Merge pull request 'A gate for the weekly refresh, and the lever that makes it testable' (#248) from dev into main
CI / lint (push) Successful in 3s
Build images / sign-extension (push) Successful in 3s
CI / extension-version (push) Successful in 2s
Build images / build-ml (push) Successful in 6s
Build images / build-agent (push) Successful in 7s
Build images / build-web (push) Successful in 6s
Build images / smoke-web (push) Skipped
CI / frontend-build (push) Successful in 19s
extension / lint (push) Successful in 17s
CI / backend-lint-and-test (push) Successful in 31s
CI / integration (push) Successful in 1m42s

This commit was merged in pull request #248.
This commit is contained in:
2026-09-02 15:51:50 -04:00
2 changed files with 353 additions and 5 deletions
+198 -5
View File
@@ -89,12 +89,30 @@ on:
# makes the milestone-362 gate verifiable at all: a gate has to be watched
# rejecting something before anyone can believe it is wired up.
#
# Note this is a STRING comparison, not a boolean. Forgejo delivers
# workflow_dispatch inputs as strings, so `inputs.refresh` is 'true'/'false'
# and `&&` on it would treat the string 'false' as truthy.
# The input is normalised through `format()` before it is compared, and that
# is not defensive styling — the direct comparison is WRONG and fails silently.
#
# `type: boolean` delivers a real boolean, and GitHub expression semantics cast
# operands to numbers when their types differ: `true == 'true'` compares 1
# against NaN and is FALSE. Measured on run 5270, whose own log says it —
#
# expression '(github.event_name == 'schedule'
# || github.event.inputs.refresh == 'true') && 'true' || 'false''
# evaluated to '%!t(string=false)'
# trigger: raw inputs refresh='true'
#
# — the input arrived as `true` and the expression still said false. The run
# then went green with every step skipped, because a refresh that evaluates
# false behaves exactly like an ordinary push. That is the whole hazard: the
# failure has no symptom.
#
# `force_build` never hit this because it never compares in an expression. It
# passes the raw value into an env var and tests it in the shell, where
# everything is already a string. `format('{0}', x)` buys the same thing here,
# where a step-level `if:` needs the answer before any shell runs.
env:
IS_REFRESH: ${{ (github.event_name == 'schedule' || github.event.inputs.refresh == 'true') && 'true' || 'false' }}
BUILD_REF: ${{ (github.event_name == 'schedule' || github.event.inputs.refresh == 'true') && 'main' || github.ref }}
IS_REFRESH: ${{ (github.event_name == 'schedule' || format('{0}', github.event.inputs.refresh) == 'true') && 'true' || 'false' }}
BUILD_REF: ${{ (github.event_name == 'schedule' || format('{0}', github.event.inputs.refresh) == 'true') && 'main' || github.ref }}
# Requires repo secret RELEASE_TOKEN — a Forgejo PAT with scopes:
# - write:package, read:package (for docker push to git.fabledsword.com)
@@ -491,8 +509,18 @@ jobs:
# the PREVIOUS XPI while the freshly signed one is orphaned (#3156).
# * dev and main derive the same values for the same source.
- name: Report the derived artifact version
env:
# Diagnostic for the trigger normalisation. `refresh` is reported RAW
# as well as normalised, because the two disagreeing is the whole
# failure mode: a dispatch input whose type does not compare the way
# the expression assumes evaluates to false silently, and the only
# symptom is a refresh that quietly behaves like an ordinary push.
RAW_REFRESH: ${{ github.event.inputs.refresh }}
RAW_FORCE: ${{ github.event.inputs.force_build }}
run: |
set -u
echo "trigger: event=$GITHUB_EVENT_NAME IS_REFRESH='${IS_REFRESH:-<unset>}' BUILD_REF='${BUILD_REF:-<unset>}'"
echo "trigger: raw inputs refresh='${RAW_REFRESH:-<unset>}' force_build='${RAW_FORCE:-<unset>}'"
A=web
V=$(sh scripts/artifacts.sh version "$A" 2>&1 || echo UNAVAILABLE)
R=$(sh scripts/artifacts.sh revision "$A" 2>&1 || echo UNAVAILABLE)
@@ -1074,6 +1102,151 @@ jobs:
docker buildx imagetools create $ARGS "$SOURCE"
echo "repointed from $SOURCE:$ARGS"
# Does the image a refresh just built still work?
#
# This is the gate the base refresh never had. `ci.yml` cannot be it: its
# lanes run on ci-python:3.14 and install requirements.txt, and a base bump
# changes neither — all five stay green through a refresh that breaks the
# product. What a refresh re-resolves is the Dockerfile's apt layer (ffmpeg,
# unar, libpq5, postgresql-client, zstd, megatools, libjpeg62-turbo,
# libwebp7, libpng16-16), unpinned, every build.
#
# So this runs the CANDIDATE IMAGE, against real Postgres and Redis. Not the
# source tree, and not a static inspection: `ffmpeg -version` exiting 0 would
# pass while a codec removal broke every thumbnail in the library.
#
# Refresh-only. On a push the bytes came from a commit, and a commit is what
# ci.yml already tests.
#
# Reports a verdict; it does not yet gate the promote (milestone 362 step 4).
# Landing the gate and the thing it gates in one change would mean the first
# time anyone saw this job run would also be the first time it could stop a
# publish.
smoke-web:
if: env.IS_REFRESH == 'true'
needs: [build-web]
runs-on: python-ci
container:
image: git.fabledsword.com/bvandeusen/ci-python:3.14
env:
DB_USER: fabledcurator
DB_PASSWORD: ci_smoke
DB_PORT: "5432"
DB_NAME: fabledcurator_smoke
SECRET_KEY: ci_smoke_placeholder
IMAGE: git.fabledsword.com/bvandeusen/fabledcurator
services:
postgres:
image: pgvector/pgvector:pg16
env:
POSTGRES_USER: fabledcurator
POSTGRES_PASSWORD: ci_smoke
POSTGRES_DB: fabledcurator_smoke
options: >-
--health-cmd "pg_isready -U fabledcurator"
--health-interval 10s
--health-timeout 5s
--health-retries 10
redis:
image: redis:7-alpine
options: >-
--health-cmd "redis-cli ping"
--health-interval 10s
--health-timeout 5s
--health-retries 10
steps:
- uses: actions/checkout@v4
with:
# The same ref the image was built from, so the smoke script matches
# the code inside the candidate.
ref: ${{ env.BUILD_REF }}
- name: Smoke the candidate image
env:
TOKEN: ${{ secrets.RELEASE_TOKEN }}
ACTOR: ${{ github.actor }}
run: |
set -eux
# Service discovery mirrors ci.yml's integration lane: these jobs run
# in a container against a mounted docker socket, so the services are
# SIBLINGS reachable by IP, not by hostname.
PG=$(docker ps --filter "name=smoke" --filter "ancestor=pgvector/pgvector:pg16" -q | head -n1)
RD=$(docker ps --filter "name=smoke" --filter "ancestor=redis:7-alpine" -q | head -n1)
test -n "$PG" && test -n "$RD"
PG_IP=$(docker inspect -f '{{range .NetworkSettings.Networks}}{{.IPAddress}}{{end}}' "$PG")
RD_IP=$(docker inspect -f '{{range .NetworkSettings.Networks}}{{.IPAddress}}{{end}}' "$RD")
test -n "$PG_IP" && test -n "$RD_IP"
# Socket probe in python, not bash's /dev/tcp — these steps run under
# `sh -e`, where that path does not exist. Same fix and reasoning as
# ci.yml's integration job; see the comment there.
pg_ready=""
for i in $(seq 1 60); do
if python -c "import socket,sys; s=socket.socket(); s.settimeout(2); sys.exit(0 if s.connect_ex(('$PG_IP', 5432)) == 0 else 1)"; then
pg_ready=1
break
fi
sleep 2
done
if [ -z "$pg_ready" ]; then
echo "postgres at $PG_IP:5432 did not accept a connection within 120s"
exit 1
fi
echo "$TOKEN" | docker login git.fabledsword.com -u "$ACTOR" --password-stdin
CANDIDATE="$IMAGE:refresh-candidate"
docker pull "$CANDIDATE"
ENVOPTS="-e DB_USER=$DB_USER -e DB_PASSWORD=$DB_PASSWORD -e DB_HOST=$PG_IP"
ENVOPTS="$ENVOPTS -e DB_PORT=5432 -e DB_NAME=$DB_NAME -e SECRET_KEY=$SECRET_KEY"
ENVOPTS="$ENVOPTS -e CELERY_BROKER_URL=redis://$RD_IP:6379/0"
ENVOPTS="$ENVOPTS -e CELERY_RESULT_BACKEND=redis://$RD_IP:6379/0"
# 1. The schema builds from empty, using the image's OWN libpq and
# psycopg. This is the same call entrypoint.sh makes before it
# serves anything, so a failure here is a failure to boot.
echo "smoke: alembic upgrade head"
docker run --rm $ENVOPTS "$CANDIDATE" alembic upgrade head
# 2. The apt layer's binaries and the app's own thumbnail path, run
# inside the image. Piped over stdin rather than bind-mounted: the
# workspace is a docker VOLUME belonging to this job's container,
# so a host bind of $PWD would not resolve for a sibling.
echo "smoke: image-internal checks"
docker run --rm -i $ENVOPTS "$CANDIDATE" shell -c 'python3 -' < scripts/smoke_image.py
# 3. It actually serves. `docker run -d` then poll the container's own
# IP — no port publishing, because the job container reaches
# siblings directly and a published port would collide with
# whatever else the runner is hosting.
echo "smoke: web boots and answers /api/health"
CID=$(docker run -d $ENVOPTS "$CANDIDATE" web)
# Clean up the container however this ends, and dump its log ONLY
# on failure — a boot that never answers must fail with the reason
# visible rather than as a bare timeout (rule 156), while a green run
# has nothing to say. `exit $rc` preserves the real status, which a
# trap that ends on a successful `docker rm` would otherwise mask.
trap 'rc=$?; [ $rc -eq 0 ] || docker logs "$CID" 2>&1 | tail -40; docker rm -f "$CID" >/dev/null 2>&1 || true; exit $rc' EXIT
WEB_IP=$(docker inspect -f '{{range .NetworkSettings.Networks}}{{.IPAddress}}{{end}}' "$CID")
test -n "$WEB_IP"
healthy=""
for i in $(seq 1 60); do
if curl -fsS --max-time 5 "http://$WEB_IP:8080/api/health" >/dev/null 2>&1; then
healthy=1
break
fi
sleep 2
done
if [ -z "$healthy" ]; then
echo "smoke: FAILED — web did not answer /api/health within 120s." >&2
echo "smoke: entrypoint runs alembic BEFORE serving, and step 1" >&2
echo "smoke: passed, so look at hypercorn and the python base." >&2
exit 1
fi
curl -fsS --max-time 5 "http://$WEB_IP:8080/api/health"
echo
echo "smoke: all checks passed against $CANDIDATE"
build-ml:
runs-on: python-ci
container:
@@ -1127,8 +1300,18 @@ jobs:
# the PREVIOUS XPI while the freshly signed one is orphaned (#3156).
# * dev and main derive the same values for the same source.
- name: Report the derived artifact version
env:
# Diagnostic for the trigger normalisation. `refresh` is reported RAW
# as well as normalised, because the two disagreeing is the whole
# failure mode: a dispatch input whose type does not compare the way
# the expression assumes evaluates to false silently, and the only
# symptom is a refresh that quietly behaves like an ordinary push.
RAW_REFRESH: ${{ github.event.inputs.refresh }}
RAW_FORCE: ${{ github.event.inputs.force_build }}
run: |
set -u
echo "trigger: event=$GITHUB_EVENT_NAME IS_REFRESH='${IS_REFRESH:-<unset>}' BUILD_REF='${BUILD_REF:-<unset>}'"
echo "trigger: raw inputs refresh='${RAW_REFRESH:-<unset>}' force_build='${RAW_FORCE:-<unset>}'"
A=ml
V=$(sh scripts/artifacts.sh version "$A" 2>&1 || echo UNAVAILABLE)
R=$(sh scripts/artifacts.sh revision "$A" 2>&1 || echo UNAVAILABLE)
@@ -1617,8 +1800,18 @@ jobs:
# the PREVIOUS XPI while the freshly signed one is orphaned (#3156).
# * dev and main derive the same values for the same source.
- name: Report the derived artifact version
env:
# Diagnostic for the trigger normalisation. `refresh` is reported RAW
# as well as normalised, because the two disagreeing is the whole
# failure mode: a dispatch input whose type does not compare the way
# the expression assumes evaluates to false silently, and the only
# symptom is a refresh that quietly behaves like an ordinary push.
RAW_REFRESH: ${{ github.event.inputs.refresh }}
RAW_FORCE: ${{ github.event.inputs.force_build }}
run: |
set -u
echo "trigger: event=$GITHUB_EVENT_NAME IS_REFRESH='${IS_REFRESH:-<unset>}' BUILD_REF='${BUILD_REF:-<unset>}'"
echo "trigger: raw inputs refresh='${RAW_REFRESH:-<unset>}' force_build='${RAW_FORCE:-<unset>}'"
A=agent
V=$(sh scripts/artifacts.sh version "$A" 2>&1 || echo UNAVAILABLE)
R=$(sh scripts/artifacts.sh revision "$A" 2>&1 || echo UNAVAILABLE)
+155
View File
@@ -0,0 +1,155 @@
"""Prove a freshly built image can still do the things its OS packages provide.
Run INSIDE the image, not against the source tree. That distinction is the
entire reason this file exists.
`ci.yml`'s lanes run on `ci-python:3.14` and install `requirements.txt`. A base
refresh changes neither, so all five lanes stay green through a base bump that
breaks the product. What a refresh actually re-resolves is this, from the
Dockerfile:
RUN apt-get update && apt-get install -y --no-install-recommends \
ffmpeg unar libpq5 postgresql-client zstd megatools \
libjpeg62-turbo libwebp7 libpng16-16 ca-certificates
Unpinned, every build. Nothing else in this repo looks at it.
So the checks below run the APPLICATION'S OWN code — `Thumbnailer`, which needs
no database and no app context — against whatever Pillow and ffmpeg have
become. `ffmpeg -version` exiting 0 would pass while a codec removal or an
soname bump broke every thumbnail in the library; producing a thumbnail would
not.
Every failure names the package it implicates. This fires on a Sunday,
unattended, about a change nobody made deliberately — "assertion failed" a week
later teaches nobody anything.
Usage: docker run --rm -i <image> shell -c 'python3 -' < scripts/smoke_image.py
"""
from __future__ import annotations
import shutil
import subprocess
import tempfile
from pathlib import Path
try:
from PIL import Image
from backend.app.services.thumbnailer import Thumbnailer
except Exception as exc: # noqa: BLE001 — a smoke test reports, it never raises
print(f"smoke: FAILED — could not import the thumbnail path at all: {exc}")
print(" Implicates Pillow or its shared libraries (libjpeg62-turbo,")
print(" libpng16-16, libwebp7), or the python base image itself.")
raise SystemExit(1) from exc
# Binary → what stops working without it. Listed individually because
# `--no-install-recommends` means any one of them can vanish on its own when a
# dependency chain higher up changes.
REQUIRED_BINARIES = {
"ffmpeg": "video thumbnails and transcoding (Dockerfile: ffmpeg)",
"unar": "archive import — cbz/zip/rar members (Dockerfile: unar)",
"pg_dump": "database backup (Dockerfile: postgresql-client)",
"zstd": "backup compression, pg_dump | tar --zstd (Dockerfile: zstd)",
"megatools": "mega.nz public-link downloads, #830 (Dockerfile: megatools)",
}
def check_jpeg(thumbs: Thumbnailer, src: Path) -> None:
path = src / "flat.jpg"
Image.new("RGB", (900, 400), (30, 90, 160)).save(path, "JPEG")
result = thumbs.generate_image_thumbnail(path, "a" * 64)
assert result.mime == "image/jpeg", f"mime was {result.mime}"
assert result.path.stat().st_size > 0, "no bytes written"
# Re-open it. A file that writes but cannot be read back is the shape a
# half-broken codec produces, and size alone would not catch it.
with Image.open(result.path) as im:
im.load()
def check_png_alpha(thumbs: Thumbnailer, src: Path) -> None:
path = src / "alpha.png"
Image.new("RGBA", (400, 900), (200, 40, 40, 128)).save(path, "PNG")
result = thumbs.generate_image_thumbnail(path, "b" * 64)
assert result.mime == "image/png", f"mime was {result.mime}"
with Image.open(result.path) as im:
im.load()
assert im.mode in ("RGBA", "LA", "P"), f"alpha lost, mode={im.mode}"
def check_webp(thumbs: Thumbnailer, src: Path) -> None:
path = src / "sample.webp"
Image.new("RGB", (500, 500), (10, 140, 70)).save(path, "WEBP")
result = thumbs.generate_image_thumbnail(path, "c" * 64)
assert result.path.stat().st_size > 0, "no bytes written"
def check_video(thumbs: Thumbnailer, src: Path) -> None:
# Synthesised rather than committed as a fixture: a checked-in video is a
# binary blob nobody can review, and lavfi ships with every ffmpeg build.
#
# 3 seconds, not 2. The seek lands at max(1.0, duration * 0.05) = 1.0s, and
# a clip barely longer than its own seek is how #1231 produced zero frames.
# This check exists to exercise ffmpeg, not to re-litigate that edge.
clip = src / "clip.mp4"
subprocess.run(
["ffmpeg", "-nostdin", "-f", "lavfi", "-i", "testsrc=size=640x360:rate=10",
"-t", "3", "-pix_fmt", "yuv420p", "-y", str(clip)],
check=True, capture_output=True, timeout=120,
)
result = thumbs.generate_video_thumbnail(clip, "d" * 64, duration_seconds=3.0)
assert result.path.stat().st_size > 0, "no bytes written"
with Image.open(result.path) as im:
im.load()
CHECKS = (
("JPEG thumbnail", "libjpeg62-turbo / Pillow", check_jpeg),
("PNG thumbnail (alpha)", "libpng16-16 / Pillow", check_png_alpha),
("WebP decode", "libwebp7 / Pillow", check_webp),
("video thumbnail", "ffmpeg", check_video),
)
def main() -> int:
failures: list[str] = []
print("smoke: binaries the apt layer provides")
for binary, purpose in REQUIRED_BINARIES.items():
if shutil.which(binary) is None:
print(f" FAIL {binary}: not on PATH")
failures.append(f"{binary}{purpose}")
else:
print(f" ok {binary}")
print("smoke: the application's own thumbnail path, against this image's libraries")
with tempfile.TemporaryDirectory() as tmp:
root = Path(tmp)
src = root / "src"
src.mkdir()
thumbs = Thumbnailer(root)
for name, implicates, fn in CHECKS:
try:
fn(thumbs, src)
print(f" ok {name}")
except Exception as exc: # noqa: BLE001 — report every check, then fail once
print(f" FAIL {name}: {exc}")
failures.append(f"{name}{implicates}")
if failures:
print(f"\nsmoke: FAILED — {len(failures)} check(s)")
for failure in failures:
print(f" - {failure}")
print("\nThis image was built against freshly resolved base layers. The")
print("named packages are where to look: compare this build's apt versions")
print("against the previous :latest before assuming the app changed.")
return 1
print("\nsmoke: all checks passed")
return 0
if __name__ == "__main__":
raise SystemExit(main())