3c174bc6f2
Operator ruling 2026-07-13: walk the root's backing device through /sys/block/<dev>/slaves recursively down to physical disks (dm AND md; topology, never VG names); those + any mounted-ESP holder are system; the all-system fail-safe returns to being the WALK-FAILURE error case only. SAFETY DIRECTION: a root-backing disk classified candidate is made impossible — per-branch conservatism (any unresolvable slave fails the WHOLE walk -> ok=false -> the unchanged all-system path). - physicalDisksOf/walkSlaves in role.go (symlink canon -> wholeDiskOf fast path -> recursive slaves walk; cycle/depth guard; non-/dev sources unwalkable) - HostReader.BlockSlaves(name) — the ONE new seam method; ProcHostReader reads /sys/block/<name>/slaves; all four test fakes mirror it - role_walk_test.go: signature table (root-backing disk ALWAYS system across legacy-LVM / md-raid / EFI+raw / EFI+LVM / nested dm-on-md — NEVER weaken) + dead-wizard-lives + dangling-slave fail-safe (real sysKnown=false path) + cycle + empty-slaves; red-proofs A/B/D run->fail->revert (recorded in REPORT) - §3 spike transcripts (drill legacy: dm-1->sda3->sda; felhom-pve: ESP+walk agree on sda -> byte-identical regression); caller audit: none relied on all-system as a feature - format/mkfs paths, data-bearing guards, wizard UI untouched
295 lines
12 KiB
Go
295 lines
12 KiB
Go
package storage
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import (
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"context"
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"io"
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"log/slog"
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"strings"
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"testing"
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"gitea.dooplex.hu/admin/felhom-agent/internal/hub"
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"gitea.dooplex.hu/admin/felhom-agent/internal/proxmox"
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)
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func quietLogger() *slog.Logger {
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return slog.New(slog.NewTextHandler(io.Discard, nil))
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}
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// fakeStorageAPI serves fixed cluster + node storage lists.
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type fakeStorageAPI struct {
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node string
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cluster []proxmox.Storage
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nodeSt []proxmox.Storage
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listErr error
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nodeErr error
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}
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func (f *fakeStorageAPI) Node() string { return f.node }
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func (f *fakeStorageAPI) ListStorage(context.Context) ([]proxmox.Storage, error) {
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return f.cluster, f.listErr
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}
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func (f *fakeStorageAPI) NodeStorage(context.Context) ([]proxmox.Storage, error) {
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return f.nodeSt, f.nodeErr
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}
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// fakeHostReader is a fully synthetic HostReader — no real devices touched.
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type fakeHostReader struct {
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mounts []Mount
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mountsErr error
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uuids map[string]string // device -> uuid
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exists map[string]bool // device -> present
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rotational map[string]bool // device -> rotational (presence => known)
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removable map[string]bool // device -> removable (presence => known)
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slaves map[string][]string // block NAME -> sysfs slaves (presence => /sys/block dir exists)
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}
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func (h *fakeHostReader) Mounts() ([]Mount, error) { return h.mounts, h.mountsErr }
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func (h *fakeHostReader) ResolveUUID(device string) (string, bool) {
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u, ok := h.uuids[device]
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return u, ok
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}
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func (h *fakeHostReader) DeviceExists(device string) bool { return h.exists[device] }
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func (h *fakeHostReader) Rotational(device string) (bool, bool) {
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v, ok := h.rotational[device]
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return v, ok
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}
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func (h *fakeHostReader) Removable(device string) (bool, bool) {
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v, ok := h.removable[device]
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return v, ok
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}
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func (h *fakeHostReader) BlockSlaves(name string) ([]string, bool) {
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s, ok := h.slaves[name]
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return s, ok
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}
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// byName indexes observed targets for assertions.
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func byName(targets []hub.StorageTarget) map[string]hub.StorageTarget {
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m := make(map[string]hub.StorageTarget, len(targets))
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for _, t := range targets {
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m[t.Name] = t
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}
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return m
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}
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func TestObserve_BuildsTargetsFromProxmoxAndHostReads(t *testing.T) {
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api := &fakeStorageAPI{
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node: "demo-felhom",
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cluster: []proxmox.Storage{
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{Storage: "local", Type: "dir", Content: "vztmpl,backup", Path: "/var/lib/vz"},
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{Storage: "local-lvm", Type: "lvmthin", Content: "rootdir,images", VGName: "pve", ThinPool: "data"},
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{Storage: "usb-backup", Type: "dir", Content: "backup", Path: "/mnt/usb-backup"},
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{Storage: "nfs-arch", Type: "nfs", Content: "backup", Server: "10.0.0.5", Export: "/export/backups"},
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},
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nodeSt: []proxmox.Storage{
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{Storage: "local", Type: "dir", Content: "vztmpl,backup", Path: "/var/lib/vz", Total: 100, Used: 20, Avail: 80, Active: 1, UsedFraction: 0.2},
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{Storage: "local-lvm", Type: "lvmthin", Content: "rootdir,images", Total: 1000, Used: 900, Avail: 100, Active: 1, UsedFraction: 0.9},
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{Storage: "usb-backup", Type: "dir", Content: "backup", Path: "/mnt/usb-backup", Total: 2000, Used: 500, Avail: 1500, Active: 1, UsedFraction: 0.25},
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{Storage: "nfs-arch", Type: "nfs", Content: "backup", Total: 5000, Used: 1000, Avail: 4000, Active: 1, UsedFraction: 0.2},
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},
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}
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host := &fakeHostReader{
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mounts: []Mount{
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{Device: "/dev/mapper/pve-root", MountPoint: "/", FSType: "ext4"},
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{Device: "/dev/sdb1", MountPoint: "/mnt/usb-backup", FSType: "ext4"},
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},
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uuids: map[string]string{"/dev/sdb1": "1111-2222"},
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exists: map[string]bool{"/dev/sdb1": true, "/dev/mapper/pve-root": true},
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rotational: map[string]bool{"/dev/sdb1": true, "/dev/mapper/pve-root": false},
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removable: map[string]bool{"/dev/sdb1": true, "/dev/mapper/pve-root": false},
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}
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got, err := NewObserver(api, host, nil, quietLogger()).Observe(context.Background())
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if err != nil {
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t.Fatalf("Observe: %v", err)
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}
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if len(got) != 4 {
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t.Fatalf("got %d targets, want 4", len(got))
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}
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m := byName(got)
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// builtin local: dir within root → type "local", attached via active flag.
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if local := m["local"]; local.Type != hub.StorageTypeLocal || local.State != hub.StorageStateAttached {
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t.Errorf("local = %+v, want type=local state=attached", local)
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}
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// lvmthin: thin-pool DATA fill surfaced; durable_id = vg/pool; no mount/device.
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lvm := m["local-lvm"]
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if lvm.Type != hub.StorageTypeLVMThin || lvm.DurableID != "pve/data" {
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t.Errorf("local-lvm type/durable = %q/%q", lvm.Type, lvm.DurableID)
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}
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if lvm.ThinPool == nil || lvm.ThinPool.DataUsedFraction != 0.9 {
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t.Errorf("local-lvm thin_pool = %+v, want data_used_fraction=0.9", lvm.ThinPool)
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}
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if lvm.ThinPool.MetadataUsedFraction != nil {
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t.Errorf("metadata fill must be nil in Phase A (lvs is Phase B)")
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}
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// usb: removable dir, mounted → type usb, durable_id from UUID, class_hint slow (rotational).
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usb := m["usb-backup"]
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if usb.Type != hub.StorageTypeUSB {
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t.Errorf("usb-backup type = %q, want usb", usb.Type)
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}
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if usb.DurableID != "uuid:1111-2222" {
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t.Errorf("usb-backup durable_id = %q, want uuid:1111-2222", usb.DurableID)
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}
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if usb.ClassHint != "slow" {
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t.Errorf("usb-backup class_hint = %q, want slow (rotational)", usb.ClassHint)
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}
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if usb.MountPath != "/mnt/usb-backup" || usb.BackingDevice != "/dev/sdb1" {
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t.Errorf("usb-backup mount/device = %q/%q", usb.MountPath, usb.BackingDevice)
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}
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if usb.State != hub.StorageStateAttached || !usb.Reachable {
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t.Errorf("usb-backup should be attached+reachable: %+v", usb)
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}
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if usb.ThinPool != nil {
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t.Errorf("non-lvmthin must omit thin_pool")
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}
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// nfs: durable_id = server:export; attached via active flag; no class hint.
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nfs := m["nfs-arch"]
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if nfs.Type != hub.StorageTypeNFS || nfs.DurableID != "10.0.0.5:/export/backups" {
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t.Errorf("nfs-arch type/durable = %q/%q", nfs.Type, nfs.DurableID)
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}
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if nfs.ClassHint != "" {
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t.Errorf("network target must have no class hint, got %q", nfs.ClassHint)
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}
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// SMART is UNKNOWN in Phase A for every target.
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for _, tgt := range got {
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if tgt.Smart.Health != hub.SmartUnknown {
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t.Errorf("%s smart health = %q, want UNKNOWN in Phase A", tgt.Name, tgt.Smart.Health)
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}
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}
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}
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// fakeHostOps fills SMART + thin-pool metadata for the enrichment test.
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type fakeHostOps struct {
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smartByDevice map[string]hub.SmartSummary
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metaByPool map[string]float64 // "vg/pool" -> fraction
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smartDevices []string // records which devices SMART was called on
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}
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func (f *fakeHostOps) EnsureMount(context.Context, MountSpec) error { return nil }
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func (f *fakeHostOps) Unmount(context.Context, string) error { return nil }
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func (f *fakeHostOps) SMART(_ context.Context, device string) (hub.SmartSummary, error) {
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f.smartDevices = append(f.smartDevices, device)
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if s, ok := f.smartByDevice[device]; ok {
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return s, nil
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}
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return hub.SmartSummary{Health: hub.SmartUnknown}, nil
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}
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func (f *fakeHostOps) ThinPoolMetadata(_ context.Context, vg, pool string) (float64, bool) {
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v, ok := f.metaByPool[vg+"/"+pool]
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return v, ok
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}
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func (f *fakeHostOps) InspectDevice(_ context.Context, device string) (DeviceProbe, error) {
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return DeviceProbe{Device: device, Probed: true}, nil
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}
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func (f *fakeHostOps) Format(context.Context, string, string) error { return nil }
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func TestObserve_EnrichesSMARTAndThinPoolMetadata(t *testing.T) {
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api := &fakeStorageAPI{
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node: "demo-felhom",
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cluster: []proxmox.Storage{
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{Storage: "local-lvm", Type: "lvmthin", VGName: "pve", ThinPool: "data"},
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{Storage: "usb-backup", Type: "dir", Path: "/mnt/usb-backup"},
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},
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nodeSt: []proxmox.Storage{
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{Storage: "local-lvm", Type: "lvmthin", Active: 1, UsedFraction: 0.4},
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{Storage: "usb-backup", Type: "dir", Path: "/mnt/usb-backup", Active: 1},
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},
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}
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host := &fakeHostReader{
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mounts: []Mount{{Device: "/dev/sdb1", MountPoint: "/mnt/usb-backup", FSType: "ext4"}},
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uuids: map[string]string{"/dev/sdb1": "1111-2222"},
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exists: map[string]bool{"/dev/sdb1": true},
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removable: map[string]bool{"/dev/sdb1": true},
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}
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ops := &fakeHostOps{
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smartByDevice: map[string]hub.SmartSummary{"/dev/sdb": {Health: hub.SmartPassed}},
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metaByPool: map[string]float64{"pve/data": 0.12},
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}
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got, err := NewObserver(api, host, ops, quietLogger()).Observe(context.Background())
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if err != nil {
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t.Fatal(err)
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}
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m := byName(got)
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// SMART runs on the WHOLE disk (/dev/sdb), not the partition (/dev/sdb1).
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if len(ops.smartDevices) != 1 || ops.smartDevices[0] != "/dev/sdb" {
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t.Errorf("SMART should target the whole disk /dev/sdb, got %v", ops.smartDevices)
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}
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if m["usb-backup"].Smart.Health != hub.SmartPassed {
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t.Errorf("usb SMART not enriched: %+v", m["usb-backup"].Smart)
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}
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// lvmthin metadata fill (Phase B) is now populated.
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lvm := m["local-lvm"]
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if lvm.ThinPool == nil || lvm.ThinPool.MetadataUsedFraction == nil {
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t.Fatalf("lvmthin metadata fill not enriched: %+v", lvm.ThinPool)
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}
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if *lvm.ThinPool.MetadataUsedFraction != 0.12 {
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t.Errorf("metadata fraction = %v, want 0.12", *lvm.ThinPool.MetadataUsedFraction)
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}
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}
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func TestObserve_USBUnpluggedIsDisconnected(t *testing.T) {
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api := &fakeStorageAPI{
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node: "demo-felhom",
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cluster: []proxmox.Storage{
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{Storage: "usb-backup", Type: "dir", Content: "backup", Path: "/mnt/usb-backup"},
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},
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nodeSt: []proxmox.Storage{
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// PVE may still show the storage entry (active possibly 1) but the mount is gone.
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{Storage: "usb-backup", Type: "dir", Content: "backup", Path: "/mnt/usb-backup", Active: 1},
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},
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}
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host := &fakeHostReader{
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mounts: []Mount{{Device: "/dev/mapper/pve-root", MountPoint: "/", FSType: "ext4"}}, // no /mnt/usb-backup
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}
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got, err := NewObserver(api, host, nil, quietLogger()).Observe(context.Background())
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if err != nil {
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t.Fatal(err)
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}
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usb := byName(got)["usb-backup"]
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// Without its own mount, a USB target is unplugged regardless of PVE's stale active flag.
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if usb.State != hub.StorageStateDisconnected || usb.Reachable {
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t.Errorf("unplugged usb should be disconnected/unreachable, got state=%q reachable=%v", usb.State, usb.Reachable)
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}
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// Its durable_id falls back to a stable form (no UUID resolvable while detached).
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if usb.DurableID == "" {
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t.Errorf("durable_id must never be empty (DR re-attach lookup)")
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}
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// CRITICAL: an unmounted dir-storage must NOT inherit the ROOT filesystem's UUID/device
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// (that would re-attach the WRONG disk on DR). With only root mounted, the USB target
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// resolves to no device and a stable store-id durable_id — never "uuid:<root-uuid>".
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if strings.HasPrefix(usb.DurableID, "uuid:") {
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t.Errorf("unmounted target must not carry a uuid durable_id (got %q — root-UUID mis-id risk)", usb.DurableID)
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}
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if usb.BackingDevice != "" {
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t.Errorf("unmounted target must not resolve a backing device (got %q)", usb.BackingDevice)
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}
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}
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func TestObserve_ProxmoxErrorIsFatalForStorage(t *testing.T) {
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api := &fakeStorageAPI{node: "n", listErr: context.DeadlineExceeded}
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if _, err := NewObserver(api, &fakeHostReader{}, nil, quietLogger()).Observe(context.Background()); err == nil {
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t.Fatal("a Proxmox read error must surface (the collector then omits storage this cycle)")
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}
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}
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func TestObserve_MountReadFailureDegradesNotFatal(t *testing.T) {
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api := &fakeStorageAPI{
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node: "n",
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cluster: []proxmox.Storage{{Storage: "local-lvm", Type: "lvmthin", VGName: "pve", ThinPool: "data"}},
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nodeSt: []proxmox.Storage{{Storage: "local-lvm", Type: "lvmthin", Active: 1, UsedFraction: 0.1}},
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}
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host := &fakeHostReader{mountsErr: io.ErrUnexpectedEOF}
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got, err := NewObserver(api, host, nil, quietLogger()).Observe(context.Background())
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if err != nil {
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t.Fatalf("a host mount-read failure must degrade, not fail: %v", err)
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}
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if len(got) != 1 || got[0].DurableID != "pve/data" {
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t.Errorf("lvmthin still derivable without mounts: %+v", got)
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}
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}
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