/*!
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* ws: a node.js websocket client
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* Copyright(c) 2011 Einar Otto Stangvik <einaros@gmail.com>
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* MIT Licensed
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*/
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var util = require('util')
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, events = require('events')
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, http = require('http')
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, crypto = require('crypto')
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, url = require('url')
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, Options = require('options')
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, WebSocket = require('./WebSocket')
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, tls = require('tls')
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, url = require('url');
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/**
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* WebSocket Server implementation
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*/
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function WebSocketServer(options, callback) {
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options = new Options({
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host: '0.0.0.0',
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port: null,
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server: null,
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verifyClient: null,
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handleProtocols: null,
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path: null,
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noServer: false,
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disableHixie: false,
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clientTracking: true
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}).merge(options);
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if (!options.isDefinedAndNonNull('port') && !options.isDefinedAndNonNull('server') && !options.value.noServer) {
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throw new TypeError('`port` or a `server` must be provided');
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}
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var self = this;
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if (options.isDefinedAndNonNull('port')) {
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this._server = http.createServer(function (req, res) {
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res.writeHead(200, {'Content-Type': 'text/plain'});
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res.end('Not implemented');
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});
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this._server.listen(options.value.port, options.value.host, callback);
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this._closeServer = function() { self._server.close(); };
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}
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else if (options.value.server) {
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this._server = options.value.server;
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if (options.value.path) {
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// take note of the path, to avoid collisions when multiple websocket servers are
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// listening on the same http server
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if (this._server._webSocketPaths && options.value.server._webSocketPaths[options.value.path]) {
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throw new Error('two instances of WebSocketServer cannot listen on the same http server path');
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}
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if (typeof this._server._webSocketPaths !== 'object') {
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this._server._webSocketPaths = {};
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}
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this._server._webSocketPaths[options.value.path] = 1;
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}
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}
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if (this._server) this._server.once('listening', function() { self.emit('listening'); });
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if (typeof this._server != 'undefined') {
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this._server.on('error', function(error) {
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self.emit('error', error)
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});
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this._server.on('upgrade', function(req, socket, upgradeHead) {
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//copy upgradeHead to avoid retention of large slab buffers used in node core
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var head = new Buffer(upgradeHead.length);
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upgradeHead.copy(head);
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self.handleUpgrade(req, socket, head, function(client) {
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self.emit('connection'+req.url, client);
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self.emit('connection', client);
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});
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});
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}
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this.options = options.value;
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this.path = options.value.path;
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this.clients = [];
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}
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/**
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* Inherits from EventEmitter.
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*/
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util.inherits(WebSocketServer, events.EventEmitter);
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/**
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* Immediately shuts down the connection.
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*
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* @api public
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*/
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WebSocketServer.prototype.close = function() {
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// terminate all associated clients
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var error = null;
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try {
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for (var i = 0, l = this.clients.length; i < l; ++i) {
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this.clients[i].terminate();
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}
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}
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catch (e) {
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error = e;
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}
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// remove path descriptor, if any
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if (this.path && this._server._webSocketPaths) {
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delete this._server._webSocketPaths[this.path];
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if (Object.keys(this._server._webSocketPaths).length == 0) {
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delete this._server._webSocketPaths;
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}
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}
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// close the http server if it was internally created
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try {
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if (typeof this._closeServer !== 'undefined') {
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this._closeServer();
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}
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}
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finally {
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delete this._server;
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}
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if (error) throw error;
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}
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/**
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* Handle a HTTP Upgrade request.
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*
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* @api public
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*/
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WebSocketServer.prototype.handleUpgrade = function(req, socket, upgradeHead, cb) {
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// check for wrong path
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if (this.options.path) {
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var u = url.parse(req.url);
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if (u && u.pathname !== this.options.path) return;
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}
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if (typeof req.headers.upgrade === 'undefined' || req.headers.upgrade.toLowerCase() !== 'websocket') {
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abortConnection(socket, 400, 'Bad Request');
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return;
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}
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if (req.headers['sec-websocket-key1']) handleHixieUpgrade.apply(this, arguments);
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else handleHybiUpgrade.apply(this, arguments);
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}
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module.exports = WebSocketServer;
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/**
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* Entirely private apis,
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* which may or may not be bound to a sepcific WebSocket instance.
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*/
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function handleHybiUpgrade(req, socket, upgradeHead, cb) {
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// handle premature socket errors
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var errorHandler = function() {
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try { socket.destroy(); } catch (e) {}
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}
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socket.on('error', errorHandler);
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// verify key presence
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if (!req.headers['sec-websocket-key']) {
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abortConnection(socket, 400, 'Bad Request');
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return;
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}
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// verify version
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var version = parseInt(req.headers['sec-websocket-version']);
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if ([8, 13].indexOf(version) === -1) {
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abortConnection(socket, 400, 'Bad Request');
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return;
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}
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// verify protocol
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var protocols = req.headers['sec-websocket-protocol'];
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// verify client
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var origin = version < 13 ?
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req.headers['sec-websocket-origin'] :
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req.headers['origin'];
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// handler to call when the connection sequence completes
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var self = this;
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var completeHybiUpgrade2 = function(protocol) {
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// calc key
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var key = req.headers['sec-websocket-key'];
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var shasum = crypto.createHash('sha1');
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shasum.update(key + "258EAFA5-E914-47DA-95CA-C5AB0DC85B11");
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key = shasum.digest('base64');
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var headers = [
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'HTTP/1.1 101 Switching Protocols'
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, 'Upgrade: websocket'
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, 'Connection: Upgrade'
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, 'Sec-WebSocket-Accept: ' + key
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];
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if (typeof protocol != 'undefined') {
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headers.push('Sec-WebSocket-Protocol: ' + protocol);
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}
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// allows external modification/inspection of handshake headers
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self.emit('headers', headers);
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socket.setTimeout(0);
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socket.setNoDelay(true);
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try {
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socket.write(headers.concat('', '').join('\r\n'));
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}
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catch (e) {
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// if the upgrade write fails, shut the connection down hard
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try { socket.destroy(); } catch (e) {}
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return;
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}
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var client = new WebSocket([req, socket, upgradeHead], {
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protocolVersion: version,
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protocol: protocol
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});
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if (self.options.clientTracking) {
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self.clients.push(client);
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client.on('close', function() {
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var index = self.clients.indexOf(client);
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if (index != -1) {
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self.clients.splice(index, 1);
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}
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});
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}
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// signal upgrade complete
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socket.removeListener('error', errorHandler);
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cb(client);
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}
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// optionally call external protocol selection handler before
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// calling completeHybiUpgrade2
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var completeHybiUpgrade1 = function() {
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// choose from the sub-protocols
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if (typeof self.options.handleProtocols == 'function') {
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var protList = (protocols || "").split(/, */);
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var callbackCalled = false;
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var res = self.options.handleProtocols(protList, function(result, protocol) {
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callbackCalled = true;
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if (!result) abortConnection(socket, 404, 'Unauthorized')
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else completeHybiUpgrade2(protocol);
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});
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if (!callbackCalled) {
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// the handleProtocols handler never called our callback
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abortConnection(socket, 501, 'Could not process protocols');
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}
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return;
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} else {
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if (typeof protocols !== 'undefined') {
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completeHybiUpgrade2(protocols.split(/, */)[0]);
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}
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else {
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completeHybiUpgrade2();
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}
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}
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}
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// optionally call external client verification handler
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if (typeof this.options.verifyClient == 'function') {
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var info = {
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origin: origin,
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secure: typeof req.connection.authorized !== 'undefined' || typeof req.connection.encrypted !== 'undefined',
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req: req
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};
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if (this.options.verifyClient.length == 2) {
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this.options.verifyClient(info, function(result) {
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if (!result) abortConnection(socket, 401, 'Unauthorized')
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else completeHybiUpgrade1();
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});
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return;
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}
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else if (!this.options.verifyClient(info)) {
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abortConnection(socket, 401, 'Unauthorized');
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return;
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}
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}
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completeHybiUpgrade1();
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}
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function handleHixieUpgrade(req, socket, upgradeHead, cb) {
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// handle premature socket errors
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var errorHandler = function() {
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try { socket.destroy(); } catch (e) {}
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}
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socket.on('error', errorHandler);
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// bail if options prevent hixie
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if (this.options.disableHixie) {
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abortConnection(socket, 401, 'Hixie support disabled');
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return;
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}
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// verify key presence
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if (!req.headers['sec-websocket-key2']) {
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abortConnection(socket, 400, 'Bad Request');
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return;
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}
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var origin = req.headers['origin']
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, self = this;
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// setup handshake completion to run after client has been verified
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var onClientVerified = function() {
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var wshost;
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if (!req.headers['x-forwarded-host'])
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wshost = req.headers.host;
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else
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wshost = req.headers['x-forwarded-host'];
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var location = ((req.headers['x-forwarded-proto'] === 'https' || socket.encrypted) ? 'wss' : 'ws') + '://' + wshost + req.url
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, protocol = req.headers['sec-websocket-protocol'];
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// handshake completion code to run once nonce has been successfully retrieved
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var completeHandshake = function(nonce, rest) {
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// calculate key
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var k1 = req.headers['sec-websocket-key1']
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, k2 = req.headers['sec-websocket-key2']
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, md5 = crypto.createHash('md5');
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[k1, k2].forEach(function (k) {
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var n = parseInt(k.replace(/[^\d]/g, ''))
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, spaces = k.replace(/[^ ]/g, '').length;
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if (spaces === 0 || n % spaces !== 0){
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abortConnection(socket, 400, 'Bad Request');
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return;
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}
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n /= spaces;
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md5.update(String.fromCharCode(
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n >> 24 & 0xFF,
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n >> 16 & 0xFF,
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n >> 8 & 0xFF,
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n & 0xFF));
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});
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md5.update(nonce.toString('binary'));
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var headers = [
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'HTTP/1.1 101 Switching Protocols'
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, 'Upgrade: WebSocket'
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, 'Connection: Upgrade'
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, 'Sec-WebSocket-Location: ' + location
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];
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if (typeof protocol != 'undefined') headers.push('Sec-WebSocket-Protocol: ' + protocol);
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if (typeof origin != 'undefined') headers.push('Sec-WebSocket-Origin: ' + origin);
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socket.setTimeout(0);
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socket.setNoDelay(true);
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try {
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// merge header and hash buffer
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var headerBuffer = new Buffer(headers.concat('', '').join('\r\n'));
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var hashBuffer = new Buffer(md5.digest('binary'), 'binary');
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var handshakeBuffer = new Buffer(headerBuffer.length + hashBuffer.length);
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headerBuffer.copy(handshakeBuffer, 0);
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hashBuffer.copy(handshakeBuffer, headerBuffer.length);
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// do a single write, which - upon success - causes a new client websocket to be setup
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socket.write(handshakeBuffer, 'binary', function(err) {
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if (err) return; // do not create client if an error happens
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var client = new WebSocket([req, socket, rest], {
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protocolVersion: 'hixie-76',
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protocol: protocol
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});
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if (self.options.clientTracking) {
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self.clients.push(client);
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client.on('close', function() {
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var index = self.clients.indexOf(client);
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if (index != -1) {
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self.clients.splice(index, 1);
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}
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});
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}
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// signal upgrade complete
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socket.removeListener('error', errorHandler);
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cb(client);
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});
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}
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catch (e) {
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try { socket.destroy(); } catch (e) {}
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return;
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}
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}
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// retrieve nonce
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var nonceLength = 8;
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if (upgradeHead && upgradeHead.length >= nonceLength) {
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var nonce = upgradeHead.slice(0, nonceLength);
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var rest = upgradeHead.length > nonceLength ? upgradeHead.slice(nonceLength) : null;
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completeHandshake.call(self, nonce, rest);
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}
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else {
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// nonce not present in upgradeHead, so we must wait for enough data
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// data to arrive before continuing
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var nonce = new Buffer(nonceLength);
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upgradeHead.copy(nonce, 0);
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var received = upgradeHead.length;
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var rest = null;
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var handler = function (data) {
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var toRead = Math.min(data.length, nonceLength - received);
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if (toRead === 0) return;
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data.copy(nonce, received, 0, toRead);
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received += toRead;
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if (received == nonceLength) {
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socket.removeListener('data', handler);
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if (toRead < data.length) rest = data.slice(toRead);
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completeHandshake.call(self, nonce, rest);
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}
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}
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socket.on('data', handler);
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}
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}
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// verify client
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if (typeof this.options.verifyClient == 'function') {
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var info = {
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origin: origin,
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secure: typeof req.connection.authorized !== 'undefined' || typeof req.connection.encrypted !== 'undefined',
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req: req
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};
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if (this.options.verifyClient.length == 2) {
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var self = this;
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this.options.verifyClient(info, function(result) {
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if (!result) abortConnection(socket, 401, 'Unauthorized')
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else onClientVerified.apply(self);
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});
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return;
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}
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else if (!this.options.verifyClient(info)) {
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abortConnection(socket, 401, 'Unauthorized');
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return;
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}
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}
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// no client verification required
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onClientVerified();
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}
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function abortConnection(socket, code, name) {
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try {
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var response = [
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'HTTP/1.1 ' + code + ' ' + name,
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'Content-type: text/html'
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];
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socket.write(response.concat('', '').join('\r\n'));
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}
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catch (e) { /* ignore errors - we've aborted this connection */ }
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finally {
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// ensure that an early aborted connection is shut down completely
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try { socket.destroy(); } catch (e) {}
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}
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}
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