Files
yellowjacket/frontend/test/stores/library-store.test.ts
T
logan 6d97e3c872 feat(tracks): remove from library behind a confirmation
The context menu's one destructive command. Its impact line says the
files are not deleted, because a user who reads "remove" as "delete"
and finds their music gone was failed by the copy rather than by the
operation.

The store patches rather than invalidates: the event carries the paths,
so the tracks array — the expensive collection — is spliced in place
and only the album/artist/genre summaries, whose counts really did
change, are refetched. It falls back to a full invalidate when a tracks
fetch is already in flight, which is the one case a patch cannot be
shown to be equivalent to.

Deleting an audio_files row cascades to queue_tracks, so the removal
also compacts the queue — the same reload RemoveLibrary does, which
unloads the player if the removed track was the one playing.
2026-08-13 13:11:31 -04:00

459 lines
14 KiB
TypeScript

/**
* The library store is the frontend's read cache for the whole
* catalogue: four collections, each fetched once and held until
* something invalidates them. The interesting behaviour is not the
* fetching but the caching — deduplicating concurrent readers, throwing
* everything away on a rescan, and swapping to the by-library bindings
* when a filter is active.
*/
import { describe, expect, it, beforeEach } from 'vitest';
import { libraryStore } from '@store/library-store';
import { Events } from '../../src/events';
import {
emit,
calls,
stub,
stubFailure,
flush,
lastArgs,
resetHarness,
} from '@test/support/harness';
const TRACKS = [
{ ID: 1, Title: 'One', FilePath: '/a.mp3', PlayCount: 0, LastPlayed: '' },
{ ID: 2, Title: 'Two', FilePath: '/b.mp3', PlayCount: 4, LastPlayed: 'x' },
];
const ALBUMS = [{ ID: 1, Name: 'Album', ArtistName: 'Artist' }];
const OTHER_ALBUMS = [{ ID: 2, Name: 'Other', ArtistName: 'Other Artist' }];
const ARTISTS = [{ ID: 1, Name: 'Artist' }];
const GENRES = [{ Name: 'Ambient', Count: 3 }];
const LIBRARIES = [{ id: 7, name: 'Music' }, { id: 8, name: 'Field' }];
/** Stub every read binding the store can reach. Unstubbed bindings
* resolve undefined, which the store would cache as if it were data. */
function stubReads(): void {
stub('library.Library.GetAllTracks', TRACKS);
stub('library.Library.GetAllAlbums', ALBUMS);
stub('library.Library.GetAllArtists', ARTISTS);
stub('library.Library.GetAllGenresWithCounts', GENRES);
stub('library.Library.GetAllTracksByLibrary', TRACKS);
stub('library.Library.GetAllAlbumsByLibrary', ALBUMS);
stub('library.Library.GetAllArtistsByLibrary', ARTISTS);
stub('library.Library.GetAllGenresWithCountsByLibrary', GENRES);
stub('library.Library.GetAlbumsByArtist', ALBUMS);
stub('library.Library.GetAlbumsByArtistByLibrary', ALBUMS);
stub('library.Library.GetAllLibrariesWithTrackCounts', LIBRARIES);
}
/**
* Drop the cache and let the eager refetch settle, so each test starts
* from the same place. The store has no reset of its own; a scan
* completing is how the app itself clears it.
*/
async function reload(): Promise<void> {
stubReads();
emit(Events.LibraryScanComplete);
await flush();
// The eager refetch the invalidation kicks off is recorded like any
// other call; clear it, or every count in every test is off by one.
resetHarness();
stubReads();
}
describe('library store: caching', () => {
beforeEach(async () => {
await reload();
});
it('serves a second read from cache without touching the backend', async () => {
await libraryStore.getTracks();
expect(calls('library.Library.GetAllTracks')).toHaveLength(0);
});
it('deduplicates concurrent first reads into one backend call', async () => {
emit(Events.LibraryScanComplete);
const [a, b] = await Promise.all([
libraryStore.getArtists(),
libraryStore.getArtists(),
]);
expect([a, b, calls('library.Library.GetAllArtists').length]).toEqual([
ARTISTS,
ARTISTS,
1,
]);
});
it('exposes cached collections synchronously once loaded', () => {
expect([
libraryStore.getCachedTracks(),
libraryStore.getCachedAlbums(),
libraryStore.cachedArtists,
libraryStore.getCachedGenres(),
]).toEqual([TRACKS, ALBUMS, ARTISTS, GENRES]);
});
it('refetches everything when a scan completes', async () => {
emit(Events.LibraryScanComplete);
await flush();
expect(calls().map((c) => c.path).sort()).toEqual([
'library.Library.GetAllAlbums',
'library.Library.GetAllArtists',
'library.Library.GetAllGenresWithCounts',
'library.Library.GetAllTracks',
]);
});
it('refetches when a track is retagged', async () => {
emit(Events.TrackMetadataChanged, { filePath: '/a.mp3' });
await flush();
expect(calls('library.Library.GetAllTracks')).toHaveLength(1);
});
/*
* A finished track used to arrive as TrackMetadataChanged, so every
* song refetched the whole library: ~37 MB across the IPC and ~0.8 s
* of blocked main thread per track at 50 000 tracks (perf.C1).
*
* The assertion that matters is the negative one. Patching the track
* in place is only a fix if nothing is refetched as well.
*/
describe('a play count arriving', () => {
beforeEach(async () => {
emit(Events.TrackPlayCountChanged, {
audioFileId: 1,
filePath: '/a.mp3',
playCount: 9,
lastPlayed: '2026-08-11 10:00:00',
});
await flush();
});
it('refetches nothing', () => {
expect(calls().map((c) => c.path)).toEqual([]);
});
it('patches the one track it names', () => {
const tracks = libraryStore.getCachedTracks();
expect(tracks?.[0]).toMatchObject({
FilePath: '/a.mp3',
PlayCount: 9,
LastPlayed: '2026-08-11 10:00:00',
});
});
it('leaves every other track alone', () => {
expect(libraryStore.getCachedTracks()?.[1]).toMatchObject({
FilePath: '/b.mp3',
PlayCount: 4,
});
});
it('replaces the array, so memoized consumers notice', () => {
// `track-list` keys its filter/sort caches on the array identity;
// mutating in place would be invisible to every one of them.
expect(libraryStore.getCachedTracks()).not.toBe(TRACKS);
expect(libraryStore.changeGeneration).toBeGreaterThan(0);
});
});
it('ignores a play count for a track it has never heard of', async () => {
const before = libraryStore.getCachedTracks();
emit(Events.TrackPlayCountChanged, {
filePath: '/not-in-this-library.mp3',
playCount: 1,
});
await flush();
expect(libraryStore.getCachedTracks()).toBe(before);
expect(calls()).toEqual([]);
});
/**
* Removing tracks is the same bargain the play count makes, one
* collection wider: the event carries the paths so the tracks array
* — the expensive one — is patched rather than refetched, while the
* album/artist/genre summaries, whose counts really did change, are
* dropped and reloaded.
*/
describe('tracks removed from the library', () => {
beforeEach(async () => {
emit(Events.TracksRemovedFromLibrary, {
filePaths: ['/a.mp3'],
count: 1,
});
await flush();
});
it('does not refetch the tracks', () => {
expect(calls('library.Library.GetAllTracks')).toHaveLength(0);
});
it('splices the removed track out in place', () => {
expect(libraryStore.getCachedTracks()?.map((t) => t.FilePath)).toEqual([
'/b.mp3',
]);
});
it('reloads the summaries, whose counts changed', () => {
expect(
[
'library.Library.GetAllAlbums',
'library.Library.GetAllArtists',
'library.Library.GetAllGenresWithCounts',
].map((path) => calls(path).length),
).toEqual([1, 1, 1]);
});
});
it('ignores a removal naming a track it does not hold, without dropping the array', async () => {
const before = libraryStore.getCachedTracks();
emit(Events.TracksRemovedFromLibrary, {
filePaths: ['/not-in-this-library.mp3'],
count: 1,
});
await flush();
expect(libraryStore.getCachedTracks()).toBe(before);
});
it('resets scroll positions on invalidation, so a shorter list is not scrolled past its end', async () => {
libraryStore.setScrollPosition('albums', 4200);
emit(Events.LibraryScanComplete);
await flush();
expect(libraryStore.getScrollPosition('albums')).toBe(0);
});
it('bumps the change generation for data, not for loading flags', async () => {
const before = libraryStore.changeGeneration;
await libraryStore.getTracks(); // cached: no change
const afterCachedRead = libraryStore.changeGeneration;
emit(Events.LibraryScanComplete);
await flush();
expect([
afterCachedRead === before,
libraryStore.changeGeneration > before,
]).toEqual([true, true]);
});
});
describe('library store: library filter', () => {
beforeEach(async () => {
libraryStore.setSelectedLibrary(null);
await reload();
});
it('switches to the by-library bindings when a filter is set', async () => {
libraryStore.setSelectedLibrary(7);
await flush();
expect(lastArgs('library.Library.GetAllTracksByLibrary')).toEqual([7]);
});
it('ignores a redundant selection instead of invalidating', async () => {
libraryStore.setSelectedLibrary(null);
await flush();
expect(calls()).toEqual([]);
});
it('answers the cached artist-albums query only when unfiltered', async () => {
const unfiltered = libraryStore.getAlbumsByArtistNameCached('Artist');
libraryStore.setSelectedLibrary(7);
await flush();
// With a filter active the cache is already library-scoped, so the
// store declines to answer and forces a backend query instead.
expect([
unfiltered,
libraryStore.getAlbumsByArtistNameCached('Artist'),
]).toEqual([ALBUMS, null]);
});
it('scopes an artist drill-down to the selected library', async () => {
libraryStore.setSelectedLibrary(8);
await libraryStore.getAlbumsByArtist(3);
expect(lastArgs('library.Library.GetAlbumsByArtistByLibrary')).toEqual([
3, 8,
]);
});
});
/**
* The reproduction for errors.C4 and errors.M1: two bugs that are the
* same bug seen from either end of an in-flight fetch.
*/
describe('library store: a fetch that is overtaken', () => {
beforeEach(async () => {
libraryStore.setSelectedLibrary(null);
await reload();
});
it('serves the library that is selected, not the one that was in flight', async () => {
const pending: Array<{ id: number; resolve: (v: unknown) => void }> = [];
const byLibrary = (id: number) => [{ ID: id, Title: `Library ${id}` }];
// Only the track fetch is held open; the other three settle at once,
// so the test is about the overtaking and nothing else.
stub(
'library.Library.GetAllTracksByLibrary',
(id: number) =>
new Promise((resolve) => {
pending.push({ id, resolve });
}),
);
libraryStore.setSelectedLibrary(7);
await flush();
libraryStore.setSelectedLibrary(8);
await flush();
// Library 7's answer lands after the user has already moved on.
pending.find((p) => p.id === 7)?.resolve(byLibrary(7));
await flush();
pending.find((p) => p.id === 8)?.resolve(byLibrary(8));
await flush();
expect(libraryStore.getCachedTracks()).toEqual(byLibrary(8));
});
it('settles the waiters when the fetch they are waiting on fails', async () => {
stubFailure('library.Library.GetAllTracks', 'sql: database is locked');
// Invalidation drops the cache and starts the fetch that fails.
emit(Events.LibraryScanComplete);
// Arrives while that fetch is in flight, so it waits on it rather
// than issuing a second one.
const waiter = libraryStore.getTracks().then(
() => 'resolved',
() => 'rejected',
);
const timeout = new Promise((resolve) => {
setTimeout(() => resolve('never settled'), 500);
});
await expect(Promise.race([waiter, timeout])).resolves.toBe('rejected');
});
});
describe('library store: default library id', () => {
beforeEach(async () => {
libraryStore.setSelectedLibrary(null);
await reload();
});
it('prefers the active filter', async () => {
libraryStore.setSelectedLibrary(8);
await expect(libraryStore.getDefaultLibraryId()).resolves.toBe(8);
});
it('falls back to the first known library, never to zero', async () => {
// id 0 never exists and trips the download_requests foreign key.
await expect(libraryStore.getDefaultLibraryId()).resolves.toBe(7);
});
it('returns null when there are no libraries at all', async () => {
stub('library.Library.GetAllLibrariesWithTrackCounts', []);
emit(Events.LibraryRemoved, { id: 7 });
await expect(libraryStore.getDefaultLibraryId()).resolves.toBeNull();
});
it('caches the library list until a library is added or renamed', async () => {
const fetched = (): number =>
calls('library.Library.GetAllLibrariesWithTrackCounts').length;
// The list survives a rescan — only library CRUD changes it.
emit(Events.LibraryAdded, { id: 9 });
await libraryStore.getLibraries();
const afterAdd = fetched();
await libraryStore.getLibraries();
const afterCachedRead = fetched();
emit(Events.LibraryRenamed, { id: 7, name: 'Renamed' });
await libraryStore.getLibraries();
expect([afterAdd, afterCachedRead, fetched()]).toEqual([1, 1, 2]);
});
});
describe('library store: cover size', () => {
beforeEach(() => {
localStorage.removeItem('cover-grid-size');
libraryStore.setCoverSize(176);
});
it('clamps below the minimum card width', () => {
libraryStore.setCoverSize(10);
expect(libraryStore.getCoverSize()).toBe(100);
});
it('clamps above the maximum card width', () => {
libraryStore.setCoverSize(9000);
expect(libraryStore.getCoverSize()).toBe(350);
});
it('rounds a fractional size, since it becomes a CSS pixel value', () => {
libraryStore.setCoverSize(180.6);
expect(libraryStore.getCoverSize()).toBe(181);
});
it('persists the size for the next session', () => {
libraryStore.setCoverSize(200);
expect(localStorage.getItem('cover-grid-size')).toBe('200');
});
it('does not notify when the clamped size is unchanged', async () => {
libraryStore.setCoverSize(300);
await flush();
let notifications = 0;
const off = libraryStore.subscribe(() => {
notifications += 1;
});
libraryStore.setCoverSize(400); // clamps back to 350 ≠ 300
libraryStore.setCoverSize(9999); // clamps to 350, unchanged
await flush();
off();
expect(notifications).toBe(1);
});
});
describe('library store: albums by artist name', () => {
beforeEach(async () => {
libraryStore.setSelectedLibrary(null);
await reload();
});
it('filters the album cache by artist name', () => {
stub('library.Library.GetAllAlbums', [...ALBUMS, ...OTHER_ALBUMS]);
expect(libraryStore.getAlbumsByArtistNameCached('Artist')).toEqual(ALBUMS);
});
it('returns an empty list, not null, for an artist with no albums', () => {
expect(libraryStore.getAlbumsByArtistNameCached('Nobody')).toEqual([]);
});
});