appstore-play-mcp
Enables read-only queries across App Store Connect and Google Play from one toolset, letting users list apps, track release states, and review merged store feedback without extra dependencies or credentials in demo mode.
README
appstore-play-mcp
A read-only MCP server for App Store Connect and Google Play. One set of tools over both stores, so you can ask "what's live, what's in review, and what are people complaining about?" once instead of twice.
> Which of my apps have a release that isn't live yet?
Pocket Herbarium (App Store)
app-store: 2.1.0 (214) — in review
Pocket Herbarium (Google Play)
production: 2.0.3 (208) — rolling out at 20%
beta: 2.1.0 (214) — live
Built for indie developers who ship to both stores and are tired of two consoles, two auth schemes, and two vocabularies for the same thing.
Nothing here writes. No metadata edits, no submissions, no review replies. Every
tool is annotated readOnlyHint, and the test suite fails if that ever stops being true.
Try it in 30 seconds
No Apple key, no Google service account:
npx -y appstore-play-mcp --demo
Demo mode serves fixtures for a fictional two-app developer — including a version stuck in review and a staged rollout at 20%, because those are the states worth looking at.
npx @modelcontextprotocol/inspector npx -y appstore-play-mcp --demo
Tools
| Tool | What it does |
|---|---|
stores_health |
Which stores are configured and whether their credentials work. |
list_apps |
Every reachable app, both stores, one list. |
get_app |
One app by App Store id, Play package name, or bundle id. |
get_releases |
What's live, in review, or mid-rollout — one app or the whole portfolio. |
get_reviews |
Recent reviews from both stores, merged and sorted. maxRating: 2 to triage complaints. |
appId is optional on get_releases and get_reviews. Leave it out and the tool
sweeps every app you have — that's the portfolio view.
One vocabulary for two stores
The App Store has appStoreVersions with an appVersionState; Play has tracks holding
releases with a status and a rollout fraction. Both are normalised:
Normalised state |
App Store | Google Play |
|---|---|---|
live |
READY_FOR_DISTRIBUTION |
completed |
in_review |
IN_REVIEW, WAITING_FOR_REVIEW |
— |
pending_developer_release |
PENDING_DEVELOPER_RELEASE |
— |
rejected |
REJECTED, METADATA_REJECTED |
— |
rolling_out |
— | inProgress with userFraction < 1 |
halted |
— | halted |
draft |
PREPARE_FOR_SUBMISSION |
draft |
Each store's own wording is preserved in rawState, so nothing is lost in translation.
Reviews get the same treatment, with one honest exception: the stores do not report the same thing about where a review came from, so they do not share a field.
| Field | App Store | Google Play |
|---|---|---|
territory |
ISO country (DEU, USA) |
— not exposed |
language |
— not exposed | reviewer's language (pl, en) |
device |
— not exposed | device model |
appVersion |
— not exposed | version reviewed |
Collapsing a language into a country field would have made the unified shape look tidier and report something false, so each store fills only what it actually knows.
Setup
Listed in the MCP Registry as io.github.JohnBilousov/appstore-play-mcp, so clients that read the registry can find it on
their own.
Either store works on its own — configure one, both, or neither (fixtures).
<details open> <summary><b>App Store Connect</b></summary>
In App Store Connect → Users and Access → Integrations → App Store Connect API,
create a key and download the .p8 (Apple lets you download it once).
export ASC_KEY_ID=XXXXXXXXXX
export ASC_ISSUER_ID=00000000-0000-0000-0000-000000000000
export ASC_KEY_PATH=/path/to/AuthKey_XXXXXXXXXX.p8
The server signs its own ES256 JWT — no fastlane, no extra dependency. ASC_PRIVATE_KEY
takes the key inline instead, for CI.
</details>
<details> <summary><b>Google Play</b></summary>
Create a service account in Google Cloud, enable the Android Publisher API for its project, then grant it access in Play Console → Users and permissions.
export PLAY_SERVICE_ACCOUNT_PATH=/path/to/service-account.json
export PLAY_PACKAGES=com.example.app,com.example.other
PLAY_PACKAGES is not optional: the Play API has no endpoint that lists a developer's
apps, so the packages have to be declared. PLAY_SERVICE_ACCOUNT_JSON takes the JSON
inline instead, for CI.
</details>
<details> <summary><b>MCP client config</b></summary>
{
"mcpServers": {
"stores": {
"command": "npx",
"args": ["-y", "appstore-play-mcp"],
"env": {
"ASC_KEY_ID": "XXXXXXXXXX",
"ASC_ISSUER_ID": "00000000-0000-0000-0000-000000000000",
"ASC_KEY_PATH": "/path/to/AuthKey_XXXXXXXXXX.p8",
"PLAY_SERVICE_ACCOUNT_PATH": "/path/to/service-account.json",
"PLAY_PACKAGES": "com.example.app"
}
}
}
}
Claude Code:
claude mcp add stores -- npx -y appstore-play-mcp
</details>
Platform limits worth knowing
These are the stores' constraints, not the server's:
- Play cannot list your apps. Hence
PLAY_PACKAGES. - Play reviews go back about a week, and only exist for apps that have reviews.
- Play track data is only readable inside an "edit." Every read here opens a
transient edit and deletes it in a
finallyblock. Nothing is ever committed, so your app is not modified — but that is why a read-only server makes a POST. - App Store reviews are per-territory and can lag the store page by a few hours.
Design notes
Two credentials, one interface. AppStoreClient and PlayClient both implement
StoreClient; a DemoStoreClient implements it a third time on fixtures. Tools never
branch on which store they are talking to.
One store failing doesn't sink the call. Reads fan out across stores and across apps, and
a failure on either axis is collected rather than thrown. If Play is down, App Store reviews
still come back — with the Play failure named in the text and listed in unavailable, so the
model can tell the user the answer is partial. An empty list and a broken credential must never
look the same; a test asserts they don't.
Errors carry the fix. A 403 from Play says the service account may lack access or
the Android Publisher API may be disabled for its project. A 404 says to call
list_apps. The model can usually recover without the user intervening.
Tokens are cached and refreshed early. ES256 for Apple (20 min), RS256 → OAuth2 for
Google (1 hour), both refreshed a minute before expiry so no call races the boundary. The Play
side also memoizes the in-flight exchange: listApps() opens an edit per package concurrently,
and without that, each concurrent caller would see no cached token yet and mint its own.
Development
git clone https://github.com/JohnBilousov/appstore-play-mcp && cd appstore-play-mcp
npm install
npm run build
npm test # tool surface + both auth clients against a mocked fetch, real key material throughout
npm run lint # eslint
npm run format # prettier --write
npm run inspect
CI runs typecheck, lint, format:check, test, and build on every push and pull request.
src/
index.ts CLI entry, stdio transport
config.ts env → Config; either store optional, fixtures as the floor
server.ts tools + the registry that fans reads across stores
schemas.ts zod input and output shapes
format.ts human-readable summaries next to structuredContent
stores/
types.ts shared vocabulary + state normalisation
appstore.ts App Store Connect (ES256 JWT)
play.ts Google Play (service account → OAuth2)
demo.ts fixtures
test/
server.test.ts tool surface, state normalisation, portfolio sweeps — over a real MCP transport
stores/
appstore.test.ts ES256 signing verified against the public key, token caching, error mapping
play.test.ts RS256/OAuth2 exchange, the transient-edit cleanup, the concurrency fix above
Releasing
Publishing uses npm's trusted publishing (OIDC) —
no NPM_TOKEN secret, nothing that can leak or expire. One-time setup on npmjs.com, under the
package's Settings → Trusted publishing → GitHub Actions: organization JohnBilousov, this
repository, workflow filename publish.yml.
To cut a release: bump the version in package.json, server.json, and VERSION in
src/server.ts together (a test asserts they can't drift), commit, push, then publish a GitHub
Release with a matching vX.Y.Z tag. That triggers
.github/workflows/publish.yml, which runs the test suite and
publishes to npm with provenance — the
package page shows a verified link back to this exact commit and workflow run, not just a name on
the registry.
Roadmap
- [ ] Sales and download reports from App Store Connect (needs a vendor number)
- [ ] Crash and ANR vitals from the Play Developer Reporting API
- [ ] TestFlight builds and tester groups
- [ ] Streamable HTTP transport alongside stdio
Contributions welcome — especially from anyone who ships to both stores and has hit a limit worth documenting here.
License
MIT © Ivan Bilousov
Recommended Servers
playwright-mcp
A Model Context Protocol server that enables LLMs to interact with web pages through structured accessibility snapshots without requiring vision models or screenshots.
Magic Component Platform (MCP)
An AI-powered tool that generates modern UI components from natural language descriptions, integrating with popular IDEs to streamline UI development workflow.
Audiense Insights MCP Server
Enables interaction with Audiense Insights accounts via the Model Context Protocol, facilitating the extraction and analysis of marketing insights and audience data including demographics, behavior, and influencer engagement.
VeyraX MCP
Single MCP tool to connect all your favorite tools: Gmail, Calendar and 40 more.
graphlit-mcp-server
The Model Context Protocol (MCP) Server enables integration between MCP clients and the Graphlit service. Ingest anything from Slack to Gmail to podcast feeds, in addition to web crawling, into a Graphlit project - and then retrieve relevant contents from the MCP client.
Kagi MCP Server
An MCP server that integrates Kagi search capabilities with Claude AI, enabling Claude to perform real-time web searches when answering questions that require up-to-date information.
E2B
Using MCP to run code via e2b.
Neon Database
MCP server for interacting with Neon Management API and databases
Exa Search
A Model Context Protocol (MCP) server lets AI assistants like Claude use the Exa AI Search API for web searches. This setup allows AI models to get real-time web information in a safe and controlled way.
Qdrant Server
This repository is an example of how to create a MCP server for Qdrant, a vector search engine.