Implements tmp/tidaldb-fleet-hardening (20 planned tasks + 2 found by measurement). Ring 0 — restore verification. .woodpecker.yaml step pods ran at the namespace default of 1500m/2Gi, which OOMKilled a prior pipeline and starved the release gate past its budget. Both push-path steps now declare backend_options.kubernetes.resources as two YAML anchors declared once on their first consuming step. The values are CALIBRATED against measured free node capacity, not against the LimitRange max: `requests: cpu 2` (this roadmap's original figure) fits on NO node and would sit Pending forever, because `ci-build-bounds` grants permission and the nodes supply capacity, and those are not the same thing. The `nightly` cron described in this file for 216 days was never created, so tier-3 chaos, the fault classes, mTLS and the PITR test produced exactly zero signal while reading like standing coverage. nightly-chaos and nightly-security-ops now alias the anchors and have budgets matching the gate (their 120/90 were TIGHTER on the same runner, so they would have failed nightly for a budget reason, not a correctness one). nightly-soak is REMOVED, not scheduled: it drives 1000 rps for 600s gating on p99 <= 250ms, and the best node has 1700m free CPU, so it would fail on starvation rather than regression — manufacturing a nightly false alarm. Its commands move verbatim to docs/runbooks/nightly-soak.md. Ring 1 — four fabrications removed from the wire. - scatter_merge sorted and truncated without re-stamping rank, so /feed and /search returned 1,1,2 under full placement. Reuses merge_cross_shard's existing stamp; asserted on BOTH the multi-group merge path and the single-group [only] fast path that bypasses it. - aggregate_region_row's None arm invented `applied_events: 0` plus a deficit derived from it. applied_events/lag_events are now Option<u64>, null on the wire. leader_last_seq was also unwrap_or(0), so a node that could not reach the LEADER computed 0 - applied = 0 for every region and reported a converged cluster it had never measured — a fabrication pointing the dangerous way. - tidalctl inferred NO REPORT from `applied == 0 && lag > 0`. That heuristic was actively hiding the PVC-wipe shape: a measured zero with a real deficit rendered as "no report" instead of BEHIND. Now read off the wire; converged exits 0, partitioned still exits nonzero. - /sharded/* answered 201/204 for single-copy writes with nothing anywhere saying so. Now requires `x-tidal-ack: local`, rejecting with 400 via the existing invalid_input path. Six call sites migrated, not the two this roadmap predicted — including docs/runbooks/cluster.md §16.3, which told operators to run a quorum-write probe via POST /sharded/items. That probe cannot verify quorum: the surface applies locally with no WAL append. It was used as the safety check between every step of a staged deploy earlier today. Ring 2 — observability. JSON_LOGS was already implemented and the deployment simply never asked for it; the StatefulSet now sets it, plus TIDAL_SERVICE_NAME=tidaldb because enabling it silently renames the VictoriaLogs `service` stream field and would have blinded every query keyed on it. Adds tidaldb_usearch_replicated_vectors_total, incremented on BOTH the origin (wal_blob_first -> Ok(Some)) and the follower apply path — counting only the origin would mean each vector lands on exactly one node, replicas never agree, and the alert built on it pages forever. Found by measurement, not planned: the 401 path discarded every fact about every rejection. Traefik has served 101,858 rejected requests to the public ingress — 87.6% of all its traffic — with no record of who or why anywhere. unauthorized_response now emits reason (missing_token vs invalid_token, the distinction that separates a scanner from a rotation that missed a consumer) and the forwarded client. The token is never logged. Also: scripts/restore-fleet.sh --cluster started the soak monitor while deliberately leaving its gate suspended, orphaning a watcher that has reported "0/30 green nights" for 13 days. The pair now moves together. Doc-guard's three-warning backlog is cleared with real backfill for M4/M6/M12. Verified: fmt clean; clippy 5 crates 0 new warnings (74 vs 74 baseline, counted in a detached worktree at HEAD); lib 2110 passed; cluster_sharding 5; cluster_runbook 10; tidalctl 38; doc-guard 0 warnings. Playwright 32/34 with the two remaining failures asserting the rank fix against the not-yet-rolled image — they are the post-deploy proof.
11 KiB
Observability: usage, errors, and live debugging
Four surfaces, in the order you reach for them during an incident.
| Question | Surface |
|---|---|
| How much traffic, and how much of it is failing? | Grafana → tidalDB — usage, errors, and cluster health |
| What exactly failed, for which request? | VictoriaLogs, level:error, correlate on request_id — only after the JSON_LOGS roll; see §2 |
| Is the cluster converged right now? | tidalctl cluster-status / tidalctl watch |
| What does a query actually return? | tidalctl search / tidalctl feed |
1. Metrics
Every node serves Prometheus text on its --metrics address (:9091 in the
shipped manifests). Never expose that port externally — it is
unauthenticated. In-cluster it is reachable only from the observability
namespace (k8s/cluster/networkpolicy.yaml).
Two families answer the usage/error questions:
tidaldb_http_requests_total{route,method,status} counter
tidaldb_http_request_duration_us{route} histogram
route is the matched route template (/cluster/shards/{id}/transfer), not
the concrete path, so cardinality is bounded by the router rather than by
traffic. Unmatched requests collapse into a single <unmatched> bucket — a 404
flood cannot mint series.
These are published by tidal-server onto the engine's existing listener (via
MetricsState::set_extra_renderer), so a node remains one scrape target.
Useful queries:
# request rate by route
sum by (route) (rate(tidaldb_http_requests_total[5m]))
# server-fault ratio
sum(rate(tidaldb_http_requests_total{status=~"5.."}[5m]))
/ sum(rate(tidaldb_http_requests_total[5m]))
# who is being refused, and where
sum by (status, route) (rate(tidaldb_http_requests_total{status=~"401|403"}[5m]))
# client-observed p99, in ms
histogram_quantile(0.99,
sum by (route, le) (rate(tidaldb_http_request_duration_us_bucket[5m]))) / 1000
Read 403 precisely: it means a valid data bearer was used against an
operator verb (/cluster/*). A sustained 403 rate is a client holding the wrong
key, or someone probing — not a server fault.
Dashboard
docs/ops/grafana-tidaldb.json is the source of truth, mirrored into the fleet
as the tidaldb-overview.json key of the grafana-database-dashboards
ConfigMap — the same convention docs/ops/prometheus-alerts.yaml follows. Edit
here, then mirror. It lands in Grafana's Databases folder as
tidaldb-overview.
2. Logs
Set JSON_LOGS=1 (or TIDAL_LOG_FORMAT=json) to emit one JSON object per line
in the collector's wire format:
{"ts":"2026-08-23T15:57:57.090256Z","level":"info","service":"tidal-server",
"env":"prod","msg":"committing 5","target":"tantivy::indexer","request_id":"418"}
Why it matters: the fleet's Vector collector parses each line as JSON and, on
success, replaces the event with that object; on failure it keeps the text and
stamps level = "info". Without JSON, every tidalDB line was recorded as
info and level:error matched nothing — errors were collected but invisible.
levelis lowercase, matching the collector's enum (critical|error|warn|info|debug).request_idfrom the per-request span appears on every line emitted inside it, so one request's work is correlatable rather than grep-adjacent.targetis the real module even for dependencies logging through thelogcrate (their bridge metadata is pruned rather than indexed forever).- ANSI colour is off in both formats. It used to leak escape codes into stored logs.
Tunables: TIDAL_SERVER_LOG (env-filter, e.g.
tidal_server=debug,tantivy=warn,info to quiet a noisy dependency),
TIDAL_SERVICE_NAME, TIDAL_ENV.
TIDAL_SERVICE_NAME is not cosmetic here. service is one of the collector's
four _stream_fields, so its value is index identity. Plain-text lines carry no
service and Vector substitutes the container name, tidaldb; the JSON emitter
sets its own, defaulting to tidal-server. The cluster StatefulSet therefore
pins TIDAL_SERVICE_NAME=tidaldb so the stream does not rename itself the moment
the format changes. TIDAL_ENV is unset in the cluster, so env is absent from
its lines rather than guessed — do not filter on it.
Querying the log store
Two things silently break a LogsQL query against tidalDB, and both fail as an empty result — which reads exactly like a healthy cluster.
1. The namespace field is unit, not kubernetes.pod_namespace. Vector's
normalize transform does del(.kubernetes) and writes the namespace to unit
(and the node to host, the pod and container to k8s_pod / k8s_container).
A query keyed on the Kubernetes field matches nothing, forever. This document
shipped that broken selector; measured against the live store on
2026-08-31T02:24Z, same 15-minute window, same cluster:
_time:15m AND kubernetes.pod_namespace:tidaldb-cluster | stats count() n
-> {"n":"0"} # the selector is wrong, not the cluster
_time:15m AND unit:tidaldb-cluster | stats count() n
-> {"n":"248"} # same window, correct field
So always run the unfiltered count first. Zero total lines means a broken selector. Only once that number is non-zero does a zero error count mean anything.
2. level, request_id, target and every other structured field exist only
once JSON_LOGS is on. Until the pods restart with it, Vector cannot parse the
line, keeps the text as msg, and stamps level = "info" — so level:error
matches nothing no matter how healthy or unhealthy the cluster is, and every WARN
is filed as info. Pre-roll reading, same window:
_time:15m AND unit:tidaldb-cluster | stats by (level) count() n
-> {"level":"info","n":"248"} # ONE bucket: nothing is being classified
_time:15m AND unit:tidaldb-cluster AND level:error | stats count() n
-> {"n":"0"} # meaningless pre-roll, not reassuring
_time:1h AND unit:tidaldb-cluster AND request_id:* | stats count() n
-> {"n":"0"} # the field does not exist yet
(The counts move — _time:15m is a sliding window, and two runs a minute apart
returned 247 and 248. The load-bearing observation is the number of buckets,
not the number of lines: one bucket means the classifier never ran.)
The store itself is fine — level:error already works for services that emit
JSON: _time:15m AND level:error | stats by (service) count() n returns
{"service":"relay","n":"189"}, {"service":"external-secrets","n":"2"}.
tidalDB was simply not speaking the format. Deploy status is tracked in
docs/runbooks/deploy-verification.md §9.3.
Post-roll, these are the queries. Each pairs with its own discriminator so a zero is readable:
# is anything arriving at all? (run this first, every time)
_time:15m AND unit:tidaldb-cluster | stats count() n
# how is it being classified? more than one bucket == JSON_LOGS is live
_time:15m AND unit:tidaldb-cluster | stats by (level) count() n
# errors, last 15 minutes
_time:15m AND unit:tidaldb-cluster AND level:error
# one request end to end
_time:1h AND unit:tidaldb-cluster AND request_id:418
# one pod
_time:15m AND unit:tidaldb-cluster AND k8s_pod:tidaldb-0 AND level:error
# search the message text — the field is _msg, NOT msg (see below)
_time:15m AND unit:tidaldb-cluster AND _msg:rejected AND _msg:request
Run them with:
kubectl -n observability exec deploy/vmagent -- sh -c \
'wget -qO- --timeout=25 --post-data="query=<QUERY>" \
http://victoria-logs:9428/select/logsql/query'
The message field is _msg, not msg. Vector's sink declares
_msg_field: msg, so VictoriaLogs renames it on ingest. msg:rejected parses
fine and matches nothing, forever — the same silent-zero failure as the namespace
field above. Verified 2026-08-31: _msg:compaction returns {"n":"229"} while
msg:compaction in the same position returns empty.
Keep double quotes out of the query. The runner above already wraps the query
in a double-quoted --post-data="query=…", so a quoted phrase like
_msg:"rejected request" terminates the shell quoting and wget dies with
bad address 'request | stats…'. Bare tokens (request_id:418) and ANDed word
filters (_msg:rejected AND _msg:request) need no quotes and cannot break.
3. Live debugging with tidalctl
Every other tidalctl command reads a data directory at rest — some require
a stopped node. These take --url and talk to a running server.
export TIDAL_API_KEY=... # or pass --key
# Is it converged? Exits 2 when not, so it gates a deploy.
tidalctl cluster-status --url http://127.0.0.1:9500
# Watch convergence (Ctrl-C to stop, or bound it with --count)
tidalctl watch --url http://127.0.0.1:9500 --interval 5 --count 12
# What does a query actually return?
tidalctl search --url http://127.0.0.1:9500 --query "cold brew" --limit 5
tidalctl feed --url http://127.0.0.1:9500 --profile trending --user-id 42
TLS. A cluster node's client port is served with the internal cluster CA,
issued for in-cluster DNS names, so a port-forward fails both CA and hostname
verification. Pin the CA with --ca ca.pem, or use --insecure for a local
forward:
kubectl -n tidaldb-cluster port-forward svc/tidaldb 9500:9500 &
tidalctl cluster-status --url https://127.0.0.1:9500 --insecure
Exit codes follow the crate contract: 0 ok, 1 usage error, 2 degraded —
unreachable, non-2xx, or not converged. A 403 response prints the hint to use
the admin key.
4. Known caveat: the aggregated /cluster/status under-reports peers
The aggregated view can report a peer it holds no frontier report for as
applied_events: 0, and derive lag_events against that zero — so a fully
converged peer appears to be the leader's entire history behind, sometimes with
reachable: false / partitioned: true alongside.
Observed 2026-08-23: two healthy nodes shown as UNREACHABLE PARTITIONED at
13.3M lag, while every node's own /cluster/status/local reported lag=0,
reseed_required=false, and identical per-group frontiers. Pod-to-pod
connectivity was open and no error was logged.
tidalctl cluster-status detects that signature (applied == 0 with non-zero
lag) and prints NO REPORT (aggregated view; query the node directly)
rather than repeating it as replication lag. A genuine lag report — non-zero
applied with non-zero lag — still reports BEHIND.
When you see NO REPORT, confirm against the nodes themselves before
treating it as an incident:
for i in 0 1 2; do
kubectl -n tidaldb-cluster port-forward tidaldb-$i 1970$i:9500 >/dev/null 2>&1 &
sleep 8
curl -sk -H "Authorization: Bearer $TIDAL_API_KEY" \
"https://127.0.0.1:1970$i/cluster/status/local" | jq '{region, reseed_required, shards}'
kill %1
done
The underlying reporting gap in the aggregated surface is open work; it is a reporting defect, not a replication one.