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openclaw/docs/nodes/computer-use.md
Peter Steinberger 5c6bccff4a feat(macos): enable Computer Control by default and diagnose stale Accessibility grants (#115280)
* feat(macos): enable and diagnose computer control

* docs(macos): explain computer control permissions

* chore: refresh macOS i18n and docs indexes

* test: update macOS computer control i18n fixture
2026-07-28 13:00:32 -04:00

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summary, read_when, title
summary read_when title
Capability-based desktop control through the computer tool and computer.act node command
Letting the gateway agent see and control a paired desktop
Enablement, permissions, or safety for computer use
Extending the computer.act node command or its fulfillers
Computer use

Computer use lets the gateway agent see and control a capable paired desktop. Eligibility is capability-based: the connected node must advertise both computer.act and screen.snapshot, whose result must include a displayFrameId. The tool captures a screenshot as its reference frame, then drives the pointer and keyboard through computer.act. The action set follows the core Anthropic computer-use actions; optional computer_20251124 zoom is not exposed. A vision-capable model drives it through the built-in computer agent tool.

The agent emits one uniform command, computer.act; it cannot tell how a node fulfills it. The bundled macOS app handles the command in-process with embedded Peekaboo services plus narrow CoreGraphics primitives (correct TCC permissions, no extra process). Windows and Linux can use the optional, experimental cua-computer plugin with a separately installed cua-driver binary. Both fulfillers use the same durable local enablement and pairing policy.

Requirements

  • A paired, connected node advertising both computer.act and screen.snapshot, with screen.snapshot returning displayFrameId.
  • macOS fulfiller: app setting Allow Computer Control enabled. It defaults on; an explicit off choice stays off.
  • macOS fulfiller: Accessibility and Event Posting access granted to OpenClaw (for pointer/keyboard injection), plus Screen Recording permission (for screen.snapshot).
  • Windows/Linux fulfiller: bundled cua-computer plugin enabled and a compatible cua-driver 0.10.x executable installed.
  • The pairing update that includes computer.act approved on the gateway.
  • A vision-capable agent model.
  • Tool policy that exposes computer. The default coding profile does not. Add computer to tools.alsoAllow; sandboxed agents also need it in tools.sandbox.tools.alsoAllow.

The computer agent tool

The built-in computer tool takes one action per call. Coordinates are non-negative integer pixels in the most recent screenshot; the node maps them to display points. Coordinate actions must echo the screenshot result's frameId, and an explicit screenIndex must match that frame. OpenClaw also carries a node-issued display identity from the screenshot into the action, so a display reconnect or geometry change fails closed instead of silently retargeting the same index. These checks reject guessed tokens and tokens from another delivered frame or display. A token is not a freshness guarantee: apps can change pixels on the same display after capture, so take a new screenshot whenever the scene may have changed.

  • Reads: screenshot.
  • Pointer: left_click, right_click, middle_click, double_click, triple_click, mouse_move, left_click_drag (with startCoordinate), left_mouse_down, left_mouse_up.
  • Scroll: scroll with scrollDirection (up|down|left|right) and scrollAmount (wheel ticks).
  • Keyboard: type (text), key (combo such as cmd+shift+t or Return), hold_key (text combo held for duration seconds).
  • Pacing: wait (duration seconds).

Modifier keys ride the text field on click and scroll actions (shift, ctrl, alt, cmd). After an input action the tool returns a fresh screenshot so the model can observe the result. If more than one computer-capable node is connected, pass node explicitly.

Screenshots are kept model-only: they are never auto-delivered to the chat channel. Treat all on-screen content as untrusted input; the tool warns the model not to follow on-screen instructions that conflict with the user's request.

Windows and Linux (experimental, via cua-driver)

The bundled cua-computer plugin provides an experimental fulfiller for Windows and Linux node hosts. It is disabled by default and requires the prerelease 0.10.x driver contract:

  1. Install a cua-driver 0.10.x binary from the upstream releases and make it available on PATH. To use another executable location, set plugins.entries.cua-computer.config.driverPath.

  2. Enable the plugin:

    openclaw plugins enable cua-computer
    
  3. Start openclaw node run from the interactive desktop session. The plugin starts the local driver daemon lazily when the first capture or action arrives.

This fulfiller currently controls only the primary display. X11/XWayland is the first-line Linux path. Native Wayland remains an upstream opt-in: set CUA_DRIVER_RS_ENABLE_WAYLAND yourself before starting the node; OpenClaw never sets it automatically. KDE/KWin is unsupported by the upstream native-Wayland input path. hold_key, left_mouse_down, and left_mouse_up are unavailable because cua-driver 0.10.x has no cross-platform desktop-scope hold contract. Modifier-held scrolling and dragging are unavailable on both platforms, and modifier-held clicks are unavailable on Linux. The key action accepts named keys, letters, and modifier combos (for example cmd+c or Return); digit and punctuation keys are rejected because the driver drops their layout-dependent shift state, so send that text through the type action instead. Text typing cannot be cancelled partway through a type_text driver call.

Because cua-driver reports no stable display identity, frame authorization binds to the driver connection plus the live primary-display geometry. A daemon or session reconnect invalidates outstanding frames, but a same-geometry primary-display substitution that keeps the connection open cannot be detected; prefer a stable single-display session for this fulfiller.

OpenClaw disables cua-driver telemetry and update checks for the mcp and serve processes it manages. It does not download or update the driver binary.

Troubleshooting

The cua-computer fulfiller surfaces typed error codes in the tool result and node logs. Common ones:

Code Cause Fix
COMPUTER_DRIVER_UNAVAILABLE The cua-driver binary is not on PATH (or driverPath is wrong), the daemon did not become ready in time, or the node is not Windows/Linux. Install cua-driver 0.10.x on PATH or set driverPath. Run openclaw node run inside the interactive desktop session; on Linux ensure an X11 DISPLAY (or a WAYLAND_DISPLAY with CUA_DRIVER_RS_ENABLE_WAYLAND) is present.
COMPUTER_DRIVER_UNSUPPORTED The connected driver is not cua-driver 0.10.x, or its capability/schema version differs. Install a supported 0.10.x build. The plugin re-probes about 30 seconds after you correct it, so no node restart is needed.
COMPUTER_REFUSED_<code> The driver refused the action with a structured code such as background_unavailable, background_occluded, or foreground_unavailable (KDE/KWin Wayland). Bring the target window forward, switch to X11, or use a supported compositor. See the compatibility notes above.
COMPUTER_STALE_FRAME The coordinates referenced a screenshot that is no longer current (context compaction, a display geometry change, or a reference-width change). Take a fresh screenshot before the coordinate action.
COMPUTER_UNSUPPORTED_ACTION An action this fulfiller cannot faithfully deliver: hold_key, left_mouse_down, left_mouse_up, modifier-held drag/scroll, or modifier-held click on Linux. Use a supported action. cua-driver 0.10.x has no desktop-scope held-input contract.
COMPUTER_UNSUPPORTED_DISPLAY A non-primary screenIndex, a capture/screen geometry mismatch, or a cursor outside the primary display. Drive the primary display only.
COMPUTER_UNSUPPORTED_KEY A key value the driver cannot reproduce reliably: a digit or punctuation key whose shift state is layout-dependent, or an unknown key. Send that text through the type action instead.
COMPUTER_DRIVER_ERROR / COMPUTER_INVALID_REQUEST The driver failed without a structured code, or the action arguments were malformed. Check the driver state and retake a screenshot; correct the action arguments.

The computer.act node command

computer.act is the single node command the tool routes input through (node.invoke with command: "computer.act"). It is:

  • Locally enabled: the node advertises it only while Computer Control is enabled. The gateway can approve that advertised surface once at pairing.
  • Capability-based: the tool requires a connected node to advertise both computer.act and screen.snapshot. The bundled macOS app and the opt-in experimental cua-computer plugin fulfill the same command pair.

Reads reuse screen.snapshot; there is no second capture path. See Camera and screen nodes for the shared capture command.

Authorization

  1. Enable the platform fulfiller: on macOS, Settings → Allow Computer Control starts enabled, then grant Accessibility and Screen Recording under Settings → Permissions; on Windows/Linux, follow the experimental cua-computer setup above.

  2. Approve the pairing update on the gateway (a new command forces re-pairing).

  3. Expose the tool to the vision-capable agent. For the default coding profile:

    {
      tools: {
        alsoAllow: ["computer"],
        // Sandboxed agents need this second gate too:
        sandbox: { tools: { alsoAllow: ["computer"] } },
      },
    }
    

Once the node-local control is enabled and the pairing update is approved, computer.act is durably available while the node continues to advertise it. There is no lease, expiry, or arm/disarm command. Disabling Computer Control locally removes the advertised command and the node rechecks the toggle at invocation time.

On macOS, default-on means a paired gateway can drive pointer and keyboard input as soon as the required macOS grants exist. There is no per-action confirmation. Turn off Allow Computer Control before pairing, or at any later time, to stop advertising and accepting computer.act.

gateway.nodes.commands.deny remains an explicit global revocation and always wins. computer.act does not need a gateway.nodes.commands.allow entry. An authenticated operator with operator.write can invoke an enabled, paired command through node.invoke; there is no per-action admin check.

Safety

  • Every layer (tool policy, gateway command policy, pairing, node-app setting, and platform permissions) must agree. For the current macOS fulfiller, that includes Allow Computer Control, Accessibility, and Screen Recording. Actions execute while those durable controls remain enabled; there is no per-action confirmation.
  • The macOS fulfiller posts text one grapheme at a time, so cancellation, disconnect, pause, disable, or endpoint replacement stops it before the next grapheme. The experimental cua-driver fulfiller cannot cancel a type_text call mid-typing.
  • Screenshots are model-only and never auto-sent to chat (issue #44759).
  • Treat screen content as untrusted; it can carry prompt injection.

macOS permission troubleshooting

The Computer Control status in Settings → General → Capabilities checks Accessibility, Event Posting, and Screen Recording separately. Screen capture can work while input remains denied because macOS stores those grants in separate TCC buckets.

If the status says Accessibility grant may be stale, OpenClaw may already appear enabled under System Settings → Privacy & Security → Accessibility even though macOS rejects it. This happens when the Accessibility entry is pinned to an older app build. Select OpenClaw in that list, remove it with , then re-add /Applications/OpenClaw.app. Quit and reopen OpenClaw after changing the grant because macOS can cache Accessibility trust for the lifetime of the process.

Relationship to other desktop-control paths

This is the agent-driven path. See Peekaboo bridge for how it relates to the PeekabooBridge host, Codex Computer Use, and the direct cua-driver MCP.