Use this skill when
- Working on tdd workflows tdd cycle tasks or workflows
- Needing guidance, best practices, or checklists for tdd workflows tdd cycle
Do not use this skill when
- The task is unrelated to tdd workflows tdd cycle
- You need a different domain or tool outside this scope
Instructions
- Clarify goals, constraints, and required inputs.
- Apply relevant best practices and validate outcomes.
- Provide actionable steps and verification.
- If detailed examples are required, open
resources/implementation-playbook.md.
Execute a comprehensive Test-Driven Development (TDD) workflow with strict red-green-refactor discipline:
[Extended thinking: This workflow enforces test-first development through coordinated agent orchestration. Each phase of the TDD cycle is strictly enforced with fail-first verification, incremental implementation, and continuous refactoring. The workflow supports both single test and test suite approaches with configurable coverage thresholds.]
Configuration
Coverage Thresholds
- Minimum line coverage: 80%
- Minimum branch coverage: 75%
- Critical path coverage: 100%
Refactoring Triggers
- Cyclomatic complexity > 10
- Method length > 20 lines
- Class length > 200 lines
- Duplicate code blocks > 3 lines
Phase 1: Test Specification and Design
1. Requirements Analysis
- Use Task tool with subagent_type="comprehensive-review::architect-review"
- Prompt: "Analyze requirements for: $ARGUMENTS. Define acceptance criteria, identify edge cases, and create test scenarios. Output a comprehensive test specification."
- Output: Test specification, acceptance criteria, edge case matrix
- Validation: Ensure all requirements have corresponding test scenarios
2. Test Architecture Design
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Design test architecture for: $ARGUMENTS based on test specification. Define test structure, fixtures, mocks, and test data strategy. Ensure testability and maintainability."
- Output: Test architecture, fixture design, mock strategy
- Validation: Architecture supports isolated, fast, reliable tests
Phase 2: RED - Write Failing Tests
3. Write Unit Tests (Failing)
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Write FAILING unit tests for: $ARGUMENTS. Tests must fail initially. Include edge cases, error scenarios, and happy paths. DO NOT implement production code."
- Output: Failing unit tests, test documentation
- CRITICAL: Verify all tests fail with expected error messages
4. Verify Test Failure
- Use Task tool with subagent_type="tdd-workflows::code-reviewer"
- Prompt: "Verify that all tests for: $ARGUMENTS are failing correctly. Ensure failures are for the right reasons (missing implementation, not test errors). Confirm no false positives."
- Output: Test failure verification report
- GATE: Do not proceed until all tests fail appropriately
Phase 3: GREEN - Make Tests Pass
5. Minimal Implementation
- Use Task tool with subagent_type="backend-development::backend-architect"
- Prompt: "Implement MINIMAL code to make tests pass for: $ARGUMENTS. Focus only on making tests green. Do not add extra features or optimizations. Keep it simple."
- Output: Minimal working implementation
- Constraint: No code beyond what's needed to pass tests
6. Verify Test Success
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Run all tests for: $ARGUMENTS and verify they pass. Check test coverage metrics. Ensure no tests were accidentally broken."
- Output: Test execution report, coverage metrics
- GATE: All tests must pass before proceeding
Phase 4: REFACTOR - Improve Code Quality
7. Code Refactoring
- Use Task tool with subagent_type="tdd-workflows::code-reviewer"
- Prompt: "Refactor implementation for: $ARGUMENTS while keeping tests green. Apply SOLID principles, remove duplication, improve naming, and optimize performance. Run tests after each refactoring."
- Output: Refactored code, refactoring report
- Constraint: Tests must remain green throughout
8. Test Refactoring
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Refactor tests for: $ARGUMENTS. Remove test duplication, improve test names, extract common fixtures, and enhance test readability. Ensure tests still provide same coverage."
- Output: Refactored tests, improved test structure
- Validation: Coverage metrics unchanged or improved
Phase 5: Integration and System Tests
9. Write Integration Tests (Failing First)
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Write FAILING integration tests for: $ARGUMENTS. Test component interactions, API contracts, and data flow. Tests must fail initially."
- Output: Failing integration tests
- Validation: Tests fail due to missing integration logic
10. Implement Integration
- Use Task tool with subagent_type="backend-development::backend-architect"
- Prompt: "Implement integration code for: $ARGUMENTS to make integration tests pass. Focus on component interaction and data flow."
- Output: Integration implementation
- Validation: All integration tests pass
Phase 6: Continuous Improvement Cycle
11. Performance and Edge Case Tests
- Use Task tool with subagent_type="unit-testing::test-automator"
- Prompt: "Add performance tests and additional edge case tests for: $ARGUMENTS. Include stress tests, boundary tests, and error recovery tests."
- Output: Extended test suite
- Metric: Increased test coverage and scenario coverage
12. Final Code Review
- Use Task tool with subagent_type="comprehensive-review::architect-review"
- Prompt: "Perform comprehensive review of: $ARGUMENTS. Verify TDD process was followed, check code quality, test quality, and coverage. Suggest improvements."
- Output: Review report, improvement suggestions
- Action: Implement critical suggestions while maintaining green tests
Incremental Development Mode
For test-by-test development:
- Write ONE failing test
- Make ONLY that test pass
- Refactor if needed
- Repeat for next test
Use this approach by adding --incremental flag to focus on one test at a time.
Test Suite Mode
For comprehensive test suite development:
- Write ALL tests for a feature/module (failing)
- Implement code to pass ALL tests
- Refactor entire module
- Add integration tests
Use this approach by adding --suite flag for batch test development.
Validation Checkpoints
RED Phase Validation
GREEN Phase Validation
REFACTOR Phase Validation
Coverage Reports
Generate coverage reports after each phase:
- Line coverage
- Branch coverage
- Function coverage
- Statement coverage
Failure Recovery
If TDD discipline is broken:
- STOP immediately
- Identify which phase was violated
- Rollback to last valid state
- Resume from correct phase
- Document lesson learned
TDD Metrics Tracking
Track and report:
- Time in each phase (Red/Green/Refactor)
- Number of test-implementation cycles
- Coverage progression
- Refactoring frequency
- Defect escape rate
Anti-Patterns to Avoid
- Writing implementation before tests
- Writing tests that already pass
- Skipping the refactor phase
- Writing multiple features without tests
- Modifying tests to make them pass
- Ignoring failing tests
- Writing tests after implementation
Success Criteria
- 100% of code written test-first
- All tests pass continuously
- Coverage exceeds thresholds
- Code complexity within limits
- Zero defects in covered code
- Clear test documentation
- Fast test execution (< 5 seconds for unit tests)
Notes
- Enforce strict RED-GREEN-REFACTOR discipline
- Each phase must be completed before moving to next
- Tests are the specification
- If a test is hard to write, the design needs improvement
- Refactoring is NOT optional
- Keep test execution fast
- Tests should be independent and isolated
TDD implementation for: $ARGUMENTS
1---2name: tdd-workflows-tdd-cycle3description: Use this skill when4---5## Use this skill when67- Working on tdd workflows tdd cycle tasks or workflows8- Needing guidance, best practices, or checklists for tdd workflows tdd cycle910## Do not use this skill when1112- The task is unrelated to tdd workflows tdd cycle13- You need a different domain or tool outside this scope1415## Instructions1617- Clarify goals, constraints, and required inputs.18- Apply relevant best practices and validate outcomes.19- Provide actionable steps and verification.20- If detailed examples are required, open `resources/implementation-playbook.md`.2122Execute a comprehensive Test-Driven Development (TDD) workflow with strict red-green-refactor discipline:2324[Extended thinking: This workflow enforces test-first development through coordinated agent orchestration. Each phase of the TDD cycle is strictly enforced with fail-first verification, incremental implementation, and continuous refactoring. The workflow supports both single test and test suite approaches with configurable coverage thresholds.]2526## Configuration2728### Coverage Thresholds29- Minimum line coverage: 80%30- Minimum branch coverage: 75%31- Critical path coverage: 100%3233### Refactoring Triggers34- Cyclomatic complexity > 1035- Method length > 20 lines36- Class length > 200 lines37- Duplicate code blocks > 3 lines3839## Phase 1: Test Specification and Design4041### 1. Requirements Analysis42- Use Task tool with subagent_type="comprehensive-review::architect-review"43- Prompt: "Analyze requirements for: $ARGUMENTS. Define acceptance criteria, identify edge cases, and create test scenarios. Output a comprehensive test specification."44- Output: Test specification, acceptance criteria, edge case matrix45- Validation: Ensure all requirements have corresponding test scenarios4647### 2. Test Architecture Design48- Use Task tool with subagent_type="unit-testing::test-automator"49- Prompt: "Design test architecture for: $ARGUMENTS based on test specification. Define test structure, fixtures, mocks, and test data strategy. Ensure testability and maintainability."50- Output: Test architecture, fixture design, mock strategy51- Validation: Architecture supports isolated, fast, reliable tests5253## Phase 2: RED - Write Failing Tests5455### 3. Write Unit Tests (Failing)56- Use Task tool with subagent_type="unit-testing::test-automator"57- Prompt: "Write FAILING unit tests for: $ARGUMENTS. Tests must fail initially. Include edge cases, error scenarios, and happy paths. DO NOT implement production code."58- Output: Failing unit tests, test documentation59- **CRITICAL**: Verify all tests fail with expected error messages6061### 4. Verify Test Failure62- Use Task tool with subagent_type="tdd-workflows::code-reviewer"63- Prompt: "Verify that all tests for: $ARGUMENTS are failing correctly. Ensure failures are for the right reasons (missing implementation, not test errors). Confirm no false positives."64- Output: Test failure verification report65- **GATE**: Do not proceed until all tests fail appropriately6667## Phase 3: GREEN - Make Tests Pass6869### 5. Minimal Implementation70- Use Task tool with subagent_type="backend-development::backend-architect"71- Prompt: "Implement MINIMAL code to make tests pass for: $ARGUMENTS. Focus only on making tests green. Do not add extra features or optimizations. Keep it simple."72- Output: Minimal working implementation73- Constraint: No code beyond what's needed to pass tests7475### 6. Verify Test Success76- Use Task tool with subagent_type="unit-testing::test-automator"77- Prompt: "Run all tests for: $ARGUMENTS and verify they pass. Check test coverage metrics. Ensure no tests were accidentally broken."78- Output: Test execution report, coverage metrics79- **GATE**: All tests must pass before proceeding8081## Phase 4: REFACTOR - Improve Code Quality8283### 7. Code Refactoring84- Use Task tool with subagent_type="tdd-workflows::code-reviewer"85- Prompt: "Refactor implementation for: $ARGUMENTS while keeping tests green. Apply SOLID principles, remove duplication, improve naming, and optimize performance. Run tests after each refactoring."86- Output: Refactored code, refactoring report87- Constraint: Tests must remain green throughout8889### 8. Test Refactoring90- Use Task tool with subagent_type="unit-testing::test-automator"91- Prompt: "Refactor tests for: $ARGUMENTS. Remove test duplication, improve test names, extract common fixtures, and enhance test readability. Ensure tests still provide same coverage."92- Output: Refactored tests, improved test structure93- Validation: Coverage metrics unchanged or improved9495## Phase 5: Integration and System Tests9697### 9. Write Integration Tests (Failing First)98- Use Task tool with subagent_type="unit-testing::test-automator"99- Prompt: "Write FAILING integration tests for: $ARGUMENTS. Test component interactions, API contracts, and data flow. Tests must fail initially."100- Output: Failing integration tests101- Validation: Tests fail due to missing integration logic102103### 10. Implement Integration104- Use Task tool with subagent_type="backend-development::backend-architect"105- Prompt: "Implement integration code for: $ARGUMENTS to make integration tests pass. Focus on component interaction and data flow."106- Output: Integration implementation107- Validation: All integration tests pass108109## Phase 6: Continuous Improvement Cycle110111### 11. Performance and Edge Case Tests112- Use Task tool with subagent_type="unit-testing::test-automator"113- Prompt: "Add performance tests and additional edge case tests for: $ARGUMENTS. Include stress tests, boundary tests, and error recovery tests."114- Output: Extended test suite115- Metric: Increased test coverage and scenario coverage116117### 12. Final Code Review118- Use Task tool with subagent_type="comprehensive-review::architect-review"119- Prompt: "Perform comprehensive review of: $ARGUMENTS. Verify TDD process was followed, check code quality, test quality, and coverage. Suggest improvements."120- Output: Review report, improvement suggestions121- Action: Implement critical suggestions while maintaining green tests122123## Incremental Development Mode124125For test-by-test development:1261. Write ONE failing test1272. Make ONLY that test pass1283. Refactor if needed1294. Repeat for next test130131Use this approach by adding `--incremental` flag to focus on one test at a time.132133## Test Suite Mode134135For comprehensive test suite development:1361. Write ALL tests for a feature/module (failing)1372. Implement code to pass ALL tests1383. Refactor entire module1394. Add integration tests140141Use this approach by adding `--suite` flag for batch test development.142143## Validation Checkpoints144145### RED Phase Validation146- [ ] All tests written before implementation147- [ ] All tests fail with meaningful error messages148- [ ] Test failures are due to missing implementation149- [ ] No test passes accidentally150151### GREEN Phase Validation152- [ ] All tests pass153- [ ] No extra code beyond test requirements154- [ ] Coverage meets minimum thresholds155- [ ] No test was modified to make it pass156157### REFACTOR Phase Validation158- [ ] All tests still pass after refactoring159- [ ] Code complexity reduced160- [ ] Duplication eliminated161- [ ] Performance improved or maintained162- [ ] Test readability improved163164## Coverage Reports165166Generate coverage reports after each phase:167- Line coverage168- Branch coverage169- Function coverage170- Statement coverage171172## Failure Recovery173174If TDD discipline is broken:1751. **STOP** immediately1762. Identify which phase was violated1773. Rollback to last valid state1784. Resume from correct phase1795. Document lesson learned180181## TDD Metrics Tracking182183Track and report:184- Time in each phase (Red/Green/Refactor)185- Number of test-implementation cycles186- Coverage progression187- Refactoring frequency188- Defect escape rate189190## Anti-Patterns to Avoid191192- Writing implementation before tests193- Writing tests that already pass194- Skipping the refactor phase195- Writing multiple features without tests196- Modifying tests to make them pass197- Ignoring failing tests198- Writing tests after implementation199200## Success Criteria201202- 100% of code written test-first203- All tests pass continuously204- Coverage exceeds thresholds205- Code complexity within limits206- Zero defects in covered code207- Clear test documentation208- Fast test execution (< 5 seconds for unit tests)209210## Notes211212- Enforce strict RED-GREEN-REFACTOR discipline213- Each phase must be completed before moving to next214- Tests are the specification215- If a test is hard to write, the design needs improvement216- Refactoring is NOT optional217- Keep test execution fast218- Tests should be independent and isolated219220TDD implementation for: $ARGUMENTS