Plans 013 and 014, the album page that prompted them, and the smaller fixes they turned up. Changelog, largest first. ## The local library is shaped like files, not like MusicBrainz `audio_files` carries its own tags and points at `albums` and `artists`; `file_genres` is the one real many-to-many. `recordings`, `release_group_recordings`, `artist_credit`, `artist_credit_artist`, `recording_genres`, `release_groups` and `release_to_rg` are gone from the local side, and with them a six-way join in every read, a `MIN(release_group_id)` subquery in eleven queries and a first-credited-artist subquery in nine. Measured on a real 25,966-file library, every many-to-many that model expressed was 1:1 in the data. - Ownership is a file. `GetFilePathsByRecordingMBIDs`, `LibraryMBIDIndex.CheckMBIDs`, `collectLibraryEntities` and `pruneStaleLocalCrossReferences` all join `audio_files`, so the 812 orphaned recordings, 216 release groups and 260 artists that library carried are now structurally impossible. - One projection: every track query selects from the `track_metadata` view, one row type, one mapper. Nine hand-rolled copies had drifted far enough to report different years on different screens. - `library_id = 0` means every library, so each list query exists once instead of scoped and unscoped with a branch at every call site. - No migration chain. `sql/schemas/` is the one description of the shape; `sql/migrations/`, `applyMigrations` and `schema_migrations` are squashed away, along with the drift between them that had sqlc generating against a stale schema. - `database.InsertTestTrack` is the one test seeder; twenty test files had been assembling the old FK chain each in its own order. ## The catalog stores its ids as bytes `explore_index`'s three 36-char MBID columns and its entity-type text are 16 raw bytes and a small integer. The table and its six indexes go 780 MB to 405 MB on a real 2,052,200-row catalog, which is why a fresh install is ~0.6 GB rather than ~1.0 GB. - `backend/explore/mbid.go` is the only place the encoding is known; everything above it speaks dashed strings. - `CHECK(length(mbid) = 16)` makes a stringly write fail at the insert rather than silently returning no rows, since SQLite does not coerce between TEXT and BLOB. - The importer asks the artifact what encoding it carries and converts on the way in, so the artifact already published keeps working and no format bump is needed. - `indexRowColumns`/`scanIndexRow` replace four copies of a 22-column list, and `TestStoredEncodingRoundTrips` sweeps every read path. ## An album page that says how much of the album is yours - One question, asked once: is there a file. `filePaths` is filled by a single batched lookup when the tracklist settles, and the badge, the Play count, the dimmed rows and every menu item read it — replacing four claims of decreasing confidence that could show a green tick on an album whose every action did nothing. - Play, Play 7 of 12, or no play button at all. - `total_tracks` on `explore_index` (~2 bytes over 400,677 release groups) and on `audio_files` from tags that have always carried it: a complete MBID-matched album now makes no catalog call at all, where it used to spend the most expensive request the app makes. - A merged cluster shows the running order the most releases agree on, and the version list marks the release you own rather than standing a synthetic entry in for it. - `AlbumReleasesFailed`: a slow fetch is no longer reported as a failed one by a 12-second timer. - Rows not in the library are dimmed in place (with `aria-disabled`) instead of the owned ones wearing a green tick and a legend. ## Caches and cover art get ceilings - Only the three tiers of a cover are stored; the full-resolution copy nothing rendered was 1,134 MB of a 1.4 GB covers directory. - One artist portrait is downloaded and the rest are remembered as URLs — 4.1 GB of a 5.3 GB cache was candidates no code path reads. - `browsedArtBudget` and `httpCacheBudget` bound what an age cannot: the same install held art for 5,770 artists in a 1,301-artist library. - `OrphanedArtistImagesJob` joined a bare MBID onto a sharded directory, so it deleted the rows that were the only record of the files it left behind. `explore.ArtistImageDir` is that layout's one definition now. ## The autotag queue asks whether there is work `tagging_items` was a row per album folder, not a queue, and no query read the `tag_status` column that held the answer. The four queue queries ask the files, which matters most where it is least visible: `startPrefetch` was scoring every album in a tagged library against MusicBrainz. ## Phantom playlist tracks resolve in place An M3U8 imported before its files leaves phantom rows; they now match by path and fall back to position, keep their place in the playlist when resolved, and pair best-first so two phantoms cannot claim the same file. ## Playing a track plays the list it is in Double-click, and Play on a single row's menu, queue the list as displayed with `startIndex` on that row — the album page and the track list used to queue one track and discard the album around it. A multi-row selection still plays exactly itself. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01AfVYUVExXsx1nSWrXN8mAh
297 lines
7.9 KiB
Go
297 lines
7.9 KiB
Go
package library
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import (
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"log/slog"
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"os"
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"path/filepath"
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"slices"
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"testing"
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"yellowjacket/backend/database"
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"yellowjacket/backend/database/sql/sqlcgen"
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"yellowjacket/backend/events"
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"yellowjacket/internal/testfixtures"
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)
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// setupScanLibrary builds a Library over a temp directory holding
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// copies of `count` real fixture tracks, plus the libraries row the
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// scan needs. Real files, because the scan extracts tags from them.
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func setupScanLibrary(
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t *testing.T,
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count int,
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) (lib *Library, dir string, paths []string, rec *events.Recorder, libID int64) {
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t.Helper()
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m := testfixtures.Load(t)
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sources := m.Case(t, testfixtures.CaseFLACAlbum)
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if len(sources) < count {
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t.Fatalf("fixture case has %d tracks, need %d", len(sources), count)
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}
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dir = t.TempDir()
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paths = make([]string, 0, count)
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for _, src := range sources[:count] {
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data, err := os.ReadFile(src)
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if err != nil {
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t.Fatalf("read fixture %s: %v", src, err)
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}
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dst := filepath.Join(dir, filepath.Base(src))
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if err := os.WriteFile(dst, data, 0o600); err != nil {
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t.Fatalf("write fixture copy: %v", err)
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}
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paths = append(paths, dst)
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}
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db := database.NewTestDB(t)
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rec = events.NewRecorder()
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lib = &Library{
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ctx: events.WithSink(t.Context(), rec),
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logger: slog.Default(),
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conf: &Config{},
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db: db,
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}
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row, err := db.Queries.CreateLibrary(t.Context(), sqlcgen.CreateLibraryParams{
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Name: "Test",
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Path: dir,
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})
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if err != nil {
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t.Fatalf("create library row: %v", err)
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}
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slices.Sort(paths)
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return lib, dir, paths, rec, row.ID
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}
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// scannedPaths returns the file paths currently in the database, sorted.
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func scannedPaths(t *testing.T, lib *Library) []string {
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t.Helper()
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rows, err := lib.db.Queries.GetAllAudioFilePaths(t.Context())
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if err != nil {
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t.Fatalf("read audio file paths: %v", err)
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}
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out := make([]string, 0, len(rows))
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for _, row := range rows {
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out = append(out, row.FilePath)
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}
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slices.Sort(out)
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return out
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}
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// TestRemoveFromLibrary_SurvivesRescan is the assertion the whole phase
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// rests on: a removed path stays removed across a real scan of the real
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// directory, and the file it named is still on disk.
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//
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// Its positive half is not optional. A guard that excluded everything
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// would satisfy "the removed path did not come back" for free, so the
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// same scan must also put back a row deleted *without* an exclusion.
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func TestRemoveFromLibrary_SurvivesRescan(t *testing.T) {
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t.Parallel()
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lib, dir, paths, _, libID := setupScanLibrary(t, 3)
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lib.scanInternal(libID, "Test", dir)
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if got := scannedPaths(t, lib); len(got) != 3 {
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t.Fatalf("first scan imported %d tracks, want 3: %v", len(got), got)
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}
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removed := paths[0]
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// The control: its row is deleted directly, with no exclusion, so
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// the same scan has to bring it back.
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control := paths[1]
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result, err := lib.RemoveFromLibrary([]string{removed})
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if err != nil {
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t.Fatalf("RemoveFromLibrary: %v", err)
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}
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if result.TracksRemoved != 1 || result.PathsExcluded != 1 {
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t.Fatalf(
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"RemoveFromLibrary = %+v, want 1 removed and 1 excluded",
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result,
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)
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}
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controlRow, err := lib.db.Queries.GetAudioFileByPath(t.Context(), control)
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if err != nil {
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t.Fatalf("look up control track: %v", err)
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}
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if err := lib.db.Queries.DeleteAudioFile(t.Context(), controlRow.ID); err != nil {
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t.Fatalf("delete control row: %v", err)
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}
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lib.scanInternal(libID, "Test", dir)
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after := scannedPaths(t, lib)
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if slices.Contains(after, removed) {
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t.Errorf("excluded path came back after a rescan: %s\nrows: %v", removed, after)
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}
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if !slices.Contains(after, control) {
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t.Errorf(
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"the rescan did not re-import a path that was NOT excluded (%s)"+
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" — the exclusion is skipping more than it was asked to\nrows: %v",
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control, after,
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)
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}
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// The promise the confirmation dialog makes.
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if _, err := os.Stat(removed); err != nil {
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t.Errorf("removed file is no longer on disk: %v", err)
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}
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}
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// TestRemoveFromLibrary_SoftScanSeesNoChange pins the trap that would
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// otherwise queue a full scan on every launch: the soft scan compares
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// the number of audio files on disk against the number of rows, and an
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// excluded path is on disk and deliberately not a row.
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func TestRemoveFromLibrary_SoftScanSeesNoChange(t *testing.T) {
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t.Parallel()
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lib, dir, paths, _, libID := setupScanLibrary(t, 3)
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lib.scanInternal(libID, "Test", dir)
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if _, err := lib.RemoveFromLibrary([]string{paths[0]}); err != nil {
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t.Fatalf("RemoveFromLibrary: %v", err)
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}
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dbCount, err := lib.db.Queries.CountAudioFiles(t.Context(), libID)
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if err != nil {
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t.Fatalf("count rows: %v", err)
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}
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diskCount, _ := surveyAudioFiles(dir, lib.excludedPathSet(libID))
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if diskCount != dbCount {
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t.Errorf(
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"soft scan would see disk %d vs db %d — every launch queues a full scan",
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diskCount, dbCount,
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)
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}
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// And the positive half: without the exclusion set the survey still
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// counts the file, which is what makes the argument above real
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// rather than a tautology about a function that counts nothing.
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if raw, _ := surveyAudioFiles(dir, nil); raw != dbCount+1 {
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t.Errorf("unfiltered survey = %d, want %d", raw, dbCount+1)
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}
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}
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// TestRemoveFromLibrary_FullRescanClearsExclusions pins the only route
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// back for a path removed by mistake.
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func TestRemoveFromLibrary_FullRescanClearsExclusions(t *testing.T) {
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t.Parallel()
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lib, dir, paths, _, libID := setupScanLibrary(t, 2)
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lib.scanInternal(libID, "Test", dir)
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if _, err := lib.RemoveFromLibrary([]string{paths[0]}); err != nil {
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t.Fatalf("RemoveFromLibrary: %v", err)
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}
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if err := lib.clearLibraryTables(); err != nil {
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t.Fatalf("clearLibraryTables: %v", err)
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}
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count, err := lib.db.Queries.CountExcludedPathsByLibrary(t.Context(), libID)
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if err != nil {
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t.Fatalf("count exclusions: %v", err)
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}
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if count != 0 {
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t.Fatalf("full rescan left %d exclusions behind", count)
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}
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lib.scanInternal(libID, "Test", dir)
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if !slices.Contains(scannedPaths(t, lib), paths[0]) {
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t.Error("a full rescan did not bring back a previously excluded path")
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}
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}
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// TestRemoveFromLibrary_EmitsPatchablePayload checks the event carries
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// what a store needs to patch rather than invalidate.
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func TestRemoveFromLibrary_EmitsPatchablePayload(t *testing.T) {
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t.Parallel()
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lib, dir, paths, rec, libID := setupScanLibrary(t, 2)
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lib.scanInternal(libID, "Test", dir)
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if _, err := lib.RemoveFromLibrary([]string{paths[0]}); err != nil {
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t.Fatalf("RemoveFromLibrary: %v", err)
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}
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ev, ok := rec.Last(events.TracksRemovedFromLibrary)
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if !ok {
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t.Fatalf("no TracksRemovedFromLibrary emitted; got %v", rec.Names())
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}
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payload, ok := ev.Payload().(map[string]any)
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if !ok {
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t.Fatalf("payload is %T, want a map", ev.Payload())
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}
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got, ok := payload["filePaths"].([]string)
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if !ok || len(got) != 1 || got[0] != paths[0] {
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t.Errorf("payload filePaths = %v, want [%s]", payload["filePaths"], paths[0])
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}
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if count, ok := payload["count"].(int64); !ok || count != 1 {
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t.Errorf("payload count = %v, want 1", payload["count"])
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}
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}
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// TestRemoveFromLibrary_CompactsTheQueue pins the half that is invisible
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// from the track list: deleting an audio_files row cascades to
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// queue_tracks, so the queue's in-memory copy — and the player, if it
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// was the track playing — has to be told.
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func TestRemoveFromLibrary_CompactsTheQueue(t *testing.T) {
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t.Parallel()
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lib, dir, paths, _, libID := setupScanLibrary(t, 2)
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lib.scanInternal(libID, "Test", dir)
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compacted := 0
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lib.SetRemovalHooks(RemovalHooks{
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CompactQueue: func() { compacted++ },
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})
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if _, err := lib.RemoveFromLibrary([]string{paths[0]}); err != nil {
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t.Fatalf("RemoveFromLibrary: %v", err)
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}
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if compacted != 1 {
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t.Errorf("CompactQueue called %d times, want 1", compacted)
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}
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}
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// TestRemoveFromLibrary_RejectsAnEmptyRequest keeps a stray Delete on
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// an empty selection from reaching the database at all.
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func TestRemoveFromLibrary_RejectsAnEmptyRequest(t *testing.T) {
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t.Parallel()
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lib, _, _, _, _ := setupScanLibrary(t, 1)
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if _, err := lib.RemoveFromLibrary(nil); err == nil {
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t.Error("RemoveFromLibrary(nil) succeeded, want an error")
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}
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}
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