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vercel-labs/vercel-react-best-practices

vercel-labs

vercel-react-best-practices

React and Next.js performance optimization guidelines from Vercel Engineering. This skill should be used when writing, reviewing, or refactoring React/Next.js code to ensure optimal performance patterns. Triggers on tasks involving React components, Next.js pages, data fetching, bundle optimization, or performance improvements.

NewUpdated Apr 20, 2026

Vercel React Best Practices

Comprehensive performance optimization guide for React and Next.js applications, maintained by Vercel. Contains 70 rules across 8 categories, prioritized by impact to guide automated refactoring and code generation.

When to Apply

Reference these guidelines when:

  • Writing new React components or Next.js pages
  • Implementing data fetching (client or server-side)
  • Reviewing code for performance issues
  • Refactoring existing React/Next.js code
  • Optimizing bundle size or load times

Rule Categories by Priority

Priority Category Impact Prefix
1 Eliminating Waterfalls CRITICAL async-
2 Bundle Size Optimization CRITICAL bundle-
3 Server-Side Performance HIGH server-
4 Client-Side Data Fetching MEDIUM-HIGH client-
5 Re-render Optimization MEDIUM rerender-
6 Rendering Performance MEDIUM rendering-
7 JavaScript Performance LOW-MEDIUM js-
8 Advanced Patterns LOW advanced-

Quick Reference

1. Eliminating Waterfalls (CRITICAL)

  • async-cheap-condition-before-await - Check cheap sync conditions before awaiting flags or remote values
  • async-defer-await - Move await into branches where actually used
  • async-parallel - Use Promise.all() for independent operations
  • async-dependencies - Use better-all for partial dependencies
  • async-api-routes - Start promises early, await late in API routes
  • async-suspense-boundaries - Use Suspense to stream content

2. Bundle Size Optimization (CRITICAL)

  • bundle-barrel-imports - Import directly, avoid barrel files
  • bundle-analyzable-paths - Prefer statically analyzable import and file-system paths to avoid broad bundles and traces
  • bundle-dynamic-imports - Use next/dynamic for heavy components
  • bundle-defer-third-party - Load analytics/logging after hydration
  • bundle-conditional - Load modules only when feature is activated
  • bundle-preload - Preload on hover/focus for perceived speed

3. Server-Side Performance (HIGH)

  • server-auth-actions - Authenticate server actions like API routes
  • server-cache-react - Use React.cache() for per-request deduplication
  • server-cache-lru - Use LRU cache for cross-request caching
  • server-dedup-props - Avoid duplicate serialization in RSC props
  • server-hoist-static-io - Hoist static I/O (fonts, logos) to module level
  • server-no-shared-module-state - Avoid module-level mutable request state in RSC/SSR
  • server-serialization - Minimize data passed to client components
  • server-parallel-fetching - Restructure components to parallelize fetches
  • server-parallel-nested-fetching - Chain nested fetches per item in Promise.all
  • server-after-nonblocking - Use after() for non-blocking operations

4. Client-Side Data Fetching (MEDIUM-HIGH)

  • client-swr-dedup - Use SWR for automatic request deduplication
  • client-event-listeners - Deduplicate global event listeners
  • client-passive-event-listeners - Use passive listeners for scroll
  • client-localstorage-schema - Version and minimize localStorage data

5. Re-render Optimization (MEDIUM)

  • rerender-defer-reads - Don't subscribe to state only used in callbacks
  • rerender-memo - Extract expensive work into memoized components
  • rerender-memo-with-default-value - Hoist default non-primitive props
  • rerender-dependencies - Use primitive dependencies in effects
  • rerender-derived-state - Subscribe to derived booleans, not raw values
  • rerender-derived-state-no-effect - Derive state during render, not effects
  • rerender-functional-setstate - Use functional setState for stable callbacks
  • rerender-lazy-state-init - Pass function to useState for expensive values
  • rerender-simple-expression-in-memo - Avoid memo for simple primitives
  • rerender-split-combined-hooks - Split hooks with independent dependencies
  • rerender-move-effect-to-event - Put interaction logic in event handlers
  • rerender-transitions - Use startTransition for non-urgent updates
  • rerender-use-deferred-value - Defer expensive renders to keep input responsive
  • rerender-use-ref-transient-values - Use refs for transient frequent values
  • rerender-no-inline-components - Don't define components inside components

6. Rendering Performance (MEDIUM)

  • rendering-animate-svg-wrapper - Animate div wrapper, not SVG element
  • rendering-content-visibility - Use content-visibility for long lists
  • rendering-hoist-jsx - Extract static JSX outside components
  • rendering-svg-precision - Reduce SVG coordinate precision
  • rendering-hydration-no-flicker - Use inline script for client-only data
  • rendering-hydration-suppress-warning - Suppress expected mismatches
  • rendering-activity - Use Activity component for show/hide
  • rendering-conditional-render - Use ternary, not && for conditionals
  • rendering-usetransition-loading - Prefer useTransition for loading state
  • rendering-resource-hints - Use React DOM resource hints for preloading
  • rendering-script-defer-async - Use defer or async on script tags

7. JavaScript Performance (LOW-MEDIUM)

  • js-batch-dom-css - Group CSS changes via classes or cssText
  • js-index-maps - Build Map for repeated lookups
  • js-cache-property-access - Cache object properties in loops
  • js-cache-function-results - Cache function results in module-level Map
  • js-cache-storage - Cache localStorage/sessionStorage reads
  • js-combine-iterations - Combine multiple filter/map into one loop
  • js-length-check-first - Check array length before expensive comparison
  • js-early-exit - Return early from functions
  • js-hoist-regexp - Hoist RegExp creation outside loops
  • js-min-max-loop - Use loop for min/max instead of sort
  • js-set-map-lookups - Use Set/Map for O(1) lookups
  • js-tosorted-immutable - Use toSorted() for immutability
  • js-flatmap-filter - Use flatMap to map and filter in one pass
  • js-request-idle-callback - Defer non-critical work to browser idle time

8. Advanced Patterns (LOW)

  • advanced-effect-event-deps - Don't put useEffectEvent results in effect deps
  • advanced-event-handler-refs - Store event handlers in refs
  • advanced-init-once - Initialize app once per app load
  • advanced-use-latest - useLatest for stable callback refs

How to Use

Read individual rule files for detailed explanations and code examples:

rules/async-parallel.md
rules/bundle-barrel-imports.md

Each rule file contains:

  • Brief explanation of why it matters
  • Incorrect code example with explanation
  • Correct code example with explanation
  • Additional context and references

Full Compiled Document

For the complete guide with all rules expanded: AGENTS.md

Files75
75 files · 217.9 KB

Select a file to preview

Overall Score

88/100

Grade

A

Excellent

Grades are signals, not a certification. Always review a skill yourself before use.

Safety

92

Quality

90

Clarity

85

Completeness

82

Summary

Comprehensive React and Next.js performance optimization guide containing 70 rules across 8 categories, organized by impact from critical (waterfalls, bundle size) to low (advanced patterns). Each rule provides explanations, incorrect/correct code examples, and impact metrics. Designed primarily for AI agents to guide automated refactoring and code generation during React/Next.js development.

Detected Capabilities

Performance pattern matching and analysisCode optimization guidanceServer component and RSC optimizationBundle size reduction strategiesData fetching parallelizationRe-render and rendering optimizationJavaScript micro-optimizationsAdvanced React patterns (Suspense, useTransition, etc.)

Trigger Keywords

Phrases that agents use to match this skill to user intent.

optimize react performancereduce bundle sizeeliminate waterfallsserver component optimizationre-render optimizationnext.js refactoringperformance auditdata fetching strategycomponent compositionreact best practices

Risk Signals

INFO

Referenced external domains across documentation

metadata.json, SKILL.md, AGENTS.md
INFO

Links to educational resources and official documentation

rules/*.md (throughout)
INFO

Code examples demonstrate anti-patterns and corrections

rules/*.md (all rule files)

Referenced Domains

External domains referenced in skill content, detected by static analysis.

analytics.example.comapi.example.comcsstriggers.comdeveloper.mozilla.orgesbuild.github.ioexample.comgist.github.comgithub.comjsfiddle.netnextjs.orgreact.devswr.vercel.appvercel.comvite.devwebpack.js.orgwww.npmjs.comx.com

Use Cases

  • Review React/Next.js code for performance anti-patterns
  • Refactor existing components to reduce bundle size
  • Optimize server-side data fetching and waterfalls
  • Guide code generation for new React components
  • Audit and improve rendering performance
  • Optimize client-side state management and re-renders

Quality Notes

  • Excellent structure with 8 clearly prioritized categories and 70+ individual rules
  • Each rule file follows consistent template with title, impact, incorrect example, correct example, and explanations
  • Comprehensive coverage of React and Next.js optimization domains
  • Real-world code examples comparing anti-patterns vs. best practices
  • Clear impact metrics (e.g., 'CRITICAL 2-10× improvement') help prioritize
  • Rules are well-organized with consistent prefixes (async-, bundle-, server-, etc.) for easy discovery
  • Supporting documentation includes metadata.json, README.md with clear contribution guidelines
  • AGENTS.md provides compiled reference with full rule descriptions and examples
  • References link to official docs (React, Next.js, MDN, GitHub) for deeper learning
  • Rules cover both client and server optimizations, addressing full-stack concerns
  • Includes security patterns (server action authentication) alongside performance
  • Advanced patterns section provides guidance for sophisticated use cases
  • Code examples use modern JavaScript/TypeScript patterns and React APIs
  • Clear guidance on when NOT to apply patterns (e.g., Suspense trade-offs)
  • Acknowledges React Compiler and its impact on manual optimizations
Model: claude-haiku-4-5-20251001Analyzed: Apr 20, 2026

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Version History

  1. v1.1

    Content updated

    ✦ AIAdds 1 new optimization rule bundle-analyzable-paths and supporting rule reference docs; 70 rules now across 8 categories.

    2026-04-20

    LATEST
  2. v1.0

    2026-04-03

    View This VersionInitial version

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