recipe-reverse-engineer
GitHub通过逆向工程现有代码库,自动化生成产品需求文档和架构设计文档。涵盖范围确认、发现、生成、验证及审查流程,支持PRD与设计文档的全栈或单端输出。
Trigger Scenarios
Install
npx skills add shinpr/claude-code-workflows --skill recipe-reverse-engineer -g -y
SKILL.md
Frontmatter
{
"name": "recipe-reverse-engineer",
"description": "Generate PRD and Design Docs from existing codebase through discovery, generation, verification, and review workflow",
"disable-model-invocation": true
}
Execute Skill: llm-friendly-context before writing Agent prompts, handoffs, or generated artifacts. Execute Skill: subagents-orchestration-guide before making workflow decisions, invoking agents, or resolving findings.
Context: Reverse engineering workflow to create documentation from existing code
Target: $ARGUMENTS
Orchestrator Definition
Core Identity: "I am an orchestrator."
Local authority gate: Make this recipe's workflow decisions and validate each returned result directly; delegate semantic deliverable production to the named specialist.
Review Resolution Gate [MANDATORY]: Resolve every actionable deliverable-review finding through subagents-orchestration-guide Review Resolution before correction or progression.
Before the first finding disposition, read references/review-resolution.md from the loaded subagents-orchestration-guide skill.
Execution Protocol:
- Invoke named specialists for deliverable production — pass deliverable paths between them and validate their results (see subagents-orchestration-guide "Orchestrator Execution Boundary")
- Process one step at a time: Execute steps sequentially within each unit (2 → 3 → 4 → 5). Each step's output is the required input for the next step. Complete all steps for one unit before starting the next
- Preserve evidence while bridging outputs — copy the fields required by the next specialist in their declared form; apply Review Resolution before routing any correction
At each Agent invocation below, build the prompt as a mechanical extraction: copy the named source values into the exact fields, apply only the declared serialization, then invoke immediately.
Task Registration: Register phases first using TaskCreate, then steps within each phase as you enter it. Update status using TaskUpdate.
Step 0: Initial Configuration
0.1 Scope Confirmation
Use AskUserQuestion to confirm:
- Target path: Which directory/module to document
- Depth: PRD only, or PRD + Design Docs
- Reference Architecture: layered / mvc / clean / hexagonal / none
- Human review: Yes (recommended) / No (fully autonomous)
- Fullstack design: Yes / No
- Yes: For each functional unit, generate backend + frontend Design Docs
- Note: Requires both agents (technical-designer, technical-designer-frontend)
0.2 Output Configuration
- PRD output:
docs/prd/or existing PRD directory - Design Doc output:
docs/design/or existing design directory - Verify directories exist, create if needed
Workflow Overview
Phase 1: PRD Generation
Step 1: Scope Discovery (unified, single pass → group into PRD units → human review)
Step 2-5: Per-unit loop (Generation → Verification → Review → Revision)
Phase 2: Design Doc Generation (if requested)
Step 6: Design Doc Scope Mapping (reuse Step 1 results, no re-discovery)
Step 7-10: Per-unit loop (Generation → Verification → Review → Revision)
※ fullstack=Yes: each unit produces backend + frontend Design Docs
Phase 1: PRD Generation
Register using TaskCreate:
- Step 1: PRD Scope Discovery
- Per-unit processing (Steps 2-5 for each unit)
Step 1: PRD Scope Discovery
Agent tool invocation:
subagent_type: dev-workflows:scope-discoverer
description: "Discover functional scope"
prompt: |
Discover functional scope targets in the codebase.
target_path: $USER_TARGET_PATH
reference_architecture: $USER_RA_CHOICE
focus_area: [user-confirmed focus area verbatim, if specified]
Store output as: $STEP_1_OUTPUT
Quality Gate:
- At least one unit discovered → proceed
- No units discovered → ask user for hints
$STEP_1_OUTPUT.prdUnitsexists- All
sourceUnitsacrossprdUnits(flattened, deduplicated) match the set ofdiscoveredUnitsIDs — no unit missing, no unit duplicated - Each discovered unit's
unitInventoryhas at least one non-empty category (routes, testFiles, or publicExports). Units with all three empty indicate incomplete discovery — re-run scope-discoverer with focus on that unit's relatedFiles
Human Review Point (if enabled): Present $STEP_1_OUTPUT.prdUnits with their source unit mapping. The user confirms, adjusts grouping, or excludes units from scope. This is the most important review point — incorrect grouping cascades into all downstream documents.
Step 2-5: Per-Unit Processing
FOR each unit in $STEP_1_OUTPUT.prdUnits (sequential, one unit at a time):
Step 2: PRD Generation
Agent tool invocation:
subagent_type: dev-workflows:prd-creator
description: "Generate PRD"
prompt: |
Create reverse-engineered PRD for the following feature.
Operation Mode: reverse-engineer
External Scope Provided: true
Feature: $PRD_UNIT_NAME (current Step 1 PRD unit name unchanged)
Description: $PRD_UNIT_DESCRIPTION (current Step 1 PRD unit description unchanged)
Related Files: $PRD_UNIT_COMBINED_RELATED_FILES
Entry Points: $PRD_UNIT_COMBINED_ENTRY_POINTS
Use provided scope as investigation starting point.
If tracing entry points reveals files outside this scope, include them.
Create final version PRD based on thorough code investigation.
Store output as: $STEP_2_OUTPUT (PRD path)
Step 3: Code Verification
Prerequisite: $STEP_2_OUTPUT (PRD path from Step 2)
Agent tool invocation:
subagent_type: dev-workflows:code-verifier
description: "Verify PRD consistency"
prompt: |
Verify consistency between PRD and code implementation.
doc_type: prd
document_path: $STEP_2_OUTPUT
unit_inventory: [the current unit's Step 1 unitInventory]
verbose: false
Leave code_paths absent so the verifier independently locates implementation evidence. unit_inventory supplies the completeness baseline while repository evidence supplies the search scope.
Store output as: $STEP_3_OUTPUT
Quality Gate:
summary.statusisblocked, inventory coverage is missing, or counts do not balance → re-run or escalate with the exact unusable input or evidence- Any balanced non-blocked result → proceed to review with the complete verifier output;
needs_review/inconsistentand any unaccounted items become explicit review evidence
Step 4: Review
Required Input: $STEP_3_OUTPUT (verification JSON from Step 3)
Agent tool invocation:
subagent_type: dev-workflows:document-reviewer
description: "Review PRD"
prompt: |
Review the following PRD considering code verification findings.
doc_type: PRD
target: $STEP_2_OUTPUT
review_context: reverse-engineer
verification_evidence: $STEP_3_OUTPUT
Store output as: $STEP_4_OUTPUT
Step 5: Revision (conditional)
Pass $STEP_3_OUTPUT to document-reviewer as verification evidence, then apply the Review Resolution Gate to $STEP_4_OUTPUT. Run revision only when at least one finding is apply; a decline-only result completes the review, and unresolved user_decision_required stops for user input.
Agent tool invocation:
subagent_type: dev-workflows:prd-creator
description: "Revise PRD"
prompt: |
Update PRD based on review feedback and code verification results.
Operation Mode: update
Existing PRD: $STEP_2_OUTPUT
## Adjudicated Findings
[complete reviewer finding objects verbatim, with only their orchestrator dispositions added]
Treat these findings as the complete revision scope and preserve adjacent content.
Re-validation: After each revision, re-run code-verifier on the revised document, then re-run document-reviewer with the latest verification_evidence and prior_feedback.
Unit Completion
- No
applyfindings remain; every other review finding has a disposition and everyuser_decision_requireditem has a recorded user decision - Human review passed (if enabled in Step 0)
Next: Proceed to next unit. After all units → Phase 2.
Phase 2: Design Doc Generation
Execute only if Design Docs were requested in Step 0
Register using TaskCreate:
- Step 6: Design Doc Scope Mapping
- Per-unit processing (Steps 7-10 for each unit)
Step 6: Design Doc Scope Mapping
No additional discovery required. Use $STEP_1_OUTPUT.discoveredUnits (implementation-granularity units) for technical profiles. Use $STEP_1_OUTPUT.prdUnits[].sourceUnits to trace which discovered units belong to each PRD unit.
Each PRD unit from Phase 1 maps to Design Doc unit(s):
- Standard mode (fullstack=No): 1 PRD unit → 1 Design Doc (using technical-designer)
- Fullstack mode (fullstack=Yes): 1 PRD unit → 2 Design Docs (technical-designer + technical-designer-frontend)
Map $STEP_1_OUTPUT units to Design Doc generation targets, carrying forward:
technicalProfile.primaryModules→ Primary FilestechnicalProfile.publicInterfaces→ Public Interfacesdependencies→ DependenciesrelatedFiles→ Scope boundaryunitInventory→ Unit Inventory (routes, test files, public exports)
In fullstack mode, partition each unit inventory by the owning path into backend and frontend target inventories. Assign a shared entry to each Design Doc whose public contract must account for it and record that shared reason; otherwise assign it once. Each Step 7 and Step 8 invocation receives its target's inventory, not the unpartitioned combined unit.
Store output as: $STEP_6_OUTPUT
Step 7-10: Per-Unit Processing
FOR each unit in $STEP_6_OUTPUT (sequential, one unit at a time):
Step 7: Design Doc Generation
Scope: Document the current architecture exactly as implemented in code.
Standard mode (fullstack=No):
Agent tool invocation:
subagent_type: dev-workflows:technical-designer
description: "Generate Design Doc"
prompt: |
Create Design Doc for the following feature based on existing code.
Operation Mode: reverse-engineer
Feature: $UNIT_NAME (current Step 6 target name unchanged)
Description: $UNIT_DESCRIPTION (current Step 6 target description unchanged)
Primary Files: $UNIT_PRIMARY_MODULES
Public Interfaces: $UNIT_PUBLIC_INTERFACES
Dependencies: $UNIT_DEPENDENCIES
Unit Inventory: $DESIGN_DOC_UNIT_INVENTORY
Parent PRD: $APPROVED_PRD_PATH
Document current architecture as-is. Use Unit Inventory as a completeness baseline — all routes and exports should be accounted for in the Design Doc.
Store output as: $STEP_7_OUTPUT
Fullstack mode (fullstack=Yes):
For each unit, invoke 7a then 7b sequentially (7b depends on 7a output):
7a. Backend Design Doc:
subagent_type: dev-workflows:technical-designer
description: "Generate backend Design Doc"
prompt: |
Create a backend Design Doc for the following feature based on existing code.
Operation Mode: reverse-engineer
Feature: $UNIT_NAME (current Step 6 target name unchanged)
Description: $UNIT_DESCRIPTION (current Step 6 target description unchanged)
Primary Files: $UNIT_PRIMARY_MODULES
Public Interfaces: $UNIT_PUBLIC_INTERFACES
Dependencies: $UNIT_DEPENDENCIES
Unit Inventory: $BACKEND_UNIT_INVENTORY
Parent PRD: $APPROVED_PRD_PATH
Focus on: API contracts, data layer, business logic, service architecture.
Document current architecture as-is. Use Unit Inventory as completeness baseline.
Store output as: $STEP_7a_OUTPUT
7b. Frontend Design Doc:
subagent_type: dev-workflows-frontend:technical-designer-frontend
description: "Generate frontend Design Doc"
prompt: |
Create a frontend Design Doc for the following feature based on existing code.
Operation Mode: reverse-engineer
Feature: $UNIT_NAME (current Step 6 target name unchanged)
Description: $UNIT_DESCRIPTION (current Step 6 target description unchanged)
Primary Files: $UNIT_PRIMARY_MODULES
Public Interfaces: $UNIT_PUBLIC_INTERFACES
Dependencies: $UNIT_DEPENDENCIES
Unit Inventory: $FRONTEND_UNIT_INVENTORY
Parent PRD: $APPROVED_PRD_PATH
Backend Design Doc: $STEP_7a_OUTPUT
Reference backend Design Doc for API contracts.
Focus on: component hierarchy, state management, UI interactions, data fetching.
Document current architecture as-is. Use Unit Inventory as completeness baseline.
Store output as: $STEP_7b_OUTPUT
Step 8: Code Verification
Standard mode: Verify $STEP_7_OUTPUT.
Fullstack mode: Verify each Design Doc separately.
Agent tool invocation (per Design Doc):
subagent_type: dev-workflows:code-verifier
description: "Verify Design Doc consistency"
prompt: |
Verify consistency between Design Doc and code implementation.
doc_type: design-doc
document_path: $STEP_7_OUTPUT (or $STEP_7a_OUTPUT / $STEP_7b_OUTPUT)
unit_inventory: [the current Design Doc target's Step 6 unitInventory]
verbose: false
Leave code_paths absent so the verifier independently discovers code scope from the document.
Store output as: $STEP_8_OUTPUT
Verification gate (per Design Doc):
blocked, missinginventoryCoverage, or unbalanced category counts → correct the invocation/input and rerun; stop for the user only when repository evidence cannot resolve the input defect.- Any balanced non-blocked result proceeds to document review. Carry
needs_review,inconsistent, and every unaccounted item as explicit verifier evidence.
Step 9: Review
Required Input: $STEP_8_OUTPUT (verification JSON from Step 8)
Agent tool invocation (per Design Doc):
subagent_type: dev-workflows:document-reviewer
description: "Review Design Doc"
prompt: |
Review the following Design Doc considering code verification findings.
doc_type: DesignDoc
target: $STEP_7_OUTPUT (or $STEP_7a_OUTPUT / $STEP_7b_OUTPUT)
review_context: reverse-engineer
verification_evidence: $STEP_8_OUTPUT
## Parent PRD
$APPROVED_PRD_PATH
## Additional Review Focus
- Technical accuracy of documented interfaces
- Consistency with parent PRD scope
- Completeness of unit boundary definitions
Store output as: $STEP_9_OUTPUT
Step 10: Revision (conditional)
Pass $STEP_8_OUTPUT to document-reviewer as verification evidence, then apply the Review Resolution Gate to $STEP_9_OUTPUT. Run revision only when at least one finding is apply; a decline-only result completes the review, and unresolved user_decision_required stops for user input.
Agent tool invocation (per Design Doc):
subagent_type: dev-workflows:technical-designer (or dev-workflows-frontend:technical-designer-frontend for frontend Design Docs)
description: "Revise Design Doc"
prompt: |
Update Design Doc based on review feedback and code verification results.
Operation Mode: update
Existing Design Doc: $STEP_7_OUTPUT (or $STEP_7a_OUTPUT / $STEP_7b_OUTPUT)
## Adjudicated Findings
[complete reviewer finding objects verbatim, with only their orchestrator dispositions added]
Treat these findings as the complete revision scope and preserve adjacent content.
Re-validation: After each revision, re-run code-verifier on the revised document, then re-run document-reviewer with the latest verification_evidence and prior_feedback.
Unit Completion
- No
applyfindings remain; every other review finding has a disposition and everyuser_decision_requireditem has a recorded user decision - Human review passed (if enabled in Step 0)
Next: Proceed to next unit. After all units → Final Report.
Final Report
Output summary including:
- Generated documents table (Type, Name, Verification Status, Review Status)
- Action items (critical discrepancies, undocumented features, flagged items)
- Declined actionable findings with ID, governing reason, and evidence, when any occurred
- Next steps checklist
Error Handling
| Error | Action |
|---|---|
| Discovery finds nothing | Ask user for project structure hints |
| Generation fails | Log failure, continue with other units, report in summary |
Verification is inconsistent or inventory remains unaccounted after correction |
Flag for mandatory human review — require explicit human approval |
Version History
-
0d96a63
Current 2026-08-05 22:06
修复工作流契约漏洞,收敛基于证据的设计决策,明确审查结论的归档要求。
-
51b7dbc
2026-08-05 01:47
重构规划逻辑并收敛审查流程;修复以强化结果导向的编排;新增基于证据的审查解决机制。
-
d439b50
2026-07-31 02:54
修复了工作流提示词契约问题
- 66e3b29 2026-07-05 12:01


