<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:_sections:start -->
# Sections

This file defines all sections, their ordering, impact levels, and descriptions.
The section ID (in parentheses) is the filename prefix used to group rules.

---

## 1. Eliminating Waterfalls (async)

**Impact:** CRITICAL  
**Description:** Waterfalls are the #1 performance killer. Each sequential await adds full network latency. Eliminating them yields the largest gains.

## 2. Bundle Size Optimization (bundle)

**Impact:** CRITICAL  
**Description:** Reducing initial bundle size improves Time to Interactive and Largest Contentful Paint.

## 3. Server-Side Performance (server)

**Impact:** HIGH  
**Description:** Optimizing server-side rendering and data fetching eliminates server-side waterfalls and reduces response times.

## 4. Client-Side Data Fetching (client)

**Impact:** MEDIUM-HIGH  
**Description:** Automatic deduplication and efficient data fetching patterns reduce redundant network requests.

## 5. Re-render Optimization (rerender)

**Impact:** MEDIUM  
**Description:** Reducing unnecessary re-renders minimizes wasted computation and improves UI responsiveness.

## 6. Rendering Performance (rendering)

**Impact:** MEDIUM  
**Description:** Optimizing the rendering process reduces the work the browser needs to do.

## 7. JavaScript Performance (js)

**Impact:** LOW-MEDIUM  
**Description:** Micro-optimizations for hot paths can add up to meaningful improvements.

## 8. Advanced Patterns (advanced)

**Impact:** LOW  
**Description:** Advanced patterns for specific cases that require careful implementation.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:_sections:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:_template:start -->
## Rule Title Here

**Impact: MEDIUM (optional impact description)**

Brief explanation of the rule and why it matters. This should be clear and concise, explaining the performance implications.

**Incorrect (description of what's wrong):**

```typescript
// Bad code example here
const bad = example()
```

**Correct (description of what's right):**

```typescript
// Good code example here
const good = example()
```

Reference: [Link to documentation or resource](https://example.com)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:_template:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-effect-event-deps:start -->
## Do Not Put Effect Events in Dependency Arrays

Effect Event functions do not have a stable identity. Their identity intentionally changes on every render. Do not include the function returned by `useEffectEvent` in a `useEffect` dependency array. Keep the actual reactive values as dependencies and call the Effect Event from inside the effect body or subscriptions created by that effect.

**Incorrect (Effect Event added as a dependency):**

```tsx
import { useEffect, useEffectEvent } from 'react'

function ChatRoom({ roomId, onConnected }: {
  roomId: string
  onConnected: () => void
}) {
  const handleConnected = useEffectEvent(onConnected)

  useEffect(() => {
    const connection = createConnection(roomId)
    connection.on('connected', handleConnected)
    connection.connect()

    return () => connection.disconnect()
  }, [roomId, handleConnected])
}
```

Including the Effect Event in dependencies makes the effect re-run every render and triggers the React Hooks lint rule.

**Correct (depend on reactive values, not the Effect Event):**

```tsx
import { useEffect, useEffectEvent } from 'react'

function ChatRoom({ roomId, onConnected }: {
  roomId: string
  onConnected: () => void
}) {
  const handleConnected = useEffectEvent(onConnected)

  useEffect(() => {
    const connection = createConnection(roomId)
    connection.on('connected', handleConnected)
    connection.connect()

    return () => connection.disconnect()
  }, [roomId])
}
```

Reference: [React useEffectEvent: Effect Event in deps](https://react.dev/reference/react/useEffectEvent#effect-event-in-deps)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-effect-event-deps:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-event-handler-refs:start -->
## Store Event Handlers in Refs

Store callbacks in refs when used in effects that shouldn't re-subscribe on callback changes.

**Incorrect (re-subscribes on every render):**

```tsx
function useWindowEvent(event: string, handler: (e) => void) {
  useEffect(() => {
    window.addEventListener(event, handler)
    return () => window.removeEventListener(event, handler)
  }, [event, handler])
}
```

**Correct (stable subscription):**

```tsx
function useWindowEvent(event: string, handler: (e) => void) {
  const handlerRef = useRef(handler)
  useEffect(() => {
    handlerRef.current = handler
  }, [handler])

  useEffect(() => {
    const listener = (e) => handlerRef.current(e)
    window.addEventListener(event, listener)
    return () => window.removeEventListener(event, listener)
  }, [event])
}
```

**Alternative: use `useEffectEvent` if you're on latest React:**

```tsx
import { useEffectEvent } from 'react'

function useWindowEvent(event: string, handler: (e) => void) {
  const onEvent = useEffectEvent(handler)

  useEffect(() => {
    window.addEventListener(event, onEvent)
    return () => window.removeEventListener(event, onEvent)
  }, [event])
}
```

`useEffectEvent` provides a cleaner API for the same pattern: it creates a stable function reference that always calls the latest version of the handler.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-event-handler-refs:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-init-once:start -->
## Initialize App Once, Not Per Mount

Do not put app-wide initialization that must run once per app load inside `useEffect([])` of a component. Components can remount and effects will re-run. Use a module-level guard or top-level init in the entry module instead.

**Incorrect (runs twice in dev, re-runs on remount):**

```tsx
function Comp() {
  useEffect(() => {
    loadFromStorage()
    checkAuthToken()
  }, [])

  // ...
}
```

**Correct (once per app load):**

```tsx
let didInit = false

function Comp() {
  useEffect(() => {
    if (didInit) return
    didInit = true
    loadFromStorage()
    checkAuthToken()
  }, [])

  // ...
}
```

Reference: [Initializing the application](https://react.dev/learn/you-might-not-need-an-effect#initializing-the-application)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-init-once:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-use-latest:start -->
## useEffectEvent for Stable Callback Refs

Access latest values in callbacks without adding them to dependency arrays. Prevents effect re-runs while avoiding stale closures.

**Incorrect (effect re-runs on every callback change):**

```tsx
function SearchInput({ onSearch }: { onSearch: (q: string) => void }) {
  const [query, setQuery] = useState('')

  useEffect(() => {
    const timeout = setTimeout(() => onSearch(query), 300)
    return () => clearTimeout(timeout)
  }, [query, onSearch])
}
```

**Correct (using React's useEffectEvent):**

```tsx
import { useEffectEvent } from 'react';

function SearchInput({ onSearch }: { onSearch: (q: string) => void }) {
  const [query, setQuery] = useState('')
  const onSearchEvent = useEffectEvent(onSearch)

  useEffect(() => {
    const timeout = setTimeout(() => onSearchEvent(query), 300)
    return () => clearTimeout(timeout)
  }, [query])
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:advanced-use-latest:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-api-routes:start -->
## Prevent Waterfall Chains in API Routes

In API routes and Server Actions, start independent operations immediately, even if you don't await them yet.

**Incorrect (config waits for auth, data waits for both):**

```typescript
export async function GET(request: Request) {
  const session = await auth()
  const config = await fetchConfig()
  const data = await fetchData(session.user.id)
  return Response.json({ data, config })
}
```

**Correct (auth and config start immediately):**

```typescript
export async function GET(request: Request) {
  const sessionPromise = auth()
  const configPromise = fetchConfig()
  const session = await sessionPromise
  const [config, data] = await Promise.all([
    configPromise,
    fetchData(session.user.id)
  ])
  return Response.json({ data, config })
}
```

For operations with more complex dependency chains, use `better-all` to automatically maximize parallelism (see Dependency-Based Parallelization).
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-api-routes:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-cheap-condition-before-await:start -->
## Check Cheap Conditions Before Async Flags

When a branch uses `await` for a flag or remote value and also requires a **cheap synchronous** condition (local props, request metadata, already-loaded state), evaluate the cheap condition **first**. Otherwise you pay for the async call even when the compound condition can never be true.

This is a specialization of [Defer Await Until Needed](./async-defer-await.md) for `flag && cheapCondition` style checks.

**Incorrect:**

```typescript
const someFlag = await getFlag()

if (someFlag && someCondition) {
  // ...
}
```

**Correct:**

```typescript
if (someCondition) {
  const someFlag = await getFlag()
  if (someFlag) {
    // ...
  }
}
```

This matters when `getFlag` hits the network, a feature-flag service, or `React.cache` / DB work: skipping it when `someCondition` is false removes that cost on the cold path.

Keep the original order if `someCondition` is expensive, depends on the flag, or you must run side effects in a fixed order.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-cheap-condition-before-await:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-defer-await:start -->
## Defer Await Until Needed

Move `await` operations into the branches where they're actually used to avoid blocking code paths that don't need them.

**Incorrect (blocks both branches):**

```typescript
async function handleRequest(userId: string, skipProcessing: boolean) {
  const userData = await fetchUserData(userId)
  
  if (skipProcessing) {
    // Returns immediately but still waited for userData
    return { skipped: true }
  }
  
  // Only this branch uses userData
  return processUserData(userData)
}
```

**Correct (only blocks when needed):**

```typescript
async function handleRequest(userId: string, skipProcessing: boolean) {
  if (skipProcessing) {
    // Returns immediately without waiting
    return { skipped: true }
  }
  
  // Fetch only when needed
  const userData = await fetchUserData(userId)
  return processUserData(userData)
}
```

**Another example (early return optimization):**

```typescript
// Incorrect: always fetches permissions
async function updateResource(resourceId: string, userId: string) {
  const permissions = await fetchPermissions(userId)
  const resource = await getResource(resourceId)
  
  if (!resource) {
    return { error: 'Not found' }
  }
  
  if (!permissions.canEdit) {
    return { error: 'Forbidden' }
  }
  
  return await updateResourceData(resource, permissions)
}

// Correct: fetches only when needed
async function updateResource(resourceId: string, userId: string) {
  const resource = await getResource(resourceId)
  
  if (!resource) {
    return { error: 'Not found' }
  }
  
  const permissions = await fetchPermissions(userId)
  
  if (!permissions.canEdit) {
    return { error: 'Forbidden' }
  }
  
  return await updateResourceData(resource, permissions)
}
```

This optimization is especially valuable when the skipped branch is frequently taken, or when the deferred operation is expensive.

For `await getFlag()` combined with a cheap synchronous guard (`flag && someCondition`), see [Check Cheap Conditions Before Async Flags](./async-cheap-condition-before-await.md).
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-defer-await:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-dependencies:start -->
## Dependency-Based Parallelization

For operations with partial dependencies, use `better-all` to maximize parallelism. It automatically starts each task at the earliest possible moment.

**Incorrect (profile waits for config unnecessarily):**

```typescript
const [user, config] = await Promise.all([
  fetchUser(),
  fetchConfig()
])
const profile = await fetchProfile(user.id)
```

**Correct (config and profile run in parallel):**

```typescript
import { all } from 'better-all'

const { user, config, profile } = await all({
  async user() { return fetchUser() },
  async config() { return fetchConfig() },
  async profile() {
    return fetchProfile((await this.$.user).id)
  }
})
```

**Alternative without extra dependencies:**

We can also create all the promises first, and do `Promise.all()` at the end.

```typescript
const userPromise = fetchUser()
const profilePromise = userPromise.then(user => fetchProfile(user.id))

const [user, config, profile] = await Promise.all([
  userPromise,
  fetchConfig(),
  profilePromise
])
```

Reference: [https://github.com/shuding/better-all](https://github.com/shuding/better-all)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-dependencies:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-parallel:start -->
## Promise.all() for Independent Operations

When async operations have no interdependencies, execute them concurrently using `Promise.all()`.

**Incorrect (sequential execution, 3 round trips):**

```typescript
const user = await fetchUser()
const posts = await fetchPosts()
const comments = await fetchComments()
```

**Correct (parallel execution, 1 round trip):**

```typescript
const [user, posts, comments] = await Promise.all([
  fetchUser(),
  fetchPosts(),
  fetchComments()
])
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-parallel:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-suspense-boundaries:start -->
## Strategic Suspense Boundaries

Instead of awaiting data in async components before returning JSX, use Suspense boundaries to show the wrapper UI faster while data loads.

**Incorrect (wrapper blocked by data fetching):**

```tsx
async function Page() {
  const data = await fetchData() // Blocks entire page
  
  return (
    <div>
      <div>Sidebar</div>
      <div>Header</div>
      <div>
        <DataDisplay data={data} />
      </div>
      <div>Footer</div>
    </div>
  )
}
```

The entire layout waits for data even though only the middle section needs it.

**Correct (wrapper shows immediately, data streams in):**

```tsx
function Page() {
  return (
    <div>
      <div>Sidebar</div>
      <div>Header</div>
      <div>
        <Suspense fallback={<Skeleton />}>
          <DataDisplay />
        </Suspense>
      </div>
      <div>Footer</div>
    </div>
  )
}

async function DataDisplay() {
  const data = await fetchData() // Only blocks this component
  return <div>{data.content}</div>
}
```

Sidebar, Header, and Footer render immediately. Only DataDisplay waits for data.

**Alternative (share promise across components):**

```tsx
function Page() {
  // Start fetch immediately, but don't await
  const dataPromise = fetchData()
  
  return (
    <div>
      <div>Sidebar</div>
      <div>Header</div>
      <Suspense fallback={<Skeleton />}>
        <DataDisplay dataPromise={dataPromise} />
        <DataSummary dataPromise={dataPromise} />
      </Suspense>
      <div>Footer</div>
    </div>
  )
}

function DataDisplay({ dataPromise }: { dataPromise: Promise<Data> }) {
  const data = use(dataPromise) // Unwraps the promise
  return <div>{data.content}</div>
}

function DataSummary({ dataPromise }: { dataPromise: Promise<Data> }) {
  const data = use(dataPromise) // Reuses the same promise
  return <div>{data.summary}</div>
}
```

Both components share the same promise, so only one fetch occurs. Layout renders immediately while both components wait together.

**When NOT to use this pattern:**

- Critical data needed for layout decisions (affects positioning)
- SEO-critical content above the fold
- Small, fast queries where suspense overhead isn't worth it
- When you want to avoid layout shift (loading → content jump)

**Trade-off:** Faster initial paint vs potential layout shift. Choose based on your UX priorities.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:async-suspense-boundaries:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-analyzable-paths:start -->
## Prefer Statically Analyzable Paths

Build tools work best when import and file-system paths are obvious at build time. If you hide the real path inside a variable or compose it too dynamically, the tool either has to include a broad set of possible files, warn that it cannot analyze the import, or widen file tracing to stay safe.

Prefer explicit maps or literal paths so the set of reachable files stays narrow and predictable. This is the same rule whether you are choosing modules with `import()` or reading files in server/build code.

When analysis becomes too broad, the cost is real:
- Larger server bundles
- Slower builds
- Worse cold starts
- More memory use

### Import Paths

**Incorrect (the bundler cannot tell what may be imported):**

```ts
const PAGE_MODULES = {
  home: './pages/home',
  settings: './pages/settings',
} as const

const Page = await import(PAGE_MODULES[pageName])
```

**Correct (use an explicit map of allowed modules):**

```ts
const PAGE_MODULES = {
  home: () => import('./pages/home'),
  settings: () => import('./pages/settings'),
} as const

const Page = await PAGE_MODULES[pageName]()
```

### File-System Paths

**Incorrect (a 2-value enum still hides the final path from static analysis):**

```ts
const baseDir = path.join(process.cwd(), 'content/' + contentKind)
```

**Correct (make each final path literal at the callsite):**

```ts
const baseDir =
  kind === ContentKind.Blog
    ? path.join(process.cwd(), 'content/blog')
    : path.join(process.cwd(), 'content/docs')
```

In Next.js server code, this matters for output file tracing too. `path.join(process.cwd(), someVar)` can widen the traced file set because Next.js statically analyze `import`, `require`, and `fs` usage.

Reference: [Next.js output](https://nextjs.org/docs/app/api-reference/config/next-config-js/output), [Next.js dynamic imports](https://nextjs.org/learn/seo/dynamic-imports), [Vite features](https://vite.dev/guide/features.html), [esbuild API](https://esbuild.github.io/api/), [Rollup dynamic import vars](https://www.npmjs.com/package/@rollup/plugin-dynamic-import-vars), [Webpack dependency management](https://webpack.js.org/guides/dependency-management/)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-analyzable-paths:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-barrel-imports:start -->
## Avoid Barrel File Imports

Import directly from source files instead of barrel files to avoid loading thousands of unused modules. **Barrel files** are entry points that re-export multiple modules (e.g., `index.js` that does `export * from './module'`).

Popular icon and component libraries can have **up to 10,000 re-exports** in their entry file. For many React packages, **it takes 200-800ms just to import them**, affecting both development speed and production cold starts.

**Why tree-shaking doesn't help:** When a library is marked as external (not bundled), the bundler can't optimize it. If you bundle it to enable tree-shaking, builds become substantially slower analyzing the entire module graph.

**Incorrect (imports entire library):**

```tsx
import { Check, X, Menu } from 'lucide-react'
// Loads 1,583 modules, takes ~2.8s extra in dev
// Runtime cost: 200-800ms on every cold start

import { Button, TextField } from '@mui/material'
// Loads 2,225 modules, takes ~4.2s extra in dev
```

**Correct - Next.js 13.5+ (recommended):**

```js
// next.config.js - automatically optimizes barrel imports at build time
module.exports = {
  experimental: {
    optimizePackageImports: ['lucide-react', '@mui/material']
  }
}
```

```tsx
// Keep the standard imports - Next.js transforms them to direct imports
import { Check, X, Menu } from 'lucide-react'
// Full TypeScript support, no manual path wrangling
```

This is the recommended approach because it preserves TypeScript type safety and editor autocompletion while still eliminating the barrel import cost.

**Correct - Direct imports (non-Next.js projects):**

```tsx
import Button from '@mui/material/Button'
import TextField from '@mui/material/TextField'
// Loads only what you use
```

> **TypeScript warning:** Some libraries (notably `lucide-react`) don't ship `.d.ts` files for their deep import paths. Importing from `lucide-react/dist/esm/icons/check` resolves to an implicit `any` type, causing errors under `strict` or `noImplicitAny`. Prefer `optimizePackageImports` when available, or verify the library exports types for its subpaths before using direct imports.

These optimizations provide 15-70% faster dev boot, 28% faster builds, 40% faster cold starts, and significantly faster HMR.

Libraries commonly affected: `lucide-react`, `@mui/material`, `@mui/icons-material`, `@tabler/icons-react`, `react-icons`, `@headlessui/react`, `@radix-ui/react-*`, `lodash`, `ramda`, `date-fns`, `rxjs`, `react-use`.

Reference: [How we optimized package imports in Next.js](https://vercel.com/blog/how-we-optimized-package-imports-in-next-js)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-barrel-imports:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-conditional:start -->
## Conditional Module Loading

Load large data or modules only when a feature is activated.

**Example (lazy-load animation frames):**

```tsx
function AnimationPlayer({ enabled, setEnabled }: { enabled: boolean; setEnabled: React.Dispatch<React.SetStateAction<boolean>> }) {
  const [frames, setFrames] = useState<Frame[] | null>(null)

  useEffect(() => {
    if (enabled && !frames && typeof window !== 'undefined') {
      import('./animation-frames.js')
        .then(mod => setFrames(mod.frames))
        .catch(() => setEnabled(false))
    }
  }, [enabled, frames, setEnabled])

  if (!frames) return <Skeleton />
  return <Canvas frames={frames} />
}
```

The `typeof window !== 'undefined'` check prevents bundling this module for SSR, optimizing server bundle size and build speed.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-conditional:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-defer-third-party:start -->
## Defer Non-Critical Third-Party Libraries

Analytics, logging, and error tracking don't block user interaction. Load them after hydration.

**Incorrect (blocks initial bundle):**

```tsx
import { Analytics } from '@vercel/analytics/react'

export default function RootLayout({ children }) {
  return (
    <html>
      <body>
        {children}
        <Analytics />
      </body>
    </html>
  )
}
```

**Correct (loads after hydration):**

```tsx
import dynamic from 'next/dynamic'

const Analytics = dynamic(
  () => import('@vercel/analytics/react').then(m => m.Analytics),
  { ssr: false }
)

export default function RootLayout({ children }) {
  return (
    <html>
      <body>
        {children}
        <Analytics />
      </body>
    </html>
  )
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-defer-third-party:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-dynamic-imports:start -->
## Dynamic Imports for Heavy Components

Use `next/dynamic` to lazy-load large components not needed on initial render.

**Incorrect (Monaco bundles with main chunk ~300KB):**

```tsx
import { MonacoEditor } from './monaco-editor'

function CodePanel({ code }: { code: string }) {
  return <MonacoEditor value={code} />
}
```

**Correct (Monaco loads on demand):**

```tsx
import dynamic from 'next/dynamic'

const MonacoEditor = dynamic(
  () => import('./monaco-editor').then(m => m.MonacoEditor),
  { ssr: false }
)

function CodePanel({ code }: { code: string }) {
  return <MonacoEditor value={code} />
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-dynamic-imports:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-preload:start -->
## Preload Based on User Intent

Preload heavy bundles before they're needed to reduce perceived latency.

**Example (preload on hover/focus):**

```tsx
function EditorButton({ onClick }: { onClick: () => void }) {
  const preload = () => {
    if (typeof window !== 'undefined') {
      void import('./monaco-editor')
    }
  }

  return (
    <button
      onMouseEnter={preload}
      onFocus={preload}
      onClick={onClick}
    >
      Open Editor
    </button>
  )
}
```

**Example (preload when feature flag is enabled):**

```tsx
function FlagsProvider({ children, flags }: Props) {
  useEffect(() => {
    if (flags.editorEnabled && typeof window !== 'undefined') {
      void import('./monaco-editor').then(mod => mod.init())
    }
  }, [flags.editorEnabled])

  return <FlagsContext.Provider value={flags}>
    {children}
  </FlagsContext.Provider>
}
```

The `typeof window !== 'undefined'` check prevents bundling preloaded modules for SSR, optimizing server bundle size and build speed.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:bundle-preload:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-event-listeners:start -->
## Deduplicate Global Event Listeners

Use `useSWRSubscription()` to share global event listeners across component instances.

**Incorrect (N instances = N listeners):**

```tsx
function useKeyboardShortcut(key: string, callback: () => void) {
  useEffect(() => {
    const handler = (e: KeyboardEvent) => {
      if (e.metaKey && e.key === key) {
        callback()
      }
    }
    window.addEventListener('keydown', handler)
    return () => window.removeEventListener('keydown', handler)
  }, [key, callback])
}
```

When using the `useKeyboardShortcut` hook multiple times, each instance will register a new listener.

**Correct (N instances = 1 listener):**

```tsx
import useSWRSubscription from 'swr/subscription'

// Module-level Map to track callbacks per key
const keyCallbacks = new Map<string, Set<() => void>>()

function useKeyboardShortcut(key: string, callback: () => void) {
  // Register this callback in the Map
  useEffect(() => {
    if (!keyCallbacks.has(key)) {
      keyCallbacks.set(key, new Set())
    }
    keyCallbacks.get(key)!.add(callback)

    return () => {
      const set = keyCallbacks.get(key)
      if (set) {
        set.delete(callback)
        if (set.size === 0) {
          keyCallbacks.delete(key)
        }
      }
    }
  }, [key, callback])

  useSWRSubscription('global-keydown', () => {
    const handler = (e: KeyboardEvent) => {
      if (e.metaKey && keyCallbacks.has(e.key)) {
        keyCallbacks.get(e.key)!.forEach(cb => cb())
      }
    }
    window.addEventListener('keydown', handler)
    return () => window.removeEventListener('keydown', handler)
  })
}

function Profile() {
  // Multiple shortcuts will share the same listener
  useKeyboardShortcut('p', () => { /* ... */ }) 
  useKeyboardShortcut('k', () => { /* ... */ })
  // ...
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-event-listeners:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-localstorage-schema:start -->
## Version and Minimize localStorage Data

Add version prefix to keys and store only needed fields. Prevents schema conflicts and accidental storage of sensitive data.

**Incorrect:**

```typescript
// No version, stores everything, no error handling
localStorage.setItem('userConfig', JSON.stringify(fullUserObject))
const data = localStorage.getItem('userConfig')
```

**Correct:**

```typescript
const VERSION = 'v2'

function saveConfig(config: { theme: string; language: string }) {
  try {
    localStorage.setItem(`userConfig:${VERSION}`, JSON.stringify(config))
  } catch {
    // Throws in incognito/private browsing, quota exceeded, or disabled
  }
}

function loadConfig() {
  try {
    const data = localStorage.getItem(`userConfig:${VERSION}`)
    return data ? JSON.parse(data) : null
  } catch {
    return null
  }
}

// Migration from v1 to v2
function migrate() {
  try {
    const v1 = localStorage.getItem('userConfig:v1')
    if (v1) {
      const old = JSON.parse(v1)
      saveConfig({ theme: old.darkMode ? 'dark' : 'light', language: old.lang })
      localStorage.removeItem('userConfig:v1')
    }
  } catch {}
}
```

**Store minimal fields from server responses:**

```typescript
// User object has 20+ fields, only store what UI needs
function cachePrefs(user: FullUser) {
  try {
    localStorage.setItem('prefs:v1', JSON.stringify({
      theme: user.preferences.theme,
      notifications: user.preferences.notifications
    }))
  } catch {}
}
```

**Always wrap in try-catch:** `getItem()` and `setItem()` throw in incognito/private browsing (Safari, Firefox), when quota exceeded, or when disabled.

**Benefits:** Schema evolution via versioning, reduced storage size, prevents storing tokens/PII/internal flags.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-localstorage-schema:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-passive-event-listeners:start -->
## Use Passive Event Listeners for Scrolling Performance

Add `{ passive: true }` to touch and wheel event listeners to enable immediate scrolling. Browsers normally wait for listeners to finish to check if `preventDefault()` is called, causing scroll delay.

**Incorrect:**

```typescript
useEffect(() => {
  const handleTouch = (e: TouchEvent) => console.log(e.touches[0].clientX)
  const handleWheel = (e: WheelEvent) => console.log(e.deltaY)
  
  document.addEventListener('touchstart', handleTouch)
  document.addEventListener('wheel', handleWheel)
  
  return () => {
    document.removeEventListener('touchstart', handleTouch)
    document.removeEventListener('wheel', handleWheel)
  }
}, [])
```

**Correct:**

```typescript
useEffect(() => {
  const handleTouch = (e: TouchEvent) => console.log(e.touches[0].clientX)
  const handleWheel = (e: WheelEvent) => console.log(e.deltaY)
  
  document.addEventListener('touchstart', handleTouch, { passive: true })
  document.addEventListener('wheel', handleWheel, { passive: true })
  
  return () => {
    document.removeEventListener('touchstart', handleTouch)
    document.removeEventListener('wheel', handleWheel)
  }
}, [])
```

**Use passive when:** tracking/analytics, logging, any listener that doesn't call `preventDefault()`.

**Don't use passive when:** implementing custom swipe gestures, custom zoom controls, or any listener that needs `preventDefault()`.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-passive-event-listeners:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-swr-dedup:start -->
## Use SWR for Automatic Deduplication

SWR enables request deduplication, caching, and revalidation across component instances.

**Incorrect (no deduplication, each instance fetches):**

```tsx
function UserList() {
  const [users, setUsers] = useState([])
  useEffect(() => {
    fetch('/api/users')
      .then(r => r.json())
      .then(setUsers)
  }, [])
}
```

**Correct (multiple instances share one request):**

```tsx
import useSWR from 'swr'

function UserList() {
  const { data: users } = useSWR('/api/users', fetcher)
}
```

**For immutable data:**

```tsx
import { useImmutableSWR } from '@/lib/swr'

function StaticContent() {
  const { data } = useImmutableSWR('/api/config', fetcher)
}
```

**For mutations:**

```tsx
import { useSWRMutation } from 'swr/mutation'

function UpdateButton() {
  const { trigger } = useSWRMutation('/api/user', updateUser)
  return <button onClick={() => trigger()}>Update</button>
}
```

Reference: [https://swr.vercel.app](https://swr.vercel.app)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:client-swr-dedup:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-batch-dom-css:start -->
## Avoid Layout Thrashing

Avoid interleaving style writes with layout reads. When you read a layout property (like `offsetWidth`, `getBoundingClientRect()`, or `getComputedStyle()`) between style changes, the browser is forced to trigger a synchronous reflow.

**This is OK (browser batches style changes):**
```typescript
function updateElementStyles(element: HTMLElement) {
  // Each line invalidates style, but browser batches the recalculation
  element.style.width = '100px'
  element.style.height = '200px'
  element.style.backgroundColor = 'blue'
  element.style.border = '1px solid black'
}
```

**Incorrect (interleaved reads and writes force reflows):**
```typescript
function layoutThrashing(element: HTMLElement) {
  element.style.width = '100px'
  const width = element.offsetWidth  // Forces reflow
  element.style.height = '200px'
  const height = element.offsetHeight  // Forces another reflow
}
```

**Correct (batch writes, then read once):**
```typescript
function updateElementStyles(element: HTMLElement) {
  // Batch all writes together
  element.style.width = '100px'
  element.style.height = '200px'
  element.style.backgroundColor = 'blue'
  element.style.border = '1px solid black'
  
  // Read after all writes are done (single reflow)
  const { width, height } = element.getBoundingClientRect()
}
```

**Correct (batch reads, then writes):**
```typescript
function avoidThrashing(element: HTMLElement) {
  // Read phase - all layout queries first
  const rect1 = element.getBoundingClientRect()
  const offsetWidth = element.offsetWidth
  const offsetHeight = element.offsetHeight
  
  // Write phase - all style changes after
  element.style.width = '100px'
  element.style.height = '200px'
}
```

**Better: use CSS classes**
```css
.highlighted-box {
  width: 100px;
  height: 200px;
  background-color: blue;
  border: 1px solid black;
}
```
```typescript
function updateElementStyles(element: HTMLElement) {
  element.classList.add('highlighted-box')
  
  const { width, height } = element.getBoundingClientRect()
}
```

**React example:**
```tsx
// Incorrect: interleaving style changes with layout queries
function Box({ isHighlighted }: { isHighlighted: boolean }) {
  const ref = useRef<HTMLDivElement>(null)
  
  useEffect(() => {
    if (ref.current && isHighlighted) {
      ref.current.style.width = '100px'
      const width = ref.current.offsetWidth // Forces layout
      ref.current.style.height = '200px'
    }
  }, [isHighlighted])
  
  return <div ref={ref}>Content</div>
}

// Correct: toggle class
function Box({ isHighlighted }: { isHighlighted: boolean }) {
  return (
    <div className={isHighlighted ? 'highlighted-box' : ''}>
      Content
    </div>
  )
}
```

Prefer CSS classes over inline styles when possible. CSS files are cached by the browser, and classes provide better separation of concerns and are easier to maintain.

See [this gist](https://gist.github.com/paulirish/5d52fb081b3570c81e3a) and [CSS Triggers](https://csstriggers.com/) for more information on layout-forcing operations.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-batch-dom-css:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-function-results:start -->
## Cache Repeated Function Calls

Use a module-level Map to cache function results when the same function is called repeatedly with the same inputs during render.

**Incorrect (redundant computation):**

```typescript
function ProjectList({ projects }: { projects: Project[] }) {
  return (
    <div>
      {projects.map(project => {
        // slugify() called 100+ times for same project names
        const slug = slugify(project.name)
        
        return <ProjectCard key={project.id} slug={slug} />
      })}
    </div>
  )
}
```

**Correct (cached results):**

```typescript
// Module-level cache
const slugifyCache = new Map<string, string>()

function cachedSlugify(text: string): string {
  if (slugifyCache.has(text)) {
    return slugifyCache.get(text)!
  }
  const result = slugify(text)
  slugifyCache.set(text, result)
  return result
}

function ProjectList({ projects }: { projects: Project[] }) {
  return (
    <div>
      {projects.map(project => {
        // Computed only once per unique project name
        const slug = cachedSlugify(project.name)
        
        return <ProjectCard key={project.id} slug={slug} />
      })}
    </div>
  )
}
```

**Simpler pattern for single-value functions:**

```typescript
let isLoggedInCache: boolean | null = null

function isLoggedIn(): boolean {
  if (isLoggedInCache !== null) {
    return isLoggedInCache
  }
  
  isLoggedInCache = document.cookie.includes('auth=')
  return isLoggedInCache
}

// Clear cache when auth changes
function onAuthChange() {
  isLoggedInCache = null
}
```

Use a Map (not a hook) so it works everywhere: utilities, event handlers, not just React components.

Reference: [How we made the Vercel Dashboard twice as fast](https://vercel.com/blog/how-we-made-the-vercel-dashboard-twice-as-fast)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-function-results:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-property-access:start -->
## Cache Property Access in Loops

Cache object property lookups in hot paths.

**Incorrect (3 lookups × N iterations):**

```typescript
for (let i = 0; i < arr.length; i++) {
  process(obj.config.settings.value)
}
```

**Correct (1 lookup total):**

```typescript
const value = obj.config.settings.value
const len = arr.length
for (let i = 0; i < len; i++) {
  process(value)
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-property-access:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-storage:start -->
## Cache Storage API Calls

`localStorage`, `sessionStorage`, and `document.cookie` are synchronous and expensive. Cache reads in memory.

**Incorrect (reads storage on every call):**

```typescript
function getTheme() {
  return localStorage.getItem('theme') ?? 'light'
}
// Called 10 times = 10 storage reads
```

**Correct (Map cache):**

```typescript
const storageCache = new Map<string, string | null>()

function getLocalStorage(key: string) {
  if (!storageCache.has(key)) {
    storageCache.set(key, localStorage.getItem(key))
  }
  return storageCache.get(key)
}

function setLocalStorage(key: string, value: string) {
  localStorage.setItem(key, value)
  storageCache.set(key, value)  // keep cache in sync
}
```

Use a Map (not a hook) so it works everywhere: utilities, event handlers, not just React components.

**Cookie caching:**

```typescript
let cookieCache: Record<string, string> | null = null

function getCookie(name: string) {
  if (!cookieCache) {
    cookieCache = Object.fromEntries(
      document.cookie.split('; ').map(c => c.split('='))
    )
  }
  return cookieCache[name]
}
```

**Important (invalidate on external changes):**

If storage can change externally (another tab, server-set cookies), invalidate cache:

```typescript
window.addEventListener('storage', (e) => {
  if (e.key) storageCache.delete(e.key)
})

document.addEventListener('visibilitychange', () => {
  if (document.visibilityState === 'visible') {
    storageCache.clear()
  }
})
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-cache-storage:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-combine-iterations:start -->
## Combine Multiple Array Iterations

Multiple `.filter()` or `.map()` calls iterate the array multiple times. Combine into one loop.

**Incorrect (3 iterations):**

```typescript
const admins = users.filter(u => u.isAdmin)
const testers = users.filter(u => u.isTester)
const inactive = users.filter(u => !u.isActive)
```

**Correct (1 iteration):**

```typescript
const admins: User[] = []
const testers: User[] = []
const inactive: User[] = []

for (const user of users) {
  if (user.isAdmin) admins.push(user)
  if (user.isTester) testers.push(user)
  if (!user.isActive) inactive.push(user)
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-combine-iterations:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-early-exit:start -->
## Early Return from Functions

Return early when result is determined to skip unnecessary processing.

**Incorrect (processes all items even after finding answer):**

```typescript
function validateUsers(users: User[]) {
  let hasError = false
  let errorMessage = ''
  
  for (const user of users) {
    if (!user.email) {
      hasError = true
      errorMessage = 'Email required'
    }
    if (!user.name) {
      hasError = true
      errorMessage = 'Name required'
    }
    // Continues checking all users even after error found
  }
  
  return hasError ? { valid: false, error: errorMessage } : { valid: true }
}
```

**Correct (returns immediately on first error):**

```typescript
function validateUsers(users: User[]) {
  for (const user of users) {
    if (!user.email) {
      return { valid: false, error: 'Email required' }
    }
    if (!user.name) {
      return { valid: false, error: 'Name required' }
    }
  }

  return { valid: true }
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-early-exit:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-flatmap-filter:start -->
## Use flatMap to Map and Filter in One Pass

**Impact: LOW-MEDIUM (eliminates intermediate array)**

Chaining `.map().filter(Boolean)` creates an intermediate array and iterates twice. Use `.flatMap()` to transform and filter in a single pass.

**Incorrect (2 iterations, intermediate array):**

```typescript
const userNames = users
  .map(user => user.isActive ? user.name : null)
  .filter(Boolean)
```

**Correct (1 iteration, no intermediate array):**

```typescript
const userNames = users.flatMap(user =>
  user.isActive ? [user.name] : []
)
```

**More examples:**

```typescript
// Extract valid emails from responses
// Before
const emails = responses
  .map(r => r.success ? r.data.email : null)
  .filter(Boolean)

// After
const emails = responses.flatMap(r =>
  r.success ? [r.data.email] : []
)

// Parse and filter valid numbers
// Before
const numbers = strings
  .map(s => parseInt(s, 10))
  .filter(n => !isNaN(n))

// After
const numbers = strings.flatMap(s => {
  const n = parseInt(s, 10)
  return isNaN(n) ? [] : [n]
})
```

**When to use:**
- Transforming items while filtering some out
- Conditional mapping where some inputs produce no output
- Parsing/validating where invalid inputs should be skipped
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-flatmap-filter:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-hoist-regexp:start -->
## Hoist RegExp Creation

Don't create RegExp inside render. Hoist to module scope or memoize with `useMemo()`.

**Incorrect (new RegExp every render):**

```tsx
function Highlighter({ text, query }: Props) {
  const regex = new RegExp(`(${query})`, 'gi')
  const parts = text.split(regex)
  return <>{parts.map((part, i) => ...)}</>
}
```

**Correct (memoize or hoist):**

```tsx
const EMAIL_REGEX = /^[^\s@]+@[^\s@]+\.[^\s@]+$/

function Highlighter({ text, query }: Props) {
  const regex = useMemo(
    () => new RegExp(`(${escapeRegex(query)})`, 'gi'),
    [query]
  )
  const parts = text.split(regex)
  return <>{parts.map((part, i) => ...)}</>
}
```

**Warning (global regex has mutable state):**

Global regex (`/g`) has mutable `lastIndex` state:

```typescript
const regex = /foo/g
regex.test('foo')  // true, lastIndex = 3
regex.test('foo')  // false, lastIndex = 0
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-hoist-regexp:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-index-maps:start -->
## Build Index Maps for Repeated Lookups

Multiple `.find()` calls by the same key should use a Map.

**Incorrect (O(n) per lookup):**

```typescript
function processOrders(orders: Order[], users: User[]) {
  return orders.map(order => ({
    ...order,
    user: users.find(u => u.id === order.userId)
  }))
}
```

**Correct (O(1) per lookup):**

```typescript
function processOrders(orders: Order[], users: User[]) {
  const userById = new Map(users.map(u => [u.id, u]))

  return orders.map(order => ({
    ...order,
    user: userById.get(order.userId)
  }))
}
```

Build map once (O(n)), then all lookups are O(1).
For 1000 orders × 1000 users: 1M ops → 2K ops.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-index-maps:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-length-check-first:start -->
## Early Length Check for Array Comparisons

When comparing arrays with expensive operations (sorting, deep equality, serialization), check lengths first. If lengths differ, the arrays cannot be equal.

In real-world applications, this optimization is especially valuable when the comparison runs in hot paths (event handlers, render loops).

**Incorrect (always runs expensive comparison):**

```typescript
function hasChanges(current: string[], original: string[]) {
  // Always sorts and joins, even when lengths differ
  return current.sort().join() !== original.sort().join()
}
```

Two O(n log n) sorts run even when `current.length` is 5 and `original.length` is 100. There is also overhead of joining the arrays and comparing the strings.

**Correct (O(1) length check first):**

```typescript
function hasChanges(current: string[], original: string[]) {
  // Early return if lengths differ
  if (current.length !== original.length) {
    return true
  }
  // Only sort when lengths match
  const currentSorted = current.toSorted()
  const originalSorted = original.toSorted()
  for (let i = 0; i < currentSorted.length; i++) {
    if (currentSorted[i] !== originalSorted[i]) {
      return true
    }
  }
  return false
}
```

This new approach is more efficient because:
- It avoids the overhead of sorting and joining the arrays when lengths differ
- It avoids consuming memory for the joined strings (especially important for large arrays)
- It avoids mutating the original arrays
- It returns early when a difference is found
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-length-check-first:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-min-max-loop:start -->
## Use Loop for Min/Max Instead of Sort

Finding the smallest or largest element only requires a single pass through the array. Sorting is wasteful and slower.

**Incorrect (O(n log n) - sort to find latest):**

```typescript
interface Project {
  id: string
  name: string
  updatedAt: number
}

function getLatestProject(projects: Project[]) {
  const sorted = [...projects].sort((a, b) => b.updatedAt - a.updatedAt)
  return sorted[0]
}
```

Sorts the entire array just to find the maximum value.

**Incorrect (O(n log n) - sort for oldest and newest):**

```typescript
function getOldestAndNewest(projects: Project[]) {
  const sorted = [...projects].sort((a, b) => a.updatedAt - b.updatedAt)
  return { oldest: sorted[0], newest: sorted[sorted.length - 1] }
}
```

Still sorts unnecessarily when only min/max are needed.

**Correct (O(n) - single loop):**

```typescript
function getLatestProject(projects: Project[]) {
  if (projects.length === 0) return null
  
  let latest = projects[0]
  
  for (let i = 1; i < projects.length; i++) {
    if (projects[i].updatedAt > latest.updatedAt) {
      latest = projects[i]
    }
  }
  
  return latest
}

function getOldestAndNewest(projects: Project[]) {
  if (projects.length === 0) return { oldest: null, newest: null }
  
  let oldest = projects[0]
  let newest = projects[0]
  
  for (let i = 1; i < projects.length; i++) {
    if (projects[i].updatedAt < oldest.updatedAt) oldest = projects[i]
    if (projects[i].updatedAt > newest.updatedAt) newest = projects[i]
  }
  
  return { oldest, newest }
}
```

Single pass through the array, no copying, no sorting.

**Alternative (Math.min/Math.max for small arrays):**

```typescript
const numbers = [5, 2, 8, 1, 9]
const min = Math.min(...numbers)
const max = Math.max(...numbers)
```

This works for small arrays, but can be slower or just throw an error for very large arrays due to spread operator limitations. Maximal array length is approximately 124000 in Chrome 143 and 638000 in Safari 18; exact numbers may vary - see [the fiddle](https://jsfiddle.net/qw1jabsx/4/). Use the loop approach for reliability.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-min-max-loop:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-request-idle-callback:start -->
## Defer Non-Critical Work with requestIdleCallback

**Impact: MEDIUM (keeps UI responsive during background tasks)**

Use `requestIdleCallback()` to schedule non-critical work during browser idle periods. This keeps the main thread free for user interactions and animations, reducing jank and improving perceived performance.

**Incorrect (blocks main thread during user interaction):**

```typescript
function handleSearch(query: string) {
  const results = searchItems(query)
  setResults(results)

  // These block the main thread immediately
  analytics.track('search', { query })
  saveToRecentSearches(query)
  prefetchTopResults(results.slice(0, 3))
}
```

**Correct (defers non-critical work to idle time):**

```typescript
function handleSearch(query: string) {
  const results = searchItems(query)
  setResults(results)

  // Defer non-critical work to idle periods
  requestIdleCallback(() => {
    analytics.track('search', { query })
  })

  requestIdleCallback(() => {
    saveToRecentSearches(query)
  })

  requestIdleCallback(() => {
    prefetchTopResults(results.slice(0, 3))
  })
}
```

**With timeout for required work:**

```typescript
// Ensure analytics fires within 2 seconds even if browser stays busy
requestIdleCallback(
  () => analytics.track('page_view', { path: location.pathname }),
  { timeout: 2000 }
)
```

**Chunking large tasks:**

```typescript
function processLargeDataset(items: Item[]) {
  let index = 0

  function processChunk(deadline: IdleDeadline) {
    // Process items while we have idle time (aim for <50ms chunks)
    while (index < items.length && deadline.timeRemaining() > 0) {
      processItem(items[index])
      index++
    }

    // Schedule next chunk if more items remain
    if (index < items.length) {
      requestIdleCallback(processChunk)
    }
  }

  requestIdleCallback(processChunk)
}
```

**With fallback for unsupported browsers:**

```typescript
const scheduleIdleWork = window.requestIdleCallback ?? ((cb: () => void) => setTimeout(cb, 1))

scheduleIdleWork(() => {
  // Non-critical work
})
```

**When to use:**

- Analytics and telemetry
- Saving state to localStorage/IndexedDB
- Prefetching resources for likely next actions
- Processing non-urgent data transformations
- Lazy initialization of non-critical features

**When NOT to use:**

- User-initiated actions that need immediate feedback
- Rendering updates the user is waiting for
- Time-sensitive operations
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-request-idle-callback:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-set-map-lookups:start -->
## Use Set/Map for O(1) Lookups

Convert arrays to Set/Map for repeated membership checks.

**Incorrect (O(n) per check):**

```typescript
const allowedIds = ['a', 'b', 'c', ...]
items.filter(item => allowedIds.includes(item.id))
```

**Correct (O(1) per check):**

```typescript
const allowedIds = new Set(['a', 'b', 'c', ...])
items.filter(item => allowedIds.has(item.id))
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-set-map-lookups:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-tosorted-immutable:start -->
## Use toSorted() Instead of sort() for Immutability

`.sort()` mutates the array in place, which can cause bugs with React state and props. Use `.toSorted()` to create a new sorted array without mutation.

**Incorrect (mutates original array):**

```typescript
function UserList({ users }: { users: User[] }) {
  // Mutates the users prop array!
  const sorted = useMemo(
    () => users.sort((a, b) => a.name.localeCompare(b.name)),
    [users]
  )
  return <div>{sorted.map(renderUser)}</div>
}
```

**Correct (creates new array):**

```typescript
function UserList({ users }: { users: User[] }) {
  // Creates new sorted array, original unchanged
  const sorted = useMemo(
    () => users.toSorted((a, b) => a.name.localeCompare(b.name)),
    [users]
  )
  return <div>{sorted.map(renderUser)}</div>
}
```

**Why this matters in React:**

1. Props/state mutations break React's immutability model - React expects props and state to be treated as read-only
2. Causes stale closure bugs - Mutating arrays inside closures (callbacks, effects) can lead to unexpected behavior

**Browser support (fallback for older browsers):**

`.toSorted()` is available in all modern browsers (Chrome 110+, Safari 16+, Firefox 115+, Node.js 20+). For older environments, use spread operator:

```typescript
// Fallback for older browsers
const sorted = [...items].sort((a, b) => a.value - b.value)
```

**Other immutable array methods:**

- `.toSorted()` - immutable sort
- `.toReversed()` - immutable reverse
- `.toSpliced()` - immutable splice
- `.with()` - immutable element replacement
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:js-tosorted-immutable:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-activity:start -->
## Use Activity Component for Show/Hide

Use React's `<Activity>` to preserve state/DOM for expensive components that frequently toggle visibility.

**Usage:**

```tsx
import { Activity } from 'react'

function Dropdown({ isOpen }: Props) {
  return (
    <Activity mode={isOpen ? 'visible' : 'hidden'}>
      <ExpensiveMenu />
    </Activity>
  )
}
```

Avoids expensive re-renders and state loss.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-activity:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-animate-svg-wrapper:start -->
## Animate SVG Wrapper Instead of SVG Element

Many browsers don't have hardware acceleration for CSS3 animations on SVG elements. Wrap SVG in a `<div>` and animate the wrapper instead.

**Incorrect (animating SVG directly - no hardware acceleration):**

```tsx
function LoadingSpinner() {
  return (
    <svg 
      className="animate-spin"
      width="24" 
      height="24" 
      viewBox="0 0 24 24"
    >
      <circle cx="12" cy="12" r="10" stroke="currentColor" />
    </svg>
  )
}
```

**Correct (animating wrapper div - hardware accelerated):**

```tsx
function LoadingSpinner() {
  return (
    <div className="animate-spin">
      <svg 
        width="24" 
        height="24" 
        viewBox="0 0 24 24"
      >
        <circle cx="12" cy="12" r="10" stroke="currentColor" />
      </svg>
    </div>
  )
}
```

This applies to all CSS transforms and transitions (`transform`, `opacity`, `translate`, `scale`, `rotate`). The wrapper div allows browsers to use GPU acceleration for smoother animations.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-animate-svg-wrapper:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-conditional-render:start -->
## Use Explicit Conditional Rendering

Use explicit ternary operators (`? :`) instead of `&&` for conditional rendering when the condition can be `0`, `NaN`, or other falsy values that render.

**Incorrect (renders "0" when count is 0):**

```tsx
function Badge({ count }: { count: number }) {
  return (
    <div>
      {count && <span className="badge">{count}</span>}
    </div>
  )
}

// When count = 0, renders: <div>0</div>
// When count = 5, renders: <div><span class="badge">5</span></div>
```

**Correct (renders nothing when count is 0):**

```tsx
function Badge({ count }: { count: number }) {
  return (
    <div>
      {count > 0 ? <span className="badge">{count}</span> : null}
    </div>
  )
}

// When count = 0, renders: <div></div>
// When count = 5, renders: <div><span class="badge">5</span></div>
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-conditional-render:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-content-visibility:start -->
## CSS content-visibility for Long Lists

Apply `content-visibility: auto` to defer off-screen rendering.

**CSS:**

```css
.message-item {
  content-visibility: auto;
  contain-intrinsic-size: 0 80px;
}
```

**Example:**

```tsx
function MessageList({ messages }: { messages: Message[] }) {
  return (
    <div className="overflow-y-auto h-screen">
      {messages.map(msg => (
        <div key={msg.id} className="message-item">
          <Avatar user={msg.author} />
          <div>{msg.content}</div>
        </div>
      ))}
    </div>
  )
}
```

For 1000 messages, browser skips layout/paint for ~990 off-screen items (10× faster initial render).
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-content-visibility:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hoist-jsx:start -->
## Hoist Static JSX Elements

Extract static JSX outside components to avoid re-creation.

**Incorrect (recreates element every render):**

```tsx
function LoadingSkeleton() {
  return <div className="animate-pulse h-20 bg-gray-200" />
}

function Container() {
  return (
    <div>
      {loading && <LoadingSkeleton />}
    </div>
  )
}
```

**Correct (reuses same element):**

```tsx
const loadingSkeleton = (
  <div className="animate-pulse h-20 bg-gray-200" />
)

function Container() {
  return (
    <div>
      {loading && loadingSkeleton}
    </div>
  )
}
```

This is especially helpful for large and static SVG nodes, which can be expensive to recreate on every render.

**Note:** If your project has [React Compiler](https://react.dev/learn/react-compiler) enabled, the compiler automatically hoists static JSX elements and optimizes component re-renders, making manual hoisting unnecessary.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hoist-jsx:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hydration-no-flicker:start -->
## Prevent Hydration Mismatch Without Flickering

When rendering content that depends on client-side storage (localStorage, cookies), avoid both SSR breakage and post-hydration flickering by injecting a synchronous script that updates the DOM before React hydrates.

**Incorrect (breaks SSR):**

```tsx
function ThemeWrapper({ children }: { children: ReactNode }) {
  // localStorage is not available on server - throws error
  const theme = localStorage.getItem('theme') || 'light'
  
  return (
    <div className={theme}>
      {children}
    </div>
  )
}
```

Server-side rendering will fail because `localStorage` is undefined.

**Incorrect (visual flickering):**

```tsx
function ThemeWrapper({ children }: { children: ReactNode }) {
  const [theme, setTheme] = useState('light')
  
  useEffect(() => {
    // Runs after hydration - causes visible flash
    const stored = localStorage.getItem('theme')
    if (stored) {
      setTheme(stored)
    }
  }, [])
  
  return (
    <div className={theme}>
      {children}
    </div>
  )
}
```

Component first renders with default value (`light`), then updates after hydration, causing a visible flash of incorrect content.

**Correct (no flicker, no hydration mismatch):**

```tsx
function ThemeWrapper({ children }: { children: ReactNode }) {
  return (
    <>
      <div id="theme-wrapper">
        {children}
      </div>
      <script
        dangerouslySetInnerHTML={{
          __html: `
            (function() {
              try {
                var theme = localStorage.getItem('theme') || 'light';
                var el = document.getElementById('theme-wrapper');
                if (el) el.className = theme;
              } catch (e) {}
            })();
          `,
        }}
      />
    </>
  )
}
```

The inline script executes synchronously before showing the element, ensuring the DOM already has the correct value. No flickering, no hydration mismatch.

This pattern is especially useful for theme toggles, user preferences, authentication states, and any client-only data that should render immediately without flashing default values.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hydration-no-flicker:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hydration-suppress-warning:start -->
## Suppress Expected Hydration Mismatches

In SSR frameworks (e.g., Next.js), some values are intentionally different on server vs client (random IDs, dates, locale/timezone formatting). For these *expected* mismatches, wrap the dynamic text in an element with `suppressHydrationWarning` to prevent noisy warnings. Do not use this to hide real bugs. Don’t overuse it.

**Incorrect (known mismatch warnings):**

```tsx
function Timestamp() {
  return <span>{new Date().toLocaleString()}</span>
}
```

**Correct (suppress expected mismatch only):**

```tsx
function Timestamp() {
  return (
    <span suppressHydrationWarning>
      {new Date().toLocaleString()}
    </span>
  )
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-hydration-suppress-warning:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-resource-hints:start -->
## Use React DOM Resource Hints

**Impact: HIGH (reduces load time for critical resources)**

React DOM provides APIs to hint the browser about resources it will need. These are especially useful in server components to start loading resources before the client even receives the HTML.

- **`prefetchDNS(href)`**: Resolve DNS for a domain you expect to connect to
- **`preconnect(href)`**: Establish connection (DNS + TCP + TLS) to a server
- **`preload(href, options)`**: Fetch a resource (stylesheet, font, script, image) you'll use soon
- **`preloadModule(href)`**: Fetch an ES module you'll use soon
- **`preinit(href, options)`**: Fetch and evaluate a stylesheet or script
- **`preinitModule(href)`**: Fetch and evaluate an ES module

**Example (preconnect to third-party APIs):**

```tsx
import { preconnect, prefetchDNS } from 'react-dom'

export default function App() {
  prefetchDNS('https://analytics.example.com')
  preconnect('https://api.example.com')

  return <main>{/* content */}</main>
}
```

**Example (preload critical fonts and styles):**

```tsx
import { preload, preinit } from 'react-dom'

export default function RootLayout({ children }) {
  // Preload font file
  preload('/fonts/inter.woff2', { as: 'font', type: 'font/woff2', crossOrigin: 'anonymous' })

  // Fetch and apply critical stylesheet immediately
  preinit('/styles/critical.css', { as: 'style' })

  return (
    <html>
      <body>{children}</body>
    </html>
  )
}
```

**Example (preload modules for code-split routes):**

```tsx
import { preloadModule, preinitModule } from 'react-dom'

function Navigation() {
  const preloadDashboard = () => {
    preloadModule('/dashboard.js', { as: 'script' })
  }

  return (
    <nav>
      <a href="/dashboard" onMouseEnter={preloadDashboard}>
        Dashboard
      </a>
    </nav>
  )
}
```

**When to use each:**

| API | Use case |
|-----|----------|
| `prefetchDNS` | Third-party domains you'll connect to later |
| `preconnect` | APIs or CDNs you'll fetch from immediately |
| `preload` | Critical resources needed for current page |
| `preloadModule` | JS modules for likely next navigation |
| `preinit` | Stylesheets/scripts that must execute early |
| `preinitModule` | ES modules that must execute early |

Reference: [React DOM Resource Preloading APIs](https://react.dev/reference/react-dom#resource-preloading-apis)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-resource-hints:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-script-defer-async:start -->
## Use defer or async on Script Tags

**Impact: HIGH (eliminates render-blocking)**

Script tags without `defer` or `async` block HTML parsing while the script downloads and executes. This delays First Contentful Paint and Time to Interactive.

- **`defer`**: Downloads in parallel, executes after HTML parsing completes, maintains execution order
- **`async`**: Downloads in parallel, executes immediately when ready, no guaranteed order

Use `defer` for scripts that depend on DOM or other scripts. Use `async` for independent scripts like analytics.

**Incorrect (blocks rendering):**

```tsx
export default function Document() {
  return (
    <html>
      <head>
        <script src="https://example.com/analytics.js" />
        <script src="/scripts/utils.js" />
      </head>
      <body>{/* content */}</body>
    </html>
  )
}
```

**Correct (non-blocking):**

```tsx
export default function Document() {
  return (
    <html>
      <head>
        {/* Independent script - use async */}
        <script src="https://example.com/analytics.js" async />
        {/* DOM-dependent script - use defer */}
        <script src="/scripts/utils.js" defer />
      </head>
      <body>{/* content */}</body>
    </html>
  )
}
```

**Note:** In Next.js, prefer the `next/script` component with `strategy` prop instead of raw script tags:

```tsx
import Script from 'next/script'

export default function Page() {
  return (
    <>
      <Script src="https://example.com/analytics.js" strategy="afterInteractive" />
      <Script src="/scripts/utils.js" strategy="beforeInteractive" />
    </>
  )
}
```

Reference: [MDN - Script element](https://developer.mozilla.org/en-US/docs/Web/HTML/Element/script#defer)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-script-defer-async:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-svg-precision:start -->
## Optimize SVG Precision

Reduce SVG coordinate precision to decrease file size. The optimal precision depends on the viewBox size, but in general reducing precision should be considered.

**Incorrect (excessive precision):**

```svg
<path d="M 10.293847 20.847362 L 30.938472 40.192837" />
```

**Correct (1 decimal place):**

```svg
<path d="M 10.3 20.8 L 30.9 40.2" />
```

**Automate with SVGO:**

```bash
npx svgo --precision=1 --multipass icon.svg
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-svg-precision:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-usetransition-loading:start -->
## Use useTransition Over Manual Loading States

Use `useTransition` instead of manual `useState` for loading states. This provides built-in `isPending` state and automatically manages transitions.

**Incorrect (manual loading state):**

```tsx
function SearchResults() {
  const [query, setQuery] = useState('')
  const [results, setResults] = useState([])
  const [isLoading, setIsLoading] = useState(false)

  const handleSearch = async (value: string) => {
    setIsLoading(true)
    setQuery(value)
    const data = await fetchResults(value)
    setResults(data)
    setIsLoading(false)
  }

  return (
    <>
      <input onChange={(e) => handleSearch(e.target.value)} />
      {isLoading && <Spinner />}
      <ResultsList results={results} />
    </>
  )
}
```

**Correct (useTransition with built-in pending state):**

```tsx
import { useTransition, useState } from 'react'

function SearchResults() {
  const [query, setQuery] = useState('')
  const [results, setResults] = useState([])
  const [isPending, startTransition] = useTransition()

  const handleSearch = (value: string) => {
    setQuery(value) // Update input immediately
    
    startTransition(async () => {
      // Fetch and update results
      const data = await fetchResults(value)
      setResults(data)
    })
  }

  return (
    <>
      <input onChange={(e) => handleSearch(e.target.value)} />
      {isPending && <Spinner />}
      <ResultsList results={results} />
    </>
  )
}
```

**Benefits:**

- **Automatic pending state**: No need to manually manage `setIsLoading(true/false)`
- **Error resilience**: Pending state correctly resets even if the transition throws
- **Better responsiveness**: Keeps the UI responsive during updates
- **Interrupt handling**: New transitions automatically cancel pending ones

Reference: [useTransition](https://react.dev/reference/react/useTransition)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rendering-usetransition-loading:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-defer-reads:start -->
## Defer State Reads to Usage Point

Don't subscribe to dynamic state (searchParams, localStorage) if you only read it inside callbacks.

**Incorrect (subscribes to all searchParams changes):**

```tsx
function ShareButton({ chatId }: { chatId: string }) {
  const searchParams = useSearchParams()

  const handleShare = () => {
    const ref = searchParams.get('ref')
    shareChat(chatId, { ref })
  }

  return <button onClick={handleShare}>Share</button>
}
```

**Correct (reads on demand, no subscription):**

```tsx
function ShareButton({ chatId }: { chatId: string }) {
  const handleShare = () => {
    const params = new URLSearchParams(window.location.search)
    const ref = params.get('ref')
    shareChat(chatId, { ref })
  }

  return <button onClick={handleShare}>Share</button>
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-defer-reads:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-dependencies:start -->
## Narrow Effect Dependencies

Specify primitive dependencies instead of objects to minimize effect re-runs.

**Incorrect (re-runs on any user field change):**

```tsx
useEffect(() => {
  console.log(user.id)
}, [user])
```

**Correct (re-runs only when id changes):**

```tsx
useEffect(() => {
  console.log(user.id)
}, [user.id])
```

**For derived state, compute outside effect:**

```tsx
// Incorrect: runs on width=767, 766, 765...
useEffect(() => {
  if (width < 768) {
    enableMobileMode()
  }
}, [width])

// Correct: runs only on boolean transition
const isMobile = width < 768
useEffect(() => {
  if (isMobile) {
    enableMobileMode()
  }
}, [isMobile])
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-dependencies:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-derived-state-no-effect:start -->
## Calculate Derived State During Rendering

If a value can be computed from current props/state, do not store it in state or update it in an effect. Derive it during render to avoid extra renders and state drift. Do not set state in effects solely in response to prop changes; prefer derived values or keyed resets instead.

**Incorrect (redundant state and effect):**

```tsx
function Form() {
  const [firstName, setFirstName] = useState('First')
  const [lastName, setLastName] = useState('Last')
  const [fullName, setFullName] = useState('')

  useEffect(() => {
    setFullName(firstName + ' ' + lastName)
  }, [firstName, lastName])

  return <p>{fullName}</p>
}
```

**Correct (derive during render):**

```tsx
function Form() {
  const [firstName, setFirstName] = useState('First')
  const [lastName, setLastName] = useState('Last')
  const fullName = firstName + ' ' + lastName

  return <p>{fullName}</p>
}
```

References: [You Might Not Need an Effect](https://react.dev/learn/you-might-not-need-an-effect)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-derived-state-no-effect:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-derived-state:start -->
## Subscribe to Derived State

Subscribe to derived boolean state instead of continuous values to reduce re-render frequency.

**Incorrect (re-renders on every pixel change):**

```tsx
function Sidebar() {
  const width = useWindowWidth()  // updates continuously
  const isMobile = width < 768
  return <nav className={isMobile ? 'mobile' : 'desktop'} />
}
```

**Correct (re-renders only when boolean changes):**

```tsx
function Sidebar() {
  const isMobile = useMediaQuery('(max-width: 767px)')
  return <nav className={isMobile ? 'mobile' : 'desktop'} />
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-derived-state:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-functional-setstate:start -->
## Use Functional setState Updates

When updating state based on the current state value, use the functional update form of setState instead of directly referencing the state variable. This prevents stale closures, eliminates unnecessary dependencies, and creates stable callback references.

**Incorrect (requires state as dependency):**

```tsx
function TodoList() {
  const [items, setItems] = useState(initialItems)
  
  // Callback must depend on items, recreated on every items change
  const addItems = useCallback((newItems: Item[]) => {
    setItems([...items, ...newItems])
  }, [items])  // ❌ items dependency causes recreations
  
  // Risk of stale closure if dependency is forgotten
  const removeItem = useCallback((id: string) => {
    setItems(items.filter(item => item.id !== id))
  }, [])  // ❌ Missing items dependency - will use stale items!
  
  return <ItemsEditor items={items} onAdd={addItems} onRemove={removeItem} />
}
```

The first callback is recreated every time `items` changes, which can cause child components to re-render unnecessarily. The second callback has a stale closure bug—it will always reference the initial `items` value.

**Correct (stable callbacks, no stale closures):**

```tsx
function TodoList() {
  const [items, setItems] = useState(initialItems)
  
  // Stable callback, never recreated
  const addItems = useCallback((newItems: Item[]) => {
    setItems(curr => [...curr, ...newItems])
  }, [])  // ✅ No dependencies needed
  
  // Always uses latest state, no stale closure risk
  const removeItem = useCallback((id: string) => {
    setItems(curr => curr.filter(item => item.id !== id))
  }, [])  // ✅ Safe and stable
  
  return <ItemsEditor items={items} onAdd={addItems} onRemove={removeItem} />
}
```

**Benefits:**

1. **Stable callback references** - Callbacks don't need to be recreated when state changes
2. **No stale closures** - Always operates on the latest state value
3. **Fewer dependencies** - Simplifies dependency arrays and reduces memory leaks
4. **Prevents bugs** - Eliminates the most common source of React closure bugs

**When to use functional updates:**

- Any setState that depends on the current state value
- Inside useCallback/useMemo when state is needed
- Event handlers that reference state
- Async operations that update state

**When direct updates are fine:**

- Setting state to a static value: `setCount(0)`
- Setting state from props/arguments only: `setName(newName)`
- State doesn't depend on previous value

**Note:** If your project has [React Compiler](https://react.dev/learn/react-compiler) enabled, the compiler can automatically optimize some cases, but functional updates are still recommended for correctness and to prevent stale closure bugs.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-functional-setstate:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-lazy-state-init:start -->
## Use Lazy State Initialization

Pass a function to `useState` for expensive initial values. Without the function form, the initializer runs on every render even though the value is only used once.

**Incorrect (runs on every render):**

```tsx
function FilteredList({ items }: { items: Item[] }) {
  // buildSearchIndex() runs on EVERY render, even after initialization
  const [searchIndex, setSearchIndex] = useState(buildSearchIndex(items))
  const [query, setQuery] = useState('')
  
  // When query changes, buildSearchIndex runs again unnecessarily
  return <SearchResults index={searchIndex} query={query} />
}

function UserProfile() {
  // JSON.parse runs on every render
  const [settings, setSettings] = useState(
    JSON.parse(localStorage.getItem('settings') || '{}')
  )
  
  return <SettingsForm settings={settings} onChange={setSettings} />
}
```

**Correct (runs only once):**

```tsx
function FilteredList({ items }: { items: Item[] }) {
  // buildSearchIndex() runs ONLY on initial render
  const [searchIndex, setSearchIndex] = useState(() => buildSearchIndex(items))
  const [query, setQuery] = useState('')
  
  return <SearchResults index={searchIndex} query={query} />
}

function UserProfile() {
  // JSON.parse runs only on initial render
  const [settings, setSettings] = useState(() => {
    const stored = localStorage.getItem('settings')
    return stored ? JSON.parse(stored) : {}
  })
  
  return <SettingsForm settings={settings} onChange={setSettings} />
}
```

Use lazy initialization when computing initial values from localStorage/sessionStorage, building data structures (indexes, maps), reading from the DOM, or performing heavy transformations.

For simple primitives (`useState(0)`), direct references (`useState(props.value)`), or cheap literals (`useState({})`), the function form is unnecessary.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-lazy-state-init:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-memo-with-default-value:start -->
## Extract Default Non-primitive Parameter Value from Memoized Component to Constant

When memoized component has a default value for some non-primitive optional parameter, such as an array, function, or object, calling the component without that parameter results in broken memoization. This is because new value instances are created on every rerender, and they do not pass strict equality comparison in `memo()`.

To address this issue, extract the default value into a constant.

**Incorrect (`onClick` has different values on every rerender):**

```tsx
const UserAvatar = memo(function UserAvatar({ onClick = () => {} }: { onClick?: () => void }) {
  // ...
})

// Used without optional onClick
<UserAvatar />
```

**Correct (stable default value):**

```tsx
const NOOP = () => {};

const UserAvatar = memo(function UserAvatar({ onClick = NOOP }: { onClick?: () => void }) {
  // ...
})

// Used without optional onClick
<UserAvatar />
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-memo-with-default-value:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-memo:start -->
## Extract to Memoized Components

Extract expensive work into memoized components to enable early returns before computation.

**Incorrect (computes avatar even when loading):**

```tsx
function Profile({ user, loading }: Props) {
  const avatar = useMemo(() => {
    const id = computeAvatarId(user)
    return <Avatar id={id} />
  }, [user])

  if (loading) return <Skeleton />
  return <div>{avatar}</div>
}
```

**Correct (skips computation when loading):**

```tsx
const UserAvatar = memo(function UserAvatar({ user }: { user: User }) {
  const id = useMemo(() => computeAvatarId(user), [user])
  return <Avatar id={id} />
})

function Profile({ user, loading }: Props) {
  if (loading) return <Skeleton />
  return (
    <div>
      <UserAvatar user={user} />
    </div>
  )
}
```

**Note:** If your project has [React Compiler](https://react.dev/learn/react-compiler) enabled, manual memoization with `memo()` and `useMemo()` is not necessary. The compiler automatically optimizes re-renders.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-memo:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-move-effect-to-event:start -->
## Put Interaction Logic in Event Handlers

If a side effect is triggered by a specific user action (submit, click, drag), run it in that event handler. Do not model the action as state + effect; it makes effects re-run on unrelated changes and can duplicate the action.

**Incorrect (event modeled as state + effect):**

```tsx
function Form() {
  const [submitted, setSubmitted] = useState(false)
  const theme = useContext(ThemeContext)

  useEffect(() => {
    if (submitted) {
      post('/api/register')
      showToast('Registered', theme)
    }
  }, [submitted, theme])

  return <button onClick={() => setSubmitted(true)}>Submit</button>
}
```

**Correct (do it in the handler):**

```tsx
function Form() {
  const theme = useContext(ThemeContext)

  function handleSubmit() {
    post('/api/register')
    showToast('Registered', theme)
  }

  return <button onClick={handleSubmit}>Submit</button>
}
```

Reference: [Should this code move to an event handler?](https://react.dev/learn/removing-effect-dependencies#should-this-code-move-to-an-event-handler)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-move-effect-to-event:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-no-inline-components:start -->
## Don't Define Components Inside Components

**Impact: HIGH (prevents remount on every render)**

Defining a component inside another component creates a new component type on every render. React sees a different component each time and fully remounts it, destroying all state and DOM.

A common reason developers do this is to access parent variables without passing props. Always pass props instead.

**Incorrect (remounts on every render):**

```tsx
function UserProfile({ user, theme }) {
  // Defined inside to access `theme` - BAD
  const Avatar = () => (
    <img
      src={user.avatarUrl}
      className={theme === 'dark' ? 'avatar-dark' : 'avatar-light'}
    />
  )

  // Defined inside to access `user` - BAD
  const Stats = () => (
    <div>
      <span>{user.followers} followers</span>
      <span>{user.posts} posts</span>
    </div>
  )

  return (
    <div>
      <Avatar />
      <Stats />
    </div>
  )
}
```

Every time `UserProfile` renders, `Avatar` and `Stats` are new component types. React unmounts the old instances and mounts new ones, losing any internal state, running effects again, and recreating DOM nodes.

**Correct (pass props instead):**

```tsx
function Avatar({ src, theme }: { src: string; theme: string }) {
  return (
    <img
      src={src}
      className={theme === 'dark' ? 'avatar-dark' : 'avatar-light'}
    />
  )
}

function Stats({ followers, posts }: { followers: number; posts: number }) {
  return (
    <div>
      <span>{followers} followers</span>
      <span>{posts} posts</span>
    </div>
  )
}

function UserProfile({ user, theme }) {
  return (
    <div>
      <Avatar src={user.avatarUrl} theme={theme} />
      <Stats followers={user.followers} posts={user.posts} />
    </div>
  )
}
```

**Symptoms of this bug:**
- Input fields lose focus on every keystroke
- Animations restart unexpectedly
- `useEffect` cleanup/setup runs on every parent render
- Scroll position resets inside the component
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-no-inline-components:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-simple-expression-in-memo:start -->
## Do not wrap a simple expression with a primitive result type in useMemo

When an expression is simple (few logical or arithmetical operators) and has a primitive result type (boolean, number, string), do not wrap it in `useMemo`.
Calling `useMemo` and comparing hook dependencies may consume more resources than the expression itself.

**Incorrect:**

```tsx
function Header({ user, notifications }: Props) {
  const isLoading = useMemo(() => {
    return user.isLoading || notifications.isLoading
  }, [user.isLoading, notifications.isLoading])

  if (isLoading) return <Skeleton />
  // return some markup
}
```

**Correct:**

```tsx
function Header({ user, notifications }: Props) {
  const isLoading = user.isLoading || notifications.isLoading

  if (isLoading) return <Skeleton />
  // return some markup
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-simple-expression-in-memo:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-split-combined-hooks:start -->
## Split Combined Hook Computations

When a hook contains multiple independent tasks with different dependencies, split them into separate hooks. A combined hook reruns all tasks when any dependency changes, even if some tasks don't use the changed value.

**Incorrect (changing `sortOrder` recomputes filtering):**

```tsx
const sortedProducts = useMemo(() => {
  const filtered = products.filter((p) => p.category === category)
  const sorted = filtered.toSorted((a, b) =>
    sortOrder === "asc" ? a.price - b.price : b.price - a.price
  )
  return sorted
}, [products, category, sortOrder])
```

**Correct (filtering only recomputes when products or category change):**

```tsx
const filteredProducts = useMemo(
  () => products.filter((p) => p.category === category),
  [products, category]
)

const sortedProducts = useMemo(
  () =>
    filteredProducts.toSorted((a, b) =>
      sortOrder === "asc" ? a.price - b.price : b.price - a.price
    ),
  [filteredProducts, sortOrder]
)
```

This pattern also applies to `useEffect` when combining unrelated side effects:

**Incorrect (both effects run when either dependency changes):**

```tsx
useEffect(() => {
  analytics.trackPageView(pathname)
  document.title = `${pageTitle} | My App`
}, [pathname, pageTitle])
```

**Correct (effects run independently):**

```tsx
useEffect(() => {
  analytics.trackPageView(pathname)
}, [pathname])

useEffect(() => {
  document.title = `${pageTitle} | My App`
}, [pageTitle])
```

**Note:** If your project has [React Compiler](https://react.dev/learn/react-compiler) enabled, it automatically optimizes dependency tracking and may handle some of these cases for you.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-split-combined-hooks:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-transitions:start -->
## Use Transitions for Non-Urgent Updates

Mark frequent, non-urgent state updates as transitions to maintain UI responsiveness.

**Incorrect (blocks UI on every scroll):**

```tsx
function ScrollTracker() {
  const [scrollY, setScrollY] = useState(0)
  useEffect(() => {
    const handler = () => setScrollY(window.scrollY)
    window.addEventListener('scroll', handler, { passive: true })
    return () => window.removeEventListener('scroll', handler)
  }, [])
}
```

**Correct (non-blocking updates):**

```tsx
import { startTransition } from 'react'

function ScrollTracker() {
  const [scrollY, setScrollY] = useState(0)
  useEffect(() => {
    const handler = () => {
      startTransition(() => setScrollY(window.scrollY))
    }
    window.addEventListener('scroll', handler, { passive: true })
    return () => window.removeEventListener('scroll', handler)
  }, [])
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-transitions:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-use-deferred-value:start -->
## Use useDeferredValue for Expensive Derived Renders

When user input triggers expensive computations or renders, use `useDeferredValue` to keep the input responsive. The deferred value lags behind, allowing React to prioritize the input update and render the expensive result when idle.

**Incorrect (input feels laggy while filtering):**

```tsx
function Search({ items }: { items: Item[] }) {
  const [query, setQuery] = useState('')
  const filtered = items.filter(item => fuzzyMatch(item, query))

  return (
    <>
      <input value={query} onChange={e => setQuery(e.target.value)} />
      <ResultsList results={filtered} />
    </>
  )
}
```

**Correct (input stays snappy, results render when ready):**

```tsx
function Search({ items }: { items: Item[] }) {
  const [query, setQuery] = useState('')
  const deferredQuery = useDeferredValue(query)
  const filtered = useMemo(
    () => items.filter(item => fuzzyMatch(item, deferredQuery)),
    [items, deferredQuery]
  )
  const isStale = query !== deferredQuery

  return (
    <>
      <input value={query} onChange={e => setQuery(e.target.value)} />
      <div style={{ opacity: isStale ? 0.7 : 1 }}>
        <ResultsList results={filtered} />
      </div>
    </>
  )
}
```

**When to use:**

- Filtering/searching large lists
- Expensive visualizations (charts, graphs) reacting to input
- Any derived state that causes noticeable render delays

**Note:** Wrap the expensive computation in `useMemo` with the deferred value as a dependency, otherwise it still runs on every render.

Reference: [React useDeferredValue](https://react.dev/reference/react/useDeferredValue)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-use-deferred-value:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-use-ref-transient-values:start -->
## Use useRef for Transient Values

When a value changes frequently and you don't want a re-render on every update (e.g., mouse trackers, intervals, transient flags), store it in `useRef` instead of `useState`. Keep component state for UI; use refs for temporary DOM-adjacent values. Updating a ref does not trigger a re-render.

**Incorrect (renders every update):**

```tsx
function Tracker() {
  const [lastX, setLastX] = useState(0)

  useEffect(() => {
    const onMove = (e: MouseEvent) => setLastX(e.clientX)
    window.addEventListener('mousemove', onMove)
    return () => window.removeEventListener('mousemove', onMove)
  }, [])

  return (
    <div
      style={{
        position: 'fixed',
        top: 0,
        left: lastX,
        width: 8,
        height: 8,
        background: 'black',
      }}
    />
  )
}
```

**Correct (no re-render for tracking):**

```tsx
function Tracker() {
  const lastXRef = useRef(0)
  const dotRef = useRef<HTMLDivElement>(null)

  useEffect(() => {
    const onMove = (e: MouseEvent) => {
      lastXRef.current = e.clientX
      const node = dotRef.current
      if (node) {
        node.style.transform = `translateX(${e.clientX}px)`
      }
    }
    window.addEventListener('mousemove', onMove)
    return () => window.removeEventListener('mousemove', onMove)
  }, [])

  return (
    <div
      ref={dotRef}
      style={{
        position: 'fixed',
        top: 0,
        left: 0,
        width: 8,
        height: 8,
        background: 'black',
        transform: 'translateX(0px)',
      }}
    />
  )
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:rerender-use-ref-transient-values:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-after-nonblocking:start -->
## Use after() for Non-Blocking Operations

Use Next.js's `after()` to schedule work that should execute after a response is sent. This prevents logging, analytics, and other side effects from blocking the response.

**Incorrect (blocks response):**

```tsx
import { logUserAction } from '@/app/utils'

export async function POST(request: Request) {
  // Perform mutation
  await updateDatabase(request)
  
  // Logging blocks the response
  const userAgent = request.headers.get('user-agent') || 'unknown'
  await logUserAction({ userAgent })
  
  return new Response(JSON.stringify({ status: 'success' }), {
    status: 200,
    headers: { 'Content-Type': 'application/json' }
  })
}
```

**Correct (non-blocking):**

```tsx
import { after } from 'next/server'
import { headers, cookies } from 'next/headers'
import { logUserAction } from '@/app/utils'

export async function POST(request: Request) {
  // Perform mutation
  await updateDatabase(request)
  
  // Log after response is sent
  after(async () => {
    const userAgent = (await headers()).get('user-agent') || 'unknown'
    const sessionCookie = (await cookies()).get('session-id')?.value || 'anonymous'
    
    logUserAction({ sessionCookie, userAgent })
  })
  
  return new Response(JSON.stringify({ status: 'success' }), {
    status: 200,
    headers: { 'Content-Type': 'application/json' }
  })
}
```

The response is sent immediately while logging happens in the background.

**Common use cases:**

- Analytics tracking
- Audit logging
- Sending notifications
- Cache invalidation
- Cleanup tasks

**Important notes:**

- `after()` runs even if the response fails or redirects
- Works in Server Actions, Route Handlers, and Server Components

Reference: [https://nextjs.org/docs/app/api-reference/functions/after](https://nextjs.org/docs/app/api-reference/functions/after)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-after-nonblocking:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-auth-actions:start -->
## Authenticate Server Actions Like API Routes

**Impact: CRITICAL (prevents unauthorized access to server mutations)**

Server Actions (functions with `"use server"`) are exposed as public endpoints, just like API routes. Always verify authentication and authorization **inside** each Server Action—do not rely solely on middleware, layout guards, or page-level checks, as Server Actions can be invoked directly.

Next.js documentation explicitly states: "Treat Server Actions with the same security considerations as public-facing API endpoints, and verify if the user is allowed to perform a mutation."

**Incorrect (no authentication check):**

```typescript
'use server'

export async function deleteUser(userId: string) {
  // Anyone can call this! No auth check
  await db.user.delete({ where: { id: userId } })
  return { success: true }
}
```

**Correct (authentication inside the action):**

```typescript
'use server'

import { verifySession } from '@/lib/auth'
import { unauthorized } from '@/lib/errors'

export async function deleteUser(userId: string) {
  // Always check auth inside the action
  const session = await verifySession()
  
  if (!session) {
    throw unauthorized('Must be logged in')
  }
  
  // Check authorization too
  if (session.user.role !== 'admin' && session.user.id !== userId) {
    throw unauthorized('Cannot delete other users')
  }
  
  await db.user.delete({ where: { id: userId } })
  return { success: true }
}
```

**With input validation:**

```typescript
'use server'

import { verifySession } from '@/lib/auth'
import { z } from 'zod'

const updateProfileSchema = z.object({
  userId: z.string().uuid(),
  name: z.string().min(1).max(100),
  email: z.string().email()
})

export async function updateProfile(data: unknown) {
  // Validate input first
  const validated = updateProfileSchema.parse(data)
  
  // Then authenticate
  const session = await verifySession()
  if (!session) {
    throw new Error('Unauthorized')
  }
  
  // Then authorize
  if (session.user.id !== validated.userId) {
    throw new Error('Can only update own profile')
  }
  
  // Finally perform the mutation
  await db.user.update({
    where: { id: validated.userId },
    data: {
      name: validated.name,
      email: validated.email
    }
  })
  
  return { success: true }
}
```

Reference: [https://nextjs.org/docs/app/guides/authentication](https://nextjs.org/docs/app/guides/authentication)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-auth-actions:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-cache-lru:start -->
## Cross-Request LRU Caching

`React.cache()` only works within one request. For data shared across sequential requests (user clicks button A then button B), use an LRU cache.

**Implementation:**

```typescript
import { LRUCache } from 'lru-cache'

const cache = new LRUCache<string, any>({
  max: 1000,
  ttl: 5 * 60 * 1000  // 5 minutes
})

export async function getUser(id: string) {
  const cached = cache.get(id)
  if (cached) return cached

  const user = await db.user.findUnique({ where: { id } })
  cache.set(id, user)
  return user
}

// Request 1: DB query, result cached
// Request 2: cache hit, no DB query
```

Use when sequential user actions hit multiple endpoints needing the same data within seconds.

**With Vercel's [Fluid Compute](https://vercel.com/docs/fluid-compute):** LRU caching is especially effective because multiple concurrent requests can share the same function instance and cache. This means the cache persists across requests without needing external storage like Redis.

**In traditional serverless:** Each invocation runs in isolation, so consider Redis for cross-process caching.

Reference: [https://github.com/isaacs/node-lru-cache](https://github.com/isaacs/node-lru-cache)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-cache-lru:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-cache-react:start -->
## Per-Request Deduplication with React.cache()

Use `React.cache()` for server-side request deduplication. Authentication and database queries benefit most.

**Usage:**

```typescript
import { cache } from 'react'

export const getCurrentUser = cache(async () => {
  const session = await auth()
  if (!session?.user?.id) return null
  return await db.user.findUnique({
    where: { id: session.user.id }
  })
})
```

Within a single request, multiple calls to `getCurrentUser()` execute the query only once.

**Avoid inline objects as arguments:**

`React.cache()` uses shallow equality (`Object.is`) to determine cache hits. Inline objects create new references each call, preventing cache hits.

**Incorrect (always cache miss):**

```typescript
const getUser = cache(async (params: { uid: number }) => {
  return await db.user.findUnique({ where: { id: params.uid } })
})

// Each call creates new object, never hits cache
getUser({ uid: 1 })
getUser({ uid: 1 })  // Cache miss, runs query again
```

**Correct (cache hit):**

```typescript
const getUser = cache(async (uid: number) => {
  return await db.user.findUnique({ where: { id: uid } })
})

// Primitive args use value equality
getUser(1)
getUser(1)  // Cache hit, returns cached result
```

If you must pass objects, pass the same reference:

```typescript
const params = { uid: 1 }
getUser(params)  // Query runs
getUser(params)  // Cache hit (same reference)
```

**Next.js-Specific Note:**

In Next.js, the `fetch` API is automatically extended with request memoization. Requests with the same URL and options are automatically deduplicated within a single request, so you don't need `React.cache()` for `fetch` calls. However, `React.cache()` is still essential for other async tasks:

- Database queries (Prisma, Drizzle, etc.)
- Heavy computations
- Authentication checks
- File system operations
- Any non-fetch async work

Use `React.cache()` to deduplicate these operations across your component tree.

Reference: [React.cache documentation](https://react.dev/reference/react/cache)
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-cache-react:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-dedup-props:start -->
## Avoid Duplicate Serialization in RSC Props

**Impact: LOW (reduces network payload by avoiding duplicate serialization)**

RSC→client serialization deduplicates by object reference, not value. Same reference = serialized once; new reference = serialized again. Do transformations (`.toSorted()`, `.filter()`, `.map()`) in client, not server.

**Incorrect (duplicates array):**

```tsx
// RSC: sends 6 strings (2 arrays × 3 items)
<ClientList usernames={usernames} usernamesOrdered={usernames.toSorted()} />
```

**Correct (sends 3 strings):**

```tsx
// RSC: send once
<ClientList usernames={usernames} />

// Client: transform there
'use client'
const sorted = useMemo(() => [...usernames].sort(), [usernames])
```

**Nested deduplication behavior:**

Deduplication works recursively. Impact varies by data type:

- `string[]`, `number[]`, `boolean[]`: **HIGH impact** - array + all primitives fully duplicated
- `object[]`: **LOW impact** - array duplicated, but nested objects deduplicated by reference

```tsx
// string[] - duplicates everything
usernames={['a','b']} sorted={usernames.toSorted()} // sends 4 strings

// object[] - duplicates array structure only
users={[{id:1},{id:2}]} sorted={users.toSorted()} // sends 2 arrays + 2 unique objects (not 4)
```

**Operations breaking deduplication (create new references):**

- Arrays: `.toSorted()`, `.filter()`, `.map()`, `.slice()`, `[...arr]`
- Objects: `{...obj}`, `Object.assign()`, `structuredClone()`, `JSON.parse(JSON.stringify())`

**More examples:**

```tsx
// ❌ Bad
<C users={users} active={users.filter(u => u.active)} />
<C product={product} productName={product.name} />

// ✅ Good
<C users={users} />
<C product={product} />
// Do filtering/destructuring in client
```

**Exception:** Pass derived data when transformation is expensive or client doesn't need original.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-dedup-props:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-hoist-static-io:start -->
## Hoist Static I/O to Module Level

**Impact: HIGH (avoids repeated file/network I/O per request)**

When loading static assets (fonts, logos, images, config files) in route handlers or server functions, hoist the I/O operation to module level. Module-level code runs once when the module is first imported, not on every request. This eliminates redundant file system reads or network fetches that would otherwise run on every invocation.

**Incorrect (reads font file on every request):**

```typescript
// app/api/og/route.tsx
import { ImageResponse } from 'next/og'

export async function GET(request: Request) {
  // Runs on EVERY request - expensive!
  const fontData = await fetch(
    new URL('./fonts/Inter.ttf', import.meta.url)
  ).then(res => res.arrayBuffer())

  const logoData = await fetch(
    new URL('./images/logo.png', import.meta.url)
  ).then(res => res.arrayBuffer())

  return new ImageResponse(
    <div style={{ fontFamily: 'Inter' }}>
      <img src={logoData} />
      Hello World
    </div>,
    { fonts: [{ name: 'Inter', data: fontData }] }
  )
}
```

**Correct (loads once at module initialization):**

```typescript
// app/api/og/route.tsx
import { ImageResponse } from 'next/og'

// Module-level: runs ONCE when module is first imported
const fontData = fetch(
  new URL('./fonts/Inter.ttf', import.meta.url)
).then(res => res.arrayBuffer())

const logoData = fetch(
  new URL('./images/logo.png', import.meta.url)
).then(res => res.arrayBuffer())

export async function GET(request: Request) {
  // Await the already-started promises
  const [font, logo] = await Promise.all([fontData, logoData])

  return new ImageResponse(
    <div style={{ fontFamily: 'Inter' }}>
      <img src={logo} />
      Hello World
    </div>,
    { fonts: [{ name: 'Inter', data: font }] }
  )
}
```

**Correct (synchronous fs at module level):**

```typescript
// app/api/og/route.tsx
import { ImageResponse } from 'next/og'
import { readFileSync } from 'fs'
import { join } from 'path'

// Synchronous read at module level - blocks only during module init
const fontData = readFileSync(
  join(process.cwd(), 'public/fonts/Inter.ttf')
)

const logoData = readFileSync(
  join(process.cwd(), 'public/images/logo.png')
)

export async function GET(request: Request) {
  return new ImageResponse(
    <div style={{ fontFamily: 'Inter' }}>
      <img src={logoData} />
      Hello World
    </div>,
    { fonts: [{ name: 'Inter', data: fontData }] }
  )
}
```

**Incorrect (reads config on every call):**

```typescript
import fs from 'node:fs/promises'

export async function processRequest(data: Data) {
  const config = JSON.parse(
    await fs.readFile('./config.json', 'utf-8')
  )
  const template = await fs.readFile('./template.html', 'utf-8')

  return render(template, data, config)
}
```

**Correct (hoists config and template to module level):**

```typescript
import fs from 'node:fs/promises'

const configPromise = fs
  .readFile('./config.json', 'utf-8')
  .then(JSON.parse)
const templatePromise = fs.readFile('./template.html', 'utf-8')

export async function processRequest(data: Data) {
  const [config, template] = await Promise.all([
    configPromise,
    templatePromise,
  ])

  return render(template, data, config)
}
```

When to use this pattern:

- Loading fonts for OG image generation
- Loading static logos, icons, or watermarks
- Reading configuration files that don't change at runtime
- Loading email templates or other static templates
- Any static asset that's the same across all requests

When not to use this pattern:

- Assets that vary per request or user
- Files that may change during runtime (use caching with TTL instead)
- Large files that would consume too much memory if kept loaded
- Sensitive data that shouldn't persist in memory

With Vercel's [Fluid Compute](https://vercel.com/docs/fluid-compute), module-level caching is especially effective because multiple concurrent requests share the same function instance. The static assets stay loaded in memory across requests without cold start penalties.

In traditional serverless, each cold start re-executes module-level code, but subsequent warm invocations reuse the loaded assets until the instance is recycled.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-hoist-static-io:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-no-shared-module-state:start -->
## Avoid Shared Module State for Request Data

For React Server Components and client components rendered during SSR, avoid using mutable module-level variables to share request-scoped data. Server renders can run concurrently in the same process. If one render writes to shared module state and another render reads it, you can get race conditions, cross-request contamination, and security bugs where one user's data appears in another user's response.

Treat module scope on the server as process-wide shared memory, not request-local state.

**Incorrect (request data leaks across concurrent renders):**

```tsx
let currentUser: User | null = null

export default async function Page() {
  currentUser = await auth()
  return <Dashboard />
}

async function Dashboard() {
  return <div>{currentUser?.name}</div>
}
```

If two requests overlap, request A can set `currentUser`, then request B overwrites it before request A finishes rendering `Dashboard`.

**Correct (keep request data local to the render tree):**

```tsx
export default async function Page() {
  const user = await auth()
  return <Dashboard user={user} />
}

function Dashboard({ user }: { user: User | null }) {
  return <div>{user?.name}</div>
}
```

Safe exceptions:

- Immutable static assets or config loaded once at module scope
- Shared caches intentionally designed for cross-request reuse and keyed correctly
- Process-wide singletons that do not store request- or user-specific mutable data

For static assets and config, see [Hoist Static I/O to Module Level](./server-hoist-static-io.md).
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-no-shared-module-state:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-parallel-fetching:start -->
## Parallel Data Fetching with Component Composition

React Server Components execute sequentially within a tree. Restructure with composition to parallelize data fetching.

**Incorrect (Sidebar waits for Page's fetch to complete):**

```tsx
export default async function Page() {
  const header = await fetchHeader()
  return (
    <div>
      <div>{header}</div>
      <Sidebar />
    </div>
  )
}

async function Sidebar() {
  const items = await fetchSidebarItems()
  return <nav>{items.map(renderItem)}</nav>
}
```

**Correct (both fetch simultaneously):**

```tsx
async function Header() {
  const data = await fetchHeader()
  return <div>{data}</div>
}

async function Sidebar() {
  const items = await fetchSidebarItems()
  return <nav>{items.map(renderItem)}</nav>
}

export default function Page() {
  return (
    <div>
      <Header />
      <Sidebar />
    </div>
  )
}
```

**Alternative with children prop:**

```tsx
async function Header() {
  const data = await fetchHeader()
  return <div>{data}</div>
}

async function Sidebar() {
  const items = await fetchSidebarItems()
  return <nav>{items.map(renderItem)}</nav>
}

function Layout({ children }: { children: ReactNode }) {
  return (
    <div>
      <Header />
      {children}
    </div>
  )
}

export default function Page() {
  return (
    <Layout>
      <Sidebar />
    </Layout>
  )
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-parallel-fetching:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-parallel-nested-fetching:start -->
## Parallel Nested Data Fetching

When fetching nested data in parallel, chain dependent fetches within each item's promise so a slow item doesn't block the rest.

**Incorrect (a single slow item blocks all nested fetches):**

```tsx
const chats = await Promise.all(
  chatIds.map(id => getChat(id))
)

const chatAuthors = await Promise.all(
  chats.map(chat => getUser(chat.author))
)
```

If one `getChat(id)` out of 100 is extremely slow, the authors of the other 99 chats can't start loading even though their data is ready.

**Correct (each item chains its own nested fetch):**

```tsx
const chatAuthors = await Promise.all(
  chatIds.map(id => getChat(id).then(chat => getUser(chat.author)))
)
```

Each item independently chains `getChat` → `getUser`, so a slow chat doesn't block author fetches for the others.
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-parallel-nested-fetching:end -->

<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-serialization:start -->
## Minimize Serialization at RSC Boundaries

The React Server/Client boundary serializes all object properties into strings and embeds them in the HTML response and subsequent RSC requests. This serialized data directly impacts page weight and load time, so **size matters a lot**. Only pass fields that the client actually uses.

**Incorrect (serializes all 50 fields):**

```tsx
async function Page() {
  const user = await fetchUser()  // 50 fields
  return <Profile user={user} />
}

'use client'
function Profile({ user }: { user: User }) {
  return <div>{user.name}</div>  // uses 1 field
}
```

**Correct (serializes only 1 field):**

```tsx
async function Page() {
  const user = await fetchUser()
  return <Profile name={user.name} />
}

'use client'
function Profile({ name }: { name: string }) {
  return <div>{name}</div>
}
```
<!-- forgecat:@forgecat/vercel-labs_agent-skills_react-best-practices:server-serialization:end -->
