* feat(browser): add copilot security contracts * fix(gateway): expose verified client identity to handlers * feat(browser): add secure per-tab copilot panel Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * refactor(browser): separate copilot gateway hint custody * fix(browser): preserve legacy pairing parse shape * fix(browser): harden copilot lifecycle custody Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(browser): enforce copilot lifecycle boundaries Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * style(browser): format copilot sources Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(browser): preserve copilot consent revocation Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * refactor(browser): split copilot custody owners Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * test(browser): normalize websocket array buffers Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * chore(protocol): regenerate Swift gateway models Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * refactor(browser): model copilot runtime entrypoints Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(browser): honor extension build boundaries Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * test(gateway): assert targeted chat delivery Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * test(gateway): cover targeted delivery calls Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(browser): declare copilot build dependencies Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(ci): clear browser copilot gate failures Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * test(ci): cover copilot lint exclusion Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * fix(browser): gate copilot on relay custody Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> * test(browser): bound copilot relay frames Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com> --------- Co-authored-by: Cameron Beeley <cameron.beeley@gmail.com>
8.8 KiB
summary, read_when, title
| summary | read_when | title | |||
|---|---|---|---|---|---|
| Chrome extension: let OpenClaw drive your signed-in Chrome with no remote-debugging prompt |
|
Chrome Extension |
Chrome extension
The OpenClaw Chrome extension lets an agent control your signed-in Chrome tabs without launching a separate managed browser, and without Chrome's blocking "Allow remote debugging?" prompt.
This matters when you drive OpenClaw from a phone (Telegram, WhatsApp, etc.):
the user profile attaches over
Chrome's remote-debugging port, which pops a desktop consent dialog nobody can
click when you are away. The extension uses the chrome.debugger API instead,
so the only in-page hint is Chrome's dismissible "OpenClaw started debugging
this browser" banner.
This is the same shape used by Anthropic's Claude in Chrome and OpenAI's Codex Chrome extensions.
How it works
Three parts:
- Browser control service (Gateway or node host): the API the
browsertool calls. - Extension relay (loopback WebSocket): a small server the control service
starts on
127.0.0.1. It presents a Chrome DevTools Protocol endpoint to OpenClaw and speaks to the extension. Both sides authenticate with a host-local token (see below). - OpenClaw Chrome extension (MV3): attaches to tabs with
chrome.debugger, forwards CDP traffic, and manages the OpenClaw tab group.
OpenClaw only sees and controls tabs that are in the OpenClaw tab group. The group is the consent boundary: drag a tab in to share it, drag it out (or click the toolbar button) to revoke access instantly.
Install and pair
-
Print the unpacked extension path:
openclaw browser extension path -
Open
chrome://extensions, enable Developer mode, click Load unpacked, and select the printed directory. -
Print the pairing string:
openclaw browser extension pair -
Click the OpenClaw toolbar icon and paste the pairing string into the popup. The badge turns ON when the extension connects to the relay.
The pairing token is a host-local secret created on first use and stored
under credentials/ in the state directory (mode 0600). Each machine that
runs a browser — the Gateway host and every browser node host — owns its own
token, so no credential has to travel between machines. To rotate it, delete the
browser-extension-relay.secret file and pair again.
Use it
Select the built-in chrome profile in a browser tool call, or make it the
default:
openclaw config set browser.defaultProfile chrome
{
browser: {
profiles: {
chrome: { driver: "extension", color: "#FF4500" },
},
},
}
- Share a tab: click the OpenClaw toolbar button on that tab (it joins the OpenClaw tab group), or drag any tab into the group.
- The agent can also open new tabs; those land in the group automatically.
- Revoke: click the button again, drag the tab out of the group, or dismiss Chrome's debugging banner. The agent loses access to that tab immediately.
Tab copilot side panel
After pairing the extension, click Open tab copilot in its toolbar popup.
OpenClaw configures sidepanel.html for that exact Chrome tab; the manifest has
no global side-panel path. Each tab therefore gets a separate panel document,
Gateway session, message subscription, and typed browser-tool binding.
The panel does not place the page URL, title, DOM, or visible text in your
message. It sends only the text you type. Browser actions carry a separate
Gateway-authenticated binding containing the Chrome tab and CDP target, and the
browser tool rejects attempts to replace that target or use browser-wide
actions. Replies stay in the panel (deliver: false); they do not inherit a
Telegram, Discord, or other channel route.
The copilot is a dedicated paired Gateway device with operator.read and
operator.write scopes. On first use, inspect and approve its request:
openclaw devices list
openclaw devices approve <requestId>
The extension retains that device identity and the Gateway-issued device token, scoped to the canonical Gateway endpoint that issued them. Pairing a different Gateway creates separate identity, token, and session custody; credentials and sessions are never reused across endpoints. The extension does not persist the Gateway shared secret. A panel can subscribe only to its own tab sessions, and the Gateway filters those events before delivery.
If the Gateway connection drops during a run, the extension keeps durable custody of that run ID. On reconnect it aborts the unresolved run before re-enabling any panel, then reloads transcript history. This fail-closed step prevents browser actions from continuing unseen across a delivery gap.
Closing a tab immediately removes its live subscription, aborts any visible
run, and marks that tab's session archived. If the Gateway is temporarily
offline, the extension persists the pending archive and retries only when that
same Gateway endpoint reconnects; it never sends an archive request to a
different Gateway. After a browser crash, the next launch archives sessions
left by the previous browser instance. Archived sessions reject new work, while
their transcripts remain available in session history. Browser-copilot keys are
thread sessions, so normal age and entry-count maintenance preserves them. The
per-agent session disk budget still applies (default 2gb) and may evict the
oldest sessions under pressure; see session maintenance.
The side panel currently requires either a Gateway-hosted extension relay or a direct remote Gateway relay. A loopback relay on a browser node cannot yet provide the node route required by the typed tab binding, so the panel denies that topology instead of falling back to browser-wide routing.
Remote / cross-machine
Chrome does not have to run on the Gateway host. Three topologies work:
- Same host (Gateway + Chrome on one machine): pair on that machine with
openclaw browser extension pair. The relay is loopback-only. If the local Gateway uses TLS, pass its certificate hostname explicitly with--gateway-url wss://gateway-host.example; pairing never substitutes a loopback IP. - Direct to a remote Gateway (Chrome on your laptop, Gateway on a VPS, and
nothing else on the laptop): on the Gateway, run
openclaw browser extension pair --gateway-url wss://your-gateway.example.com. It prints awss://…/browser/extension#<secret>string; load and pair the extension on the laptop. The extension connects straight to the Gateway overwss://— no OpenClaw install, Node, CLI, or open inbound port on the laptop. This is the managed-hosting path. - Via a browser node host (Chrome on a machine already running an OpenClaw
node): run
pairon the node and pair locally; the Gateway proxies browser actions to the node over its existing authenticated node link.
The pairing secret is per host (the Gateway's, in the direct case), validated by
the Gateway's /browser/extension route. For the direct path, serve the Gateway
over TLS (wss://) so the pairing secret and CDP traffic are encrypted.
The secret remains in the pairing string's URL fragment and is presented during
the WebSocket handshake as a subprotocol credential, so normal proxy access
logs do not receive it in the request URL. Ensure any reverse proxy preserves
the standard Sec-WebSocket-Protocol header.
Diagnostics
openclaw browser status --browser-profile chrome
openclaw browser doctor --browser-profile chrome
doctor reports the Chrome extension relay check as failing until the
extension popup shows Connected.
Security model
- The relay binds loopback only; both WebSocket sides are authenticated with the
derived token, and the extension side is origin-checked to
chrome-extension://. - Direct Gateway pairing does not accept the relay token in the request URL; the bundled extension carries it in the WebSocket subprotocol list instead.
- The agent can only see and drive tabs in the OpenClaw tab group. Your other tabs stay private.
- Side-panel runs are scoped twice: Gateway delivery uses a per-session allowlist, and browser tools enforce the Chrome tab/target binding carried outside the prompt.
- Compared with the
user(Chrome MCP) profile, which exposes your whole signed-in browser once you approve the remote-debugging prompt, the extension keeps the shared surface scoped to a tab group you control at a glance.
See also: Browser for the full profile model and the
managed openclaw and Chrome MCP user profiles.