
React Patterns
- 1.5k installs
- 238k repo stars
- Updated August 5, 2026
- affaan-m/everything-claude-code
This is a copy of react-patterns by affaan-m - installs and ranking accrue to the original listing.
react-patterns is an agent skill that applies idiomatic React 18/19 component, hook, and accessibility patterns for developers writing and reviewing JSX and TSX code.
About
react-patterns is an agent skill from affaan-m/everything-claude-code that encodes idiomatic React 18/19 guidance for hooks discipline, server and client component boundaries, Suspense with error boundaries, form actions, data fetching, state management decision trees, and accessibility-first composition. Developers reach for react-patterns when writing or modifying React function components, reviewing JSX/TSX files, migrating class or useEffect-heavy code, or choosing state and composition strategies. The skill activates during component design and code review rather than project setup or release automation.
- Enforces render-as-pure-function principle and eliminates unnecessary useEffect for derived values
- Guides decisions between local state, lifted state, context, and external stores with decision trees
- Handles React 19 form actions, Suspense, error boundaries, and Server/Client Component boundaries
- Supports migration from class components and older forwardRef/useEffect patterns
- Applies to writing, reviewing, or refactoring any JSX/TSX file
React Patterns by the numbers
- 1,484 all-time installs (skills.sh)
- +248 installs in the week ending Aug 4, 2026 (Skillselion tracking)
- Data as of Aug 5, 2026 (Skillselion catalog sync)
npx skills add https://github.com/affaan-m/everything-claude-code --skill react-patternsAdd your badge
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| Installs | 1.5k |
|---|---|
| repo stars | ★ 238k |
| Last updated | August 5, 2026 |
| Repository | affaan-m/everything-claude-code ↗ |
How do you write idiomatic React 19 server components?
Produce clean, idiomatic React 18/19 components that follow hooks discipline, proper server/client boundaries, and accessibility standards.
Who is it for?
Frontend developers writing or reviewing React 18/19 function components, custom hooks, and accessible component trees in Next.js or SPA codebases.
Skip if: Teams building non-React frontends, backend-only services, or projects that do not use JSX/TSX component architecture.
When should I use this skill?
User writes or modifies React components, reviews JSX/TSX, migrates class components, or asks about hooks, Suspense, form actions, or React state decisions.
What you get
Refactored React components, hook-safe patterns, server/client boundary decisions, and accessibility-checked JSX/TSX.
- Refactored React components
- Documented state and boundary decisions
By the numbers
- Targets React 18 and React 19 APIs and conventions
Files
React Patterns
Idiomatic React 18/19 patterns for building robust, accessible, performant component trees.
When to Activate
- Writing or modifying React function components, custom hooks, or component trees
- Reviewing JSX/TSX files
- Designing state shape or component composition
- Migrating class components or older
forwardRef/useEffect-heavy code - Choosing between local state, lifted state, context, and external stores
- Working with Server Components / Client Components (Next.js App Router, RSC)
- Implementing forms with React 19 actions or controlled inputs
- Wiring data fetching with TanStack Query / SWR / RSC
Core Principles
1. Render is a Pure Function of Props and State
// Good: derive during render
function Cart({ items }: { items: CartItem[] }) {
const total = items.reduce((sum, i) => sum + i.price * i.qty, 0);
return <span>{formatMoney(total)}</span>;
}
// Bad: derived state stored separately
function Cart({ items }: { items: CartItem[] }) {
const [total, setTotal] = useState(0);
useEffect(() => {
setTotal(items.reduce((sum, i) => sum + i.price * i.qty, 0));
}, [items]);
return <span>{formatMoney(total)}</span>;
}Derived state in useEffect adds a render cycle, can desync, and obscures the data flow.
2. Side Effects Outside Render
Effects, mutations, network calls, and subscriptions live in event handlers or useEffect — never in the render body.
3. Composition Over Inheritance
React has no inheritance model for components. Compose with children, render props, or component props.
Hooks Discipline
See rules/react/hooks.md for the full ruleset. Highlights:
- Top-level only, never conditional
- Cleanup every subscription, interval, listener
- Functional updater (
setX(prev => prev + 1)) when new state depends on old - Default position: do not memoize — add
useMemo/useCallbackonly when a profiler or a dependency chain proves it matters - Extract a custom hook only when the same hook sequence appears in 2+ components
State Location Decision Tree
Used by one component?
-> useState inside it
Used by parent + a few descendants?
-> lift to nearest common ancestor
Used across distant branches AND low-frequency reads (theme, auth, locale)?
-> React Context
High-frequency updates shared across the tree?
-> external store (Zustand, Jotai, Redux Toolkit)
Derived from a server?
-> server-state library (TanStack Query, SWR, RSC fetch)Most pages do not need context or a global store. Resist abstraction until duplicated lifting becomes painful.
Server / Client Components (RSC)
// Server Component - default, async, never ships JS for itself
export default async function ProductPage({ params }: { params: { id: string } }) {
const product = await db.product.findUnique({ where: { id: params.id } });
if (!product) notFound();
return <ProductView product={product} />;
}
// Client Component - opt in with "use client"
"use client";
export function AddToCartButton({ productId }: { productId: string }) {
const [pending, startTransition] = useTransition();
return (
<button
disabled={pending}
onClick={() => startTransition(() => addToCart(productId))}
>
{pending ? "Adding..." : "Add to cart"}
</button>
);
}Boundaries:
- Server -> Client: pass serializable props or
children - Client -> Server: invoke Server Actions via
<form action={...}>or imperatively from event handlers - Never
importa Server Component from a Client Component file — compose them viachildreninstead
Suspense + Error Boundaries
<ErrorBoundary fallback={<ErrorView />}>
<Suspense fallback={<UserSkeleton />}>
<UserDetail id={id} />
</Suspense>
</ErrorBoundary>- Place Suspense boundaries close to the data, not at the route root — progressively reveal content
- Error Boundary remains a class API; use
react-error-boundaryfor a hook-friendly wrapper - A boundary catches errors thrown during render, lifecycle, and constructors of its children — NOT in event handlers or async code
Forms
React 19 form actions (preferred for new code)
React 19+: This example usesuseActionState. For React 18, useuseFormStatefromreact-dominstead.
"use client";
import { useActionState } from "react";
const initial = { error: null as string | null };
async function updateUserAction(_prev: typeof initial, formData: FormData) {
"use server";
const parsed = UserSchema.safeParse(Object.fromEntries(formData));
if (!parsed.success) return { error: "Invalid input" };
await db.user.update({ where: { id: parsed.data.id }, data: parsed.data });
return { error: null };
}
export function UserForm() {
const [state, formAction, pending] = useActionState(updateUserAction, initial);
return (
<form action={formAction}>
<input name="name" required />
<button type="submit" disabled={pending}>Save</button>
{state.error && <p role="alert">{state.error}</p>}
</form>
);
}Controlled inputs
Use controlled when the value drives other UI, formats on every keystroke, or implements real-time validation.
Complex forms
For multi-step forms, dynamic field arrays, or cross-field validation: use a library (React Hook Form, TanStack Form). Roll-your-own state management for forms past trivial complexity is a maintenance trap.
Data Fetching Decision Matrix
| Need | Tool |
|---|---|
| Per-request data in Next.js App Router | RSC await fetch() |
| Client-side cache + mutations + invalidation | TanStack Query |
| Lightweight client cache + revalidation | SWR |
| Real-time subscriptions | Server-Sent Events, WebSockets, or the lib's subscription API |
| One-off fire-and-forget | fetch() in an event handler |
Avoid useEffect + fetch for application data — race conditions, no cache, no retry, no Suspense integration.
Composition Recipes
Slot via children
<Layout>
<Header />
<Main>{content}</Main>
</Layout>Named slots
<Page header={<Nav />} sidebar={<Filters />}>
<Results />
</Page>Compound components (shared state via Context)
<Tabs defaultValue="profile">
<Tabs.List>
<Tabs.Trigger value="profile">Profile</Tabs.Trigger>
<Tabs.Trigger value="settings">Settings</Tabs.Trigger>
</Tabs.List>
<Tabs.Panel value="profile"><Profile /></Tabs.Panel>
<Tabs.Panel value="settings"><Settings /></Tabs.Panel>
</Tabs>Render prop / function-as-child
Useful when the parent needs to pass parameters to the rendered output:
<DataLoader id={id}>
{({ data, isLoading }) => isLoading ? <Spinner /> : <UserCard user={data} />}
</DataLoader>Modern alternative: a hook (useData(id)) returning the same shape — usually cleaner.
Performance
When React.memo Actually Helps
Wrap a component in React.memo only when:
1. It re-renders frequently 2. Its props are usually the same between renders 3. Its render is measurably expensive
React.memo adds an equality check on every render. If props differ on most renders, the check is pure overhead.
Avoiding Render Cascades
- Lift state down rather than up where possible
- Split context: one context per concern, so a change to
themeContextdoes not re-render auth consumers - Use
useSyncExternalStorefor external state libraries — required for safe concurrent rendering
Lists
- Provide stable
keyprops (database id, not array index) - Virtualize long lists with
@tanstack/react-virtualorreact-windowonce visible item count exceeds ~50 with non-trivial rows
Accessibility-First Composition
- Always render semantic HTML (
<button>,<a>,<nav>,<main>) before reaching forroleattributes - Every interactive element must be reachable by keyboard
- Form inputs need labels —
<label htmlFor>oraria-labelif visually labeled by an icon - Manage focus on route changes and modal open/close
- Run
axein component tests (see skills/react-testing) - Cross-link: skills/accessibility/SKILL.md covers WCAG criteria and pattern libraries
Routing
This skill is router-agnostic. The patterns above work with React Router, TanStack Router, Next.js App Router, Remix Router. Router-specific patterns (loaders, actions, nested layouts) follow the router's documentation — those are framework concerns layered on top of React core.
Out of Scope (Pointer Sections)
- Next.js specifics: App Router data loading, Route Handlers, Middleware, Parallel Routes — separate concern, use Next.js docs
- React Native: Platform-specific patterns differ enough to warrant a separate
react-native-patternsskill (not present yet) - Remix: Loader/action conventions overlap with RSC but follow Remix docs
Related
- Rules: rules/react/ — coding-style, hooks, patterns, security, testing
- Skills: react-performance for the Vercel-derived performance ruleset, frontend-patterns for cross-framework UI concerns, accessibility, angular-developer for framework comparison
- Agents:
react-reviewerfor code review,react-build-resolverfor build/bundler errors - Commands:
/react-review,/react-build,/react-test
Examples
Custom hook for debounced search
function useDebounce<T>(value: T, delay = 300): T {
const [debounced, setDebounced] = useState(value);
useEffect(() => {
const id = setTimeout(() => setDebounced(value), delay);
return () => clearTimeout(id);
}, [value, delay]);
return debounced;
}
function SearchBox() {
const [query, setQuery] = useState("");
const debounced = useDebounce(query, 300);
const { data } = useQuery({
queryKey: ["search", debounced],
queryFn: () => searchApi(debounced),
enabled: debounced.length > 0,
});
return (
<>
<input value={query} onChange={(e) => setQuery(e.target.value)} />
<Results items={data ?? []} />
</>
);
}Optimistic UI with React 19 useOptimistic
"use client";
import { useOptimistic } from "react";
export function MessageList({ messages }: { messages: Message[] }) {
const [optimistic, addOptimistic] = useOptimistic(
messages,
(state, newMessage: Message) => [...state, newMessage],
);
async function send(formData: FormData) {
const text = String(formData.get("text"));
addOptimistic({ id: "pending", text, sender: "me" });
await saveMessage(text);
}
return (
<>
<ul>{optimistic.map((m) => <li key={m.id}>{m.text}</li>)}</ul>
<form action={send}>
<input name="text" />
<button type="submit">Send</button>
</form>
</>
);
}Splitting context to avoid render cascades
// Two contexts: one rarely changes, one frequently
const ThemeContext = createContext<Theme>("light");
const NotificationsContext = createContext<Notification[]>([]);
// A component that only consumes ThemeContext does NOT re-render when notifications changeRelated skills
How it compares
Pick react-patterns over generic frontend skills when the task is specifically React hooks, RSC boundaries, or JSX/TSX review—not general CSS or build tooling.
FAQ
Which React versions does react-patterns cover?
react-patterns documents idiomatic patterns for React 18 and React 19, including hooks discipline, server/client component boundaries, Suspense with error boundaries, form actions, and accessibility-first JSX composition.
When should react-patterns activate during development?
react-patterns activates when writing or modifying React function components and custom hooks, reviewing JSX/TSX files, designing state shape, migrating class or useEffect-heavy code, or choosing component composition strategies.