BankMCP™ MCP Server
io.github.noskillish/bankmcp
Read-only MCP server for your bank accounts via Enable Banking. Self-hosted, one user, no third-party data storage.
What is the BankMCP™ MCP server?
BankMCP™ is a self-hosted, read-only MCP server that connects your AI assistant to your European bank accounts through Enable Banking's PSD2 API. It exposes your account balances, transactions, and subscription data to Claude, Cursor, and other MCP clients without storing your credentials or transaction history on third-party servers.
BankMCP™ lets you ask your AI assistant questions about your bank accounts—"What did we spend on groceries in August?" or "Which subscriptions am I paying for?"—while keeping all data on your own machine or a server you control. It connects to 2,700+ European banks via Enable Banking's PSD2 API, requires no payments or third-party data handling, and includes background watches that notify you when balances drop or unusual transactions occur.
How to install BankMCP™
Copy-paste configuration for popular MCP clients.
Tools & capabilities
Tools this server exposes to the agent.
list_banks— List available banks for connectionstart_consent— Initiate bank connection and account linkingconsent_status— Check the status of bank connection consentdisconnect_bank— Disconnect a bank and revoke accesslist_accounts— List your connected accounts with booked balances and custom labelsset_account_label— Assign custom names to accountsget_balances— Retrieve booked and available balance for a specific accountget_transactions— Fetch signed transactions with counterparty and description; paginated resultscreate_watch— Set up background rules to monitor balance thresholds or payment patternslist_watches— View all active monitoring rulesdelete_watch— Remove a monitoring rulecheck_watches— Manually trigger watch checks and get notifications
Use cases
- Ask your assistant about account balances and recent transactions without logging into your bank
- Track subscription costs and identify recurring payments you can cancel
- Monitor account balances and receive webhook notifications when they drop below a threshold
- Analyze spending patterns by category (groceries, utilities, etc.) over a time period
- Set up automated alerts for unusual transactions or payments from specific merchants
BankMCP™ MCP server FAQ
BankMCP™ is a self-hosted MCP server that connects your AI assistant to your European bank accounts via Enable Banking's PSD2 API. It is read-only, stores no transaction history, and keeps your data on your machine or a server you control.
Yes. BankMCP™ is open-source (npm package `bankmcp`). You need a free Enable Banking account to connect to your banks, but there is no cost for the server itself.
For Claude Desktop, download the `bankmcp.mcpb` bundle from the releases page and open it, or add it manually to `claude_desktop_config.json` with the command `npx -y bankmcp`. For Cursor and other clients, run `npx -y bankmcp` as a stdio server. For Claude.ai, deploy it on a server and add it as a custom connector at Settings → Connectors.
No. Your credentials are entered at your bank's own login page (PSD2 standard). The server holds only Enable Banking application keys, account IDs, and consents—not balances or transactions. Enable Banking acts as a licensed intermediary between your server and your bank.
Yes, if your bank is in Europe and supported by Enable Banking (2,700+ banks). You register a free Enable Banking account, create a production application, and link your accounts. The restricted mode allows individual non-commercial use of your own accounts.
You can reset it by setting the `ADMIN_PASSWORD` or `ADMIN_PASSWORD_HASH` environment variable and restarting the server. Changing the password logs out all connected clients.
README (reference)
Source of truth, from the repository.
BankMCP™
Your AI now reads your bank. Ask it anything about your accounts. Read-only, self-hosted, one user. Standard MCP; tested with Claude and Ollama.
BankMCP™ is not a bank. It is a small open-source server you host yourself
(npm package bankmcp). It connects to your banks
through Enable Banking, which wraps 2,700+
European banks in one PSD2 API, and exposes them to any MCP client as a
connector. Read-only, no payments, no third party holding your data.
"Has the invoice from Acme been paid?" · "What did we spend on groceries in August?" · "Which subscriptions am I paying for, and what do they cost per year?" · "Tell me when my balance drops below 5,000."
How it works
Your assistant ──OAuth──▶ your BankMCP™ server ──JWT──▶ Enable Banking ──PSD2──▶ your bank
- Your assistant (Claude, ChatGPT, Cursor, or any MCP client) talks to your server as a connector. You sign in once with a password; tokens handle the rest.
- Your server holds the Enable Banking application key, the bank consents and your account ids. It does not store balances or transactions and sends no telemetry.
- Enable Banking is the licensed provider between your server and your bank. Every balance and transaction you ask for passes through their servers on the way to yours; they do not store it, and they do not see your bank credentials, since you log in at your bank's own site. This hop is how PSD2 works and is the one part of the chain that is not on your machine.
Setup
Two ways to run it. Both need a free Enable Banking account and about ten minutes.
- On your own machine for Claude Desktop, Claude Code, Cursor and other desktop MCP clients. Nothing to deploy, no password.
- On a small server when you want it in claude.ai or on your phone.
On your own machine
The server and its state live on your computer, and no AI vendor or app maker sees your data. The bank connection is not on your computer: it goes through Enable Banking, as described above.
Requires Node 24 or newer. Add BankMCP™ to your client:
Claude Code:
claude mcp add bankmcp -- npx -y bankmcp
Claude Desktop: download
bankmcp.mcpb
and open it; Claude Desktop installs it as an extension. Or add it by hand in
claude_desktop_config.json:
{ "mcpServers": { "bankmcp": { "command": "npx", "args": ["-y", "bankmcp"] } } }
Cursor and others: the same command, npx -y bankmcp, as a stdio server.
Then ask your assistant anything about your bank. It will answer with a localhost address. Open it: the setup page lists the values to register an application at Enable Banking, then takes the application id and the key file. Your browser will warn once about the certificate on localhost, which the server made for itself because Enable Banking requires https for the bank redirect. Continue past it. Say "connect my bank" and log in at your bank.
To avoid the warning altogether, use a certificate your browser already
trusts: mkcert makes one with
mkcert localhost 127.0.0.1; point TLS_CERT_PATH and TLS_KEY_PATH at the
two files and the server uses them instead of generating its own. BankMCP™
itself does not touch your system's trust store.
State lives in ~/.bankmcp. Delete the folder to forget everything.
On a server
1. Deploy
Any container host works. The server needs a persistent volume at /data
and a public https address; it asks you for everything else in the browser.
A prebuilt image is published on every release:
ghcr.io/noskillish/bankmcp (built by GitHub Actions
from the tagged source, linux/amd64 and linux/arm64).
Railway:
deploys the published image with a volume at
/data and a domain, nothing
to fill in. Or by hand: New Project, Deploy from GitHub repo, pick this
repo, add a volume mounted at /data and generate a domain (Settings,
Networking, port 8080). The server learns its own address from Railway.
Fly.io: three commands from a checkout, using fly.toml:
fly launch --copy-config --no-deploy # pick an app name and region
fly volumes create data --size 1
fly deploy
Render:
uses render.yaml. Render's persistent disks need a paid
instance.
Docker on your own box:
docker run -d --name bankmcp --restart unless-stopped \
-p 8080:8080 -v bankmcp-data:/data ghcr.io/noskillish/bankmcp:latest
or docker compose up -d with compose.yaml. Then put a TLS
terminator in front (Caddy needs two lines:
YOUR-HOST { reverse_proxy localhost:8080 }) and set BASE_URL to the
public address. The server binds every interface by default. When the proxy
runs on the same machine, set BIND_HOST=127.0.0.1 so nothing else on the local
network reaches the login and setup pages.
Open the address. A fresh server shows a setup page.
2. Register an Enable Banking application
The setup page can do this for you. Enter the email of your Enable Banking account (or the one you want to create it with) and press Send me the sign-in link. Enable Banking emails you a one-time link; paste it on the next page. Your server signs in with it once, creates the application with the right redirect and policy addresses, generates the key pair and stores the id and the key. The sign-in is not kept. On a local server the click on the link does the same without pasting.
Or by hand: the setup page lists the exact values Enable Banking's form asks
for, with Copy buttons. At https://enablebanking.com/cp/applications create
an application with them, keep generate private key selected, and save. A
.pem file downloads once; that is the key. Paste the application id and
choose the .pem file on the setup page. Before anything is stored, the id
and key are checked against Enable Banking.
Either way: Production for your real accounts, Sandbox for test data. A production application for your own accounts is activated once in the Control Panel with Activate by linking accounts; see Going live below.
3. Finish setup
Choose a password of twelve characters or more. A Ready page then shows what was checked: the application, whether its redirect URL is registered and whether it is active, and the connector address to copy.
Prefer configuration by environment? Set these and the setup page does not appear:
4. Add the connector in your assistant
In claude.ai (or the desktop app): Settings → Connectors → Add custom
connector. Name it BankMCP™, paste https://YOUR-HOST/mcp, save, then click
Connect. Your server shows a password page; enter the admin password. That
is the only login you will do.
In Claude Code:
claude mcp add --transport http bank https://YOUR-HOST/mcp
then run /mcp inside Claude Code to sign in.
Other MCP clients (ChatGPT, Mistral Le Chat, Cursor, VS Code) work the same
way: add the URL as a remote MCP server, sign in with the password. Tested
with Claude, Claude Code and Ollama; the others follow the same standard.
A client whose domain is not in ALLOWED_REDIRECT_HOSTS needs adding there.
5. Connect your bank
In your assistant, say "connect my bank" (or use the connect-bank prompt). It
looks up your bank, gives you a link, you log in at the bank and approve, and
the accounts appear. Consents last up to 180 days; you are told when one
is about to expire and the same conversation renews it.
Give accounts labels ("Everyday", "Joint expenses", "Mortgage") when it suggests them. Every tool accepts labels instead of ids.
Going live with your own accounts
Enable Banking's production environment normally requires a contract, but it has a restricted mode for accessing your own accounts, explicitly allowed for individual non-commercial use. After registering a Production application:
- On the (Inactive) application click Activate by linking accounts.
- Log in at your bank and approve. Repeat for each bank you want.
- The application becomes active and the API returns only the accounts you linked this way.
Read the Restriction of Use section of Enable Banking's Terms of Service before you rely on it: restricted mode is for your own accounts, not for offering a service to others. This project does not change those terms.
What you get
Tools (all read-only):
| Tool | What it does |
|---|---|
list_banks, start_consent, consent_status, disconnect_bank | connect and manage banks |
list_accounts, set_account_label | accounts with booked balances; your own names for them |
get_balances | booked and available balance for one account |
get_transactions | signed amounts, one counterparty, one description; paginated |
create_watch, list_watches, delete_watch, check_watches | background rules with webhook notifications |
Prompts: connect-bank, monthly-summary, build-budget,
savings-scan, subscription-audit, unusual-transactions.
Watches run on the server. Rules: balance below or above an amount, a
single debit over an amount, an incoming or outgoing payment matching a name,
and "tell me if this payment has not arrived by this date". Accounts are
checked at most four times a day, the PSD2 limit for unattended access.
Notifications go to NOTIFY_WEBHOOK_URL as a Slack message or a JSON POST.
Enable Banking's own webhooks cover payment initiation only, so account data is polled. There is no way around that under PSD2.
Claude Code plugin
The repository is also a Claude Code plugin marketplace. The bank plugin
brings three skills: /bank:setup walks you through installing BankMCP™ on
your machine, /bank:deploy through hosting it, and bank encodes how to work
with the data: an account map, categorisation rules, the monthly review format
and when to create watches.
Point it at your server, then install:
export OPENBANK_URL=https://YOUR-HOST/mcp # put this in your shell profile
/plugin marketplace add noskillish/bankmcp
/plugin install bank@bank
Then /mcp, select bank, Authenticate, and enter your password. No
organisation admin is involved; plugins are per user.
The skill lives at plugin/skills/bank/SKILL.md. Copy it into your own skills to fill in the account map and your merchant rules. The server stays generic; your rules stay yours.
Local models (experimental)
The server does not care which model asks. npm run chat bridges an
Ollama model to the same tools over stdio, so no AI
vendor sees a transaction:
ollama pull qwen3:8b
npm run chat -- "what's my balance?"
Measured on a MacBook Air with 24 GB: correct per-account balances, a wrong
total, ten minutes per answer. An 8B model is not yet trustworthy with money;
a 30B-class model on a machine with a real GPU is where it gets useful. Any
MCP client with tool calling (LM Studio, Goose, Jan) can also point at
node src/stdio.ts directly. Enable Banking still sits between you and the
bank either way; that part is regulated and unavoidable.
Security notes
- The server is a complete OAuth 2.1 authorization server with one user. Discovery, dynamic client registration and PKCE come from the MCP SDK; tokens are stored hashed; five wrong passwords lock an address out for fifteen minutes, and twenty from all addresses together lock sign-in for everyone for fifteen minutes. Assistants that are already connected keep working during a lock.
- State is one JSON file in
DATA_DIR: consents, account ids, watches (with the ids of transactions that already fired) and OAuth tokens. Balances and transactions are not written to disk. Your assistant keeps the conversation as any chat does, and a watch notification carries the matched transaction to your webhook. Back the file up if you care about not re-consenting; delete it to forget everything. - Only clients that redirect back to a known MCP client domain (Claude,
ChatGPT, Mistral, Cursor, VS Code) or localhost can register
(
ALLOWED_REDIRECT_HOSTS), which stops a phishing link from routing your sign-in to another site. Using a client not on the list? Add its domain. The sign-in page also names the host you will be sent back to. - Notifications go to one destination only: the
NOTIFY_WEBHOOK_URLthe operator sets on the host, and it must be https. A watch cannot name its own webhook, so a client or an assistant that has been talked into it cannot point transaction data at another address or at something inside the server's network. - Where the checks are, for anyone reading the code: every
/mcprequest passesrequireBearerAuthinsrc/app.tsbefore any tool runs; tokens are issued and verified bySingleUserProviderinsrc/auth.ts, after the password check incompleteLogin. There is one user, so a valid token is the whole authorisation and the tools carry no further per-user checks. In local mode (npx bankmcp) there is no OAuth: the client on your machine talks to the server over stdio, and whoever can run processes on that machine can use it. - Transaction descriptions and counterparty names are written by other people, for example whoever sent you a payment. The server tells assistants to treat them as data, not as instructions. An assistant can still be misled by them.
- Anyone with the admin password can read your accounts. Use a long one.
Every successful sign-in is logged and, if
NOTIFY_WEBHOOK_URLis set, sent to you as a message. A sign-in you did not make is your alarm. - Forgot the password? Set
ADMIN_PASSWORD(orADMIN_PASSWORD_HASH) on the host and restart; the environment wins over the value stored at setup. - Changing
ADMIN_PASSWORD_HASH(orADMIN_PASSWORD) and restarting logs every client out. That is the kill switch. Revoking the consents at your bank, or deleting the state file, is the step beyond it. - There are no payment tools. Payments need a licensed PISP and a very different security model, so they are out of scope.
Commands
npm start # http server (reads env from the environment)
npm run dev # same, with reload and .env
npm run check # verify config and the Enable Banking application
npm run hash-password # produce ADMIN_PASSWORD_HASH
npm run watch -- --force # run all watches once, print what fired
npm test # unit tests (node:test)
npm run typecheck
sh scripts/build-mcpb.sh # Claude Desktop bundle → dist/bankmcp.mcpb
npm run banks # refresh docs/banks/banks.json from Enable Banking's bank list
npm run site # build the subpages of the landing page into docs/
Requires Node 24 or newer (runs TypeScript directly, no build step).
Layout
src/stdio.ts entry point for npx bankmcp: stdio server plus the localhost https side
src/server.ts entry point for a hosted deployment: OAuth, /mcp, callback, status page
src/app.ts the Express app shared by both entry points
src/local.ts localhost https server and self-signed certificate for local mode
src/mcp.ts McpServer factory (tools, prompts, instructions)
src/tools.ts the MCP tools
src/prompts.ts the MCP prompts
src/watcher.ts background rule checks and notifications
src/auth.ts single-user OAuth provider
src/setup.ts first-run setup: validates and stores id, key and password
src/pages.ts the HTML pages: setup, sign-in, connected, status, privacy, terms
src/config.ts environment and data-directory configuration
src/enablebanking.ts JWT signing and a thin typed API client
src/store.ts the JSON state file
src/data.ts shaping balances and transactions for an assistant
src/cli.ts check, hash-password, watch
bin/bankmcp.js the npx entry; dispatches to stdio or cli
scripts/ build-mcpb.sh (Claude Desktop bundle), banks.ts and site.ts (landing subpages), local-chat.ts (Ollama bridge)
plugin/ Claude Code plugin: setup and deploy skills, bank skill
docs/ landing page (GitHub Pages, bankmcp.dk); docs/banks holds the bank list and its pages
What this is, and is not
BankMCP™ is software, not a service. There is no hosted BankMCP™, no account to sign up for, and nobody but you handles your server, your key or your bank consents. Each person who uses it deploys their own copy and is the sole operator of that copy: they register their own Enable Banking application, accept Enable Banking's terms themselves, and are responsible for their own hosting, password and security.
The authors publish the code and nothing else. They do not run any instance for others, receive no data, and are not affiliated with Enable Banking, Anthropic or any bank. BankMCP™ is not a bank, does not hold money, and gives no financial advice.
Use at your own risk. If you deploy it, you own that deployment and its security. The software is provided as is, without warranty of any kind, and the authors accept no liability for how it is used or for any loss that follows. MIT licence below.
License
MIT
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