# Continuous integration Last verified: 2026-08-24 ## Current topology WeatherTool uses Gitea Actions for continuous integration: ```text bot/WeatherTool repository on gitea.packet.garden → repository-scoped weathertool-ci-rocky-01 runner on the coding PC → dedicated Docker-in-Docker daemon → disposable per-job containers (backend: hseeberger/scala-sbt, frontend: node:20-bookworm) ``` Gitea does not execute workflow commands itself. The runner polls Gitea for jobs and executes them. The runner is registered only to `bot/WeatherTool`; it is not a user-, organization-, or instance-wide runner. The runner host is the Rocky Linux coding PC — the same machine already used for all compile/build/test/staging work. This is a second, independent runner instance on that host: HOP already runs its own Forgejo runner there (`hop-forgejo-runner-*`, registered to a different Forgejo instance's `bot/hop` repo). The two don't conflict — each is a separate long-polling client registered to a different server with its own token, own Docker network, and own Docker-in-Docker daemon; they only share host CPU/RAM, which is a non-issue for occasional CI runs. ## Isolation boundary Same pattern as HOP's Forgejo runner: the runner uses a dedicated Docker-in-Docker daemon rather than exposing the coding PC's normal Docker socket to workflow containers. The nested daemon: - runs in its own privileged container because a nested Docker daemon requires that capability; - exposes no port on the host or LAN; - is reachable only through the runner's private Compose network; and - stores its images and state in the `weathertool-gitea-runner_dind_data` volume. This prevents ordinary WeatherTool workflow jobs from enumerating or mutating the coding PC's normal development containers (including the Rocky staging stack itself). ## Host-local runner files The active runner is operated from: ```text /home/sandbox/.local/share/weathertool-gitea-runner/ compose.yml runner-token ``` The directory is mode `0700`. `runner-token` is mode `0600`. It is deliberately outside the WeatherTool Git repository and was written directly to disk from an interactive prompt — it was never printed, pasted into chat, or copied into project documentation. Normal operator commands are run from the directory above: ```bash docker compose up -d docker compose ps docker compose logs --tail=100 runner docker compose pull ``` The expected steady state is: - `docker-in-docker`: `Up (healthy)`; - `runner`: `Up`; and - `weathertool-ci-rocky-01`: `Idle` in Gitea when no job is queued. ## Triggering CI CI only runs on a push (or PR) reaching the `gitea` remote — pushing to `rocky` alone does not trigger it, since Gitea has no visibility into that private bare repo. To avoid needing two separate `git push` commands (and forgetting one), a combined `all` remote pushes to both `rocky` and `gitea` in one command: ```bash git push all codex/staging-baseline ``` `all` deliberately does not include `origin` (the GitHub `guntisdev/WeatherTool` repo) — see `DEVELOPMENT_AND_STAGING.md`'s commit workflow section for why. `Idle` is healthy. It means the runner is authenticated and polling for work. The runner is available only while the coding PC, Docker, and these containers are running. `compose.yml` sets `HOME: /data` on the runner container. Without it, the first real run failed every job, both times it was tried, with `Unable to clone https://github.com/actions/checkout ...: mkdir /.cache: permission denied` — this was initially misdiagnosed (both in the runner's own startup log, which only calls it "cache server disabled", and in this doc's first draft) as merely disabling the optional `actions/cache` action type. It actually blocks resolving *any* remote action at all: with uid 1000 and no writable `$HOME`, the runner has nowhere to git-clone an action's source into before running it, and `actions/checkout` is exactly that. `HOME=/data` (the already-writable bind-mounted data directory) fixed it. ## WeatherTool workflow The version-controlled workflow is: ```text .gitea/workflows/ci.yml ``` It runs for: - pushes to `codex/staging-baseline`; - pull requests targeting `codex/staging-baseline`; and - manual `workflow_dispatch` requests. Two independent jobs, each with its own container image rather than one shared runner-label image with ad-hoc installs — this reuses images already proven for this project rather than bootstrapping a second language runtime into a single shared container: - **`backend`** (`hseeberger/scala-sbt:17.0.2_1.6.2_2.13.8`, the same image used all session for local Rocky builds): installs a real Node 20 via NodeSource's setup script (see below for why), checkout, `sbt -batch test`. - **`frontend`** (`node:20-bookworm`): checkout, `npm ci`, `npm run typecheck`, `npm run build`, `npm audit`, `npm audit --omit=dev` — the same five checks already documented as the manual Rocky verification routine in `DEVELOPMENT_AND_STAGING.md`. Verified before writing the workflow that `sbt test` compiles and passes with no `.env` file present at all (via a `git archive HEAD` dry run into a clean scratch directory) — matching exactly what a checkout-only CI job actually has, since real credentials must never reach CI. The sbt-dotenv plugin logs a graceful warning and continues; nothing in the current test suite (`FileNameServiceSpec`; `ParserSpec` has no live assertions) touches `sys.env` or a live database. `actions/checkout` is a JavaScript action — it needs a Node runtime inside the job container to execute at all, which `hseeberger/scala-sbt` doesn't have. `frontend`'s image already has one, so it passed as soon as the `HOME` fix landed. `backend` needed an explicit install step first (`apt-get install nodejs` alone wasn't enough either: `hseeberger/scala-sbt` is Debian **bullseye**-based, whose default apt `nodejs` package is a stale Node 12, too old to parse `actions/checkout@v4`'s modern JS — `SyntaxError: Unexpected token '{'` on a class static block. NodeSource's `setup_20.x` script installs an actual current Node 20 regardless of the distro's packaged version). None of the three bugs above were caught by writing the workflow carefully or by the pre-write `sbt test` dry run — all three only surfaced by actually running it and reading the real failure in the Gitea Actions UI, once per bug, in order: the `HOME`/cache fix, then the missing-Node fix, then the wrong-Node-version fix. The first four runs (`ci.yml #1`–`#4`) all failed. The first complete green run was `ci.yml #5`, commit `2c78ae8`, 2m24s, verified 2026-08-24. ## Current boundary This workflow is CI only. A green result proves the committed source compiles, passes its (currently minimal) test suite, typechecks, builds, and has no known frontend dependency vulnerabilities. It does not deploy to Rocky staging or the VPS, publish an image, or access any staging/production secret — the runner's job containers never see `.env`, `.env.staging`, or any real provider credential. Continuous delivery, and expanding actual test coverage (see the roadmap's Phase 2), remain separate, not yet started work.