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2bc7841d0f
This helps to prevent issues where a failed test can keep a bound socket open long enough to cause other tests to fail with EADDRINUSE because the same port number is used. PR-URL: https://github.com/nodejs/node/pull/7045 Reviewed-By: Ben Noordhuis <info@bnoordhuis.nl> Reviewed-By: Matteo Collina <matteo.collina@gmail.com> Reviewed-By: Rod Vagg <rod@vagg.org>
94 lines
2.7 KiB
JavaScript
94 lines
2.7 KiB
JavaScript
'use strict';
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const common = require('../common');
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const assert = require('assert');
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// Here we are testing the HTTP server module's flood prevention mechanism.
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// When writeable.write returns false (ie the underlying send() indicated the
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// native buffer is full), the HTTP server cork()s the readable part of the
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// stream. This means that new requests will not be read (however request which
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// have already been read, but are awaiting processing will still be
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// processed).
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// Normally when the writable stream emits a 'drain' event, the server then
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// uncorks the readable stream, although we arent testing that part here.
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// The issue being tested exists in Node.js 0.10.20 and is resolved in 0.10.21
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// and newer.
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switch (process.argv[2]) {
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case undefined:
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return parent();
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case 'child':
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return child();
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default:
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throw new Error(`Unexpected value: ${process.argv[2]}`);
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}
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function parent() {
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const http = require('http');
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const bigResponse = Buffer.alloc(10240, 'x');
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var requests = 0;
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var connections = 0;
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var backloggedReqs = 0;
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const server = http.createServer(function(req, res) {
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requests++;
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res.setHeader('content-length', bigResponse.length);
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if (!res.write(bigResponse)) {
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if (backloggedReqs === 0) {
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// Once the native buffer fills (ie write() returns false), the flood
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// prevention should kick in.
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// This means the stream should emit no more 'data' events. However we
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// may still be asked to process more requests if they were read before
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// the flood-prevention mechanism activated.
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setImmediate(() => {
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req.socket.on('data', () => common.fail('Unexpected data received'));
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});
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}
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backloggedReqs++;
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}
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res.end();
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});
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server.on('connection', function(conn) {
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connections++;
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});
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server.listen(0, function() {
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const spawn = require('child_process').spawn;
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const args = [__filename, 'child', this.address().port];
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const child = spawn(process.execPath, args, { stdio: 'inherit' });
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child.on('close', common.mustCall(function() {
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server.close();
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}));
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server.setTimeout(200, common.mustCall(function() {
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child.kill();
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}));
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});
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process.on('exit', function() {
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assert.equal(connections, 1);
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});
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}
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function child() {
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const net = require('net');
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const port = +process.argv[3];
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const conn = net.connect({ port: port });
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var req = `GET / HTTP/1.1\r\nHost: localhost:${port}\r\nAccept: */*\r\n\r\n`;
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req = new Array(10241).join(req);
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conn.on('connect', write);
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// `drain` should fire once and only once
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conn.on('drain', common.mustCall(write));
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function write() {
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while (false !== conn.write(req, 'ascii'));
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}
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}
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