## What & why Two changes, made and verified together on a real cluster. **S-24 / #25 — a Helm chart for the platform.** One chart, `infra/helm/big-reference`, whose `values.yaml` is a near-literal transcription of `infra/docker-compose.yml`, rendered by three generic templates (Deployment, Job, Service) over a `workloads` map. Adding a service is a values edit. `make k8s-lint` renders and schema-checks the whole stack without a cluster. The issue asked for a *sketch*; this is deployed and verified end to end (see below), which is more than it asked for — the part it asked for that is **not** here is the production-posture write-up (HA, secrets, backup), see Known gaps. **#166 — Caddy replaces nginx in the portals.** nginx resolves a variable `proxy_pass` upstream itself, using only the `resolver` directive and never `/etc/resolv.conf`'s search domains. That had cost two workarounds in one script: rewriting the resolver address for rootless podman, and injecting a full FQDN so the bare `bff` name could resolve on Kubernetes. Caddy dials per request through the system resolver, so `reverse_proxy bff:8080` works on every engine unchanged; `apps/portal-nginx-resolver.sh` and the chart's `BFF_HOST` env are deleted. Closes #25 Closes #166 ## Definition of Done - [x] Linked Gitea issue (above). - [x] Failing test committed before the implementation — twice: the Caddyfile contract test before the Caddyfiles, `make k8s-lint` before the chart. - [x] Implementation makes the test pass. - [x] Conventional Commits referencing the issues (`refs #25` / `refs #166`). - [ ] CI green — awaiting the run on this PR (`make k8s-lint`, `dotnet format` and the new unit self-check pass locally; the compose e2e and mutation lanes are CI's). - [ ] `docker compose up` from a fresh clone reaches green health checks within 3 minutes — the portal images were rebuilt and verified standalone, but a full `make up` run has not been done on this branch. Please confirm in review or let CI's smoke test speak. - [x] Docs updated — `docs/runbooks/kubernetes-talos.md` (new), `frontend-decisions.md`, `demo-script.md`, and the docs that named nginx. - [x] ADR added — ADR-0033 (chart) and ADR-0034 (Caddy). - [ ] Demo note in `docs/demo-script.md` — not added: the deployment target is not a user-visible slice, and the Caddy swap is invisible to the demo script beyond the wording fix included here. ## How it was verified Brought up from scratch on a single-node Talos v1.14.0 VM (6 vCPU / 10 GB, virtio disk) under virt-manager: **29 pods ready and four bootstrap Jobs complete in under three minutes, zero restarts**, using ~4.4 GB of the VM's 10 GB. - Full Common Ground path: portal Caddy → BFF → domain → Flowable → ACL → OpenZaak + Objecten → NRC → event-subscriber → projection → public register (`INGEDIEND`, reference matching the submitted registration). - Werkbak read with an MFA'd medewerker token → 200. - The browser flow driven with Playwright against `http://localhost:30140`: secure context, `crypto.subtle` present, Keycloak form reached, login completed, **no console errors**. - Routing checked against a stub BFF: SPA fallback serves deep links, each portal proxies its own groups, and a portal does *not* proxy a neighbour's group. ## Notes for reviewers Three bugs this shook out, each fixed at the cause rather than the symptom: 1. **`command` vs `args`.** Compose's `command:` replaces the image CMD; Kubernetes' replaces the ENTRYPOINT. Transcribing one to the other broke every upstream image that relies on its entrypoint — postgres refused to run as root, Keycloak tried to exec `start-dev`. The chart now `fail`s at render time on `command`. 2. **Concurrent migrations.** Both `/setup_configuration.sh` and `/start.sh` run `manage.py migrate`; compose serialises them with `depends_on`, Kubernetes has no such edge, so the init Job and its web pod raced (`relation "zgw_consumers_service" already exists`). The four Django services now do both steps in order in the web pod — which also deletes four workloads. 3. **`emptyDir` databases are wiped by any pod-template change.** `make k8s-reseed` now also restarts `event-subscriber` and `projection-api`, which create the projection schema on start and otherwise keep writing to a schema-less database. Known gaps / follow-ups: - **Secrets.** `values.yaml` carries the dev credentials in plain text (`admin/admin`, the ZGW client secret, the two Objecten tokens) and the chart has no `Secret` objects. Fine for a laptop demo, and exactly what #25's "production posture" ADR should address — I suggest a follow-up issue rather than stretching this PR. - **No CI gate for the chart yet.** `make k8s-lint` exists but is not wired into `.gitea/workflows/ci.yaml`, and nothing enforces that the chart and the compose file stay in step. Worth a small follow-up. - **This is two slices in one PR.** They were built and verified together and the diff is entangled (the chart was written against Caddy from the start), so splitting now would mean re-creating an nginx-shaped chart to throw away. Happy to split if you'd rather. - **Rebased onto #161** (merged as #165) rather than merged, to keep the history linear. One conflict, in the `unit:` target where both branches add a self-check line — resolved by keeping both. #161's `infra/host-browser.yml` arrived with `/usr/share/nginx/html/config.json` and is fixed to `/usr/share/caddy/` inside the `feat(portals)` commit, so no commit on this branch leaves that overlay pointing at a path the images no longer have.Reviewed-on: #167
45 lines
1.7 KiB
YAML
45 lines
1.7 KiB
YAML
{{- /*
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Shared env blocks — the Kubernetes equivalent of the YAML anchors in
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infra/docker-compose.yml (&oz-env, &nrc-env, &objecttypen-env, &objecten-env).
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A workload picks them up with `envFrom`, so the web/celery/init variants of an
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upstream image stay guaranteed-identical, and `kubectl get cm oz-env -o yaml`
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shows what a pod actually got.
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The *file* inputs (setup_configuration data.yaml, Keycloak realms, BPMN/DMN, the
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seed scripts) are NOT here: they live in the repo and are turned into ConfigMaps
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by infra/helm/seed-configmaps.sh, exactly as infra/seed-config.sh streams them
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into the compose config volumes. Copying them into the chart would fork them.
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*/ -}}
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{{- range $group, $env := .Values.envGroups }}
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---
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apiVersion: v1
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kind: ConfigMap
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metadata:
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name: {{ $group }}-env
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labels:
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{{- include "big.labels" (dict "root" $ "name" (printf "%s-env" $group)) | nindent 4 }}
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data:
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{{- range $k, $v := $env }}
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{{ $k }}: {{ tpl (toString $v) $ | quote }}
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{{- end }}
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{{- end }}
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{{- /*
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Portal OIDC config. The images bake config.json with the compose authority
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(keycloak:8080), which a browser outside the cluster cannot resolve; these
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ConfigMaps mount over it with the node address Keycloak's issuer is pinned to
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(KC_HOSTNAME below), so the token the browser gets and the issuer the BFF
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discovers are the same string. Same mechanism as infra/host-browser.yml.
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*/ -}}
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{{- range $realm := list "digid" "medewerker" }}
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---
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apiVersion: v1
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kind: ConfigMap
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metadata:
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name: portal-config-{{ $realm }}
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labels:
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{{- include "big.labels" (dict "root" $ "name" (printf "portal-config-%s" $realm)) | nindent 4 }}
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data:
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config.json: |
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{ "authority": "{{ printf "http://%s:%v" $.Values.host (index $.Values.nodePorts "keycloak") }}/realms/{{ $realm }}" }
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{{- end }}
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