9.2 KiB
Forgejo on the Swarm cluster
Runs as deploy/forgejo/docker-stack.yml — the only Swarm-scheduled workload
this cluster carries (the Thermograph app itself stays on the
Terraform-managed docker compose deploys; see terraform/README.md).
Pinned to the beta node (old VPS) via the role=forge label from
deploy/swarm/label-forge-node.sh.
The Actions runner is deliberately not part of this stack — it runs on
the desktop as a plain systemd service (register-lan-runner.sh below),
per thermograph-docs/runbooks/implementation-handoff.md Track B step 5. That's the
canonical placement; an earlier revision of this stack ran the runner as a
Swarm-scheduled Docker-in-Docker sidecar pinned to beta, which is gone now.
Prerequisites
- All three nodes have joined the swarm (
deploy/swarm/) and beta is labeledrole=forge. docker node ls(from the manager) shows all threeReady.
One-time setup: Swarm secret
One secret the stack expects to already exist (a Swarm secret, not a file —
external: true in the stack file, so docker stack deploy never creates or
sees the value, only references it):
# A strong random password for Forgejo's own Postgres (NOT related to
# Thermograph's app database — entirely separate instance/network).
openssl rand -base64 32 | docker secret create forgejo_db_password -
Deploy / update
docker stack deploy -c deploy/forgejo/docker-stack.yml forgejo
Re-running is safe — Swarm only touches services whose spec actually changed.
Do this before the DNS + Caddy step below — Caddy's reverse_proxy target
(127.0.0.1:3080) needs the forgejo service actually listening first, or
its first health check just fails harmlessly until it is.
This stack has no auto-deploy trigger — nothing in .forgejo/workflows/
redeploys it on push. A change to docker-stack.yml only takes effect once
someone re-runs docker stack deploy by hand on the manager (prod).
db/forgejo both carry resources.limits (defaults: db 1 CPU/1g, forgejo 2
CPU/2g — several times observed steady-state usage), overridable with
FORGEJO_DB_CPUS/FORGEJO_DB_MEMORY/FORGEJO_CPUS/FORGEJO_MEMORY env vars
before docker stack deploy, same convention as the app stack.
DNS + TLS: reusing beta's existing Caddy, not a second reverse proxy
Forgejo is pinned to beta (role=forge) — but beta is also today's live
thermograph.org host, and its Caddy already owns ports 80/443
(/etc/caddy/Caddyfile on that box). A second ingress (Traefik) trying to
bind the same ports would collide with it. So there's no Traefik in this
stack: forgejo's web port publishes to 127.0.0.1:3080 only (host-local),
and beta's existing Caddy gets one more site block reverse-proxying to it —
same pattern as its thermograph.org block, same automatic-HTTPS.
- Point the Forgejo domain (default
git.thermograph.org; override withFORGEJO_DOMAIN=...beforedocker stack deploy) at beta's public IP — that's where the task actually runs, not prod's or the desktop's. - Append
deploy/forgejo/caddy-git.confto beta's/etc/caddy/Caddyfile, adjusting the domain if you didn't use the default, thensystemctl reload caddy. - That file also resolves the registry-exposure hazard (#15 in
thermograph-docs/runbooks/hop1-forgejo-registry-cutover.md):/v2/*(the registry API) is blocked to everything except the WireGuard mesh CIDR (10.10.0.0/24); the git/web UI stays public. CI runners and Swarm nodes reach the registry over the mesh, not the public internet — see "Registry access from mesh clients" below.
Registry access from mesh clients
Any node that needs docker login/push/pull against the registry (the
desktop's CI runner building/pushing images, later any Swarm node pulling
them) must reach git.thermograph.org over the WireGuard tunnel, not
beta's public IP — otherwise Caddy's /v2/* block above refuses the
connection. Public DNS resolves the domain to beta's public IP, so add a
/etc/hosts override on each such node pinning it to beta's WireGuard
address instead:
echo "10.10.0.2 git.thermograph.org" | sudo tee -a /etc/hosts
(10.10.0.2 is beta's WG address per deploy/swarm/README.md's peer
numbering — adjust if you assigned it differently.) The git/web UI keeps
working normally for everyone else since only /v2/* is restricted.
Register the Actions runner (on the desktop, not through Swarm)
Once Forgejo answers at its domain:
# On the desktop:
# Forgejo web UI -> Site Administration -> Actions -> Runners -> Create new Runner
# (or, for a repo-scoped runner: <repo> -> Settings -> Actions -> Runners)
# copy the registration token, then:
bash deploy/forgejo/register-lan-runner.sh https://<forgejo-domain> <token>
See that script's header for exactly what it replaces (the pre-Forgejo GitHub self-hosted runner on this same machine) and why it registers with two labels where there used to be two separate runners.
config.yaml's runner.capacity is raised from the tool's default of 1 to 8
(override with CAPACITY=) — a single PR push fires pr-build,
secrets-guard, and shell-lint simultaneously (3 independent workflows,
no needs: between them), so capacity 1 serializes work that could run in
parallel, and even capacity 3 (an earlier, undocumented hand-tune) leaves
build-backend/build-frontend/validate-observability queued behind
those three before they get a slot. The desktop has 16 cores / 34GB free
today; 8 concurrent jobs is comfortable headroom without starving LAN dev's
own compose stack.
Adding more runner capacity should mean raising this number, or adding a
second runner on the desktop itself — not putting a runner on prod or
beta. container.docker_host: automount gives job containers the host's
Docker socket; on prod or beta that would mean any CI job has root-equivalent
access to whatever else is running there (the live app stack, or Forgejo
itself). An earlier revision of this stack actually did run the runner as a
Swarm-hosted container on beta and was deliberately reverted to the desktop
for this reason — see the note at the top of docker-stack.yml.
Custom CI job image (ci-runner/)
ci-runner/Dockerfile still bases on node:20-bookworm — Node is a hard
requirement, not leftover: Forgejo's runner executes actions/checkout@v4
(used by every workflow) as node dist/index.js inside the job container,
regardless of whether the workflow itself uses npm/node. (v1 of this image
tried a Node-free Debian-slim base and broke every job's checkout step —
node: executable file not found — within a minute of going live; reverted
immediately.) What it actually fixes: every docker-labeled build-push job
currently re-installs the Docker CLI on each run (apt-get install docker.io), which pulls in the classic builder rather than BuildKit (the
classic builder mishandles COPY --chown=<name> group resolution — a real
bug hit during the frontend Go rewrite). ci-runner adds docker-ce-cli +
docker-buildx-plugin (BuildKit) on top of the same Node base, plus
git/python3/python3-yaml for the other jobs that need them
(shell-lint, observability-validate).
Current tag: git.thermograph.org/emi/thermograph/ci-runner:v2 (v1 is
broken — do not register any runner against it). Rebuild/push (requires a PAT
with write:package scope — the embedded git-remote token lacks it, same
requirement documented in build-push.yml):
docker build -t git.thermograph.org/emi/thermograph/ci-runner:vN deploy/forgejo/ci-runner
docker push git.thermograph.org/emi/thermograph/ci-runner:vN
register-lan-runner.sh's LABELS default points at the current tag, so
fresh registrations pick it up automatically. The live runner is cut over by
editing the labels array in ~/forgejo-runner/.runner on the desktop (same
runner id/token, no re-registration needed) and restarting the service —
verify a real job runs green under the new image before relying on it,
same way v1's break was caught. Only after that verification should the
now-redundant apt-get install docker.io / python3-yaml steps be removed
from the workflows that had them — removing them first would break every job
still running on the stock node:20-bookworm image.
Why Postgres here and not the Thermograph app's TimescaleDB
Separate instance, separate network (forgejo_net, not the app's compose
network), separate volume. Forgejo is a distinct product with its own schema
and its own backup/restore lifecycle — sharing a database with the app would
couple two things that should be able to fail, migrate, and restore
independently.
Verifying
docker service ls # forgejo_db, forgejo_forgejo both Running, 1/1
curl -I https://git.thermograph.org/ # 200, valid cert (Caddy's, not a new one)
curl -I https://git.thermograph.org/v2/ # 403 from anywhere off the WireGuard mesh
# On the desktop, after registering the runner:
systemctl --user status forgejo-runner # active, both labels registered
Rollback / removal
docker stack rm forgejo
# volumes (forgejo_data, forgejo_db, ...) survive a stack rm — remove them
# explicitly only if you actually want to destroy the Forgejo instance's data.