77b4f21450
Surfaced preparing the live USB validation on demo-felhom: - observe.go: an unmounted removable dir-storage no longer falls through to the ROOT fs for its backing device/UUID — durable_id was becoming uuid:<root-uuid> (a DR mis-id that would re-attach the wrong disk). Now derived only from the target's own mountpoint; unmounted → no device + stable store:<name> durable_id. Removed containingMountDevice. - watchdog.go: remember the fs-UUID observed while attached and backfill it onto the re-mount target, so re-mount works even if the known-set cache refreshed mid-drop (doc 03 §7 "sourced from the existing definition"). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
361 lines
11 KiB
Go
361 lines
11 KiB
Go
package storage
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import (
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"context"
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"errors"
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"net"
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"sync"
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"testing"
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"time"
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)
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// staticKnown is a settable KnownTargets fake.
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type staticKnown struct {
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mu sync.Mutex
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targets []KnownTarget
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err error
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calls int
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}
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func (s *staticKnown) Known(context.Context) ([]KnownTarget, error) {
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s.mu.Lock()
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defer s.mu.Unlock()
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s.calls++
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return s.targets, s.err
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}
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// mapLiveness is a settable per-target presence + device-presence fake.
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type mapLiveness struct {
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mu sync.Mutex
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present map[string]bool
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device map[string]bool // backing-device presence (re-mount trigger)
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}
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func (m *mapLiveness) set(name string, p bool) {
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m.mu.Lock()
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defer m.mu.Unlock()
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m.present[name] = p
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}
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func (m *mapLiveness) setDevice(name string, p bool) {
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m.mu.Lock()
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defer m.mu.Unlock()
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if m.device == nil {
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m.device = map[string]bool{}
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}
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m.device[name] = p
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}
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func (m *mapLiveness) Present(_ context.Context, t KnownTarget) bool {
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m.mu.Lock()
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defer m.mu.Unlock()
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return m.present[t.Name]
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}
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func (m *mapLiveness) DevicePresent(_ context.Context, t KnownTarget) bool {
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m.mu.Lock()
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defer m.mu.Unlock()
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return m.device[t.Name]
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}
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// newTestWatchdog builds a watchdog with a manual clock and a trigger counter.
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func newTestWatchdog(known KnownTargets, live TargetLiveness, debounce time.Duration) (*Watchdog, *int, *time.Time) {
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var fires int
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clock := time.Unix(1_700_000_000, 0).UTC()
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w := NewWatchdog(WatchdogOptions{
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Targets: known,
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Liveness: live,
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Trigger: func() { fires++ },
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Interval: time.Second,
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Debounce: debounce,
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Logger: quietLogger(),
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})
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w.now = func() time.Time { return clock }
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return w, &fires, &clock
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}
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func TestWatchdog_BaselineThenDropTriggers(t *testing.T) {
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true}}}
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live := &mapLiveness{present: map[string]bool{"usb": true}}
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w, fires, _ := newTestWatchdog(known, live, 30*time.Second)
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ctx := context.Background()
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w.tick(ctx) // baseline: present, no trigger
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if *fires != 0 {
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t.Fatalf("baseline tick must not trigger, fires=%d", *fires)
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}
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live.set("usb", false) // drop
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w.tick(ctx)
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if *fires != 1 {
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t.Fatalf("a known target drop must trigger an out-of-band report, fires=%d", *fires)
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}
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}
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func TestWatchdog_NeverAttachedNotFlagged(t *testing.T) {
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// A defined-but-absent target (never seen present) must not be flagged on its absence.
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true}}}
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live := &mapLiveness{present: map[string]bool{"usb": false}}
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w, fires, _ := newTestWatchdog(known, live, 30*time.Second)
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ctx := context.Background()
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w.tick(ctx) // baseline absent
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w.tick(ctx) // still absent
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if *fires != 0 {
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t.Fatalf("a never-attached target must not trigger, fires=%d", *fires)
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}
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// Now it appears (reconnect) → that IS a transition worth reporting.
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live.set("usb", true)
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w.tick(ctx)
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if *fires != 1 {
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t.Fatalf("attach transition should trigger, fires=%d", *fires)
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}
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}
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func TestWatchdog_DebounceCoalescesFlaps(t *testing.T) {
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true}}}
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live := &mapLiveness{present: map[string]bool{"usb": true}}
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w, fires, clock := newTestWatchdog(known, live, 30*time.Second)
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ctx := context.Background()
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w.tick(ctx) // baseline present
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// First drop fires immediately (leading edge).
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live.set("usb", false)
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w.tick(ctx)
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if *fires != 1 {
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t.Fatalf("first drop should fire, fires=%d", *fires)
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}
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// Flap within the debounce window: re-attach then drop again — suppressed (pending).
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*clock = clock.Add(5 * time.Second)
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live.set("usb", true)
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w.tick(ctx)
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*clock = clock.Add(5 * time.Second)
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live.set("usb", false)
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w.tick(ctx)
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if *fires != 1 {
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t.Fatalf("flaps within the debounce window must be coalesced, fires=%d", *fires)
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}
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// After the window elapses, the pending change fires (trailing edge), even with no new
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// transition this tick.
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*clock = clock.Add(30 * time.Second)
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w.tick(ctx)
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if *fires != 2 {
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t.Fatalf("a pending change must fire once the window elapses, fires=%d", *fires)
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}
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}
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// fakeRemounter records re-mount dispatches.
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type fakeRemounter struct {
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mu sync.Mutex
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calls []string
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uuids []string
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}
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func (r *fakeRemounter) Remount(_ context.Context, t KnownTarget) {
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r.mu.Lock()
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defer r.mu.Unlock()
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r.calls = append(r.calls, t.Name)
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r.uuids = append(r.uuids, t.UUID)
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}
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func (r *fakeRemounter) count() int {
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r.mu.Lock()
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defer r.mu.Unlock()
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return len(r.calls)
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}
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func TestWatchdog_ReMountOnDeviceReturn(t *testing.T) {
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true, UUID: "1234-ABCD", MountPath: "/mnt/usb"}}}
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live := &mapLiveness{present: map[string]bool{"usb": true}, device: map[string]bool{"usb": true}}
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rem := &fakeRemounter{}
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w, _, clock := newTestWatchdog(known, live, 30*time.Second)
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w.remounter = rem
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w.spawn = func(f func()) { f() } // run the dispatch synchronously for deterministic assertion
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ctx := context.Background()
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w.tick(ctx) // baseline: present
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if rem.count() != 0 {
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t.Fatalf("no re-mount at baseline, got %d", rem.count())
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}
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// Drop: device gone, unmounted. No re-mount (nothing to mount).
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live.set("usb", false)
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live.setDevice("usb", false)
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w.tick(ctx)
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if rem.count() != 0 {
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t.Fatalf("no re-mount while device absent, got %d", rem.count())
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}
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// Device returns but still unmounted → re-mount dispatched.
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live.setDevice("usb", true)
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w.tick(ctx)
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if rem.count() != 1 {
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t.Fatalf("re-mount expected when device returns unmounted, got %d", rem.count())
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}
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// Still device-present-unmounted within the debounce window → rate-limited (no storm).
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*clock = clock.Add(5 * time.Second)
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w.tick(ctx)
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if rem.count() != 1 {
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t.Fatalf("re-mount must be rate-limited within debounce, got %d", rem.count())
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}
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// Successful mount (present=true) clears the rate-limit; a later cycle re-mounts again.
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live.set("usb", true)
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*clock = clock.Add(5 * time.Second)
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w.tick(ctx) // present → clears lastRemount
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live.set("usb", false) // drop again, device still present
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*clock = clock.Add(5 * time.Second)
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w.tick(ctx)
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if rem.count() != 2 {
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t.Fatalf("a fresh device cycle should re-mount again, got %d", rem.count())
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}
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}
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func TestWatchdog_ReMountUsesRememberedUUID(t *testing.T) {
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// The re-mount key must survive the known-set cache losing the UUID mid-drop (an
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// unmounted dir-storage can't resolve its own UUID). The watchdog remembers the UUID
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// observed while attached and backfills it onto the re-mount target.
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true, UUID: "277a2179", MountPath: "/mnt/usb"}}}
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live := &mapLiveness{present: map[string]bool{"usb": true}, device: map[string]bool{"usb": true}}
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rem := &fakeRemounter{}
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w, _, _ := newTestWatchdog(known, live, 30*time.Second)
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w.remounter = rem
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w.spawn = func(f func()) { f() }
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ctx := context.Background()
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w.tick(ctx) // baseline attached → remembers UUID 277a2179
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// Cache refreshes during the drop and loses the UUID (the unmounted observe can't
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// resolve it); device still present, unmounted.
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known.targets = []KnownTarget{{Name: "usb", MountBacked: true, UUID: "", MountPath: "/mnt/usb"}}
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live.set("usb", false)
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w.tick(ctx)
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if rem.count() != 1 {
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t.Fatalf("expected one re-mount, got %d", rem.count())
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}
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if rem.uuids[0] != "277a2179" {
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t.Fatalf("re-mount must use the remembered UUID, got %q", rem.uuids[0])
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}
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}
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func TestWatchdog_ReadErrorSkipsTick(t *testing.T) {
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known := &staticKnown{err: errors.New("proxmox blip")}
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live := &mapLiveness{present: map[string]bool{}}
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w, fires, _ := newTestWatchdog(known, live, time.Second)
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w.tick(context.Background())
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if *fires != 0 {
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t.Fatalf("a known-target read error must not trigger, fires=%d", *fires)
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}
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}
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func TestWatchdog_RunBaselinesAndStops(t *testing.T) {
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// Smoke test of the goroutine wiring under -race: Run establishes a baseline and exits
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// cleanly on ctx cancellation.
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known := &staticKnown{targets: []KnownTarget{{Name: "usb", MountBacked: true}}}
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live := &mapLiveness{present: map[string]bool{"usb": true}}
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w, _, _ := newTestWatchdog(known, live, time.Second)
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w.now = func() time.Time { return time.Now().UTC() }
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w.interval = 5 * time.Millisecond
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ctx, cancel := context.WithCancel(context.Background())
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done := make(chan error, 1)
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go func() { done <- w.Run(ctx) }()
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time.Sleep(30 * time.Millisecond)
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cancel()
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select {
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case err := <-done:
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if err != nil {
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t.Fatalf("Run returned %v, want nil on cancel", err)
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}
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case <-time.After(time.Second):
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t.Fatal("watchdog did not stop on cancel")
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}
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}
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func TestCachingKnownTargets_RefreshesOnTTL(t *testing.T) {
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src := &staticKnown{targets: []KnownTarget{{Name: "a"}}}
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clock := time.Unix(1_700_000_000, 0).UTC()
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c := NewCachingKnownTargets(src, 60*time.Second)
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c.now = func() time.Time { return clock }
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ctx := context.Background()
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if _, err := c.Known(ctx); err != nil {
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t.Fatal(err)
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}
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if _, err := c.Known(ctx); err != nil { // within TTL → cached
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t.Fatal(err)
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}
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if src.calls != 1 {
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t.Fatalf("within TTL the source must be hit once, calls=%d", src.calls)
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}
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clock = clock.Add(61 * time.Second) // past TTL
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if _, err := c.Known(ctx); err != nil {
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t.Fatal(err)
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}
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if src.calls != 2 {
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t.Fatalf("past TTL the source must refresh, calls=%d", src.calls)
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}
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}
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func TestCachingKnownTargets_ServesStaleOnError(t *testing.T) {
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src := &staticKnown{targets: []KnownTarget{{Name: "a"}}}
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clock := time.Unix(1_700_000_000, 0).UTC()
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c := NewCachingKnownTargets(src, 1*time.Second)
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c.now = func() time.Time { return clock }
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ctx := context.Background()
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if _, err := c.Known(ctx); err != nil { // prime the cache
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t.Fatal(err)
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}
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clock = clock.Add(2 * time.Second)
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src.mu.Lock()
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src.err = errors.New("blip")
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src.mu.Unlock()
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got, err := c.Known(ctx)
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if err != nil {
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t.Fatalf("a transient error must serve stale, got err=%v", err)
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}
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if len(got) != 1 || got[0].Name != "a" {
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t.Fatalf("stale set not served: %+v", got)
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}
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}
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func TestHostLiveness_MountBackedPresence(t *testing.T) {
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host := &fakeHostReader{
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mounts: []Mount{{Device: "/dev/sdb1", MountPoint: "/mnt/usb", FSType: "ext4"}},
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exists: map[string]bool{"/dev/sdb1": true},
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}
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hl := NewHostLiveness(host, time.Second)
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tgt := KnownTarget{Name: "usb", MountBacked: true, MountPath: "/mnt/usb", BackingDevice: "/dev/sdb1"}
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if !hl.Present(context.Background(), tgt) {
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t.Error("mounted device should be present")
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}
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// Unmount it: no exact mount entry → absent.
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host.mounts = []Mount{{Device: "/dev/mapper/root", MountPoint: "/", FSType: "ext4"}}
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if hl.Present(context.Background(), tgt) {
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t.Error("unmounted device should be absent")
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}
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}
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func TestHostLiveness_NetworkDial(t *testing.T) {
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hl := NewHostLiveness(&fakeHostReader{}, time.Second)
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var dialed string
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hl.dial = func(network, addr string, _ time.Duration) (net.Conn, error) {
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dialed = addr
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return nil, errors.New("refused")
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}
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tgt := KnownTarget{Name: "nfs", Network: true, ReachEndpoint: "10.0.0.5:2049"}
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if hl.Present(context.Background(), tgt) {
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t.Error("a refused dial should report not-present")
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}
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if dialed != "10.0.0.5:2049" {
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t.Errorf("dialed %q, want 10.0.0.5:2049", dialed)
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}
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// No endpoint to probe → don't false-alarm (the slow cycle uses the active flag).
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if !hl.Present(context.Background(), KnownTarget{Name: "x", Network: true}) {
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t.Error("network target without endpoint must not be flagged down")
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}
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}
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