mirror of https://gitee.com/openkylin/nodejs.git
538 lines
16 KiB
JavaScript
538 lines
16 KiB
JavaScript
// 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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'use strict';
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const {
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ArrayPrototypeIncludes,
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ArrayPrototypeIndexOf,
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ArrayPrototypePop,
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ArrayPrototypePush,
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ArrayPrototypeShift,
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ArrayPrototypeSome,
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ArrayPrototypeSplice,
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FunctionPrototypeCall,
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ObjectCreate,
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ObjectKeys,
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ObjectSetPrototypeOf,
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ObjectValues,
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StringPrototypeIndexOf,
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StringPrototypeSplit,
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StringPrototypeStartsWith,
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StringPrototypeSubstr,
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Symbol,
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} = primordials;
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const net = require('net');
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const EventEmitter = require('events');
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let debug = require('internal/util/debuglog').debuglog('http', (fn) => {
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debug = fn;
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});
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const { AsyncResource } = require('async_hooks');
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const { async_id_symbol } = require('internal/async_hooks').symbols;
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const {
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kEmptyObject,
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once,
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} = require('internal/util');
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const {
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validateNumber,
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validateOneOf,
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validateString,
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} = require('internal/validators');
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const kOnKeylog = Symbol('onkeylog');
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const kRequestOptions = Symbol('requestOptions');
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const kRequestAsyncResource = Symbol('requestAsyncResource');
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// New Agent code.
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// The largest departure from the previous implementation is that
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// an Agent instance holds connections for a variable number of host:ports.
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// Surprisingly, this is still API compatible as far as third parties are
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// concerned. The only code that really notices the difference is the
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// request object.
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// Another departure is that all code related to HTTP parsing is in
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// ClientRequest.onSocket(). The Agent is now *strictly*
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// concerned with managing a connection pool.
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class ReusedHandle {
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constructor(type, handle) {
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this.type = type;
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this.handle = handle;
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}
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}
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function freeSocketErrorListener(err) {
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const socket = this;
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debug('SOCKET ERROR on FREE socket:', err.message, err.stack);
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socket.destroy();
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socket.emit('agentRemove');
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}
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function Agent(options) {
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if (!(this instanceof Agent))
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return new Agent(options);
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FunctionPrototypeCall(EventEmitter, this);
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this.defaultPort = 80;
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this.protocol = 'http:';
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this.options = { __proto__: null, ...options };
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if (this.options.noDelay === undefined)
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this.options.noDelay = true;
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// Don't confuse net and make it think that we're connecting to a pipe
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this.options.path = null;
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this.requests = ObjectCreate(null);
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this.sockets = ObjectCreate(null);
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this.freeSockets = ObjectCreate(null);
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this.keepAliveMsecs = this.options.keepAliveMsecs || 1000;
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this.keepAlive = this.options.keepAlive || false;
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this.maxSockets = this.options.maxSockets || Agent.defaultMaxSockets;
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this.maxFreeSockets = this.options.maxFreeSockets || 256;
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this.scheduling = this.options.scheduling || 'lifo';
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this.maxTotalSockets = this.options.maxTotalSockets;
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this.totalSocketCount = 0;
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validateOneOf(this.scheduling, 'scheduling', ['fifo', 'lifo']);
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if (this.maxTotalSockets !== undefined) {
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validateNumber(this.maxTotalSockets, 'maxTotalSockets', 1);
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} else {
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this.maxTotalSockets = Infinity;
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}
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this.on('free', (socket, options) => {
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const name = this.getName(options);
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debug('agent.on(free)', name);
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// TODO(ronag): socket.destroy(err) might have been called
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// before coming here and have an 'error' scheduled. In the
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// case of socket.destroy() below this 'error' has no handler
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// and could cause unhandled exception.
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if (!socket.writable) {
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socket.destroy();
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return;
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}
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const requests = this.requests[name];
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if (requests && requests.length) {
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const req = ArrayPrototypeShift(requests);
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const reqAsyncRes = req[kRequestAsyncResource];
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if (reqAsyncRes) {
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// Run request within the original async context.
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reqAsyncRes.runInAsyncScope(() => {
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asyncResetHandle(socket);
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setRequestSocket(this, req, socket);
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});
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req[kRequestAsyncResource] = null;
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} else {
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setRequestSocket(this, req, socket);
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}
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if (requests.length === 0) {
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delete this.requests[name];
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}
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return;
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}
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// If there are no pending requests, then put it in
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// the freeSockets pool, but only if we're allowed to do so.
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const req = socket._httpMessage;
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if (!req || !req.shouldKeepAlive || !this.keepAlive) {
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socket.destroy();
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return;
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}
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const freeSockets = this.freeSockets[name] || [];
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const freeLen = freeSockets.length;
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let count = freeLen;
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if (this.sockets[name])
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count += this.sockets[name].length;
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if (this.totalSocketCount > this.maxTotalSockets ||
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count > this.maxSockets ||
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freeLen >= this.maxFreeSockets ||
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!this.keepSocketAlive(socket)) {
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socket.destroy();
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return;
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}
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this.freeSockets[name] = freeSockets;
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socket[async_id_symbol] = -1;
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socket._httpMessage = null;
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this.removeSocket(socket, options);
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socket.once('error', freeSocketErrorListener);
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ArrayPrototypePush(freeSockets, socket);
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});
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// Don't emit keylog events unless there is a listener for them.
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this.on('newListener', maybeEnableKeylog);
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}
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ObjectSetPrototypeOf(Agent.prototype, EventEmitter.prototype);
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ObjectSetPrototypeOf(Agent, EventEmitter);
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function maybeEnableKeylog(eventName) {
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if (eventName === 'keylog') {
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this.removeListener('newListener', maybeEnableKeylog);
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// Future sockets will listen on keylog at creation.
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const agent = this;
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this[kOnKeylog] = function onkeylog(keylog) {
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agent.emit('keylog', keylog, this);
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};
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// Existing sockets will start listening on keylog now.
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const sockets = ObjectValues(this.sockets);
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for (let i = 0; i < sockets.length; i++) {
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sockets[i].on('keylog', this[kOnKeylog]);
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}
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}
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}
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Agent.defaultMaxSockets = Infinity;
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Agent.prototype.createConnection = net.createConnection;
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// Get the key for a given set of request options
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Agent.prototype.getName = function getName(options = kEmptyObject) {
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let name = options.host || 'localhost';
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name += ':';
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if (options.port)
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name += options.port;
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name += ':';
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if (options.localAddress)
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name += options.localAddress;
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// Pacify parallel/test-http-agent-getname by only appending
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// the ':' when options.family is set.
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if (options.family === 4 || options.family === 6)
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name += `:${options.family}`;
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if (options.socketPath)
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name += `:${options.socketPath}`;
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return name;
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};
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Agent.prototype.addRequest = function addRequest(req, options, port/* legacy */,
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localAddress/* legacy */) {
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// Legacy API: addRequest(req, host, port, localAddress)
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if (typeof options === 'string') {
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options = {
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__proto__: null,
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host: options,
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port,
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localAddress,
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};
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}
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options = { __proto__: null, ...options, ...this.options };
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if (options.socketPath)
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options.path = options.socketPath;
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if (!options.servername && options.servername !== '')
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options.servername = calculateServerName(options, req);
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const name = this.getName(options);
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if (!this.sockets[name]) {
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this.sockets[name] = [];
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}
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const freeSockets = this.freeSockets[name];
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let socket;
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if (freeSockets) {
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while (freeSockets.length && freeSockets[0].destroyed) {
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ArrayPrototypeShift(freeSockets);
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}
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socket = this.scheduling === 'fifo' ?
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ArrayPrototypeShift(freeSockets) :
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ArrayPrototypePop(freeSockets);
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if (!freeSockets.length)
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delete this.freeSockets[name];
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}
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const freeLen = freeSockets ? freeSockets.length : 0;
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const sockLen = freeLen + this.sockets[name].length;
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if (socket) {
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asyncResetHandle(socket);
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this.reuseSocket(socket, req);
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setRequestSocket(this, req, socket);
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ArrayPrototypePush(this.sockets[name], socket);
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} else if (sockLen < this.maxSockets &&
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this.totalSocketCount < this.maxTotalSockets) {
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debug('call onSocket', sockLen, freeLen);
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// If we are under maxSockets create a new one.
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this.createSocket(req, options, (err, socket) => {
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if (err)
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req.onSocket(socket, err);
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else
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setRequestSocket(this, req, socket);
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});
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} else {
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debug('wait for socket');
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// We are over limit so we'll add it to the queue.
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if (!this.requests[name]) {
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this.requests[name] = [];
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}
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// Used to create sockets for pending requests from different origin
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req[kRequestOptions] = options;
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// Used to capture the original async context.
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req[kRequestAsyncResource] = new AsyncResource('QueuedRequest');
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ArrayPrototypePush(this.requests[name], req);
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}
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};
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Agent.prototype.createSocket = function createSocket(req, options, cb) {
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options = { __proto__: null, ...options, ...this.options };
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if (options.socketPath)
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options.path = options.socketPath;
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if (!options.servername && options.servername !== '')
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options.servername = calculateServerName(options, req);
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const name = this.getName(options);
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options._agentKey = name;
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debug('createConnection', name, options);
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options.encoding = null;
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const oncreate = once((err, s) => {
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if (err)
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return cb(err);
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if (!this.sockets[name]) {
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this.sockets[name] = [];
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}
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ArrayPrototypePush(this.sockets[name], s);
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this.totalSocketCount++;
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debug('sockets', name, this.sockets[name].length, this.totalSocketCount);
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installListeners(this, s, options);
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cb(null, s);
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});
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// When keepAlive is true, pass the related options to createConnection
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if (this.keepAlive) {
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options.keepAlive = this.keepAlive;
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options.keepAliveInitialDelay = this.keepAliveMsecs;
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}
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const newSocket = this.createConnection(options, oncreate);
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if (newSocket)
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oncreate(null, newSocket);
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};
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function calculateServerName(options, req) {
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let servername = options.host;
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const hostHeader = req.getHeader('host');
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if (hostHeader) {
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validateString(hostHeader, 'options.headers.host');
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// abc => abc
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// abc:123 => abc
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// [::1] => ::1
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// [::1]:123 => ::1
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if (StringPrototypeStartsWith(hostHeader, '[')) {
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const index = StringPrototypeIndexOf(hostHeader, ']');
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if (index === -1) {
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// Leading '[', but no ']'. Need to do something...
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servername = hostHeader;
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} else {
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servername = StringPrototypeSubstr(hostHeader, 1, index - 1);
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}
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} else {
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servername = StringPrototypeSplit(hostHeader, ':', 1)[0];
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}
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}
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// Don't implicitly set invalid (IP) servernames.
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if (net.isIP(servername))
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servername = '';
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return servername;
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}
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function installListeners(agent, s, options) {
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function onFree() {
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debug('CLIENT socket onFree');
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agent.emit('free', s, options);
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}
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s.on('free', onFree);
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function onClose(err) {
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debug('CLIENT socket onClose');
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// This is the only place where sockets get removed from the Agent.
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// If you want to remove a socket from the pool, just close it.
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// All socket errors end in a close event anyway.
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agent.totalSocketCount--;
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agent.removeSocket(s, options);
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}
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s.on('close', onClose);
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function onTimeout() {
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debug('CLIENT socket onTimeout');
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// Destroy if in free list.
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// TODO(ronag): Always destroy, even if not in free list.
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const sockets = agent.freeSockets;
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if (ArrayPrototypeSome(ObjectKeys(sockets), (name) =>
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ArrayPrototypeIncludes(sockets[name], s),
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)) {
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return s.destroy();
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}
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}
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s.on('timeout', onTimeout);
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function onRemove() {
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// We need this function for cases like HTTP 'upgrade'
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// (defined by WebSockets) where we need to remove a socket from the
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// pool because it'll be locked up indefinitely
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debug('CLIENT socket onRemove');
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agent.totalSocketCount--;
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agent.removeSocket(s, options);
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s.removeListener('close', onClose);
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s.removeListener('free', onFree);
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s.removeListener('timeout', onTimeout);
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s.removeListener('agentRemove', onRemove);
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}
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s.on('agentRemove', onRemove);
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if (agent[kOnKeylog]) {
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s.on('keylog', agent[kOnKeylog]);
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}
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}
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Agent.prototype.removeSocket = function removeSocket(s, options) {
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const name = this.getName(options);
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debug('removeSocket', name, 'writable:', s.writable);
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const sets = [this.sockets];
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// If the socket was destroyed, remove it from the free buffers too.
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if (!s.writable)
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ArrayPrototypePush(sets, this.freeSockets);
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for (let sk = 0; sk < sets.length; sk++) {
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const sockets = sets[sk];
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if (sockets[name]) {
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const index = ArrayPrototypeIndexOf(sockets[name], s);
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if (index !== -1) {
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ArrayPrototypeSplice(sockets[name], index, 1);
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// Don't leak
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if (sockets[name].length === 0)
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delete sockets[name];
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}
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}
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}
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let req;
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if (this.requests[name] && this.requests[name].length) {
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debug('removeSocket, have a request, make a socket');
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req = this.requests[name][0];
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} else {
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// TODO(rickyes): this logic will not be FIFO across origins.
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// There might be older requests in a different origin, but
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// if the origin which releases the socket has pending requests
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// that will be prioritized.
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const keys = ObjectKeys(this.requests);
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for (let i = 0; i < keys.length; i++) {
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const prop = keys[i];
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// Check whether this specific origin is already at maxSockets
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if (this.sockets[prop] && this.sockets[prop].length) break;
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debug('removeSocket, have a request with different origin,' +
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' make a socket');
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req = this.requests[prop][0];
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options = req[kRequestOptions];
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break;
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}
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}
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if (req && options) {
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req[kRequestOptions] = undefined;
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// If we have pending requests and a socket gets closed make a new one
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this.createSocket(req, options, (err, socket) => {
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if (err)
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req.onSocket(socket, err);
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else
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socket.emit('free');
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});
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}
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};
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Agent.prototype.keepSocketAlive = function keepSocketAlive(socket) {
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socket.setKeepAlive(true, this.keepAliveMsecs);
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socket.unref();
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const agentTimeout = this.options.timeout || 0;
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if (socket.timeout !== agentTimeout) {
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socket.setTimeout(agentTimeout);
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}
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return true;
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};
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Agent.prototype.reuseSocket = function reuseSocket(socket, req) {
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debug('have free socket');
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socket.removeListener('error', freeSocketErrorListener);
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req.reusedSocket = true;
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socket.ref();
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};
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Agent.prototype.destroy = function destroy() {
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const sets = [this.freeSockets, this.sockets];
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for (let s = 0; s < sets.length; s++) {
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const set = sets[s];
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const keys = ObjectKeys(set);
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for (let v = 0; v < keys.length; v++) {
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const setName = set[keys[v]];
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for (let n = 0; n < setName.length; n++) {
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setName[n].destroy();
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}
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}
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}
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};
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function setRequestSocket(agent, req, socket) {
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req.onSocket(socket);
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const agentTimeout = agent.options.timeout || 0;
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if (req.timeout === undefined || req.timeout === agentTimeout) {
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return;
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}
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socket.setTimeout(req.timeout);
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}
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function asyncResetHandle(socket) {
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// Guard against an uninitialized or user supplied Socket.
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const handle = socket._handle;
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if (handle && typeof handle.asyncReset === 'function') {
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// Assign the handle a new asyncId and run any destroy()/init() hooks.
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handle.asyncReset(new ReusedHandle(handle.getProviderType(), handle));
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socket[async_id_symbol] = handle.getAsyncId();
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}
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}
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|
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module.exports = {
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Agent,
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globalAgent: new Agent(),
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|
};
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