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tdd-workflows-tdd-refactorTDD 工作流程 TDD 重构

Agent Skill

tdd-workflows-tdd-refactor 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

475

周安装

20

GitHub Stars

692

下载量

166
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

3

许可证

MIT

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-workflows-tdd-refactor(TDD 工作流程 TDD 重构)
来源仓库:https://github.com/rmyndharis/antigravity-skills
仓库路径:skills/tdd-workflows-tdd-refactor
安装命令:
npx skills add https://github.com/rmyndharis/antigravity-skills --skill tdd-workflows-tdd-refactor
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。不同来源提供的安装方式可能略有差异;本站展示可直接复制的安装命令,安装前请核对来源页面。

skills.shnpx skills
npx skills add https://github.com/rmyndharis/antigravity-skills --skill tdd-workflows-tdd-refactor

简介

tdd-workflows-tdd-refactor 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 命令从指定仓库安装,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,以及是否会触发联网、命令执行或文件读写。
  • 当前无额外底部简介,可参考来源仓库获取完整功能说明。

SKILL.md

Use this skill when

  • Working on tdd workflows tdd refactor tasks or workflows
  • Needing guidance, best practices, or checklists for tdd workflows tdd refactor

Do not use this skill when

  • The task is unrelated to tdd workflows tdd refactor
  • You need a different domain or tool outside this scope

Instructions

  • Clarify goals, constraints, and required inputs.
  • Apply relevant best practices and validate outcomes.
  • Provide actionable steps and verification.
  • If detailed examples are required, open resources/implementation-playbook.md.

Refactor code with confidence using comprehensive test safety net:

[Extended thinking: This tool uses the tdd-orchestrator agent (opus model) for sophisticated refactoring while maintaining all tests green. It applies design patterns, improves code quality, and optimizes performance with the safety of comprehensive test coverage.]

Usage

Use Task tool with subagent_type="tdd-orchestrator" to perform safe refactoring.

Prompt: "Refactor this code while keeping all tests green: $ARGUMENTS. Apply TDD refactor phase:

Core Process

1. Pre-Assessment

  • Run tests to establish green baseline
  • Analyze code smells and test coverage
  • Document current performance metrics
  • Create incremental refactoring plan

2. Code Smell Detection

  • Duplicated code → Extract methods/classes
  • Long methods → Decompose into focused functions
  • Large classes → Split responsibilities
  • Long parameter lists → Parameter objects
  • Feature Envy → Move methods to appropriate classes
  • Primitive Obsession → Value objects
  • Switch statements → Polymorphism
  • Dead code → Remove

3. Design Patterns

  • Apply Creational (Factory, Builder, Singleton)
  • Apply Structural (Adapter, Facade, Decorator)
  • Apply Behavioral (Strategy, Observer, Command)
  • Apply Domain (Repository, Service, Value Objects)
  • Use patterns only where they add clear value

4. SOLID Principles

  • Single Responsibility: One reason to change
  • Open/Closed: Open for extension, closed for modification
  • Liskov Substitution: Subtypes substitutable
  • Interface Segregation: Small, focused interfaces
  • Dependency Inversion: Depend on abstractions

5. Refactoring Techniques

  • Extract Method/Variable/Interface
  • Inline unnecessary indirection
  • Rename for clarity
  • Move Method/Field to appropriate classes
  • Replace Magic Numbers with constants
  • Encapsulate fields
  • Replace Conditional with Polymorphism
  • Introduce Null Object

6. Performance Optimization

  • Profile to identify bottlenecks
  • Optimize algorithms and data structures
  • Implement caching where beneficial
  • Reduce database queries (N+1 elimination)
  • Lazy loading and pagination
  • Always measure before and after

7. Incremental Steps

  • Make small, atomic changes
  • Run tests after each modification
  • Commit after each successful refactoring
  • Keep refactoring separate from behavior changes
  • Use scaffolding when needed

8. Architecture Evolution

  • Layer separation and dependency management
  • Module boundaries and interface definition
  • Event-driven patterns for decoupling
  • Database access pattern optimization

9. Safety Verification

  • Run full test suite after each change
  • Performance regression testing
  • Mutation testing for test effectiveness
  • Rollback plan for major changes

10. Advanced Patterns

  • Strangler Fig: Gradual legacy replacement
  • Branch by Abstraction: Large-scale changes
  • Parallel Change: Expand-contract pattern
  • Mikado Method: Dependency graph navigation

Output Requirements

  • Refactored code with improvements applied
  • Test results (all green)
  • Before/after metrics comparison
  • Applied refactoring techniques list
  • Performance improvement measurements
  • Remaining technical debt assessment

Safety Checklist

Before committing:

  • ✓ All tests pass (100% green)
  • ✓ No functionality regression
  • ✓ Performance metrics acceptable
  • ✓ Code coverage maintained/improved
  • ✓ Documentation updated

Recovery Protocol

If tests fail:

  • Immediately revert last change
  • Identify breaking refactoring
  • Apply smaller incremental changes
  • Use version control for safe experimentation

Example: Extract Method Pattern

Before:

class OrderProcessor {
  processOrder(order: Order): ProcessResult {
    // Validation
    if (!order.customerId || order.items.length === 0) {
      return { success: false, error: "Invalid order" };
    }

    // Calculate totals
    let subtotal = 0;
    for (const item of order.items) {
      subtotal += item.price * item.quantity;
    }
    let total = subtotal + (subtotal * 0.08) + (subtotal > 100 ? 0 : 15);

    // Process payment...
    // Update inventory...
    // Send confirmation...
  }
}

After:

class OrderProcessor {
  async processOrder(order: Order): Promise<ProcessResult> {
    const validation = this.validateOrder(order);
    if (!validation.isValid) return ProcessResult.failure(validation.error);

    const orderTotal = OrderTotal.calculate(order);
    const inventoryCheck = await this.inventoryService.checkAvailability(order.items);
    if (!inventoryCheck.available) return ProcessResult.failure(inventoryCheck.reason);

    await this.paymentService.processPayment(order.paymentMethod, orderTotal.total);
    await this.inventoryService.reserveItems(order.items);
    await this.notificationService.sendOrderConfirmation(order, orderTotal);

    return ProcessResult.success(order.id, orderTotal.total);
  }

  private validateOrder(order: Order): ValidationResult {
    if (!order.customerId) return ValidationResult.invalid("Customer ID required");
    if (order.items.length === 0) return ValidationResult.invalid("Order must contain items");
    return ValidationResult.valid();
  }
}

Applied: Extract Method, Value Objects, Dependency Injection, Async patterns

Code to refactor: $ARGUMENTS"

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

04

需要参考平台分布和安装热度时

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

补充不同宿主或平台的使用分布数据

能力 5

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

28%
按下载量换算46

windsurf

23.97%
按下载量换算40

trae

16.76%
按下载量换算28

Claude Code

13.83%
按下载量换算23

Antigravity

7.44%
按下载量换算12

qoder

3.73%
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。

来源信息

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