"use strict"; /** * Check subcommand router — auto-mode, decision-coverage-plan, decision-coverage-verify. * * ADR-457 build-at-publish: the hand-written bin/lib/check-command-router.cjs collapsed * to a TypeScript source of truth. Behaviour is preserved byte-for-behaviour * from the prior hand-written .cjs; only strict types are added. */ var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; const node_fs_1 = __importDefault(require("node:fs")); const node_path_1 = __importDefault(require("node:path")); const node_child_process_1 = require("node:child_process"); // eslint-disable-next-line @typescript-eslint/no-require-imports const io = require("./io.cjs"); const { output, error, ERROR_REASON } = io; // eslint-disable-next-line @typescript-eslint/no-require-imports const planningWorkspaceMod = require("./planning-workspace.cjs"); const { planningDir } = planningWorkspaceMod; // eslint-disable-next-line @typescript-eslint/no-require-imports const phaseLocatorMod = require("./phase-locator.cjs"); const { findPhaseInternal } = phaseLocatorMod; const decisions_cjs_1 = require("./decisions.cjs"); const ui_safety_gate_cjs_1 = require("./ui-safety-gate.cjs"); // eslint-disable-next-line @typescript-eslint/no-require-imports const verifyModule = require("./verify.cjs"); const { cmdVerifySchemaDrift, cmdVerifyCodebaseDrift } = verifyModule; // eslint-disable-next-line @typescript-eslint/no-require-imports const roadmapModule = require("./roadmap.cjs"); const { getRoadmapPhaseWithFallback } = roadmapModule; // eslint-disable-next-line @typescript-eslint/no-require-imports const gapCheckerModule = require("./gap-checker.cjs"); const { runGapAnalysis } = gapCheckerModule; const prohibition_enforcement_cjs_1 = require("./prohibition-enforcement.cjs"); // ─── Helpers ────────────────────────────────────────────────────────────────── function normalizePhrase(text) { // eslint-disable-next-line @typescript-eslint/no-base-to-string return String(text || '') .toLowerCase() .replace(/[^a-z0-9\s]/g, ' ') .replace(/\s+/g, ' ') .trim(); } const SOFT_PHRASE_MIN_WORDS = 6; function softPhrase(text) { const words = normalizePhrase(text).split(' ').filter(Boolean); if (words.length < SOFT_PHRASE_MIN_WORDS) return ''; return words.slice(0, SOFT_PHRASE_MIN_WORDS).join(' '); } function decisionMentioned(haystack, decision) { if (!haystack) return false; if (new RegExp(`\\b${decision.id}\\b`).test(haystack)) return true; const phrase = softPhrase(decision.text); return phrase ? normalizePhrase(haystack).includes(phrase) : false; } function readIfExists(filePath) { try { return node_fs_1.default.readFileSync(filePath, 'utf-8'); } catch { return ''; } } function resolvePath(inputPath, projectDir) { return node_path_1.default.isAbsolute(inputPath) ? inputPath : node_path_1.default.join(projectDir, inputPath); } function readWorkflowConfig(projectDir) { const configPath = node_path_1.default.join(projectDir, '.planning', 'config.json'); try { const parsed = JSON.parse(node_fs_1.default.readFileSync(configPath, 'utf-8')); const wf = parsed['workflow'] || {}; return { ...wf, auto_advance: (wf['auto_advance'] ?? parsed['auto_advance']), _auto_chain_active: (wf['_auto_chain_active'] ?? parsed['_auto_chain_active']), context_coverage_gate: (wf['context_coverage_gate'] ?? parsed['context_coverage_gate']), }; } catch { return {}; } } function cmdAutoMode(projectDir, raw) { const workflow = readWorkflowConfig(projectDir); const autoAdvance = Boolean(workflow.auto_advance ?? false); const autoChainActive = Boolean(workflow._auto_chain_active ?? false); let source = 'none'; if (autoChainActive && autoAdvance) source = 'both'; else if (autoChainActive) source = 'auto_chain'; else if (autoAdvance) source = 'auto_advance'; output({ active: autoChainActive || autoAdvance, source, auto_chain_active: autoChainActive, auto_advance: autoAdvance, }, raw, undefined); } function gateEnabled(projectDir) { const value = readWorkflowConfig(projectDir).context_coverage_gate; if (typeof value === 'boolean') return value; if (typeof value === 'string') { const lower = value.toLowerCase(); if (lower === 'false' || lower === 'true') return lower !== 'false'; } return true; } function loadPlanContents(phaseDir) { if (!node_fs_1.default.existsSync(phaseDir)) return []; try { return node_fs_1.default.readdirSync(phaseDir) .filter((entry) => /-PLAN\.md$/.test(entry)) .map((entry) => readIfExists(node_path_1.default.join(phaseDir, entry))); } catch { return []; } } const DESIGNATED_HEADINGS_RE = /^#{1,6}\s+(?:must[_ ]haves?|truths?|tasks?|objective)\b/i; const XML_DECISION_TAGS_RE = /<(?:objective|tasks?|action)(?:\s[^>]*)?>([\s\S]*?)<\/(?:objective|tasks?|action)>/gi; function stripCommentsAndFences(text) { return text .replace(//g, ' ') .replace(/```[\s\S]*?```/g, ' ') .replace(/~~~[\s\S]*?~~~/g, ' '); } function extractYamlBlock(frontmatter, key) { const match = frontmatter.match(new RegExp(`^${key}\\s*:(.*)$`, 'm')); if (!match) return ''; const startIdx = (match.index || 0) + match[0].length; const rest = frontmatter.slice(startIdx + 1).split(/\r?\n/); const block = [match[1] || '']; for (const line of rest) { if (line === '' || /^\s/.test(line)) block.push(line); else break; } return block.join('\n'); } function extractXmlTagBodies(text) { const parts = []; for (const match of text.matchAll(XML_DECISION_TAGS_RE)) { if (match[1]) parts.push(match[1]); } return parts.join('\n'); } function extractPlanDesignatedSections(planContent) { if (!planContent) return ''; const cleaned = stripCommentsAndFences(planContent); const fmMatch = cleaned.match(/^---\r?\n([\s\S]*?)\r?\n---\r?\n?([\s\S]*)$/); const frontmatter = fmMatch ? fmMatch[1] : ''; const body = fmMatch ? fmMatch[2] : cleaned; const parts = []; for (const key of ['must_haves', 'truths', 'objective']) { const block = extractYamlBlock(frontmatter, key); if (block) parts.push(block); } const bodyParts = []; let inDesignated = false; for (const line of body.split(/\r?\n/)) { const heading = /^#{1,6}\s+/.test(line); if (heading) { inDesignated = DESIGNATED_HEADINGS_RE.test(line); if (inDesignated) bodyParts.push(line); continue; } if (inDesignated) bodyParts.push(line); } parts.push(bodyParts.join('\n')); parts.push(extractXmlTagBodies(cleaned)); return parts.join('\n\n'); } function buildPlanMessage(uncovered) { if (uncovered.length === 0) return 'All trackable CONTEXT.md decisions are covered by plans.'; return [ '## Decision Coverage Gap', '', `${uncovered.length} CONTEXT.md decision(s) are not covered by any plan:`, '', ...uncovered.map((item) => `- **${item.id}** (${item.category || 'uncategorized'}): ${item.text}`), '', 'Resolve by citing `D-NN:` in a relevant plan\'s `must_haves`/`truths` (or body),', 'OR move the decision to `### Claude\'s Discretion` / tag it `[informational]` if it should not be tracked.', ].join('\n'); } function buildVerifyMessage(notHonored) { if (notHonored.length === 0) return 'All trackable CONTEXT.md decisions are honored by shipped artifacts.'; return [ '### Decision Coverage (warning)', '', `${notHonored.length} decision(s) not found in shipped artifacts:`, '', ...notHonored.map((item) => `- **${item.id}** (${item.category || 'uncategorized'}): ${item.text}`), '', 'This is a soft warning - verification status is unchanged.', ].join('\n'); } function loadTrackableDecisions(contextPath) { return (0, decisions_cjs_1.parseDecisions)(readIfExists(contextPath)).filter((decision) => decision.trackable); } function cmdDecisionCoveragePlan(projectDir, args, raw) { const phaseDir = args[2] ? resolvePath(args[2], projectDir) : ''; const contextPath = args[3] ? resolvePath(args[3], projectDir) : ''; if (!gateEnabled(projectDir)) { output({ passed: true, skipped: true, reason: 'workflow.context_coverage_gate is false', total: 0, covered: 0, uncovered: [], message: 'Decision coverage gate disabled by config.' }, raw, undefined); return; } if (!contextPath || !node_fs_1.default.existsSync(contextPath)) { output({ passed: true, skipped: true, reason: 'CONTEXT.md missing', total: 0, covered: 0, uncovered: [], message: 'No CONTEXT.md - nothing to check.' }, raw, undefined); return; } const decisions = loadTrackableDecisions(contextPath); if (decisions.length === 0) { output({ passed: true, skipped: true, reason: 'no trackable decisions', total: 0, covered: 0, uncovered: [], message: 'No trackable decisions in CONTEXT.md.' }, raw, undefined); return; } const sections = loadPlanContents(phaseDir).map(extractPlanDesignatedSections); const uncovered = []; let covered = 0; for (const decision of decisions) { if (sections.some((section) => decisionMentioned(section, decision))) covered++; else uncovered.push({ id: decision.id, text: decision.text, category: decision.category }); } output({ passed: uncovered.length === 0, skipped: false, total: decisions.length, covered, uncovered, message: buildPlanMessage(uncovered), }, raw, undefined); } function recentCommitMessages(projectDir) { try { return (0, node_child_process_1.execFileSync)('git', ['log', '-n', '200', '--pretty=%s%n%b'], { cwd: projectDir, encoding: 'utf-8', maxBuffer: 4 * 1024 * 1024, windowsHide: true, }); } catch { return ''; } } function isInsideRoot(candidatePath, rootDir) { const root = node_path_1.default.resolve(rootDir); const target = node_path_1.default.resolve(root, candidatePath); return target === root || target.startsWith(`${root}${node_path_1.default.sep}`); } function readModifiedFilesContent(projectDir, summaries) { const out = []; let total = 0; for (const summary of summaries) { if (!summary) continue; for (const blockMatch of summary.matchAll(/files_modified:\s*\n((?:[ \t]*-\s+.+\n?)+)/g)) { const files = [...(blockMatch[1] || '').matchAll(/-\s+(.+)/g)] .map((match) => match[1].trim().replace(/^["']|["']$/g, '')); for (const file of files) { if (total >= 50) break; if (!file || !isInsideRoot(file, projectDir)) continue; const raw = readIfExists(resolvePath(file, projectDir)); out.push(raw.length > 256 * 1024 ? raw.slice(0, 256 * 1024) : raw); total++; } if (total >= 50) break; } if (total >= 50) break; } return out.join('\n\n'); } function cmdDecisionCoverageVerify(projectDir, args, raw) { const phaseDir = args[2] ? resolvePath(args[2], projectDir) : ''; const contextPath = args[3] ? resolvePath(args[3], projectDir) : ''; if (!gateEnabled(projectDir)) { output({ skipped: true, blocking: false, reason: 'workflow.context_coverage_gate is false', total: 0, honored: 0, not_honored: [], message: 'Decision coverage gate disabled by config.' }, raw, undefined); return; } if (!contextPath || !node_fs_1.default.existsSync(contextPath)) { output({ skipped: true, blocking: false, reason: 'CONTEXT.md missing', total: 0, honored: 0, not_honored: [], message: 'No CONTEXT.md - nothing to check.' }, raw, undefined); return; } const decisions = loadTrackableDecisions(contextPath); if (decisions.length === 0) { output({ skipped: true, blocking: false, reason: 'no trackable decisions', total: 0, honored: 0, not_honored: [], message: 'No trackable decisions in CONTEXT.md.' }, raw, undefined); return; } const planContents = loadPlanContents(phaseDir); const summaryParts = node_fs_1.default.existsSync(phaseDir) ? node_fs_1.default.readdirSync(phaseDir).filter((entry) => /-SUMMARY\.md$/.test(entry)).map((entry) => readIfExists(node_path_1.default.join(phaseDir, entry))) : []; const haystack = [ planContents.join('\n\n'), summaryParts.join('\n\n'), readModifiedFilesContent(projectDir, summaryParts), recentCommitMessages(projectDir), ].join('\n\n'); const notHonored = []; let honored = 0; for (const decision of decisions) { if (decisionMentioned(haystack, decision)) honored++; else notHonored.push({ id: decision.id, text: decision.text, category: decision.category }); } output({ skipped: false, blocking: false, total: decisions.length, honored, not_honored: notHonored, message: buildVerifyMessage(notHonored), }, raw, undefined); } // ─── ui-plan-gate ───────────────────────────────────────────────────────────── /** * ui-plan-gate: given a phase number, checks whether the phase has frontend * indicators and whether a *-UI-SPEC.md already exists in the phase directory. * * Returns JSON: { frontend: boolean, hasUiSpec: boolean, block: boolean } * block = frontend && !hasUiSpec (gate fires when UI work is detected but no spec exists) * * Invocable as: gsd_run check ui-plan-gate * * Uses checkUiPresence from ui-safety-gate.cjs — does NOT reimplement frontend detection. * Uses getRoadmapPhaseWithFallback + findPhaseInternal from leaf modules for phase data. */ function findUiSpecInDir(phaseDir) { if (!phaseDir || !node_fs_1.default.existsSync(phaseDir)) return ''; try { const files = node_fs_1.default.readdirSync(phaseDir); const found = files.find((f) => /-UI-SPEC\.md$/.test(f)); return found ? node_path_1.default.join(phaseDir, found) : ''; } catch { return ''; } } /** * Pure logic for ui-plan-gate — exposed for direct behavioral testing. * * Given a projectDir and phase number: * (a) Reads the phase section from ROADMAP.md via getRoadmapPhaseWithFallback — * same two-pass lookup (current milestone → full roadmap) as `roadmap.get-phase` * (cmdRoadmapGetPhase). Cross-milestone / older frontend phases resolve correctly. * If ROADMAP.md is missing, phaseSection is '' (ROADMAP.md not present = project * has no roadmap = cannot be frontend). If the phase truly can't be found after * both passes, phaseSection is '' and phaseLookupFailed is set so callers can * surface the miss — we do NOT silently degrade to frontend:false if the roadmap * exists but the phase header is absent. * (b) Runs checkUiPresence (frontend detection) — no reimplementation. * (c) Resolves the phase directory via findPhaseInternal (phase-locator.cjs); checks for *-UI-SPEC.md. * * Returns: { frontend, hasUiSpec, block, uiSpecPath, phaseLookupFailed } * block = frontend && !hasUiSpec * phaseLookupFailed = ROADMAP.md present but phase header not found (surfaced for * onError:halt gates so a missing phase doesn't silently bypass) */ function computeUiPlanGate(projectDir, phase) { // (a) Read the phase section text using the same two-pass lookup as roadmap.get-phase. // getRoadmapPhaseWithFallback: current-milestone first, then stripShippedMilestones // fallback — mirrors cmdRoadmapGetPhase exactly. let phaseSection = ''; let phaseLookupFailed; try { const section = getRoadmapPhaseWithFallback(projectDir, phase); if (section === null) { // Distinguish: ROADMAP.md missing (no-roadmap project) vs phase not found in ROADMAP. // planningDir(cwd) resolves the .planning/ root for workstream-aware paths. const planDir = planningDir(projectDir); const roadmapPath = node_path_1.default.join(planDir, 'ROADMAP.md'); if (node_fs_1.default.existsSync(roadmapPath)) { // ROADMAP.md exists but phase was not found → surface the miss phaseLookupFailed = true; } // phaseSection stays '' } else { phaseSection = section; } } catch { /* roadmap read failure → treat as empty (non-frontend) */ } // (b) Run checkUiPresence (frontend detection) — reuse existing helper; no reimplementation const presenceResult = (0, ui_safety_gate_cjs_1.checkUiPresence)(phaseSection); const frontend = presenceResult.hasUI; // (c) Resolve phase directory via findPhaseInternal and check for *-UI-SPEC.md let phaseDir = ''; try { const result = findPhaseInternal(projectDir, phase); if (result && typeof result === 'object') { // findPhaseInternal returns { directory: '', ... } // directory is relative to cwd — resolve it to absolute. const relDir = typeof result['directory'] === 'string' ? result['directory'] : ''; if (relDir) { phaseDir = node_path_1.default.resolve(projectDir, relDir); } } else if (typeof result === 'string') { phaseDir = result; } } catch { /* phase dir lookup failure → hasUiSpec=false */ } const uiSpecPath = findUiSpecInDir(phaseDir); const hasUiSpec = uiSpecPath !== ''; // block = frontend phase with no UI-SPEC const block = frontend && !hasUiSpec; const result = { frontend, hasUiSpec, block, uiSpecPath: hasUiSpec ? uiSpecPath : null, }; if (phaseLookupFailed) result.phaseLookupFailed = true; return result; } function cmdUiPlanGate(projectDir, args, raw) { // args[0] = 'check', args[1] = 'ui-plan-gate', args[2] = phase const phase = args[2] || ''; if (!phase) { error('ui-plan-gate requires a phase argument: check ui-plan-gate ', ERROR_REASON.SDK_MISSING_ARG); return; } output(computeUiPlanGate(projectDir, phase), raw, undefined); } // ─── ui-safety-gate ─────────────────────────────────────────────────────────── /** * ui-safety-gate: post-wave check that verifies UI-changed files conform to * the active UI-SPEC for the phase. Called after each wave by execute:wave:post. * * Returns JSON: { frontend: boolean, hasUiFiles: boolean, hasUiSpec: boolean, block: boolean, message?: string } * block = frontend && hasUiFiles && !hasUiSpec * * Args: check ui-safety-gate * Invocable as: gsd_run check ui-safety-gate * or gsd_run check ui.safety-gate (dots normalized to hyphens) * * Uses checkUiPresence from ui-safety-gate.cjs — does NOT reimplement frontend detection. * Checks whether any files changed in recent git history match frontend file patterns. * Also checks whether a *-UI-SPEC.md exists in the phase directory (same as ui-plan-gate). * * Limitation: uses git diff HEAD~1..HEAD which covers only the last commit; in a * multi-plan wave the wave-start commit would be more accurate but is not yet stored * in the wave manifest. This is tracked as a known limitation. */ const UI_FILE_EXTENSIONS_RE = /\.(tsx|jsx|css|scss|sass|less|vue|svelte|html)$/i; const UI_PATH_PATTERNS_RE = /\/(components|pages|views|screens|layouts|ui|frontend)\//i; /** * Pure logic for ui-safety-gate — exposed for direct behavioral testing. * * Given a projectDir and phase number: * (a) Reads the phase section from ROADMAP.md via getRoadmapPhaseWithFallback — * same lookup as computeUiPlanGate — to determine if this is a frontend phase. * (b) Runs checkUiPresence (frontend detection) — no reimplementation. * (c) Checks git diff HEAD~1..HEAD for UI file changes in the current worktree. * (d) Resolves the phase directory via findPhaseInternal (phase-locator.cjs); checks for *-UI-SPEC.md. * * Returns: { frontend, hasUiFiles, hasUiSpec, block, message?, phaseLookupFailed? } * block = frontend && hasUiFiles && !hasUiSpec * phaseLookupFailed = ROADMAP.md present but phase header not found */ function computeUiSafetyGate(projectDir, phase) { // (a) Read the phase section text (same two-pass lookup as computeUiPlanGate) let phaseSection = ''; let phaseLookupFailed; try { const section = getRoadmapPhaseWithFallback(projectDir, phase); if (section === null) { const planDir = planningDir(projectDir); const roadmapPath = node_path_1.default.join(planDir, 'ROADMAP.md'); if (node_fs_1.default.existsSync(roadmapPath)) { phaseLookupFailed = true; } } else { phaseSection = section; } } catch { /* roadmap read failure → treat as empty (non-frontend) */ } // (b) Run checkUiPresence (frontend detection) — reuse existing helper; no reimplementation const presenceResult = (0, ui_safety_gate_cjs_1.checkUiPresence)(phaseSection); const frontend = presenceResult.hasUI; // (c) Check whether any UI files were changed in recent git commits // Uses git diff HEAD~1..HEAD to detect frontend file changes since last commit. // Known limitation: multi-plan waves may need the wave-start commit for full coverage. let hasUiFiles = false; try { const changed = (0, node_child_process_1.execFileSync)('git', ['diff', '--name-only', 'HEAD~1', 'HEAD'], { cwd: projectDir, encoding: 'utf-8', maxBuffer: 2 * 1024 * 1024, windowsHide: true, }); hasUiFiles = changed.split('\n').some((f) => f.trim() && (UI_FILE_EXTENSIONS_RE.test(f) || UI_PATH_PATTERNS_RE.test(f))); } catch { /* git unavailable or no prior commit — treat as no UI files changed */ } // (d) Resolve phase directory and check for *-UI-SPEC.md (same as computeUiPlanGate) let phaseDir = ''; try { const result = findPhaseInternal(projectDir, phase); if (result && typeof result === 'object') { const relDir = typeof result['directory'] === 'string' ? result['directory'] : ''; if (relDir) { phaseDir = node_path_1.default.resolve(projectDir, relDir); } } else if (typeof result === 'string') { phaseDir = result; } } catch { /* phase dir lookup failure → hasUiSpec=false */ } const uiSpecPath = findUiSpecInDir(phaseDir); const hasUiSpec = uiSpecPath !== ''; // block only when: this is a frontend phase AND UI files were changed AND no UI-SPEC exists const block = frontend && hasUiFiles && !hasUiSpec; const result = { frontend, hasUiFiles, hasUiSpec, block }; if (block) { result.message = `UI files changed in this wave but no UI-SPEC.md exists for Phase ${phase}. ` + `Run /gsd:ui-phase ${phase} to generate the design contract before continuing.`; } if (phaseLookupFailed) result.phaseLookupFailed = true; return result; } function cmdUiSafetyGate(projectDir, args, raw) { // args[0] = 'check', args[1] = 'ui-safety-gate', args[2] = phase const phase = args[2] || ''; if (!phase) { error('ui-safety-gate requires a phase argument: check ui-safety-gate ', ERROR_REASON.SDK_MISSING_ARG); return; } output(computeUiSafetyGate(projectDir, phase), raw, undefined); } function cmdTddReviewCheckpoint(projectDir, args, raw) { // args[0] = 'check', args[1] = 'tdd-review-checkpoint' (normalized), args[2] = phase const phase = args[2] || ''; if (!phase) { error('tdd.review-checkpoint requires a phase argument: check tdd.review-checkpoint ', ERROR_REASON.SDK_MISSING_ARG); return; } // Resolve phase directory let phaseDir = ''; try { const result = findPhaseInternal(projectDir, phase); if (result && typeof result === 'object') { const relDir = typeof result['directory'] === 'string' ? result['directory'] : ''; if (relDir) phaseDir = node_path_1.default.resolve(projectDir, relDir); } else if (typeof result === 'string') { phaseDir = result; } } catch { /* phase dir lookup failure */ } // Find all PLAN.md files with type: tdd in frontmatter const tddPlanFiles = []; if (phaseDir) { try { const files = node_fs_1.default.readdirSync(phaseDir).filter(f => f.endsWith('-PLAN.md')); for (const file of files) { const planPath = node_path_1.default.join(phaseDir, file); const content = readIfExists(planPath); // Check frontmatter for type: tdd const frontmatterMatch = content.match(/^---\n([\s\S]*?)\n---/); if (frontmatterMatch) { const fm = frontmatterMatch[1]; if (/^type:\s*tdd\s*$/m.test(fm)) { tddPlanFiles.push(planPath); } } } } catch { /* directory read failure */ } } if (tddPlanFiles.length === 0) { const result = { // Uniform gate contract: block = violations > 0 (advisory; never truly blocks). block: false, passed: true, tddPlans: 0, violations: 0, table: '', rows: [], message: `No type:tdd plans found in phase ${phase}. TDD review skipped.`, }; // Pass undefined as rawValue so --raw emits JSON (not plain text). // The human-readable report is carried in `result.message` for the // dispatch's advisory branch to surface. output(result, raw, undefined); return; } // For each TDD plan, extract the plan ID (padded plan number) and check git log const rows = []; for (const planPath of tddPlanFiles) { // Extract plan ID from filename (e.g. "01-02-PLAN.md" → "01-02", or "03-PLAN.md" → "03") const basename = node_path_1.default.basename(planPath, '-PLAN.md'); // planId for commit grep: phase-plan format, e.g. "01-02" const planId = basename; // Check for RED gate commit: test({planId}): let red = false; let green = false; let refactor = false; try { const redCommit = (0, node_child_process_1.execFileSync)('git', ['log', '--oneline', `--grep=^test(${planId}):`, '--', '.'], { cwd: projectDir, encoding: 'utf-8', maxBuffer: 1024 * 1024, windowsHide: true }); red = redCommit.trim().length > 0; } catch { /* git unavailable or no match */ } try { const greenCommit = (0, node_child_process_1.execFileSync)('git', ['log', '--oneline', `--grep=^feat(${planId}):`, '--', '.'], { cwd: projectDir, encoding: 'utf-8', maxBuffer: 1024 * 1024, windowsHide: true }); green = greenCommit.trim().length > 0; } catch { /* git unavailable or no match */ } try { const refactorCommit = (0, node_child_process_1.execFileSync)('git', ['log', '--oneline', `--grep=^refactor(${planId}):`, '--', '.'], { cwd: projectDir, encoding: 'utf-8', maxBuffer: 1024 * 1024, windowsHide: true }); refactor = refactorCommit.trim().length > 0; } catch { /* git unavailable or no match */ } const missing = []; if (!red) missing.push('RED'); if (!green) missing.push('GREEN'); const status = missing.length === 0 ? 'Pass' : 'FAIL'; rows.push({ planId, red, green, refactor, status, missing }); } const violations = rows.filter(r => r.status === 'FAIL').length; // Build review table const sep = '━'.repeat(53); const tableHeader = '| Plan | RED | GREEN | REFACTOR | Status |'; const tableDivider = '|------|-----|-------|----------|--------|'; const tableRows = rows.map(r => `| ${r.planId.padEnd(4)} | ${r.red ? ' ✓ ' : ' ✗ '} | ${r.green ? ' ✓ ' : ' ✗ '} | ${r.refactor ? ' ✓ ' : ' — '} | ${r.status.padEnd(6)} |`); let table = [ sep, ` TDD REVIEW — Phase ${phase}`, sep, '', `TDD Plans: ${tddPlanFiles.length} | Gate violations: ${violations}`, '', tableHeader, tableDivider, ...tableRows, ].join('\n'); if (violations > 0) { table += '\n\n⚠ Gate violations are advisory — review before advancing.'; for (const r of rows.filter(row => row.status === 'FAIL')) { table += `\n Plan ${r.planId} missing: ${r.missing.join(', ')} gate commit(s).`; table += `\n Expected commit pattern: test(${r.planId}): ... → feat(${r.planId}): ...`; } } const result = { // Uniform gate contract: block = violations > 0. // This gate is advisory (blocking: false in capability.json) so block:true // only surfaces as a warning, never halts. Kept here so the host-loop // dispatch can read a single consistent `block` field. block: violations > 0, passed: true, tddPlans: tddPlanFiles.length, violations, table, rows, // Human-readable report in `message` so the dispatch's advisory branch // can surface it. --raw emits JSON (rawValue=undefined), not plain text. message: table, }; // Pass undefined as rawValue so --raw emits JSON (not the raw table text). // The review table is carried in `result.message` and `result.table` so // the host-loop dispatch's advisory branch can surface it. output(result, raw, undefined); } // ─── gap-analysis-plan-post ─────────────────────────────────────────────────── /** * gap-analysis-plan-post: non-blocking advisory check that runs the post-planning * gap analysis after all PLAN.md files are generated for a phase. * * Cross-references every REQ-ID and D-ID from REQUIREMENTS.md and CONTEXT.md * against the concatenated text of all *-PLAN.md files, emitting a coverage table. * * This gate is always advisory (passed: true) — it never blocks phase advancement. * * Args: check gap-analysis.plan-post [phase-req-ids] * Invocable as: gsd_run check gap-analysis.plan-post [phase-req-ids] */ function cmdGapAnalysisPlanPost(projectDir, args, raw) { // args[0] = 'check', args[1] = 'gap-analysis-plan-post' (normalized), args[2] = phaseDir, args[3] = phaseReqIds const phaseDir = args[2] || ''; if (!phaseDir) { error('gap-analysis.plan-post requires a phase-dir argument: check gap-analysis.plan-post [phase-req-ids]', ERROR_REASON.SDK_MISSING_ARG); return; } const phaseReqIds = args[3] ?? undefined; const result = runGapAnalysis(projectDir, phaseDir, { phaseReqIds }); // Uniform gate contract: block = false (gap-analysis is always advisory, never blocks). // `message` carries the human-readable gap analysis report so the dispatch's // advisory branch can surface it. --raw emits JSON (rawValue=undefined), not // plain markdown text. output({ block: false, passed: true, enabled: result.enabled, table: result.table, summary: result.summary, counts: result.counts, // Human-readable report in `message` for the host-loop advisory branch. message: result.table || result.summary || '', }, raw, undefined); } function routeCheckCommand({ args, cwd, raw }) { // Normalize dots to hyphens in the subcommand so both forms are accepted. // This makes `check.query = "ui.plan-gate"` (dotted form in capability.json gates) // directly runnable as `gsd_run check ui.plan-gate` — the dot is normalized to // `ui-plan-gate` before routing. The generic gate-dispatch in §5.6 reads // `check.query` from the active gate hook and runs `gsd_run check ${hook.check.query}`, // so the declared query must be dispatchable exactly as declared. const rawSubcommand = args[1]; const subcommand = typeof rawSubcommand === 'string' ? rawSubcommand.replace(/\./g, '-') : rawSubcommand; if (subcommand === 'auto-mode') { cmdAutoMode(cwd, raw); return; } if (subcommand === 'decision-coverage-plan') { cmdDecisionCoveragePlan(cwd, args, raw); return; } if (subcommand === 'decision-coverage-verify') { cmdDecisionCoverageVerify(cwd, args, raw); return; } if (subcommand === 'ui-plan-gate') { cmdUiPlanGate(cwd, args, raw); return; } if (subcommand === 'gap-analysis-plan-post') { cmdGapAnalysisPlanPost(cwd, args, raw); return; } if (subcommand === 'tdd-review-checkpoint') { cmdTddReviewCheckpoint(cwd, args, raw); return; } if (subcommand === 'ui-safety-gate') { cmdUiSafetyGate(cwd, args, raw); return; } if (subcommand === 'verify-schema-drift') { // Delegates to verify.schema-drift — drift capability gate at execute:wave:post (blocking). // Dot-to-hyphen normalization means query "verify.schema-drift" routes here. // Honor GSD_SKIP_SCHEMA_CHECK=true to bypass the gate (preserves the original inline gate behavior). const phaseArg = typeof args[2] === 'string' ? args[2] : ''; const skipSchemaCheck = process.env['GSD_SKIP_SCHEMA_CHECK'] === 'true'; cmdVerifySchemaDrift(cwd, phaseArg, skipSchemaCheck, raw); return; } if (subcommand === 'verify-codebase-drift') { // Delegates to verify.codebase-drift — drift capability gate at execute:wave:post (non-blocking). // Dot-to-hyphen normalization means query "verify.codebase-drift" routes here. cmdVerifyCodebaseDrift(cwd, raw); return; } if (subcommand === 'prohibition-enforcement') { // The deterministic test-tier prohibition PRODUCER/gate (#1259, ADR-550 D5d). Locates the // wired mechanical check (node-test or lint-rule), confirms fail-first, runs it, builds // enforcementEvidence, and emits the dispositionForProhibition verdict. Invocable as // `gsd_run check prohibition-enforcement `. (0, prohibition_enforcement_cjs_1.routeProhibitionEnforcement)(args, raw); return; } error('Unknown check subcommand. Available: auto-mode, decision-coverage-plan, decision-coverage-verify, gap-analysis-plan-post, prohibition-enforcement, tdd-review-checkpoint, ui-plan-gate, ui-safety-gate, verify-schema-drift, verify-codebase-drift', ERROR_REASON.SDK_UNKNOWN_COMMAND); } module.exports = { routeCheckCommand, decisionMentioned, extractPlanDesignatedSections, computeUiPlanGate, computeUiSafetyGate, cmdGapAnalysisPlanPost, cmdTddReviewCheckpoint, };