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generate-custom-instructions-from-codebase

github/awesome-copilot github/awesome-copilot

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.

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Updated time August 26, 2026

About generate-custom-instructions-from-codebase

This skill generates migration and code-evolution instructions for GitHub Copilot by analyzing the differences between two versions of a project — two branches, commits, or tags. It solves the problem of maintaining consistency during technology migrations, major refactoring, or framework upgrades: once the transformation patterns between a before and after state are captured, Copilot can automatically apply the same changes during future work rather than relying on developers to remember each rule.

The skill is driven by configuration variables (migration type, source and target references, analysis scope, change focus, automation level, whether to generate examples, and whether validation is required). It defines a multi-phase methodology: a comparative state analysis that detects structural changes, dependency changes, and code transformations tailored to the migration type (framework version, architecture refactoring, technology migration); extraction of repetitive transformation patterns into before/after correspondence rules; and generation of a `.github/copilot-migration-instructions.md` file. That output documents mandatory transformations, transformations requiring validation, API correspondence tables, new patterns to adopt, obsolete patterns to avoid, file-type-specific guidance, validation and security control points, manual-escalation cases, and monitoring metrics. Optional phases add contextual before/after code examples and iterative rule optimization.

It targets developers, architects, and teams undertaking systematic migrations who want Copilot to reproduce their evolution decisions consistently. Use cases include upgrading a framework version, refactoring architecture, or replacing one technology with another while keeping conventions coherent and avoiding deprecated patterns. The skill reads version-control history and project files and produces an instruction document; it performs git comparisons and file analysis but no destructive operations or credential handling, so it rates as low risk.

FAQ

What does this skill produce?

A .github/copilot-migration-instructions.md file containing automatic transformation rules, API correspondence tables, patterns to adopt and avoid, validation control points, and monitoring metrics that guide Copilot during future changes.

What inputs does it need?

Configuration variables including the migration type, a source and target reference (branch, commit, or tag), the analysis scope, the change focus, an automation level, and flags for generating examples and requiring validation.

What kinds of migrations does it handle?

Framework version upgrades, architecture refactoring, technology migrations, dependency updates, and pattern changes — with the analysis tailored to the selected migration type.

Does the automation level change the output?

Yes. A Conservative level omits mandatory automatic-transformation rules, while Balanced and Aggressive include them; Aggressive also adds iterative optimization to maximize automation and reduce false positives.

How does it identify the transformation rules?

It compares the two project states — folder structure, dependencies, and code — extracts repetitive transformations, and builds a before/after correspondence matrix, including breaking changes and obsolete patterns.

View on GitHub

Configuration Variables

${MIGRATION_TYPE="Framework Version|Architecture Refactoring|Technology Migration|Dependencies Update|Pattern Changes"}<!-- Type of migration or evolution -->${SOURCE_REFERENCE="branch|commit|tag"}<!-- Source reference point (before state) -->${TARGET_REFERENCE="branch|commit|tag"}  <!-- Target reference point (after state) -->${ANALYSIS_SCOPE="Entire project|Specific folder|Modified files only"}<!-- Scope of analysis -->${CHANGE_FOCUS="Breaking Changes|New Conventions|Obsolete Patterns|API Changes|Configuration"}<!-- Main aspect of changes -->${AUTOMATION_LEVEL="Conservative|Balanced|Aggressive"}<!-- Level of automation for Copilot suggestions -->${GENERATE_EXAMPLES="true|false"}<!-- Include transformation examples -->${VALIDATION_REQUIRED="true|false"}<!-- Require validation before application -->

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 GenerationCreate 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${GENERATE_EXAMPLES == "true" ?   "### Configuration Files   [CONFIG_TRANSFORMATION_EXAMPLES]      ### Main Source Files   [SOURCE_TRANSFORMATION_EXAMPLES]      ### Test Files   [TEST_TRANSFORMATION_EXAMPLES]" : ""}## Validation and Security### Automatic Control Points- Verifications to perform after each transformation- Tests to run to validate changes- Performance metrics to monitor- Compatibility checks to perform### Manual EscalationSituations requiring human intervention:- [COMPLEX_CASES_LIST]- [ARCHITECTURAL_DECISIONS]- [BUSINESS_IMPACTS]## Migration Monitoring### Tracking Metrics- Percentage of code automatically migrated- Number of manual validations required- Error rate of automatic transformations- Average migration time per file### Error ReportingHow to report incorrect transformations to Copilot:- Feedback patterns to improve rules- Exceptions to document- Adjustments to make to instructions\`\`\`### Phase 3: Contextual Examples Generation${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 ResultMigration instructions that enable GitHub Copilot to:1. **Automatically apply** the same transformations during future modifications2. **Maintain consistency** with newly adopted conventions  3. **Avoid obsolete patterns** by automatically proposing alternatives4. **Accelerate future migrations** by capitalizing on acquired experience5. **Reduce errors** by automating repetitive transformationsThese 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.

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git clone https://github.com/github/awesome-copilot/blob/main/skills/generate-custom-instructions-from-codebase/SKILL.md # Copy SKILL.md to your .claude/skills/ directory

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