跳到主内容
智客 ZICQ

技能库 智客分类:Agent 工作流 generate-custom-instructions-from-codebase

Generate Custom Instructions From Codebase

GitHub Copilot的迁移和代码进化指令生成器. 分析两个项目版本(branches, controduction,或release)之间的差异,以创建精确的指令,允许Copilot在技术迁移,主要重构,或框架版本升级时保持一致性.

9023 安装量

官方网址:skills.sh

技能介绍

先看中文介绍;官方 description 原文单独保留,不改写 SKILL.md。

做什么

GitHub Copilot的迁移和代码进化指令生成器. 分析两个项目版本(branches, controduction,或release)之间的差异,以创建精确的指令,允许Copilot在技术迁移,主要重构,或框架版本升级时保持一致性.

何时用

官方 description 未单独写出 Use when。按规范,代理会在用户任务与这段 description 的关键词匹配时激活本技能。

代理如何加载

按 Agent Skills 渐进披露:启动时只加载 name 与 description(约 100 token);任务匹配后才读入整份 SKILL.md 正文;scripts/、references/、assets/ 仅在需要时再读。 本文件正文结构:Migration and Code Evolution Instructions Generator、Configuration Variables、Generated Prompt、Phase 1: Comparative State Analysis、Phase 2: Migration Instructions Generation、GitHub Copilot Migration Instructions。

文件分析

文件分析:这是一份仅含 SKILL.md 的指令型技能,代理激活后整份正文进入上下文。

官方 description(原文)

Migration and code evolution instructions generator for GitHub Copilot. Analyzes differences between two project versions (branches, commits, or releases) to create precise instructions allowing Copilot to maintain consistency during technology migrations, major refactoring, or framework version upgrades.

Migration and Code Evolution Instructions GeneratorConfiguration VariablesGenerated PromptPhase 1: Comparative State AnalysisPhase 2: Migration Instructions GenerationGitHub Copilot Migration InstructionsMigration ContextAutomatic Transformation Rules1. Mandatory Transformations2. Transformations with Validation3. API Correspondences4. New Patterns to Adopt

来源分类:skills.sh agent-skill

SKILL.md 与 Agent 调用

官方规范 ↗
name
generate-custom-instructions-from-codebase
description
Migration and code evolution instructions generator for GitHub Copilot. Analyzes differences between two project versions (branches, commits, or releases) to create precise instructions allowing Copilot to maintain consistency during technology migrations, major refactoring, or framework version upgrades.
  1. 发现技能客户端向 Agent 提供名称与描述目录。
  2. 匹配与调用用户指定或任务匹配后,载入 SKILL.md 指令。
  3. 按需加载按步骤读取参考文档、使用脚本与素材。

具体调用语法与可用工具以目标 Agent 客户端为准。 查看调用机制说明 ↗

安装这个技能

Skills CLI ↗

先选择目标 Agent 和安装范围,保留技能包的附属文件,安装后检查客户端能否发现该技能。

交给 Agent 安装

复制安装指令给支持 Agent Skills 的代理,确认其中的目标目录与客户端匹配。

把 Agent Skill「generate-custom-instructions-from-codebase」安装到我的项目:SKILL.md 原文与官方 description 见 https://zicq.com/zh/skills/skl-8150cf08108a5ae5-Generate-Custom-Instructions-From-Codeba.html
请存为 .cursor/skills/generate-custom-instructions-from-codebase/SKILL.md 或 .claude/skills/generate-custom-instructions-from-codebase/SKILL.md,frontmatter 的 name 与 description 保持原样,不要改写。

GitHub 完整包 ↗

终端安装 · Skills CLI

需要 Node.js 与 npx。先查看仓库技能列表,确认实际名称。

npx skills add 'https://github.com/github/awesome-copilot' --list

npx skills add 'https://github.com/github/awesome-copilot' --skill 'generate-custom-instructions-from-codebase'

CLI 会交互选择目标 Agent,默认安装到项目;用户级安装使用 -g。先通过查看命令核对仓库内容,再用 npx skills list 检查已安装技能。

阅读排版
--- name: generate-custom-instructions-from-codebase description: 'Migration and code evolution instructions generator for GitHub Copilot. Analyzes differences between two project versions (branches, commits, or releases) to create precise instructions allowing Copilot to maintain consistency during technology migrations, major refactoring, or framework version upgrades.' --- # Migration and Code Evolution Instructions Generator ## Configuration Variables ``` ${MIGRATION_TYPE="Framework Version|Architecture Refactoring|Technology Migration|Dependencies Update|Pattern Changes"} ${SOURCE_REFERENCE="branch|commit|tag"} ${TARGET_REFERENCE="branch|commit|tag"} ${ANALYSIS_SCOPE="Entire project|Specific folder|Modified files only"} ${CHANGE_FOCUS="Breaking Changes|New Conventions|Obsolete Patterns|API Changes|Configuration"} ${AUTOMATION_LEVEL="Conservative|Balanced|Aggressive"} ${GENERATE_EXAMPLES="true|false"} ${VALIDATION_REQUIRED="true|false"} ``` ## Generated Prompt ``` "Analyze code evolution between two project states to generate precise migration instructions for GitHub Copilot. These instructions will guide Copilot to automatically apply the same transformation patterns during future modifications. Follow this methodology: ### Phase 1: Comparative State Analysis #### Structural Changes Detection - Compare folder structure between ${SOURCE_REFERENCE} and ${TARGET_REFERENCE} - Identify moved, renamed, or deleted files - Analyze changes in configuration files - Document new dependencies and removed ones #### Code Transformation Analysis ${MIGRATION_TYPE == "Framework Version" ? "- Identify API changes between framework versions - Analyze new features being used - Document obsolete methods/properties - Note syntax or convention changes" : ""} ${MIGRATION_TYPE == "Architecture Refactoring" ? "- Analyze architectural pattern changes - Identify new abstractions introduced - Document responsibility reorganization - Note changes in data flows" : ""} ${MIGRATION_TYPE == "Technology Migration" ? "- Analyze replacement of one technology with another - Identify functional equivalences - Document API and syntax changes - Note new dependencies and configurations" : ""} #### Transformation Pattern Extraction - Identify repetitive transformations applied - Analyze conversion rules from old to new format - Document exceptions and special cases - Create before/after correspondence matrix ### Phase 2: Migration Instructions Generation Create a `.github/copilot-migration-instructions.md` file with this structure: \`\`\`markdown # GitHub Copilot Migration Instructions ## Migration Context - **Type**: ${MIGRATION_TYPE} - **From**: ${SOURCE_REFERENCE} - **To**: ${TARGET_REFERENCE} - **Date**: [GENERATION_DATE] - **Scope**: ${ANALYSIS_SCOPE} ## Automatic Transformation Rules ### 1. Mandatory Transformations ${AUTOMATION_LEVEL != "Conservative" ? "[AUTOMATIC_TRANSFORMATION_RULES] - **Old Pattern**: [OLD_CODE] - **New Pattern**: [NEW_CODE] - **Trigger**: When to detect this pattern - **Action**: Transformation to apply automatically" : ""} ### 2. Transformations with Validation ${VALIDATION_REQUIRED == "true" ? "[TRANSFORMATIONS_WITH_VALIDATION] - **Detected Pattern**: [DESCRIPTION] - **Suggested Transformation**: [NEW_APPROACH] - **Required Validation**: [VALIDATION_CRITERIA] - **Alternatives**: [ALTERNATIVE_OPTIONS]" : ""} ### 3. API Correspondences ${CHANGE_FOCUS == "API Changes" || MIGRATION_TYPE == "Framework Version" ? "[API_CORRESPONDENCE_TABLE] | Old API | New API | Notes | Example | | --------- | --------- | --------- | -------------- | | [OLD_API] | [NEW_API] | [CHANGES] | [CODE_EXAMPLE] | " : ""} | ### 4. New Patterns to Adopt [DETECTED_EMERGING_PATTERNS] - **Pattern**: [PATTERN_NAME] - **Usage**: [WHEN_TO_USE] - **Implementation**: [HOW_TO_IMPLEMENT] - **Benefits**: [ADVANTAGES] ### 5. Obsolete Patterns to Avoid [DETECTED_OBSOLETE_PATTERNS] - **Obsolete Pattern**: [OLD_PATTERN] - **Why Avoid**: [REASONS] - **Alternative**: [NEW_PATTERN] - **Migration**: [CONVERSION_STEPS] ## File Type Specific Instructions ${GENERATE_EXAMPLES == "true" ? "### Configuration Files [CONFIG_TRANSFORMATION_EXAMPLES] ### Main Source Files [SOURCE_TRANSFORMATION_EXAMPLES] ### Test Files [TEST_TRANSFORMATION_EXAMPLES]" : ""} ## Validation and Security ### Automatic Control Points - Verifications to perform after each transformation - Tests to run to validate changes - Performance metrics to monitor - Compatibility checks to perform ### Manual Escalation Situations requiring human intervention: - [COMPLEX_CASES_LIST] - [ARCHITECTURAL_DECISIONS] - [BUSINESS_IMPACTS] ## Migration Monitoring ### Tracking Metrics - Percentage of code automatically migrated - Number of manual validations required - Error rate of automatic transformations - Average migration time per file ### Error Reporting How to report incorrect transformations to Copilot: - Feedback patterns to improve rules - Exceptions to document - Adjustments to make to instructions \`\`\` ### Phase 3: Contextual Examples Generation ${GENERATE_EXAMPLES == "true" ? "#### Transformation Examples For each identified pattern, generate: \`\`\` // BEFORE (${SOURCE_REFERENCE}) [OLD_CODE_EXAMPLE] // AFTER (${TARGET_REFERENCE}) [NEW_CODE_EXAMPLE] // COPILOT INSTRUCTIONS When you see this pattern [TRIGGER], transform it to [NEW_PATTERN] following these steps: [STEPS] \`\`\`" : ""} ### Phase 4: Validation and Optimization #### Instructions Testing - Apply instructions on test code - Verify transformation consistency - Adjust rules based on results - Document exceptions and edge cases #### Iterative Optimization ${AUTOMATION_LEVEL == "Aggressive" ? "- Refine rules to maximize automation - Reduce false positives in detection - Improve transformation accuracy - Document lessons learned" : ""} ### Final Result Migration instructions that enable GitHub Copilot to: 1. **Automatically apply** the same transformations during future modifications 2. **Maintain consistency** with newly adopted conventions 3. **Avoid obsolete patterns** by automatically proposing alternatives 4. **Accelerate future migrations** by capitalizing on acquired experience 5. **Reduce errors** by automating repetitive transformations These instructions transform Copilot into an intelligent migration assistant, capable of reproducing your technology evolution decisions consistently and reliably. " ``` ## Typical Use Cases ### Framework Version Migration Perfect for documenting the transition from Angular 14 to Angular 17, React Class Components to Hooks, or .NET Framework to .NET Core. Automatically identifies breaking changes and generates corresponding transformation rules. ### Technology Stack Evolution Essential when replacing a technology entirely: jQuery to React, REST to GraphQL, SQL to NoSQL. Creates a comprehensive migration guide with pattern mappings. ### Architecture Refactoring Ideal for large refactorings like Monolith to Microservices, MVC to Clean Architecture, or Component to Composable architecture. Preserves architectural knowledge for future similar transformations. ### Design Pattern Modernization Useful for adopting new patterns: Repository Pattern, Dependency Injection, Observer to Reactive Programming. Documents the rationale and implementation differences. ## Unique Benefits ### 🧠 **Artificial Intelligence Enhancement** Unlike traditional migration documentation, these instructions "train" GitHub Copilot to reproduce your technology evolution decisions automatically during future code modifications. ### 🔄 **Knowledge Capitalization** Transforms specific project experience into reusable rules, avoiding the loss of migration expertise and accelerating future similar transformations. ### 🎯 **Context-Aware Precision** Instead of generic advice, generates instructions tailored to your specific codebase, with real before/after examples from your project evolution. ### ⚡ **Automated Consistency** Ensures that new code additions automatically follow the new conventions, preventing architectural regression and maintaining code evolution coherence.

相关技能

Agent 工作流

Skill Creator

创造有效技能指南。 当用户想创造出新的技能(或更新现有的技能),以专业知识,工作流程,或工具集成来扩展克洛德的能力时,应该使用这种技能.

Agent 工作流

Clawdhub

使用ClawdHub CLI搜索,安装,更新并发布从taladhub.com的代理技能. 需要获取苍蝇上的新技能时使用,将安装的技能同步到最新版本或特定版本,或者发布 npm-instainddhub CLI 的新/更新的技能文件夹.

Agent 工作流

Agent Team Orchestration

管弦乐团多代理团队,任务设定周期,交接协议,审查工作流程. 使用时间: (1)建立2+特派员队伍,具有不同专业,(2)确定任务路线和生命周期(收录框_ spec_建设_审查_完成),(3)在特派员之间制定交接协议,(4)建立审查和质量关口,(5)管理特派员之间的交流和文物共享.

Agent 工作流

Superpowers

Spec-first,TDD,子代理驱动的软件开发工作流程. 当:(1)构建任何新功能或应用——触发脑暴_计划_子代理执行回路,(2)调试出一个bug或测试失败——触发系统性的根起过程,(3)用户说"让我们构建","帮助我计划","我想添加X",或"这个被打破",(4)完成一个功…