Add a central job registry that library scans and search index builds report into, so background work is visible instead of buried in the settings page. - backend/jobs: registry with per-job ring-buffer logs, capability-driven controls, and one coalesced JobsChanged snapshot at 4Hz - pause survives restart via a job_state table; a paused scan is adopted back on launch and skipped by the soft scan - top-bar indicator, popover, details drawer and a Jobs page replacing the config page's scan UI; per-library start/stop retained - scan timing breakdown moves into the job log, Full rescan to the Jobs page; delete the orphaned library-manager component Also add cmd/indexbuild and cmd/indexexport so the explore index can be built once centrally rather than by every install, which today streams ~205GB from the ListenBrainz spark dump on first run. indexbuild picks build/refresh/rebuild from index state; the Gitea workflow runs it on push, weekly, or manually and publishes only when content changed. fresh-install no longer defaults YJ_HOME under /tmp: it is tmpfs on most distros, and the import needs ~6GB of real disk. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
349 lines
9.3 KiB
Go
349 lines
9.3 KiB
Go
package library
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import (
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"strconv"
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"time"
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"yellowjacket/backend/jobs"
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)
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// scanJobPrefix namespaces library scan jobs in the shared registry.
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const scanJobPrefix = "scan:"
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// scanPhaseLabels maps internal scan phase identifiers to the labels
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// shown in the jobs UI.
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var scanPhaseLabels = map[string]string{
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"counting": "Counting files",
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"scanning": "Reading metadata",
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"thumbnails": "Generating thumbnails",
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"orphans": "Cleaning up removed files",
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}
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// SetJobRegistry wires the background job registry so scans report
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// progress, logs, and pause/cancel controls to the frontend.
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func (l *Library) SetJobRegistry(reg *jobs.Registry) {
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l.mu.Lock()
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l.jobs = reg
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l.mu.Unlock()
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}
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// jobRegistry returns the registry, or nil when none is wired.
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func (l *Library) jobRegistry() *jobs.Registry {
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l.mu.Lock()
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defer l.mu.Unlock()
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return l.jobs
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}
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// scanJobID returns the stable registry ID for a library's scan job.
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// It is stable across restarts so a durable pause can be matched back
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// to the library it belongs to.
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func scanJobID(libraryID int64) string {
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return scanJobPrefix + strconv.FormatInt(libraryID, 10)
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}
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// libraryIDFromJobID parses a library ID back out of a scan job ID.
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func libraryIDFromJobID(id string) (int64, bool) {
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if len(id) <= len(scanJobPrefix) || id[:len(scanJobPrefix)] != scanJobPrefix {
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return 0, false
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}
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parsed, err := strconv.ParseInt(id[len(scanJobPrefix):], 10, 64)
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if err != nil {
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return 0, false
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}
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return parsed, true
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}
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// scanJobSpec builds the registry spec for a library scan. Controls are
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// bound to the library ID rather than "the current scan" so that a
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// control arriving for a queued or stale job cannot disturb a different
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// library's scan.
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func (l *Library) scanJobSpec(
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entry scanQueueEntry,
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state jobs.State,
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) jobs.Spec {
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return jobs.Spec{
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ID: scanJobID(entry.libraryID),
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Kind: jobs.KindLibraryScan,
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Title: "Scanning " + entry.libraryName,
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Subtitle: entry.libraryPath,
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State: state,
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Caps: jobs.Caps{
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Pausable: true,
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Cancellable: true,
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},
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Durable: true,
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Controls: jobs.Controls{
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Pause: func() { l.pauseScanForLibrary(entry.libraryID) },
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Resume: func() { l.resumeScanForLibrary(entry) },
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Cancel: func() { l.cancelScanForLibrary(entry.libraryID) },
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},
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}
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}
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// registerQueuedScanJob records a library that is waiting behind another
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// scan, so the user can see the whole pipeline rather than just the head.
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func (l *Library) registerQueuedScanJob(entry scanQueueEntry) {
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reg := l.jobRegistry()
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if reg == nil {
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return
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}
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h := reg.Start(l.scanJobSpec(entry, jobs.StateQueued))
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h.SetPhase("Waiting for other scans")
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h.Logf(jobs.LevelInfo, "Queued behind an in-progress scan")
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}
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// startScanJob registers (or re-registers, for a queued job now starting)
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// the running job for a scan and returns its handle.
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func (l *Library) startScanJob(entry scanQueueEntry) *jobs.Handle {
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reg := l.jobRegistry()
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if reg == nil {
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return nil
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}
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h := reg.Start(l.scanJobSpec(entry, jobs.StateRunning))
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h.SetProgress(0, 0)
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h.Logf(jobs.LevelInfo, "Scan started for "+entry.libraryPath)
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return h
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}
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// reportScanProgress mirrors a ScanProgress payload into the job
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// registry. Called from the same places that emit LibraryScanProgress
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// so the two views never disagree.
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func reportScanProgress(h *jobs.Handle, p ScanProgress) {
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if h == nil {
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return
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}
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label, ok := scanPhaseLabels[p.Phase]
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if !ok {
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label = p.Phase
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}
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h.SetPhase(label)
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// The counting pre-walk has no denominator to report against, so
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// leave the job indeterminate until the total is known.
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if p.Phase == "counting" {
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h.SetProgress(0, 0)
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} else {
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h.SetProgress(p.Processed, p.Total)
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}
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h.SetStats([]jobs.Stat{
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{Label: "Added", Value: strconv.FormatInt(p.Added, 10)},
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{Label: "Updated", Value: strconv.FormatInt(p.Updated, 10)},
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{Label: "Skipped", Value: strconv.FormatInt(p.Skipped, 10)},
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})
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}
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// finishScanJob applies the terminal state and summary for a completed,
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// cancelled, or paused-then-abandoned scan.
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func finishScanJob(h *jobs.Handle, m *ScanMetrics, cancelled bool) {
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if h == nil {
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return
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}
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h.SetStats([]jobs.Stat{
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{Label: "Added", Value: strconv.FormatInt(m.Added, 10)},
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{Label: "Updated", Value: strconv.FormatInt(m.Updated, 10)},
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{Label: "Skipped", Value: strconv.FormatInt(m.Skipped, 10)},
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{Label: "Removed", Value: strconv.FormatInt(m.Removed, 10)},
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{Label: "Duration", Value: m.Total.Round(time.Millisecond).String()},
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{Label: "Walk", Value: m.WalkDuration.Round(time.Millisecond).String()},
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{Label: "Metadata", Value: m.ExtractionWallClock.Round(time.Millisecond).String()},
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{Label: "DB writes", Value: m.DBWritesWallClock.Round(time.Millisecond).String()},
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{Label: "Thumbnails", Value: m.ThumbnailWallClock.Round(time.Millisecond).String()},
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})
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// The full timing breakdown goes into the log rather than the stats
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// grid: it is a profiling aid, wanted rarely and in full, and the
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// log pane already has a copy-to-clipboard button.
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h.LogDetail(jobs.LevelInfo, "Timing breakdown", m.timingBreakdown())
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if cancelled {
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h.Logf(jobs.LevelInfo, "Scan cancelled")
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h.Cancelled()
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return
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}
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h.Logf(jobs.LevelInfo,
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"Scan complete — "+
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strconv.FormatInt(m.Added, 10)+" added, "+
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strconv.FormatInt(m.Updated, 10)+" updated, "+
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strconv.FormatInt(m.Removed, 10)+" removed",
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)
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h.Complete()
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}
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// pauseScanForLibrary pauses the running scan, but only when the library
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// asking is the one currently being scanned.
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func (l *Library) pauseScanForLibrary(libraryID int64) {
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l.mu.Lock()
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current := l.currentScanLibraryID
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l.mu.Unlock()
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if current != libraryID {
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return
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}
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l.PauseScan()
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}
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// cancelScanForLibrary cancels a scan for one library. A queued library
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// is dropped from the queue; the running one is cancelled outright.
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func (l *Library) cancelScanForLibrary(libraryID int64) {
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l.mu.Lock()
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current := l.currentScanLibraryID
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if current != libraryID {
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// Not running — drop it from the queue if it is waiting there.
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kept := l.scanQueue[:0]
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for _, entry := range l.scanQueue {
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if entry.libraryID != libraryID {
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kept = append(kept, entry)
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}
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}
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l.scanQueue = kept
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l.mu.Unlock()
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if reg := l.jobRegistry(); reg != nil {
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if h := reg.Get(scanJobID(libraryID)); h != nil {
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h.Cancelled()
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}
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}
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return
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}
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cancel := l.scanCancel
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paused := l.scanPaused
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pauseCh := l.scanPauseCh
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// Unblock paused workers so they observe the cancelled context
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// instead of sitting on the pause channel forever.
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if paused {
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l.scanPaused = false
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if pauseCh != nil {
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close(pauseCh)
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}
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l.scanPauseCh = nil
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}
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l.mu.Unlock()
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if cancel != nil {
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cancel()
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return
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}
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// No live scan goroutine — this is a scan that was paused before a
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// restart and never resumed. Retire the adopted job directly.
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if reg := l.jobRegistry(); reg != nil {
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if h := reg.Get(scanJobID(libraryID)); h != nil {
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h.Cancelled()
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}
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}
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}
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// resumeScanForLibrary continues a paused scan. When the scan goroutine
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// is still alive it is simply unblocked. When the pause outlived the
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// process, a fresh scan is queued instead: scans are incremental, so
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// already-imported files are skipped on the second pass and the effect
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// is a resume rather than a restart.
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func (l *Library) resumeScanForLibrary(entry scanQueueEntry) {
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l.mu.Lock()
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live := l.scanActive && l.currentScanLibraryID == entry.libraryID
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l.mu.Unlock()
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if live {
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l.ResumeScan()
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return
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}
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if reg := l.jobRegistry(); reg != nil {
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if h := reg.Get(scanJobID(entry.libraryID)); h != nil {
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h.Logf(jobs.LevelInfo,
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"Resuming from a previous session — already-imported "+
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"files are skipped")
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}
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}
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// Clear the durable pause record before restarting, otherwise
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// RestorePausedScans would adopt it again on the next launch.
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if reg := l.jobRegistry(); reg != nil {
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reg.Remove(scanJobID(entry.libraryID))
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}
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if err := l.ScanLibrary(entry.libraryID); err != nil {
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l.logger.Warn("could not resume scan",
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"libraryID", entry.libraryID, "err", err)
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}
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}
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// RestorePausedScans adopts scans that were paused when the app last
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// shut down back into the job registry, still paused. Call during
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// startup before SoftScanAllLibraries so the soft scan does not restart
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// a library the user deliberately paused.
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func (l *Library) RestorePausedScans() {
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reg := l.jobRegistry()
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if reg == nil {
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return
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}
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for _, p := range reg.PausedEntries(jobs.KindLibraryScan) {
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libraryID, ok := libraryIDFromJobID(p.ID)
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if !ok {
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reg.Remove(p.ID)
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continue
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}
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lib, err := l.db.Queries.GetLibrary(l.ctx, libraryID)
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if err != nil {
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// The library was removed while the scan was paused.
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l.logger.Info("dropping paused scan for missing library",
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"libraryID", libraryID)
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reg.Remove(p.ID)
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continue
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}
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entry := scanQueueEntry{
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libraryID: lib.ID,
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libraryName: lib.Name,
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libraryPath: lib.Path,
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}
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h := reg.Start(l.scanJobSpec(entry, jobs.StatePaused))
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h.SetPhase("Paused")
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h.Logf(jobs.LevelInfo, "Paused in a previous session — resume to continue")
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l.logger.Info("restored paused library scan",
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"libraryID", lib.ID, "libraryName", lib.Name)
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}
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}
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// isScanPausedPersistently reports whether a library's scan was left
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// paused by a previous session.
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func (l *Library) isScanPausedPersistently(libraryID int64) bool {
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reg := l.jobRegistry()
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if reg == nil {
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return false
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}
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return reg.IsPersistentlyPaused(scanJobID(libraryID))
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}
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