DSAPrivate(der) { der.readSequence(); var p = readMPInt(der, 'p'); var q = readMPInt(der, 'q'); var g = readMPInt(der, 'g'); der.readSequence(asn1.Ber.OctetString); var x = readMPInt(der, 'x'); /* The pkcs#8 format does not include the public key */ var y = utils.calculateDSAPublic(g, p, x); var key = { type: 'dsa', parts: [ { name: 'p', data: p }, { name: 'q', data: q }, { name: 'g', data: g }, { name: 'y', data: y }, { name: 'x', data: x } ] }; return (new PrivateKey(key)); } function readECDSACurve(der) { var curveName, curveNames; var j, c, cd; if (der.peek() === asn1.Ber.OID) { var oid = der.readOID(); curveNames = Object.keys(algs.curves); for (j = 0; j < curveNames.length; ++j) { c = curveNames[j]; cd = algs.curves[c]; if (cd.pkcs8oid === oid) { curveName = c; break; } } } else { // ECParameters sequence der.readSequence(); var version = der.readString(asn1.Ber.Integer, true); assert.strictEqual(version[0], 1, 'ECDSA key not version 1'); var curve = {}; // FieldID sequence der.readSequence(); var fieldTypeOid = der.readOID(); assert.strictEqual(fieldTypeOid, '1.2.840.10045.1.1', 'ECDSA key is not from a prime-field'); var p = curve.p = utils.mpNormalize( der.readString(asn1.Ber.Integer, true)); /* * p always starts with a 1 bit, so count the zeros to get its * real size. */ curve.size = p.length * 8 - utils.countZeros(p); // Curve sequence der.readSequence(); curve.a = utils.mpNormalize( der.readString(asn1.Ber.OctetString, true)); curve.b = utils.mpNormalize( der.readString(asn1.Ber.OctetString, true)); if (der.peek() === asn1.Ber.BitString) curve.s = der.readString(asn1.Ber.BitString, true); // Combined Gx and Gy curve.G = der.readString(asn1.Ber.OctetString, true); assert.strictEqual(curve.G[0], 0x4, 'uncompressed G is required'); curve.n = utils.mpNormalize( der.readString(asn1.Ber.Integer, true)); curve.h = utils.mpNormalize( der.readString(asn1.Ber.Integer, true)); assert.strictEqual(curve.h[0], 0x1, 'a cofactor=1 curve is ' + 'required'); curveNames = Object.keys(algs.curves); var ks = Object.keys(curve); for (j = 0; j < curveNames.length; ++j) { c = curveNames[j]; cd = algs.curves[c]; var equal = true; for (var i = 0; i < ks.length; ++i) { var k = ks[i]; if (cd[k] === undefined) continue; if (typeof (cd[k]) === 'object' && cd[k].equals !== undefined) { if (!cd[k].equals(curve[k])) { equal = false; break; } } else if (Buffer.isBuffer(cd[k])) { if (cd[k].toString('binary') !== curve[k].toString('binary')) { equal = false; break; } } else { if (cd[k] !== curve[k]) { equal = false; break; } } } if (equal) { curveName = c; break; } } } return (curveName); } function readPkcs8ECDSAPrivate(der) { var curveName = readECDSACurve(der); assert.string(curveName, 'a known elliptic curve'); der.readSequence(asn1.Ber.OctetString); der.readSequence(); var version = readMPInt(der, 'version'); assert.equal(version[0], 1, 'unknown version of ECDSA key'); var d = der.readString(asn1.Ber.OctetString, true); der.readSequence(0xa1); var Q = der.readString(asn1.Ber.BitString, true); Q = utils.ecNormalize(Q); var key = { type: 'ecdsa', parts: [ { name: 'curve', data: new Buffer(curveName) }, { name: 'Q', data: Q }, { name: 'd', data: d } ] }; return (new PrivateKey(key)); } function readPkcs8ECDSAPublic(der) { var curveName = readECDSACurve(der); assert.string(curveName, 'a known elliptic curve'); var Q = der.readString(asn1.Ber.BitString, true); Q = utils.ecNormalize(Q); var key = { type: 'ecdsa', parts: [ { name: 'curve', data: new Buffer(curveName) }, { name: 'Q', data: Q } ] }; return (new Key(key)); } function writePkcs8(der, key) { der.startSequence(); if (PrivateKey.isPrivateKey(key)) { var sillyInt = new Buffer(1); sillyInt[0] = 0x0; der.writeBuffer(sillyInt, asn1.Ber.Integer); } der.startSequence(); switch (key.type) { case 'rsa': der.writeOID('1.2.840.113549.1.1.1'); if (PrivateKey.isPrivateKey(key)) writePkcs8RSAPrivate(key, der); else writePkcs8RSAPublic(key, der); break; case 'dsa': der.writeOID('1.2.840.10040.4.1'); if (PrivateKey.isPrivateKey(key)) writePkcs8DSAPrivate(key, der); else writePkcs8DSAPublic(key, der); break; case 'ecdsa': der.writeOID('1.2.840.10045.2.1'); if (PrivateKey.isPrivateKey(key)) writePkcs8ECDSAPrivate(key, der); else writePkcs8ECDSAPublic(key, der); break; default: throw (new Error('Unsupported key type: ' + key.type)); } der.endSequence(); } function writePkcs8RSAPrivate(key, der) { der.writeNull(); der.endSequence(); der.startSequence(asn1.Ber.OctetString); der.startSequence(); var version = new Buffer(1); version[0] = 0; der.writeBuffer(version, asn1.Ber.Integer); der.writeBuffer(key.part.n.data, asn1.Ber.Integer); der.writeBuffer(key.part.e.data, asn1.Ber.Integer); der.writeBuffer(key.part.d.data, asn1.Ber.Integer); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); if (!key.part.dmodp || !key.part.dmodq) utils.addRSAMissing(key); der.writeBuffer(key.part.dmodp.data, asn1.Ber.Integer); der.writeBuffer(key.part.dmodq.data, asn1.Ber.Integer); der.writeBuffer(key.part.iqmp.data, asn1.Ber.Integer); der.endSequence(); der.endSequence(); } function writePkcs8RSAPublic(key, der) { der.writeNull(); der.endSequence(); der.startSequence(asn1.Ber.BitString); der.writeByte(0x00); der.startSequence(); der.writeBuffer(key.part.n.data, asn1.Ber.Integer); der.writeBuffer(key.part.e.data, asn1.Ber.Integer); der.endSequence(); der.endSequence(); } function writePkcs8DSAPrivate(key, der) { der.startSequence(); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); der.writeBuffer(key.part.g.data, asn1.Ber.Integer); der.endSequence(); der.endSequence(); der.startSequence(asn1.Ber.OctetString); der.writeBuffer(key.part.x.data, asn1.Ber.Integer); der.endSequence(); } function writePkcs8DSAPublic(key, der) { der.startSequence(); der.writeBuffer(key.part.p.data, asn1.Ber.Integer); der.writeBuffer(key.part.q.data, asn1.Ber.Integer); der.writeBuffer(key.part.g.data, asn1.Ber.Integer); der.endSequence(); der.endSequence(); der.startSequence(asn1.Ber.BitString); der.writeByte(0x00); der.writeBuffer(key.part.y.data, asn1.Ber.Integer); der.endSequence(); } function writeECDSACurve(key, der) { var curve = algs.curves[key.curve]; if (curve.pkcs8oid) { /* This one has a name in pkcs#8, so just write the oid */ der.writeOID(curve.pkcs8oid); } else { // ECParameters sequence der.startSequence(); var version = new Buffer(1); version.writeUInt8(1, 0); der.writeBuffer(version, asn1.Ber.Integer); // FieldID sequence der.startSequence(); der.writeOID('1.2.840.10045.1.1'); // prime-field der.writeBuffer(curve.p, asn1.Ber.Integer); der.endSequence(); // Curve sequence der.startSequence(); var a = curve.p; if (a[0] === 0x0) a = a.slice(1); der.writeBuffer(a, asn1.Ber.OctetString); der.writeBuffer(curve.b, asn1.Ber.OctetString); der.writeBuffer(curve.s, asn1.Ber.BitString); der.endSequence(); der.writeBuffer(curve.G, asn1.Ber.OctetString); der.writeBuffer(curve.n, asn1.Ber.Integer); var h = curve.h; if (!h) { h = new Buffer(1); h[0] = 1; } der.writeBuffer(h, asn1.Ber.Integer); // ECParameters der.endSequence(); } } function writePkcs8ECDSAPublic(key, der) { writeECDSACurve(key, der); der.endSequence(); var Q = utils.ecNormalize(key.part.Q.data, true); der.writeBuffer(Q, asn1.Ber.BitString); } function writePkcs8ECDSAPrivate(key, der) { writeECDSACurve(key, der); der.endSequence(); der.startSequence(asn1.Ber.OctetString); der.startSequence(); var version = new Buffer(1); version[0] = 1; der.writeBuffer(version, asn1.Ber.Integer); der.writeBuffer(key.part.d.data, asn1.Ber.OctetString); der.startSequence(0xa1); var Q = utils.ecNormalize(key.part.Q.data, true); der.writeBuffer(Q, asn1.Ber.BitString); der.endSequence(); der.endSequence(); der.endSequence(); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../key":285,"../private-key":286,"../utils":289,"./pem":275,"asn1":171,"assert-plus":290,"buffer":49}],278:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read.bind(undefined, false, undefined), readType: read.bind(undefined, false), write: write, /* semi-private api, used by sshpk-agent */ readPartial: read.bind(undefined, true), /* shared with ssh format */ readInternal: read, keyTypeToAlg: keyTypeToAlg, algToKeyType: algToKeyType }; var assert = require('assert-plus'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var SSHBuffer = require('../ssh-buffer'); function algToKeyType(alg) { assert.string(alg); if (alg === 'ssh-dss') return ('dsa'); else if (alg === 'ssh-rsa') return ('rsa'); else if (alg === 'ssh-ed25519') return ('ed25519'); else if (alg === 'ssh-curve25519') return ('curve25519'); else if (alg.match(/^ecdsa-sha2-/)) return ('ecdsa'); else throw (new Error('Unknown algorithm ' + alg)); } function keyTypeToAlg(key) { assert.object(key); if (key.type === 'dsa') return ('ssh-dss'); else if (key.type === 'rsa') return ('ssh-rsa'); else if (key.type === 'ed25519') return ('ssh-ed25519'); else if (key.type === 'curve25519') return ('ssh-curve25519'); else if (key.type === 'ecdsa') return ('ecdsa-sha2-' + key.part.curve.data.toString()); else throw (new Error('Unknown key type ' + key.type)); } function read(partial, type, buf, options) { if (typeof (buf) === 'string') buf = new Buffer(buf); assert.buffer(buf, 'buf'); var key = {}; var parts = key.parts = []; var sshbuf = new SSHBuffer({buffer: buf}); var alg = sshbuf.readString(); assert.ok(!sshbuf.atEnd(), 'key must have at least one part'); key.type = algToKeyType(alg); var partCount = algs.info[key.type].parts.length; if (type && type === 'private') partCount = algs.privInfo[key.type].parts.length; while (!sshbuf.atEnd() && parts.length < partCount) parts.push(sshbuf.readPart()); while (!partial && !sshbuf.atEnd()) parts.push(sshbuf.readPart()); assert.ok(parts.length >= 1, 'key must have at least one part'); assert.ok(partial || sshbuf.atEnd(), 'leftover bytes at end of key'); var Constructor = Key; var algInfo = algs.info[key.type]; if (type === 'private' || algInfo.parts.length !== parts.length) { algInfo = algs.privInfo[key.type]; Constructor = PrivateKey; } assert.strictEqual(algInfo.parts.length, parts.length); if (key.type === 'ecdsa') { var res = /^ecdsa-sha2-(.+)$/.exec(alg); assert.ok(res !== null); assert.strictEqual(res[1], parts[0].data.toString()); } var normalized = true; for (var i = 0; i < algInfo.parts.length; ++i) { parts[i].name = algInfo.parts[i]; if (parts[i].name !== 'curve' && algInfo.normalize !== false) { var p = parts[i]; var nd = utils.mpNormalize(p.data); if (nd !== p.data) { p.data = nd; normalized = false; } } } if (normalized) key._rfc4253Cache = sshbuf.toBuffer(); if (partial && typeof (partial) === 'object') { partial.remainder = sshbuf.remainder(); partial.consumed = sshbuf._offset; } return (new Constructor(key)); } function write(key, options) { assert.object(key); var alg = keyTypeToAlg(key); var i; var algInfo = algs.info[key.type]; if (PrivateKey.isPrivateKey(key)) algInfo = algs.privInfo[key.type]; var parts = algInfo.parts; var buf = new SSHBuffer({}); buf.writeString(alg); for (i = 0; i < parts.length; ++i) { var data = key.part[parts[i]].data; if (algInfo.normalize !== false) data = utils.mpNormalize(data); buf.writeBuffer(data); } return (buf.toBuffer()); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../key":285,"../private-key":286,"../ssh-buffer":288,"../utils":289,"assert-plus":290,"buffer":49}],279:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, readSSHPrivate: readSSHPrivate, write: write }; var assert = require('assert-plus'); var asn1 = require('asn1'); var algs = require('../algs'); var utils = require('../utils'); var crypto = require('crypto'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); var rfc4253 = require('./rfc4253'); var SSHBuffer = require('../ssh-buffer'); var errors = require('../errors'); var bcrypt; function read(buf, options) { return (pem.read(buf, options)); } var MAGIC = 'openssh-key-v1'; function readSSHPrivate(type, buf, options) { buf = new SSHBuffer({buffer: buf}); var magic = buf.readCString(); assert.strictEqual(magic, MAGIC, 'bad magic string'); var cipher = buf.readString(); var kdf = buf.readString(); var kdfOpts = buf.readBuffer(); var nkeys = buf.readInt(); if (nkeys !== 1) { throw (new Error('OpenSSH-format key file contains ' + 'multiple keys: this is unsupported.')); } var pubKey = buf.readBuffer(); if (type === 'public') { assert.ok(buf.atEnd(), 'excess bytes left after key'); return (rfc4253.read(pubKey)); } var privKeyBlob = buf.readBuffer(); assert.ok(buf.atEnd(), 'excess bytes left after key'); var kdfOptsBuf = new SSHBuffer({ buffer: kdfOpts }); switch (kdf) { case 'none': if (cipher !== 'none') { throw (new Error('OpenSSH-format key uses KDF "none" ' + 'but specifies a cipher other than "none"')); } break; case 'bcrypt': var salt = kdfOptsBuf.readBuffer(); var rounds = kdfOptsBuf.readInt(); var cinf = utils.opensshCipherInfo(cipher); if (bcrypt === undefined) { bcrypt = require('bcrypt-pbkdf'); } if (typeof (options.passphrase) === 'string') { options.passphrase = new Buffer(options.passphrase, 'utf-8'); } if (!Buffer.isBuffer(options.passphrase)) { throw (new errors.KeyEncryptedError( options.filename, 'OpenSSH')); } var pass = new Uint8Array(options.passphrase); var salti = new Uint8Array(salt); /* Use the pbkdf to derive both the key and the IV. */ var out = new Uint8Array(cinf.keySize + cinf.blockSize); var res = bcrypt.pbkdf(pass, pass.length, salti, salti.length, out, out.length, rounds); if (res !== 0) { throw (new Error('bcrypt_pbkdf function returned ' + 'failure, parameters invalid')); } out = new Buffer(out); var ckey = out.slice(0, cinf.keySize); var iv = out.slice(cinf.keySize, cinf.keySize + cinf.blockSize); var cipherStream = crypto.createDecipheriv(cinf.opensslName, ckey, iv); cipherStream.setAutoPadding(false); var chunk, chunks = []; cipherStream.once('error', function (e) { if (e.toString().indexOf('bad decrypt') !== -1) { throw (new Error('Incorrect passphrase ' + 'supplied, could not decrypt key')); } throw (e); }); cipherStream.write(privKeyBlob); cipherStream.end(); while ((chunk = cipherStream.read()) !== null) chunks.push(chunk); privKeyBlob = Buffer.concat(chunks); break; default: throw (new Error( 'OpenSSH-format key uses unknown KDF "' + kdf + '"')); } buf = new SSHBuffer({buffer: privKeyBlob}); var checkInt1 = buf.readInt(); var checkInt2 = buf.readInt(); if (checkInt1 !== checkInt2) { throw (new Error('Incorrect passphrase supplied, could not ' + 'decrypt key')); } var ret = {}; var key = rfc4253.readInternal(ret, 'private', buf.remainder()); buf.skip(ret.consumed); var comment = buf.readString(); key.comment = comment; return (key); } function write(key, options) { var pubKey; if (PrivateKey.isPrivateKey(key)) pubKey = key.toPublic(); else pubKey = key; var cipher = 'none'; var kdf = 'none'; var kdfopts = new Buffer(0); var cinf = { blockSize: 8 }; var passphrase; if (options !== undefined) { passphrase = options.passphrase; if (typeof (passphrase) === 'string') passphrase = new Buffer(passphrase, 'utf-8'); if (passphrase !== undefined) { assert.buffer(passphrase, 'options.passphrase'); assert.optionalString(options.cipher, 'options.cipher'); cipher = options.cipher; if (cipher === undefined) cipher = 'aes128-ctr'; cinf = utils.opensshCipherInfo(cipher); kdf = 'bcrypt'; } } var privBuf; if (PrivateKey.isPrivateKey(key)) { privBuf = new SSHBuffer({}); var checkInt = crypto.randomBytes(4).readUInt32BE(0); privBuf.writeInt(checkInt); privBuf.writeInt(checkInt); privBuf.write(key.toBuffer('rfc4253')); privBuf.writeString(key.comment || ''); var n = 1; while (privBuf._offset % cinf.blockSize !== 0) privBuf.writeChar(n++); privBuf = privBuf.toBuffer(); } switch (kdf) { case 'none': break; case 'bcrypt': var salt = crypto.randomBytes(16); var rounds = 16; var kdfssh = new SSHBuffer({}); kdfssh.writeBuffer(salt); kdfssh.writeInt(rounds); kdfopts = kdfssh.toBuffer(); if (bcrypt === undefined) { bcrypt = require('bcrypt-pbkdf'); } var pass = new Uint8Array(passphrase); var salti = new Uint8Array(salt); /* Use the pbkdf to derive both the key and the IV. */ var out = new Uint8Array(cinf.keySize + cinf.blockSize); var res = bcrypt.pbkdf(pass, pass.length, salti, salti.length, out, out.length, rounds); if (res !== 0) { throw (new Error('bcrypt_pbkdf function returned ' + 'failure, parameters invalid')); } out = new Buffer(out); var ckey = out.slice(0, cinf.keySize); var iv = out.slice(cinf.keySize, cinf.keySize + cinf.blockSize); var cipherStream = crypto.createCipheriv(cinf.opensslName, ckey, iv); cipherStream.setAutoPadding(false); var chunk, chunks = []; cipherStream.once('error', function (e) { throw (e); }); cipherStream.write(privBuf); cipherStream.end(); while ((chunk = cipherStream.read()) !== null) chunks.push(chunk); privBuf = Buffer.concat(chunks); break; default: throw (new Error('Unsupported kdf ' + kdf)); } var buf = new SSHBuffer({}); buf.writeCString(MAGIC); buf.writeString(cipher); /* cipher */ buf.writeString(kdf); /* kdf */ buf.writeBuffer(kdfopts); /* kdfoptions */ buf.writeInt(1); /* nkeys */ buf.writeBuffer(pubKey.toBuffer('rfc4253')); if (privBuf) buf.writeBuffer(privBuf); buf = buf.toBuffer(); var header; if (PrivateKey.isPrivateKey(key)) header = 'OPENSSH PRIVATE KEY'; else header = 'OPENSSH PUBLIC KEY'; var tmp = buf.toString('base64'); var len = tmp.length + (tmp.length / 70) + 18 + 16 + header.length*2 + 10; buf = new Buffer(len); var o = 0; o += buf.write('-----BEGIN ' + header + '-----\n', o); for (var i = 0; i < tmp.length; ) { var limit = i + 70; if (limit > tmp.length) limit = tmp.length; o += buf.write(tmp.slice(i, limit), o); buf[o++] = 10; i = limit; } o += buf.write('-----END ' + header + '-----\n', o); return (buf.slice(0, o)); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../errors":271,"../key":285,"../private-key":286,"../ssh-buffer":288,"../utils":289,"./pem":275,"./rfc4253":278,"asn1":171,"assert-plus":290,"bcrypt-pbkdf":176,"buffer":49,"crypto":58}],280:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { read: read, write: write }; var assert = require('assert-plus'); var rfc4253 = require('./rfc4253'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var sshpriv = require('./ssh-private'); /*JSSTYLED*/ var SSHKEY_RE = /^([a-z0-9-]+)[ \t]+([a-zA-Z0-9+\/]+[=]*)([\n \t]+([^\n]+))?$/; /*JSSTYLED*/ var SSHKEY_RE2 = /^([a-z0-9-]+)[ \t]+([a-zA-Z0-9+\/ \t\n]+[=]*)(.*)$/; function read(buf, options) { if (typeof (buf) !== 'string') { assert.buffer(buf, 'buf'); buf = buf.toString('ascii'); } var trimmed = buf.trim().replace(/[\\\r]/g, ''); var m = trimmed.match(SSHKEY_RE); if (!m) m = trimmed.match(SSHKEY_RE2); assert.ok(m, 'key must match regex'); var type = rfc4253.algToKeyType(m[1]); var kbuf = new Buffer(m[2], 'base64'); /* * This is a bit tricky. If we managed to parse the key and locate the * key comment with the regex, then do a non-partial read and assert * that we have consumed all bytes. If we couldn't locate the key * comment, though, there may be whitespace shenanigans going on that * have conjoined the comment to the rest of the key. We do a partial * read in this case to try to make the best out of a sorry situation. */ var key; var ret = {}; if (m[4]) { try { key = rfc4253.read(kbuf); } catch (e) { m = trimmed.match(SSHKEY_RE2); assert.ok(m, 'key must match regex'); kbuf = new Buffer(m[2], 'base64'); key = rfc4253.readInternal(ret, 'public', kbuf); } } else { key = rfc4253.readInternal(ret, 'public', kbuf); } assert.strictEqual(type, key.type); if (m[4] && m[4].length > 0) { key.comment = m[4]; } else if (ret.consumed) { /* * Now the magic: trying to recover the key comment when it's * gotten conjoined to the key or otherwise shenanigan'd. * * Work out how much base64 we used, then drop all non-base64 * chars from the beginning up to this point in the the string. * Then offset in this and try to make up for missing = chars. */ var data = m[2] + m[3]; var realOffset = Math.ceil(ret.consumed / 3) * 4; data = data.slice(0, realOffset - 2). /*JSSTYLED*/ replace(/[^a-zA-Z0-9+\/=]/g, '') + data.slice(realOffset - 2); var padding = ret.consumed % 3; if (padding > 0 && data.slice(realOffset - 1, realOffset) !== '=') realOffset--; while (data.slice(realOffset, realOffset + 1) === '=') realOffset++; /* Finally, grab what we think is the comment & clean it up. */ var trailer = data.slice(realOffset); trailer = trailer.replace(/[\r\n]/g, ' '). replace(/^\s+/, ''); if (trailer.match(/^[a-zA-Z0-9]/)) key.comment = trailer; } return (key); } function write(key, options) { assert.object(key); if (!Key.isKey(key)) throw (new Error('Must be a public key')); var parts = []; var alg = rfc4253.keyTypeToAlg(key); parts.push(alg); var buf = rfc4253.write(key); parts.push(buf.toString('base64')); if (key.comment) parts.push(key.comment); return (new Buffer(parts.join(' '))); } }).call(this,require("buffer").Buffer) },{"../key":285,"../private-key":286,"../utils":289,"./rfc4253":278,"./ssh-private":279,"assert-plus":290,"buffer":49}],281:[function(require,module,exports){ (function (Buffer){ // Copyright 2016 Joyent, Inc. var x509 = require('./x509'); module.exports = { read: read, verify: x509.verify, sign: x509.sign, write: write }; var assert = require('assert-plus'); var asn1 = require('asn1'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); var Identity = require('../identity'); var Signature = require('../signature'); var Certificate = require('../certificate'); function read(buf, options) { if (typeof (buf) !== 'string') { assert.buffer(buf, 'buf'); buf = buf.toString('ascii'); } var lines = buf.trim().split(/[\r\n]+/g); var m = lines[0].match(/*JSSTYLED*/ /[-]+[ ]*BEGIN CERTIFICATE[ ]*[-]+/); assert.ok(m, 'invalid PEM header'); var m2 = lines[lines.length - 1].match(/*JSSTYLED*/ /[-]+[ ]*END CERTIFICATE[ ]*[-]+/); assert.ok(m2, 'invalid PEM footer'); var headers = {}; while (true) { lines = lines.slice(1); m = lines[0].match(/*JSSTYLED*/ /^([A-Za-z0-9-]+): (.+)$/); if (!m) break; headers[m[1].toLowerCase()] = m[2]; } /* Chop off the first and last lines */ lines = lines.slice(0, -1).join(''); buf = new Buffer(lines, 'base64'); return (x509.read(buf, options)); } function write(cert, options) { var dbuf = x509.write(cert, options); var header = 'CERTIFICATE'; var tmp = dbuf.toString('base64'); var len = tmp.length + (tmp.length / 64) + 18 + 16 + header.length*2 + 10; var buf = new Buffer(len); var o = 0; o += buf.write('-----BEGIN ' + header + '-----\n', o); for (var i = 0; i < tmp.length; ) { var limit = i + 64; if (limit > tmp.length) limit = tmp.length; o += buf.write(tmp.slice(i, limit), o); buf[o++] = 10; i = limit; } o += buf.write('-----END ' + header + '-----\n', o); return (buf.slice(0, o)); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../certificate":268,"../identity":283,"../key":285,"../private-key":286,"../signature":287,"../utils":289,"./pem":275,"./x509":282,"asn1":171,"assert-plus":290,"buffer":49}],282:[function(require,module,exports){ (function (Buffer){ // Copyright 2016 Joyent, Inc. module.exports = { read: read, verify: verify, sign: sign, write: write }; var assert = require('assert-plus'); var asn1 = require('asn1'); var algs = require('../algs'); var utils = require('../utils'); var Key = require('../key'); var PrivateKey = require('../private-key'); var pem = require('./pem'); var Identity = require('../identity'); var Signature = require('../signature'); var Certificate = require('../certificate'); var pkcs8 = require('./pkcs8'); /* * This file is based on RFC5280 (X.509). */ /* Helper to read in a single mpint */ function readMPInt(der, nm) { assert.strictEqual(der.peek(), asn1.Ber.Integer, nm + ' is not an Integer'); return (utils.mpNormalize(der.readString(asn1.Ber.Integer, true))); } function verify(cert, key) { var sig = cert.signatures.x509; assert.object(sig, 'x509 signature'); var algParts = sig.algo.split('-'); if (algParts[0] !== key.type) return (false); var blob = sig.cache; if (blob === undefined) { var der = new asn1.BerWriter(); writeTBSCert(cert, der); blob = der.buffer; } var verifier = key.createVerify(algParts[1]); verifier.write(blob); return (verifier.verify(sig.signature)); } function Local(i) { return (asn1.Ber.Context | asn1.Ber.Constructor | i); } function Context(i) { return (asn1.Ber.Context | i); } var SIGN_ALGS = { 'rsa-md5': '1.2.840.113549.1.1.4', 'rsa-sha1': '1.2.840.113549.1.1.5', 'rsa-sha256': '1.2.840.113549.1.1.11', 'rsa-sha384': '1.2.840.113549.1.1.12', 'rsa-sha512': '1.2.840.113549.1.1.13', 'dsa-sha1': '1.2.840.10040.4.3', 'dsa-sha256': '2.16.840.1.101.3.4.3.2', 'ecdsa-sha1': '1.2.840.10045.4.1', 'ecdsa-sha256': '1.2.840.10045.4.3.2', 'ecdsa-sha384': '1.2.840.10045.4.3.3', 'ecdsa-sha512': '1.2.840.10045.4.3.4' }; Object.keys(SIGN_ALGS).forEach(function (k) { SIGN_ALGS[SIGN_ALGS[k]] = k; }); SIGN_ALGS['1.3.14.3.2.3'] = 'rsa-md5'; SIGN_ALGS['1.3.14.3.2.29'] = 'rsa-sha1'; var EXTS = { 'issuerKeyId': '2.5.29.35', 'altName': '2.5.29.17' }; function read(buf, options) { if (typeof (buf) === 'string') { buf = new Buffer(buf, 'binary'); } assert.buffer(buf, 'buf'); var der = new asn1.BerReader(buf); der.readSequence(); if (Math.abs(der.length - der.remain) > 1) { throw (new Error('DER sequence does not contain whole byte ' + 'stream')); } var tbsStart = der.offset; der.readSequence(); var sigOffset = der.offset + der.length; var tbsEnd = sigOffset; if (der.peek() === Local(0)) { der.readSequence(Local(0)); var version = der.readInt(); assert.ok(version <= 3, 'only x.509 versions up to v3 supported'); } var cert = {}; cert.signatures = {}; var sig = (cert.signatures.x509 = {}); sig.extras = {}; cert.serial = readMPInt(der, 'serial'); der.readSequence(); var after = der.offset + der.length; var certAlgOid = der.readOID(); var certAlg = SIGN_ALGS[certAlgOid]; if (certAlg === undefined) throw (new Error('unknown signature algorithm ' + certAlgOid)); der._offset = after; cert.issuer = Identity.parseAsn1(der); der.readSequence(); cert.validFrom = readDate(der); cert.validUntil = readDate(der); cert.subjects = [Identity.parseAsn1(der)]; der.readSequence(); after = der.offset + der.length; cert.subjectKey = pkcs8.readPkcs8(undefined, 'public', der); der._offset = after; /* issuerUniqueID */ if (der.peek() === Local(1)) { der.readSequence(Local(1)); sig.extras.issuerUniqueID = buf.slice(der.offset, der.offset + der.length); der._offset += der.length; } /* subjectUniqueID */ if (der.peek() === Local(2)) { der.readSequence(Local(2)); sig.extras.subjectUniqueID = buf.slice(der.offset, der.offset + der.length); der._offset += der.length; } /* extensions */ if (der.peek() === Local(3)) { der.readSequence(Local(3)); var extEnd = der.offset + der.length; der.readSequence(); while (der.offset < extEnd) readExtension(cert, buf, der); assert.strictEqual(der.offset, extEnd); } assert.strictEqual(der.offset, sigOffset); der.readSequence(); after = der.offset + der.length; var sigAlgOid = der.readOID(); var sigAlg = SIGN_ALGS[sigAlgOid]; if (sigAlg === undefined) throw (new Error('unknown signature algorithm ' + sigAlgOid)); der._offset = after; var sigData = der.readString(asn1.Ber.BitString, true); if (sigData[0] === 0) sigData = sigData.slice(1); var algParts = sigAlg.split('-'); sig.signature = Signature.parse(sigData, algParts[0], 'asn1'); sig.signature.hashAlgorithm = algParts[1]; sig.algo = sigAlg; sig.cache = buf.slice(tbsStart, tbsEnd); return (new Certificate(cert)); } function readDate(der) { if (der.peek() === asn1.Ber.UTCTime) { return (utcTimeToDate(der.readString(asn1.Ber.UTCTime))); } else if (der.peek() === asn1.Ber.GeneralizedTime) { return (gTimeToDate(der.readString(asn1.Ber.GeneralizedTime))); } else { throw (new Error('Unsupported date format')); } } /* RFC5280, section 4.2.1.6 (GeneralName type) */ var ALTNAME = { OtherName: Local(0), RFC822Name: Context(1), DNSName: Context(2), X400Address: Local(3), DirectoryName: Local(4), EDIPartyName: Local(5), URI: Context(6), IPAddress: Context(7), OID: Context(8) }; function readExtension(cert, buf, der) { der.readSequence(); var after = der.offset + der.length; var extId = der.readOID(); var id; var sig = cert.signatures.x509; sig.extras.exts = []; var critical; if (der.peek() === asn1.Ber.Boolean) critical = der.readBoolean(); switch (extId) { case (EXTS.altName): der.readSequence(asn1.Ber.OctetString); der.readSequence(); var aeEnd = der.offset + der.length; while (der.offset < aeEnd) { switch (der.peek()) { case ALTNAME.OtherName: case ALTNAME.EDIPartyName: der.readSequence(); der._offset += der.length; break; case ALTNAME.OID: der.readOID(ALTNAME.OID); break; case ALTNAME.RFC822Name: /* RFC822 specifies email addresses */ var email = der.readString(ALTNAME.RFC822Name); id = Identity.forEmail(email); if (!cert.subjects[0].equals(id)) cert.subjects.push(id); break; case ALTNAME.DirectoryName: der.readSequence(ALTNAME.DirectoryName); id = Identity.parseAsn1(der); if (!cert.subjects[0].equals(id)) cert.subjects.push(id); break; case ALTNAME.DNSName: var host = der.readString( ALTNAME.DNSName); id = Identity.forHost(host); if (!cert.subjects[0].equals(id)) cert.subjects.push(id); break; default: der.readString(der.peek()); break; } } sig.extras.exts.push({ oid: extId, critical: critical }); break; default: sig.extras.exts.push({ oid: extId, critical: critical, data: der.readString(asn1.Ber.OctetString, true) }); break; } der._offset = after; } var UTCTIME_RE = /^([0-9]{2})([0-9]{2})([0-9]{2})([0-9]{2})([0-9]{2})([0-9]{2})?Z$/; function utcTimeToDate(t) { var m = t.match(UTCTIME_RE); assert.ok(m, 'timestamps must be in UTC'); var d = new Date(); var thisYear = d.getUTCFullYear(); var century = Math.floor(thisYear / 100) * 100; var year = parseInt(m[1], 10); if (thisYear % 100 < 50 && year >= 60) year += (century - 1); else year += century; d.setUTCFullYear(year, parseInt(m[2], 10) - 1, parseInt(m[3], 10)); d.setUTCHours(parseInt(m[4], 10), parseInt(m[5], 10)); if (m[6] && m[6].length > 0) d.setUTCSeconds(parseInt(m[6], 10)); return (d); } var GTIME_RE = /^([0-9]{4})([0-9]{2})([0-9]{2})([0-9]{2})([0-9]{2})([0-9]{2})?Z$/; function gTimeToDate(t) { var m = t.match(GTIME_RE); assert.ok(m); var d = new Date(); d.setUTCFullYear(parseInt(m[1], 10), parseInt(m[2], 10) - 1, parseInt(m[3], 10)); d.setUTCHours(parseInt(m[4], 10), parseInt(m[5], 10)); if (m[6] && m[6].length > 0) d.setUTCSeconds(parseInt(m[6], 10)); return (d); } function zeroPad(n) { var s = '' + n; while (s.length < 2) s = '0' + s; return (s); } function dateToUTCTime(d) { var s = ''; s += zeroPad(d.getUTCFullYear() % 100); s += zeroPad(d.getUTCMonth() + 1); s += zeroPad(d.getUTCDate()); s += zeroPad(d.getUTCHours()); s += zeroPad(d.getUTCMinutes()); s += zeroPad(d.getUTCSeconds()); s += 'Z'; return (s); } function sign(cert, key) { if (cert.signatures.x509 === undefined) cert.signatures.x509 = {}; var sig = cert.signatures.x509; sig.algo = key.type + '-' + key.defaultHashAlgorithm(); if (SIGN_ALGS[sig.algo] === undefined) return (false); var der = new asn1.BerWriter(); writeTBSCert(cert, der); var blob = der.buffer; sig.cache = blob; var signer = key.createSign(); signer.write(blob); cert.signatures.x509.signature = signer.sign(); return (true); } function write(cert, options) { var sig = cert.signatures.x509; assert.object(sig, 'x509 signature'); var der = new asn1.BerWriter(); der.startSequence(); if (sig.cache) { der._ensure(sig.cache.length); sig.cache.copy(der._buf, der._offset); der._offset += sig.cache.length; } else { writeTBSCert(cert, der); } der.startSequence(); der.writeOID(SIGN_ALGS[sig.algo]); if (sig.algo.match(/^rsa-/)) der.writeNull(); der.endSequence(); var sigData = sig.signature.toBuffer('asn1'); var data = new Buffer(sigData.length + 1); data[0] = 0; sigData.copy(data, 1); der.writeBuffer(data, asn1.Ber.BitString); der.endSequence(); return (der.buffer); } function writeTBSCert(cert, der) { var sig = cert.signatures.x509; assert.object(sig, 'x509 signature'); der.startSequence(); der.startSequence(Local(0)); der.writeInt(2); der.endSequence(); der.writeBuffer(utils.mpNormalize(cert.serial), asn1.Ber.Integer); der.startSequence(); der.writeOID(SIGN_ALGS[sig.algo]); der.endSequence(); cert.issuer.toAsn1(der); der.startSequence(); der.writeString(dateToUTCTime(cert.validFrom), asn1.Ber.UTCTime); der.writeString(dateToUTCTime(cert.validUntil), asn1.Ber.UTCTime); der.endSequence(); var subject = cert.subjects[0]; var altNames = cert.subjects.slice(1); subject.toAsn1(der); pkcs8.writePkcs8(der, cert.subjectKey); if (sig.extras && sig.extras.issuerUniqueID) { der.writeBuffer(sig.extras.issuerUniqueID, Local(1)); } if (sig.extras && sig.extras.subjectUniqueID) { der.writeBuffer(sig.extras.subjectUniqueID, Local(2)); } if (altNames.length > 0 || subject.type === 'host' || (sig.extras && sig.extras.exts)) { der.startSequence(Local(3)); der.startSequence(); var exts = [ { oid: EXTS.altName } ]; if (sig.extras && sig.extras.exts) exts = sig.extras.exts; for (var i = 0; i < exts.length; ++i) { der.startSequence(); der.writeOID(exts[i].oid); if (exts[i].critical !== undefined) der.writeBoolean(exts[i].critical); if (exts[i].oid === EXTS.altName) { der.startSequence(asn1.Ber.OctetString); der.startSequence(); if (subject.type === 'host') { der.writeString(subject.hostname, Context(2)); } for (var j = 0; j < altNames.length; ++j) { if (altNames[j].type === 'host') { der.writeString( altNames[j].hostname, ALTNAME.DNSName); } else if (altNames[j].type === 'email') { der.writeString( altNames[j].email, ALTNAME.RFC822Name); } else { /* * Encode anything else as a * DN style name for now. */ der.startSequence( ALTNAME.DirectoryName); altNames[j].toAsn1(der); der.endSequence(); } } der.endSequence(); der.endSequence(); } else { der.writeBuffer(exts[i].data, asn1.Ber.OctetString); } der.endSequence(); } der.endSequence(); der.endSequence(); } der.endSequence(); } }).call(this,require("buffer").Buffer) },{"../algs":267,"../certificate":268,"../identity":283,"../key":285,"../private-key":286,"../signature":287,"../utils":289,"./pem":275,"./pkcs8":277,"asn1":171,"assert-plus":290,"buffer":49}],283:[function(require,module,exports){ // Copyright 2016 Joyent, Inc. module.exports = Identity; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var Fingerprint = require('./fingerprint'); var Signature = require('./signature'); var errs = require('./errors'); var util = require('util'); var utils = require('./utils'); var asn1 = require('asn1'); /*JSSTYLED*/ var DNS_NAME_RE = /^([*]|[a-z0-9][a-z0-9\-]{0,62})(?:\.([*]|[a-z0-9][a-z0-9\-]{0,62}))*$/i; var oids = {}; oids.cn = '2.5.4.3'; oids.o = '2.5.4.10'; oids.ou = '2.5.4.11'; oids.l = '2.5.4.7'; oids.s = '2.5.4.8'; oids.c = '2.5.4.6'; oids.sn = '2.5.4.4'; oids.dc = '0.9.2342.19200300.100.1.25'; oids.uid = '0.9.2342.19200300.100.1.1'; oids.mail = '0.9.2342.19200300.100.1.3'; var unoids = {}; Object.keys(oids).forEach(function (k) { unoids[oids[k]] = k; }); function Identity(opts) { var self = this; assert.object(opts, 'options'); assert.arrayOfObject(opts.components, 'options.components'); this.components = opts.components; this.componentLookup = {}; this.components.forEach(function (c) { if (c.name && !c.oid) c.oid = oids[c.name]; if (c.oid && !c.name) c.name = unoids[c.oid]; if (self.componentLookup[c.name] === undefined) self.componentLookup[c.name] = []; self.componentLookup[c.name].push(c); }); if (this.componentLookup.cn && this.componentLookup.cn.length > 0) { this.cn = this.componentLookup.cn[0].value; } assert.optionalString(opts.type, 'options.type'); if (opts.type === undefined) { if (this.components.length === 1 && this.componentLookup.cn && this.componentLookup.cn.length === 1 && this.componentLookup.cn[0].value.match(DNS_NAME_RE)) { this.type = 'host'; this.hostname = this.componentLookup.cn[0].value; } else if (this.componentLookup.dc && this.components.length === this.componentLookup.dc.length) { this.type = 'host'; this.hostname = this.componentLookup.dc.map( function (c) { return (c.value); }).join('.'); } else if (this.componentLookup.uid && this.components.length === this.componentLookup.uid.length) { this.type = 'user'; this.uid = this.componentLookup.uid[0].value; } else if (this.componentLookup.cn && this.componentLookup.cn.length === 1 && this.componentLookup.cn[0].value.match(DNS_NAME_RE)) { this.type = 'host'; this.hostname = this.componentLookup.cn[0].value; } else if (this.componentLookup.uid && this.componentLookup.uid.length === 1) { this.type = 'user'; this.uid = this.componentLookup.uid[0].value; } else if (this.componentLookup.mail && this.componentLookup.mail.length === 1) { this.type = 'email'; this.email = this.componentLookup.mail[0].value; } else if (this.componentLookup.cn && this.componentLookup.cn.length === 1) { this.type = 'user'; this.uid = this.componentLookup.cn[0].value; } else { this.type = 'unknown'; } } else { this.type = opts.type; if (this.type === 'host') this.hostname = opts.hostname; else if (this.type === 'user') this.uid = opts.uid; else if (this.type === 'email') this.email = opts.email; else throw (new Error('Unknown type ' + this.type)); } } Identity.prototype.toString = function () { return (this.components.map(function (c) { return (c.name.toUpperCase() + '=' + c.value); }).join(', ')); }; Identity.prototype.toAsn1 = function (der, tag) { der.startSequence(tag); this.components.forEach(function (c) { der.startSequence(asn1.Ber.Constructor | asn1.Ber.Set); der.startSequence(); der.writeOID(c.oid); der.writeString(c.value, asn1.Ber.PrintableString); der.endSequence(); der.endSequence(); }); der.endSequence(); }; function globMatch(a, b) { if (a === '**' || b === '**') return (true); var aParts = a.split('.'); var bParts = b.split('.'); if (aParts.length !== bParts.length) return (false); for (var i = 0; i < aParts.length; ++i) { if (aParts[i] === '*' || bParts[i] === '*') continue; if (aParts[i] !== bParts[i]) return (false); } return (true); } Identity.prototype.equals = function (other) { if (!Identity.isIdentity(other, [1, 0])) return (false); if (other.components.length !== this.components.length) return (false); for (var i = 0; i < this.components.length; ++i) { if (this.components[i].oid !== other.components[i].oid) return (false); if (!globMatch(this.components[i].value, other.components[i].value)) { return (false); } } return (true); }; Identity.forHost = function (hostname) { assert.string(hostname, 'hostname'); return (new Identity({ type: 'host', hostname: hostname, components: [ { name: 'cn', value: hostname } ] })); }; Identity.forUser = function (uid) { assert.string(uid, 'uid'); return (new Identity({ type: 'user', uid: uid, components: [ { name: 'uid', value: uid } ] })); }; Identity.forEmail = function (email) { assert.string(email, 'email'); return (new Identity({ type: 'email', email: email, components: [ { name: 'mail', value: email } ] })); }; Identity.parseDN = function (dn) { assert.string(dn, 'dn'); var parts = dn.split(','); var cmps = parts.map(function (c) { c = c.trim(); var eqPos = c.indexOf('='); var name = c.slice(0, eqPos).toLowerCase(); var value = c.slice(eqPos + 1); return ({ name: name, value: value }); }); return (new Identity({ components: cmps })); }; Identity.parseAsn1 = function (der, top) { var components = []; der.readSequence(top); var end = der.offset + der.length; while (der.offset < end) { der.readSequence(asn1.Ber.Constructor | asn1.Ber.Set); var after = der.offset + der.length; der.readSequence(); var oid = der.readOID(); var type = der.peek(); var value; switch (type) { case asn1.Ber.PrintableString: case asn1.Ber.IA5String: case asn1.Ber.OctetString: case asn1.Ber.T61String: value = der.readString(type); break; case asn1.Ber.Utf8String: value = der.readString(type, true); value = value.toString('utf8'); break; case asn1.Ber.CharacterString: case asn1.Ber.BMPString: value = der.readString(type, true); value = value.toString('utf16le'); break; default: throw (new Error('Unknown asn1 type ' + type)); } components.push({ oid: oid, value: value }); der._offset = after; } der._offset = end; return (new Identity({ components: components })); }; Identity.isIdentity = function (obj, ver) { return (utils.isCompatible(obj, Identity, ver)); }; /* * API versions for Identity: * [1,0] -- initial ver */ Identity.prototype._sshpkApiVersion = [1, 0]; Identity._oldVersionDetect = function (obj) { return ([1, 0]); }; },{"./algs":267,"./errors":271,"./fingerprint":272,"./signature":287,"./utils":289,"asn1":171,"assert-plus":290,"crypto":58,"util":163}],284:[function(require,module,exports){ // Copyright 2015 Joyent, Inc. var Key = require('./key'); var Fingerprint = require('./fingerprint'); var Signature = require('./signature'); var PrivateKey = require('./private-key'); var Certificate = require('./certificate'); var Identity = require('./identity'); var errs = require('./errors'); module.exports = { /* top-level classes */ Key: Key, parseKey: Key.parse, Fingerprint: Fingerprint, parseFingerprint: Fingerprint.parse, Signature: Signature, parseSignature: Signature.parse, PrivateKey: PrivateKey, parsePrivateKey: PrivateKey.parse, Certificate: Certificate, parseCertificate: Certificate.parse, createSelfSignedCertificate: Certificate.createSelfSigned, createCertificate: Certificate.create, Identity: Identity, identityFromDN: Identity.parseDN, identityForHost: Identity.forHost, identityForUser: Identity.forUser, identityForEmail: Identity.forEmail, /* errors */ FingerprintFormatError: errs.FingerprintFormatError, InvalidAlgorithmError: errs.InvalidAlgorithmError, KeyParseError: errs.KeyParseError, SignatureParseError: errs.SignatureParseError, KeyEncryptedError: errs.KeyEncryptedError, CertificateParseError: errs.CertificateParseError }; },{"./certificate":268,"./errors":271,"./fingerprint":272,"./identity":283,"./key":285,"./private-key":286,"./signature":287}],285:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = Key; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var Fingerprint = require('./fingerprint'); var Signature = require('./signature'); var DiffieHellman = require('./dhe'); var errs = require('./errors'); var utils = require('./utils'); var PrivateKey = require('./private-key'); var edCompat; try { edCompat = require('./ed-compat'); } catch (e) { /* Just continue through, and bail out if we try to use it. */ } var InvalidAlgorithmError = errs.InvalidAlgorithmError; var KeyParseError = errs.KeyParseError; var formats = {}; formats['auto'] = require('./formats/auto'); formats['pem'] = require('./formats/pem'); formats['pkcs1'] = require('./formats/pkcs1'); formats['pkcs8'] = require('./formats/pkcs8'); formats['rfc4253'] = require('./formats/rfc4253'); formats['ssh'] = require('./formats/ssh'); formats['ssh-private'] = require('./formats/ssh-private'); formats['openssh'] = formats['ssh-private']; function Key(opts) { assert.object(opts, 'options'); assert.arrayOfObject(opts.parts, 'options.parts'); assert.string(opts.type, 'options.type'); assert.optionalString(opts.comment, 'options.comment'); var algInfo = algs.info[opts.type]; if (typeof (algInfo) !== 'object') throw (new InvalidAlgorithmError(opts.type)); var partLookup = {}; for (var i = 0; i < opts.parts.length; ++i) { var part = opts.parts[i]; partLookup[part.name] = part; } this.type = opts.type; this.parts = opts.parts; this.part = partLookup; this.comment = undefined; this.source = opts.source; /* for speeding up hashing/fingerprint operations */ this._rfc4253Cache = opts._rfc4253Cache; this._hashCache = {}; var sz; this.curve = undefined; if (this.type === 'ecdsa') { var curve = this.part.curve.data.toString(); this.curve = curve; sz = algs.curves[curve].size; } else if (this.type === 'ed25519') { sz = 256; this.curve = 'curve25519'; } else { var szPart = this.part[algInfo.sizePart]; sz = szPart.data.length; sz = sz * 8 - utils.countZeros(szPart.data); } this.size = sz; } Key.formats = formats; Key.prototype.toBuffer = function (format, options) { if (format === undefined) format = 'ssh'; assert.string(format, 'format'); assert.object(formats[format], 'formats[format]'); assert.optionalObject(options, 'options'); if (format === 'rfc4253') { if (this._rfc4253Cache === undefined) this._rfc4253Cache = formats['rfc4253'].write(this); return (this._rfc4253Cache); } return (formats[format].write(this, options)); }; Key.prototype.toString = function (format, options) { return (this.toBuffer(format, options).toString()); }; Key.prototype.hash = function (algo) { assert.string(algo, 'algorithm'); algo = algo.toLowerCase(); if (algs.hashAlgs[algo] === undefined) throw (new InvalidAlgorithmError(algo)); if (this._hashCache[algo]) return (this._hashCache[algo]); var hash = crypto.createHash(algo). update(this.toBuffer('rfc4253')).digest(); this._hashCache[algo] = hash; return (hash); }; Key.prototype.fingerprint = function (algo) { if (algo === undefined) algo = 'sha256'; assert.string(algo, 'algorithm'); var opts = { type: 'key', hash: this.hash(algo), algorithm: algo }; return (new Fingerprint(opts)); }; Key.prototype.defaultHashAlgorithm = function () { var hashAlgo = 'sha1'; if (this.type === 'rsa') hashAlgo = 'sha256'; if (this.type === 'dsa' && this.size > 1024) hashAlgo = 'sha256'; if (this.type === 'ed25519') hashAlgo = 'sha512'; if (this.type === 'ecdsa') { if (this.size <= 256) hashAlgo = 'sha256'; else if (this.size <= 384) hashAlgo = 'sha384'; else hashAlgo = 'sha512'; } return (hashAlgo); }; Key.prototype.createVerify = function (hashAlgo) { if (hashAlgo === undefined) hashAlgo = this.defaultHashAlgorithm(); assert.string(hashAlgo, 'hash algorithm'); /* ED25519 is not supported by OpenSSL, use a javascript impl. */ if (this.type === 'ed25519' && edCompat !== undefined) return (new edCompat.Verifier(this, hashAlgo)); if (this.type === 'curve25519') throw (new Error('Curve25519 keys are not suitable for ' + 'signing or verification')); var v, nm, err; try { nm = hashAlgo.toUpperCase(); v = crypto.createVerify(nm); } catch (e) { err = e; } if (v === undefined || (err instanceof Error && err.message.match(/Unknown message digest/))) { nm = 'RSA-'; nm += hashAlgo.toUpperCase(); v = crypto.createVerify(nm); } assert.ok(v, 'failed to create verifier'); var oldVerify = v.verify.bind(v); var key = this.toBuffer('pkcs8'); var self = this; v.verify = function (signature, fmt) { if (Signature.isSignature(signature, [2, 0])) { if (signature.type !== self.type) return (false); if (signature.hashAlgorithm && signature.hashAlgorithm !== hashAlgo) return (false); return (oldVerify(key, signature.toBuffer('asn1'))); } else if (typeof (signature) === 'string' || Buffer.isBuffer(signature)) { return (oldVerify(key, signature, fmt)); /* * Avoid doing this on valid arguments, walking the prototype * chain can be quite slow. */ } else if (Signature.isSignature(signature, [1, 0])) { throw (new Error('signature was created by too old ' + 'a version of sshpk and cannot be verified')); } else { throw (new TypeError('signature must be a string, ' + 'Buffer, or Signature object')); } }; return (v); }; Key.prototype.createDiffieHellman = function () { if (this.type === 'rsa') throw (new Error('RSA keys do not support Diffie-Hellman')); return (new DiffieHellman(this)); }; Key.prototype.createDH = Key.prototype.createDiffieHellman; Key.parse = function (data, format, options) { if (typeof (data) !== 'string') assert.buffer(data, 'data'); if (format === undefined) format = 'auto'; assert.string(format, 'format'); if (typeof (options) === 'string') options = { filename: options }; assert.optionalObject(options, 'options'); if (options === undefined) options = {}; assert.optionalString(options.filename, 'options.filename'); if (options.filename === undefined) options.filename = '(unnamed)'; assert.object(formats[format], 'formats[format]'); try { var k = formats[format].read(data, options); if (k instanceof PrivateKey) k = k.toPublic(); if (!k.comment) k.comment = options.filename; return (k); } catch (e) { if (e.name === 'KeyEncryptedError') throw (e); throw (new KeyParseError(options.filename, format, e)); } }; Key.isKey = function (obj, ver) { return (utils.isCompatible(obj, Key, ver)); }; /* * API versions for Key: * [1,0] -- initial ver, may take Signature for createVerify or may not * [1,1] -- added pkcs1, pkcs8 formats * [1,2] -- added auto, ssh-private, openssh formats * [1,3] -- added defaultHashAlgorithm * [1,4] -- added ed support, createDH * [1,5] -- first explicitly tagged version */ Key.prototype._sshpkApiVersion = [1, 5]; Key._oldVersionDetect = function (obj) { assert.func(obj.toBuffer); assert.func(obj.fingerprint); if (obj.createDH) return ([1, 4]); if (obj.defaultHashAlgorithm) return ([1, 3]); if (obj.formats['auto']) return ([1, 2]); if (obj.formats['pkcs1']) return ([1, 1]); return ([1, 0]); }; }).call(this,{"isBuffer":require("../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js")}) },{"../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js":98,"./algs":267,"./dhe":269,"./ed-compat":270,"./errors":271,"./fingerprint":272,"./formats/auto":273,"./formats/pem":275,"./formats/pkcs1":276,"./formats/pkcs8":277,"./formats/rfc4253":278,"./formats/ssh":280,"./formats/ssh-private":279,"./private-key":286,"./signature":287,"./utils":289,"assert-plus":290,"crypto":58}],286:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = PrivateKey; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var Fingerprint = require('./fingerprint'); var Signature = require('./signature'); var errs = require('./errors'); var util = require('util'); var utils = require('./utils'); var edCompat; var ed; try { edCompat = require('./ed-compat'); } catch (e) { /* Just continue through, and bail out if we try to use it. */ } var Key = require('./key'); var InvalidAlgorithmError = errs.InvalidAlgorithmError; var KeyParseError = errs.KeyParseError; var KeyEncryptedError = errs.KeyEncryptedError; var formats = {}; formats['auto'] = require('./formats/auto'); formats['pem'] = require('./formats/pem'); formats['pkcs1'] = require('./formats/pkcs1'); formats['pkcs8'] = require('./formats/pkcs8'); formats['rfc4253'] = require('./formats/rfc4253'); formats['ssh-private'] = require('./formats/ssh-private'); formats['openssh'] = formats['ssh-private']; formats['ssh'] = formats['ssh-private']; function PrivateKey(opts) { assert.object(opts, 'options'); Key.call(this, opts); this._pubCache = undefined; } util.inherits(PrivateKey, Key); PrivateKey.formats = formats; PrivateKey.prototype.toBuffer = function (format, options) { if (format === undefined) format = 'pkcs1'; assert.string(format, 'format'); assert.object(formats[format], 'formats[format]'); assert.optionalObject(options, 'options'); return (formats[format].write(this, options)); }; PrivateKey.prototype.hash = function (algo) { return (this.toPublic().hash(algo)); }; PrivateKey.prototype.toPublic = function () { if (this._pubCache) return (this._pubCache); var algInfo = algs.info[this.type]; var pubParts = []; for (var i = 0; i < algInfo.parts.length; ++i) { var p = algInfo.parts[i]; pubParts.push(this.part[p]); } this._pubCache = new Key({ type: this.type, source: this, parts: pubParts }); if (this.comment) this._pubCache.comment = this.comment; return (this._pubCache); }; PrivateKey.prototype.derive = function (newType, newSize) { assert.string(newType, 'type'); assert.optionalNumber(newSize, 'size'); var priv, pub; if (this.type === 'ed25519' && newType === 'curve25519') { if (ed === undefined) ed = require('jodid25519'); priv = this.part.r.data; if (priv[0] === 0x00) priv = priv.slice(1); priv = priv.slice(0, 32); pub = ed.dh.publicKey(priv); priv = utils.mpNormalize(Buffer.concat([priv, pub])); return (new PrivateKey({ type: 'curve25519', parts: [ { name: 'R', data: utils.mpNormalize(pub) }, { name: 'r', data: priv } ] })); } else if (this.type === 'curve25519' && newType === 'ed25519') { if (ed === undefined) ed = require('jodid25519'); priv = this.part.r.data; if (priv[0] === 0x00) priv = priv.slice(1); priv = priv.slice(0, 32); pub = ed.eddsa.publicKey(priv.toString('binary')); pub = new Buffer(pub, 'binary'); priv = utils.mpNormalize(Buffer.concat([priv, pub])); return (new PrivateKey({ type: 'ed25519', parts: [ { name: 'R', data: utils.mpNormalize(pub) }, { name: 'r', data: priv } ] })); } throw (new Error('Key derivation not supported from ' + this.type + ' to ' + newType)); }; PrivateKey.prototype.createVerify = function (hashAlgo) { return (this.toPublic().createVerify(hashAlgo)); }; PrivateKey.prototype.createSign = function (hashAlgo) { if (hashAlgo === undefined) hashAlgo = this.defaultHashAlgorithm(); assert.string(hashAlgo, 'hash algorithm'); /* ED25519 is not supported by OpenSSL, use a javascript impl. */ if (this.type === 'ed25519' && edCompat !== undefined) return (new edCompat.Signer(this, hashAlgo)); if (this.type === 'curve25519') throw (new Error('Curve25519 keys are not suitable for ' + 'signing or verification')); var v, nm, err; try { nm = hashAlgo.toUpperCase(); v = crypto.createSign(nm); } catch (e) { err = e; } if (v === undefined || (err instanceof Error && err.message.match(/Unknown message digest/))) { nm = 'RSA-'; nm += hashAlgo.toUpperCase(); v = crypto.createSign(nm); } assert.ok(v, 'failed to create verifier'); var oldSign = v.sign.bind(v); var key = this.toBuffer('pkcs1'); var type = this.type; v.sign = function () { var sig = oldSign(key); if (typeof (sig) === 'string') sig = new Buffer(sig, 'binary'); sig = Signature.parse(sig, type, 'asn1'); sig.hashAlgorithm = hashAlgo; return (sig); }; return (v); }; PrivateKey.parse = function (data, format, options) { if (typeof (data) !== 'string') assert.buffer(data, 'data'); if (format === undefined) format = 'auto'; assert.string(format, 'format'); if (typeof (options) === 'string') options = { filename: options }; assert.optionalObject(options, 'options'); if (options === undefined) options = {}; assert.optionalString(options.filename, 'options.filename'); if (options.filename === undefined) options.filename = '(unnamed)'; assert.object(formats[format], 'formats[format]'); try { var k = formats[format].read(data, options); assert.ok(k instanceof PrivateKey, 'key is not a private key'); if (!k.comment) k.comment = options.filename; return (k); } catch (e) { if (e.name === 'KeyEncryptedError') throw (e); throw (new KeyParseError(options.filename, format, e)); } }; PrivateKey.isPrivateKey = function (obj, ver) { return (utils.isCompatible(obj, PrivateKey, ver)); }; /* * API versions for PrivateKey: * [1,0] -- initial ver * [1,1] -- added auto, pkcs[18], openssh/ssh-private formats * [1,2] -- added defaultHashAlgorithm * [1,3] -- added derive, ed, createDH * [1,4] -- first tagged version */ PrivateKey.prototype._sshpkApiVersion = [1, 4]; PrivateKey._oldVersionDetect = function (obj) { assert.func(obj.toPublic); assert.func(obj.createSign); if (obj.derive) return ([1, 3]); if (obj.defaultHashAlgorithm) return ([1, 2]); if (obj.formats['auto']) return ([1, 1]); return ([1, 0]); }; }).call(this,require("buffer").Buffer) },{"./algs":267,"./ed-compat":270,"./errors":271,"./fingerprint":272,"./formats/auto":273,"./formats/pem":275,"./formats/pkcs1":276,"./formats/pkcs8":277,"./formats/rfc4253":278,"./formats/ssh-private":279,"./key":285,"./signature":287,"./utils":289,"assert-plus":290,"buffer":49,"crypto":58,"jodid25519":227,"util":163}],287:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = Signature; var assert = require('assert-plus'); var algs = require('./algs'); var crypto = require('crypto'); var errs = require('./errors'); var utils = require('./utils'); var asn1 = require('asn1'); var SSHBuffer = require('./ssh-buffer'); var InvalidAlgorithmError = errs.InvalidAlgorithmError; var SignatureParseError = errs.SignatureParseError; function Signature(opts) { assert.object(opts, 'options'); assert.arrayOfObject(opts.parts, 'options.parts'); assert.string(opts.type, 'options.type'); var partLookup = {}; for (var i = 0; i < opts.parts.length; ++i) { var part = opts.parts[i]; partLookup[part.name] = part; } this.type = opts.type; this.hashAlgorithm = opts.hashAlgo; this.parts = opts.parts; this.part = partLookup; } Signature.prototype.toBuffer = function (format) { if (format === undefined) format = 'asn1'; assert.string(format, 'format'); var buf; switch (this.type) { case 'rsa': case 'ed25519': if (format === 'ssh') { buf = new SSHBuffer({}); buf.writeString('ssh-' + this.type); buf.writePart(this.part.sig); return (buf.toBuffer()); } else { return (this.part.sig.data); } case 'dsa': case 'ecdsa': var r, s; if (format === 'asn1') { var der = new asn1.BerWriter(); der.startSequence(); r = utils.mpNormalize(this.part.r.data); s = utils.mpNormalize(this.part.s.data); der.writeBuffer(r, asn1.Ber.Integer); der.writeBuffer(s, asn1.Ber.Integer); der.endSequence(); return (der.buffer); } else if (format === 'ssh' && this.type === 'dsa') { buf = new SSHBuffer({}); buf.writeString('ssh-dss'); r = this.part.r.data; if (r.length > 20 && r[0] === 0x00) r = r.slice(1); s = this.part.s.data; if (s.length > 20 && s[0] === 0x00) s = s.slice(1); if ((this.hashAlgorithm && this.hashAlgorithm !== 'sha1') || r.length + s.length !== 40) { throw (new Error('OpenSSH only supports ' + 'DSA signatures with SHA1 hash')); } buf.writeBuffer(Buffer.concat([r, s])); return (buf.toBuffer()); } else if (format === 'ssh' && this.type === 'ecdsa') { var inner = new SSHBuffer({}); r = this.part.r.data; inner.writeBuffer(r); inner.writePart(this.part.s); buf = new SSHBuffer({}); /* XXX: find a more proper way to do this? */ var curve; if (r[0] === 0x00) r = r.slice(1); var sz = r.length * 8; if (sz === 256) curve = 'nistp256'; else if (sz === 384) curve = 'nistp384'; else if (sz === 528) curve = 'nistp521'; buf.writeString('ecdsa-sha2-' + curve); buf.writeBuffer(inner.toBuffer()); return (buf.toBuffer()); } throw (new Error('Invalid signature format')); default: throw (new Error('Invalid signature data')); } }; Signature.prototype.toString = function (format) { assert.optionalString(format, 'format'); return (this.toBuffer(format).toString('base64')); }; Signature.parse = function (data, type, format) { if (typeof (data) === 'string') data = new Buffer(data, 'base64'); assert.buffer(data, 'data'); assert.string(format, 'format'); assert.string(type, 'type'); var opts = {}; opts.type = type.toLowerCase(); opts.parts = []; try { assert.ok(data.length > 0, 'signature must not be empty'); switch (opts.type) { case 'rsa': return (parseOneNum(data, type, format, opts, 'ssh-rsa')); case 'ed25519': return (parseOneNum(data, type, format, opts, 'ssh-ed25519')); case 'dsa': case 'ecdsa': if (format === 'asn1') return (parseDSAasn1(data, type, format, opts)); else if (opts.type === 'dsa') return (parseDSA(data, type, format, opts)); else return (parseECDSA(data, type, format, opts)); default: throw (new InvalidAlgorithmError(type)); } } catch (e) { if (e instanceof InvalidAlgorithmError) throw (e); throw (new SignatureParseError(type, format, e)); } }; function parseOneNum(data, type, format, opts, headType) { if (format === 'ssh') { try { var buf = new SSHBuffer({buffer: data}); var head = buf.readString(); } catch (e) { /* fall through */ } if (head === headType) { var sig = buf.readPart(); assert.ok(buf.atEnd(), 'extra trailing bytes'); sig.name = 'sig'; opts.parts.push(sig); return (new Signature(opts)); } } opts.parts.push({name: 'sig', data: data}); return (new Signature(opts)); } function parseDSAasn1(data, type, format, opts) { var der = new asn1.BerReader(data); der.readSequence(); var r = der.readString(asn1.Ber.Integer, true); var s = der.readString(asn1.Ber.Integer, true); opts.parts.push({name: 'r', data: utils.mpNormalize(r)}); opts.parts.push({name: 's', data: utils.mpNormalize(s)}); return (new Signature(opts)); } function parseDSA(data, type, format, opts) { if (data.length != 40) { var buf = new SSHBuffer({buffer: data}); var d = buf.readBuffer(); if (d.toString('ascii') === 'ssh-dss') d = buf.readBuffer(); assert.ok(buf.atEnd(), 'extra trailing bytes'); assert.strictEqual(d.length, 40, 'invalid inner length'); data = d; } opts.parts.push({name: 'r', data: data.slice(0, 20)}); opts.parts.push({name: 's', data: data.slice(20, 40)}); return (new Signature(opts)); } function parseECDSA(data, type, format, opts) { var buf = new SSHBuffer({buffer: data}); var r, s; var inner = buf.readBuffer(); if (inner.toString('ascii').match(/^ecdsa-/)) { inner = buf.readBuffer(); assert.ok(buf.atEnd(), 'extra trailing bytes on outer'); buf = new SSHBuffer({buffer: inner}); r = buf.readPart(); } else { r = {data: inner}; } s = buf.readPart(); assert.ok(buf.atEnd(), 'extra trailing bytes'); r.name = 'r'; s.name = 's'; opts.parts.push(r); opts.parts.push(s); return (new Signature(opts)); } Signature.isSignature = function (obj, ver) { return (utils.isCompatible(obj, Signature, ver)); }; /* * API versions for Signature: * [1,0] -- initial ver * [2,0] -- support for rsa in full ssh format, compat with sshpk-agent * hashAlgorithm property * [2,1] -- first tagged version */ Signature.prototype._sshpkApiVersion = [2, 1]; Signature._oldVersionDetect = function (obj) { assert.func(obj.toBuffer); if (obj.hasOwnProperty('hashAlgorithm')) return ([2, 0]); return ([1, 0]); }; }).call(this,require("buffer").Buffer) },{"./algs":267,"./errors":271,"./ssh-buffer":288,"./utils":289,"asn1":171,"assert-plus":290,"buffer":49,"crypto":58}],288:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = SSHBuffer; var assert = require('assert-plus'); function SSHBuffer(opts) { assert.object(opts, 'options'); if (opts.buffer !== undefined) assert.buffer(opts.buffer, 'options.buffer'); this._size = opts.buffer ? opts.buffer.length : 1024; this._buffer = opts.buffer || (new Buffer(this._size)); this._offset = 0; } SSHBuffer.prototype.toBuffer = function () { return (this._buffer.slice(0, this._offset)); }; SSHBuffer.prototype.atEnd = function () { return (this._offset >= this._buffer.length); }; SSHBuffer.prototype.remainder = function () { return (this._buffer.slice(this._offset)); }; SSHBuffer.prototype.skip = function (n) { this._offset += n; }; SSHBuffer.prototype.expand = function () { this._size *= 2; var buf = new Buffer(this._size); this._buffer.copy(buf, 0); this._buffer = buf; }; SSHBuffer.prototype.readPart = function () { return ({data: this.readBuffer()}); }; SSHBuffer.prototype.readBuffer = function () { var len = this._buffer.readUInt32BE(this._offset); this._offset += 4; assert.ok(this._offset + len <= this._buffer.length, 'length out of bounds at +0x' + this._offset.toString(16) + ' (data truncated?)'); var buf = this._buffer.slice(this._offset, this._offset + len); this._offset += len; return (buf); }; SSHBuffer.prototype.readString = function () { return (this.readBuffer().toString()); }; SSHBuffer.prototype.readCString = function () { var offset = this._offset; while (offset < this._buffer.length && this._buffer[offset] !== 0x00) offset++; assert.ok(offset < this._buffer.length, 'c string does not terminate'); var str = this._buffer.slice(this._offset, offset).toString(); this._offset = offset + 1; return (str); }; SSHBuffer.prototype.readInt = function () { var v = this._buffer.readUInt32BE(this._offset); this._offset += 4; return (v); }; SSHBuffer.prototype.readInt64 = function () { assert.ok(this._offset + 8 < this._buffer.length, 'buffer not long enough to read Int64'); var v = this._buffer.slice(this._offset, this._offset + 8); this._offset += 8; return (v); }; SSHBuffer.prototype.readChar = function () { var v = this._buffer[this._offset++]; return (v); }; SSHBuffer.prototype.writeBuffer = function (buf) { while (this._offset + 4 + buf.length > this._size) this.expand(); this._buffer.writeUInt32BE(buf.length, this._offset); this._offset += 4; buf.copy(this._buffer, this._offset); this._offset += buf.length; }; SSHBuffer.prototype.writeString = function (str) { this.writeBuffer(new Buffer(str, 'utf8')); }; SSHBuffer.prototype.writeCString = function (str) { while (this._offset + 1 + str.length > this._size) this.expand(); this._buffer.write(str, this._offset); this._offset += str.length; this._buffer[this._offset++] = 0; }; SSHBuffer.prototype.writeInt = function (v) { while (this._offset + 4 > this._size) this.expand(); this._buffer.writeUInt32BE(v, this._offset); this._offset += 4; }; SSHBuffer.prototype.writeInt64 = function (v) { assert.buffer(v, 'value'); if (v.length > 8) { var lead = v.slice(0, v.length - 8); for (var i = 0; i < lead.length; ++i) { assert.strictEqual(lead[i], 0, 'must fit in 64 bits of precision'); } v = v.slice(v.length - 8, v.length); } while (this._offset + 8 > this._size) this.expand(); v.copy(this._buffer, this._offset); this._offset += 8; }; SSHBuffer.prototype.writeChar = function (v) { while (this._offset + 1 > this._size) this.expand(); this._buffer[this._offset++] = v; }; SSHBuffer.prototype.writePart = function (p) { this.writeBuffer(p.data); }; SSHBuffer.prototype.write = function (buf) { while (this._offset + buf.length > this._size) this.expand(); buf.copy(this._buffer, this._offset); this._offset += buf.length; }; }).call(this,require("buffer").Buffer) },{"assert-plus":290,"buffer":49}],289:[function(require,module,exports){ (function (Buffer){ // Copyright 2015 Joyent, Inc. module.exports = { bufferSplit: bufferSplit, addRSAMissing: addRSAMissing, calculateDSAPublic: calculateDSAPublic, mpNormalize: mpNormalize, ecNormalize: ecNormalize, countZeros: countZeros, assertCompatible: assertCompatible, isCompatible: isCompatible, opensslKeyDeriv: opensslKeyDeriv, opensshCipherInfo: opensshCipherInfo }; var assert = require('assert-plus'); var PrivateKey = require('./private-key'); var crypto = require('crypto'); var MAX_CLASS_DEPTH = 3; function isCompatible(obj, klass, needVer) { if (obj === null || typeof (obj) !== 'object') return (false); if (needVer === undefined) needVer = klass.prototype._sshpkApiVersion; if (obj instanceof klass && klass.prototype._sshpkApiVersion[0] == needVer[0]) return (true); var proto = Object.getPrototypeOf(obj); var depth = 0; while (proto.constructor.name !== klass.name) { proto = Object.getPrototypeOf(proto); if (!proto || ++depth > MAX_CLASS_DEPTH) return (false); } if (proto.constructor.name !== klass.name) return (false); var ver = proto._sshpkApiVersion; if (ver === undefined) ver = klass._oldVersionDetect(obj); if (ver[0] != needVer[0] || ver[1] < needVer[1]) return (false); return (true); } function assertCompatible(obj, klass, needVer, name) { if (name === undefined) name = 'object'; assert.ok(obj, name + ' must not be null'); assert.object(obj, name + ' must be an object'); if (needVer === undefined) needVer = klass.prototype._sshpkApiVersion; if (obj instanceof klass && klass.prototype._sshpkApiVersion[0] == needVer[0]) return; var proto = Object.getPrototypeOf(obj); var depth = 0; while (proto.constructor.name !== klass.name) { proto = Object.getPrototypeOf(proto); assert.ok(proto && ++depth <= MAX_CLASS_DEPTH, name + ' must be a ' + klass.name + ' instance'); } assert.strictEqual(proto.constructor.name, klass.name, name + ' must be a ' + klass.name + ' instance'); var ver = proto._sshpkApiVersion; if (ver === undefined) ver = klass._oldVersionDetect(obj); assert.ok(ver[0] == needVer[0] && ver[1] >= needVer[1], name + ' must be compatible with ' + klass.name + ' klass ' + 'version ' + needVer[0] + '.' + needVer[1]); } var CIPHER_LEN = { 'des-ede3-cbc': { key: 7, iv: 8 }, 'aes-128-cbc': { key: 16, iv: 16 } }; var PKCS5_SALT_LEN = 8; function opensslKeyDeriv(cipher, salt, passphrase, count) { assert.buffer(salt, 'salt'); assert.buffer(passphrase, 'passphrase'); assert.number(count, 'iteration count'); var clen = CIPHER_LEN[cipher]; assert.object(clen, 'supported cipher'); salt = salt.slice(0, PKCS5_SALT_LEN); var D, D_prev, bufs; var material = new Buffer(0); while (material.length < clen.key + clen.iv) { bufs = []; if (D_prev) bufs.push(D_prev); bufs.push(passphrase); bufs.push(salt); D = Buffer.concat(bufs); for (var j = 0; j < count; ++j) D = crypto.createHash('md5').update(D).digest(); material = Buffer.concat([material, D]); D_prev = D; } return ({ key: material.slice(0, clen.key), iv: material.slice(clen.key, clen.key + clen.iv) }); } /* Count leading zero bits on a buffer */ function countZeros(buf) { var o = 0, obit = 8; while (o < buf.length) { var mask = (1 << obit); if ((buf[o] & mask) === mask) break; obit--; if (obit < 0) { o++; obit = 8; } } return (o*8 + (8 - obit) - 1); } function bufferSplit(buf, chr) { assert.buffer(buf); assert.string(chr); var parts = []; var lastPart = 0; var matches = 0; for (var i = 0; i < buf.length; ++i) { if (buf[i] === chr.charCodeAt(matches)) ++matches; else if (buf[i] === chr.charCodeAt(0)) matches = 1; else matches = 0; if (matches >= chr.length) { var newPart = i + 1; parts.push(buf.slice(lastPart, newPart - matches)); lastPart = newPart; matches = 0; } } if (lastPart <= buf.length) parts.push(buf.slice(lastPart, buf.length)); return (parts); } function ecNormalize(buf, addZero) { assert.buffer(buf); if (buf[0] === 0x00 && buf[1] === 0x04) { if (addZero) return (buf); return (buf.slice(1)); } else if (buf[0] === 0x04) { if (!addZero) return (buf); } else { while (buf[0] === 0x00) buf = buf.slice(1); if (buf[0] === 0x02 || buf[0] === 0x03) throw (new Error('Compressed elliptic curve points ' + 'are not supported')); if (buf[0] !== 0x04) throw (new Error('Not a valid elliptic curve point')); if (!addZero) return (buf); } var b = new Buffer(buf.length + 1); b[0] = 0x0; buf.copy(b, 1); return (b); } function mpNormalize(buf) { assert.buffer(buf); while (buf.length > 1 && buf[0] === 0x00 && (buf[1] & 0x80) === 0x00) buf = buf.slice(1); if ((buf[0] & 0x80) === 0x80) { var b = new Buffer(buf.length + 1); b[0] = 0x00; buf.copy(b, 1); buf = b; } return (buf); } function bigintToMpBuf(bigint) { var buf = new Buffer(bigint.toByteArray()); buf = mpNormalize(buf); return (buf); } function calculateDSAPublic(g, p, x) { assert.buffer(g); assert.buffer(p); assert.buffer(x); try { var bigInt = require('jsbn').BigInteger; } catch (e) { throw (new Error('To load a PKCS#8 format DSA private key, ' + 'the node jsbn library is required.')); } g = new bigInt(g); p = new bigInt(p); x = new bigInt(x); var y = g.modPow(x, p); var ybuf = bigintToMpBuf(y); return (ybuf); } function addRSAMissing(key) { assert.object(key); assertCompatible(key, PrivateKey, [1, 1]); try { var bigInt = require('jsbn').BigInteger; } catch (e) { throw (new Error('To write a PEM private key from ' + 'this source, the node jsbn lib is required.')); } var d = new bigInt(key.part.d.data); var buf; if (!key.part.dmodp) { var p = new bigInt(key.part.p.data); var dmodp = d.mod(p.subtract(1)); buf = bigintToMpBuf(dmodp); key.part.dmodp = {name: 'dmodp', data: buf}; key.parts.push(key.part.dmodp); } if (!key.part.dmodq) { var q = new bigInt(key.part.q.data); var dmodq = d.mod(q.subtract(1)); buf = bigintToMpBuf(dmodq); key.part.dmodq = {name: 'dmodq', data: buf}; key.parts.push(key.part.dmodq); } } function opensshCipherInfo(cipher) { var inf = {}; switch (cipher) { case '3des-cbc': inf.keySize = 24; inf.blockSize = 8; inf.opensslName = 'des-ede3-cbc'; break; case 'blowfish-cbc': inf.keySize = 16; inf.blockSize = 8; inf.opensslName = 'bf-cbc'; break; case 'aes128-cbc': case 'aes128-ctr': case 'aes128-gcm@openssh.com': inf.keySize = 16; inf.blockSize = 16; inf.opensslName = 'aes-128-' + cipher.slice(7, 10); break; case 'aes192-cbc': case 'aes192-ctr': case 'aes192-gcm@openssh.com': inf.keySize = 24; inf.blockSize = 16; inf.opensslName = 'aes-192-' + cipher.slice(7, 10); break; case 'aes256-cbc': case 'aes256-ctr': case 'aes256-gcm@openssh.com': inf.keySize = 32; inf.blockSize = 16; inf.opensslName = 'aes-256-' + cipher.slice(7, 10); break; default: throw (new Error( 'Unsupported openssl cipher "' + cipher + '"')); } return (inf); } }).call(this,require("buffer").Buffer) },{"./private-key":286,"assert-plus":290,"buffer":49,"crypto":58,"jsbn":233}],290:[function(require,module,exports){ (function (Buffer,process){ // Copyright (c) 2012, Mark Cavage. All rights reserved. // Copyright 2015 Joyent, Inc. var assert = require('assert'); var Stream = require('stream').Stream; var util = require('util'); ///--- Globals /* JSSTYLED */ var UUID_REGEXP = /^[a-fA-F0-9]{8}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{12}$/; ///--- Internal function _capitalize(str) { return (str.charAt(0).toUpperCase() + str.slice(1)); } function _toss(name, expected, oper, arg, actual) { throw new assert.AssertionError({ message: util.format('%s (%s) is required', name, expected), actual: (actual === undefined) ? typeof (arg) : actual(arg), expected: expected, operator: oper || '===', stackStartFunction: _toss.caller }); } function _getClass(arg) { return (Object.prototype.toString.call(arg).slice(8, -1)); } function noop() { // Why even bother with asserts? } ///--- Exports var types = { bool: { check: function (arg) { return typeof (arg) === 'boolean'; } }, func: { check: function (arg) { return typeof (arg) === 'function'; } }, string: { check: function (arg) { return typeof (arg) === 'string'; } }, object: { check: function (arg) { return typeof (arg) === 'object' && arg !== null; } }, number: { check: function (arg) { return typeof (arg) === 'number' && !isNaN(arg); } }, finite: { check: function (arg) { return typeof (arg) === 'number' && !isNaN(arg) && isFinite(arg); } }, buffer: { check: function (arg) { return Buffer.isBuffer(arg); }, operator: 'Buffer.isBuffer' }, array: { check: function (arg) { return Array.isArray(arg); }, operator: 'Array.isArray' }, stream: { check: function (arg) { return arg instanceof Stream; }, operator: 'instanceof', actual: _getClass }, date: { check: function (arg) { return arg instanceof Date; }, operator: 'instanceof', actual: _getClass }, regexp: { check: function (arg) { return arg instanceof RegExp; }, operator: 'instanceof', actual: _getClass }, uuid: { check: function (arg) { return typeof (arg) === 'string' && UUID_REGEXP.test(arg); }, operator: 'isUUID' } }; function _setExports(ndebug) { var keys = Object.keys(types); var out; /* re-export standard assert */ if (process.env.NODE_NDEBUG) { out = noop; } else { out = function (arg, msg) { if (!arg) { _toss(msg, 'true', arg); } }; } /* standard checks */ keys.forEach(function (k) { if (ndebug) { out[k] = noop; return; } var type = types[k]; out[k] = function (arg, msg) { if (!type.check(arg)) { _toss(msg, k, type.operator, arg, type.actual); } }; }); /* optional checks */ keys.forEach(function (k) { var name = 'optional' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; out[name] = function (arg, msg) { if (arg === undefined || arg === null) { return; } if (!type.check(arg)) { _toss(msg, k, type.operator, arg, type.actual); } }; }); /* arrayOf checks */ keys.forEach(function (k) { var name = 'arrayOf' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; var expected = '[' + k + ']'; out[name] = function (arg, msg) { if (!Array.isArray(arg)) { _toss(msg, expected, type.operator, arg, type.actual); } var i; for (i = 0; i < arg.length; i++) { if (!type.check(arg[i])) { _toss(msg, expected, type.operator, arg, type.actual); } } }; }); /* optionalArrayOf checks */ keys.forEach(function (k) { var name = 'optionalArrayOf' + _capitalize(k); if (ndebug) { out[name] = noop; return; } var type = types[k]; var expected = '[' + k + ']'; out[name] = function (arg, msg) { if (arg === undefined || arg === null) { return; } if (!Array.isArray(arg)) { _toss(msg, expected, type.operator, arg, type.actual); } var i; for (i = 0; i < arg.length; i++) { if (!type.check(arg[i])) { _toss(msg, expected, type.operator, arg, type.actual); } } }; }); /* re-export built-in assertions */ Object.keys(assert).forEach(function (k) { if (k === 'AssertionError') { out[k] = assert[k]; return; } if (ndebug) { out[k] = noop; return; } out[k] = assert[k]; }); /* export ourselves (for unit tests _only_) */ out._setExports = _setExports; return out; } module.exports = _setExports(process.env.NODE_NDEBUG); }).call(this,{"isBuffer":require("../../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js")},require('_process')) },{"../../../../../../.nvm/versions/node/v6.4.0/lib/node_modules/browserify/node_modules/is-buffer/index.js":98,"_process":120,"assert":16,"stream":152,"util":163}],291:[function(require,module,exports){ arguments[4][157][0].apply(exports,arguments) },{"buffer":49,"dup":157}],292:[function(require,module,exports){ (function (Buffer){ var util = require('util') var Stream = require('stream') var StringDecoder = require('string_decoder').StringDecoder module.exports = StringStream module.exports.AlignedStringDecoder = AlignedStringDecoder function StringStream(from, to) { if (!(this instanceof StringStream)) return new StringStream(from, to) Stream.call(this) if (from == null) from = 'utf8' this.readable = this.writable = true this.paused = false this.toEncoding = (to == null ? from : to) this.fromEncoding = (to == null ? '' : from) this.decoder = new AlignedStringDecoder(this.toEncoding) } util.inherits(StringStream, Stream) StringStream.prototype.write = function(data) { if (!this.writable) { var err = new Error('stream not writable') err.code = 'EPIPE' this.emit('error', err) return false } if (this.fromEncoding) { if (Buffer.isBuffer(data)) data = data.toString() data = new Buffer(data, this.fromEncoding) } var string = this.decoder.write(data) if (string.length) this.emit('data', string) return !this.paused } StringStream.prototype.flush = function() { if (this.decoder.flush) { var string = this.decoder.flush() if (string.length) this.emit('data', string) } } StringStream.prototype.end = function() { if (!this.writable && !this.readable) return this.flush() this.emit('end') this.writable = this.readable = false this.destroy() } StringStream.prototype.destroy = function() { this.decoder = null this.writable = this.readable = false this.emit('close') } StringStream.prototype.pause = function() { this.paused = true } StringStream.prototype.resume = function () { if (this.paused) this.emit('drain') this.paused = false } function AlignedStringDecoder(encoding) { StringDecoder.call(this, encoding) switch (this.encoding) { case 'base64': this.write = alignedWrite this.alignedBuffer = new Buffer(3) this.alignedBytes = 0 break } } util.inherits(AlignedStringDecoder, StringDecoder) AlignedStringDecoder.prototype.flush = function() { if (!this.alignedBuffer || !this.alignedBytes) return '' var leftover = this.alignedBuffer.toString(this.encoding, 0, this.alignedBytes) this.alignedBytes = 0 return leftover } function alignedWrite(buffer) { var rem = (this.alignedBytes + buffer.length) % this.alignedBuffer.length if (!rem && !this.alignedBytes) return buffer.toString(this.encoding) var returnBuffer = new Buffer(this.alignedBytes + buffer.length - rem) this.alignedBuffer.copy(returnBuffer, 0, 0, this.alignedBytes) buffer.copy(returnBuffer, this.alignedBytes, 0, buffer.length - rem) buffer.copy(this.alignedBuffer, 0, buffer.length - rem, buffer.length) this.alignedBytes = rem return returnBuffer.toString(this.encoding) } }).call(this,require("buffer").Buffer) },{"buffer":49,"stream":152,"string_decoder":157,"util":163}],293:[function(require,module,exports){ /*! * Copyright (c) 2015, Salesforce.com, Inc. * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are met: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * * 3. Neither the name of Salesforce.com nor the names of its contributors may * be used to endorse or promote products derived from this software without * specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE * POSSIBILITY OF SUCH DAMAGE. */ 'use strict'; var net = require('net'); var urlParse = require('url').parse; var pubsuffix = require('./pubsuffix'); var Store = require('./store').Store; var MemoryCookieStore = require('./memstore').MemoryCookieStore; var pathMatch = require('./pathMatch').pathMatch; var VERSION = require('../package.json').version; var punycode; try { punycode = require('punycode'); } catch(e) { console.warn("cookie: can't load punycode; won't use punycode for domain normalization"); } var DATE_DELIM = /[\x09\x20-\x2F\x3B-\x40\x5B-\x60\x7B-\x7E]/; // From RFC6265 S4.1.1 // note that it excludes \x3B ";" var COOKIE_OCTET = /[\x21\x23-\x2B\x2D-\x3A\x3C-\x5B\x5D-\x7E]/; var COOKIE_OCTETS = new RegExp('^'+COOKIE_OCTET.source+'+$'); var CONTROL_CHARS = /[\x00-\x1F]/; // Double quotes are part of the value (see: S4.1.1). // '\r', '\n' and '\0' should be treated as a terminator in the "relaxed" mode // (see: https://github.com/ChromiumWebApps/chromium/blob/b3d3b4da8bb94c1b2e061600df106d590fda3620/net/cookies/parsed_cookie.cc#L60) // '=' and ';' are attribute/values separators // (see: https://github.com/ChromiumWebApps/chromium/blob/b3d3b4da8bb94c1b2e061600df106d590fda3620/net/cookies/parsed_cookie.cc#L64) var COOKIE_PAIR = /^(([^=;]+))\s*=\s*([^\n\r\0]*)/; // Used to parse non-RFC-compliant cookies like '=abc' when given the `loose` // option in Cookie.parse: var LOOSE_COOKIE_PAIR = /^((?:=)?([^=;]*)\s*=\s*)?([^\n\r\0]*)/; // RFC6265 S4.1.1 defines path value as 'any CHAR except CTLs or ";"' // Note ';' is \x3B var PATH_VALUE = /[\x20-\x3A\x3C-\x7E]+/; var DAY_OF_MONTH = /^(\d{1,2})[^\d]*$/; var TIME = /^(\d{1,2})[^\d]*:(\d{1,2})[^\d]*:(\d{1,2})[^\d]*$/; var MONTH = /^(Jan|Feb|Mar|Apr|May|Jun|Jul|Aug|Sep|Oct|Nov|Dec)/i; var MONTH_TO_NUM = { jan:0, feb:1, mar:2, apr:3, may:4, jun:5, jul:6, aug:7, sep:8, oct:9, nov:10, dec:11 }; var NUM_TO_MONTH = [ 'Jan','Feb','Mar','Apr','May','Jun','Jul','Aug','Sep','Oct','Nov','Dec' ]; var NUM_TO_DAY = [ 'Sun','Mon','Tue','Wed','Thu','Fri','Sat' ]; var YEAR = /^(\d{2}|\d{4})$/; // 2 to 4 digits var MAX_TIME = 2147483647000; // 31-bit max var MIN_TIME = 0; // 31-bit min // RFC6265 S5.1.1 date parser: function parseDate(str) { if (!str) { return; } /* RFC6265 S5.1.1: * 2. Process each date-token sequentially in the order the date-tokens * appear in the cookie-date */ var tokens = str.split(DATE_DELIM); if (!tokens) { return; } var hour = null; var minutes = null; var seconds = null; var day = null; var month = null; var year = null; for (var i=0; i 23 || minutes > 59 || seconds > 59) { return; } continue; } } /* 2.2. If the found-day-of-month flag is not set and the date-token matches * the day-of-month production, set the found-day-of- month flag and set * the day-of-month-value to the number denoted by the date-token. Skip * the remaining sub-steps and continue to the next date-token. */ if (day === null) { result = DAY_OF_MONTH.exec(token); if (result) { day = parseInt(result, 10); /* RFC6265 S5.1.1.5: * [fail if] the day-of-month-value is less than 1 or greater than 31 */ if(day < 1 || day > 31) { return; } continue; } } /* 2.3. If the found-month flag is not set and the date-token matches the * month production, set the found-month flag and set the month-value to * the month denoted by the date-token. Skip the remaining sub-steps and * continue to the next date-token. */ if (month === null) { result = MONTH.exec(token); if (result) { month = MONTH_TO_NUM[result[1].toLowerCase()]; continue; } } /* 2.4. If the found-year flag is not set and the date-token matches the year * production, set the found-year flag and set the year-value to the number * denoted by the date-token. Skip the remaining sub-steps and continue to * the next date-token. */ if (year === null) { result = YEAR.exec(token); if (result) { year = parseInt(result[0], 10); /* From S5.1.1: * 3. If the year-value is greater than or equal to 70 and less * than or equal to 99, increment the year-value by 1900. * 4. If the year-value is greater than or equal to 0 and less * than or equal to 69, increment the year-value by 2000. */ if (70 <= year && year <= 99) { year += 1900; } else if (0 <= year && year <= 69) { year += 2000; } if (year < 1601) { return; // 5. ... the year-value is less than 1601 } } } } if (seconds === null || day === null || month === null || year === null) { return; // 5. ... at least one of the found-day-of-month, found-month, found- // year, or found-time flags is not set, } return new Date(Date.UTC(year, month, day, hour, minutes, seconds)); } function formatDate(date) { var d = date.getUTCDate(); d = d >= 10 ? d : '0'+d; var h = date.getUTCHours(); h = h >= 10 ? h : '0'+h; var m = date.getUTCMinutes(); m = m >= 10 ? m : '0'+m; var s = date.getUTCSeconds(); s = s >= 10 ? s : '0'+s; return NUM_TO_DAY[date.getUTCDay()] + ', ' + d+' '+ NUM_TO_MONTH[date.getUTCMonth()] +' '+ date.getUTCFullYear() +' '+ h+':'+m+':'+s+' GMT'; } // S5.1.2 Canonicalized Host Names function canonicalDomain(str) { if (str == null) { return null; } str = str.trim().replace(/^\./,''); // S4.1.2.3 & S5.2.3: ignore leading . // convert to IDN if any non-ASCII characters if (punycode && /[^\u0001-\u007f]/.test(str)) { str = punycode.toASCII(str); } return str.toLowerCase(); } // S5.1.3 Domain Matching function domainMatch(str, domStr, canonicalize) { if (str == null || domStr == null) { return null; } if (canonicalize !== false) { str = canonicalDomain(str); domStr = canonicalDomain(domStr); } /* * "The domain string and the string are identical. (Note that both the * domain string and the string will have been canonicalized to lower case at * this point)" */ if (str == domStr) { return true; } /* "All of the following [three] conditions hold:" (order adjusted from the RFC) */ /* "* The string is a host name (i.e., not an IP address)." */ if (net.isIP(str)) { return false; } /* "* The domain string is a suffix of the string" */ var idx = str.indexOf(domStr); if (idx <= 0) { return false; // it's a non-match (-1) or prefix (0) } // e.g "a.b.c".indexOf("b.c") === 2 // 5 === 3+2 if (str.length !== domStr.length + idx) { // it's not a suffix return false; } /* "* The last character of the string that is not included in the domain * string is a %x2E (".") character." */ if (str.substr(idx-1,1) !== '.') { return false; } return true; } // RFC6265 S5.1.4 Paths and Path-Match /* * "The user agent MUST use an algorithm equivalent to the following algorithm * to compute the default-path of a cookie:" * * Assumption: the path (and not query part or absolute uri) is passed in. */ function defaultPath(path) { // "2. If the uri-path is empty or if the first character of the uri-path is not // a %x2F ("/") character, output %x2F ("/") and skip the remaining steps. if (!path || path.substr(0,1) !== "/") { return "/"; } // "3. If the uri-path contains no more than one %x2F ("/") character, output // %x2F ("/") and skip the remaining step." if (path === "/") { return path; } var rightSlash = path.lastIndexOf("/"); if (rightSlash === 0) { return "/"; } // "4. Output the characters of the uri-path from the first character up to, // but not including, the right-most %x2F ("/")." return path.slice(0, rightSlash); } function parse(str, options) { if (!options || typeof options !== 'object') { options = {}; } str = str.trim(); // We use a regex to parse the "name-value-pair" part of S5.2 var firstSemi = str.indexOf(';'); // S5.2 step 1 var pairRe = options.loose ? LOOSE_COOKIE_PAIR : COOKIE_PAIR; var result = pairRe.exec(firstSemi === -1 ? str : str.substr(0,firstSemi)); // Rx satisfies the "the name string is empty" and "lacks a %x3D ("=")" // constraints as well as trimming any whitespace. if (!result) { return; } var c = new Cookie(); if (result[1]) { c.key = result[2].trim(); } else { c.key = ''; } c.value = result[3].trim(); if (CONTROL_CHARS.test(c.key) || CONTROL_CHARS.test(c.value)) { return; } if (firstSemi === -1) { return c; } // S5.2.3 "unparsed-attributes consist of the remainder of the set-cookie-string // (including the %x3B (";") in question)." plus later on in the same section // "discard the first ";" and trim". var unparsed = str.slice(firstSemi + 1).trim(); // "If the unparsed-attributes string is empty, skip the rest of these // steps." if (unparsed.length === 0) { return c; } /* * S5.2 says that when looping over the items "[p]rocess the attribute-name * and attribute-value according to the requirements in the following * subsections" for every item. Plus, for many of the individual attributes * in S5.3 it says to use the "attribute-value of the last attribute in the * cookie-attribute-list". Therefore, in this implementation, we overwrite * the previous value. */ var cookie_avs = unparsed.split(';'); while (cookie_avs.length) { var av = cookie_avs.shift().trim(); if (av.length === 0) { // happens if ";;" appears continue; } var av_sep = av.indexOf('='); var av_key, av_value; if (av_sep === -1) { av_key = av; av_value = null; } else { av_key = av.substr(0,av_sep); av_value = av.substr(av_sep+1); } av_key = av_key.trim().toLowerCase(); if (av_value) { av_value = av_value.trim(); } switch(av_key) { case 'expires': // S5.2.1 if (av_value) { var exp = parseDate(av_value); // "If the attribute-value failed to parse as a cookie date, ignore the // cookie-av." if (exp) { // over and underflow not realistically a concern: V8's getTime() seems to // store something larger than a 32-bit time_t (even with 32-bit node) c.expires = exp; } } break; case 'max-age': // S5.2.2 if (av_value) { // "If the first character of the attribute-value is not a DIGIT or a "-" // character ...[or]... If the remainder of attribute-value contains a // non-DIGIT character, ignore the cookie-av." if (/^-?[0-9]+$/.test(av_value)) { var delta = parseInt(av_value, 10); // "If delta-seconds is less than or equal to zero (0), let expiry-time // be the earliest representable date and time." c.setMaxAge(delta); } } break; case 'domain': // S5.2.3 // "If the attribute-value is empty, the behavior is undefined. However, // the user agent SHOULD ignore the cookie-av entirely." if (av_value) { // S5.2.3 "Let cookie-domain be the attribute-value without the leading %x2E // (".") character." var domain = av_value.trim().replace(/^\./, ''); if (domain) { // "Convert the cookie-domain to lower case." c.domain = domain.toLowerCase(); } } break; case 'path': // S5.2.4 /* * "If the attribute-value is empty or if the first character of the * attribute-value is not %x2F ("/"): * Let cookie-path be the default-path. * Otherwise: * Let cookie-path be the attribute-value." * * We'll represent the default-path as null since it depends on the * context of the parsing. */ c.path = av_value && av_value[0] === "/" ? av_value : null; break; case 'secure': // S5.2.5 /* * "If the attribute-name case-insensitively matches the string "Secure", * the user agent MUST append an attribute to the cookie-attribute-list * with an attribute-name of Secure and an empty attribute-value." */ c.secure = true; break; case 'httponly': // S5.2.6 -- effectively the same as 'secure' c.httpOnly = true; break; default: c.extensions = c.extensions || []; c.extensions.push(av); break; } } return c; } // avoid the V8 deoptimization monster! function jsonParse(str) { var obj; try { obj = JSON.parse(str); } catch (e) { return e; } return obj; } function fromJSON(str) { if (!str) { return null; } var obj; if (typeof str === 'string') { obj = jsonParse(str); if (obj instanceof Error) { return null; } } else { // assume it's an Object obj = str; } var c = new Cookie(); for (var i=0; i 1) { var lindex = path.lastIndexOf('/'); if (lindex === 0) { break; } path = path.substr(0,lindex); permutations.push(path); } permutations.push('/'); return permutations; } function getCookieContext(url) { if (url instanceof Object) { return url; } // NOTE: decodeURI will throw on malformed URIs (see GH-32). // Therefore, we will just skip decoding for such URIs. try { url = decodeURI(url); } catch(err) { // Silently swallow error } return urlParse(url); } function Cookie(options) { options = options || {}; Object.keys(options).forEach(function(prop) { if (Cookie.prototype.hasOwnProperty(prop) && Cookie.prototype[prop] !== options[prop] && prop.substr(0,1) !== '_') { this[prop] = options[prop]; } }, this); this.creation = this.creation || new Date(); // used to break creation ties in cookieCompare(): Object.defineProperty(this, 'creationIndex', { configurable: false, enumerable: false, // important for assert.deepEqual checks writable: true, value: ++Cookie.cookiesCreated }); } Cookie.cookiesCreated = 0; // incremented each time a cookie is created Cookie.parse = parse; Cookie.fromJSON = fromJSON; Cookie.prototype.key = ""; Cookie.prototype.value = ""; // the order in which the RFC has them: Cookie.prototype.expires = "Infinity"; // coerces to literal Infinity Cookie.prototype.maxAge = null; // takes precedence over expires for TTL Cookie.prototype.domain = null; Cookie.prototype.path = null; Cookie.prototype.secure = false; Cookie.prototype.httpOnly = false; Cookie.prototype.extensions = null; // set by the CookieJar: Cookie.prototype.hostOnly = null; // boolean when set Cookie.prototype.pathIsDefault = null; // boolean when set Cookie.prototype.creation = null; // Date when set; defaulted by Cookie.parse Cookie.prototype.lastAccessed = null; // Date when set Object.defineProperty(Cookie.prototype, 'creationIndex', { configurable: true, enumerable: false, writable: true, value: 0 }); Cookie.serializableProperties = Object.keys(Cookie.prototype) .filter(function(prop) { return !( Cookie.prototype[prop] instanceof Function || prop === 'creationIndex' || prop.substr(0,1) === '_' ); }); Cookie.prototype.inspect = function inspect() { var now = Date.now(); return 'Cookie="'+this.toString() + '; hostOnly='+(this.hostOnly != null ? this.hostOnly : '?') + '; aAge='+(this.lastAccessed ? (now-this.lastAccessed.getTime())+'ms' : '?') + '; cAge='+(this.creation ? (now-this.creation.getTime())+'ms' : '?') + '"'; }; Cookie.prototype.toJSON = function() { var obj = {}; var props = Cookie.serializableProperties; for (var i=0; i suffixLen) { var publicSuffix = parts.slice(0,suffixLen+1).reverse().join('.'); return converted ? punycode.toUnicode(publicSuffix) : publicSuffix; } return null; }; // The following generated structure is used under the MPL version 2.0 // See public-suffix.txt for more information var index = module.exports.index = Object.freeze( 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Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * * 3. Neither the name of Salesforce.com nor the names of its contributors may * be used to endorse or promote products derived from this software without * specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE * POSSIBILITY OF SUCH DAMAGE. */ 'use strict'; /*jshint unused:false */ function Store() { } exports.Store = Store; // Stores may be synchronous, but are still required to use a // Continuation-Passing Style API. The CookieJar itself will expose a "*Sync" // API that converts from synchronous-callbacks to imperative style. Store.prototype.synchronous = false; Store.prototype.findCookie = function(domain, path, key, cb) { throw new Error('findCookie is not implemented'); }; Store.prototype.findCookies = function(domain, path, cb) { throw new Error('findCookies is not implemented'); }; Store.prototype.putCookie = function(cookie, cb) { throw new Error('putCookie is not implemented'); }; Store.prototype.updateCookie = function(oldCookie, newCookie, cb) { // recommended default implementation: // return this.putCookie(newCookie, cb); throw new Error('updateCookie is not implemented'); }; Store.prototype.removeCookie = function(domain, path, key, cb) { throw new Error('removeCookie is not implemented'); }; Store.prototype.removeCookies = function(domain, path, cb) { throw new Error('removeCookies is not implemented'); }; Store.prototype.getAllCookies = function(cb) { throw new Error('getAllCookies is not implemented (therefore jar cannot be serialized)'); }; },{}],299:[function(require,module,exports){ module.exports={ "_args": [ [ { "raw": "tough-cookie@~2.3.0", "scope": null, "escapedName": "tough-cookie", "name": "tough-cookie", "rawSpec": "~2.3.0", "spec": ">=2.3.0 <2.4.0", "type": "range" }, "/home/cyborg/Code/rooster/node_modules/request" ] ], "_from": "tough-cookie@>=2.3.0 <2.4.0", "_id": "tough-cookie@2.3.1", "_inCache": true, "_installable": true, "_location": "/tough-cookie", "_nodeVersion": "6.3.1", "_npmOperationalInternal": { "host": "packages-12-west.internal.npmjs.com", "tmp": "tmp/tough-cookie-2.3.1.tgz_1469494891088_0.8524557144846767" }, "_npmUser": { "name": "jstash", "email": "jstash@gmail.com" }, "_npmVersion": "3.10.3", "_phantomChildren": {}, "_requested": { "raw": "tough-cookie@~2.3.0", "scope": null, "escapedName": "tough-cookie", "name": "tough-cookie", "rawSpec": "~2.3.0", "spec": ">=2.3.0 <2.4.0", "type": "range" }, "_requiredBy": [ "/request" ], "_resolved": "https://registry.npmjs.org/tough-cookie/-/tough-cookie-2.3.1.tgz", "_shasum": "99c77dfbb7d804249e8a299d4cb0fd81fef083fd", "_shrinkwrap": null, "_spec": "tough-cookie@~2.3.0", "_where": "/home/cyborg/Code/rooster/node_modules/request", "author": { "name": "Jeremy Stashewsky", "email": "jstashewsky@salesforce.com" }, "bugs": { "url": "https://github.com/SalesforceEng/tough-cookie/issues" }, "contributors": [ { "name": "Alexander Savin" }, { "name": "Ian Livingstone" }, { "name": "Ivan Nikulin" }, { "name": "Lalit Kapoor" }, { "name": "Sam Thompson" }, { "name": "Sebastian Mayr" } ], "dependencies": {}, "description": "RFC6265 Cookies and Cookie Jar for node.js", "devDependencies": { "async": "^1.4.2", "string.prototype.repeat": "^0.2.0", "vows": "^0.8.1" }, "directories": {}, "dist": { "shasum": "99c77dfbb7d804249e8a299d4cb0fd81fef083fd", "tarball": "https://registry.npmjs.org/tough-cookie/-/tough-cookie-2.3.1.tgz" }, "engines": { "node": ">=0.8" }, "files": [ "lib" ], "gitHead": "c11a2d11d12348a35ef595c809e30e641a804a7d", "homepage": "https://github.com/SalesforceEng/tough-cookie", "keywords": [ "HTTP", "cookie", "cookies", "set-cookie", "cookiejar", "jar", "RFC6265", "RFC2965" ], "license": "BSD-3-Clause", "main": "./lib/cookie", "maintainers": [ { "name": "jstash", "email": "jstash@gmail.com" }, { "name": "nexxy", "email": "emily@contactvibe.com" } ], "name": "tough-cookie", "optionalDependencies": {}, "readme": "ERROR: No README data found!", "repository": { "type": "git", "url": "git://github.com/SalesforceEng/tough-cookie.git" }, "scripts": { "suffixup": "curl -o public_suffix_list.dat https://publicsuffix.org/list/public_suffix_list.dat && ./generate-pubsuffix.js", "test": "vows test/*_test.js" }, "version": "2.3.1" } },{}],300:[function(require,module,exports){ (function (process,Buffer){ 'use strict' var net = require('net') , tls = require('tls') , http = require('http') , https = require('https') , events = require('events') , assert = require('assert') , util = require('util') ; exports.httpOverHttp = httpOverHttp exports.httpsOverHttp = httpsOverHttp exports.httpOverHttps = httpOverHttps exports.httpsOverHttps = httpsOverHttps function httpOverHttp(options) { var agent = new TunnelingAgent(options) agent.request = http.request return agent } function httpsOverHttp(options) { var agent = new TunnelingAgent(options) agent.request = http.request agent.createSocket = createSecureSocket agent.defaultPort = 443 return agent } function httpOverHttps(options) { var agent = new TunnelingAgent(options) agent.request = https.request return agent } function httpsOverHttps(options) { var agent = new TunnelingAgent(options) agent.request = https.request agent.createSocket = createSecureSocket agent.defaultPort = 443 return agent } function TunnelingAgent(options) { var self = this self.options = options || {} self.proxyOptions = self.options.proxy || {} self.maxSockets = self.options.maxSockets || http.Agent.defaultMaxSockets self.requests = [] self.sockets = [] self.on('free', function onFree(socket, host, port) { for (var i = 0, len = self.requests.length; i < len; ++i) { var pending = self.requests[i] if (pending.host === host && pending.port === port) { // Detect the request to connect same origin server, // reuse the connection. self.requests.splice(i, 1) pending.request.onSocket(socket) return } } socket.destroy() self.removeSocket(socket) }) } util.inherits(TunnelingAgent, events.EventEmitter) TunnelingAgent.prototype.addRequest = function addRequest(req, options) { var self = this // Legacy API: addRequest(req, host, port, path) if (typeof options === 'string') { options = { host: options, port: arguments[2], path: arguments[3] }; } if (self.sockets.length >= this.maxSockets) { // We are over limit so we'll add it to the queue. self.requests.push({host: options.host, port: options.port, request: req}) return } // If we are under maxSockets create a new one. self.createConnection({host: options.host, port: options.port, request: req}) } TunnelingAgent.prototype.createConnection = function createConnection(pending) { var self = this self.createSocket(pending, function(socket) { socket.on('free', onFree) socket.on('close', onCloseOrRemove) socket.on('agentRemove', onCloseOrRemove) pending.request.onSocket(socket) function onFree() { self.emit('free', socket, pending.host, pending.port) } function onCloseOrRemove(err) { self.removeSocket(socket) socket.removeListener('free', onFree) socket.removeListener('close', onCloseOrRemove) socket.removeListener('agentRemove', onCloseOrRemove) } }) } TunnelingAgent.prototype.createSocket = function createSocket(options, cb) { var self = this var placeholder = {} self.sockets.push(placeholder) var connectOptions = mergeOptions({}, self.proxyOptions, { method: 'CONNECT' , path: options.host + ':' + options.port , agent: false } ) if (connectOptions.proxyAuth) { connectOptions.headers = connectOptions.headers || {} connectOptions.headers['Proxy-Authorization'] = 'Basic ' + new Buffer(connectOptions.proxyAuth).toString('base64') } debug('making CONNECT request') var connectReq = self.request(connectOptions) connectReq.useChunkedEncodingByDefault = false // for v0.6 connectReq.once('response', onResponse) // for v0.6 connectReq.once('upgrade', onUpgrade) // for v0.6 connectReq.once('connect', onConnect) // for v0.7 or later connectReq.once('error', onError) connectReq.end() function onResponse(res) { // Very hacky. This is necessary to avoid http-parser leaks. res.upgrade = true } function onUpgrade(res, socket, head) { // Hacky. process.nextTick(function() { onConnect(res, socket, head) }) } function onConnect(res, socket, head) { connectReq.removeAllListeners() socket.removeAllListeners() if (res.statusCode === 200) { assert.equal(head.length, 0) debug('tunneling connection has established') self.sockets[self.sockets.indexOf(placeholder)] = socket cb(socket) } else { debug('tunneling socket could not be established, statusCode=%d', res.statusCode) var error = new Error('tunneling socket could not be established, ' + 'statusCode=' + res.statusCode) error.code = 'ECONNRESET' options.request.emit('error', error) self.removeSocket(placeholder) } } function onError(cause) { connectReq.removeAllListeners() debug('tunneling socket could not be established, cause=%s\n', cause.message, cause.stack) var error = new Error('tunneling socket could not be established, ' + 'cause=' + cause.message) error.code = 'ECONNRESET' options.request.emit('error', error) self.removeSocket(placeholder) } } TunnelingAgent.prototype.removeSocket = function removeSocket(socket) { var pos = this.sockets.indexOf(socket) if (pos === -1) return this.sockets.splice(pos, 1) var pending = this.requests.shift() if (pending) { // If we have pending requests and a socket gets closed a new one // needs to be created to take over in the pool for the one that closed. this.createConnection(pending) } } function createSecureSocket(options, cb) { var self = this TunnelingAgent.prototype.createSocket.call(self, options, function(socket) { // 0 is dummy port for v0.6 var secureSocket = tls.connect(0, mergeOptions({}, self.options, { servername: options.host , socket: socket } )) self.sockets[self.sockets.indexOf(socket)] = secureSocket cb(secureSocket) }) } function mergeOptions(target) { for (var i = 1, len = arguments.length; i < len; ++i) { var overrides = arguments[i] if (typeof overrides === 'object') { var keys = Object.keys(overrides) for (var j = 0, keyLen = keys.length; j < keyLen; ++j) { var k = keys[j] if (overrides[k] !== undefined) { target[k] = overrides[k] } } } } return target } var debug if (process.env.NODE_DEBUG && /\btunnel\b/.test(process.env.NODE_DEBUG)) { debug = function() { var args = Array.prototype.slice.call(arguments) if (typeof args[0] === 'string') { args[0] = 'TUNNEL: ' + args[0] } else { args.unshift('TUNNEL:') } console.error.apply(console, args) } } else { debug = function() {} } exports.debug = debug // for test }).call(this,require('_process'),require("buffer").Buffer) },{"_process":120,"assert":16,"buffer":49,"events":86,"http":153,"https":94,"net":1,"tls":1,"util":163}],301:[function(require,module,exports){ (function (Buffer){ (function(nacl) { 'use strict'; // Ported in 2014 by Dmitry Chestnykh and Devi Mandiri. // Public domain. // // Implementation derived from TweetNaCl version 20140427. // See for details: http://tweetnacl.cr.yp.to/ var gf = function(init) { var i, r = new Float64Array(16); if (init) for (i = 0; i < init.length; i++) r[i] = init[i]; return r; }; // Pluggable, initialized in high-level API below. var randombytes = function(/* x, n */) { throw new Error('no PRNG'); }; var _0 = new Uint8Array(16); var _9 = new Uint8Array(32); _9[0] = 9; var gf0 = gf(), gf1 = gf([1]), _121665 = gf([0xdb41, 1]), D = gf([0x78a3, 0x1359, 0x4dca, 0x75eb, 0xd8ab, 0x4141, 0x0a4d, 0x0070, 0xe898, 0x7779, 0x4079, 0x8cc7, 0xfe73, 0x2b6f, 0x6cee, 0x5203]), D2 = gf([0xf159, 0x26b2, 0x9b94, 0xebd6, 0xb156, 0x8283, 0x149a, 0x00e0, 0xd130, 0xeef3, 0x80f2, 0x198e, 0xfce7, 0x56df, 0xd9dc, 0x2406]), X = gf([0xd51a, 0x8f25, 0x2d60, 0xc956, 0xa7b2, 0x9525, 0xc760, 0x692c, 0xdc5c, 0xfdd6, 0xe231, 0xc0a4, 0x53fe, 0xcd6e, 0x36d3, 0x2169]), Y = gf([0x6658, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666, 0x6666]), I = gf([0xa0b0, 0x4a0e, 0x1b27, 0xc4ee, 0xe478, 0xad2f, 0x1806, 0x2f43, 0xd7a7, 0x3dfb, 0x0099, 0x2b4d, 0xdf0b, 0x4fc1, 0x2480, 0x2b83]); function ts64(x, i, h, l) { x[i] = (h >> 24) & 0xff; x[i+1] = (h >> 16) & 0xff; x[i+2] = (h >> 8) & 0xff; x[i+3] = h & 0xff; x[i+4] = (l >> 24) & 0xff; x[i+5] = (l >> 16) & 0xff; x[i+6] = (l >> 8) & 0xff; x[i+7] = l & 0xff; } function vn(x, xi, y, yi, n) { var i,d = 0; for (i = 0; i < n; i++) d |= x[xi+i]^y[yi+i]; return (1 & ((d - 1) >>> 8)) - 1; } function crypto_verify_16(x, xi, y, yi) { return vn(x,xi,y,yi,16); } function crypto_verify_32(x, xi, y, yi) { return vn(x,xi,y,yi,32); } function core_salsa20(o, p, k, c) { var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24, j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24, j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24, j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24, j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24, j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24, j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24, j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24, j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24, j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24, j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24, j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24, j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24, j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24, j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24, j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24; var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7, x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14, x15 = j15, u; for (var i = 0; i < 20; i += 2) { u = x0 + x12 | 0; x4 ^= u<<7 | u>>>(32-7); u = x4 + x0 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x4 | 0; x12 ^= u<<13 | u>>>(32-13); u = x12 + x8 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x1 | 0; x9 ^= u<<7 | u>>>(32-7); u = x9 + x5 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x9 | 0; x1 ^= u<<13 | u>>>(32-13); u = x1 + x13 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x6 | 0; x14 ^= u<<7 | u>>>(32-7); u = x14 + x10 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x14 | 0; x6 ^= u<<13 | u>>>(32-13); u = x6 + x2 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x11 | 0; x3 ^= u<<7 | u>>>(32-7); u = x3 + x15 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x3 | 0; x11 ^= u<<13 | u>>>(32-13); u = x11 + x7 | 0; x15 ^= u<<18 | u>>>(32-18); u = x0 + x3 | 0; x1 ^= u<<7 | u>>>(32-7); u = x1 + x0 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x1 | 0; x3 ^= u<<13 | u>>>(32-13); u = x3 + x2 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x4 | 0; x6 ^= u<<7 | u>>>(32-7); u = x6 + x5 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x6 | 0; x4 ^= u<<13 | u>>>(32-13); u = x4 + x7 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x9 | 0; x11 ^= u<<7 | u>>>(32-7); u = x11 + x10 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x11 | 0; x9 ^= u<<13 | u>>>(32-13); u = x9 + x8 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x14 | 0; x12 ^= u<<7 | u>>>(32-7); u = x12 + x15 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x12 | 0; x14 ^= u<<13 | u>>>(32-13); u = x14 + x13 | 0; x15 ^= u<<18 | u>>>(32-18); } x0 = x0 + j0 | 0; x1 = x1 + j1 | 0; x2 = x2 + j2 | 0; x3 = x3 + j3 | 0; x4 = x4 + j4 | 0; x5 = x5 + j5 | 0; x6 = x6 + j6 | 0; x7 = x7 + j7 | 0; x8 = x8 + j8 | 0; x9 = x9 + j9 | 0; x10 = x10 + j10 | 0; x11 = x11 + j11 | 0; x12 = x12 + j12 | 0; x13 = x13 + j13 | 0; x14 = x14 + j14 | 0; x15 = x15 + j15 | 0; o[ 0] = x0 >>> 0 & 0xff; o[ 1] = x0 >>> 8 & 0xff; o[ 2] = x0 >>> 16 & 0xff; o[ 3] = x0 >>> 24 & 0xff; o[ 4] = x1 >>> 0 & 0xff; o[ 5] = x1 >>> 8 & 0xff; o[ 6] = x1 >>> 16 & 0xff; o[ 7] = x1 >>> 24 & 0xff; o[ 8] = x2 >>> 0 & 0xff; o[ 9] = x2 >>> 8 & 0xff; o[10] = x2 >>> 16 & 0xff; o[11] = x2 >>> 24 & 0xff; o[12] = x3 >>> 0 & 0xff; o[13] = x3 >>> 8 & 0xff; o[14] = x3 >>> 16 & 0xff; o[15] = x3 >>> 24 & 0xff; o[16] = x4 >>> 0 & 0xff; o[17] = x4 >>> 8 & 0xff; o[18] = x4 >>> 16 & 0xff; o[19] = x4 >>> 24 & 0xff; o[20] = x5 >>> 0 & 0xff; o[21] = x5 >>> 8 & 0xff; o[22] = x5 >>> 16 & 0xff; o[23] = x5 >>> 24 & 0xff; o[24] = x6 >>> 0 & 0xff; o[25] = x6 >>> 8 & 0xff; o[26] = x6 >>> 16 & 0xff; o[27] = x6 >>> 24 & 0xff; o[28] = x7 >>> 0 & 0xff; o[29] = x7 >>> 8 & 0xff; o[30] = x7 >>> 16 & 0xff; o[31] = x7 >>> 24 & 0xff; o[32] = x8 >>> 0 & 0xff; o[33] = x8 >>> 8 & 0xff; o[34] = x8 >>> 16 & 0xff; o[35] = x8 >>> 24 & 0xff; o[36] = x9 >>> 0 & 0xff; o[37] = x9 >>> 8 & 0xff; o[38] = x9 >>> 16 & 0xff; o[39] = x9 >>> 24 & 0xff; o[40] = x10 >>> 0 & 0xff; o[41] = x10 >>> 8 & 0xff; o[42] = x10 >>> 16 & 0xff; o[43] = x10 >>> 24 & 0xff; o[44] = x11 >>> 0 & 0xff; o[45] = x11 >>> 8 & 0xff; o[46] = x11 >>> 16 & 0xff; o[47] = x11 >>> 24 & 0xff; o[48] = x12 >>> 0 & 0xff; o[49] = x12 >>> 8 & 0xff; o[50] = x12 >>> 16 & 0xff; o[51] = x12 >>> 24 & 0xff; o[52] = x13 >>> 0 & 0xff; o[53] = x13 >>> 8 & 0xff; o[54] = x13 >>> 16 & 0xff; o[55] = x13 >>> 24 & 0xff; o[56] = x14 >>> 0 & 0xff; o[57] = x14 >>> 8 & 0xff; o[58] = x14 >>> 16 & 0xff; o[59] = x14 >>> 24 & 0xff; o[60] = x15 >>> 0 & 0xff; o[61] = x15 >>> 8 & 0xff; o[62] = x15 >>> 16 & 0xff; o[63] = x15 >>> 24 & 0xff; } function core_hsalsa20(o,p,k,c) { var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24, j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24, j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24, j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24, j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24, j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24, j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24, j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24, j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24, j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24, j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24, j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24, j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24, j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24, j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24, j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24; var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7, x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14, x15 = j15, u; for (var i = 0; i < 20; i += 2) { u = x0 + x12 | 0; x4 ^= u<<7 | u>>>(32-7); u = x4 + x0 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x4 | 0; x12 ^= u<<13 | u>>>(32-13); u = x12 + x8 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x1 | 0; x9 ^= u<<7 | u>>>(32-7); u = x9 + x5 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x9 | 0; x1 ^= u<<13 | u>>>(32-13); u = x1 + x13 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x6 | 0; x14 ^= u<<7 | u>>>(32-7); u = x14 + x10 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x14 | 0; x6 ^= u<<13 | u>>>(32-13); u = x6 + x2 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x11 | 0; x3 ^= u<<7 | u>>>(32-7); u = x3 + x15 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x3 | 0; x11 ^= u<<13 | u>>>(32-13); u = x11 + x7 | 0; x15 ^= u<<18 | u>>>(32-18); u = x0 + x3 | 0; x1 ^= u<<7 | u>>>(32-7); u = x1 + x0 | 0; x2 ^= u<<9 | u>>>(32-9); u = x2 + x1 | 0; x3 ^= u<<13 | u>>>(32-13); u = x3 + x2 | 0; x0 ^= u<<18 | u>>>(32-18); u = x5 + x4 | 0; x6 ^= u<<7 | u>>>(32-7); u = x6 + x5 | 0; x7 ^= u<<9 | u>>>(32-9); u = x7 + x6 | 0; x4 ^= u<<13 | u>>>(32-13); u = x4 + x7 | 0; x5 ^= u<<18 | u>>>(32-18); u = x10 + x9 | 0; x11 ^= u<<7 | u>>>(32-7); u = x11 + x10 | 0; x8 ^= u<<9 | u>>>(32-9); u = x8 + x11 | 0; x9 ^= u<<13 | u>>>(32-13); u = x9 + x8 | 0; x10 ^= u<<18 | u>>>(32-18); u = x15 + x14 | 0; x12 ^= u<<7 | u>>>(32-7); u = x12 + x15 | 0; x13 ^= u<<9 | u>>>(32-9); u = x13 + x12 | 0; x14 ^= u<<13 | u>>>(32-13); u = x14 + x13 | 0; x15 ^= u<<18 | u>>>(32-18); } o[ 0] = x0 >>> 0 & 0xff; o[ 1] = x0 >>> 8 & 0xff; o[ 2] = x0 >>> 16 & 0xff; o[ 3] = x0 >>> 24 & 0xff; o[ 4] = x5 >>> 0 & 0xff; o[ 5] = x5 >>> 8 & 0xff; o[ 6] = x5 >>> 16 & 0xff; o[ 7] = x5 >>> 24 & 0xff; o[ 8] = x10 >>> 0 & 0xff; o[ 9] = x10 >>> 8 & 0xff; o[10] = x10 >>> 16 & 0xff; o[11] = x10 >>> 24 & 0xff; o[12] = x15 >>> 0 & 0xff; o[13] = x15 >>> 8 & 0xff; o[14] = x15 >>> 16 & 0xff; o[15] = x15 >>> 24 & 0xff; o[16] = x6 >>> 0 & 0xff; o[17] = x6 >>> 8 & 0xff; o[18] = x6 >>> 16 & 0xff; o[19] = x6 >>> 24 & 0xff; o[20] = x7 >>> 0 & 0xff; o[21] = x7 >>> 8 & 0xff; o[22] = x7 >>> 16 & 0xff; o[23] = x7 >>> 24 & 0xff; o[24] = x8 >>> 0 & 0xff; o[25] = x8 >>> 8 & 0xff; o[26] = x8 >>> 16 & 0xff; o[27] = x8 >>> 24 & 0xff; o[28] = x9 >>> 0 & 0xff; o[29] = x9 >>> 8 & 0xff; o[30] = x9 >>> 16 & 0xff; o[31] = x9 >>> 24 & 0xff; } function crypto_core_salsa20(out,inp,k,c) { core_salsa20(out,inp,k,c); } function crypto_core_hsalsa20(out,inp,k,c) { core_hsalsa20(out,inp,k,c); } var sigma = new Uint8Array([101, 120, 112, 97, 110, 100, 32, 51, 50, 45, 98, 121, 116, 101, 32, 107]); // "expand 32-byte k" function crypto_stream_salsa20_xor(c,cpos,m,mpos,b,n,k) { var z = new Uint8Array(16), x = new Uint8Array(64); var u, i; for (i = 0; i < 16; i++) z[i] = 0; for (i = 0; i < 8; i++) z[i] = n[i]; while (b >= 64) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < 64; i++) c[cpos+i] = m[mpos+i] ^ x[i]; u = 1; for (i = 8; i < 16; i++) { u = u + (z[i] & 0xff) | 0; z[i] = u & 0xff; u >>>= 8; } b -= 64; cpos += 64; mpos += 64; } if (b > 0) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < b; i++) c[cpos+i] = m[mpos+i] ^ x[i]; } return 0; } function crypto_stream_salsa20(c,cpos,b,n,k) { var z = new Uint8Array(16), x = new Uint8Array(64); var u, i; for (i = 0; i < 16; i++) z[i] = 0; for (i = 0; i < 8; i++) z[i] = n[i]; while (b >= 64) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < 64; i++) c[cpos+i] = x[i]; u = 1; for (i = 8; i < 16; i++) { u = u + (z[i] & 0xff) | 0; z[i] = u & 0xff; u >>>= 8; } b -= 64; cpos += 64; } if (b > 0) { crypto_core_salsa20(x,z,k,sigma); for (i = 0; i < b; i++) c[cpos+i] = x[i]; } return 0; } function crypto_stream(c,cpos,d,n,k) { var s = new Uint8Array(32); crypto_core_hsalsa20(s,n,k,sigma); var sn = new Uint8Array(8); for (var i = 0; i < 8; i++) sn[i] = n[i+16]; return crypto_stream_salsa20(c,cpos,d,sn,s); } function crypto_stream_xor(c,cpos,m,mpos,d,n,k) { var s = new Uint8Array(32); crypto_core_hsalsa20(s,n,k,sigma); var sn = new Uint8Array(8); for (var i = 0; i < 8; i++) sn[i] = n[i+16]; return crypto_stream_salsa20_xor(c,cpos,m,mpos,d,sn,s); } /* * Port of Andrew Moon's Poly1305-donna-16. Public domain. * https://github.com/floodyberry/poly1305-donna */ var poly1305 = function(key) { this.buffer = new Uint8Array(16); this.r = new Uint16Array(10); this.h = new Uint16Array(10); this.pad = new Uint16Array(8); this.leftover = 0; this.fin = 0; var t0, t1, t2, t3, t4, t5, t6, t7; t0 = key[ 0] & 0xff | (key[ 1] & 0xff) << 8; this.r[0] = ( t0 ) & 0x1fff; t1 = key[ 2] & 0xff | (key[ 3] & 0xff) << 8; this.r[1] = ((t0 >>> 13) | (t1 << 3)) & 0x1fff; t2 = key[ 4] & 0xff | (key[ 5] & 0xff) << 8; this.r[2] = ((t1 >>> 10) | (t2 << 6)) & 0x1f03; t3 = key[ 6] & 0xff | (key[ 7] & 0xff) << 8; this.r[3] = ((t2 >>> 7) | (t3 << 9)) & 0x1fff; t4 = key[ 8] & 0xff | (key[ 9] & 0xff) << 8; this.r[4] = ((t3 >>> 4) | (t4 << 12)) & 0x00ff; this.r[5] = ((t4 >>> 1)) & 0x1ffe; t5 = key[10] & 0xff | (key[11] & 0xff) << 8; this.r[6] = ((t4 >>> 14) | (t5 << 2)) & 0x1fff; t6 = key[12] & 0xff | (key[13] & 0xff) << 8; this.r[7] = ((t5 >>> 11) | (t6 << 5)) & 0x1f81; t7 = key[14] & 0xff | (key[15] & 0xff) << 8; this.r[8] = ((t6 >>> 8) | (t7 << 8)) & 0x1fff; this.r[9] = ((t7 >>> 5)) & 0x007f; this.pad[0] = key[16] & 0xff | (key[17] & 0xff) << 8; this.pad[1] = key[18] & 0xff | (key[19] & 0xff) << 8; this.pad[2] = key[20] & 0xff | (key[21] & 0xff) << 8; this.pad[3] = key[22] & 0xff | (key[23] & 0xff) << 8; this.pad[4] = key[24] & 0xff | (key[25] & 0xff) << 8; this.pad[5] = key[26] & 0xff | (key[27] & 0xff) << 8; this.pad[6] = key[28] & 0xff | (key[29] & 0xff) << 8; this.pad[7] = key[30] & 0xff | (key[31] & 0xff) << 8; }; poly1305.prototype.blocks = function(m, mpos, bytes) { var hibit = this.fin ? 0 : (1 << 11); var t0, t1, t2, t3, t4, t5, t6, t7, c; var d0, d1, d2, d3, d4, d5, d6, d7, d8, d9; var h0 = this.h[0], h1 = this.h[1], h2 = this.h[2], h3 = this.h[3], h4 = this.h[4], h5 = this.h[5], h6 = this.h[6], h7 = this.h[7], h8 = this.h[8], h9 = this.h[9]; var r0 = this.r[0], r1 = this.r[1], r2 = this.r[2], r3 = this.r[3], r4 = this.r[4], r5 = this.r[5], r6 = this.r[6], r7 = this.r[7], r8 = this.r[8], r9 = this.r[9]; while (bytes >= 16) { t0 = m[mpos+ 0] & 0xff | (m[mpos+ 1] & 0xff) << 8; h0 += ( t0 ) & 0x1fff; t1 = m[mpos+ 2] & 0xff | (m[mpos+ 3] & 0xff) << 8; h1 += ((t0 >>> 13) | (t1 << 3)) & 0x1fff; t2 = m[mpos+ 4] & 0xff | (m[mpos+ 5] & 0xff) << 8; h2 += ((t1 >>> 10) | (t2 << 6)) & 0x1fff; t3 = m[mpos+ 6] & 0xff | (m[mpos+ 7] & 0xff) << 8; h3 += ((t2 >>> 7) | (t3 << 9)) & 0x1fff; t4 = m[mpos+ 8] & 0xff | (m[mpos+ 9] & 0xff) << 8; h4 += ((t3 >>> 4) | (t4 << 12)) & 0x1fff; h5 += ((t4 >>> 1)) & 0x1fff; t5 = m[mpos+10] & 0xff | (m[mpos+11] & 0xff) << 8; h6 += ((t4 >>> 14) | (t5 << 2)) & 0x1fff; t6 = m[mpos+12] & 0xff | (m[mpos+13] & 0xff) << 8; h7 += ((t5 >>> 11) | (t6 << 5)) & 0x1fff; t7 = m[mpos+14] & 0xff | (m[mpos+15] & 0xff) << 8; h8 += ((t6 >>> 8) | (t7 << 8)) & 0x1fff; h9 += ((t7 >>> 5)) | hibit; c = 0; d0 = c; d0 += h0 * r0; d0 += h1 * (5 * r9); d0 += h2 * (5 * r8); d0 += h3 * (5 * r7); d0 += h4 * (5 * r6); c = (d0 >>> 13); d0 &= 0x1fff; d0 += h5 * (5 * r5); d0 += h6 * (5 * r4); d0 += h7 * (5 * r3); d0 += h8 * (5 * r2); d0 += h9 * (5 * r1); c += (d0 >>> 13); d0 &= 0x1fff; d1 = c; d1 += h0 * r1; d1 += h1 * r0; d1 += h2 * (5 * r9); d1 += h3 * (5 * r8); d1 += h4 * (5 * r7); c = (d1 >>> 13); d1 &= 0x1fff; d1 += h5 * (5 * r6); d1 += h6 * (5 * r5); d1 += h7 * (5 * r4); d1 += h8 * (5 * r3); d1 += h9 * (5 * r2); c += (d1 >>> 13); d1 &= 0x1fff; d2 = c; d2 += h0 * r2; d2 += h1 * r1; d2 += h2 * r0; d2 += h3 * (5 * r9); d2 += h4 * (5 * r8); c = (d2 >>> 13); d2 &= 0x1fff; d2 += h5 * (5 * r7); d2 += h6 * (5 * r6); d2 += h7 * (5 * r5); d2 += h8 * (5 * r4); d2 += h9 * (5 * r3); c += (d2 >>> 13); d2 &= 0x1fff; d3 = c; d3 += h0 * r3; d3 += h1 * r2; d3 += h2 * r1; d3 += h3 * r0; d3 += h4 * (5 * r9); c = (d3 >>> 13); d3 &= 0x1fff; d3 += h5 * (5 * r8); d3 += h6 * (5 * r7); d3 += h7 * (5 * r6); d3 += h8 * (5 * r5); d3 += h9 * (5 * r4); c += (d3 >>> 13); d3 &= 0x1fff; d4 = c; d4 += h0 * r4; d4 += h1 * r3; d4 += h2 * r2; d4 += h3 * r1; d4 += h4 * r0; c = (d4 >>> 13); d4 &= 0x1fff; d4 += h5 * (5 * r9); d4 += h6 * (5 * r8); d4 += h7 * (5 * r7); d4 += h8 * (5 * r6); d4 += h9 * (5 * r5); c += (d4 >>> 13); d4 &= 0x1fff; d5 = c; d5 += h0 * r5; d5 += h1 * r4; d5 += h2 * r3; d5 += h3 * r2; d5 += h4 * r1; c = (d5 >>> 13); d5 &= 0x1fff; d5 += h5 * r0; d5 += h6 * (5 * r9); d5 += h7 * (5 * r8); d5 += h8 * (5 * r7); d5 += h9 * (5 * r6); c += (d5 >>> 13); d5 &= 0x1fff; d6 = c; d6 += h0 * r6; d6 += h1 * r5; d6 += h2 * r4; d6 += h3 * r3; d6 += h4 * r2; c = (d6 >>> 13); d6 &= 0x1fff; d6 += h5 * r1; d6 += h6 * r0; d6 += h7 * (5 * r9); d6 += h8 * (5 * r8); d6 += h9 * (5 * r7); c += (d6 >>> 13); d6 &= 0x1fff; d7 = c; d7 += h0 * r7; d7 += h1 * r6; d7 += h2 * r5; d7 += h3 * r4; d7 += h4 * r3; c = (d7 >>> 13); d7 &= 0x1fff; d7 += h5 * r2; d7 += h6 * r1; d7 += h7 * r0; d7 += h8 * (5 * r9); d7 += h9 * (5 * r8); c += (d7 >>> 13); d7 &= 0x1fff; d8 = c; d8 += h0 * r8; d8 += h1 * r7; d8 += h2 * r6; d8 += h3 * r5; d8 += h4 * r4; c = (d8 >>> 13); d8 &= 0x1fff; d8 += h5 * r3; d8 += h6 * r2; d8 += h7 * r1; d8 += h8 * r0; d8 += h9 * (5 * r9); c += (d8 >>> 13); d8 &= 0x1fff; d9 = c; d9 += h0 * r9; d9 += h1 * r8; d9 += h2 * r7; d9 += h3 * r6; d9 += h4 * r5; c = (d9 >>> 13); d9 &= 0x1fff; d9 += h5 * r4; d9 += h6 * r3; d9 += h7 * r2; d9 += h8 * r1; d9 += h9 * r0; c += (d9 >>> 13); d9 &= 0x1fff; c = (((c << 2) + c)) | 0; c = (c + d0) | 0; d0 = c & 0x1fff; c = (c >>> 13); d1 += c; h0 = d0; h1 = d1; h2 = d2; h3 = d3; h4 = d4; h5 = d5; h6 = d6; h7 = d7; h8 = d8; h9 = d9; mpos += 16; bytes -= 16; } this.h[0] = h0; this.h[1] = h1; this.h[2] = h2; this.h[3] = h3; this.h[4] = h4; this.h[5] = h5; this.h[6] = h6; this.h[7] = h7; this.h[8] = h8; this.h[9] = h9; }; poly1305.prototype.finish = function(mac, macpos) { var g = new Uint16Array(10); var c, mask, f, i; if (this.leftover) { i = this.leftover; this.buffer[i++] = 1; for (; i < 16; i++) this.buffer[i] = 0; this.fin = 1; this.blocks(this.buffer, 0, 16); } c = this.h[1] >>> 13; this.h[1] &= 0x1fff; for (i = 2; i < 10; i++) { this.h[i] += c; c = this.h[i] >>> 13; this.h[i] &= 0x1fff; } this.h[0] += (c * 5); c = this.h[0] >>> 13; this.h[0] &= 0x1fff; this.h[1] += c; c = this.h[1] >>> 13; this.h[1] &= 0x1fff; this.h[2] += c; g[0] = this.h[0] + 5; c = g[0] >>> 13; g[0] &= 0x1fff; for (i = 1; i < 10; i++) { g[i] = this.h[i] + c; c = g[i] >>> 13; g[i] &= 0x1fff; } g[9] -= (1 << 13); mask = (g[9] >>> ((2 * 8) - 1)) - 1; for (i = 0; i < 10; i++) g[i] &= mask; mask = ~mask; for (i = 0; i < 10; i++) this.h[i] = (this.h[i] & mask) | g[i]; this.h[0] = ((this.h[0] ) | (this.h[1] << 13) ) & 0xffff; this.h[1] = ((this.h[1] >>> 3) | (this.h[2] << 10) ) & 0xffff; this.h[2] = ((this.h[2] >>> 6) | (this.h[3] << 7) ) & 0xffff; this.h[3] = ((this.h[3] >>> 9) | (this.h[4] << 4) ) & 0xffff; this.h[4] = ((this.h[4] >>> 12) | (this.h[5] << 1) | (this.h[6] << 14)) & 0xffff; this.h[5] = ((this.h[6] >>> 2) | (this.h[7] << 11) ) & 0xffff; this.h[6] = ((this.h[7] >>> 5) | (this.h[8] << 8) ) & 0xffff; this.h[7] = ((this.h[8] >>> 8) | (this.h[9] << 5) ) & 0xffff; f = this.h[0] + this.pad[0]; this.h[0] = f & 0xffff; for (i = 1; i < 8; i++) { f = (((this.h[i] + this.pad[i]) | 0) + (f >>> 16)) | 0; this.h[i] = f & 0xffff; } mac[macpos+ 0] = (this.h[0] >>> 0) & 0xff; mac[macpos+ 1] = (this.h[0] >>> 8) & 0xff; mac[macpos+ 2] = (this.h[1] >>> 0) & 0xff; mac[macpos+ 3] = (this.h[1] >>> 8) & 0xff; mac[macpos+ 4] = (this.h[2] >>> 0) & 0xff; mac[macpos+ 5] = (this.h[2] >>> 8) & 0xff; mac[macpos+ 6] = (this.h[3] >>> 0) & 0xff; mac[macpos+ 7] = (this.h[3] >>> 8) & 0xff; mac[macpos+ 8] = (this.h[4] >>> 0) & 0xff; mac[macpos+ 9] = (this.h[4] >>> 8) & 0xff; mac[macpos+10] = (this.h[5] >>> 0) & 0xff; mac[macpos+11] = (this.h[5] >>> 8) & 0xff; mac[macpos+12] = (this.h[6] >>> 0) & 0xff; mac[macpos+13] = (this.h[6] >>> 8) & 0xff; mac[macpos+14] = (this.h[7] >>> 0) & 0xff; mac[macpos+15] = (this.h[7] >>> 8) & 0xff; }; poly1305.prototype.update = function(m, mpos, bytes) { var i, want; if (this.leftover) { want = (16 - this.leftover); if (want > bytes) want = bytes; for (i = 0; i < want; i++) this.buffer[this.leftover + i] = m[mpos+i]; bytes -= want; mpos += want; this.leftover += want; if (this.leftover < 16) return; this.blocks(this.buffer, 0, 16); this.leftover = 0; } if (bytes >= 16) { want = bytes - (bytes % 16); this.blocks(m, mpos, want); mpos += want; bytes -= want; } if (bytes) { for (i = 0; i < bytes; i++) this.buffer[this.leftover + i] = m[mpos+i]; this.leftover += bytes; } }; function crypto_onetimeauth(out, outpos, m, mpos, n, k) { var s = new poly1305(k); s.update(m, mpos, n); s.finish(out, outpos); return 0; } function crypto_onetimeauth_verify(h, hpos, m, mpos, n, k) { var x = new Uint8Array(16); crypto_onetimeauth(x,0,m,mpos,n,k); return crypto_verify_16(h,hpos,x,0); } function crypto_secretbox(c,m,d,n,k) { var i; if (d < 32) return -1; crypto_stream_xor(c,0,m,0,d,n,k); crypto_onetimeauth(c, 16, c, 32, d - 32, c); for (i = 0; i < 16; i++) c[i] = 0; return 0; } function crypto_secretbox_open(m,c,d,n,k) { var i; var x = new Uint8Array(32); if (d < 32) return -1; crypto_stream(x,0,32,n,k); if (crypto_onetimeauth_verify(c, 16,c, 32,d - 32,x) !== 0) return -1; crypto_stream_xor(m,0,c,0,d,n,k); for (i = 0; i < 32; i++) m[i] = 0; return 0; } function set25519(r, a) { var i; for (i = 0; i < 16; i++) r[i] = a[i]|0; } function car25519(o) { var i, v, c = 1; for (i = 0; i < 16; i++) { v = o[i] + c + 65535; c = Math.floor(v / 65536); o[i] = v - c * 65536; } o[0] += c-1 + 37 * (c-1); } function sel25519(p, q, b) { var t, c = ~(b-1); for (var i = 0; i < 16; i++) { t = c & (p[i] ^ q[i]); p[i] ^= t; q[i] ^= t; } } function pack25519(o, n) { var i, j, b; var m = gf(), t = gf(); for (i = 0; i < 16; i++) t[i] = n[i]; car25519(t); car25519(t); car25519(t); for (j = 0; j < 2; j++) { m[0] = t[0] - 0xffed; for (i = 1; i < 15; i++) { m[i] = t[i] - 0xffff - ((m[i-1]>>16) & 1); m[i-1] &= 0xffff; } m[15] = t[15] - 0x7fff - ((m[14]>>16) & 1); b = (m[15]>>16) & 1; m[14] &= 0xffff; sel25519(t, m, 1-b); } for (i = 0; i < 16; i++) { o[2*i] = t[i] & 0xff; o[2*i+1] = t[i]>>8; } } function neq25519(a, b) { var c = new Uint8Array(32), d = new Uint8Array(32); pack25519(c, a); pack25519(d, b); return crypto_verify_32(c, 0, d, 0); } function par25519(a) { var d = new Uint8Array(32); pack25519(d, a); return d[0] & 1; } function unpack25519(o, n) { var i; for (i = 0; i < 16; i++) o[i] = n[2*i] + (n[2*i+1] << 8); o[15] &= 0x7fff; } function A(o, a, b) { for (var i = 0; i < 16; i++) o[i] = a[i] + b[i]; } function Z(o, a, b) { for (var i = 0; i < 16; i++) o[i] = a[i] - b[i]; } function M(o, a, b) { var v, c, t0 = 0, t1 = 0, t2 = 0, t3 = 0, t4 = 0, t5 = 0, t6 = 0, t7 = 0, t8 = 0, t9 = 0, t10 = 0, t11 = 0, t12 = 0, t13 = 0, t14 = 0, t15 = 0, t16 = 0, t17 = 0, t18 = 0, t19 = 0, t20 = 0, t21 = 0, t22 = 0, t23 = 0, t24 = 0, t25 = 0, t26 = 0, t27 = 0, t28 = 0, t29 = 0, t30 = 0, b0 = b[0], b1 = b[1], b2 = b[2], b3 = b[3], b4 = b[4], b5 = b[5], b6 = b[6], b7 = b[7], b8 = b[8], b9 = b[9], b10 = b[10], b11 = b[11], b12 = b[12], b13 = b[13], b14 = b[14], b15 = b[15]; v = a[0]; t0 += v * b0; t1 += v * b1; t2 += v * b2; t3 += v * b3; t4 += v * b4; t5 += v * b5; t6 += v * b6; t7 += v * b7; t8 += v * b8; t9 += v * b9; t10 += v * b10; t11 += v * b11; t12 += v * b12; t13 += v * b13; t14 += v * b14; t15 += v * b15; v = a[1]; t1 += v * b0; t2 += v * b1; t3 += v * b2; t4 += v * b3; t5 += v * b4; t6 += v * b5; t7 += v * b6; t8 += v * b7; t9 += v * b8; t10 += v * b9; t11 += v * b10; t12 += v * b11; t13 += v * b12; t14 += v * b13; t15 += v * b14; t16 += v * b15; v = a[2]; t2 += v * b0; t3 += v * b1; t4 += v * b2; t5 += v * b3; t6 += v * b4; t7 += v * b5; t8 += v * b6; t9 += v * b7; t10 += v * b8; t11 += v * b9; t12 += v * b10; t13 += v * b11; t14 += v * b12; t15 += v * b13; t16 += v * b14; t17 += v * b15; v = a[3]; t3 += v * b0; t4 += v * b1; t5 += v * b2; t6 += v * b3; t7 += v * b4; t8 += v * b5; t9 += v * b6; t10 += v * b7; t11 += v * b8; t12 += v * b9; t13 += v * b10; t14 += v * b11; t15 += v * b12; t16 += v * b13; t17 += v * b14; t18 += v * b15; v = a[4]; t4 += v * b0; t5 += v * b1; t6 += v * b2; t7 += v * b3; t8 += v * b4; t9 += v * b5; t10 += v * b6; t11 += v * b7; t12 += v * b8; t13 += v * b9; t14 += v * b10; t15 += v * b11; t16 += v * b12; t17 += v * b13; t18 += v * b14; t19 += v * b15; v = a[5]; t5 += v * b0; t6 += v * b1; t7 += v * b2; t8 += v * b3; t9 += v * b4; t10 += v * b5; t11 += v * b6; t12 += v * b7; t13 += v * b8; t14 += v * b9; t15 += v * b10; t16 += v * b11; t17 += v * b12; t18 += v * b13; t19 += v * b14; t20 += v * b15; v = a[6]; t6 += v * b0; t7 += v * b1; t8 += v * b2; t9 += v * b3; t10 += v * b4; t11 += v * b5; t12 += v * b6; t13 += v * b7; t14 += v * b8; t15 += v * b9; t16 += v * b10; t17 += v * b11; t18 += v * b12; t19 += v * b13; t20 += v * b14; t21 += v * b15; v = a[7]; t7 += v * b0; t8 += v * b1; t9 += v * b2; t10 += v * b3; t11 += v * b4; t12 += v * b5; t13 += v * b6; t14 += v * b7; t15 += v * b8; t16 += v * b9; t17 += v * b10; t18 += v * b11; t19 += v * b12; t20 += v * b13; t21 += v * b14; t22 += v * b15; v = a[8]; t8 += v * b0; t9 += v * b1; t10 += v * b2; t11 += v * b3; t12 += v * b4; t13 += v * b5; t14 += v * b6; t15 += v * b7; t16 += v * b8; t17 += v * b9; t18 += v * b10; t19 += v * b11; t20 += v * b12; t21 += v * b13; t22 += v * b14; t23 += v * b15; v = a[9]; t9 += v * b0; t10 += v * b1; t11 += v * b2; t12 += v * b3; t13 += v * b4; t14 += v * b5; t15 += v * b6; t16 += v * b7; t17 += v * b8; t18 += v * b9; t19 += v * b10; t20 += v * b11; t21 += v * b12; t22 += v * b13; t23 += v * b14; t24 += v * b15; v = a[10]; t10 += v * b0; t11 += v * b1; t12 += v * b2; t13 += v * b3; t14 += v * b4; t15 += v * b5; t16 += v * b6; t17 += v * b7; t18 += v * b8; t19 += v * b9; t20 += v * b10; t21 += v * b11; t22 += v * b12; t23 += v * b13; t24 += v * b14; t25 += v * b15; v = a[11]; t11 += v * b0; t12 += v * b1; t13 += v * b2; t14 += v * b3; t15 += v * b4; t16 += v * b5; t17 += v * b6; t18 += v * b7; t19 += v * b8; t20 += v * b9; t21 += v * b10; t22 += v * b11; t23 += v * b12; t24 += v * b13; t25 += v * b14; t26 += v * b15; v = a[12]; t12 += v * b0; t13 += v * b1; t14 += v * b2; t15 += v * b3; t16 += v * b4; t17 += v * b5; t18 += v * b6; t19 += v * b7; t20 += v * b8; t21 += v * b9; t22 += v * b10; t23 += v * b11; t24 += v * b12; t25 += v * b13; t26 += v * b14; t27 += v * b15; v = a[13]; t13 += v * b0; t14 += v * b1; t15 += v * b2; t16 += v * b3; t17 += v * b4; t18 += v * b5; t19 += v * b6; t20 += v * b7; t21 += v * b8; t22 += v * b9; t23 += v * b10; t24 += v * b11; t25 += v * b12; t26 += v * b13; t27 += v * b14; t28 += v * b15; v = a[14]; t14 += v * b0; t15 += v * b1; t16 += v * b2; t17 += v * b3; t18 += v * b4; t19 += v * b5; t20 += v * b6; t21 += v * b7; t22 += v * b8; t23 += v * b9; t24 += v * b10; t25 += v * b11; t26 += v * b12; t27 += v * b13; t28 += v * b14; t29 += v * b15; v = a[15]; t15 += v * b0; t16 += v * b1; t17 += v * b2; t18 += v * b3; t19 += v * b4; t20 += v * b5; t21 += v * b6; t22 += v * b7; t23 += v * b8; t24 += v * b9; t25 += v * b10; t26 += v * b11; t27 += v * b12; t28 += v * b13; t29 += v * b14; t30 += v * b15; t0 += 38 * t16; t1 += 38 * t17; t2 += 38 * t18; t3 += 38 * t19; t4 += 38 * t20; t5 += 38 * t21; t6 += 38 * t22; t7 += 38 * t23; t8 += 38 * t24; t9 += 38 * t25; t10 += 38 * t26; t11 += 38 * t27; t12 += 38 * t28; t13 += 38 * t29; t14 += 38 * t30; // t15 left as is // first car c = 1; v = t0 + c + 65535; c = Math.floor(v / 65536); t0 = v - c * 65536; v = t1 + c + 65535; c = Math.floor(v / 65536); t1 = v - c * 65536; v = t2 + c + 65535; c = Math.floor(v / 65536); t2 = v - c * 65536; v = t3 + c + 65535; c = Math.floor(v / 65536); t3 = v - c * 65536; v = t4 + c + 65535; c = Math.floor(v / 65536); t4 = v - c * 65536; v = t5 + c + 65535; c = Math.floor(v / 65536); t5 = v - c * 65536; v = t6 + c + 65535; c = Math.floor(v / 65536); t6 = v - c * 65536; v = t7 + c + 65535; c = Math.floor(v / 65536); t7 = v - c * 65536; v = t8 + c + 65535; c = Math.floor(v / 65536); t8 = v - c * 65536; v = t9 + c + 65535; c = Math.floor(v / 65536); t9 = v - c * 65536; v = t10 + c + 65535; c = Math.floor(v / 65536); t10 = v - c * 65536; v = t11 + c + 65535; c = Math.floor(v / 65536); t11 = v - c * 65536; v = t12 + c + 65535; c = Math.floor(v / 65536); t12 = v - c * 65536; v = t13 + c + 65535; c = Math.floor(v / 65536); t13 = v - c * 65536; v = t14 + c + 65535; c = Math.floor(v / 65536); t14 = v - c * 65536; v = t15 + c + 65535; c = Math.floor(v / 65536); t15 = v - c * 65536; t0 += c-1 + 37 * (c-1); // second car c = 1; v = t0 + c + 65535; c = Math.floor(v / 65536); t0 = v - c * 65536; v = t1 + c + 65535; c = Math.floor(v / 65536); t1 = v - c * 65536; v = t2 + c + 65535; c = Math.floor(v / 65536); t2 = v - c * 65536; v = t3 + c + 65535; c = Math.floor(v / 65536); t3 = v - c * 65536; v = t4 + c + 65535; c = Math.floor(v / 65536); t4 = v - c * 65536; v = t5 + c + 65535; c = Math.floor(v / 65536); t5 = v - c * 65536; v = t6 + c + 65535; c = Math.floor(v / 65536); t6 = v - c * 65536; v = t7 + c + 65535; c = Math.floor(v / 65536); t7 = v - c * 65536; v = t8 + c + 65535; c = Math.floor(v / 65536); t8 = v - c * 65536; v = t9 + c + 65535; c = Math.floor(v / 65536); t9 = v - c * 65536; v = t10 + c + 65535; c = Math.floor(v / 65536); t10 = v - c * 65536; v = t11 + c + 65535; c = Math.floor(v / 65536); t11 = v - c * 65536; v = t12 + c + 65535; c = Math.floor(v / 65536); t12 = v - c * 65536; v = t13 + c + 65535; c = Math.floor(v / 65536); t13 = v - c * 65536; v = t14 + c + 65535; c = Math.floor(v / 65536); t14 = v - c * 65536; v = t15 + c + 65535; c = Math.floor(v / 65536); t15 = v - c * 65536; t0 += c-1 + 37 * (c-1); o[ 0] = t0; o[ 1] = t1; o[ 2] = t2; o[ 3] = t3; o[ 4] = t4; o[ 5] = t5; o[ 6] = t6; o[ 7] = t7; o[ 8] = t8; o[ 9] = t9; o[10] = t10; o[11] = t11; o[12] = t12; o[13] = t13; o[14] = t14; o[15] = t15; } function S(o, a) { M(o, a, a); } function inv25519(o, i) { var c = gf(); var a; for (a = 0; a < 16; a++) c[a] = i[a]; for (a = 253; a >= 0; a--) { S(c, c); if(a !== 2 && a !== 4) M(c, c, i); } for (a = 0; a < 16; a++) o[a] = c[a]; } function pow2523(o, i) { var c = gf(); var a; for (a = 0; a < 16; a++) c[a] = i[a]; for (a = 250; a >= 0; a--) { S(c, c); if(a !== 1) M(c, c, i); } for (a = 0; a < 16; a++) o[a] = c[a]; } function crypto_scalarmult(q, n, p) { var z = new Uint8Array(32); var x = new Float64Array(80), r, i; var a = gf(), b = gf(), c = gf(), d = gf(), e = gf(), f = gf(); for (i = 0; i < 31; i++) z[i] = n[i]; z[31]=(n[31]&127)|64; z[0]&=248; unpack25519(x,p); for (i = 0; i < 16; i++) { b[i]=x[i]; d[i]=a[i]=c[i]=0; } a[0]=d[0]=1; for (i=254; i>=0; --i) { r=(z[i>>>3]>>>(i&7))&1; sel25519(a,b,r); sel25519(c,d,r); A(e,a,c); Z(a,a,c); A(c,b,d); Z(b,b,d); S(d,e); S(f,a); M(a,c,a); M(c,b,e); A(e,a,c); Z(a,a,c); S(b,a); Z(c,d,f); M(a,c,_121665); A(a,a,d); M(c,c,a); M(a,d,f); M(d,b,x); S(b,e); sel25519(a,b,r); sel25519(c,d,r); } for (i = 0; i < 16; i++) { x[i+16]=a[i]; x[i+32]=c[i]; x[i+48]=b[i]; x[i+64]=d[i]; } var x32 = x.subarray(32); var x16 = x.subarray(16); inv25519(x32,x32); M(x16,x16,x32); pack25519(q,x16); return 0; } function crypto_scalarmult_base(q, n) { return crypto_scalarmult(q, n, _9); } function crypto_box_keypair(y, x) { randombytes(x, 32); return crypto_scalarmult_base(y, x); } function crypto_box_beforenm(k, y, x) { var s = new Uint8Array(32); crypto_scalarmult(s, x, y); return crypto_core_hsalsa20(k, _0, s, sigma); } var crypto_box_afternm = crypto_secretbox; var crypto_box_open_afternm = crypto_secretbox_open; function crypto_box(c, m, d, n, y, x) { var k = new Uint8Array(32); crypto_box_beforenm(k, y, x); return crypto_box_afternm(c, m, d, n, k); } function crypto_box_open(m, c, d, n, y, x) { var k = new Uint8Array(32); crypto_box_beforenm(k, y, x); return crypto_box_open_afternm(m, c, d, n, k); } var K = [ 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd, 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc, 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019, 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118, 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe, 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2, 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1, 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694, 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3, 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65, 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483, 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5, 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210, 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4, 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725, 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70, 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926, 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df, 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8, 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b, 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001, 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30, 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910, 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8, 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53, 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8, 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb, 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3, 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60, 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec, 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9, 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b, 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207, 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178, 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6, 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b, 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493, 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c, 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a, 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817 ]; function crypto_hashblocks_hl(hh, hl, m, n) { var wh = new Int32Array(16), wl = new Int32Array(16), bh0, bh1, bh2, bh3, bh4, bh5, bh6, bh7, bl0, bl1, bl2, bl3, bl4, bl5, bl6, bl7, th, tl, i, j, h, l, a, b, c, d; var ah0 = hh[0], ah1 = hh[1], ah2 = hh[2], ah3 = hh[3], ah4 = hh[4], ah5 = hh[5], ah6 = hh[6], ah7 = hh[7], al0 = hl[0], al1 = hl[1], al2 = hl[2], al3 = hl[3], al4 = hl[4], al5 = hl[5], al6 = hl[6], al7 = hl[7]; var pos = 0; while (n >= 128) { for (i = 0; i < 16; i++) { j = 8 * i + pos; wh[i] = (m[j+0] << 24) | (m[j+1] << 16) | (m[j+2] << 8) | m[j+3]; wl[i] = (m[j+4] << 24) | (m[j+5] << 16) | (m[j+6] << 8) | m[j+7]; } for (i = 0; i < 80; i++) { bh0 = ah0; bh1 = ah1; bh2 = ah2; bh3 = ah3; bh4 = ah4; bh5 = ah5; bh6 = ah6; bh7 = ah7; bl0 = al0; bl1 = al1; bl2 = al2; bl3 = al3; bl4 = al4; bl5 = al5; bl6 = al6; bl7 = al7; // add h = ah7; l = al7; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; // Sigma1 h = ((ah4 >>> 14) | (al4 << (32-14))) ^ ((ah4 >>> 18) | (al4 << (32-18))) ^ ((al4 >>> (41-32)) | (ah4 << (32-(41-32)))); l = ((al4 >>> 14) | (ah4 << (32-14))) ^ ((al4 >>> 18) | (ah4 << (32-18))) ^ ((ah4 >>> (41-32)) | (al4 << (32-(41-32)))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // Ch h = (ah4 & ah5) ^ (~ah4 & ah6); l = (al4 & al5) ^ (~al4 & al6); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // K h = K[i*2]; l = K[i*2+1]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // w h = wh[i%16]; l = wl[i%16]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; th = c & 0xffff | d << 16; tl = a & 0xffff | b << 16; // add h = th; l = tl; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; // Sigma0 h = ((ah0 >>> 28) | (al0 << (32-28))) ^ ((al0 >>> (34-32)) | (ah0 << (32-(34-32)))) ^ ((al0 >>> (39-32)) | (ah0 << (32-(39-32)))); l = ((al0 >>> 28) | (ah0 << (32-28))) ^ ((ah0 >>> (34-32)) | (al0 << (32-(34-32)))) ^ ((ah0 >>> (39-32)) | (al0 << (32-(39-32)))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // Maj h = (ah0 & ah1) ^ (ah0 & ah2) ^ (ah1 & ah2); l = (al0 & al1) ^ (al0 & al2) ^ (al1 & al2); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; bh7 = (c & 0xffff) | (d << 16); bl7 = (a & 0xffff) | (b << 16); // add h = bh3; l = bl3; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = th; l = tl; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; bh3 = (c & 0xffff) | (d << 16); bl3 = (a & 0xffff) | (b << 16); ah1 = bh0; ah2 = bh1; ah3 = bh2; ah4 = bh3; ah5 = bh4; ah6 = bh5; ah7 = bh6; ah0 = bh7; al1 = bl0; al2 = bl1; al3 = bl2; al4 = bl3; al5 = bl4; al6 = bl5; al7 = bl6; al0 = bl7; if (i%16 === 15) { for (j = 0; j < 16; j++) { // add h = wh[j]; l = wl[j]; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = wh[(j+9)%16]; l = wl[(j+9)%16]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // sigma0 th = wh[(j+1)%16]; tl = wl[(j+1)%16]; h = ((th >>> 1) | (tl << (32-1))) ^ ((th >>> 8) | (tl << (32-8))) ^ (th >>> 7); l = ((tl >>> 1) | (th << (32-1))) ^ ((tl >>> 8) | (th << (32-8))) ^ ((tl >>> 7) | (th << (32-7))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; // sigma1 th = wh[(j+14)%16]; tl = wl[(j+14)%16]; h = ((th >>> 19) | (tl << (32-19))) ^ ((tl >>> (61-32)) | (th << (32-(61-32)))) ^ (th >>> 6); l = ((tl >>> 19) | (th << (32-19))) ^ ((th >>> (61-32)) | (tl << (32-(61-32)))) ^ ((tl >>> 6) | (th << (32-6))); a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; wh[j] = (c & 0xffff) | (d << 16); wl[j] = (a & 0xffff) | (b << 16); } } } // add h = ah0; l = al0; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[0]; l = hl[0]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[0] = ah0 = (c & 0xffff) | (d << 16); hl[0] = al0 = (a & 0xffff) | (b << 16); h = ah1; l = al1; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[1]; l = hl[1]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[1] = ah1 = (c & 0xffff) | (d << 16); hl[1] = al1 = (a & 0xffff) | (b << 16); h = ah2; l = al2; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[2]; l = hl[2]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[2] = ah2 = (c & 0xffff) | (d << 16); hl[2] = al2 = (a & 0xffff) | (b << 16); h = ah3; l = al3; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[3]; l = hl[3]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[3] = ah3 = (c & 0xffff) | (d << 16); hl[3] = al3 = (a & 0xffff) | (b << 16); h = ah4; l = al4; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[4]; l = hl[4]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[4] = ah4 = (c & 0xffff) | (d << 16); hl[4] = al4 = (a & 0xffff) | (b << 16); h = ah5; l = al5; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[5]; l = hl[5]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[5] = ah5 = (c & 0xffff) | (d << 16); hl[5] = al5 = (a & 0xffff) | (b << 16); h = ah6; l = al6; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[6]; l = hl[6]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[6] = ah6 = (c & 0xffff) | (d << 16); hl[6] = al6 = (a & 0xffff) | (b << 16); h = ah7; l = al7; a = l & 0xffff; b = l >>> 16; c = h & 0xffff; d = h >>> 16; h = hh[7]; l = hl[7]; a += l & 0xffff; b += l >>> 16; c += h & 0xffff; d += h >>> 16; b += a >>> 16; c += b >>> 16; d += c >>> 16; hh[7] = ah7 = (c & 0xffff) | (d << 16); hl[7] = al7 = (a & 0xffff) | (b << 16); pos += 128; n -= 128; } return n; } function crypto_hash(out, m, n) { var hh = new Int32Array(8), hl = new Int32Array(8), x = new Uint8Array(256), i, b = n; hh[0] = 0x6a09e667; hh[1] = 0xbb67ae85; hh[2] = 0x3c6ef372; hh[3] = 0xa54ff53a; hh[4] = 0x510e527f; hh[5] = 0x9b05688c; hh[6] = 0x1f83d9ab; hh[7] = 0x5be0cd19; hl[0] = 0xf3bcc908; hl[1] = 0x84caa73b; hl[2] = 0xfe94f82b; hl[3] = 0x5f1d36f1; hl[4] = 0xade682d1; hl[5] = 0x2b3e6c1f; hl[6] = 0xfb41bd6b; hl[7] = 0x137e2179; crypto_hashblocks_hl(hh, hl, m, n); n %= 128; for (i = 0; i < n; i++) x[i] = m[b-n+i]; x[n] = 128; n = 256-128*(n<112?1:0); x[n-9] = 0; ts64(x, n-8, (b / 0x20000000) | 0, b << 3); crypto_hashblocks_hl(hh, hl, x, n); for (i = 0; i < 8; i++) ts64(out, 8*i, hh[i], hl[i]); return 0; } function add(p, q) { var a = gf(), b = gf(), c = gf(), d = gf(), e = gf(), f = gf(), g = gf(), h = gf(), t = gf(); Z(a, p[1], p[0]); Z(t, q[1], q[0]); M(a, a, t); A(b, p[0], p[1]); A(t, q[0], q[1]); M(b, b, t); M(c, p[3], q[3]); M(c, c, D2); M(d, p[2], q[2]); A(d, d, d); Z(e, b, a); Z(f, d, c); A(g, d, c); A(h, b, a); M(p[0], e, f); M(p[1], h, g); M(p[2], g, f); M(p[3], e, h); } function cswap(p, q, b) { var i; for (i = 0; i < 4; i++) { sel25519(p[i], q[i], b); } } function pack(r, p) { var tx = gf(), ty = gf(), zi = gf(); inv25519(zi, p[2]); M(tx, p[0], zi); M(ty, p[1], zi); pack25519(r, ty); r[31] ^= par25519(tx) << 7; } function scalarmult(p, q, s) { var b, i; set25519(p[0], gf0); set25519(p[1], gf1); set25519(p[2], gf1); set25519(p[3], gf0); for (i = 255; i >= 0; --i) { b = (s[(i/8)|0] >> (i&7)) & 1; cswap(p, q, b); add(q, p); add(p, p); cswap(p, q, b); } } function scalarbase(p, s) { var q = [gf(), gf(), gf(), gf()]; set25519(q[0], X); set25519(q[1], Y); set25519(q[2], gf1); M(q[3], X, Y); scalarmult(p, q, s); } function crypto_sign_keypair(pk, sk, seeded) { var d = new Uint8Array(64); var p = [gf(), gf(), gf(), gf()]; var i; if (!seeded) randombytes(sk, 32); crypto_hash(d, sk, 32); d[0] &= 248; d[31] &= 127; d[31] |= 64; scalarbase(p, d); pack(pk, p); for (i = 0; i < 32; i++) sk[i+32] = pk[i]; return 0; } var L = new Float64Array([0xed, 0xd3, 0xf5, 0x5c, 0x1a, 0x63, 0x12, 0x58, 0xd6, 0x9c, 0xf7, 0xa2, 0xde, 0xf9, 0xde, 0x14, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0x10]); function modL(r, x) { var carry, i, j, k; for (i = 63; i >= 32; --i) { carry = 0; for (j = i - 32, k = i - 12; j < k; ++j) { x[j] += carry - 16 * x[i] * L[j - (i - 32)]; carry = (x[j] + 128) >> 8; x[j] -= carry * 256; } x[j] += carry; x[i] = 0; } carry = 0; for (j = 0; j < 32; j++) { x[j] += carry - (x[31] >> 4) * L[j]; carry = x[j] >> 8; x[j] &= 255; } for (j = 0; j < 32; j++) x[j] -= carry * L[j]; for (i = 0; i < 32; i++) { x[i+1] += x[i] >> 8; r[i] = x[i] & 255; } } function reduce(r) { var x = new Float64Array(64), i; for (i = 0; i < 64; i++) x[i] = r[i]; for (i = 0; i < 64; i++) r[i] = 0; modL(r, x); } // Note: difference from C - smlen returned, not passed as argument. function crypto_sign(sm, m, n, sk) { var d = new Uint8Array(64), h = new Uint8Array(64), r = new Uint8Array(64); var i, j, x = new Float64Array(64); var p = [gf(), gf(), gf(), gf()]; crypto_hash(d, sk, 32); d[0] &= 248; d[31] &= 127; d[31] |= 64; var smlen = n + 64; for (i = 0; i < n; i++) sm[64 + i] = m[i]; for (i = 0; i < 32; i++) sm[32 + i] = d[32 + i]; crypto_hash(r, sm.subarray(32), n+32); reduce(r); scalarbase(p, r); pack(sm, p); for (i = 32; i < 64; i++) sm[i] = sk[i]; crypto_hash(h, sm, n + 64); reduce(h); for (i = 0; i < 64; i++) x[i] = 0; for (i = 0; i < 32; i++) x[i] = r[i]; for (i = 0; i < 32; i++) { for (j = 0; j < 32; j++) { x[i+j] += h[i] * d[j]; } } modL(sm.subarray(32), x); return smlen; } function unpackneg(r, p) { var t = gf(), chk = gf(), num = gf(), den = gf(), den2 = gf(), den4 = gf(), den6 = gf(); set25519(r[2], gf1); unpack25519(r[1], p); S(num, r[1]); M(den, num, D); Z(num, num, r[2]); A(den, r[2], den); S(den2, den); S(den4, den2); M(den6, den4, den2); M(t, den6, num); M(t, t, den); pow2523(t, t); M(t, t, num); M(t, t, den); M(t, t, den); M(r[0], t, den); S(chk, r[0]); M(chk, chk, den); if (neq25519(chk, num)) M(r[0], r[0], I); S(chk, r[0]); M(chk, chk, den); if (neq25519(chk, num)) return -1; if (par25519(r[0]) === (p[31]>>7)) Z(r[0], gf0, r[0]); M(r[3], r[0], r[1]); return 0; } function crypto_sign_open(m, sm, n, pk) { var i, mlen; var t = new Uint8Array(32), h = new Uint8Array(64); var p = [gf(), gf(), gf(), gf()], q = [gf(), gf(), gf(), gf()]; mlen = -1; if (n < 64) return -1; if (unpackneg(q, pk)) return -1; for (i = 0; i < n; i++) m[i] = sm[i]; for (i = 0; i < 32; i++) m[i+32] = pk[i]; crypto_hash(h, m, n); reduce(h); scalarmult(p, q, h); scalarbase(q, sm.subarray(32)); add(p, q); pack(t, p); n -= 64; if (crypto_verify_32(sm, 0, t, 0)) { for (i = 0; i < n; i++) m[i] = 0; return -1; } for (i = 0; i < n; i++) m[i] = sm[i + 64]; mlen = n; return mlen; } var crypto_secretbox_KEYBYTES = 32, crypto_secretbox_NONCEBYTES = 24, crypto_secretbox_ZEROBYTES = 32, crypto_secretbox_BOXZEROBYTES = 16, crypto_scalarmult_BYTES = 32, crypto_scalarmult_SCALARBYTES = 32, crypto_box_PUBLICKEYBYTES = 32, crypto_box_SECRETKEYBYTES = 32, crypto_box_BEFORENMBYTES = 32, crypto_box_NONCEBYTES = crypto_secretbox_NONCEBYTES, crypto_box_ZEROBYTES = crypto_secretbox_ZEROBYTES, crypto_box_BOXZEROBYTES = crypto_secretbox_BOXZEROBYTES, crypto_sign_BYTES = 64, crypto_sign_PUBLICKEYBYTES = 32, crypto_sign_SECRETKEYBYTES = 64, crypto_sign_SEEDBYTES = 32, crypto_hash_BYTES = 64; nacl.lowlevel = { crypto_core_hsalsa20: crypto_core_hsalsa20, crypto_stream_xor: crypto_stream_xor, crypto_stream: crypto_stream, crypto_stream_salsa20_xor: crypto_stream_salsa20_xor, crypto_stream_salsa20: crypto_stream_salsa20, crypto_onetimeauth: crypto_onetimeauth, crypto_onetimeauth_verify: crypto_onetimeauth_verify, crypto_verify_16: crypto_verify_16, crypto_verify_32: crypto_verify_32, crypto_secretbox: crypto_secretbox, crypto_secretbox_open: crypto_secretbox_open, crypto_scalarmult: crypto_scalarmult, crypto_scalarmult_base: crypto_scalarmult_base, crypto_box_beforenm: crypto_box_beforenm, crypto_box_afternm: crypto_box_afternm, crypto_box: crypto_box, crypto_box_open: crypto_box_open, crypto_box_keypair: crypto_box_keypair, crypto_hash: crypto_hash, crypto_sign: crypto_sign, crypto_sign_keypair: crypto_sign_keypair, crypto_sign_open: crypto_sign_open, crypto_secretbox_KEYBYTES: crypto_secretbox_KEYBYTES, crypto_secretbox_NONCEBYTES: crypto_secretbox_NONCEBYTES, crypto_secretbox_ZEROBYTES: crypto_secretbox_ZEROBYTES, crypto_secretbox_BOXZEROBYTES: crypto_secretbox_BOXZEROBYTES, crypto_scalarmult_BYTES: crypto_scalarmult_BYTES, crypto_scalarmult_SCALARBYTES: crypto_scalarmult_SCALARBYTES, crypto_box_PUBLICKEYBYTES: crypto_box_PUBLICKEYBYTES, crypto_box_SECRETKEYBYTES: crypto_box_SECRETKEYBYTES, crypto_box_BEFORENMBYTES: crypto_box_BEFORENMBYTES, crypto_box_NONCEBYTES: crypto_box_NONCEBYTES, crypto_box_ZEROBYTES: crypto_box_ZEROBYTES, crypto_box_BOXZEROBYTES: crypto_box_BOXZEROBYTES, crypto_sign_BYTES: crypto_sign_BYTES, crypto_sign_PUBLICKEYBYTES: crypto_sign_PUBLICKEYBYTES, crypto_sign_SECRETKEYBYTES: crypto_sign_SECRETKEYBYTES, crypto_sign_SEEDBYTES: crypto_sign_SEEDBYTES, crypto_hash_BYTES: crypto_hash_BYTES }; /* High-level API */ function checkLengths(k, n) { if (k.length !== crypto_secretbox_KEYBYTES) throw new Error('bad key size'); if (n.length !== crypto_secretbox_NONCEBYTES) throw new Error('bad nonce size'); } function checkBoxLengths(pk, sk) { if (pk.length !== crypto_box_PUBLICKEYBYTES) throw new Error('bad public key size'); if (sk.length !== crypto_box_SECRETKEYBYTES) throw new Error('bad secret key size'); } function checkArrayTypes() { var t, i; for (i = 0; i < arguments.length; i++) { if ((t = Object.prototype.toString.call(arguments[i])) !== '[object Uint8Array]') throw new TypeError('unexpected type ' + t + ', use Uint8Array'); } } function cleanup(arr) { for (var i = 0; i < arr.length; i++) arr[i] = 0; } nacl.util = {}; nacl.util.decodeUTF8 = function(s) { var i, d = unescape(encodeURIComponent(s)), b = new Uint8Array(d.length); for (i = 0; i < d.length; i++) b[i] = d.charCodeAt(i); return b; }; nacl.util.encodeUTF8 = function(arr) { var i, s = []; for (i = 0; i < arr.length; i++) s.push(String.fromCharCode(arr[i])); return decodeURIComponent(escape(s.join(''))); }; nacl.util.encodeBase64 = function(arr) { if (typeof btoa === 'undefined') { return (new Buffer(arr)).toString('base64'); } else { var i, s = [], len = arr.length; for (i = 0; i < len; i++) s.push(String.fromCharCode(arr[i])); return btoa(s.join('')); } }; nacl.util.decodeBase64 = function(s) { if (typeof atob === 'undefined') { return new Uint8Array(Array.prototype.slice.call(new Buffer(s, 'base64'), 0)); } else { var i, d = atob(s), b = new Uint8Array(d.length); for (i = 0; i < d.length; i++) b[i] = d.charCodeAt(i); return b; } }; nacl.randomBytes = function(n) { var b = new Uint8Array(n); randombytes(b, n); return b; }; nacl.secretbox = function(msg, nonce, key) { checkArrayTypes(msg, nonce, key); checkLengths(key, nonce); var m = new Uint8Array(crypto_secretbox_ZEROBYTES + msg.length); var c = new Uint8Array(m.length); for (var i = 0; i < msg.length; i++) m[i+crypto_secretbox_ZEROBYTES] = msg[i]; crypto_secretbox(c, m, m.length, nonce, key); return c.subarray(crypto_secretbox_BOXZEROBYTES); }; nacl.secretbox.open = function(box, nonce, key) { checkArrayTypes(box, nonce, key); checkLengths(key, nonce); var c = new Uint8Array(crypto_secretbox_BOXZEROBYTES + box.length); var m = new Uint8Array(c.length); for (var i = 0; i < box.length; i++) c[i+crypto_secretbox_BOXZEROBYTES] = box[i]; if (c.length < 32) return false; if (crypto_secretbox_open(m, c, c.length, nonce, key) !== 0) return false; return m.subarray(crypto_secretbox_ZEROBYTES); }; nacl.secretbox.keyLength = crypto_secretbox_KEYBYTES; nacl.secretbox.nonceLength = crypto_secretbox_NONCEBYTES; nacl.secretbox.overheadLength = crypto_secretbox_BOXZEROBYTES; nacl.scalarMult = function(n, p) { checkArrayTypes(n, p); if (n.length !== crypto_scalarmult_SCALARBYTES) throw new Error('bad n size'); if (p.length !== crypto_scalarmult_BYTES) throw new Error('bad p size'); var q = new Uint8Array(crypto_scalarmult_BYTES); crypto_scalarmult(q, n, p); return q; }; nacl.scalarMult.base = function(n) { checkArrayTypes(n); if (n.length !== crypto_scalarmult_SCALARBYTES) throw new Error('bad n size'); var q = new Uint8Array(crypto_scalarmult_BYTES); crypto_scalarmult_base(q, n); return q; }; nacl.scalarMult.scalarLength = crypto_scalarmult_SCALARBYTES; nacl.scalarMult.groupElementLength = crypto_scalarmult_BYTES; nacl.box = function(msg, nonce, publicKey, secretKey) { var k = nacl.box.before(publicKey, secretKey); return nacl.secretbox(msg, nonce, k); }; nacl.box.before = function(publicKey, secretKey) { checkArrayTypes(publicKey, secretKey); checkBoxLengths(publicKey, secretKey); var k = new Uint8Array(crypto_box_BEFORENMBYTES); crypto_box_beforenm(k, publicKey, secretKey); return k; }; nacl.box.after = nacl.secretbox; nacl.box.open = function(msg, nonce, publicKey, secretKey) { var k = nacl.box.before(publicKey, secretKey); return nacl.secretbox.open(msg, nonce, k); }; nacl.box.open.after = nacl.secretbox.open; nacl.box.keyPair = function() { var pk = new Uint8Array(crypto_box_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_box_SECRETKEYBYTES); crypto_box_keypair(pk, sk); return {publicKey: pk, secretKey: sk}; }; nacl.box.keyPair.fromSecretKey = function(secretKey) { checkArrayTypes(secretKey); if (secretKey.length !== crypto_box_SECRETKEYBYTES) throw new Error('bad secret key size'); var pk = new Uint8Array(crypto_box_PUBLICKEYBYTES); crypto_scalarmult_base(pk, secretKey); return {publicKey: pk, secretKey: new Uint8Array(secretKey)}; }; nacl.box.publicKeyLength = crypto_box_PUBLICKEYBYTES; nacl.box.secretKeyLength = crypto_box_SECRETKEYBYTES; nacl.box.sharedKeyLength = crypto_box_BEFORENMBYTES; nacl.box.nonceLength = crypto_box_NONCEBYTES; nacl.box.overheadLength = nacl.secretbox.overheadLength; nacl.sign = function(msg, secretKey) { checkArrayTypes(msg, secretKey); if (secretKey.length !== crypto_sign_SECRETKEYBYTES) throw new Error('bad secret key size'); var signedMsg = new Uint8Array(crypto_sign_BYTES+msg.length); crypto_sign(signedMsg, msg, msg.length, secretKey); return signedMsg; }; nacl.sign.open = function(signedMsg, publicKey) { if (arguments.length !== 2) throw new Error('nacl.sign.open accepts 2 arguments; did you mean to use nacl.sign.detached.verify?'); checkArrayTypes(signedMsg, publicKey); if (publicKey.length !== crypto_sign_PUBLICKEYBYTES) throw new Error('bad public key size'); var tmp = new Uint8Array(signedMsg.length); var mlen = crypto_sign_open(tmp, signedMsg, signedMsg.length, publicKey); if (mlen < 0) return null; var m = new Uint8Array(mlen); for (var i = 0; i < m.length; i++) m[i] = tmp[i]; return m; }; nacl.sign.detached = function(msg, secretKey) { var signedMsg = nacl.sign(msg, secretKey); var sig = new Uint8Array(crypto_sign_BYTES); for (var i = 0; i < sig.length; i++) sig[i] = signedMsg[i]; return sig; }; nacl.sign.detached.verify = function(msg, sig, publicKey) { checkArrayTypes(msg, sig, publicKey); if (sig.length !== crypto_sign_BYTES) throw new Error('bad signature size'); if (publicKey.length !== crypto_sign_PUBLICKEYBYTES) throw new Error('bad public key size'); var sm = new Uint8Array(crypto_sign_BYTES + msg.length); var m = new Uint8Array(crypto_sign_BYTES + msg.length); var i; for (i = 0; i < crypto_sign_BYTES; i++) sm[i] = sig[i]; for (i = 0; i < msg.length; i++) sm[i+crypto_sign_BYTES] = msg[i]; return (crypto_sign_open(m, sm, sm.length, publicKey) >= 0); }; nacl.sign.keyPair = function() { var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_sign_SECRETKEYBYTES); crypto_sign_keypair(pk, sk); return {publicKey: pk, secretKey: sk}; }; nacl.sign.keyPair.fromSecretKey = function(secretKey) { checkArrayTypes(secretKey); if (secretKey.length !== crypto_sign_SECRETKEYBYTES) throw new Error('bad secret key size'); var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); for (var i = 0; i < pk.length; i++) pk[i] = secretKey[32+i]; return {publicKey: pk, secretKey: new Uint8Array(secretKey)}; }; nacl.sign.keyPair.fromSeed = function(seed) { checkArrayTypes(seed); if (seed.length !== crypto_sign_SEEDBYTES) throw new Error('bad seed size'); var pk = new Uint8Array(crypto_sign_PUBLICKEYBYTES); var sk = new Uint8Array(crypto_sign_SECRETKEYBYTES); for (var i = 0; i < 32; i++) sk[i] = seed[i]; crypto_sign_keypair(pk, sk, true); return {publicKey: pk, secretKey: sk}; }; nacl.sign.publicKeyLength = crypto_sign_PUBLICKEYBYTES; nacl.sign.secretKeyLength = crypto_sign_SECRETKEYBYTES; nacl.sign.seedLength = crypto_sign_SEEDBYTES; nacl.sign.signatureLength = crypto_sign_BYTES; nacl.hash = function(msg) { checkArrayTypes(msg); var h = new Uint8Array(crypto_hash_BYTES); crypto_hash(h, msg, msg.length); return h; }; nacl.hash.hashLength = crypto_hash_BYTES; nacl.verify = function(x, y) { checkArrayTypes(x, y); // Zero length arguments are considered not equal. if (x.length === 0 || y.length === 0) return false; if (x.length !== y.length) return false; return (vn(x, 0, y, 0, x.length) === 0) ? true : false; }; nacl.setPRNG = function(fn) { randombytes = fn; }; (function() { // Initialize PRNG if environment provides CSPRNG. // If not, methods calling randombytes will throw. var crypto; if (typeof window !== 'undefined') { // Browser. if (window.crypto && window.crypto.getRandomValues) { crypto = window.crypto; // Standard } else if (window.msCrypto && window.msCrypto.getRandomValues) { crypto = window.msCrypto; // Internet Explorer 11+ } if (crypto) { nacl.setPRNG(function(x, n) { var i, v = new Uint8Array(n); crypto.getRandomValues(v); for (i = 0; i < n; i++) x[i] = v[i]; cleanup(v); }); } } else if (typeof require !== 'undefined') { // Node.js. crypto = require('crypto'); if (crypto) { nacl.setPRNG(function(x, n) { var i, v = crypto.randomBytes(n); for (i = 0; i < n; i++) x[i] = v[i]; cleanup(v); }); } } })(); })(typeof module !== 'undefined' && module.exports ? module.exports : (window.nacl = window.nacl || {})); }).call(this,require("buffer").Buffer) },{"buffer":20,"crypto":20}],302:[function(require,module,exports){ arguments[4][161][0].apply(exports,arguments) },{"dup":161}],303:[function(require,module,exports){ /* * verror.js: richer JavaScript errors */ var mod_assert = require('assert'); var mod_util = require('util'); var mod_extsprintf = require('extsprintf'); /* * Public interface */ exports.VError = VError; exports.WError = WError; exports.MultiError = MultiError; /* * Like JavaScript's built-in Error class, but supports a "cause" argument and a * printf-style message. The cause argument can be null. */ function VError(options) { var args, causedBy, ctor, tailmsg; if (options instanceof Error || typeof (options) === 'object') { args = Array.prototype.slice.call(arguments, 1); } else { args = Array.prototype.slice.call(arguments, 0); options = undefined; } tailmsg = args.length > 0 ? mod_extsprintf.sprintf.apply(null, args) : ''; this.jse_shortmsg = tailmsg; this.jse_summary = tailmsg; if (options) { causedBy = options.cause; if (!causedBy || !(options.cause instanceof Error)) causedBy = options; if (causedBy && (causedBy instanceof Error)) { this.jse_cause = causedBy; this.jse_summary += ': ' + causedBy.message; } } this.message = this.jse_summary; Error.call(this, this.jse_summary); if (Error.captureStackTrace) { ctor = options ? options.constructorOpt : undefined; ctor = ctor || arguments.callee; Error.captureStackTrace(this, ctor); } } mod_util.inherits(VError, Error); VError.prototype.name = 'VError'; VError.prototype.toString = function ve_toString() { var str = (this.hasOwnProperty('name') && this.name || this.constructor.name || this.constructor.prototype.name); if (this.message) str += ': ' + this.message; return (str); }; VError.prototype.cause = function ve_cause() { return (this.jse_cause); }; /* * Represents a collection of errors for the purpose of consumers that generally * only deal with one error. Callers can extract the individual errors * contained in this object, but may also just treat it as a normal single * error, in which case a summary message will be printed. */ function MultiError(errors) { mod_assert.ok(errors.length > 0); this.ase_errors = errors; VError.call(this, errors[0], 'first of %d error%s', errors.length, errors.length == 1 ? '' : 's'); } mod_util.inherits(MultiError, VError); /* * Like JavaScript's built-in Error class, but supports a "cause" argument which * is wrapped, not "folded in" as with VError. Accepts a printf-style message. * The cause argument can be null. */ function WError(options) { Error.call(this); var args, cause, ctor; if (typeof (options) === 'object') { args = Array.prototype.slice.call(arguments, 1); } else { args = Array.prototype.slice.call(arguments, 0); options = undefined; } if (args.length > 0) { this.message = mod_extsprintf.sprintf.apply(null, args); } else { this.message = ''; } if (options) { if (options instanceof Error) { cause = options; } else { cause = options.cause; ctor = options.constructorOpt; } } Error.captureStackTrace(this, ctor || this.constructor); if (cause) this.cause(cause); } mod_util.inherits(WError, Error); WError.prototype.name = 'WError'; WError.prototype.toString = function we_toString() { var str = (this.hasOwnProperty('name') && this.name || this.constructor.name || this.constructor.prototype.name); if (this.message) str += ': ' + this.message; if (this.we_cause && this.we_cause.message) str += '; caused by ' + this.we_cause.toString(); return (str); }; WError.prototype.cause = function we_cause(c) { if (c instanceof Error) this.we_cause = c; return (this.we_cause); }; },{"assert":16,"extsprintf":189,"util":163}],304:[function(require,module,exports){ arguments[4][165][0].apply(exports,arguments) },{"dup":165}],305:[function(require,module,exports){ const leftPad = require('left-pad') const getWeek = require('./getWeek') function getURLOfUsers (weekOffset, type, id) { return `http://${window.location.host}/meetingpointProxy/Roosters-AL%2Fdoc%2Fdagroosters%2F` + `${getWeek() + weekOffset}%2F${type}%2F${type}${leftPad(id, 5, '0')}.htm` } module.exports = getURLOfUsers module.exports.CLASS = 'c' module.exports.TEACHERS = 't' module.exports.ROOMS = 'r' module.exports.STUDENTS = 's' },{"./getWeek":307,"left-pad":238}],306:[function(require,module,exports){ const Promise = require('bluebird') // const cheerio = require('cheerio') const request = Promise.promisify(require('request')) module.exports = function () { return request(`http://${window.location.host}/getUserIndex`) .then(data => JSON.parse(data.body)) } },{"bluebird":179,"request":255}],307:[function(require,module,exports){ // copied from http://www.meetingpointmco.nl/Roosters-AL/doc/dagroosters/untisscripts.js, // were using the same code as they do to be sure that we always get the same // week number. function getWeek () { // Create a copy of this date object var target = new Date() // ISO week date weeks start on monday // so correct the day number var dayNr = (target.getDay() + 6) % 7 // ISO 8601 states that week 1 is the week // with the first thursday of that year. // Set the target date to the thursday in the target week target.setDate(target.getDate() - dayNr + 3) // Store the millisecond value of the target date var firstThursday = target.valueOf() // Set the target to the first thursday of the year // First set the target to january first target.setMonth(0, 1) // Not a thursday? Correct the date to the next thursday if (target.getDay() !== 4) { target.setMonth(0, 1 + ((4 - target.getDay()) + 7) % 7) } // The weeknumber is the number of weeks between the // first thursday of the year and the thursday in the target week return 1 + Math.ceil((firstThursday - target) / 604800000) // 604800000 = 7 * 24 * 3600 * 1000 } module.exports = getWeek },{}],308:[function(require,module,exports){ const fuzzy = require('fuzzy') const getUsers = require('./getUsers') const getURLOfUser = require('./getURLOfUser') const removeDiacritics = require('diacritics').remove const getWeek = require('./getWeek') const searchNode = document.querySelector('#search') const inputNode = searchNode.querySelector('input[type="text"]') const autocompleteNode = document.querySelector('.autocomplete') const scheduleIframe = document.querySelector('#schedule') const prevButton = document.querySelectorAll('input[type="button"]')[0] const nextButton = document.querySelectorAll('input[type="button"]')[1] const currentWeekNode = document.querySelector('.current') let selectedResult = -1 let results let matches let offset = 0 function updateWeekText () { if (offset === 0) currentWeekNode.innerHTML = `Week ${getWeek() + offset}` else currentWeekNode.innerHTML = `Week ${getWeek() + offset}` } getUsers().then(function (users) { updateWeekText() searchNode.addEventListener('keydown', function (e) { if (e.key === 'ArrowDown' || e.key === 'ArrowUp') { e.preventDefault() if (document.querySelector('.selected')) document.querySelector('.selected').classList.remove('selected') const change = e.key === 'ArrowDown' ? 1 : -1 selectedResult += change if (selectedResult < -1) selectedResult = matches.length - 1 else if (selectedResult > matches.length - 1) selectedResult = -1 if (selectedResult !== -1) autocompleteNode.children[selectedResult].classList.add('selected') } }) searchNode.addEventListener('keyup', function (e) { // console.log(e) if (!(e.key === 'Enter' || e.key === 'ArrowDown' || e.key === 'ArrowUp' || e.key === 'ArrowLeft' || e.key === 'ArrowRight')) { autocompleteNode.innerHTML = '' if (inputNode.value.trim() === '') return selectedResult = -1 results = fuzzy.filter(removeDiacritics(inputNode.value), users, { extract: function (el) { return removeDiacritics(el.value) } }).slice(0, 7) matches = results.map(function (el) { return users[el.index].value }) results.forEach(function (result) { const resultNode = document.createElement('li') resultNode.innerHTML = `${result.original.value}${result.original.other}` autocompleteNode.appendChild(resultNode) }) } }) searchNode.addEventListener('submit', submitForm) function submitForm (e) { if (results == null) return if (e) e.preventDefault() const indexInResult = selectedResult === -1 ? 0 : selectedResult const selectedUser = users[results[indexInResult].index] inputNode.value = selectedUser.value autocompleteNode.innerHTML = '' inputNode.blur() scheduleIframe.src = getURLOfUser(offset, selectedUser.type, selectedUser.index + 1) } autocompleteNode.addEventListener('click', function (e) { if (e.target.tagName === 'LI' && e.target.parentElement === autocompleteNode) { selectedResult = Array.prototype.indexOf.call(e.target.parentElement.childNodes, e.target) submitForm() } }) prevButton.addEventListener('click', function () { offset-- updateWeekText() submitForm() }) nextButton.addEventListener('click', function () { offset++ updateWeekText() submitForm() }) }) inputNode.addEventListener('click', function () { inputNode.select() }) inputNode.addEventListener('blur', function () { inputNode.selectionStart = inputNode.selectionEnd = -1 }) searchNode.addEventListener('blur', function (e) { autocompleteNode.innerHTML = '' }) },{"./getURLOfUser":305,"./getUsers":306,"./getWeek":307,"diacritics":184,"fuzzy":192}]},{},[308]);