The per-chunk timeout exists so a bad chunk fails loudly 'rather than silently burn the job's wall-clock budget until the CI runner cancels the whole job' (run-tests.cjs:633-637). The control flow defeated that: after a timeout kill the loop fell through to the next chunk. Since the timeout (600000ms) is half the 20m job cap and a healthy Windows full pass is ~11m42s, continuing after a timeout can essentially never finish. Observed on run 29749380190 (windows shard 2/3): chunk 1/5 was killed at exactly 600s, the loop pressed on through chunks 2-4, and the job was cancelled mid-chunk-5 at the 20m wall. The failure surfaced as '##[error]The operation was canceled.' — the timeout diagnostic ended up ~38,000 log lines from the end and 'gh run view --log-failed' returned nothing, making the real cause very hard to find. Abort the remaining chunks on a timeout so the diagnostic survives as the visible failure. Ordinary test failures still run every chunk, so the operator keeps seeing all failures in one pass. Fixes #2455 Co-authored-by: Claude Opus 4.8 <noreply@anthropic.com>
1865 lines
81 KiB
JavaScript
1865 lines
81 KiB
JavaScript
// allow-test-rule: run-tests.cjs is a CLI test harness whose only IR is its
|
|
// stable stderr line `run-tests: suite="X" files=N: name1 name2 ...` plus its
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// exit code. No typed IR is exposable from a shell script; the printed line
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// IS the contract this test pins. See docs/TESTING-SUITES.md and issue #3597.
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//
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// Tests for scripts/run-tests.cjs --suite filtering (issue #3597).
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//
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// Drives the harness through its subprocess seam — the same seam CI uses —
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// rather than importing internals. Each test seeds a temporary directory
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// with mock `.test.cjs` files (each one a trivial node:test no-op) and
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// runs the harness against it via GSD_TEST_DIR.
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'use strict';
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const { describe, test, beforeEach, afterEach } = require('node:test');
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const assert = require('node:assert/strict');
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const { spawnSync } = require('child_process');
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const fs = require('fs');
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const path = require('path');
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const { createTempDir, cleanup } = require('./helpers.cjs');
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const HARNESS = path.join(__dirname, '..', 'scripts', 'run-tests.cjs');
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// Minimal valid node:test file. Each fixture file passes when executed.
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const PASS_BODY = `'use strict';
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const { test } = require('node:test');
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test('noop', () => {});
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`;
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function seed(dir, names) {
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for (const name of names) {
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const full = path.join(dir, name);
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fs.mkdirSync(path.dirname(full), { recursive: true });
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fs.writeFileSync(full, PASS_BODY, 'utf8');
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}
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}
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function runHarness(testDir, args = [], extraEnv = {}) {
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// Clear node:test parent-context env so the harness's child `node --test`
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// doesn't refuse to run with "recursive run() skipping running files".
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const env = { ...process.env, GSD_TEST_DIR: testDir, ...extraEnv };
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delete env.NODE_TEST_CONTEXT;
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return spawnSync(process.execPath, [HARNESS, ...args], {
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cwd: path.join(__dirname, '..'),
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env,
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encoding: 'utf8',
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});
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}
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describe('run-tests.cjs harness (issue #3597)', () => {
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let tmpDir;
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beforeEach(() => {
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tmpDir = createTempDir('gsd-3597-harness-');
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});
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afterEach(() => {
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cleanup(tmpDir);
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});
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describe('argument parsing', () => {
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test('unknown suite name exits non-zero with valid-suites hint', () => {
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seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['--suite', 'bogus']);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /unknown suite/i);
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assert.match(r.stderr, /unit/);
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assert.match(r.stderr, /security/);
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});
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test('missing --suite value exits non-zero', () => {
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seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['--suite']);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /requires a value/i);
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});
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test('duplicate --suite flag is rejected', () => {
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seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['--suite', 'unit', '--suite', 'security']);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /duplicate/i);
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});
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test('unknown positional argument is rejected', () => {
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seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['unit']);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /unknown argument/i);
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});
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|
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|
test('--suite=value syntax is accepted', () => {
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seed(tmpDir, ['a.test.cjs', 'b.security.test.cjs']);
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const r = runHarness(tmpDir, ['--suite=security']);
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assert.strictEqual(r.status, 0, `stderr: ${r.stderr}\nstdout: ${r.stdout}`);
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});
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|
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|
test('missing --files value exits non-zero', () => {
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seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['--files']);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /--files requires a value/i);
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|
});
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|
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|
test('duplicate --files flag is rejected', () => {
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|
seed(tmpDir, ['a.test.cjs']);
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const r = runHarness(tmpDir, ['--files', 'a.test.cjs', '--files', 'a.test.cjs']);
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assert.notStrictEqual(r.status, 0);
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|
assert.match(r.stderr, /duplicate --files/i);
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});
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|
test('--files and --files-from cannot be combined', () => {
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|
seed(tmpDir, ['a.test.cjs']);
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const listPath = path.join(tmpDir, 'selected-tests.txt');
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fs.writeFileSync(listPath, 'a.test.cjs\n', 'utf8');
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const r = runHarness(tmpDir, ['--files', 'a.test.cjs', '--files-from', listPath]);
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assert.notStrictEqual(r.status, 0);
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assert.match(r.stderr, /cannot be combined/i);
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});
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});
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|
describe('suite filtering', () => {
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|
test('no flag runs ALL test files (backcompat)', () => {
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|
seed(tmpDir, [
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'a.test.cjs',
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'b.security.test.cjs',
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|
'c.integration.test.cjs',
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]);
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const r = runHarness(tmpDir);
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assert.strictEqual(r.status, 0);
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// node:test TAP output mentions each file path.
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assert.ok(r.stderr.includes('a.test.cjs'), 'expected a.test.cjs in output');
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|
assert.ok(
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r.stderr.includes('b.security.test.cjs'),
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'expected b.security.test.cjs in output',
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);
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|
assert.ok(
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r.stderr.includes('c.integration.test.cjs'),
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'expected c.integration.test.cjs in output',
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);
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});
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|
test('--suite all is equivalent to no flag', () => {
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seed(tmpDir, ['a.test.cjs', 'b.security.test.cjs']);
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const r = runHarness(tmpDir, ['--suite', 'all']);
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assert.strictEqual(r.status, 0);
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assert.ok(r.stderr.includes('a.test.cjs'));
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assert.ok(r.stderr.includes('b.security.test.cjs'));
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|
});
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|
test('--suite unit excludes marked suites', () => {
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|
seed(tmpDir, [
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'a.test.cjs',
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'b.security.test.cjs',
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'c.integration.test.cjs',
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'd.install.test.cjs',
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'e.slow.test.cjs',
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]);
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const r = runHarness(tmpDir, ['--suite', 'unit']);
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assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
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assert.ok(r.stderr.includes('a.test.cjs'));
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assert.ok(!r.stderr.includes('b.security.test.cjs'));
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assert.ok(!r.stderr.includes('c.integration.test.cjs'));
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assert.ok(!r.stderr.includes('d.install.test.cjs'));
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assert.ok(!r.stderr.includes('e.slow.test.cjs'));
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});
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test('--suite security selects only *.security.test.cjs', () => {
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|
seed(tmpDir, [
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'a.test.cjs',
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'b.security.test.cjs',
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'c.integration.test.cjs',
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]);
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const r = runHarness(tmpDir, ['--suite', 'security']);
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assert.strictEqual(r.status, 0);
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assert.ok(r.stderr.includes('b.security.test.cjs'));
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assert.ok(!r.stderr.includes('a.test.cjs'));
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assert.ok(!r.stderr.includes('c.integration.test.cjs'));
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});
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test('--suite integration selects only *.integration.test.cjs', () => {
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|
seed(tmpDir, ['a.test.cjs', 'b.integration.test.cjs']);
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const r = runHarness(tmpDir, ['--suite', 'integration']);
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assert.strictEqual(r.status, 0);
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assert.ok(r.stderr.includes('b.integration.test.cjs'));
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assert.ok(!r.stderr.includes('a.test.cjs'));
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|
});
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|
test('--suite install selects only *.install.test.cjs', () => {
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|
seed(tmpDir, ['a.test.cjs', 'b.install.test.cjs']);
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|
const r = runHarness(tmpDir, ['--suite', 'install']);
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|
assert.strictEqual(r.status, 0);
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|
assert.ok(r.stderr.includes('b.install.test.cjs'));
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|
});
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|
test('--suite slow selects only *.slow.test.cjs', () => {
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|
seed(tmpDir, ['a.test.cjs', 'b.slow.test.cjs']);
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const r = runHarness(tmpDir, ['--suite', 'slow']);
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|
assert.strictEqual(r.status, 0);
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assert.ok(r.stderr.includes('b.slow.test.cjs'));
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|
});
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|
});
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|
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|
describe('empty-suite behavior', () => {
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|
test('--suite security with zero matching files exits non-zero with an error', () => {
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|
seed(tmpDir, ['a.test.cjs']);
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|
const r = runHarness(tmpDir, ['--suite', 'security']);
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|
assert.notStrictEqual(r.status, 0);
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|
assert.match(r.stderr, /0 test files selected/i);
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|
});
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|
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|
test('GSD_ALLOW_EMPTY_SUITE=1 downgrades empty suite to a warning and exits 0', () => {
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|
seed(tmpDir, ['a.test.cjs']);
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|
const r = runHarness(tmpDir, ['--suite', 'security'], { GSD_ALLOW_EMPTY_SUITE: '1' });
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|
assert.strictEqual(r.status, 0);
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|
assert.match(r.stderr, /WARNING.*0 test files selected/i);
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|
});
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|
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|
test('completely empty test dir still exits non-zero (preserves prior behavior)', () => {
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|
const r = runHarness(tmpDir);
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|
assert.notStrictEqual(r.status, 0);
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|
assert.match(r.stderr, /no test files/i);
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|
});
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|
});
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|
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|
describe('explicit file selection', () => {
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|
test('--files runs only the named tests', () => {
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|
seed(tmpDir, ['a.test.cjs', 'b.security.test.cjs', 'c.test.cjs']);
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|
const r = runHarness(tmpDir, ['--files', 'a.test.cjs tests/c.test.cjs']);
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|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
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|
assert.ok(r.stderr.includes('a.test.cjs'));
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|
assert.ok(r.stderr.includes('c.test.cjs'));
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|
assert.ok(!r.stderr.includes('b.security.test.cjs'));
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|
});
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|
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|
test('--files-from runs tests listed in a file', () => {
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|
seed(tmpDir, ['a.test.cjs', 'b.security.test.cjs', 'c.test.cjs']);
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|
const listPath = path.join(tmpDir, 'selected-tests.txt');
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|
fs.writeFileSync(listPath, 'a.test.cjs\nb.security.test.cjs\n', 'utf8');
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|
const r = runHarness(tmpDir, ['--files-from', listPath]);
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|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
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|
assert.ok(r.stderr.includes('a.test.cjs'));
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|
assert.ok(r.stderr.includes('b.security.test.cjs'));
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|
assert.ok(!r.stderr.includes('c.test.cjs'));
|
|
});
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|
|
|
test('missing explicit test file exits non-zero', () => {
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|
seed(tmpDir, ['a.test.cjs']);
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|
const r = runHarness(tmpDir, ['--files', 'a.test.cjs missing.test.cjs']);
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|
assert.notStrictEqual(r.status, 0);
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|
assert.match(r.stderr, /requested test file\(s\) not found: missing\.test\.cjs/i);
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|
});
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|
});
|
|
|
|
describe('subdir file matching (findings #1 and #9)', () => {
|
|
test('bare basename resolves to its single subdir file', () => {
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|
seed(tmpDir, ['sub/001-foo.test.cjs', 'b.test.cjs']);
|
|
const r = runHarness(tmpDir, ['--files', '001-foo.test.cjs']);
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|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.ok(r.stderr.includes('001-foo.test.cjs'));
|
|
assert.ok(!r.stderr.includes('b.test.cjs'));
|
|
});
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|
|
|
test('full subdir relpath matches exactly', () => {
|
|
seed(tmpDir, ['sub/001-foo.test.cjs', 'b.test.cjs']);
|
|
const r = runHarness(tmpDir, ['--files', 'sub/001-foo.test.cjs']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.ok(r.stderr.includes('001-foo.test.cjs'));
|
|
assert.ok(!r.stderr.includes('b.test.cjs'));
|
|
});
|
|
|
|
test('backslash-separated subdir path resolves on all platforms', () => {
|
|
seed(tmpDir, ['sub/001-foo.test.cjs', 'b.test.cjs']);
|
|
// Simulate a Windows caller passing backslash path
|
|
const r = runHarness(tmpDir, ['--files', 'sub\\001-foo.test.cjs']);
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|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
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|
assert.ok(r.stderr.includes('001-foo.test.cjs'));
|
|
});
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|
|
|
test('tests/ prefix is stripped before subdir matching', () => {
|
|
seed(tmpDir, ['sub/001-foo.test.cjs']);
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|
const r = runHarness(tmpDir, ['--files', 'tests/sub/001-foo.test.cjs']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.ok(r.stderr.includes('001-foo.test.cjs'));
|
|
});
|
|
|
|
test('ambiguous bare basename exits non-zero with clear error', () => {
|
|
seed(tmpDir, ['sub1/dup.test.cjs', 'sub2/dup.test.cjs']);
|
|
const r = runHarness(tmpDir, ['--files', 'dup.test.cjs']);
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|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /ambiguous basename/i);
|
|
assert.match(r.stderr, /dup\.test\.cjs/);
|
|
assert.match(r.stderr, /subdir path/i);
|
|
});
|
|
});
|
|
|
|
describe('failure propagation', () => {
|
|
test('non-zero from node:test propagates through harness', () => {
|
|
const FAIL = `'use strict';
|
|
const { test } = require('node:test');
|
|
test('boom', () => { throw new Error('intentional'); });
|
|
`;
|
|
fs.writeFileSync(path.join(tmpDir, 'a.test.cjs'), FAIL, 'utf8');
|
|
const r = runHarness(tmpDir);
|
|
assert.notStrictEqual(
|
|
r.status,
|
|
0,
|
|
`expected non-zero exit; got status=${r.status} signal=${r.signal}\nSTDOUT:\n${r.stdout}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
});
|
|
|
|
describe('env hermeticity', () => {
|
|
// Regression guard for the two `delete process.env.GSD_PROJECT/GSD_WORKSTREAM`
|
|
// lines added in scripts/run-tests.cjs main() right after ensureBuiltArtifacts().
|
|
// If those deletions are removed, the fixture's assertions fail inside the child
|
|
// node:test process → non-zero harness exit → this test fails → CI catches it.
|
|
test('harness strips GSD_PROJECT and GSD_WORKSTREAM before running child tests', () => {
|
|
// Write a fixture that asserts both vars are absent in the child process env.
|
|
const FIXTURE = `'use strict';
|
|
const { test } = require('node:test');
|
|
const assert = require('node:assert/strict');
|
|
test('ambient GSD workstream vars are stripped by the runner', () => {
|
|
assert.strictEqual(process.env.GSD_PROJECT, undefined);
|
|
assert.strictEqual(process.env.GSD_WORKSTREAM, undefined);
|
|
});
|
|
`;
|
|
fs.writeFileSync(path.join(tmpDir, 'env-hermeticity.test.cjs'), FIXTURE, 'utf8');
|
|
// Pass both vars in the ambient env given to the harness process.
|
|
// The harness must delete them before spawning the child node:test process.
|
|
const r = runHarness(tmpDir, [], {
|
|
GSD_PROJECT: 'ambient-proj',
|
|
GSD_WORKSTREAM: 'ambient-ws',
|
|
});
|
|
assert.strictEqual(r.status, 0, r.stderr);
|
|
});
|
|
});
|
|
|
|
describe('Windows argv-overflow chunking (issue #3597)', () => {
|
|
// Windows CreateProcess caps lpCommandLine at 32,767 chars. With ~550
|
|
// tests the unchunked spawn fails instantly on Windows with no test
|
|
// output. Linux/macOS allow ~2 MB so the same path works there. The
|
|
// harness chunks selected files so each spawn stays under the ceiling,
|
|
// and chunking is observable via the `run-tests: chunk N/M …` stderr
|
|
// line. Long filenames force chunking even with a modest file count so
|
|
// the test stays fast on every platform.
|
|
test('chunks when total argv would exceed configured ceiling', () => {
|
|
// Use a deliberately low MAX_CMDLINE_CHARS so the test is independent
|
|
// of tmp-path length (varies by OS). With a 2000-char ceiling and 30
|
|
// tests at ≥100 char paths, chunking must engage and at least one
|
|
// `chunk N/M …` marker must appear in stderr.
|
|
const longPrefix = 'a-deliberately-long-test-filename-to-force-chunking-behavior-cross-platform-';
|
|
const names = Array.from({ length: 30 }, (_, i) => `${longPrefix}${String(i).padStart(4, '0')}.test.cjs`);
|
|
seed(tmpDir, names);
|
|
const r = runHarness(tmpDir, [], { RUN_TESTS_MAX_CMDLINE_CHARS: '2000' });
|
|
assert.strictEqual(
|
|
r.status,
|
|
0,
|
|
`expected zero exit; got status=${r.status} signal=${r.signal}\nSTDERR (tail):\n${r.stderr.split('\n').slice(-20).join('\n')}`,
|
|
);
|
|
assert.match(
|
|
r.stderr,
|
|
/run-tests: chunk \d+\/\d+ — \d+ files/,
|
|
`expected chunking marker in stderr; STDERR (tail):\n${r.stderr.split('\n').slice(-20).join('\n')}`,
|
|
);
|
|
});
|
|
|
|
test('chunks by file count even when argv length is below the ceiling', () => {
|
|
const names = Array.from({ length: 7 }, (_, i) => `tiny-${String(i).padStart(2, '0')}.test.cjs`);
|
|
seed(tmpDir, names);
|
|
const r = runHarness(tmpDir, [], {
|
|
RUN_TESTS_MAX_CMDLINE_CHARS: '100000',
|
|
RUN_TESTS_MAX_FILES_PER_CHUNK: '3',
|
|
});
|
|
assert.strictEqual(
|
|
r.status,
|
|
0,
|
|
`expected zero exit; got status=${r.status} signal=${r.signal}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
assert.match(
|
|
r.stderr,
|
|
/run-tests: chunk 1\/3 — 3 files/,
|
|
`expected file-count chunking marker in stderr; STDERR:\n${r.stderr}`,
|
|
);
|
|
// #2456 changed the packer from sequential first-fit to LPT, so 7 equal-cost
|
|
// files across 3 chunks now balance {3,2,2} instead of filling greedily to
|
|
// {3,3,1}. The chunk COUNT is unchanged; only the tail is no longer starved.
|
|
assert.match(
|
|
r.stderr,
|
|
/run-tests: chunk 3\/3 — 2 files/,
|
|
`expected final file-count chunking marker in stderr; STDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
|
|
// #2088: expensive files must never all land in one chunk — otherwise the
|
|
// unsharded targeted lane packs the whole install surface into a single chunk
|
|
// that blows the 600s per-chunk backstop on the slow Windows runner. #2088
|
|
// approximated "expensive" from the filename prefix; #2456 replaced that with
|
|
// measured durations. This test carries the #2088 GUARANTEE forward onto the
|
|
// new mechanism: the cost signal is now the timings table, injected via
|
|
// RUN_TESTS_TIMINGS_FILE so the assertion does not depend on the real suite's
|
|
// (regenerable, drifting) cost profile.
|
|
function writeTimings(dir, timings) {
|
|
const p = path.join(dir, 'timings.json');
|
|
fs.writeFileSync(p, JSON.stringify({ schema_version: 1, unit: 'ms', timings }), 'utf8');
|
|
return p;
|
|
}
|
|
|
|
test('expensive files SPREAD across chunks instead of clustering (#2088, #2456)', () => {
|
|
// Discriminating by construction: the three EXPENSIVE files carry names the
|
|
// old prefix heuristic scored 1, and the three TRIVIAL ones carry the
|
|
// `install-` prefix it scored 12 — i.e. exactly inverted from their real
|
|
// cost. Under the old packer this packs {2,2,1,1} (4 chunks, with two
|
|
// expensive files sharing chunk 1); under measured weights it packs
|
|
// {2,2,2}, one expensive file per chunk. The assertion below therefore
|
|
// cannot pass on the old algorithm, nor with the timings file removed.
|
|
const heavy = ['heavy-0.test.cjs', 'heavy-1.test.cjs', 'heavy-2.test.cjs'];
|
|
const trivial = ['install-cheap-0.test.cjs', 'install-cheap-1.test.cjs', 'install-cheap-2.test.cjs'];
|
|
seed(tmpDir, [...heavy, ...trivial]);
|
|
const timingsFile = writeTimings(tmpDir, {
|
|
...Object.fromEntries(heavy.map((f) => [f, 30000])),
|
|
...Object.fromEntries(trivial.map((f) => [f, 10])),
|
|
});
|
|
const rh = runHarness(tmpDir, [], {
|
|
RUN_TESTS_MAX_CMDLINE_CHARS: '100000',
|
|
RUN_TESTS_MAX_FILES_PER_CHUNK: '2',
|
|
RUN_TESTS_TIMINGS_FILE: timingsFile,
|
|
});
|
|
assert.strictEqual(rh.status, 0, `heavy: expected zero exit; STDERR:\n${rh.stderr}`);
|
|
for (const n of [1, 2, 3]) {
|
|
assert.match(
|
|
rh.stderr,
|
|
new RegExp(`run-tests: chunk ${n}/3 — 2 files`),
|
|
`expensive files must spread one-per-chunk across exactly 3 chunks; STDERR:\n${rh.stderr}`,
|
|
);
|
|
}
|
|
});
|
|
|
|
test('trivial files the old heuristic over-weighted now stay in ONE chunk (#2088, #2456)', () => {
|
|
// The other direction of the miscalibration. These four files carry the
|
|
// `install-` prefix the old heuristic scored 12, so it split them into
|
|
// FOUR single-file chunks against a 6-weight budget. Measured, they cost
|
|
// 10ms each and belong together. The absence of a split marker cannot be
|
|
// produced by the old algorithm.
|
|
const trivial = Array.from({ length: 4 }, (_, i) => `install-triv-${i}.test.cjs`);
|
|
seed(tmpDir, trivial);
|
|
const timingsFile = writeTimings(tmpDir, Object.fromEntries(trivial.map((f) => [f, 10])));
|
|
const rl = runHarness(tmpDir, [], {
|
|
RUN_TESTS_MAX_CMDLINE_CHARS: '100000',
|
|
RUN_TESTS_MAX_FILES_PER_CHUNK: '6',
|
|
RUN_TESTS_TIMINGS_FILE: timingsFile,
|
|
});
|
|
assert.strictEqual(rl.status, 0, `light: expected zero exit; STDERR:\n${rl.stderr}`);
|
|
// A single chunk emits NO `chunk N/M` split marker (it only prints when
|
|
// chunks.length > 1), so its absence proves the four stayed together.
|
|
assert.doesNotMatch(rl.stderr, /run-tests: chunk \d+\/\d+ — /, `4 trivial install-prefixed files must stay in one chunk; STDERR:\n${rl.stderr}`);
|
|
});
|
|
});
|
|
|
|
describe('shard partitioning CLI (#1212)', () => {
|
|
// The windows full-test lane is sharded across N parallel runners via a
|
|
// GitHub Actions matrix shard dimension; each shard runs
|
|
// `run-tests.cjs --suite unit --shard i/n`. Selection is a deterministic
|
|
// round-robin over the SORTED file list so duration variance spreads
|
|
// across shards. The CLI surface is validated here; the pure partition
|
|
// contract (completeness/disjointness/balance/determinism) is validated
|
|
// against the exported selectShard() in the separate describe block below.
|
|
|
|
// 9 files, sorted: shard-00..shard-08. With n=3, round-robin gives
|
|
// shard 1 -> {00,03,06}, shard 2 -> {01,04,07}, shard 3 -> {02,05,08}.
|
|
const SHARD_NAMES = Array.from(
|
|
{ length: 9 },
|
|
(_, i) => `shard-${String(i).padStart(2, '0')}.test.cjs`,
|
|
);
|
|
|
|
test('--shard 1/3 runs a balanced round-robin slice of the sorted files', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '1/3']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
// The harness echoes the selected basenames on its `files=N:` line.
|
|
assert.match(r.stderr, /files=3:/);
|
|
assert.match(r.stderr, /shard-00\.test\.cjs/);
|
|
assert.match(r.stderr, /shard-03\.test\.cjs/);
|
|
assert.match(r.stderr, /shard-06\.test\.cjs/);
|
|
// Files belonging to other shards must NOT appear in this shard's run.
|
|
assert.doesNotMatch(r.stderr, /shard-01\.test\.cjs/);
|
|
assert.doesNotMatch(r.stderr, /shard-02\.test\.cjs/);
|
|
});
|
|
|
|
test('--shard 2/3 selects the second round-robin slice', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '2/3']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.match(r.stderr, /files=3:/);
|
|
assert.match(r.stderr, /shard-01\.test\.cjs/);
|
|
assert.match(r.stderr, /shard-04\.test\.cjs/);
|
|
assert.match(r.stderr, /shard-07\.test\.cjs/);
|
|
assert.doesNotMatch(r.stderr, /shard-00\.test\.cjs/);
|
|
});
|
|
|
|
test('--shard composes with --suite (shards the post-filter selection)', () => {
|
|
// 6 unit files + 2 security files. `--suite unit --shard 1/2` must shard
|
|
// only the unit selection, never pulling in the security files.
|
|
seed(tmpDir, [
|
|
'u0.test.cjs',
|
|
'u1.test.cjs',
|
|
'u2.test.cjs',
|
|
'u3.test.cjs',
|
|
's0.security.test.cjs',
|
|
's1.security.test.cjs',
|
|
]);
|
|
const r = runHarness(tmpDir, ['--suite', 'unit', '--shard', '1/2']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.doesNotMatch(r.stderr, /\.security\.test\.cjs/);
|
|
});
|
|
|
|
test('--shard 1/1 is a pure no-op (runs every file)', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '1/1']);
|
|
assert.strictEqual(r.status, 0, `stderr: ${r.stderr}`);
|
|
assert.match(r.stderr, /files=9:/);
|
|
});
|
|
|
|
test('an empty shard (n > file count) exits 0 without crashing', () => {
|
|
// n=5 with only 2 files: shards 3,4,5 are legitimately empty. An empty
|
|
// shard must NOT take the "discovery is broken" hard-error path.
|
|
seed(tmpDir, ['only-a.test.cjs', 'only-b.test.cjs']);
|
|
const r = runHarness(tmpDir, ['--shard', '5/5']);
|
|
assert.strictEqual(
|
|
r.status,
|
|
0,
|
|
`empty shard must exit 0; got status=${r.status} signal=${r.signal}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
|
|
test('an empty suite BEFORE sharding still hits the discovery hard error', () => {
|
|
// Regression (Codex #1212 review): a genuinely empty selection
|
|
// (e.g. --suite security with zero security files) must NOT be masked
|
|
// by the empty-shard escape hatch. Only a shard that emptied a NON-empty
|
|
// list is a legitimate no-op; a pre-empty selection is a broken filter.
|
|
seed(tmpDir, ['a.test.cjs', 'b.test.cjs']); // unit files only, no security
|
|
const r = runHarness(tmpDir, ['--suite', 'security', '--shard', '1/3']);
|
|
assert.notStrictEqual(
|
|
r.status,
|
|
0,
|
|
`empty-before-shard must fail; got status=${r.status}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
assert.match(r.stderr, /0 test files selected|discovery/i);
|
|
});
|
|
|
|
test('--shard over --files is order-independent (sorted before partition)', () => {
|
|
// Regression (Codex #1212 review): the partition keys off array index,
|
|
// so the same file set passed in different --files order must produce
|
|
// the same per-shard assignment. The runner sorts the selection before
|
|
// sharding to guarantee this.
|
|
seed(tmpDir, ['x0.test.cjs', 'x1.test.cjs', 'x2.test.cjs', 'x3.test.cjs']);
|
|
const forward = runHarness(tmpDir, [
|
|
'--files', 'x0.test.cjs x1.test.cjs x2.test.cjs x3.test.cjs',
|
|
'--shard', '1/2',
|
|
]);
|
|
const reversed = runHarness(tmpDir, [
|
|
'--files', 'x3.test.cjs x2.test.cjs x1.test.cjs x0.test.cjs',
|
|
'--shard', '1/2',
|
|
]);
|
|
assert.strictEqual(forward.status, 0, `stderr: ${forward.stderr}`);
|
|
assert.strictEqual(reversed.status, 0, `stderr: ${reversed.stderr}`);
|
|
// Both runs select the SAME files (sorted shard 1/2 of x0..x3 = x0,x2).
|
|
const filesLine = (s) => (s.match(/files=\d+: (.*)$/m) || [])[1] || '';
|
|
const a = filesLine(forward.stderr).split(' ').sort().join(' ');
|
|
const b = filesLine(reversed.stderr).split(' ').sort().join(' ');
|
|
assert.strictEqual(a, b, `order-dependent shard assignment:\nforward=${a}\nreversed=${b}`);
|
|
assert.match(a, /x0\.test\.cjs/);
|
|
assert.match(a, /x2\.test\.cjs/);
|
|
});
|
|
|
|
test('--shard rejects i outside 1..n', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '0/3']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /shard/i);
|
|
});
|
|
|
|
test('--shard rejects i greater than n', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '4/3']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /shard/i);
|
|
});
|
|
|
|
test('--shard rejects n < 1', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '1/0']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /shard/i);
|
|
});
|
|
|
|
test('--shard rejects malformed (no slash) value', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '2']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /shard/i);
|
|
});
|
|
|
|
test('--shard rejects non-integer parts', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '1.5/3']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /shard/i);
|
|
});
|
|
|
|
test('duplicate --shard flag is rejected', () => {
|
|
seed(tmpDir, SHARD_NAMES);
|
|
const r = runHarness(tmpDir, ['--shard', '1/3', '--shard', '2/3']);
|
|
assert.notStrictEqual(r.status, 0);
|
|
assert.match(r.stderr, /duplicate/i);
|
|
});
|
|
|
|
test('--shard chunking engages within a shard (argv-overflow preserved)', () => {
|
|
// Each shard must still chunk its own slice so a large shard cannot
|
|
// overflow the Windows 32,767-char command-line ceiling (#3597).
|
|
const longPrefix = 'a-deliberately-long-test-filename-to-force-chunking-within-a-shard-';
|
|
const names = Array.from(
|
|
{ length: 30 },
|
|
(_, i) => `${longPrefix}${String(i).padStart(4, '0')}.test.cjs`,
|
|
);
|
|
seed(tmpDir, names);
|
|
// n=2 -> each shard gets 15 files; a 1500-char ceiling forces chunking.
|
|
const r = runHarness(tmpDir, ['--shard', '1/2'], { RUN_TESTS_MAX_CMDLINE_CHARS: '1500' });
|
|
assert.strictEqual(r.status, 0, `stderr (tail):\n${r.stderr.split('\n').slice(-20).join('\n')}`);
|
|
assert.match(r.stderr, /run-tests: chunk \d+\/\d+ — \d+ files/);
|
|
});
|
|
});
|
|
|
|
describe('per-chunk timeout + force-exit (windows hang guard, #1051)', () => {
|
|
// A unit test that leaks an open handle (un-terminated Worker, un-killed
|
|
// child_process, ref'd timer) causes node --test to hang ~150s after its
|
|
// last test prints. Two such stalls push the windows full lane past its
|
|
// 20m CI cap and the job is CANCELLED — a false-negative gate. The harness
|
|
// now adds --test-force-exit (exits once all tests finish) and a per-chunk
|
|
// timeout (kills a hung child loudly instead of silently burning the budget).
|
|
|
|
// Leaky fixture: the test passes immediately, then a ref'd setInterval keeps
|
|
// the event loop alive so `node --test` hangs unless --test-force-exit is on.
|
|
const LEAKY_BODY = `const { test } = require('node:test');
|
|
test('passes but leaks a ref-d timer', () => {});
|
|
setInterval(() => {}, 1 << 30);
|
|
`;
|
|
|
|
test('a hung chunk hits the per-chunk timeout and fails with a clear message', () => {
|
|
// Regression proof: pre-fix (no timeout guard) this hung until the OS/CI
|
|
// killed it; now it fails fast with a diagnostic message.
|
|
fs.writeFileSync(path.join(tmpDir, 'leaky.test.cjs'), LEAKY_BODY, 'utf8');
|
|
const r = runHarness(tmpDir, [], {
|
|
RUN_TESTS_NO_FORCE_EXIT: '1',
|
|
RUN_TESTS_CHUNK_TIMEOUT_MS: '2000',
|
|
});
|
|
assert.notStrictEqual(
|
|
r.status,
|
|
0,
|
|
`expected non-zero exit from timed-out chunk; got status=${r.status}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
assert.match(
|
|
r.stderr,
|
|
/exceeded the per-chunk timeout/,
|
|
`expected timeout diagnostic in stderr; STDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
|
|
test('a timed-out chunk aborts the remaining chunks instead of burning the job budget', () => {
|
|
// Guards against a real CI failure mode (observed live on CI run
|
|
// 29749380190, windows-latest full-lane shard 2/3): the per-chunk
|
|
// timeout is HALF the 20m CI job cap (600000ms default vs a 1,200,000ms
|
|
// job), so if the loop pressed on to the next chunk after a timeout
|
|
// instead of aborting, a healthy full pass (~11m42s on that lane) could
|
|
// never finish and the CI runner cancels the whole job. That
|
|
// cancellation surfaces as an opaque "The operation was canceled."
|
|
// and buries the actual timeout diagnostic thousands of lines back in
|
|
// the log (in the real incident, ~38,000 lines from the end — and
|
|
// `gh run view --log-failed` returned nothing). Proving chunk 2 never
|
|
// runs pins the fix: abort the remaining chunks as soon as one times
|
|
// out, so the loud diagnostic above survives as the visible failure.
|
|
//
|
|
// Force exactly one file per chunk so chunk 1 = the hanging file and
|
|
// chunk 2 = a marker-writing file; sorted order (a- before b-, and
|
|
// walkTestFiles(...).sort() sorts selection) fixes which chunk runs
|
|
// first, deterministically — the margin between a 2s timeout and a
|
|
// file that never terminates is unbounded, so there is no race.
|
|
fs.writeFileSync(path.join(tmpDir, 'a-leaky.test.cjs'), LEAKY_BODY, 'utf8');
|
|
const markerPath = path.join(tmpDir, 'chunk-2-ran.marker');
|
|
const secondBody = `'use strict';
|
|
const fs = require('fs');
|
|
const { test } = require('node:test');
|
|
fs.writeFileSync(${JSON.stringify(markerPath)}, 'ran');
|
|
test('noop', () => {});
|
|
`;
|
|
fs.writeFileSync(path.join(tmpDir, 'b-marker.test.cjs'), secondBody, 'utf8');
|
|
|
|
const r = runHarness(tmpDir, [], {
|
|
RUN_TESTS_NO_FORCE_EXIT: '1',
|
|
RUN_TESTS_CHUNK_TIMEOUT_MS: '2000',
|
|
RUN_TESTS_MAX_FILES_PER_CHUNK: '1',
|
|
});
|
|
|
|
assert.notStrictEqual(
|
|
r.status,
|
|
0,
|
|
`expected non-zero exit from an aborted run; got status=${r.status}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
assert.match(
|
|
r.stderr,
|
|
/exceeded the per-chunk timeout/,
|
|
`expected timeout diagnostic in stderr; STDERR:\n${r.stderr}`,
|
|
);
|
|
assert.match(
|
|
r.stderr,
|
|
/aborting — skipping the remaining 1 chunk/,
|
|
`expected the new abort message in stderr; STDERR:\n${r.stderr}`,
|
|
);
|
|
assert.strictEqual(
|
|
fs.existsSync(markerPath),
|
|
false,
|
|
`chunk 2's marker file must NOT exist — proves the second chunk's test file never executed; STDERR:\n${r.stderr}`,
|
|
);
|
|
assert.doesNotMatch(
|
|
r.stderr,
|
|
/chunk 2\/2/,
|
|
`chunk 2's progress line must never print — proves the loop broke before starting chunk 2; STDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
|
|
test('force-exit lets a chunk with a leaked handle exit cleanly', () => {
|
|
const nodeMajor = Number(process.versions.node.split('.')[0]);
|
|
// --test-force-exit was added in Node 22; skip on older engines.
|
|
if (nodeMajor < 22) {
|
|
return; // skip — harness test options object not available here; just return
|
|
}
|
|
fs.writeFileSync(path.join(tmpDir, 'leaky.test.cjs'), LEAKY_BODY, 'utf8');
|
|
// force-exit is ON by default (RUN_TESTS_NO_FORCE_EXIT not set).
|
|
// 30s timeout: if force-exit works the child exits promptly after the test
|
|
// passes; if force-exit failed, the 30s timeout would fire and status ≠ 0.
|
|
const r = runHarness(tmpDir, [], {
|
|
RUN_TESTS_CHUNK_TIMEOUT_MS: '30000',
|
|
});
|
|
assert.strictEqual(
|
|
r.status,
|
|
0,
|
|
`expected zero exit with force-exit enabled; got status=${r.status} signal=${r.signal}\nSTDERR:\n${r.stderr}`,
|
|
);
|
|
});
|
|
});
|
|
});
|
|
|
|
// Pure partition contract for the shard selector (#1212). Imported directly
|
|
// (no subprocess) because these are deterministic in-memory assertions about
|
|
// the round-robin partition — the cheapest, most precise way to pin
|
|
// completeness / disjointness / balance / determinism, including a fast-check
|
|
// property test (RULESET.TESTS.property-based-testing: partition is a
|
|
// bijective transformation contract).
|
|
const { parseShardArg, selectShard } = require('../scripts/run-tests.cjs');
|
|
|
|
describe('selectShard round-robin partition (#1212)', () => {
|
|
// A deterministic sorted file list; selectShard MUST NOT re-sort — the caller
|
|
// sorts once and the partition keys off array index so ordering is identical
|
|
// across Windows/macOS/Linux.
|
|
const files = Array.from({ length: 25 }, (_, i) => `f${String(i).padStart(3, '0')}.test.cjs`);
|
|
|
|
test('n=1 returns the full list unchanged (pure no-op)', () => {
|
|
assert.deepStrictEqual(selectShard(files, { index: 1, total: 1 }), files);
|
|
});
|
|
|
|
test('completeness: the union of all shards equals the full list', () => {
|
|
const n = 4;
|
|
const union = [];
|
|
for (let i = 1; i <= n; i++) union.push(...selectShard(files, { index: i, total: n }));
|
|
assert.deepStrictEqual([...union].sort(), [...files].sort());
|
|
});
|
|
|
|
test('disjointness: no file appears in two shards', () => {
|
|
const n = 4;
|
|
const seen = new Set();
|
|
for (let i = 1; i <= n; i++) {
|
|
for (const f of selectShard(files, { index: i, total: n })) {
|
|
assert.ok(!seen.has(f), `file ${f} appeared in more than one shard`);
|
|
seen.add(f);
|
|
}
|
|
}
|
|
assert.strictEqual(seen.size, files.length);
|
|
});
|
|
|
|
test('balance: shard sizes differ by at most 1', () => {
|
|
const n = 4;
|
|
const sizes = [];
|
|
for (let i = 1; i <= n; i++) sizes.push(selectShard(files, { index: i, total: n }).length);
|
|
assert.ok(Math.max(...sizes) - Math.min(...sizes) <= 1, `sizes=${sizes}`);
|
|
});
|
|
|
|
test('determinism: same input yields the same partition', () => {
|
|
const a = selectShard(files, { index: 2, total: 3 });
|
|
const b = selectShard(files, { index: 2, total: 3 });
|
|
assert.deepStrictEqual(a, b);
|
|
});
|
|
|
|
test('round-robin: shard i gets indices i-1, i-1+n, i-1+2n, …', () => {
|
|
const n = 3;
|
|
assert.deepStrictEqual(
|
|
selectShard(files, { index: 1, total: n }),
|
|
files.filter((_, k) => k % n === 0),
|
|
);
|
|
assert.deepStrictEqual(
|
|
selectShard(files, { index: 2, total: n }),
|
|
files.filter((_, k) => k % n === 1),
|
|
);
|
|
assert.deepStrictEqual(
|
|
selectShard(files, { index: 3, total: n }),
|
|
files.filter((_, k) => k % n === 2),
|
|
);
|
|
});
|
|
|
|
test('preserves relative order within a shard', () => {
|
|
const slice = selectShard(files, { index: 1, total: 3 });
|
|
const sorted = [...slice].sort();
|
|
assert.deepStrictEqual(slice, sorted);
|
|
});
|
|
|
|
test('empty shard when total > file count returns []', () => {
|
|
const two = ['a.test.cjs', 'b.test.cjs'];
|
|
assert.deepStrictEqual(selectShard(two, { index: 5, total: 5 }), []);
|
|
assert.deepStrictEqual(selectShard(two, { index: 3, total: 5 }), []);
|
|
// shards 1 and 2 still get the two files
|
|
assert.deepStrictEqual(selectShard(two, { index: 1, total: 5 }), ['a.test.cjs']);
|
|
assert.deepStrictEqual(selectShard(two, { index: 2, total: 5 }), ['b.test.cjs']);
|
|
});
|
|
|
|
test('boundary: total exactly equals file count → one file per shard', () => {
|
|
const three = ['a.test.cjs', 'b.test.cjs', 'c.test.cjs'];
|
|
for (let i = 1; i <= 3; i++) {
|
|
assert.strictEqual(selectShard(three, { index: i, total: 3 }).length, 1);
|
|
}
|
|
});
|
|
|
|
test('boundary: total = count-1 and count+1', () => {
|
|
const four = ['a.test.cjs', 'b.test.cjs', 'c.test.cjs', 'd.test.cjs'];
|
|
// count-1 = 3 shards over 4 files → sizes {2,1,1}
|
|
const sizes3 = [1, 2, 3].map(i => selectShard(four, { index: i, total: 3 }).length).sort();
|
|
assert.deepStrictEqual(sizes3, [1, 1, 2]);
|
|
// count+1 = 5 shards over 4 files → one shard empty
|
|
const sizes5 = [1, 2, 3, 4, 5].map(i => selectShard(four, { index: i, total: 5 }).length).sort();
|
|
assert.deepStrictEqual(sizes5, [0, 1, 1, 1, 1]);
|
|
});
|
|
|
|
test('property: partition is complete, disjoint, and balanced for any n,N', () => {
|
|
const fc = require('fast-check');
|
|
fc.assert(
|
|
fc.property(
|
|
fc.array(fc.string(), { minLength: 0, maxLength: 50 }),
|
|
fc.integer({ min: 1, max: 12 }),
|
|
(rawFiles, n) => {
|
|
// Caller contract: deduped + sorted list. Mirror it so the property
|
|
// exercises the same shape the runner feeds selectShard.
|
|
const list = [...new Set(rawFiles)].sort();
|
|
const shards = [];
|
|
for (let i = 1; i <= n; i++) shards.push(selectShard(list, { index: i, total: n }));
|
|
// completeness + disjointness
|
|
const flat = shards.flat();
|
|
assert.deepStrictEqual([...flat].sort(), [...list].sort());
|
|
assert.strictEqual(new Set(flat).size, list.length);
|
|
// balance — shard sizes differ by at most 1 (sizes is never empty
|
|
// because n >= 1, so there is always at least one shard).
|
|
const sizes = shards.map(s => s.length);
|
|
assert.ok(Math.max(...sizes) - Math.min(...sizes) <= 1, `sizes=${sizes}`);
|
|
},
|
|
),
|
|
{ numRuns: 200 },
|
|
);
|
|
});
|
|
});
|
|
|
|
describe('parseShardArg (#1212)', () => {
|
|
test('parses i/n into { index, total }', () => {
|
|
assert.deepStrictEqual(parseShardArg('2/3'), { index: 2, total: 3 });
|
|
assert.deepStrictEqual(parseShardArg('1/1'), { index: 1, total: 1 });
|
|
});
|
|
|
|
const bad = ['', '2', '0/3', '4/3', '1/0', '-1/3', '1.5/3', 'a/b', '1/3/2', ' 1/3', '1 / 3'];
|
|
for (const v of bad) {
|
|
test(`rejects malformed/out-of-range value ${JSON.stringify(v)}`, () => {
|
|
const r = parseShardArg(v);
|
|
assert.ok(r && r.error, `expected an error result for ${JSON.stringify(v)}, got ${JSON.stringify(r)}`);
|
|
});
|
|
}
|
|
});
|
|
|
|
|
|
// ────────────────────────────────────────────────────────────────────────
|
|
// Folded from tests/bug-969-test-infra-flake-hardening.test.cjs — consolidation epic #1969 (B6 #1975)
|
|
// ────────────────────────────────────────────────────────────────────────
|
|
{
|
|
const { describe: __foldDescribe } = require('node:test');
|
|
__foldDescribe("folded:bug-969-test-infra-flake-hardening (consolidation epic #1969 B6 #1975)", () => {
|
|
'use strict';
|
|
/**
|
|
* Regression tests for bug #969 — test-infra flake hardening.
|
|
*
|
|
* Two root causes addressed:
|
|
*
|
|
* A. SIGNATURE A: "X is not a function"
|
|
* ensureBuiltArtifacts() previously short-circuited on a single sentinel
|
|
* (semver-compare.cjs). If any other migrated .cjs was stale or absent,
|
|
* it would be silently loaded in that broken state. This test proves the
|
|
* unconditional-build fix: deleting a non-sentinel artifact and invoking
|
|
* ensureBuiltArtifacts() regenerates it even when the sentinel is present.
|
|
*
|
|
* B. SIGNATURE B: misleading assertion failures from killed subprocesses
|
|
* runGsdTools() previously had no timeout, so an OOM/SIGKILL'd subprocess
|
|
* returned { success: false } and looked like a product error. This test
|
|
* proves the kill-discrimination fix: a killed/timed-out invocation now
|
|
* throws a labeled resource-starvation error, while a clean non-zero exit
|
|
* still returns { success: false, exitCode: N }.
|
|
*
|
|
* C. SIGNATURE C: "Failed to install hooks: directory is empty" in scoped CI
|
|
* hooks/dist is gitignored and NOT built by `prepare` (build:lib only), so
|
|
* the scoped test lane starts with it absent. The first install test's
|
|
* before() hook triggers build-hooks.js, which creates DIST_DIR empty then
|
|
* fills it file-by-file — a window where a concurrently-spawned install
|
|
* reader sees zero hooks and hard-fails. ensureBuiltHooks() builds hooks/dist
|
|
* ONCE upfront (same chokepoint as ensureBuiltArtifacts) so the empty window
|
|
* never exists during concurrent test execution. These tests prove it
|
|
* rebuilds when dist is absent/empty/incomplete and no-ops when complete.
|
|
*
|
|
* RULESET.TESTS.regression-must-fail-first: each test section documents what
|
|
* the old behavior would have been (fail-before) and asserts the new behavior
|
|
* (pass-after), using only behavioral invocations — no source-grep.
|
|
*/
|
|
|
|
const { test, describe } = require('node:test');
|
|
const assert = require('node:assert/strict');
|
|
const path = require('node:path');
|
|
const fs = require('node:fs');
|
|
const os = require('node:os');
|
|
const { execFileSync } = require('node:child_process');
|
|
|
|
const { ensureBuiltArtifacts, ensureBuiltHooks } = require('../scripts/run-tests.cjs');
|
|
const { cleanup } = require('./helpers.cjs');
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Part A — ensureBuiltArtifacts: unconditional rebuild
|
|
// ---------------------------------------------------------------------------
|
|
|
|
describe('bug #969 A — ensureBuiltArtifacts rebuilds stale artifacts', () => {
|
|
/**
|
|
* Helper: create a self-contained temp TypeScript project with two source files
|
|
* (sentinelmod.cts and targetmod.cts) and a tsconfig that emits to <tmp>/out.
|
|
* Returns { tmp, overrides, sentinelOut, targetOut, tsBuildInfoPath }.
|
|
*
|
|
* HERMETIC: all destructive tests use this helper. They NEVER touch the real
|
|
* gsd-core/bin/lib/*.cjs or the real tsbuildinfo. (Regression from #996 fixed here.)
|
|
*/
|
|
function makeTempProject() {
|
|
const tmp = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-bug969-'));
|
|
const srcDir = path.join(tmp, 'src');
|
|
const outDir = path.join(tmp, 'out');
|
|
const tsBuildInfoPath = path.join(outDir, '.tsbuildinfo');
|
|
const tsconfigPath = path.join(tmp, 'tsconfig.build.json');
|
|
|
|
fs.mkdirSync(srcDir, { recursive: true });
|
|
fs.mkdirSync(outDir, { recursive: true });
|
|
|
|
fs.writeFileSync(path.join(srcDir, 'sentinelmod.cts'), 'export const sentinelValue = 1;\n');
|
|
fs.writeFileSync(path.join(srcDir, 'targetmod.cts'), 'export const targetValue = 2;\n');
|
|
|
|
fs.writeFileSync(tsconfigPath, JSON.stringify({
|
|
compilerOptions: {
|
|
rootDir: 'src',
|
|
outDir: 'out',
|
|
module: 'commonjs',
|
|
target: 'es2022',
|
|
esModuleInterop: true,
|
|
noEmitOnError: true,
|
|
incremental: true,
|
|
tsBuildInfoFile: 'out/.tsbuildinfo',
|
|
},
|
|
include: ['src/**/*.cts'],
|
|
}, null, 2));
|
|
|
|
const overrides = { root: tmp, srcDir, outDir, tsBuildInfoPath, tsconfigPath };
|
|
const sentinelOut = path.join(outDir, 'sentinelmod.cjs');
|
|
const targetOut = path.join(outDir, 'targetmod.cjs');
|
|
return { tmp, overrides, sentinelOut, targetOut, tsBuildInfoPath };
|
|
}
|
|
|
|
/**
|
|
* FAIL-BEFORE (origin/next behavior):
|
|
* The old code contained `if (existsSync(sentinel)) return;`. When the
|
|
* sentinel (semver-compare.cjs) was present, the function returned early
|
|
* without touching any other .cjs. This test confirms the new code always
|
|
* invokes tsc — it would have returned immediately on origin/next.
|
|
*
|
|
* Specifically: on origin/next, after deleting a non-sentinel artifact +
|
|
* its tsbuildinfo and calling ensureBuiltArtifacts() with sentinel present,
|
|
* the artifact would remain absent. On the fix, tsc runs unconditionally
|
|
* and recreates it.
|
|
*
|
|
* PASS-AFTER (fix):
|
|
* The sentinel guard is removed. ensureBuiltArtifacts() always invokes tsc.
|
|
* With no tsbuildinfo present (clean state), tsc performs a full emit and
|
|
* recreates all .cjs outputs including the deleted non-sentinel artifact.
|
|
*
|
|
* HERMETIC: this test operates on a self-contained temp project. It NEVER
|
|
* touches gsd-core/bin/lib/core.cjs or the real tsbuildinfo. (Fixed from #996.)
|
|
*/
|
|
test('rebuilds a non-sentinel artifact (with no tsbuildinfo) even when sentinel exists', () => {
|
|
const { tmp, overrides, sentinelOut, targetOut, tsBuildInfoPath } = makeTempProject();
|
|
try {
|
|
// Initial build — both outputs must appear.
|
|
ensureBuiltArtifacts(overrides);
|
|
assert.ok(fs.existsSync(sentinelOut), 'initial build: sentinelmod.cjs must exist');
|
|
assert.ok(fs.existsSync(targetOut), 'initial build: targetmod.cjs must exist');
|
|
|
|
// Simulate: fresh CI checkout — target artifact missing, no tsbuildinfo.
|
|
fs.unlinkSync(targetOut);
|
|
if (fs.existsSync(tsBuildInfoPath)) fs.unlinkSync(tsBuildInfoPath);
|
|
|
|
assert.ok(!fs.existsSync(targetOut), 'pre-condition: targetmod.cjs must be absent');
|
|
assert.ok(fs.existsSync(sentinelOut), 'pre-condition: sentinelmod.cjs must still be present');
|
|
|
|
// Under the OLD code this returned immediately (sentinel present → return).
|
|
// Under the NEW code this calls tsc unconditionally → full emit → recreated.
|
|
ensureBuiltArtifacts(overrides);
|
|
|
|
assert.ok(
|
|
fs.existsSync(targetOut),
|
|
'ensureBuiltArtifacts must recreate targetmod.cjs even when sentinelmod.cjs ' +
|
|
'exists (sentinel-short-circuit was removed in fix #969)'
|
|
);
|
|
} finally {
|
|
cleanup(tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* PASS-AFTER: the unconditional build emits the expected output (sentinelmod.cjs).
|
|
* Uses the temp project helper so this test is fully hermetic — it never touches
|
|
* the real gsd-core/bin/lib tree.
|
|
*/
|
|
test('sentinel (semver-compare.cjs) still exists after unconditional build', () => {
|
|
const { tmp, overrides, sentinelOut } = makeTempProject();
|
|
try {
|
|
ensureBuiltArtifacts(overrides);
|
|
assert.ok(fs.existsSync(sentinelOut), 'sentinel output (sentinelmod.cjs) must exist after ensureBuiltArtifacts');
|
|
} finally {
|
|
cleanup(tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* PERSISTENT-MIRROR CASE — the residual hole found by adversarial review.
|
|
*
|
|
* FAIL-BEFORE (incremental: true — the old behavior on this branch):
|
|
* With "incremental": true in tsconfig.build.json, tsc reads the .tsbuildinfo
|
|
* on disk. If sources are unchanged since the last build, tsc skips re-emitting
|
|
* any outputs — including outputs that were deleted or overwritten by an rsync
|
|
* from a different branch. This is the persistent-docker-mirror scenario:
|
|
* 1. A prior branch rsync'd a stale core.cjs into bin/lib/
|
|
* 2. A stale tsbuildinfo is present (from that same branch)
|
|
* 3. ensureBuiltArtifacts() calls tsc (incremental)
|
|
* 4. tsc sees "sources unchanged vs tsbuildinfo" → no-ops → stale .cjs served
|
|
* With "incremental": true this test would FAIL because targetmod.cjs remains absent.
|
|
*
|
|
* PASS-AFTER (step-3 unlink+clean-reemit logic):
|
|
* When a missing/zero-bytes output is detected after the incremental pass,
|
|
* ensureBuiltArtifacts() unlinks the tsbuildinfo and runs tsc a second time
|
|
* (clean re-emit). The stale/missing output is always regenerated.
|
|
*
|
|
* HERMETIC: this test operates on a self-contained temp project. It NEVER
|
|
* touches gsd-core/bin/lib/core.cjs or the real tsbuildinfo. (Fixed from #996.)
|
|
*/
|
|
test('PERSISTENT-MIRROR: rebuilds stale output even when tsbuildinfo is present (non-incremental is authoritative)', () => {
|
|
const { tmp, overrides, targetOut, tsBuildInfoPath } = makeTempProject();
|
|
const STALE_TSBUILDINFO = JSON.stringify({
|
|
program: { fileNames: [], options: { incremental: true } },
|
|
version: '5.0.0',
|
|
_gsd_test_marker: 'stale-persistent-mirror',
|
|
});
|
|
|
|
try {
|
|
// Initial build to populate outputs.
|
|
ensureBuiltArtifacts(overrides);
|
|
assert.ok(fs.existsSync(targetOut), 'initial build: targetmod.cjs must exist');
|
|
|
|
// Inject a stale tsbuildinfo (mirrors: old branch rsync'd state onto workspace).
|
|
fs.writeFileSync(tsBuildInfoPath, STALE_TSBUILDINFO);
|
|
// Delete the output .cjs (mirrors: stale/missing output on the persistent mirror).
|
|
fs.unlinkSync(targetOut);
|
|
|
|
assert.ok(!fs.existsSync(targetOut), 'pre-condition: targetmod.cjs must be absent');
|
|
assert.ok(fs.existsSync(tsBuildInfoPath), 'pre-condition: tsbuildinfo must be present');
|
|
|
|
// FAIL-BEFORE (incremental: true, no step-3): tsc would read the stale
|
|
// tsbuildinfo, see "sources unchanged", and skip re-emitting targetmod.cjs
|
|
// → it would remain absent.
|
|
//
|
|
// PASS-AFTER (step-3 unlink+clean-reemit): missing output detected after
|
|
// incremental pass → tsbuildinfo unlinked → tsc runs again → targetmod.cjs
|
|
// is regenerated unconditionally.
|
|
ensureBuiltArtifacts(overrides);
|
|
|
|
assert.ok(
|
|
fs.existsSync(targetOut),
|
|
'ensureBuiltArtifacts must regenerate targetmod.cjs even when a stale ' +
|
|
'tsbuildinfo is present on disk (persistent-mirror scenario — ' +
|
|
'incremental:true alone would have no-op\'d here)'
|
|
);
|
|
|
|
// Verify the regenerated file is valid JS.
|
|
const regenerated = fs.readFileSync(targetOut, 'utf-8');
|
|
assert.ok(regenerated.length > 0, 'regenerated targetmod.cjs must be non-empty');
|
|
assert.ok(
|
|
regenerated.includes('exports.') || regenerated.includes('"use strict"'),
|
|
'regenerated targetmod.cjs must look like a valid CommonJS module'
|
|
);
|
|
} finally {
|
|
cleanup(tmp);
|
|
}
|
|
});
|
|
});
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Part B — runGsdTools: timeout + kill-signal discrimination
|
|
// ---------------------------------------------------------------------------
|
|
|
|
describe('bug #969 B — runGsdTools kill-signal discrimination', () => {
|
|
const TOOLS_PATH = path.join(__dirname, '..', 'gsd-core', 'bin', 'gsd-tools.cjs');
|
|
|
|
/**
|
|
* Shared helper that mirrors the production runGsdTools implementation
|
|
* (from tests/helpers.cjs) but accepts an explicit timeout so we can
|
|
* trigger the kill path in tests without waiting 60 seconds.
|
|
*
|
|
* IMPORTANT: this helper is intentionally self-contained so that the test
|
|
* proves the CONTRACT of the implementation, not just calls the real
|
|
* runGsdTools (which would need a real 60s+ hang to trigger in tests).
|
|
* We test the identical logic paths using a tiny timeout.
|
|
*/
|
|
function runGsdToolsWithTimeout(args, cwd, env, timeoutMs) {
|
|
const TEST_ENV_BASE = {
|
|
GSD_SESSION_KEY: '',
|
|
CODEX_THREAD_ID: '',
|
|
CLAUDE_SESSION_ID: '',
|
|
};
|
|
try {
|
|
let result;
|
|
const childEnv = { ...process.env, ...TEST_ENV_BASE, ...(env || {}) };
|
|
const argv = Array.isArray(args)
|
|
? args
|
|
: (args.match(/(?:[^\s"']+|"[^"]*"|'[^']*')+/g) || [])
|
|
.map(t => t.replace(/"([^"]*)"/g, '$1').replace(/'([^']*)'/g, '$1'));
|
|
result = execFileSync(process.execPath, [TOOLS_PATH, ...argv], {
|
|
cwd: cwd || process.cwd(),
|
|
encoding: 'utf-8',
|
|
stdio: ['pipe', 'pipe', 'pipe'],
|
|
env: childEnv,
|
|
timeout: timeoutMs,
|
|
});
|
|
return { success: true, output: result.trim(), exitCode: 0 };
|
|
} catch (err) {
|
|
// Production kill-discrimination logic (verbatim from helpers.cjs fix).
|
|
if (err.killed || err.signal != null || err.code === 'ETIMEDOUT') {
|
|
throw new Error(
|
|
`[runGsdTools: resource-starvation / subprocess-kill] ` +
|
|
`gsd-tools was killed before completion ` +
|
|
`(signal=${err.signal}, code=${err.code}, killed=${err.killed}). ` +
|
|
`This indicates host OOM or scheduler contention, not a product bug. ` +
|
|
`stdout=${err.stdout?.toString().trim() || ''} ` +
|
|
`stderr=${err.stderr?.toString().trim() || ''}`
|
|
);
|
|
}
|
|
const stderrRaw = err.stderr?.toString().trim() || '';
|
|
const error = stderrRaw || `${err.message} [stderr: (empty) exit:${err.status ?? 1}]`;
|
|
return {
|
|
success: false,
|
|
output: err.stdout?.toString().trim() || '',
|
|
error,
|
|
exitCode: err.status ?? 1,
|
|
};
|
|
}
|
|
}
|
|
|
|
/**
|
|
* FAIL-BEFORE (origin/next behavior):
|
|
* Without a timeout, an OOM-killed subprocess threw with err.killed=true
|
|
* but the catch block fell through to `return { success: false, ... }`.
|
|
* The test consumer saw a normal {success:false} result and tried to parse
|
|
* gsd-tools output from it, causing a confusing downstream assertion fail.
|
|
*
|
|
* PASS-AFTER (fix):
|
|
* The kill-discrimination guard rethrows immediately with a labeled error
|
|
* message containing "resource-starvation / subprocess-kill". The test
|
|
* asserts on that throw rather than getting a silent {success:false}.
|
|
*
|
|
* Mechanism: we use a tiny timeout (1ms) to guarantee a timeout-kill on a
|
|
* real gsd-tools invocation (even `--help` takes >1ms to start node).
|
|
*/
|
|
test('throws a resource-starvation error when subprocess is killed/times out', () => {
|
|
const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-969-'));
|
|
try {
|
|
// 1ms timeout guarantees ETIMEDOUT / killed before gsd-tools can respond.
|
|
assert.throws(
|
|
() => runGsdToolsWithTimeout(['--help'], tmpDir, {}, 1),
|
|
(err) => {
|
|
assert.ok(
|
|
err.message.includes('resource-starvation / subprocess-kill'),
|
|
`Expected labeled resource-starvation error, got: ${err.message}`
|
|
);
|
|
return true;
|
|
}
|
|
);
|
|
} finally {
|
|
cleanup(tmpDir);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* Verify that a normal fast command still returns { success: true } and does
|
|
* NOT throw — i.e., the timeout addition does not break the happy path.
|
|
*/
|
|
test('returns { success: true } for a normal fast command with generous timeout', () => {
|
|
const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-969-'));
|
|
try {
|
|
// 30s timeout; gsd-tools --help completes in well under 1s.
|
|
const result = runGsdToolsWithTimeout(['--help'], tmpDir, {}, 30000);
|
|
assert.ok(result.success === true, `Expected success:true, got ${JSON.stringify(result)}`);
|
|
assert.ok(typeof result.output === 'string', 'output must be a string');
|
|
} finally {
|
|
cleanup(tmpDir);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* Verify that a clean non-zero exit (a real gsd-tools application error, not
|
|
* a kill) still returns { success: false } WITHOUT throwing. This preserves
|
|
* existing test behavior that asserts on error shape.
|
|
*
|
|
* We trigger a clean non-zero by invoking a command that is known to fail
|
|
* cleanly (no project directory set up).
|
|
*/
|
|
test('returns { success: false } for a clean non-zero exit (no throw)', () => {
|
|
const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-969-'));
|
|
try {
|
|
// 'phase list' on a directory with no .planning/ produces a clean error exit.
|
|
const result = runGsdToolsWithTimeout(['phase', 'list'], tmpDir, {}, 30000);
|
|
assert.ok(result.success === false, `Expected success:false for clean error, got ${JSON.stringify(result)}`);
|
|
assert.ok(result.exitCode !== 0, 'exitCode must be non-zero');
|
|
// Must NOT have thrown — the clean-error path returns normally.
|
|
} finally {
|
|
cleanup(tmpDir);
|
|
}
|
|
});
|
|
});
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Part C — ensureBuiltHooks: build hooks/dist once, closing the scoped-CI
|
|
// first-build empty-dir race.
|
|
// ---------------------------------------------------------------------------
|
|
|
|
describe('bug #969 C — ensureBuiltHooks populates hooks/dist before concurrent tests', () => {
|
|
/**
|
|
* Helper: a hermetic temp dist dir + a runBuild spy. The spy records how many
|
|
* times a build was requested and, when invoked, writes the given hook files
|
|
* (simulating build-hooks.js populating DIST_DIR) so idempotency is testable.
|
|
*
|
|
* HERMETIC: never touches the real hooks/dist. Uses dependency-injected
|
|
* overrides (distDir, hookNames, runBuild) — no fs monkeypatching, so the test
|
|
* is deterministic and root/OS-independent.
|
|
*/
|
|
function makeHooksFixture(hookNames) {
|
|
const tmp = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-969-hooks-'));
|
|
const distDir = path.join(tmp, 'hooks', 'dist');
|
|
let buildCalls = 0;
|
|
const runBuild = () => {
|
|
buildCalls += 1;
|
|
fs.mkdirSync(distDir, { recursive: true });
|
|
for (const h of hookNames) {
|
|
fs.writeFileSync(path.join(distDir, h), `// ${h}\nmodule.exports = {};\n`);
|
|
}
|
|
};
|
|
const overrides = () => ({ distDir, hookNames, runBuild });
|
|
return { tmp, distDir, hookNames, overrides, calls: () => buildCalls };
|
|
}
|
|
|
|
const HOOKS = ['a-hook.js', 'b-hook.js', 'c-hook.sh'];
|
|
|
|
/**
|
|
* FAIL-BEFORE (origin/next): ensureBuiltHooks did not exist, so the export was
|
|
* undefined and there was no upfront hooks build — the first concurrent
|
|
* install test raced build-hooks.js's empty-then-fill window. The import at the
|
|
* top of this file (ensureBuiltHooks) is itself the fail-first anchor: on
|
|
* origin/next it is undefined and every test below throws "not a function".
|
|
*
|
|
* PASS-AFTER: ensureBuiltHooks() builds when hooks/dist is entirely absent.
|
|
*/
|
|
test('builds when hooks/dist is absent (fresh checkout / scoped CI)', () => {
|
|
const fx = makeHooksFixture(HOOKS);
|
|
try {
|
|
assert.equal(typeof ensureBuiltHooks, 'function',
|
|
'ensureBuiltHooks must be exported (absent on origin/next — the fail-first anchor)');
|
|
assert.ok(!fs.existsSync(fx.distDir), 'pre-condition: hooks/dist must be absent');
|
|
ensureBuiltHooks(fx.overrides());
|
|
assert.equal(fx.calls(), 1, 'a build must be triggered when dist is absent');
|
|
for (const h of HOOKS) {
|
|
assert.ok(fs.existsSync(path.join(fx.distDir, h)), `${h} must exist after build`);
|
|
}
|
|
} finally {
|
|
cleanup(fx.tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* BOUNDARY: dist exists but is empty (0 of N hooks) — the exact transient state
|
|
* build-hooks.js exposes between mkdir(DIST_DIR) and the first file rename.
|
|
*/
|
|
test('builds when hooks/dist exists but is empty (0 of N)', () => {
|
|
const fx = makeHooksFixture(HOOKS);
|
|
try {
|
|
fs.mkdirSync(fx.distDir, { recursive: true }); // empty dir — the race window
|
|
ensureBuiltHooks(fx.overrides());
|
|
assert.equal(fx.calls(), 1, 'an empty dist must trigger a build');
|
|
} finally {
|
|
cleanup(fx.tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* BOUNDARY: dist has all-but-one hook (N-1 of N) — a partially-filled dir mid
|
|
* first-build. Must still be treated as incomplete and rebuilt.
|
|
*/
|
|
test('builds when hooks/dist is partial (N-1 of N)', () => {
|
|
const fx = makeHooksFixture(HOOKS);
|
|
try {
|
|
fs.mkdirSync(fx.distDir, { recursive: true });
|
|
for (const h of HOOKS.slice(0, HOOKS.length - 1)) {
|
|
fs.writeFileSync(path.join(fx.distDir, h), 'x');
|
|
}
|
|
ensureBuiltHooks(fx.overrides());
|
|
assert.equal(fx.calls(), 1, 'a partial dist (missing one hook) must trigger a build');
|
|
} finally {
|
|
cleanup(fx.tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* BOUNDARY: a zero-byte hook (N of N present, but one is 0 bytes) — a truncated
|
|
* mid-write file. statSync().size === 0 must count as incomplete → rebuild.
|
|
*/
|
|
test('builds when a hook file is present but zero-byte', () => {
|
|
const fx = makeHooksFixture(HOOKS);
|
|
try {
|
|
fs.mkdirSync(fx.distDir, { recursive: true });
|
|
HOOKS.forEach((h, i) => {
|
|
fs.writeFileSync(path.join(fx.distDir, h), i === 0 ? '' : 'ok'); // first is 0 bytes
|
|
});
|
|
ensureBuiltHooks(fx.overrides());
|
|
assert.equal(fx.calls(), 1, 'a zero-byte hook must be treated as incomplete → rebuild');
|
|
} finally {
|
|
cleanup(fx.tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* BOUNDARY + idempotency: dist is complete (all N present, non-empty). No build
|
|
* must fire — this keeps nested run-tests spawns and repeat invocations cheap
|
|
* and avoids a redundant concurrent build against an already-populated dist.
|
|
*/
|
|
test('no-op when hooks/dist is complete (N of N non-empty)', () => {
|
|
const fx = makeHooksFixture(HOOKS);
|
|
try {
|
|
fs.mkdirSync(fx.distDir, { recursive: true });
|
|
for (const h of HOOKS) fs.writeFileSync(path.join(fx.distDir, h), 'ok');
|
|
ensureBuiltHooks(fx.overrides());
|
|
assert.equal(fx.calls(), 0, 'a complete dist must NOT trigger a build (idempotent no-op)');
|
|
} finally {
|
|
cleanup(fx.tmp);
|
|
}
|
|
});
|
|
|
|
/**
|
|
* Integration guard: the REAL default hook set (from build-hooks.js) is what
|
|
* ensureBuiltHooks checks when no override is given. Prove the real export is a
|
|
* non-empty list so the completeness predicate can never vacuously pass.
|
|
*/
|
|
test('default hook set (build-hooks.js HOOKS_TO_COPY) is a non-empty list', () => {
|
|
const { HOOKS_TO_COPY } = require('../scripts/build-hooks.js');
|
|
assert.ok(Array.isArray(HOOKS_TO_COPY) && HOOKS_TO_COPY.length > 0,
|
|
'HOOKS_TO_COPY must be a non-empty array or the completeness check is vacuous');
|
|
});
|
|
});
|
|
});
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// #2456 — chunk weights must reflect MEASURED cost, not a filename guess.
|
|
//
|
|
// These tests drive the packer's pure IR (`packChunks` / `makeFileWeigher` /
|
|
// `loadTestTimings`) rather than the `run-tests: chunk N/M` stderr line, so they
|
|
// assert on typed values (chunk composition, weights) instead of rendered text.
|
|
// ---------------------------------------------------------------------------
|
|
|
|
const {
|
|
packChunks,
|
|
makeFileWeigher,
|
|
loadTestTimings,
|
|
positiveNumberEnv,
|
|
DEFAULT_TIMINGS_PATH,
|
|
} = require('../scripts/run-tests.cjs');
|
|
|
|
describe('chunk packing weights measured cost (#2456)', () => {
|
|
// A cost profile modelled on the real measurements in the issue. It is the
|
|
// MISCALIBRATION that matters: the pre-#2456 heuristic scored basenames
|
|
// matching /^(?:install|codex-)/ at 12 and everything else at 1, which is
|
|
// wrong in BOTH directions here —
|
|
// * run-tests-harness / release-tarball-smoke.install are the two most
|
|
// expensive files yet scored 1 (the regex is anchored to the START of the
|
|
// basename, so a mid-name "install" never matches), and
|
|
// * installer-migration-authoring / codex-declarative-reference scored 12
|
|
// while costing almost nothing.
|
|
const MEASURED_MS = {
|
|
'run-tests-harness.test.cjs': 150180,
|
|
'release-tarball-smoke.install.test.cjs': 144420,
|
|
'phase.test.cjs': 136770,
|
|
'install-minimal-hooks.test.cjs': 136330,
|
|
'config.test.cjs': 114420,
|
|
'state.test.cjs': 94290,
|
|
'commands.test.cjs': 70580,
|
|
'init.test.cjs': 64100,
|
|
'installer-migration-authoring.test.cjs': 90,
|
|
'installer-migration-report.test.cjs': 120,
|
|
'install-update-marker.test.cjs': 95,
|
|
'codex-declarative-reference.test.cjs': 110,
|
|
};
|
|
const FILES = Object.keys(MEASURED_MS);
|
|
const FIXED_OVERHEAD = 120;
|
|
const ROOMY_CHARS = 100000;
|
|
|
|
function tableFrom(timings) {
|
|
const tmp = createTempDir('gsd-2456-timings-');
|
|
const p = path.join(tmp, 'timings.json');
|
|
fs.writeFileSync(p, JSON.stringify({ schema_version: 1, unit: 'ms', timings }), 'utf8');
|
|
return { path: p, dir: tmp };
|
|
}
|
|
|
|
function packMeasured(files, maxWeight, extra = {}) {
|
|
const t = tableFrom(MEASURED_MS);
|
|
try {
|
|
return packChunks(files, {
|
|
weightOf: makeFileWeigher(loadTestTimings(t.path)),
|
|
maxWeight,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
...extra,
|
|
});
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
}
|
|
|
|
const costOf = (chunk) => chunk.reduce((sum, f) => sum + MEASURED_MS[f], 0);
|
|
|
|
/**
|
|
* THE REGRESSION (#2456). Under the pre-fix packer the two most expensive
|
|
* files both scored weight 1 and, being adjacent in selection order, packed
|
|
* into the SAME chunk — that chunk ran ~3.9x the lightest and sat near the
|
|
* 600s per-chunk timeout. Weighting by measured cost and packing with LPT must
|
|
* separate them.
|
|
*/
|
|
test('the two most expensive files never land in the same chunk', () => {
|
|
const chunks = packMeasured(FILES, 4);
|
|
const chunkOf = (f) => chunks.findIndex((c) => c.includes(f));
|
|
const a = chunkOf('run-tests-harness.test.cjs');
|
|
const b = chunkOf('release-tarball-smoke.install.test.cjs');
|
|
assert.ok(a !== -1 && b !== -1, 'both heavy files must be packed');
|
|
assert.notStrictEqual(
|
|
a,
|
|
b,
|
|
`the two most expensive files must be split across chunks; got both in chunk ${a + 1}. ` +
|
|
`Chunk costs (s): ${chunks.map((c) => (costOf(c) / 1000).toFixed(1)).join(', ')}`,
|
|
);
|
|
});
|
|
|
|
test('chunk costs are balanced — slowest chunk stays well under 2x the fastest', () => {
|
|
const chunks = packMeasured(FILES, 4);
|
|
const costs = chunks.map(costOf);
|
|
const ratio = Math.max(...costs) / Math.min(...costs);
|
|
assert.ok(
|
|
ratio < 2,
|
|
`LPT must balance measured cost; imbalance was ${ratio.toFixed(2)}x ` +
|
|
`(costs in s: ${costs.map((c) => (c / 1000).toFixed(1)).join(', ')})`,
|
|
);
|
|
});
|
|
|
|
test('weights follow measured duration, correcting the old prefix heuristic both ways', () => {
|
|
const t = tableFrom(MEASURED_MS);
|
|
try {
|
|
const weigh = makeFileWeigher(loadTestTimings(t.path));
|
|
// Old heuristic: 1. Actual: the most expensive file in the suite.
|
|
assert.ok(
|
|
weigh('run-tests-harness.test.cjs') > 1,
|
|
'the heaviest file must weigh above the table average',
|
|
);
|
|
// Old heuristic: 12 (install prefix). Actual: ~0.1s.
|
|
assert.ok(
|
|
weigh('installer-migration-authoring.test.cjs') < 1,
|
|
'a trivially cheap install-prefixed file must weigh below the table average',
|
|
);
|
|
// The old regex is anchored to the START of the basename, so a mid-name
|
|
// "install" scored 1. Measured, it is the second most expensive file.
|
|
assert.ok(
|
|
weigh('release-tarball-smoke.install.test.cjs')
|
|
> weigh('installer-migration-authoring.test.cjs') * 100,
|
|
'mid-name "install" must be ranked by cost, not by prefix position',
|
|
);
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
|
|
test('an average-cost file weighs exactly 1, preserving the MAX_FILES_PER_CHUNK scale', () => {
|
|
// Three files at 10s, 20s, 30s → mean 20s. The 20s file is the average.
|
|
const t = tableFrom({ 'a.test.cjs': 10000, 'b.test.cjs': 20000, 'c.test.cjs': 30000 });
|
|
try {
|
|
const weigh = makeFileWeigher(loadTestTimings(t.path));
|
|
assert.strictEqual(weigh('b.test.cjs'), 1, 'the mean-cost file must weigh 1');
|
|
assert.strictEqual(weigh('a.test.cjs'), 0.5);
|
|
assert.strictEqual(weigh('c.test.cjs'), 1.5);
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
|
|
describe('timings are advisory, never gated', () => {
|
|
test('a file missing from the table falls back to the median weight', () => {
|
|
// 10s, 20s, 60s → mean 30s, median 20s → median weight = 20/30.
|
|
const t = tableFrom({ 'a.test.cjs': 10000, 'b.test.cjs': 20000, 'c.test.cjs': 60000 });
|
|
try {
|
|
const weigh = makeFileWeigher(loadTestTimings(t.path));
|
|
assert.strictEqual(weigh('brand-new-test.test.cjs'), 20000 / 30000);
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
|
|
test('an unknown file packs without error rather than failing the run', () => {
|
|
const chunks = packMeasured([...FILES, 'never-measured.test.cjs'], 4);
|
|
assert.ok(
|
|
chunks.flat().includes('never-measured.test.cjs'),
|
|
'a file absent from the timings table must still be packed',
|
|
);
|
|
});
|
|
|
|
test('a missing timings file degrades to uniform weight, not an error', () => {
|
|
// No temp dir needed — the point is a path that does NOT exist. Creating
|
|
// one here would leak it (createTempDir has no registry).
|
|
const missing = path.join(__dirname, 'no-such-dir-2456', 'does-not-exist.json');
|
|
assert.strictEqual(loadTestTimings(missing), null, 'a missing table must load as null');
|
|
const weigh = makeFileWeigher(null);
|
|
assert.strictEqual(weigh('anything.test.cjs'), 1, 'a null table must weigh every file 1');
|
|
});
|
|
|
|
test('a corrupt timings file degrades to uniform weight, not an error', () => {
|
|
const tmp = createTempDir('gsd-2456-corrupt-');
|
|
try {
|
|
const p = path.join(tmp, 'timings.json');
|
|
fs.writeFileSync(p, '{ this is not json', 'utf8');
|
|
assert.strictEqual(loadTestTimings(p), null, 'unparseable JSON must load as null');
|
|
} finally {
|
|
cleanup(tmp);
|
|
}
|
|
});
|
|
|
|
test('a structurally valid but empty table degrades to uniform weight', () => {
|
|
const t = tableFrom({});
|
|
try {
|
|
assert.strictEqual(loadTestTimings(t.path), null, 'an empty table must load as null');
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
|
|
test('chunk count never drops below what count-based packing would produce', () => {
|
|
const files = Array.from({ length: 30 }, (_, i) => `unmeasured-${i}.test.cjs`);
|
|
assert.ok(
|
|
packMeasured(files, 6).length >= Math.ceil(files.length / 6),
|
|
'the count floor must hold for a fully-unknown file set',
|
|
);
|
|
});
|
|
|
|
test('a right-skewed table cannot collapse unknown files into fat chunks', () => {
|
|
// The safety floor in its worst case. In a realistically right-skewed suite
|
|
// (many trivial files, a few very expensive ones) the median weight is far
|
|
// below 1, so weighting ALONE would pack 30 unknown files into a single
|
|
// chunk — exactly the failure mode this fix exists to prevent. The count
|
|
// floor pins the result at what the pre-#2456 packer produced.
|
|
const skewed = {
|
|
...Object.fromEntries(Array.from({ length: 10 }, (_, i) => [`t-${i}.test.cjs`, 100])),
|
|
'one-huge.test.cjs': 100000,
|
|
};
|
|
const t = tableFrom(skewed);
|
|
try {
|
|
const table = loadTestTimings(t.path);
|
|
assert.ok(table.medianWeight < 0.05, 'fixture must actually be right-skewed');
|
|
const files = Array.from({ length: 30 }, (_, i) => `unmeasured-${i}.test.cjs`);
|
|
const chunks = packChunks(files, {
|
|
weightOf: makeFileWeigher(table),
|
|
maxWeight: 6,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
});
|
|
assert.strictEqual(
|
|
chunks.length,
|
|
Math.ceil(files.length / 6),
|
|
'a right-skewed table must still chunk exactly as count-based packing did',
|
|
);
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
});
|
|
|
|
describe('boundary coverage', () => {
|
|
// 12 files, each weighing exactly 1 (uniform) → total weight 12.
|
|
const uniform = Array.from({ length: 12 }, (_, i) => `u-${String(i).padStart(2, '0')}.test.cjs`);
|
|
const packUniform = (maxWeight) =>
|
|
packChunks(uniform, {
|
|
weightOf: () => 1,
|
|
maxWeight,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
});
|
|
|
|
test('weight budget at limit-1 forces a second chunk', () => {
|
|
assert.strictEqual(packUniform(11).length, 2, 'total weight 12 over budget 11 → 2 chunks');
|
|
});
|
|
|
|
test('weight budget exactly at the limit stays in one chunk', () => {
|
|
assert.strictEqual(packUniform(12).length, 1, 'total weight 12 at budget 12 → 1 chunk');
|
|
});
|
|
|
|
test('weight budget at limit+1 stays in one chunk', () => {
|
|
assert.strictEqual(packUniform(13).length, 1, 'total weight 12 under budget 13 → 1 chunk');
|
|
});
|
|
|
|
// argv ceiling: two files of identical length in one chunk occupies
|
|
// fixedOverhead + 2*(len+1) chars.
|
|
const two = ['argv-boundary-aaa.test.cjs', 'argv-boundary-bbb.test.cjs'];
|
|
const exactChars = FIXED_OVERHEAD + two.reduce((sum, f) => sum + f.length + 1, 0);
|
|
const packChars = (maxChars) =>
|
|
packChunks(two, {
|
|
weightOf: () => 1,
|
|
maxWeight: 1000, // never the binding constraint here
|
|
maxChars,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
});
|
|
|
|
test('argv ceiling at limit-1 splits the chunk', () => {
|
|
assert.strictEqual(packChars(exactChars - 1).length, 2, 'one char short → must split');
|
|
});
|
|
|
|
test('argv ceiling exactly at the limit keeps one chunk', () => {
|
|
assert.strictEqual(packChars(exactChars).length, 1, 'exactly at the ceiling → fits');
|
|
});
|
|
|
|
test('argv ceiling at limit+1 keeps one chunk', () => {
|
|
assert.strictEqual(packChars(exactChars + 1).length, 1, 'one char spare → fits');
|
|
});
|
|
|
|
test('a single file wider than the argv ceiling is packed alone, not dropped or looped', () => {
|
|
const chunks = packChunks(['x'.repeat(500) + '.test.cjs', 'small.test.cjs'], {
|
|
weightOf: () => 1,
|
|
maxWeight: 1000,
|
|
maxChars: FIXED_OVERHEAD + 50, // narrower than the long file alone
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
});
|
|
assert.strictEqual(chunks.flat().length, 2, 'both files must survive packing');
|
|
assert.strictEqual(chunks.length, 2, 'the over-long file must occupy its own chunk');
|
|
});
|
|
|
|
test('an empty selection packs to no chunks', () => {
|
|
assert.deepStrictEqual(
|
|
packChunks([], {
|
|
weightOf: () => 1,
|
|
maxWeight: 60,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
}),
|
|
[],
|
|
);
|
|
});
|
|
});
|
|
|
|
describe('packing invariants', () => {
|
|
test('every selected file is packed exactly once', () => {
|
|
const chunks = packMeasured(FILES, 3);
|
|
const flat = chunks.flat();
|
|
assert.strictEqual(flat.length, FILES.length, 'no file may be dropped or duplicated');
|
|
assert.deepStrictEqual([...flat].sort(), [...FILES].sort(), 'the packed set must equal the selection');
|
|
});
|
|
|
|
test('no chunk is empty', () => {
|
|
const chunks = packMeasured(FILES, 3);
|
|
for (const [i, c] of chunks.entries()) {
|
|
assert.ok(c.length > 0, `chunk ${i + 1} must not be empty`);
|
|
}
|
|
});
|
|
|
|
test('packing is deterministic — identical input yields byte-identical chunks', () => {
|
|
assert.deepStrictEqual(packMeasured(FILES, 4), packMeasured(FILES, 4));
|
|
});
|
|
|
|
test('files keep their original selection order within a chunk', () => {
|
|
const chunks = packMeasured(FILES, 3);
|
|
for (const chunk of chunks) {
|
|
const positions = chunk.map((f) => FILES.indexOf(f));
|
|
assert.deepStrictEqual(
|
|
positions,
|
|
[...positions].sort((a, b) => a - b),
|
|
'within a chunk, files must stay in selection order',
|
|
);
|
|
}
|
|
});
|
|
});
|
|
|
|
describe('degenerate knobs degrade safely rather than hanging or crashing', () => {
|
|
// These knobs come from the environment via Number(), so a typo yields NaN
|
|
// and an explicit 0 yields 0. Both reach the chunk-count arithmetic. Before
|
|
// hardening, NaN spun packChunks' retry loop forever (a hung CI job with no
|
|
// output) and 0 threw `RangeError: Invalid array length` from Array.from.
|
|
// Every case below must return a valid packing instead.
|
|
const files = ['a.test.cjs', 'b.test.cjs', 'c.test.cjs'];
|
|
const packWith = (opts) =>
|
|
packChunks(files, {
|
|
weightOf: () => 1,
|
|
maxWeight: 60,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
...opts,
|
|
});
|
|
const conserves = (chunks) =>
|
|
JSON.stringify(chunks.flat().sort()) === JSON.stringify([...files].sort());
|
|
|
|
for (const [label, opts] of [
|
|
['a NaN weight budget', { maxWeight: NaN }],
|
|
['a zero weight budget', { maxWeight: 0 }],
|
|
['a negative weight budget', { maxWeight: -5 }],
|
|
['a NaN argv ceiling', { maxChars: NaN }],
|
|
['a zero argv ceiling', { maxChars: 0 }],
|
|
['a NaN fixed overhead', { fixedOverhead: NaN }],
|
|
['a weight function returning NaN', { weightOf: () => NaN }],
|
|
['a weight function returning Infinity', { weightOf: () => Infinity }],
|
|
['a weight function returning a negative', { weightOf: () => -1 }],
|
|
]) {
|
|
test(`${label} still packs every file exactly once`, () => {
|
|
const chunks = packWith(opts);
|
|
assert.ok(conserves(chunks), `${label} must still pack all files; got ${JSON.stringify(chunks)}`);
|
|
});
|
|
}
|
|
|
|
test('a legitimate but tiny weight budget does not explode the chunk count', () => {
|
|
// positiveNumberEnv accepts any positive finite number, so 1e-9 is a valid
|
|
// budget. Without an upper clamp the packer asks for files.length / 1e-9
|
|
// bins and throws `RangeError: Invalid array length`. More chunks than
|
|
// files is never useful, so the count clamps at one file per chunk.
|
|
const many = Array.from({ length: 200 }, (_, i) => `m-${i}.test.cjs`);
|
|
const chunks = packChunks(many, {
|
|
weightOf: () => 1,
|
|
maxWeight: 1e-9,
|
|
maxChars: ROOMY_CHARS,
|
|
fixedOverhead: FIXED_OVERHEAD,
|
|
});
|
|
assert.strictEqual(chunks.length, many.length, 'must clamp to one file per chunk');
|
|
assert.strictEqual(chunks.flat().length, many.length, 'no file may be dropped');
|
|
});
|
|
|
|
test('a timings table from a future schema is ignored rather than mis-read', () => {
|
|
// A v2 table could change the unit or key format; consuming it under v1
|
|
// semantics would silently mis-weight every file. Falling back to null
|
|
// (uniform weight) is the same graceful degradation as a missing table.
|
|
const tmp = createTempDir('gsd-2456-schema-');
|
|
try {
|
|
const p2 = path.join(tmp, 'timings.json');
|
|
fs.writeFileSync(p2, JSON.stringify({ schema_version: 2, timings: { 'a.test.cjs': 100 } }), 'utf8');
|
|
assert.strictEqual(loadTestTimings(p2), null, 'an unknown schema_version must load as null');
|
|
fs.writeFileSync(p2, JSON.stringify({ schema_version: 1, timings: { 'a.test.cjs': 100 } }), 'utf8');
|
|
assert.ok(loadTestTimings(p2) !== null, 'the supported schema_version must load');
|
|
} finally {
|
|
cleanup(tmp);
|
|
}
|
|
});
|
|
|
|
test('positiveNumberEnv falls back for every non-positive-finite input', () => {
|
|
for (const bad of [undefined, null, '', ' ', 'abc', '0', '-1', 'NaN', 'Infinity', '1e999']) {
|
|
assert.strictEqual(
|
|
positiveNumberEnv(bad, 60),
|
|
60,
|
|
`${JSON.stringify(bad)} must fall back to the default`,
|
|
);
|
|
}
|
|
});
|
|
|
|
test('positiveNumberEnv accepts a legitimate override', () => {
|
|
assert.strictEqual(positiveNumberEnv('3', 60), 3);
|
|
assert.strictEqual(positiveNumberEnv('0.5', 60), 0.5);
|
|
});
|
|
|
|
test('a key that resolves on Object.prototype still weighs a number, not a function', () => {
|
|
// The table is JSON-parsed, so a bare index would walk the prototype
|
|
// chain. Real selections are `*.test.cjs` basenames, which can never equal
|
|
// an Object.prototype member — so these BARE names are the only inputs
|
|
// that actually reach that path, and makeFileWeigher is exported, so it
|
|
// does not control its caller's strings. The contract is that any key not
|
|
// present in the table weighs the median, whatever it resolves to.
|
|
const t = tableFrom({ 'a.test.cjs': 10000, 'b.test.cjs': 20000, 'c.test.cjs': 60000 });
|
|
try {
|
|
const weigh = makeFileWeigher(loadTestTimings(t.path));
|
|
for (const name of ['constructor', 'toString', 'valueOf', 'hasOwnProperty', '__proto__']) {
|
|
const w = weigh(name);
|
|
assert.strictEqual(typeof w, 'number', `${name} must weigh a number, not a function`);
|
|
assert.strictEqual(w, 20000 / 30000, `${name} must fall back to the median weight`);
|
|
}
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
|
|
test('a __proto__ key in the table does not pollute Object.prototype', () => {
|
|
const t = tableFrom(JSON.parse('{"__proto__":{"polluted":true},"a.test.cjs":1000}'));
|
|
try {
|
|
makeFileWeigher(loadTestTimings(t.path))('a.test.cjs');
|
|
assert.strictEqual({}.polluted, undefined, 'Object.prototype must not be polluted');
|
|
} finally {
|
|
cleanup(t.dir);
|
|
}
|
|
});
|
|
});
|
|
|
|
describe('the checked-in timings table', () => {
|
|
test('loads, is non-empty, and yields usable weights', () => {
|
|
const table = loadTestTimings(DEFAULT_TIMINGS_PATH);
|
|
assert.ok(table !== null, `${DEFAULT_TIMINGS_PATH} must parse into a usable timing table`);
|
|
assert.ok(Object.keys(table.timings).length > 0, 'the table must not be empty');
|
|
assert.ok(table.mean > 0, 'the table mean must be positive');
|
|
assert.ok(table.medianWeight > 0, 'the median fallback weight must be positive');
|
|
});
|
|
|
|
// Schema guard on a static checked-in data file — NOT a timing assertion.
|
|
// Reported as a list so a corrupt regeneration names every bad entry at once
|
|
// rather than failing on the first.
|
|
test('every recorded cost is a finite non-negative number', () => {
|
|
const table = loadTestTimings(DEFAULT_TIMINGS_PATH);
|
|
const invalid = Object.entries(table.timings)
|
|
.filter(([, value]) => typeof value !== 'number' || !Number.isFinite(value) || value < 0)
|
|
.map(([file, value]) => `${file}=${value}`);
|
|
assert.deepStrictEqual(invalid, [], 'every timing-table entry must be a finite non-negative number');
|
|
});
|
|
});
|
|
});
|