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FabledCurator/ci-requirements.md
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ci: a weekly base-image refresh on the channel tags (milestone 326 step 4)
Skip-if-exists is keyed on our own source, so an artifact whose source
stops moving stops picking up base-image updates. `agent/` last changed
2026-07-17; every push since has correctly declined to rebuild it, which
also means it will serve that day's nvidia/cuda layers indefinitely.

A `schedule:` trigger, Sunday 06:00 UTC, away from CI-runner's Monday
security sweep so the two are never diagnosing each other.

#3154's blocking open question is dissolved rather than answered. It was
written when the identity was a `r-<revision>` TAG, and asked how the
next ordinary push could avoid repointing :latest back off the refresh.
Milestone 318 replaced that tag with a LABEL, and #3183 made the repoint
step exclude its source tag so the label stays readable. Excluding the
source is what also keeps a refresh from being undone: on the next main
push the reuse check hits, :latest is not rewritten, and the new :c-<sha>
is written FROM the refreshed :latest. To be verified by digest, not by
this argument.

Four decisions, each commented where it lives:

* It builds `main`, not the branch that triggered it. Forgejo registers a
  cron from the default branch — `dev` here — so a scheduled run arrives
  with github.ref on dev, and a refresh of :dev would be refreshing the
  one channel that is rebuilt constantly anyway. The ref is decided once
  in a top-level `env: BUILD_REF` that all four checkouts take. Deriving
  it per job would let the halves disagree: sign-extension would derive
  dev's extension version while build-web bundled main's, and the release
  download would 404 on a version that exists perfectly well.

* It publishes only the channel tag. :c-<sha> for main's HEAD already
  names the bytes that commit built; re-pushing it over refreshed layers
  would break the one tag rule 145 makes immutable, and it is the
  rollback unit — so the breakage would surface on the day somebody
  needed it. The repoint step needs no schedule case: the tag list is the
  channel tag alone, SOURCE is the only entry, it is excluded as always,
  and the step correctly does nothing.

* It bypasses reuse by construction, since it rebuilds the same source
  and fc.revision always matches. Checked in the reuse step beside
  force_build, so one decision still drives both the build and the
  repoint.

* `pull: true`, on the scheduled path only, is the actual mechanism. A
  moved base tag changes the FROM layer's cache key and everything above
  it rebuilds; an unmoved one is satisfied by the registry cache and the
  refresh is a ~13s no-op that republishes nothing. That no-op is the
  point — :latest should change when there is something new in it, not
  every Sunday. The known lag, left deliberately: an apt package update
  while the base tag stands still is not caught, and closing it needs
  no-cache: true, which buys weekly churn for it.
2026-08-29 22:53:48 -04:00

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# CI Requirements — FabledCurator
> Spec: https://git.fabledsword.com/bvandeusen/CI-runner/src/branch/main/docs/process.md
## Runtime image
git.fabledsword.com/bvandeusen/ci-python:3.14
## Image deps used
- python 3.14
- ruff (analyzer for `backend/`, `tests/`, `alembic/`, `agent/`, `scripts/`)
- node (frontend job: `npm install` + vitest + vite build)
- docker CLI + buildx (`.forgejo/workflows/build.yml`: build-web, build-ml, build-agent — Fabled-Git registry push, and `imagetools inspect`/`create` for the reuse path)
## Secondary runtime image
node:24-bookworm-slim — `.forgejo/workflows/extension.yml` only.
`.forgejo/workflows/release.yml` runs on `ci-python:3.14` like everything else
and installs nothing: it needs git and stdlib python, and builds no image.
The extension lane is the one job that does NOT run on `ci-python:3.14`: it
needs a current Node for `web-ext` and vitest and nothing Python at all. Kept
on the upstream slim image rather than adding a Node toolchain to `ci-python`,
per `docs/process.md`'s "add deps to the image when used by >1 project".
## Per-job tool installs
- `pip install -r requirements.txt pytest pytest-asyncio` — in `backend-lint-and-test` and `integration` jobs
- `npm install --no-audit --no-fund` — in `frontend-build` job
- `npm install --no-audit --no-fund` — in `extension.yml`'s `lint` job (web-ext + vitest)
- `unzip` — in `extension.yml`'s "Verify XPI contents" step, installed via apt
only when absent (`node:24-bookworm-slim` may or may not carry it). Debian
package, ~2s. Not worth baking into a shared image for a single consumer, per
`docs/process.md`'s ">1 project" rule.
## Notes
- Integration wall time ~3 min, dominated by pgvector container start + the
`pip install` step (~30-45s on cold cache) + alembic + 300+ integration tests.
- The `pip install` in two jobs is intentional and per `docs/process.md`'s
"add deps to image when used by >1 project" rule: FC alone is one Python
project, so the deps live in `requirements.txt` and install per-job.
Reconsider when a second Fabled-family Python backend lands.
- Integration uses Fabled-Git Actions `services:` + socket-discovered bridge IPs
because `act_runner` (swarm-runner v0.6+) puts services on the default
bridge with no embedded DNS. The pattern is documented in the rulebook's
`fabled-git.md` "CI philosophy" section and FC's `ci.yml` is the canonical
example.
- No `package-lock.json` is tracked yet (FC's `feedback_no_local_runs`
memory bans `npm install` locally). Using `npm install` rather than
`npm ci` until a lockfile lands.
- No `imagemagick` / `pandoc` per-job installs needed.
- `extension/`'s vitest specs load `lib/*.js` by evaluating the real file as a
classic script (`test/helpers/loadLib.js`) rather than adding `module.exports`
shims to production code — the libs ship as `background.scripts`, not ES
modules, so the specs exercise exactly the bytes packaged into the XPI.
- **`extension/scripts/packaging.sh` is the single definition of what ships
inside the XPI.** Three consumers read from it rather than keeping their own
copy: web-ext's `--ignore-files` (`extension/package.json`), the `git log`
pathspec inside the script's own version derivation, and `scripts/artifacts.sh`,
which appends the extension's set to web's because the web image bundles the
signed XPI. Hand-kept copies of that one fact is what allowed issue #2397, so
`extension/test/version.spec.js` asserts no workflow has reintroduced a
literal `:(exclude)extension/…`.
- **Packaged and version-relevant are two different sets** (#3156). `scripts/`
is excluded from the XPI and is NOT excluded from the version derivation,
because `packaging.sh` decides the version string stamped into the packaged
`manifest.json`. The membership test is *"can changing this file change the
published bytes?"*, not *"is this file copied in?"* — which is why the script
keeps two lists rather than one.
- **The shipped extension version is derived, not committed.** It is the commit
TIME of the newest packaged-extension change, rendered `YYYY.M.D.HHMM` UTC
(family rules 148/149 — never a commit count, which orders by branch rather
than by recency). `build.yml`'s `sign-extension` computes it and stamps it
into `extension/manifest.json` + `package.json` in the working tree before
signing; the stamp is never committed. The version in the repo is **wholly
inert** — since milestone 318 step 8 there is no hand-set MAJOR.MINOR either.
- **The extension is the one artifact that does not zero-pad, and that is not a
drift** (#3138). Mozilla's grammar for AMO is
`^(0|[1-9][0-9]{0,8})([.](0|[1-9][0-9]{0,8})){0,3}$` — a segment is the single
digit `0` or starts 1-9, and there are at most four. `2026.08.29.0201` is
rejected; `2026.8.29.201` is the same value one character narrower per
segment, and rule 148 defines comparison as numeric per segment, so nothing is
reordered. `ci.yml`'s `extension-version` lane asserts the derived string
against that exact regex, plus a `YYYY.M.D.HHMM` shape check that would catch
a regression to the pre-318 `1.0.<minutes>` — which AMO would accept and which
orders below everything already signed. Checking here is the whole point: AMO
409s on re-signing, so a version it rejects is burned and cannot be reused.
`scripts/artifacts.sh version extension` **delegates** to `packaging.sh` so
the two cannot answer differently.
- Every job that derives anything checks out with `fetch-depth: 0` — all four
`build.yml` jobs, `ci.yml`'s `extension-version` and `backend-lint-and-test`
(for `tests/test_artifact_paths.py` and `test_artifact_identity.py`), and
`release.yml`, which additionally walks the tag graph. A depth-1 clone sees
one commit and derives a wrong, too-low value **rather than failing**, so the
full-history checkout is load-bearing rather than incidental.
- **`scripts/artifacts.sh` is the same shape one level up: one definition per
artifact of what it is built from, and the two values derived from it.**
`revision` (12 hex of the newest commit touching that set) and `version`
(`YYYY.MM.DD.HHMM` UTC, rule 148). Four artifacts, four independent answers,
so a push touching only `agent/` leaves web and ml alone.
`tests/test_artifact_paths.py` reads each Dockerfile and asserts every COPY
source is covered, so adding a COPY without updating the script fails CI.
- **A file that DECIDES an artifact's identity belongs in its set even though it
is copied into nothing** — `packaging.sh` for the extension and web (#3156),
and `artifacts.sh` itself for web (#3202), which decides the `FC_VERSION`
baked into that image. Only web needs the second entry: every artifact stamps
a revision, but a revision has a backstop (a changed derivation stops matching
the published label and forces a rebuild) and a version has none, because
nothing compares it to anything. `tests/test_artifact_paths.py`'s `DERIVERS`
table is the guard.
- **Builds are skipped when the content is already published.** Each image
carries its revision as an `fc.revision` LABEL, and `build.yml` reads that
label back off the moving channel tag (`imagetools inspect --format`). Equal
to the derived revision means the bytes are already published, so the job
repoints the remaining tags at the existing manifest instead of rebuilding.
Two things this depends on: an inspect that errors for ANY reason reads as a
MISS so no needed build is ever skipped, and the repoint must EXCLUDE the
source tag — `imagetools create` wraps its source in a manifest index, and
config labels do not resolve through an index, so writing the channel tag
from itself destroys the label the next run reads (#3183).
- **The build pushes exactly ONE tag — the channel's — and every other tag is
written registry-side afterwards** (#3190). buildx on this runner pushes the
first tag to the registry and then re-pushes the rest through the docker
driver, out of a local image store that a registry-direct build never fills;
it fails intermittently with `tag does not exist`. On `dev` that only reddens
a job, but on `main` it silently skips `:c-<sha>` while `:latest` publishes
fine — a missing rollback tag has no consumer that fails, so nothing but the
red job would notice until somebody needs to roll back. `imagetools create`
has no local store to be absent from, and it is the code the reuse path
already ran, so both paths now share one proven route. The cost: `:c-<sha>`
is an index rather than a plain image, so `fc.revision` does not resolve
through it — nothing reads it there, and the index names the same manifest.
- **The image builds run on a `docker-container` buildx builder, and
`provenance`/`sbom` are explicitly OFF** (milestone 326 step 1). The builder
is what makes a registry layer cache possible at all — the default `docker`
driver cannot export one (#3114) — and it is #3190's leading suspect, since
it is the driver that resolves image metadata against a local store a
registry-direct push never fills. **The attestation flags are load-bearing,
not tidiness:** on the container driver `build-push-action@v5` defaults
`provenance` to true when pushing, an attestation manifest makes the pushed
tag a manifest INDEX, and config labels do not resolve through an index — so
leaving them on would make every push read `fc.revision=<none>`, miss, and
rebuild forever with every lane green. Same failure as #3183, different door.
These jobs run inside a container against a mounted docker socket, so the
buildkit container is a sibling rather than a child.
- **All three images import and export a registry layer cache**
(`<image>:buildcache`, `mode=max`). This is not an optimisation bolted onto
the driver change — it is the other half of it. The `docker-container`
driver gets a fresh buildkit instance per job and therefore has **no local
layer store at all**, where the old `docker` driver at least reused whatever
the runner's dockerd happened to hold. Measured on run 4896, the first builds
after the driver moved: web 3m44s (was 2m23s), ml 3m49s (was 3m20s), agent
11m12s (was 9m26s) — every one slower. A `:buildcache` tag is read by every
build that runs, is one moving ref per image, holds cache blobs rather than a
shippable artifact, and is overwritten in place, so it is not a return of the
per-version tags milestone 318 withdrew (#3114).
- **`build.yml` accepts a `workflow_dispatch` with `force_build`**, which
bypasses the reuse check for all three images. It exists because
skip-if-exists makes its own build path untestable: `agent/` has not changed
since 2026-07-17, so the agent build has not run in six weeks and cannot be
exercised on demand — and #3190 lives on exactly that path. Editing
`build.yml` does not force a build either, deliberately: the workflow is not
shipped bytes and is in no artifact's path set. The flag is read through
`github.event.inputs` into an env var rather than interpolated into a run
block, and it is checked inside the reuse step so that one decision drives
both the build and the repoint.
- **A weekly `schedule` rebuilds all three images against fresh base layers**
(Sunday 06:00 UTC, milestone 326 step 4, #3154). Skip-if-exists is keyed on
OUR source, so an artifact whose source stops moving stops picking up base
updates — `agent/` has not changed since 2026-07-17 and would otherwise serve
that day's `nvidia/cuda` layers forever. Four things make it work:
- It **builds `main`, not the branch that triggered it.** Forgejo registers a
cron from the DEFAULT branch (`dev` here), so a scheduled run arrives with
`github.ref` on dev. The ref is decided once in a top-level `env:
BUILD_REF` that every checkout in the file takes, rather than per job —
otherwise `sign-extension` would derive dev's extension version while
`build-web` bundled main's, and the release download would 404 on a version
that exists perfectly well.
- It **publishes only `:latest`.** `:c-<sha>` for main's HEAD already names
the bytes that commit built; re-pushing it over refreshed layers would
break the one tag rule 145 makes immutable, and it is the rollback unit.
The repoint step needs no schedule case for this — the tag list is the
channel tag alone, so SOURCE is the only entry, it is excluded as always,
and the step correctly does nothing.
- **`:latest` and `:c-<sha>` therefore diverge between a refresh and the next
`main` push, by design.** They re-converge on that push: it hits reuse (a
refresh does not move `fc.revision`, because it does not touch the source),
and the repoint writes the NEW `:c-<sha>` from the refreshed `:latest`. The
push path needed no change for this, because the repoint already excluded
the source tag — the same rule that keeps the label readable also keeps a
refresh from being undone.
- **`pull: true` on the scheduled path only** is the actual mechanism. If a
base tag moved, the `FROM` layer's cache key changes and everything above
it rebuilds; if it did not, the registry cache satisfies the whole graph
and the refresh is a ~13s no-op that republishes nothing. That no-op is the
point — `:latest` should change when there is something new in it, not
every Sunday. The known lag: a Debian package update inside the `apt-get
install` layer while the base tag stands still is not caught. Closing it
needs `no-cache: true`, which buys weekly churn for it; the official
python/cuda images rebuild with those updates baked in, so this is a lag
rather than a hole.
- **`FC_CHANNEL` and `FC_VERSION` are build args, not runtime settings.**
`build.yml` passes them to the web image only — the ml and agent images have
nothing to report them to. `/api/health` returns both, the foot of Settings
renders them, and `/api/extension/manifest` reports the channel beside the
extension version so an install can be traced to a channel. With no version image tags, that
self-report is the ONLY answer to "which build is this?" — which is why a
missing version renders `unknown` rather than a blank: an empty footer reads
as "no version", a different and false claim.
Both are declared LAST in the Dockerfile on purpose: an ARG invalidates every
layer below it, and these are the values that differ between the dev and main
builds of identical source, so placing them earlier would stop the two
channels ever sharing a cached `pip install`. Empty by default — a local build
then reports nothing rather than claiming a channel it is not on.
- **The channel is never folded into the version.** A `-dev` suffix makes the
extension's per-segment `parseInt` comparator read that segment as 0, so every
dev build compares equal to every other — issue #2993 exactly (rule 149).
`frontend/test/systemBuild.spec.js` pins the rendered version to the bare
number.
- Callers MUST `set -f` before substituting the script's output. Without it the
shell expands `test/**` against the working tree and silently narrows the
pattern to whatever files exist at that moment — a failure that looks like
nothing until dev files start appearing in the XPI. `test/version.spec.js`
asserts every `--ignore-files` consumer sets it, and that no consumer has
quietly reinstated a hardcoded list.