Files
terdut-operator/examples/demo
Niklas Ye 6a699d4341 Let TerdutServer customize its pod, and never manage its own ingress
spec.pod (api/v1alpha1/terdutserver_types.go): annotations, nodeSelector,
tolerations, affinity, topologySpreadConstraints, resources, pod and
container securityContext, serviceAccountName, extraEnv/extraEnvFrom,
extraVolumes/extraVolumeMounts, imagePullSecrets, and an optional
disruptionBudget. All direct corev1 passthrough -- no wrapper types buy
anything for any of these, matching how CloudNativePG and the Zalando
postgres-operator both expose the same knobs, and matching this repo's
own SweeperSpec precedent ("wrap only when a round-trip through a
different type buys something"). affinity is pure user-supplied
passthrough, not a toggle-plus-generated-default the way a multi-replica
cluster operator's pod anti-affinity usually is: this operator never
auto-generates one, since spec.replicas above 1 isn't a supported
topology (the sweeper/notifier singleton constraint). Considered and
declined for this round: priorityClassName, pod labels beyond
annotations, and a HorizontalPodAutoscaler -- the last of those would
directly contradict the singleton constraint above.

disruptionBudget is the one field here that isn't a plain PodTemplateSpec
knob: when set, the controller now reconciles a PodDisruptionBudget
selecting the TerdutServer's own pods (new terdutserver_pdb.go); clearing
it deletes any it previously created. New RBAC marker on
poddisruptionbudgets to match.

Driven by a public-release pass: looking past this project's own use case
at what a mature, general-purpose operator CRD exposes here (researched
against Zalando postgres-operator and CloudNativePG specifically), not
just the fields this install happened to need.

Separately, and found while answering a question about exposing
TerdutServer through Istio instead of Gateway API: spec.networking's own
doc comment quietly promised a Gateway API HTTPRoute this operator would
build eventually ("a near-term follow-up, not deferred"). That promise is
wrong for a public release -- an operator managing someone's ingress
mechanism for them is a worse default than not touching it at all, and a
surprise HTTPRoute appearing once that follow-up eventually landed would
have been exactly backwards for an Istio (or plain-Ingress, or
intentionally-unexposed) install. Made the non-goal explicit and
permanent instead (DESIGN.md §1), removed the dead `gatewayListener`
field it was the only consumer of (zero runtime call sites anywhere --
setting it already had no effect, so this is a schema cleanup, not a
behavior change), and corrected ROADMAP.md's framing. hostname/servicePort
stay: both are live (TERDUT_PUBLIC_URL, container/Service port), this
operator just never acts on hostname for exposure. Added
examples/networking (Gateway API HTTPRoute, Istio VirtualService) showing
how to expose the plain ClusterIP Service the operator already creates --
outside the operator itself, as illustrations, not as something
examples/demo applies automatically.

No new terdut-server version requirement: both changes are CRD/controller-
only, nothing about the API this operator's bootstrap flow depends on
changed.
2026-10-02 18:50:38 +02:00
..

Demo

Every CRD this operator reconciles, wired into one working install: one TerdutServer, two TerdutTeams (Platform and Payments) each with their own TerdutEscalationRule, TerdutDeadmanSwitch and TerdutAlertSource, plus a script that fires synthetic Alertmanager webhooks at it so you can watch real incidents appear, escalate and resolve.

This is a demo kit, not a reference deployment: 00-postgres.yaml runs Postgres with emptyDir storage and a password committed in this directory. Throw the whole namespace away when you're done.

Prerequisites

  • The operator and its CRDs installed and running (make install deploy IMG=..., or charts/terdut-operator — see this repo's own README.md/DESIGN.md), pointed at a cluster you're fine creating throwaway resources in. A kind cluster is the easy choice.
  • kubectl, jq, curl on your path.

Apply this into a namespace of its own. Every object name in this directory is prefixed terdut-operator-demo specifically so applying it by mistake into some other namespace that already has unrelated objects doesn't collide with them -- but that only helps if this directory's own objects don't collide with each other across two applies. Applying it twice into two different namespaces is fine; applying it a second time into a namespace that already has something else named terdut-demo (a real install from following terdut-operator's own repo along, say) is exactly the mistake this prefix exists to avoid, and it only works if you don't override these names yourself.

Apply it

kubectl create namespace terdut-operator-demo
kubectl apply -n terdut-operator-demo -k .

Listed and applied in dependency order (server → team → everything that teamRefs it), but you don't have to preserve that order yourself: every controller here re-queues and waits rather than failing when a ref isn't resolvable yet (kubectl describe shows Reason: TeamRefNotFound / WaitingForTeam while that settles).

Watch it converge:

kubectl get terdutservers,terdutteams,terdutescalationrules,terdutdeadmanswitches,terdutalertsources \
  -n terdut-operator-demo

The operator's own Deployment template now carries a wait-for-postgres init container (same fix as charts/terdut-server's chart as of v0.33.2), so terdut-operator-demo's pod should come up clean even against this brand-new Postgres doing its very first boot — no CrashLoopBackOff expected here.

Once terdut-operator-demo's own Ready condition is True, everything downstream of it should settle within a reconcile interval or two.

See the web UI

The operator never creates any external exposure for a TerdutServer -- that's a permanent non-goal (DESIGN.md §1), not a missing feature, so this demo just reaches it the simplest way there is:

kubectl -n terdut-operator-demo port-forward svc/terdut-operator-demo 8080:8080

and open http://localhost:8080. See ../networking for worked examples of exposing it for real (Gateway API, Istio, or a plain Ingress) instead.

First login

The operator's own bootstrap (DESIGN.md §6) creates the first user through /api/bootstrap and immediately mints itself a service-account token from it — that account has no password, so there's nothing to sign in with yet. signup_mode also defaults to invite_only, so open signup needs turning on first, using the admin token the operator generated for itself:

# Which namespace the operator itself runs in:
kubectl get deploy -A -l control-plane=controller-manager

# The Secret holding the operator's own admin token for this TerdutServer
# (cross-namespace from terdut-operator-demo, per DESIGN.md §7):
secretname=$(kubectl -n terdut-operator-demo get terdutserver terdut-operator-demo \
  -o jsonpath='{.status.credentialsSecretRef.name}')
token=$(kubectl -n <operator-namespace-from-above> get secret "$secretname" \
  -o jsonpath='{.data.token}' | base64 -d)

curl -X PUT http://localhost:8080/api/admin/settings \
  -H "Authorization: Bearer $token" -H 'Content-Type: application/json' \
  -d '{"signup_mode":"open"}'

Then sign up through the UI as a normal human account. 04-escalation-platform.yaml names a user alice at its first escalation level — sign up as alice if you want that level to mean something rather than falling through to on-call after 5 minutes.

Fire some alerts

In another terminal, with the port-forward above still running:

export NAMESPACE=terdut-operator-demo

./fire-alerts.sh platform high-cpu
./fire-alerts.sh platform disk-full
./fire-alerts.sh payments pod-crash

# Watch it open an incident, escalate per 04/05-escalation-*.yaml's
# levels, and show up on the Platform/Payments team's own incident list.

./fire-alerts.sh platform high-cpu resolve

fire-alerts.sh -h (or any bad argument) prints the full scenario list. Each (team, scenario) pair is one stable fingerprint, so firing the same one twice updates the same alert (a real re-fire) and resolve closes exactly that one.

Dead man's switches

06-deadman-platform.yaml / 07-deadman-payments.yaml expect a heartbeat alert on a 15-minute timeout:

./fire-alerts.sh platform heartbeat

Keep sending that (e.g. a watch -n 60) and nothing happens — that's the point. Stop sending it and, 15 minutes after the last one, terdut-server opens a critical incident on its own, with no webhook involved: proof the switch is watching for silence, not for a signal.

Tear down

kubectl delete namespace terdut-operator-demo

The operator's own finalizers clean up everything cross-namespace (credentials Secrets in the operator's namespace, server-side team/rule/ integration rows) before this namespace's objects actually disappear — give it a few seconds past the kubectl delete returning.