deploy/stack.yaml arrived in the first commit and was never deployed. Portainer runs the repository's docker-compose.yml. Keeping both meant two definitions drifting apart, with the documentation naming the one nobody used, which is how the credential question came up at all. The hardening it offered is narrower than it looks: Docker secrets keep values out of docker inspect and the Portainer console, but local/secrets.py loads them into the process environment regardless, and anyone able to read docker inspect can already read the secret files. With a single Portainer user, the benefit that remains does not outweigh maintaining a divergent copy. local/secrets.py stays: inert against the deployed file, and it lets a stack switch to Docker secrets later without touching code. The preflight and its tests degrade cleanly when no such stack is present. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
252 lines
11 KiB
YAML
252 lines
11 KiB
YAML
name: Build and deploy
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on:
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pull_request:
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push:
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branches: [main]
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workflow_dispatch:
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jobs:
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validate:
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name: Validate source
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runs-on: ubuntu-latest
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timeout-minutes: 15
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steps:
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- name: Checkout
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uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683
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- name: Run fast regression checks
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run: |
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python3 -m py_compile local/*.py deploy/*.py
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python3 -m unittest \
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local.test_dependency_lock \
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local.test_staging_readiness \
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deploy.test_production_preflight \
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local.test_pricing \
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local.test_secrets -v
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sh -n local/lock_dependencies.sh
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integration:
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name: Integration suite on a real stack
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needs: validate
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runs-on: ubuntu-latest
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timeout-minutes: 45
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env:
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# The runner shares the host's Docker daemon, so every published port is
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# taken on the machine itself. Known occupants of that host:
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# 8000, 9443 Portainer (the Edge tunnel and its UI)
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# 18080/18081 the production dtf-cloud stack (docker-compose.yml defaults)
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# 9000/9001 MinIO defaults elsewhere
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# This block avoids all of them. Ephemeral ports are not an option: the
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# published port is baked into PUBLIC_ORIGIN, ALLOWED_ORIGINS and the CSP
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# when the containers start, so it has to be known beforehand.
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SITE_PORT: "28080"
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KANBAN_PORT: "28081"
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API_PORT: "28000"
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STORAGE_PORT: "29000"
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STORAGE_CONSOLE_PORT: "29001"
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# Presigned URLs are signed against this endpoint, so it must be reachable
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# by whoever follows them. The suites run inside the network, so it has to
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# be the service name, not a published port on the host.
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S3_PUBLIC_ENDPOINT: http://storage:9000
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COMPOSE: docker compose -f compose.local.yaml
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steps:
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- name: Checkout
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uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683
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# py_compile cannot see an unresolved name, and the four unit tests above
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# never start the application. A missing import in local/auth.py therefore
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# reached production and returned 500 on every session, login and
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# registration. These suites exercise the running stack and would have
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# failed on it immediately.
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- name: Start the stack
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run: |
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$COMPOSE up --build -d --wait --wait-timeout 600
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$COMPOSE ps
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# Run inside the stack's own network. The runner is itself a container, so
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# ports published on the host's loopback are in a different namespace and
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# unreachable from here. SITE_HOST_HEADER keeps the Host the gateway and
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# TrustedHostMiddleware expect, so the configuration under test is the same
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# one a developer exercises on localhost.
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- name: API and workflow regressions
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run: |
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for suite in smoke_test workflow_test security_test scanning_test; do
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echo "--- $suite"
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$COMPOSE exec -T \
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-e SITE_BASE_URL=http://site \
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-e SITE_HOST_HEADER=localhost \
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api python -m "local.$suite"
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done
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- name: Runtime and retention regressions
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run: |
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$COMPOSE exec -T api python -m local.retention_test
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$COMPOSE exec -T api python -m local.runtime_security_test
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# These need a real Chrome. They are the only coverage for the artwork
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# editor and the full customer journey, so install google-chrome-stable
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# (or set CHROME_BIN) on the runner to make them gate deployments. The
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# suites above stay hard gates either way.
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- name: Browser regressions
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run: |
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for candidate in "$CHROME_BIN" /usr/bin/google-chrome-stable \
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/usr/bin/google-chrome /usr/bin/chromium /usr/bin/chromium-browser; do
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if [ -n "$candidate" ] && [ -x "$candidate" ]; then
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export CHROME_BIN="$candidate"
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break
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fi
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done
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if [ ! -x "${CHROME_BIN:-}" ]; then
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echo "::warning::No Chrome on this runner; browser regressions were NOT run."
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echo "Install google-chrome-stable or set CHROME_BIN to gate on them."
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exit 0
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fi
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# Chrome runs here, in the runner container, and reaches the stack only
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# through ports published on the host. When the runner is itself a
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# container those are in another namespace, so check before running
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# rather than failing with a bare connection error. See ROADMAP 5.10.
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if ! wget -q -T 5 -O /dev/null "http://localhost:${SITE_PORT}/health"; then
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echo "::warning::Stack not reachable from the runner; browser regressions were NOT run."
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exit 0
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fi
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echo "Using $CHROME_BIN"
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node local/artwork_browser_test.mjs
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node local/browser_test.mjs
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- name: Diagnostics on failure
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if: failure()
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run: |
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$COMPOSE ps || true
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$COMPOSE logs --tail 200 api worker site kanban || true
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- name: Tear down
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if: always()
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run: $COMPOSE down -v || true
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scan:
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name: Secret scan and release gate
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needs: validate
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runs-on: ubuntu-latest
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timeout-minutes: 30
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env:
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TRIVY_IMAGE: ${{ vars.TRIVY_IMAGE }}
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ENFORCE_PRODUCTION_PREFLIGHT: ${{ vars.ENFORCE_PRODUCTION_PREFLIGHT }}
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steps:
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- name: Checkout
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uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683
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# Blocking. A credential committed by accident must never reach the
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# registry or the deployed stack, and the repository is clean today, so
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# this gate costs nothing until it is actually needed.
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- name: Secret scan
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run: |
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image="${TRIVY_IMAGE:-aquasec/trivy:0.58.1}"
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docker run --rm -v "$PWD:/src:ro" "$image" \
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fs --scanners secret --exit-code 1 --severity HIGH,CRITICAL \
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--no-progress /src
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# PORTAINER.md described this as blocking publication. It never ran at
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# all, and turning it on unconditionally would block every deploy: the
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# source preflight refuses a release while the payment and messaging
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# adapters are fake, which is the deliberate state the stack runs in
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# today. So its verdict is always printed, and enforcement is opt-in.
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# Set the repository variable ENFORCE_PRODUCTION_PREFLIGHT to "true" once
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# real adapters land, and this becomes the gate the documentation claims.
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- name: Production source preflight
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run: |
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set +e
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python3 deploy/production_preflight.py --source-only
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verdict=$?
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set -e
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if [ "$verdict" -eq 0 ]; then
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echo "Source preflight passes."
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exit 0
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fi
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if [ "${ENFORCE_PRODUCTION_PREFLIGHT:-false}" = "true" ]; then
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echo "::error::Source preflight blocked the release."
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exit "$verdict"
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fi
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echo "::warning::Source preflight reports blockers (advisory; set ENFORCE_PRODUCTION_PREFLIGHT=true to gate)."
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publish-and-deploy:
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name: Publish images and notify Portainer
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needs: [validate, integration, scan]
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if: gitea.event_name == 'push' && gitea.ref == 'refs/heads/main'
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runs-on: ubuntu-latest
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timeout-minutes: 45
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env:
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TRIVY_IMAGE: ${{ vars.TRIVY_IMAGE }}
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PYTHON_BASE_IMAGE: ${{ vars.PYTHON_BASE_IMAGE }}
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NGINX_BASE_IMAGE: ${{ vars.NGINX_BASE_IMAGE }}
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steps:
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- name: Checkout
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uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683
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- name: Sign in to the Gitea Container Registry
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env:
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REGISTRY_USERNAME: ${{ secrets.REGISTRY_USERNAME }}
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REGISTRY_TOKEN: ${{ secrets.REGISTRY_TOKEN }}
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run: |
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test -n "$REGISTRY_USERNAME"
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test -n "$REGISTRY_TOKEN"
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echo "$REGISTRY_TOKEN" | docker login gitea.blyzer.com.br \
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--username "$REGISTRY_USERNAME" --password-stdin
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- name: Build and publish API
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run: |
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image="gitea.blyzer.com.br/blyzer/dtf-api"
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# The Dockerfiles pin digests themselves; these variables let a base be
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# moved forward without editing the repository. --pull is intentionally
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# absent: a digest already names one immutable image.
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set --
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[ -n "$PYTHON_BASE_IMAGE" ] && set -- --build-arg PYTHON_BASE_IMAGE="$PYTHON_BASE_IMAGE"
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docker build --file deploy/Dockerfile.api "$@" \
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--build-arg VCS_REF="${{ gitea.sha }}" \
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--tag "$image:latest" --tag "$image:${{ gitea.sha }}" .
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docker push "$image:latest"
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docker push "$image:${{ gitea.sha }}"
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- name: Build and publish web
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run: |
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image="gitea.blyzer.com.br/blyzer/dtf-web"
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set --
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[ -n "$PYTHON_BASE_IMAGE" ] && set -- --build-arg PYTHON_BASE_IMAGE="$PYTHON_BASE_IMAGE"
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[ -n "$NGINX_BASE_IMAGE" ] && set -- "$@" --build-arg NGINX_BASE_IMAGE="$NGINX_BASE_IMAGE"
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docker build --file deploy/Dockerfile.web "$@" \
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--build-arg VCS_REF="${{ gitea.sha }}" \
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--tag "$image:latest" --tag "$image:${{ gitea.sha }}" .
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docker push "$image:latest"
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docker push "$image:${{ gitea.sha }}"
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# CRITICAL blocks, HIGH is reported. Both images carry zero CRITICAL after
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# the base pinning and OS upgrades, so this gate holds the line already
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# reached. The remaining HIGH findings have no upstream fix, so failing on
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# them would stop releases without making anything safer.
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- name: Image vulnerabilities
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run: |
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image="${TRIVY_IMAGE:-aquasec/trivy:0.58.1}"
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failed=0
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for target in \
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"gitea.blyzer.com.br/blyzer/dtf-api:${{ gitea.sha }}" \
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"gitea.blyzer.com.br/blyzer/dtf-web:${{ gitea.sha }}"; do
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echo "--- $target (HIGH, reported)"
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docker run --rm -v /var/run/docker.sock:/var/run/docker.sock "$image" \
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image --scanners vuln --severity HIGH --no-progress \
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--format table --exit-code 0 "$target" ||
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echo "::warning::Could not scan $target for HIGH findings"
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echo "--- $target (CRITICAL, blocking)"
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docker run --rm -v /var/run/docker.sock:/var/run/docker.sock "$image" \
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image --scanners vuln --severity CRITICAL --no-progress \
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--format table --exit-code 1 "$target" || failed=1
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done
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if [ "$failed" -ne 0 ]; then
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echo "::error::A CRITICAL vulnerability was found in a published image."
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exit 1
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fi
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- name: Trigger Portainer redeployment
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env:
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PORTAINER_WEBHOOK: ${{ secrets.PORTAINER_WEBHOOK }}
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run: |
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if [ -z "$PORTAINER_WEBHOOK" ]; then
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echo "PORTAINER_WEBHOOK is not configured; images were published but deployment was skipped."
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exit 0
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fi
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curl --fail --silent --show-error --max-time 30 --request POST "$PORTAINER_WEBHOOK"
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