mirror of
https://github.com/denoland/deno.git
synced 2024-12-11 18:17:48 -05:00
ce75e31625
This commit changes "include_js_files!" macro from "deno_core" in a way that "dir" option doesn't cause specifiers to be rewritten to include it. Example: ``` include_js_files! { dir "js", "hello.js", } ``` The above definition required embedders to use: `import ... from "internal:<ext_name>/js/hello.js"`. But with this change, the "js" directory in which the files are stored is an implementation detail, which for embedders results in: `import ... from "internal:<ext_name>/hello.js"`. The directory the files are stored in, is an implementation detail and in some cases might result in a significant size difference for the snapshot. As an example, in "deno_node" extension, we store the source code in "polyfills" directory; which resulted in each specifier to look like "internal:deno_node/polyfills/<module_name>", but with this change it's "internal:deno_node/<module_name>". Given that "deno_node" has over 100 files, many of them having several import specifiers to the same extension, this change removes 10 characters from each import specifier.
526 lines
15 KiB
JavaScript
526 lines
15 KiB
JavaScript
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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// Copyright Joyent and Node contributors. All rights reserved. MIT license.
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import * as net from "internal:deno_node/net.ts";
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import EventEmitter from "internal:deno_node/events.ts";
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import { debuglog } from "internal:deno_node/internal/util/debuglog.ts";
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let debug = debuglog("http", (fn) => {
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debug = fn;
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});
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import { AsyncResource } from "internal:deno_node/async_hooks.ts";
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import { symbols } from "internal:deno_node/internal/async_hooks.ts";
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// deno-lint-ignore camelcase
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const { async_id_symbol } = symbols;
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import { ERR_OUT_OF_RANGE } from "internal:deno_node/internal/errors.ts";
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import { once } from "internal:deno_node/internal/util.mjs";
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import {
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validateNumber,
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validateOneOf,
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validateString,
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} from "internal:deno_node/internal/validators.mjs";
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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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// deno-lint-ignore no-this-alias
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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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export function Agent(options) {
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if (!(this instanceof Agent)) {
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return new Agent(options);
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}
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EventEmitter.call(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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// 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 = Object.create(null);
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this.sockets = Object.create(null);
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this.freeSockets = Object.create(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");
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if (this.maxTotalSockets <= 0 || Number.isNaN(this.maxTotalSockets)) {
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throw new ERR_OUT_OF_RANGE(
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"maxTotalSockets",
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"> 0",
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this.maxTotalSockets,
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);
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}
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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 = requests.shift();
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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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}
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if (
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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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) {
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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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freeSockets.push(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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Object.setPrototypeOf(Agent.prototype, EventEmitter.prototype);
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Object.setPrototypeOf(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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// deno-lint-ignore no-this-alias
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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 = {}) {
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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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}
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name += ":";
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if (options.localAddress) {
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name += options.localAddress;
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}
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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 += `:${options.family}`;
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}
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if (options.socketPath) {
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name += `:${options.socketPath}`;
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}
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return name;
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};
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Agent.prototype.addRequest = function addRequest(
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req,
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options,
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port, /* legacy */
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localAddress, /* legacy */
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) {
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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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}
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if (!options.servername && options.servername !== "") {
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options.servername = calculateServerName(options, req);
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}
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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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freeSockets.shift();
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}
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socket = this.scheduling === "fifo"
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? freeSockets.shift()
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: freeSockets.pop();
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if (!freeSockets.length) {
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delete this.freeSockets[name];
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}
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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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this.sockets[name].push(socket);
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} else if (
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sockLen < this.maxSockets &&
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this.totalSocketCount < this.maxTotalSockets
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) {
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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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});
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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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this.requests[name].push(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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}
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if (!options.servername && options.servername !== "") {
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options.servername = calculateServerName(options, req);
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}
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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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}
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if (!this.sockets[name]) {
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this.sockets[name] = [];
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}
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this.sockets[name].push(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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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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};
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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 (hostHeader.startsWith("[")) {
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const index = hostHeader.indexOf("]");
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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 = hostHeader.slice(1, index);
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}
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} else {
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servername = hostHeader.split(":", 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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}
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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 (Object.keys(sockets).some((name) => sockets[name].includes(s))) {
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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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sets.push(this.freeSockets);
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}
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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 = sockets[name].indexOf(s);
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if (index !== -1) {
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sockets[name].splice(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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}
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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 = Object.keys(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(
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"removeSocket, have a request with different origin," +
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" make a socket",
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);
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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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};
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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 = Object.keys(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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export const globalAgent = new Agent();
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export default {
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Agent,
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globalAgent,
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};
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