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609 lines
16 KiB
609 lines
16 KiB
// Copyright Joyent, Inc. and other Node contributors.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to permit
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// persons to whom the Software is furnished to do so, subject to the
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// following conditions:
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//
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// The above copyright notice and this permission notice shall be included
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// in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
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// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
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// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
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// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
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// USE OR OTHER DEALINGS IN THE SOFTWARE.
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// Note: In 0.8 and before, crypto functions all defaulted to using
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// binary-encoded strings rather than buffers.
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exports.DEFAULT_ENCODING = 'buffer';
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try {
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var binding = process.binding('crypto');
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var SecureContext = binding.SecureContext;
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var randomBytes = binding.randomBytes;
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var pseudoRandomBytes = binding.pseudoRandomBytes;
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var getCiphers = binding.getCiphers;
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var getHashes = binding.getHashes;
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var crypto = true;
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} catch (e) {
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var crypto = false;
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}
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var stream = require('stream');
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var util = require('util');
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// This is here because many functions accepted binary strings without
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// any explicit encoding in older versions of node, and we don't want
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// to break them unnecessarily.
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function toBuf(str, encoding) {
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encoding = encoding || 'binary';
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if (typeof str === 'string') {
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if (encoding === 'buffer')
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encoding = 'binary';
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str = new Buffer(str, encoding);
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}
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return str;
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}
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var assert = require('assert');
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var StringDecoder = require('string_decoder').StringDecoder;
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function Credentials(secureProtocol, flags, context) {
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if (!(this instanceof Credentials)) {
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return new Credentials(secureProtocol, flags, context);
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}
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if (!crypto) {
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throw new Error('node.js not compiled with openssl crypto support.');
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}
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if (context) {
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this.context = context;
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} else {
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this.context = new SecureContext();
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if (secureProtocol) {
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this.context.init(secureProtocol);
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} else {
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this.context.init();
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}
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}
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if (flags) this.context.setOptions(flags);
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}
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exports.Credentials = Credentials;
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exports.createCredentials = function(options, context) {
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if (!options) options = {};
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var c = new Credentials(options.secureProtocol,
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options.secureOptions,
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context);
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if (context) return c;
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if (options.key) {
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if (options.passphrase) {
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c.context.setKey(options.key, options.passphrase);
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} else {
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c.context.setKey(options.key);
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}
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}
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if (options.cert) c.context.setCert(options.cert);
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if (options.ciphers) c.context.setCiphers(options.ciphers);
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if (options.ca) {
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if (Array.isArray(options.ca)) {
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for (var i = 0, len = options.ca.length; i < len; i++) {
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c.context.addCACert(options.ca[i]);
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}
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} else {
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c.context.addCACert(options.ca);
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}
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} else {
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c.context.addRootCerts();
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}
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if (options.crl) {
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if (Array.isArray(options.crl)) {
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for (var i = 0, len = options.crl.length; i < len; i++) {
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c.context.addCRL(options.crl[i]);
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}
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} else {
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c.context.addCRL(options.crl);
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}
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}
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if (options.sessionIdContext) {
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c.context.setSessionIdContext(options.sessionIdContext);
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}
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if (options.pfx) {
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var pfx = options.pfx;
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var passphrase = options.passphrase;
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pfx = toBuf(pfx);
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if (passphrase)
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passphrase = toBuf(passphrase);
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if (passphrase) {
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c.context.loadPKCS12(pfx, passphrase);
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} else {
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c.context.loadPKCS12(pfx);
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}
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}
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return c;
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};
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function LazyTransform(options) {
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this._options = options;
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}
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util.inherits(LazyTransform, stream.Transform);
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[
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'_readableState',
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'_writableState',
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'_transformState'
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].forEach(function(prop, i, props) {
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Object.defineProperty(LazyTransform.prototype, prop, {
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get: function() {
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stream.Transform.call(this, this._options);
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this._writableState.decodeStrings = false;
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this._writableState.defaultEncoding = 'binary';
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return this[prop];
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},
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set: function(val) {
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Object.defineProperty(this, prop, {
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value: val,
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enumerable: true,
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configurable: true,
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writable: true
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});
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},
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configurable: true,
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enumerable: true
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});
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});
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exports.createHash = exports.Hash = Hash;
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function Hash(algorithm, options) {
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if (!(this instanceof Hash))
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return new Hash(algorithm, options);
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this._binding = new binding.Hash(algorithm);
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LazyTransform.call(this, options);
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}
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util.inherits(Hash, LazyTransform);
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Hash.prototype._transform = function(chunk, encoding, callback) {
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this._binding.update(chunk, encoding);
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callback();
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};
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Hash.prototype._flush = function(callback) {
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var encoding = this._readableState.encoding || 'buffer';
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this.push(this._binding.digest(encoding), encoding);
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callback();
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};
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Hash.prototype.update = function(data, encoding) {
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding === 'buffer' && typeof data === 'string')
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encoding = 'binary';
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this._binding.update(data, encoding);
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return this;
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};
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Hash.prototype.digest = function(outputEncoding) {
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outputEncoding = outputEncoding || exports.DEFAULT_ENCODING;
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return this._binding.digest(outputEncoding);
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};
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exports.createHmac = exports.Hmac = Hmac;
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function Hmac(hmac, key, options) {
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if (!(this instanceof Hmac))
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return new Hmac(hmac, key, options);
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this._binding = new binding.Hmac();
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this._binding.init(hmac, toBuf(key));
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LazyTransform.call(this, options);
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}
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util.inherits(Hmac, LazyTransform);
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Hmac.prototype.update = Hash.prototype.update;
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Hmac.prototype.digest = Hash.prototype.digest;
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Hmac.prototype._flush = Hash.prototype._flush;
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Hmac.prototype._transform = Hash.prototype._transform;
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function getDecoder(decoder, encoding) {
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decoder = decoder || new StringDecoder(encoding);
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assert(decoder.encoding === encoding, 'Cannot change encoding');
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return decoder;
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}
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exports.createCipher = exports.Cipher = Cipher;
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function Cipher(cipher, password, options) {
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if (!(this instanceof Cipher))
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return new Cipher(cipher, password, options);
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this._binding = new binding.CipherBase(true);
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this._binding.init(cipher, toBuf(password));
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this._decoder = null;
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LazyTransform.call(this, options);
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}
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util.inherits(Cipher, LazyTransform);
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Cipher.prototype._transform = function(chunk, encoding, callback) {
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this.push(this._binding.update(chunk, encoding));
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callback();
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};
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Cipher.prototype._flush = function(callback) {
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this.push(this._binding.final());
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callback();
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};
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Cipher.prototype.update = function(data, inputEncoding, outputEncoding) {
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inputEncoding = inputEncoding || exports.DEFAULT_ENCODING;
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outputEncoding = outputEncoding || exports.DEFAULT_ENCODING;
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var ret = this._binding.update(data, inputEncoding);
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if (outputEncoding && outputEncoding !== 'buffer') {
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this._decoder = getDecoder(this._decoder, outputEncoding);
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ret = this._decoder.write(ret);
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}
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return ret;
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};
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Cipher.prototype.final = function(outputEncoding) {
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outputEncoding = outputEncoding || exports.DEFAULT_ENCODING;
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var ret = this._binding.final();
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if (outputEncoding && outputEncoding !== 'buffer') {
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this._decoder = getDecoder(this._decoder, outputEncoding);
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ret = this._decoder.end(ret);
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}
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return ret;
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};
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Cipher.prototype.setAutoPadding = function(ap) {
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this._binding.setAutoPadding(ap);
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return this;
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};
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exports.createCipheriv = exports.Cipheriv = Cipheriv;
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function Cipheriv(cipher, key, iv, options) {
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if (!(this instanceof Cipheriv))
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return new Cipheriv(cipher, key, iv, options);
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this._binding = new binding.CipherBase(true);
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this._binding.initiv(cipher, toBuf(key), toBuf(iv));
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this._decoder = null;
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LazyTransform.call(this, options);
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}
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util.inherits(Cipheriv, LazyTransform);
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Cipheriv.prototype._transform = Cipher.prototype._transform;
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Cipheriv.prototype._flush = Cipher.prototype._flush;
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Cipheriv.prototype.update = Cipher.prototype.update;
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Cipheriv.prototype.final = Cipher.prototype.final;
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Cipheriv.prototype.setAutoPadding = Cipher.prototype.setAutoPadding;
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exports.createDecipher = exports.Decipher = Decipher;
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function Decipher(cipher, password, options) {
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if (!(this instanceof Decipher))
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return new Decipher(cipher, password, options);
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this._binding = new binding.CipherBase(false);
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this._binding.init(cipher, toBuf(password));
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this._decoder = null;
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LazyTransform.call(this, options);
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}
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util.inherits(Decipher, LazyTransform);
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Decipher.prototype._transform = Cipher.prototype._transform;
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Decipher.prototype._flush = Cipher.prototype._flush;
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Decipher.prototype.update = Cipher.prototype.update;
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Decipher.prototype.final = Cipher.prototype.final;
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Decipher.prototype.finaltol = Cipher.prototype.final;
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Decipher.prototype.setAutoPadding = Cipher.prototype.setAutoPadding;
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exports.createDecipheriv = exports.Decipheriv = Decipheriv;
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function Decipheriv(cipher, key, iv, options) {
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if (!(this instanceof Decipheriv))
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return new Decipheriv(cipher, key, iv, options);
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this._binding = new binding.CipherBase(false);
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this._binding.initiv(cipher, toBuf(key), toBuf(iv));
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this._decoder = null;
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LazyTransform.call(this, options);
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}
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util.inherits(Decipheriv, LazyTransform);
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Decipheriv.prototype._transform = Cipher.prototype._transform;
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Decipheriv.prototype._flush = Cipher.prototype._flush;
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Decipheriv.prototype.update = Cipher.prototype.update;
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Decipheriv.prototype.final = Cipher.prototype.final;
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Decipheriv.prototype.finaltol = Cipher.prototype.final;
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Decipheriv.prototype.setAutoPadding = Cipher.prototype.setAutoPadding;
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exports.createSign = exports.Sign = Sign;
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function Sign(algorithm, options) {
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if (!(this instanceof Sign))
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return new Sign(algorithm, options);
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this._binding = new binding.Sign();
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this._binding.init(algorithm);
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stream.Writable.call(this, options);
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}
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util.inherits(Sign, stream.Writable);
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Sign.prototype._write = function(chunk, encoding, callback) {
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this._binding.update(chunk, encoding);
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callback();
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};
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Sign.prototype.update = Hash.prototype.update;
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Sign.prototype.sign = function(key, encoding) {
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encoding = encoding || exports.DEFAULT_ENCODING;
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var ret = this._binding.sign(toBuf(key));
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if (encoding && encoding !== 'buffer')
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ret = ret.toString(encoding);
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return ret;
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};
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exports.createVerify = exports.Verify = Verify;
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function Verify(algorithm, options) {
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if (!(this instanceof Verify))
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return new Verify(algorithm, options);
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this._binding = new binding.Verify;
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this._binding.init(algorithm);
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stream.Writable.call(this, options);
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}
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util.inherits(Verify, stream.Writable);
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Verify.prototype._write = Sign.prototype._write;
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Verify.prototype.update = Sign.prototype.update;
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Verify.prototype.verify = function(object, signature, sigEncoding) {
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sigEncoding = sigEncoding || exports.DEFAULT_ENCODING;
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return this._binding.verify(toBuf(object), toBuf(signature, sigEncoding));
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};
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exports.createDiffieHellman = exports.DiffieHellman = DiffieHellman;
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function DiffieHellman(sizeOrKey, encoding) {
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if (!(this instanceof DiffieHellman))
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return new DiffieHellman(sizeOrKey, encoding);
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if (!sizeOrKey)
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this._binding = new binding.DiffieHellman();
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else {
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encoding = encoding || exports.DEFAULT_ENCODING;
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sizeOrKey = toBuf(sizeOrKey, encoding);
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this._binding = new binding.DiffieHellman(sizeOrKey);
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}
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}
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exports.DiffieHellmanGroup =
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exports.createDiffieHellmanGroup =
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exports.getDiffieHellman = DiffieHellmanGroup;
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function DiffieHellmanGroup(name) {
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if (!(this instanceof DiffieHellmanGroup))
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return new DiffieHellmanGroup(name);
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this._binding = new binding.DiffieHellmanGroup(name);
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}
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DiffieHellmanGroup.prototype.generateKeys =
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DiffieHellman.prototype.generateKeys =
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dhGenerateKeys;
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function dhGenerateKeys(encoding) {
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var keys = this._binding.generateKeys();
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding && encoding !== 'buffer')
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keys = keys.toString(encoding);
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return keys;
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}
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DiffieHellmanGroup.prototype.computeSecret =
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DiffieHellman.prototype.computeSecret =
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dhComputeSecret;
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function dhComputeSecret(key, inEnc, outEnc) {
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inEnc = inEnc || exports.DEFAULT_ENCODING;
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outEnc = outEnc || exports.DEFAULT_ENCODING;
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var ret = this._binding.computeSecret(toBuf(key, inEnc));
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if (outEnc && outEnc !== 'buffer')
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ret = ret.toString(outEnc);
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return ret;
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}
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DiffieHellmanGroup.prototype.getPrime =
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DiffieHellman.prototype.getPrime =
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dhGetPrime;
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function dhGetPrime(encoding) {
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var prime = this._binding.getPrime();
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding && encoding !== 'buffer')
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prime = prime.toString(encoding);
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return prime;
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}
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DiffieHellmanGroup.prototype.getGenerator =
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DiffieHellman.prototype.getGenerator =
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dhGetGenerator;
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function dhGetGenerator(encoding) {
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var generator = this._binding.getGenerator();
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding && encoding !== 'buffer')
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generator = generator.toString(encoding);
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return generator;
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}
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DiffieHellmanGroup.prototype.getPublicKey =
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DiffieHellman.prototype.getPublicKey =
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dhGetPublicKey;
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function dhGetPublicKey(encoding) {
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var key = this._binding.getPublicKey();
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding && encoding !== 'buffer')
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key = key.toString(encoding);
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return key;
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}
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DiffieHellmanGroup.prototype.getPrivateKey =
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DiffieHellman.prototype.getPrivateKey =
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dhGetPrivateKey;
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function dhGetPrivateKey(encoding) {
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var key = this._binding.getPrivateKey();
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encoding = encoding || exports.DEFAULT_ENCODING;
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if (encoding && encoding !== 'buffer')
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key = key.toString(encoding);
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return key;
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}
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DiffieHellman.prototype.setPublicKey = function(key, encoding) {
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encoding = encoding || exports.DEFAULT_ENCODING;
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this._binding.setPublicKey(toBuf(key, encoding));
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return this;
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};
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DiffieHellman.prototype.setPrivateKey = function(key, encoding) {
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encoding = encoding || exports.DEFAULT_ENCODING;
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this._binding.setPrivateKey(toBuf(key, encoding));
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return this;
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};
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exports.pbkdf2 = function(password, salt, iterations, keylen, callback) {
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if (typeof callback !== 'function')
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throw new Error('No callback provided to pbkdf2');
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return pbkdf2(password, salt, iterations, keylen, callback);
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};
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exports.pbkdf2Sync = function(password, salt, iterations, keylen) {
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return pbkdf2(password, salt, iterations, keylen);
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};
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function pbkdf2(password, salt, iterations, keylen, callback) {
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password = toBuf(password);
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salt = toBuf(salt);
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if (exports.DEFAULT_ENCODING === 'buffer')
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return binding.PBKDF2(password, salt, iterations, keylen, callback);
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// at this point, we need to handle encodings.
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var encoding = exports.DEFAULT_ENCODING;
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if (callback) {
|
|
binding.PBKDF2(password, salt, iterations, keylen, function(er, ret) {
|
|
if (ret)
|
|
ret = ret.toString(encoding);
|
|
callback(er, ret);
|
|
});
|
|
} else {
|
|
var ret = binding.PBKDF2(password, salt, iterations, keylen);
|
|
return ret.toString(encoding);
|
|
}
|
|
}
|
|
|
|
|
|
|
|
exports.randomBytes = randomBytes;
|
|
exports.pseudoRandomBytes = pseudoRandomBytes;
|
|
|
|
exports.rng = randomBytes;
|
|
exports.prng = pseudoRandomBytes;
|
|
|
|
|
|
exports.getCiphers = function() {
|
|
return filterDuplicates(getCiphers.call(null, arguments));
|
|
};
|
|
|
|
|
|
exports.getHashes = function() {
|
|
return filterDuplicates(getHashes.call(null, arguments));
|
|
|
|
};
|
|
|
|
|
|
function filterDuplicates(names) {
|
|
// Drop all-caps names in favor of their lowercase aliases,
|
|
// for example, 'sha1' instead of 'SHA1'.
|
|
var ctx = {};
|
|
names.forEach(function(name) {
|
|
if (/^[0-9A-Z\-]+$/.test(name)) name = name.toLowerCase();
|
|
ctx[name] = true;
|
|
});
|
|
return Object.getOwnPropertyNames(ctx).sort();
|
|
}
|
|
|