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890 lines
25 KiB
890 lines
25 KiB
// 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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/* eslint-disable required-modules, crypto-check */
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'use strict';
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const path = require('path');
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const fs = require('fs');
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const assert = require('assert');
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const os = require('os');
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const { exec, execSync, spawn, spawnSync } = require('child_process');
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const stream = require('stream');
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const util = require('util');
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const Timer = process.binding('timer_wrap').Timer;
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const { fixturesDir } = require('./fixtures');
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const testRoot = process.env.NODE_TEST_DIR ?
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fs.realpathSync(process.env.NODE_TEST_DIR) : path.resolve(__dirname, '..');
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const noop = () => {};
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exports.fixturesDir = fixturesDir;
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exports.tmpDirName = 'tmp';
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// PORT should match the definition in test/testpy/__init__.py.
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exports.PORT = +process.env.NODE_COMMON_PORT || 12346;
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exports.isWindows = process.platform === 'win32';
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exports.isWOW64 = exports.isWindows &&
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(process.env.PROCESSOR_ARCHITEW6432 !== undefined);
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exports.isAIX = process.platform === 'aix';
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exports.isLinuxPPCBE = (process.platform === 'linux') &&
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(process.arch === 'ppc64') &&
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(os.endianness() === 'BE');
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exports.isSunOS = process.platform === 'sunos';
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exports.isFreeBSD = process.platform === 'freebsd';
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exports.isLinux = process.platform === 'linux';
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exports.isOSX = process.platform === 'darwin';
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exports.enoughTestMem = os.totalmem() > 0x40000000; /* 1 Gb */
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const cpus = os.cpus();
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exports.enoughTestCpu = Array.isArray(cpus) &&
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(cpus.length > 1 || cpus[0].speed > 999);
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exports.rootDir = exports.isWindows ? 'c:\\' : '/';
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exports.buildType = process.config.target_defaults.default_configuration;
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// If env var is set then enable async_hook hooks for all tests.
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if (process.env.NODE_TEST_WITH_ASYNC_HOOKS) {
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const destroydIdsList = {};
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const destroyListList = {};
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const initHandles = {};
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const async_wrap = process.binding('async_wrap');
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process.on('exit', () => {
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// itterate through handles to make sure nothing crashes
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for (const k in initHandles)
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util.inspect(initHandles[k]);
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});
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const _queueDestroyAsyncId = async_wrap.queueDestroyAsyncId;
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async_wrap.queueDestroyAsyncId = function queueDestroyAsyncId(id) {
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if (destroyListList[id] !== undefined) {
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process._rawDebug(destroyListList[id]);
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process._rawDebug();
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throw new Error(`same id added to destroy list twice (${id})`);
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}
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destroyListList[id] = new Error().stack;
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_queueDestroyAsyncId(id);
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};
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require('async_hooks').createHook({
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init(id, ty, tr, r) {
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if (initHandles[id]) {
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process._rawDebug(
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`Is same resource: ${r === initHandles[id].resource}`);
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process._rawDebug(`Previous stack:\n${initHandles[id].stack}\n`);
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throw new Error(`init called twice for same id (${id})`);
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}
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initHandles[id] = { resource: r, stack: new Error().stack.substr(6) };
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},
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before() { },
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after() { },
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destroy(id) {
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if (destroydIdsList[id] !== undefined) {
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process._rawDebug(destroydIdsList[id]);
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process._rawDebug();
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throw new Error(`destroy called for same id (${id})`);
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}
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destroydIdsList[id] = new Error().stack;
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},
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}).enable();
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}
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function rimrafSync(p) {
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let st;
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try {
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st = fs.lstatSync(p);
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} catch (e) {
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if (e.code === 'ENOENT')
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return;
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}
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try {
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if (st && st.isDirectory())
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rmdirSync(p, null);
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else
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fs.unlinkSync(p);
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} catch (e) {
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if (e.code === 'ENOENT')
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return;
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if (e.code === 'EPERM')
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return rmdirSync(p, e);
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if (e.code !== 'EISDIR')
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throw e;
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rmdirSync(p, e);
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}
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}
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function rmdirSync(p, originalEr) {
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try {
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fs.rmdirSync(p);
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} catch (e) {
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if (e.code === 'ENOTDIR')
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throw originalEr;
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if (e.code === 'ENOTEMPTY' || e.code === 'EEXIST' || e.code === 'EPERM') {
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const enc = exports.isLinux ? 'buffer' : 'utf8';
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fs.readdirSync(p, enc).forEach((f) => {
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if (f instanceof Buffer) {
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const buf = Buffer.concat([Buffer.from(p), Buffer.from(path.sep), f]);
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rimrafSync(buf);
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} else {
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rimrafSync(path.join(p, f));
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}
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});
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fs.rmdirSync(p);
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}
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}
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}
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exports.refreshTmpDir = function() {
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rimrafSync(exports.tmpDir);
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fs.mkdirSync(exports.tmpDir);
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};
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if (process.env.TEST_THREAD_ID) {
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exports.PORT += process.env.TEST_THREAD_ID * 100;
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exports.tmpDirName += `.${process.env.TEST_THREAD_ID}`;
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}
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exports.tmpDir = path.join(testRoot, exports.tmpDirName);
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let opensslCli = null;
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let inFreeBSDJail = null;
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let localhostIPv4 = null;
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exports.localIPv6Hosts = ['localhost'];
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if (exports.isLinux) {
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exports.localIPv6Hosts = [
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// Debian/Ubuntu
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'ip6-localhost',
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'ip6-loopback',
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// SUSE
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'ipv6-localhost',
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'ipv6-loopback',
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// Typically universal
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'localhost',
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];
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}
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Object.defineProperty(exports, 'inFreeBSDJail', {
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get: function() {
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if (inFreeBSDJail !== null) return inFreeBSDJail;
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if (exports.isFreeBSD &&
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execSync('sysctl -n security.jail.jailed').toString() ===
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'1\n') {
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inFreeBSDJail = true;
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} else {
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inFreeBSDJail = false;
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}
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return inFreeBSDJail;
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}
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});
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Object.defineProperty(exports, 'localhostIPv4', {
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get: function() {
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if (localhostIPv4 !== null) return localhostIPv4;
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if (exports.inFreeBSDJail) {
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// Jailed network interfaces are a bit special - since we need to jump
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// through loops, as well as this being an exception case, assume the
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// user will provide this instead.
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if (process.env.LOCALHOST) {
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localhostIPv4 = process.env.LOCALHOST;
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} else {
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console.error('Looks like we\'re in a FreeBSD Jail. ' +
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'Please provide your default interface address ' +
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'as LOCALHOST or expect some tests to fail.');
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}
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}
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if (localhostIPv4 === null) localhostIPv4 = '127.0.0.1';
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return localhostIPv4;
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}
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});
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// opensslCli defined lazily to reduce overhead of spawnSync
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Object.defineProperty(exports, 'opensslCli', { get: function() {
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if (opensslCli !== null) return opensslCli;
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if (process.config.variables.node_shared_openssl) {
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// use external command
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opensslCli = 'openssl';
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} else {
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// use command built from sources included in Node.js repository
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opensslCli = path.join(path.dirname(process.execPath), 'openssl-cli');
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}
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if (exports.isWindows) opensslCli += '.exe';
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const opensslCmd = spawnSync(opensslCli, ['version']);
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if (opensslCmd.status !== 0 || opensslCmd.error !== undefined) {
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// openssl command cannot be executed
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opensslCli = false;
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}
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return opensslCli;
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}, enumerable: true });
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Object.defineProperty(exports, 'hasCrypto', {
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get: function() {
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return Boolean(process.versions.openssl);
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}
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});
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Object.defineProperty(exports, 'hasFipsCrypto', {
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get: function() {
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return exports.hasCrypto && require('crypto').fips;
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}
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});
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{
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const pipePrefix = exports.isWindows ? '\\\\.\\pipe\\' : `${exports.tmpDir}/`;
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const pipeName = `node-test.${process.pid}.sock`;
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exports.PIPE = pipePrefix + pipeName;
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}
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{
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const iFaces = os.networkInterfaces();
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const re = exports.isWindows ? /Loopback Pseudo-Interface/ : /lo/;
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exports.hasIPv6 = Object.keys(iFaces).some(function(name) {
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return re.test(name) && iFaces[name].some(function(info) {
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return info.family === 'IPv6';
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});
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});
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}
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/*
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* Check that when running a test with
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* `$node --abort-on-uncaught-exception $file child`
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* the process aborts.
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*/
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exports.childShouldThrowAndAbort = function() {
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let testCmd = '';
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if (!exports.isWindows) {
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// Do not create core files, as it can take a lot of disk space on
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// continuous testing and developers' machines
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testCmd += 'ulimit -c 0 && ';
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}
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testCmd += `"${process.argv[0]}" --abort-on-uncaught-exception `;
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testCmd += `"${process.argv[1]}" child`;
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const child = exec(testCmd);
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child.on('exit', function onExit(exitCode, signal) {
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const errMsg = 'Test should have aborted ' +
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`but instead exited with exit code ${exitCode}` +
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` and signal ${signal}`;
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assert(exports.nodeProcessAborted(exitCode, signal), errMsg);
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});
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};
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exports.ddCommand = function(filename, kilobytes) {
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if (exports.isWindows) {
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const p = path.resolve(exports.fixturesDir, 'create-file.js');
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return `"${process.argv[0]}" "${p}" "${filename}" ${kilobytes * 1024}`;
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} else {
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return `dd if=/dev/zero of="${filename}" bs=1024 count=${kilobytes}`;
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}
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};
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exports.spawnPwd = function(options) {
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if (exports.isWindows) {
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return spawn('cmd.exe', ['/d', '/c', 'cd'], options);
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} else {
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return spawn('pwd', [], options);
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}
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};
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exports.spawnSyncPwd = function(options) {
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if (exports.isWindows) {
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return spawnSync('cmd.exe', ['/d', '/c', 'cd'], options);
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} else {
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return spawnSync('pwd', [], options);
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}
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};
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exports.platformTimeout = function(ms) {
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if (process.config.target_defaults.default_configuration === 'Debug')
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ms = 2 * ms;
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if (global.__coverage__)
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ms = 4 * ms;
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if (exports.isAIX)
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return 2 * ms; // default localhost speed is slower on AIX
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if (process.arch !== 'arm')
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return ms;
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const armv = process.config.variables.arm_version;
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if (armv === '6')
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return 7 * ms; // ARMv6
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if (armv === '7')
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return 2 * ms; // ARMv7
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return ms; // ARMv8+
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};
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let knownGlobals = [
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Buffer,
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clearImmediate,
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clearInterval,
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clearTimeout,
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console,
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constructor, // Enumerable in V8 3.21.
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global,
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process,
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setImmediate,
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setInterval,
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setTimeout
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];
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if (global.gc) {
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knownGlobals.push(global.gc);
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}
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if (global.DTRACE_HTTP_SERVER_RESPONSE) {
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knownGlobals.push(DTRACE_HTTP_SERVER_RESPONSE);
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knownGlobals.push(DTRACE_HTTP_SERVER_REQUEST);
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knownGlobals.push(DTRACE_HTTP_CLIENT_RESPONSE);
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knownGlobals.push(DTRACE_HTTP_CLIENT_REQUEST);
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knownGlobals.push(DTRACE_NET_STREAM_END);
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knownGlobals.push(DTRACE_NET_SERVER_CONNECTION);
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}
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if (global.COUNTER_NET_SERVER_CONNECTION) {
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knownGlobals.push(COUNTER_NET_SERVER_CONNECTION);
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knownGlobals.push(COUNTER_NET_SERVER_CONNECTION_CLOSE);
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knownGlobals.push(COUNTER_HTTP_SERVER_REQUEST);
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knownGlobals.push(COUNTER_HTTP_SERVER_RESPONSE);
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knownGlobals.push(COUNTER_HTTP_CLIENT_REQUEST);
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knownGlobals.push(COUNTER_HTTP_CLIENT_RESPONSE);
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}
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if (global.LTTNG_HTTP_SERVER_RESPONSE) {
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knownGlobals.push(LTTNG_HTTP_SERVER_RESPONSE);
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knownGlobals.push(LTTNG_HTTP_SERVER_REQUEST);
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knownGlobals.push(LTTNG_HTTP_CLIENT_RESPONSE);
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knownGlobals.push(LTTNG_HTTP_CLIENT_REQUEST);
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knownGlobals.push(LTTNG_NET_STREAM_END);
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knownGlobals.push(LTTNG_NET_SERVER_CONNECTION);
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}
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if (global.ArrayBuffer) {
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knownGlobals.push(ArrayBuffer);
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knownGlobals.push(Int8Array);
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knownGlobals.push(Uint8Array);
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knownGlobals.push(Uint8ClampedArray);
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knownGlobals.push(Int16Array);
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knownGlobals.push(Uint16Array);
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knownGlobals.push(Int32Array);
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knownGlobals.push(Uint32Array);
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knownGlobals.push(Float32Array);
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knownGlobals.push(Float64Array);
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knownGlobals.push(DataView);
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}
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// Harmony features.
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if (global.Proxy) {
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knownGlobals.push(Proxy);
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}
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if (global.Symbol) {
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knownGlobals.push(Symbol);
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}
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if (process.env.NODE_TEST_KNOWN_GLOBALS) {
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const knownFromEnv = process.env.NODE_TEST_KNOWN_GLOBALS.split(',');
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allowGlobals(...knownFromEnv);
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}
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function allowGlobals(...whitelist) {
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knownGlobals = knownGlobals.concat(whitelist);
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}
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exports.allowGlobals = allowGlobals;
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function leakedGlobals() {
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const leaked = [];
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for (const val in global) {
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if (!knownGlobals.includes(global[val])) {
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leaked.push(val);
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}
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}
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if (global.__coverage__) {
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return leaked.filter((varname) => !/^(?:cov_|__cov)/.test(varname));
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} else {
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return leaked;
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}
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}
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exports.leakedGlobals = leakedGlobals;
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|
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// Turn this off if the test should not check for global leaks.
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exports.globalCheck = true;
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process.on('exit', function() {
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if (!exports.globalCheck) return;
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const leaked = leakedGlobals();
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if (leaked.length > 0) {
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assert.fail(`Unexpected global(s) found: ${leaked.join(', ')}`);
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}
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});
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const mustCallChecks = [];
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function runCallChecks(exitCode) {
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if (exitCode !== 0) return;
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const failed = mustCallChecks.filter(function(context) {
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if ('minimum' in context) {
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context.messageSegment = `at least ${context.minimum}`;
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return context.actual < context.minimum;
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} else {
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context.messageSegment = `exactly ${context.exact}`;
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return context.actual !== context.exact;
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}
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});
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failed.forEach(function(context) {
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console.log('Mismatched %s function calls. Expected %s, actual %d.',
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context.name,
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context.messageSegment,
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|
context.actual);
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console.log(context.stack.split('\n').slice(2).join('\n'));
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});
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if (failed.length) process.exit(1);
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}
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exports.mustCall = function(fn, exact) {
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return _mustCallInner(fn, exact, 'exact');
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};
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exports.mustCallAtLeast = function(fn, minimum) {
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return _mustCallInner(fn, minimum, 'minimum');
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};
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|
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function _mustCallInner(fn, criteria = 1, field) {
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|
if (typeof fn === 'number') {
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criteria = fn;
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|
fn = noop;
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|
} else if (fn === undefined) {
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|
fn = noop;
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}
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|
|
|
if (typeof criteria !== 'number')
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throw new TypeError(`Invalid ${field} value: ${criteria}`);
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|
|
|
const context = {
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[field]: criteria,
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|
actual: 0,
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stack: (new Error()).stack,
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name: fn.name || '<anonymous>'
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};
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|
|
|
// add the exit listener only once to avoid listener leak warnings
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|
if (mustCallChecks.length === 0) process.on('exit', runCallChecks);
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mustCallChecks.push(context);
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|
|
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return function() {
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context.actual++;
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return fn.apply(this, arguments);
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};
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|
}
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|
|
exports.hasMultiLocalhost = function hasMultiLocalhost() {
|
|
const TCP = process.binding('tcp_wrap').TCP;
|
|
const t = new TCP();
|
|
const ret = t.bind('127.0.0.2', exports.PORT);
|
|
t.close();
|
|
return ret === 0;
|
|
};
|
|
|
|
exports.fileExists = function(pathname) {
|
|
try {
|
|
fs.accessSync(pathname);
|
|
return true;
|
|
} catch (err) {
|
|
return false;
|
|
}
|
|
};
|
|
|
|
exports.canCreateSymLink = function() {
|
|
// On Windows, creating symlinks requires admin privileges.
|
|
// We'll only try to run symlink test if we have enough privileges.
|
|
// On other platforms, creating symlinks shouldn't need admin privileges
|
|
if (exports.isWindows) {
|
|
// whoami.exe needs to be the one from System32
|
|
// If unix tools are in the path, they can shadow the one we want,
|
|
// so use the full path while executing whoami
|
|
const whoamiPath = path.join(process.env['SystemRoot'],
|
|
'System32', 'whoami.exe');
|
|
|
|
let err = false;
|
|
let output = '';
|
|
|
|
try {
|
|
output = execSync(`${whoamiPath} /priv`, { timout: 1000 });
|
|
} catch (e) {
|
|
err = true;
|
|
} finally {
|
|
if (err || !output.includes('SeCreateSymbolicLinkPrivilege')) {
|
|
return false;
|
|
}
|
|
}
|
|
}
|
|
|
|
return true;
|
|
};
|
|
|
|
exports.mustNotCall = function(msg) {
|
|
return function mustNotCall() {
|
|
assert.fail(msg || 'function should not have been called');
|
|
};
|
|
};
|
|
|
|
exports.printSkipMessage = function(msg) {
|
|
console.log(`1..0 # Skipped: ${msg}`);
|
|
};
|
|
|
|
exports.skip = function(msg) {
|
|
exports.printSkipMessage(msg);
|
|
process.exit(0);
|
|
};
|
|
|
|
// A stream to push an array into a REPL
|
|
function ArrayStream() {
|
|
this.run = function(data) {
|
|
data.forEach((line) => {
|
|
this.emit('data', `${line}\n`);
|
|
});
|
|
};
|
|
}
|
|
|
|
util.inherits(ArrayStream, stream.Stream);
|
|
exports.ArrayStream = ArrayStream;
|
|
ArrayStream.prototype.readable = true;
|
|
ArrayStream.prototype.writable = true;
|
|
ArrayStream.prototype.pause = noop;
|
|
ArrayStream.prototype.resume = noop;
|
|
ArrayStream.prototype.write = noop;
|
|
|
|
// Returns true if the exit code "exitCode" and/or signal name "signal"
|
|
// represent the exit code and/or signal name of a node process that aborted,
|
|
// false otherwise.
|
|
exports.nodeProcessAborted = function nodeProcessAborted(exitCode, signal) {
|
|
// Depending on the compiler used, node will exit with either
|
|
// exit code 132 (SIGILL), 133 (SIGTRAP) or 134 (SIGABRT).
|
|
let expectedExitCodes = [132, 133, 134];
|
|
|
|
// On platforms using KSH as the default shell (like SmartOS),
|
|
// when a process aborts, KSH exits with an exit code that is
|
|
// greater than 256, and thus the exit code emitted with the 'exit'
|
|
// event is null and the signal is set to either SIGILL, SIGTRAP,
|
|
// or SIGABRT (depending on the compiler).
|
|
const expectedSignals = ['SIGILL', 'SIGTRAP', 'SIGABRT'];
|
|
|
|
// On Windows, 'aborts' are of 2 types, depending on the context:
|
|
// (i) Forced access violation, if --abort-on-uncaught-exception is on
|
|
// which corresponds to exit code 3221225477 (0xC0000005)
|
|
// (ii) Otherwise, _exit(134) which is called in place of abort() due to
|
|
// raising SIGABRT exiting with ambiguous exit code '3' by default
|
|
if (exports.isWindows)
|
|
expectedExitCodes = [0xC0000005, 134];
|
|
|
|
// When using --abort-on-uncaught-exception, V8 will use
|
|
// base::OS::Abort to terminate the process.
|
|
// Depending on the compiler used, the shell or other aspects of
|
|
// the platform used to build the node binary, this will actually
|
|
// make V8 exit by aborting or by raising a signal. In any case,
|
|
// one of them (exit code or signal) needs to be set to one of
|
|
// the expected exit codes or signals.
|
|
if (signal !== null) {
|
|
return expectedSignals.includes(signal);
|
|
} else {
|
|
return expectedExitCodes.includes(exitCode);
|
|
}
|
|
};
|
|
|
|
exports.busyLoop = function busyLoop(time) {
|
|
const startTime = Timer.now();
|
|
const stopTime = startTime + time;
|
|
while (Timer.now() < stopTime) {}
|
|
};
|
|
|
|
exports.isAlive = function isAlive(pid) {
|
|
try {
|
|
process.kill(pid, 'SIGCONT');
|
|
return true;
|
|
} catch (e) {
|
|
return false;
|
|
}
|
|
};
|
|
|
|
function expectWarning(name, expectedMessages) {
|
|
return exports.mustCall((warning) => {
|
|
assert.strictEqual(warning.name, name);
|
|
assert.ok(expectedMessages.includes(warning.message),
|
|
`unexpected error message: "${warning.message}"`);
|
|
// Remove a warning message after it is seen so that we guarantee that we
|
|
// get each message only once.
|
|
expectedMessages.splice(expectedMessages.indexOf(warning.message), 1);
|
|
}, expectedMessages.length);
|
|
}
|
|
|
|
function expectWarningByName(name, expected) {
|
|
if (typeof expected === 'string') {
|
|
expected = [expected];
|
|
}
|
|
process.on('warning', expectWarning(name, expected));
|
|
}
|
|
|
|
function expectWarningByMap(warningMap) {
|
|
const catchWarning = {};
|
|
Object.keys(warningMap).forEach((name) => {
|
|
let expected = warningMap[name];
|
|
if (typeof expected === 'string') {
|
|
expected = [expected];
|
|
}
|
|
catchWarning[name] = expectWarning(name, expected);
|
|
});
|
|
process.on('warning', (warning) => catchWarning[warning.name](warning));
|
|
}
|
|
|
|
// accepts a warning name and description or array of descriptions or a map
|
|
// of warning names to description(s)
|
|
// ensures a warning is generated for each name/description pair
|
|
exports.expectWarning = function(nameOrMap, expected) {
|
|
if (typeof nameOrMap === 'string') {
|
|
expectWarningByName(nameOrMap, expected);
|
|
} else {
|
|
expectWarningByMap(nameOrMap);
|
|
}
|
|
};
|
|
|
|
Object.defineProperty(exports, 'hasIntl', {
|
|
get: function() {
|
|
return process.binding('config').hasIntl;
|
|
}
|
|
});
|
|
|
|
Object.defineProperty(exports, 'hasSmallICU', {
|
|
get: function() {
|
|
return process.binding('config').hasSmallICU;
|
|
}
|
|
});
|
|
|
|
// Useful for testing expected internal/error objects
|
|
exports.expectsError = function expectsError(fn, settings, exact) {
|
|
if (typeof fn !== 'function') {
|
|
exact = settings;
|
|
settings = fn;
|
|
fn = undefined;
|
|
}
|
|
const innerFn = exports.mustCall(function(error) {
|
|
assert.strictEqual(error.code, settings.code);
|
|
if ('type' in settings) {
|
|
const type = settings.type;
|
|
if (type !== Error && !Error.isPrototypeOf(type)) {
|
|
throw new TypeError('`settings.type` must inherit from `Error`');
|
|
}
|
|
assert(error instanceof type,
|
|
`${error.name} is not instance of ${type.name}`);
|
|
}
|
|
if ('message' in settings) {
|
|
const message = settings.message;
|
|
if (typeof message === 'string') {
|
|
assert.strictEqual(error.message, message);
|
|
} else {
|
|
assert(message.test(error.message),
|
|
`${error.message} does not match ${message}`);
|
|
}
|
|
}
|
|
if ('name' in settings) {
|
|
assert.strictEqual(error.name, settings.name);
|
|
}
|
|
if (error.constructor.name === 'AssertionError') {
|
|
['generatedMessage', 'actual', 'expected', 'operator'].forEach((key) => {
|
|
if (key in settings) {
|
|
const actual = error[key];
|
|
const expected = settings[key];
|
|
assert.strictEqual(actual, expected,
|
|
`${key}: expected ${expected}, not ${actual}`);
|
|
}
|
|
});
|
|
}
|
|
return true;
|
|
}, exact);
|
|
if (fn) {
|
|
assert.throws(fn, innerFn);
|
|
return;
|
|
}
|
|
return innerFn;
|
|
};
|
|
|
|
exports.skipIfInspectorDisabled = function skipIfInspectorDisabled() {
|
|
if (process.config.variables.v8_enable_inspector === 0) {
|
|
exports.skip('V8 inspector is disabled');
|
|
}
|
|
};
|
|
|
|
exports.skipIf32Bits = function skipIf32Bits() {
|
|
if (process.binding('config').bits < 64) {
|
|
exports.skip('The tested feature is not available in 32bit builds');
|
|
}
|
|
};
|
|
|
|
const arrayBufferViews = [
|
|
Int8Array,
|
|
Uint8Array,
|
|
Uint8ClampedArray,
|
|
Int16Array,
|
|
Uint16Array,
|
|
Int32Array,
|
|
Uint32Array,
|
|
Float32Array,
|
|
Float64Array,
|
|
DataView
|
|
];
|
|
|
|
exports.getArrayBufferViews = function getArrayBufferViews(buf) {
|
|
const { buffer, byteOffset, byteLength } = buf;
|
|
|
|
const out = [];
|
|
for (const type of arrayBufferViews) {
|
|
const { BYTES_PER_ELEMENT = 1 } = type;
|
|
if (byteLength % BYTES_PER_ELEMENT === 0) {
|
|
out.push(new type(buffer, byteOffset, byteLength / BYTES_PER_ELEMENT));
|
|
}
|
|
}
|
|
return out;
|
|
};
|
|
|
|
// Crash the process on unhandled rejections.
|
|
exports.crashOnUnhandledRejection = function() {
|
|
process.on('unhandledRejection',
|
|
(err) => process.nextTick(() => { throw err; }));
|
|
};
|
|
|
|
exports.getTTYfd = function getTTYfd() {
|
|
const tty = require('tty');
|
|
let tty_fd = 0;
|
|
if (!tty.isatty(tty_fd)) tty_fd++;
|
|
else if (!tty.isatty(tty_fd)) tty_fd++;
|
|
else if (!tty.isatty(tty_fd)) tty_fd++;
|
|
else {
|
|
try {
|
|
tty_fd = fs.openSync('/dev/tty');
|
|
} catch (e) {
|
|
// There aren't any tty fd's available to use.
|
|
return -1;
|
|
}
|
|
}
|
|
return tty_fd;
|
|
};
|
|
|
|
// Hijack stdout and stderr
|
|
const stdWrite = {};
|
|
function hijackStdWritable(name, listener) {
|
|
const stream = process[name];
|
|
const _write = stdWrite[name] = stream.write;
|
|
|
|
stream.writeTimes = 0;
|
|
stream.write = function(data, callback) {
|
|
try {
|
|
listener(data);
|
|
} catch (e) {
|
|
process.nextTick(() => { throw e; });
|
|
}
|
|
|
|
_write.call(stream, data, callback);
|
|
stream.writeTimes++;
|
|
};
|
|
}
|
|
|
|
function restoreWritable(name) {
|
|
process[name].write = stdWrite[name];
|
|
delete process[name].writeTimes;
|
|
}
|
|
|
|
function onResolvedOrRejected(promise, callback) {
|
|
return promise.then((result) => {
|
|
callback();
|
|
return result;
|
|
}, (error) => {
|
|
callback();
|
|
throw error;
|
|
});
|
|
}
|
|
|
|
function timeoutPromise(error, timeoutMs) {
|
|
let clearCallback = null;
|
|
let done = false;
|
|
const promise = onResolvedOrRejected(new Promise((resolve, reject) => {
|
|
const timeout = setTimeout(() => reject(error), timeoutMs);
|
|
clearCallback = () => {
|
|
if (done)
|
|
return;
|
|
clearTimeout(timeout);
|
|
resolve();
|
|
};
|
|
}), () => done = true);
|
|
promise.clear = clearCallback;
|
|
return promise;
|
|
}
|
|
|
|
exports.hijackStdout = hijackStdWritable.bind(null, 'stdout');
|
|
exports.hijackStderr = hijackStdWritable.bind(null, 'stderr');
|
|
exports.restoreStdout = restoreWritable.bind(null, 'stdout');
|
|
exports.restoreStderr = restoreWritable.bind(null, 'stderr');
|
|
|
|
let fd = 2;
|
|
exports.firstInvalidFD = function firstInvalidFD() {
|
|
// Get first known bad file descriptor.
|
|
try {
|
|
while (fs.fstatSync(++fd));
|
|
} catch (e) {}
|
|
return fd;
|
|
};
|
|
|
|
exports.fires = function fires(promise, error, timeoutMs) {
|
|
if (!timeoutMs && util.isNumber(error)) {
|
|
timeoutMs = error;
|
|
error = null;
|
|
}
|
|
if (!error)
|
|
error = 'timeout';
|
|
if (!timeoutMs)
|
|
timeoutMs = 100;
|
|
const timeout = timeoutPromise(error, timeoutMs);
|
|
return Promise.race([
|
|
onResolvedOrRejected(promise, () => timeout.clear()),
|
|
timeout
|
|
]);
|
|
};
|
|
|