package library import ( "fmt" "yellowjacket/backend/events" ) // scanQueueEntry holds the metadata needed to scan a single library. type scanQueueEntry struct { libraryID int64 libraryName string libraryPath string } // ScanLibrary queues a scan for the library with the given database ID. // If no scan is active the library is scanned immediately; otherwise it // is appended to the queue. Duplicate requests (same library already // scanning or already queued) are silently ignored. func (l *Library) ScanLibrary(id int64) error { lib, err := l.db.Queries.GetLibrary(l.ctx, id) if err != nil { return fmt.Errorf("could not get library %d: %w", id, err) } l.mu.Lock() // Silent dedup: already scanning this library. if l.currentScanLibraryID == id { l.mu.Unlock() return nil } // Silent dedup: already queued. for _, entry := range l.scanQueue { if entry.libraryID == id { l.mu.Unlock() return nil } } entry := scanQueueEntry{ libraryID: lib.ID, libraryName: lib.Name, libraryPath: lib.Path, } if !l.scanActive { l.scanActive = true l.currentScanLibraryID = entry.libraryID l.currentScanLibraryName = entry.libraryName l.mu.Unlock() go l.startScan(entry) return nil } // A scan is already running — queue this library. l.scanQueue = append(l.scanQueue, entry) queueLength := len(l.scanQueue) l.mu.Unlock() l.emit(events.LibraryScanQueued, map[string]any{ "libraryId": lib.ID, "libraryName": lib.Name, "queueLength": queueLength, }) // Registering the queued job takes l.mu again, so it must happen // after the unlock above. l.registerQueuedScanJob(entry) return nil } // ScanAllLibraries queries all libraries from the database and queues // each one for scanning. Existing dedup logic ensures no duplicates. func (l *Library) ScanAllLibraries() error { libs, err := l.db.Queries.GetAllLibraries(l.ctx) if err != nil { return fmt.Errorf("could not get all libraries: %w", err) } for _, lib := range libs { if err := l.ScanLibrary(lib.ID); err != nil { l.logger.Warn( "could not queue library for scan", "libraryID", lib.ID, "libraryName", lib.Name, "err", err, ) } } return nil } // SoftScanAllLibraries performs a lightweight launch-time scan. // First it claims any orphaned tracks (library_id=0) left over from // the pre-multi-library schema. Then for each library it compares // the number of audio files on disk against the track count in the // database. Only libraries where the counts differ (files added or // removed since last scan) are queued for a full scan. Libraries // that are unchanged are silently skipped — no progress bar, no // scan events. func (l *Library) SoftScanAllLibraries() error { libs, err := l.db.Queries.GetAllLibraries(l.ctx) if err != nil { return fmt.Errorf("could not get all libraries: %w", err) } // Claim orphaned tracks from the pre-multi-library schema. // Tracks with library_id=0 exist from before the migration and // need to be assigned to the library whose path matches. // SAFETY: Hand-crafted UPDATE — path-prefix LIKE matching with // dynamic library_id unsupported by sqlc. No user input. for _, lib := range libs { result, claimErr := l.db.ExecContext( `UPDATE audio_files SET library_id = ?`+ ` WHERE library_id = 0`+ ` AND file_path LIKE ? || '%'`, lib.ID, lib.Path+"/", ) if claimErr != nil { l.logger.Warn("soft scan: could not claim orphaned tracks", "libraryID", lib.ID, "err", claimErr) } else if claimed, _ := result.RowsAffected(); claimed > 0 { l.logger.Info("soft scan: claimed orphaned tracks", "libraryID", lib.ID, "libraryName", lib.Name, "claimed", claimed) } } for _, lib := range libs { // A scan the user paused stays paused across restarts — the // soft scan must not quietly start it again behind their back. // RestorePausedScans has already surfaced it in the jobs panel // with a resume button. if l.isScanPausedPersistently(lib.ID) { l.logger.Info( "soft scan: library scan is paused, skipping", "libraryID", lib.ID, "libraryName", lib.Name, ) continue } dbCount, countErr := l.db.Queries.CountAudioFiles( l.ctx, lib.ID, ) if countErr != nil { l.logger.Warn( "soft scan: could not count DB tracks, queueing full scan", "libraryID", lib.ID, "libraryName", lib.Name, "err", countErr, ) _ = l.ScanLibrary(lib.ID) continue } dbModTime, modErr := l.db.Queries.GetLibraryMaxModifiedAt( l.ctx, lib.ID, ) if modErr != nil { l.logger.Warn( "soft scan: could not read newest mtime, queueing full scan", "libraryID", lib.ID, "libraryName", lib.Name, "err", modErr, ) _ = l.ScanLibrary(lib.ID) continue } // Excluded paths are on disk and deliberately not in the // database, so the survey must skip them or the two counts // disagree forever and every launch queues a full scan. diskCount, diskModTime := surveyAudioFiles( lib.Path, l.excludedPathSet(lib.ID), ) // A newer file on disk than anything on record means something // was edited in place since the last scan. An older newest-mtime // is not evidence of a change: deleting the newest file lowers it // while the count check already covers that case. staleTags := diskModTime > dbModTime if diskCount == dbCount && !staleTags { l.logger.Info( "soft scan: library unchanged, skipping", "libraryID", lib.ID, "libraryName", lib.Name, "tracks", dbCount, ) continue } l.logger.Info( "soft scan: library changed, queueing scan", "libraryID", lib.ID, "libraryName", lib.Name, "diskFiles", diskCount, "dbTracks", dbCount, "diskModTime", diskModTime, "dbModTime", dbModTime, "reason", softScanReason(diskCount != dbCount, staleTags), ) if err := l.ScanLibrary(lib.ID); err != nil { l.logger.Warn( "soft scan: could not queue library", "libraryID", lib.ID, "libraryName", lib.Name, "err", err, ) } } return nil } // softScanReason labels why the soft scan queued a library, for the log. func softScanReason(countChanged, staleTags bool) string { switch { case countChanged && staleTags: return "file count mismatch and modified files" case countChanged: return "file count mismatch" default: return "modified files" } } // CancelCurrentScan cancels only the currently scanning library. // The next queued library (if any) starts automatically when the // current scan's goroutine completes. func (l *Library) CancelCurrentScan() { l.mu.Lock() cancel := l.scanCancel l.mu.Unlock() if cancel != nil { cancel() } } // CancelAllScans cancels the current scan and clears the entire // queue so no further libraries are scanned. func (l *Library) CancelAllScans() { l.mu.Lock() l.scanQueue = nil cancel := l.scanCancel l.mu.Unlock() if cancel != nil { cancel() } } // GetScanQueueLength returns the number of libraries waiting in the // scan queue (excludes the currently scanning library). func (l *Library) GetScanQueueLength() int { l.mu.Lock() defer l.mu.Unlock() return len(l.scanQueue) } // QueuedLibraryNames returns the display names of libraries waiting // in the scan queue, in FIFO order. func (l *Library) QueuedLibraryNames() []string { l.mu.Lock() defer l.mu.Unlock() names := make([]string, len(l.scanQueue)) for i, entry := range l.scanQueue { names[i] = entry.libraryName } return names } // startScan runs the scan for a single library entry and then drains // the queue. It is always called in a new goroutine. func (l *Library) startScan(entry scanQueueEntry) { l.scanInternal(entry.libraryID, entry.libraryName, entry.libraryPath) l.drainQueue() } // drainQueue is called after each scan completes. If the queue is // non-empty the next entry is popped and scanned; otherwise the // scan pipeline is marked idle. func (l *Library) drainQueue() { l.mu.Lock() if len(l.scanQueue) > 0 { next := l.scanQueue[0] l.scanQueue = l.scanQueue[1:] l.currentScanLibraryID = next.libraryID l.currentScanLibraryName = next.libraryName l.mu.Unlock() go l.startScan(next) return } l.currentScanLibraryID = 0 l.currentScanLibraryName = "" l.scanActive = false hooks := l.scanHooks l.mu.Unlock() l.emit(events.LibraryScanQueueDrained) if hooks.OnAllScansComplete != nil { hooks.OnAllScansComplete() } }