بنقرة واحدة
test-driven-development
Use when implementing any feature or bugfix, before writing implementation code
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
القائمة
Use when implementing any feature or bugfix, before writing implementation code
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
استنادا إلى تصنيف SOC المهني
Session start guide: explains how to use superharness skills and conventions. Injected by SessionStart hook.
Superharness brainstorming skill. You MUST use this before any creative work - creating features, building components, adding functionality, or modifying behavior. Explores user intent, requirements and design before implementation.
Use when implementation is complete, all tests pass, and you need to decide how to integrate the work - guides completion of development work by presenting structured options for merge, PR, or cleanup
Main entry point: end-to-end workflow for building features. Use /superharness:go 'requirement' to start. Orchestrates brainstorm → plan → TDD implementation → review → QA.
Infrastructure skill: start a local visualization server that renders Mermaid diagrams in the browser. Write .mmd files with pure Mermaid code, the browser updates in real-time via WebSocket (no page reload). Used by brainstorm, writing-plans, and other skills.
Surface unresolved decisions in a development request and ask the user before implementing. Use when starting a non-trivial dev task whose requirements leave open questions that would change the implementation (scope, data shape, UX behavior, compatibility), or when the user asks to confirm first ("先确认一下", "有不清楚的先问").
| name | test-driven-development |
| description | Use when implementing any feature or bugfix, before writing implementation code |
| skill_type | rigid |
Write the test first. Watch it fail. Write minimal code to pass.
Core principle: If you didn't watch the test fail, you don't know if it tests the right thing.
Violating the letter of the rules is violating the spirit of the rules.
Always:
Exceptions (ask your human partner):
Thinking "skip TDD just this once"? Stop. That's rationalization.
NO PRODUCTION CODE WITHOUT A FAILING TEST FIRST
Write code before the test? Delete it. Start over.
No exceptions:
Implement fresh from tests. Period.
Before any RED/GREEN verification, figure out how tests are actually run in this project. Test commands are project-specific -- hardcoding npm test is wrong for Python, Java, or Swift projects. Use this order:
.superharness/spec/testing/index.md. If it documents the test command, use that -- the spec is the source of truth the project has already agreed on.package.json -> npm test (or pnpm test / yarn test if the lockfile indicates)pyproject.toml / requirements.txt / Pipfile / setup.py -> pytestpom.xml -> mvn testbuild.gradle(.kts) -> ./gradlew testPackage.swift -> swift test*.xcodeproj bundle -> xcodebuild test -scheme <scheme> -destination <destination> (ask the user for scheme/destination if unknown)pytest tests/test_foo.py::test_bar, ./gradlew test --tests com.acme.MathXTest.gcd_handles_zero)..superharness/spec/testing/index.md so future runs skip step 2.Throughout the rest of this skill, wherever you see <test command> in an example, substitute the command you resolved here.
Log TDD phase transitions to trace.jsonl for observability:
{"event":"implement:tdd_red","test":"path/to/test.test.ts","description":"Write failing test for <behavior>","timestamp":"..."}
{"event":"implement:tdd_green","test":"path/to/test.test.ts","description":"Test passes after minimal implementation","timestamp":"..."}
implement:tdd_red when writing a failing test (RED phase verified)implement:tdd_green when the test passes (GREEN phase verified)digraph tdd_cycle {
rankdir=LR;
red [label="RED\nWrite failing test", shape=box, style=filled, fillcolor="#ffcccc"];
verify_red [label="Verify fails\ncorrectly", shape=diamond];
green [label="GREEN\nMinimal code", shape=box, style=filled, fillcolor="#ccffcc"];
verify_green [label="Verify passes\nAll green", shape=diamond];
refactor [label="REFACTOR\nClean up", shape=box, style=filled, fillcolor="#ccccff"];
next [label="Next", shape=ellipse];
red -> verify_red;
verify_red -> green [label="yes"];
verify_red -> red [label="wrong\nfailure"];
green -> verify_green;
verify_green -> refactor [label="yes"];
verify_green -> green [label="no"];
refactor -> verify_green [label="stay\ngreen"];
verify_green -> next;
next -> red;
}
Write one minimal test showing what should happen.
```typescript test('retries failed operations 3 times', async () => { let attempts = 0; const operation = () => { attempts++; if (attempts < 3) throw new Error('fail'); return 'success'; };const result = await retryOperation(operation);
expect(result).toBe('success'); expect(attempts).toBe(3); });
Clear name, tests real behavior, one thing
</Good>
<Bad>
```typescript
test('retry works', async () => {
const mock = jest.fn()
.mockRejectedValueOnce(new Error())
.mockRejectedValueOnce(new Error())
.mockResolvedValueOnce('success');
await retryOperation(mock);
expect(mock).toHaveBeenCalledTimes(3);
});
Vague name, tests mock not code
Requirements:
After verifying failure, log the trace event:
{"event":"implement:tdd_red","test":"path/to/test.test.ts","description":"Failing test: retries failed operations 3 times","timestamp":"..."}
MANDATORY. Never skip.
# See "Resolving the Test Command" above
<test command> <test file or target>
Confirm:
Test passes? You're testing existing behavior. Fix test.
Test errors? Fix error, re-run until it fails correctly.
Write simplest code to pass the test.
```typescript async function retryOperation(fn: () => Promise): Promise { for (let i = 0; i < 3; i++) { try { return await fn(); } catch (e) { if (i === 2) throw e; } } throw new Error('unreachable'); } ``` Just enough to pass ```typescript async function retryOperation( fn: () => Promise, options?: { maxRetries?: number; backoff?: 'linear' | 'exponential'; onRetry?: (attempt: number) => void; } ): Promise { // YAGNI } ``` Over-engineeredDon't add features, refactor other code, or "improve" beyond the test.
MANDATORY.
# See "Resolving the Test Command" above
<test command> <test file or target>
Confirm:
Test fails? Fix code, not test.
Other tests fail? Fix now.
After verifying pass, log the trace event:
{"event":"implement:tdd_green","test":"path/to/test.test.ts","description":"Test passes: retries failed operations 3 times","timestamp":"..."}
After green only:
Keep tests green. Don't add behavior.
Next failing test for next feature.
| Quality | Good | Bad |
|---|---|---|
| Minimal | One thing. "and" in name? Split it. | test('validates email and domain and whitespace') |
| Clear | Name describes behavior | test('test1') |
| Shows intent | Demonstrates desired API | Obscures what code should do |
"I'll write tests after to verify it works"
Tests written after code pass immediately. Passing immediately proves nothing:
Test-first forces you to see the test fail, proving it actually tests something.
"I already manually tested all the edge cases"
Manual testing is ad-hoc. You think you tested everything but:
Automated tests are systematic. They run the same way every time.
"Deleting X hours of work is wasteful"
Sunk cost fallacy. The time is already gone. Your choice now:
The "waste" is keeping code you can't trust. Working code without real tests is technical debt.
"TDD is dogmatic, being pragmatic means adapting"
TDD IS pragmatic:
"Pragmatic" shortcuts = debugging in production = slower.
"Tests after achieve the same goals - it's spirit not ritual"
No. Tests-after answer "What does this do?" Tests-first answer "What should this do?"
Tests-after are biased by your implementation. You test what you built, not what's required. You verify remembered edge cases, not discovered ones.
Tests-first force edge case discovery before implementing. Tests-after verify you remembered everything (you didn't).
30 minutes of tests after != TDD. You get coverage, lose proof tests work.
| Excuse | Reality |
|---|---|
| "Too simple to test" | Simple code breaks. Test takes 30 seconds. |
| "I'll test after" | Tests passing immediately prove nothing. |
| "Tests after achieve same goals" | Tests-after = "what does this do?" Tests-first = "what should this do?" |
| "Already manually tested" | Ad-hoc != systematic. No record, can't re-run. |
| "Deleting X hours is wasteful" | Sunk cost fallacy. Keeping unverified code is technical debt. |
| "Keep as reference, write tests first" | You'll adapt it. That's testing after. Delete means delete. |
| "Need to explore first" | Fine. Throw away exploration, start with TDD. |
| "Test hard = design unclear" | Listen to test. Hard to test = hard to use. |
| "TDD will slow me down" | TDD faster than debugging. Pragmatic = test-first. |
| "Manual test faster" | Manual doesn't prove edge cases. You'll re-test every change. |
| "Existing code has no tests" | You're improving it. Add tests for existing code. |
All of these mean: Delete code. Start over with TDD.
This example uses JavaScript/TypeScript for illustration; the same RED-GREEN-REFACTOR workflow applies in any language -- substitute your resolved test command (see "Resolving the Test Command" above) and language-appropriate test syntax.
Bug: Empty email accepted
RED
test('rejects empty email', async () => {
const result = await submitForm({ email: '' });
expect(result.error).toBe('Email required');
});
Verify RED
$ npm test
FAIL: expected 'Email required', got undefined
Log trace: {"event":"implement:tdd_red","test":"form.test.ts","description":"Failing test: rejects empty email","timestamp":"..."}
GREEN
function submitForm(data: FormData) {
if (!data.email?.trim()) {
return { error: 'Email required' };
}
// ...
}
Verify GREEN
$ npm test
PASS
Log trace: {"event":"implement:tdd_green","test":"form.test.ts","description":"Test passes: rejects empty email","timestamp":"..."}
REFACTOR Extract validation for multiple fields if needed.
Before marking work complete:
Can't check all boxes? You skipped TDD. Start over.
| Problem | Solution |
|---|---|
| Don't know how to test | Write wished-for API. Write assertion first. Ask your human partner. |
| Test too complicated | Design too complicated. Simplify interface. |
| Must mock everything | Code too coupled. Use dependency injection. |
| Test setup huge | Extract helpers. Still complex? Simplify design. |
Bug found? Write failing test reproducing it. Follow TDD cycle. Test proves fix and prevents regression.
Never fix bugs without a test.
When adding mocks or test utilities, read @testing-anti-patterns.md to avoid common pitfalls:
Production code -> test exists and failed first
Otherwise -> not TDD
No exceptions without your human partner's permission.