/** * Tests for msd-core/bin/lib/intel.cjs * * Covers: query, status, diff, validate, snapshot, patch-meta, * extract-exports, enabled/disabled gating, and CLI routing via msd-tools. */ // allow-test-rule: source-text-is-the-product // readFileSync assertions target API-SURFACE.md, which is the generated product of intelApiSurface; asserting on its text content is the only way to verify correct generation. 'use strict'; const { describe, test, beforeEach, afterEach } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('fs'); const path = require('path'); const { createTempProject, createTempDir, cleanup, runMsdTools } = require('./helpers.cjs'); const { intelQuery, intelStatus, intelDiff, intelValidate, intelSnapshot, intelPatchMeta, intelExtractExports, intelApiSurface, ensureIntelDir, isIntelCapabilityActive, INTEL_FILES, } = require('../msd-core/bin/lib/intel.cjs'); const { isCapabilityActive } = require('../msd-core/bin/lib/capability-state.cjs'); // ─── Helpers ──────────────────────────────────────────────────────────────── function enableIntel(planningDir) { const configPath = path.join(planningDir, 'config.json'); const config = fs.existsSync(configPath) ? JSON.parse(fs.readFileSync(configPath, 'utf8')) : {}; config.intel = { enabled: true }; fs.writeFileSync(configPath, JSON.stringify(config, null, 2), 'utf8'); } function writeIntelJson(planningDir, filename, data) { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync( path.join(intelPath, filename), JSON.stringify(data, null, 2), 'utf8' ); } function _writeIntelMd(planningDir, filename, content) { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync(path.join(intelPath, filename), content, 'utf8'); } // ─── Surfaced-config-dir fixture ────────────────────────────────────────────── // // Positive-path tests (intelQuery, intelStatus, etc.) call isCapabilityActive // via the tri-state gate — they need the capability to be surfaced. // Without this fixture those tests are ambient-dependent (pass only on machines // where intel is surfaced in the real ~/.claude). // // Fix: point CLAUDE_CONFIG_DIR at a tmp dir containing a full-profile // .msd-surface.json (no disabled clusters) so intel is surfaced deterministically. // An EMPTY tmp config dir also works (defaults to 'full' profile → all surfaced) // but we write the file explicitly for visible intent. /** Create a tmp config dir with intel (and all caps) surfaced — full profile. */ function makeSurfacedConfigDir() { const dir = createTempDir('msd-intel-surface-cfg-'); fs.writeFileSync( path.join(dir, '.msd-surface.json'), JSON.stringify({ baseProfile: 'full', disabledClusters: [], explicitAdds: [], explicitRemoves: [] }, null, 2) + '\n', 'utf8', ); return dir; } /** Save env vars touched by the surfaced-config fixture; returns .restore(). */ function saveSurfacedEnv() { const saved = { MSD_RUNTIME: process.env.MSD_RUNTIME, CLAUDE_CONFIG_DIR: process.env.CLAUDE_CONFIG_DIR, MSD_WORKSTREAM: process.env.MSD_WORKSTREAM, MSD_PROJECT: process.env.MSD_PROJECT, }; return { restore() { if (saved.MSD_RUNTIME === undefined) delete process.env.MSD_RUNTIME; else process.env.MSD_RUNTIME = saved.MSD_RUNTIME; if (saved.CLAUDE_CONFIG_DIR === undefined) delete process.env.CLAUDE_CONFIG_DIR; else process.env.CLAUDE_CONFIG_DIR = saved.CLAUDE_CONFIG_DIR; if (saved.MSD_WORKSTREAM === undefined) delete process.env.MSD_WORKSTREAM; else process.env.MSD_WORKSTREAM = saved.MSD_WORKSTREAM; if (saved.MSD_PROJECT === undefined) delete process.env.MSD_PROJECT; else process.env.MSD_PROJECT = saved.MSD_PROJECT; }, }; } // ─── Disabled gating ──────────────────────────────────────────────────────── describe('intel disabled gating', () => { let tmpDir; let planningDir; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); }); afterEach(() => { cleanup(tmpDir); }); // isIntelEnabled was removed in Phase 4 (tri-state cutover). These tests now // verify the gating via the public command API (intelQuery) and the exported // isIntelCapabilityActive helper which delegates to isCapabilityActive. test('isIntelCapabilityActive returns false when no config.json exists', () => { // No CLAUDE_CONFIG_DIR → defaults to real ~/.claude; no intel.enabled in config. // In a hermetic test environment (empty tmpDir), the capability is not surfaced // via the real config dir — but isCapabilityActive returns false by construction // when the activationKey (intel.enabled) is absent/false regardless of surface, // because: active = enabled && configActivation; configActivation=false when key absent. // This test is surface-agnostic for the "no config" branch. assert.strictEqual(isIntelCapabilityActive(planningDir), false); }); test('isIntelCapabilityActive returns false when intel.enabled is not set', () => { fs.writeFileSync( path.join(planningDir, 'config.json'), JSON.stringify({ model_profile: 'balanced' }), 'utf8' ); assert.strictEqual(isIntelCapabilityActive(planningDir), false); }); // NOTE: intel has `skills: []` (empty), so installed and surfaced are vacuously true. // For intel, active = configActivation (the intel.enabled config key). // This test verifies that isIntelCapabilityActive delegates to isCapabilityActive('intel', cwd) // and that the function returns a boolean without throwing, regardless of the ambient // CLAUDE_CONFIG_DIR. The config dimension is probed hermetically in the section below. test('isIntelCapabilityActive delegates to isCapabilityActive and returns a boolean (config=true, ambient surface)', () => { // Write config.intel.enabled=true (config dimension ON). Since intel has no skills, // surface is vacuously true — so this call returns true when the config is written // and the capability system resolves correctly. enableIntel(planningDir); // We cannot assert the exact value without full hermetic control of all three // tri-state dimensions (see hermetic section below for that), but we assert that: // 1. isIntelCapabilityActive delegates correctly (does not throw) // 2. it returns a boolean (not undefined/null/object) const result = isIntelCapabilityActive(planningDir); assert.strictEqual(typeof result, 'boolean', 'isIntelCapabilityActive must return a boolean'); }); test('intelQuery returns disabled response when intel is off', () => { const result = intelQuery('test', planningDir); assert.strictEqual(result.disabled, true); assert.ok(result.message.includes('disabled')); }); test('intelStatus returns disabled response when intel is off', () => { const result = intelStatus(planningDir); assert.strictEqual(result.disabled, true); }); test('intelDiff returns disabled response when intel is off', () => { const result = intelDiff(planningDir); assert.strictEqual(result.disabled, true); }); test('intelValidate returns disabled response when intel is off', () => { const result = intelValidate(planningDir); assert.strictEqual(result.disabled, true); }); }); // ─── Tri-state gate hermetic regression tests ──────────────────────────────── // // Intel capability has `skills: []` (empty) — so `installed` and `surfaced` are // VACUOUSLY TRUE. For intel, `active = configActivation` where configActivation // resolves the `activationKey` ("intel.enabled") via the config. This is a meaningful // tri-state improvement because the old `isIntelEnabled` read config.json directly // (synchronous file read, not wired through `loadConfig`), while the new gate goes // through the full `resolveCapabilityRuntimeState` path. // // FAIL-FIRST PROOF (what would fail against the OLD isIntelEnabled code): // Scenario: intel installed (skills=[]) + config has intel.enabled=true, BUT the // surface has intel NOT surfaced via disabledClusters. // // However: intel has skills:[], so disabledClusters:['intel'] has no effect // (no skills to remove from the surfaced set). Intel is always vacuously surfaced. // // The CORRECT regression for intel's tri-state cutover is: // intel.enabled=true in config → isCapabilityActive=true → command NOT disabled // intel.enabled=false (or absent) → isCapabilityActive=false → command disabled // AND that the gate now goes through the shared resolver (not a direct config read). // // FAIL-FIRST SCENARIO: OLD isIntelEnabled read config.json at the planningDir path // via platformReadSync. NEW isCapabilityActive uses resolveCapabilityRuntimeState // which goes through loadConfig (multi-layer resolution). A test that sets // intel.enabled=true in config then calls intelStatus would: // OLD: isIntelEnabled → reads .planning/config.json → true → NOT disabled. // NEW: isCapabilityActive → resolveCapabilityRuntimeState → configActivation=true → active=true → NOT disabled. // Both return the same, so the regression test focuses on the config-absent/false case // where the gate correctly returns disabled (proving the delegation path works). describe('intel tri-state gate hermetic regression (isCapabilityActive cutover)', () => { let tmpConfigDir; let tmpProjectDir; let prevClaudeConfigDir; let prevMsdWorkstream; let prevMsdProject; beforeEach(() => { tmpConfigDir = createTempDir('msd-intel-tristate-cfg-'); tmpProjectDir = createTempProject('msd-intel-tristate-proj-'); prevClaudeConfigDir = process.env.CLAUDE_CONFIG_DIR; prevMsdWorkstream = process.env.MSD_WORKSTREAM; prevMsdProject = process.env.MSD_PROJECT; // Empty CLAUDE_CONFIG_DIR (no .msd-surface.json) → defaults to 'full' profile. // Intel has skills:[] so it is vacuously installed+surfaced+enabled. // Active = configActivation = intel.enabled in config. process.env.CLAUDE_CONFIG_DIR = tmpConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { if (prevClaudeConfigDir === undefined) delete process.env.CLAUDE_CONFIG_DIR; else process.env.CLAUDE_CONFIG_DIR = prevClaudeConfigDir; if (prevMsdWorkstream === undefined) delete process.env.MSD_WORKSTREAM; else process.env.MSD_WORKSTREAM = prevMsdWorkstream; if (prevMsdProject === undefined) delete process.env.MSD_PROJECT; else process.env.MSD_PROJECT = prevMsdProject; cleanup(tmpConfigDir); cleanup(tmpProjectDir); }); // NEGATIVE CASE: config has NO intel.enabled (absent → defaults to false via activationKey). // OLD gate: isIntelEnabled reads config.json → no intel key → returns false → disabled. // NEW gate: isCapabilityActive → configActivation=false (intel.enabled default=false) → active=false → disabled. // Both return disabled. The test PROVES the gate is wired through isCapabilityActive and // the command intelStatus returns disabled — regression guard against losing the delegation. test('intelStatus returns disabled when intel.enabled is absent in config (hermetic tristate negative)', () => { // No config.json in planningDir — intel.enabled defaults to false. // OLD isIntelEnabled: reads .planning/config.json → not found → false → disabled. // NEW isCapabilityActive: intel.enabled default=false → configActivation=false → active=false → disabled. const planningDir = path.join(tmpProjectDir, '.planning'); const result = intelStatus(planningDir); assert.strictEqual( result.disabled, true, 'intelStatus must return disabled when intel.enabled is not set — ' + 'both old and new gate must return disabled here; this is the regression guard for the delegation path', ); assert.ok( typeof result.message === 'string' && result.message.length > 0, 'disabled response must include a non-empty message', ); }); // POSITIVE CONTROL: intel.enabled=true in config → isCapabilityActive=true → NOT disabled. // This is the primary pass case that proves the NEW gate honours config-enabled. // OLD gate (isIntelEnabled) returns true. NEW gate (isCapabilityActive) also returns true. // The test confirms the behaviour is preserved after cutover. test('intelStatus NOT disabled when intel.enabled=true in config (hermetic tristate positive control)', () => { const planningDir = path.join(tmpProjectDir, '.planning'); fs.mkdirSync(planningDir, { recursive: true }); fs.writeFileSync( path.join(planningDir, 'config.json'), JSON.stringify({ intel: { enabled: true } }), 'utf8', ); const active = isCapabilityActive('intel', tmpProjectDir); assert.strictEqual( active, true, 'isCapabilityActive must return true when intel.enabled=true and intel is vacuously installed+surfaced', ); const result = intelStatus(planningDir); assert.ok( !result.disabled, 'intelStatus must NOT return disabled when intel.enabled=true (positive control)', ); }); }); // ─── ensureIntelDir ───────────────────────────────────────────────────────── describe('ensureIntelDir', () => { let tmpDir; let planningDir; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); }); afterEach(() => { cleanup(tmpDir); }); test('creates intel directory if it does not exist', () => { const intelPath = ensureIntelDir(planningDir); assert.ok(fs.existsSync(intelPath)); assert.ok(intelPath.endsWith('intel')); }); test('returns existing intel directory without error', () => { fs.mkdirSync(path.join(planningDir, 'intel'), { recursive: true }); const intelPath = ensureIntelDir(planningDir); assert.ok(fs.existsSync(intelPath)); }); }); // ─── intelQuery ───────────────────────────────────────────────────────────── describe('intelQuery', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); // Harden: ensure intel is surfaced (tri-state gate requires install+surface+config). // Empty CLAUDE_CONFIG_DIR defaults to 'full' profile → all caps surfaced. surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('returns empty matches when no intel files exist', () => { const result = intelQuery('anything', planningDir); assert.strictEqual(result.total, 0); assert.deepStrictEqual(result.matches, []); assert.strictEqual(result.term, 'anything'); }); test('finds matches in JSON file keys', () => { writeIntelJson(planningDir, 'file-roles.json', { _meta: { updated_at: new Date().toISOString() }, entries: { 'src/auth/controller.ts': { size: 1024, type: 'typescript' }, 'src/utils/logger.ts': { size: 512, type: 'typescript' }, }, }); const result = intelQuery('auth', planningDir); assert.strictEqual(result.total, 1); assert.strictEqual(result.matches[0].source, 'file-roles.json'); assert.strictEqual(result.matches[0].entries[0].key, 'src/auth/controller.ts'); }); test('finds matches in JSON file values', () => { writeIntelJson(planningDir, 'dependency-graph.json', { _meta: { updated_at: new Date().toISOString() }, entries: { express: { version: '4.18.0', type: 'runtime', used_by: ['src/server.ts'] }, }, }); const result = intelQuery('express', planningDir); assert.strictEqual(result.total, 1); assert.strictEqual(result.matches[0].entries[0].key, 'express'); }); test('search is case-insensitive', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: { 'src/AuthController.ts': { type: 'typescript' }, }, }); const result = intelQuery('authcontroller', planningDir); assert.strictEqual(result.total, 1); }); test('finds matches in arch-decisions.json entries', () => { writeIntelJson(planningDir, 'arch-decisions.json', { _meta: { updated_at: new Date().toISOString() }, entries: { 'jwt-auth': { decision: 'Use JWT tokens for stateless authentication', status: 'accepted' }, 'rest-api': { decision: 'REST API endpoints for all services', status: 'accepted' }, }, }); const result = intelQuery('JWT', planningDir); assert.strictEqual(result.total, 1); assert.strictEqual(result.matches[0].source, 'arch-decisions.json'); }); test('searches across multiple intel files', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: { 'src/auth.ts': { exports: ['authenticate'] } }, }); writeIntelJson(planningDir, 'api-map.json', { entries: { '/api/auth': { method: 'POST', handler: 'authenticate' } }, }); const result = intelQuery('auth', planningDir); assert.strictEqual(result.total, 2); assert.strictEqual(result.matches.length, 2); }); }); // ─── #3885 (ADR-3473 §8.5): recursion bound + truncation signal ───────────── // // searchJsonEntries/matchesInValue lost the MAX_JSON_SEARCH_DEPTH=48 bound in // the ADR-0174 SDK retirement. A deeply nested .planning/intel/*.json document // overflows the call stack (uncaught RangeError, exit 1) instead of failing // gracefully. Restoring the bound verbatim would trade the crash for a SILENT // "no match" at depth 49+ — exactly the defect class this epic exists to close // one layer down (ADR-3473 Decision 4: a routine that discards an input says // so, naming the input). The required fix therefore pairs the bound with a // truncation signal. // // DESIGN DECISION (chosen by this test file — not yet implemented): a // top-level `truncated: boolean` field on the IntelQueryResult returned by // intelQuery. `truncated` is true iff ANY searched intel file's walk hit the // depth ceiling; false/absent otherwise. Chosen because it is the shape a // JSON consumer (or the CLI's raw stdout) can read directly without parsing // per-entry structure. describe('#3885 (ADR-3473 §8.5): intel query recursion bound + truncation signal', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); // Build an object nested `n` levels deep: {a: {a: {a: ... {leaf: 'needle-here'}}}}. function nest(n) { let o = { leaf: 'needle-here' }; for (let i = 0; i < n; i++) o = { a: o }; return o; } function writeNestedFixture(depth) { writeIntelJson(planningDir, 'file-roles.json', { entries: { top: nest(depth) } }); } // Build the SAME shape as nest(depth) — {a:{a:{a:...{leaf:'needle-here'}}}} // wrapped in {entries:{top:...}} — but as JSON TEXT via string .repeat(), // with zero recursion in the test process. Required for pathological depths // (thousands+): nest() + JSON.stringify() both recurse per level, so at // depth 12000 THE TEST'S OWN FIXTURE BUILDER overflows the test process's // stack before the CLI is ever spawned (V8's JSON.stringify recurses; its // JSON.parse does not). Do not "simplify" this back to // JSON.stringify(nest(n)) for large depths — that reintroduces a // macOS-green / Linux-red test, since Linux's default container stack is // smaller than macOS's. function writeNestedFixtureText(depth) { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); const json = '{"entries":{"top":' + '{"a":'.repeat(depth) + '{"leaf":"needle-here"}' + '}'.repeat(depth) + '}}'; fs.writeFileSync(path.join(intelPath, 'file-roles.json'), json, 'utf8'); } // T2 — MUST STAY GREEN before and after the fix: the ceiling is inclusive. test('T2: matchAtDepth48IsFoundUntruncated', () => { writeNestedFixture(48); const result = intelQuery('needle-here', planningDir); assert.strictEqual(result.total, 1, 'depth-48 match must still be found'); assert.notStrictEqual(result.truncated, true, 'depth-48 (at the ceiling) must not report truncation'); }); // T3 — RED today: measured on this tree (e20744eac), depth 49 currently // returns total=1 (found), exit 0, with no `truncated` field at all. // Required: NOT returned as a match, AND the result reports truncation — // never a bare "no match". test('T3: matchAtDepth49IsNotSilentlyAbsent', () => { writeNestedFixture(49); const result = intelQuery('needle-here', planningDir); assert.strictEqual(result.total, 0, 'a match past the depth ceiling must not be reported as found'); assert.deepStrictEqual(result.matches, [], 'no per-file match entries past the ceiling'); assert.strictEqual(result.truncated, true, 'the result must say the search was truncated — never a bare "no match"'); }); // T4 — RED today: measured via the real CLI on this tree — depth 12000 // exits 1 with stderr "Error: Maximum call stack size exceeded". Required: // exit 0, bounded result, truncated:true, and the RangeError text must // never appear. test('T4: deeplyNestedIntelDoesNotOverflowTheStack', () => { writeNestedFixtureText(12000); const result = runMsdTools(['intel', 'query', 'needle-here'], tmpDir); assert.strictEqual(result.success, true, `must exit 0 (no stack overflow), got: ${result.error}`); assert.ok( !/Maximum call stack size exceeded/.test(result.error || ''), `stderr must never contain the raw RangeError text, got: ${result.error}`, ); const output = JSON.parse(result.output); assert.strictEqual(output.truncated, true, 'a 12000-deep document must report truncation'); }); // T5 — MUST STAY GREEN (N1): a shallow miss is not truncated. Stops the // flag becoming noise on every ordinary "not found" result. test('T5: shallowMissReportsNoTruncation', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: { 'src/foo.ts': { type: 'typescript' } }, }); const result = intelQuery('needle-here', planningDir); assert.strictEqual(result.total, 0); assert.notStrictEqual(result.truncated, true, 'a shallow miss must not report truncation'); }); // T6 — MUST STAY GREEN (N2): the bound is on DEPTH, not breadth. 10,000 // shallow siblings must not be mistaken for hitting the depth ceiling. test('T6: wideShallowDocumentIsUnaffectedByTheDepthBound', () => { const entries = {}; for (let i = 0; i < 10000; i++) { entries[`sibling-${i}`] = { note: `filler ${i}` }; } entries.target = { nested: { leaf: 'needle-here' } }; writeIntelJson(planningDir, 'file-roles.json', { entries }); const result = intelQuery('needle-here', planningDir); assert.strictEqual(result.total, 1, '10,000-sibling breadth must not suppress a shallow match'); assert.notStrictEqual(result.truncated, true, 'breadth alone must never trigger the depth-truncation flag'); }); }); // ─── #3885 (ADR-3473 §8.5): safeReadJson no-silent-swallow ────────────────── // // `safeReadJson` folded THREE distinct on-disk states into one bare `null`: // absent (ENOENT), unreadable (EACCES/EIO/...), and malformed (JSON.parse // throws). An unreadable or malformed intel file read as "no matches" — // byte-indistinguishable from a project that simply lacks that intel file. // This closes the gap: absent stays silent (the common, expected case — // intelQuery already loops over every INTEL_FILES entry expecting misses), // while unreadable/malformed are surfaced via the always-present // `read_errors: string[]` field on IntelQueryResult, naming the file. describe('#3885 (ADR-3473 §8.5): safeReadJson distinguishes absent from unreadable/malformed', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); // T7 — RED before the fix: an EACCES on a present intel file was swallowed // by safeReadJson's bare `catch { return null; }`, so intelQuery reported // total:0 with no way to distinguish "no matches" from "could not read // the file at all". Monkeypatch fs.readFileSync rather than chmod 0o000 — // root bypasses mode bits, so a chmod-based test would pass with zero // coverage under root Docker/CI. test('T7: unreadableIntelFileIsSurfacedNamingTheFile', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: { 'src/foo.ts': { note: 'needle-here' } }, }); const targetPath = path.join(planningDir, 'intel', 'file-roles.json'); const originalReadFileSync = fs.readFileSync; fs.readFileSync = function injectedEaccesFailure(p, ...args) { if (p === targetPath) { const err = new Error(`EACCES: permission denied, open '${targetPath}'`); err.code = 'EACCES'; throw err; } return originalReadFileSync.call(fs, p, ...args); }; try { const result = intelQuery('needle-here', planningDir); assert.strictEqual(result.total, 0, 'an unreadable file cannot contribute a match'); assert.deepStrictEqual(result.matches, []); assert.ok(Array.isArray(result.read_errors), 'read_errors must always be present as an array'); assert.strictEqual(result.read_errors.length, 1, 'exactly one file failed to read'); assert.ok( result.read_errors[0].includes('file-roles.json'), `read_errors must name the unreadable file, got: ${result.read_errors[0]}`, ); } finally { fs.readFileSync = originalReadFileSync; } }); // T8 — RED before the fix: malformed JSON threw inside safeReadJson's // try block and was swallowed by the same bare catch, reading identically // to "no matches" — the same defect class as T7, one branch over. test('T8: malformedIntelFileIsSurfacedNamingTheFile', () => { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync(path.join(intelPath, 'file-roles.json'), '{ this is not valid json', 'utf8'); const result = intelQuery('anything', planningDir); assert.strictEqual(result.total, 0); assert.deepStrictEqual(result.matches, []); assert.strictEqual(result.read_errors.length, 1, 'exactly one file failed to parse'); assert.ok( result.read_errors[0].includes('file-roles.json'), `read_errors must name the malformed file, got: ${result.read_errors[0]}`, ); }); // T9 — MUST STAY GREEN: an absent intel file is normal, not an error. Not // every project has every intel file, and intelQuery loops over the full // INTEL_FILES set expecting misses. This is the row that keeps the new // flag honest — without it, the fix would over-fire on every project that // simply lacks an intel file. test('T9: absentIntelFileStaysSilentlyAbsent', () => { const result = intelQuery('anything', planningDir); assert.strictEqual(result.total, 0); assert.deepStrictEqual(result.matches, []); assert.deepStrictEqual(result.read_errors, [], 'a merely-absent intel file must never be reported as a read error'); }); // T10 — MUST STAY GREEN: a readable file with genuinely no matches reports // no error at all. Stops the new flag from becoming noise on the // overwhelmingly common "not found" case. test('T10: readableFileWithGenuinelyNoMatchesReportsNoReadError', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: { 'src/foo.ts': { type: 'typescript' } }, }); const result = intelQuery('zzz-nonexistent-term', planningDir); assert.strictEqual(result.total, 0); assert.strictEqual(result.truncated, false); assert.deepStrictEqual(result.read_errors, []); }); }); // ─── intelStatus ──────────────────────────────────────────────────────────── describe('intelStatus', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('reports missing files as stale', () => { const result = intelStatus(planningDir); assert.strictEqual(result.overall_stale, true); assert.strictEqual(result.files['file-roles.json'].exists, false); assert.strictEqual(result.files['file-roles.json'].stale, true); }); test('reports fresh files as not stale', () => { writeIntelJson(planningDir, 'file-roles.json', { _meta: { updated_at: new Date().toISOString() }, entries: {}, }); const result = intelStatus(planningDir); assert.strictEqual(result.files['file-roles.json'].exists, true); assert.strictEqual(result.files['file-roles.json'].stale, false); }); test('reports old files as stale', () => { const oldDate = new Date(Date.now() - 25 * 60 * 60 * 1000).toISOString(); writeIntelJson(planningDir, 'file-roles.json', { _meta: { updated_at: oldDate }, entries: {}, }); const result = intelStatus(planningDir); assert.strictEqual(result.files['file-roles.json'].stale, true); assert.strictEqual(result.overall_stale, true); }); }); // ─── #3885 (ADR-3473 §8.5): intelStatus read_error field ──────────────────── // // intelStatus threads safeReadJson's per-file outcome into `read_error` on // the per-file IntelStatusFileEntry. Before this change, safeReadJson's bare // catch made an unreadable or malformed file indistinguishable from a file // that was simply never populated — both showed no way to tell staleness- // by-neglect apart from staleness-by-read-failure. The fix adds the field to // every entry: present as a string naming the file when the read/parse // failed, null for the genuinely-quiet cases (absent, or readable-but-no- // error). describe('#3885 (ADR-3473 §8.5): intelStatus read_error field', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); // Monkeypatch fs.readFileSync rather than chmod 0o000 — root bypasses mode // bits, so a chmod-based test would pass with zero coverage under root // Docker/CI. test('unreadableFileReportsReadErrorNamingTheFile', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: {} }); const targetPath = path.join(planningDir, 'intel', 'file-roles.json'); const originalReadFileSync = fs.readFileSync; fs.readFileSync = function injectedEaccesFailure(p, ...args) { if (p === targetPath) { const err = new Error(`EACCES: permission denied, open '${targetPath}'`); err.code = 'EACCES'; throw err; } return originalReadFileSync.call(fs, p, ...args); }; try { const result = intelStatus(planningDir); assert.strictEqual(typeof result.files['file-roles.json'].read_error, 'string'); assert.ok( result.files['file-roles.json'].read_error.includes('file-roles.json'), `read_error must name the unreadable file, got: ${result.files['file-roles.json'].read_error}`, ); } finally { fs.readFileSync = originalReadFileSync; } }); test('malformedJsonReportsReadErrorNamingTheFile', () => { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync(path.join(intelPath, 'file-roles.json'), '{ this is not valid json', 'utf8'); const result = intelStatus(planningDir); assert.strictEqual(typeof result.files['file-roles.json'].read_error, 'string'); assert.ok( result.files['file-roles.json'].read_error.includes('file-roles.json'), `read_error must name the malformed file, got: ${result.files['file-roles.json'].read_error}`, ); }); // MUST STAY GREEN: a merely-absent file is normal, not an error. test('absentFileReportsReadErrorNullNoError', () => { const result = intelStatus(planningDir); assert.strictEqual(result.files['file-roles.json'].exists, false); assert.strictEqual( result.files['file-roles.json'].read_error, null, 'a merely-absent file must never be reported as a read error', ); }); }); // ─── intelDiff ────────────────────────────────────────────────────────────── describe('intelDiff', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('returns no_baseline when no snapshot exists', () => { const result = intelDiff(planningDir); assert.strictEqual(result.no_baseline, true); }); test('detects added files since snapshot', () => { // Save an empty snapshot const intelPath = ensureIntelDir(planningDir); fs.writeFileSync( path.join(intelPath, '.last-refresh.json'), JSON.stringify({ hashes: {}, timestamp: new Date().toISOString(), version: 1 }), 'utf8' ); // Add a file after snapshot writeIntelJson(planningDir, 'file-roles.json', { entries: {} }); const result = intelDiff(planningDir); assert.ok(result.added.includes('file-roles.json')); }); test('detects changed files since snapshot', () => { // Write initial file writeIntelJson(planningDir, 'file-roles.json', { entries: { a: 1 } }); // Take snapshot intelSnapshot(planningDir); // Modify file writeIntelJson(planningDir, 'file-roles.json', { entries: { a: 1, b: 2 } }); const result = intelDiff(planningDir); assert.ok(result.changed.includes('file-roles.json')); }); }); // ─── #3885 (ADR-3473 §8.5): intelDiff read_error / no_baseline false-verdict ─ // // Before this change intelDiff reported `no_baseline: true` for BOTH a // genuinely-never-snapshotted project (ENOENT) AND a present-but-unreadable // or malformed snapshot (EACCES/EIO/corrupt JSON) — folding an ACTIVELY // FALSE verdict ("you never took a snapshot") over a read failure. This is // ADR-3473 §8.5's headline case: silently swallowing the read error doesn't // just hide information here, it manufactures a wrong answer. The fix adds // `read_error: string | null` beside `no_baseline: true` so a caller can // tell "no snapshot was ever taken" (read_error: null) from "a snapshot // exists and I could not read it" (read_error: ). describe('#3885 (ADR-3473 §8.5): intelDiff read_error / no_baseline false-verdict', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); // Monkeypatch fs.readFileSync rather than chmod 0o000 — root bypasses mode // bits, so a chmod-based test would pass with zero coverage under root // Docker/CI. test('unreadableSnapshotReportsReadErrorNamingTheFile', () => { const intelPath = ensureIntelDir(planningDir); const snapshotPath = path.join(intelPath, '.last-refresh.json'); fs.writeFileSync( snapshotPath, JSON.stringify({ hashes: {}, timestamp: new Date().toISOString(), version: 1 }), 'utf8', ); const originalReadFileSync = fs.readFileSync; fs.readFileSync = function injectedEaccesFailure(p, ...args) { if (p === snapshotPath) { const err = new Error(`EACCES: permission denied, open '${snapshotPath}'`); err.code = 'EACCES'; throw err; } return originalReadFileSync.call(fs, p, ...args); }; try { const result = intelDiff(planningDir); assert.strictEqual(result.no_baseline, true); assert.strictEqual(typeof result.read_error, 'string'); assert.ok( result.read_error.includes('.last-refresh.json'), `read_error must name the unreadable snapshot file, got: ${result.read_error}`, ); } finally { fs.readFileSync = originalReadFileSync; } }); test('malformedSnapshotReportsReadErrorNamingTheFile', () => { const intelPath = ensureIntelDir(planningDir); fs.writeFileSync(path.join(intelPath, '.last-refresh.json'), '{ this is not valid json', 'utf8'); const result = intelDiff(planningDir); assert.strictEqual(result.no_baseline, true); assert.strictEqual(typeof result.read_error, 'string'); assert.ok( result.read_error.includes('.last-refresh.json'), `read_error must name the malformed snapshot file, got: ${result.read_error}`, ); }); // MUST STAY GREEN: a project that never took a snapshot is normal, not an // error. test('absentSnapshotReportsReadErrorNullNoError', () => { const result = intelDiff(planningDir); assert.strictEqual(result.no_baseline, true); assert.strictEqual( result.read_error, null, 'a project that never took a snapshot must never be reported as a read error', ); }); // THE FALSE-VERDICT TEST: `no_baseline: true` ALONE is the defect this // fix exists to close — it reads identically whether a snapshot was never // taken or a snapshot exists but could not be read/parsed. A caller must // be able to tell "no snapshot was ever taken" apart from "a snapshot // exists and I could not read it" directly from the return value. test('unreadableOrCorruptSnapshotIsDistinguishableFromNeverTookASnapshot_theFalseVerdictCase', () => { const neverSnapshotted = intelDiff(planningDir); assert.strictEqual(neverSnapshotted.no_baseline, true); assert.strictEqual(neverSnapshotted.read_error, null); const intelPath = ensureIntelDir(planningDir); fs.writeFileSync(path.join(intelPath, '.last-refresh.json'), '{ not json at all', 'utf8'); const corruptSnapshot = intelDiff(planningDir); assert.strictEqual( corruptSnapshot.no_baseline, true, 'a corrupt snapshot cannot be diffed against, so no_baseline correctly stays true', ); assert.strictEqual( typeof corruptSnapshot.read_error, 'string', 'a corrupt snapshot MUST set read_error — otherwise it is byte-indistinguishable from ' + 'never having snapshotted at all, which is the false verdict this fix exists to close', ); assert.notStrictEqual( corruptSnapshot.read_error, neverSnapshotted.read_error, 'the never-snapshotted and corrupt-snapshot cases must differ in the return value', ); }); }); // ─── intelSnapshot ────────────────────────────────────────────────────────── describe('intelSnapshot', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('saves snapshot with file hashes', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: {} }); const result = intelSnapshot(planningDir); assert.strictEqual(result.saved, true); assert.strictEqual(result.files, 1); assert.ok(result.timestamp); const snapshot = JSON.parse( fs.readFileSync(path.join(planningDir, 'intel', '.last-refresh.json'), 'utf8') ); assert.ok(snapshot.hashes['file-roles.json']); }); }); // ─── intelValidate ────────────────────────────────────────────────────────── describe('intelValidate', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('reports errors for missing files', () => { const result = intelValidate(planningDir); assert.strictEqual(result.valid, false); assert.ok(result.errors.length > 0); assert.ok(result.errors.some(e => e.includes('does not exist'))); }); test('reports warnings for missing _meta.updated_at', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: {} }); writeIntelJson(planningDir, 'api-map.json', { entries: {} }); writeIntelJson(planningDir, 'dependency-graph.json', { entries: {} }); writeIntelJson(planningDir, 'stack.json', { entries: {} }); writeIntelJson(planningDir, 'arch-decisions.json', { entries: {} }); const result = intelValidate(planningDir); assert.strictEqual(result.valid, true); assert.ok(result.warnings.some(w => w.includes('missing _meta.updated_at'))); }); test('reports invalid JSON as error', () => { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync(path.join(intelPath, 'file-roles.json'), 'not valid json', 'utf8'); writeIntelJson(planningDir, 'api-map.json', { entries: {} }); writeIntelJson(planningDir, 'dependency-graph.json', { entries: {} }); writeIntelJson(planningDir, 'stack.json', { entries: {} }); writeIntelJson(planningDir, 'arch-decisions.json', { entries: {} }); const result = intelValidate(planningDir); assert.strictEqual(result.valid, false); assert.ok(result.errors.some(e => e.includes('invalid JSON'))); }); test('passes validation with complete fresh intel', () => { const now = new Date().toISOString(); writeIntelJson(planningDir, 'file-roles.json', { _meta: { updated_at: now }, entries: {}, }); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: now }, entries: {}, }); writeIntelJson(planningDir, 'dependency-graph.json', { _meta: { updated_at: now }, entries: {}, }); writeIntelJson(planningDir, 'stack.json', { _meta: { updated_at: now }, entries: {}, }); writeIntelJson(planningDir, 'arch-decisions.json', { _meta: { updated_at: now }, entries: {}, }); const result = intelValidate(planningDir); assert.strictEqual(result.valid, true); assert.strictEqual(result.errors.length, 0); }); }); // ─── intelPatchMeta ───────────────────────────────────────────────────────── describe('intelPatchMeta', () => { let tmpDir; let planningDir; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); }); afterEach(() => { cleanup(tmpDir); }); test('patches _meta.updated_at and increments version', () => { writeIntelJson(planningDir, 'file-roles.json', { _meta: { updated_at: '2025-01-01T00:00:00Z', version: 1 }, entries: {}, }); const filePath = path.join(planningDir, 'intel', 'file-roles.json'); const result = intelPatchMeta(filePath); assert.strictEqual(result.patched, true); const data = JSON.parse(fs.readFileSync(filePath, 'utf8')); assert.strictEqual(data._meta.version, 2); assert.notStrictEqual(data._meta.updated_at, '2025-01-01T00:00:00Z'); }); test('creates _meta if missing', () => { writeIntelJson(planningDir, 'file-roles.json', { entries: {} }); const filePath = path.join(planningDir, 'intel', 'file-roles.json'); const result = intelPatchMeta(filePath); assert.strictEqual(result.patched, true); const data = JSON.parse(fs.readFileSync(filePath, 'utf8')); assert.ok(data._meta.updated_at); assert.strictEqual(data._meta.version, 1); }); test('returns error for missing file', () => { const result = intelPatchMeta('/nonexistent/file.json'); assert.strictEqual(result.patched, false); assert.ok(result.error.includes('not found')); }); test('returns error for invalid JSON', () => { const filePath = path.join(tmpDir, 'bad.json'); fs.writeFileSync(filePath, 'not json', 'utf8'); const result = intelPatchMeta(filePath); assert.strictEqual(result.patched, false); assert.ok(result.error.includes('Invalid JSON')); }); }); // ─── intelExtractExports ──────────────────────────────────────────────────── describe('intelExtractExports', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); test('extracts CJS module.exports object keys', () => { const filePath = path.join(tmpDir, 'example.cjs'); fs.writeFileSync(filePath, [ "'use strict';", 'function doStuff() {}', 'function helper() {}', 'module.exports = {', ' doStuff,', ' helper,', '};', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'module.exports'); assert.ok(result.exports.includes('doStuff')); assert.ok(result.exports.includes('helper')); }); test('extracts ESM named exports', () => { const filePath = path.join(tmpDir, 'example.mjs'); fs.writeFileSync(filePath, [ 'export function greet() {}', 'export const VERSION = "1.0";', 'export class Widget {}', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'esm'); assert.ok(result.exports.includes('greet')); assert.ok(result.exports.includes('VERSION')); assert.ok(result.exports.includes('Widget')); }); test('extracts ESM export block', () => { const filePath = path.join(tmpDir, 'example.js'); fs.writeFileSync(filePath, [ 'function foo() {}', 'function bar() {}', 'export { foo, bar };', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.ok(result.exports.includes('foo')); assert.ok(result.exports.includes('bar')); }); test('returns empty exports for nonexistent file', () => { const result = intelExtractExports('/nonexistent/file.js'); assert.deepStrictEqual(result.exports, []); assert.strictEqual(result.method, 'none'); }); // ── Behavior-lock: dedup + order (green before AND after Set conversion) ── test('dedup: duplicate exports.X assignments yield each name exactly once', () => { // exports.foo appears twice — result must contain 'foo' exactly once const filePath = path.join(tmpDir, 'dedup-exports-x.cjs'); fs.writeFileSync(filePath, [ "'use strict';", 'exports.foo = 1;', 'exports.bar = 2;', 'exports.foo = 3;', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'exports.X'); assert.deepStrictEqual(result.exports, ['foo', 'bar']); }); test('order: CJS exports.X preserves first-seen insertion order', () => { // Names appear in source order: charlie, alpha, bravo const filePath = path.join(tmpDir, 'order-cjs.cjs'); fs.writeFileSync(filePath, [ "'use strict';", 'exports.charlie = 1;', 'exports.alpha = 2;', 'exports.bravo = 3;', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'exports.X'); assert.deepStrictEqual(result.exports, ['charlie', 'alpha', 'bravo']); }); test('dedup: ESM export block with repeated name yields name exactly once', () => { // export { foo, foo } — foo must appear once const filePath = path.join(tmpDir, 'dedup-esm-block.mjs'); fs.writeFileSync(filePath, [ 'function foo() {}', 'export { foo, foo };', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'esm'); assert.deepStrictEqual(result.exports, ['foo']); }); test('merge order: CJS exports appear before ESM exports, each name once', () => { // exports.X = CJS side; export function / export const = ESM side // Expected order: CJS-first then ESM additions const filePath = path.join(tmpDir, 'merge-order.mjs'); fs.writeFileSync(filePath, [ "exports.cjsFirst = 1;", "export function esmSecond() {}", "export const esmThird = 3;", ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'mixed'); assert.deepStrictEqual(result.exports, ['cjsFirst', 'esmSecond', 'esmThird']); }); test('export default collapse: only export default (anon) yields ["default"]', () => { // A file with only `export default ` — no named exports, no default fn/class // The collapse guard (esmExports.length === 0 at time of check) produces ["default"] const filePath = path.join(tmpDir, 'default-only.mjs'); fs.writeFileSync(filePath, 'export default 42;', 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'esm'); assert.deepStrictEqual(result.exports, ['default']); }); test('export default collapse: export default fn + named exports — no "default" collapse', () => { // export default function myFunc() {} → myFunc is extracted (named default fn) // export const named → also extracted // "default" literal does NOT appear because esmExports is not empty when anon-default check runs const filePath = path.join(tmpDir, 'default-fn-plus-named.mjs'); fs.writeFileSync(filePath, [ 'export default function myFunc() {}', 'export const named = 1;', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.strictEqual(result.method, 'esm'); assert.deepStrictEqual(result.exports, ['myFunc', 'named']); }); test('return shape: exports is a plain Array (callers use .includes/.length)', () => { const filePath = path.join(tmpDir, 'shape-check.cjs'); fs.writeFileSync(filePath, [ "'use strict';", 'exports.foo = 1;', ].join('\n'), 'utf8'); const result = intelExtractExports(filePath); assert.ok(Array.isArray(result.exports), 'exports must be a plain Array'); assert.ok('file' in result, 'result must have file field'); assert.ok('method' in result, 'result must have method field'); }); }); // ─── CLI routing via msd-tools ────────────────────────────────────────────── describe('msd-tools intel subcommands', () => { let tmpDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); // Set up surfaced config dir for positive-path CLI tests (subprocess inherits env). // Negative-path tests (disabled) still work because intel.enabled is not set by default. surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('intel status returns disabled message when not enabled', () => { const result = runMsdTools(['intel', 'status'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.strictEqual(output.disabled, true); }); test('intel query returns disabled message when not enabled', () => { const result = runMsdTools(['intel', 'query', 'test'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.strictEqual(output.disabled, true); }); test('intel status returns file status when enabled', () => { enableIntel(path.join(tmpDir, '.planning')); const result = runMsdTools(['intel', 'status'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.ok(output.files); assert.strictEqual(output.overall_stale, true); }); test('intel validate reports errors for missing files when enabled', () => { enableIntel(path.join(tmpDir, '.planning')); const result = runMsdTools(['intel', 'validate'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.strictEqual(output.valid, false); assert.ok(output.errors.length > 0); }); test('unknown intel subcommand error lists api-surface', () => { const result = runMsdTools(['intel', 'nonexistent-subcmd'], tmpDir); assert.strictEqual(result.success, false); const errorText = result.error || ''; assert.ok(errorText.includes('api-surface'), 'error message must list api-surface'); }); test('flag-looking intel subcommand treated as unknown, not crash', () => { const result = runMsdTools(['intel', '--api-surface'], tmpDir); assert.strictEqual(result.success, false); const errorText = result.error || ''; assert.ok(errorText.includes('Unknown intel subcommand'), 'must emit typed unknown-subcommand error'); }); test('intel api-surface returns disabled message when not enabled', () => { const result = runMsdTools(['intel', 'api-surface'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.strictEqual(output.disabled, true); }); test('intel api-surface writes API-SURFACE.md when enabled with populated api-map.json', () => { const planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: new Date().toISOString() }, entries: { 'intelQuery': { method: 'function', handler: 'intelQuery', role: 'query intel files' }, 'intelStatus': { method: 'function', handler: 'intelStatus', role: 'report freshness' }, }, }); const result = runMsdTools(['intel', 'api-surface'], tmpDir); assert.strictEqual(result.success, true); const output = JSON.parse(result.output); assert.ok(output.written, 'result must include written path'); assert.strictEqual(output.symbolCount, 2); const mdContent = fs.readFileSync(output.written, 'utf8'); assert.ok(mdContent.includes('intelQuery'), 'API-SURFACE.md must list intelQuery symbol'); assert.ok(mdContent.includes('intelStatus'), 'API-SURFACE.md must list intelStatus symbol'); }); }); // ─── intelApiSurface ──────────────────────────────────────────────────────── describe('intelApiSurface', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); test('returns disabled response when intel is off', () => { const result = intelApiSurface(planningDir); assert.strictEqual(result.disabled, true); assert.ok(result.message.includes('disabled')); }); test('writes API-SURFACE.md with symbol entries from api-map.json', () => { enableIntel(planningDir); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: new Date().toISOString() }, entries: { 'authenticate': { method: 'POST', handler: 'authController', role: 'user login' }, 'createUser': { method: 'POST', handler: 'userController', role: 'user registration' }, }, }); const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 2); assert.ok(result.written.endsWith('API-SURFACE.md')); const content = fs.readFileSync(result.written, 'utf8'); assert.ok(content.includes('authenticate'), 'must include symbol name authenticate'); assert.ok(content.includes('createUser'), 'must include symbol name createUser'); assert.ok(content.includes('authController'), 'must include field value authController'); }); test('writes API-SURFACE.md with incomplete banner when api-map.json is absent', () => { enableIntel(planningDir); // No api-map.json written const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 0); assert.ok(result.written.endsWith('API-SURFACE.md')); const content = fs.readFileSync(result.written, 'utf8'); assert.ok(content.includes('Incomplete'), 'must contain Incomplete banner when no entries'); assert.ok(content.includes('unknown'), 'must say treat absence as "unknown"'); }); test('writes API-SURFACE.md with incomplete banner when entries is empty object', () => { enableIntel(planningDir); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: new Date().toISOString() }, entries: {}, }); const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 0); const content = fs.readFileSync(result.written, 'utf8'); assert.ok(content.includes('Incomplete'), 'empty entries must still emit incomplete banner'); }); test('returns stale=false for fresh api-map.json', () => { enableIntel(planningDir); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: new Date().toISOString() }, entries: { 'myFunc': { method: 'function' } }, }); const result = intelApiSurface(planningDir); assert.strictEqual(result.stale, false); }); test('returns stale=true for old api-map.json', () => { enableIntel(planningDir); const oldDate = new Date(Date.now() - 25 * 60 * 60 * 1000).toISOString(); writeIntelJson(planningDir, 'api-map.json', { _meta: { updated_at: oldDate }, entries: { 'myFunc': { method: 'function' } }, }); const result = intelApiSurface(planningDir); assert.strictEqual(result.stale, true); }); test('return shape has written, symbolCount, stale fields', () => { enableIntel(planningDir); const result = intelApiSurface(planningDir); assert.ok('written' in result, 'result must have written field'); assert.ok('symbolCount' in result, 'result must have symbolCount field'); assert.ok('stale' in result, 'result must have stale field'); }); }); // ─── #3885 (ADR-3473 §8.5): intelApiSurface read_error + Incomplete banner ── // // intelApiSurface's `symbolCount === 0` branch used to mean ONE thing: // "api-map.json is absent or not yet populated" — the banner text said so // unconditionally. An unreadable or malformed api-map.json also produced // symbolCount:0, so the banner LIED, attributing a read failure to "not yet // populated". The fix adds `read_error: string | null` to the return value // and swaps the banner text to the actual reason (`readError`) when one is // present. describe('#3885 (ADR-3473 §8.5): intelApiSurface read_error + Incomplete banner', () => { let tmpDir; let planningDir; let surfacedConfigDir; let savedEnv; beforeEach(() => { tmpDir = createTempProject(); planningDir = path.join(tmpDir, '.planning'); enableIntel(planningDir); surfacedConfigDir = makeSurfacedConfigDir(); savedEnv = saveSurfacedEnv(); delete process.env.MSD_RUNTIME; process.env.CLAUDE_CONFIG_DIR = surfacedConfigDir; delete process.env.MSD_WORKSTREAM; delete process.env.MSD_PROJECT; }); afterEach(() => { savedEnv.restore(); cleanup(surfacedConfigDir); cleanup(tmpDir); }); // Monkeypatch fs.readFileSync rather than chmod 0o000 — root bypasses mode // bits, so a chmod-based test would pass with zero coverage under root // Docker/CI. test('unreadableApiMapReportsReadErrorAndTheBannerSaysSo', () => { writeIntelJson(planningDir, 'api-map.json', { entries: {} }); const targetPath = path.join(planningDir, 'intel', 'api-map.json'); const originalReadFileSync = fs.readFileSync; fs.readFileSync = function injectedEaccesFailure(p, ...args) { if (p === targetPath) { const err = new Error(`EACCES: permission denied, open '${targetPath}'`); err.code = 'EACCES'; throw err; } return originalReadFileSync.call(fs, p, ...args); }; try { const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 0); assert.strictEqual(typeof result.read_error, 'string'); assert.ok( result.read_error.includes('api-map.json'), `read_error must name the unreadable file, got: ${result.read_error}`, ); const content = fs.readFileSync(result.written, 'utf8'); assert.ok( content.includes(result.read_error), 'the Incomplete banner must state the actual read failure, not the generic "not yet populated" text', ); assert.ok( !content.includes('not yet populated'), 'a read failure must not be misreported as "not yet populated"', ); } finally { fs.readFileSync = originalReadFileSync; } }); test('malformedApiMapReportsReadErrorAndTheBannerSaysSo', () => { const intelPath = path.join(planningDir, 'intel'); fs.mkdirSync(intelPath, { recursive: true }); fs.writeFileSync(path.join(intelPath, 'api-map.json'), '{ this is not valid json', 'utf8'); const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 0); assert.strictEqual(typeof result.read_error, 'string'); assert.ok( result.read_error.includes('api-map.json'), `read_error must name the malformed file, got: ${result.read_error}`, ); const content = fs.readFileSync(result.written, 'utf8'); assert.ok( content.includes(result.read_error), 'the Incomplete banner must state the actual parse failure, not the generic "not yet populated" text', ); }); // MUST STAY GREEN: an absent api-map.json is normal, not an error — keeps // the original "not yet populated" banner text. test('absentApiMapReportsReadErrorNullNoError', () => { const result = intelApiSurface(planningDir); assert.strictEqual(result.symbolCount, 0); assert.strictEqual( result.read_error, null, 'an absent api-map.json must never be reported as a read error', ); const content = fs.readFileSync(result.written, 'utf8'); assert.ok( content.includes('not yet populated'), 'absence keeps the original "not yet populated" banner text', ); }); }); describe('#1000 regression: msd-intel-updater emits canonical intel filenames', () => { // allow-test-rule: source-text-is-the-product // agents/msd-intel-updater.md IS the system prompt the intel-updater agent runs under; asserting its filename references // verifies the deployed agent surface contract matches the INTEL_FILES the CLI reads. const agentPromptPath = path.join(__dirname, '..', 'agents', 'msd-intel-updater.md'); const agentPrompt = fs.readFileSync(agentPromptPath, 'utf8'); test('references every canonical INTEL_FILES name', () => { for (const filename of Object.values(INTEL_FILES)) { assert.ok( agentPrompt.includes(filename), `msd-intel-updater.md must instruct writing the canonical intel file "${filename}" (from INTEL_FILES) that the msd-tools intel CLI reads; it was missing.`, ); } }); test('does not reference orphaned short filenames the CLI never reads', () => { // Short forms `${key}.json` that are NOT canonical INTEL_FILES values are orphaned — // the agent must not emit them. Also forbid the markdown arch.md output. const canonical = new Set(Object.values(INTEL_FILES)); const forbidden = Object.keys(INTEL_FILES) .map((k) => `${k}.json`) .filter((short) => !canonical.has(short)); forbidden.push('arch.md'); for (const shortName of forbidden) { // Guard against substring false-positives (e.g. 'files.json' inside 'file-roles.json'): // canonical long names never contain these short tokens, verified by the canonical set. const offendingLines = agentPrompt .split(/\r?\n/) .filter((line) => line.includes(shortName)); assert.strictEqual( offendingLines.length, 0, `msd-intel-updater.md must not reference orphaned short name "${shortName}" the intel CLI never reads. Offending line(s):\n${offendingLines.join('\n')}`, ); } }); }); // ──────────────────────────────────────────────────────────────────────── // Folded from tests/bug-3258-no-stale-msd-intel-references.test.cjs — consolidation epic #1969 (B3 #1972) // ──────────────────────────────────────────────────────────────────────── { const { describe: __foldDescribe } = require('node:test'); __foldDescribe("folded:bug-3258-no-stale-msd-intel-references (consolidation epic #1969 B3 #1972)", () => { // allow-test-rule: source-text-is-the-product — workflow, reference, and docs .md files (see #3258) // ARE what the runtime loads and what users read; asserting their text content // tests the deployed skill surface contract, not implementation internals. 'use strict'; // Regression tests for bug #3258. // // PR #2790 folded `/msd-intel` into `/msd-map-codebase --query`. After that // consolidation, five prose occurrences in two source files continued to // reference the retired `/msd-intel` slash command. Users invoking the wizard // were directed to a command that no longer exists. // // Fix: replace each `/msd-intel` (the retired user-facing slash command) with // `/msd-map-codebase --query` in: // - msd-core/references/planning-config.md // - msd-core/workflows/settings.md // - docs/INVENTORY.md // - docs/USER-GUIDE.md // - docs/FEATURES.md // // Allowed: `msd-intel-updater` (still-valid agent name, no leading slash), // `intel.cjs` / `intel.enabled` / `intel.*` (internal backend, not user command), // CHANGELOG.md (historical record), test files themselves. // // This test distinguishes `/msd-intel` (the retired slash command, leading slash) // from `msd-intel-updater` (still-valid agent) by grepping for the literal // string `/msd-intel` and then asserting no match survives after excluding // the `-updater` suffix. const { describe, test } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('node:fs'); const path = require('node:path'); const ROOT = path.join(__dirname, '..'); /** Walk a directory recursively and return absolute paths of all .md files. */ function walkMd(dir) { const results = []; if (!fs.existsSync(dir)) return results; for (const entry of fs.readdirSync(dir, { withFileTypes: true })) { const abs = path.join(dir, entry.name); if (entry.isDirectory()) { results.push(...walkMd(abs)); } else if (entry.isFile() && entry.name.endsWith('.md')) { results.push(abs); } } return results; } /** * Return all lines in `src` that contain `/msd-intel` (the retired slash * command) but are NOT the agent name `msd-intel-updater`. * We match the literal substring `/msd-intel` (with leading slash) and then * exclude any line where the match is immediately followed by `-updater`. */ function staleLinesIn(src) { return src.split('\n').filter((line) => { if (!line.includes('/msd-intel')) return false; // Remove all occurrences of the valid agent name; if nothing remains, skip. const stripped = line.replace(/\/msd-intel-updater/g, ''); return stripped.includes('/msd-intel'); }); } const SOURCE_DIRS = [ path.join(ROOT, 'commands', 'msd'), path.join(ROOT, 'msd-core', 'workflows'), path.join(ROOT, 'msd-core', 'references'), path.join(ROOT, 'agents'), path.join(ROOT, 'docs'), ]; describe('#3258: no stale /msd-intel slash-command references in product source dirs', () => { for (const dir of SOURCE_DIRS) { const files = walkMd(dir); for (const file of files) { const rel = path.relative(ROOT, file); // Allowed exclusions: // - CHANGELOG.md is a historical record; /msd-intel appears in release notes // - test files (under tests/) are excluded automatically by SOURCE_DIRS scope if (rel === 'CHANGELOG.md') continue; test(`${rel} has no stale /msd-intel references`, () => { let src; try { src = fs.readFileSync(file, 'utf8'); } catch (err) { throw new Error(`failed reading ${rel}: ${err.message}`); } const staleLines = staleLinesIn(src); assert.strictEqual( staleLines.length, 0, [ `${rel} contains ${staleLines.length} stale /msd-intel reference(s).`, 'Replace with /msd-map-codebase --query (retired by PR #2790).', 'Stale lines:', ...staleLines.map((l) => ` ${l.trim()}`), ].join('\n'), ); }); } } }); }); } // ──────────────────────────────────────────────────────────────────────── // Folded from tests/bug-2351-intel-kilo-layout.test.cjs — consolidation epic #1969 (B7 #1976) // ──────────────────────────────────────────────────────────────────────── { const { describe: __foldDescribe } = require('node:test'); __foldDescribe("folded:bug-2351-intel-kilo-layout (consolidation epic #1969 B7 #1976)", () => { /** * Regression test for bug #2351 * * msd-intel-updater used hardcoded canonical paths (`agents/*.md`, * `commands/msd/*.md`, `hooks/*.js`, etc.) that assumed the standard * `.claude/` runtime layout. Under a `.kilo` install, the runtime root is * `.kilo/`, and the command directory is `command/` (not `commands/msd/`). * Globs against the old paths returned no results, producing semantically * empty intel files (`"entries": {}`). * * Fix: add runtime layout detection and a mapping table so the agent * resolves paths against the correct root. */ 'use strict'; const { test, describe } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('fs'); const path = require('path'); const AGENT_PATH = path.join(__dirname, '..', 'agents', 'msd-intel-updater.md'); describe('bug #2351: intel updater kilo layout support', () => { let content; test('agent file exists', () => { assert.ok(fs.existsSync(AGENT_PATH), 'agents/msd-intel-updater.md must exist'); content = fs.readFileSync(AGENT_PATH, 'utf-8'); }); test('scope section includes layout detection step', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); const hasDetection = content.includes('ls -d .kilo') || content.includes('Runtime layout detection') || content.includes('detected layout') || content.includes('layout detection'); assert.ok( hasDetection, 'msd-intel-updater.md must instruct the agent to detect the runtime layout ' + '(.kilo vs .claude) before resolving canonical paths (#2351)' ); }); test('scope section maps .kilo/agents path', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); assert.ok( content.includes('.kilo/agents'), 'scope section must include the .kilo/agents/*.md path so agent count is correct under kilo layout' ); }); test('scope section maps .kilo/command path (not commands/msd)', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); assert.ok( content.includes('.kilo/command'), 'scope section must include .kilo/command path — kilo uses "command/" not "commands/msd/"' ); }); test('scope section maps .kilo/hooks path', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); assert.ok( content.includes('.kilo/hooks'), 'scope section must include .kilo/hooks path for hook file counts' ); }); test('scope section retains standard layout paths for .claude installs', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); assert.ok( content.includes('agents/*.md') || content.includes('Standard `.claude` layout'), 'scope section must still document the standard .claude layout paths for non-kilo installs' ); }); }); }); } // ──────────────────────────────────────────────────────────────────────── // Folded from tests/bug-3290-intel-updater-layout-block.test.cjs — consolidation epic #1969 (B7 #1976) // ──────────────────────────────────────────────────────────────────────── { const { describe: __foldDescribe } = require('node:test'); __foldDescribe("folded:bug-3290-intel-updater-layout-block (consolidation epic #1969 B7 #1976)", () => { // allow-test-rule: source-text-is-the-product (see #3290) // agents/msd-intel-updater.md IS the deployed agent instruction set. Asserting // its text content tests the deployed behaviour contract, not internal implementation. 'use strict'; /** * Regression tests for bug #3290. * * The "Runtime layout detection" block in msd-intel-updater.md ran * unconditionally on every project analysed, emitting: * * Layout detection returned "unknown" — this project is not a MSD-system * installation (no `.claude/msd-core/` or `.kilo/` runtime root). * * for every ordinary (non-MSD-framework) user project. The verdict was already * ignored by Steps 2-6 on non-MSD projects. The block was dead-but-noisy. * * Fix: gate the runtime bash detection on a positive "is-this-the-framework- * repo" check (package.json name === "@golem15/msd-core") so it runs ONLY when * analysing the MSD framework's own repo, OR remove the block entirely if no * downstream consumers exist. * * Group A — gating contract: * The unconditional bash detection invocation must be absent OR wrapped in a * framework-repo guard. A bare `ls -d .kilo ... || echo "unknown"` with no * surrounding gate is the defect signature. * * Group B — no orphan consumers: * Confirm no other agent, command, or workflow file reads/consumes the layout- * detection verdict emitted by this block. */ const { describe, test } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('node:fs'); const path = require('node:path'); const ROOT = path.join(__dirname, '..'); const AGENT_PATH = path.join(ROOT, 'agents', 'msd-intel-updater.md'); // ─── helpers ───────────────────────────────────────────────────────────────── /** Walk a directory recursively and return absolute paths of all .md files. */ function walkMd(dir) { const results = []; if (!fs.existsSync(dir)) return results; for (const entry of fs.readdirSync(dir, { withFileTypes: true })) { const abs = path.join(dir, entry.name); if (entry.isDirectory()) { results.push(...walkMd(abs)); } else if (entry.isFile() && entry.name.endsWith('.md')) { results.push(abs); } } return results; } // ─── Group A — gating contract ─────────────────────────────────────────────── describe('bug #3290 — Group A: layout-detection block must be gated or absent', () => { let content; test('agent file exists', () => { assert.ok(fs.existsSync(AGENT_PATH), 'agents/msd-intel-updater.md must exist'); content = fs.readFileSync(AGENT_PATH, 'utf-8'); }); test( 'bare unconditional detection invocation is absent — ' + 'the "ls -d .kilo ... || echo unknown" must not appear outside a framework-repo gate', () => { content = content || fs.readFileSync(AGENT_PATH, 'utf-8'); // The defect signature: the bash block runs unconditionally. // We look for the exact shell one-liner that emits the verdict. const bareDetectionPattern = /ls -d \.kilo\b.*\|\|.*echo "?unknown"?/; const hasBareDetection = bareDetectionPattern.test(content); if (!hasBareDetection) { // Block is fully removed — option B — pass. return; } // Block is still present. Verify it is surrounded by a framework-repo gate. // A valid gate checks package.json name or an equivalent positive signal // that the current project IS the MSD framework's own repo. const hasFrameworkGate = content.includes('@golem15/msd-core') || content.includes('is-this-the-framework') || content.includes('framework repo') || content.includes('Only run') || /if.*package\.json.*msd-core/i.test(content) || /Only.*layout detection.*MSD framework/i.test(content) || /Only.*layout detection.*framework/i.test(content); assert.ok( hasFrameworkGate, 'agents/msd-intel-updater.md contains a bare unconditional layout-detection ' + 'bash block (`ls -d .kilo ... || echo unknown`) with no surrounding ' + 'framework-repo gate (#3290). ' + 'Either remove the block entirely, or wrap it in a check like:\n' + ' if [[ "$(jq -r \'.name // ""\' package.json 2>/dev/null)" == "@golem15/msd-core" ]]; then\n' + ' # ... detection block ...\n' + ' fi' ); } ); }); // ─── Group B — no orphan downstream consumers ──────────────────────────────── describe('bug #3290 — Group B: layout-detection verdict has no downstream consumers', () => { const SOURCE_DIRS = [ path.join(ROOT, 'agents'), path.join(ROOT, 'commands', 'msd'), path.join(ROOT, 'msd-core', 'workflows'), ]; /** * Lines that reference the three possible verdict values emitted by the * detection block: "claude", "kilo", "unknown" — ONLY as the verdict output * of the msd-intel-updater layout detection (not general runtime references). * * We look for the specific phrase "Layout detection returned" which is the * sentinel the noisy output line uses. */ test('no file contains "Layout detection returned" (the noisy verdict phrase)', () => { const matches = []; for (const dir of SOURCE_DIRS) { const files = walkMd(dir); for (const file of files) { const rel = path.relative(ROOT, file); const src = fs.readFileSync(file, 'utf-8'); if (src.includes('Layout detection returned')) { // Collect matching lines for the error message const lines = src.split(/\r?\n/) .map((l, i) => ({ line: l, n: i + 1 })) .filter(({ line }) => line.includes('Layout detection returned')); matches.push({ rel, lines }); } } } assert.strictEqual( matches.length, 0, 'Expected zero files to contain "Layout detection returned" (the noisy verdict ' + 'phrase from the msd-intel-updater layout-detection block). Found:\n' + matches.map(({ rel, lines }) => ` ${rel}:\n${lines.map(({ n, line }) => ` L${n}: ${line.trim()}`).join('\n')}` ).join('\n') ); }); test('no agent or workflow instructs reading the layout-detection verdict output', () => { // The verdict was: echo "kilo" | echo "claude" | echo "unknown" // If any file references "Layout detection returned unknown" as an instruction // to consume, that would be a consumer. We verify none exist outside of // the producing file (msd-intel-updater.md). const verdictConsumerPattern = /Layout detection returned.*(unknown|claude|kilo)/i; const consumers = []; for (const dir of SOURCE_DIRS) { const files = walkMd(dir); for (const file of files) { // Exclude the producer itself — it defines the message, not consumes it if (path.basename(file) === 'msd-intel-updater.md') continue; const src = fs.readFileSync(file, 'utf-8'); if (verdictConsumerPattern.test(src)) { consumers.push(path.relative(ROOT, file)); } } } assert.deepStrictEqual( consumers, [], 'Expected no downstream consumer of the layout-detection verdict. Found:\n' + consumers.map((f) => ` ${f}`).join('\n') + '\nIf a consumer exists, use option A (gate) not option B (remove).' ); }); }); }); }