
Arch Patterns
- 38 installs
- 6 repo stars
- Updated March 13, 2026
- alphaonedev/openclaw-graph
arch-patterns is a skill that applies GoF design patterns and SOLID principles to code, suggesting implementations and detecting anti-patterns via the openclaw CLI.
About
This skill applies software design patterns to code: the GoF 23 patterns, SOLID principles, and guidelines like DRY, YAGNI, KISS, and composition over inheritance. It generates code snippets, suggests refactorings, and validates designs for anti-patterns through the openclaw CLI or API. A developer uses it when structuring a new codebase or refactoring legacy code. It authenticates with the OPENCLAW_API_KEY environment variable.
- Suggests GoF 23 patterns and enforces SOLID principles
- Detects anti-patterns and suggests refactorings
Arch Patterns by the numbers
- 38 all-time installs (skills.sh)
- +5 installs in the week ending Jun 23, 2026 (Skillselion tracking)
- Ranked #624 of 1,352 Code Review & Quality skills by installs in the Skillselion catalog
- Data as of Jul 7, 2026 (Skillselion catalog sync)
arch-patterns capabilities & compatibility
- Capabilities
- arch · arch clean · arch api · refactoring · code review
- Use cases
- refactoring · code review
- Pricing
- Bring your own API key
What arch-patterns says it does
This skill equips OpenClaw to assist in applying software architecture patterns, including the GoF 23 patterns (e.g., Factory, Singleton, Observer), SOLID principles
Analyze user code for anti-patterns and suggest fixes, e.g., detecting God Objects.
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| Installs | 38 |
|---|---|
| repo stars | ★ 6 |
| Last updated | March 13, 2026 |
| Repository | alphaonedev/openclaw-graph ↗ |
What it does
Apply GoF patterns and SOLID principles to structure code and detect anti-patterns.
When should I use this skill?
When structuring a new codebase, refactoring, or resolving design issues.
What you get
Pattern implementations, SOLID-compliant refactorings, and anti-pattern fixes.
- pattern implementation snippet
- SOLID refactoring
- anti-pattern fix
By the numbers
- covers the GoF 23 patterns
Files
arch-patterns
Purpose
This skill equips OpenClaw to assist in applying software architecture patterns, including the GoF 23 patterns (e.g., Factory, Singleton, Observer), SOLID principles (Single Responsibility, Open-Closed), and guidelines like DRY (Don't Repeat Yourself), YAGNI (You Aren't Gonna Need It), KISS (Keep It Simple, Stupid), composition over inheritance, and functional programming concepts. Use it to generate code snippets, suggest refactorings, or validate designs.
When to Use
Apply this skill when structuring new codebases, refactoring legacy systems, or resolving design issues. For example, use it for object-oriented designs in languages like Java or Go, or when adopting functional styles in Python. Avoid it for trivial scripts; reserve for projects with >1000 lines or teams >5 members.
Key Capabilities
- GoF Patterns: Suggest implementations like Factory Method (creates objects without specifying class) or Observer (notifies dependents of state changes).
- SOLID Principles: Enforce Single Responsibility (one class does one thing) or Dependency Inversion (depend on abstractions).
- Best Practices: Recommend DRY by extracting repeated code into functions, YAGNI by avoiding premature features, KISS by simplifying complex logic, and favoring composition (e.g., using interfaces) over inheritance.
- Comparisons: Provide code examples contrasting composition vs. inheritance, or functional vs. imperative approaches.
- Validation: Analyze user code for anti-patterns and suggest fixes, e.g., detecting God Objects.
Usage Patterns
To use this skill, invoke OpenClaw via CLI or API with specific pattern queries. Start by providing context like language and problem. For CLI, pipe code snippets; for API, send JSON payloads. Always include the skill ID "arch-patterns" in requests. Example flow: Query a pattern, get a code snippet, then refine with follow-ups. Limit queries to one pattern per call for accuracy.
Common Commands/API
Use the OpenClaw CLI with authentication via $OPENCLAW_API_KEY environment variable. Commands require the skill ID.
- CLI Command:
openclaw run arch-patterns --pattern factory --lang go --input "Create a car factory"
This generates a Go struct for a Factory pattern.
- API Endpoint: POST /api/v1/skills/arch-patterns with JSON body:
{ "pattern": "singleton", "language": "java", "context": "Thread-safe logger" }Response includes a 2-4 line code snippet, e.g., a Java singleton class.
- Config Format: Use YAML for advanced configs, e.g.,
skill: arch-patterns
options:
pattern: strategy
validate: truePass via --config path/to/config.yaml in CLI.
- Flags: Add
--validateto check existing code, or--refactorto suggest changes.
Integration Notes
Integrate this skill into workflows by wrapping it in scripts or IDE plugins. For example, in a CI/CD pipeline, call the API after code commits to enforce SOLID. Set $OPENCLAW_API_KEY for auth. If using with other skills (e.g., code-generation), chain requests: first query arch-patterns for design, then pass output to a compilation skill. Ensure inputs are under 500 characters; split larger codebases. For functional programming, specify paradigms like "fp" in queries to bias responses.
Error Handling
Handle errors by checking response codes: HTTP 400 for invalid patterns (e.g., misspelled "singlton"), 401 for missing $OPENCLAW_API_KEY, or 429 for rate limits. In CLI, errors return as JSON with "error": "Pattern not found". Retry transient errors with exponential backoff. Validate inputs before sending; for example, if a query lacks --lang, OpenClaw defaults to English but errors on code gen. Log errors with timestamps and include full request payloads for debugging.
Concrete Usage Examples
1. Example 1: Implementing Factory Pattern in Go Command: openclaw run arch-patterns --pattern factory --lang go --input "Vehicle creator" Output: A snippet like:
type Factory interface { Create() Vehicle }
func NewCarFactory() Factory { return &CarFactory{} }This creates a Factory for vehicles, ensuring DRY by centralizing object creation.
2. Example 2: Refactoring for SOLID in Java API Call: POST /api/v1/skills/arch-patterns with body:
{ "pattern": "solid", "principle": "single-responsibility", "code": "public class UserService { /* handles users and logging */ }" }Response: Suggests splitting into:
public class UserService { /* only user logic */ }
public class Logger { /* logging logic */ }This applies Single Responsibility to improve maintainability.
Graph Relationships
- Related to: se-architecture (parent cluster), patterns (tag overlap), solid (embedding hint), factory (specific pattern), singleton (pattern), observer (pattern), strategy (pattern).
- Connections: Links to code-generation for implementation, debugging for anti-pattern detection, and optimization for performance tweaks based on KISS/YAGNI.
Related skills
FAQ
Which patterns does arch-patterns cover?
The GoF 23 patterns plus SOLID principles and DRY/YAGNI/KISS guidelines.
Can it detect anti-patterns?
Yes, it analyzes code for anti-patterns like God Objects and suggests fixes.