| name | pb-test-driven-development |
| description | Use when implementing any feature or bugfix, before writing implementation code |
pb-test-driven-development
Write failing tests first, then implement to make them pass. Red → Green → Refactor.
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.
The Iron Law
NO PRODUCTION CODE WITHOUT A FAILING TEST FIRST
Write code before the test? Delete it. Start over.
No exceptions:
- Don't keep it as "reference"
- Don't "adapt" it while writing tests
- Don't look at it
- Don't skim it for ideas
- Delete means delete — remove the files, revert the changes, start from a clean state
When to Use
Always:
- New features
- Bug fixes
- Refactoring
- Behavior changes
Exceptions (ask user):
- Throwaway prototypes
- Generated code
- Configuration files
Thinking "skip TDD just this once"? Stop. That's rationalization.
Red-Green-Refactor
digraph tdd_cycle {
rankdir=TB;
"RED: Write failing test" [shape=box style=filled fillcolor="#ffcccc"];
"Verify RED: test fails?" [shape=diamond];
"GREEN: Minimal code" [shape=box style=filled fillcolor="#ccffcc"];
"Verify GREEN: test passes?" [shape=diamond];
"REFACTOR: Clean up" [shape=box style=filled fillcolor="#ccccff"];
"Next behavior" [shape=box];
"RED: Write failing test" -> "Verify RED: test fails?";
"Verify RED: test fails?" -> "GREEN: Minimal code" [label="yes"];
"Verify RED: test fails?" -> "Fix test" [label="no - test passes"];
"GREEN: Minimal code" -> "Verify GREEN: test passes?";
"Verify GREEN: test passes?" -> "REFACTOR: Clean up" [label="yes"];
"Verify GREEN: test passes?" -> "Fix code" [label="no"];
"REFACTOR: Clean up" -> "Next behavior";
}
RED - Write Failing Test
Write one minimal test showing what should happen.
Good:
def test_retries_failed_operations_3_times():
attempts = 0
def operation():
nonlocal attempts
attempts += 1
if attempts < 3:
raise ValueError("fail")
return "success"
result = retry_operation(operation)
assert result == "success"
assert attempts == 3
Clear name, tests real behavior, one thing.
Bad:
def test_retry_works():
mock = Mock(side_effect=[ValueError, ValueError, "success"])
result = retry_operation(mock)
assert mock.call_count == 3
Vague name, tests mock not code.
Requirements:
- One behavior
- Clear name
- Real code (no mocks unless unavoidable)
Bug Fix: Reproduce First
For bugs, the RED phase doubles as a reproducer. Don't fix without confirming the bug exists.
User reports: "Sorting breaks when there are duplicate scores"
Wrong: Immediately changes sort logic.
Right:
def test_sort_with_duplicate_scores():
scores = [
{'name': 'Alice', 'score': 100},
{'name': 'Bob', 'score': 100},
{'name': 'Charlie', 'score': 90},
]
result = sort_scores(scores)
assert result[0]['score'] == 100
assert result[1]['score'] == 100
assert result[2]['score'] == 90
def sort_scores(scores):
return sorted(scores, key=lambda x: (-x['score'], x['name']))
Verify RED - Watch It Fail
MANDATORY. Never skip.
uv run pytest tests/path/test.py -v
Confirm:
- Test fails (not errors)
- Failure message is expected
- Fails because feature missing (not typos)
Test passes? You're testing existing behavior. Fix test.
Test errors? Fix error, re-run until it fails correctly.
GREEN - Minimal Code
Write simplest code to pass the test.
Good:
def retry_operation(fn):
for i in range(3):
try:
return fn()
except Exception:
if i == 2:
raise
Just enough to pass.
Bad:
def retry_operation(fn, max_retries=3, backoff="linear", on_retry=None):
Over-engineered.
Don't add features, refactor other code, or "improve" beyond the test.
Verify GREEN - Watch It Pass
MANDATORY.
uv run pytest tests/path/test.py -v
Confirm:
- Test passes
- Other tests still pass
- Output pristine (no errors, warnings)
Test fails? Fix code, not test.
Other tests fail? Fix now.
REFACTOR - Clean Up
After green only:
- Remove duplication
- Improve names
- Extract helpers
Keep tests green. Don't add behavior.
Repeat
Next failing test for next feature.
Why Order Matters
"I'll write tests after to verify it works"
Tests written after code pass immediately. Passing immediately proves nothing:
- Might test wrong thing
- Might test implementation, not behavior
- Might miss edge cases you forgot
- You never saw it catch the bug
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:
- No record of what you tested
- Can't re-run when code changes
- Easy to forget cases under pressure
- "It worked when I tried it" ≠ comprehensive
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:
- Delete and rewrite with TDD (X more hours, high confidence)
- Keep it and add tests after (30 min, low confidence, likely bugs)
The "waste" is keeping code you can't trust.
"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.
30 minutes of tests after ≠ TDD. You get coverage, lose proof tests work.
"I'm following the spirit of TDD"
Violating the letter of the rules is violating the spirit of the rules. There is no "spirit" that permits skipping RED. The entire point is watching the test fail — that's not a ritual, it's the mechanism that proves your test detects the missing behavior. Skip RED, and you have zero evidence your test works.
Common Rationalizations
| 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. |
Red Flags - STOP and Start Over
These are specific thoughts that mean you are about to violate the Iron Law. Recognize them as danger signals:
- Code before test
- Test after implementation
- Test passes immediately
- Can't explain why test failed
- Tests added "later"
- Rationalizing "just this once"
- "I already manually tested it"
- "Tests after achieve the same purpose"
- "It's about spirit not ritual"
- "Keep as reference" or "adapt existing code"
- "Already spent X hours, deleting is wasteful"
- "TDD is dogmatic, I'm being pragmatic"
- "This is different because..."
- "I'll just check if it works first"
- "The test would be trivial anyway"
- "I know what the code does, I wrote it"
All of these mean: Delete code. Start over with TDD.
Example: Bug Fix
Bug: Empty email accepted
RED
def test_rejects_empty_email():
result = submit_form({"email": ""})
assert result["error"] == "Email required"
Verify RED
$ uv run pytest tests/test_form.py::test_rejects_empty_email -v
FAIL: AssertionError: KeyError 'error'
GREEN
def submit_form(data):
if not data.get("email", "").strip():
return {"error": "Email required"}
Verify GREEN
$ uv run pytest tests/test_form.py::test_rejects_empty_email -v
PASS
REFACTOR
Extract validation for multiple fields if needed.
Verification Checklist
Before marking work complete:
Can't check all boxes? You skipped TDD. Start over.
When Stuck
| Problem | Solution |
|---|
| Don't know how to test | Write wished-for API. Write assertion first. |
| 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. |
Debugging Integration
Bug found? Write failing test reproducing it. Follow TDD cycle. Test proves fix and prevents regression.
Never fix bugs without a test.
Integration with pb-spec
- pb-build Generator: Every task in the BDD+TDD loop follows this cycle
- pb-build TDD-only tasks: Pure TDD without BDD outer loop
- Standalone: Use for any TDD need outside pb-spec workflow