Files
Schulcloud-MCP/docs/PI.md
MechaCat02 ccbf3ad3e9 Document WebUntis
docs/API.md gains the findings: the endpoint and its required version
parameter, the one-time code and the two error codes worth naming, the Z that
means local time, a substitution being two periods, the unused exam module
that puts announced tests in the period notes, and a day without lessons that
is not a holiday. Those cost an afternoon of probing to learn and nothing
upstream states them.

docs/AUTH.md sets the key against the Schulcloud token it sits beside: no
password, nothing to keep alive, revocable on its own, and not read-only in
itself — which is why the allowlist exists. PI.md and DEPLOYMENT.md add the
four values, the container recreate a changed key needs, and the clock
requirement; the Pi's troubleshooting table gains both failure messages.

README and CLAUDE.md say what the server now is: Schulcloud for the material,
WebUntis for the day. Smoke is 89 checks with the index and a key, 87
live-only, 9 fewer without one.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-17 20:43:24 +02:00

19 KiB

Setting up on the Raspberry Pi

A step-by-step guide from a Pi with Docker to a working claude.ai connector. DEPLOYMENT.md explains why each piece is there; this page is the order to do it in.

The Pi never builds the server. It pulls the image published to registry.mc02.dev, built for arm64 and amd64 by npm run publish-image on a development machine (DEPLOYMENT.md).

claude.ai ─┐                    ┌──────────── Pi (home, always on) ─────────────┐
Claude Code├─HTTPS─▶ VPS ─TCP─▶ │ Caddy ─▶ schulcloud-mcp ─▶ schulcloud-thueringen.de
CLI ───────┘  (public IP,       │ (TLS)     └─ postgres (private network)        │
               your domain)     └────────────────────────────────────────────────┘

What you need

  • The Pi, always on. More than two hours offline ends the Schulcloud session, and only a new token from a browser revives it. A Pi 5 on 64-bit Raspberry Pi OS is plenty; put Docker's data on an SSD rather than the SD card if you can, since Postgres and the file mirror (about 1.3 GB on the current account) write to it.
  • Docker Engine with the Compose plugin, Compose 2.24 or later, on the Pi.
  • A login for registry.mc02.dev, where the image is published.
  • Caddy running in a container on the Pi, serving ports 80 and 443. This server joins its Docker network; it opens no port of its own.
  • The VPS, with a public IPv4 address, forwarding TCP ports 80 and 443 to the Pi (step 7).
  • A hostname in your domain — mcp.example.org below — whose A record points at the VPS.
  • Your Schulcloud login, for the first token, and a machine with the schulcloud CLI (npm link in a checkout; see CLI.md).

1. Prepare the Pi

sudo apt update && sudo apt full-upgrade -y
curl -fsSL https://get.docker.com | sh
sudo usermod -aG docker "$USER"     # then log out and back in
docker compose version               # v2.24 or later
timedatectl                          # "System clock synchronized: yes"
docker login registry.mc02.dev

The clock matters: token expiry and TLS certificates are both judged by it. The login is needed to pull, not only to push; Docker keeps it in ~/.docker/config.json.

2. Get the compose files

sudo mkdir -p /opt/schulcloud-mcp && sudo chown "$USER": /opt/schulcloud-mcp
git clone https://git.mc02.dev/fabi/Schulcloud-MCP.git /opt/schulcloud-mcp
cd /opt/schulcloud-mcp

Every command below runs in /opt/schulcloud-mcp. The checkout provides the compose files, .env.example and the Caddy snippet; its source code is not built here.

3. Configure

Find the Docker network your Caddy container is on:

docker ps --format '{{.Names}}' | grep -i caddy
docker inspect -f '{{range $k, $v := .NetworkSettings.Networks}}{{$k}} {{end}}' <caddy-container>

Create .env, readable by you alone, and add the Pi's settings with freshly generated secrets — replace <network> with the name you just found:

cp .env.example .env && chmod 600 .env
sed -i '/^MCP_AUTH_TOKEN=$/d; /^DATABASE_URL=/d' .env
cat >> .env <<EOF

# --- the Pi ---
COMPOSE_FILE=docker-compose.yml:deploy/docker-compose.pi.yml
CADDY_NETWORK=<network>
POSTGRES_PASSWORD=$(openssl rand -hex 24)
MCP_AUTH_TOKEN=$(openssl rand -hex 32)
MCP_CONNECTOR_TOKEN=$(openssl rand -hex 32)
INDEX_PERSONAL_FILES=true
# SCHULCLOUD_MCP_TAG=latest
EOF

If your school publishes its timetable in WebUntis, add those four values too — the timetable, its cancellations and substitutions are not in Schulcloud at all. They are in WebUntis under Profil → Freigaben → Untis Mobile → QR-Code:

cat >> .env <<'EOF'
UNTIS_SERVER=yourschool.webuntis.com
UNTIS_SCHOOL=yourschool
UNTIS_USER=your.username
UNTIS_SECRET=THEKEYFROMTHEQRDIALOG
EOF

What those lines do:

Setting
COMPOSE_FILE Makes every docker compose command here use deploy/docker-compose.pi.yml, which runs the registry image — removing the build section, so nothing can be built here — joins Caddy's network and wires up the database. It also keeps docker-compose.override.yml out — that one is for local development and would publish ports and switch the crawl timer off.
CADDY_NETWORK The network Caddy reaches this server on, by the name schulcloud-mcp.
POSTGRES_PASSWORD The bundled Postgres, which sits on a private network with this server only. Hex, so it needs no escaping inside the connection URL.
MCP_AUTH_TOKEN What Claude Code, the CLI and the /token page present.
MCP_CONNECTOR_TOKEN What claude.ai sends as a request header. It opens /mcp only, never /api, because claude.ai stores it.
INDEX_PERSONAL_FILES Also indexes your own files and handed-in work, including teachers' feedback. Optional.
UNTIS_* WebUntis, where the school keeps the timetable. All four or none; the key needs no password and does not expire. See AUTH.md. Optional.
SCHULCLOUD_MCP_TAG Which published image to run. Unset means latest; a commit id such as bac9130 pins it, so updates happen only when you change it. Optional.

Copy MCP_AUTH_TOKEN and MCP_CONNECTOR_TOKEN into your password manager now — you need both again in step 9, and neither is ever printed by the server:

grep -E '^(MCP_AUTH_TOKEN|MCP_CONNECTOR_TOKEN)=' .env

4. The first Schulcloud token

  1. Open a private window and log in to Schulcloud.
  2. DevTools (F12) → Application (Firefox: Storage) → Cookies → the cookie named jwt → copy its value.
  3. Put it into .env as TSC_JWT_COOKIE=<value>.
  4. Close the private window. Left open, it logs the token out about two hours after login (AUTH.md has the whole story).

This is the only time the token goes into .env. Later ones go in without a restart (step 11).

5. Start the server

docker compose pull                  # the published image, and Postgres
docker compose up -d
docker compose ps
docker compose logs -f schulcloud-mcp

Nothing is built on the Pi: pull fetches the arm64 variant of the image, and with the Pi file in place no docker compose command can fall back to a build.

Expect, within a few seconds:

[schulcloud-mcp] listening on 0.0.0.0:8080 — instance https://schulcloud-thueringen.de, auth enabled (plus connector token), token from environment, 29 day(s) left, keepalive every 30min, index every 6h
[schulcloud-mcp] keepalive: session extended, 7200s (120 min) of budget left
  • auth DISABLED means MCP_AUTH_TOKEN is empty. Stop and fix it.
  • keepalive: token rejected (401) means the token is already dead: get a fresh one (step 4) and hand it over with schulcloud token set once step 9 is done.

The index is empty, so the first full crawl starts on its own. It downloads every course file once — about 15 minutes and 1.3 GB on the current account — and the server answers normally meanwhile.

docker compose ps must show no published ports for either container.

6. Add the site to Caddy

Append deploy/Caddyfile.snippet to the Pi's Caddyfile, with your hostname in place of mcp.example.org, then validate and reload:

docker exec <caddy-container> caddy validate --config /etc/caddy/Caddyfile
docker exec <caddy-container> caddy reload --config /etc/caddy/Caddyfile

Keep the snippet's three easily-missed settings:

  • flush_interval -1, or claude.ai's connection hangs without an error.
  • The long timeouts, or a slow search is cut off.
  • The format filter in log, which keeps a secret path out of the access log if you ever use one (step 9).

Caddy gets its certificate once DNS and the forwarding work (step 7). Watch for it with docker logs -f <caddy-container> | grep -i certificate.

7. DNS and the VPS

DNS: an A record for mcp.example.org pointing at the VPS's public IPv4. Publish no AAAA record unless the VPS forwards IPv6 as well.

The forwarding must pass TCP through, untouched. TLS has to end at Caddy on the Pi. A VPS that terminates TLS itself, or proxies HTTP, sees every request — the claude.ai token in its header included — and may log it. Both ports are needed: 80 for the certificate challenge, 443 for everything else.

If the VPS already forwards to the Pi, check how. On the VPS:

sudo ss -ltnp '( sport = :443 )'

No listening process is the good answer: the kernel forwards the packets, as in the example below. An nginx stream block or HAProxy in mode tcp is also fine. An nginx http server, a Caddy, or HAProxy in mode http on the VPS is not.

Example: WireGuard and nftables

Skip this if your forwarding already passes TCP through. Otherwise, a minimal tunnel with the VPS as 10.8.0.1 and the Pi as 10.8.0.2. Create keys on each machine with umask 077; wg genkey | tee private.key | wg pubkey > public.key.

On the VPS, /etc/wireguard/wg0.conf:

[Interface]
Address = 10.8.0.1/24
ListenPort = 51820
PrivateKey = <vps private key>

[Peer]
PublicKey = <pi public key>
AllowedIPs = 10.8.0.2/32

On the Pi, /etc/wireguard/wg0.conf:

[Interface]
Address = 10.8.0.2/24
PrivateKey = <pi private key>

[Peer]
PublicKey = <vps public key>
Endpoint = <vps public ip>:51820
AllowedIPs = 10.8.0.1/32
PersistentKeepalive = 25

Bring the tunnel up on both (sudo apt install wireguard first), and keep it up across reboots:

sudo systemctl enable --now wg-quick@wg0
ping -c 3 10.8.0.1                  # from the Pi

On the VPS, turn on forwarding and send ports 80 and 443 into the tunnel. Replace eth0 with the VPS's public interface (ip route get 1.1.1.1 names it):

echo 'net.ipv4.ip_forward = 1' | sudo tee /etc/sysctl.d/99-forward.conf
sudo sysctl --system
# /etc/nftables.conf on the VPS (merge into what is there)
table ip schulcloud_forward {
	chain prerouting {
		type nat hook prerouting priority dstnat; policy accept;
		iifname "eth0" tcp dport { 80, 443 } dnat to 10.8.0.2
	}
	chain postrouting {
		type nat hook postrouting priority srcnat; policy accept;
		oifname "wg0" ip daddr 10.8.0.2 tcp dport { 80, 443 } masquerade
	}
}
sudo nft -c -f /etc/nftables.conf && sudo systemctl enable --now nftables

If the VPS's forward chain has policy drop, also accept ct state established,related and new TCP 80/443 from eth0 to wg0. Its firewall needs 80/tcp, 443/tcp and 51820/udp open, plus SSH. With the masquerade, Caddy's logs show the VPS's tunnel address as the client; nothing here relies on client addresses.

Check from the VPS that the Pi's Caddy answers through the tunnel:

curl -sI http://10.8.0.2/ -H 'Host: mcp.example.org' | head -1      # a redirect to https

8. Check it from outside

From any machine that is not the Pi:

curl -s https://mcp.example.org/healthz
# {"status":"ok","sessions":0,"index":"on"}

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

curl -s -o /dev/null -w '%{http_code}\n' -X POST https://mcp.example.org/$(openssl rand -hex 32)/mcp \
  -H 'content-type: application/json' -d '{}'
# 404   ← a wrong path secret, answered like any unknown path

Then confirm that TLS really ends on the Pi: the certificate the world sees is the one Caddy there obtained.

echo | openssl s_client -connect mcp.example.org:443 -servername mcp.example.org 2>/dev/null \
  | openssl x509 -noout -issuer -enddate                     # from outside
docker logs <caddy-container> 2>&1 | grep -i 'certificate obtained' | tail -1   # on the Pi

9. Connect Claude and the CLI

CLI, on your laptop:

schulcloud login --server https://mcp.example.org --token <MCP_AUTH_TOKEN>
schulcloud token      # expires … (29 day(s) left); session alive, 120 min budget; from TSC_JWT_COOKIE
schulcloud status     # after the first crawl: generation 1 — crawled … min ago

Claude Code, replacing the registration that points at the laptop:

claude mcp remove --scope user schulcloud
claude mcp add --transport http --scope user schulcloud https://mcp.example.org/mcp \
  --header "Authorization: Bearer <MCP_AUTH_TOKEN>"
claude mcp list       # schulcloud: https://mcp.example.org/mcp (HTTP) - ✔ Connected

claude.ai:

  1. Customize → Connectors → Add custom connector. Name: Schulcloud. URL: https://mcp.example.org/mcp.
  2. The next step shows No sign-in as detected — keep it — and a Request headers section. Add one: name authorization, value Bearer <MCP_CONNECTOR_TOKEN>, with the space. Add the connector.
  3. In a chat: + → Connectors → switch Schulcloud on, and ask "Welche Kurse habe ich?"

claude.ai stores the header and never shows it again; to change it, remove the connector and add it again.

Without request headers — say, for a client that cannot send them — use a secret path instead:

echo "MCP_PATH_SECRET=$(openssl rand -hex 32)" >> .env
docker compose up -d --force-recreate schulcloud-mcp

The URL is then https://mcp.example.org/<MCP_PATH_SECRET>/mcp, with no header. It is the credential itself, so keep it out of screenshots and notes; DEPLOYMENT.md says what that trades away.

Retire the laptop's container once the Pi answers — in the laptop checkout, docker compose down keeps its index and mirror volumes. Its session is separate and simply lapses.

10. Verify the first crawl

docker compose logs schulcloud-mcp | grep 'scheduled crawl'
# [schulcloud-mcp] scheduled crawl: generation 1, 1030 files, … newly extracted, …s

A second crawl runs every six hours and downloads only what is new.

11. The monthly token

The token lasts 30 days. From a week before, the log, whoami and schulcloud token warn. Replacing it takes a minute and no restart:

  1. Private window → log in → copy the jwt cookie (as in step 4).
  2. schulcloud token set and paste it — or open https://mcp.example.org/token and paste it there with MCP_AUTH_TOKEN.
  3. Close the private window.

The server checks the token with Schulcloud before using it, restarts the keepalive, and saves it in the state volume, where it outlives restarts and takes precedence over the older one in .env.

The same steps revive a session that lapsed — after a power cut of more than two hours, say.

Updating

A new version is published first, from a development machine: npm run publish-image (DEPLOYMENT.md). Then, on the Pi:

cd /opt/schulcloud-mcp
git pull                             # compose files and docs
docker compose pull                  # the newly published image
docker compose up -d
docker compose logs --tail 20 schulcloud-mcp

COMPOSE_FILE in .env keeps applying the Pi settings. Recreating the container keeps the database, the mirror and a replaced token, all of which live in volumes.

With SCHULCLOUD_MCP_TAG pinned, set it to the new commit id before pulling. Going back works the same way: set the previous commit id, then pull and up -d.

Backups

What Needed?
.env Yes — it holds every secret. Only ever back it up encrypted.
Postgres Optional: a crawl rebuilds it. docker compose exec postgres pg_dump -U schulcloud schulcloud | gzip > index.sql.gz
schulcloud-mcp_mirror No — re-downloaded by the next crawl.
schulcloud-mcp_state No — a replaced token, expiring within 30 days anyway.

Troubleshooting

Symptom Likely cause Fix
keepalive: token rejected (401) The session ended: the Pi was off for more than two hours, a Schulportal tab was left open, or 30 days passed Step 11
401 about two hours after pasting a token A Schulportal tab still open on that login Close it, then step 11
claude.ai cannot add the connector DNS, forwarding or certificate not in place; a missing or mistyped request header (401); or, with a secret path, a wrong secret (404) Step 8's checks, in order, then the header
The connector token works on /mcp but not with the CLI By design: it is refused on /api The CLI uses MCP_AUTH_TOKEN
claude.ai connects, then tools hang flush_interval -1 missing from the Caddy site Step 6
/mcp answers 401 with the right token Whitespace copied along with the token Re-copy it
Caddy never obtains a certificate Port 80 not forwarded, or DNS not yet pointing at the VPS Step 7
network … declared as external, but could not be found Wrong CADDY_NETWORK Step 3
required variable … is missing a value A line missing from .env Step 3
unauthorized or pull access denied from docker compose pull Not logged in to the registry on the Pi docker login registry.mc02.dev
no matching manifest for linux/arm64 The image was published for amd64 only Publish again with npm run publish-image, which builds both
Compose rejects !reset in deploy/docker-compose.pi.yml Compose older than 2.24 Update Docker (step 1)
WebUntis rejected the server's key from a untis_* tool The key was regenerated in WebUntis, or UNTIS_USER does not match it Copy both again from Profil → Freigaben → Untis Mobile, then docker compose up -d --force-recreate schulcloud-mcp
the server's clock is too far off from a untis_* tool The Pi's clock has drifted; the Untis code is time-based timedatectl status, then fix NTP
EACCES for /data/state or /data/mirror in the logs A volume created by an old image, owned by root docker compose down, docker volume rm schulcloud-mcp_state (or _mirror), docker compose up -d

Security checklist

  • .env is mode 600 and in no unencrypted backup.
  • docker compose ps shows no published ports for schulcloud-mcp or schulcloud-mcp-db.
  • The registry login in ~/.docker/config.json is only base64-encoded. Keep the Pi user's home private, and use an account that may only pull if your registry can issue one.
  • The VPS forwards raw TCP and opens only 80, 443, 51820/udp and SSH.
  • With a secret path set, it stays out of Caddy's access log — this prints a count, never the secret:
    docker exec <caddy-container> grep -c "$(grep '^MCP_PATH_SECRET=' .env | cut -d= -f2)" /var/log/caddy/schulcloud-mcp.log
    # 0
    
  • If claude.ai's token may have leaked: set a new MCP_CONNECTOR_TOKEN, run docker compose up -d --force-recreate schulcloud-mcp, and re-add the connector with the new header. A leaked secret path is replaced the same way. MCP_AUTH_TOKEN stays valid either way.