Skip to content
web-performance-optimization logo

web-performance-optimization

Optimize web application performance using code splitting, lazy loading, caching, compression, and monitoring. Use when improving Core Web Vitals and user experience.

aj-geddes/useful-ai-prompts0installs348stars

SKILL.md

Full skill instructions

Web Performance Optimization

Table of Contents

Overview

Implement performance optimization strategies including lazy loading, code splitting, caching, compression, and monitoring to improve Core Web Vitals and user experience.

When to Use

  • Slow page load times
  • High Largest Contentful Paint (LCP)
  • Large bundle sizes
  • Frequent Cumulative Layout Shift (CLS)
  • Mobile performance issues

Quick Start

Minimal working example:

// utils/​lazyLoad.ts
import React from 'react';

export const lazyLoad = (importStatement: Promise<any>) => {
  return React.lazy(() =>
    importStatement.then(module => ({
      default: module.default
    }))
  );
};

// routes.tsx
import { lazyLoad } from './​utils/​lazyLoad';

export const routes = [
  {
    path: '/',
    component: () => import('./​pages/​Home'),
    lazy: lazyLoad(import('./​pages/​Home'))
  },
  {
    path: '/​dashboard',
    lazy: lazyLoad(import('./​pages/​Dashboard'))
  },
  {
// ... (see reference guides for full implementation)

Reference Guides

Detailed implementations in the references/ directory:

GuideContents
Code Splitting and Lazy Loading (React)Code Splitting and Lazy Loading (React)
Image OptimizationImage Optimization
HTTP Caching and Service WorkersHTTP Caching and Service Workers
Gzip Compression and Asset OptimizationGzip Compression and Asset Optimization
Performance MonitoringPerformance Monitoring

Best Practices

✅ DO

  • Follow established patterns and conventions
  • Write clean, maintainable code
  • Add appropriate documentation
  • Test thoroughly before deploying

❌ DON'T

  • Skip testing or validation
  • Ignore error handling
  • Hard-code configuration values