The runbooks had drifted to the retired m8/m11p5 design while all m12 production reality (topology, perf, fixes, DR) sat only in a profiling doc no operator opens. This promotes that reality into the runbooks and fixes the contradictions. Contradictions fixed: - runbooks/cluster.md: the "NEITHER IS QUORUM-ACKED HA YET" status banner was FALSE (quorum-ack + automatic election have been live since m11p3/p4). Rewritten to state the deployed reality (single-StatefulSet full-placement RF3, rc7). - README.md: the cluster section called the HA cluster a "built-in simulated cluster / multi-region fabric" demo and showed promote-by-region as failover. Rewritten — real quorum HA, automatic failover, /cluster/promote is a maintenance verb. Kept the honest caveats (experimental gate, global-signals-only). Reality promoted into the runbooks: - Live topology (single STS, ns tidaldb-cluster, 3 voters, full-placement RF3, gRPC 9601/9602/9603, HTTPS+mTLS :9500), the five shipped fixes, and the real build+digest-pin procedure (cross-compile -> trixie -> amd64 PLATFORM manifest, not the index/attestation digest) in cluster.md + kubernetes.md. - Stale constants: soak ramp 3900 -> 200 rps; cluster grace 60 -> 600s; the pre-m12 4.5k/s signal-write perf table annotated + the 1536-D read reality added. - ops/capacity-planning.md: new "Ref-A 3-node fleet — measured capacity" section (read p99/ceiling, ~250 rps write knee, 1M needs >16GiB nodes, pod resources). - ops/recovery.md: new cluster-recovery routing section + scoped the quiesce-and- copy note to standalone (the cluster uses tidalctl + the DR runbook). New docs: - runbooks/disaster-recovery.md: the proven S3/R2 backup -> restore -> byte-verify -> query-proof procedure, full-cluster rebuild, PITR posture (previously undocumented despite being proven against real S3). - runbooks/on-call.md: incident response — symptom -> golden signal -> runbook, severity, escalation, and the open alert-wiring step. - runbooks/README.md: the runbook index + current production facts. Open follow-up (infra, not docs): ops/prometheus-alerts.yaml is accurate but design-reference; promoting it to a live PrometheusRule is the one unwired step.
6.2 KiB
tidalDB On-Call & Incident Response
First page to open during a tidalDB incident. Routes a symptom → the golden signal
that confirms it → the runbook that fixes it. For the operational API see
cluster.md; for k8s mechanics kubernetes.md; for
backup/restore disaster-recovery.md.
Ownership: the tidalDB maintainers (source: git.threesix.ai/jordan/tidaldb).
The live cluster runs in orchard9-k3sf (ns tidaldb-cluster); deployment history
is orchard9-k3sf/deployments/history/tidaldb.md; live state is
orchard9-k3sf/cluster-state.yaml.
0. First 60 seconds — orient
export KUBECONFIG=~/.kube/orchard9-k3sf.yaml
kubectl get pods -n tidaldb-cluster -l app.kubernetes.io/name=tidaldb -o wide # 3/3 Ready? restarts?
# health + leader (HTTPS + mTLS plane), via port-forward:
kubectl port-forward -n tidaldb-cluster tidaldb-0 19500:9500 >/dev/null 2>&1 &
curl -fsSk https://127.0.0.1:19500/health # ok:true + agreed leader across pods
curl -fsSk https://127.0.0.1:19500/cluster/status # per-shard leaders, commit index, quarantine, reseed
Golden signals (Grafana "tidalDB Overview" → Cluster Replication row, or /metrics):
| Signal | Metric | Healthy |
|---|---|---|
| Per-peer circuit breaker | tidaldb_cluster_peer_breaker_state |
0 (closed). 1 (open) on a live peer = the write-burst/partition pattern. |
| Commit progress / quorum lag | relay_durable_seq vs relay_last_seq |
lag bounded, advancing under load |
| Reseed pending | reseed_required |
0 |
| Election churn | leader_changes_total, election_term |
flat |
| Quorum timeouts | quorum_timeouts_total |
flat (a rising rate = writes can't reach quorum) |
| Divergence | divergence_quarantined |
0 |
1. Severity
| SEV | Definition | Examples |
|---|---|---|
| SEV1 | Writes unavailable or acked data at risk | quorum lost (≥2 voters down or both breakers stuck open), divergent prefix served, total cluster loss |
| SEV2 | Degraded but serving | one voter down (still 2/3 quorum), read p99 > 10 ms sustained, a pod CrashLooping, write-burst 503s on an old image |
| SEV3 | No user impact yet | single transient reseed, elevated election term, one breaker briefly open then clears, soak night failed |
2. Symptom → signal → runbook
| Symptom | Confirm with | Action |
|---|---|---|
| Pod CrashLooping ("reseed marker latched") | kubectl logs, reseed_required |
Reseed-loop is resolved on the live image (rc5+); a genuine reseed snapshot-installs and converges lag=0. If looping on an OLD image → roll to the live digest. [cluster.md reseed] |
| Writes 503 / quorum lost | /cluster/status (voters down?), quorum_timeouts_total rising |
One voter down is survivable (2/3). Both followers down → honest retryable 503 until one returns. Restart/replace the down voter; check node health. [cluster.md §9] |
| Write-burst 503-storm, no self-heal; both breakers stuck at 1 while peers alive | tidaldb_cluster_peer_breaker_state == 1 on live (heartbeating) followers |
Fixed in rc7 (write-burst false-partition). If on an older image, roll to ≥ rc7. Confirm the gauge clears as load eases. [cluster.md §9.1] |
| Stuck leader / dual-leader view (leader sees peers partitioned, reads 408) | /cluster/status disagrees across pods |
Restart the leader pod to force re-election; auto-election converges. [cluster.md §9] |
| Divergence / node serving a stale prefix | divergence_quarantined > 0 |
The node auto-quarantines (503 readiness) and reseeds without wiping — it never serves a divergent prefix. Let it reseed; verify it rejoins lag=0. [cluster.md §9.1] |
| Read p99 > 10 ms, reads hang | Grafana read-latency; check load spread | Read-SLA collapse was CPU oversubscription, fixed in rc12 (SEARCH_GATE + parallel scatter + cpu limit 3). Ensure reads are spread round-robin across all 3 pods; check the ~1000-rps read ceiling isn't exceeded. [capacity-planning.md] |
| OOMKilled | pod lastState.terminated.reason=OOMKilled |
1536-D full placement peaks ~1.9 GiB at 100k; 1M needs > 16 GiB nodes (≈7–8 GB/pod). Do not raise the limit past node headroom — it's a node-size limit. [capacity-planning.md] |
| One pod's PVC lost/corrupt | pod won't open its data dir | Delete that pod's PVC + pod → it reseeds fresh from the live quorum (snapshot install), converges lag=0. Do NOT object-store-restore for a single-pod loss. [ops/recovery.md] |
| Total cluster loss | — | Rebuild fresh + tidalctl restore each shard before boot. [disaster-recovery.md] |
| Soak night failed | kubectl get jobs -n tidaldb-cluster -l app.kubernetes.io/name=tidal-soak |
A FAIL resets the 30-night streak. Read the night's log for the SLO breach (p99 > 150 ms or error > 1%) or an under-load restart. [cluster.md §15] |
3. Alerting status (action required)
The alert rules in ../ops/prometheus-alerts.yaml
are accurate but DESIGN-REFERENCE — they are not yet loaded by the live
Prometheus. The rules already cover the must-watch signals
(TidalDBClusterBreakerOpen on peer_breaker_state == 1,
TidalDBClusterCommitIndexStall, TidalDBClusterElectionChurn,
TidalDBClusterQuorumTimeouts, DivergenceQuarantine, ReseedPending).
Open infra step: promote them into the observability stack as a PrometheusRule
(or vmalert rule file) so they actually page. Until then, on-call watches the
Grafana Cluster Replication row manually. This is the one item that is an
observability deployment, not a doc fix — track it in orchard9-k3sf.
4. Escalation
- Page the on-call operator → run §0, classify per §1.
- SEV1 (acked data at risk / writes down): stop further rollouts, capture
/cluster/status+ breaker gauge +kubectl logsfrom all 3 pods, then engage the tidalDB maintainers. Do not delete PVCs or force-promote under a divergence/quorum-loss condition without confirming the data-safety path incluster.md— the system is designed to quarantine rather than serve bad data; let it. - Record the incident + resolution in
orchard9-k3sf/deployments/history/tidaldb.md(newest first).