mirror of
https://github.com/garrytan/gstack.git
synced 2026-09-16 09:55:29 +02:00
* feat: add a restricted and supervised Claude Code runner Preserve configured authentication and models while enforcing tool access, strict completion JSON, bounded output and process cleanup. Cover argv, failure handling, session metadata and Windows process containment. * feat: route outside reviews by harness and migrate wrapper installs Use Claude Code from Codex and Codex from other supported hosts, with shared invocation rendering, positive gate validation and per-phase provenance. Rename /claude to /claude-code, repair managed shared and copied installations safely, and generate native Kiro skills. Add installed-workflow, failure-injection and live cross-harness regression coverage. * test: recognize CEO mode labels without terminal spacing The paid workflow rendered SCOPEEXPANSION at option 4, but its driver required a literal space. Match the leading mode title without cursor-spacing artifacts and ignore adjacent preview text. Preserve missing-target failures and downstream posture assertions. * test: isolate plan-count fixtures before starting review workflows Seed the complete test plan in a private git repository before launching Claude, so a bare slash command cannot review the live workspace while a delayed fixture message remains queued. Preserve count thresholds, parsers and budgets. Add initial-context and installed-discovery tests, and retain startup/terminal diagnostics on failed evaluations. * test: stabilize review fixtures and Claude eval startup Preserve source boundaries in workflow judge inputs, isolate CEO mode plans, and wait for interactive trust input readiness. Keep startup failure evidence and retain existing models, budgets, and assertions. Co-Authored-By: OpenAI Codex <noreply@openai.com> * test: classify collapsed review modes and isolate seeded findings Keep review questions out of the setup count when terminal cursor positioning removes spaces. State existing webhook safeguards so the five-finding control measures its seeded defects without accidental extra security and concurrency gaps. Preserve question bands and the paired control. Co-Authored-By: OpenAI Codex <noreply@openai.com> * test: isolate browser daemon state across free shards Co-Authored-By: OpenAI Codex <noreply@openai.com> * test: stabilize native review counting and interactive navigation Co-Authored-By: OpenAI Codex <noreply@openai.com> * chore: prepare v1.82.0.0 release Co-Authored-By: OpenAI Codex <noreply@openai.com> * fix: eliminate browser and process-cleanup test flakes Pin every CI surface to Bun 1.4.0 to avoid extra-stdio finalizers closing reused live sockets. Add an isolated GC/listener regression that fails on Bun 1.3.13, and prevent coordinated rollback to an affected CI runtime. Check renderer cleanup against the render's own staging directory so concurrent renders cannot invalidate the assertion. Make the no-pgrep process-tree walk tolerate disappearing /proc entries, and synchronize its test fixture through child readiness and pipe EOF instead of sleeps. Validation: 9,157 passed, 31 skipped, zero failures across 556 files with retries disabled. Build, all-host generation freshness, and skill checks passed. All three races have failing-before/passing-after regressions. * fix: count completed native review questions in evals * fix: drive review navigation from confirmed native choices * fix: require complete section-loading eval reports * test: isolate telemetry HTTP transport from local assertions * fix: keep review input on the active native question * test: let tunnel revocation daemon choose an available port * test: allocate available ports for pairing and watchdog fixtures * fix: stabilize planning eval navigation and phase reporting * test: isolate installed runtime paths in planning evals * test: stabilize review evidence and concurrent refresh fixtures * fix: resolve design findings before editing the plan * fix: honor and persist disabled outside plan reviews * fix: preserve planning decisions and terminal evidence Load installed host reviews at autoplan phase entry and wait for completed reviewers and saved artifacts. Reuse approved remedies while preserving individual finding decisions. Drive interactive evals from the current terminal viewport, bind native questions across scrolling, and require complete native report evidence. Cover captured stale menus, permission lifecycles, setup classification, and disabled-review tool availability with deterministic regressions. Advance release metadata and the upgrade migration to the unclaimed 1.83.0.0 slot. * fix: drive native review questions and preserve current plans Use the native single-choice keyboard protocol and current terminal viewport, with per-question navigation inside packets and completed-call coverage. Keep permissions, multi-select menus, and Submit controls distinct. Send Autoplan reviewers the amended implementation plan, keep its review record separate, and supply retained application contracts in the chain fixture. Clarify individual DevEx decisions and complete CEO fix options; use one active plan destination for the section-loading report. * fix: preserve complete plan-review decisions * fix: recognize native plan dialogs and reviewer controls * fix: preserve review decisions and phase completion * fix: recognize completed reviews without losing findings * fix: preserve review continuity and native eval completion * test: fix native review completion and eval retry isolation * test: handle native review menus and complete eval fixtures * test: fix native review setup, completion, and isolation failures * test: limit native skill discovery to runtime assets * fix: bind Autoplan reviews to full ordered phase inputs * test: fix planning eval routing, counting, and timeout handling * chore: advance queued release to v1.84.0.0 * fix: preserve complete review inputs and planning decisions * fix: reconcile review approvals and preserve phase obligations * fix: preserve review obligations and unblock eval permissions Carry recorded Autoplan requirements into blind phase inputs, require Eng review approvals before exit, and exercise combined asynchronous flows in CEO reviews. Correct native finding and handoff classification and unblock repeated report edits using scoped request identities. * fix: retain plan requirements and complete native review dialogs * fix: complete native review prompts and retain plan references * fix: preserve review inputs and classify native eval evidence * fix: check competing completion orders in CEO reviews * fix: recognize review decisions and require phase methodology Require the current phase methodology before Autoplan snapshots. Correct substantive decision, closed handoff, and cache-finding classification, and honor the recommended implementation approach in native review dialogs. Add captured-transcript regressions without changing review thresholds, provider models, retries, or deadlines. * test: bind native review decisions and close completed handoffs * fix: complete review dialogs and verify methodology delivery * fix: preserve review evidence and unblock native eval prompts * fix: handle native review question completions * fix: recognize native review narration and controls * fix: count native review decisions and isolate eval fixtures * test: verify seeded review coverage and current artifact permissions * test: isolate model and brain-aware skill renders * fix: repair native workflow evaluation and clarify review steps * fix: stabilize workflow eval evidence and review guidance * test: repair native workflow observation and fixture isolation * fix: recognize completed workflow evidence and owned skill reads * test: repair seeded workflow delivery and completion evidence * test: recognize current review evidence across native forms * test: handle native review variants and permission redraws * fix: honor review preferences and recognize native eval evidence * test: recognize completed review decisions and queued permissions * test: match current review contracts and partial-line edits * test: recognize completed workflow evidence and bounded human waits * fix: preserve review entry gates and native eval interactions * fix: recognize native workflow evidence and preserve review gates * test: recognize current review evidence and preconfigure workflow fixtures * test: recognize completed review findings and scoped artifact permissions * fix: stabilize native workflow review and permission evidence * fix: recognize current review evidence and scoped edit confirmations Clarify Design and engineering review entry instructions and Design scoring. Recognize required legacy coverage and public Autoplan completion recaps. Bind the pending Edit confirmation to its exact file, ordered digest, and one-request approval when a preceding command display remains visible. Keep reviews within their existing size limits and preserve scope gates when extracting workflow fixtures from either supported preamble header. Keep failure outcomes, review thresholds, provider choices, and eval budgets. * fix: recover review workflow progress and eval evidence * fix: recognize valid review evidence and scope selection * test: fix review evidence parsing and repeated artifact prompts * test: recognize valid review decisions and pending native cards * fix(plan-eng-review): keep final navigation consistent with approved tasks * test: recognize valid review evidence and bind legacy diff requests * fix: stabilize review eval evidence and harness repair guidance * docs: update project documentation for v1.85.0.0 Co-Authored-By: OpenAI Codex <noreply@openai.com> * test: fix Windows CI fixtures and credential scan Rebase captured JSON values and filesystem evidence using the appropriate path convention. Compile native fake CLIs on Windows and synchronize pipe holder readiness, with cleanup retained when assertions fail. Assemble synthetic credential fixtures at runtime so the added-line scan keeps enforcing the same gate without flagging its own rejection controls. Discover generated skills directly for the empty-find regression check, avoiding a recursive scan through saved evaluation artifacts and dependencies. * fix: preserve source renders on Windows Compare canonical generator paths using native separators so an output sidecar pointing at the source cannot overwrite its skill or metadata. Keep the regression fixture isolated from the real checkout and expose freshness diagnostics before asserting subprocess status. Detach Windows drain-test pipe holders from the fake provider's automatic child cleanup while preserving the enclosing runner job and its assertions. * fix: clarify outside review fallback and CEO decisions Render one applicable own-harness fallback path and retain native review, disabled policy, and missing-coverage semantics. Align report field names and mode labels, and make the existing per-cut scope approval explicit. Regenerate skill outputs and keep the workflow judge's model, thresholds, and retry policy unchanged. * chore: move release to free version slot (v1.86.0.0) PR #2852 now claims v1.85.0.0. Align the release metadata and rename migration so upgrades from that version still receive it. Co-Authored-By: OpenAI Codex <noreply@openai.com> * fix: include engineering review prerequisites and restore branch context * fix: recognize coverage diagrams and clarify design review instructions * fix: preserve file identities and join Windows test processes --------- Co-authored-by: OpenAI Codex <noreply@openai.com>
728 lines
34 KiB
TypeScript
728 lines
34 KiB
TypeScript
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';
|
||
import {
|
||
loadFreeTestDurations,
|
||
packShardsByDuration,
|
||
wallTimeoutForPackedShard,
|
||
DEFAULT_WALL_TIMEOUT_MS as WALL_BASE_MS,
|
||
} 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/codex-e2e-sol-scope.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", ...)', () => {
|
||
// tripwire-exempt: string fixture fed to detectWindowsFragility, not a call
|
||
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', () => {
|
||
// tripwire-exempt: string fixture fed to detectWindowsFragility, not a call
|
||
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);
|
||
// Its bin/ reference is passed to Bun argv, so it must exercise native
|
||
// Windows taskkill supervision instead of disappearing behind curation.
|
||
expect(result.safe).toContain('test/claude-code-runner.test.ts');
|
||
expect(result.safe).toContain('test/claude-code-windows-job.test.ts');
|
||
// 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');
|
||
// Mutation-caught gap: bun strips types at runtime, so a missing
|
||
// failingFiles here feeds undefined into the flaky-retry flatMap.
|
||
expect(outcome.failingFiles).toEqual([]);
|
||
expect(outcome.unattributedFailures).toBe(0);
|
||
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(${JSON.stringify(SUMMARY_1)});`;
|
||
const outcome = await runFreeShard(['env-dump'], 1, 1, {
|
||
commandFor: () => ({ command: process.execPath, args: ['-e', script] }),
|
||
quiet: true,
|
||
log: () => {},
|
||
});
|
||
expect(outcome.status).toBe('passed');
|
||
const seen = JSON.parse(fs.readFileSync(dump, 'utf8'));
|
||
// GSTACK_HOME passes through untouched (whatever the parent had, incl. unset).
|
||
expect(seen.home).toBe(process.env.GSTACK_HOME ?? null);
|
||
// TMPDIR is a per-shard throwaway, cleaned up once the shard finishes.
|
||
expect(seen.tmp).toContain('gstack-free-shard-');
|
||
expect(seen.tmpExists).toBe(true);
|
||
expect(seen.tmp).not.toBe(process.env.TMPDIR ?? '');
|
||
expect(fs.existsSync(seen.tmp)).toBe(false);
|
||
} finally {
|
||
fs.rmSync(captureDir, { recursive: true, force: true });
|
||
}
|
||
});
|
||
|
||
test('concurrent shards isolate browser state and remove it on success or failure', async () => {
|
||
const captureDir = fs.mkdtempSync(path.join(os.tmpdir(), 'free-shard-browse-'));
|
||
const inheritedState = path.join(captureDir, 'host-browse.json');
|
||
const parentState = process.env.BROWSE_STATE_FILE;
|
||
fs.writeFileSync(inheritedState, 'host daemon state');
|
||
try {
|
||
const outcomes = await Promise.all([0, 3].map((exitCode, index) => {
|
||
const dump = path.join(captureDir, `shard-${index}.json`);
|
||
const script = `
|
||
const fs = require('fs');
|
||
const path = require('path');
|
||
const { resolveConfig } = require(${JSON.stringify(path.join(ROOT, 'browse/src/config.ts'))});
|
||
const config = resolveConfig();
|
||
fs.mkdirSync(config.stateDir, { recursive: true });
|
||
fs.writeFileSync(config.stateFile, ${JSON.stringify(String(index))});
|
||
fs.writeFileSync(${JSON.stringify(dump)}, JSON.stringify({
|
||
state: process.env.BROWSE_STATE_FILE,
|
||
resolvedState: config.stateFile,
|
||
tmp: process.env.TMPDIR,
|
||
profile: process.env.CHROMIUM_PROFILE,
|
||
written: fs.readFileSync(config.stateFile, 'utf8'),
|
||
}));
|
||
console.log(${JSON.stringify(SUMMARY_1)});
|
||
process.exit(${exitCode});
|
||
`;
|
||
return runFreeShard(['browser-state'], index + 1, 2, {
|
||
env: { ...process.env, BROWSE_STATE_FILE: inheritedState },
|
||
commandFor: () => ({ command: process.execPath, args: ['-e', script] }),
|
||
quiet: true,
|
||
log: () => {},
|
||
});
|
||
}));
|
||
expect(outcomes.map((outcome) => outcome.status)).toEqual(['passed', 'failed']);
|
||
const seen = [0, 1].map((index) => JSON.parse(fs.readFileSync(path.join(captureDir, `shard-${index}.json`), 'utf8')));
|
||
expect(seen[0].state).not.toBe(seen[1].state);
|
||
expect(seen[0].profile).not.toBe(seen[1].profile);
|
||
for (const [index, shard] of seen.entries()) {
|
||
expect(shard.state).not.toBe(inheritedState);
|
||
expect(shard.resolvedState).toBe(shard.state);
|
||
expect(shard.written).toBe(String(index));
|
||
const ownedRoot = path.dirname(shard.tmp);
|
||
expect(path.relative(ownedRoot, shard.state)).toBe(path.join('.gstack', 'browse.json'));
|
||
expect(path.dirname(shard.profile)).toBe(ownedRoot);
|
||
expect(fs.existsSync(ownedRoot)).toBe(false);
|
||
expect(fs.existsSync(shard.state)).toBe(false);
|
||
}
|
||
expect(fs.readFileSync(inheritedState, 'utf8')).toBe('host daemon state');
|
||
expect(process.env.BROWSE_STATE_FILE).toBe(parentState);
|
||
} finally {
|
||
fs.rmSync(captureDir, { recursive: true, force: true });
|
||
}
|
||
});
|
||
});
|
||
|
||
describe('test-free-shards: output contract (log capture, quiet console, failure epilogue)', () => {
|
||
// Convention from the block above: never write a raw bun fail line into this
|
||
// source file — build it at runtime so a printed source excerpt can't trip
|
||
// the strict classifier.
|
||
const FAIL_WORD = '(fa' + 'il)';
|
||
const failLine = (name: string) => `${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);
|
||
});
|
||
});
|
||
|
||
|
||
describe('test-free-shards: duration-aware packing (full-suite LPT)', () => {
|
||
const files = ['test/a.test.ts', 'test/b.test.ts', 'test/c.test.ts', 'test/d.test.ts'];
|
||
|
||
test('LPT balances by cost, not count', () => {
|
||
const durations = {
|
||
'test/a.test.ts': 90_000, // one giant file
|
||
'test/b.test.ts': 30_000,
|
||
'test/c.test.ts': 30_000,
|
||
'test/d.test.ts': 30_000,
|
||
};
|
||
const { shards, predictedMs } = packShardsByDuration(files, 2, durations);
|
||
// The giant file gets its own shard; the three smalls share the other.
|
||
expect(shards.map((s) => s.length).sort()).toEqual([1, 3]);
|
||
expect(Math.max(...predictedMs)).toBe(90_000);
|
||
});
|
||
|
||
test('deterministic for identical inputs', () => {
|
||
const durations = { 'test/a.test.ts': 5, 'test/b.test.ts': 5, 'test/c.test.ts': 5, 'test/d.test.ts': 5 };
|
||
const one = packShardsByDuration(files, 3, durations);
|
||
const two = packShardsByDuration([...files].reverse(), 3, durations);
|
||
expect(one.shards).toEqual(two.shards);
|
||
});
|
||
|
||
test('unknown files get 75th-percentile pessimism (placed early, never the tail)', () => {
|
||
const durations = {
|
||
'test/a.test.ts': 1_000,
|
||
'test/b.test.ts': 2_000,
|
||
'test/c.test.ts': 100_000,
|
||
// test/d.test.ts unrecorded → p75 of known = 100_000 (pessimistic)
|
||
};
|
||
const { shards } = packShardsByDuration(files, 2, durations);
|
||
// The unknown must NOT be packed as if free: it lands opposite the
|
||
// 100s file, not stacked onto it.
|
||
const shardOfC = shards.findIndex((s) => s.includes('test/c.test.ts'));
|
||
const shardOfD = shards.findIndex((s) => s.includes('test/d.test.ts'));
|
||
expect(shardOfC).not.toBe(shardOfD);
|
||
});
|
||
|
||
test('every file lands in exactly one shard', () => {
|
||
const { shards } = packShardsByDuration(files, 3, {});
|
||
expect(shards.flat().sort()).toEqual([...files].sort());
|
||
});
|
||
|
||
test('invalid shard count throws', () => {
|
||
expect(() => packShardsByDuration(files, 0, {})).toThrow();
|
||
});
|
||
|
||
test('corrupt seed falls back to null (hash sharding), never throws', () => {
|
||
const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'durations-seed-'));
|
||
const seedPath = path.join(dir, 'seed.json');
|
||
fs.writeFileSync(seedPath, '{ definitely not json');
|
||
const prev = process.env.GSTACK_FREE_TEST_DURATIONS;
|
||
process.env.GSTACK_FREE_TEST_DURATIONS = seedPath;
|
||
try {
|
||
expect(loadFreeTestDurations()).toBeNull();
|
||
// Missing file: silent null (fresh checkouts are normal).
|
||
process.env.GSTACK_FREE_TEST_DURATIONS = path.join(dir, 'missing.json');
|
||
expect(loadFreeTestDurations()).toBeNull();
|
||
// Valid seed round-trips, non-numeric entries dropped.
|
||
fs.writeFileSync(seedPath, JSON.stringify({ version: 1, durations: { 'test/a.test.ts': 42, bad: 'nope' } }));
|
||
process.env.GSTACK_FREE_TEST_DURATIONS = seedPath;
|
||
expect(loadFreeTestDurations()).toEqual({ 'test/a.test.ts': 42 });
|
||
} finally {
|
||
if (prev === undefined) delete process.env.GSTACK_FREE_TEST_DURATIONS;
|
||
else process.env.GSTACK_FREE_TEST_DURATIONS = prev;
|
||
fs.rmSync(dir, { recursive: true, force: true });
|
||
}
|
||
});
|
||
|
||
test('packed shards get duration-aware walls (count heuristic is wrong under LPT)', () => {
|
||
// A packed shard predicted at 120s must get a 360s wall even though its
|
||
// file COUNT would produce only the 6-minute base under the old formula.
|
||
expect(wallTimeoutForPackedShard(120_000)).toBe(Math.max(WALL_BASE_MS, 360_000));
|
||
// Tiny prediction: base still floors it.
|
||
expect(wallTimeoutForPackedShard(1_000)).toBe(WALL_BASE_MS);
|
||
});
|
||
|
||
test('packed walls never undercut the per-file floor (predictions do not transfer across machines)', () => {
|
||
// The duration seed is recorded on fast CI; a syscall-supervised sandbox
|
||
// replays the same files 2-4x slower. A 253-file shard predicted at ~242s
|
||
// got wall-killed at predicted×3 = 725s while genuinely progressing —
|
||
// the count-based floor (253 × 5s = 1265s) the runner always guaranteed
|
||
// must survive duration packing. Looser is allowed, tighter is not.
|
||
expect(wallTimeoutForPackedShard(242_000, WALL_BASE_MS, 253)).toBe(253 * 5_000);
|
||
// When the prediction is the larger bound, it still wins.
|
||
expect(wallTimeoutForPackedShard(600_000, WALL_BASE_MS, 10)).toBe(1_800_000);
|
||
});
|
||
});
|