Design System PatternsSAFE
Multi-harness agentic plugin marketplace for Claude Code, Codex, Cursor, OpenCode, GitHub Copilot, Google Antigravity, and Pi
Overview
Multi-harness agentic plugin marketplace for Claude Code, Codex, Cursor, OpenCode, GitHub Copilot, Google Antigravity, and Pi
adb71e0b2512OBSERVED · 2026-10-01What it tells the agent
The instruction file, verbatim from the audited commit — this is the text the model reads, and the surface the audit's instruction layer examines. Quoted here so you can judge it without cloning anything.
---
name: design-system-patterns
description: Build scalable design systems with design tokens, theming infrastructure, and component architecture patterns. Use when creating design tokens, implementing theme switching, building component libraries, or establishing design system foundations.
---
# Design System Patterns
Master design system architecture to create consistent, maintainable, and scalable UI foundations across web and mobile applications.
## When to Use This Skill
- Creating design tokens for colors, typography, spacing, and shadows
- Implementing light/dark theme switching with CSS custom properties
- Building multi-brand theming systems
- Architecting component libraries with consistent APIs
- Establishing design-to-code workflows with Figma tokens
- Creating semantic token hierarchies (primitive, semantic, component)
- Setting up design system documentation and guidelines
## Core Capabilities
### 1. Design Tokens
- Primitive tokens (raw values: colors, sizes, fonts)
- Semantic tokens (contextual meaning: text-primary, surface-elevated)
- Component tokens (specific usage: button-bg, card-border)
- Token naming conventions and organization
- Multi-platform token generation (CSS, iOS, Android)
### 2. Theming Infrastructure
- CSS custom properties architecture
- Theme context providers in React
- Dynamic theme switching
- System preference detection (prefers-color-scheme)
- Persistent theme storage
- Reduced motion and high contrast modes
### 3. Component Architecture
- Compound component patterns
- Polymorphic components (as prop)
- Variant and size systems
- Slot-based composition
- Headless UI patterns
- Style props and responsive variants
### 4. Token Pipeline
- Figma to code synchronization
- Style Dictionary configuration
- Token transformation and formatting
- CI/CD integration for token updates
## Quick Start
```typescript
// Design tokens with CSS custom properties
const tokens = {
colors: {
// Primitive tokens
gray: {
50: "#fafafa",
100: "#f5f5f5",
900: "#171717",
},
blue: {
500: "#3b82f6",
600: "#2563eb",
},
},
// Semantic tokens (reference primitives)
semantic: {
light: {
"text-primary": "var(--color-gray-900)",
"text-secondary": "var(--color-gray-600)",
"surface-default": "var(--color-white)",
"surface-elevated": "var(--color-gray-50)",
"border-default": "var(--color-gray-200)",
"interactive-primary": "var(--color-blue-500)",
},
dark: {
"text-primary": "var(--color-gray-50)",
"text-secondary": "var(--color-gray-400)",
"surface-default": "var(--color-gray-900)",
"surface-elevated": "var(--color-gray-800)",
"border-default": "var(--color-gray-700)",
"interactive-primary": "var(--color-blue-400)",
},
},
};
```
## Detailed patterns and worked examples
Detailed pattern documentation lives in `references/details.md`. Read that file when the navigation tier above is insufficient.
## Best Practices
1. **Name Tokens by Purpose**: Use semantic names (text-primary) not visual descriptions (dark-gray)
2. **Maintain Token Hierarchy**: Primitives > Semantic > Component tokens
3. **Document Token Usage**: Include usage guidelines with token definitions
4. **Version Tokens**: Treat token changes as API changes with semver
5. **Test Theme Combinations**: Verify all themes work with all components
6. **Automate Token Pipeline**: CI/CD for Figma-to-code synchronization
7. **Provide Migration Paths**: Deprecate tokens gradually with clear alternatives
## Common Issues
- **Token Sprawl**: Too many tokens without clear hierarchy
- **Inconsistent Naming**: Mixed conventions (camelCase vs kebab-case)
- **Missing Dark Mode**: Tokens that don't adapt to theme changes
- **Hardcoded Values**: Using raw values instead of tokens
- **Circular References**: Tokens referencing each other in loops
- **Platform Gaps**: Tokens missing for some platforms (web but not mobile)Trust audit
SAFEgrade B · trust 89/100 Nothing in the source contradicts what it says it does. Grade A is reserved for packages that have also passed the behavioural sandbox.
| Layer | What it checks | Result |
|---|---|---|
| L0 | Provenance & inventory | PASS |
| L1 | Static analysis of the code | NA |
| L2 | Instruction surface (what it tells the agent) | PASS |
| L3 | Class-specific surface | PASS |
| L4 | Behavioural (sandbox) | SKIPPED |
What the source does
- Filesystem
- none-observed
- Network
- none-observed
- Shell
- none-observed
- Dependencies
- pinned
- Secrets in source
- none-found
Findings (1)
CLAUDE.md
Gates applied: no_behavioural_pass.
adb71e0b2512full audit observations/trust-audit/skill/wshobson__design-system-patterns.json · Report an issue / request a re-scanAudit history
Every audit this skill has had.
| Date | Source | Verdict | Grade | Score | Change |
|---|---|---|---|---|---|
| 2026-10-01 | adb71e0b2512 | SAFE | B | 89 | first audit |
Questions
What does the Design System Patterns skill do?
Multi-harness agentic plugin marketplace for Claude Code, Codex, Cursor, OpenCode, GitHub Copilot, Google Antigravity, and Pi
Is Design System Patterns safe to install?
The audit found nothing in the source that contradicts what it says it does, and graded it B (89/100). Grade A is held back for packages that have also passed a sandboxed behavioural run, which is why a clean skill reads B.
What can Design System Patterns access on my machine?
The audit observed no filesystem, network or shell use at all in its source.
How current is this page?
The grade is for one exact copy of the source (adb71e0b2512), read on 2026-10-01. The repository is watched, and a new audit runs when it changes — this is the first audit.