Agent skill
chrome-extension
Comprehensive guide for building Chrome extensions with Manifest V3. Use this skill whenever the user mentions Chrome extension, browser extension, manifest.json, content script, service worker (in extension context), popup, side panel, chrome.runtime, chrome.tabs, chrome.storage, chrome.scripting, background script, MV3, Manifest V3, or any Chrome extension API. Also trigger when the user wants to inject scripts into web pages, communicate between page and background, bypass CSP from a content script, build an RPC layer over chrome messaging, or publish to the Chrome Web Store. Covers both new extension projects and adding features to existing ones. Do NOT use for framework-specific questions.
Install this agent skill to your Project
npx add-skill https://github.com/samber/cc-skills/tree/main/skills/chrome-extension
Metadata
Additional technical details for this skill
- author
- samber
- version
- 1.0.2
- openclaw
-
{ "emoji": "\ud83d\udcdd", "homepage": "https://github.com/samber/cc-skills", "requires": { "bins": [ "git", "node", "npm" ] } }
SKILL.md
Chrome Extension Development (Manifest V3)
This skill covers everything needed to build, debug, and publish Chrome extensions with MV3. It is organized as a routing document: read this file first to understand the architecture and decision points, then load the relevant reference file for implementation details.
Reference files
Read only the reference files relevant to the current task. Each file is self-contained.
| File | When to read |
|---|---|
references/manifest-v3.md |
Setting up or modifying manifest.json, configuring icons, versioning |
references/service-worker.md |
Background logic, lifecycle, state persistence, alarms, events |
references/content-scripts.md |
Injecting code into pages, isolated/main world, dynamic injection, SPA handling, orphaning |
references/messaging-rpc.md |
Communication between any contexts, typed protocols, RPC layer, async handler patterns |
references/ui-surfaces.md |
Popup, options page, side panel, context menus, commands, notifications, omnibox, devtools panel |
references/storage.md |
chrome.storage (local/sync/session), quotas, reactive patterns, framework hooks |
references/network-csp.md |
HTTP requests from content scripts, CSP bypass relay, declarativeNetRequest, offscreen docs, CORS |
references/permissions.md |
Required/optional permissions, host permissions, activeTab, runtime request flow |
references/web-accessible-resources.md |
Exposing extension files to web pages, security implications |
references/typescript-build.md |
TypeScript setup, project structure, build tools comparison, bundling |
references/publishing.md |
Chrome Web Store submission, review process, rejection reasons, updates, privacy policy |
references/execution-contexts.md |
Communication flow diagrams, per-context capabilities/limits, choosing the right messaging method |
references/debugging-mistakes.md |
DevTools for extensions, testing SW termination, common gotchas, error patterns |
Architecture overview
A Chrome extension has up to 5 execution contexts that communicate via message passing:
┌──────────────────────────────────────────────────────────┐
│ Extension Process │
│ ┌─────────────────┐ ┌───────┐ ┌─────────┐ ┌──────┐ │
│ │ Service Worker │ │ Popup │ │ Options │ │ Side │ │
│ │ (background) │ │ │ │ Page │ │Panel │ │
│ │ - No DOM │ │ Full │ │ Full │ │ Full │ │
│ │ - Ephemeral │ │ DOM │ │ DOM │ │ DOM │ │
│ │ - All chrome.* │ │ All │ │ All │ │ All │ │
│ │ APIs │ │ APIs │ │ APIs │ │ APIs │ │
│ └────────┬─────────┘ └───┬───┘ └────┬────┘ └──┬───┘ │
│ │ chrome.runtime.sendMessage / connect │ │
└───────────┼────────────────┼───────────┼──────────┼──────┘
│ │ │ │
chrome.tabs.sendMessage │ │ │
│ │ │ │
┌───────────┼────────────────┼───────────┼──────────┼──────┐
│ Web Page ▼ │
│ ┌──────────────────┐ ┌──────────────────┐ │
│ │ Content Script │ │ Main World Script │ │
│ │ (isolated world) │◄──►│ (page context) │ │
│ │ - Shared DOM │ │ - Shared DOM │ │
│ │ - Own JS scope │ │ - Page JS scope │ │
│ │ - chrome.runtime │ │ - No chrome.* API │ │
│ │ - chrome.storage │ │ - Full page access│ │
│ │ - Subject to CSP │ │ - Subject to CSP │ │
│ │ (network only) │ │ (fully) │ │
│ └──────────────────┘ └──────────────────┘ │
│ ▲ window.postMessage │
│ │ (through shared DOM) │
└──────────────────────────────────────────────────────────┘
Communication flows (labeled channels)
┌───────────────────────────────────────────────────────────────────────────┐
│ Extension Process │
│ │
│ ┌─────────────────┐ chrome.runtime ┌───────┐ ┌─────────┐ ┌──────┐ │
│ │ Service Worker │◄─.sendMessage()──│ Popup │ │ Options │ │ Side │ │
│ │ (background) │◄─.connect()──────│ │ │ Page │ │Panel │ │
│ │ │ └───────┘ └─────────┘ └──────┘ │
│ │ - No DOM │ ┌────────────────────────────────────────────┐ │
│ │ - Ephemeral 30s │ │ SW cannot push to these pages. │ │
│ │ - All chrome.* │ │ Use: ports (.connect) or storage.onChanged │ │
│ └────────┬─────────┘ └────────────────────────────────────────────┘ │
│ │ │
│ chrome.storage.onChanged ◄── fires across ALL contexts simultaneously │
│ │
└───────────┼──────────────────────────────────────────────────────────────┘
│ chrome.tabs.sendMessage(tabId, ...) [SW must know tabId]
│
┌───────────┼──────────────────────────────────────────────────────────────┐
│ Web Page ▼ │
│ ┌──────────────────┐ window.postMessage ┌──────────────────┐ │
│ │ Content Script │◄───────────────────►│ Main World Script │ │
│ │ (isolated world) │ Custom DOM events │ (page context) │ │
│ │ │ │ │ │
│ │ chrome.runtime ───┼── to/from SW │ No chrome.* APIs │ │
│ │ chrome.storage │ │ Full page JS │ │
│ │ Shared DOM │ │ Shared DOM │ │
│ │ Page CSP (network)│ │ Page CSP (full) │ │
│ └──────────────────┘ └──────────────────┘ │
└──────────────────────────────────────────────────────────────────────────┘
For detailed flow diagrams (three-layer bridge, cross-extension, storage broadcast) and a per-context breakdown of permissions, limits, and workarounds: → Read references/execution-contexts.md
Communication methods at a glance
| Method | Direction | Best for |
|---|---|---|
chrome.runtime.sendMessage |
Any ext context → SW | One-shot request/response (90% of cases) |
chrome.tabs.sendMessage |
SW → content script (by tabId) | Pushing data to a specific tab |
chrome.runtime.connect (Port) |
Bidirectional | Streaming, progress, SW ↔ popup |
window.postMessage |
Between worlds on same page | Page JS ↔ content script bridge |
chrome.storage.onChanged |
Broadcast to all contexts | Settings sync, no messaging needed |
→ Full matrix with limits and edge cases: references/execution-contexts.md → Implementation patterns, typed protocols, RPC layer: references/messaging-rpc.md
Key architectural rules
-
Service worker is ephemeral. It terminates after 30s of inactivity. All state must be persisted to chrome.storage. All event listeners must be registered synchronously at the top level. Never use setTimeout/setInterval for anything beyond a few seconds. → Read
references/service-worker.md -
Content scripts run in the page's origin. Network requests from content scripts are subject to the page's CSP and CORS. To bypass, relay through the service worker. → Read
references/network-csp.md -
Messaging is the backbone. Every cross-context interaction uses chrome.runtime messaging. The #1 bug: forgetting to
return truefrom async message listeners. → Readreferences/messaging-rpc.md -
Permissions determine CWS review speed. Broad host_permissions trigger manual review (weeks). activeTab + optional permissions = fast automated review. → Read
references/permissions.md -
Popup is destroyed on blur. Side panel persists. Choose based on interaction duration. → Read
references/ui-surfaces.md
Decision tree: which context handles what?
"I need to run code when the user visits a page"
→ Content script. Static (manifest) for known URL patterns, dynamic (chrome.scripting) for user-triggered injection. Default to isolated world unless you need page JS access. → Read references/content-scripts.md
"I need to make an HTTP request to my API"
- From popup/options/side panel: direct fetch() works (extension origin, no CSP issues)
- From content script on a page with restrictive CSP: relay through service worker
- From service worker: direct fetch() works (requires host_permissions for the target domain) → Read
references/network-csp.md
"I need to store user settings"
- Settings that sync across devices: chrome.storage.sync (100KB limit)
- Large data or caches: chrome.storage.local (10MB, or unlimited with permission)
- Ephemeral state surviving SW restarts: chrome.storage.session → Read
references/storage.md
"I need to modify HTTP headers or block requests"
→ declarativeNetRequest (NOT webRequest, which lost blocking in MV3) → Read references/network-csp.md
"I need the page's JavaScript to talk to my extension"
→ Three-layer bridge: page (window.postMessage) → content script → service worker → Read references/messaging-rpc.md
"I need to understand what each context can and cannot do"
→ Read references/execution-contexts.md — per-context cards listing chrome.* access, DOM, network, storage, lifetime, hard limits, and practical workarounds.
"I need periodic background tasks"
→ chrome.alarms (minimum 30s interval). NOT setTimeout. → Read references/service-worker.md
"I need DOM APIs in the background" (DOMParser, Canvas, Audio)
→ Offscreen document. One per extension, only chrome.runtime available. → Read references/network-csp.md
"I need to authenticate with OAuth"
→ chrome.identity.launchWebAuthFlow() or chrome.identity.getAuthToken() (Google only) → Read references/service-worker.md (identity section)
Workflow: new extension from scratch
-
Define the manifest with minimum permissions. Start with
activeTab+scripting. → Readreferences/manifest-v3.md -
Set up TypeScript and build tooling (or use CRXJS for Vite-based dev). → Read
references/typescript-build.md -
Implement the service worker with all event listeners at the top level. → Read
references/service-worker.md -
Add content scripts if you need page interaction. → Read
references/content-scripts.md -
Build UI surfaces (popup, options, side panel) as needed. → Read
references/ui-surfaces.md -
Wire up messaging between all contexts. → Read
references/messaging-rpc.md -
Test with DevTools, specifically test service worker termination. → Read
references/debugging-mistakes.md -
Publish to Chrome Web Store. → Read
references/publishing.md
Workflow: adding a feature to an existing extension
- Identify which context the feature belongs to (see decision tree above).
- Read the relevant reference file(s) for that context.
- Check if new permissions are needed. Prefer optional_permissions for new capabilities. → Read
references/permissions.md - Update the manifest if adding new content scripts, UI surfaces, or permissions.
- Handle extension updates gracefully (content script orphaning). → Read
references/content-scripts.md(orphaning section)
Minimal manifest.json template
{
"manifest_version": 3,
"name": "My Extension",
"version": "1.0.0",
"description": "What it does in one sentence",
"permissions": ["storage", "activeTab", "scripting"],
"action": {
"default_popup": "popup.html",
"default_icon": {
"16": "icons/icon16.png",
"48": "icons/icon48.png",
"128": "icons/icon128.png"
}
},
"background": {
"service_worker": "background.js",
"type": "module"
},
"icons": {
"16": "icons/icon16.png",
"48": "icons/icon48.png",
"128": "icons/icon128.png"
}
}
→ For the full manifest reference with all fields: references/manifest-v3.md
Code patterns quick reference
Async message handler (the safe pattern)
// Wrap async handlers to avoid the return-true trap
function asyncHandler(
fn: (msg: any, sender: chrome.runtime.MessageSender) => Promise<any>,
) {
return (
message: any,
sender: chrome.runtime.MessageSender,
sendResponse: (r: any) => void,
) => {
fn(message, sender)
.then(sendResponse)
.catch((e) => sendResponse({ __error: true, message: e.message }));
return true; // literal true, not Promise<true>
};
}
chrome.runtime.onMessage.addListener(
asyncHandler(async (msg, sender) => {
if (msg.type === "FETCH") {
const res = await fetch(msg.url);
return { ok: res.ok, data: await res.text() };
}
}),
);
CSP bypass relay (content script → service worker → API)
// content-script.ts
async function apiCall(endpoint: string, options?: RequestInit) {
return chrome.runtime.sendMessage({ type: "API_RELAY", endpoint, options });
}
// background.ts
const ALLOWED_ENDPOINTS = ["https://api.example.com"];
chrome.runtime.onMessage.addListener(
asyncHandler(async (msg) => {
if (msg.type !== "API_RELAY") return;
if (!ALLOWED_ENDPOINTS.some((e) => msg.endpoint.startsWith(e))) {
throw new Error("Blocked endpoint");
}
const res = await fetch(msg.endpoint, msg.options);
return { ok: res.ok, status: res.status, data: await res.text() };
}),
);
Persist state across SW restarts
// Use chrome.storage.session for ephemeral state
chrome.storage.session.setAccessLevel({
accessLevel: "TRUSTED_AND_UNTRUSTED_CONTEXTS",
});
async function getState<T>(key: string, fallback: T): Promise<T> {
const result = await chrome.storage.session.get(key);
return result[key] ?? fallback;
}
async function setState<T>(key: string, value: T): Promise<void> {
await chrome.storage.session.set({ [key]: value });
}
Orphaned content script detection
function isExtensionContextValid(): boolean {
try {
return !!chrome.runtime?.id;
} catch {
return false;
}
}
// Before any chrome.runtime call
if (!isExtensionContextValid()) {
showRefreshBanner();
return;
}
What NOT to do
- Do NOT use
eval(),new Function(), or load remote scripts. MV3 forbids it. - Do NOT use
setTimeout/setIntervalfor anything > 5s in service workers. - Do NOT register event listeners inside callbacks or async functions.
- Do NOT use
<all_urls>host permission unless absolutely necessary. - Do NOT rely on DevTools keeping the service worker alive during testing.
- Do NOT forget
return truein async message listeners. - Do NOT use
localStorageorsessionStoragein service workers (they don't exist there). - Do NOT assume content scripts survive extension updates.
- Do NOT use
webRequestblocking (removed in MV3). UsedeclarativeNetRequest. - Do NOT use
chrome.extension.getBackgroundPage()(removed in MV3).
Recommended Agent Skills
Expand your agent's capabilities with these related and highly-rated skills.
substack-ghostwriting
Write, optimize, and grow Substack content — both newsletter issues (email-first) and web posts (web-first articles/essays). Covers ghostwriting with voice matching, Substack algorithm optimization, Notes strategy, email formatting, SEO, growth tactics, and monetization planning. Use when the user mentions Substack, newsletters, write a newsletter issue, Substack post, Substack article, web post on Substack, evergreen content, SEO for Substack, newsletter growth, Notes strategy, ghostwrite for, match someone's voice, write in the style of, newsletter monetization, paid subscribers, or any task involving Substack as a platform. Also trigger for general article/newsletter writing even if Substack isn't named explicitly, or when the user wants to adapt existing content (blog post, talk, thread) into newsletter or web post format. Do NOT use for generic blog post writing without a newsletter/Substack context (-> See samber/cc-skills@technical-article-writer skill).
promql-cli
CLI for querying Prometheus and PromQL-compatible engines (Thanos, Cortex, VictoriaMetrics, Grafana Mimir, Grafana Tempo...) — instant queries, range queries, metric discovery (metrics/labels/meta subcommands), output formats (table/csv/json/graph). Apply when executing PromQL queries, troubleshooting performance issues on a software having observability, investigating latency/error rates/saturation, or analyzing time series data.
technical-article-writer
Write compelling technical articles and blog posts for developer audiences. Use this skill whenever the user asks to write a blog post, technical article, or any long-form technical content. Also trigger when the user says 'write about [technical topic]', 'help me draft an article', 'turn this into a blog post', 'write a post about', 'I want to publish something about', or mentions writing for a developer audience. Covers the full pipeline: idea sharpening, hook/title generation, article structure, body drafting, and editing. Even if the user just says 'I want to write about X' without specifying format, use this skill. Do NOT use for platform-specific optimization, newsletter strategy, or ghostwriting voice matching.
conventional-git
Conventional Commits v1.0.0 branch naming and commit message standards for GitHub and GitLab projects. Use when creating branches, writing commits, generating commit messages, reviewing branch conventions, or setting up changelog automation. Apply when your project needs consistent git history, SemVer-driven releases, parseable changelog generation, or automatic issue closing.
humaniseur-fr
Remove AI-writing patterns from French text and inject voice, personality, and soul. Use when editing, reviewing, rewriting, or cleaning up French content that reads like ChatGPT/Claude output. Humanize, humanise, déslopifier. Detects and fixes 27 patterns: AI vocabulary overuse (crucial, essentiel, notamment, par ailleurs, dans le paysage), anglicisms from English-first models (faire du sens, adresser un problème), copula avoidance, formulaic openings (À l'ère de, Dans le paysage actuel), superficial participle analyses (-ant), em dash overuse, redundant adjective doublets, rule of three, sycophantic tone, typographic tells (curly quotes instead of guillemets). Trigger on: humaniser, déslopifier, rendre plus humain, nettoyer le texte IA, enlever le slop, réécrire pour que ça sonne humain, make it sound human.
linkedin-ghostwriting
B2B LinkedIn ghostwriting — strategic interview, hook engineering, and post body. Use when the user wants to write LinkedIn content, create ghostwritten posts, ghostwrite for a founder or executive, develop a B2B social strategy, or needs hooks, post structures, or copywriting frameworks for LinkedIn. Apply when the user shares a story, result, or insight and wants it turned into a post.
Didn't find tool you were looking for?