import { describe, test, expect } from 'bun:test'; import * as fs from 'fs'; import * as path from 'path'; import * as os from 'os'; import { isFreeTestFile, collectFreeTestFiles, detectWindowsFragility, curateWindowsSafe, stableHash, assignFilesToShards, buildShardArgs, normalizeRelativePath, runFreeShard, FreeRunReporter, buildRunEpilogue, FREE_TEST_TIMEOUT_MS, DEFAULT_WALL_TIMEOUT_MS, PER_FILE_WALL_MS, wallTimeoutForShard, KNOWN_WINDOWS_INCOMPATIBLE, TEST_ROOTS, TREE_MUTATING, WORKER_HOSTILE, } from '../scripts/test-free-shards'; const ROOT = path.resolve(import.meta.dir, '..'); describe('test-free-shards: enumeration', () => { test('isFreeTestFile rejects non-test files', () => { expect(isFreeTestFile('test/foo.ts')).toBe(false); expect(isFreeTestFile('test/foo.test.ts')).toBe(true); expect(isFreeTestFile('test/foo.test.tsx')).toBe(true); expect(isFreeTestFile('test/foo.test.mjs')).toBe(true); }); test('isFreeTestFile rejects paid eval tests', () => { expect(isFreeTestFile('test/skill-e2e-foo.test.ts')).toBe(false); expect(isFreeTestFile('test/skill-llm-eval.test.ts')).toBe(false); expect(isFreeTestFile('test/codex-e2e.test.ts')).toBe(false); expect(isFreeTestFile('test/gemini-e2e.test.ts')).toBe(false); }); test('collectFreeTestFiles returns sorted, deduped, only-free list', () => { const files = collectFreeTestFiles(ROOT); expect(files.length).toBeGreaterThan(10); expect(files).toEqual([...files].sort()); expect(new Set(files).size).toBe(files.length); for (const f of files) { expect(isFreeTestFile(f)).toBe(true); } }); test('normalizeRelativePath converts Windows backslashes to forward slashes', () => { expect(normalizeRelativePath('test\\foo\\bar.test.ts')).toBe('test/foo/bar.test.ts'); expect(normalizeRelativePath('test/foo/bar.test.ts')).toBe('test/foo/bar.test.ts'); }); }); describe('test-free-shards: Windows curation', () => { function withTempFile(content: string, fn: (filePath: string) => void): void { const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'curation-test-')); const file = path.join(dir, 'sample.test.ts'); fs.writeFileSync(file, content); try { fn(file); } finally { fs.rmSync(dir, { recursive: true, force: true }); } } test('detects /bin/bash hardcode', () => { withTempFile(`spawn('/bin/bash', ['-c', 'echo hi']);`, (f) => { expect(detectWindowsFragility(f)?.reason).toBe('hardcoded /bin/sh or /bin/bash'); }); }); test('detects spawn("sh", ...)', () => { withTempFile(`spawnSync('sh', ['-c', 'command -v claude']);`, (f) => { expect(detectWindowsFragility(f)?.reason).toBe('spawn("sh", ...)'); }); }); test('detects raw /tmp/ paths', () => { withTempFile(`const TMPERR = '/tmp/codex-err.txt';`, (f) => { expect(detectWindowsFragility(f)?.reason).toBe('raw /tmp/ path (use os.tmpdir())'); }); }); test('detects which claude shell command', () => { withTempFile(`execSync('which claude').trim();`, (f) => { expect(detectWindowsFragility(f)?.reason).toBe('which claude (use Bun.which)'); }); }); test('Windows-safe code passes the filter', () => { withTempFile(`import { spawn } from 'child_process'; spawn(claude.command, args);`, (f) => { expect(detectWindowsFragility(f)).toBeNull(); }); }); test('curateWindowsSafe partitions files into safe + excluded', () => { const files = collectFreeTestFiles(ROOT); const result = curateWindowsSafe(files, ROOT); expect(result.safe.length + result.excluded.length).toBe(files.length); // Sanity: at least one excluded entry, since we know test/ship-version-sync.test.ts uses /bin/bash expect(result.excluded.length).toBeGreaterThan(0); // Every excluded entry has a non-empty reason for (const { reason } of result.excluded) { expect(reason.length).toBeGreaterThan(0); } }); }); describe('test-free-shards: sharding', () => { test('stableHash is deterministic', () => { expect(stableHash('foo.test.ts')).toBe(stableHash('foo.test.ts')); expect(stableHash('foo.test.ts')).not.toBe(stableHash('bar.test.ts')); }); test('assignFilesToShards partitions every file across exactly shardCount shards', () => { const files = ['a.test.ts', 'b.test.ts', 'c.test.ts', 'd.test.ts', 'e.test.ts']; const shards = assignFilesToShards(files, 3); expect(shards.length).toBe(3); expect(shards.flat().sort()).toEqual([...files].sort()); }); test('empty shards are preserved so indices stay stable for a CI matrix', () => { // 2 files can never occupy 10 shards — the rest MUST be present and empty, // not filtered out (filtering renumbered every later shard by occupancy). const files = ['a.test.ts', 'b.test.ts']; const shards = assignFilesToShards(files, 10); expect(shards.length).toBe(10); expect(shards.flat().sort()).toEqual([...files].sort()); expect(shards.some((s) => s.length === 0)).toBe(true); }); test("a file's shard index depends only on its own path — other files never renumber it", () => { const target = 'test/target.test.ts'; const expected = stableHash(target) % 7; const alone = assignFilesToShards([target], 7); const crowded = assignFilesToShards( [target, 'test/a.test.ts', 'test/b.test.ts', 'test/c.test.ts', 'test/d.test.ts', 'browse/test/e.test.ts'], 7, ); expect(alone.findIndex((s) => s.includes(target))).toBe(expected); expect(crowded.findIndex((s) => s.includes(target))).toBe(expected); }); test('assignFilesToShards rejects invalid shard counts', () => { expect(() => assignFilesToShards(['a.test.ts'], 0)).toThrow(); expect(() => assignFilesToShards(['a.test.ts'], -1)).toThrow(); }); test('shards are stable across runs (same files always land in same shard)', () => { const files = ['x.test.ts', 'y.test.ts', 'z.test.ts']; const a = assignFilesToShards(files, 5); const b = assignFilesToShards(files, 5); expect(a).toEqual(b); }); }); describe('test-free-shards: shard args', () => { test('resolves exact absolute selectors (no substring shard bleed) and pins the per-test timeout', () => { const args = buildShardArgs(['test/foo.test.ts'], { rootDir: ROOT }); expect(args[0]).toBe('test'); expect(args[1]).toBe(path.resolve(ROOT, 'test/foo.test.ts')); expect(args).toContain(`--timeout=${FREE_TEST_TIMEOUT_MS}`); expect(args).toContain('--max-concurrency=1'); expect(args).not.toContain('--parallel'); }); test('parallel mode swaps serial max-concurrency for --parallel', () => { const args = buildShardArgs(['test/foo.test.ts'], { rootDir: ROOT, parallel: true }); expect(args).toContain('--parallel'); expect(args).not.toContain('--max-concurrency=1'); }); test('per-test timeout matches the 30s the package.json test script used before the repoint', () => { expect(FREE_TEST_TIMEOUT_MS).toBe(30_000); }); }); describe('test-free-shards: strict shard execution', () => { // Fake command seam, same pattern as test/paid-shards.test.ts: each "file" // label selects a child command. Unlike the paid runner, runFreeShard // enforces the terminal-summary file count on injected commands too, so // fake PASSING commands must print a synthetic bun summary line. const SUMMARY_1 = 'Ran 3 tests across 1 files. [12.00ms]'; const BUSY_LOOP = 'const end = Date.now() + 600000; while (Date.now() < end) {}'; const FAIL_LINE = '(fa' + 'il) planted failure [0.10ms]'; // split so this source file never contains a raw bun fail line const commandFor = (files: string[]) => { const mode = files[0]; if (mode === 'spin') return { command: process.execPath, args: ['-e', BUSY_LOOP] }; if (mode === 'no-summary') return { command: process.execPath, args: ['-e', 'console.log("ok")'] }; if (mode === 'fail-exit') { return { command: process.execPath, args: ['-e', `console.log(${JSON.stringify(SUMMARY_1)}); process.exit(3)`] }; } if (mode === 'fail-line-exit-zero') { return { command: process.execPath, args: ['-e', `console.log(${JSON.stringify(FAIL_LINE)}); console.log(${JSON.stringify(SUMMARY_1)})`] }; } if (mode === 'wrong-file-count') { return { command: process.execPath, args: ['-e', 'console.log("Ran 3 tests across 4 files. [12.00ms]")'] }; } return { command: process.execPath, args: ['-e', `console.log(${JSON.stringify(SUMMARY_1)})`] }; }; test('exit 0 WITHOUT bun\'s terminal summary is a FAILURE (anti-truncation backstop)', async () => { const outcome = await runFreeShard(['no-summary'], 1, 1, { commandFor, quiet: true, log: () => {} }); expect(outcome.status).toBe('failed'); expect(outcome.exitCode).toBe(0); }); test('exit 0 WITH the terminal summary passes, and the per-shard epilogue line is printed', async () => { const lines: string[] = []; const outcome = await runFreeShard(['pass'], 1, 1, { commandFor, quiet: true, log: (l) => lines.push(l) }); expect(outcome.status).toBe('passed'); expect(lines.some((l) => /^\[test:free\] shard 1\/1: 1 files, \d+s, pass$/.test(l))).toBe(true); }); test('a non-zero exit stays a failure even when the summary is present', async () => { const outcome = await runFreeShard(['fail-exit'], 1, 1, { commandFor, quiet: true, log: () => {} }); expect(outcome.status).toBe('failed'); expect(outcome.exitCode).toBe(3); }); test('a printed (fail) result line is a failure even on exit 0 (bun exit-code bug class)', async () => { const outcome = await runFreeShard(['fail-line-exit-zero'], 1, 1, { commandFor, quiet: true, log: () => {} }); expect(outcome.status).toBe('failed'); expect(outcome.exitCode).toBe(0); }); test('a summary reporting the wrong file count is a failure (partial execution)', async () => { const outcome = await runFreeShard(['wrong-file-count'], 1, 1, { commandFor, quiet: true, log: () => {} }); expect(outcome.status).toBe('failed'); }); test('a spinning shard is killed at the wall-clock deadline and reported timed-out, distinct from failed', async () => { const lines: string[] = []; const outcome = await runFreeShard(['spin'], 1, 1, { commandFor, quiet: true, wallTimeoutMs: 1_200, log: (l) => lines.push(l), }); expect(outcome.status).toBe('timed-out'); expect(outcome.status).not.toBe('failed'); // Killed at the deadline, not left to burn the full 600s busy loop. expect(outcome.elapsedMs).toBeLessThan(30_000); expect(outcome.groupPid).toBeGreaterThan(0); if (process.platform !== 'win32') { expect(() => process.kill(outcome.groupPid as number, 0)).toThrow(); } expect(lines.some((l) => /^\[test:free\] shard 1\/1: 1 files, \d+s, timed-out$/.test(l))).toBe(true); }, 30_000); test('an empty shard is a fast no-op success and never spawns (stable CI-matrix indices)', async () => { const lines: string[] = []; const outcome = await runFreeShard([], 7, 20, { commandFor: () => { throw new Error('an empty shard must not spawn a child'); }, log: (l) => lines.push(l), }); expect(outcome.status).toBe('passed'); expect(lines.some((l) => /^\[test:free\] shard 7\/20: 0 files, 0s, pass$/.test(l))).toBe(true); }); test('the log-file path is announced once at start and the PASS epilogue repeats it', async () => { const lines: string[] = []; const outcome = await runFreeShard(['pass'], 1, 1, { commandFor, quiet: true, log: (l) => lines.push(l) }); expect(outcome.status).toBe('passed'); const announced = lines.filter((l) => /^\[test:free\] full log: .+gstack-free-test-.+\.log$/.test(l)); expect(announced.length).toBe(1); // PASS epilogue carries the counts from the terminal summary + the log path. expect(lines.some((l) => /^\[test:free\] PASS — 3 tests, 1 files, \d+s\. Full log: .+\.log$/.test(l))).toBe(true); }); test('spawned shard gets throwaway TMPDIR but NEVER an injected GSTACK_HOME', async () => { // GSTACK_HOME injection was tried and reverted: one shared scratch home // per invocation made 6,900 tests share MUTABLE state — config tests // wrote keys that relink/update-check tests then read (12 measured // cross-contamination failures). This pin keeps the regression out. const captureDir = fs.mkdtempSync(path.join(os.tmpdir(), 'free-shard-env-')); const dump = path.join(captureDir, 'env.json'); try { const script = `const fs = require("fs");` + `fs.writeFileSync(${JSON.stringify(dump)}, JSON.stringify({` + ` home: process.env.GSTACK_HOME ?? null, tmp: process.env.TMPDIR,` + ` tmpExists: fs.existsSync(process.env.TMPDIR || "") }));` + `console.log(${JSON.stringify(SUMMARY_1)});`; const outcome = await runFreeShard(['env-dump'], 1, 1, { commandFor: () => ({ command: process.execPath, args: ['-e', script] }), quiet: true, log: () => {}, }); expect(outcome.status).toBe('passed'); const seen = JSON.parse(fs.readFileSync(dump, 'utf8')); // GSTACK_HOME passes through untouched (whatever the parent had, incl. unset). expect(seen.home).toBe(process.env.GSTACK_HOME ?? null); // TMPDIR is a per-shard throwaway, cleaned up once the shard finishes. expect(seen.tmp).toContain('gstack-free-shard-'); expect(seen.tmpExists).toBe(true); expect(seen.tmp).not.toBe(process.env.TMPDIR ?? ''); expect(fs.existsSync(seen.tmp)).toBe(false); } finally { fs.rmSync(captureDir, { recursive: true, force: true }); } }); }); describe('test-free-shards: output contract (log capture, quiet console, failure epilogue)', () => { // Convention from the block above: never write a raw bun fail line into this // source file — build it at runtime so a printed source excerpt can't trip // the strict classifier. const FAIL_WORD = '(fa' + 'il)'; const failLine = (name: string) => `${FAIL_WORD} ${name} [0.10ms]`; const SUMMARY_1 = 'Ran 3 tests across 1 files. [12.00ms]'; /** Fake child that prints the given lines (stdout, then stderr) and exits. */ const commandPrinting = (stdoutLines: string[], stderrLines: string[] = [], exitCode = 0) => () => ({ command: process.execPath, args: ['-e', stdoutLines.map((l) => `console.log(${JSON.stringify(l)});`).join('') + stderrLines.map((l) => `console.error(${JSON.stringify(l)});`).join('') + (exitCode !== 0 ? `process.exit(${exitCode});` : ''), ], }); test('failure epilogue names the failing test, attributed to its file-chunk header', async () => { const lines: string[] = []; const commandFor = commandPrinting(['test/planted.test.ts:', failLine('planted failure'), SUMMARY_1]); const outcome = await runFreeShard(['planted'], 1, 1, { commandFor, quiet: true, log: (l) => lines.push(l) }); expect(outcome.status).toBe('failed'); expect(lines.some((l) => /^\[test:free\] FAIL — 1 failing test\(s\) in 1 file\(s\), 0 crashed worker\(s\)\. Full log: .+\.log$/.test(l), )).toBe(true); expect(lines).toContain(' ✗ test/planted.test.ts — planted failure'); }); test('crash markers surface in the epilogue as crashed+retried workers', async () => { const lines: string[] = []; const commandFor = commandPrinting([ 'test/crashy.test.ts:', '⟳ crashed running test/crashy.test.ts, retrying', 'test/crashy.test.ts:', '✗ test/crashy.test.ts (crashed: exited)', 'Ran 0 tests across 1 files. [12.00ms]', ], [], 1); const outcome = await runFreeShard(['crashy'], 1, 1, { commandFor, quiet: true, log: (l) => lines.push(l) }); expect(outcome.status).toBe('failed'); expect(lines.some((l) => /^\[test:free\] FAIL — 0 failing test\(s\) in 0 file\(s\), 1 crashed worker\(s\)\. Full log: /.test(l), )).toBe(true); expect(lines).toContain(' ⚠ crashed+retried: test/crashy.test.ts'); }); test('default console is quiet: noise stays in the log; fail/error/summary lines pass through', async () => { const consoleOut: string[] = []; const commandFor = commandPrinting([ 'PASSING-NOISE gitleaks ascii art', 'test/noisy.test.ts:', failLine('quiet mode failure'), 'error: expect(received).toBe(expected)', 'Ran 1 tests across 1 files. [1.00ms]', ], ['telemetry stderr spam']); const outcome = await runFreeShard(['noisy'], 1, 1, { commandFor, consoleWrite: (t) => consoleOut.push(t), log: () => {}, }); expect(outcome.status).toBe('failed'); const joined = consoleOut.join(''); expect(joined).toContain(failLine('quiet mode failure')); expect(joined).toContain('error: expect(received).toBe(expected)'); expect(joined).toContain('Ran 1 tests across 1 files.'); expect(joined).not.toContain('PASSING-NOISE'); expect(joined).not.toContain('telemetry stderr spam'); expect(joined).not.toContain('test/noisy.test.ts:'); // headers feed the epilogue, not the console }); test('--verbose restores the full firehose to the console', async () => { const consoleOut: string[] = []; const commandFor = commandPrinting( ['PASSING-NOISE gitleaks ascii art', SUMMARY_1], ['telemetry stderr spam'], ); const outcome = await runFreeShard(['pass'], 1, 1, { commandFor, verbose: true, consoleWrite: (t) => consoleOut.push(t), log: () => {}, }); expect(outcome.status).toBe('passed'); const joined = consoleOut.join(''); expect(joined).toContain('PASSING-NOISE gitleaks ascii art'); expect(joined).toContain('telemetry stderr spam'); }); test('quiet suppresses the console entirely, even with an injected sink', async () => { const consoleOut: string[] = []; const commandFor = commandPrinting(['PASSING-NOISE', failLine('hidden'), SUMMARY_1]); await runFreeShard(['pass'], 1, 1, { commandFor, quiet: true, consoleWrite: (t) => consoleOut.push(t), log: () => {}, }); expect(consoleOut).toEqual([]); }); test('the full child stream lands in the per-run log file, including console-filtered noise', async () => { const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'free-log-')); const logFilePath = path.join(dir, 'run.log'); try { const lines: string[] = []; const commandFor = commandPrinting(['stdout NOISE-A', SUMMARY_1], ['stderr NOISE-B']); const outcome = await runFreeShard(['pass'], 1, 1, { commandFor, quiet: true, logFilePath, log: (l) => lines.push(l) }); expect(outcome.status).toBe('passed'); expect(lines).toContain(`[test:free] full log: ${logFilePath}`); const logged = fs.readFileSync(logFilePath, 'utf8'); expect(logged).toContain('stdout NOISE-A'); expect(logged).toContain('stderr NOISE-B'); expect(logged).toContain('Ran 3 tests across 1 files.'); } finally { fs.rmSync(dir, { recursive: true, force: true }); } }); test('colored fail lines are attributed after ANSI stripping (a prior grep missed them)', async () => { const lines: string[] = []; const colored = `\u001B[31m${failLine('colored failure')}\u001B[0m`; const commandFor = commandPrinting(['test/colored.test.ts:', colored, 'Ran 1 tests across 1 files. [1.00ms]']); const outcome = await runFreeShard(['colored'], 1, 1, { commandFor, quiet: true, log: (l) => lines.push(l) }); expect(outcome.status).toBe('failed'); expect(lines).toContain(' ✗ test/colored.test.ts — colored failure'); }); test('wall-timeout epilogue lists wedge suspects: header seen, no results, no summary', async () => { const lines: string[] = []; const commandFor = () => ({ command: process.execPath, args: ['-e', 'console.log("test/wedged.test.ts:");console.log("wedged noise");setTimeout(() => {}, 600000);'], }); const outcome = await runFreeShard(['wedged'], 1, 1, { commandFor, quiet: true, wallTimeoutMs: 1_500, log: (l) => lines.push(l), }); expect(outcome.status).toBe('timed-out'); expect(lines).toContain(' ⏱ in flight at kill: test/wedged.test.ts'); // The epilogue headline shape stays stable across statuses. expect(lines.some((l) => l.startsWith('[test:free] FAIL — '))).toBe(true); }, 30_000); test('timeout with no observable header falls back to the buffered-parallel explanation', () => { const reporter = new FreeRunReporter(['test/a.test.ts', 'test/b.test.ts']); reporter.end(); const lines = buildRunEpilogue('timed-out', reporter.report(), 5_000, '/tmp/x.log'); expect(lines.some((l) => l.includes('in flight at kill: unknown'))).toBe(true); expect(lines.some((l) => l.includes('2 planned file(s) produced no output'))).toBe(true); }); test('duplicate fail lines dedupe; pre-header failures are labeled unattributed', () => { const reporter = new FreeRunReporter(['test/a.test.ts']); reporter.write(`${failLine('early unattributed')}\n`, 'stderr'); reporter.write('test/a.test.ts:\n', 'stderr'); reporter.write(`${failLine('dup')}\n${failLine('dup')}\n`, 'stderr'); reporter.end(); const report = reporter.report(); expect(report.failures).toEqual([ { file: null, testName: 'early unattributed' }, { file: 'test/a.test.ts', testName: 'dup' }, ]); const lines = buildRunEpilogue('failed', report, 1_000, '/tmp/x.log'); expect(lines).toContain(' ✗ (unattributed) — early unattributed'); expect(lines).toContain(' ✗ test/a.test.ts — dup'); expect(lines.some((l) => l.includes('2 failing test(s) in 2 file(s)'))).toBe(true); }); test("a later file's header ends the previous chunk — completed noisy files are not wedge suspects", () => { const reporter = new FreeRunReporter(['test/done.test.ts', 'test/hung.test.ts']); reporter.write('test/done.test.ts:\n', 'stderr'); reporter.write('noise from the completed file\n', 'stderr'); reporter.write('test/hung.test.ts:\n', 'stderr'); reporter.write('noise before the hang\n', 'stderr'); reporter.end(); // No terminal summary: only the still-open chunk is in flight. expect(reporter.report().inFlight).toEqual(['test/hung.test.ts']); }); test('../-prefixed printed paths canonicalize to planned relative paths (symlinked cwd)', () => { const reporter = new FreeRunReporter(['browse/test/x.test.ts']); reporter.write('../../../work/repo/browse/test/x.test.ts:\n', 'stderr'); reporter.write(`${failLine('boom')}\n`, 'stderr'); reporter.end(); expect(reporter.report().failures[0]).toEqual({ file: 'browse/test/x.test.ts', testName: 'boom' }); }); }); describe('test-free-shards: GitHub Actions log-group attribution', () => { const failLine = (name: string) => `(fail) ${name} [1.00ms]`; // On GHA (GITHUB_ACTIONS=1) bun wraps each file's section in ::group::. // Unstripped, the real header fails FILE_HEADER_RE, failures attribute to // the PREVIOUS file, and the terminal recap's re-printed (fail) lines land // under a phantom second file — the first Linux run reported 5 real // failures as 10 across 2 files. test('::group::-wrapped headers attribute failures to the right file, once', () => { const reporter = new FreeRunReporter(['test/a.test.ts', 'test/b.test.ts']); reporter.write('::group::test/a.test.ts:\n', 'stderr'); reporter.write('::endgroup::\n', 'stderr'); reporter.write('::group::test/b.test.ts:\n', 'stderr'); reporter.write(`${failLine('planted')}\n`, 'stderr'); reporter.write('::endgroup::\n', 'stderr'); // Terminal recap re-prints the failing file header + result line. reporter.write('1 tests failed:\n', 'stderr'); reporter.write('::group::test/b.test.ts:\n', 'stderr'); reporter.write(`${failLine('planted')}\n`, 'stderr'); reporter.end(); expect(reporter.report().failures).toEqual([{ file: 'test/b.test.ts', testName: 'planted' }]); }); test('headerless recap re-prints do not invent a phantom failing file', () => { // Round-3 CI shape: bun's recap prints "N tests failed:" then the (fail) // lines with NO file headers — the stale currentFile (an innocent file) // was charged with the previous file's failures. const reporter = new FreeRunReporter(['test/a.test.ts', 'test/b.test.ts']); reporter.write('::group::test/a.test.ts:\n', 'stderr'); reporter.write(`${failLine('planted')}\n`, 'stderr'); reporter.write('::endgroup::\n', 'stderr'); reporter.write('::group::test/b.test.ts:\n', 'stderr'); reporter.write('(pass-ish output, no failures here)\n', 'stderr'); reporter.write('2 tests failed:\n', 'stderr'); reporter.write(`${failLine('planted')}\n`, 'stderr'); reporter.write(`${failLine('planted')}\n`, 'stderr'); reporter.end(); expect(reporter.report().failures).toEqual([{ file: 'test/a.test.ts', testName: 'planted' }]); }); }); describe('test-free-shards: curated-list census pins', () => { // A renamed test file must FAIL here, not silently drop its serialization // (a phantom TREE_MUTATING key means the reader races regenerating shards // again) or its serial-child quarantine (WORKER_HOSTILE). test('every TREE_MUTATING and WORKER_HOSTILE key names a real free test file', () => { const census = new Set(collectFreeTestFiles(ROOT)); const stale = [...Object.keys(TREE_MUTATING), ...Object.keys(WORKER_HOSTILE)] .filter((key) => !census.has(key)); expect(stale).toEqual([]); }); test('every KNOWN_WINDOWS_INCOMPATIBLE entry names a real free test file', () => { const census = new Set(collectFreeTestFiles(ROOT)); const stale = KNOWN_WINDOWS_INCOMPATIBLE.map((e) => e.file).filter((f) => !census.has(f)); expect(stale).toEqual([]); }); test('every TEST_ROOTS entry exists on disk and contributes at least one test file', () => { const files = collectFreeTestFiles(ROOT); for (const root of TEST_ROOTS) { expect(fs.existsSync(path.join(ROOT, root))).toBe(true); expect(files.some((f) => f.startsWith(`${root}/`))).toBe(true); } }); }); describe('test-free-shards: wall-timeout scaling', () => { test('typical local shard keeps the 6-minute floor', () => { expect(wallTimeoutForShard(70)).toBe(DEFAULT_WALL_TIMEOUT_MS); }); test('oversized shards (jobs=1 machines, Windows lane) scale linearly past the floor', () => { expect(wallTimeoutForShard(130)).toBe(130 * PER_FILE_WALL_MS); expect(wallTimeoutForShard(420)).toBe(420 * PER_FILE_WALL_MS); }); test('an explicit base above the scaled value wins', () => { expect(wallTimeoutForShard(10, 10 * 60_000)).toBe(10 * 60_000); }); });