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5
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dfa1a370ac | ||
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e8cb1ec7e9 | ||
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de6db7d35b | ||
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d17e79959b | ||
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fc036d53d5 |
@@ -0,0 +1,126 @@
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name: Deploy to Talos
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# A merge to main ships the stack to the Talos cluster on the lab server
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# (docs/runbooks/kubernetes-talos.md §9). PR CI is the merge gate, so main is
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# green by construction — this workflow only deploys.
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on:
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push:
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branches: [main]
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workflow_dispatch:
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permissions:
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contents: read
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# Queue deploys, never cancel one: a helm upgrade killed half-way leaves the
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# release in `pending-upgrade` and the next run has to be unwedged by hand.
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concurrency:
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group: deploy-talos
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cancel-in-progress: false
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jobs:
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deploy:
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runs-on: ubuntu-latest
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env:
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# The Talos VM as seen from the Fedora host (libvirt guest IP), and the
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# address a browser uses to reach the cluster. `localhost` is deliberate:
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# the portals' PKCE needs a secure context, so they are reached over
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# `kubectl port-forward` — runbook §5. Override with repo variables.
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TALOS_VM_IP: ${{ vars.TALOS_VM_IP }}
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TALOS_HOST: ${{ vars.TALOS_HOST }}
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# Set it and the stack is published over TLS on <sub>.<domain> by the
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# in-cluster edge (ADR-0035, runbook §10). Empty = NodePorts, as before.
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PUBLIC_DOMAIN: ${{ vars.PUBLIC_DOMAIN }}
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PUBLIC_EMAIL: ${{ vars.PUBLIC_EMAIL }}
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steps:
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- uses: https://github.com/actions/checkout@v4
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# Pinned static binaries, the same URLs the Talos runbook §0 gives a
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# developer and the same helm the `k8s` CI job uses — no action to vet.
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- name: Install kubectl, helm and crane
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run: |
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set -euo pipefail
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bin="$HOME/.local/bin"; mkdir -p "$bin"
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curl -sSLo "$bin/kubectl" https://dl.k8s.io/release/v1.37.0/bin/linux/amd64/kubectl
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curl -sSL https://get.helm.sh/helm-v3.16.4-linux-amd64.tar.gz | tar xz -O linux-amd64/helm > "$bin/helm"
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curl -sSL https://github.com/google/go-containerregistry/releases/download/v0.20.2/go-containerregistry_Linux_x86_64.tar.gz | tar xz -O crane > "$bin/crane"
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chmod +x "$bin"/{kubectl,helm,crane}
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echo "$bin" >> "$GITHUB_PATH"
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# The cluster's API and its registry are only reachable through the Fedora
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# host, so forward both to the runner. 30141 is the openbaar portal, for
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# the smoke at the end.
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- name: Tunnel the Talos API + registry through the Fedora host
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env:
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SSH_KEY: ${{ secrets.TALOS_SSH_KEY }}
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run: |
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set -euo pipefail
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: "${TALOS_VM_IP:=192.168.122.173}"
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umask 077
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printf '%s\n' "$SSH_KEY" > ~/.ssh_talos
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ssh -i ~/.ssh_talos -o StrictHostKeyChecking=no -o IdentitiesOnly=yes \
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-o ExitOnForwardFailure=yes -p 6667 -f -N \
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-L 6443:$TALOS_VM_IP:6443 \
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-L 30500:$TALOS_VM_IP:30500 \
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-L 30141:$TALOS_VM_IP:30141 \
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user@labs.respellion.tech
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# The kubeconfig's server must be https://127.0.0.1:6443 — Talos puts
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# 127.0.0.1 in the apiserver cert SANs, so TLS verification still holds
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# through the tunnel.
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- name: Write the kubeconfig
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env:
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KUBECONFIG_B64: ${{ secrets.TALOS_KUBECONFIG }}
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run: |
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set -euo pipefail
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umask 077
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base64 -d <<< "$KUBECONFIG_B64" > "$RUNNER_TEMP/kubeconfig"
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echo "KUBECONFIG=$RUNNER_TEMP/kubeconfig" >> "$GITHUB_ENV"
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kubectl --kubeconfig "$RUNNER_TEMP/kubeconfig" get nodes
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# Idempotent; also makes a first deploy onto a bare cluster work. The
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# registry's storage is an emptyDir, so a replaced pod loses the images —
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# which the push in the next step puts back anyway.
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- name: Ensure the in-cluster registry
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run: make k8s-registry
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# Push through the tunnel (localhost), pull from the node's own NodePort
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# (the address in the Talos registry-mirror patch) — same registry, two
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# names, so the two `make` calls get different K8S_REGISTRY values.
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- name: Build and push the images
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run: make k8s-images K8S_REGISTRY=localhost:30500
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# k8s-reseed = seed configmaps + helm upgrade + re-run the bootstrap jobs.
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# The jobs are idempotent, and deleting them first is what keeps a changed
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# Job template from wedging the upgrade (`cannot patch … with kind Job`).
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- name: Deploy the chart
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run: |
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set -euo pipefail
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publish="${PUBLIC_DOMAIN:+--set public.domain=$PUBLIC_DOMAIN --set public.email=${PUBLIC_EMAIL:-}}"
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make k8s-reseed \
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TALOS_HOST=${TALOS_HOST:-localhost} \
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K8S_REGISTRY=${TALOS_VM_IP:-192.168.122.173}:30500 \
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K8S_SET="$publish"
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# `dev` is a mutable tag and helm sees an unchanged pod template, so the
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# new images only land on a restart (pullPolicy is already Always).
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- name: Roll the services onto the new images
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run: |
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set -euo pipefail
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svcs="acl domain bff event-subscriber projection-api self-service openbaar behandel beheer"
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kubectl -n big rollout restart deploy $svcs
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kubectl -n big rollout status --timeout=300s deploy $svcs
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# Proves portal → Caddy → BFF → projection end to end. An empty register is
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# a pass; a 502 or a timeout is not.
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- name: Smoke the public register
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run: curl -fsS --retry 10 --retry-delay 6 --retry-all-errors http://localhost:30141/openbaar/register
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# Cluster-wide, not just `big`: the first thing that can fail is the registry
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# in its own namespace, and a scheduling problem shows up in the events, not
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# in `rollout status` — which only ever says "timed out waiting".
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- name: Pods and events on failure
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if: failure()
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run: |
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kubectl get pods -A -o wide || true
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kubectl -n big get jobs || true
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kubectl get events -A --sort-by=.lastTimestamp | tail -30 || true
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@@ -31,6 +31,10 @@ and CI cannot drift:
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> services by **container IP** (the runner can't reach published ports — see
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> [gitea-actions-gotchas.md §5/§6](gitea-actions-gotchas.md)).
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A second workflow, `.gitea/workflows/deploy.yaml`, deploys the stack to the Talos
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cluster on the lab server when a PR is merged to `main` — see
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[kubernetes-talos.md §9](kubernetes-talos.md) for its secrets and the SSH tunnel it needs.
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All `uses:` references are absolute, tag-pinned URLs (`https://github.com/actions/checkout@v4`,
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`https://github.com/actions/setup-dotnet@v4`) per CLAUDE.md §8.7 and §15 — Gitea
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Actions resolves them from GitHub.
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@@ -360,6 +360,97 @@ immutable, so `helm upgrade` is rejected with `cannot patch "…" with kind Job`
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| Pods `Evicted` / `OOMKilled` | the VM is too small (§0) |
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| A Job shows `BackoffLimitExceeded` | read it: `kubectl -n big logs job/<name>` |
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## 9. Deploying on merge to main
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`.gitea/workflows/deploy.yaml` runs the §3–§4 steps against the **lab server's** Talos VM
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every time a PR is squash-merged to `main` (and on demand via *Run workflow*). PR CI is the
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merge gate, so the workflow deploys without re-running the checks.
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**Prerequisite: the VM must have been installed with the §1 patch.** A stock Talos config
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gives you a node that still carries the control-plane taint and knows nothing about the
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plain-HTTP registry, and the deploy hits those in that order: the `registry` pod sits
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`Pending` until `rollout status` times out, and once that is fixed every repo image fails to
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pull. Two separate fixes:
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```bash
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# on the Fedora host — 1. let workloads onto the only node (§1)
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export KUBECONFIG=~/talos-kubeconfig-local
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kubectl taint node --all node-role.kubernetes.io/control-plane-
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# 2. trust the in-cluster registry over plain HTTP (§2)
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cat > /tmp/registry-patch.yaml <<'YAML'
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machine:
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registries:
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mirrors:
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"<TALOS_VM_IP>:30500":
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endpoints:
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- http://<TALOS_VM_IP>:30500
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YAML
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talosctl -n <TALOS_VM_IP> -e <TALOS_VM_IP> patch mc --patch @/tmp/registry-patch.yaml
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```
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Keep those two apart. On Talos 1.14 a patch that also sets
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`cluster.allowSchedulingOnControlPlanes` is rejected with *".cluster.allowSchedulingOnControlPlanes
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is already set in v1alpha1 config"* — the field moved out of the v1alpha1 schema, the same way
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`machine.install` did (§1) — and the rejection takes the whole patch with it, so the mirror
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silently doesn't land either. `kubectl taint` is the documented way (§1); it is undone if the
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node ever re-registers, which is a reboot, not a deploy.
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The cluster's API and registry are not exposed publicly, so the job forwards them over the
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same SSH hop the Gitea-runner pipeline uses:
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```
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ssh -p 6667 user@labs.respellion.tech -L 6443 -L 30500 -L 30141 → <TALOS_VM_IP>
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```
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Consequences worth knowing:
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- Images are **pushed** to `localhost:30500` (the tunnel) and **pulled** by the node from
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`<TALOS_VM_IP>:30500` (its own NodePort, the address in the Talos registry-mirror patch).
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Same registry, two names — hence the two `K8S_REGISTRY` values in the workflow.
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- It calls `make k8s-reseed`, not `make k8s-up`: the bootstrap Jobs are idempotent, and
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deleting them first is what stops a changed Job template from wedging `helm upgrade` (§7).
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- `dev` is a mutable tag, so a `rollout restart` of the nine repo deployments is what
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actually puts the new images in the pods.
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- Deploys **queue** (`cancel-in-progress: false`): a helm upgrade killed half-way leaves the
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release in `pending-upgrade`, which has to be unwedged by hand.
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Settings, all on the repository in Gitea:
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| Kind | Name | What |
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|---|---|---|
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| Secret | `TALOS_SSH_KEY` | private key for `user@labs.respellion.tech` (the Fedora host) |
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| Secret | `TALOS_KUBECONFIG` | base64 of the kubeconfig, **`server: https://127.0.0.1:6443`** — Talos puts `127.0.0.1` in the apiserver cert SANs, so TLS still verifies through the tunnel |
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| Variable | `TALOS_VM_IP` | the VM's libvirt address (default `192.168.122.173`) |
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| Variable | `TALOS_HOST` | the browser-facing host baked into Keycloak's issuer (default `localhost`, see §5) |
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The last step smokes `GET /openbaar/register` through the openbaar portal, which exercises
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portal → Caddy → BFF → projection. An empty register passes; a 502 does not.
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### Reaching the portals from a laptop
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The deployed portals are pinned to `http://localhost:30180` for Keycloak (§5), so a browser
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needs **all five** browser-facing ports on its own localhost — the portal alone is not
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enough, and a missing Keycloak shows up as `ERR_CONNECTION_REFUSED` on
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`/realms/*/.well-known/openid-configuration` followed by an opaque `ERROR Error: [object Object]`.
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`make k8s-portals` does this when kubectl can reach the cluster; through the lab server one
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SSH does it without a kubeconfig at all:
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```bash
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ssh -N -p 6667 \
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-L 30140:<TALOS_VM_IP>:30140 -L 30141:<TALOS_VM_IP>:30141 \
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-L 30142:<TALOS_VM_IP>:30142 -L 30143:<TALOS_VM_IP>:30143 \
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-L 30180:<TALOS_VM_IP>:30180 \
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user@labs.respellion.tech
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```
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Then the §5 table's URLs work as written. The admin UIs (OpenZaak, Flowable, …) need no
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forward — they are server-rendered, so the VM's address is fine.
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Not covered: the portals still need `make k8s-portals` (or an SSH forward) to be usable in a
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browser, because PKCE needs a secure context (§5). Giving the server a hostname + TLS is the
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upgrade path.
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## What is not ported
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- **Observability** (Tempo, Prometheus, Grafana) is defined but disabled — those are built
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Reference in New Issue
Block a user