Skill-Details
code-review-and-quality
Comprehensive pre-merge code review across core quality axes.
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SKILL.md
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--- name: code-review-and-quality description: Conducts multi-axis code review. Use before merging any change. Use when reviewing code written by yourself, another agent, or a human. Use when you need to assess code quality across multiple dimensions before it enters the main branch. --- # Code Review and Quality ## Overview Multi-dimensional code review with quality gates. Every change gets reviewed before merge — no exceptions. Review covers five axes: correctness, readability, architecture, security, and performance. **The approval standard:** Approve a change when it definitely improves overall code health, even if it isn't perfect. Perfect code doesn't exist — the goal is continuous improvement. Don't block a change because it isn't exactly how you would have written it. If it improves the codebase and follows the project's conventions, approve it. ## When to Use - Before merging any PR or change - After completing a feature implementation - When another agent or model produced code you need to evaluate - When refactoring existing code - After any bug fix (review both the fix and the regression test) ## The Five-Axis Review Every review evaluates code across these dimensions: ### 1. Correctness Does the code do what it claims to do? - Does it match the spec or task requirements? - Are edge cases handled (null, empty, boundary values)? - Are error paths handled (not just the happy path)? - Does it pass all tests? Are the tests actually testing the right things? - Are there off-by-one errors, race conditions, or state inconsistencies? ### 2. Readability & Simplicity Can another engineer (or agent) understand this code without the author explaining it? - Are names descriptive and consistent with project conventions? (No `temp`, `data`, `result` without context) - Is the control flow straightforward (avoid nested ternaries, deep callbacks)? - Is the code organized logically (related code grouped, clear module boundaries)? - Are there any "clever" tricks that should be simplified? - **Could this be done in fewer lines?** (1000 lines where 100 suffice is a failure) - **Are abstractions earning their complexity?** (Don't generalize until the third use case) - Would comments help clarify non-obvious intent? (But don't comment obvious code.) - Are there dead code artifacts: no-op variables (`_unused`), backwards-compat shims, or `// removed` comments? - **Is a new conditional bolted onto an unrelated flow?** That's a design smell, not a nit — push the logic into its own helper, state, or policy instead of tangling an existing path. - **Do repeated conditionals on the same shape appear?** They signal a missing model or dispatcher. A "temporary" branch is usually permanent debt. ### 3. Architecture Does the change fit the system's design? - Does it follow existing patterns or introduce a new one? If new, is it justified? - Does it maintain clean module boundaries? - Is there code duplication that should be shared? - Are dependencies flowing in the right direction (no circular dependencies)? - Is the abstraction level appropriate (not over-engineered, not too coupled)? - **Does this refactor reduce complexity or just relocate it?** Count the concepts a reader must hold to follow the change. If a "cleaner" version leaves that count unchanged, it isn't cleaner — prefer the restructuring that makes whole branches, modes, or layers disappear over one that re-centralizes the same logic. Prefer deleting an abstraction to polishing it. - **Is feature-specific logic leaking into a shared or general-purpose module?** Keep logic in its owning layer, reuse the existing canonical helper instead of a near-duplicate, and don't normalize architectural drift. - **Are type boundaries explicit?** Question gratuitous `any`/`unknown`/optional/casts and silent fallbacks that paper over an unclear invariant — making the boundary explicit often makes the surrounding control flow simpler. ### 4. Security For detailed security guidance, seVollständige Quelle auf GitHub lesen (öffnet externe Seite)