"""Cua-driver backend (macOS, Windows, Linux): MCP over stdio to `cua-driver`. The async `mcp` SDK runs on a background loop (``cua_backend_session``); the same tool surface works on all three platforms, and per-host gaps (no DISPLAY, missing AT-SPI, TCC) surface via `hermes computer-use doctor` instead of failing silently. Install with `hermes computer-use install`. The macOS path uses private SkyLight SPIs that can break on OS updates. Siblings: ``cua_backend_driver`` (binary/contract/update), ``cua_backend_capture`` + ``cua_backend_input`` (mixins), ``cua_backend_parse``, ``cua_backend_session`` (bridge + session + CLI fallback), ``cua_backend_daemon`` (private daemon + macOS app identity). Siblings look this module's config/policy helpers up lazily.""" from __future__ import annotations import contextlib import importlib import logging import os import subprocess import sys import threading import uuid from typing import Any, Dict, List, Optional from hermes_cli._subprocess_compat import windows_hide_flags from tools.computer_use.backend import ActionResult, ComputerUseBackend from tools.computer_use.cua_backend_capture import _CaptureMixin from tools.computer_use.cua_backend_daemon import _EmbeddedCuaDaemon from tools.computer_use.cua_backend_driver import ( _CUA_DRIVER_CMD_ENV, cua_driver_binary_available, cua_driver_runtime_contract_status, cua_driver_update_nudge, resolve_cua_driver_cmd) from tools.computer_use.cua_backend_input import _InputMixin from tools.computer_use.cua_backend_parse import _action_result_from from tools.computer_use.cua_backend_session import _AsyncBridge, _CuaDriverSession logger = logging.getLogger(__name__) # cua-driver's anonymous PostHog telemetry gate ("0" disables; absent => ON upstream). _CUA_TELEMETRY_ENV_VAR = "CUA_DRIVER_RS_TELEMETRY_ENABLED" _CUA_NATIVE_WAYLAND_ENV_VAR = "CUA_DRIVER_RS_ENABLE_WAYLAND" def _computer_use_cfg() -> Dict[str, Any]: """The ``computer_use`` config block, or ``{}`` when config is unreadable.""" with contextlib.suppress(Exception): from hermes_cli.config import load_config return (load_config() or {}).get("computer_use") or {} return {} def _cua_no_overlay() -> bool: """Pass ``--no-overlay``? ``computer_use.no_overlay`` overrides; else off on macOS (cursor-overlay redraw loop can peg a core after a session), headless Linux / WSL2 / containers, and Linux X11 (the overlay is a fullscreen always-on-top all-workspaces window with no compositor-owned lifecycle, so an unclean session end can leave it wedged over every app); on for Windows and Linux Wayland (compositor owns the surface). Explicit ``True`` / ``False`` overrides auto-detection. See #28152, #47032. """ val = _computer_use_cfg().get("no_overlay") if val is not None or sys.platform != "linux": return bool(val) if val is not None else sys.platform == "darwin" wsl = False with contextlib.suppress(Exception), open("/proc/version", encoding="utf-8") as f: wsl = "microsoft" in f.read().lower() return wsl or not os.environ.get("DISPLAY") or ( # Linux/X11: the cursor overlay is a fullscreen, always-on-top, all-workspaces X11 window # (save-unders path). An unclean session end (agent interrupted mid-capture, stale target window) # can leave it stuck above every app on every workspace, wedging desktop input until the app # restarts — the same failure class as the HUD window on Mutter/X11 (#83473). There is no # compositor-owned surface to tear down with the client connection, so default the overlay off on # X11 too; set computer_use.no_overlay: false to keep the cursor. Wayland keeps it: the compositor # owns the overlay surface lifecycle there. os.environ.get("XDG_SESSION_TYPE") != "wayland" and not os.environ.get("WAYLAND_DISPLAY")) def _cua_telemetry_disabled() -> bool: """True unless ``computer_use.cua_telemetry`` opts in (unreadable config fails SAFE toward disabling).""" return not bool(_computer_use_cfg().get("cua_telemetry", False)) def _cua_configured_permission_mode() -> str: """``computer_use.permission_mode``: ``standard`` (default) or ``bounded``; unknown values fall closed to ``standard``. ``unrestricted`` is deliberately NOT a config value — it stays tied to the per-session YOLO toggle so a stale config line can never silently bypass approvals.""" raw = str(_computer_use_cfg().get("permission_mode", "standard") or "").strip().lower() return "bounded" if raw == "bounded" else "standard" def _manifest_is_mode_independent(path: str) -> bool: """True when this manifest may accompany any permission mode: v1/v2 declare ``mode: bounded`` and abort startup under an unrestricted runtime; v3 has no mode and is the ceiling the driver accepts alongside any mode. Unreadable / unparseable -> False (forwarding one would turn a working session into a hard startup failure; bounded forwards unconditionally anyway).""" try: import yaml with open(path, "r", encoding="utf-8") as handle: parsed = yaml.safe_load(handle) except Exception: logger.debug("could not read capability manifest %s", path, exc_info=True) return False version = parsed.get("version") if isinstance(parsed, dict) else None return isinstance(version, int) and not isinstance(version, bool) and version >= 3 def _computer_use_max_image_dimension() -> Optional[int]: """``computer_use.max_image_dimension`` longest-edge cap (default 1456 = aux-vision downscale); ``0``/negative -> None.""" try: dim = int(_computer_use_cfg().get("max_image_dimension", 1456)) except (TypeError, ValueError): dim = 1456 return dim if dim > 0 else None def cua_driver_child_env(base_env: Optional[Dict[str, str]] = None) -> Dict[str, str]: """Env for spawning cua-driver: ``base_env`` (default ``os.environ``) plus ``CUA_DRIVER_RS_TELEMETRY_ENABLED=0`` unless the user opted in, plus the native-Wayland bridge (``computer_use.native_wayland`` config opt-in, only when the child has a Wayland display). Used by every spawn site (MCP, status, doctor, install) so CLI and gateway runtimes share one policy.""" env = dict(os.environ if base_env is None else base_env) if _cua_telemetry_disabled(): env[_CUA_TELEMETRY_ENV_VAR] = "0" if sys.platform == "linux" and env.get("WAYLAND_DISPLAY") and bool(_computer_use_cfg().get("native_wayland", False)): env[_CUA_NATIVE_WAYLAND_ENV_VAR] = "1" return env def sanitized_cua_driver_env() -> Dict[str, str]: """``cua_driver_child_env()`` with Hermes provider secrets stripped — cua-driver is a third-party binary and must never inherit API keys. Falls back to the unsanitized telemetry env if the sanitizer can't import.""" env = cua_driver_child_env() with contextlib.suppress(Exception): # cua-driver is a third-party binary — never hand it provider API keys via inherited env (same # policy as the manifest probe and MCP spawn; #53503/#55709/#58889 lineage). from tools.environments.local import _sanitize_subprocess_env return _sanitize_subprocess_env(env) return env def _run_quiet(argv: List[str], *, timeout: float, swallow: Any = (), **kw: Any) -> Any: """``subprocess.run`` for short probe verbs: text mode, stdin=DEVNULL unless overridden (older drivers fall into a stdin-reading mode on unknown verbs; EOF makes them exit fast instead of blocking until the timeout), output captured unless the caller redirects it. Exceptions in ``swallow`` return None; others raise.""" kw.setdefault("stdin", subprocess.DEVNULL) kw.setdefault("encoding", "utf-8") kw.setdefault("errors", "replace") "stdout" in kw or kw.setdefault("capture_output", True) try: return subprocess.run(argv, text=True, timeout=timeout, stdin=kw.pop("stdin"), encoding=kw.pop("encoding"), errors=kw.pop("errors"), **kw) except swallow: return None def _run_driver(driver_cmd: str, *args: str, timeout: float, swallow: Any = ()) -> Any: """Run a short cua-driver verb with the sanitized env and hidden window.""" return _run_quiet([driver_cmd, *args], timeout=timeout, swallow=swallow, encoding="utf-8", errors="replace", creationflags=windows_hide_flags(), env=sanitized_cua_driver_env()) def _linux_session_locked() -> Optional[bool]: """Is the graphical session locked? (Linux; best-effort.) A locked KDE/GNOME session freezes renderers and half-disables the AX tree, so discovery legitimately returns nothing — which otherwise reads as a driver bug. True/False when loginctl answers, None when unavailable (non-Linux, no systemd-logind, probe failure).""" # Auto-detect: macOS overlay can peg a core indefinitely after a computer_use session (#47032). Prefer # off until the driver teardown is solid; set computer_use.no_overlay: false to keep the cursor. if sys.platform != "linux": return None try: proc = _run_quiet(["loginctl", "list-sessions", "--no-legend"], timeout=2.0) seats = [line.split()[0] for line in proc.stdout.splitlines() if len(line.split()) >= 2 and "seat" in line] if proc.returncode != 0 or not seats: return None return not any("LockedHint=no" in _run_quiet(["loginctl", "show-session", s, "-p", "LockedHint"], timeout=2.0).stdout for s in seats) except Exception: return None def _empty_discovery_reason() -> str: """One-line diagnosis for 'window discovery found nothing'.""" if _linux_session_locked() is True: return ("the desktop session is LOCKED (loginctl LockedHint=yes) — unlock the screen; " "a locked compositor hides windows and freezes app renderers") if sys.platform == "linux" and not os.environ.get("DISPLAY"): return "no DISPLAY is set — X11/XWayland is not reachable from this process" if sys.platform == "darwin": # headless Mac / asleep panel: ScreenCaptureKit has 0 shareable displays while TCC looks fine return ("window discovery returned no windows; on macOS this usually means no shareable display (headless Mac or " "panel asleep) — wake the display or attach a monitor/HDMI dummy, then run `hermes computer-use doctor`") return "window discovery returned no windows; run `hermes computer-use doctor` (display reachability, AX capability)" _update_checked = False # One auto-repair attempt per process: when the runtime-contract gate fails for something a reinstall fixes # (old version, missing manifest verbs) run the standard install path once instead of telling the user to. # Guarded so a failing installer can't loop — the second start() goes straight to the error. _contract_repair_attempted = False def _maybe_repair_runtime_contract(contract: Dict[str, Any]) -> Dict[str, Any]: """Try one automatic driver repair; return the post-repair contract (or the original when no repair was attempted / it failed). Never raises. An explicit ``HERMES_CUA_DRIVER_CMD`` override is authoritative even when broken, and a missing binary means installation was never requested.""" global _contract_repair_attempted if contract.get("ready") or _contract_repair_attempted or os.environ.get(_CUA_DRIVER_CMD_ENV, "").strip() or not contract.get("binary"): return contract _contract_repair_attempted = True logger.info("computer_use: installed cua-driver is not usable (%s); attempting automatic repair", contract.get("reason") or "runtime contract is incomplete") try: from hermes_cli.tools_config import install_cua_driver repaired = install_cua_driver(upgrade=False, show_installer_progress=False) except Exception as exc: logger.warning("computer_use: automatic cua-driver repair failed: %s", exc) return contract with contextlib.suppress(Exception): return cua_driver_runtime_contract_status() if repaired else contract return contract def _maybe_nudge_update() -> None: """Emit an update nudge at most once per process, off-thread so the (cached, ~20h) GitHub poll never blocks the first computer_use action.""" global _update_checked if _update_checked: return _update_checked = True def _run() -> None: with contextlib.suppress(Exception): msg = cua_driver_update_nudge() msg and logger.info("computer_use: %s", msg) threading.Thread(target=_run, name="cua-driver-update-check", daemon=True).start() class CuaDriverBackend(_CaptureMixin, _InputMixin, ComputerUseBackend): """Default computer-use backend. Cross-platform via cua-driver MCP.""" def __init__(self, permission_mode: str = "standard") -> None: if permission_mode not in {"standard", "bounded", "unrestricted"}: raise ValueError(f"unsupported cua-driver permission mode: {permission_mode}") self.permission_mode = permission_mode self._embedded_daemon: Optional[_EmbeddedCuaDaemon] = None if permission_mode != "standard": # Manifest: mandatory for bounded (the daemon validates it), optional for unrestricted where it still # caps what an approval-bypassed run may touch. raw = _computer_use_cfg().get("capability_manifest") self._embedded_daemon = _EmbeddedCuaDaemon( resolve_cua_driver_cmd() or "", permission_mode, capability_manifest=raw.strip() if isinstance(raw, str) and raw.strip() else None) self._bridge = _AsyncBridge() self._session = _CuaDriverSession(self._bridge, self._embedded_daemon) # Sticky target (set by capture()/focus_app(), used by actions): `_active_pid`, `_active_window_id`, `_last_app`, # `_last_target` (exact identity for capture_after — Linux app names may be generic, e.g. several unrelated Qt # windows all say Qt6Application), `_snapshot_tokens` (element_index -> element_token, attached to actions so # cua-driver reports "stale" instead of silently re-resolving). self._clear_active_target() # Public session label (one per Hermes run) sent as `session` on every call: owns the cursor color and # gives config/recording state a stable owner across transport restarts. Part of the 0.20 runtime contract. self._session_id: str = f"hermes-{uuid.uuid4().hex[:12]}" self._session.set_transport_reset_callback(self._handle_transport_reset) def _handle_transport_reset(self) -> None: """Invalidate every capability minted by the replaced transport.""" self._clear_active_target() def start(self) -> None: contract = cua_driver_runtime_contract_status() if not contract.get("ready"): contract = _maybe_repair_runtime_contract(contract) if not contract.get("ready"): raise RuntimeError(f"cua-driver is not ready: {contract.get('reason') or 'runtime contract is incomplete'}. " + ("Update the binary selected by HERMES_CUA_DRIVER_CMD or remove that override." if os.environ.get(_CUA_DRIVER_CMD_ENV, "").strip() else "Run `hermes computer-use install` to repair it.")) _maybe_nudge_update() # `mcp` is an optional extra: lazy-install on first use (gated by `security.allow_lazy_installs`); failure # raises FeatureUnavailable with the exact `uv pip install` hint. from tools.lazy_deps import ensure as _lazy_ensure _lazy_ensure("tool.computer_use", prompt=False) importlib.invalidate_caches() # a just-installed package may not be importable yet with contextlib.ExitStack() as rollback: # a failed start stops the private daemon, then re-raises if self._embedded_daemon is not None: rollback.callback(self._embedded_daemon.stop) and self._embedded_daemon.start() self._session.start() rollback.pop_all() # Declare this run's identity. Non-fatal: cua-driver accepts anonymous calls (cursor won't render), so degrade. self._best_effort("start_session failed (continuing anonymous)", self._session.call_tool, "start_session", {"session": self._session_id}) # Post-handshake tuning guards on `_started`: before the handshake flips it, call_tool would re-enter # session.start() (stubbed start() recurses). if self._session._started: max_dim = _computer_use_max_image_dimension() if max_dim: # smaller screenshots cost less over the daemon socket and per turn self._best_effort("set_config(max_image_dimension) failed", self.set_config, max_image_dimension=max_dim) if _cua_no_overlay(): # belt-and-suspenders when --no-overlay is unsupported or ignored self._best_effort("set_agent_cursor_enabled failed", self.set_agent_cursor_enabled, False, cursor_id=self._session_id) def stop(self) -> None: # Best-effort end_session so the driver cleans per-session state (cursor overlay, recording ownership, # config overrides); the connection drop below releases daemon-side state regardless. if self._session._started: self._best_effort("end_session failed (continuing teardown)", self._session.call_tool, "end_session", {"session": self._session_id}) with contextlib.ExitStack() as teardown: # every step runs even if one raised (LIFO: session, bridge, daemon) self._embedded_daemon is None or teardown.callback(self._embedded_daemon.stop) teardown.callback(self._bridge.stop) teardown.callback(self._session.stop) @staticmethod def _best_effort(what: str, fn, *args: Any, **kwargs: Any) -> None: """Run a non-fatal driver call, logging (debug) instead of raising.""" try: fn(*args, **kwargs) except Exception as e: logger.debug("cua-driver %s: %s", what, e) def is_available(self) -> bool: return sys.platform in ("darwin", "win32", "linux") and cua_driver_binary_available() # other Unix-likes untested E2E def _clear_active_target(self) -> None: """Forget a capture/focus target so a failed lookup cannot misroute input.""" self._active_pid = self._active_window_id = self._last_app = self._last_target = None # Surface 6 of NousResearch/hermes-agent#47072: per-snapshot `element_index -> element_token` map # populated on capture(). Action tools (click/scroll/set_value/...) attach the matching token # alongside `element_index` so cua-driver detects "stale" explicitly instead of silently # re-resolving to a different element. Cleared whenever a fresh capture overwrites the snapshot # context. self._snapshot_tokens: Dict[int, str] = {} def _set_active_target(self, target: Dict[str, Any]) -> None: self._active_pid = target["pid"] self._active_window_id = target["window_id"] self._snapshot_tokens = {} # prior snapshot's tokens: disarm before any capture so an exception can't pair them self._last_target = {"pid": self._active_pid, "window_id": self._active_window_id} def launch_app(self, *, bundle_id: Optional[str] = None, name: Optional[str] = None, urls: Optional[List[str]] = None, additional_arguments: Optional[List[str]] = None, creates_new_application_instance: bool = False) -> Dict[str, Any]: """Idempotent launch returning ``{pid, bundle_id, name, windows[]}``. ``creates_new_application_instance=True`` forces a fresh instance so concurrent runs touching the same app get isolated windows.""" if not bundle_id and not name: raise ValueError("launch_app requires either bundle_id or name") args: Dict[str, Any] = {"session": self._session_id, **{k: v for k, v in ( ("bundle_id", bundle_id), ("name", name), ("urls", urls and list(urls)), ("additional_arguments", additional_arguments and list(additional_arguments)), ("creates_new_application_instance", creates_new_application_instance or None)) if v}} out = self._session.call_tool("launch_app", args) return out["structuredContent"] or {"data": out["data"]} def bring_to_front(self, *, pid: int, window_id: Optional[int] = None) -> ActionResult: """Activate a window so subsequent foreground-dispatched input lands on it.""" args: Dict[str, Any] = {"pid": int(pid), **({} if window_id is None else {"window_id": int(window_id)})} # Strict live schema with no session property: a standalone native focus op, not a session-scoped input action. return self._action("bring_to_front", args, inject_session=False) def set_agent_cursor_enabled(self, enabled: bool, *, cursor_id: Optional[str] = None) -> ActionResult: """Toggle the agent cursor overlay's visibility for this run.""" return self._action("set_agent_cursor_enabled", {"enabled": bool(enabled), **({"cursor_id": cursor_id} if cursor_id else {})}) def set_config(self, **config) -> ActionResult: """Set cua-driver config keys (e.g. ``max_image_dimension``); unknown keys pass through — cua-driver validates.""" return self._action("set_config", dict(config)) def call_tool(self, name: str, args: Optional[Dict[str, Any]] = None, *, timeout: float = 30.0) -> Dict[str, Any]: """Generic escape hatch: call any cua-driver MCP tool by name. ``session`` is injected via setdefault, so this is the supported path for tools the wrapper does not type-wrap (preferred over ``self._session.call_tool``).""" payload = dict(args) if args else {} payload.setdefault("session", self._session_id) return self._session.call_tool(name, payload, timeout=timeout) def _action(self, name: str, args: Dict[str, Any], *, inject_session: bool = True) -> ActionResult: # Attach the snapshot's `element_token` to an `element_index` call so a superseded snapshot yields an explicit # 'stale' error. Two ways to establish support, the live input schema first: cua-driver 0.21+ stopped # publishing per-tool `capabilities[]` while still accepting `element_token` in its schema, and it REFUSES a # bare `element_index` (`snapshot_id_required`) — gating on the capability alone broke EVERY element click and # left only pixel clicks working. The capability check stays so older drivers that shipped the vocabulary keep # working; drivers advertising neither (`additionalProperties: false`) must never see the property. idx = args.get("element_index") token = self._snapshot_tokens.get(idx) if isinstance(idx, int) else None if token and (self._session.supports_input_property(name, "element_token") or self._session.supports_capability("accessibility.element_tokens", tool=name)): args["element_token"] = token if inject_session: # setdefault preserves any explicit session a caller already supplied args.setdefault("session", self._session_id) try: out = self._session.call_tool(name, args) except Exception as e: logger.exception("cua-driver %s call failed", name) return ActionResult(ok=False, action=name, message=f"cua-driver error: {e}") data = out["data"] structured = out.get("structuredContent") or {} message = (str(data.get("message", "")) if isinstance(data, dict) else data if isinstance(data, str) else "") \ or (str(structured.get("message", "")) if isinstance(structured, dict) else "") # Merge data + structuredContent into meta, structured winning on overlap (canonical verdict surface). meta = {k: v for part in (data, structured) if isinstance(part, dict) for k, v in part.items()} return _action_result_from(name, not out["isError"], message, meta, structured, requested_delivery=args.get("delivery_mode")) # ---- BEGIN PLUGIN-COMPAT (revert-scheduled; see COMPAT_MANIFEST.md) ---- # Names external plugins imported from this module before the Sep 2026 decomposition. # Internal code MUST NOT use these (scripts/check_compat_pointers.py fails CI if it does). # The whole block is removed by reverting the commit that added it. from pathlib import PureWindowsPath # noqa: F401,E402 from typing import Tuple # noqa: F401,E402 import asyncio # noqa: F401,E402 import base64 # noqa: F401,E402 import concurrent.futures # noqa: F401,E402 from collections import deque # noqa: F401,E402 import functools # noqa: F401,E402 import json # noqa: F401,E402 import re # noqa: F401,E402 import shutil # noqa: F401,E402 import tempfile # noqa: F401,E402 import time # noqa: F401,E402 _PLUGIN_COMPAT_LAZY = { 'CaptureResult': ('tools.computer_use.backend', 'CaptureResult'), 'UIElement': ('tools.computer_use.backend', 'UIElement'), 'cua_driver_install_hint': ('tools.computer_use.cua_backend_driver', 'cua_driver_install_hint'), 'cua_driver_update_check': ('tools.computer_use.cua_backend_driver', 'cua_driver_update_check'), } def __getattr__(name): # PEP 562 — lazy so no import cycles target = _PLUGIN_COMPAT_LAZY.get(name) if target is None: raise AttributeError(f"module {__name__!r} has no attribute {name!r}") import importlib from hermes_cli.plugin_compat import warn_once warn_once(__name__, name, *target) return getattr(importlib.import_module(target[0]), target[1]) # ---- END PLUGIN-COMPAT ----