mirror of
https://github.com/catlog22/Claude-Code-Workflow.git
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717 lines
23 KiB
Markdown
717 lines
23 KiB
Markdown
# Analyze Task Generation & Execution Spec
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> **Purpose**: Quality standards for task generation + execution specification for Phase 5 of `analyze-with-file`.
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> **Consumer**: Phase 5 of `analyze-with-file` workflow.
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> **Scope**: Task generation quality + direct inline execution.
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---
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## Task Generation Flow
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> **Entry point**: Routed here from SKILL.md Phase 5 when complexity is `complex` (≥3 recommendations or high-priority with dependencies).
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```
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Step 1: Load context → Step 2: Generate .task/*.json → Step 3: Pre-execution analysis
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→ Step 4: User confirmation → Step 5: Serial execution → Step 6: Finalize
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```
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**Input artifacts** (all from session folder):
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| Artifact | Required | Provides |
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|----------|----------|----------|
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| `conclusions.json` | Yes | `recommendations[]` with action, rationale, priority, evidence_refs |
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| `exploration-codebase.json` | No | `relevant_files[]`, `patterns[]`, `constraints[]`, `integration_points[]` — primary source for file resolution |
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| `explorations.json` | No | `sources[]`, `key_findings[]` — fallback for file resolution |
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| `perspectives.json` | No | Multi-perspective findings — alternative to explorations.json |
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---
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## File Resolution Algorithm
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Target files are resolved with a 3-priority fallback chain. Recommendations carry only `evidence_refs` — file resolution is EXECUTE.md's responsibility:
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```javascript
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function resolveTargetFiles(rec, codebaseContext, explorations) {
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// Priority 1: Extract file paths from evidence_refs (e.g., "src/auth/token.ts:89")
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if (rec.evidence_refs?.length) {
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const filePaths = [...new Set(
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rec.evidence_refs
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.filter(ref => ref.includes('/') || ref.includes('.'))
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.map(ref => ref.split(':')[0])
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)]
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if (filePaths.length) {
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return filePaths.map(path => ({
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path,
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action: 'modify',
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target: null,
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changes: []
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}))
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}
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}
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// Priority 2: Match from exploration-codebase.json relevant_files
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if (codebaseContext?.relevant_files?.length) {
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const keywords = extractKeywords(rec.action + ' ' + rec.rationale)
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const matched = codebaseContext.relevant_files.filter(f =>
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keywords.some(kw =>
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f.path.toLowerCase().includes(kw) ||
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f.summary?.toLowerCase().includes(kw) ||
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f.relevance?.toLowerCase().includes(kw)
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)
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)
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if (matched.length) {
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return matched.map(f => ({
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path: f.path,
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action: 'modify',
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target: null,
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changes: rec.changes || []
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}))
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}
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}
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// Priority 3: Match from explorations.json sources
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if (explorations?.sources?.length) {
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const actionVerb = rec.action.split(' ')[0].toLowerCase()
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const matched = explorations.sources.filter(s =>
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s.summary?.toLowerCase().includes(actionVerb) ||
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s.file?.includes(actionVerb)
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)
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if (matched.length) {
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return matched.map(s => ({
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path: s.file,
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action: 'modify',
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target: null,
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changes: []
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}))
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}
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}
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// Fallback: empty array — task relies on description + implementation for guidance
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return []
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}
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function extractKeywords(text) {
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return text
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.toLowerCase()
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.replace(/[^a-z0-9\u4e00-\u9fa5\s]/g, ' ')
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.split(/\s+/)
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.filter(w => w.length > 2)
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.filter(w => !['the', 'and', 'for', 'with', 'from', 'that', 'this'].includes(w))
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}
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```
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---
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## Task Type Inference
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| Recommendation Pattern | Inferred Type |
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|------------------------|---------------|
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| fix, resolve, repair, patch, correct | `fix` |
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| refactor, restructure, extract, reorganize, decouple | `refactor` |
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| add, implement, create, build, introduce | `feature` |
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| improve, optimize, enhance, upgrade, streamline | `enhancement` |
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| test, coverage, validate, verify, assert | `testing` |
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```javascript
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function inferTaskType(rec) {
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const text = (rec.action + ' ' + rec.rationale).toLowerCase()
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const patterns = [
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{ type: 'fix', keywords: ['fix', 'resolve', 'repair', 'patch', 'correct', 'bug'] },
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{ type: 'refactor', keywords: ['refactor', 'restructure', 'extract', 'reorganize', 'decouple'] },
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{ type: 'feature', keywords: ['add', 'implement', 'create', 'build', 'introduce'] },
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{ type: 'enhancement', keywords: ['improve', 'optimize', 'enhance', 'upgrade', 'streamline'] },
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{ type: 'testing', keywords: ['test', 'coverage', 'validate', 'verify', 'assert'] }
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]
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for (const p of patterns) {
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if (p.keywords.some(kw => text.includes(kw))) return p.type
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}
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return 'enhancement' // safe default
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}
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```
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## Effort Inference
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| Signal | Effort |
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|--------|--------|
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| priority=high AND files >= 3 | `large` |
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| priority=high OR files=2 | `medium` |
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| priority=medium AND files <= 1 | `medium` |
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| priority=low OR single file | `small` |
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```javascript
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function inferEffort(rec, targetFiles) {
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const fileCount = targetFiles?.length || 0
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if (rec.priority === 'high' && fileCount >= 3) return 'large'
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if (rec.priority === 'high' || fileCount >= 2) return 'medium'
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if (rec.priority === 'low' || fileCount <= 1) return 'small'
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return 'medium'
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}
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```
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---
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## Convergence Quality Validation
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Every task's `convergence` MUST pass quality gates before writing to disk.
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### Quality Rules
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| Field | Requirement | Validation |
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|-------|-------------|------------|
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| `criteria[]` | **Testable** — assertions or concrete manual steps | Reject vague patterns; each criterion must reference observable behavior |
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| `verification` | **Executable** — shell command or explicit step sequence | Must contain a runnable command or step-by-step verification procedure |
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| `definition_of_done` | **Business language** — non-technical stakeholder can judge | Must NOT contain technical commands (jest, tsc, npm, build) |
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### Vague Pattern Detection
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```javascript
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const VAGUE_PATTERNS = /正常|正确|好|可以|没问题|works|fine|good|correct|properly|as expected/i
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const TECHNICAL_IN_DOD = /compile|build|lint|npm|npx|jest|tsc|eslint|cargo|pytest|go test/i
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function validateConvergenceQuality(tasks) {
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const issues = []
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tasks.forEach(task => {
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// Rule 1: No vague criteria
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task.convergence.criteria.forEach((c, i) => {
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if (VAGUE_PATTERNS.test(c) && c.length < 20) {
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issues.push({
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task: task.id, field: `criteria[${i}]`,
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problem: 'Vague criterion', value: c,
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fix: 'Replace with specific observable condition from evidence'
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})
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}
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})
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// Rule 2: Verification should be executable
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if (task.convergence.verification && task.convergence.verification.length < 5) {
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issues.push({
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task: task.id, field: 'verification',
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problem: 'Too short to be executable', value: task.convergence.verification,
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fix: 'Provide shell command or numbered step sequence'
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})
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}
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// Rule 3: DoD should be business language
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if (TECHNICAL_IN_DOD.test(task.convergence.definition_of_done)) {
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issues.push({
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task: task.id, field: 'definition_of_done',
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problem: 'Contains technical commands', value: task.convergence.definition_of_done,
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fix: 'Rewrite in business language describing user/system outcome'
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})
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}
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// Rule 4: files[].changes should not be empty when files exist
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task.files?.forEach((f, i) => {
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if (f.action === 'modify' && (!f.changes || f.changes.length === 0) && !f.change) {
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issues.push({
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task: task.id, field: `files[${i}].changes`,
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problem: 'No change description for modify action', value: f.path,
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fix: 'Describe what specifically changes in this file'
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})
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}
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})
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// Rule 5: implementation steps should exist
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if (!task.implementation || task.implementation.length === 0) {
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issues.push({
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task: task.id, field: 'implementation',
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problem: 'No implementation steps',
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fix: 'Add at least one step describing how to realize this task'
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})
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}
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})
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// Auto-fix where possible, log remaining issues
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issues.forEach(issue => {
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// Attempt auto-fix based on available evidence
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// If unfixable, log warning — task still generated but flagged
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})
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return issues
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}
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```
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### Good vs Bad Examples
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**Criteria**:
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| Bad | Good |
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|-----|------|
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| `"Code works correctly"` | `"refreshToken() returns a new JWT with >0 expiry when called with expired token"` |
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| `"No errors"` | `"Error handler at auth.ts:45 returns 401 status with { error: 'token_expired' } body"` |
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| `"Performance is good"` | `"API response time < 200ms at p95 for /api/users endpoint under 100 concurrent requests"` |
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**Verification**:
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| Bad | Good |
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|-----|------|
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| `"Check it"` | `"jest --testPathPattern=auth.test.ts && npx tsc --noEmit"` |
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| `"Run tests"` | `"1. Run npm test -- --grep 'token refresh' 2. Verify no TypeScript errors with npx tsc --noEmit"` |
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**Definition of Done**:
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| Bad | Good |
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|-----|------|
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| `"jest passes"` | `"Users remain logged in across token expiration without manual re-login"` |
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| `"No TypeScript errors"` | `"Authentication flow handles all user-facing error scenarios with clear error messages"` |
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---
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## Required Task Fields (analyze-with-file producer)
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SKILL.md produces minimal recommendations `{action, rationale, priority, evidence_refs}`. EXECUTE.md enriches these into full task JSON. The final `.task/*.json` MUST populate:
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| Block | Fields | Required |
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|-------|--------|----------|
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| IDENTITY | `id`, `title`, `description` | Yes |
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| CLASSIFICATION | `type`, `priority`, `effort` | Yes |
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| DEPENDENCIES | `depends_on` | Yes (empty array if none) |
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| CONVERGENCE | `convergence.criteria[]`, `convergence.verification`, `convergence.definition_of_done` | Yes |
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| FILES | `files[].path`, `files[].action`, `files[].changes`/`files[].change` | Yes (if files identified) |
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| IMPLEMENTATION | `implementation[]` with step + description | Yes |
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| CONTEXT | `evidence`, `source.tool`, `source.session_id`, `source.original_id` | Yes |
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### Task JSON Example
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```json
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{
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"id": "TASK-001",
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"title": "Fix authentication token refresh",
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"description": "Token refresh fails silently when JWT expires, causing users to be logged out unexpectedly",
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"type": "fix",
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"priority": "high",
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"effort": "medium",
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"files": [
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{
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"path": "src/auth/token.ts",
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"action": "modify",
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"target": "refreshToken",
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"changes": [
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"Add await to refreshToken() call at line 89",
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"Add error propagation for refresh failure"
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],
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"change": "Add await to refreshToken() call and propagate errors"
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},
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{
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"path": "src/middleware/auth.ts",
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"action": "modify",
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"target": "authMiddleware",
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"changes": [
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"Update error handler at line 45 to distinguish refresh failures from auth failures"
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],
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"change": "Update error handler to propagate refresh failures"
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}
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],
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"depends_on": [],
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"convergence": {
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"criteria": [
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"refreshToken() returns new valid JWT when called with expired token",
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"Expired token triggers automatic refresh without user action",
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"Failed refresh returns 401 with { error: 'token_expired' } body"
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],
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"verification": "jest --testPathPattern=token.test.ts && npx tsc --noEmit",
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"definition_of_done": "Users remain logged in across token expiration without manual re-login"
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},
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"implementation": [
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{
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"step": "1",
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"description": "Add await to refreshToken() call in token.ts",
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"actions": ["Read token.ts", "Add await keyword at line 89", "Verify async chain"]
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},
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{
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"step": "2",
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"description": "Update error handler in auth middleware",
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"actions": ["Read auth.ts", "Modify error handler at line 45", "Add refresh-specific error type"]
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}
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],
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"evidence": ["src/auth/token.ts:89", "src/middleware/auth.ts:45"],
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"source": {
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"tool": "analyze-with-file",
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"session_id": "ANL-auth-token-refresh-2025-01-21",
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"original_id": "TASK-001"
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}
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}
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```
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---
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## Step 1: Load All Context Sources
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Phase 2-4 already loaded and processed these artifacts. If data is still in conversation memory, skip disk reads.
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```javascript
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// Skip loading if already in memory from Phase 2-4
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// Only read from disk when entering EXECUTE.md from a fresh/resumed session
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if (!conclusions) {
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conclusions = JSON.parse(Read(`${sessionFolder}/conclusions.json`))
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}
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if (!codebaseContext) {
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codebaseContext = file_exists(`${sessionFolder}/exploration-codebase.json`)
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? JSON.parse(Read(`${sessionFolder}/exploration-codebase.json`))
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: null
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}
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if (!explorations) {
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explorations = file_exists(`${sessionFolder}/explorations.json`)
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? JSON.parse(Read(`${sessionFolder}/explorations.json`))
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: file_exists(`${sessionFolder}/perspectives.json`)
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? JSON.parse(Read(`${sessionFolder}/perspectives.json`))
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: null
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}
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```
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## Step 2: Enrich Recommendations & Generate .task/*.json
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SKILL.md Phase 4 produces minimal recommendations: `{action, rationale, priority, evidence_refs}`.
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This step enriches each recommendation with execution-specific details using codebase context, then generates individual task JSON files.
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**Enrichment pipeline**: `rec (minimal) + codebaseContext + explorations → task JSON (full)`
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```javascript
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const tasks = conclusions.recommendations.map((rec, index) => {
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const taskId = `TASK-${String(index + 1).padStart(3, '0')}`
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// 1. ENRICH: Resolve target files from codebase context (not from rec)
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const targetFiles = resolveTargetFiles(rec, codebaseContext, explorations)
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// 2. ENRICH: Generate implementation steps from action + context
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const implSteps = generateImplementationSteps(rec, targetFiles, codebaseContext)
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// 3. ENRICH: Derive change descriptions per file
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const enrichedFiles = targetFiles.map(f => ({
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path: f.path,
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action: f.action || 'modify',
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target: f.target || null,
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changes: deriveChanges(rec, f, codebaseContext) || [],
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change: rec.action
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}))
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return {
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id: taskId,
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title: rec.action,
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description: rec.rationale,
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type: inferTaskType(rec),
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priority: rec.priority,
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effort: inferEffort(rec, targetFiles),
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files: enrichedFiles,
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depends_on: [],
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// CONVERGENCE (must pass quality validation)
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convergence: {
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criteria: generateCriteria(rec),
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verification: generateVerification(rec),
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definition_of_done: generateDoD(rec)
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},
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// IMPLEMENTATION steps (generated here, not from SKILL.md)
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implementation: implSteps,
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// CONTEXT
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evidence: rec.evidence_refs || [],
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source: {
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tool: 'analyze-with-file',
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session_id: sessionId,
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original_id: taskId
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}
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}
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})
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// Quality validation
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validateConvergenceQuality(tasks)
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// Write each task as individual JSON file
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Bash(`mkdir -p ${sessionFolder}/.task`)
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tasks.forEach(task => {
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Write(`${sessionFolder}/.task/${task.id}.json`, JSON.stringify(task, null, 2))
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})
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```
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**Enrichment Functions**:
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```javascript
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// Generate implementation steps from action + resolved files
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function generateImplementationSteps(rec, targetFiles, codebaseContext) {
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// 1. Parse rec.action into atomic steps
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// 2. Map steps to target files
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// 3. Add context from codebaseContext.patterns if applicable
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// Return: [{step: '1', description: '...', actions: [...]}]
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return [{
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step: '1',
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description: rec.action,
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actions: targetFiles.map(f => `Modify ${f.path}`)
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}]
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}
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// Derive specific change descriptions for a file
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function deriveChanges(rec, file, codebaseContext) {
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// 1. Match rec.action keywords to file content patterns
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// 2. Use codebaseContext.patterns for context-aware change descriptions
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// 3. Use rec.evidence_refs to locate specific modification points
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// Return: ['specific change 1', 'specific change 2']
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return [rec.action]
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}
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```
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## Step 3-6: Execution Steps
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After `.task/*.json` generation, validate and execute tasks directly inline.
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### Step 3: Pre-Execution Analysis
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```javascript
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const taskFiles = Glob(`${sessionFolder}/.task/*.json`)
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const tasks = taskFiles.map(f => JSON.parse(Read(f)))
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// 1. Dependency validation
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const taskIds = new Set(tasks.map(t => t.id))
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const errors = []
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tasks.forEach(task => {
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task.depends_on.forEach(dep => {
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if (!taskIds.has(dep)) errors.push(`${task.id}: depends on unknown task ${dep}`)
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})
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})
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// 2. Circular dependency detection (DFS)
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function detectCycles(tasks) {
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const graph = new Map(tasks.map(t => [t.id, t.depends_on]))
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const visited = new Set(), inStack = new Set(), cycles = []
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function dfs(node, path) {
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if (inStack.has(node)) { cycles.push([...path, node].join(' → ')); return }
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if (visited.has(node)) return
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visited.add(node); inStack.add(node)
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;(graph.get(node) || []).forEach(dep => dfs(dep, [...path, node]))
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inStack.delete(node)
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}
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tasks.forEach(t => { if (!visited.has(t.id)) dfs(t.id, []) })
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return cycles
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}
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// 3. Topological sort for execution order
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function topoSort(tasks) {
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const inDegree = new Map(tasks.map(t => [t.id, 0]))
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tasks.forEach(t => t.depends_on.forEach(dep => {
|
|
inDegree.set(t.id, inDegree.get(t.id) + 1)
|
|
}))
|
|
const queue = tasks.filter(t => inDegree.get(t.id) === 0).map(t => t.id)
|
|
const order = []
|
|
while (queue.length) {
|
|
const id = queue.shift()
|
|
order.push(id)
|
|
tasks.forEach(t => {
|
|
if (t.depends_on.includes(id)) {
|
|
inDegree.set(t.id, inDegree.get(t.id) - 1)
|
|
if (inDegree.get(t.id) === 0) queue.push(t.id)
|
|
}
|
|
})
|
|
}
|
|
return order
|
|
}
|
|
|
|
// 4. File conflict detection
|
|
const fileTaskMap = new Map()
|
|
tasks.forEach(task => {
|
|
(task.files || []).forEach(f => {
|
|
if (!fileTaskMap.has(f.path)) fileTaskMap.set(f.path, [])
|
|
fileTaskMap.get(f.path).push(task.id)
|
|
})
|
|
})
|
|
const conflicts = []
|
|
fileTaskMap.forEach((taskIds, file) => {
|
|
if (taskIds.length > 1) conflicts.push({ file, tasks: taskIds })
|
|
})
|
|
```
|
|
|
|
### Step 4: Initialize Execution Artifacts
|
|
|
|
```javascript
|
|
// execution.md — overview with task table
|
|
const executionMd = `# Execution Overview
|
|
|
|
## Session Info
|
|
- **Session ID**: ${sessionId}
|
|
- **Plan Source**: .task/*.json (from analysis conclusions)
|
|
- **Started**: ${getUtc8ISOString()}
|
|
- **Total Tasks**: ${tasks.length}
|
|
|
|
## Task Overview
|
|
|
|
| # | ID | Title | Type | Priority | Status |
|
|
|---|-----|-------|------|----------|--------|
|
|
${tasks.map((t, i) => `| ${i+1} | ${t.id} | ${t.title} | ${t.type} | ${t.priority} | pending |`).join('\n')}
|
|
|
|
## Pre-Execution Analysis
|
|
${conflicts.length
|
|
? `### File Conflicts\n${conflicts.map(c => `- **${c.file}**: ${c.tasks.join(', ')}`).join('\n')}`
|
|
: 'No file conflicts detected.'}
|
|
|
|
## Execution Timeline
|
|
> Updated as tasks complete
|
|
`
|
|
Write(`${sessionFolder}/execution.md`, executionMd)
|
|
|
|
// execution-events.md — chronological event log
|
|
Write(`${sessionFolder}/execution-events.md`,
|
|
`# Execution Events\n\n**Session**: ${sessionId}\n**Started**: ${getUtc8ISOString()}\n\n---\n\n`)
|
|
```
|
|
|
|
### Step 5: Task Execution Loop
|
|
|
|
**User Confirmation** before execution:
|
|
|
|
```javascript
|
|
if (!autoYes) {
|
|
const action = AskUserQuestion({
|
|
questions: [{
|
|
question: `Execute ${tasks.length} tasks?\n${tasks.map(t => ` ${t.id}: ${t.title} (${t.priority})`).join('\n')}`,
|
|
header: "Confirm",
|
|
multiSelect: false,
|
|
options: [
|
|
{ label: "Start", description: "Execute all tasks serially" },
|
|
{ label: "Adjust", description: "Modify .task/*.json before execution" },
|
|
{ label: "Skip", description: "Keep .task/*.json, skip execution" }
|
|
]
|
|
}]
|
|
})
|
|
// "Adjust": user edits task files, then resumes
|
|
// "Skip": end — user can execute later separately
|
|
}
|
|
```
|
|
|
|
Execute tasks serially using `task.implementation` steps and `task.files[].changes` as guidance.
|
|
|
|
```
|
|
For each taskId in executionOrder:
|
|
├─ Load task from .task/{taskId}.json
|
|
├─ Check dependencies satisfied
|
|
├─ Record START event → execution-events.md
|
|
├─ Execute using task.implementation + task.files[].changes:
|
|
│ ├─ Read target files listed in task.files[]
|
|
│ ├─ Apply modifications described in files[].changes / files[].change
|
|
│ ├─ Follow implementation[].actions sequence
|
|
│ └─ Use Edit (preferred), Write (new files), Bash (build/test)
|
|
├─ Verify convergence:
|
|
│ ├─ Check each convergence.criteria[] item
|
|
│ ├─ Run convergence.verification (if executable command)
|
|
│ └─ Record verification results
|
|
├─ Record COMPLETE/FAIL event → execution-events.md
|
|
├─ Update execution.md task status
|
|
└─ Continue to next task
|
|
```
|
|
|
|
**Execution Guidance Priority** — what the AI follows when executing each task:
|
|
|
|
| Priority | Source | Example |
|
|
|----------|--------|---------|
|
|
| 1 | `files[].changes` / `files[].change` | "Add await to refreshToken() call at line 89" |
|
|
| 2 | `implementation[].actions` | ["Read token.ts", "Add await keyword at line 89"] |
|
|
| 3 | `implementation[].description` | "Add await to refreshToken() call in token.ts" |
|
|
| 4 | `task.description` | "Token refresh fails silently..." |
|
|
|
|
When `files[].changes` is populated, the AI has concrete instructions. When empty, it falls back to `implementation` steps, then to `description`.
|
|
|
|
### Step 5.1: Failure Handling
|
|
|
|
```javascript
|
|
// On task failure, ask user how to proceed
|
|
if (!autoYes) {
|
|
AskUserQuestion({
|
|
questions: [{
|
|
question: `Task ${task.id} failed: ${errorMessage}\nHow to proceed?`,
|
|
header: "Failure",
|
|
multiSelect: false,
|
|
options: [
|
|
{ label: "Skip & Continue", description: "Skip this task, continue with next" },
|
|
{ label: "Retry", description: "Retry this task" },
|
|
{ label: "Abort", description: "Stop execution, keep progress" }
|
|
]
|
|
}]
|
|
})
|
|
}
|
|
```
|
|
|
|
### Step 6: Finalize
|
|
|
|
After all tasks complete:
|
|
|
|
1. Append execution summary to `execution.md` (statistics, task results table)
|
|
2. Append session footer to `execution-events.md`
|
|
3. Write back `_execution` state to each `.task/*.json`:
|
|
|
|
```javascript
|
|
tasks.forEach(task => {
|
|
const updated = {
|
|
...task,
|
|
status: task._status, // "completed" | "failed" | "skipped"
|
|
executed_at: task._executed_at,
|
|
result: {
|
|
success: task._status === 'completed',
|
|
files_modified: task._result?.files_modified || [],
|
|
summary: task._result?.summary || '',
|
|
error: task._result?.error || null,
|
|
convergence_verified: task._result?.convergence_verified || []
|
|
}
|
|
}
|
|
Write(`${sessionFolder}/.task/${task.id}.json`, JSON.stringify(updated, null, 2))
|
|
})
|
|
```
|
|
|
|
### Step 6.1: Post-Execution Options
|
|
|
|
```javascript
|
|
if (!autoYes) {
|
|
AskUserQuestion({
|
|
questions: [{
|
|
question: `Execution complete: ${completedTasks.size}/${tasks.length} succeeded. Next:`,
|
|
header: "Post-Execute",
|
|
multiSelect: false,
|
|
options: [
|
|
{ label: "Retry Failed", description: `Re-execute ${failedTasks.size} failed tasks` },
|
|
{ label: "View Events", description: "Display execution-events.md" },
|
|
{ label: "Create Issue", description: "Create issue from failed tasks" },
|
|
{ label: "Done", description: "End workflow" }
|
|
]
|
|
}]
|
|
})
|
|
}
|
|
```
|
|
|
|
---
|
|
|
|
## Output Structure
|
|
|
|
```
|
|
{sessionFolder}/
|
|
├── .task/ # Individual task JSON files (with _execution state after completion)
|
|
│ ├── TASK-001.json
|
|
│ └── ...
|
|
├── execution.md # Execution overview + task table + summary
|
|
└── execution-events.md # Chronological event log
|
|
```
|
|
|
|
## execution-events.md Event Format
|
|
|
|
```markdown
|
|
## {timestamp} — {task.id}: {task.title}
|
|
|
|
**Type**: {task.type} | **Priority**: {task.priority}
|
|
**Status**: IN PROGRESS
|
|
**Files**: {task.files[].path}
|
|
|
|
### Execution Log
|
|
- Read {file} ({lines} lines)
|
|
- Applied: {change description}
|
|
- ...
|
|
|
|
**Status**: COMPLETED / FAILED
|
|
**Files Modified**: {list}
|
|
|
|
#### Convergence Verification
|
|
- [x/] {criterion 1}
|
|
- [x/] {criterion 2}
|
|
- **Verification**: {command} → PASS/FAIL
|
|
|
|
---
|
|
```
|