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tdd时差

Agent Skill

tdd 用于处理 GitHub 仓库、Issue、Pull Request 和代码协作信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要围绕仓库状态、代码变更或协作事项进行整理时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

总安装

190

周安装

8

GitHub Stars

公开资料未说明

下载量

67
CodexClaudeCursorGemini CLI

安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:tdd(时差)
来源仓库:https://github.com/sadiksaifi/agents
仓库路径:skills/tdd
安装命令:
npx skills add https://github.com/sadiksaifi/agents --skill tdd
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/sadiksaifi/agents --skill tdd

简介

tdd 用于处理 GitHub 仓库、Issue、Pull Request 和代码协作信息。

  • 适合在 Codex、Claude、Cursor、Gemini CLI 中围绕仓库状态、代码变更或协作事项进行整理。
  • 通过 npx skills add 命令安装,需结合原始 README 核验具体用法。
  • 安装前建议确认权限范围、维护状态及是否触发联网或文件读写操作。
  • tdd 属于前端设计类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Core Principle

Tests verify behavior through public interfaces, not implementation details. Code can change entirely; tests shouldn't. 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.

See tests.md for good vs bad test examples.

Anti-Pattern: Horizontal Slicing

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:

  • Tests written in bulk test *imagined* behavior, not *actual* behavior
  • You end up testing the *shape* of things (data structures, function signatures) rather than user-facing behavior
  • Tests become insensitive to real changes — they pass when behavior breaks, fail when behavior is fine
  • You outrun your headlights, committing to test structure before understanding the implementation

Correct approach: Vertical slices via tracer bullets. One test → one implementation → repeat. Each test responds to what you learned from the previous cycle.

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

Workflow

Step 1: Planning

Before writing any code:

  • Confirm with user what interface changes are needed
  • Confirm with user which behaviors to test (prioritize)
  • Identify opportunities for deep modules (small interface, deep implementation)
  • Design interfaces for testability
  • List the behaviors to test (not implementation steps)
  • Get user approval on the plan

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.

Step 2: Tracer Bullet

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
VERIFY: Run project lint + full test suite → must pass
COMMIT: Atomic commit (conventional commits v1)

This is your tracer bullet — proves the path works end-to-end.

Do not proceed if lint or tests fail. Fix first.

Step 3: Incremental Loop

For each remaining behavior:

RED:    Write next test → fails
GREEN:  Minimal code to pass → passes
VERIFY: Lint + tests → must pass
COMMIT: Atomic commit

Rules:

  • One test at a time
  • Only enough code to pass current test
  • Don't anticipate future tests
  • Keep tests focused on observable behavior
  • Never proceed past a failing lint or test — fix before moving on
  • One commit per cycle — never batch unrelated changes

Step 4: Refactor

After all tests pass, look for refactor candidates:

  • Extract duplication into functions/classes
  • Deepen modules — move complexity behind simple interfaces
  • Apply SOLID principles where natural
  • Move logic to where data lives (feature envy)
  • Introduce value objects for primitive obsession
  • Consider what new code reveals about existing code
  • Long methods → break into private helpers (keep tests on public interface)
  • Run tests after each refactor step

Never refactor while RED. Get to GREEN first.

Step 5: Completion

After all acceptance criteria met and all checks pass:

  • Print ## Manual Testing Checklist with concrete steps to verify manually (if applicable)
  • Stop

Per-Cycle Checklist

[ ] 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
[ ] Lint + tests pass
[ ] Atomic commit made (conventional commits v1)

References

Load these on demand when the situation calls for it:

  • tests.md — Good vs bad test examples. Load when writing or reviewing tests.
  • mocking.md — When and how to mock. Load when deciding whether to mock a dependency.
  • interface-design.md — Testable interfaces and deep modules. Load when designing interfaces or when tests feel hard to write.

适合场景

01

用户想查找某类 Agent Skill 时

02

需要根据任务场景推荐可安装能力包时

03

需要对比不同来源的安装命令和来源信息时

能力概览

能力 1

按任务关键词查找相关 Skills

能力 2

展示可复制的安装命令

能力 3

保留来源站点、仓库和原始说明,方便继续核验

能力 4

展示第三方安全扫描或审计结果

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

平台分布

Codex

32.4%
按下载量换算22

Claude

30.1%
按下载量换算20

Cursor

19.67%
按下载量换算13

Gemini CLI

9.67%
按下载量换算6

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

通过

权限和风险

只读

该 Skill 主要提供规则、说明或参考内容,本身偏只读;真正读写文件、联网或执行命令仍取决于宿主 Agent 的任务。

安装前确认

本站仅展示第三方公开信息,不托管安装包,不提供自动安装或运行环境。安装前应自行审查源码、依赖和命令行为。当前只有一个来源,正式发布前建议补源仓库或其他目录站核验。

来源信息

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