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'use strict';
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const common = require('../common');
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const assert = require('assert');
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const fork = require('child_process').fork;
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const net = require('net');
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if ((process.config.variables.arm_version === '6') ||
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(process.config.variables.arm_version === '7')) {
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common.skip('Too slow for armv6 and armv7 bots');
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return;
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}
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const N = 80;
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if (process.argv[2] !== 'child') {
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for (let i = 0; i < N; ++i) {
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const worker = fork(__filename, ['child']);
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worker.once('message', common.mustCall((msg, handle) => {
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assert.strictEqual(msg, 'handle');
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assert.ok(handle);
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worker.send('got');
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let recvData = '';
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handle.on('data', common.mustCall((data) => {
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recvData += data;
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}));
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handle.on('end', () => {
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assert.strictEqual(recvData, 'hello');
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worker.kill();
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});
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}));
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}
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} else {
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let socket;
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let cbcalls = 0;
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function socketConnected() {
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if (++cbcalls === 2)
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process.send('handle', socket);
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}
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// As a side-effect, listening for the message event will ref the IPC channel,
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// so the child process will stay alive as long as it has a parent process/IPC
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// channel. Once this is done, we can unref our client and server sockets, and
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// the only thing keeping this worker alive will be IPC. This is important,
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// because it means a worker with no parent will have no referenced handles,
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// thus no work to do, and will exit immediately, preventing process leaks.
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process.on('message', function() {});
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const server = net.createServer((c) => {
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process.once('message', function(msg) {
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assert.strictEqual(msg, 'got');
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c.end('hello');
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});
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socketConnected();
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}).unref();
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server.listen(0, common.localhostIPv4, () => {
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const port = server.address().port;
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socket = net.connect(port, common.localhostIPv4, socketConnected).unref();
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});
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}
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