/** * GSD Tools Tests - Init */ const { test, describe, beforeEach, afterEach } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('fs'); const path = require('path'); const { spawnSync } = require('node:child_process'); const { runGsdTools, cleanup, absPlanningPath, TOOLS_PATH, parseFrontmatter, captureFdSync } = require('./helpers.cjs'); const { createFixture, seedPhase } = require('./fixtures/index.cjs'); const { createTempProject, createTempDir } = require('./helpers.cjs'); const { executionContextRefs } = require('../scripts/command-contract-helpers.cjs'); const { escapeRegex } = require('../gsd-core/bin/lib/pattern.cjs'); const { GSD_TOOLS_CLI_MODERATE_TIMEOUT_MS } = require('./helpers/timeouts.cjs'); /** * #3188: write the canonical flat planning docs so an init-query "present" test * actually has the file it asserts. The emitter now returns null for * state_path / roadmap_path / requirements_path when the file is absent; tests * that exercise the present-case must therefore create the file. Phase * resolution is directory-based (findPhaseInternal) and unaffected by these. */ function writePlanningDocs(tmpDir, { state = true, roadmap = true, requirements = true } = {}) { const planning = path.join(tmpDir, '.planning'); fs.mkdirSync(planning, { recursive: true }); if (state) fs.writeFileSync(path.join(planning, 'STATE.md'), '# State\n'); if (roadmap) fs.writeFileSync(path.join(planning, 'ROADMAP.md'), '# Roadmap\n'); if (requirements) fs.writeFileSync(path.join(planning, 'REQUIREMENTS.md'), '# Requirements\n'); } describe('init commands', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: realpath the fixture root so absolute path-field // assertions (absPlanningPath comparisons below) match the code's // process.cwd()-anchored output — macOS's tmpdir is a symlink // (/var/... -> /private/var/...) that a spawned child resolves via // realpath but `createFixture()` does not. No-op on Linux (no symlink). tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); test('init execute-phase returns file paths', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan', }); // #3188: these are present-case assertions — the docs must exist on disk // or the emitter now (correctly) returns null for the *_path fields. writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.config_path, absPlanningPath(tmpDir, 'config.json')); // #2376: execute-phase.md's verify_phase_goal step reads this instead of // hardcoding '.planning/REQUIREMENTS.md' into the gsd-verifier spawn prompt. assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md')); }); test('init execute-phase respects model_overrides for executor_model', () => { seedPhase(tmpDir, '01-foundation', { '01-01-PLAN.md': '# Plan', }); fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ model_profile: 'balanced', model_overrides: { 'gsd-executor': 'openai/o4-mini' }, })); const result = runGsdTools('init execute-phase 1 --raw', tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.executor_model, 'openai/o4-mini', 'model_overrides["gsd-executor"] must take precedence over profile'); }); test('init execute-phase respects model_overrides when resolve_model_ids is omit', () => { seedPhase(tmpDir, '01-foundation', { '01-01-PLAN.md': '# Plan', }); fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ resolve_model_ids: 'omit', model_overrides: { 'gsd-executor': 'openai/o4-mini' }, })); const result = runGsdTools('init execute-phase 1 --raw', tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.executor_model, 'openai/o4-mini', 'model_overrides must take precedence even when resolve_model_ids is omit'); }); test('init plan-phase returns file paths', () => { seedPhase(tmpDir, '03-api', { '03-CONTEXT.md': '# Phase Context', '03-RESEARCH.md': '# Research Findings', '03-VERIFICATION.md': '# Verification', '03-UAT.md': '# UAT', }); // #3188: present-case assertions — create the planning docs the emitter keys on. writePlanningDocs(tmpDir); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md')); assert.strictEqual(output.context_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-CONTEXT.md')); assert.strictEqual(output.research_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-RESEARCH.md')); assert.strictEqual(output.verification_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-VERIFICATION.md')); assert.strictEqual(output.uat_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-UAT.md')); }); test('#3511-class: init manager has_context/has_research ignore another phase\'s misplaced artifact', () => { writePlanningDocs(tmpDir); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## Progress', '', '- [ ] **Phase 1: Setup**', '- [ ] **Phase 2: API**', '', '### Phase 1: Setup', '', '**Goal:** Build the foundation.', '', '### Phase 2: API', '', '**Goal:** Build the API.', '', ].join('\n'), ); seedPhase(tmpDir, '01-setup', {}); // Phase 02's directory holds ONLY a stray artifact whose filename token // ("01-") belongs to phase 01, not to this directory's own phase (02). seedPhase(tmpDir, '02-api', { '01-RESEARCH.md': '# Research for phase 01', '01-CONTEXT.md': '# Context for phase 01', }); const result = runGsdTools('init manager', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); const p2 = output.phases.find((p) => p.number === '2'); assert.strictEqual(p2.has_research, false, 'phase 2 must not report has_research from a file that belongs to phase 1'); assert.strictEqual(p2.has_context, false, 'phase 2 must not report has_context from a file that belongs to phase 1'); }); test('#3511-class: init verify-work ui_phase_active ignores another phase\'s misplaced UI-SPEC file', () => { writePlanningDocs(tmpDir); // ui_phase_active is `hasActiveUiStep || hasUiSpecFile` (detectUiPhaseActive, // src/init.cts) — the `ui` capability's `workflow.ui_phase` config key // defaults to `true` (capabilities/ui/capability.json), which alone would // make `hasActiveUiStep` (and therefore the whole OR) true regardless of // which file the phase directory holds. Disabling it here isolates the // signal this test actually exercises: the misplaced-file half of the OR. fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ workflow: { ui_phase: false } }), ); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '### Phase 1: Setup', '', '**Goal:** Build the foundation.', '', '### Phase 2: API', '', '**Goal:** Build the API.', '', ].join('\n'), ); seedPhase(tmpDir, '01-setup', {}); // Phase 02's directory holds ONLY a stray artifact whose filename token // ("01-") belongs to phase 01, not to this directory's own phase (02). seedPhase(tmpDir, '02-api', { '01-UI-SPEC.md': '# UI Spec for phase 01', }); const result = runGsdTools('init verify-work 2', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.ui_phase_active, false, 'phase 2 must not report ui_phase_active from a UI-SPEC file that belongs to phase 1'); }); // #3473 F2 (companion to #3357): init plan-phase's verification_path // projector now resolves via the shared resolveVerificationFile resolver // instead of a hand-rolled `.find()` over unsorted readdir() order. The // canonical report must win over an ad-hoc -CORRECTION- worksheet // deterministically, regardless of directory-listing order. test('#3473 F2: init plan-phase resolves the canonical report over a -CORRECTION- worksheet', () => { seedPhase(tmpDir, '03-api', { '03-CORRECTION-VERIFICATION.md': '# Ad-hoc correction worksheet', '03-VERIFICATION.md': '# Verification', }); writePlanningDocs(tmpDir); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual( output.verification_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-VERIFICATION.md'), 'the canonical 03-VERIFICATION.md must win over the CORRECTION worksheet', ); }); // #3518: init plan-phase's uat_path projector must resolve via the shared // resolveUatFile resolver (phase-pinned, deterministic) instead of a // hand-rolled `.find()` over unsorted readdir() order. A stray cross-phase // UAT artifact must never become THIS phase's uat_path, on any filesystem. // The stray is listed first in the fixture (creation-order filesystems) AND // sorts before the phase's own file (lexicographic-order filesystems), so // the pre-fix readdir pick loses on both ordering families. test('#3518: init plan-phase uat_path is phase-pinned — a stray cross-phase -UAT.md must not win', () => { seedPhase(tmpDir, '03-api', { '02-UAT.md': '# Stray cross-phase UAT artifact (belongs to phase 02)', '03-UAT.md': '# UAT', }); writePlanningDocs(tmpDir); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual( output.uat_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-UAT.md'), 'the phase\'s own 03-UAT.md must win over the stray cross-phase 02-UAT.md', ); }); // #2056: normalizePhaseName() strips ANY [A-Z][A-Z0-9_]*- prefix as a project // code, so a foreign-prefixed workstream/task id like "MEM-01" collapsed to // "01" and resolved to the unrelated numeric Phase 01. init plan-phase must // require exact prefixed evidence (a phase dir/roadmap entry literally // carrying the foreign prefix) before accepting a numeric-fallback match. test('#2056 — init plan-phase does not collapse foreign-prefixed task IDs into numeric phases', () => { seedPhase(tmpDir, '01-stable-baseline-on-main', { '01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Stable Baseline On Main\n**Goal:** Establish baseline\n**Plans:** 1 plan\n', ); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init plan-phase MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false, 'MEM-01 must NOT resolve to numeric Phase 01'); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_number, null); }); // #2056 companion: the guard must not reject the configured project_code's // OWN prefixed phases — LKML-01 (project_code = LKML) must still resolve. test('#2056 — init plan-phase still resolves configured project-code-prefixed phases', () => { seedPhase(tmpDir, 'LKML-01-stable-baseline-on-main', { 'LKML-01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init plan-phase LKML-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'LKML-01 (own project code) must resolve'); assert.strictEqual(output.phase_dir, absPlanningPath(tmpDir, 'phases', 'LKML-01-stable-baseline-on-main')); assert.strictEqual(output.phase_number, 'LKML-01'); }); // #2056 accept-branch: a foreign-prefixed query MUST still resolve when a phase // directory literally carries that prefix (e.g. a real MEM-01-* workstream // phase). Proves the guard accepts exact-prefixed evidence, not just rejects. test('#2056 — init plan-phase resolves a real foreign-prefixed phase dir', () => { seedPhase(tmpDir, 'MEM-01-integration', { 'MEM-01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init plan-phase MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'a real MEM-01-* dir must resolve under its own prefix'); assert.strictEqual(output.phase_dir, absPlanningPath(tmpDir, 'phases', 'MEM-01-integration')); assert.strictEqual(output.phase_number, 'MEM-01'); }); // #2056 edge: with NO project_code configured, any prefixed query is foreign // and must NOT collapse to a numeric phase. Pins the strict default. test('#2056 — init plan-phase treats prefixed queries as foreign when no project_code is configured', () => { seedPhase(tmpDir, '01-stable-baseline-on-main', { '01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({}, null, 2), ); const result = runGsdTools('init plan-phase MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false, 'with no project_code, MEM-01 must not resolve to numeric Phase 01'); assert.strictEqual(output.phase_number, null); }); // #2104: the #2056 guard must also cover init execute-phase, verify-work, // and phase-op — all three had unguarded findPhaseInternal/getRoadmapPhaseInternal // calls that collapsed foreign prefixes (MEM-01 → 01) to numeric phases. test('#2104 — init execute-phase does not collapse foreign-prefixed task IDs', () => { seedPhase(tmpDir, '01-stable-baseline-on-main', { '01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Stable Baseline On Main\n**Goal:** Establish baseline\n**Plans:** 1 plan\n', ); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init execute-phase MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false, 'MEM-01 must NOT resolve to numeric Phase 01'); assert.strictEqual(output.phase_number, null); }); test('#2104 — init verify-work does not collapse foreign-prefixed task IDs', () => { seedPhase(tmpDir, '01-stable-baseline-on-main', { '01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Stable Baseline On Main\n**Goal:** Establish baseline\n**Plans:** 1 plan\n', ); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init verify-work MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false, 'MEM-01 must NOT resolve to numeric Phase 01'); }); // #2104 accept-branch: a real foreign-prefixed phase dir MUST still resolve // through the now-guarded commands, proving the guard narrows but does not block. test('#2104 — init execute-phase resolves a real foreign-prefixed phase dir', () => { seedPhase(tmpDir, 'MEM-01-integration', { 'MEM-01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init execute-phase MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'a real MEM-01-* dir must resolve under its own prefix'); assert.strictEqual(output.phase_dir, absPlanningPath(tmpDir, 'phases', 'MEM-01-integration')); }); test('#2104 — init verify-work resolves a real foreign-prefixed phase dir', () => { seedPhase(tmpDir, 'MEM-01-integration', { 'MEM-01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init verify-work MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'a real MEM-01-* dir must resolve under its own prefix'); }); test('#2104 — init phase-op does not collapse foreign-prefixed task IDs', () => { seedPhase(tmpDir, '01-stable-baseline-on-main', { '01-CONTEXT.md': '# Phase Context', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Stable Baseline On Main\n**Goal:** Establish baseline\n**Plans:** 1 plan\n', ); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'LKML' }, null, 2), ); const result = runGsdTools('init phase-op MEM-01', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false, 'MEM-01 must NOT resolve to numeric Phase 01'); assert.strictEqual(output.phase_number, null); }); test('init plan-phase exposes text_mode from config (defaults false)', () => { const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.text_mode, false, 'text_mode should default to false'); }); test('init plan-phase exposes text_mode true when set in config', () => { const configPath = path.join(tmpDir, '.planning', 'config.json'); const existing = fs.existsSync(configPath) ? JSON.parse(fs.readFileSync(configPath, 'utf8')) : {}; const config = { ...existing, workflow: { ...(existing.workflow || {}), text_mode: true } }; fs.writeFileSync(configPath, JSON.stringify(config, null, 2)); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.text_mode, true, 'text_mode should reflect config value'); }); test('init progress returns file paths', () => { const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md')); assert.strictEqual(output.config_path, absPlanningPath(tmpDir, 'config.json')); }); test('init phase-op returns core and optional phase file paths', () => { seedPhase(tmpDir, '03-api', { '03-CONTEXT.md': '# Phase Context', '03-RESEARCH.md': '# Research', '03-VERIFICATION.md': '# Verification', '03-UAT.md': '# UAT', }); // #3188: present-case assertions — create the planning docs the emitter keys on. writePlanningDocs(tmpDir); const result = runGsdTools('init phase-op 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md')); assert.strictEqual(output.context_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-CONTEXT.md')); assert.strictEqual(output.research_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-RESEARCH.md')); assert.strictEqual(output.verification_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-VERIFICATION.md')); assert.strictEqual(output.uat_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-UAT.md')); }); // #3473 F2 (companion to #3357): init phase-op's verification_path projector // — the second of the two now-fixed init.cts sites — same regression as // the plan-phase test above. test('#3473 F2: init phase-op resolves the canonical report over a -CORRECTION- worksheet', () => { seedPhase(tmpDir, '03-api', { '03-CORRECTION-VERIFICATION.md': '# Ad-hoc correction worksheet', '03-VERIFICATION.md': '# Verification', }); writePlanningDocs(tmpDir); const result = runGsdTools('init phase-op 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual( output.verification_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-VERIFICATION.md'), 'the canonical 03-VERIFICATION.md must win over the CORRECTION worksheet', ); }); // #3518: init phase-op's uat_path projector — the second of the two // single-pick UAT sites in src/init.cts — same phase-pinned contract as // the plan-phase test above. Stray created first AND sorting first, so the // pre-fix readdir-order pick deterministically chose it on both ordering // families. test('#3518: init phase-op uat_path is phase-pinned — a stray cross-phase -UAT.md must not win', () => { seedPhase(tmpDir, '03-api', { '02-UAT.md': '# Stray cross-phase UAT artifact (belongs to phase 02)', '03-UAT.md': '# UAT', }); writePlanningDocs(tmpDir); const result = runGsdTools('init phase-op 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual( output.uat_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-UAT.md'), 'the phase\'s own 03-UAT.md must win over the stray cross-phase 02-UAT.md', ); }); test('init plan-phase detects has_reviews and reviews_path when REVIEWS.md exists', () => { seedPhase(tmpDir, '03-api', { '03-REVIEWS.md': '# Cross-AI Reviews', }); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_reviews, true); assert.strictEqual(output.reviews_path, absPlanningPath(tmpDir, 'phases', '03-api', '03-REVIEWS.md')); }); test('init plan-phase omits optional paths if files missing', () => { seedPhase(tmpDir, '03-api'); const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.context_path, undefined); assert.strictEqual(output.research_path, undefined); assert.strictEqual(output.reviews_path, undefined); assert.strictEqual(output.has_reviews, false); }); // ── phase_req_ids extraction (fix for #684) ────────────────────────────── test('init plan-phase extracts phase_req_ids from ROADMAP', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Requirements**: CP-01, CP-02, CP-03\n**Plans:** 0 plans\n` ); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, 'CP-01, CP-02, CP-03'); }); test('init plan-phase strips brackets from phase_req_ids', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Requirements**: [CP-01, CP-02]\n**Plans:** 0 plans\n` ); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, 'CP-01, CP-02'); }); test('init plan-phase returns null phase_req_ids when Requirements line is absent', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Plans:** 0 plans\n` ); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, null); }); test('init plan-phase returns null phase_req_ids when ROADMAP is absent', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, null); }); test('init execute-phase extracts phase_req_ids from ROADMAP', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Requirements**: EX-01, EX-02\n**Plans:** 1 plans\n` ); const result = runGsdTools('init execute-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, 'EX-01, EX-02'); }); test('init plan-phase returns null phase_req_ids when value is TBD', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Requirements**: TBD\n**Plans:** 0 plans\n` ); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, null, 'TBD placeholder should return null'); }); // ── #2769: Requirements header bold/colon variants ─────────────────────── // The visible label "**Requirements:**" (colon INSIDE bold) and // "**Requirements**:" (colon OUTSIDE bold) render identically. The parser // must accept both, plus the spaced "**Requirements** :" variant and the // plain "## Requirements" header form (used in REQUIREMENTS.md), so phase // metadata is robust to authoring style. const headerVariants = [ { name: 'colon inside bold (**Requirements:**)', header: '**Requirements:** RV-01, RV-02' }, { name: 'colon outside bold (**Requirements**:)', header: '**Requirements**: RV-01, RV-02' }, { name: 'space before colon (**Requirements** :)', header: '**Requirements** : RV-01, RV-02' }, ]; for (const variant of headerVariants) { test(`init plan-phase parses Requirements with ${variant.name}`, () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '03-api'), { recursive: true }); const roadmap = [ '# Roadmap', '', '### Phase 3: API', '**Goal:** Build API', variant.header, '**Plans:** 0 plans', '', ].join('\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), roadmap); const result = runGsdTools('init plan-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, 'RV-01, RV-02', `phase_req_ids must be parsed when header uses "${variant.header}"`); }); test(`init execute-phase parses Requirements with ${variant.name}`, () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan', }); const roadmap = [ '# Roadmap', '', '### Phase 3: API', '**Goal:** Build API', variant.header, '**Plans:** 1 plans', '', ].join('\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), roadmap); const result = runGsdTools('init execute-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, 'RV-01, RV-02', `phase_req_ids must be parsed when header uses "${variant.header}"`); }); } test('init execute-phase returns null phase_req_ids when Requirements line is absent', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Plans:** 1 plans\n` ); const result = runGsdTools('init execute-phase 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_req_ids, null); }); test('init plan-phase resolves phase_req_ids from flat Phase Details after active milestone heading', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '11-second-active-phase'), { recursive: true }); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'milestone: v0.4.0', 'current_phase: 11', '---', '', ].join('\n')); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap: Example', '', '## Milestones', '', '- ✅ **v0.3.0 Foundations** - Phases 1-9 (shipped 2026-01-01)', '- 🚧 **v0.4.0 Feature Work** - Phases 10-11 (in progress)', '', '## Phases', '', '
', '✅ v0.3.0 Foundations (Phases 1-9) - SHIPPED 2026-01-01', '', '- [x] **Phase 1: Bootstrap**', '', '
', '', '### 🚧 v0.4.0 Feature Work (Active)', '', '**Milestone Goal:** Deliver the feature set.', '', '- [ ] **Phase 10: First Active Phase**', '- [ ] **Phase 11: Second Active Phase**', '', '### 📋 v0.5+ (Planned)', '', '## Phase Details', '', '### Phase 10: First Active Phase', '**Goal**: Build the first piece.', '**Requirements**: REQ-01', '', '### Phase 11: Second Active Phase', '**Goal**: Build the second piece.', '**Requirements**: REQ-02, REQ-03', '', '## Progress', '', ].join('\n')); const result = runGsdTools('init plan-phase 11', tmpDir); assert.ok(result.success, `init plan-phase failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_req_ids, 'REQ-02, REQ-03'); }); test('init execute-phase resolves phase_req_ids from flat Phase Details after active milestone heading', () => { seedPhase(tmpDir, '11-second-active-phase', { '11-01-PLAN.md': '# Plan', }); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'milestone: v0.4.0', 'current_phase: 11', '---', '', ].join('\n')); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap: Example', '', '## Phases', '', '### 🚧 v0.4.0 Feature Work (Active)', '', '- [ ] **Phase 10: First Active Phase**', '- [ ] **Phase 11: Second Active Phase**', '', '### 📋 v0.5+ (Planned)', '', '## Phase Details', '', '### Phase 10: First Active Phase', '**Goal**: Build the first piece.', '**Requirements**: REQ-01', '', '### Phase 11: Second Active Phase', '**Goal**: Build the second piece.', '**Requirements**: REQ-02, REQ-03', '', ].join('\n')); const result = runGsdTools('init execute-phase 11', tmpDir); assert.ok(result.success, `init execute-phase failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_req_ids, 'REQ-02, REQ-03'); }); test('init plan-phase prefers real phase details outside fenced examples and ignores backlog sentinels (#1588)', () => { const projectDir = createTempProject('init-1588-'); try { fs.writeFileSync( path.join(projectDir, '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'milestone: v1.1', 'status: planning', '---', '', ].join('\n') ); fs.writeFileSync( path.join(projectDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '
', 'v1.1 Current (Phases 8-9) - PLANNED', '', '- [ ] **Phase 9: Real Phase**', '', '
', '', '## Phase Details', '', '```markdown', '### Phase 9: Fenced Example Phase', '**Goal:** This example must not be treated as roadmap structure.', '```', '', '### Phase 9: Real Phase', '**Goal:** Use the real phase details outside the fenced block.', '**Requirements:** REAL-01', '', '## Backlog', '', '### Phase 999.1: Backlog Thing', '**Goal:** Future backlog item.', '', ].join('\n') ); const phase9 = runGsdTools('init plan-phase 9', projectDir); assert.ok(phase9.success, `init plan-phase 9 failed: ${phase9.error}`); const phase9Output = JSON.parse(phase9.output); assert.equal(phase9Output.phase_name, 'Real Phase'); assert.equal(phase9Output.phase_req_ids, 'REAL-01'); const backlog = runGsdTools('init plan-phase 999.1', projectDir); assert.ok(backlog.success, `init plan-phase 999.1 failed: ${backlog.error}`); const backlogOutput = JSON.parse(backlog.output); assert.equal(backlogOutput.phase_found, false); } finally { cleanup(projectDir); } }); test('init phase-op resolves a details-summary milestone phase from later flat Phase Details', () => { fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), [ 'milestone: v1.11', 'current_phase: 86', '', ].join('\n')); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## Phases', '
', '🔄 v1.11 A06 (Phases 86-91) — IN PROGRESS', '', '- [ ] **Phase 86: Details Block Regression** — Parser should resolve this (DATA-01)', '- [ ] **Phase 87: Other Work** — Later phase', '
', '', '## Phase Details', '', '### Phase 86: Details Block Regression', '**Goal**: Resolve phase details after collapsed milestone block', '**Requirements**: DATA-01', '', '### Phase 87: Other Work', '**Goal**: Not relevant', '', ].join('\n')); const result = runGsdTools('init phase-op 86', tmpDir); assert.ok(result.success, `init phase-op failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_name, 'Details Block Regression'); }); // ─── #3865: --phase alias for the positional phase token ────────────────── test('#3865: init execute-phase accepts --phase as the positional alias', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'execute-phase', '--phase', '03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, '--phase 03 must resolve the phase, not answer phase_found:false'); assert.strictEqual(output.plan_count, 1, 'the on-disk plan must be counted — the reported incident had 7 plans read as 0'); }); test('#3865: init execute-phase accepts the --phase=N form', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'execute-phase', '--phase=03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); assert.strictEqual(JSON.parse(result.output).phase_found, true); }); test('#3865: the positional form still works (control)', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'execute-phase', '03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); assert.strictEqual(JSON.parse(result.output).phase_found, true); }); test('#3865: init plan-phase accepts --phase ', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'plan-phase', '--phase', '03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); assert.strictEqual(JSON.parse(result.output).phase_found, true); }); test('#3865: init verify-work accepts --phase ', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'verify-work', '--phase', '03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); assert.strictEqual(JSON.parse(result.output).phase_found, true); }); test('#3865: init code-review accepts --phase ', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'code-review', '--phase', '03'], tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); assert.strictEqual(JSON.parse(result.output).phase_found, true); }); test('#3865: --phase with no value is a usage error, never a silent phase_found:false', () => { seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); writePlanningDocs(tmpDir); const result = runGsdTools(['init', 'execute-phase', '--phase'], tmpDir); assert.strictEqual(result.success, false, 'a valueless --phase must exit non-zero with a diagnostic'); assert.ok( (result.error || '').includes('--phase'), `the diagnostic must name the flag; got: ${result.error}` ); }); }); // ───────────────────────────────────────────────────────────────────────────── // #3188: init execute-phase / plan-phase / phase-op must return null for // state_path / roadmap_path / requirements_path when the planning doc is // absent — matching the contract the conditional sibling fields (patterns_path, // context_path, …) already honour, and that ultraplan-phase.md:104 gates on. // The WRITING emitters (new-project / new-milestone / ingest-docs) are // intentionally NOT changed and keep returning a non-null write-target path. // ───────────────────────────────────────────────────────────────────────────── describe('#3188 — init query path fields are null when the planning file is absent', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: realpath so absPlanningPath matches process.cwd()-anchored output. tmpDir = fs.realpathSync(createFixture()); seedPhase(tmpDir, '03-api', { '03-01-PLAN.md': '# Plan' }); }); afterEach(() => { cleanup(tmpDir); }); // All three READING (projection) sites share the identical field group; the // absent/present boundary must hold uniformly across them. const COMMANDS = [ ['init execute-phase', 'init execute-phase 03'], ['init plan-phase', 'init plan-phase 03'], ['init phase-op', 'init phase-op 03'], ]; for (const [label, argv] of COMMANDS) { test(`${label}: state_path / roadmap_path / requirements_path are null when the docs are absent`, () => { // No STATE.md / ROADMAP.md / REQUIREMENTS.md written. const result = runGsdTools(argv, tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, null, 'state_path must be null when STATE.md is absent'); assert.strictEqual(output.roadmap_path, null, 'roadmap_path must be null when ROADMAP.md is absent'); assert.strictEqual(output.requirements_path, null, 'requirements_path must be null when REQUIREMENTS.md is absent'); }); test(`${label}: state_path / roadmap_path / requirements_path are absolute when the docs exist`, () => { writePlanningDocs(tmpDir); const result = runGsdTools(argv, tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md')); }); } }); // ───────────────────────────────────────────────────────────────────────────── // ROADMAP fallback for init plan-phase / execute-phase / verify-work (#1238) // ───────────────────────────────────────────────────────────────────────────── describe('init commands ROADMAP fallback when phase directory does not exist (#1238)', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Foundation Setup\n**Goal:** Bootstrap project\n**Requirements**: R-01, R-02\n**Plans:** TBD\n' ); }); afterEach(() => { cleanup(tmpDir); }); test('init plan-phase falls back to ROADMAP when no phase directory exists', () => { const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'phase_found should be true from ROADMAP fallback'); assert.strictEqual(output.phase_dir, null, 'phase_dir should be null (no directory yet)'); assert.strictEqual(output.phase_number, '1'); assert.strictEqual(output.phase_name, 'Foundation Setup'); assert.strictEqual(output.phase_slug, 'foundation-setup'); assert.strictEqual(output.padded_phase, '01'); }); test('init execute-phase falls back to ROADMAP when no phase directory exists', () => { const result = runGsdTools('init execute-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'phase_found should be true from ROADMAP fallback'); assert.strictEqual(output.phase_dir, null, 'phase_dir should be null (no directory yet)'); assert.strictEqual(output.phase_number, '1'); assert.strictEqual(output.phase_name, 'Foundation Setup'); assert.strictEqual(output.phase_slug, 'foundation-setup'); assert.strictEqual(output.phase_req_ids, 'R-01, R-02'); // #4748: the ROADMAP fallback hands the workflow an UNPADDED number, and // execute-phase.md used to re-pad it with `printf "%02d"` — which cannot // pad a letter id and reads an already-padded `08` as octal. The // normalized form is emitted here, like the plan-phase sibling above. assert.strictEqual(output.padded_phase, '01'); }); test('#4748 — init execute-phase emits padded_phase for a letter-suffixed phase, from a directory and from the ROADMAP fallback', () => { fs.appendFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '\n### Phase 3A: Letter Variant\n**Goal:** On disk\n\n### Phase 4B: Roadmap Only\n**Goal:** No directory yet\n', ); seedPhase(tmpDir, '03A-letter-variant', { '03A-01-PLAN.md': '# Plan' }); const onDisk = JSON.parse(runGsdTools('init execute-phase 3A', tmpDir).output); assert.strictEqual(onDisk.phase_found, true); assert.strictEqual(onDisk.phase_number, '03A'); assert.strictEqual(onDisk.padded_phase, '03A'); const roadmapOnly = JSON.parse(runGsdTools('init execute-phase 4B', tmpDir).output); assert.strictEqual(roadmapOnly.phase_found, true); assert.strictEqual(roadmapOnly.phase_dir, null); assert.strictEqual(roadmapOnly.phase_number, '4B'); assert.strictEqual(roadmapOnly.padded_phase, '04B'); const missing = JSON.parse(runGsdTools('init execute-phase 9Z', tmpDir).output); assert.strictEqual(missing.phase_found, false); assert.strictEqual(missing.padded_phase, null); }); test('init verify-work falls back to ROADMAP when no phase directory exists', () => { const result = runGsdTools('init verify-work 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'phase_found should be true from ROADMAP fallback'); assert.strictEqual(output.phase_dir, null, 'phase_dir should be null (no directory yet)'); assert.strictEqual(output.phase_number, '1'); assert.strictEqual(output.phase_name, 'Foundation Setup'); }); test('init plan-phase returns phase_found false when neither directory nor ROADMAP entry exists', () => { const result = runGsdTools('init plan-phase 99', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_number, null); assert.strictEqual(output.phase_name, null); }); test('init plan-phase prefers disk directory over ROADMAP fallback', () => { seedPhase(tmpDir, '01-foundation-setup', { '01-01-PLAN.md': '# Plan', }); const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.ok(output.phase_dir !== null, 'phase_dir should point to disk directory'); assert.ok(output.phase_dir.includes('01-foundation-setup')); assert.strictEqual(output.plan_count, 1); }); }); // ───────────────────────────────────────────────────────────────────────────── // init ignores archived phases from prior milestones that share a phase number // ───────────────────────────────────────────────────────────────────────────── describe('init commands ignore archived phases from prior milestones sharing a number', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); // Current milestone ROADMAP has Phase 2 but no disk directory yet fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# v2.0 Roadmap\n\n### Phase 2: New Feature\n**Goal:** New v2.0 feature\n**Requirements**: NEW-01, NEW-02\n**Plans:** TBD\n' ); // Prior milestone archive has a shipped Phase 2 with different slug and artifacts const archivedDir = path.join(tmpDir, '.planning', 'milestones', 'v1.0-phases', '02-old-feature'); fs.mkdirSync(archivedDir, { recursive: true }); fs.writeFileSync(path.join(archivedDir, '2-CONTEXT.md'), '# OLD v1.0 Phase 2 context'); fs.writeFileSync(path.join(archivedDir, '2-RESEARCH.md'), '# OLD v1.0 Phase 2 research'); }); afterEach(() => { cleanup(tmpDir); }); test('init plan-phase prefers current ROADMAP entry over archived v1.0 phase of same number', () => { const result = runGsdTools('init plan-phase 2', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_name, 'New Feature', 'phase_name must come from current ROADMAP.md, not archived v1.0'); assert.strictEqual(output.phase_slug, 'new-feature'); assert.strictEqual(output.phase_dir, null, 'phase_dir must be null — current milestone has no directory yet'); assert.strictEqual(output.has_context, false, 'has_context must not inherit archived v1.0 artifacts'); assert.strictEqual(output.has_research, false, 'has_research must not inherit archived v1.0 artifacts'); assert.ok(!output.context_path, 'context_path must not point at archived v1.0 file'); assert.ok(!output.research_path, 'research_path must not point at archived v1.0 file'); assert.strictEqual(output.phase_req_ids, 'NEW-01, NEW-02'); }); test('init execute-phase prefers current ROADMAP entry over archived v1.0 phase of same number', () => { const result = runGsdTools('init execute-phase 2', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_name, 'New Feature'); assert.strictEqual(output.phase_slug, 'new-feature'); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_req_ids, 'NEW-01, NEW-02'); }); test('init verify-work prefers current ROADMAP entry over archived v1.0 phase of same number', () => { const result = runGsdTools('init verify-work 2', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_name, 'New Feature'); assert.strictEqual(output.phase_dir, null); }); }); // ───────────────────────────────────────────────────────────────────────────── // Bug #2391: zero-padded phase numbers must not bypass archived-phase guard // ───────────────────────────────────────────────────────────────────────────── describe('init plan-phase zero-padded phase number (bug #2391)', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); // Current milestone ROADMAP has Phase 3 (unpadded heading) fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# v2.0 Roadmap\n\n### Phase 3: Rotation Engine + Availability\n**Goal**: Rotation\n**Requirements**: ROTA-01, ROTA-02\n**Plans:** TBD\n' ); // Prior milestone archive has a shipped Phase 3 with different content const archivedDir = path.join(tmpDir, '.planning', 'milestones', 'v1.0-phases', '03-plant-collection-and-rooms'); fs.mkdirSync(archivedDir, { recursive: true }); fs.writeFileSync(path.join(archivedDir, '03-CONTEXT.md'), '# OLD v1.0 Phase 3 context'); fs.writeFileSync(path.join(archivedDir, '03-RESEARCH.md'), '# OLD v1.0 Phase 3 research'); }); afterEach(() => { cleanup(tmpDir); }); test('zero-padded "03" returns current ROADMAP phase, not archived v1.0 phase', () => { const result = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_name, 'Rotation Engine + Availability', 'phase_name must come from current ROADMAP.md, not the archived v1.0 phase'); assert.strictEqual(output.phase_dir, null, 'phase_dir must be null — current milestone has no directory yet'); assert.strictEqual(output.has_context, false, 'has_context must not inherit archived v1.0 artifacts'); assert.strictEqual(output.has_research, false, 'has_research must not inherit archived v1.0 artifacts'); assert.ok(!output.context_path || !output.context_path.includes('v1.0'), 'context_path must not point at archived v1.0 file'); assert.strictEqual(output.phase_req_ids, 'ROTA-01, ROTA-02'); }); test('unpadded "3" and zero-padded "03" return identical phase identity', () => { const result3 = runGsdTools('init plan-phase 3', tmpDir); const result03 = runGsdTools('init plan-phase 03', tmpDir); assert.ok(result3.success && result03.success, 'both commands must succeed'); const out3 = JSON.parse(result3.output); const out03 = JSON.parse(result03.output); assert.strictEqual(out03.phase_name, out3.phase_name, 'phase_name must be identical regardless of padding'); assert.strictEqual(out03.phase_slug, out3.phase_slug, 'phase_slug must be identical regardless of padding'); assert.strictEqual(out03.phase_req_ids, out3.phase_req_ids, 'phase_req_ids must be identical regardless of padding'); }); // ── #904: branch_name must use normalized (stripped + zero-padded) phase number ── // When project_code is set (e.g. "CK") the phase directory is prefixed: // "CK-01-foundation". extractPhaseToken returns "CK-01" as phase_number. // branch_name must call normalizePhaseName so it strips the prefix and zero-pads, // producing "gsd/phase-01-foundation" rather than "gsd/phase-CK-01-foundation". test('branch_name uses normalized phase number when project_code prefixes phase dir (#904)', () => { seedPhase(tmpDir, 'CK-01-foundation', { 'CK-01-01-PLAN.md': '# Plan', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'CK', git: { branching_strategy: 'phase', phase_branch_template: 'gsd/phase-{phase}-{slug}', }, }, null, 2) ); const result = runGsdTools('init execute-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // branch_name must use the normalized phase number, not the raw "CK-01" token assert.strictEqual(output.branch_name, 'gsd/phase-01-foundation', 'branch_name must use normalized phase number (strip project_code prefix, zero-pad), not raw phase_number'); }); // #4126: an undeliverable phase_slug (a bare phase directory with no slug // remainder, e.g. seeded here as literally "01") must never produce a // branch name ending in the literal word "phase" — routed through the // shared renderPhaseBranchName owner (src/phase-id.cts) so this and // commands.cts's cmdCommit phase-branching arm can never diverge on the // fallback. test('#4126: an undeliverable phase_slug drops the token instead of substituting the literal "phase"', () => { seedPhase(tmpDir, '01', { '01-01-PLAN.md': '# Plan', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ git: { branching_strategy: 'phase', phase_branch_template: 'gsd/phase-{phase}-{slug}', }, }, null, 2) ); const result = runGsdTools('init execute-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_slug, null, 'precondition: phase_slug must be undeliverable'); assert.ok(!output.branch_name.endsWith('-phase'), `branch_name must not end in the literal "-phase": ${output.branch_name}`); assert.strictEqual(output.branch_name, 'gsd/phase-01', 'expected the {slug} token to be dropped cleanly'); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitTodos (INIT-01) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitTodos', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); test('empty pending dir returns zero count', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'todos', 'pending'), { recursive: true }); const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 0); assert.deepStrictEqual(output.todos, []); assert.strictEqual(output.pending_dir_exists, true); }); test('missing pending dir returns zero count', () => { const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 0); assert.deepStrictEqual(output.todos, []); assert.strictEqual(output.pending_dir_exists, false); }); test('multiple todos with fields are read correctly', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'task-1.md'), 'title: Fix bug\narea: backend\ncreated: 2026-02-25'); fs.writeFileSync(path.join(pendingDir, 'task-2.md'), 'title: Add feature\narea: frontend\ncreated: 2026-02-24'); fs.writeFileSync(path.join(pendingDir, 'task-3.md'), 'title: Write docs\narea: backend\ncreated: 2026-02-23'); const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 3); assert.strictEqual(output.todos.length, 3); const task1 = output.todos.find(t => t.file === 'task-1.md'); assert.ok(task1, 'task-1.md should be in todos'); assert.strictEqual(task1.title, 'Fix bug'); assert.strictEqual(task1.area, 'backend'); assert.strictEqual(task1.created, '2026-02-25'); assert.strictEqual(task1.path, absPlanningPath(tmpDir, 'todos', 'pending', 'task-1.md')); }); // ── #2337: init todos must surface severity too, in parity with list-todos ── test('surfaces severity when present, omits the key when absent (#2337)', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'tagged.md'), 'title: Crash on save\narea: core\ncreated: 2026-02-25\nseverity: blocker'); fs.writeFileSync(path.join(pendingDir, 'untagged.md'), 'title: Old todo\narea: docs\ncreated: 2026-02-24'); const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); const tagged = output.todos.find(t => t.file === 'tagged.md'); const untagged = output.todos.find(t => t.file === 'untagged.md'); assert.ok(tagged && untagged, 'both todos should be present'); assert.strictEqual(tagged.severity, 'blocker', 'severity surfaced verbatim when present'); assert.ok(!('severity' in untagged), 'severity key ABSENT (backward compatible) for a todo with no severity line'); }); test('area filter returns only matching todos', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'task-1.md'), 'title: Fix bug\narea: backend\ncreated: 2026-02-25'); fs.writeFileSync(path.join(pendingDir, 'task-2.md'), 'title: Add feature\narea: frontend\ncreated: 2026-02-24'); fs.writeFileSync(path.join(pendingDir, 'task-3.md'), 'title: Write docs\narea: backend\ncreated: 2026-02-23'); const result = runGsdTools('init todos backend', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 2); assert.strictEqual(output.area_filter, 'backend'); for (const todo of output.todos) { assert.strictEqual(todo.area, 'backend'); } }); test('area filter miss returns zero count', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'task-1.md'), 'title: Fix bug\narea: backend\ncreated: 2026-02-25'); const result = runGsdTools('init todos nonexistent', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 0); assert.strictEqual(output.area_filter, 'nonexistent'); }); test('malformed file uses defaults', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'broken.md'), 'some random content without fields'); const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 1); const todo = output.todos[0]; assert.strictEqual(todo.title, 'Untitled'); assert.strictEqual(todo.area, 'general'); assert.strictEqual(todo.created, 'unknown'); }); test('non-md files are ignored', () => { const pendingDir = path.join(tmpDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'task.md'), 'title: Real task\narea: dev\ncreated: 2026-01-01'); fs.writeFileSync(path.join(pendingDir, 'notes.txt'), 'title: Not a task\narea: dev\ncreated: 2026-01-01'); const result = runGsdTools('init todos', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.todo_count, 1); assert.strictEqual(output.todos[0].file, 'task.md'); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitMilestoneOp (INIT-02) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitMilestoneOp', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('no phase directories returns zero counts', () => { const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 0); assert.strictEqual(output.completed_phases, 0); assert.strictEqual(output.all_phases_complete, false); }); test('multiple phases with no summaries', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); const phase2 = path.join(tmpDir, '.planning', 'phases', '02-api'); fs.mkdirSync(phase1, { recursive: true }); fs.mkdirSync(phase2, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase2, '02-01-PLAN.md'), '# Plan'); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 2); assert.strictEqual(output.completed_phases, 0); assert.strictEqual(output.all_phases_complete, false); }); test('mix of complete and incomplete phases', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); const phase2 = path.join(tmpDir, '.planning', 'phases', '02-api'); fs.mkdirSync(phase1, { recursive: true }); fs.mkdirSync(phase2, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); fs.writeFileSync(path.join(phase2, '02-01-PLAN.md'), '# Plan'); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 2); assert.strictEqual(output.completed_phases, 1); assert.strictEqual(output.all_phases_complete, false); }); test('all phases complete', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 1); assert.strictEqual(output.completed_phases, 1); assert.strictEqual(output.all_phases_complete, true); }); test('project_code-prefixed phase directories count as completed milestone phases (#1836)', () => { seedPhase(tmpDir, 'PROJ-01-setup', { 'PROJ-01-01-PLAN.md': '# Plan', 'PROJ-01-01-SUMMARY.md': '# Summary', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'PROJ' }, null, 2) ); fs.writeFileSync( path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'milestone: v1.0.0', 'milestone_name: Test Milestone', 'status: executing', '---', '', ].join('\n') ); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## 🚧 v1.0.0 Test Milestone', '### Phase 1: Setup', '', ].join('\n') ); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 1); assert.strictEqual(output.completed_phases, 1); assert.strictEqual(output.all_phases_complete, true); }); test('backlog 999.x headings do not inflate milestone phase counts (#1838)', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); fs.writeFileSync( path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'milestone: v1.0.0', 'milestone_name: Test Milestone', 'status: completed', '---', '', ].join('\n') ); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## 🚧 v1.0.0 Test Milestone', '### Phase 1: Setup', '', '## Backlog', '### Phase 999.1: Deferred Idea', '### Phase 999.2: Another Deferred Idea', '', ].join('\n') ); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 1); assert.strictEqual(output.completed_phases, 1); assert.strictEqual(output.all_phases_complete, true); }); test('archive directory scanning', () => { fs.mkdirSync(path.join(tmpDir, '.planning', 'archive', 'v1.0'), { recursive: true }); fs.mkdirSync(path.join(tmpDir, '.planning', 'archive', 'v0.9'), { recursive: true }); const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.archive_count, 2); assert.strictEqual(output.archived_milestones.length, 2); }); test('no archive directory returns empty', () => { const result = runGsdTools('init milestone-op', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.archive_count, 0); assert.deepStrictEqual(output.archived_milestones, []); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitPhaseOp fallback (INIT-04) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitPhaseOp fallback', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('normal path with existing directory', () => { seedPhase(tmpDir, '03-api', { '03-CONTEXT.md': '# Context', '03-01-PLAN.md': '# Plan', }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 3: API\n**Goal:** Build API\n**Plans:** 1 plans\n' ); const result = runGsdTools('init phase-op 3', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.ok(output.phase_dir.includes('03-api'), 'phase_dir should contain 03-api'); assert.strictEqual(output.has_context, true); assert.strictEqual(output.has_plans, true); }); test('fallback to ROADMAP when no directory exists', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 5: Widget Builder\n**Goal:** Build widgets\n**Plans:** TBD\n' ); const result = runGsdTools('init phase-op 5', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_slug, 'widget-builder'); assert.strictEqual(output.has_research, false); assert.strictEqual(output.has_context, false); assert.strictEqual(output.has_plans, false); }); test('fallback resolves drifted project-code-prefixed roadmap heading by bare number (#1455)', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase MANIFOLD-117: Prefixed Heading\n**Goal:** Build prefixed phase\n**Plans:** TBD\n' ); const result = runGsdTools('init phase-op 117', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_number, '117'); assert.strictEqual(output.phase_name, 'Prefixed Heading'); assert.strictEqual(output.phase_slug, 'prefixed-heading'); }); test('fallback resolves drifted project-code-prefixed roadmap heading by prefixed ID (#1455)', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase MANIFOLD-117: Prefixed Heading\n**Goal:** Build prefixed phase\n**Plans:** TBD\n' ); const result = runGsdTools('init phase-op MANIFOLD-117', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_number, 'MANIFOLD-117'); assert.strictEqual(output.phase_name, 'Prefixed Heading'); assert.strictEqual(output.phase_slug, 'prefixed-heading'); }); test('prefers current milestone roadmap entry over archived phase with same number', () => { const archiveDir = path.join( tmpDir, '.planning', 'milestones', 'v1.2-phases', '02-event-parser-and-queue-schema' ); fs.mkdirSync(archiveDir, { recursive: true }); fs.writeFileSync(path.join(archiveDir, '02-CONTEXT.md'), '# Archived context'); fs.writeFileSync(path.join(archiveDir, '02-01-PLAN.md'), '# Archived plan'); fs.writeFileSync(path.join(archiveDir, '02-VERIFICATION.md'), '# Archived verification'); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), `# Roadmap
Shipped milestone v1.2 ### Phase 2: Event Parser and Queue Schema **Goal:** Archived milestone work
## Milestone v1.3 Current ### Phase 2: Retry Orchestration **Goal:** Current milestone work **Plans:** TBD ` ); const result = runGsdTools('init phase-op 2', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true); assert.strictEqual(output.phase_dir, null); assert.strictEqual(output.phase_name, 'Retry Orchestration'); assert.strictEqual(output.phase_slug, 'retry-orchestration'); assert.strictEqual(output.has_context, false); assert.strictEqual(output.has_plans, false); assert.strictEqual(output.has_verification, false); }); test('neither directory nor roadmap entry returns not found', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Setup\n**Goal:** Setup project\n**Plans:** TBD\n' ); const result = runGsdTools('init phase-op 99', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, false); assert.strictEqual(output.phase_dir, null); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitProgress (INIT-03) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitProgress', () => { let tmpDir; function writePassedVerification(phaseDir, phaseToken) { fs.writeFileSync( path.join(phaseDir, `${phaseToken}-VERIFICATION.md`), ['---', 'status: passed', '---', '', '# Verification', ''].join('\n') ); } beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('no phases returns empty state', () => { const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 0); assert.deepStrictEqual(output.phases, []); assert.strictEqual(output.current_phase, null); assert.strictEqual(output.next_phase, null); assert.strictEqual(output.has_work_in_progress, false); }); test('multiple phases with mixed statuses', () => { // Phase 01: complete (has plan + summary) const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); writePassedVerification(phase1, '01'); // Phase 02: in_progress (has plan, no summary) const phase2 = path.join(tmpDir, '.planning', 'phases', '02-api'); fs.mkdirSync(phase2, { recursive: true }); fs.writeFileSync(path.join(phase2, '02-01-PLAN.md'), '# Plan'); // Phase 03: pending (no plan, no research) const phase3 = path.join(tmpDir, '.planning', 'phases', '03-ui'); fs.mkdirSync(phase3, { recursive: true }); fs.writeFileSync(path.join(phase3, '03-CONTEXT.md'), '# Context'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_count, 3); assert.strictEqual(output.completed_count, 1); assert.strictEqual(output.in_progress_count, 1); assert.strictEqual(output.has_work_in_progress, true); assert.strictEqual(output.current_phase.number, '02'); assert.strictEqual(output.current_phase.status, 'in_progress'); assert.strictEqual(output.next_phase.number, '03'); assert.strictEqual(output.next_phase.status, 'pending'); // Verify phase entries have expected structure const p1 = output.phases.find(p => p.number === '01'); assert.strictEqual(p1.status, 'complete'); assert.strictEqual(p1.plan_count, 1); assert.strictEqual(p1.summary_count, 1); }); test('researched status detected correctly', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-RESEARCH.md'), '# Research'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); const p1 = output.phases.find(p => p.number === '01'); assert.strictEqual(p1.status, 'researched'); assert.strictEqual(p1.has_research, true); assert.strictEqual(output.current_phase.number, '01'); }); test('all phases complete returns no current or next', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); writePassedVerification(phase1, '01'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.completed_count, 1); assert.strictEqual(output.current_phase, null); assert.strictEqual(output.next_phase, null); }); test('#3511-class: has_research ignores a misplaced RESEARCH.md that belongs to another phase', () => { // Phase 01 has no artifacts of its own. const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); // Phase 02's directory holds ONLY a stray artifact whose filename token // ("01-") belongs to phase 01, not to this directory's own phase (02). const phase2 = path.join(tmpDir, '.planning', 'phases', '02-api'); fs.mkdirSync(phase2, { recursive: true }); fs.writeFileSync(path.join(phase2, '01-RESEARCH.md'), '# Research for phase 01'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); const p2 = output.phases.find(p => p.number === '02'); assert.strictEqual(p2.has_research, false, 'phase 02 must not report has_research from a file that belongs to phase 01'); assert.strictEqual(p2.status, 'pending'); }); test('implementation-complete phase without passed verification remains current work', () => { const phase1 = path.join(tmpDir, '.planning', 'phases', '01-setup'); fs.mkdirSync(phase1, { recursive: true }); fs.writeFileSync(path.join(phase1, '01-01-PLAN.md'), '# Plan'); fs.writeFileSync(path.join(phase1, '01-01-SUMMARY.md'), '# Summary'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.completed_count, 0); assert.strictEqual(output.in_progress_count, 1); assert.strictEqual(output.has_work_in_progress, true); assert.strictEqual(output.current_phase.number, '01'); assert.strictEqual(output.current_phase.status, 'executed'); assert.strictEqual(output.current_phase.implementation_complete, true); assert.strictEqual(output.current_phase.verification_status, 'missing'); assert.strictEqual(output.current_phase.verification_passed, false); }); test('paused_at detected from STATE.md', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'STATE.md'), '# Project State\n\n**Paused At:** Phase 2, Task 3 — implementing auth\n' ); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok(output.paused_at, 'paused_at should be set'); assert.ok(output.paused_at.includes('Phase 2, Task 3'), 'paused_at should contain pause location'); }); test('no paused_at when STATE.md has no pause line', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'STATE.md'), '# Project State\n\nSome content without pause.\n' ); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.paused_at, null); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitQuick (INIT-05) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitQuick', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); test('init quick resolves the default researcher_model without overrides', () => { // #3936: the quick research step dispatches gsd-phase-researcher, so init // quick must resolve that agent's balanced-profile model without an override. const result = runGsdTools('init quick "Fix login bug" --raw', tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.researcher_model, 'sonnet', 'default balanced profile should resolve the research agent model'); }); test('init quick resolves researcher_model from model_overrides', () => { fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ model_profile: 'balanced', model_overrides: { 'gsd-phase-researcher': 'openai/o4-mini' }, })); const result = runGsdTools('init quick "Fix login bug" --raw', tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.researcher_model, 'openai/o4-mini', 'model_overrides["gsd-phase-researcher"] must reach init quick\'s researcher_model'); }); test('with description generates slug and task_dir with YYMMDD-xxx format', () => { const result = runGsdTools('init quick "Fix login bug"', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.branch_name, null); assert.strictEqual(output.slug, 'fix-login-bug'); assert.strictEqual(output.description, 'Fix login bug'); // quick_id must match YYMMDD-xxx (6 digits, dash, 3 base36 chars) assert.ok(/^\d{6}-[0-9a-z]{3}$/.test(output.quick_id), `quick_id should match YYMMDD-xxx, got: "${output.quick_id}"`); // task_dir must use the new ID format, absolute (anchored on tmpDir) — #2376. const quickDirAbs = absPlanningPath(tmpDir, 'quick'); assert.ok(output.task_dir.startsWith(`${quickDirAbs}/`), `task_dir should start with ${quickDirAbs}/, got: "${output.task_dir}"`); assert.ok(output.task_dir.endsWith('-fix-login-bug'), `task_dir should end with -fix-login-bug, got: "${output.task_dir}"`); const taskDirRel = output.task_dir.slice(quickDirAbs.length + 1); assert.ok(/^\d{6}-[0-9a-z]{3}-fix-login-bug$/.test(taskDirRel), `task_dir format wrong: "${output.task_dir}"`); // next_num must NOT be present assert.ok(!('next_num' in output), 'next_num should not be in output'); }); test('without description returns null slug and task_dir', () => { const result = runGsdTools('init quick', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.slug, null); assert.strictEqual(output.task_dir, null); assert.strictEqual(output.description, null); // quick_id is still generated even without description assert.ok(/^\d{6}-[0-9a-z]{3}$/.test(output.quick_id), `quick_id should match YYMMDD-xxx, got: "${output.quick_id}"`); }); test('two rapid calls produce different quick_ids (no collision within 2s window)', () => { // Both calls happen within the same test, which is sub-second. // They may or may not land in the same 2-second block. We just verify format. const r1 = runGsdTools('init quick "Task one"', tmpDir); const r2 = runGsdTools('init quick "Task two"', tmpDir); assert.ok(r1.success && r2.success); const o1 = JSON.parse(r1.output); const o2 = JSON.parse(r2.output); assert.ok(/^\d{6}-[0-9a-z]{3}$/.test(o1.quick_id)); assert.ok(/^\d{6}-[0-9a-z]{3}$/.test(o2.quick_id)); // Directories are distinct because slugs differ assert.notStrictEqual(o1.task_dir, o2.task_dir); }); test('long description truncates slug to 40 chars', () => { const result = runGsdTools('init quick "This is a very long description that should get truncated to forty characters maximum"', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok(output.slug.length <= 40, `Slug should be <= 40 chars, got ${output.slug.length}: "${output.slug}"`); }); test('returns quick branch name when quick_branch_template is configured', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ git: { quick_branch_template: 'gsd/quick-{num}-{slug}', }, }, null, 2) ); const result = runGsdTools('init quick "Fix login bug"', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok(output.branch_name, 'branch_name should be set'); assert.ok(output.branch_name.startsWith('gsd/quick-')); assert.ok(output.branch_name.endsWith('-fix-login-bug')); assert.ok(output.branch_name.includes(output.quick_id), 'branch_name should include quick_id'); }); test('uses fallback slug in quick branch name when description is omitted', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ git: { quick_branch_template: 'gsd/quick-{quick}-{slug}', }, }, null, 2) ); const result = runGsdTools('init quick', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok(output.branch_name, 'branch_name should be set'); assert.ok(output.branch_name.endsWith('-quick'), `Expected fallback slug in branch name, got "${output.branch_name}"`); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitQuick quick_id exact-value tests (#3314 — ADR-456 subprocess clock pin) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitQuick quick_id — exact value under GSD_NOW_MS+TZ pin', () => { let tmpDir; beforeEach(() => { tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); // Computes the expected quick_id independently from the SAME algorithm // documented in src/init.cts's cmdInitQuick — NOT copy-pasted from its // runtime output — so this test can actually catch a broken implementation. function expectedQuickId(ms) { const d = new Date(ms); const yy = String(d.getUTCFullYear()).slice(-2); const mm = String(d.getUTCMonth() + 1).padStart(2, '0'); const dd = String(d.getUTCDate()).padStart(2, '0'); const dateStr = yy + mm + dd; const secondsSinceMidnight = d.getUTCHours() * 3600 + d.getUTCMinutes() * 60 + d.getUTCSeconds(); const timeBlocks = Math.floor(secondsSinceMidnight / 2); const timeEncoded = timeBlocks.toString(36).padStart(3, '0'); return dateStr + '-' + timeEncoded; } test('quick_id: exact value for pinned instant', () => { const PINNED_MS = 1_700_000_000_000; // 2023-11-14T22:13:20.000Z const result = runGsdTools('init quick "pinned task"', tmpDir, { GSD_TEST_MODE: '1', GSD_NOW_MS: String(PINNED_MS), TZ: 'UTC', }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.quick_id, expectedQuickId(PINNED_MS)); }); test('boundary: two calls in the same 2s block share quick_id (documented collision, not a bug)', () => { const BLOCK_START_MS = 1_700_000_000_000; // aligned so +0 and +1000 fall in the same 2s block const r1 = runGsdTools('init quick "task a"', tmpDir, { GSD_TEST_MODE: '1', GSD_NOW_MS: String(BLOCK_START_MS), TZ: 'UTC', }); const r2 = runGsdTools('init quick "task b"', tmpDir, { GSD_TEST_MODE: '1', GSD_NOW_MS: String(BLOCK_START_MS + 1000), TZ: 'UTC', }); assert.ok(r1.success && r2.success); const o1 = JSON.parse(r1.output); const o2 = JSON.parse(r2.output); assert.strictEqual(o1.quick_id, expectedQuickId(BLOCK_START_MS)); assert.strictEqual(o2.quick_id, expectedQuickId(BLOCK_START_MS + 1000)); assert.strictEqual(o1.quick_id, o2.quick_id, 'both instants are in the same 2-second block and must share a quick_id'); }); test('boundary: two calls straddling a 2s block edge get different quick_id', () => { const BEFORE_EDGE_MS = 1_700_000_000_000; // even second → block boundary at +2000ms const AFTER_EDGE_MS = BEFORE_EDGE_MS + 2000; const r1 = runGsdTools('init quick "task a"', tmpDir, { GSD_TEST_MODE: '1', GSD_NOW_MS: String(BEFORE_EDGE_MS), TZ: 'UTC', }); const r2 = runGsdTools('init quick "task b"', tmpDir, { GSD_TEST_MODE: '1', GSD_NOW_MS: String(AFTER_EDGE_MS), TZ: 'UTC', }); assert.ok(r1.success && r2.success); const o1 = JSON.parse(r1.output); const o2 = JSON.parse(r2.output); assert.strictEqual(o1.quick_id, expectedQuickId(BEFORE_EDGE_MS)); assert.strictEqual(o2.quick_id, expectedQuickId(AFTER_EDGE_MS)); assert.notStrictEqual(o1.quick_id, o2.quick_id, 'instants 2000ms apart cross a 2-second block edge and must differ'); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitMapCodebase (INIT-05) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitMapCodebase', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('no codebase dir returns empty', () => { const result = runGsdTools('init map-codebase', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_maps, false); assert.deepStrictEqual(output.existing_maps, []); assert.strictEqual(output.codebase_dir_exists, false); }); test('with existing maps lists md files only', () => { const codebaseDir = path.join(tmpDir, '.planning', 'codebase'); fs.mkdirSync(codebaseDir, { recursive: true }); fs.writeFileSync(path.join(codebaseDir, 'STACK.md'), '# Stack'); fs.writeFileSync(path.join(codebaseDir, 'ARCHITECTURE.md'), '# Architecture'); fs.writeFileSync(path.join(codebaseDir, 'notes.txt'), 'not a markdown file'); const result = runGsdTools('init map-codebase', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_maps, true); assert.strictEqual(output.existing_maps.length, 2); assert.ok(output.existing_maps.includes('STACK.md'), 'Should include STACK.md'); assert.ok(output.existing_maps.includes('ARCHITECTURE.md'), 'Should include ARCHITECTURE.md'); }); test('empty codebase dir returns no maps', () => { const codebaseDir = path.join(tmpDir, '.planning', 'codebase'); fs.mkdirSync(codebaseDir, { recursive: true }); const result = runGsdTools('init map-codebase', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_maps, false); assert.deepStrictEqual(output.existing_maps, []); assert.strictEqual(output.codebase_dir_exists, true); }); test('map-codebase workflow does not list OpenCode under runtimes without Task tool (#1316)', () => { const workflow = fs.readFileSync( path.join(__dirname, '..', 'gsd-core', 'workflows', 'map-codebase.md'), 'utf8' ); // OpenCode must NOT appear in the "WITHOUT Task tool" / "NOT available" condition const withoutLine = workflow.split(/\r?\n/).find(l => l.includes('NOT available') || l.includes('WITHOUT Task tool') ); assert.ok(withoutLine, 'workflow should have a line about Task tool NOT being available'); assert.ok(!withoutLine.includes('OpenCode'), 'OpenCode must NOT be listed under runtimes WITHOUT Task tool'); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitNewProject (INIT-06) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitNewProject', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('greenfield project with no code', () => { const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_existing_code, false); assert.strictEqual(output.has_package_file, false); assert.strictEqual(output.is_brownfield, false); assert.strictEqual(output.needs_codebase_map, false); }); test('brownfield with package.json detected', () => { fs.writeFileSync(path.join(tmpDir, 'package.json'), '{"name":"test"}'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_package_file, true); assert.strictEqual(output.is_brownfield, true); assert.strictEqual(output.needs_codebase_map, true); }); test('brownfield with codebase map does not need map', () => { fs.writeFileSync(path.join(tmpDir, 'package.json'), '{"name":"test"}'); fs.mkdirSync(path.join(tmpDir, '.planning', 'codebase'), { recursive: true }); for (const name of ['STACK', 'ARCHITECTURE', 'STRUCTURE', 'CONVENTIONS', 'TESTING', 'INTEGRATIONS', 'CONCERNS']) { fs.writeFileSync(path.join(tmpDir, '.planning', 'codebase', `${name}.md`), `# ${name}\n`); } const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.is_brownfield, true); assert.strictEqual(output.needs_codebase_map, false); }); test('planning_exists flag is correct', () => { const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.planning_exists, true); }); test('brownfield with Kotlin files detected (Android project)', () => { const srcDir = path.join(tmpDir, 'app', 'src', 'main'); fs.mkdirSync(srcDir, { recursive: true }); fs.writeFileSync(path.join(srcDir, 'MainActivity.kt'), 'class MainActivity'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_existing_code, true); assert.strictEqual(output.is_brownfield, true); }); test('brownfield with build.gradle detected (Android/Gradle project)', () => { fs.writeFileSync(path.join(tmpDir, 'build.gradle'), 'apply plugin: "com.android.application"'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_package_file, true); assert.strictEqual(output.is_brownfield, true); assert.strictEqual(output.needs_codebase_map, true); }); test('brownfield with build.gradle.kts detected (Kotlin DSL)', () => { fs.writeFileSync(path.join(tmpDir, 'build.gradle.kts'), 'plugins { id("com.android.application") }'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_package_file, true); assert.strictEqual(output.is_brownfield, true); }); test('brownfield with pom.xml detected (Maven project)', () => { fs.writeFileSync(path.join(tmpDir, 'pom.xml'), ''); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_package_file, true); assert.strictEqual(output.is_brownfield, true); }); test('brownfield with pubspec.yaml detected (Flutter/Dart project)', () => { fs.writeFileSync(path.join(tmpDir, 'pubspec.yaml'), 'name: my_app'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_package_file, true); assert.strictEqual(output.is_brownfield, true); }); test('brownfield with Dart files detected', () => { const libDir = path.join(tmpDir, 'lib'); fs.mkdirSync(libDir, { recursive: true }); fs.writeFileSync(path.join(libDir, 'main.dart'), 'void main() {}'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_existing_code, true); assert.strictEqual(output.is_brownfield, true); }); test('brownfield with C++ files detected', () => { fs.writeFileSync(path.join(tmpDir, 'main.cpp'), 'int main() { return 0; }'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.has_existing_code, true); assert.strictEqual(output.is_brownfield, true); }); }); // ───────────────────────────────────────────────────────────────────────────── // cmdInitNewMilestone (INIT-06) // ───────────────────────────────────────────────────────────────────────────── describe('cmdInitNewMilestone', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); test('returns expected fields', () => { const result = runGsdTools('init new-milestone', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('current_milestone' in output, 'Should have current_milestone'); assert.ok('current_milestone_name' in output, 'Should have current_milestone_name'); assert.ok('researcher_model' in output, 'Should have researcher_model'); assert.ok('synthesizer_model' in output, 'Should have synthesizer_model'); assert.ok('roadmapper_model' in output, 'Should have roadmapper_model'); assert.ok('commit_docs' in output, 'Should have commit_docs'); assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); }); test('file existence flags reflect actual state', () => { // Default: no STATE.md, ROADMAP.md, or PROJECT.md const result1 = runGsdTools('init new-milestone', tmpDir); assert.ok(result1.success, `Command failed: ${result1.error}`); const output1 = JSON.parse(result1.output); assert.strictEqual(output1.state_exists, false); assert.strictEqual(output1.roadmap_exists, false); assert.strictEqual(output1.project_exists, false); // Create files and verify flags change fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), '# State'); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), '# Roadmap'); fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project'); const result2 = runGsdTools('init new-milestone', tmpDir); assert.ok(result2.success, `Command failed: ${result2.error}`); const output2 = JSON.parse(result2.output); assert.strictEqual(output2.state_exists, true); assert.strictEqual(output2.roadmap_exists, true); assert.strictEqual(output2.project_exists, true); }); test('reports latest completed milestone and archive target for reset flow', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'MILESTONES.md'), '# Milestones\n\n## v1.2 Search Refresh (Shipped: 2026-02-18)\n\n---\n' ); fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '06-refine-search'), { recursive: true }); fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '07-polish'), { recursive: true }); const result = runGsdTools('init new-milestone', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.latest_completed_milestone, 'v1.2'); assert.strictEqual(output.latest_completed_milestone_name, 'Search Refresh'); assert.strictEqual(output.phase_dir_count, 2); assert.strictEqual(output.phase_archive_path, absPlanningPath(tmpDir, 'milestones', 'v1.2-phases')); }); test('reset flow metadata is null-safe when no milestones file exists', () => { const result = runGsdTools('init new-milestone', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.latest_completed_milestone, null); assert.strictEqual(output.latest_completed_milestone_name, null); assert.strictEqual(output.phase_dir_count, 0); assert.strictEqual(output.phase_archive_path, null); }); }); // ───────────────────────────────────────────────────────────────────────────── // findProjectRoot integration — gsd-tools resolves project root from sub-repo // ───────────────────────────────────────────────────────────────────────────── describe('findProjectRoot integration via --cwd', () => { let projectRoot; beforeEach(() => { projectRoot = createFixture(); // Add ROADMAP.md so init quick doesn't error fs.writeFileSync( path.join(projectRoot, '.planning', 'ROADMAP.md'), '# Roadmap\n\n## Phase 1: Foundation\n**Goal:** Setup\n' ); // Write sub_repos config fs.writeFileSync( path.join(projectRoot, '.planning', 'config.json'), JSON.stringify({ sub_repos: ['backend', 'frontend'] }) ); // Create sub-repo directory fs.mkdirSync(path.join(projectRoot, 'backend')); }); afterEach(() => { cleanup(projectRoot); }); test('init quick from sub-repo CWD returns project_root pointing to parent', () => { const backendDir = path.join(projectRoot, 'backend'); const result = runGsdTools(['init', 'quick', 'test task', '--cwd', backendDir]); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('project_root' in output, 'Should have project_root'); assert.strictEqual(output.project_root, projectRoot, 'project_root should be the parent, not the sub-repo'); assert.ok(output.roadmap_exists, 'Should find ROADMAP.md at project root'); }); test('init quick from project root returns project_root as-is', () => { const result = runGsdTools(['init', 'quick', 'test task', '--cwd', projectRoot]); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.project_root, projectRoot); }); test('state load from sub-repo CWD reads project root config', () => { // Write STATE.md at project root fs.writeFileSync( path.join(projectRoot, '.planning', 'STATE.md'), '---\ncurrent_phase: 1\nphase_name: Foundation\n---\n# State\n' ); const backendDir = path.join(projectRoot, 'backend'); const result = runGsdTools(['state', '--cwd', backendDir]); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Should find config from project root, not from backend/ assert.deepStrictEqual(output.config.sub_repos, ['backend', 'frontend'], 'Should read sub_repos from project root config'); }); }); // ───────────────────────────────────────────────────────────────────────────── // #2192: init plan-phase must include auto_advance, auto_chain_active, and mode // so workflows don't need separate config-get calls that loop on Kimi K2.5 // ───────────────────────────────────────────────────────────────────────────── describe('#2192: init plan-phase includes auto-advance config to prevent separate config-get loops', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', '01-auth'), { recursive: true }); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), ['# Roadmap', '', '## Milestone v1', '', '### Phase 1: Auth', '**Goal:** Auth'].join('\n') ); }); afterEach(() => { cleanup(tmpDir); }); test('init plan-phase includes auto_advance field (defaults false)', () => { const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('auto_advance' in output, 'init plan-phase must include auto_advance field'); assert.strictEqual(output.auto_advance, false, 'auto_advance should default to false'); }); test('init plan-phase includes auto_chain_active field (defaults false)', () => { const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('auto_chain_active' in output, 'init plan-phase must include auto_chain_active field'); assert.strictEqual(output.auto_chain_active, false, 'auto_chain_active should default to false'); }); test('init plan-phase includes mode field (defaults to interactive)', () => { const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('mode' in output, 'init plan-phase must include mode field'); assert.strictEqual(output.mode, 'interactive', 'mode should default to interactive'); }); test('init plan-phase reflects auto_advance true when set in config', () => { const configPath = path.join(tmpDir, '.planning', 'config.json'); const cfg = { workflow: { auto_advance: true } }; fs.writeFileSync(configPath, JSON.stringify(cfg, null, 2)); const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.auto_advance, true, 'auto_advance should reflect config value'); }); test('init plan-phase reflects auto_chain_active true when set in config', () => { const configPath = path.join(tmpDir, '.planning', 'config.json'); const cfg = { workflow: { _auto_chain_active: true } }; fs.writeFileSync(configPath, JSON.stringify(cfg, null, 2)); const result = runGsdTools('init plan-phase 1', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.auto_chain_active, true, 'auto_chain_active should reflect config value'); }); }); // ───────────────────────────────────────────────────────────────────────────── // withProjectRoot: project identity injection (#1948) // ───────────────────────────────────────────────────────────────────────────── describe('withProjectRoot project identity', () => { let tmpDir; beforeEach(() => { tmpDir = createFixture(); }); afterEach(() => { cleanup(tmpDir); }); test('injects project_code when config.project_code is set', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'CK' }) ); const result = runGsdTools(['init', 'quick', 'test task'], tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.project_code, 'CK'); }); test('injects project_title extracted from PROJECT.md H1', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'CK' }) ); fs.writeFileSync( path.join(tmpDir, '.planning', 'PROJECT.md'), '# CareKit\n\nA care management platform.\n' ); const result = runGsdTools(['init', 'quick', 'test task'], tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.project_title, 'CareKit'); }); test('omits project_code and project_title when project_code is not set', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({}) ); const result = runGsdTools(['init', 'quick', 'test task'], tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.project_code, undefined, 'project_code should not be present when not configured'); // project_title may or may not be present depending on PROJECT.md existence, // but without project_code the workflow omits the identity suffix entirely }); test('omits project_title when PROJECT.md does not exist', () => { fs.writeFileSync( path.join(tmpDir, '.planning', 'config.json'), JSON.stringify({ project_code: 'CK' }) ); // Ensure no PROJECT.md exists (createFixture doesn't create one) const projectMdPath = path.join(tmpDir, '.planning', 'PROJECT.md'); if (fs.existsSync(projectMdPath)) fs.unlinkSync(projectMdPath); const result = runGsdTools(['init', 'quick', 'test task'], tmpDir, { HOME: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.project_code, 'CK', 'project_code should still be present'); assert.strictEqual(output.project_title, undefined, 'project_title should not be present when PROJECT.md is missing'); }); }); // ───────────────────────────────────────────────────────────────────────────── // ADR-0006: init handlers honor GSD_WORKSTREAM (planningPaths/planningDir consumption) // Issue #1189 — regression guard: workstream-scoped paths must be resolved // through planningDir(cwd) which picks up GSD_WORKSTREAM from env. // ───────────────────────────────────────────────────────────────────────────── describe('init handlers honor GSD_WORKSTREAM (ADR-0006 planningPaths consumption)', () => { const { seedWorkstream } = require('./fixtures/index.cjs'); /** * Build a workstream-scoped fixture under tmpDir. * Only workstream-scoped files exist; flat .planning/ has only the phases dir. */ function buildWsFixture(tmpDir, ws = 'wsx') { const wsDir = seedWorkstream(tmpDir, { name: ws }); // Write the planning files ONLY under the workstream path fs.writeFileSync( path.join(wsDir, 'STATE.md'), '# State\n' ); fs.writeFileSync( path.join(wsDir, 'ROADMAP.md'), '# Roadmap\n\n### Phase 1: Setup\n**Goal:** Bootstrap\n**Requirements**: R-01\n**Plans:** 1 plans\n' ); // #3188: REQUIREMENTS.md present so the workstream-scoped requirements_path // present-case assertion holds (STATE/ROADMAP already written above). fs.writeFileSync(path.join(wsDir, 'REQUIREMENTS.md'), '# Requirements\n'); fs.writeFileSync( path.join(wsDir, 'config.json'), JSON.stringify({}) ); // Create a phase plan under the workstream fs.mkdirSync(path.join(wsDir, 'phases', '01-setup'), { recursive: true }); fs.writeFileSync(path.join(wsDir, 'phases', '01-setup', '01-01-PLAN.md'), '# Plan\n'); return wsDir; } // ── Test 1: execute-phase — workstream-scoped path fields (happy) ───────── describe('execute-phase — workstream-scoped path fields', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); buildWsFixture(tmpDir, 'wsx'); }); afterEach(() => { cleanup(tmpDir); }); test('execute-phase emits workstream-scoped state/roadmap/config paths (ADR-0006)', () => { const result = runGsdTools('init execute-phase 1', tmpDir, { GSD_WORKSTREAM: 'wsx', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Positive: paths must be workstream-scoped assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'ROADMAP.md')); assert.strictEqual(output.config_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'config.json')); // Goodhart both-directions: must NOT be the flat form assert.notStrictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.notStrictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.notStrictEqual(output.config_path, absPlanningPath(tmpDir, 'config.json')); // phase_dir is emitted and must be workstream-scoped assert.ok( output.phase_dir && output.phase_dir.includes('workstreams/wsx'), `phase_dir should include workstreams/wsx, got: ${output.phase_dir}` ); }); test('execute-phase WITHOUT GSD_WORKSTREAM resolves flat paths (boundary control)', () => { // Flat fixture: the workstream fixture exists but we do NOT pass GSD_WORKSTREAM. // Handler should resolve flat .planning/ → state/roadmap/config are flat, // and the workstream phase is NOT found (flat phases/ is empty). // #3188: create the flat docs so the flat *_path present-case assertions hold. writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 1', tmpDir, { GSD_WORKSTREAM: '', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Flat paths must be returned when no workstream is active assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.config_path, absPlanningPath(tmpDir, 'config.json')); // Phase is NOT found in flat .planning/phases/ (only exists under workstream) assert.strictEqual(output.phase_found, false, 'phase should not be found in flat path when only workstream fixture exists'); }); }); // ── Test 2: milestone-op — reads workstream-scoped roadmap/state/phases ─── describe('milestone-op — reads workstream-scoped planning files', () => { let tmpDir; beforeEach(() => { // Do NOT call createFixture (which would add flat .planning/phases/). // Create a bare temp dir so files only exist under the workstream path. const os = require('os'); tmpDir = fs.mkdtempSync(require('path').join(os.tmpdir(), 'gsd-test-')); buildWsFixture(tmpDir, 'wsx'); }); afterEach(() => { cleanup(tmpDir); }); test('milestone-op with GSD_WORKSTREAM finds roadmap/state/phases in workstream scope (ADR-0006)', () => { const result = runGsdTools('init milestone-op', tmpDir, { GSD_WORKSTREAM: 'wsx', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.roadmap_exists, true, 'roadmap_exists must be true: ROADMAP.md exists only under workstream path'); assert.strictEqual(output.state_exists, true, 'state_exists must be true: STATE.md exists only under workstream path'); assert.strictEqual(output.phases_dir_exists, true, 'phases_dir_exists must be true: phases/ exists under workstream path'); }); test('milestone-op WITHOUT GSD_WORKSTREAM misses workstream-only files (negative discrimination)', () => { const result = runGsdTools('init milestone-op', tmpDir, { GSD_WORKSTREAM: '', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Handler looked at flat .planning/ — no files there → all false assert.strictEqual(output.roadmap_exists, false, 'roadmap_exists must be false: ROADMAP.md is only under workstream, not flat .planning/'); assert.strictEqual(output.state_exists, false, 'state_exists must be false: STATE.md is only under workstream, not flat .planning/'); }); }); // ── Test 3: plan-phase — workstream-scoped resolution ──────────────────── describe('plan-phase — workstream-scoped path resolution', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); buildWsFixture(tmpDir, 'wsx'); }); afterEach(() => { cleanup(tmpDir); }); test('plan-phase emits workstream-scoped state/roadmap/requirements paths (ADR-0006)', () => { const result = runGsdTools('init plan-phase 1', tmpDir, { GSD_WORKSTREAM: 'wsx', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Path fields must be scoped to the workstream assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'ROADMAP.md')); assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'REQUIREMENTS.md')); // Must NOT be flat assert.notStrictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.notStrictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); // phase_dir is workstream-scoped and phase is found assert.strictEqual(output.phase_found, true); assert.ok( output.phase_dir && output.phase_dir.includes('workstreams/wsx'), `phase_dir should include workstreams/wsx, got: ${output.phase_dir}` ); }); test('plan-phase WITHOUT GSD_WORKSTREAM resolves flat paths (boundary control)', () => { // #3188: create the flat docs so the flat *_path present-case assertions hold. writePlanningDocs(tmpDir); const result = runGsdTools('init plan-phase 1', tmpDir, { GSD_WORKSTREAM: '', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md')); // Phase only exists under workstream, so not found via flat path assert.strictEqual(output.phase_found, false); }); }); // ── Test 4: phase-op — workstream-scoped phase resolution ──────────────── describe('phase-op — workstream-scoped phase resolution', () => { let tmpDir; beforeEach(() => { // #2376 macOS fix: see 'init commands' beforeEach above. tmpDir = fs.realpathSync(createFixture()); buildWsFixture(tmpDir, 'wsx'); }); afterEach(() => { cleanup(tmpDir); }); test('phase-op with GSD_WORKSTREAM finds phase in workstream scope and emits scoped paths (ADR-0006)', () => { const result = runGsdTools('init phase-op 1', tmpDir, { GSD_WORKSTREAM: 'wsx', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Phase is found via workstream-scoped phases dir assert.strictEqual(output.phase_found, true, 'phase_found must be true: phase exists under workstream path'); assert.ok( output.phase_dir && output.phase_dir.includes('workstreams/wsx'), `phase_dir should include workstreams/wsx, got: ${output.phase_dir}` ); // Path fields are workstream-scoped assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'workstreams', 'wsx', 'ROADMAP.md')); assert.notStrictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); }); test('phase-op WITHOUT GSD_WORKSTREAM does not find workstream-only phase (negative discrimination)', () => { // #3188: create the flat docs so the flat *_path present-case assertions hold. writePlanningDocs(tmpDir); const result = runGsdTools('init phase-op 1', tmpDir, { GSD_WORKSTREAM: '', GSD_PROJECT: '' }); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); // Phase only exists under workstream path — flat path has no matching phase dir assert.strictEqual(output.phase_found, false, 'phase_found must be false: phase only exists under workstream path'); // Flat paths are emitted assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md')); assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md')); }); }); }); // ───────────────────────────────────────────────────────────────────────────── // #1912: init.progress fails safe in workstream mode with no active workstream // ───────────────────────────────────────────────────────────────────────────── describe('#1912 — init.progress fails safe in workstream mode with no active workstream', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); function seedWs(name, milestoneVersion) { const wsDir = path.join(tmpDir, '.planning', 'workstreams', name); fs.mkdirSync(path.join(wsDir, 'phases'), { recursive: true }); fs.writeFileSync( path.join(wsDir, 'STATE.md'), `# State\n\n**Status:** executing\n**Milestone:** ${milestoneVersion}\n`, ); fs.writeFileSync( path.join(wsDir, 'ROADMAP.md'), `# Roadmap\n\n## Milestones\n- ${milestoneVersion} Test (Phase 1)\n\n## Phases\n### Phase 1: X\n**Goal:** do x\n`, ); return wsDir; } test('errors (does NOT report stale root) when workstreams exist but none active', () => { seedWs('alpha', 'v9.0'); seedWs('beta', 'v9.0'); // Stale root STATE — the misleading value that must never be silently reported. fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), 'milestone: v7.1\nstatus: executing\n'); // No active-workstream pointer, no --ws. const result = runGsdTools('init progress', tmpDir); assert.equal(result.success, false, 'should fail safe rather than report the stale root milestone'); assert.match(result.error || '', /workstream|--ws/i, 'error should name the workstream requirement'); }); test('treats a whitespace environment workstream as unset and refuses root progress', (t) => { seedWs('alpha', 'v9.0'); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), 'milestone: v7.1\nstatus: executing\n'); const previous = process.env.GSD_WORKSTREAM; t.after(() => { if (previous === undefined) delete process.env.GSD_WORKSTREAM; else process.env.GSD_WORKSTREAM = previous; }); process.env.GSD_WORKSTREAM = ' '; const result = runGsdTools('init progress', tmpDir); assert.equal(result.success, false, 'a whitespace workstream must not bypass the root-write guard'); assert.match(result.error || '', /workstream|--ws/i); }); test('succeeds with --ws (reads the named workstream, not root)', () => { seedWs('alpha', 'v9.0'); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), 'milestone: v7.1\nstatus: executing\n'); const result = runGsdTools('init progress --ws alpha', tmpDir); assert.ok(result.success, `should succeed with --ws: ${result.error}`); }); test('flat mode (no workstreams dir) is unchanged', () => { const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `flat mode should still work: ${result.error}`); }); }); // ───────────────────────────────────────────────────────────────────────────── // #2376: init.* path-shaped output fields must resolve regardless of the // calling process's own cwd — not just the orchestrator's cwd. A spawned // subagent's actual filesystem cwd can legitimately differ from the // orchestrator's (e.g. a worktree), and every `*_path`/`*_dir` field handed // to it must still resolve to the real file. These tests spawn gsd-tools with // its OS-level process cwd pointed at an unrelated decoy directory while // passing the real project root via `--cwd` — reproducing exactly the // cwd-mismatch the bug hides behind, without relying on incidental absence // of `.planning/` at the test runner's own cwd. // ───────────────────────────────────────────────────────────────────────────── describe('#2376 — init.* path fields resolve when process cwd differs from --cwd project root', () => { let projectDir; let decoyDir; beforeEach(() => { projectDir = createFixture(); decoyDir = createTempDir('gsd-2376-decoy-'); }); afterEach(() => { cleanup(projectDir); cleanup(decoyDir); }); test('init plan-phase emits absolute path fields that resolve from a different process cwd', () => { seedPhase(projectDir, '03-api', { '03-CONTEXT.md': '# Phase Context', }); fs.writeFileSync(path.join(projectDir, '.planning', 'STATE.md'), '# State\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n'); const result = runGsdTools(['init', 'plan-phase', '03', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); for (const field of ['state_path', 'roadmap_path', 'requirements_path', 'context_path', 'phase_dir']) { const value = output[field]; assert.ok(value, `${field} should be present, got: ${JSON.stringify(value)}`); assert.ok(path.isAbsolute(value), `${field} must be absolute, got: "${value}"`); // Resolve AS-IS — no joining against decoyDir or process.cwd() — the // string itself must locate the real, already-committed file/dir. assert.ok(fs.existsSync(value), `${field} must resolve to the real file/dir: "${value}"`); } }); test('init verify-work now emits absolute state_path/roadmap_path (previously absent)', () => { seedPhase(projectDir, '03-api', { '03-01-PLAN.md': '# Plan', '03-01-SUMMARY.md': '# Summary', }); fs.writeFileSync(path.join(projectDir, '.planning', 'STATE.md'), '# State\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); const result = runGsdTools(['init', 'verify-work', '03', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('state_path' in output, 'cmdInitVerifyWork must now emit state_path (#2376)'); assert.ok('roadmap_path' in output, 'cmdInitVerifyWork must now emit roadmap_path (#2376)'); for (const field of ['state_path', 'roadmap_path']) { assert.ok(path.isAbsolute(output[field]), `${field} must be absolute, got: "${output[field]}"`); assert.ok(fs.existsSync(output[field]), `${field} must resolve to the real file: "${output[field]}"`); } }); test('init phase-op emits absolute path fields that resolve from a different process cwd', () => { seedPhase(projectDir, '03-api', { '03-CONTEXT.md': '# Phase Context', '03-RESEARCH.md': '# Research', }); fs.writeFileSync(path.join(projectDir, '.planning', 'STATE.md'), '# State\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n'); const result = runGsdTools(['init', 'phase-op', '03', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); for (const field of ['phase_dir', 'state_path', 'roadmap_path', 'requirements_path', 'context_path', 'research_path']) { const value = output[field]; assert.ok(value, `${field} should be present, got: ${JSON.stringify(value)}`); assert.ok(path.isAbsolute(value), `${field} must be absolute, got: "${value}"`); assert.ok(fs.existsSync(value), `${field} must resolve to the real file/dir: "${value}"`); } }); test('init todos emits absolute pending_dir/completed_dir and per-todo path fields', () => { const pendingDir = path.join(projectDir, '.planning', 'todos', 'pending'); fs.mkdirSync(pendingDir, { recursive: true }); fs.writeFileSync(path.join(pendingDir, 'task-1.md'), 'title: Fix bug\narea: backend\ncreated: 2026-02-25'); const result = runGsdTools(['init', 'todos', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok(path.isAbsolute(output.pending_dir), `pending_dir must be absolute, got: "${output.pending_dir}"`); assert.ok(fs.existsSync(output.pending_dir), `pending_dir must resolve to the real directory: "${output.pending_dir}"`); assert.ok(path.isAbsolute(output.completed_dir), `completed_dir must be absolute, got: "${output.completed_dir}"`); const todo = output.todos.find((t) => t.file === 'task-1.md'); assert.ok(todo, 'task-1.md should be present in todos'); assert.ok(path.isAbsolute(todo.path), `todo.path must be absolute, got: "${todo.path}"`); assert.ok(fs.existsSync(todo.path), `todo.path must resolve to the real file: "${todo.path}"`); }); test('init new-project emits absolute requirements_path/roadmap_path/config_path/research_dir (previously absent)', () => { fs.writeFileSync(path.join(projectDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'config.json'), '{}\n'); fs.mkdirSync(path.join(projectDir, '.planning', 'research'), { recursive: true }); const result = runGsdTools(['init', 'new-project', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); for (const field of ['requirements_path', 'roadmap_path', 'config_path', 'research_dir']) { assert.ok(field in output, `cmdInitNewProject must now emit ${field} (#2376)`); const value = output[field]; assert.ok(path.isAbsolute(value), `${field} must be absolute, got: "${value}"`); assert.ok(fs.existsSync(value), `${field} must resolve to the real file/dir: "${value}"`); } }); test('init new-milestone emits absolute requirements_path/config_path/research_dir/milestones_path (previously absent)', () => { fs.writeFileSync(path.join(projectDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'config.json'), '{}\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'MILESTONES.md'), '# Milestones\n'); fs.mkdirSync(path.join(projectDir, '.planning', 'research'), { recursive: true }); const result = runGsdTools(['init', 'new-milestone', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); for (const field of ['requirements_path', 'config_path', 'research_dir', 'milestones_path']) { assert.ok(field in output, `cmdInitNewMilestone must now emit ${field} (#2376)`); const value = output[field]; assert.ok(path.isAbsolute(value), `${field} must be absolute, got: "${value}"`); assert.ok(fs.existsSync(value), `${field} must resolve to the real file/dir: "${value}"`); } }); test('init ingest-docs emits absolute requirements_path/roadmap_path/state_path/intel_dir/conflicts_path (previously absent)', () => { fs.writeFileSync(path.join(projectDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'STATE.md'), '# State\n'); fs.mkdirSync(path.join(projectDir, '.planning', 'intel'), { recursive: true }); const result = runGsdTools(['init', 'ingest-docs', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); for (const field of ['requirements_path', 'roadmap_path', 'state_path', 'intel_dir']) { assert.ok(field in output, `cmdInitIngestDocs must now emit ${field} (#2376)`); const value = output[field]; assert.ok(path.isAbsolute(value), `${field} must be absolute, got: "${value}"`); assert.ok(fs.existsSync(value), `${field} must resolve to the real file/dir: "${value}"`); } // conflicts_path is written by the synthesizer, not present at init time — // assert absolute-shape only, not existence. assert.ok('conflicts_path' in output, 'cmdInitIngestDocs must now emit conflicts_path (#2376)'); assert.ok(path.isAbsolute(output.conflicts_path), `conflicts_path must be absolute, got: "${output.conflicts_path}"`); }); test('init map-codebase emits absolute codebase_dir that resolves from a different process cwd', () => { const codebaseDir = path.join(projectDir, '.planning', 'codebase'); fs.mkdirSync(codebaseDir, { recursive: true }); fs.writeFileSync(path.join(codebaseDir, 'STACK.md'), '# Stack'); const result = runGsdTools(['init', 'map-codebase', '--cwd', projectDir], decoyDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.ok('codebase_dir' in output, 'cmdInitMapCodebase must emit codebase_dir (#2376)'); assert.ok(path.isAbsolute(output.codebase_dir), `codebase_dir must be absolute, got: "${output.codebase_dir}"`); assert.ok(fs.existsSync(output.codebase_dir), `codebase_dir must resolve to the real directory: "${output.codebase_dir}"`); }); // allow-test-rule: source-text-is-the-product (see #2376) test('gsd-core/workflows/verify-work.md plan_gap_closure step references {state_path}/{roadmap_path}, not bare .planning literals', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'verify-work.md'); const content = fs.readFileSync(wfPath, 'utf8'); // eslint-disable-next-line local/no-unbounded-quantifier -- parses this repo's own workflow .md content, fixed-size author-controlled content const stepMatch = content.match(/[\s\S]*?<\/step>/); assert.ok(stepMatch, 'plan_gap_closure step should exist in verify-work.md'); const step = stepMatch[0]; assert.ok(step.includes('{state_path}'), 'plan_gap_closure must reference {state_path} from init JSON, not a bare literal'); assert.ok(step.includes('{roadmap_path}'), 'plan_gap_closure must reference {roadmap_path} from init JSON, not a bare literal'); assert.ok(!step.includes('.planning/STATE.md'), 'plan_gap_closure must not hardcode .planning/STATE.md (#2376)'); assert.ok(!step.includes('.planning/ROADMAP.md'), 'plan_gap_closure must not hardcode .planning/ROADMAP.md (#2376)'); }); // allow-test-rule: source-text-is-the-product (see #2376) test('gsd-core/workflows/diagnose-issues.md debug agent spawn references {state_path}, not a bare .planning literal', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'diagnose-issues.md'); const content = fs.readFileSync(wfPath, 'utf8'); assert.ok(content.includes('{state_path}'), 'debug agent spawn must reference {state_path} from init JSON, not a bare literal'); assert.ok(!content.includes('.planning/STATE.md'), 'debug agent spawn must not hardcode .planning/STATE.md (#2376)'); }); // allow-test-rule: source-text-is-the-product (see #2376) test('gsd-core/workflows/execute-phase.md verify_phase_goal step references {requirements_path}, not a bare .planning literal', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'execute-phase.md'); const content = fs.readFileSync(wfPath, 'utf8'); // eslint-disable-next-line local/no-unbounded-quantifier -- parses this repo's own workflow .md content, fixed-size author-controlled content const stepMatch = content.match(/[\s\S]*?<\/step>/); assert.ok(stepMatch, 'verify_phase_goal step should exist in execute-phase.md'); const step = stepMatch[0]; assert.ok(step.includes('{requirements_path}'), 'verify_phase_goal must reference {requirements_path} from init JSON, not a bare literal'); assert.ok(!step.includes('.planning/REQUIREMENTS.md'), 'verify_phase_goal must not hardcode .planning/REQUIREMENTS.md (#2376)'); }); // allow-test-rule: source-text-is-the-product (see #2376) // // Checks verbatim presence of the exact edited /output blocks // rather than scanning the whole file for absence of the old literals: several // of those literals (e.g. .planning/PROJECT.md, .planning/config.json) remain // legitimately elsewhere in this file in orchestrator-local bash/doc-table // text that never reaches a spawned subagent — only the three specific // Agent(prompt=...) blocks touched by #2376 needed to change. test('gsd-core/workflows/new-project.md synthesizer/roadmapper spawns reference {research_dir}/{project_path}/{requirements_path}/{roadmap_path}/{config_path}, not bare .planning literals', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'new-project.md'); const content = fs.readFileSync(wfPath, 'utf8'); assert.ok(content.includes( '\n- {research_dir}/STACK.md\n- {research_dir}/FEATURES.md\n- {research_dir}/ARCHITECTURE.md\n- {research_dir}/PITFALLS.md\n' ), 'research-synthesizer spawn must read from {research_dir}, not bare .planning/research/*.md literals'); assert.ok(content.includes('Write to: {research_dir}/SUMMARY.md'), 'research-synthesizer spawn must write to {research_dir}/SUMMARY.md, not a bare literal'); assert.ok(content.includes( '\n- {project_path} (Project context)\n- {requirements_path} (v1 Requirements)\n- {research_dir}/SUMMARY.md (Research findings - if exists)\n- {config_path} (Granularity and mode settings)\n' ), 'roadmapper spawn must read from {project_path}/{requirements_path}/{research_dir}/{config_path}, not bare .planning literals'); assert.ok(content.includes( '\n - {roadmap_path} (Current roadmap to revise)\n ' ), 'roadmapper revision spawn must read {roadmap_path}, not a bare .planning/ROADMAP.md literal'); }); // allow-test-rule: source-text-is-the-product (see #2376) test('gsd-core/workflows/new-milestone.md synthesizer/roadmapper spawns reference {research_dir}/{project_path}/{requirements_path}/{config_path}/{milestones_path}, not bare .planning literals', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'new-milestone.md'); const content = fs.readFileSync(wfPath, 'utf8'); assert.ok(content.includes( '\n- {research_dir}/STACK.md\n- {research_dir}/FEATURES.md\n- {research_dir}/ARCHITECTURE.md\n- {research_dir}/PITFALLS.md\n' ), 'research-synthesizer spawn must read from {research_dir}, not bare .planning/research/*.md literals'); assert.ok(content.includes('Write to: {research_dir}/SUMMARY.md'), 'research-synthesizer spawn must write to {research_dir}/SUMMARY.md, not a bare literal'); assert.ok(content.includes( '\n- {project_path}\n- {requirements_path}\n- {research_dir}/SUMMARY.md (if exists)\n- {config_path}\n- {milestones_path}\n' ), 'roadmapper spawn must read from {project_path}/{requirements_path}/{research_dir}/{config_path}/{milestones_path}, not bare .planning literals'); }); // allow-test-rule: source-text-is-the-product (see #2376) test('gsd-core/workflows/ingest-docs.md classifier/synthesizer/roadmapper spawns reference {intel_dir}/{conflicts_path}/{project_path}/{requirements_path}/{roadmap_path}/{state_path}, not bare .planning literals', () => { const wfPath = path.join(__dirname, '..', 'gsd-core', 'workflows', 'ingest-docs.md'); const content = fs.readFileSync(wfPath, 'utf8'); assert.ok(content.includes('`OUTPUT_DIR` — `{intel_dir}/classifications`'), 'gsd-doc-classifier spawn OUTPUT_DIR must reference {intel_dir}, not a bare .planning/intel/classifications/ literal'); assert.ok(content.includes( 'CLASSIFICATIONS_DIR: {intel_dir}/classifications\n INTEL_DIR: {intel_dir}\n CONFLICTS_PATH: {conflicts_path}' ), 'gsd-doc-synthesizer spawn must reference {intel_dir}/{conflicts_path}, not bare .planning literals'); assert.ok(content.includes( 'Intel: {intel_dir}/SYNTHESIS.md (entry point)\n Per-type intel: {intel_dir}/decisions.md, {intel_dir}/requirements.md, {intel_dir}/constraints.md, {intel_dir}/context.md' ), 'gsd-roadmapper spawn must reference {intel_dir}, not bare .planning/intel/*.md literals'); assert.ok(content.includes( 'Produce:\n - {project_path}\n - {requirements_path}\n - {roadmap_path}\n - {state_path}' ), 'gsd-roadmapper spawn Produce block must reference absolute path fields, not bare .planning literals'); }); }); // ───────────────────────────────────────────────────────────────────────────── // #3057 B3: cmdInitVerifyWork surfaces an indeterminate staleness check // // buildPhaseCompletionProjection (init.cts) projects readVerificationStatus's // result into phase_completion — a workflow step reads phase_completion.* // fields directly. Pre-#3057 B3 wiring, `staleCheckIndeterminate` was // computed by readVerificationStatus but dropped here, so a workflow could // never distinguish "checked; nothing is stale" from "could not check". // ───────────────────────────────────────────────────────────────────────────── describe('#3057 B3: cmdInitVerifyWork — verification staleness-check indeterminate is surfaced', () => { const initMod = require(path.join(__dirname, '..', 'gsd-core', 'bin', 'lib', 'init.cjs')); let projectDir; beforeEach(() => { projectDir = createFixture(); }); afterEach(() => { cleanup(projectDir); }); /** * In-process capture of cmdInitVerifyWork's stdout JSON, stderr discarded. * * io.cts's `output()` writes via `writeAllSync` → `fs.writeSync(1, ...)` * directly (bug #1008's non-blocking-pipe fix), NOT `process.stdout.write` * — so mocking `process.stdout.write` here silently captures nothing and * every assertion below saw `JSON.parse('')` ("Unexpected end of JSON * input") regardless of what cmdInitVerifyWork actually produced. The fix * is the fd-level seam tests/io.test.cjs already established for exactly * this function (bug #1008's `t.mock.method(fs, 'writeSync', ...)` * pattern): intercept fd 1, discard fd 2, and pass every OTHER fd through * to the real writeSync — any code path that opens its own fd (e.g. a * lock file) must still actually write, not be silently swallowed as if * it were stdout. */ function captureInitVerifyWork(t, cwd, phase) { const captured = captureFdSync(1, () => initMod.cmdInitVerifyWork(cwd, phase, false)); assert.ok(captured.length > 0, 'cmdInitVerifyWork produced no stdout output'); return captured; } function seedVerifiedPhase() { seedPhase(projectDir, '03-api', { '03-01-PLAN.md': '# Plan', '03-01-SUMMARY.md': '# Summary', '03-VERIFICATION.md': '---\nstatus: passed\n---\n\n# Verification\n', }); fs.writeFileSync(path.join(projectDir, '.planning', 'STATE.md'), '# State\n'); fs.writeFileSync(path.join(projectDir, '.planning', 'ROADMAP.md'), '# Roadmap\n'); const phaseDir = path.join(projectDir, '.planning', 'phases', '03-api'); const summaryPath = path.join(phaseDir, '03-01-SUMMARY.md'); const verificationPath = path.join(phaseDir, '03-VERIFICATION.md'); // Deterministic mtime ordering (never rely on write-order clock ties): // verification strictly newer than the summary → a completed check finds // nothing stale. const older = new Date('2026-01-01T00:00:00.000Z'); const newer = new Date('2026-01-01T00:01:00.000Z'); fs.utimesSync(summaryPath, older, older); fs.utimesSync(verificationPath, newer, newer); return { summaryPath, verificationPath }; } test('an fs failure inside the staleness check sets phase_completion.verification_stale_check_indeterminate:true', (t) => { const { summaryPath, verificationPath } = seedVerifiedPhase(); const origStatSync = fs.statSync; t.mock.method(fs, 'statSync', function injectedStaleCheckFault(target, ...args) { const targetPath = String(target); if (targetPath === verificationPath || targetPath === summaryPath) { throw new Error('injected stat failure (#3057 B3)'); } return origStatSync.call(fs, target, ...args); }); const output = JSON.parse(captureInitVerifyWork(t, projectDir, '03')); // Pre-existing no-throw fail-open routing is UNCHANGED: status still // resolves to 'passed' exactly as it would without the injected fault. assert.strictEqual(output.phase_completion.verification_status, 'passed'); assert.strictEqual(output.phase_completion.verification_stale_check_indeterminate, true); }); test('a completed staleness check that finds nothing stale reports verification_stale_check_indeterminate:false', (t) => { seedVerifiedPhase(); const output = JSON.parse(captureInitVerifyWork(t, projectDir, '03')); assert.strictEqual(output.phase_completion.verification_status, 'passed'); assert.strictEqual(output.phase_completion.verification_stale_check_indeterminate, false); }); }); // ───────────────────────────────────────────────────────────────────────────── // #3885 (ADR-3473 §8.5) / item 5 — cmdInitPlanPhase / cmdInitPhaseOp swallow an // unreadable phase directory into "none of the conditional fields resolved", // indistinguishable from a phase directory that genuinely has no // CONTEXT.md/RESEARCH.md/VERIFICATION.md/UAT.md/REVIEWS.md/PATTERNS.md. // // Mechanism (src/init.cts, both cmdInitPlanPhase and cmdInitPhaseOp): // try { const files = fs.readdirSync(phaseDirFull); ... } // catch { /* intentionally empty */ } // guarded by `if (phaseInfo?.['directory'])` — the directory was already // resolved to exist on disk, so a caught error here is never a genuine // "phase has no directory yet" absence. // // Both commands gain `context_read_error` on their result: absent (key // omitted, matching prior shape) when readdirSync succeeds or fails with // ENOENT (a genuine race — the directory vanished after resolution, and // stays a silent degrade like the prior behavior); a message naming the // phase directory on any other errno (EACCES/EIO/...). // // Neither command returns its result object (`output(result, raw)` writes // via `fs.writeSync(1, ...)` — see the cmdInitVerifyWork capture helper // above for why `process.stdout.write` cannot see it), and both are // exercised through the real CLI dispatcher elsewhere in this file via // `runGsdTools`, a real subprocess a parent-process fs monkeypatch cannot // reach — so these drive the exported functions directly, in-process, // mirroring the cmdInitVerifyWork capture pattern immediately above. // Injected via `t.mock.method(fs, 'readdirSync', ...)` (auto-restored) — // NEVER chmod 0o000, which root bypasses with zero coverage. describe('#3885 (ADR-3473 §8.5): init callers distinguish unreadable from absent phase directories', () => { const initMod = require(path.join(__dirname, '..', 'gsd-core', 'bin', 'lib', 'init.cjs')); let projectDir; beforeEach(() => { projectDir = createFixture(); seedPhase(projectDir, '03-api', { '03-01-PLAN.md': '# Plan', }); writePlanningDocs(projectDir); }); afterEach(() => { cleanup(projectDir); }); function captureFd1(t, run) { const captured = captureFdSync(1, run); assert.ok(captured.length > 0, 'command produced no stdout output'); return JSON.parse(captured); } function injectReaddirFailure(t, targetPath, code) { const resolved = path.resolve(targetPath); const origReaddirSync = fs.readdirSync.bind(fs); t.mock.method(fs, 'readdirSync', (p, ...rest) => { if (path.resolve(String(p)) === resolved) { const err = new Error(`${code}: simulated failure, scandir '${p}'`); err.code = code; throw err; } return origReaddirSync(p, ...rest); }); } const phaseDirAbs = () => path.join(projectDir, '.planning', 'phases', '03-api'); describe('cmdInitPlanPhase', () => { // #4014 (epic #3473 B4-unreadable) matrix row 14: a readable, genuinely // context-less phase dir reports context_scope 'complete' — the // additive scope signal adjacent to has_context. test('readablePhaseDirReportsNoReadError (MUST STAY GREEN)', (t) => { const output = captureFd1(t, () => initMod.cmdInitPlanPhase(projectDir, '03', false)); assert.strictEqual(output.context_read_error ?? null, null); assert.strictEqual(output.context_scope, 'complete'); }); // #4014 matrix row 13: has_context stays false AND context_scope // distinguishes this from genuine absence. test('unreadablePhaseDirIsNotReportedAsAbsent', (t) => { injectReaddirFailure(t, phaseDirAbs(), 'EACCES'); const output = captureFd1(t, () => initMod.cmdInitPlanPhase(projectDir, '03', false)); assert.strictEqual(typeof output.context_read_error, 'string', `an unreadable phase directory must be reported, not silently absent; got: ${JSON.stringify(output.context_read_error)}`); assert.ok(output.context_read_error.includes('03-api'), `the reported error must name the discarded input (the phase directory); got: ${output.context_read_error}`); assert.strictEqual(output.has_context, false); assert.strictEqual(output.context_scope, 'unreadable', `an unreadable phase directory must report context_scope 'unreadable', distinct from a genuinely empty one; got: ${output.context_scope}`); }); test('raceConditionEnoentStaysAGenuineSilentDegrade (MUST STAY GREEN)', (t) => { injectReaddirFailure(t, phaseDirAbs(), 'ENOENT'); const output = captureFd1(t, () => initMod.cmdInitPlanPhase(projectDir, '03', false)); assert.strictEqual(output.context_read_error ?? null, null, `ENOENT must stay a silent degrade (genuine race), not reported as an error; got: ${output.context_read_error}`); }); }); describe('cmdInitPhaseOp', () => { // #4014 matrix row 14 (second surface). test('readablePhaseDirReportsNoReadError (MUST STAY GREEN)', (t) => { const output = captureFd1(t, () => initMod.cmdInitPhaseOp(projectDir, '03', false)); assert.strictEqual(output.context_read_error ?? null, null); assert.strictEqual(output.context_scope, 'complete'); }); // #4014 matrix row 13 (second surface). test('unreadablePhaseDirIsNotReportedAsAbsent', (t) => { injectReaddirFailure(t, phaseDirAbs(), 'EACCES'); const output = captureFd1(t, () => initMod.cmdInitPhaseOp(projectDir, '03', false)); assert.strictEqual(typeof output.context_read_error, 'string', `an unreadable phase directory must be reported, not silently absent; got: ${JSON.stringify(output.context_read_error)}`); assert.ok(output.context_read_error.includes('03-api'), `the reported error must name the discarded input (the phase directory); got: ${output.context_read_error}`); assert.strictEqual(output.has_context, false); assert.strictEqual(output.context_scope, 'unreadable', `an unreadable phase directory must report context_scope 'unreadable', distinct from a genuinely empty one; got: ${output.context_scope}`); }); test('raceConditionEnoentStaysAGenuineSilentDegrade (MUST STAY GREEN)', (t) => { injectReaddirFailure(t, phaseDirAbs(), 'ENOENT'); const output = captureFd1(t, () => initMod.cmdInitPhaseOp(projectDir, '03', false)); assert.strictEqual(output.context_read_error ?? null, null, `ENOENT must stay a silent degrade (genuine race), not reported as an error; got: ${output.context_read_error}`); }); }); }); // ───────────────────────────────────────────────────────────────────────────── // roadmap analyze command // ───────────────────────────────────────────────────────────────────────────── // ──────────────────────────────────────────────────────────────────────── // Folded from tests/bug-3491-nested-git-worktree.test.cjs — consolidation epic #1969 (B6 #1975) // ──────────────────────────────────────────────────────────────────────── { const { describe: __foldDescribe } = require('node:test'); __foldDescribe("folded:bug-3491-nested-git-worktree (consolidation epic #1969 B6 #1975)", () => { // allow-test-rule: source-text-is-the-product (see #3491) // Bug #3491 — new-project workflow creates nested .git in subdirectory when // parent already has git repo. // // The workflow's `has_git` boolean was derived from `pathExists(cwd, '.git')` // — a shallow check that only sees a `.git` entry directly in the current // directory. Subdirectories of an existing git worktree therefore reported // `has_git: false`, causing the workflow's `git init` step to create a nested // `.git` inside the outer repo's worktree. Subsequent gsd-sdk commits then // targeted the nested repo instead of the outer one, silently dropping all // planning artefacts from the outer repo's history. // // This test asserts the corrected semantics, mirroring `git rev-parse // --is-inside-work-tree`: // // - `has_git: true` is reported whenever the cwd is inside a git worktree, // even when no `.git` entry is in cwd itself. // - The init payload surfaces `git_worktree_root` and `in_nested_subdir` so // the workflow can warn the user and skip `git init`. // - The workflow markdown's `git init` step is gated on // `in_nested_subdir: false`, never unconditional under `has_git: false`. 'use strict'; const test = require('node:test'); const assert = require('node:assert/strict'); const fs = require('node:fs'); const os = require('node:os'); const path = require('node:path'); const { runGsdTools, cleanup } = require('./helpers.cjs'); const { gitOrThrow } = require('./helpers/git-fixture.cjs'); const WORKFLOW_PATH = path.join( __dirname, '..', 'gsd-core', 'workflows', 'new-project.md', ); // ─── Helper: create outer git repo with a nested workstream subdir ───────── // On Windows the runtime emits forward slashes (git's convention) while // path.join produces backslashes — normalize both sides via the shared // toPosixPath helper before any equality comparison. const { toPosixPath: normalizePath } = require('./helpers.cjs'); function createOuterRepoWithSubdir(prefix = 'bug-3491-') { const outer = fs.mkdtempSync(path.join(os.tmpdir(), prefix)); // macOS /tmp -> /private/tmp; on Windows the runner's %TEMP% is the 8.3 // short-name (RUNNER~1) and the runtime resolves to the long form. // realpathSync.native handles both; then normalize separators for compare. const outerReal = fs.realpathSync.native(outer); gitOrThrow(['init'], { cwd: outerReal }); gitOrThrow(['config', 'user.email', 'test@test.com'], { cwd: outerReal }); gitOrThrow(['config', 'user.name', 'Test'], { cwd: outerReal }); gitOrThrow(['config', 'commit.gpgsign', 'false'], { cwd: outerReal }); fs.writeFileSync(path.join(outerReal, 'README.md'), '# outer\n'); gitOrThrow(['add', '-A'], { cwd: outerReal }); gitOrThrow(['commit', '-m', 'initial'], { cwd: outerReal }); const subdir = path.join(outerReal, 'workstreams', 'my-project'); fs.mkdirSync(subdir, { recursive: true }); return { outer: outerReal, subdir }; } // ─── Behavioural tests against the live `init new-project` handler ───────── test('bug-3491: init new-project reports has_git: true inside parent git worktree', () => { const { outer, subdir } = createOuterRepoWithSubdir(); try { const result = runGsdTools('init new-project', subdir); assert.ok(result.success, `init new-project failed: ${result.error}`); const payload = JSON.parse(result.output); // Core fix: shallow `.git in cwd` check was wrong — we are inside the // outer worktree, so the workflow MUST see has_git: true. assert.strictEqual( payload.has_git, true, 'expected has_git=true when cwd is inside an existing git worktree (parent .git)', ); // The workflow needs the worktree root and a nesting flag to decide // whether to skip `git init` and emit a friendly warning. assert.strictEqual( normalizePath(payload.git_worktree_root), normalizePath(outer), `expected git_worktree_root to be the outer repo (${outer}), got: ${payload.git_worktree_root}`, ); assert.strictEqual( payload.in_nested_subdir, true, 'expected in_nested_subdir=true when cwd is a subdirectory of the worktree root', ); } finally { cleanup(outer); } }); test('bug-3491: init new-project reports has_git: true at worktree root with in_nested_subdir: false', () => { const { outer } = createOuterRepoWithSubdir(); try { const result = runGsdTools('init new-project', outer); assert.ok(result.success, `init new-project failed: ${result.error}`); const payload = JSON.parse(result.output); assert.strictEqual(payload.has_git, true, 'has_git must be true at the worktree root'); assert.strictEqual(normalizePath(payload.git_worktree_root), normalizePath(outer)); assert.strictEqual( payload.in_nested_subdir, false, 'at the worktree root, in_nested_subdir must be false', ); } finally { cleanup(outer); } }); test('bug-3491: init new-project reports has_git: false outside any git worktree', () => { const tmp = fs.realpathSync.native(fs.mkdtempSync(path.join(os.tmpdir(), 'bug-3491-bare-'))); try { const result = runGsdTools('init new-project', tmp); assert.ok(result.success, `init new-project failed: ${result.error}`); const payload = JSON.parse(result.output); assert.strictEqual(payload.has_git, false); assert.strictEqual(payload.in_nested_subdir, false); assert.strictEqual(payload.git_worktree_root, null); } finally { cleanup(tmp); } }); test('bug-3491: init ingest-docs mirrors the same has_git semantics', () => { // ingest-docs.md has the same shallow check and the same nested-init risk. const { outer, subdir } = createOuterRepoWithSubdir('bug-3491-ingest-'); try { const result = runGsdTools('init ingest-docs', subdir); assert.ok(result.success, `init ingest-docs failed: ${result.error}`); const payload = JSON.parse(result.output); assert.strictEqual( payload.has_git, true, 'init ingest-docs must also detect parent worktree (#3491 related path)', ); assert.strictEqual(normalizePath(payload.git_worktree_root), normalizePath(outer)); assert.strictEqual(payload.in_nested_subdir, true); } finally { cleanup(outer); } }); // ─── Workflow-text test: the deployed `new-project.md` must gate `git init` ─ test('bug-3491: new-project.md gates `git init` on in_nested_subdir, not just has_git', () => { const content = fs.readFileSync(WORKFLOW_PATH, 'utf-8'); // The pre-fix workflow had the literal sequence: // // **If `has_git` is false:** Initialize git: // ```bash // git init // ``` // // …which fires for any subdirectory of an existing repo. The fix must // either gate the init on `in_nested_subdir`/worktree-root semantics or // drop the unconditional `git init` block entirely. const unconditionalInitPattern = /\*\*If `has_git` is false:\*\* Initialize git:\s*\r?\n+```bash\s*\r?\ngit init\s*\r?\n```/; assert.ok( !unconditionalInitPattern.test(content), 'new-project.md must not run `git init` unconditionally on has_git=false (#3491). ' + 'Gate it on `in_nested_subdir === false` so the workflow refuses to create ' + 'a nested .git inside an existing worktree.', ); // The fixed workflow MUST mention the new field so reviewers can see the // gating exists. (Workflow markdown IS the deployed product — testing it // as text is the only end-to-end signal we have.) assert.ok( /in_nested_subdir/.test(content), 'new-project.md must reference `in_nested_subdir` after the #3491 fix', ); }); }); } // ───────────────────────────────────────────────────────────────────────────── // Folded from tests/init-section-manifest.test.cjs — #2932 (epic #1671 Phase 5) // ───────────────────────────────────────────────────────────────────────────── // // init CLI negative matrix for `section_manifest`. Covers // `.gsd/phase/chore-2932-init-section-manifest/50-test-matrix.md` section E // (rows 42-59) plus row 62. Drives the REAL CLI through the dispatch seam // (`spawnSync(process.execPath, [...])` with argv ARRAYS — never shell strings) so // hostile inputs (rows 55/56) prove no shell interpolation and no path escape. // // Each test asserts: exit status, structured JSON result, absence of project-tree // fs mutation, and no stack trace in non-debug stderr — never substring-matching // rendered prose (local/no-source-grep). describe('init section manifest', () => { const GSD_ROOT = path.join(__dirname, '..', 'gsd-core'); const COMMANDS_DIR = path.join(__dirname, '..', 'commands', 'gsd'); // ── Drivers ───────────────────────────────────────────────────────────── /** * Invokes the real CLI dispatch seam with an argv ARRAY (never a shell string), * so shell metacharacters in an argument (rows 55/56) can never be interpreted * by a shell — spawnSync with an array bypasses the shell entirely. Always runs * with GSD_JSON_ERRORS=1 so an error path yields a typed `{ ok, reason, message }` * envelope instead of prose, per CONTRIBUTING.md "Prohibited: Raw Text Matching". */ function runSectionManifestCli(args, cwd, env = {}) { const result = spawnSync(process.execPath, [TOOLS_PATH, 'query', ...args], { cwd, encoding: 'utf8', env: { ...process.env, GSD_JSON_ERRORS: '1', ...env }, timeout: GSD_TOOLS_CLI_MODERATE_TIMEOUT_MS, }); let stdout = result.stdout || ''; // output() spills payloads over 50KB to a tmpfile and prints "@file:" // (src/io.cts) — dereference it exactly as the workflow itself does. if (stdout.startsWith('@file:')) { stdout = fs.readFileSync(stdout.slice('@file:'.length).trim(), 'utf8'); } return { status: result.status, stdout, stderr: result.stderr || '' }; } function runExecutePhase(phaseArgs, cwd, env = {}) { return runSectionManifestCli(['init.execute-phase', ...phaseArgs], cwd, env); } function parseOkJson(result, label) { assert.equal(result.status, 0, `${label}: expected exit 0, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, label); return JSON.parse(result.stdout); } function parseErrorJson(result, label) { assert.notEqual(result.status, 0, `${label}: expected non-zero exit`); assertNoStackTrace(result.stderr, label); return JSON.parse(result.stderr); } /** Node stack-trace frames look like "\n at fn (file:line:col)" — a structural * signal, not a content match on any file's prose. */ function assertNoStackTrace(text, label) { assert.ok(!/\n\s+at\s+\S+/.test(text || ''), `${label}: unexpected stack trace: ${text}`); } /** Recursive, sorted snapshot of a directory's structure — name/size/mtime triples, * used to assert a read-only `query` command mutates nothing under the project tree. */ function snapshotSectionManifestTree(dir) { const out = []; function walk(d, rel) { let entries; try { entries = fs.readdirSync(d, { withFileTypes: true }); } catch { return; } entries.sort((a, b) => a.name.localeCompare(b.name)); for (const entry of entries) { const relPath = rel ? `${rel}/${entry.name}` : entry.name; const full = path.join(d, entry.name); if (entry.isDirectory()) { out.push(`D:${relPath}`); walk(full, relPath); } else { const st = fs.statSync(full); out.push(`F:${relPath}:${st.size}`); } } } walk(dir, ''); return out; } function seedSinglePhaseProject(t, prefix) { const dir = createTempProject(prefix); t.after(() => cleanup(dir)); seedPhase(dir, '01-widgets', {}); return dir; } // ── E42-43: baseline manifest emission, with/without --wave ───────────── describe('init execute-phase: section_manifest emission (#2932)', () => { test('emitsSectionManifestWithoutWaveFlag', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e42-'); const before = snapshotSectionManifestTree(dir); const body = parseOkJson(runExecutePhase(['1'], dir), 'no-flag'); assert.deepStrictEqual(snapshotSectionManifestTree(dir), before, 'query command must not mutate the project tree'); assert.ok(body.section_manifest, 'section_manifest must be present'); assert.equal(body.section_manifest.workflow, 'execute-phase'); assert.ok(!body.section_manifest.included.includes('partial-wave'), 'partial-wave must be excluded without --wave'); assert.ok(body.section_manifest.excluded.includes('partial-wave')); assert.deepStrictEqual(body.section_manifest.read, []); }); test('emitsSectionManifestIncludingPartialWaveWithWaveFlag (#2932 headline acceptance criterion)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e43-'); const body = parseOkJson(runExecutePhase(['1', '--wave', '1'], dir), 'with-wave'); assert.ok(body.section_manifest); assert.deepStrictEqual(body.section_manifest.included, ['partial-wave']); assert.ok(!body.section_manifest.excluded.includes('partial-wave')); assert.deepStrictEqual(body.section_manifest.read, [ 'gsd-core/workflows/execute-phase/steps/partial-wave.md', ]); }); test('#3511-class: regression-gate (state:has-prior-phases) ignores a misplaced VERIFICATION.md that belongs to another phase', (t) => { const dir = createTempProject('gsd-3511-hasprior-'); t.after(() => cleanup(dir)); // Phase 01 is the one being executed. seedPhase(dir, '01-widgets', {}); // Phase 02's directory holds ONLY a stray artifact whose filename // token ("05-") belongs to phase 05, not to this directory's own // phase (02) — it must not make phase 02 look like it has its own // verification report. seedPhase(dir, '02-other', { '05-VERIFICATION.md': '# Verification for phase 05' }); const body = parseOkJson(runExecutePhase(['1'], dir), 'stray-verification'); assert.ok(body.section_manifest, 'section_manifest must be present'); assert.ok(!body.section_manifest.included.includes('regression-gate'), 'regression-gate must not be included when no OTHER phase has its own verification'); assert.ok(body.section_manifest.excluded.includes('regression-gate')); }); }); // ── E44-46: phase argument boundary ──────────────────────────────────── describe('init execute-phase: phase argument boundary (#2932)', () => { test('failsWhenPhaseArgumentMissing', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e44-'); const err = parseErrorJson(runExecutePhase([], dir), 'missing-phase'); assert.equal(err.ok, false); assert.equal(typeof err.reason, 'string'); assert.equal(typeof err.message, 'string'); }); test('failsOnEmptyPhaseArgument', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e45-'); const err = parseErrorJson(runExecutePhase([''], dir), 'empty-phase'); assert.equal(err.ok, false); }); test('failsOnWhitespaceOnlyPhaseArgument', (t) => { // Test-matrix row 46 names "non-zero" as expected. Empirically, cmdInitExecutePhase's // guard is `if (!phase)`, which is false for a non-empty whitespace string — this // pre-existing idiom is SHARED by every phase-taking init subcommand (plan-phase, // todos, phase-op, ...), not introduced by #2932, and changing it here would be a // blast-radius violation of the CRITICAL routeInitCommand rating (37 affected files). // " " instead falls through to guardedFindPhase, which returns no match — the same // graceful "not found" degrade the path-traversal/shell-metachar rows (55/56) require, // not a crash. This test locks the REAL, current, exit-0 "not found" behavior rather // than the matrix's a-priori assumption; see the dispatch report for this reconciliation. const dir = seedSinglePhaseProject(t, 'gsd-e46-'); const body = parseOkJson(runExecutePhase([' '], dir), 'whitespace-phase'); assert.equal(body.phase_found, false); assert.ok(body.section_manifest, 'manifest is still emitted — it does not depend on phase_found'); }); }); // ── E47-52: --wave token-presence semantics ────────────────────────────── describe('init execute-phase: --wave token-presence semantics (#2932)', () => { test('treatsValuelessWaveFlagAsPresent', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e47-'); const body = parseOkJson(runExecutePhase(['1', '--wave'], dir), 'valueless-wave'); assert.deepStrictEqual(body.section_manifest.included, ['partial-wave']); }); test('treatsWaveZeroAsPresent', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e48-'); const body = parseOkJson(runExecutePhase(['1', '--wave', '0'], dir), 'wave-zero'); assert.deepStrictEqual(body.section_manifest.included, ['partial-wave']); }); test('treatsDuplicateWaveFlagsIdempotently', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e49-'); const body = parseOkJson(runExecutePhase(['1', '--wave', '1', '--wave', '2'], dir), 'dup-wave'); assert.deepStrictEqual(body.section_manifest.included, ['partial-wave']); }); test('handlesMalformedWaveAssignments', (t) => { // Corrected after the first full verification run: neither --wave= nor // --wave==1 is a documented or shipped token (commands/gsd/execute-phase.md, // gsd-core/workflows/execute-phase.md, and the docs tree all only ever // emit the space-separated --wave N form) — each is an exact, distinct, // undeclared flag token, so ADR-3473 §8.4 mandates rejecting it outright // rather than silently letting it fall through unrecognized. Exit 1, and // — same exact-match discipline that keeps "--waves"/"--wave-filter" // from false-activating (row 52) — the rejection must name the // malformed token itself, proving it was never coerced into activating // --wave. const dir = seedSinglePhaseProject(t, 'gsd-e50-'); for (const token of ['--wave=', '--wave==1']) { const result = runExecutePhase(['1', token], dir); assert.equal(result.status, 1, `malformed-wave:${token}: expected exit 1, got ${result.status}`); const err = JSON.parse(result.stderr); assert.match(err.message, new RegExp(escapeRegex(token)), `"${token}" must be named as the unknown flag, proving it did not activate --wave`); } }); test('doesNotConsumeFollowingFlagAsWaveValue', (t) => { // Unit-level: --wave is an optionalValueFlags entry (#2932's `--wave N` // shape) — its cursor never swallows a following flag-shaped token as // its value; it advances by 1, not 2, leaving --weird for its own // validation. Assert the extraction directly rather than through the // full CLI, since --weird's own (correct) rejection below makes the // manifest body unreachable. const { parseNamedArgs } = require('../gsd-core/bin/lib/command-arg-projection.cjs'); const extracted = parseNamedArgs(['--wave', '--weird'], { optionalValueFlags: ['wave'], positionals: 'rest' }); assert.strictEqual(extracted.ok, true); assert.strictEqual(extracted.data.wave, true, '--wave must resolve to present (true), not be starved by the following token'); // Integration: --weird is a genuinely undeclared flag on execute-phase, // so ADR-3473 §8.4 mandates rejecting it — exit 1, not the old exit-0 // "ignored" shape. The rejection naming "--weird" (not "--wave") is // itself proof --wave did not consume it as a value. const dir = seedSinglePhaseProject(t, 'gsd-e51-'); const result = runExecutePhase(['1', '--wave', '--weird'], dir); assert.equal(result.status, 1, `wave-then-weird: expected exit 1, got ${result.status}`); const err = JSON.parse(result.stderr); assert.match(err.message, /--weird/, 'the unknown-flag rejection must name --weird, proving --wave did not consume it as its value'); }); test('nearMissFlagNamesDoNotActivateWave', (t) => { // Corrected after the first full verification run: neither "--waves" // nor "--wave-filter" is documented or shipped for execute-phase, so // each is a genuinely undeclared flag — ADR-3473 §8.4 mandates // rejecting it (exit 1), not silently ignoring it. The rejection // naming the near-miss token itself is what proves it never // false-activated --wave. const dir = seedSinglePhaseProject(t, 'gsd-e52-'); for (const flag of ['--waves', '--wave-filter']) { const result = runExecutePhase(['1', flag], dir); assert.equal(result.status, 1, `near-miss:${flag}: expected exit 1, got ${result.status}`); const err = JSON.parse(result.stderr); assert.match(err.message, new RegExp(escapeRegex(flag)), `"${flag}" must be named as the unknown flag, proving it did not activate --wave`); } }); }); // ── E53: unknown subcommand ─────────────────────────────────────────────── describe('init dispatch: unknown subcommand (#2932 row 53)', () => { test('reportsUnknownInitSubcommand', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e53-'); const err = parseErrorJson(runSectionManifestCli(['init.frobnicate'], dir), 'unknown-subcommand'); assert.equal(err.ok, false); assert.equal(err.reason, 'sdk_unknown_command'); }); }); // ── E54-56: hostile inputs ──────────────────────────────────────────────── describe('init execute-phase: hostile inputs (#2932)', () => { test('handlesVeryLongAndUnicodeValues', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e54-'); const longUnicodeValue = 'x'.repeat(20000) + '你好\u{1f600}'; const result = runExecutePhase(['1', '--wave', longUnicodeValue], dir); assert.equal(result.status, 0, `expected exit 0, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'long-unicode-value'); const body = JSON.parse(result.stdout); assert.deepStrictEqual(body.section_manifest.included, ['partial-wave']); const longPhaseResult = runExecutePhase(['1' + 'z'.repeat(20000)], dir); assert.equal(longPhaseResult.status, 0); assertNoStackTrace(longPhaseResult.stderr, 'long-phase-value'); }); test('doesNotInterpolateShellMetacharactersInPhase', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e55-'); const sentinel = path.join(dir, 'pwned-sentinel'); const hostilePhase = `1; touch ${sentinel}; $(touch ${sentinel}) \`touch ${sentinel}\` && touch ${sentinel} || touch ${sentinel}`; const result = runExecutePhase([hostilePhase], dir); assert.equal(result.status, 0, `expected exit 0 (no shell execution), got ${result.status}`); assertNoStackTrace(result.stderr, 'shell-metachars'); assert.ok(!fs.existsSync(sentinel), 'shell metacharacters in the phase argument must never be interpreted — argv array bypasses the shell entirely'); }); test('rejectsPathTraversalStylePhaseValue', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e56-'); const before = snapshotSectionManifestTree(dir); const body = parseOkJson(runExecutePhase(['../../../../etc/passwd'], dir), 'path-traversal'); assert.deepStrictEqual(snapshotSectionManifestTree(dir), before, 'no fs mutation from a traversal-shaped phase value'); assert.equal(body.phase_found, false, 'a traversal-shaped value must never resolve to a real phase'); assert.ok( !String(body.phase_dir || '').includes('etc/passwd'), 'phase_dir must never resolve outside the project tree', ); }); }); // ── E57-58: degraded path — manifest artifact missing/malformed ───────── describe('init execute-phase: section_manifest degrades to null (#2932)', () => { test('degradesToNullManifestWhenArtifactMissing', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e57-'); const missingPath = path.join(dir, 'does-not-exist-section-manifest.json'); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: missingPath }); assert.equal(result.status, 0, `expected exit 0 despite missing manifest artifact, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'manifest-missing'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); test('degradesToNullManifestWhenArtifactMalformed', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e58-'); const badPath = path.join(dir, 'bad-section-manifest.json'); fs.writeFileSync(badPath, '{ this is not valid json'); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: badPath }); assert.equal(result.status, 0, `expected exit 0 despite malformed manifest artifact, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'manifest-malformed'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); test('degradesToNullManifestWhenArtifactWrongShape', (t) => { // Extends row 58: valid JSON, wrong shape (design doc + init.cts loadSectionManifestSections // both name this as a degraded case distinct from "not JSON at all"). const dir = seedSinglePhaseProject(t, 'gsd-e58b-'); const wrongShapePath = path.join(dir, 'wrong-shape-section-manifest.json'); fs.writeFileSync(wrongShapePath, JSON.stringify([1, 2, 3])); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: wrongShapePath }); assert.equal(result.status, 0); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); // ── C4 (#2992): stale FLAT pre-6.1 artifact must degrade to null and // never be mis-attributed to any workflow — the upgrade-path row. test('staleFlatPreWideningArtifactDegradesToNull (row C4)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c4-'); const flatPath = path.join(dir, 'flat-section-manifest.json'); // The pre-#2932-Phase-6.1 shape: a single top-level `sections` array, // no `workflows` key at all. It even NAMES an execute-phase-shaped // section, so a mis-attribution bug would silently "work". fs.writeFileSync( flatPath, JSON.stringify({ sections: [{ id: 'partial-wave', when: 'flag:--wave', read: 'gsd-core/workflows/execute-phase/steps/partial-wave.md' }], }), ); const result = runExecutePhase(['1', '--wave', '1'], dir, { GSD_SECTION_MANIFEST: flatPath }); assert.equal(result.status, 0, `expected exit 0 despite stale flat artifact, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'stale-flat-artifact'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, 'a pre-6.1 flat artifact must never be mis-parsed as some workflow\'s sections'); }); // ── C8 (#2992): valid JSON that is not an object — one row each. test('nonObjectJsonArtifactDegradesToNull (row C8)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c8-'); for (const hostileJson of ['0', '"str"', '[]', 'null', 'true']) { const hostilePath = path.join(dir, `hostile-${Buffer.from(hostileJson).toString('hex')}-section-manifest.json`); fs.writeFileSync(hostilePath, hostileJson); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: hostilePath }); assert.equal(result.status, 0, `hostile JSON ${hostileJson}: expected exit 0 (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, `hostile-json:${hostileJson}`); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, `hostile JSON ${hostileJson} must degrade to null`); } }); // ── C9 (#2992): file present but 0 bytes. test('emptyZeroByteArtifactFileDegradesToNull (row C9)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c9-'); const emptyPath = path.join(dir, 'empty-section-manifest.json'); fs.writeFileSync(emptyPath, ''); assert.equal(fs.statSync(emptyPath).size, 0, 'sanity: fixture file must be 0 bytes'); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: emptyPath }); assert.equal(result.status, 0, `expected exit 0 despite empty artifact file, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'empty-artifact-file'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); // ── #2992 review finding: an unsafe `read` path degrades the WHOLE // load to null, exactly like every other shape violation above — the // field is documented as a POSIX-normalized, repo-root-RELATIVE path, // so an absolute path, a Windows drive/UNC prefix, or a `..` traversal // segment must never be trusted through to a later `fs.readFileSync`. test('degradesToNullWhenReadPathIsAbsolute', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-unsafe-abs-'); const manifestPath = path.join(dir, 'unsafe-abs-section-manifest.json'); fs.writeFileSync(manifestPath, JSON.stringify({ workflows: { 'execute-phase': [{ id: 'x', when: 'always', read: '/etc/passwd' }] }, })); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.equal(result.status, 0, `expected exit 0 despite an absolute read path, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'unsafe-read-absolute'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, 'an absolute `read` path must degrade the whole load to null'); }); test('degradesToNullWhenReadPathContainsDotDotTraversal', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-unsafe-dotdot-'); const manifestPath = path.join(dir, 'unsafe-dotdot-section-manifest.json'); fs.writeFileSync(manifestPath, JSON.stringify({ workflows: { 'execute-phase': [{ id: 'x', when: 'always', read: '../../etc/passwd' }] }, })); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.equal(result.status, 0, `expected exit 0 despite a ../ traversal read path, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'unsafe-read-dotdot'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, 'a `..` traversal segment in `read` must degrade the whole load to null'); }); test('degradesToNullWhenReadPathIsWindowsDriveAbsolute', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-unsafe-windrive-'); const manifestPath = path.join(dir, 'unsafe-windrive-section-manifest.json'); fs.writeFileSync(manifestPath, JSON.stringify({ workflows: { 'execute-phase': [{ id: 'x', when: 'always', read: 'C:\\Windows\\System32\\config' }] }, })); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.equal(result.status, 0, `expected exit 0 despite a Windows drive-absolute read path, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'unsafe-read-windrive'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, 'a Windows drive-absolute `read` path must degrade the whole load to null'); }); }); // ── C1/C12/C16/C17 (#2992): shape guarantees on the field itself ──────── describe('init execute-phase: section_manifest field-shape guarantees (#2992)', () => { test('emptySectionsArrayIsComputedNotDegraded (row C12 — present + empty is not null)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c12-'); const emptyWorkflowPath = path.join(dir, 'empty-workflow-section-manifest.json'); fs.writeFileSync(emptyWorkflowPath, JSON.stringify({ workflows: { 'execute-phase': [] } })); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: emptyWorkflowPath }); assert.equal(result.status, 0, `expected exit 0, got ${result.status} (stderr: ${result.stderr})`); const body = JSON.parse(result.stdout); assert.deepStrictEqual( body.section_manifest, { workflow: 'execute-phase', included: [], excluded: [], read: [] }, 'a workflow key present with sections:[] must compute to an empty-but-present selection, never null', ); }); test('workflowAbsentFromArtifactDegradesToNullNotEmptySections (row C16 — absence is not empty)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c16-'); const otherWorkflowPath = path.join(dir, 'other-workflow-section-manifest.json'); fs.writeFileSync(otherWorkflowPath, JSON.stringify({ workflows: { 'plan-phase': [{ id: 'x', when: 'always', read: 'x.md' }] } })); const result = runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: otherWorkflowPath }); assert.equal(result.status, 0); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null, 'execute-phase has no key in this artifact — must degrade to null, never {included:[]}'); }); test('executePhaseSectionManifestFieldIsByteIdenticalToThePreChangeShape (row C1 — Hyrum gate)', (t) => { // Locks the EXACT shape execute-phase's real, shipped manifest produces // for a plain (no --wave, no gap-closure, no prior phases) invocation — // #2992 widened the vocabulary and generalized the artifact to // per-workflow keying, but execute-phase's own 3 real sections (all // pre-existing atoms) must select IDENTICALLY to before this change. const dir = seedSinglePhaseProject(t, 'gsd-c1-'); const body = parseOkJson(runExecutePhase(['1'], dir), 'c1-baseline'); assert.deepStrictEqual(body.section_manifest, { workflow: 'execute-phase', included: [], excluded: ['partial-wave', 'gap-closure-artifacts', 'regression-gate'], read: [], }); }); test('restOfTheInitBundleIsUnaffectedByEverySectionManifestDegradedCondition (row C17 — Hyrum gate)', (t) => { // The `section_manifest` field is additive; every OTHER field of the // init-bundle (22 direct dependents per the design doc's blast-radius // table) must be byte-identical regardless of whether the manifest // artifact resolves, is missing, or is malformed. const dir = seedSinglePhaseProject(t, 'gsd-c17-'); const real = parseOkJson(runExecutePhase(['1'], dir), 'c17-real'); const missingPath = path.join(dir, 'does-not-exist-c17.json'); const missing = parseOkJson(runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: missingPath }), 'c17-missing'); const badPath = path.join(dir, 'bad-c17.json'); fs.writeFileSync(badPath, '{ not valid json'); const malformed = parseOkJson(runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: badPath }), 'c17-malformed'); delete real.section_manifest; delete missing.section_manifest; delete malformed.section_manifest; assert.deepStrictEqual(missing, real, 'every other init-bundle field must be unaffected by a missing manifest artifact'); assert.deepStrictEqual(malformed, real, 'every other init-bundle field must be unaffected by a malformed manifest artifact'); }); }); // ── D4 (#2992, prod-shape): an absent CLI flag is absent from `flags` ──── // // #2992 review finding (fixed in this change, src/init-command-router.cts): // `parseNamedArgs`'s booleanFlags ALWAYS populate the option key (`true` // when the token was seen, `false` otherwise — never `undefined`). // `buildSectionManifestField`'s flags-Set builder (src/init.cts) treats // ANY non-`undefined` option value as present (matrix D2/D3, for VALUE // flags whose absence is `null`). Passed through unmodified, a // booleanFlag's own `false` ("--wave" never typed) would still have been // added to `flags`, making `flag:--wave` permanently true regardless of // the actual invocation — verified live pre-fix: `partial-wave` was // INCLUDED with no `--wave` on the command line at all, silently // defeating the gating feature this whole seam exists for. The router now // folds a booleanFlag's own `false` into `undefined` before it reaches // `buildSectionManifestField`, so this test is the regression lock for // that fix — it duplicates the assertion `emitsSectionManifestWithoutWaveFlag` // already makes, under an explicit D4 name for matrix traceability. // // D2 ("option present, value false" as a generically-present option) and // D3 ("option present, string value") and D6 (a hostile literal option // key) are NOT independently prod-shape-testable through the real CLI as // currently wired: `execute-phase`/`plan-phase` are the only two handlers // that feed router-derived options into `buildSectionManifestField`, their // option-key lists are FIXED literals (`validate`/`tdd`/`wave`/ // `granularity`) never derived from user input (so a hostile key name can // never reach it for real), none of the 14 shipped vocabulary atoms is // backed by a value-taking CLI flag (so a real string-valued option can // never reach a `flag:` atom yet), and this fix means a booleanFlag's own // `false` never reaches the builder at all anymore. Synthesizing an // options object to force these paths would violate the matrix's own // "(prod-shape) rows must drive the options path" constraint, so they are // left unaddressed here rather than faked — surfaced for the orchestrator. describe('init execute-phase: undefined CLI flag is absent from flags (#2992 row D4)', () => { test('waveOptionAbsentWithoutTheFlagNeverActivatesPartialWave', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-d4-'); const body = parseOkJson(runExecutePhase(['1'], dir), 'd4-no-wave'); assert.ok(!body.section_manifest.included.includes('partial-wave'), 'an unset --wave must never leak into flags as "present"'); assert.deepStrictEqual(body.section_manifest.excluded, ['partial-wave', 'gap-closure-artifacts', 'regression-gate']); }); }); // ── D9/D10/D11 (#2992, prod-shape): state:* detector degradation ───────── // Drives the REAL cmdInitExecutePhase -> buildSectionManifestField -> // readConfigJsonBoolean/detectPhaseMvpMode seam through the real CLI with a // fixture manifest naming the two config-backed atoms, never a hand-built // InvocationFacts (matrix note: "(prod-shape)" rows must drive the options // path). `seedSinglePhaseProject` writes no `.planning/config.json` and no // `.planning/ROADMAP.md` at all, so D9 (absent config) and D11 (absent // ROADMAP) are the fixture's natural, un-monkeypatched state. describe('init execute-phase: state:* detector degradation (#2992 rows D9-D11)', () => { function writeDetectorManifest(dir) { const manifestPath = path.join(dir, 'detector-section-manifest.json'); fs.writeFileSync(manifestPath, JSON.stringify({ workflows: { 'execute-phase': [ { id: 'worktrees-section', when: 'state:worktrees-enabled', read: 'x.md' }, { id: 'mvp-section', when: 'state:phase-mvp-mode', read: 'y.md' }, ], }, })); return manifestPath; } test('absentConfigAndAbsentRoadmapDegradeBothStateAtomsToFalse (rows D9/D11)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-d9-'); assert.equal(fs.existsSync(path.join(dir, '.planning', 'config.json')), false, 'sanity: no config.json'); assert.equal(fs.existsSync(path.join(dir, '.planning', 'ROADMAP.md')), false, 'sanity: no ROADMAP.md'); const manifestPath = writeDetectorManifest(dir); const body = parseOkJson(runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }), 'd9-d11'); assert.deepStrictEqual(body.section_manifest.excluded, ['worktrees-section', 'mvp-section']); assert.deepStrictEqual(body.section_manifest.included, []); }); test('nonBooleanConfigValueDegradesToFalse (row D10 — strict boolean, string "true" is not true)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-d10-'); fs.writeFileSync(path.join(dir, '.planning', 'config.json'), JSON.stringify({ workflow: { use_worktrees: 'true' } })); const manifestPath = writeDetectorManifest(dir); const body = parseOkJson(runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }), 'd10'); assert.ok( body.section_manifest.excluded.includes('worktrees-section'), 'a string "true" config value must never coerce to boolean true', ); }); test('realBooleanTrueConfigValueIncludesTheSection (independence: the strict check still accepts a real boolean)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-d10b-'); fs.writeFileSync(path.join(dir, '.planning', 'config.json'), JSON.stringify({ workflow: { use_worktrees: true } })); const manifestPath = writeDetectorManifest(dir); const body = parseOkJson(runExecutePhase(['1'], dir, { GSD_SECTION_MANIFEST: manifestPath }), 'd10b'); assert.ok(body.section_manifest.included.includes('worktrees-section')); }); }); // ── #2992 review finding: state:needs-codebase-map wiring (real CLI) ───── // // No test anywhere drove `state:needs-codebase-map` (src/section-manifest.cts) // or its `cmdInitNewProject` override wiring (src/init.cts, `overrides.needsCodebaseMap`) // through the real CLI. Drives `init new-project` with a `mkdtempSync` // fixture manifest (via `GSD_SECTION_MANIFEST`) naming a single section // gated on the atom, proving inclusion/exclusion tracks the SAME // isBrownfield/hasCodebaseMap computation `needs_codebase_map` itself uses // — never mutating the shipped gsd-core/workflows/section-manifest.json. describe('init new-project: state:needs-codebase-map wiring (#2992 review finding)', () => { function writeNeedsCodebaseMapManifest(dir) { const manifestPath = path.join(dir, 'needs-map-section-manifest.json'); fs.writeFileSync(manifestPath, JSON.stringify({ workflows: { 'new-project': [ { id: 'needs-map-section', when: 'state:needs-codebase-map', read: 'z.md' }, ], }, })); return manifestPath; } test('brownfieldWithoutCodebaseMapIncludesTheGatedSection', () => { const dir = createTempProject('gsd-needsmap-true-'); try { fs.writeFileSync(path.join(dir, 'package.json'), '{"name":"test"}'); const manifestPath = writeNeedsCodebaseMapManifest(dir); const result = runGsdTools('init new-project', dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.ok(result.success, `init new-project failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.needs_codebase_map, true, 'sanity: fixture must be brownfield without a codebase map'); assert.deepStrictEqual(output.section_manifest.included, ['needs-map-section']); assert.deepStrictEqual(output.section_manifest.excluded, []); } finally { cleanup(dir); } }); test('greenfieldExcludesTheGatedSection', () => { const dir = createTempProject('gsd-needsmap-false-'); try { const manifestPath = writeNeedsCodebaseMapManifest(dir); const result = runGsdTools('init new-project', dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.ok(result.success, `init new-project failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.needs_codebase_map, false, 'sanity: fixture must be greenfield'); assert.deepStrictEqual(output.section_manifest.included, []); assert.deepStrictEqual(output.section_manifest.excluded, ['needs-map-section']); } finally { cleanup(dir); } }); test('brownfieldWithExistingCodebaseMapExcludesTheGatedSection', () => { const dir = createTempProject('gsd-needsmap-hascomap-'); try { fs.writeFileSync(path.join(dir, 'package.json'), '{"name":"test"}'); fs.mkdirSync(path.join(dir, '.planning', 'codebase'), { recursive: true }); for (const name of ['STACK', 'ARCHITECTURE', 'STRUCTURE', 'CONVENTIONS', 'TESTING', 'INTEGRATIONS', 'CONCERNS']) { fs.writeFileSync(path.join(dir, '.planning', 'codebase', `${name}.md`), `# ${name}\n`); } const manifestPath = writeNeedsCodebaseMapManifest(dir); const result = runGsdTools('init new-project', dir, { GSD_SECTION_MANIFEST: manifestPath }); assert.ok(result.success, `init new-project failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.needs_codebase_map, false, 'sanity: fixture must already have a complete codebase map'); assert.deepStrictEqual(output.section_manifest.included, []); assert.deepStrictEqual(output.section_manifest.excluded, ['needs-map-section']); } finally { cleanup(dir); } }); }); // ── E59: independence — other init subcommands unaffected ─────────────── // // #2992 (epic #1671 Phase 6.1) generalized the manifest seam from // execute-phase-only to per-workflow (`buildSectionManifestField` now wires // into `cmdInitPlanPhase`/`cmdInitNewProject`/`cmdInitNewMilestone`/ // `cmdInitQuick`/`cmdInitProgress` too — src/init.cts:740/787/839/885/1810). // #2993 (epic #1671 Phase 6.2) makes the OLD assertion here doubly stale: // plan-phase's field is no longer `null` at all — the shipped // gsd-core/workflows/section-manifest.json now keys `plan-phase` too, with // 6 real sections (row C1). A no-flag invocation excludes every one of // them (none of the 5 governing flags/state were supplied). `resume` has // no dedicated `cmdInit*` manifest wiring at all (design's withheld-atom // survey), so its field truly remains absent — that half of the guard is // unchanged. describe('init dispatch: other subcommands unaffected (#2932/#2992/#2993 row 59, CRITICAL radius guard)', () => { test('planPhaseEmitsARealComputedManifestNotNull (#2993 — the shipped artifact now has a plan-phase key)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e59-'); const planPhase = parseOkJson(runSectionManifestCli(['init.plan-phase', '1'], dir), 'plan-phase'); assert.equal(planPhase.phase_found, true); assert.ok('section_manifest' in planPhase, 'section_manifest field must be present for plan-phase'); assert.deepStrictEqual(planPhase.section_manifest, { workflow: 'plan-phase', included: [], excluded: [ 'reviews-prerequisite', 'prd-express-gate', 'adr-ingest-express-path', 'research-only-modifiers', 'research-only-early-exit', 'chunked-planning-mode', ], read: [], }); }); test('resumeNeverEmitsASectionManifestField', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-e59-resume-'); const resume = parseOkJson(runSectionManifestCli(['init.resume'], dir), 'resume'); assert.ok(!('section_manifest' in resume), 'section_manifest must never leak into resume — resume has no cmdInit* manifest wiring at all'); }); }); // ── C6 (#2993): plan-phase's section_manifest degrades to null under a // missing/malformed manifest artifact, exactly like execute-phase's own // E57/E58 rows — the "safe superset" contract (all 6 sections read) is // documented per-section in plan-phase.md's own stub prose ("If // `section_manifest` is `null` or `""` is in its `included` list: // read ... Otherwise skip"), verified for each of the 6 ids below; this // test proves the JS-side half — that plan-phase really does receive // `null`, never a stale/partial selection, under a degraded artifact. describe('init plan-phase: section_manifest degrades to null (#2993 row C6)', () => { test('degradesToNullManifestWhenArtifactMissing', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c6-missing-'); const missingPath = path.join(dir, 'does-not-exist-section-manifest.json'); const result = runSectionManifestCli(['init.plan-phase', '1'], dir, { GSD_SECTION_MANIFEST: missingPath }); assert.equal(result.status, 0, `expected exit 0 despite missing manifest artifact, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'plan-phase-manifest-missing'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); test('degradesToNullManifestWhenArtifactMalformed', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-c6-malformed-'); const badPath = path.join(dir, 'bad-section-manifest.json'); fs.writeFileSync(badPath, '{ this is not valid json'); const result = runSectionManifestCli(['init.plan-phase', '1'], dir, { GSD_SECTION_MANIFEST: badPath }); assert.equal(result.status, 0, `expected exit 0 despite malformed manifest artifact, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'plan-phase-manifest-malformed'); const body = JSON.parse(result.stdout); assert.equal(body.section_manifest, null); }); test('everyPlanPhaseSectionsHostStubDocumentsTheNullSafeSuperset (doc-level half of row C6)', () => { const planPhasePath = path.join(GSD_ROOT, 'workflows', 'plan-phase.md'); const content = fs.readFileSync(planPhasePath, 'utf-8'); const ids = [ 'reviews-prerequisite', 'prd-express-gate', 'adr-ingest-express-path', 'research-only-modifiers', 'research-only-early-exit', 'chunked-planning-mode', ]; for (const id of ids) { const expectedGate = `If \`section_manifest\` is \`null\` or \`"${id}"\` is in its \`included\` list:`; assert.ok( content.includes(expectedGate), `plan-phase.md must document the null-safe-superset gate for "${id}": expected to find "${expectedGate}"`, ); } }); }); // ── #2993 (epic #1671 Phase 6.2) rows B1-B11: plan-phase facts assembly, // driven through the REAL CLI (prod-shape — matrix section B header) ───── describe('init plan-phase: new flag facts assembly (#2993 rows B1-B6)', () => { function runPlanPhase(phaseArgs, cwd, env = {}) { return runSectionManifestCli(['init.plan-phase', ...phaseArgs], cwd, env); } test('reviewsFlagPresentIncludesOnlyReviewsPrerequisite (row B1)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b1-present-'); const body = parseOkJson(runPlanPhase(['1', '--reviews'], dir), 'b1-present'); assert.deepStrictEqual(body.section_manifest.included, ['reviews-prerequisite']); }); test('reviewsFlagAbsentExcludesReviewsPrerequisite (row B1)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b1-absent-'); const body = parseOkJson(runPlanPhase(['1'], dir), 'b1-absent'); assert.ok(!body.section_manifest.included.includes('reviews-prerequisite')); assert.ok(body.section_manifest.excluded.includes('reviews-prerequisite')); }); test('prdFlagWithValuePresentIncludesOnlyPrdExpressGate (row B2)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b2-present-'); const body = parseOkJson(runPlanPhase(['1', '--prd', 'some-prd.md'], dir), 'b2-present'); assert.deepStrictEqual(body.section_manifest.included, ['prd-express-gate']); }); test('prdFlagAbsentExcludesPrdExpressGate (row B2 — value flag absence is null)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b2-absent-'); const body = parseOkJson(runPlanPhase(['1'], dir), 'b2-absent'); assert.ok(!body.section_manifest.included.includes('prd-express-gate')); assert.ok(body.section_manifest.excluded.includes('prd-express-gate')); }); test('ingestFlagWithValuePresentIncludesOnlyAdrIngestExpressPath (row B3)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b3-present-'); const body = parseOkJson(runPlanPhase(['1', '--ingest', 'some-adr.md'], dir), 'b3-present'); assert.deepStrictEqual(body.section_manifest.included, ['adr-ingest-express-path']); }); test('ingestFlagAbsentExcludesAdrIngestExpressPath (row B3)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b3-absent-'); const body = parseOkJson(runPlanPhase(['1'], dir), 'b3-absent'); assert.ok(!body.section_manifest.included.includes('adr-ingest-express-path')); assert.ok(body.section_manifest.excluded.includes('adr-ingest-express-path')); }); test('researchPhaseFlagWithValuePresentIncludesBothResearchOnlySections (row B4)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b4-present-'); const body = parseOkJson(runPlanPhase(['1', '--research-phase', '3'], dir), 'b4-present'); assert.deepStrictEqual(body.section_manifest.included, ['research-only-modifiers', 'research-only-early-exit']); }); test('researchPhaseFlagAbsentExcludesBothResearchOnlySections (row B4)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b4-absent-'); const body = parseOkJson(runPlanPhase(['1'], dir), 'b4-absent'); assert.ok(!body.section_manifest.included.includes('research-only-modifiers')); assert.ok(!body.section_manifest.included.includes('research-only-early-exit')); }); test('emptyPrdValueIsFalsyAndTreatedAsAbsent (row B5 — no spurious inclusion)', (t) => { // `--prd` immediately followed by another flag token (no value token // present at all) resolves to `null` in parseNamedArgs — the "empty // value" shape for a value flag. Combined with a second, independently // gated flag to prove ONLY the second flag's section activates. const dir = seedSinglePhaseProject(t, 'gsd-b5-'); const body = parseOkJson(runPlanPhase(['1', '--prd', '--reviews'], dir), 'b5'); assert.ok(!body.section_manifest.included.includes('prd-express-gate'), '--prd with no value must never spuriously include prd-express-gate'); assert.deepStrictEqual(body.section_manifest.included, ['reviews-prerequisite']); }); test('chunkedFlagPresentIncludesChunkedPlanningMode (row B6)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b6-'); const body = parseOkJson(runPlanPhase(['1', '--chunked'], dir), 'b6'); assert.deepStrictEqual(body.section_manifest.included, ['chunked-planning-mode']); }); }); describe('init plan-phase: state:chunked-mode disjunction — flag OR config (#2993 rows B7-B11)', () => { function runPlanPhase(phaseArgs, cwd, env = {}) { return runSectionManifestCli(['init.plan-phase', ...phaseArgs], cwd, env); } function writeConfig(dir, workflowConfig) { fs.writeFileSync(path.join(dir, '.planning', 'config.json'), JSON.stringify({ workflow: workflowConfig })); } test('chunkedFlagAbsentConfigTrueIncludesChunkedPlanningMode (row B7 — config arm of the disjunction)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b7-'); writeConfig(dir, { plan_chunked: true }); const body = parseOkJson(runPlanPhase(['1'], dir), 'b7'); assert.deepStrictEqual(body.section_manifest.included, ['chunked-planning-mode']); }); test('chunkedFlagAbsentConfigFalseExcludesChunkedPlanningMode (row B8)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b8-false-'); writeConfig(dir, { plan_chunked: false }); const body = parseOkJson(runPlanPhase(['1'], dir), 'b8-false'); assert.ok(!body.section_manifest.included.includes('chunked-planning-mode')); }); test('chunkedFlagAbsentConfigAbsentExcludesChunkedPlanningMode (row B8)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b8-absent-'); writeConfig(dir, {}); const body = parseOkJson(runPlanPhase(['1'], dir), 'b8-absent'); assert.ok(!body.section_manifest.included.includes('chunked-planning-mode')); }); test('chunkedFlagAbsentConfigFileMissingExcludesChunkedPlanningMode (row B8)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b8-nofile-'); assert.equal(fs.existsSync(path.join(dir, '.planning', 'config.json')), false, 'sanity: no config.json'); const body = parseOkJson(runPlanPhase(['1'], dir), 'b8-nofile'); assert.ok(!body.section_manifest.included.includes('chunked-planning-mode')); }); test('configStringTrueDegradesToFalse (row B9 — strict === true, never coerced)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b9-'); writeConfig(dir, { plan_chunked: 'true' }); const body = parseOkJson(runPlanPhase(['1'], dir), 'b9'); assert.ok( !body.section_manifest.included.includes('chunked-planning-mode'), 'a string "true" config value must never coerce to boolean true', ); }); test('configReadThrowsDegradesToFalseBoundedNeverPropagates (row B10)', (t) => { // `readConfigJsonBoolean` (src/init.cts) is private and reads // `.planning/config.json` via `fs.readFileSync`, so its `catch` clause // cannot be exercised via an in-process fs monkeypatch across the // spawned-CLI process boundary this suite otherwise drives (the whole // matrix section is prod-shape: "drive the real CLI"). A directory at // the config path forces a REAL, deterministic, cross-platform fs // fault (EISDIR-class on every OS `fs.readFileSync` targets) through // the real CLI — never a chmod/permission trick — landing on the same // bounded, non-throwing degrade path a monkeypatched throw would. const dir = seedSinglePhaseProject(t, 'gsd-b10-'); // sanity: seedSinglePhaseProject never writes a config.json, so this is // the fixture's own natural state, not a removal. assert.equal(fs.existsSync(path.join(dir, '.planning', 'config.json')), false); fs.mkdirSync(path.join(dir, '.planning', 'config.json')); const result = runPlanPhase(['1'], dir); assert.equal(result.status, 0, `expected exit 0 despite an unreadable config.json, got ${result.status} (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, 'config-read-throws'); const body = JSON.parse(result.stdout); assert.ok(!body.section_manifest.included.includes('chunked-planning-mode'), 'a config read fault must degrade chunkedMode to false, never throw or propagate'); }); test('nonObjectConfigJsonDegradesToFalse (row B11)', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-b11-'); for (const hostileJson of ['0', '"s"', '[]', 'null', 'true']) { fs.writeFileSync(path.join(dir, '.planning', 'config.json'), hostileJson); const result = runPlanPhase(['1'], dir); assert.equal(result.status, 0, `hostile config JSON ${hostileJson}: expected exit 0 (stderr: ${result.stderr})`); assertNoStackTrace(result.stderr, `hostile-config-json:${hostileJson}`); const body = JSON.parse(result.stdout); assert.ok( !body.section_manifest.included.includes('chunked-planning-mode'), `hostile config JSON ${hostileJson} must degrade chunkedMode to false`, ); } }); }); describe('init tdd_mode: workflow.tdd_mode config flows through loadConfig (#4273 defect fix)', () => { // Regression test for a pre-existing defect fixed alongside #4273's // `phase.tdd-applicable` work: `loadConfig()` (src/config-loader.cts) // had no flattened `tdd_mode` field, so every `(config.workflow ?? {})` // call site in this file always read `{}` — `workflow.tdd_mode` set in // `.planning/config.json` silently never reached `cmdInitExecutePhase`, // `cmdInitPlanPhase`, or `cmdInitDebug`'s `tdd_mode` output field, despite // `workflow.tdd_mode` being a documented config contract // (gsd-core/references/tdd.md). `loadConfig()` now flattens // `workflow.tdd_mode` onto `config.tdd_mode` — mirroring the existing // `workflow.mvp_mode` -> `config.mvp_mode` pattern — and all three call // sites read `config.tdd_mode` directly instead of the dead `wf['tdd_mode']` // lookup. Before the fix, every assertion below would have failed // (`body.tdd_mode` would read `false` regardless of the config value). function writeWorkflowConfig(dir, workflowConfig) { fs.writeFileSync(path.join(dir, '.planning', 'config.json'), JSON.stringify({ workflow: workflowConfig })); } test('executePhaseTddModeReflectsWorkflowConfig', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-exec-'); writeWorkflowConfig(dir, { tdd_mode: true }); const body = parseOkJson(runExecutePhase(['1'], dir), 'tdd-exec'); assert.equal(body.tdd_mode, true, 'workflow.tdd_mode: true must flow through to the tdd_mode output field'); }); test('executePhaseTddModeFalseWhenConfigAbsent', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-exec-absent-'); const body = parseOkJson(runExecutePhase(['1'], dir), 'tdd-exec-absent'); assert.equal(body.tdd_mode, false); }); test('planPhaseTddModeReflectsWorkflowConfig', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-plan-'); writeWorkflowConfig(dir, { tdd_mode: true }); const body = parseOkJson(runSectionManifestCli(['init.plan-phase', '1'], dir), 'tdd-plan'); assert.equal(body.tdd_mode, true, 'workflow.tdd_mode: true must flow through to the tdd_mode output field'); }); test('planPhaseTddModeFalseWhenConfigAbsent', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-plan-absent-'); const body = parseOkJson(runSectionManifestCli(['init.plan-phase', '1'], dir), 'tdd-plan-absent'); assert.equal(body.tdd_mode, false); }); test('debugTddModeReflectsWorkflowConfig', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-debug-'); writeWorkflowConfig(dir, { tdd_mode: true }); const body = parseOkJson(runSectionManifestCli(['init.debug'], dir), 'tdd-debug'); assert.equal(body.tdd_mode, true, 'workflow.tdd_mode: true must flow through to the tdd_mode output field'); }); test('debugTddModeFalseWhenConfigFalse', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-tdd-debug-false-'); writeWorkflowConfig(dir, { tdd_mode: false }); const body = parseOkJson(runSectionManifestCli(['init.debug'], dir), 'tdd-debug-false'); assert.equal(body.tdd_mode, false); }); }); describe('init research_enabled/nyquist_validation_enabled: workflow.research + workflow.nyquist_validation config flow through loadConfig (#4273 defect fix)', () => { // Regression test for the same dead-accessor class as the tdd_mode block // above, found while fixing it: `cmdInitNewMilestone`'s `research_enabled` // and `cmdInitPlanPhase`'s `research_enabled` / `nyquist_validation_enabled` // all read through `(config.workflow ?? {})` (`wf`), which `loadConfig()` // never populates — so all three fields were ALWAYS `undefined`, // regardless of `.planning/config.json`. `loadConfig()` already flattens // `workflow.research` -> `config.research` and `workflow.nyquist_validation` // -> `config.nyquist_validation` (both default `true` when unset — see // gsd-core/bin/shared/config-defaults.manifest.json); these call sites now // read the flattened fields directly instead of the dead `wf[...]` lookup. // Before the fix, every assertion below would have failed (`undefined` // regardless of config, dropped entirely from the JSON output). function writeWorkflowConfig(dir, workflowConfig) { fs.writeFileSync(path.join(dir, '.planning', 'config.json'), JSON.stringify({ workflow: workflowConfig })); } test('newMilestoneResearchEnabledDefaultsTrue', (t) => { const dir = fs.realpathSync(createFixture()); t.after(() => cleanup(dir)); const result = runGsdTools('init new-milestone', dir); assert.ok(result.success, `Command failed: ${result.error}`); const body = JSON.parse(result.output); assert.strictEqual(body.research_enabled, true, 'workflow.research defaults to true and must flow through to research_enabled'); }); test('newMilestoneResearchEnabledReflectsWorkflowConfigFalse', (t) => { const dir = fs.realpathSync(createFixture()); t.after(() => cleanup(dir)); writeWorkflowConfig(dir, { research: false }); const result = runGsdTools('init new-milestone', dir); assert.ok(result.success, `Command failed: ${result.error}`); const body = JSON.parse(result.output); assert.strictEqual(body.research_enabled, false, 'workflow.research: false must flow through to research_enabled'); }); test('planPhaseResearchAndNyquistEnabledReflectWorkflowConfig', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-research-plan-'); writeWorkflowConfig(dir, { research: false, nyquist_validation: false }); const body = parseOkJson(runSectionManifestCli(['init.plan-phase', '1'], dir), 'research-plan'); assert.strictEqual(body.research_enabled, false, 'workflow.research: false must flow through to research_enabled'); assert.strictEqual(body.nyquist_validation_enabled, false, 'workflow.nyquist_validation: false must flow through to nyquist_validation_enabled'); }); test('planPhaseResearchAndNyquistEnabledDefaultTrueWhenConfigAbsent', (t) => { const dir = seedSinglePhaseProject(t, 'gsd-research-plan-absent-'); const body = parseOkJson(runSectionManifestCli(['init.plan-phase', '1'], dir), 'research-plan-absent'); assert.strictEqual(body.research_enabled, true); assert.strictEqual(body.nyquist_validation_enabled, true); }); }); // ── Row 62: stub @-refs still resolve (ADR-0002) ──── describe('commands/gsd/execute-phase.md: @-refs resolve (#2932 row 62)', () => { test('stubExecutionContextRefStillResolves', () => { const stubPath = path.join(COMMANDS_DIR, 'execute-phase.md'); const content = fs.readFileSync(stubPath, 'utf-8'); const refs = executionContextRefs(content); assert.ok(refs.length > 0, 'execute-phase.md stub must declare at least one execution_context @-ref'); const workflowRef = refs.find((r) => r.normalized === 'workflows/execute-phase.md'); assert.ok(workflowRef, 'execute-phase.md stub must @-reference workflows/execute-phase.md'); for (const ref of refs) { assert.ok( fs.existsSync(path.join(GSD_ROOT, ref.normalized)), `execution_context @-ref "${ref.normalized}" must resolve to a file that exists on disk`, ); } }); }); }); // ───────────────────────────────────────────────────────────────────────────── // #3171 (Claim 3): the phase-start flow must not land a directory slug in // STATE.md's `current_phase_name`. When a phase directory already exists on // disk, `init execute-phase`'s disk-lookup path derived `phase_name` from the // directory-name remainder — itself an already-slugified value (`phase.add` // writes `${num}-${slug}` dirs) — so `phase_name` and `phase_slug` came out // byte-identical, and the execute-phase workflow forwarded that slug into // `state begin-phase --name`. The milestone-name half of #3171 was subsumed // by #3216 / PR #3226; these tests cover the remaining current_phase_name half. // ───────────────────────────────────────────────────────────────────────────── describe('#3171: init execute-phase emits the display name, not the directory slug', () => { const DISPLAY_NAME = 'Loop-Termination and Baseline Correctness'; const PHASE_SLUG_DIR = '35-loop-termination-and-baseline-correctness'; const ROADMAP_3171 = [ '# Roadmap', '', `### Phase 35: ${DISPLAY_NAME}`, '**Goal:** Fix loop termination', '**Plans:** 1 plans', '', ].join('\n'); let tmpDir; beforeEach(() => { tmpDir = fs.realpathSync(createFixture()); seedPhase(tmpDir, PHASE_SLUG_DIR, { '35-01-PLAN.md': '# Plan' }); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), ROADMAP_3171); }); afterEach(() => { cleanup(tmpDir); }); test('phase_name is the ROADMAP display name when the phase directory exists', () => { const result = runGsdTools('init execute-phase 35 --raw', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.phase_found, true, 'phase must be found on disk'); assert.ok( typeof output.phase_dir === 'string' && output.phase_dir.includes(PHASE_SLUG_DIR), `phase_dir must point at the on-disk directory; got ${JSON.stringify(output.phase_dir)}`, ); assert.strictEqual( output.phase_name, DISPLAY_NAME, `phase_name must be the ROADMAP display name, not the directory slug; got ${JSON.stringify(output.phase_name)}`, ); assert.strictEqual(output.phase_slug, 'loop-termination-and-baseline-correctness'); assert.notStrictEqual(output.phase_name, output.phase_slug, 'phase_name must differ from phase_slug — a byte-identical pair is the #3171 defect signature'); }); test('the phase-start flow does not land a slug in current_phase_name', () => { // 1. init execute-phase → the value the execute-phase workflow forwards to begin-phase. const initResult = runGsdTools('init execute-phase 35 --raw', tmpDir); assert.ok(initResult.success, `init execute-phase failed: ${initResult.error}`); const initOutput = JSON.parse(initResult.output); assert.strictEqual(initOutput.phase_name, DISPLAY_NAME); // 2. Seed a STATE.md the transition module can rewrite (frontmatter + body). fs.writeFileSync( path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'current_phase: 34', 'current_phase_name: Prior Phase', 'status: planning', '---', '', '# Project State', '', '## Current Position', '', 'Phase: 34 — Prior Phase', 'Plan: Not started', 'Status: Ready to execute', '', ].join('\n'), ); // 3. The orchestrator wiring: feed init's phase_name into begin-phase --name. const beginResult = runGsdTools( ['state', 'begin-phase', '--phase', '35', '--name', initOutput.phase_name, '--plans', '1'], tmpDir, ); assert.ok(beginResult.success, `state begin-phase failed: ${beginResult.error}`); // 4. current_phase_name in STATE.md must be the display name, never the slug. const stateContent = fs.readFileSync(path.join(tmpDir, '.planning', 'STATE.md'), 'utf-8'); const fm = parseFrontmatter(stateContent); assert.strictEqual( fm.current_phase_name, DISPLAY_NAME, `current_phase_name must hold the display name, not a directory slug; got ${JSON.stringify(fm.current_phase_name)}`, ); assert.ok( !/^[a-z0-9]+(-[a-z0-9]+)+$/.test(String(fm.current_phase_name)), `current_phase_name must not be slug-shaped; got ${JSON.stringify(fm.current_phase_name)}`, ); }); }); // ─── #3581: init.progress frontier prefers roadmap order over stray artifacts ── describe('#3581: init.progress next_phase prefers the roadmap frontier', () => { function writeProgressFixture(t, { strayNine, completeAll }) { fs.writeFileSync(path.join(tmpDirOf(t), '.planning', 'ROADMAP.md'), ['# Roadmap', '', '## Milestone v1.1.0', '', '### Phase 8: Payments', '**Goal:** g', '', '### Phase 9: Compatibility', '**Goal:** g', ''].join('\n')); fs.writeFileSync(path.join(tmpDirOf(t), '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'milestone: v1.1.0', 'milestone_name: Active', 'status: executing', 'current_phase: 8', 'progress:', ' total_phases: 9', ' completed_phases: 7', ' percent: 78', '---', '', '# Project State', '', '## Current Position', '', 'Phase: 8', 'Status: Executing', ].join('\n')); if (strayNine) { const nine = path.join(tmpDirOf(t), '.planning', 'phases', '09-live-compatibility-diagnostics'); fs.mkdirSync(nine, { recursive: true }); fs.writeFileSync(path.join(nine, 'UAT.md'), '# UAT evidence\n'); } if (completeAll) { // both phases complete on disk (plans, summaries, PASSING verification — // the #3168 disk-strict bar) + roadmap checkboxes for (const dir of ['08-payments', '09-compatibility']) { const d = path.join(tmpDirOf(t), '.planning', 'phases', dir); fs.mkdirSync(d, { recursive: true }); fs.writeFileSync(path.join(d, 'PLAN.md'), '# p\n'); fs.writeFileSync(path.join(d, 'SUMMARY.md'), '# s\n'); fs.writeFileSync(path.join(d, `${dir.split('-')[0]}-VERIFICATION.md`), '---\nstatus: passed\n---\n\n# V\n'); } } } // local alias so the helper reads the same as the suite's own fixtures function tmpDirOf(t) { return t.tmpDir3581 ?? (t.tmpDir3581 = createTempProject('gsd-3581-')); } test('#3581: init.progress prefers the roadmap frontier over a stray out-of-order artifact', (t) => { writeProgressFixture(t, { strayNine: true }); t.after(() => cleanup(tmpDirOf(t))); const result = runGsdTools(['init', 'progress', '--raw'], tmpDirOf(t)); assert.ok(result.success, `init progress failed: ${result.error}`); const out = JSON.parse(result.output); assert.ok(out.next_phase, `next_phase present; got keys ${Object.keys(out)}`); assert.equal(String(out.next_phase.number).replace(/^0+/, ''), '8', `the roadmap's Phase 8 (pending, unscaffolded) must be the frontier — not the stray 09 artifact dir; got ${out.next_phase.number}`); const eight = (out.phases || []).find((p) => String(p.number).replace(/^0+/, '') === '8'); assert.ok(eight, 'Phase 8 present in the phases array (roadmap-derived)'); assert.equal(eight.directory, null, 'Phase 8 has no directory (corroborating the stray-only-disk shape)'); }); test('#4023: init.progress sorts decimal phase ids before choosing the roadmap frontier', (t) => { const tmpDir = createTempProject('gsd-4023-init-'); t.after(() => cleanup(tmpDir)); fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## Milestone v1.1.0', '', '### Phase 12: Parent', '**Goal:** g', '', '### Phase 12.1: Inserted fix', '**Goal:** g', '', '### Phase 12.2: Second insert', '**Goal:** g', '', '### Phase 12.10: Tenth insert', '**Goal:** g', '', '### Phase 13: Follow-up', '**Goal:** g', '', ].join('\n')); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'milestone: v1.1.0', 'milestone_name: Active', 'status: executing', 'current_phase: 12.1', 'progress:', ' total_phases: 13', ' completed_phases: 11', ' percent: 85', '---', '', '# Project State', '', '## Current Position', '', 'Phase: 12.1', 'Status: Executing', '', ].join('\n')); for (const dir of ['12.1-inserted-fix', '12.10-tenth-insert']) { fs.mkdirSync(path.join(tmpDir, '.planning', 'phases', dir), { recursive: true }); } const result = runGsdTools(['init', 'progress', '--raw'], tmpDir); assert.ok(result.success, `init progress failed: ${result.error}`); const out = JSON.parse(result.output); assert.deepEqual( out.phases.map((phase) => String(phase.number).replace(/^0+(?=\d)/, '')), ['12', '12.1', '12.2', '12.10', '13'], 'the disk/roadmap union follows component-wise phase-id order (12.2 before 12.10)', ); assert.equal( String(out.next_phase.number).replace(/^0+(?=\d)/, ''), '12', 'the pending parent remains the frontier when an inserted decimal directory exists first', ); }); test('#3581 (control): a pending roadmap-only phase outranks a later pending directory', (t) => { writeProgressFixture(t, { strayNine: false }); // pure ordering property, no stray artifacts: roadmap-only pending 8 vs a // pending 9 DIRECTORY (empty). The pinned mixed-statuses contract (an // in-progress phase is currentPhase's lane, not nextPhase's) is untouched. const nine = path.join(tmpDirOf(t), '.planning', 'phases', '09-compatibility'); fs.mkdirSync(nine, { recursive: true }); t.after(() => cleanup(tmpDirOf(t))); const result = runGsdTools(['init', 'progress', '--raw'], tmpDirOf(t)); assert.ok(result.success, `init progress failed: ${result.error}`); const out = JSON.parse(result.output); assert.equal(String(out.next_phase.number).replace(/^0+/, ''), '8', 'the unscaffolded roadmap Phase 8 is the frontier even against a legitimately-pending 9 directory'); }); test('#3581 (boundary): completed milestone yields no frontier', (t) => { writeProgressFixture(t, { strayNine: false, completeAll: true }); fs.writeFileSync(path.join(tmpDirOf(t), '.planning', 'ROADMAP.md'), ['# Roadmap', '', '## Milestone v1.1.0', '', '- [x] **Phase 8: Payments**', '- [x] **Phase 9: Compatibility**', ''].join('\n')); t.after(() => cleanup(tmpDirOf(t))); const result = runGsdTools(['init', 'progress', '--raw'], tmpDirOf(t)); assert.ok(result.success, `init progress failed: ${result.error}`); const out = JSON.parse(result.output); assert.equal(out.next_phase, null, 'all-complete milestone: no frontier (completion flow owns the answer)'); }); }); // ─── #3749: project_exists must follow project_path under GSD_PROJECT ─────── describe('init.new-project — GSD_PROJECT scoping (#3749)', () => { test('project_exists tracks the namespaced PROJECT.md, not the root one', (t) => { const tmpDir = createTempProject('gsd-3749-init-'); t.after(() => cleanup(tmpDir)); fs.mkdirSync(path.join(tmpDir, '.planning', 'second-product'), { recursive: true }); fs.writeFileSync(path.join(tmpDir, '.planning', 'second-product', 'PROJECT.md'), '# Second Product\n'); const r1 = runGsdTools(['query', 'init.new-project'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r1.success, r1.error); const out1 = JSON.parse(r1.output); assert.equal(out1['project_exists'], true, `#3749: project_path (${out1['project_path']}) names an existing file — project_exists must be true`); // project_path is POSIX-normalized by toPosixPath — compare with a literal // forward-slash path, not path.join (which yields backslashes on Windows). assert.ok(String(out1['project_path']).includes('.planning/second-product')); // An unrelated root PROJECT.md must not change the verdict. fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# unrelated\n'); const r2 = runGsdTools(['query', 'init.new-project'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r2.success, r2.error); assert.equal(JSON.parse(r2.output)['project_exists'], true, '#3749: verdict must not flip when an unrelated root file appears'); }); test('without GSD_PROJECT the root PROJECT.md still answers project_exists', (t) => { const tmpDir = createTempProject('gsd-3749-init2-'); t.after(() => cleanup(tmpDir)); fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Root Project\n'); const r = runGsdTools(['query', 'init.new-project'], tmpDir); assert.ok(r.success, r.error); assert.equal(JSON.parse(r.output)['project_exists'], true, 'default (unscoped) behavior unchanged'); }); }); // ─── #3964: three GSD_PROJECT-blind planning literals ──────────────────────── // Found in the #3955 review and filed as their own issue: waiting_signal read // the root WAITING.json, skill-manifest --write wrote the root planning dir, // and codebase_dir/exists were root-pinned while verify.cts scopes codebase/ // through the project-aware resolver. describe('init — GSD_PROJECT scoping (#3964)', () => { function writeScopedScaffolding(tmpDir, slug) { const scoped = path.join(tmpDir, '.planning', slug); fs.mkdirSync(path.join(scoped, 'phases', '01-probe'), { recursive: true }); fs.writeFileSync(path.join(scoped, 'ROADMAP.md'), '# Roadmap\n\n## Phase 1: Probe\n- [ ] w\n'); fs.writeFileSync(path.join(scoped, 'STATE.md'), [ '---', 'gsd_state_version: 1.0', 'current_phase: 01', 'status: executing', 'progress:', ' total_phases: 1', '---', '', '## Current Position', '', '**Status:** Executing', '', ].join('\n')); return scoped; } test('#3964: waiting_signal reads the scoped WAITING.json under GSD_PROJECT', (t) => { const tmpDir = createTempDir('gsd-3964-waiting-'); t.after(() => cleanup(tmpDir)); const scoped = writeScopedScaffolding(tmpDir, 'second-product'); fs.writeFileSync(path.join(scoped, 'WAITING.json'), JSON.stringify({ type: 'decision_point', since: 'x' })); const r = runGsdTools(['query', 'init', 'manager'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); const out = JSON.parse(r.output); assert.equal(out['waiting_signal'] && out['waiting_signal']['type'], 'decision_point', `#3964: waiting_signal must reflect the scoped WAITING.json; got ${JSON.stringify(out['waiting_signal'])}`); }); test('#3964: a .gsd/WAITING.json wins over the planning-dir copy (mirrors the writer)', (t) => { const tmpDir = createTempDir('gsd-3964-waiting2-'); t.after(() => cleanup(tmpDir)); const scoped = writeScopedScaffolding(tmpDir, 'second-product'); fs.writeFileSync(path.join(scoped, 'WAITING.json'), JSON.stringify({ type: 'from-planning' })); fs.mkdirSync(path.join(tmpDir, '.gsd'), { recursive: true }); fs.writeFileSync(path.join(tmpDir, '.gsd', 'WAITING.json'), JSON.stringify({ type: 'from-gsd' })); const r = runGsdTools(['query', 'init', 'manager'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); const out = JSON.parse(r.output); assert.equal(out['waiting_signal'] && out['waiting_signal']['type'], 'from-gsd', 'the writer\'s primary location (.gsd) must win, matching cmdSignalWaiting'); }); test('#3964: codebase_dir and codebase_dir_exists are scoped under GSD_PROJECT', (t) => { const tmpDir = createTempDir('gsd-3964-codebase-'); t.after(() => cleanup(tmpDir)); const scoped = writeScopedScaffolding(tmpDir, 'second-product'); fs.mkdirSync(path.join(scoped, 'codebase'), { recursive: true }); const r = runGsdTools(['query', 'init', 'map-codebase'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); const out = JSON.parse(r.output); // codebase_dir is POSIX-normalized (toPosixPath) — compare against a // literal forward-slash path, not path.join (backslashes on Windows). assert.ok(String(out['codebase_dir']).includes('.planning/second-product'), `#3964: codebase_dir must be scoped, got ${out['codebase_dir']}`); assert.equal(out['codebase_dir_exists'], true, '#3964: the scoped codebase dir exists — must agree with verify scoping'); }); test('#3964: skill-manifest --write targets the scoped planning dir', (t) => { const tmpDir = createTempDir('gsd-3964-manifest-'); t.after(() => cleanup(tmpDir)); writeScopedScaffolding(tmpDir, 'second-product'); const r = runGsdTools(['skill-manifest', '--write'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); assert.ok(fs.existsSync(path.join(tmpDir, '.planning', 'second-product', 'skill-manifest.json')), '#3964: skill-manifest.json must be written inside the scoped project'); assert.ok(!fs.existsSync(path.join(tmpDir, '.planning', 'skill-manifest.json')), '#3964: the root planning dir must not gain a manifest under GSD_PROJECT'); }); test('#3964: existing_maps/has_maps read the scoped codebase dir (same payload agreement)', (t) => { const tmpDir = createTempDir('gsd-3964-maps-'); t.after(() => cleanup(tmpDir)); const scoped = writeScopedScaffolding(tmpDir, 'second-product'); fs.mkdirSync(path.join(scoped, 'codebase'), { recursive: true }); fs.writeFileSync(path.join(scoped, 'codebase', 'STRUCTURE.md'), '# Structure\n'); const r = runGsdTools(['query', 'init', 'map-codebase'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); const out = JSON.parse(r.output); assert.equal(out['codebase_dir_exists'], true); assert.equal(out['has_maps'], true, '#3964: has_maps must agree with codebase_dir_exists — the scoped dir holds STRUCTURE.md'); assert.ok((out['existing_maps'] || []).includes('STRUCTURE.md'), `#3964: existing_maps must list the scoped maps, got ${JSON.stringify(out['existing_maps'])}`); }); test('#3964: init.new-project has_codebase_map is project-scoped (onboard projection)', (t) => { const tmpDir = createTempDir('gsd-3964-onboard-'); t.after(() => cleanup(tmpDir)); const scoped = writeScopedScaffolding(tmpDir, 'second-product'); fs.mkdirSync(path.join(scoped, 'codebase'), { recursive: true }); // has_codebase_map requires the COMPLETE map set (onboard-projection's // REQUIRED_CODEBASE_MAP_FILES), not just STRUCTURE.md. for (const f of ['STACK.md', 'ARCHITECTURE.md', 'STRUCTURE.md', 'CONVENTIONS.md', 'TESTING.md', 'INTEGRATIONS.md', 'CONCERNS.md']) { fs.writeFileSync(path.join(scoped, 'codebase', f), '# Map\n'); } const r = runGsdTools(['query', 'init.new-project'], tmpDir, { GSD_PROJECT: 'second-product' }); assert.ok(r.success, r.error); const out = JSON.parse(r.output); assert.equal(out['has_codebase_map'], true, `#3964: has_codebase_map must answer for the scoped project, got ${out['has_codebase_map']}`); }); test('#3964 control: unscoped behavior unchanged (root paths)', (t) => { const tmpDir = createTempDir('gsd-3964-unscoped-'); t.after(() => cleanup(tmpDir)); writeScopedScaffolding(tmpDir, 'rootproj'); // No GSD_PROJECT: the effective project is the plain .planning root; give it // the same scaffolding so the command runs. fs.mkdirSync(path.join(tmpDir, '.planning', 'codebase'), { recursive: true }); const r = runGsdTools(['query', 'init', 'map-codebase'], tmpDir); assert.ok(r.success, r.error); const out = JSON.parse(r.output); assert.equal(out['codebase_dir_exists'], true, 'unscoped probe of the root codebase dir'); }); }); // ───────────────────────────────────────────────────────────────────────────── // #4040: partial-init routing signal (interrupted bootstrap detection) // ───────────────────────────────────────────────────────────────────────────── describe('#4040 partial-init completeness fields', () => { let tmpDir; beforeEach(() => { tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => { cleanup(tmpDir); }); test('#4040 init.progress: interrupted bootstrap (PROJECT.md only) is flagged init_incomplete', () => { // Issue repro: bootstrap died after PROJECT.md + config.json, before // REQUIREMENTS.md / ROADMAP.md / STATE.md. fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project\nTest\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), '{}\n'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.planning_exists, true); assert.strictEqual(output.project_exists, true); assert.strictEqual(output.requirements_exists, false); assert.strictEqual(output.roadmap_exists, false); assert.strictEqual(output.state_exists, false); assert.strictEqual(output.milestones_exists, false); assert.strictEqual(output.init_incomplete, true, 'interrupted bootstrap must be distinguishable from new project / between milestones'); }); test('#4040 init.progress: complete project is not init_incomplete', () => { writePlanningDocs(tmpDir); // STATE.md + ROADMAP.md + REQUIREMENTS.md fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project\nTest\n'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.requirements_exists, true); assert.strictEqual(output.init_incomplete, false); }); test('#4040 init.progress: between-milestones archive state is not init_incomplete', () => { // milestone.complete archives ROADMAP (and REQUIREMENTS) but leaves // MILESTONES.md + STATE.md — Route F territory, NOT a partial bootstrap. writePlanningDocs(tmpDir, { roadmap: false, requirements: false }); fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project\nTest\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'MILESTONES.md'), '# Milestones\n\n## v1.0\n'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.milestones_exists, true); assert.strictEqual(output.init_incomplete, false, 'an archived milestone (MILESTONES.md present) must keep the between-milestones route'); }); test('#4040 init.progress: empty .planning (config only) is init_incomplete, not "no planning"', () => { // Bootstrap that died before even PROJECT.md: .planning/ exists, so the // workflow must not claim "no planning structure found". fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), '{}\n'); const result = runGsdTools('init progress', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.planning_exists, true); assert.strictEqual(output.project_exists, false); assert.strictEqual(output.init_incomplete, true); }); test('#4040 init.resume: interrupted bootstrap flagged init_incomplete', () => { fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project\nTest\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), '{}\n'); const result = runGsdTools('init resume', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.requirements_exists, false); assert.strictEqual(output.init_incomplete, true, 'resume must route to initialization recovery, not STATE.md reconstruction'); }); test('#4040 init.new-project: interrupted bootstrap flagged init_incomplete', () => { fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Project\nTest\n'); fs.writeFileSync(path.join(tmpDir, '.planning', 'config.json'), '{}\n'); const result = runGsdTools('init new-project', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.init_incomplete, true, 'new-project gate must resume a partial bootstrap instead of erroring'); }); }); // ── #4731 — hard-wrapped Goal/Requirements fields read past the line break ─── // The roadmapper soft-wraps long fields at ~85 chars; the five single-line // field regexes truncated every wrapped Goal/Requirements at the first line: // plan-phase's phase_req_ids silently dropped the IDs on continuation lines // (silently escaping the Requirements Coverage Gate) and get-phase/analyze // cut the goal mid-sentence. describe('init plan-phase — wrapped Goal/Requirements fields (#4731)', () => { let tmpDir; beforeEach(() => { tmpDir = createTempDir('gsd-4731-'); fs.mkdirSync(path.join(tmpDir, '.planning'), { recursive: true }); fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), '# State\n'); fs.writeFileSync( path.join(tmpDir, '.planning', 'REQUIREMENTS.md'), ['# Requirements', '', '- [ ] **REQ-01**: thing', '- [ ] **REQ-11**: thing'].join('\n'), ); fs.writeFileSync( path.join(tmpDir, '.planning', 'ROADMAP.md'), [ '# Roadmap', '', '## Phases', '', '- [ ] **Phase 1: Demo** - Goal', '', '## Phase Details', '', '### Phase 1: Demo', '', '**Goal:** Deliver a small demo feature that exercises the planning pipeline end to end with a', 'goal sentence long enough to wrap onto a second line', '**Requirements**: REQ-01, REQ-02, REQ-03, REQ-04, REQ-05, REQ-06, REQ-07, REQ-08, REQ-09,', 'REQ-10, REQ-11', '**Plans**: 1 plans', '', ].join('\n'), ); const phaseDir = path.join(tmpDir, '.planning', 'phases', '01-demo'); fs.mkdirSync(phaseDir, { recursive: true }); fs.writeFileSync(path.join(phaseDir, '01-01-PLAN.md'), '---\nphase: 01-demo\nplan: 01\n---\n# Plan'); fs.writeFileSync(path.join(phaseDir, '01-01-SUMMARY.md'), '---\nphase: 01-demo\nplan: 01\n---\n# Summary'); }); afterEach(() => cleanup(tmpDir)); test('wrapped Requirements yield all eleven IDs (#4731)', () => { const result = runGsdTools('init plan-phase 1 --pick phase_req_ids', tmpDir); assert.equal( result.output.trim(), 'REQ-01, REQ-02, REQ-03, REQ-04, REQ-05, REQ-06, REQ-07, REQ-08, REQ-09, REQ-10, REQ-11', 'continuation-line REQ-10/REQ-11 must not be silently dropped', ); }); test('wrapped Goal is returned in full (#4731)', () => { const result = runGsdTools('query roadmap.get-phase 1 --pick goal', tmpDir); assert.equal( result.output.trim(), 'Deliver a small demo feature that exercises the planning pipeline end to end with a goal sentence long enough to wrap onto a second line', 'the goal must read past the hard wrap', ); }); }); // ── #4683 — gap-closure plans reused threat IDs that earlier plans in the ──── // same phase had already assigned to different threats. Nothing detected it: // SECURITY.md rows and VALIDATION.md's Threat Ref column key on the ID, so a // reused ID makes every downstream consumer ambiguous. The init payloads now // carry the cross-plan duplicate list (T-{phase}-NN shapes; the reserved // T-{phase}-SC supply-chain row is deliberately shared and never flagged), and // execute-phase.md hard-stops on a non-empty list before any dispatch. describe('#4683 — cross-plan threat-ID duplicate detection', () => { let tmpDir; beforeEach(() => { tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => cleanup(tmpDir)); function threatPlan({ ids, gapClosure = false, superseded = false, withSc = true }) { const rows = ids.map((id) => `| ${id} | Tampering | component | medium | mitigate | fix it |`); return [ ...(superseded ? ['---', 'status: superseded', '---', ''] : []), '# Plan', '', ...(gapClosure ? ['gap_closure: true', ''] : []), '', '| Threat ID | Category | Component | Severity | Disposition | Mitigation |', '|-----------|----------|-----------|----------|-------------|------------|', ...(withSc ? ['| T-47-SC | Tampering | npm installs | high | mitigate | legitimacy gate |'] : []), ...rows, '', '', ].join('\n'); } test('init execute-phase reports threat IDs reused across plans (#4683)', () => { seedPhase(tmpDir, '47-security', { // Earlier plans own T-47-01..09 / 10..14 / 15..19. '47-03-PLAN.md': threatPlan({ ids: ['T-47-01', 'T-47-02', 'T-47-03'] }), '47-04-PLAN.md': threatPlan({ ids: ['T-47-10', 'T-47-11', 'T-47-15'] }), '47-05-PLAN.md': threatPlan({ ids: ['T-47-19'] }), // Gap-closure plans renumber from 01 again — the bug: every ID below is // already claimed by an earlier plan for a DIFFERENT threat. '47-06-PLAN.md': threatPlan({ ids: ['T-47-10', 'T-47-11', 'T-47-19'], gapClosure: true }), '47-07-PLAN.md': threatPlan({ ids: ['T-47-15'], gapClosure: true }), }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); const duplicates = output.threat_id_duplicates; assert.ok(Array.isArray(duplicates), 'threat_id_duplicates must be an array'); const byId = Object.fromEntries(duplicates.map((d) => [d.id, d.plans])); for (const id of ['T-47-10', 'T-47-11', 'T-47-15', 'T-47-19']) { assert.ok(byId[id], `reused ID ${id} must be reported, got: ${JSON.stringify(duplicates)}`); assert.ok(byId[id].length >= 2, `${id} must name at least the two plans claiming it`); } assert.strictEqual(byId['T-47-15'][0], '47-04-PLAN.md'); assert.strictEqual(byId['T-47-15'][1], '47-07-PLAN.md'); // Only genuinely reused IDs — the unique ones stay out. assert.ok(!byId['T-47-01'] && !byId['T-47-02'] && !byId['T-47-03'], 'uniquely-claimed IDs must not be reported'); assert.strictEqual(output.threat_id_duplicate_count, 4, `count must match the duplicate list, got ${output.threat_id_duplicate_count} for ${JSON.stringify(duplicates)}`); // The reserved supply-chain ID is shared BY DESIGN (every plan keeps it). assert.ok(!byId['T-47-SC'], 'T-47-SC is reserved and deliberately shared — never a duplicate'); }); test('init execute-phase reports no duplicates for unique registers (#4683)', () => { seedPhase(tmpDir, '47-security', { '47-03-PLAN.md': threatPlan({ ids: ['T-47-01', 'T-47-02'] }), '47-04-PLAN.md': threatPlan({ ids: ['T-47-03', 'T-47-04'] }), }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.deepEqual(output.threat_id_duplicates, []); assert.strictEqual(output.threat_id_duplicate_count, 0); }); test('superseded plans do not hold threat IDs against their replacements (#4683)', () => { seedPhase(tmpDir, '47-security', { // Deliberately retired: its IDs moved to the replacing plan. '47-03-PLAN.md': threatPlan({ ids: ['T-47-01'], superseded: true }), '47-05-PLAN.md': threatPlan({ ids: ['T-47-01'] }), }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.deepEqual(output.threat_id_duplicates, [], 'a superseded plan\'s IDs were deliberately reassigned — not a collision'); assert.strictEqual(output.threat_id_duplicate_count, 0); }); test('init plan-phase surfaces the same duplicate list (#4683)', () => { seedPhase(tmpDir, '47-security', { '47-03-PLAN.md': threatPlan({ ids: ['T-47-01'] }), '47-04-PLAN.md': threatPlan({ ids: ['T-47-01'] }), }); writePlanningDocs(tmpDir); const result = runGsdTools('init plan-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.strictEqual(output.threat_id_duplicate_count, 1); assert.deepEqual(output.threat_id_duplicates, [{ id: 'T-47-01', plans: ['47-03-PLAN.md', '47-04-PLAN.md'] }]); }); test('IDs outside a block never count (#4683)', () => { seedPhase(tmpDir, '47-security', { '47-03-PLAN.md': '# Plan\n\nSee T-47-01 in SECURITY.md. | T-47-02 | not a register |\n', '47-04-PLAN.md': '# Plan\n\nSee T-47-01 again.\n', }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.deepEqual(output.threat_id_duplicates, [], 'prose mentions of an ID are not register rows — only tables count'); assert.strictEqual(output.threat_id_duplicate_count, 0); }); }); // ── #4683 review repairs ───────────────────────────────────────────────────── describe('#4683 review repairs — fence blindness and deterministic ordering', () => { let tmpDir; beforeEach(() => { tmpDir = fs.realpathSync(createFixture()); }); afterEach(() => cleanup(tmpDir)); test('a register QUOTED inside a code fence is not a claim (#4683 review MAJOR)', () => { seedPhase(tmpDir, '47-security', { '47-03-PLAN.md': [ '# Plan', '', '', '| T-47-01 | Tampering | component | high | mitigate | fix |', '', '', 'The register we are extending (quoted verbatim):', '', '```markdown', '', '| Threat ID | Category | Component | Severity | Disposition | Mitigation |', '|-----------|----------|-----------|----------|-------------|------------|', '| T-47-01 | Tampering | component | high | mitigate | fix |', '', '```', '', ].join('\n'), '47-04-PLAN.md': [ '# Plan', '', '', '| T-47-02 | Repudiation | component | low | accept | rationale |', '', '', 'Reference copy of phase 47-03\'s register:', '', '~~~', '', '| T-47-01 | Tampering | component | high | mitigate | fix |', '', '~~~', '', ].join('\n'), }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.deepEqual(output.threat_id_duplicates, [], 'quoted registers live in fenced code blocks — prose, not claims; only live blocks count'); assert.strictEqual(output.threat_id_duplicate_count, 0); }); test('duplicate entries list claiming plans in deterministic sorted order (#4683 review MINOR)', () => { seedPhase(tmpDir, '47-security', { '47-07-PLAN.md': [ '# Plan', '', '', '| T-47-15 | DoS | component | medium | mitigate | fix |', '', '', ].join('\n'), '47-04-PLAN.md': [ '# Plan', '', '', '| T-47-15 | Repudiation | component | high | mitigate | fix |', '', '', ].join('\n'), }); writePlanningDocs(tmpDir); const result = runGsdTools('init execute-phase 47', tmpDir); assert.ok(result.success, `Command failed: ${result.error}`); const output = JSON.parse(result.output); assert.deepEqual(output.threat_id_duplicates, [ { id: 'T-47-15', plans: ['47-04-PLAN.md', '47-07-PLAN.md'] }, ], 'claiming-plan lists must be sorted, never readdir order'); }); });