A group is an orchestration layer over the pairwise sessions the app already holds. It owns no transport and no shared key: every frame leaves over a chat that is already SAS-verified and already ratcheted, so a removed member simply stops being sent anything. Membership is a roster the admin signs, ordered by epoch, and the safety code is a commit-then-reveal round over every member's fingerprint and nonce. Delivery was the part that did not match its own description. The admin held a link to everyone and nobody else held a link to anybody, so the relay path — the documented fallback — was in fact the entire topology, and the admin going away partitioned the group. Now, once the code is confirmed, each pair without a link dials one over that relay path. The descriptors are compact enough to ride a group frame and are signed with the sender's group identity key, so the relaying member can drop a dial but cannot substitute one. The member with the smaller fingerprint dials, which is the whole glare protocol. Mesh links are released without a human comparing digits. Twenty-eight codes for a group of eight is not a check anyone performs; the guarantee moves rather than disappears, since the descriptor was signed by a key the signed roster names and the group code covers. markGroupLinkVerified refuses any session whose in-band exchange has not completed and whose peer has not proved possession of that key. An existing 1:1 chat between two members is adopted instead of re-dialled, via a probe bound to that session's own key fingerprint so it cannot be replayed onto another chat to impersonate its author. Security fix: g_hello was accepted on any session from anyone who knew the group id, so any member could publish an identity the admin never invited and have the admin sign and broadcast a roster containing it. It is now accepted only on a session an invitation went out on, which also confines it to a direct link. Mesh connections are kept out of the chat registry and muted from the document events the header listens to, so a routing detail cannot tear down the display of a conversation the user actually opened.
545 lines
18 KiB
JavaScript
545 lines
18 KiB
JavaScript
// SecureBit.chat Service Worker
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// Conservative PWA Edition v4.7.56 - Minimal Caching Strategy
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// Enhanced with version-aware cache management
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// Dynamic version detection from meta.json
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let APP_VERSION = 'v4.7.56';
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let CACHE_NAME = 'securebit-pwa-v4.7.56';
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let STATIC_CACHE = 'securebit-pwa-static-v4.7.56';
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let DYNAMIC_CACHE = 'securebit-pwa-dynamic-v4.7.56';
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// Build stamp — rewritten by scripts/post-build.js on every release so this file's
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// bytes change each deploy. That is what makes the browser detect a new Service Worker,
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// reinstall it, drop stale caches and (via controllerchange) prompt the page to update.
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const SW_BUILD_VERSION = '1787689263870';
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// Load version from meta.json on install
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async function getAppVersion() {
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try {
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const response = await fetch('/meta.json?t=' + Date.now(), {
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cache: 'no-store',
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headers: {
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'Cache-Control': 'no-cache, no-store, must-revalidate'
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}
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});
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if (response.ok) {
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const meta = await response.json();
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const version = meta.version || meta.buildVersion || 'v4.7.56';
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APP_VERSION = version;
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CACHE_NAME = `securebit-pwa-${version}`;
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STATIC_CACHE = `securebit-pwa-static-${version}`;
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DYNAMIC_CACHE = `securebit-pwa-dynamic-${version}`;
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return version;
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}
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} catch (error) {
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console.warn('⚠️ Failed to load version from meta.json, using default');
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}
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return APP_VERSION;
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}
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// Essential files for PWA offline functionality
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// DO NOT include JS files from dist/ - they should load from network for updates
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const STATIC_ASSETS = [
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'/',
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'/index.html',
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'/manifest.json',
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// DO NOT cache /dist/app.js and /dist/app-boot.js - they should be updated
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// This allows the update system to work correctly
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// Essential styles for PWA
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'/src/styles/pwa.css',
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// PWA icons (required for install)
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'/logo/icon-192x192.png',
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'/logo/icon-512x512.png',
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'/logo/favicon.ico',
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// PWA components only
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'/src/pwa/pwa-manager.js',
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'/src/pwa/install-prompt.js',
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'/src/scripts/pwa-register.js',
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'/src/scripts/pwa-offline-test.js'
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];
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// Sensitive files that should never be cached
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const SENSITIVE_PATTERNS = [
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/\/api\//,
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/preimage/,
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/payment/,
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/session/,
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/auth/,
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/verification/
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];
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// Network first patterns (always try network first)
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const NETWORK_FIRST_PATTERNS = [
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/\/api\//,
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/\/session\//,
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/\/payment\//,
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/\/verification\//,
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/preimage/,
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/auth/
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];
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// Cache first patterns (only essential PWA assets)
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const CACHE_FIRST_PATTERNS = [
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/manifest\.json$/,
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/logo\/icon-.*\.png$/,
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/logo\/favicon\.ico$/,
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/src\/styles\/pwa\.css$/,
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/src\/pwa\/.*\.js$/,
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/src\/scripts\/pwa-.*\.js$/
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];
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// Explicit allowlist for any response that may be written to Cache Storage.
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// Unknown GET responses are deliberately excluded by default.
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const CACHEABLE_PATHS = new Set([
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'/',
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'/index.html',
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'/manifest.json',
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'/src/styles/pwa.css',
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'/logo/icon-192x192.png',
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'/logo/icon-512x512.png',
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'/logo/favicon.ico',
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'/src/pwa/pwa-manager.js',
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'/src/pwa/install-prompt.js',
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'/src/scripts/pwa-register.js',
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'/src/scripts/pwa-offline-test.js'
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]);
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function isSensitivePath(pathname) {
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return SENSITIVE_PATTERNS.some(pattern => pattern.test(pathname));
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}
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function isCacheableStaticPath(pathname) {
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return CACHEABLE_PATHS.has(pathname);
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}
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self.addEventListener('message', (event) => {
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if (event.data && event.data.type === 'PWA_INSTALLED') {
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self.clients.matchAll().then(clients => {
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clients.forEach(client => {
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client.postMessage({ type: 'PWA_INSTALL_DETECTED' });
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});
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});
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}
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});
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// Install event - cache static assets with better error handling
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self.addEventListener('install', (event) => {
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event.waitUntil(
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getAppVersion().then(async (version) => {
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console.log('📦 Service Worker installing with version:', version);
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return caches.open(STATIC_CACHE)
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.then(async (cache) => {
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// Cache assets one by one to handle failures gracefully
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const cachePromises = STATIC_ASSETS.map(async (url) => {
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try {
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// Skip sensitive patterns
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if (SENSITIVE_PATTERNS.some(pattern => pattern.test(url))) {
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return;
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}
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// Add cache-busting for meta.json
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if (url.includes('meta.json')) {
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url = url + '?t=' + Date.now();
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}
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await cache.add(url);
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} catch (error) {
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console.warn(`⚠️ Failed to cache ${url}:`, error.message);
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// Continue with other assets even if one fails
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}
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});
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await Promise.allSettled(cachePromises);
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// Force activation of new service worker
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return self.skipWaiting();
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})
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.catch((error) => {
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console.error('❌ Failed to open cache:', error);
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// Still skip waiting to activate the service worker
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return self.skipWaiting();
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});
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})
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);
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});
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// Activate event - clean up old caches and notify about updates
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self.addEventListener('activate', (event) => {
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event.waitUntil(
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getAppVersion().then(async (version) => {
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console.log('✅ Service Worker activating with version:', version);
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const cacheNames = await caches.keys();
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// Remove all old caches that don't match current version
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const deletePromises = cacheNames.map(cacheName => {
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// Remove caches that don't match current version
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if (cacheName !== STATIC_CACHE &&
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cacheName !== DYNAMIC_CACHE &&
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cacheName !== CACHE_NAME &&
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cacheName.startsWith('securebit-pwa-')) {
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console.log(`🗑️ Removing old cache: ${cacheName}`);
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return caches.delete(cacheName);
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}
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});
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await Promise.all(deletePromises);
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// Notify all clients about the update
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return self.clients.claim().then(() => {
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self.clients.matchAll().then(clients => {
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clients.forEach(client => {
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client.postMessage({
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type: 'SW_ACTIVATED',
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version: version,
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timestamp: Date.now()
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});
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});
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});
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});
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})
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);
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});
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// Removed duplicate activate event code
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// Fetch event - handle requests with security-aware caching
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self.addEventListener('fetch', (event) => {
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const url = new URL(event.request.url);
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// Skip non-GET requests
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if (event.request.method !== 'GET') {
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return;
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}
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// Skip sensitive endpoints
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if (isSensitivePath(url.pathname)) {
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console.log('🔒 Skipping cache for sensitive endpoint:', url.pathname);
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return;
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}
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// Skip chrome-extension and non-http requests
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if (url.protocol !== 'http:' && url.protocol !== 'https:') {
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return;
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}
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// Network-first for meta.json (never cache)
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if (url.pathname === '/meta.json' || url.pathname.endsWith('/meta.json')) {
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event.respondWith(
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fetch(event.request, {
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cache: 'no-store',
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headers: {
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'Cache-Control': 'no-cache, no-store, must-revalidate',
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'Pragma': 'no-cache'
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}
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}).catch(() => {
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// Fallback if network is unavailable
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return new Response(JSON.stringify({
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version: APP_VERSION,
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error: 'Network unavailable'
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}), {
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headers: { 'Content-Type': 'application/json' }
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});
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})
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);
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return;
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}
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// Network-first for JS files from dist/ (don't cache for updates)
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if (url.pathname.startsWith('/dist/') && (url.pathname.endsWith('.js') || url.pathname.endsWith('.mjs'))) {
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event.respondWith(
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fetch(event.request, {
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cache: 'no-store',
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headers: {
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'Cache-Control': 'no-cache, no-store, must-revalidate',
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'Pragma': 'no-cache'
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}
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}).catch((error) => {
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// Log error for debugging
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console.warn('⚠️ Failed to fetch JS file:', url.pathname, error.message);
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// Try to get from cache as fallback
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return caches.match(event.request).then(cachedResponse => {
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if (cachedResponse) {
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console.log('📦 Using cached version of:', url.pathname);
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return cachedResponse;
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}
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// Only return 503 if no cache available
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return new Response('Network unavailable', {
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status: 503,
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statusText: 'Service Unavailable',
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headers: { 'Content-Type': 'text/plain' }
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});
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});
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})
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);
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return;
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}
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event.respondWith(handleRequest(event.request));
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});
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// Conservative request handling - only cache PWA essentials
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async function handleRequest(request) {
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const url = new URL(request.url);
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try {
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// Strategy 1: Cache First (only for essential PWA assets)
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if (
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url.origin === self.location.origin &&
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isCacheableStaticPath(url.pathname) &&
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!isSensitivePath(url.pathname) &&
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CACHE_FIRST_PATTERNS.some(pattern => pattern.test(url.pathname))
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) {
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return await cacheFirst(request);
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}
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// Strategy 2: Network First (for all other requests)
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if (NETWORK_FIRST_PATTERNS.some(pattern => pattern.test(url.pathname))) {
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return await networkFirst(request);
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}
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// Strategy 3: Network First for everything else (no aggressive caching)
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return await networkFirst(request);
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} catch (error) {
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console.error('❌ Request handling failed:', error);
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return await handleOffline(request);
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}
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}
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// Cache First strategy with Response cloning fix
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async function cacheFirst(request) {
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const url = new URL(request.url);
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const cachedResponse = await caches.match(request);
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if (cachedResponse) {
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return cachedResponse;
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}
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try {
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const networkResponse = await fetch(request);
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if (
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networkResponse &&
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networkResponse.ok &&
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url.origin === self.location.origin &&
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isCacheableStaticPath(url.pathname) &&
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!isSensitivePath(url.pathname)
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) {
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// Clone the response before using it
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const responseToCache = networkResponse.clone();
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const cache = await caches.open(STATIC_CACHE);
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cache.put(request, responseToCache);
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}
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return networkResponse;
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} catch (error) {
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console.warn('⚠️ Cache-first strategy failed:', error.message);
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return await handleOffline(request);
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}
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}
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// Network First strategy with Response cloning fix
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async function networkFirst(request) {
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const url = new URL(request.url);
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try {
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const networkResponse = await fetch(request);
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if (networkResponse && networkResponse.ok) {
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// Only cache explicitly known-safe static responses.
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if (
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url.origin === self.location.origin &&
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isCacheableStaticPath(url.pathname) &&
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!isSensitivePath(url.pathname)
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) {
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// Clone the response before caching
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const responseToCache = networkResponse.clone();
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const cache = await caches.open(DYNAMIC_CACHE);
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cache.put(request, responseToCache).catch(err => {
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console.warn('⚠️ Cache put failed (non-critical):', err.message);
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});
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}
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return networkResponse;
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}
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// If response is not ok, try cache
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const cachedResponse = await caches.match(request);
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if (cachedResponse) {
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return cachedResponse;
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}
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return networkResponse; // Return the non-ok response anyway
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} catch (error) {
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console.warn('⚠️ Network-first strategy failed:', error.message);
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const cachedResponse = await caches.match(request);
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if (cachedResponse) {
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return cachedResponse;
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}
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return await handleOffline(request);
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}
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}
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// Stale While Revalidate strategy with Response cloning fix
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async function staleWhileRevalidate(request) {
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const url = new URL(request.url);
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const cachedResponse = await caches.match(request);
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const networkResponsePromise = fetch(request)
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.then((networkResponse) => {
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if (
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networkResponse &&
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networkResponse.ok &&
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url.origin === self.location.origin &&
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isCacheableStaticPath(url.pathname) &&
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!isSensitivePath(url.pathname)
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) {
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// Clone the response before caching
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const responseToCache = networkResponse.clone();
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caches.open(DYNAMIC_CACHE)
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.then(cache => cache.put(request, responseToCache))
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.catch(error => console.warn('⚠️ Cache update failed:', error.message));
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}
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return networkResponse;
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})
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.catch(error => {
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console.warn('⚠️ Network request failed:', error.message);
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return null;
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});
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return cachedResponse || networkResponsePromise || handleOffline(request);
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}
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// Offline fallback - minimal caching for PWA only
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async function handleOffline(request) {
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const url = new URL(request.url);
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// For navigation requests, return cached index.html
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if (request.destination === 'document' || request.mode === 'navigate') {
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const cachedIndex = await caches.match('/index.html');
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if (cachedIndex) {
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return cachedIndex;
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}
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// Fallback to root if index.html not found
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const cachedRoot = await caches.match('/');
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if (cachedRoot) {
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return cachedRoot;
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}
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}
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// For PWA assets, try to return cached version
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if (CACHE_FIRST_PATTERNS.some(pattern => pattern.test(url.pathname))) {
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const cachedAsset = await caches.match(request);
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if (cachedAsset) {
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return cachedAsset;
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}
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}
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// Return a generic offline response for everything else
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return new Response(
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JSON.stringify({
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error: 'Offline',
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message: 'Network unavailable - PWA offline mode',
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url: url.pathname
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}),
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{
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status: 503,
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statusText: 'Service Unavailable',
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headers: { 'Content-Type': 'application/json' }
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}
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);
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}
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// Background sync for failed requests
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self.addEventListener('sync', (event) => {
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if (event.tag === 'retry-failed-requests') {
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event.waitUntil(retryFailedRequests());
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}
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});
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async function retryFailedRequests() {
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try {
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// Get all cached requests that failed
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const cache = await caches.open(DYNAMIC_CACHE);
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const requests = await cache.keys();
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for (const request of requests) {
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try {
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// Try to fetch the request again
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const response = await fetch(request);
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if (response.ok) {
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// Update cache with successful response
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await cache.put(request, response);
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}
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} catch (error) {
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console.warn('⚠️ Retry failed for:', request.url, error.message);
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}
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}
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} catch (error) {
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console.error('❌ Failed to retry requests:', error);
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}
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}
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// Notification click handler
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self.addEventListener('notificationclick', (event) => {
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event.notification.close();
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event.waitUntil(
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clients.openWindow('/')
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);
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});
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// Message handler for communication with main thread
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self.addEventListener('message', (event) => {
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if (event.data && event.data.type === 'SKIP_WAITING') {
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self.skipWaiting();
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}
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if (event.data && event.data.type === 'CACHE_CLEAR') {
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event.waitUntil(clearCaches());
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}
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if (event.data && event.data.type === 'CACHE_STATUS') {
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event.waitUntil(getCacheStatus().then(status => {
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event.ports[0].postMessage(status);
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}));
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}
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});
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// Clear all caches
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async function clearCaches() {
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const cacheNames = await caches.keys();
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await Promise.all(
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cacheNames.map(cacheName => caches.delete(cacheName))
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);
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}
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// Get cache status
|
|
async function getCacheStatus() {
|
|
const cacheNames = await caches.keys();
|
|
const status = {};
|
|
|
|
for (const cacheName of cacheNames) {
|
|
const cache = await caches.open(cacheName);
|
|
const keys = await cache.keys();
|
|
status[cacheName] = keys.length;
|
|
}
|
|
|
|
return status;
|
|
}
|
|
|
|
// Error handler
|
|
self.addEventListener('error', (event) => {
|
|
console.error('❌ Service Worker error:', event.error);
|
|
});
|
|
|
|
// Unhandled rejection handler
|
|
self.addEventListener('unhandledrejection', (event) => {
|
|
console.error('❌ Service Worker unhandled rejection:', event.reason);
|
|
});
|