원클릭으로
react-component-performance
Diagnose slow React components and suggest targeted performance fixes.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
메뉴
Diagnose slow React components and suggest targeted performance fixes.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
SOC 직업 분류 기준
Use when the user wants to draft, scope, or formalize a feature for shipcode — "write a PRD for X", "let's plan X", "scope this out", "what should X do", or when a GitHub issue body needs to be fleshed out before the pipeline plans it. Writes a PRD that maps cleanly onto shipcode's pipeline (objective / acceptanceCriteria / outOfScope / estimatedComplexity) so the planner agent can consume it without re-elicitation. Do NOT use for code edits, debugging, or PR reviews.
Expert in web accessibility (WCAG 2.1 AA compliance) for React/Next.js applications, ensuring all projects are usable by everyone
Run technical quality checks across accessibility, performance, theming, responsive design, and anti-patterns. Generates a scored report with P0-P3 severity ratings and actionable plan. Use when the user wants an accessibility check, performance audit, or technical quality review.
Validate Biome 2.3+ configuration and detect outdated patterns. Ensures proper schema version, domains, assists, and recommended rules. Use before any linting work or when auditing existing projects.
Validate Bun workspace configuration and detect common monorepo issues. Ensures proper workspace setup, dependency catalogs, isolated installs, and Bun 1.3+ best practices.
Comprehensive code review focusing on quality, security, performance, and testing. Use when user says 'review', 'code review', 'check my code', or before merging PRs.
| name | react-component-performance |
| description | Diagnose slow React components and suggest targeted performance fixes. |
| metadata | {"risk":"safe","source":"Dimillian/Skills (MIT)","date_added":"2026-03-25"} |
Identify render hotspots, isolate expensive updates, and apply targeted optimizations without changing UI behavior.
memo only when props are stable.useCallback/useMemo for handlers and derived values.Move a timer or animation counter into a child so the parent list never re-renders on each tick.
// ❌ Before – entire parent (and list) re-renders every second
function Dashboard({ items }: { items: Item[] }) {
const [tick, setTick] = useState(0);
useEffect(() => {
const id = setInterval(() => setTick(t => t + 1), 1000);
return () => clearInterval(id);
}, []);
return (
<>
<Clock tick={tick} />
<ExpensiveList items={items} /> {/* re-renders every second */}
</>
);
}
// ✅ After – only <Clock> re-renders; list is untouched
function Clock() {
const [tick, setTick] = useState(0);
useEffect(() => {
const id = setInterval(() => setTick(t => t + 1), 1000);
return () => clearInterval(id);
}, []);
return <span>{tick}s</span>;
}
function Dashboard({ items }: { items: Item[] }) {
return (
<>
<Clock />
<ExpensiveList items={items} />
</>
);
}
useCallback + memo// ❌ Before – new handler reference on every render busts Row memo
function List({ items }: { items: Item[] }) {
const handleClick = (id: string) => console.log(id); // new ref each render
return items.map(item => <Row key={item.id} item={item} onClick={handleClick} />);
}
// ✅ After – stable handler; Row only re-renders when its own item changes
const Row = memo(({ item, onClick }: RowProps) => (
<li onClick={() => onClick(item.id)}>{item.name}</li>
));
function List({ items }: { items: Item[] }) {
const handleClick = useCallback((id: string) => console.log(id), []);
return items.map(item => <Row key={item.id} item={item} onClick={handleClick} />);
}
// ❌ Before – recomputes on every render
function Summary({ orders }: { orders: Order[] }) {
const total = orders.reduce((sum, o) => sum + o.amount, 0); // runs every render
return <p>Total: {total}</p>;
}
// ✅ After – recomputes only when orders changes
function Summary({ orders }: { orders: Order[] }) {
const total = useMemo(() => orders.reduce((sum, o) => sum + o.amount, 0), [orders]);
return <p>Total: {total}</p>;
}
Load references/examples.md when the user wants a concrete refactor example.