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process.nextTick(callback, ...args?): void
Stability: 3Legacy: Use queueMicrotask() instead.
Attributes
callback:Function
...args:any
Additional arguments to pass when invoking the callback

process.nextTick() adds callback to the "next tick queue". This queue is fully drained after the current operation on the JavaScript stack runs to completion and before the event loop is allowed to continue. It's possible to create an infinite loop if one were to recursively call process.nextTick(). See the Event Loop guide for more background.

import { nextTick } from 'node:process';

console.log('start');
nextTick(() => {
  console.log('nextTick callback');
});
console.log('scheduled');
// Output:
// start
// scheduled
// nextTick callback
const { nextTick } = require('node:process');

console.log('start');
nextTick(() => {
  console.log('nextTick callback');
});
console.log('scheduled');
// Output:
// start
// scheduled
// nextTick callback

This is important when developing APIs in order to give users the opportunity to assign event handlers after an object has been constructed but before any I/O has occurred:

import { nextTick } from 'node:process';

function MyThing(options) {
  this.setupOptions(options);

  nextTick(() => {
    this.startDoingStuff();
  });
}

const thing = new MyThing();
thing.getReadyForStuff();

// thing.startDoingStuff() gets called now, not before.
const { nextTick } = require('node:process');

function MyThing(options) {
  this.setupOptions(options);

  nextTick(() => {
    this.startDoingStuff();
  });
}

const thing = new MyThing();
thing.getReadyForStuff();

// thing.startDoingStuff() gets called now, not before.

It is very important for APIs to be either 100% synchronous or 100% asynchronous. Consider this example:

// WARNING!  DO NOT USE!  BAD UNSAFE HAZARD!
function maybeSync(arg, cb) {
  if (arg) {
    cb();
    return;
  }

  fs.stat('file', cb);
}

This API is hazardous because in the following case:

const maybeTrue = Math.random() > 0.5;

maybeSync(maybeTrue, () => {
  foo();
});

bar();

It is not clear whether foo() or bar() will be called first.

The following approach is much better:

import { nextTick } from 'node:process';

function definitelyAsync(arg, cb) {
  if (arg) {
    nextTick(cb);
    return;
  }

  fs.stat('file', cb);
}
const { nextTick } = require('node:process');

function definitelyAsync(arg, cb) {
  if (arg) {
    nextTick(cb);
    return;
  }

  fs.stat('file', cb);
}

The queueMicrotask() API is an alternative to process.nextTick() that instead of using the "next tick queue" defers execution of a function using the same microtask queue used to execute the then, catch, and finally handlers of resolved promises.

Within Node.js, every time the "next tick queue" is drained, the microtask queue is drained immediately after.

So in CJS modules process.nextTick() callbacks are always run before queueMicrotask() ones. However since ESM modules are processed already as part of the microtask queue, there queueMicrotask() callbacks are always executed before process.nextTick() ones since Node.js is already in the process of draining the microtask queue.

import { nextTick } from 'node:process';

Promise.resolve().then(() => console.log('resolve'));
queueMicrotask(() => console.log('microtask'));
nextTick(() => console.log('nextTick'));
// Output:
// resolve
// microtask
// nextTick
const { nextTick } = require('node:process');

Promise.resolve().then(() => console.log('resolve'));
queueMicrotask(() => console.log('microtask'));
nextTick(() => console.log('nextTick'));
// Output:
// nextTick
// resolve
// microtask

For most userland use cases, the queueMicrotask() API provides a portable and reliable mechanism for deferring execution that works across multiple JavaScript platform environments and should be favored over process.nextTick(). In simple scenarios, queueMicrotask() can be a drop-in replacement for process.nextTick().

console.log('start');
queueMicrotask(() => {
  console.log('microtask callback');
});
console.log('scheduled');
// Output:
// start
// scheduled
// microtask callback

One note-worthy difference between the two APIs is that process.nextTick() allows specifying additional values that will be passed as arguments to the deferred function when it is called. Achieving the same result with queueMicrotask() requires using either a closure or a bound function:

function deferred(a, b) {
  console.log('microtask', a + b);
}

console.log('start');
queueMicrotask(deferred.bind(undefined, 1, 2));
console.log('scheduled');
// Output:
// start
// scheduled
// microtask 3

There are minor differences in the way errors raised from within the next tick queue and microtask queue are handled. Errors thrown within a queued microtask callback should be handled within the queued callback when possible. If they are not, the process.on('uncaughtException') event handler can be used to capture and handle the errors.

When in doubt, unless the specific capabilities of process.nextTick() are needed, use queueMicrotask().