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Cupertino

Put your agent to work in your everyday Apple apps.

MCP servers for the Apple apps already on your Mac, and the signed app that grants them their permissions once instead of once each — for any agent that speaks MCP, not for one host.

Unofficial. Not affiliated with Apple. These drive the apps that are already on your Mac.

In use

Look at how I write in my work inbox, then draft this reply in the same voice.

Pull together everything about the Atlas launch from my mail, my notes and my calendar. What do I still owe people?

Turn the action items from yesterday's client thread into reminders, due Friday.

Every one of those carries a constraint — an account, a date bound, a filter. That is the part the naive osascript path answers in 74 seconds or answers wrongly, and the reason a server earns its place: it holds what the model would otherwise re-derive every session. The measurements are in docs/verify.md; what the alternatives cost is in docs/alternatives.md.

The last one needs the write gate open on Reminders. Writes are off per surface until you turn them on, and the toggle decides whether the mutating tools are registered at all — an agent with writes off cannot see that they exist.

Related MCP server: apple-mcp

Surfaces

Surface

Package

Status

Mail

packages/mail

implemented — 20 tools, search/read/attachments + gated writes

Notes

packages/notes

implemented — 12 tools, search/read/attachments + gated writes

Reminders

packages/reminders

implemented — 11 tools, lists/search/dates + gated writes

Calendar

packages/calendar

implemented — 10 tools, ranges/search/free-time + gated writes

Contacts

packages/contacts

implemented — 7 tools, resolves handles to names + gated writes

Messages

packages/messages

implemented — 7 tools, chats/search/decoded text + gated send

Safari

packages/safari

implemented — 6 tools, history/tabs/reading list, read-only

Maps

packages/maps

implemented — 10 tools, favourites/Guides/recents, gated writes

packages/core

shared: the osascript boundary, TCC-aware errors, ro SQLite

Each surface is its own server and its own npm package, so a host loads only the tools it wants. They share one bundle and one Full Disk Access grant, which is the whole reason they live together — see docs/distribution.md.

Quick start

Each server is on npm and runs straight from npx — for Claude Code, a .mcp.json beside your project:

{
  "mcpServers": {
    "apple-mail": {
      "command": "npx",
      "args": ["-y", "@mgcrea/mcp-apple-mail"]
    },
    "apple-notes": {
      "command": "npx",
      "args": ["-y", "@mgcrea/mcp-apple-notes"]
    }
  }
}

The packages are MIT and need no licence key. What they do need is a permission, and on npm you grant it to whatever launches them — your editor, your terminal — which is the trade the signed Cupertino.app exists to avoid: one Full Disk Access grant held by a notarized binary, instead of one per host. See docs/licensing.md.

Or run them from source:

git clone https://github.com/mgcrea/cupertino.git
cd cupertino
pnpm install
pnpm build

then point your host at packages/<surface>/dist/cli.js by absolute path.

Writes are off unless you ask for them — see Configuration.

Running through the menu bar app instead routes every server through the bridge, so Full Disk Access is granted to Cupertino rather than to whichever editor spawned the server:

make run      # build Cupertino.app, point it at packages/*/dist, launch it
make smoke    # handshake every server through the bridge

The repo's checked-in .mcp.json is wired for that path. make on its own lists every target.

Note the different server names. Wired by hand as above, a server is apple-mail and runs under whatever grant its host process has. Wired by Cupertino it is cupertino-mail, because that entry points at the app's bridge and runs under the app's grant. Two names for two deployments, and you can have both. The app only ever touches its own cupertino-* keys — an apple-mail entry belonging to some other server is left alone.

Cupertino is machine configuration, not a project dependency, so it belongs in a per-user config: one file each for Claude Desktop, Cursor, LM Studio and Windsurf, and --scope user for the CLIs, which is what the app's copyable commands use. Deliberately not --scope project, which writes an .mcp.json meant to be committed — that entry is an absolute path into a bundle on one Mac, backed by one person's Full Disk Access grant, and it would be useless to a teammate and unwise to offer them.

Which clients get written and which get a command is not about popularity. The app merges into a config only when it is strict JSON with servers under mcpServers; Visual Studio Code's is JSONC and Codex's is TOML, and re-serialising either would delete the comments in a file maintained by hand. Claude Code's ~/.claude.json is strict JSON, but it holds credentials and running sessions write to it concurrently, so a read-modify-write from a menu bar could drop somebody else's change. Those three get a line to paste. ChatGPT is absent entirely: it takes remote HTTP connectors and cannot spawn a local stdio server at all.

This repo's own .mcp.json is the exception, and it names its servers cupertino-*-dev on purpose: it points at apps/apple/.build, so working on the app means having the development build and the installed one side by side. Claude Code reports servers of the same name in two scopes as a conflict rather than picking one, so the suffix is what keeps both usable.

Cupertino.app needs macOS 26 or later — its icon is an Icon Composer bundle, which nothing older can render. The servers themselves are plain Node and carry no such floor; only the menu bar app does.

Permissions

Two separate macOS grants, and they land on whatever process launched the server — your editor, your terminal, or Cupertino — never on Mail, Notes or Reminders themselves.

Grant

Needed for

Full Disk Access

the index lane: Mail search, attachment bytes

Automation (per target app, prompted)

the Apple Events lane: accounts, mailboxes, all writes

Contacts (prompted)

the Contacts surface — its store is not behind Full Disk Access

System Settings → Privacy & Security → Full Disk Access → add the launching app, then restart it. Granting it to Mail.app does nothing; the reader needs the permission, not Mail.

What works without Full Disk Access:

Surface

Without the grant

Mail

accounts, mailboxes and writes only — search falls back to Apple Events at ~74 s

Notes

fully usable below roughly 5k notes; only attachment bytes need the grant

Reminders

usable, but all-day dates and subtasks need the store — the container cannot even be listed without it

Calendar

nothing. The only surface with no Apple Events read path fast enough to be a fallback — one 90-day range query costs 3.4 s — so every read needs the grant. Writes still work.

Contacts

nothing — but it does not want Full Disk Access. Its store sits behind the separate Contacts permission, which macOS prompts for rather than making you find a settings pane. Writes need Automation on top.

Messages

nothing at all. No Apple Events read path exists — Messages answers "Application isn't running" even while running — so there is no second lane and no degraded mode. A send can still be attempted, but with no store to pick the target from or reconcile against, it usually cannot be addressed at all.

Safari

live tabs, and only those. The one surface whose lanes are not fallbacks for each other: Apple Events sees what is open now, the file lane sees everything else. History, bookmarks and the Reading List all need the grant.

Maps

nothing at all. The only surface with no second lane by construction: Maps ships no scripting dictionary, so there is no Apple Events fallback to degrade to. Without the grant this server returns an error rather than an empty list, because an empty list of favourites reads exactly like a person who has saved none.

Tools that need the index don't disappear when it's missing — the tool list is a pure function of allowWrites and nothing else, because MCP clients cache it. They return a structured degraded result naming what's absent. apple_mail_diagnostics / apple_notes_diagnostics report which lane is live and how to grant what's missing.

Tools

Read tools are always registered. Write tools are invisible unless writes are enabled — not merely refused.

Mail

Always available

Write-gated

search_messages list_messages count_messages get_thread

set_message_flags move_messages delete_messages check_for_new_mail

get_message get_message_source list_attachments

send_message reply_to_message forward_message

list_accounts list_mailboxes diagnostics

save_attachment

Notes

Always available

Write-gated

list_notes search_notes get_note list_attachments

create_note update_note move_note delete_notes save_attachment

list_accounts list_folders diagnostics

Reminders

Always available

Write-gated

list_reminders search_reminders get_reminder list_lists

create_reminder update_reminder complete_reminders move_reminders delete_reminders

list_accounts diagnostics

Calendar

Always available

Write-gated

list_events search_events get_event list_calendars

create_event update_event delete_events

list_accounts diagnostics

list_events expands repeating events, so a weekly standup is returned once per week. Every result carries the window the expansion is known to cover, and sets truncated when a range runs past it rather than coming back short — a short list of events is indistinguishable from a free afternoon.

Contacts

Always available

Write-gated

resolve_handles search_contacts list_contacts get_contact

create_contact update_contact

diagnostics

resolve_handles turns phone numbers and email addresses into names, which is what makes the Messages surface readable at all. Read status on each result rather than assuming a name came back: unknown is common and not an error, and ambiguous means two contacts share the number, so no name is returned rather than a guess.

There is no delete tool. Contacts' scripting dictionary has no delete command of any kind, and this surface's writes go through Apple Events because its store is read-only by policy. That was true of every surface until Maps, which has no scripting dictionary to go through and writes SQL instead. See docs/contacts.md.

Messages

Always available

Write-gated

list_chats list_messages search_messages

send_message

get_message diagnostics

One write tool, because the dictionary has one usable command. sdef lists send, login and logout; the other two would sign the user out of iMessage on every device they own. There is no edit, delete, mark-as-read or reaction verb to expose.

This is the only surface where Apple Events is a write lane and nothing else — every read through it fails, so with APPLE_MESSAGES_ALLOW_WRITES off no Apple Event is ever sent and no Automation grant is ever requested.

send_message prefers a chatRef from list_chats over a raw handle, because Messages refuses to enumerate participants for a script: an existing conversation is the only target that can be addressed reliably. Apple Events hands back no identifier for what it sent, so the result is reconciled against chat.dbreconciliation: "matched" carries a real message ref, and "pending" means Messages accepted the send but has not written the row yet. Pending is not a failure, and retrying it sends the message twice.

About 3% of messages across all history keep their text only in an archived NSArchiver blob that SQL cannot reach — and Apple stopped writing the plain column in early 2026, so for anything recent it is ~100%. This server decodes them; textSource on every result says which lane answered. See docs/messages.md.

Safari

Always available

Write-gated

search_history get_page list_tabs

— none

list_bookmarks list_reading_list diagnostics

Read-only, and the write column is empty on purpose. Opening a URL or adding to the Reading List is an Apple Event that navigates a real, visible browser, and no write on this surface was ever probed.

list_tabs is the only tool in the whole bundle that works without Full Disk Access — it needs an Automation grant instead, and Safari has to be running. Ask for the tab marked frontmost to get the one the user is looking at: active means selected in its own window, so two open windows produce two active tabs. A tab's history field being null means not found in history, never "never visited": the match rate is a property of the tab set rather than of the surface, measured at 60.7%, 55.3% and 8.3% on three real runs. Single-page apps are the main reason — a page reached by pushState commits no history row at all. Each match reports historyMatch, and even an exact one can be a different site when the address is reused, as any localhost URL is.

Page content comes from a Safari extension, and only for websites you allow it on. apple_safari_read_page returns a page as readable text or raw HTML. It is a snapshot taken when the page loaded rather than a live read, so every result says when it was captured and how old it is — a page you have navigated away from still answers, and saying so is the point.

There is still no do JavaScript tool. That verb needs "Allow JavaScript from Apple Events", a developer-menu toggle which is not a TCC grant and whose own state cannot be read, so diagnostics could never tell you in advance whether it would work — and it is global: any process able to send Apple Events could then run script in any tab. Safari exposes no AXWebArea for page content either, so the Accessibility lane that reaches Mail's composer does not reach a web page. The extension is the only route, and it is the one Safari scopes per website. See docs/safari.md.

Maps

Always available

Write-gated

list_favorites list_collections list_collection_places

add_favorite remove_favorite

list_unfiled_places list_recents search_places get_place

diagnostics

Favourites, collections (Guides) and recents, from a Core Data store under Full Disk Access — with real coordinates and addresses, which is what makes it worth having.

list_unfiled_places returns the saved places filed in no Guide. Maps shows them only in a union view, and 7 of the 12 on the probed Mac appeared nowhere else in the store — not as a favourite, not in another Guide, not in recents.

It reads what is saved on this Mac. It does not search Apple's map of the world, geocode an address, or give directions; the guide says so, because answering those from general knowledge is the most likely way for this surface to be wrong.

It writes, and it is the only surface here that does so without an Apple Event. Maps ships no scripting dictionary and registers no App Intents on macOS, so add_favorite and remove_favorite go into the Core Data store directly — which means usesAppleEvents stays false even with the write gate open, and adding this surface still widens no Automation consent.

The part that cannot be faked is the GEO place record, so it never is: the place is opened through the maps:// URL scheme, Maps mints the record itself, and it is copied. Two consequences the tools state rather than hide — saving a place the store does not already know leaves an entry in Recents, and because the store is mirrored by NSPersistentCloudKitContainer the write reaches every device on the account. There is no local-only insert here.

It was also declared impossible three times before it was found: the store has no file extension, it sits in the one directory of Maps' container that Full Disk Access gates, and group.com.apple.Maps is a decoy that is EPERM rather than empty. See docs/maps.md.

All names are prefixed apple_mail_ / apple_notes_ / apple_reminders_ / apple_calendar_ / apple_contacts_ / apple_messages_ / apple_safari_ / apple_maps_.

Prompts and resources

Tools are what an agent calls. Two other things every server knows are the wrong shape for a tool, because a tool result is not addressable and does not outlive the session that paid for it: the inventory every other tool takes as an argument, and the diagnostics that get read one round trip after the confusing answer instead of before it.

So each server also exposes resources:

URI

What

cupertino://<surface>/guide

the operating manual — static, so it reads with every grant denied

cupertino://<surface>/diagnostics

the live capability and permission report

cupertino://<surface>/inventory

accounts and mailboxes / folders / lists / calendars

and workflow prompts, which hold the constraints a tool description cannot: not "what this call does" but what order the calls go in. apple_mail_triage, apple_mail_find_thread, apple_reminders_whats_due, apple_calendar_whats_my_day, apple_messages_catch_up and the rest, one to three per surface. Each embeds its surface guide, so a host that expands a prompt hands the model the reference material with it.

Write prompts follow the write tools exactly: with writes off, apple_mail_draft_reply is not refused, it is not registered. Full design notes, and what was deliberately left out, in docs/prompts-and-resources.md.

Configuration

Environment only — these servers hold no secret of their own, so there is no config file. Prefix is APPLE_MAIL_, APPLE_NOTES_, APPLE_REMINDERS_, APPLE_CALENDAR_, APPLE_CONTACTS_, APPLE_MESSAGES_, APPLE_SAFARI_ or APPLE_MAPS_.

Variable

Default

What

*_ALLOW_WRITES

false

register the mutating tools at all

*_EXPOSE_PROMPTS

true

register the workflow prompts and cupertino:// resources

*_ACCOUNTS

all

account allowlist (names or UUIDs) — the read-side control

*_ATTACHMENT_DIR

~/Downloads

the only directory attachments may be written into

*_MAX_RESULTS

200

cap on any listing

*_INDEX_MODE

auto

auto | ro | immutable | off

*_OSASCRIPT_TIMEOUT_MS

30000

per-Apple-Events-call timeout

*_DEBUG

false

verbose logging to stderr

allowWrites gates mutation, but on Mail the larger blast radius is reading an entire archive — that is what *_ACCOUNTS is for, and it is enforced in exactly one place so no query path escapes it. Mail also takes *_ROOT, *_ENVELOPE_INDEX, *_DEGRADED_MAX_MESSAGES, *_BODY_MAX_BYTES, *_BODY_SCAN_MAX, *_BODY_SCAN_BYTES and *_MAILBOX_CACHE_TTL_MS; see packages/mail/src/config.ts.

*_EXPOSE_PROMPTS is a cost knob, not a safety gate — which is why it defaults on while writes default off. Measured across all seven servers with writes enabled, the prompt and resource listings come to ~3.4k tokens against ~18.5k for the tool definitions, so about 18% on top of a bill that tools dominate either way; resource contents cost nothing until something reads one. If context is the problem, running fewer servers is the far bigger lever.

Calendar takes APPLE_CALENDAR_WORKDAY_START, APPLE_CALENDAR_WORKDAY_END and APPLE_CALENDAR_WORKDAYS (mon,tue,wed,thu,fri), which set the working day apple_calendar_find_availability offers time inside when a call names no hours of its own.

The app

The menu bar is Cupertino's whole surface — there is no Dock icon and no main window.

Section

What it answers

Full Disk Access

granted or not, with the button that opens the right Settings pane

One pane per surface

whether the surface is on at all, Automation status per app, the consent prompt, and the writes toggle

Connections

which client is talking to which server right now, and how many tools it has called

MCP clients

one-click wiring for Claude Desktop, Cursor, LM Studio and Windsurf; a copyable command for Claude Code, VS Code and Codex

Activity…

opens a window listing every tool call, live

The Activity window records tool names and the arguments each was called with. Message contents — a mail body, a message, a note's text — are blanked unless you turn them on for that surface, and results are recorded only for a surface that asks. Nothing is written to disk unless you ask for it: by default the log is a bounded ring in memory, cleared when Cupertino quits.

Settings › Activity turns on a durable audit log: append-only JSONL under Application Support, 0600, in segments, with retention by age and size. Whether that file carries arguments is a second switch, and whether it carries message contents is a third — getting a mail body onto disk takes three deliberate acts, because that is what it is.

Each record carries a hash of the one before it, so an edited field, a removed record or a truncated file can be detected. That is the whole claim: it catches tampering by something that does not know it is a chain. It is not proof against anyone who can write the file, because they can recompute it. Export writes the segments plus a manifest; signing is optional, proves the export came from this Mac unaltered, and means nothing to a recipient who was not given the key some other way. It is the answer to "what did the assistant just do with my mail?", and the reason the servers run under an app you can see rather than inside whichever editor spawned them.

Writes are off per surface until you turn them on, and the toggle decides whether the mutating tools are registered at all — an assistant with writes off cannot see that they exist.

Surfaces themselves can be switched off, from the switch in a surface's own pane or by right-clicking its row in the sidebar. A surface that is off is not served at all: its server key is left out of the clients Cupertino configures and pruned from the ones it has already written, its running servers are stopped, and the bridge refuses the connection if an older config still asks for it. That is the lever for the tool definitions you never use — eight servers wired everywhere is a cost every session pays. Clients configured before the change keep the entry until you press Update in Settings › Clients, which names the ones that still hold it. Claude Code and Codex get a copyable removal command; Visual Studio Code has no command that removes a server, so that one has to be edited by hand.

Everything that is true of one surface lives in that surface's pane: whether it is on, its Automation grant, its writes toggle, its store, and what its server actually exposes. Settings keeps only what has no surface — Full Disk Access, Accessibility and System Events — plus client wiring and the licence.

Why a single app

Full Disk Access is one indivisible whole-disk grant. Granting it per surface buys no containment and costs a System Settings trip each time, so every surface ships inside one signed, notarized app called Cupertino. docs/distribution.md also records why the Mac App Store cannot host any of this, so the question does not get re-opened.

But the grant is not the only thing the app holds, and it is not the only reason to run the servers under it rather than under an editor:

The grant lands on Cupertino

not on whichever editor spawned the server, and with it every extension and task that editor runs

A visible audit trail

the Activity window lists every tool call, live; a server inside an editor is unobservable

Writes are off, per surface

and the toggle decides whether the mutating tools are registered at all

*_ACCOUNTS bounds reading

the blast radius on Mail is the archive, not the mutations

Results say how much to trust them

indexAgeSeconds, a WAL-blind warning, and a structured degraded result rather than a vanished tool

Four surfaces, one grant

which is the actual payoff of the indivisibility above

docs/alternatives.md is the honest version of that list: what else reads Apple Mail for an assistant, and where those tools are ahead.

Documentation

docs/distribution.md

how this ships, and why not the App Store

docs/surfaces.md

which surfaces, and what each one costs

docs/licensing.md

what is open, what is sold, what buys trust

docs/alternatives.md

what else reads Apple Mail, and where we lose

docs/mail-body.md

the body-search lane, and how it is decided

docs/notes.md

Apple Notes phase-0 measurements

docs/reminders.md

Apple Reminders phase-0 measurements

docs/messages.md

Apple Messages: measurements, decoder, send

docs/calendar.md

Apple Calendar phase-0 measurements

docs/safari.md

Safari phase-0 measurements

docs/maps.md

Maps phase-0 measurements

docs/envelope-index.md

Mail's observed Envelope Index schema

docs/prompts-and-resources.md

what the servers expose beyond tools

docs/verify.md

checking the Mail server against a real index

Working on it

pnpm build          # every package
pnpm test           # every package
pnpm typecheck
pnpm lint
pnpm format

The marketing site is its own workspace, and deploys by hand:

pnpm --filter @mgcrea/cupertino-website dev     # astro dev
pnpm --filter @mgcrea/cupertino-website build   # static build

It is built from the design canvas in .idea/design/, and reads its tool counts from packages/*/src/tools/ rather than from this file — see apps/website.

The Swift half is xcodebuild, named by the Makefile rather than wrapped by it:

make app            # build Cupertino.app (Debug)
make run            # build, point at packages/*/dist, launch
make smoke          # handshake every server through the bridge
make stop           # quit and remove the socket

The app's screenshots are captured rather than taken by hand — apps/apple/Screenshots/ holds the config and the committed goldens, and the website renders the output:

make screenshots          # capture, gate against the goldens, compose both sets
make screenshots-check     # gate only — fails if the UI drifted
make screenshots-update    # accept the captures as the new goldens (review the diffs first)
make screenshots-selftest  # prove the gate fails when it should

A run takes over the pointer and the active app at the moment of each shot, so do not use the machine while it runs. It needs Screen Recording permission for the terminal, never for Cupertino itself. make screenshots-doctor checks that and the two other things that otherwise fail silently: whether the caption font resolves, and whether the output size is one a store would accept.

What the screenshots show is fixture data from apps/apple/Cupertino/DemoSeed.swift, not this Mac: in -ScreenshotMode the app starts no host, seeds its own log and sessions, and answers the permission and store questions from a table. Without that the images would report one laptop's TCC state and print its home directory into the marketing site.

Phase-0 probes are repo-wide and read-only. They need the permission of the surface they measure, and redact their output to counts, timings and DDL:

pnpm probe:mail      # Envelope Index — needs Full Disk Access
pnpm probe:mail-body # which lane can search message bodies — needs Full Disk Access
pnpm probe:notes     # Notes — the Apple Events half runs without it
pnpm probe:reminders # Reminders — the store path is a glob, so finding it is itself privileged
pnpm probe:messages  # chat.db — no Apple Events read lane exists, so this one needs the grant
                     #   --send-target=<handle> also checks the send lane's targeting, without sending
pnpm probe:calendar  # settles whether Calendar has a file lane at all
pnpm probe:safari    # History.db, and the Reading List hiding inside Bookmarks.plist
pnpm probe:maps      # MapsSync, the store with no file extension behind the grant
pnpm probe:contacts  # the resolver Messages needs — its own TCC grant, not Full Disk Access

Every probed surface now has a package. Safari is the only read-only one — it registers no mutating tool, and that is a recorded decision rather than an omission: opening a URL or adding to Safari's Reading List navigates a real, visible browser and was never probed. See docs/safari.md. Maps writes without an Apple Event at all, which nothing else here does: it has no scripting dictionary, so add_favorite asks Maps to mint a place record through the maps:// URL scheme and then writes SQL into the Core Data store. That store is CloudKit-mirrored, so the write reaches every device on the account — the only write in the bundle whose blast radius exceeds the machine. docs/maps.md carries the four lanes that were measured to get there. Messages registers exactly one write tool, send_message, which is the whole of what its scripting dictionary can do. Every probe degrades rather than exits — an app that is not running, or a permission that is not granted, is reported as a finding — and none of them launches an app unless you pass --launch. Their shared mechanism lives in scripts/lib/probe-kit.mjs.

Releases are tagged per package, so a tag names what it publishes: mail-v1.6.0, reminders-v1.6.0, calendar-v1.6.0, core-v1.6.0. The app is tagged app-v1.6.0 and releases on its own lane — a signed, notarized Cupertino.zip attached to the GitHub release, plus its SHA-256. See docs/distribution.md.

The repo is cupertino; the npm packages stay @mgcrea/mcp-apple-*, because that is what people search npm for. Neither name is load-bearing. The bundle identifier io.mgcrea.cupertino is the string that actually matters, because changing it would invalidate every user's Full Disk Access grant.

Licence

Two, because the halves are not the same thing.

Part

Licence

packages/*, scripts/

MIT — libraries, vendor them freely

apps/apple/

source-available — read, audit, compile; binary redistribution reserved

the signed, notarized build

sold, under the EULA shipped with it

Cupertino asks for Full Disk Access, so the source stays readable — that is what such a grant is owed, and reading it is the point. Running it is a separate question: the licence check lives in the source, so any build asks for a key, yours or ours. What is sold is the notarized binary and the maintenance behind it. The servers are MIT and run on their own with no key at all. The reasoning is in docs/licensing.md.

A
license - permissive license
Not graded
quality - not tested
A
maintenance

Maintenance

0Maintainers
No issuesResponse time
0dRelease cycle
34Releases (12mo)
Commit activity

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