Drive your Mac with any LLM: focus-free, in the background, over MCP.
Hunch is an MCP server that gives an LLM agent hands on your Mac: your installed apps, your logged-in sessions, your files, without taking over your screen. While you keep working in the foreground, an agent can read a background app's UI, click its buttons, drive Mail or Music by AppleScript, fill a web form, or move files. It works on real native apps, not just a browser.
Works best with modern LLMs. Hunch ships a detailed playbook as MCP server instructions; capable tool-using models (Claude Sonnet/Opus-class and up) follow it well. Smaller models may pick clumsier paths (screenshots and keystrokes instead of tree reads and clicks).
The four layers
Hunch always prefers the most direct layer. It's faster, more reliable, and (except the last) never touches your screen:
| Layer | Tools | What it's for |
|---|---|---|
| OS-API | trash file_op open_file clipboard_* launch_app … |
files, clipboard, app lifecycle, via direct API calls |
| AppleScript | applescript |
scriptable apps: Mail, Messages, Notes, Calendar, Music, Finder, Safari … |
| Web / CDP | web_open web_snapshot web_act web_login … |
any browser page or Electron app, driven in the background |
| Accessibility | snapshot act |
any native app's UI: read the tree, click/select/type by reference |
A gated last resort (screenshot + coordinate clicks/keystrokes) exists for apps whose
accessibility tree is truly empty. It steals focus, so it asks you first.
How it works (no server, no cloud)
"MCP server" undersells how local this is. hunch serve is a plain Python process that your
MCP host (Claude Desktop, Cursor, …) spawns as a child process and talks to over
JSON-RPC on stdin/stdout (MCP's stdio transport). There is no HTTP endpoint, no port
Hunch listens on, no daemon, and no telemetry. When your host quits, Hunch is gone.
The tools are direct macOS API calls in-process: the Accessibility framework via pyobjc,
osascript for AppleScript, OS APIs for files/clipboard, and, for the web layer, a local
WebSocket to Chrome's DevTools port on 127.0.0.1. The only thing that ever touches the
network is Chrome itself, doing ordinary browsing. What the model sees is whatever the tools
return through your host; nothing else leaves the machine.
Benchmarks
Hunch is measured against other macOS computer-use agents on a real, logged-in Mac in
mac-agent-bench — same brain, different hands:
identical claude -p per task, only the MCP adapter differs. It scores task success with programmatic
checkers and disturbance: how much the agent hijacks your cursor and foreground while it works.
Across 5 complex multi-step tasks (n=3):
| Tool | Success | Cost | Disturbance (focus·cursor) | Timeouts |
|---|---|---|---|---|
| Hunch | 15/15 | $1.52 | 1·0 | 0 |
| Peekaboo | 13/15 | $14.60 | 22·16 | 2 |
| cua-driver | 15/15 | $17.70 | 22·0 | 0 |
Perfect reliability, ~10x cheaper, ~5–10x faster, and it essentially never touches your screen (0
cursor moves, 1 focus switch across 15 trials). Full methodology and per-task tables are in the
benchmark repo.
Install
macOS 13+. From PyPI (the distribution is hunch-sdk; the import and CLI are hunch):
pipx install hunch-sdk # or: pip install hunch-sdk
pip install 'hunch-sdk[subscription]' # + the agent loop on Claude (provider="claude")
pip install --pre 'hunch-sdk[codex]' # + the agent loop on OpenAI Codex (provider="codex")
Or via Homebrew — best if you don't manage Python environments; it bundles an isolated Python at a stable path, which makes the macOS permission grants the most predictable:
brew install prithviseran/hunch/hunch
Then, one time:
hunch setup # walk the macOS permission grants
hunch doctor # verify every layer; fix anything it flags
hunch connect claude-desktop # or: claude-code, cursor
Restart your MCP host and ask it to "use hunch to …".
The permissions, honestly
macOS trust attaches to the app that runs the server, meaning your MCP host (Claude Desktop,
Cursor, your terminal), not "hunch" itself. hunch setup walks you through it:
- Accessibility (required): lets Hunch read app UIs and click focus-free. Grant it to your MCP host app in System Settings → Privacy & Security → Accessibility.
- Automation (per-app, automatic): the first time Hunch scripts an app, macOS shows a one-time "allow control" prompt.
- Screen Recording (optional): only for the screenshot/vision fallback.
hunch doctor reports what's granted. Note: its Accessibility line reflects the terminal you ran
it from; the server inherits the host's grant.
Python SDK (library use)
Hunch is also an importable library — the same focus-free primitives as the MCP tools, driven
deterministically from your own Python (a cron job, a test harness, your own agent loop), no LLM
required. The distribution is hunch-sdk; the import is hunch:
from hunch import Hunch mac = Hunch() # your machine, your logged-in apps print(mac.snapshot("Mail")) # accessibility tree, focus-free mac.act([{"action": "click", "ref": "e12"}]) mac.web.open(url="https://github.com") # real persistent Chrome profile over CDP print(mac.web.snapshot()) mac.files.trash(["~/Downloads/old.zip"]) # reversible delete, no Finder mac.applescript('tell application "Music" to play')
Constructor knobs: app (initial snapshot target), confirm="dialog"|"off" (see below),
check_permissions (Accessibility check up front), simultaneous (never touch the
foreground/cursor/keyboard), cdp_port.
- Permissions: for library use it's whatever runs your script — your terminal or IDE — that
needs Accessibility (the MCP server instead uses the host app's grant). The constructor checks
and raises
AccessibilityNotGrantedwith instructions.screenshot()additionally needs Screen Recording. - Safety gates default ON: the same one-click "Go ahead" dialogs and
~/.hunch/config.jsongates as the MCP server.Hunch(confirm="off")auto-approves for that instance only — for unattended scripts, with the same caveats asauto_approve_all. - Errors: methods return status strings (check for
REFUSED); the SDK raises onlyApprovalDenied(user declined a dialog),AccessibilityNotGranted,WebNotOpen(.webbefore.web.open()),StaleRef(re-snapshot), andHunchErrorwhen a CDP browser can't be opened (web.restart()recovers a stale instance). - Credentials:
mac.web.fill_login(service)/fill_secret(service, ref)type Keychain values straight into the page and never return them; domain binding is enforced. - Coexistence: the SDK and the MCP server share the CDP port (9337) and the persistent Hunch
browser profile — whichever opened it first is reused, but
web.restart()/web.login()kill whatever holds the port.
Runnable scripts live in examples/.
Agent loop (mac.agent)
The instance SDK gives you deterministic primitives. The agent loop puts an LLM in the driver's seat: you hand it a task in plain English and it drives the Mac through those same primitives — on your machine with your logged-in apps. Pick your provider — Anthropic Claude or OpenAI Codex — once at construction; everything after is provider-agnostic. It's an optional extra (keeps the base install free of the model SDKs):
pip install 'hunch-sdk[subscription]' # Claude # or, for Codex (the SDK is beta): pip install --pre 'hunch-sdk[codex]' python -c 'import hunch; hunch.provider("claude").login()' # sign-in (browser OAuth) — no API key
from hunch import Hunch mac = Hunch(provider="claude") # or Hunch(provider="codex") result = mac.agent.run("reply to Sarah's latest email, but don't send it") print(result.text) # the model's final summary print(result.turns, result.usage)
Signing in
Auth is an explicit, provider-scoped surface — nothing is scavenged silently. You choose the vendor once, then the same prefix-free methods act on it:
mac = Hunch(provider="codex") # or "claude" (the default) mac.login() # codex: ChatGPT browser sign-in · claude: Claude sign-in mac.status() # -> AuthStatus(provider, logged_in, method, email, plan) mac.logout() mac.agent.run(task) # runs on the configured provider
Or drive auth standalone, without a Mac instance (e.g. an onboarding script):
import hunch st = hunch.provider("codex").status() if not st.logged_in: hunch.provider("codex").login() # browser OAuth (blocks until done) # headless/remote box instead: # h = hunch.provider("codex").device_login() # print(h.verification_url, h.user_code); h.wait()
| Provider | Sign in with | Cost |
|---|---|---|
claude |
mac.login() / hunch.provider("claude").login() — the same browser OAuth Claude Code uses. Already signed into Claude Code on this Mac? You're done; Hunch reuses that. |
your Claude plan (no per-token cost) |
codex |
mac.login() / codex login — a ChatGPT/Codex browser sign-in. |
your ChatGPT/Codex plan |
Both run on a subscription/login — metered API keys are intentionally not exposed. With no valid
sign-in, run() surfaces an error that points you back to login() — it never guesses.
- Watch it work with an
on_event(kind, data)callback —kindis one oftext(reasoning),tool({name, input}),tool_result(preview),done(final text),error. - Continuation: follow-up
run()calls keep the conversation (the model still knows which email is Sarah's);mac.agent.reset()starts a fresh task. - Mix layers freely: call
mac.snapshot(...)/mac.clipboard.get()deterministically aroundmac.agent.run(...)— the thing a cloud sandbox can't do on your real machine. - Knobs:
run(task, model=None, max_turns=40, effort=None, on_event=None, system_suffix="")—model=Noneuses the provider's own default model.AgentResulthastext,turns,stop_reason,usage,aborted. - Safety: the instance's gate config governs the loop. The default
confirm="dialog"pops a real "Go ahead?" dialog before any focus-stealing or risky step — good when you're at the machine, but a gated action can stall an unattended run for the dialog's timeout. For cron jobs useHunch(confirm="off")and accept the risk; the model still asks you (vianotify_user) before irreversible or outward actions. A declined gate comes back as aREFUSEDresult, so the loop adapts instead of crashing. - Cost: runs draw on your provider plan's usage limits — no per-token bill.
max_turnscaps it.
Codex note: the
codexprovider drives an OpenAI Codex agent that reaches Hunch's tools over MCP (a separatehunch serveprocess), so its dangerous-verb approvals use Hunch's own click-to-approve dialogs rather than a hostcan_use_toolcallback.
Other models: the instance-SDK primitives are provider-agnostic — wire mac.snapshot() /
mac.act() into your own OpenAI/Gemini/etc. agent loop as tools.
Building an app on Hunch
The SDK is developer-first: one uniform semantics, everything instance-owned, nothing ambient
unless you opt in. The MCP server above is itself just the first app built on it — its
"personal" behavior (the ~/.hunch/config.json policy, "Hunch"-branded dialogs, shared browser
profile) is nothing but constructor arguments.
from hunch import Hunch, ConsentRequest, OAuthToken mac = Hunch( provider="claude", # which LLM vendor drives mac.agent ("claude" | "codex") app_id="com.acme.mailbot", # pure namespacing — own Keychain slots, browser # profile, and CDP port; never a behavior switch app_name="Acme Mailbot", # what consent dialogs + notifications say confirm=my_consent_callback, # ConsentRequest -> bool, rendered in YOUR UI notify=my_toast_handler, # callback, or True for native macOS banners (default: off) policy={"gates": {"shell": True}}, # instance-owned safety; the user's personal # config can never disarm your app auth=OAuthToken(token), # the exact Claude subscription token YOUR app manages can_use_tool=my_approver, # optional: route every tool through your Approve/Deny UI )
What this buys you:
- Coexistence — two apps with different
app_ids get disjoint Keychain services, credential stores, browser profiles, and CDP ports. They can't read each other's logins, log each other out, or kill each other's browser sessions. Structurally, not by convention. - Your brand, your UX — every dialog, refusal, and notification says your
app_name;confirm=andnotify=route consent and alerts through your app instead of osascript dialogs and macOS banners. A broken consent callback fails closed. - Isolated safety posture — the machine's
hunch config(andHUNCH_NO_INTERNAL_GATE) govern only the personal MCP server, never your instance. - Explicit auth —
provider="claude"withauth=hunch.OAuthToken(...)uses exactly that subscription token (reprs are redacted), so your app never silently rides on the end user's own Claude sign-in. (Thecodexprovider authenticates viamac.login()/codex login.)
Programmatic credential management uses the same namespacing: hunch.creds.set_credential(name, user, pw, namespace=your_app_id) etc. A runnable walkthrough lives in
examples/embedded_app.py.
Credentials: agents use them, never see them
hunch creds add github --domain github.com
hunch creds list
Values go straight into the macOS Keychain. An agent signs in by calling
web_fill_login("github") with only the service name; Hunch reads the secret from the Keychain
and types it into the page over CDP. The value never enters the model's context, its logs, or its
provider's servers.
Domain binding: a credential added with --domain github.com will only ever be typed into
github.com (and its subdomains). If a confused or prompt-injected agent lands on a look-alike
page, the fill is refused. Bind every credential; blank (any-site) exists only for compatibility.
No stored credential? Agents fall back to web_login, which opens a tagged browser window where
you sign in yourself; the session then persists in Hunch's dedicated browser profile.
Confirmation gates
Your MCP host's tool approvals are the primary permission layer. Hunch adds a content-aware second gate, a one-click macOS dialog, for the catastrophic cases:
| Gate | Fires on |
|---|---|
gates.focus_steal |
actions that take over your keyboard/cursor (key, click_xy, ref-less typing) |
gates.app_to_front |
an app being brought to the front (a focus switch, even mid-fullscreen) |
gates.shell |
AppleScript containing do shell script |
gates.destructive_applescript |
delete / send / empty trash / shut down / … |
One approval covers its follow-through: clicking "Go ahead" (on request_focus, a gated act,
or the app-to-front dialog) authorizes the switch it announced for ~15 s: no second dialog, and
the focus-switch notification is suppressed. A switch is either asked about or announced,
never both, and never silent (turn gates.app_to_front off and switches fall back to the
notification).
All on by default. For the MCP server, hunch config show / hunch config set gates.shell off
adjusts them; changes apply immediately, even to a running server. auto_approve_all disables
everything and makes you confirm you understand the risk.
For SDK instances the gates are instance-owned: Hunch() defaults to all gates on and never
reads the config file — pass policy={"gates": {...}}, a callable(category) -> bool, or
policy="personal" to opt into the live config-file behavior for your own scripts.
Hunch also refuses to let the agent edit anything under ~/.hunch/ (its own policy and credential
metadata) via its file tools; permission changes are for humans in a terminal.
Env vars
| Var | Effect |
|---|---|
HUNCH_NO_INTERNAL_GATE=1 |
suppress all internal dialogs (for host apps that run their own approval UX) |
HUNCH_FORCE_SANDBOX=1 |
web layer uses a throwaway, logged-out browser profile |
HUNCH_NOTIFY_FOCUS=0 |
silence the "Hunch is switching apps" notifications (they fire only for switches no dialog asked about) |
User-attention desktop notifications are opt-in. For the personal MCP server, enable them with
hunch config set notifications.user_attention on. SDK apps can pass notify=True for native
macOS banners or a notify(message, title) callback for their own UI; the default is disabled.
FAQ
Every tree read returns "(no window for …)" and AppleScript fails with "-25211 not allowed assistive access". One cause: the app hosting Hunch is missing the Accessibility grant. Without it the AX API silently returns nothing, so apps look windowless even when they're open. Grant it to the host (see next question), and if it's already listed, toggle it off and on: macOS silently invalidates grants when an app updates. Restart the host afterwards.
Which app do I grant permissions to? The one that launches hunch serve: Claude Desktop,
Cursor, or your terminal app (for Claude Code). Grants attach to that app's identity, never to
"hunch" itself. This is also why hunch doctor can be misleading: it reports the grants of the
terminal you ran it in, which may differ from your MCP host's.
Only screenshot fails; everything else works. That's the Screen Recording permission,
which only the screenshot/vision fallback needs. Grant it to the host in System Settings →
Privacy & Security → Screen Recording, or just let agents use snapshot, which doesn't need it.
It worked yesterday and broke today. An update to your host app (or macOS) likely reset its permission grants. Toggle the host off and on under Accessibility (and Screen Recording, if you use it), then restart the host.
An app's tree reads empty or shows only a sidebar. Two different situations. Electron/CEF
apps (Discord, Slack, Spotify, VS Code) need an accessibility flag; snapshot relaunches them
once, in the background, to set it. Master-detail and Catalyst apps (WhatsApp, Mail) expose only
the pane you're in: the agent should click into an item by ref and re-snapshot; the detail pane
then appears. Also check the app actually has a window open.
The web layer won't connect. Chrome 136+ blocks the CDP debug port on your default profile, so
Hunch drives its own Chrome (a separate data dir at ~/.hunch/chrome-cdp), not your everyday one.
Sign that profile into your Google account once (via hunch setup or web_login) and Chrome Sync
brings your logins with it; from then on it's already signed in.
My host shows the server instructions truncated. Cosmetic: some host UIs shorten the playbook in their server-info display; the model receives it in full.
Security
Read SECURITY.md: threat model (prompt injection, mainly), what the gates do and don't cover, and how to report vulnerabilities.
Project status
Hunch is currently maintained as a personal open-source project. It controls real apps, files, browser sessions, and credentials on your Mac, so review the source, keep approvals enabled, and use least-privilege credentials. The software is provided on an “AS IS” basis, without warranties or conditions, under the Apache License 2.0.
License
Apache-2.0; see LICENSE.
