- Migrate Immich (8 NFS PVs, 1.1TB) from TrueNAS to Proxmox host NFS - Update config.tfvars nfs_server to 192.168.1.127 (Proxmox) - Update nfs-csi StorageClass share to /srv/nfs - Update scripts (weekly-backup, cluster-healthcheck) to Proxmox IP - Delete obsolete TrueNAS scripts (nfs_exports.sh, truenas-status.sh) - Rewrite nfs-health.sh for Proxmox NFS monitoring - Update Freedify nfs_music_server default to Proxmox - Mark CloudSync monitor CronJob as deprecated - Update Prometheus alert summaries - Update all architecture docs, AGENTS.md, and reference docs - Zero PVs remain on TrueNAS — VM ready for decommission Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
271 lines
13 KiB
Markdown
271 lines
13 KiB
Markdown
# Storage Architecture
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Last updated: 2026-04-13
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## Overview
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The cluster uses two storage backends: **Proxmox CSI** for database block storage and **Proxmox NFS** for application data.
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**Block storage (Proxmox CSI)**: 65 PVCs for databases and stateful apps (CNPG PostgreSQL, MySQL InnoDB, Redis, Vaultwarden, Prometheus, Nextcloud, Calibre-Web, Forgejo, FreshRSS, ActualBudget, NovelApp, Headscale, Uptime Kuma, etc.) use `StorageClass: proxmox-lvm`, which provisions thin LVs directly from the Proxmox host's `local-lvm` storage (sdc, 10.7TB RAID1 HDD thin pool). This eliminates the previous double-CoW (ZFS + LVM-thin) path that caused 56 ZFS checksum errors.
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**NFS storage (Proxmox host)**: ~100 NFS shares for media libraries (Immich, audiobookshelf, servarr, navidrome), backup targets (`*-backup/` directories), and app data are served directly from the Proxmox host at `192.168.1.127`. Two NFS export roots exist:
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- **HDD NFS**: `/srv/nfs` on ext4 LV `pve/nfs-data` (2TB) — bulk media and backup targets
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- **SSD NFS**: `/srv/nfs-ssd` on ext4 LV `ssd/nfs-ssd-data` (100GB) — high-performance data (Immich ML)
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Both `StorageClass: nfs-truenas` (name kept for compatibility) and `StorageClass: nfs-proxmox` (identical) point to the Proxmox host. Migrated from TrueNAS (10.0.10.15) which has been fully decommissioned.
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**Backup storage (sda)**: 1.1TB RAID1 SAS disk, VG `backup`, LV `data` (ext4), mounted at `/mnt/backup` on PVE host. Dedicated backup disk for weekly PVC file backups, NFS mirrors, pfSense backups, and PVE config. Independent of live storage (sdc).
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**Migration (2026-04-02)**: All iSCSI block volumes were migrated from democratic-csi (TrueNAS iSCSI → ZFS → LVM-thin) to Proxmox CSI (direct LVM-thin hotplug). democratic-csi iSCSI driver has been removed.
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**Migration (2026-04)**: TrueNAS (10.0.10.15) fully decommissioned. All NFS storage migrated to the Proxmox host (192.168.1.127). ZFS datasets under `/mnt/main/` and `/mnt/ssd/` moved to ext4 LVs at `/srv/nfs/` and `/srv/nfs-ssd/`. Legacy PVs referencing `/mnt/main/` paths still work (bind-mounted or symlinked on the Proxmox host); new PVs use `/srv/nfs/` and `/srv/nfs-ssd/`.
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## Architecture Diagram
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```mermaid
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graph TB
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subgraph Proxmox["Proxmox Host (192.168.1.127)"]
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sdc["sdc: 10.7TB RAID1 HDD<br/>VG pve, LV data (thin pool)<br/>65 proxmox-lvm PVCs"]
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sda["sda: 1.1TB RAID1 SAS<br/>VG backup, LV data (ext4)<br/>/mnt/backup"]
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NFS_HDD["LV pve/nfs-data (2TB ext4)<br/>/srv/nfs<br/>~100 NFS shares<br/>Media + backup targets"]
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NFS_SSD["LV ssd/nfs-ssd-data (100GB ext4)<br/>/srv/nfs-ssd<br/>High-performance data<br/>(Immich ML)"]
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NFS_Exports["NFS Exports<br/>managed by /etc/exports"]
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NFS_HDD --> NFS_Exports
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NFS_SSD --> NFS_Exports
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end
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subgraph K8s["Kubernetes Cluster"]
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CSI_NFS["nfs-csi driver<br/>StorageClass: nfs-truenas / nfs-proxmox<br/>soft,timeo=30,retrans=3"]
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CSI_PVE["Proxmox CSI plugin<br/>StorageClass: proxmox-lvm"]
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NFS_PV["NFS PersistentVolumes<br/>RWX, ~100 volumes"]
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Block_PV["Block PersistentVolumes<br/>RWO, 65 PVCs"]
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Pods["Application Pods"]
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DBPods["Database Pods<br/>PostgreSQL CNPG<br/>MySQL InnoDB"]
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end
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NFS_Exports -->|NFS mount| CSI_NFS
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sdc -->|LVM-thin hotplug| CSI_PVE
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CSI_NFS --> NFS_PV
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CSI_PVE --> Block_PV
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NFS_PV --> Pods
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Block_PV --> DBPods
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style Proxmox fill:#e1f5ff
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style K8s fill:#fff4e1
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style NFS_HDD fill:#c8e6c9
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style NFS_SSD fill:#ffe0b2
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```
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## Components
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| Component | Version/Config | Location | Purpose |
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|-----------|---------------|----------|---------|
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| **Proxmox CSI plugin** | Helm chart | Namespace: proxmox-csi | Block storage via LVM-thin hotplug |
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| **StorageClass `proxmox-lvm`** | RWO, WaitForFirstConsumer | Cluster-wide | Databases and stateful apps |
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| Proxmox NFS (HDD) | LV `pve/nfs-data`, 2TB ext4 | 192.168.1.127:/srv/nfs | Bulk NFS data for all services |
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| Proxmox NFS (SSD) | LV `ssd/nfs-ssd-data`, 100GB ext4 | 192.168.1.127:/srv/nfs-ssd | High-performance data (Immich ML) |
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| nfs-csi | Helm chart | Namespace: nfs-csi | NFS CSI driver |
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| StorageClass `nfs-truenas` | RWX, soft mount | Cluster-wide | NFS storage (name kept for compatibility, points to Proxmox) |
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| StorageClass `nfs-proxmox` | RWX, soft mount | Cluster-wide | NFS storage (identical to nfs-truenas) |
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| TF module `nfs_volume` | `modules/kubernetes/nfs_volume/` | Infra repo | Static NFS PV/PVC factory |
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| ~~TrueNAS VM~~ | **DECOMMISSIONED** | Was VMID 9000 at 10.0.10.15 | Replaced by Proxmox NFS (2026-04) |
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| ~~democratic-csi-iscsi~~ | **REMOVED** | Was namespace: iscsi-csi | Replaced by Proxmox CSI (2026-04-02) |
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| ~~StorageClass `iscsi-truenas`~~ | **REMOVED** | Was cluster-wide | Replaced by `proxmox-lvm` |
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## How It Works
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### NFS Storage Flow
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1. **Directory creation**: NFS share directories are created under `/srv/nfs/<service>` (HDD) or `/srv/nfs-ssd/<service>` (SSD) on the Proxmox host
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2. **Export configuration**: `/etc/exports` on the Proxmox host lists per-directory NFS exports
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3. **Terraform module**: Stacks use `modules/kubernetes/nfs_volume/` to declaratively create static PV + PVC pairs:
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```hcl
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module "nfs_data" {
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source = "../../modules/kubernetes/nfs_volume"
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name = "immich-data"
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namespace = kubernetes_namespace.immich.metadata[0].name
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nfs_server = var.nfs_server # 192.168.1.127
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nfs_path = "/srv/nfs/immich"
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}
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```
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4. **Pod mount**: Applications reference PVCs in their deployment specs
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5. **Mount options**: All NFS mounts use `soft,timeo=30,retrans=3` (set in StorageClass) to prevent indefinite hangs
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**Note**: Some legacy PVs still reference `/mnt/main/<service>` paths. These work via compatibility symlinks/bind-mounts on the Proxmox host. New PVs should use `/srv/nfs/<service>` or `/srv/nfs-ssd/<service>`.
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**CRITICAL**: Never use inline `nfs {}` blocks in pod specs — they default to `hard,timeo=600` which causes 10-minute hangs on network issues. Always use the `nfs-truenas` or `nfs-proxmox` StorageClass via PVCs.
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### Block Storage Flow (Proxmox CSI) — NEW
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1. **PVC creation**: Pod requests a PVC with `storageClass: proxmox-lvm`
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2. **CSI provisioning**: Proxmox CSI plugin calls the Proxmox API to create a thin LV in the `local-lvm` storage
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3. **SCSI hotplug**: The thin LV is hotplugged as a VirtIO-SCSI disk directly into the K8s node VM
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4. **Filesystem**: CSI formats the disk as ext4 and mounts it into the pod
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5. **Exclusive access**: RWO only — disk is attached to one VM at a time
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6. **Topology**: Nodes are labeled with `topology.kubernetes.io/region=pve` and `zone=pve` for scheduling
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**Key advantage**: Single CoW layer (LVM-thin only). No ZFS, no iSCSI network hop, no double-CoW corruption.
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**Proxmox API token**: `csi@pve!csi-token` with CSI role (`VM.Audit VM.Config.Disk Datastore.Allocate Datastore.AllocateSpace Datastore.Audit`). Stored in Vault at `secret/viktor`.
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### iSCSI Storage Flow (DEPRECATED — replaced 2026-04-02)
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> **This section is historical.** All iSCSI PVCs have been migrated to Proxmox CSI (`proxmox-lvm`). The democratic-csi iSCSI driver is pending removal.
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1. ~~Zvol creation: democratic-csi creates ZFS zvols under `main/iscsi/<pvc-name>` via SSH commands~~
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2. ~~Target setup: TrueNAS iSCSI service exposes zvols as iSCSI LUNs~~
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3. ~~Initiator connection: K8s nodes connect via open-iscsi~~
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### SQLite on NFS — Why It Fails
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SQLite uses `fsync()` to guarantee durability. NFS's soft mount + async semantics break this:
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- Soft mount returns success even if data is still in client cache
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- Network blips during fsync → incomplete writes → corruption
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- WAL mode helps but doesn't eliminate the race
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**Solution**: Use Proxmox CSI (`proxmox-lvm`) for any SQLite database (Vaultwarden, plotting-book) or local disk (ephemeral).
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### ~~Democratic-CSI Sidecar Resources~~ (HISTORICAL — democratic-csi removed)
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> Democratic-csi has been removed along with TrueNAS decommissioning (2026-04). This section is kept for historical reference only.
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## Configuration
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### Key Files
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| Path | Purpose |
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|------|---------|
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| `/etc/exports` (on Proxmox host) | NFS export configuration for all service shares |
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| `stacks/proxmox-csi/` | Terraform stack for Proxmox CSI plugin + StorageClass |
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| `stacks/nfs-csi/` | NFS CSI driver + StorageClasses (`nfs-truenas`, `nfs-proxmox`) |
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| `modules/kubernetes/nfs_volume/` | Reusable module for static NFS PV/PVC creation |
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| `config.tfvars` | Variable `nfs_server = "192.168.1.127"` shared by all stacks |
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### Vault Paths
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| Path | Contents |
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|------|----------|
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| ~~`secret/viktor/truenas_ssh_key`~~ | **LEGACY** — was SSH key for democratic-csi SSH driver (TrueNAS decommissioned) |
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| ~~`secret/viktor/truenas_root_password`~~ | **LEGACY** — was TrueNAS root password (TrueNAS decommissioned) |
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### Terraform Stacks
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- **`stacks/proxmox-csi/`**: Deploys Proxmox CSI plugin + `proxmox-lvm` StorageClass + node topology labels
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- **`stacks/nfs-csi/`**: Deploys NFS CSI driver + StorageClasses for Proxmox NFS
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- All application stacks reference NFS volumes via `module "nfs_<name>"` calls
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- Database PVCs use `storageClass: proxmox-lvm` (CNPG, MySQL Helm VCT, Redis Helm, standalone PVCs)
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### NFS Export Management
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NFS exports are NOT managed by Terraform. To add a new service:
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1. SSH to Proxmox host: `ssh root@192.168.1.127`
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2. Create the directory: `mkdir -p /srv/nfs/<service> && chmod 777 /srv/nfs/<service>`
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3. Edit `/etc/exports` — add the export entry
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4. Reload exports: `exportfs -ra`
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5. Verify: `showmount -e 192.168.1.127`
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## Decisions & Rationale
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### Why NFS for Most Workloads?
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- **Simplicity**: No volume provisioning delays, instant mounts
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- **RWX support**: Multiple pods can share one volume (Nextcloud, Immich)
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- **Good enough**: For SQLite on NFS specifically, we accept the risk for low-value data (logs, caches) but mandate proxmox-lvm for critical DBs
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### Why Proxmox CSI for Databases? (formerly iSCSI)
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- **ACID guarantees**: Block device + local filesystem = real fsync
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- **Performance**: No NFS protocol overhead for random I/O, no network hop (LVM-thin hotplug direct to VM)
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- **Tested**: PostgreSQL CNPG and MySQL InnoDB Cluster both run on proxmox-lvm, zero corruption
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- **Single CoW layer**: LVM-thin only, no ZFS double-CoW issues
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### Why Soft Mount for NFS?
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Hard mounts with default `timeo=600` (10 minutes) cause:
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- 10-minute pod startup delays if NFS server is unreachable
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- `kubectl delete pod` hangs for 10 minutes
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- Kernel task hangs blocking node operations
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Soft mount (`soft,timeo=30,retrans=3`) trades availability for responsiveness:
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- Max 90s hang (30s × 3 retries)
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- Operations return EIO after timeout → app can handle error
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- Acceptable for non-critical data paths
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**Critical paths**: Databases use proxmox-lvm (not NFS), so soft mount never affects data integrity.
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## Troubleshooting
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### NFS Mount Hangs
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**Symptom**: Pod stuck in `ContainerCreating`, `df -h` hangs on NFS mount
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**Diagnosis**:
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```bash
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# On K8s node
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mount | grep nfs
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showmount -e 192.168.1.127
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# Check NFS server (Proxmox host)
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ssh root@192.168.1.127
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ls -la /srv/nfs/<service>
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cat /etc/exports | grep <service>
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```
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**Fix**:
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1. Verify directory exists: `ls /srv/nfs/<service>` (or `/srv/nfs-ssd/<service>`)
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2. Verify export: `grep <service> /etc/exports`
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3. If missing: add to `/etc/exports` and run `exportfs -ra`
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4. Restart NFS server: `systemctl restart nfs-server`
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### ~~iSCSI Session Drops~~ (HISTORICAL — iSCSI removed)
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> iSCSI was replaced by Proxmox CSI (2026-04-02) and TrueNAS has been decommissioned. This section is kept for historical reference only.
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### SQLite Corruption on NFS
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**Symptom**: `database disk image is malformed`, checksum errors
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**Diagnosis**:
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```bash
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# In pod
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sqlite3 /data/db.sqlite "PRAGMA integrity_check;"
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```
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**Fix**: Migrate to proxmox-lvm
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1. Create proxmox-lvm PVC in Terraform stack
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2. Restore from backup to new volume
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3. Update deployment to use new PVC
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4. Delete old NFS PVC
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### Slow NFS Performance
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**Symptom**: High latency on file operations, `iostat` shows NFS wait times
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**Diagnosis**:
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```bash
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# On Proxmox host
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ssh root@192.168.1.127
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iostat -x 5
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lvs --reportformat json pve/nfs-data ssd/nfs-ssd-data
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# On K8s node
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nfsiostat 5
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```
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**Optimization**:
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1. Move hot data to SSD NFS: relocate from `/srv/nfs/<service>` to `/srv/nfs-ssd/<service>` and update PV path
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2. Tune NFS mount: add `rsize=1048576,wsize=1048576` to StorageClass `mountOptions`
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## Related
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- **Runbooks**:
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- `docs/runbooks/restore-postgresql.md`
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- `docs/runbooks/restore-mysql.md`
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- `docs/runbooks/recover-nfs-mount.md`
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- **Architecture**: `docs/architecture/backup-dr.md` (backup strategy using LVM snapshots and Proxmox host scripts)
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- **Reference**: `.claude/reference/service-catalog.md` (which services use NFS vs proxmox-lvm)
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