## Why None of the 8 CNPG Postgres clusters in this repo had **any** backup configured. A lost PVC, a fat-fingered migration, or a bad app deploy meant permanent, unrecoverable data loss for authentik, litellm, artifactapi, woodpecker, puppet, encapi, paperclip and grafana. This adds continuous WAL archiving + a nightly base backup to Ceph RGW for every cluster, plus code-forward restore docs. ## What - **`spec.backup.barmanObjectStore`** on each `cnpg_cluster.yaml` — turns on continuous WAL archiving to `s3://cnpg-<app>`, WAL compressed with zstd, base backups with bzip2, 30-day retention. TLS to `s3.ceph.unkin.net` is trusted via the reflected `vault-ca-cert` (`endpointCA`). - **`cnpg_backup.yaml`** per app — a cephrgw `ObjectStoreUser` + `Bucket` (operator provisions the bucket and mints the S3 key into `cnpg-<app>-backup-s3`; **nothing is hardcoded**) and a staggered nightly `ScheduledBackup`. - **`schemas/ceph.unkin.net/*.json`** — the three cephrgw CRD schemas so kubeconform can validate the new CRs. - **`docs/`** — new docs folder (README index + `cnpg-backups.md` + `cnpg-restore.md`). ## Design decisions (answers to the open questions) **One bucket for all, or per-database?** → **Per-database (one bucket + owner user per cluster).** The cephrgw CRDs are namespace-scoped (`BucketRef`/`OwnerRef` resolve only *within the same namespace*), and CNPG reads its S3 credential Secret from its *own* namespace. A single shared bucket would require either cross-namespace bucket refs (unsupported) or hand-copying the S3 secret into all 8 namespaces (defeats "operator mints the keys"). Per-namespace `s3://cnpg-<app>` with a dedicated owner user is the simplest correct topology and needs zero manual seeding. Each user owns exactly one bucket, so owner-level (full) access is already tightly scoped — no extra `BucketAccess` grant needed. **Backup mechanism.** The deployed CNPG operator is **v1.28** (helm chart `cloudnative-pg-0.27.0`, appVersion 1.28.0). 1.26+ deprecates the in-tree `barmanObjectStore` in favour of the Barman Cloud Plugin, but the plugin is **not deployed**, and `barmanObjectStore` is still fully functional on 1.28. So this uses the in-tree mechanism. Migrating to the plugin is a follow-up (noted in `docs/cnpg-backups.md`). ## Schedule / retention (defaults — Ben to adjust) | App | Cluster | Bucket | Nightly base backup | | --- | --- | --- | --- | | authentik | postgres | cnpg-authentik | 01:00 | | litellm | litellm-postgres | cnpg-litellm | 01:20 | | artifactapi | postgres | cnpg-artifactapi | 01:40 | | woodpecker | woodpecker-postgres | cnpg-woodpecker | 02:00 | | puppet | puppet-postgres | cnpg-puppet | 02:20 | | encapi | postgres | cnpg-encapi | 02:40 | | paperclip | paperclip-postgres | cnpg-paperclip | 03:00 | | grafana | postgres | cnpg-grafana | 03:20 | Retention is **30d** across the board — flagged as a default to tune per cluster. Schedules are staggered 20 min apart so 8 base backups don't hit RGW at once. ## Validation - `kustomize build --enable-helm` + `kubeconform` (repo CI args, incl. the new ceph schemas) pass on all 8 affected overlays (paperclip validated at base — it has no overlay yet). ceph CRs resolve their schemas (`Skipped: 0`). - `pre-commit run` passes on all changed files (yamllint, no-plain-secrets, etc.). - Note: a full `ci/validate-apps.sh` run aborts locally on the unrelated `cattle-system` overlay (`chart requires kubeVersion < 1.35 vs host helm v1.36.0`) — pre-existing, reproduces on `origin/main`, unrelated to this change. ## Notes / caveats - No overlap with the woodpecker chart-bump PR (#297, overlay files only) or the logging PR (#296) beyond the three **identical** generated `schemas/ceph.unkin.net/*.json` files, which merge cleanly whichever lands first. - Credentials: no manual seeding — the cephrgw-operator mints the RGW user + keys. The only prerequisite is the operator being healthy (it is, in `cephrgw-system`). ## Follow-ups - Barman Cloud Plugin migration (deploy plugin, move clusters to `ObjectStore` CRs). - Tune per-cluster retention / schedule if the defaults don't fit. https://claude.ai/code/session_015ur3i7D2azsMAWTSVABApv Reviewed-on: #298 Co-authored-by: Ben Vincent <ben@unkin.net> Co-committed-by: Ben Vincent <ben@unkin.net>
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CNPG restore
Recovery is always into a new Cluster that bootstraps from the object store —
CNPG never restores in place. The source backups live in s3://cnpg-<app> under
serverName: <app> (see cnpg-backups.md). Do all of this in the
source cluster's namespace so the cnpg-<app>-backup-s3 Secret and vault-ca-cert
are present.
(a) Full restore into a new cluster
Recover the latest available state into a fresh cluster named postgres-restore.
The externalClusters entry points at the existing backup path; serverName
under barmanObjectStore (the new cluster's own archive target) MUST differ from the
source, or the restored cluster will overwrite the archive it just recovered from.
apiVersion: postgresql.cnpg.io/v1
kind: Cluster
metadata:
name: postgres-restore
namespace: <app>
spec:
instances: 3
imageName: ghcr.io/cloudnative-pg/postgresql:18.1-system-trixie # match source
storage:
size: 20Gi
storageClass: cephrbd-fast-delete
bootstrap:
recovery:
source: source-archive # references externalClusters below
# New archive target — DIFFERENT serverName from the source (avoids collision).
backup:
retentionPolicy: 30d
barmanObjectStore:
destinationPath: s3://cnpg-<app>
endpointURL: https://s3.ceph.unkin.net
endpointCA: {name: vault-ca-cert, key: ca.crt}
s3Credentials:
accessKeyId: {name: cnpg-<app>-backup-s3, key: AWS_ACCESS_KEY_ID}
secretAccessKey: {name: cnpg-<app>-backup-s3, key: AWS_SECRET_ACCESS_KEY}
serverName: <app>-restored # NOT "<app>"
wal: {compression: zstd}
data: {compression: bzip2}
externalClusters:
- name: source-archive
barmanObjectStore:
destinationPath: s3://cnpg-<app>
endpointURL: https://s3.ceph.unkin.net
endpointCA: {name: vault-ca-cert, key: ca.crt}
s3Credentials:
accessKeyId: {name: cnpg-<app>-backup-s3, key: AWS_ACCESS_KEY_ID}
secretAccessKey: {name: cnpg-<app>-backup-s3, key: AWS_SECRET_ACCESS_KEY}
serverName: <app> # the SOURCE archive to read from
kubectl apply -f postgres-restore.yaml
kubectl -n <app> get cluster postgres-restore -w # wait for Cluster in healthy state
(b) Point-in-time recovery (PITR)
Same as above, but add recoveryTarget to stop replay at a timestamp. WAL is
replayed from the most recent base backup up to targetTime.
bootstrap:
recovery:
source: source-archive
recoveryTarget:
# RFC3339 with timezone. Also valid: targetLSN, targetXID, targetName.
targetTime: "2026-07-26 14:30:00.000000+00"
# List backups to pick a base that precedes your target time
kubectl -n <app> get backups.postgresql.cnpg.io \
-o custom-columns=NAME:.metadata.name,START:.status.startedAt,STOP:.status.stoppedAt
To recover from one specific base backup instead of the newest, point the
source at a Backup object:
externalClusters:
- name: source-archive
# ...barmanObjectStore as above...
bootstrap:
recovery:
backup:
name: <backup-object-name>
recoveryTarget:
targetTime: "2026-07-26 14:30:00+00"
(c) Verify, then cut over
# 1. Sanity-check the recovered data before touching production.
kubectl cnpg psql postgres-restore -n <app> -- -c '\l'
kubectl cnpg psql postgres-restore -n <app> -d <db> -- \
-c 'select max(id), count(*) from <sanity_table>;'
# 2. Confirm the restored cluster is archiving to its NEW serverName.
kubectl cnpg status postgres-restore -n <app>
Cutover = repoint the app at the new cluster. CNPG service names track the Cluster
name (<cluster>-rw / -ro / -r), so update whatever the app connects through —
the CNPG Pooler (cnpg_pooler.yaml) cluster.name, or the app's DB host env — to
postgres-restore, then retire the old cluster. There is no in-place rename; the new
name is the cluster's identity. If you truly need the old name back, restore again
with metadata.name set to the original (after deleting the old one).
(d) Gotchas
- serverName collision. The new cluster's
spec.backup...serverNamemust differ from the source's, or it re-uses the same path and corrupts/overwrites the source archive on its first WAL push. Use<app>-restored(or similar) as above. - Secrets must exist in the target namespace.
cnpg-<app>-backup-s3andvault-ca-certare referenced by bothexternalClustersandbackup. Restoring into a different namespace means recreating (or reflecting) those first — theObjectStoreUser/BucketCRs are namespace-scoped. - Match the image major. Bootstrap-recovery replays WAL; use the same
imageNamePostgres major as the source (mismatched majors will refuse to start). - PITR base must precede the target.
targetTimehas to fall after a completed base backup's start; otherwise there's nothing to replay onto. recoveryTargetis one-shot. It only applies during bootstrap. Once promoted, the cluster is a normal primary — you can't "re-PITR" it; start a new restore.