Files: - .golangci.yml - backend/events/cmd/genevents/main.go - backend/fileutil/atomicwrite_test.go - backend/library/library.go - backend/player/buffered_streamer_test.go - backend/player/player.go - backend/tagwriter/dbsync.go - backend/tagwriter/mp3_test.go - backend/tagwriter/ogg.go - backend/tagwriter/ogg_test.go - backend/tagwriter/ogg_vorbis.go - backend/tagwriter/pipeline.go - backend/tagwriter/tagwriter.go - backend/tagwriter/wav_test.go
327 lines
8.4 KiB
Go
327 lines
8.4 KiB
Go
package tagwriter
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import (
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"context"
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"errors"
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"fmt"
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"log/slog"
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"time"
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wailsruntime "github.com/wailsapp/wails/v2/pkg/runtime"
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"yellowjacket/backend/database"
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"yellowjacket/backend/events"
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)
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// errNoChanges is returned when WriteTrackTags is called with an
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// empty TagChanges map.
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var errNoChanges = errors.New("tagwriter: no changes provided")
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// BatchFailure records a single track that failed during a batch write.
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type BatchFailure struct {
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FilePath string `json:"filePath"`
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Error string `json:"error"`
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}
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// BatchResult summarises the outcome of a batch tag write.
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type BatchResult struct {
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Total int `json:"total"`
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Succeeded int `json:"succeeded"`
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Failed int `json:"failed"`
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Cancelled bool `json:"cancelled"`
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Failures []BatchFailure `json:"failures"`
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}
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// PlayerStopper checks whether a file is currently playing and
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// stops playback if needed. Defined as an interface to break the
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// import cycle between tagwriter and player.
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type PlayerStopper interface {
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// CurrentFilePath returns the file path of the currently-
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// loaded track, or empty string if nothing is loaded.
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CurrentFilePath() string
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// StopAndRelease stops playback and releases the file handle.
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StopAndRelease()
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}
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// PipelineLocker abstracts the library's pipeline mutex for
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// scan/write mutual exclusion.
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type PipelineLocker interface {
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AcquirePipelineLock()
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ReleasePipelineLock()
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}
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// TagWriter orchestrates the complete tag writing pipeline:
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// file write → DB sync → event emission.
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type TagWriter struct {
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logger *slog.Logger
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db *database.DB
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ctx context.Context // Wails context for event emission
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player PlayerStopper
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library PipelineLocker
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cancelBatch chan struct{} // Signals batch cancellation.
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suppressEvents bool // Suppresses per-track events during batch.
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}
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// NewTagWriter creates a TagWriter with the given dependencies.
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// Call SetContext after the Wails runtime is available.
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func NewTagWriter(
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logger *slog.Logger,
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db *database.DB,
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player PlayerStopper,
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library PipelineLocker,
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) *TagWriter {
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return &TagWriter{
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logger: logger.WithGroup("tagwriter"),
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db: db,
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player: player,
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library: library,
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}
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}
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// SetContext stores the Wails runtime context for event emission.
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// Called during the two-phase init pattern in OnStartup.
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func (tw *TagWriter) SetContext(ctx context.Context) {
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tw.ctx = ctx
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}
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// WriteTrackTags is the single entry point for writing metadata to
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// a track's audio file and synchronising all changes to the
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// database. It accepts a track ID (audio_file.id) and a diff map
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// of changed fields.
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//
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// The pipeline:
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// 1. Look up track from DB.
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// 2. Detect audio format.
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// 3. Acquire pipeline lock (mutual exclusion with scan).
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// 4. Stop player if this file is currently playing.
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// 5. Write tags to file (format-specific writer).
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// 6. Sync database (entity relink, FTS5, orphan cleanup).
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// 7. Emit TrackMetadataChanged event.
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func (tw *TagWriter) WriteTrackTags(trackID int64, changes TagChanges) error {
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start := time.Now()
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ctx := context.Background()
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if len(changes) == 0 {
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return errNoChanges
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}
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// 1. Look up track.
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audioFile, err := tw.db.Queries.GetAudioFile(ctx, trackID)
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if err != nil {
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return fmt.Errorf("get audio file %d: %w", trackID, err)
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}
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recording, err := tw.db.Queries.GetRecording(ctx, audioFile.RecordingID)
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if err != nil {
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return fmt.Errorf("get recording %d: %w", audioFile.RecordingID, err)
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}
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rgLinks, err := tw.db.Queries.GetRecordingReleaseGroups(ctx, recording.ID)
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if err != nil {
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return fmt.Errorf("get recording rg links: %w", err)
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}
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// 2. Detect format.
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format, err := DetectFormat(audioFile.FilePath)
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if err != nil {
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return fmt.Errorf("detect format: %w", err)
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}
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// 3. Acquire pipeline lock.
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tw.library.AcquirePipelineLock()
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defer tw.library.ReleasePipelineLock()
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// 4. Player safety check.
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if tw.player != nil && tw.player.CurrentFilePath() == audioFile.FilePath {
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tw.logger.Info("stopping playback for tag write",
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"path", audioFile.FilePath)
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tw.player.StopAndRelease()
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}
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// 5. Write file tags.
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switch format {
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case FormatMP3:
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err = writeMp3Tags(tw.logger, audioFile.FilePath, changes)
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case FormatFLAC:
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err = writeFlacTags(tw.logger, audioFile.FilePath, changes)
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case FormatWAV:
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err = writeWavTags(tw.logger, audioFile.FilePath, changes)
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case FormatOGG:
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err = writeOggTags(tw.logger, audioFile.FilePath, changes)
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default:
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err = fmt.Errorf("%w: %s", errUnsupportedFormat, format)
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}
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if err != nil {
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return fmt.Errorf("write file tags: %w", err)
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}
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// 6. Sync database.
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if syncErr := syncDatabase(ctx, tw.logger, tw.db, dbSyncParams{
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audioFileID: audioFile.ID,
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recordingID: recording.ID,
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filePath: audioFile.FilePath,
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changes: changes,
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oldRecording: recording,
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oldRGLinks: rgLinks,
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}); syncErr != nil {
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tw.logger.Error("db sync failed after successful file write",
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"err", syncErr,
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"trackID", trackID,
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"path", audioFile.FilePath,
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)
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return fmt.Errorf("sync database: %w", syncErr)
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}
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// 7. Emit event (suppressed during batch writes).
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if tw.ctx != nil && !tw.suppressEvents {
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wailsruntime.EventsEmit(tw.ctx, events.TrackMetadataChanged,
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map[string]any{
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"trackId": trackID,
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"filePath": audioFile.FilePath,
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},
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)
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}
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tw.logger.Info("tag write complete",
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"trackID", trackID,
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"path", audioFile.FilePath,
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"duration", time.Since(start),
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"changedFields", len(changes),
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)
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return nil
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}
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// WriteTrackTagsByPath resolves a file path to its audio_file.id and
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// delegates to WriteTrackTags. This is the frontend-facing entry
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// point since the frontend identifies tracks by FilePath.
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func (tw *TagWriter) WriteTrackTagsByPath(filePath string, changes TagChanges) error {
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ctx := context.Background()
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audioFile, err := tw.db.Queries.GetAudioFileByPath(ctx, filePath)
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if err != nil {
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return fmt.Errorf("resolve track by path %q: %w", filePath, err)
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}
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return tw.WriteTrackTags(audioFile.ID, changes)
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}
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// CancelBatchWrite signals the in-progress batch write to stop after
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// the current track completes.
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func (tw *TagWriter) CancelBatchWrite() {
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ch := tw.cancelBatch
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if ch != nil {
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select {
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case <-ch:
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// Already closed.
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default:
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close(ch)
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}
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}
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}
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// BatchWriteTrackTags applies the same TagChanges to every file in
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// filePaths. It processes tracks sequentially, emits a
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// BatchWriteProgress event after each track, and continues past
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// individual failures. Returns a BatchResult summarising outcomes.
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func (tw *TagWriter) BatchWriteTrackTags(
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filePaths []string,
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changes TagChanges,
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) BatchResult {
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start := time.Now()
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total := len(filePaths)
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result := BatchResult{
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Total: total,
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Failures: []BatchFailure{},
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}
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if total == 0 || len(changes) == 0 {
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return result
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}
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// Set up cancellation channel.
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tw.cancelBatch = make(chan struct{})
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defer func() { tw.cancelBatch = nil }()
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// Suppress per-track TrackMetadataChanged events — we emit one
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// at the end instead.
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tw.suppressEvents = true
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defer func() { tw.suppressEvents = false }()
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for i, filePath := range filePaths {
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// Check for cancellation before each track.
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select {
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case <-tw.cancelBatch:
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result.Cancelled = true
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tw.logger.Info("batch write cancelled",
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"at", i,
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"total", total,
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)
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default:
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}
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if result.Cancelled {
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break
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}
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err := tw.WriteTrackTagsByPath(filePath, changes)
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if err != nil {
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result.Failed++
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result.Failures = append(result.Failures, BatchFailure{
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FilePath: filePath,
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Error: err.Error(),
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})
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tw.logger.Warn("batch track failed",
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"path", filePath,
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"err", err,
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"index", i+1,
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"total", total,
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)
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} else {
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result.Succeeded++
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}
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// Emit progress after each track (success or failure).
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if tw.ctx != nil {
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wailsruntime.EventsEmit(tw.ctx,
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events.BatchWriteProgress,
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map[string]any{
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"current": i + 1,
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"total": total,
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"filePath": filePath,
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"succeeded": result.Succeeded,
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"failed": result.Failed,
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},
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)
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}
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}
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// Emit a single TrackMetadataChanged after the batch completes
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// so the library store invalidates once rather than per-track.
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if tw.ctx != nil {
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wailsruntime.EventsEmit(tw.ctx, events.TrackMetadataChanged,
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map[string]any{
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"batch": true,
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"total": result.Succeeded,
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},
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)
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}
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tw.logger.Info("batch write complete",
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"total", total,
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"succeeded", result.Succeeded,
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"failed", result.Failed,
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"cancelled", result.Cancelled,
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"duration", time.Since(start),
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)
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return result
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}
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