mirror of https://github.com/garrytan/gstack.git
246 lines
11 KiB
TypeScript
246 lines
11 KiB
TypeScript
import { describe, test, expect, afterAll } from 'bun:test';
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import * as path from 'path';
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// Load the polyfill into a fresh object (don't clobber globalThis.Bun)
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const polyfillPath = path.resolve(import.meta.dir, '../src/bun-polyfill.cjs');
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// Forward slashes so the path survives interpolation into a JS string literal
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// on Windows, which is the platform this polyfill exists for.
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const requirePath = polyfillPath.replace(/\\/g, '/');
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describe('bun-polyfill', () => {
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// We test the polyfill by requiring it in a subprocess under Node.js
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// since it's designed for Node, not Bun.
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test('Bun.sleep resolves after delay', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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const start = Date.now();
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await Bun.sleep(50);
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const elapsed = Date.now() - start;
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console.log(elapsed >= 40 ? 'OK' : 'TOO_FAST');
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('OK');
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expect(result.exitCode).toBe(0);
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});
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test('Bun.spawnSync runs a command and returns stdout', () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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const r = Bun.spawnSync(['echo', 'hello'], { stdout: 'pipe' });
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console.log(r.stdout.toString().trim());
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console.log('exit:' + r.exitCode);
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`], { stdout: 'pipe', stderr: 'pipe' });
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const lines = result.stdout.toString().trim().split('\n');
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expect(lines[0]).toBe('hello');
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expect(lines[1]).toBe('exit:0');
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});
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test('Bun.spawn launches a process with pid', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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const p = Bun.spawn(['echo', 'test'], { stdio: ['pipe', 'pipe', 'pipe'] });
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console.log(typeof p.pid === 'number' ? 'HAS_PID' : 'NO_PID');
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console.log(typeof p.kill === 'function' ? 'HAS_KILL' : 'NO_KILL');
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console.log(typeof p.unref === 'function' ? 'HAS_UNREF' : 'NO_UNREF');
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`], { stdout: 'pipe', stderr: 'pipe' });
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const lines = result.stdout.toString().trim().split('\n');
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expect(lines[0]).toBe('HAS_PID');
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expect(lines[1]).toBe('HAS_KILL');
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expect(lines[2]).toBe('HAS_UNREF');
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});
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// Bun.spawn parity: `proc.exited` is a Promise resolving to the exit code.
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// The DPAPI helper and isBrowserRunning both `await proc.exited`; without
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// it the awaits resolve immediately to `undefined` and the caller reads
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// stdout before the child has produced it — surfacing as a silent failure.
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test('Bun.spawn exposes proc.exited that resolves to the exit code', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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const p = Bun.spawn(['node', '-e', 'process.exit(0)'], { stdio: ['ignore', 'ignore', 'ignore'] });
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console.log(typeof p.exited === 'object' && typeof p.exited.then === 'function' ? 'IS_PROMISE' : 'NOT_PROMISE');
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console.log('exit:' + await p.exited);
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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const lines = result.stdout.toString().trim().split('\n');
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expect(lines[0]).toBe('IS_PROMISE');
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expect(lines[1]).toBe('exit:0');
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});
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test('Bun.spawn proc.exited reflects non-zero exit codes', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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const p = Bun.spawn(['node', '-e', 'process.exit(3)'], { stdio: ['ignore', 'ignore', 'ignore'] });
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console.log('exit:' + await p.exited);
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('exit:3');
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});
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test('Bun.spawn proc.exited resolves before reading stdout (no race)', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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// Real-world pattern: write to stdout, then exit. Awaiting proc.exited
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// before reading must guarantee the bytes are flushed.
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const p = Bun.spawn(['node', '-e', 'process.stdout.write("ready"); process.exit(0)'], {
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stdio: ['ignore', 'pipe', 'ignore']
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});
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const code = await p.exited;
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const out = await new Response(p.stdout).text();
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console.log(out + ':' + code);
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('ready:0');
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});
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// Spawn-failure case: Node emits 'error' but not 'exit' when the binary
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// is missing, so listening only for 'exit' hangs `await proc.exited`
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// forever. The lifecycle promise must resolve on either event.
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test('Bun.spawn proc.exited resolves on spawn failure (missing binary)', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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const p = Bun.spawn(['this-binary-does-not-exist-zzz-' + Date.now()], {
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stdio: ['ignore', 'pipe', 'pipe']
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});
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const code = await Promise.race([
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p.exited,
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new Promise((_, r) => setTimeout(() => r(new Error('timeout')), 3000))
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]).catch(() => 'TIMEOUT');
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console.log('exit:' + code);
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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// Anything other than 'TIMEOUT' (and ideally a non-zero number) means the
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// lifecycle promise resolved on the spawn error.
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const out = result.stdout.toString().trim();
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expect(out).not.toBe('exit:TIMEOUT');
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expect(out).toMatch(/^exit:\d+$/);
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});
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// GSTACK_SPAWN_MAX_BUFFER caps the drain so a runaway child can't OOM the
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// server. Past the cap, the pipe keeps flowing (child doesn't block) but
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// further bytes are dropped. Set a small cap, write more than that, assert
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// the captured stdout equals the cap and the child exits cleanly.
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test('Bun.spawn caps buffered output at GSTACK_SPAWN_MAX_BUFFER', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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process.env.GSTACK_SPAWN_MAX_BUFFER = '${1024}';
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require('${requirePath}');
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(async () => {
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// Child writes 10 KB; cap is 1 KB; drained output should be exactly 1 KB
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// and exit should still resolve cleanly (child not back-pressured to death).
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const p = Bun.spawn(
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['node', '-e', 'process.stdout.write("y".repeat(10 * 1024)); process.exit(0)'],
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{ stdio: ['ignore', 'pipe', 'ignore'] }
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);
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const code = await Promise.race([
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p.exited,
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new Promise((_, r) => setTimeout(() => r(new Error('timeout')), 3000))
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]).catch(() => 'TIMEOUT');
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const out = await new Response(p.stdout).text();
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console.log(out.length + ':' + code);
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})();
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('1024:0');
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});
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// Regression for the pipe-blocking case: if the child writes more than the
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// OS pipe buffer (~16-64 KB) and the polyfill doesn't drain eagerly, the
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// child blocks in write() and `exit` never fires. 1 MB is well past every
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// OS pipe buffer size. Pre-fix this test hangs forever; post-fix it returns
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// in <500ms. Bun's default per-test timeout is 5s — generous here.
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test('Bun.spawn drains large stdout so proc.exited still resolves', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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(async () => {
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const ONE_MB = 1024 * 1024;
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// Exit in the write callback, not straight after write(): on modern
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// Node a pipe write past the OS buffer is async, and process.exit()
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// right after write() truncates at ~64 KB even with a live reader.
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// The callback only fires once the full MB is flushed — which still
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// requires the parent to drain, so the regression (no eager drain →
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// child blocks → timeout) is still caught.
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const p = Bun.spawn(
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['node', '-e', 'process.stdout.write("x".repeat(' + ONE_MB + '), () => process.exit(0))'],
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{ stdio: ['ignore', 'pipe', 'ignore'] }
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);
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const code = await Promise.race([
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p.exited,
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new Promise((_, r) => setTimeout(() => r(new Error('timeout')), 10000))
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]).catch(e => 'TIMEOUT');
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const out = await new Response(p.stdout).text();
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console.log(out.length + ':' + code);
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})().catch((e) => { console.log('THREW:' + e.message); });
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('1048576:0');
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}, 15000);
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// windowsHide is the one option where Node's default is the opposite of
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// Bun's: Node shows the child's console window, Bun hides it. Dropping it
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// in translation makes every spawned child pop a window on Windows, which
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// is the platform this whole file exists for. Both shims are covered.
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test('Bun.spawn defaults windowsHide to true', () => {
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const result = Bun.spawnSync(['node', '-e', `
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const cp = require('child_process');
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const orig = cp.spawn;
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let seen;
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cp.spawn = (c, a, o) => { seen = o; return orig(c, a, o); };
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require('${requirePath}');
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Bun.spawn(['node', '-e', ''], { stdio: ['ignore', 'ignore', 'ignore'] });
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console.log('windowsHide:' + seen.windowsHide);
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('windowsHide:true');
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});
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test('Bun.spawnSync defaults windowsHide to true', () => {
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const result = Bun.spawnSync(['node', '-e', `
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const cp = require('child_process');
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const orig = cp.spawnSync;
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let seen;
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cp.spawnSync = (c, a, o) => { seen = o; return orig(c, a, o); };
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require('${requirePath}');
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Bun.spawnSync(['node', '-e', '']);
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console.log('windowsHide:' + seen.windowsHide);
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('windowsHide:true');
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});
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test('an explicit windowsHide:false is honored', () => {
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const result = Bun.spawnSync(['node', '-e', `
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const cp = require('child_process');
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const orig = cp.spawn;
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let seen;
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cp.spawn = (c, a, o) => { seen = o; return orig(c, a, o); };
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require('${requirePath}');
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Bun.spawn(['node', '-e', ''], { stdio: ['ignore', 'ignore', 'ignore'], windowsHide: false });
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console.log('windowsHide:' + seen.windowsHide);
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`], { stdout: 'pipe', stderr: 'pipe' });
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expect(result.stdout.toString().trim()).toBe('windowsHide:false');
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});
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test('Bun.serve creates an HTTP server that responds', async () => {
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const result = Bun.spawnSync(['node', '-e', `
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require('${requirePath}');
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const server = Bun.serve({
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port: 0, // Note: polyfill uses port directly, so we pick one
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hostname: '127.0.0.1',
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fetch(req) {
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return new Response(JSON.stringify({ ok: true }), {
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headers: { 'Content-Type': 'application/json' },
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});
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},
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});
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// The polyfill doesn't support port 0, so we test the object shape
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console.log(typeof server.stop === 'function' ? 'HAS_STOP' : 'NO_STOP');
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console.log(typeof server.port === 'number' ? 'HAS_PORT' : 'NO_PORT');
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server.stop();
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`], { stdout: 'pipe', stderr: 'pipe' });
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const lines = result.stdout.toString().trim().split('\n');
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expect(lines[0]).toBe('HAS_STOP');
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expect(lines[1]).toBe('HAS_PORT');
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});
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});
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