node/lib/internal/bootstrap/node.js
Joyee Cheung 75d0a9335f
src: move more process methods initialization in bootstrap/node.js
Instead of:

- Writing methods onto the process directly in C++ during
  `SetupProcessObject()` and overwrite with argument checks later
- Or, wrapping and writing them in `internal/process/*.js`

Do:

- Move the C++ implementations in node_process.cc and mark them static
  wherever possible
- Expose the C++ methods through a new
  `internalBinding('process_methods')`
- Wrap the methods in `internal/process/*.js` in a
  side-effect-free manner and return them back to
  `internal/bootstrap/node.js`
- Centralize the write to the process object based on conditions
  in `bootstrap/node.js`

So it's easier to see what methods are attached to the process object
during bootstrap under what condition and in what order.

The eventual goal is to figure out the dependency of process methods
and the write/read access to the process object during bootstrap, group
these access properly and remove the process properties that should not
be exposed to users this way.

Also correct the NODE_PERFORMANCE_MILESTONE_BOOTSTRAP_COMPLETE milestone
which should be marked before code execution.

Refs: https://github.com/nodejs/node/issues/24961

PR-URL: https://github.com/nodejs/node/pull/25127
Reviewed-By: Anna Henningsen <anna@addaleax.net>
Reviewed-By: James M Snell <jasnell@gmail.com>
2018-12-21 16:33:09 +08:00

736 lines
23 KiB
JavaScript

// Hello, and welcome to hacking node.js!
//
// This file is invoked by node::LoadEnvironment in src/node.cc, and is
// responsible for bootstrapping the node.js core. As special caution is given
// to the performance of the startup process, many dependencies are invoked
// lazily.
//
// Before this file is run, lib/internal/bootstrap/loaders.js gets run first
// to bootstrap the internal binding and module loaders, including
// process.binding(), process._linkedBinding(), internalBinding() and
// NativeModule. And then { internalBinding, NativeModule } will be passed
// into this bootstrapper to bootstrap Node.js core.
'use strict';
// This file is compiled as if it's wrapped in a function with arguments
// passed by node::LoadEnvironment()
/* global process, bootstrappers, loaderExports, triggerFatalException */
/* global isMainThread */
const {
_setupTraceCategoryState,
_setupNextTick,
_setupPromises
} = bootstrappers;
const { internalBinding, NativeModule } = loaderExports;
const exceptionHandlerState = { captureFn: null };
let getOptionValue;
function startup() {
setupTraceCategoryState();
setupProcessObject();
// Do this good and early, since it handles errors.
setupProcessFatal();
setupGlobalVariables();
// Bootstrappers for all threads, including worker threads and main thread
const perThreadSetup = NativeModule.require('internal/process/per_thread');
// Bootstrappers for the main thread only
let mainThreadSetup;
// Bootstrappers for the worker threads only
let workerThreadSetup;
if (isMainThread) {
mainThreadSetup = NativeModule.require(
'internal/process/main_thread_only'
);
} else {
workerThreadSetup = NativeModule.require(
'internal/process/worker_thread_only'
);
}
// process.config is serialized config.gypi
process.config = JSON.parse(internalBinding('native_module').config);
const rawMethods = internalBinding('process_methods');
// Set up methods and events on the process object for the main thread
if (isMainThread) {
// This depends on process being an event emitter
mainThreadSetup.setupSignalHandlers(internalBinding);
process.abort = rawMethods.abort;
const wrapped = mainThreadSetup.wrapProcessMethods(rawMethods);
process.umask = wrapped.umask;
process.chdir = wrapped.chdir;
// TODO(joyeecheung): deprecate and remove these underscore methods
process._debugProcess = rawMethods._debugProcess;
process._debugEnd = rawMethods._debugEnd;
process._startProfilerIdleNotifier =
rawMethods._startProfilerIdleNotifier;
process._stopProfilerIdleNotifier = rawMethods._stopProfilerIdleNotifier;
}
// Set up methods on the process object for all threads
{
process.cwd = rawMethods.cwd;
process.dlopen = rawMethods.dlopen;
process.uptime = rawMethods.uptime;
// TODO(joyeecheung): either remove them or make them public
process._getActiveRequests = rawMethods._getActiveRequests;
process._getActiveHandles = rawMethods._getActiveHandles;
// TODO(joyeecheung): remove these
process.reallyExit = rawMethods.reallyExit;
process._kill = rawMethods._kill;
const wrapped = perThreadSetup.wrapProcessMethods(
rawMethods, exceptionHandlerState
);
process._rawDebug = wrapped._rawDebug;
process.hrtime = wrapped.hrtime;
process.hrtime.bigint = wrapped.hrtimeBigInt;
process.cpuUsage = wrapped.cpuUsage;
process.memoryUsage = wrapped.memoryUsage;
process.kill = wrapped.kill;
process.exit = wrapped.exit;
process.setUncaughtExceptionCaptureCallback =
wrapped.setUncaughtExceptionCaptureCallback;
process.hasUncaughtExceptionCaptureCallback =
wrapped.hasUncaughtExceptionCaptureCallback;
}
NativeModule.require('internal/process/warning').setup();
NativeModule.require('internal/process/next_tick').setup(_setupNextTick,
_setupPromises);
const credentials = internalBinding('credentials');
if (credentials.implementsPosixCredentials) {
process.getuid = credentials.getuid;
process.geteuid = credentials.geteuid;
process.getgid = credentials.getgid;
process.getegid = credentials.getegid;
process.getgroups = credentials.getgroups;
if (isMainThread) {
const wrapped = mainThreadSetup.wrapPosixCredentialSetters(credentials);
process.initgroups = wrapped.initgroups;
process.setgroups = wrapped.setgroups;
process.setegid = wrapped.setegid;
process.seteuid = wrapped.seteuid;
process.setgid = wrapped.setgid;
process.setuid = wrapped.setuid;
}
}
if (isMainThread) {
mainThreadSetup.setupStdio();
} else {
workerThreadSetup.setupStdio();
}
if (global.__coverage__)
NativeModule.require('internal/process/write-coverage').setup();
if (process.env.NODE_V8_COVERAGE) {
NativeModule.require('internal/process/coverage').setupExitHooks();
}
if (process.config.variables.v8_enable_inspector) {
NativeModule.require('internal/inspector_async_hook').setup();
}
getOptionValue = NativeModule.require('internal/options').getOptionValue;
if (getOptionValue('--help')) {
NativeModule.require('internal/print_help').print(process.stdout);
return;
}
if (getOptionValue('--completion-bash')) {
NativeModule.require('internal/bash_completion').print(process.stdout);
return;
}
if (isMainThread) {
mainThreadSetup.setupChildProcessIpcChannel();
}
const browserGlobals = !process._noBrowserGlobals;
if (browserGlobals) {
setupGlobalTimeouts();
setupGlobalConsole();
setupGlobalURL();
setupGlobalEncoding();
setupQueueMicrotask();
}
if (getOptionValue('--experimental-worker')) {
setupDOMException();
}
// On OpenBSD process.execPath will be relative unless we
// get the full path before process.execPath is used.
if (process.platform === 'openbsd') {
const { realpathSync } = NativeModule.require('fs');
process.execPath = realpathSync.native(process.execPath);
}
Object.defineProperty(process, 'argv0', {
enumerable: true,
configurable: false,
value: process.argv[0]
});
process.argv[0] = process.execPath;
// Handle `--debug*` deprecation and invalidation.
if (process._invalidDebug) {
process.emitWarning(
'`node --debug` and `node --debug-brk` are invalid. ' +
'Please use `node --inspect` or `node --inspect-brk` instead.',
'DeprecationWarning', 'DEP0062', startup, true);
process.exit(9);
} else if (process._deprecatedDebugBrk) {
process.emitWarning(
'`node --inspect --debug-brk` is deprecated. ' +
'Please use `node --inspect-brk` instead.',
'DeprecationWarning', 'DEP0062', startup, true);
}
const experimentalModules = getOptionValue('--experimental-modules');
const experimentalVMModules = getOptionValue('--experimental-vm-modules');
if (experimentalModules || experimentalVMModules) {
if (experimentalModules) {
process.emitWarning(
'The ESM module loader is experimental.',
'ExperimentalWarning', undefined);
}
NativeModule.require('internal/process/esm_loader').setup();
}
const { deprecate } = NativeModule.require('internal/util');
{
// Install legacy getters on the `util` binding for typechecking.
// TODO(addaleax): Turn into a full runtime deprecation.
const pendingDeprecation = getOptionValue('--pending-deprecation');
const utilBinding = internalBinding('util');
const types = internalBinding('types');
for (const name of [
'isArrayBuffer', 'isArrayBufferView', 'isAsyncFunction',
'isDataView', 'isDate', 'isExternal', 'isMap', 'isMapIterator',
'isNativeError', 'isPromise', 'isRegExp', 'isSet', 'isSetIterator',
'isTypedArray', 'isUint8Array', 'isAnyArrayBuffer'
]) {
utilBinding[name] = pendingDeprecation ?
deprecate(types[name],
'Accessing native typechecking bindings of Node ' +
'directly is deprecated. ' +
`Please use \`util.types.${name}\` instead.`,
'DEP0103') :
types[name];
}
}
// process.allowedNodeEnvironmentFlags
Object.defineProperty(process, 'allowedNodeEnvironmentFlags', {
get() {
const flags = perThreadSetup.buildAllowedFlags();
process.allowedNodeEnvironmentFlags = flags;
return process.allowedNodeEnvironmentFlags;
},
// If the user tries to set this to another value, override
// this completely to that value.
set(value) {
Object.defineProperty(this, 'allowedNodeEnvironmentFlags', {
value,
configurable: true,
enumerable: true,
writable: true
});
},
enumerable: true,
configurable: true
});
// process.assert
process.assert = deprecate(
perThreadSetup.assert,
'process.assert() is deprecated. Please use the `assert` module instead.',
'DEP0100');
const perf = internalBinding('performance');
const {
NODE_PERFORMANCE_MILESTONE_BOOTSTRAP_COMPLETE,
} = perf.constants;
perf.markMilestone(NODE_PERFORMANCE_MILESTONE_BOOTSTRAP_COMPLETE);
startExecution();
}
// There are various modes that Node can run in. The most common two
// are running from a script and running the REPL - but there are a few
// others like the debugger or running --eval arguments. Here we decide
// which mode we run in.
function startExecution() {
// This means we are in a Worker context, and any script execution
// will be directed by the worker module.
if (internalBinding('worker').getEnvMessagePort() !== undefined) {
NativeModule.require('internal/worker').setupChild(evalScript);
return;
}
// To allow people to extend Node in different ways, this hook allows
// one to drop a file lib/_third_party_main.js into the build
// directory which will be executed instead of Node's normal loading.
if (NativeModule.exists('_third_party_main')) {
process.nextTick(() => {
NativeModule.require('_third_party_main');
});
return;
}
// `node inspect ...` or `node debug ...`
if (process.argv[1] === 'inspect' || process.argv[1] === 'debug') {
if (process.argv[1] === 'debug') {
process.emitWarning(
'`node debug` is deprecated. Please use `node inspect` instead.',
'DeprecationWarning', 'DEP0068');
}
// Start the debugger agent.
process.nextTick(() => {
NativeModule.require('internal/deps/node-inspect/lib/_inspect').start();
});
return;
}
// `node --prof-process`
if (getOptionValue('--prof-process')) {
NativeModule.require('internal/v8_prof_processor');
return;
}
// There is user code to be run.
prepareUserCodeExecution();
executeUserCode();
}
function prepareUserCodeExecution() {
// If this is a worker in cluster mode, start up the communication
// channel. This needs to be done before any user code gets executed
// (including preload modules).
if (process.argv[1] && process.env.NODE_UNIQUE_ID) {
const cluster = NativeModule.require('cluster');
cluster._setupWorker();
// Make sure it's not accidentally inherited by child processes.
delete process.env.NODE_UNIQUE_ID;
}
// For user code, we preload modules if `-r` is passed
const preloadModules = getOptionValue('--require');
if (preloadModules) {
const {
_preloadModules
} = NativeModule.require('internal/modules/cjs/loader');
_preloadModules(preloadModules);
}
}
function executeUserCode() {
// User passed `-e` or `--eval` arguments to Node without `-i` or
// `--interactive`.
// Note that the name `forceRepl` is merely an alias of `interactive`
// in code.
if (getOptionValue('[has_eval_string]') && !getOptionValue('--interactive')) {
const {
addBuiltinLibsToObject
} = NativeModule.require('internal/modules/cjs/helpers');
addBuiltinLibsToObject(global);
evalScript('[eval]', wrapForBreakOnFirstLine(getOptionValue('--eval')));
return;
}
// If the first argument is a file name, run it as a main script
if (process.argv[1] && process.argv[1] !== '-') {
// Expand process.argv[1] into a full path.
const path = NativeModule.require('path');
process.argv[1] = path.resolve(process.argv[1]);
const CJSModule = NativeModule.require('internal/modules/cjs/loader');
// If user passed `-c` or `--check` arguments to Node, check its syntax
// instead of actually running the file.
if (getOptionValue('--check')) {
const fs = NativeModule.require('fs');
// Read the source.
const filename = CJSModule._resolveFilename(process.argv[1]);
const source = fs.readFileSync(filename, 'utf-8');
checkScriptSyntax(source, filename);
process.exit(0);
}
// Note: this actually tries to run the module as a ESM first if
// --experimental-modules is on.
// TODO(joyeecheung): can we move that logic to here? Note that this
// is an undocumented method available via `require('module').runMain`
CJSModule.runMain();
return;
}
// Create the REPL if `-i` or `--interactive` is passed, or if
// stdin is a TTY.
// Note that the name `forceRepl` is merely an alias of `interactive`
// in code.
if (process._forceRepl || NativeModule.require('tty').isatty(0)) {
const cliRepl = NativeModule.require('internal/repl');
cliRepl.createInternalRepl(process.env, (err, repl) => {
if (err) {
throw err;
}
repl.on('exit', () => {
if (repl._flushing) {
repl.pause();
return repl.once('flushHistory', () => {
process.exit();
});
}
process.exit();
});
});
// User passed '-e' or '--eval' along with `-i` or `--interactive`
if (process._eval != null) {
evalScript('[eval]', wrapForBreakOnFirstLine(process._eval));
}
return;
}
// Stdin is not a TTY, we will read it and execute it.
readAndExecuteStdin();
}
function readAndExecuteStdin() {
process.stdin.setEncoding('utf8');
let code = '';
process.stdin.on('data', (d) => {
code += d;
});
process.stdin.on('end', () => {
if (process._syntax_check_only != null) {
checkScriptSyntax(code, '[stdin]');
} else {
process._eval = code;
evalScript('[stdin]', wrapForBreakOnFirstLine(process._eval));
}
});
}
function setupTraceCategoryState() {
const { traceCategoryState } = internalBinding('trace_events');
const kCategoryAsyncHooks = 0;
let traceEventsAsyncHook;
function toggleTraceCategoryState() {
// Dynamically enable/disable the traceEventsAsyncHook
const asyncHooksEnabled = !!traceCategoryState[kCategoryAsyncHooks];
if (asyncHooksEnabled) {
// Lazy load internal/trace_events_async_hooks only if the async_hooks
// trace event category is enabled.
if (!traceEventsAsyncHook) {
traceEventsAsyncHook =
NativeModule.require('internal/trace_events_async_hooks');
}
traceEventsAsyncHook.enable();
} else if (traceEventsAsyncHook) {
traceEventsAsyncHook.disable();
}
}
toggleTraceCategoryState();
_setupTraceCategoryState(toggleTraceCategoryState);
}
function setupProcessObject() {
const EventEmitter = NativeModule.require('events');
const origProcProto = Object.getPrototypeOf(process);
Object.setPrototypeOf(origProcProto, EventEmitter.prototype);
EventEmitter.call(process);
}
function setupGlobalVariables() {
Object.defineProperty(global, Symbol.toStringTag, {
value: 'global',
writable: false,
enumerable: false,
configurable: true
});
Object.defineProperty(global, 'process', {
value: process,
enumerable: false,
writable: true,
configurable: true
});
const util = NativeModule.require('util');
function makeGetter(name) {
return util.deprecate(function() {
return this;
}, `'${name}' is deprecated, use 'global'`, 'DEP0016');
}
function makeSetter(name) {
return util.deprecate(function(value) {
Object.defineProperty(this, name, {
configurable: true,
writable: true,
enumerable: true,
value: value
});
}, `'${name}' is deprecated, use 'global'`, 'DEP0016');
}
Object.defineProperties(global, {
GLOBAL: {
configurable: true,
get: makeGetter('GLOBAL'),
set: makeSetter('GLOBAL')
},
root: {
configurable: true,
get: makeGetter('root'),
set: makeSetter('root')
}
});
// This, as side effect, removes `setupBufferJS` from the buffer binding,
// and exposes it on `internal/buffer`.
NativeModule.require('internal/buffer');
Object.defineProperty(global, 'Buffer', {
value: NativeModule.require('buffer').Buffer,
enumerable: false,
writable: true,
configurable: true
});
process.domain = null;
process._exiting = false;
}
function setupGlobalTimeouts() {
const timers = NativeModule.require('timers');
global.clearImmediate = timers.clearImmediate;
global.clearInterval = timers.clearInterval;
global.clearTimeout = timers.clearTimeout;
global.setImmediate = timers.setImmediate;
global.setInterval = timers.setInterval;
global.setTimeout = timers.setTimeout;
}
function setupGlobalConsole() {
const consoleFromVM = global.console;
const consoleFromNode =
NativeModule.require('internal/console/global');
// Override global console from the one provided by the VM
// to the one implemented by Node.js
Object.defineProperty(global, 'console', {
configurable: true,
enumerable: false,
value: consoleFromNode,
writable: true
});
// TODO(joyeecheung): can we skip this if inspector is not active?
if (process.config.variables.v8_enable_inspector) {
const inspector =
NativeModule.require('internal/console/inspector');
inspector.addInspectorApis(consoleFromNode, consoleFromVM);
// This will be exposed by `require('inspector').console` later.
inspector.consoleFromVM = consoleFromVM;
}
}
function setupGlobalURL() {
const { URL, URLSearchParams } = NativeModule.require('internal/url');
Object.defineProperties(global, {
URL: {
value: URL,
writable: true,
configurable: true,
enumerable: false
},
URLSearchParams: {
value: URLSearchParams,
writable: true,
configurable: true,
enumerable: false
}
});
}
function setupGlobalEncoding() {
const { TextEncoder, TextDecoder } = NativeModule.require('util');
Object.defineProperties(global, {
TextEncoder: {
value: TextEncoder,
writable: true,
configurable: true,
enumerable: false
},
TextDecoder: {
value: TextDecoder,
writable: true,
configurable: true,
enumerable: false
}
});
}
function setupQueueMicrotask() {
Object.defineProperty(global, 'queueMicrotask', {
get: () => {
process.emitWarning('queueMicrotask() is experimental.',
'ExperimentalWarning');
const { setupQueueMicrotask } =
NativeModule.require('internal/queue_microtask');
const queueMicrotask = setupQueueMicrotask(triggerFatalException);
Object.defineProperty(global, 'queueMicrotask', {
value: queueMicrotask,
writable: true,
enumerable: false,
configurable: true,
});
return queueMicrotask;
},
set: (v) => {
Object.defineProperty(global, 'queueMicrotask', {
value: v,
writable: true,
enumerable: false,
configurable: true,
});
},
enumerable: false,
configurable: true,
});
}
function setupDOMException() {
// Registers the constructor with C++.
const DOMException = NativeModule.require('internal/domexception');
const { registerDOMException } = internalBinding('messaging');
registerDOMException(DOMException);
}
function noop() {}
function setupProcessFatal() {
const {
executionAsyncId,
clearDefaultTriggerAsyncId,
clearAsyncIdStack,
hasAsyncIdStack,
afterHooksExist,
emitAfter
} = NativeModule.require('internal/async_hooks');
process._fatalException = (er) => {
// It's possible that defaultTriggerAsyncId was set for a constructor
// call that threw and was never cleared. So clear it now.
clearDefaultTriggerAsyncId();
if (exceptionHandlerState.captureFn !== null) {
exceptionHandlerState.captureFn(er);
} else if (!process.emit('uncaughtException', er)) {
// If someone handled it, then great. otherwise, die in C++ land
// since that means that we'll exit the process, emit the 'exit' event.
try {
if (!process._exiting) {
process._exiting = true;
process.exitCode = 1;
process.emit('exit', 1);
}
} catch {
// Nothing to be done about it at this point.
}
try {
const { kExpandStackSymbol } = NativeModule.require('internal/util');
if (typeof er[kExpandStackSymbol] === 'function')
er[kExpandStackSymbol]();
} catch {
// Nothing to be done about it at this point.
}
return false;
}
// If we handled an error, then make sure any ticks get processed
// by ensuring that the next Immediate cycle isn't empty.
NativeModule.require('timers').setImmediate(noop);
// Emit the after() hooks now that the exception has been handled.
if (afterHooksExist()) {
do {
emitAfter(executionAsyncId());
} while (hasAsyncIdStack());
// Or completely empty the id stack.
} else {
clearAsyncIdStack();
}
return true;
};
}
function wrapForBreakOnFirstLine(source) {
if (!process._breakFirstLine)
return source;
const fn = `function() {\n\n${source};\n\n}`;
return `process.binding('inspector').callAndPauseOnStart(${fn}, {})`;
}
function evalScript(name, body) {
const CJSModule = NativeModule.require('internal/modules/cjs/loader');
const path = NativeModule.require('path');
const { tryGetCwd } = NativeModule.require('internal/util');
const cwd = tryGetCwd(path);
const module = new CJSModule(name);
module.filename = path.join(cwd, name);
module.paths = CJSModule._nodeModulePaths(cwd);
const script = `global.__filename = ${JSON.stringify(name)};\n` +
'global.exports = exports;\n' +
'global.module = module;\n' +
'global.__dirname = __dirname;\n' +
'global.require = require;\n' +
'return require("vm").runInThisContext(' +
`${JSON.stringify(body)}, { filename: ` +
`${JSON.stringify(name)}, displayErrors: true });\n`;
const result = module._compile(script, `${name}-wrapper`);
if (getOptionValue('--print')) console.log(result);
// Handle any nextTicks added in the first tick of the program.
process._tickCallback();
}
function checkScriptSyntax(source, filename) {
const CJSModule = NativeModule.require('internal/modules/cjs/loader');
const vm = NativeModule.require('vm');
const {
stripShebang, stripBOM
} = NativeModule.require('internal/modules/cjs/helpers');
// Remove Shebang.
source = stripShebang(source);
// Remove BOM.
source = stripBOM(source);
// Wrap it.
source = CJSModule.wrap(source);
// Compile the script, this will throw if it fails.
new vm.Script(source, { displayErrors: true, filename });
}
startup();