* test(#3055): add the process seam and route runGsdTools through it Adds tests/helpers/process-seam.cjs — runNode/runGit/runHook over spawnSync, each returning a typed discriminated union { outcome, exitCode, stdout, stderr, timedOut, signal, killed, code }. Every call is timeout-bounded; there is no unbounded path. runGsdTools becomes an adapter over the seam. Its legacy { success, output, error, exitCode } shape and retry-once-on-kill behaviour are preserved byte-identically, so none of its 136 caller files change. Outcome discrimination was corrected against probed runtime behaviour rather than assumption: a timeout and a maxBuffer overflow are identical on both status (null) and signal (SIGTERM), and differ only by code (ETIMEDOUT vs ENOBUFS). Overflow is therefore classified before timeout. This fixes a live defect — the previous isKilled() treated an overflow as a kill, retried it for a second full 60s run, and then reported "host OOM or scheduler contention" for a child that had merely printed too much. Also widens the ESLint tests glob from tests/**/*.test.cjs to tests/**/*.cjs, which brought 31 previously unlinted shared helpers under the same rules their sibling test files already obey, and fixes the 5 violations that surfaced — including a bare npm invocation without shell:true in tests/helpers/emitted-runtime.cjs (DEFECT.WINDOWS-TEST-PORTABILITY), now routed through the existing portable runNpm helper. Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * test(#3055): migrate every local spawn wrapper onto the process seam Replaces the spawn body of all 25 local runHook/runGuard/runGate definitions with a call to tests/helpers/process-seam.cjs. Each wrapper keeps its name, parameter list, return shape and post-processing (JSON parse, ANSI strip, env sanitising, field extraction) — only the spawn mechanism changes, so no test assertion moves. The 4 bash-driven wrappers use the seam's explicit `interpreter` option rather than a fourth primitive; it is explicit rather than inferred from the file extension, because guessing an interpreter from a path fails silently when a script's name does not match its shebang. Seven wrappers were previously unbounded and now carry an explicit timeout sized to what each actually runs, not the seam default. Two of those seven (gsd-write-guard, lint-docs-command-form) were absent from the issue's inventory entirely and were found by scanning after the migration. Adds the CONTEXT.md `### Process seam` glossary entry and a CONTRIBUTING.md reference section covering the three primitives, the discriminated union, and the two rules the seam enforces. Scope disclosure recorded in the phase design notes: the issue scoped three identifier names. A scan for local helpers that spawn AND return the spawn result finds 113 across 82 names, 71 of them unbounded, plus 122 unbounded direct git call sites. This change bounds 25 of those. The remaining surface is the same defect class and is NOT closed by this PR. Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix(#3055): classify an externally-killed child as KILLED, not EXITED Blocker found in this branch's own diff, independently confirmed by an isolated reviewer. A child killed by an external signal — a genuine bench OOM kill — makes spawnSync return { status: null, signal: 'SIGKILL' } with NO .error field. The seam's "no error implies EXITED" rule therefore classified it as a clean exit, and runGsdTools returned { success: false, exitCode: 1 } without retrying. That silently defeated the #969 kill-discrimination for precisely the case it was built for: the old isKilled() fired on `signal != null`, retried once, then threw a labelled resource-starvation error. A real OOM would have been reported as an ordinary assertion failure. Adds a fifth outcome, KILLED, for "no error but a signal is set", and makes the adapter retry on TIMED_OUT or KILLED — reproducing the old `killed || signal != null || code === 'ETIMEDOUT'` condition exactly. SPAWN_FAILED still does not retry (matching the old behaviour, where signal was null). BUFFER_OVERFLOW still does not retry, which remains a deliberate divergence: the old code retried it because signal was SIGTERM, burning a second 60s run on a child that had merely printed too much. All five outcomes verified against the live runtime rather than assumed: SIGKILL -> killed, exit 0/7 -> exited, timeout -> timed_out (ETIMEDOUT), >1MB stdout -> buffer_overflow (ENOBUFS). Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix(#3055): address standards-review findings on this branch Three findings from the standards axis of the review, all in this branch's own diff. The CONTEXT.md glossary entry this branch introduced was already stale on the branch's own last commit: it enumerated a 4-member OUTCOME while the code had 5, because the KILLED fix did not update it. That is precisely the drift the "module changes update Domain-terms" gate exists to catch, so the entry now lists all five and explains KILLED. api-coverage-gate-e2e compared an outcome against the raw string 'exited' rather than OUTCOME.EXITED, the only such outlier; the enum is now imported and used. A sweep for the other four outcome literals found no further comparison sites. Three call sites hand the literal bash flag '-c' to the seam's first parameter, which the JSDoc described as an absolute script path. Rather than add a fourth primitive, the contract is corrected to match reality: the parameter is renamed `target` and documented as the first argv element handed to the interpreter — normally a script path, but for an interpreter invoked with an inline program it may be that interpreter's own flag. No behaviour change. Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * test(#3055): assert the cross-platform timeout contract, not the macOS one The remote runner failed on both Linux lanes (node 22 and node 24, identical) while the same tests passed locally on macOS. Two assertions encoded a platform-specific behaviour as a cross-platform guarantee. When spawnSync times out, macOS preserves the child's partial stdout/stderr; Linux discards it and returns empty strings. Verified on node v26.5.1 both ways. The seam passes through whatever spawnSync hands it and cannot manufacture output that was discarded, so the production code was correct — the tests were wrong. Both tests now assert the guarantee the seam actually makes on every platform: outcome TIMED_OUT, timedOut true, and stdout/stderr always being strings rather than undefined or a Buffer. The partial-content assertions are retained behind an explicit process.platform === 'darwin' guard so the macOS coverage is not lost, and the first test is renamed to say what it now guarantees. This is the failure mode the remote matrix exists to catch: local macOS verification would have shipped it. Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix(#3055): classify a failed spawn as SPAWN_FAILED, not a timeout Windows CI caught two defects the Linux matrix could not. tests/context-predicates-query.test.cjs passes a 32K-char argv value. On Windows that exceeds the argv limit and spawnSync fails with code ENAMETOOLONG, signal null, status null. The seam's fallback rule — "otherwise, status === null implies TIMED_OUT" — swallowed it, so the adapter retried a spawn that can never succeed and then threw the resource-starvation error. The old isKilled() returned false for that shape and returned an ordinary failure result. TIMED_OUT is now identified positively: code === 'ETIMEDOUT' OR signal is set. Anything else carrying an error is SPAWN_FAILED, which covers ENAMETOOLONG, E2BIG, EACCES and ENOENT alike. The signal clause is what keeps a platform whose timeout errno differs classified correctly, so the greedy catch-all is no longer needed. The second defect is a contract regression I introduced and had claimed otherwise. That same test asserts `typeof r.exitCode === 'number'`, and toLegacyShape was returning null for BUFFER_OVERFLOW and SPAWN_FAILED, so the assertion failed on type. The old code returned `err.status ?? 1` on every non-retried failure path. The adapter now returns 1 again for both, and the comment claiming "never coerced to exitCode:1, unlike the pre-seam helper" is retracted: the seam keeps the richer truth (exitCode null plus a distinct outcome), the legacy adapter keeps the old numeric contract its callers actually depend on. Verified on this host: a 4MB argv yields E2BIG -> SPAWN_FAILED; ENOENT -> SPAWN_FAILED; timeout -> TIMED_OUT; >1MB stdout -> BUFFER_OVERFLOW; SIGKILL -> KILLED; clean exit -> EXITED. Refs #3051 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> --------- Co-authored-by: sim <sim@local> Co-authored-by: Claude Opus 5 <noreply@anthropic.com>
388 lines
16 KiB
JavaScript
388 lines
16 KiB
JavaScript
'use strict';
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/**
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* E2E capability-wiring tests for the API-coverage gate (#1562).
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*
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* Drives the real CLI subprocess (`loop render-hooks verify:pre` and
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* `check api-coverage.verify-pre`) against temp projects to prove:
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* - the gate is data-driven (activates/deactivates by config) — acceptance #5
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* - the seal contract (block / pass) — acceptance #1, #2, #4
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* - the matrix persists on disk and is read at seal time — acceptance #6
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*
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* CONTENT/E2E only: every test drives a real CLI subprocess. No readFileSync
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* source-grep. Genuine assertions: each case asserts the SPECIFIC differing
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* value (block true/false, capId presence), not a count.
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*/
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const { describe, test, afterEach } = require('node:test');
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const assert = require('node:assert/strict');
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const fs = require('node:fs');
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const os = require('node:os');
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const path = require('node:path');
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const { cleanup } = require('./helpers.cjs');
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const { runNode, OUTCOME } = require('./helpers/process-seam.cjs');
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// In-process seam for the fail-closed read-injection tests at the bottom of this
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// file (#2365 review): readPhaseScope is the pure phase-scope reader behind the
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// gate. Those tests monkeypatch fs rather than drive a subprocess.
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const { readPhaseScope } = require('../gsd-core/bin/lib/check-command-router.cjs');
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const TOOLS_PATH = path.join(__dirname, '..', 'gsd-core', 'bin', 'gsd-tools.cjs');
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const TEST_ENV_BASE = {
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GSD_SESSION_KEY: '',
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CODEX_THREAD_ID: '',
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CLAUDE_SESSION_ID: '',
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CLAUDE_CODE_SSE_PORT: '',
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OPENCODE_SESSION_ID: '',
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GEMINI_SESSION_ID: '',
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CURSOR_SESSION_ID: '',
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WINDSURF_SESSION_ID: '',
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TERM_SESSION: '',
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WT_SESSION: '',
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TMUX_PANE: '',
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ZELLIJ_SESSION_NAME: '',
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TTY: '',
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SSH_TTY: '',
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};
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function runTools(args, cwd) {
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const argv = Array.isArray(args)
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? args
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: (args.match(/(?:[^\s"']+|"[^"]*"|'[^']*')+/g) || [])
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.map((t) => t.replace(/"([^"]*)"/g, '$1').replace(/'([^']*)'/g, '$1'));
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const r = runNode([TOOLS_PATH, ...argv], {
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cwd,
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env: { ...process.env, ...TEST_ENV_BASE },
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timeoutMs: 60000,
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});
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if (r.outcome === OUTCOME.EXITED && r.exitCode === 0) {
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return { success: true, output: r.stdout.trim(), exitCode: 0, error: '' };
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}
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return {
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success: false,
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output: r.stdout.trim(),
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// Non-EXITED outcomes (timeout, spawn failure, buffer overflow) never
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// populate stderr, so fall back to the seam's outcome label — mirroring
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// execFileSync's err.message fallback when err.stderr was empty.
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error: r.stderr.trim() || `process-seam: ${r.outcome}`,
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exitCode: r.exitCode ?? 1,
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};
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}
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function makeProject(workflow) {
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const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-apicov-'));
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fs.mkdirSync(path.join(tmpDir, '.planning'), { recursive: true });
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fs.mkdirSync(path.join(tmpDir, '.planning', 'phases'), { recursive: true });
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fs.writeFileSync(
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path.join(tmpDir, '.planning', 'config.json'),
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JSON.stringify({ workflow }),
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'utf8'
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);
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return tmpDir;
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}
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function makePhaseDir(projectDir, phaseSlug) {
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const dir = path.join(projectDir, '.planning', 'phases', phaseSlug);
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fs.mkdirSync(dir, { recursive: true });
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return dir;
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}
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function writePlan(phaseDir, planFile, body) {
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fs.writeFileSync(path.join(phaseDir, planFile), body, 'utf8');
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}
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function writeCoverage(phaseDir, body) {
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fs.writeFileSync(path.join(phaseDir, 'COVERAGE.md'), body, 'utf8');
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}
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function verifyPreHooks(cwd) {
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const result = runTools('loop render-hooks verify:pre --raw', cwd);
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assert.ok(result.success, `render-hooks verify:pre should succeed. stderr: ${result.error}`);
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const envelope = JSON.parse(result.output);
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assert.strictEqual(envelope.point, 'verify:pre', 'point field must be verify:pre');
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assert.ok(Array.isArray(envelope.activeHooks), 'activeHooks must be an array');
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return envelope;
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}
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function findCap(envelope, capId) {
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return envelope.activeHooks.find((h) => h.capId === capId) || null;
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}
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function runGate(cwd, phaseDir) {
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return runTools(['check', 'api-coverage.verify-pre', phaseDir, '--raw'], cwd);
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}
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// ─── Capability wiring: data-driven activation (acceptance #5) ───────────────
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describe('api-coverage verify:pre gate — capability wiring (#1562 acceptance #5)', () => {
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let tmpDir;
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afterEach(() => { if (tmpDir) { cleanup(tmpDir); tmpDir = null; } });
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test('gate is ACTIVE when workflow.api_coverage_gate is true', () => {
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tmpDir = makeProject({ api_coverage_gate: true });
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const env = verifyPreHooks(tmpDir);
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const hook = findCap(env, 'ai-integration');
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assert.ok(hook, 'ai-integration gate must register at verify:pre when enabled');
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assert.strictEqual(hook.kind, 'gate');
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assert.strictEqual(hook.blocking, true);
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assert.strictEqual(hook.check.query, 'api-coverage.verify-pre');
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});
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test('gate is ABSENT when workflow.api_coverage_gate is false', () => {
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tmpDir = makeProject({ api_coverage_gate: false });
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const env = verifyPreHooks(tmpDir);
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assert.strictEqual(findCap(env, 'ai-integration'), null, 'gate must not register when disabled');
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});
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test('gate is ACTIVE by default when the key is absent (opt-out, not opt-in)', () => {
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tmpDir = makeProject({});
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const env = verifyPreHooks(tmpDir);
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assert.ok(findCap(env, 'ai-integration'), 'gate must default ON (full-coverage-by-default)');
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});
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});
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// ─── Seal contract: block / pass (acceptance #1, #2, #4, #6) ──────────────────
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describe('api-coverage.verify-pre — seal contract (#1562 acceptance #1,#2,#4,#6)', () => {
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let tmpDir;
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let phaseDir;
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afterEach(() => { if (tmpDir) { cleanup(tmpDir); tmpDir = null; } });
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function fresh() {
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tmpDir = makeProject({ api_coverage_gate: true });
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phaseDir = makePhaseDir(tmpDir, '01-pay');
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return phaseDir;
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}
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test('#1 API phase without a matrix → BLOCKS the seal', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API for payment processing.');
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed (JSON). stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, true, 'must block when API integration has no matrix');
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assert.strictEqual(j.detected, true);
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assert.strictEqual(j.coverage_present, false);
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});
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test('#4 non-API phase without a matrix → does NOT block', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nRefactor the auth helper to use bcrypt.');
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed. stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false, 'must not block a non-API phase');
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assert.strictEqual(j.detected, false);
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});
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test('#1/#6 API phase WITH a valid matrix → passes (matrix persists on disk)', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API for payment processing.');
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writeCoverage(
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phaseDir,
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'| capability | decision | reason |\n|---|---|---|\n' +
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'| charge | INTEGRATE | |\n| refund | OPT-OUT | not needed yet |\n'
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);
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed. stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false);
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assert.strictEqual(j.coverage_present, true);
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assert.strictEqual(j.counts.surface, 2);
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assert.strictEqual(j.counts.optout, 1);
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});
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test('#2 OPT-OUT without a reason → BLOCKS (un-decided hole)', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API.');
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writeCoverage(
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phaseDir,
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'| capability | decision | reason |\n|---|---|---|\n| refund | OPT-OUT | |\n'
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);
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const r = runGate(tmpDir, phaseDir);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, true, 'opt-out without reason must block');
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assert.ok(j.errors.some((e) => /missing reason/i.test(e)));
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});
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test('#2 empty matrix → BLOCKS (surface must be enumerated)', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API.');
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writeCoverage(phaseDir, '| capability | decision | reason |\n|---|---|---|\n');
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const r = runGate(tmpDir, phaseDir);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, true);
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assert.ok(j.errors.some((e) => /empty/i.test(e)));
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});
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test('#3 a second platform with full-coverage baseline is accepted (no asymmetry)', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nAdd a YouTube SDK as a second media platform.');
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// Full-coverage baseline for the second platform: every capability decided.
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writeCoverage(
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phaseDir,
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'| capability | decision | reason |\n|---|---|---|\n' +
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'| search | INTEGRATE | |\n| playlists | INTEGRATE | |\n| skip | INTEGRATE | |\n'
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);
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const r = runGate(tmpDir, phaseDir);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false, 'a fully-decided second platform seals clean');
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assert.strictEqual(j.counts.surface, 3);
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});
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test('JSON-fenced matrix is accepted (machine-generated form)', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API.');
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writeCoverage(
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phaseDir,
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'```coverage\n[{"capability":"charge","decision":"INTEGRATE","reason":""}]\n```\n'
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);
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const r = runGate(tmpDir, phaseDir);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false);
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assert.strictEqual(j.counts.surface, 1);
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});
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// ── #2365: detector false positives must not block, and a phase may declare
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// "no external API integration" instead of fabricating a matrix row.
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test('#2365 phase naming a first-party route path → does NOT block', () => {
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fresh();
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writePlan(
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phaseDir,
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'01-PLAN.md',
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'# Plan\nRun integration tests for src/app/api/profile/route.test.ts.'
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);
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed. stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false, 'a first-party route path is not an external API');
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assert.strictEqual(j.detected, false);
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});
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test('#2365 COVERAGE.md declaring no external API integration → passes the gate', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nRender the export page.');
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writeCoverage(phaseDir, 'No external API integration: UI-only phase, no third-party surface.\n');
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed. stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false, 'a reasoned no-integration declaration satisfies the gate');
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assert.strictEqual(j.coverage_present, true);
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assert.strictEqual(j.none_declared, true);
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assert.strictEqual(j.detected, false, 'a non-API plan shows no overridden signals');
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});
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test('#2365 declaration overriding live detection passes but SURFACES the contradiction', () => {
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fresh();
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writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API for payments.');
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writeCoverage(phaseDir, 'No external API integration: detector over-fired; this phase is UI-only.\n');
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const r = runGate(tmpDir, phaseDir);
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assert.ok(r.success, `gate should succeed. stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, false, 'the declaration is the human overrule — it must win');
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assert.strictEqual(j.none_declared, true);
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assert.strictEqual(j.detected, true, 'the contradiction must be visible, not silent');
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assert.ok(Array.isArray(j.signals) && j.signals.length > 0);
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assert.ok(/overrid/i.test(j.message), `message should surface the override: ${j.message}`);
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});
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// ── Security (#1562 security review S1/S2): the phase arg is taken only as a
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// token resolved under .planning/phases/. Traversal / unresolvable args must
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// NOT read files outside the phase dir, and — since the phases tree exists —
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// must fail CLOSED (a blocking gate must not silently bypass on a bad arg).
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test('path-traversal arg is contained and fails CLOSED (phases tree exists)', () => {
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fresh(); // creates .planning/phases/01-pay
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const r = runTools(['check', 'api-coverage.verify-pre', '../../etc', '--raw'], tmpDir);
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assert.ok(r.success, `gate should succeed (JSON). stderr: ${r.error}`);
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const j = JSON.parse(r.output);
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assert.strictEqual(j.block, true, 'unresolvable phase under an existing phases tree must block');
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assert.strictEqual(j.phase_lookup_failed, true);
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});
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test('no .planning/phases at all → fail-open (genuine non-GSD project)', () => {
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// A project with .planning/config.json but no phases directory.
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const noPhases = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-apicov-nophase-'));
|
|
try {
|
|
fs.mkdirSync(path.join(noPhases, '.planning'), { recursive: true });
|
|
fs.writeFileSync(
|
|
path.join(noPhases, '.planning', 'config.json'),
|
|
JSON.stringify({ workflow: { api_coverage_gate: true } }),
|
|
'utf8'
|
|
);
|
|
const r = runTools(['check', 'api-coverage.verify-pre', '01-pay', '--raw'], noPhases);
|
|
assert.ok(r.success);
|
|
const j = JSON.parse(r.output);
|
|
assert.strictEqual(j.block, false, 'no phases tree → pass (not a GSD project)');
|
|
} finally {
|
|
cleanup(noPhases);
|
|
}
|
|
});
|
|
});
|
|
|
|
// ─── Fail-closed phase-scope read failures (in-process, #2365 review) ──────────
|
|
// These exercise readPhaseScope directly and inject the read failure by
|
|
// monkeypatching fs (restored in finally) rather than chmod 0o000 — chmod does
|
|
// not fault under root and is the pattern this repo's IO-failure convention
|
|
// avoids. Deterministic and platform-independent, so no root/win32 skip needed.
|
|
describe('readPhaseScope — fail-closed on a real read failure (#2365 review)', () => {
|
|
let tmpDir;
|
|
afterEach(() => { if (tmpDir) { cleanup(tmpDir); tmpDir = null; } });
|
|
|
|
// Run `fn` with `fs[method]` throwing `code` for any path matching `pat`,
|
|
// delegating to the real implementation otherwise; always restored.
|
|
function withFsThrow(method, pat, code, fn) {
|
|
const orig = fs[method];
|
|
fs[method] = (p, ...rest) => {
|
|
if (typeof p === 'string' && pat.test(p)) {
|
|
const err = new Error(`${code}: injected read failure`);
|
|
err.code = code;
|
|
throw err;
|
|
}
|
|
return orig(p, ...rest);
|
|
};
|
|
try { return fn(); } finally { fs[method] = orig; }
|
|
}
|
|
|
|
test('an EXISTING plan file that cannot be read → readError set (not silent-empty)', () => {
|
|
tmpDir = makeProject({ api_coverage_gate: true });
|
|
const phaseDir = makePhaseDir(tmpDir, '01-pay');
|
|
writePlan(phaseDir, '01-PLAN.md', '# Plan\nRefactor the UI.');
|
|
writePlan(phaseDir, '02-PLAN.md', '# Plan\nIntegrate the Stripe API.');
|
|
const res = withFsThrow('readFileSync', /02-PLAN\.md$/, 'EACCES', () =>
|
|
readPhaseScope(tmpDir, phaseDir, '01'));
|
|
assert.ok(res.readError, 'a real plan read failure must set readError, not read as empty scope');
|
|
assert.match(res.readError, /could not read/i);
|
|
});
|
|
|
|
test('a phase directory that cannot be enumerated → readError set', () => {
|
|
tmpDir = makeProject({ api_coverage_gate: true });
|
|
const phaseDir = makePhaseDir(tmpDir, '01-pay');
|
|
writePlan(phaseDir, '01-PLAN.md', '# Plan\nIntegrate the Stripe API.');
|
|
const res = withFsThrow('readdirSync', new RegExp(phaseDir.replace(/[.*+?^${}()|[\]\\]/g, '\\$&') + '$'), 'EACCES', () =>
|
|
readPhaseScope(tmpDir, phaseDir, '01'));
|
|
assert.ok(res.readError, 'an unreadable phase directory must set readError, not read as empty');
|
|
});
|
|
|
|
test('roadmap fallback that cannot be read → readError set', () => {
|
|
tmpDir = makeProject({ api_coverage_gate: true });
|
|
const phaseDir = makePhaseDir(tmpDir, '01-pay'); // no plans → roadmap fallback
|
|
fs.writeFileSync(
|
|
path.join(tmpDir, '.planning', 'ROADMAP.md'),
|
|
'# Roadmap\n\n### Phase 01: Pay\n\nIntegrate the Stripe API.\n',
|
|
'utf8'
|
|
);
|
|
const res = withFsThrow('readFileSync', /ROADMAP\.md$/, 'EACCES', () =>
|
|
readPhaseScope(tmpDir, phaseDir, '01'));
|
|
assert.ok(res.readError, 'an unreadable roadmap fallback must set readError, not read as absent');
|
|
});
|
|
|
|
test('a MISSING phase dir / roadmap is legitimate absence (ENOENT) → readError null', () => {
|
|
tmpDir = makeProject({ api_coverage_gate: true });
|
|
const missing = path.join(tmpDir, '.planning', 'phases', '99-does-not-exist');
|
|
const res = readPhaseScope(tmpDir, missing, '99');
|
|
assert.strictEqual(res.readError, null, 'ENOENT is absence, not a read failure — must not block');
|
|
assert.strictEqual(res.text, '');
|
|
});
|
|
});
|