Addy Osmani 规格驱动开发

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工程方法论GPT-4.1工程实践规格驱动开发

规格驱动开发:addyosmani/agent-skills: spec-driven-development,适用于工程实践、代码质量与开发流程优化。

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Skill Documentation

Addy Osmani 规格驱动开发

摘要

规格驱动开发:addyosmani/agent-skills: spec-driven-development,适用于工程实践、代码质量与开发流程优化。

> 来源: addyosmani/agent-skills — Google Chrome 团队领袖 Addy Osmani

> 原文件: skills/spec-driven-development/SKILL.md

> 模型推荐: 看 skill 类型挑

这个 skill 是干嘛的

Addy Osmani (Google Chrome 团队 Performance Lead,前端工程领域权威) 整理的 24 个工程方法论 skill 集合 — 覆盖 API 设计 / 浏览器测试 / CI/CD / 代码评审 / TDD / 安全 / 性能 / 部署 等。

michael 强调"skill 要有相应的指导功能,指导用户使用",所以加了下面两节让 Agent 和用户对接。

---

🤖 Agent 使用说明

1. 接到任务后,先按这个 skill 的触发关键词跑

2. 跑 Checklist 一遍,标记红线步骤

3. 红线步骤必须先完成(往往是 ask user 确认)

4. 完工前用 verification step 自检

5. 跑完了告诉用户结果,不要自行提交

👤 用户需要做什么?

1. 告诉 Agent 你要做什么(一句话即可)

2. 如果 skill 要求 ask user 凭证 / OAuth / 部署密钥,按提示提供

3. 完工后让 Agent 跑自检再交回

4. 全程 Agent 自动化,你只需回答"是/否"类决策点

---

原 skill 内容(addyosmani/agent-skills/spec-driven-development/SKILL.md,截断到 12k chars)

---

name: spec-driven-development

description: Creates specs before coding. Use when starting a new project, feature, or significant change and no specification exists yet. Use when requirements are unclear, ambiguous, or only exist as a vague idea. Use when a single requirement spans several independently testable capabilities and needs decomposing into a capability map of modules before specifying.

---

Spec-Driven Development

Overview

Write a structured specification before writing any code. The spec is the shared source of truth between you and the human engineer — it defines what we're building, why, and how we'll know it's done. Code without a spec is guessing.

When to Use

**When NOT to use:** Single-line fixes, typo corrections, or changes where requirements are unambiguous and self-contained.

The Gated Workflow

Spec-driven development has four phases, preceded by a scope check (Phase 0) that activates only when one request bundles several independently testable capabilities. Do not advance to the next phase until the current one is validated.

SPECIFY ──→ PLAN ──→ TASKS ──→ IMPLEMENT
   │          │        │          │
   ▼          ▼        ▼          ▼
 Human      Human    Human      Human
 reviews    reviews  reviews    reviews

Phase 0: Scope Check

Most requests describe one capability. If this one does, skip this phase and go straight to Specify — Phase 0 exists for the exception, not the rule, and it puts no hierarchy on single-capability features.

**Detection.** Decompose before specifying when a single requirement bundles several independently testable capabilities:

**Propose a capability map before writing any spec.** Small and reviewable — a module table plus a build order, not a project plan:

# Capability Map: [Initiative Name]

| Module id | Responsibility | Depends on |
|---|---|---|
| identity | Accounts, sessions, SSO | — |
| billing | Plans, invoices, payments | identity |
| notifications | Email and webhook fan-out | identity |
| reporting | Usage dashboards | billing, notifications |

Build order: identity → billing, notifications → reporting

**The map is gated like every phase.** The human reviews module boundaries, dependency direction, and build order before any module spec is written. Getting the map wrong is expensive; reviewing ten lines is not.

**Then recurse per module.** Run Specify → Plan → Tasks → Implement for each module in dependency order. Each module gets its own spec, scoped to that module's objective, boundaries, and success criteria. Save the approved map at the project root and each module's spec alongside it, named by module id (`SPEC-identity.md`, `SPEC-billing.md`) — the map, not filename guessing, is the index of what exists.

Phase 1: Specify

Start with a high-level vision. Ask the human clarifying questions until requirements are concrete.

**Surface assumptions immediately.** Before writing any spec content, list what you're assuming:

ASSUMPTIONS I'M MAKING:
1. This is a web application (not native mobile)
2. Authentication uses session-based cookies (not JWT)
3. The database is PostgreSQL (based on existing Prisma schema)
4. We're targeting modern browsers only (no IE11)
→ Correct me now or I'll proceed with these.

Don't silently fill in ambiguous requirements. The spec's entire purpose is to surface misunderstandings *before* code gets written — assumptions are the most dangerous form of misunderstanding.

**Write a spec document covering these six core areas:**

1. **Objective** — What are we building and why? Who is the user? What does success look like?

2. **Commands** — Full executable commands with flags, not just tool names.

   Build: npm run build
   Test: npm test -- --coverage
   Lint: npm run lint --fix
   Dev: npm run dev

3. **Project Structure** — Where source code lives, where tests go, where docs belong.

   src/           → Application source code
   src/components → React components
   src/lib        → Shared utilities
   tests/         → Unit and integration tests
   e2e/           → End-to-end tests
   docs/          → Documentation

4. **Code Style** — One real code snippet showing your style beats three paragraphs describing it. Include naming conventions, formatting rules, and examples of good output.

5. **Testing Strategy** — What framework, where tests live, coverage expectations, which test levels for which concerns.

6. **Boundaries** — Three-tier system:

**Spec template:**

# Spec: [Project/Feature Name]

## Objective
[What we're building and why. User stories or acceptance criteria.]

## Tech Stack
[Framework, language, key dependencies with versions]

## Commands
[Build, test, lint, dev — full commands]

## Project Structure
[Directory layout with descriptions]

## Code Style
[Example snippet + key conventions]

## Testing Strategy
[Framework, test locations, coverage requirements, test levels]

## Boundaries
- Always: [...]
- Ask first: [...]
- Never: [...]

## Success Criteria
[How we'll know this is done — specific, testable conditions]

## Open Questions
[Anything unresolved that needs human input]

**Reframe instructions as success criteria.** When receiving vague requirements, translate them into concrete conditions:

REQUIREMENT: "Make the dashboard faster"

REFRAMED SUCCESS CRITERIA:
- Dashboard LCP < 2.5s on 4G connection
- Initial data load completes in < 500ms
- No layout shift during load (CLS < 0.1)
→ Are these the right targets?

This lets you loop, retry, and problem-solve toward a clear goal rather than guessing what "faster" means.

Phase 2: Plan

With the validated spec, generate a technical implementation plan:

1. Identify the major components and their dependencies

2. Determine the implementation order (what must be built first)

3. Note risks and mitigation strategies

4. Identify what can be built in parallel vs. what must be sequential

5. Define verification checkpoints between phases

> Follow `planning-and-task-breakdown` for the dependency-graph mapping and vertical-slicing mechanics behind these steps; it is the canonical source. The bullets above are a lightweight summary; if they ever diverge, `planning-and-task-breakdown` takes precedence.

>

> **Output convention:** Save the plan to `tasks/plan.md` and record the task list in the task list target defined by `planning-and-task-breakdown` (default `tasks/todo.md`; projects may designate an external tracker instead). Create `tasks/` if it does not exist. Downstream commands (`/build`, etc.) expect these defaults.

The plan should be reviewable: the human should be able to read it and say "yes, that's the right approach" or "no, change X."

Phase 3: Tasks

Break the plan into discrete, implementable tasks:

> Follow `planning-and-task-breakdown` for the full task-sizing and dependency-ordering mechanics; it is the canonical source. The template below is a lightweight inline form; if they ever diverge, `planning-and-task-breakdown` takes precedence.

**Task template:**

- [ ] Task: [Description]
  - Acceptance: [What must be true when done]
  - Verify: [How to confirm — test command, build, manual check]
  - Files: [Which files will be touched]

Phase 4: Implement

Execute tasks one at a time following `skills/incremental-implementation/SKILL.md` (`incremental-implementation`) and `skills/test-driven-development/SKILL.md` (`test-driven-development`). Use `skills/context-engineering/SKILL.md` (`context-engineering`) to load the right spec sections and source files at each step rather than flooding the agent with the entire spec.

Keeping the Spec Alive

The spec is a living document, not a one-time artifact:

Common Rationalizations

| Rationalization | Reality |

|---|---|

| "This is simple, I don't need a spec" | Simple tasks don't need *long* specs, but they still need acceptance criteria. A two-line spec is fine. |

| "I'll write the spec after I code it" | That's documentation, not specification. The spec's value is in forcing clarity *before* code. |

| "The spec will slow us down" | A 15-minute spec prevents hours of rework. Waterfall in 15 minutes beats debugging in 15 hours. |

| "Requirements will change anyway" | That's why the spec is a living document. An outdated spec is still better than no spec. |

| "The user knows what they want" | Even clear requests have implicit assumptions. The spec surfaces those assumptions. |

| "It's one big feature; splitting it is overhead" | If acceptance criteria cluster into independently testable groups, a monolithic spec forces every downstream task to reason over the whole contract. A ten-line capability map is the cheap alternative. |

| "I'll decompose during planning" | Planning slices tasks within a spec. By then the oversized artifact already exists — module boundaries and dependency direction must be decided before the spec is written, not after. |

Red Flags

Verification

Before proceeding to implementation, confirm:

常见问题(FAQ)

使用「规格驱动开发」这个 skill 能解决什么问题?

本 skill 专注于规格驱动开发,addyosmani/agent-skills: spec-driven-development。它将相关流程标准化,帮助用户更快拿到可靠结果,减少重复手工操作。

什么情况下适合使用「规格驱动开发」?

当你需要在规格驱动开发相关工作中获得稳定、可复用的产出时最适合——无论是单次任务还是纳入日常工作流,都能直接调用。

使用「规格驱动开发」前需要准备什么?

需要一个具体的项目或任务上下文,最好带有代码仓库或需求文档。

FAQ

👤 用户需要做什么?

1. 告诉 Agent 你要做什么(一句话即可)

2. 如果 skill 要求 ask user 凭证 / OAuth / 部署密钥,按提示提供

3. 完工后让 Agent 跑自检再交回

4. 全程 Agent 自动化,你只需回答"是/否"类决策点

---

*Objective** — What are we building and why? Who is the user? What does success look like?

2. **Commands** — Full executable commands with flags, not just tool names.

3. **Project Structure** — Where source code lives, where tests go, where docs belong.

4. **Code Style** — One real code snippet showing your style beats three paragraphs describing it. Include naming conventions, formatting rules, and examples of good output.

5. **Testing Strategy** — What framework, where tests live, coverage expectations, which test levels for which concerns.

6. **Boundaries** — Three-tier system:

  • **Always do:** Run tests before commits, follow naming conventions, validate inputs
  • **Ask first:** Database schema changes, adding dependencies, changing CI config
  • **Never do:** Commit secrets, edit vendor directories, remove failing tests without approval

**Spec template:**

**Reframe instructions as success criteria.** When receiving vague requirements, translate them into concrete conditions:

This lets you loop, retry, and problem-solve toward a clear goal rather than guessing what "faster" means.

使用「规格驱动开发」这个 skill 能解决什么问题?

本 skill 专注于规格驱动开发,addyosmani/agent-skills: spec-driven-development。它将相关流程标准化,帮助用户更快拿到可靠结果,减少重复手工操作。

什么情况下适合使用「规格驱动开发」?

当你需要在规格驱动开发相关工作中获得稳定、可复用的产出时最适合——无论是单次任务还是纳入日常工作流,都能直接调用。

使用「规格驱动开发」前需要准备什么?

需要一个具体的项目或任务上下文,最好带有代码仓库或需求文档。