api-and-interface-desi…
Guides stable API and interface design. Use when designing APIs, module boundaries, or any public interface. Use when creating REST or GraphQL endpoints,…
Discovers and invokes agent skills. Use when starting a session, or when you need to decide which skill or workflow applies to the piece of work at hand. This is the meta-skill that governs how all other skills are discovered and invoked.
$ npx -y skills add addyosmani/agent-skills --skill using-agent-skills --agent claude-codeHow it fires
How this skill gets triggered: by you, by Claude, or both.
/using-agent-skillsContext preview
The summary Claude sees to decide when to auto-load this skill.
Discovers and invokes agent skills. Use when starting a session, or when you need to decide which skill or workflow applies to the piece of work at hand. This is the meta-skill that governs how all other skills are discovered and invoked.
name: using-agent-skills description: Discovers and invokes agent skills. Use when starting a session, or when you need to decide which skill or workflow applies to the piece of work at hand. This is the meta-skill that governs how all other skills are discovered and invoked.
Agent Skills is a collection of engineering workflow skills organized by development phase. Each skill encodes a specific process that senior engineers follow. This meta-skill helps you discover and apply the right skill for your current task.
When a task arrives, identify the development phase and apply the corresponding skill:
Task arrives
│
├── Don't know what you want yet? ──────→ interview-me
├── Have a rough concept, need variants? → idea-refine
├── New project/feature/change? ──→ spec-driven-development
├── No quality bar written down? ──→ constraint-driven-development
├── Have a spec, need tasks? ──────→ planning-and-task-breakdown
├── Implementing code? ────────────→ incremental-implementation
│ ├── UI work? ─────────────────→ frontend-ui-engineering
│ ├── API work? ────────────────→ api-and-interface-design
│ ├── Need better context? ─────→ context-engineering
│ ├── Need doc-verified code? ───→ source-driven-development
│ └── Stakes high / unfamiliar code? ──→ doubt-driven-development
├── Writing/running tests? ────────→ test-driven-development
│ └── Browser-based? ───────────→ browser-testing-with-devtools
├── Something broke? ──────────────→ debugging-and-error-recovery
├── Reviewing code? ───────────────→ code-review-and-quality
│ ├── Too complex? ─────────────→ code-simplification
│ ├── Security concerns? ───────→ security-and-hardening
│ └── Performance concerns? ────→ performance-optimization
├── Committing/branching? ─────────→ git-workflow-and-versioning
├── CI/CD pipeline work? ──────────→ ci-cd-and-automation
├── Deprecating/migrating? ────────→ deprecation-and-migration
├── Writing docs/ADRs? ───────────→ documentation-and-adrs
├── Adding logs/metrics/alerts? ───→ observability-and-instrumentation
└── Deploying/launching? ─────────→ shipping-and-launchThese behaviors apply at all times, across all skills. They are non-negotiable.
Before implementing anything non-trivial, explicitly state your assumptions:
ASSUMPTIONS I'M MAKING: 1. [assumption about requirements] 2. [assumption about architecture] 3. [assumption about scope] → Correct me now or I'll proceed with these.
Don't silently fill in ambiguous requirements. The most common failure mode is making wrong assumptions and running with them unchecked. Surface uncertainty early — it's cheaper than rework.
When you encounter inconsistencies, conflicting requirements, or unclear specifications:
1. **STOP.** Do not proceed with a guess. 2. Name the specific confusion. 3. Present the tradeoff or ask the clarifying question. 4. Wait for resolution before continuing.
**Bad:** Silently picking one interpretation and hoping it's right. **Good:** "I see X in the spec but Y in the existing code. Which takes precedence?"
You are not a yes-machine. When an approach has clear problems:
Sycophancy is a failure mode. "Of course!" followed by implementing a bad idea helps no one. Honest technical disagreement is more valuable than false agreement.
Your natural tendency is to overcomplicate. Actively resist it.
Before finishing any implementation, ask:
If you build 1000 lines and 100 would suffice, you have failed. Prefer the boring, obvious solution. Cleverness is expensive.
Touch only what you're asked to touch.
Do NOT:
Your job is surgical precision, not unsolicited renovation.
Every skill includes a verification step. A task is not complete until verification passes. "Seems right" is never sufficient — there must be evidence (passing tests, build output, runtime data).
Per-skill verification is the local check. The project-wide bar that applies to *every* change, regardless of which skill is active, is the Definition of Done: tests pass, no regressions, behavior verified at runtime, docs updated. See `../../references/definition-of-done.md`. It complements each task's acceptance criteria rather than replacing them.
These are the subtle errors that look like productivity but create problems:
1. Making wrong assumptions without checking 2. Not managing your own confusion — plowing ahead when lost 3. Not surfacing inconsistencies you notice 4. Not presenting tradeoffs on non-obvious decisions 5. Being sycophantic ("Of course!") to approaches with clear problems 6. Overcomplicating code and APIs 7. Modifying code or comments orthogonal to the task 8. Removing things you don't fully understand 9. Building without a spec because "it's obvious" 10. Skipping verification because "it looks right"
1. **Check for an applicable skill before starting work.** Skills encode processes that prevent common mistakes.
2. **Skills are workflows, not suggestions.** Follow the steps i
Production-grade engineering skills for AI coding agents. Skills encode the workflows, quality gates, and best practices that senior engineers use when building software.
Get the whole plugin, auto-invokedRepo: addyosmani/agent-skills
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