6f303dbbaa
Infrastructure:
- Stack now runs on K3s v1.34.6 HA (3 Hetzner CX33 nodes as managers)
- Traefik DaemonSet + hostNetwork replaces Caddy + ingress mesh
- All manifests in deploy-k3s/manifests/; Swarm config (deploy/) kept
temporarily for reference
Bug fixes surfaced during migration:
- Dockerfile: golang:1.24-alpine -> 1.25-alpine (go.mod requires 1.25)
- cache_service.go: remove sync.Once reassignment from inside Do()
callback (was causing 'unlock of unlocked mutex' fatal after
Redis Ping failure)
- router.go: relax CSP from 'default-src none' to 'default-src self'
+ allowlist fonts.googleapis.com so the marketing landing page CSS
actually loads in browsers
- deploy/scripts/deploy_prod.sh: use docker buildx with
--platform linux/amd64 so arm64 (Apple Silicon) dev machines produce
images runnable on x86_64 Hetzner nodes; fix array expansion under
set -u
- deploy/swarm-stack.prod.yml: fix secret source references to use
top-level aliases (the '\${X_SECRET}' form never actually resolved);
dozzle ports: long-form host_ip is rejected by Swarm, switched to
short-form (bound to 0.0.0.0 with UFW-based loopback restriction);
worker replicas 2 -> 1 (Asynq scheduler singleton)
- deploy-k3s/manifests/admin/deployment.yaml: probe path '/admin/' -> '/'
(Next.js serves at root; /admin/ returned 404 and killed pods);
startupProbe failureThreshold 12 -> 24
- deploy-k3s/manifests/pod-disruption-budgets.yaml: worker minAvailable
1 -> 0 (singleton)
- deploy-k3s/manifests/api/deployment.yaml: startupProbe failureThreshold
12 -> 48 (MigrateWithLock serializes across 3 replicas on first-boot;
real startup takes up to 240s)
- .gitignore: tighten 'api' -> '/api' (was matching deploy-k3s/manifests/api/
and admin/src/app/api/*, hiding legitimate files)
New files:
- deploy-k3s/manifests/traefik-helmchartconfig.yaml: DaemonSet +
hostNetwork override for k3s-bundled Traefik
- deploy-k3s/manifests/ingress/ingress-simple.yaml: plain Ingress
without TLS (CF Flexible SSL) and without middleware
- deploy-k3s/MIGRATION_NOTES.md: operator-facing migration log
Documentation:
- docs/deployment/ — full deployment book, 26 files, ~42k words:
- Part I Overview, infrastructure, orchestrator choice (Ch 0-2)
- Part II Networking, firewall, Cloudflare (Ch 3-4, 13)
- Part III Security, Traefik ingress (Ch 5-6)
- Part IV Services, DB, storage, secrets, registry (Ch 7-11)
- Part V Data flow, deploy process, observability, failures, runbook
(Ch 12, 14-17)
- Part VI Cost, Swarm postmortem, roadmap (Ch 18-20)
- Appendices: glossary, kubectl cheat sheet, file locations,
consolidated citations
- README.md: Production Deployment section replaced with pointer to
the book; Go version bumped to 1.25
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
330 lines
11 KiB
Markdown
330 lines
11 KiB
Markdown
# 11 — Container Registry (Gitea)
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## Summary
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We host our own container registry on Gitea at `gitea.treytartt.com`.
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Every image push and pull goes there, not Docker Hub or GHCR. The Gitea
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instance runs outside this k3s cluster (on its own VPS) and is available
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at `https://gitea.treytartt.com` with public HTTPS. Image pulls are
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authenticated via a Personal Access Token stored as a Kubernetes
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`dockerconfigjson` Secret.
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## Why Gitea
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### Decision matrix
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| Option | Cost | Auth model | Pros | Cons |
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|---|---|---|---|---|
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| **Gitea built-in registry** | $0 (already running Gitea) | Gitea PAT | Self-hosted, integrated with code | Another service to maintain |
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| GHCR (GitHub Container Registry) | Free for public, $0 for private with paid plan | GitHub PAT | Popular, reliable | Uses GitHub; vendor dependency |
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| Docker Hub | Free tier limited; paid $5-7/mo | Docker Hub account | Ubiquitous | Rate limits on anonymous pulls |
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| AWS ECR | ~$1/mo for small use | IAM | Integrates with AWS workloads | AWS account required |
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| Harbor (self-hosted) | $0 | Many options | Best enterprise features | Heavy to operate |
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Gitea won primarily because **the operator was already running Gitea for
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code hosting**. Container registry is built into Gitea 1.17+ as a free
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feature. One fewer service to set up.
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Side benefits:
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- Code and images live together (one backup policy, one access model)
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- PATs are scoped and rotatable via the same UI
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- No external vendor to worry about for this critical piece of the
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deploy pipeline
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Rejected alternatives:
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- **Docker Hub** — rate limits on unauthenticated pulls would bite us if
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nodes pull the same image repeatedly during rolling updates
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- **GHCR** — fine but adds GitHub dependency we don't otherwise have
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- **Harbor** — massive overkill; we're not a 100-team enterprise
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## Layout
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Images live under the authenticated user's namespace:
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```
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gitea.treytartt.com/admin/honeydue-api:237c6b8
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gitea.treytartt.com/admin/honeydue-worker:237c6b8
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gitea.treytartt.com/admin/honeydue-admin:237c6b8
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```
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`admin` is the Gitea user that owns the images. Images are **private**
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by default.
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### Image tagging strategy
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Tags are git short SHAs (e.g., `237c6b8`). Not `:latest`. Not semantic
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version.
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Rationale:
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- `:latest` is ambiguous — which build? Rolling updates should roll a
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*specific* tag so rollbacks are deterministic.
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- `:v1.2.3` works for released libraries but our app rolls forward
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continuously; versioning per deploy is unnecessary overhead.
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- Git SHAs are unique, immutable, and tie each image to the exact
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commit that built it.
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`PUSH_LATEST_TAG=false` is set in `deploy/cluster.env`. When we rebuild
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and push, only the SHA tag gets pushed. The `latest` tag is never
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created by our deploy pipeline.
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## Authentication
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### Creating the PAT
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At <https://gitea.treytartt.com/-/user/settings/applications>, we created
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a token with scopes:
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- `read:package`
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- `write:package`
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No other scopes. This token can only interact with package registry; it
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can't read repo contents, create issues, or touch account settings.
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### PAT on the operator workstation
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Stored in `deploy/registry.env`:
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```
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REGISTRY=gitea.treytartt.com
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REGISTRY_NAMESPACE=admin
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REGISTRY_USERNAME=admin
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REGISTRY_TOKEN=<pat>
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```
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This file is `.gitignore`d in `deploy/.gitignore`. If it ever gets
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committed accidentally, rotate the PAT immediately.
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### PAT in the cluster
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Stored as the `gitea-credentials` Secret (type `dockerconfigjson`) in
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the `honeydue` namespace. See Chapter 10.
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Kubelet reads this Secret when a pod needs to pull from the Gitea
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registry.
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## The build pipeline
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### Dockerfile multi-stage
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`honeyDueAPI-go/Dockerfile` has three target stages:
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- `api` — compiled Go binary + static assets for the HTTP API
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- `worker` — compiled Go binary for the background worker
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- `admin` — Next.js standalone build of the admin panel
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A single Dockerfile keeps build-cache sharing efficient (the Go builder
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stage produces binaries for both api and worker; admin reuses its own
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Node builder stage).
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### Multi-arch cross-compilation
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The operator workstation is **arm64** (Apple Silicon). The Hetzner nodes
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are **x86_64**. A naive `docker build` on arm64 produces arm64 images
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that won't run on the nodes (`exec format error`).
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The deploy pipeline uses `docker buildx`:
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```bash
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docker buildx build \
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--platform linux/amd64 \
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--target api \
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-t gitea.treytartt.com/admin/honeydue-api:$SHA \
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--push \
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/Users/treyt/Desktop/code/honeyDue/honeyDueAPI-go
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```
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- **`--platform linux/amd64`** — cross-compile to x86_64
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- **`--target api`** — which Dockerfile stage to build
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- **`--push`** — push directly to the registry (skip local image cache)
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The Go stages use the `TARGETARCH` build arg to produce the right
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architecture binary. Node stages use QEMU emulation (which is slower but
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acceptable for our ~1 min admin build).
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### Buildx builder
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We use a named buildx builder to keep state out of Docker's default
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environment:
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```bash
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docker buildx create --name honeydue-builder --use
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docker buildx inspect --bootstrap
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```
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The `honeydue-builder` is a docker-container driver — spawns a
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BuildKit container when building, tears it down when idle. Supports
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multi-platform and caches layers across builds.
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## From local file to cluster — the full path
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```mermaid
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flowchart LR
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subgraph dev[Operator workstation]
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Code[Source code]
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Dockerfile
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Buildx[docker buildx]
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end
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subgraph Gitea[gitea.treytartt.com]
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Reg[Package registry]
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end
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subgraph K8s[k3s cluster]
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Kubelet
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Containerd
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Pod
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end
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Code --> Dockerfile
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Dockerfile --> Buildx
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Buildx -- push --> Reg
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Reg -- pull --> Kubelet
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Kubelet --> Containerd
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Containerd --> Pod
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```
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### End-to-end
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1. **Operator pushes code**: commits to `main` locally
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2. **Operator builds + pushes image**: `docker buildx build --push ...`
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from the repo root. Build takes 1–3 minutes first time, seconds on
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warm cache.
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3. **Image lands in Gitea**: visible at
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`https://gitea.treytartt.com/admin/-/packages/container/honeydue-api`
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4. **Operator updates Deployment**: `kubectl set image deployment/api
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api=gitea.treytartt.com/admin/honeydue-api:$NEW_SHA -n honeydue`
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5. **K8s begins rolling update**: creates new ReplicaSet with new image
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6. **Kubelet on target node** sees a pod with an image it doesn't have
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7. **Kubelet calls containerd**: "pull this image using these creds"
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8. **Containerd authenticates** to Gitea registry using the PAT from
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`gitea-credentials` Secret, downloads the image
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9. **Containerd starts the container** with the new image
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10. **Readiness probe passes**: new pod joins the Service endpoints
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11. **Kubelet tears down** an old pod
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## Pushing manually
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If you need to push a one-off image (e.g., testing a fix):
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```bash
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# Login (once per session)
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set -a; source deploy/registry.env; set +a
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printf '%s' "$REGISTRY_TOKEN" | docker login "$REGISTRY" -u "$REGISTRY_USERNAME" --password-stdin
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# Build + push
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cd honeyDueAPI-go
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SHA=$(git rev-parse --short HEAD)
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docker buildx build \
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--platform linux/amd64 \
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--target api \
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-t "gitea.treytartt.com/admin/honeydue-api:${SHA}" \
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--push .
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# Logout (don't leave creds in ~/.docker/config.json)
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docker logout gitea.treytartt.com
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```
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## Image sizes
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Current images:
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| Image | Size | Layers |
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|---|---|---|
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| `honeydue-api` | ~53 MB | Alpine base + Go binary |
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| `honeydue-worker` | ~50 MB | Alpine base + Go binary |
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| `honeydue-admin` | ~150 MB | Node 20 alpine + Next.js standalone |
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The Go binaries are statically compiled, CGO_ENABLED=0. Alpine is the
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base for smallest footprint.
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## Image retention
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Gitea does **not auto-prune** images. Every `:<sha>` tag accumulates
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forever. The package page at
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`https://gitea.treytartt.com/admin/-/packages/container/honeydue-api`
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lists them all.
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At current pace (deploys ~few/week, images ~50-150 MB each), this grows
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~10 GB/year. Not critical; 80 GB node disk can take years.
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**TODO**: Add a monthly cleanup: delete all but last 30 tags per image.
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Can be a cron job or a manual quarterly cleanup.
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## Image verification — not yet
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We do not sign images or verify signatures. An attacker who compromised
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Gitea could push a malicious image under an existing tag (though Gitea
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should prevent tag reuse if immutable tags are configured).
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**TODO** (Chapter 20): Add [cosign](https://github.com/sigstore/cosign)
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for signing at build time + `Kyverno` or `Connaisseur` policy to verify
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at pull time.
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## Gitea registry itself
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The Gitea instance runs outside this k3s cluster on its own VPS
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(operator's existing infrastructure). It's **not** part of the honeyDue
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deployment — it's adjacent infrastructure.
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If the Gitea host goes down:
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- Currently-running pods keep working (they already pulled their images)
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- New deployments/scale-ups fail at the image-pull step
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- No impact on existing user traffic
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This is an acceptable external dependency. Gitea host has its own
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uptime story.
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## Cost
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**$0/mo.** Gitea registry is included in the Gitea install we already
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pay the VPS for (not accounted to honeyDue's cost).
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If we ever switched to GHCR, cost would still be $0 for public images
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or bundled with our (nonexistent) GitHub Team subscription.
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## What we don't have
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- **Image scanning** (Trivy, Snyk) — scan images for known CVEs on push
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- **Image signing** (cosign)
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- **Multi-region replication** — only hosted in one place
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- **High availability** — Gitea is single-instance
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For our scale, none of these are needed. TODO (Chapter 20) if the
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operator appetite increases.
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## Operator cheat sheet
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```bash
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# List packages via API
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curl -sS "https://gitea.treytartt.com/api/v1/packages/admin?type=container" \
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-H "Accept: application/json" | jq .
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# Browse in UI
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# https://gitea.treytartt.com/admin/-/packages
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# Delete a specific tag via API
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curl -X DELETE \
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-H "Authorization: token $GITEA_PAT" \
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"https://gitea.treytartt.com/api/v1/packages/admin/container/honeydue-api/237c6b8"
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# Login from kubectl side (refresh the Secret)
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kubectl create secret docker-registry gitea-credentials -n honeydue \
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--docker-server=gitea.treytartt.com \
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--docker-username=admin \
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--docker-password=<new PAT> \
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--dry-run=client -o yaml | kubectl apply -f -
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# After rotating PAT, restart pods that use it for pulls
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kubectl rollout restart -n honeydue deploy/api deploy/admin deploy/worker
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```
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## References
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- [Gitea Container Registry][gitea-cr]
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- [Docker buildx multi-platform][buildx]
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- [Kubernetes image pull secrets][pull-secrets]
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- [cosign][cosign]
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[gitea-cr]: https://docs.gitea.com/usage/packages/container
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[buildx]: https://docs.docker.com/build/buildx/
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[pull-secrets]: https://kubernetes.io/docs/tasks/configure-pod-container/pull-image-private-registry/
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[cosign]: https://github.com/sigstore/cosign
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