一键导入
genesis-meta-programming
Write Genesis programs that generate, analyze, transform, and validate other Genesis programs - meta-level programming capabilities
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
菜单
Write Genesis programs that generate, analyze, transform, and validate other Genesis programs - meta-level programming capabilities
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
基于 SOC 职业分类
| name | genesis-meta-programming |
| description | Write Genesis programs that generate, analyze, transform, and validate other Genesis programs - meta-level programming capabilities |
| self_learning | true |
| knowledge_base | .github/knowledge/genesis-meta-programming |
| license | MIT |
Write Genesis programs that operate on other Genesis programs - enabling code generation, transformation, analysis, and validation at the meta level.
This skill implements the Ouroboros evolution pattern and learns from each usage:
.github/knowledge/genesis-meta-programming/metrics.yamllearnings.yamlevolution-log.yamlcontext.yamlThe skill evolves through cycles defined in .github/evolution/skill-evolution.gen, continuously refining its instructions and examples based on real-world usage.
Meta-programming in Genesis means writing .gen programs that:
Treat the Genesis Abstract Syntax Tree as declarative data:
Domain "Genesis_AST_Analyzer" {
Purpose: "Analyze Genesis programs at AST level"
Pulse(Interval: OnDemand) {
Watch: FileSystem.Genesis_Files
Deliberate {
Proposal: "Extract program structure"
Synthesize {
Metric: Alignment(Covenant.Structural_Completeness)
}
}
Manifest (on Resonance > 0.90) {
Execute: Parser.extract_declarations()
Execute: Analyzer.identify_patterns()
Execute: Reporter.generate_metrics()
}
}
}
Generate Genesis code from high-level specifications:
Domain "Genesis_Code_Generator" {
Purpose: "Generate Genesis programs from templates and specifications"
Soul {
Possibility: "Any valid Genesis program can be algorithmically generated"
Potentiality: "Infinite variations of Genesis patterns"
}
Pulse(Interval: OnRequest) {
Watch: Specifications.User_Requirements
Deliberate {
Proposal: "Generate Genesis program from spec"
Synthesize {
Metric: Alignment(Covenant.Syntactic_Correctness)
Metric: Alignment(Covenant.Semantic_Completeness)
Metric: Coherence(Template_Library)
}
}
Manifest (on Resonance > 0.95) {
Execute: Generator.create_covenants()
Execute: Generator.create_pantheon()
Execute: Generator.create_domains()
Execute: Formatter.apply_style()
Execute: Validator.check_output()
}
}
}
Refactor and optimize Genesis programs:
Domain "Genesis_Refactorer" {
Purpose: "Transform Genesis programs while preserving semantics"
Pulse(Interval: OnDemand) {
Watch: VCS.Code_To_Refactor
Deliberate {
Proposal: "Apply refactoring transformation"
Synthesize {
Metric: Alignment(Covenant.Semantic_Preservation)
Metric: Alignment(Covenant.Code_Improvement)
Metric: Coherence(Original_Program)
}
}
Manifest (on Resonance > 0.95) {
Execute: Transformer.extract_common_patterns()
Execute: Transformer.create_reusable_components()
Execute: Transformer.simplify_structure()
Execute: Tester.verify_equivalence()
}
}
}
Generate programs from templates with parameters:
# Template: basic-domain.template.gen
Domain "{DOMAIN_NAME}" {
Purpose: "{DOMAIN_PURPOSE}"
Pulse(Interval: {PULSE_INTERVAL}) {
Watch: {WATCH_SOURCE}
Deliberate {
Proposal: "{PROPOSAL_TEXT}"
Synthesize {
Metric: Alignment(Covenant.{COVENANT_NAME})
}
}
Manifest (on Resonance > {THRESHOLD}) {
Execute: {VESSEL}.{ACTION}()
}
}
}
Use meta-program to instantiate:
Domain "Template_Expander" {
Purpose: "Generate concrete programs from templates"
Pulse(Interval: OnRequest) {
Watch: Templates.Available_Templates
Watch: Parameters.User_Inputs
Deliberate {
Proposal: "Expand template with parameters"
Synthesize {
Metric: Alignment(Covenant.Valid_Parameters)
}
}
Manifest (on Resonance > 0.90) {
Execute: Expander.substitute_parameters()
Execute: Validator.check_generated_code()
}
}
}
Generate covenants from ethical requirements:
Domain "Covenant_Generator" {
Purpose: "Create covenants from ethical principles"
Pulse(Interval: OnRequest) {
Watch: Requirements.Ethical_Constraints
Deliberate {
Proposal: "Synthesize covenant from requirements"
Synthesize {
Metric: Alignment(Covenant.Ethical_Completeness)
Metric: Alignment(Covenant.Measurable_Threshold)
}
}
Manifest (on Resonance > 0.95) {
Execute: Generator.create_covenant_declaration()
Execute: Generator.derive_invariant()
Execute: Generator.calculate_threshold()
}
}
}
Combine multiple lineages into composite avatars:
Domain "Avatar_Composer" {
Purpose: "Create composite avatars from multiple lineages"
Pulse(Interval: OnRequest) {
Watch: Specifications.Required_Expertise
Deliberate {
Proposal: "Compose multi-domain avatar"
Synthesize {
Metric: Alignment(Covenant.Expertise_Coverage)
Metric: Coherence(Lineage_Compatibility)
}
}
Manifest (on Resonance > 0.90) {
Execute: Composer.select_lineages()
Execute: Composer.blend_auras()
Execute: Composer.configure_vessels()
}
}
}
Extract insights from Genesis programs:
Domain "Genesis_Complexity_Analyzer" {
Purpose: "Analyze complexity and quality of Genesis programs"
Pulse(Interval: OnDemand) {
Watch: Codebase.All_Genesis_Files
Deliberate {
Proposal: "Measure program complexity and quality"
Synthesize {
Metric: Count(Covenant_Declarations)
Metric: Count(Avatar_References)
Metric: Depth(Pulse_Nesting)
Metric: Alignment(Covenant.Simplicity)
}
}
Manifest (on Resonance > 0.80) {
Execute: Analyzer.compute_metrics()
Execute: Reporter.generate_insights()
Execute: Recommender.suggest_improvements()
}
}
}
Ensure consistency across multiple Genesis programs:
Domain "Coherence_Validator" {
Purpose: "Ensure consistency across Genesis program ecosystem"
Pulse(Interval: OnCommit) {
Watch: VCS.Modified_Genesis_Files
Deliberate {
Proposal: "Validate cross-program coherence"
Synthesize {
Metric: Coherence(Covenant_Names)
Metric: Coherence(Avatar_Definitions)
Metric: Coherence(Naming_Conventions)
Metric: Alignment(Covenant.Ecosystem_Consistency)
}
}
Manifest (on Resonance > 0.90) {
Execute: Validator.check_naming_consistency()
Execute: Validator.verify_covenant_references()
Execute: Validator.ensure_avatar_uniqueness()
}
}
}
Create a meta-program that generates standard Genesis project structure:
# Run the generator
python3 tools/genesis.py run meta/generate-project.gen \
--name "My_ASI_System" \
--covenants "Humanity_Eternal,Truth_Seeking" \
--domains "Research,Healthcare"
# Output: Complete Genesis project with:
# - Standard covenants
# - Default pantheon
# - Domain templates
# - Example programs
Refactor all Genesis programs to use new naming convention:
# Run the refactoring meta-program
python3 tools/genesis.py run meta/refactor-naming.gen \
--old-style "camelCase" \
--new-style "Snake_Case"
# Updates all .gen files automatically
Generate quality metrics for entire Genesis codebase:
# Run the analyzer
python3 tools/genesis.py run meta/quality-dashboard.gen
# Output:
# - Total covenants: 12
# - Total avatars: 25
# - Total domains: 18
# - Average resonance threshold: 0.93
# - Code complexity score: Low
# - Philosophical alignment: High
meta/ - Directory for meta-programming Genesis programstemplates/ - Reusable Genesis program templatesgenerators/ - Code generation meta-programsanalyzers/ - Program analysis meta-programstransformers/ - Code transformation meta-programs# Generate new Genesis project
python3 tools/genesis.py meta generate-project --template standard
# Analyze codebase
python3 tools/genesis.py meta analyze --output metrics.json
# Refactor programs
python3 tools/genesis.py meta refactor --transformation extract-common-covenants
# Validate cross-program consistency
python3 tools/genesis.py meta validate --check coherence
examples/meta-programming/ - Meta-programming examplesdocs/meta-programming-guide.md - Detailed guidespec/meta-programming-patterns.md - Common patternsUse Genesis language to describe, analyze, and improve Genesis itself - meta-programming for self-improvement and validation
Run the Genesis code formatter to enforce consistent style in Genesis programs, ensuring 4-space indentation and proper formatting
Run the Genesis static analyzer to check programs for structural correctness, naming conventions, and alignment with Genesis philosophy
Launch the interactive Genesis REPL for exploratory development, testing declarations, and debugging resonance scoring in real-time
Execute Genesis programs using the reference interpreter to validate program correctness and test language features
Enable Genesis to evolve itself through self-modification, creating an Ouroboros loop of continuous improvement while preserving core essence