一键导入
tdd
Test-driven development. Use when the user wants to build features or fix bugs test-first, mentions "red-green-refactor", or wants integration tests.
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
菜单
Test-driven development. Use when the user wants to build features or fix bugs test-first, mentions "red-green-refactor", or wants integration tests.
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
基于 SOC 职业分类
Reconstitue un résumé de ce que l'utilisateur a fait sur une journée donnée en croisant ses emails (Gmail), Slack, Linear et GitLab. Utilise ce skill dès que l'utilisateur demande un récap/résumé de sa journée, de sa semaine ou d'un jour précis — par exemple "résume ce que j'ai fait hier", "fais-moi un point sur ma journée", "qu'est-ce que j'ai fait lundi ?", "recap de la semaine" — même s'il ne mentionne aucune source explicitement.
Create GitLab merge requests with intelligent title and description generation from git commits. Supports stacked MRs by targeting the parent branch (falls back to main). Use when you want to create an MR and need to generate a clear title following git conventions and auto-populate the description from commit messages.
Implement a Linear issue by breaking its acceptance criteria into tasks, implementing each with TDD, and updating the Linear issue status when done. Use when the user says 'implement issue ...', 'implement TEAM-123', or wants to implement a Linear issue.
Implement behaviors from a specification file produced by the local-create-spec skill. Use when the user says 'implement behaviors from ...', 'implement the spec', 'implement spec ...', or wants to implement a .specs/ markdown file containing Given/When/Then behaviors with checkboxes.
Break a Design-Document (DD) into independently-grabbable Linear issues using tracer-bullet vertical slices. Use when user wants to convert a DD to issues, create implementation tickets, or break down a DD into work items.
This skill should be used when the user asks to create a spec, a specification, or to formalize requirements. It accepts any input (Linear issue, free text, file, URL, etc.), explores the codebase to identify impacts and required changes, then collaboratively produces a behavior-driven specification with toggleable behaviors that map directly to automated tests.
| name | tdd |
| description | Test-driven development. Use when the user wants to build features or fix bugs test-first, mentions "red-green-refactor", or wants integration tests. |
Core principle: Tests should verify behavior through public interfaces, not implementation details. Code can change entirely; tests shouldn't.
Good tests are integration-style: they exercise real code paths through public APIs. They describe what the system does, not how it does it. A good test reads like a specification - "user can checkout with valid cart" tells you exactly what capability exists. These tests survive refactors because they don't care about internal structure.
Bad tests are coupled to implementation. They mock internal collaborators, test private methods, or verify through external means (like querying a database directly instead of using the interface). The warning sign: your test breaks when you refactor, but behavior hasn't changed. If you rename an internal function and tests fail, those tests were testing implementation, not behavior.
DO NOT write all tests first, then all implementation. This is "horizontal slicing" - treating RED as "write all tests" and GREEN as "write all code."
This produces crap tests:
Correct approach: Vertical slices via tracer bullets. One test → one implementation → repeat. Each test responds to what you learned from the previous cycle. Because you just wrote the code, you know exactly what behavior matters and how to verify it.
WRONG (horizontal):
RED: test1, test2, test3, test4, test5
GREEN: impl1, impl2, impl3, impl4, impl5
RIGHT (vertical):
RED→GREEN: test1→impl1
RED→GREEN: test2→impl2
RED→GREEN: test3→impl3
...
When exploring the codebase, read CONTEXT.md (if it exists) so that test names and interface vocabulary match the project's domain language, and respect ADRs in the area you're touching.
Before writing any code:
Ask: "What should the public interface look like? Which behaviors are most important to test?"
You can't test everything. Confirm with the user exactly which behaviors matter most. Focus testing effort on critical paths and complex logic, not every possible edge case.
Write ONE test that confirms ONE thing about the system:
RED: Write test for first behavior → test fails
GREEN: Write minimal code to pass → test passes
This is your tracer bullet - proves the path works end-to-end.
For each remaining behavior:
RED: Write next test → fails
GREEN: Minimal code to pass → passes
Rules:
After all tests pass, look for refactor candidates:
Never refactor while RED. Get to GREEN first.
[ ] Test describes behavior, not implementation
[ ] Test uses public interface only
[ ] Test would survive internal refactor
[ ] Code is minimal for this test
[ ] No speculative features added