# Deployment ## The shape of it ``` claude.ai ──HTTPS──┐ ├─▶ VPS (public IP) ──tunnel──▶ Pi 5 (home network) schulcloud CLI ─────┘ └─ Caddy ─▶ schulcloud-mcp:8080 ├─ /mcp (Claude) ├─ /api (CLI) ├─ Postgres (index) ├─ mirror (file bytes) └──▶ schulcloud-thueringen.de ``` Both front ends use the same hostname and the same bearer token. `/mcp` speaks MCP; `/api` serves the CLI's manifest, file bytes, re-crawl requests and token replacement; `/token` is a page for pasting a fresh Schulcloud token. Claude's custom connectors call the endpoint from Anthropic's cloud (`160.79.104.0/21`), so it must be publicly reachable over real TLS — a localhost tunnel or self-signed cert will not do. The VPS provides the public address; Caddy on the Pi terminates TLS and obtains the certificate. **The Pi must stay up.** More than two hours offline ends the Schulcloud session however long the token has left — a laptop that sleeps overnight loses it every night. A replacement token fixes that without a restart (see *Replacing the Schulcloud token*), but an always-on host is what avoids needing one. The container publishes no host port. Caddy reaches it over the shared Docker network, so the only way in from the internet is through Caddy and then through this server's bearer check. ## First deploy ```bash git clone /opt/schulcloud-mcp cd /opt/schulcloud-mcp cp .env.example .env # Fill in TSC_URL and TSC_JWT_COOKIE (see docs/AUTH.md), then: openssl rand -hex 32 # → MCP_AUTH_TOKEN docker compose up -d --build docker compose logs -f schulcloud-mcp ``` Expect: ``` [schulcloud-mcp] listening on 0.0.0.0:8080 — instance https://… , auth enabled, keepalive every 30min ``` `auth DISABLED` there means `MCP_AUTH_TOKEN` is empty — fix it before exposing the service. A `keepalive: token rejected (401)` line right after startup means the Schulcloud token is dead and needs replacing (see docs/AUTH.md); the server will run but every tool will fail. ## Joining the existing Caddy The Pi already runs Caddy and PostgreSQL in a Compose project. This server needs neither a database nor its own Caddy — only a network it shares with the existing one. Find the network Caddy is on: ```bash docker inspect -f '{{range $k,$v := .NetworkSettings.Networks}}{{$k}}{{"\n"}}{{end}}' ``` Then in `docker-compose.yml`, set that name and mark it external: ```yaml networks: caddy: external: true name: ``` ### Postgres The index needs a database. On the Pi, use the existing PostgreSQL rather than the container in `docker-compose.yml` — create a database and user for it: ```sql CREATE USER schulcloud WITH PASSWORD '…'; CREATE DATABASE schulcloud OWNER schulcloud; ``` Then set `DATABASE_URL` in `.env` and delete the `postgres` service from the compose file. Migrations run automatically at startup; `pg_trgm` is created by the first migration, which needs the database owner to be able to `CREATE EXTENSION`. Without `DATABASE_URL` the server still runs: search crawls live on every call and `/api` returns `503`. The startup log says which mode it is in. ### Caddy Append `deploy/Caddyfile.snippet` to the Pi's Caddyfile, replacing `mcp.example.org` with the real hostname, and reload: ```bash docker exec caddy reload --config /etc/caddy/Caddyfile ``` Two settings in that snippet matter and are easy to miss: - **`flush_interval -1`** — MCP's Streamable HTTP transport holds a server-sent-events channel open. Without this, Caddy buffers it and the connector hangs with no error. - **`read_timeout`/`write_timeout` of 300s** — a `search` call walks every course and can take tens of seconds. Caddy's defaults will cut it off. ## Ports and DNS - DNS for the hostname points at the **VPS**, not the Pi. - The VPS forwards 80 and 443 to the Pi's Caddy. Port 80 must work too, or Caddy cannot complete the ACME HTTP challenge. - Nothing else needs to be exposed. ## Verifying from outside ```bash curl -s https://mcp.example.org/healthz # {"status":"ok","sessions":0} curl -s -o /dev/null -w '%{http_code}\n' -X POST https://mcp.example.org/mcp \ -H 'content-type: application/json' -d '{}' # 401 ← the bearer check is live ``` If `/healthz` answers but `/mcp` returns 401 with a correct token, check that the token in `.env` matches the one in the connector exactly — no trailing newline from a copy-paste. ## Connecting Claude 1. claude.ai → **Settings → Connectors → Add custom connector**. 2. URL: `https://mcp.example.org/mcp` 3. Under **Advanced settings**, add the bearer token as an authorization header. If your organisation has no header-auth field, the server also accepts the token as `X-Api-Key`. 4. Enable the connector in a conversation via **+ → Add connectors**. Ask *"which courses am I in?"* as a first check — that exercises auth, the Schulcloud token and the API in one call. ## Replacing the Schulcloud token The token lasts 30 days at most and can only come from a browser login (see docs/AUTH.md), so this is the monthly chore — but it no longer needs a restart or an `.env` edit: 1. Log in to Schulcloud in a **private window** and copy the `jwt` cookie's value (DevTools → Application → Cookies). 2. Either run `schulcloud token set` and paste it, or open `https://mcp.example.org/token` and paste it together with `MCP_AUTH_TOKEN`. 3. **Close the private window.** The server checks the token with Schulcloud first — right account, not expired, not logged out — then swaps it in, restarts the keepalive and saves it to the `state` volume (`STATE_DIR=/data/state`), so a restart keeps it. At startup the newer of the saved token and `TSC_JWT_COOKIE` wins, unless the two are for different accounts: changing `TSC_JWT_COOKIE` is how you switch accounts. `schulcloud token` shows the days left; from a week before expiry the log, `whoami` and the CLI warn about it. ## Running it locally instead For Claude Code or Claude Desktop on your own machine, skip all of the above and use stdio: ```json { "mcpServers": { "schulcloud": { "command": "node", "args": ["/path/to/schulcloud-mcp/dist/bin/stdio.js"], "env": { "TSC_URL": "https://schulcloud-thueringen.de", "TSC_JWT_COOKIE": "…" } } } } ``` `MCP_AUTH_TOKEN` is irrelevant in stdio mode — there is no network listener. ## Updating ```bash cd /opt/schulcloud-mcp && git pull docker compose up -d --build docker compose exec schulcloud-mcp node -e "1" # sanity npm run probe # re-verify the API assumptions ``` ## Operational notes - **Restart policy** is `unless-stopped`; the container comes back after a reboot. - **Sessions** are in-memory and dropped after 30 minutes idle. A restart invalidates them; Claude re-initializes transparently. - **Logs** are capped at 3 × 10 MB. The Authorization header is never logged. - **The container is read-only** with `cap_drop: ALL` and `no-new-privileges`, running as the unprivileged `node` user. The writable paths are the mirror volume at `/data/mirror`, which holds downloaded file bytes, and the state volume at `/data/state`, which holds a replaced Schulcloud token (mode 0600). Both belong in no backup that leaves the Pi unencrypted. - **The mirror grows.** It holds a copy of every course file under `MIRROR_MAX_BYTES` (64 MiB default). Larger files — videos, mostly — are indexed as metadata and proxied live on request instead. Budget a few GB. - **A re-crawl of unchanged content downloads nothing**, because Schulcloud file records are immutable, so the 6-hourly crawl costs a few hundred cheap GETs in the steady state. - **The Schulcloud session has a 2-hour sliding TTL**, so the server calls `refresh-session` every 30 minutes. Watch for `keepalive: session extended, 7200s` in the logs, or run `npm run keepalive-status` for a summary. - **Never leave a Schulportal tab open on the token you deployed.** It shares the session and its auto-logout will revoke it ~2h after login. Copy the cookie in a private window and close it — see docs/AUTH.md. - **Downtime longer than two hours lapses the session** and restarting does not recover it: a long power cut means handing the server a fresh token (`schulcloud token set`), no restart needed. - **Monthly chore**: replace the token before its 30-day hard expiry — see *Replacing the Schulcloud token*. `schulcloud token` and `npm run probe` report the clocks.