Nothing in Minstrel ever noticed a deleted file. The walk only visits paths that exist, so a row whose file was gone was never scanned, never errored, never counted — permanently invisible. classifyEvent ignores fsnotify removals by design, and the safety-net scan is the same walk, so it covers additions only. Rows accumulated forever. Found on the operator's library: a completed scan reported skipped=24185 errored=0 while the MBID backfill (which opens files by DB path rather than walking) logged ~40 "no such file or directory" across three reorganised albums. Those rows also kept their pre-#2499 welded genre, which is how this surfaced — the version-stamped tag re-read can only reach files the walk visits. The harm is not cosmetic. tracks is the candidate universe for recommendation.sql / discover.sql / system_mixes.sql and nothing filtered on file existence, so a mix could spend a slot on a track that cannot stream. Marks rather than deletes. A missing file is a claim about the filesystem and the filesystem lies transiently — an unmounted volume, a network blip, a container that started before its media mount attached. Every sweep in internal/gc resolves a truth INSIDE the database and is safe to run blind; this one is not, so no deletion happens here. Three guards refuse to act on ambiguous evidence: every scan root must resolve to a non-empty directory, the walk must have seen at least one file, and one reconcile may newly mark at most 25% of the library. Clearing a mark is never the dangerous direction, so it runs unconditionally — otherwise a library that tripped the cap could never recover once the mount returned. Only a full Scan reconciles. The walk's set of seen paths is the evidence, and ScanFiles has no basis for concluding anything about files it did not look at. Excludes marked tracks from all 13 track-emitting queries (radio x2, system mixes x5, discover x4, most-played x2), the 6 play-history seed picks, and the genre browse axis. Deliberately NOT filtered: the shared ListPlaylistTracks read path, because it also serves user-curated playlists where hiding a track the user added would be wrong — system playlists shed orphans on their next daily rebuild instead. History and the taste profile also keep them: those record the past, and a track you played 200 times still says something about your taste. Reconcile tallies land in scan_runs so a disappearance is visible rather than discovered when a mix comes up short.
351 lines
11 KiB
Go
351 lines
11 KiB
Go
// Code generated by sqlc. DO NOT EDIT.
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// versions:
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// sqlc v1.31.1
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// source: browse.sql
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package dbq
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import (
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"context"
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"github.com/jackc/pgx/v5/pgtype"
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)
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const countAlbumsByGenre = `-- name: CountAlbumsByGenre :one
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SELECT COUNT(*) FROM albums
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WHERE EXISTS (
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SELECT 1
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FROM tracks
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JOIN LATERAL regexp_split_to_table(coalesce(tracks.genre, ''), '[;,]') AS g(genre) ON true
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WHERE tracks.album_id = albums.id
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AND tracks.missing_since IS NULL
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AND trim(g.genre) = trim($1::text)
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)
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`
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// Total for the paging envelope. EXISTS mirrors the list query exactly; a
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// JOIN + DISTINCT here would count differently the moment an album has two
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// tracks carrying the same genre.
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func (q *Queries) CountAlbumsByGenre(ctx context.Context, genre string) (int64, error) {
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row := q.db.QueryRow(ctx, countAlbumsByGenre, genre)
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var count int64
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err := row.Scan(&count)
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return count, err
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}
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const countAlbumsByYearRange = `-- name: CountAlbumsByYearRange :one
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SELECT COUNT(*) FROM albums
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WHERE release_date IS NOT NULL
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AND EXTRACT(YEAR FROM release_date)::int
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BETWEEN $1::int AND $2::int
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`
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type CountAlbumsByYearRangeParams struct {
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YearFrom int32
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YearTo int32
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}
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func (q *Queries) CountAlbumsByYearRange(ctx context.Context, arg CountAlbumsByYearRangeParams) (int64, error) {
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row := q.db.QueryRow(ctx, countAlbumsByYearRange, arg.YearFrom, arg.YearTo)
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var count int64
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err := row.Scan(&count)
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return count, err
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}
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const listAlbumYearsWithCount = `-- name: ListAlbumYearsWithCount :many
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SELECT EXTRACT(YEAR FROM release_date)::int AS year, COUNT(*)::bigint AS album_count
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FROM albums
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WHERE release_date IS NOT NULL
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GROUP BY year
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ORDER BY year DESC
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`
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type ListAlbumYearsWithCountRow struct {
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Year int32
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AlbumCount int64
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}
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// Year browse index (#367). Only albums with a release_date appear — an
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// album with no date isn't "year unknown" as a browsable bucket, it's absent
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// from this axis, and the UI says so rather than inventing a 0 row.
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// Newest first: recent releases are the likelier browse target.
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func (q *Queries) ListAlbumYearsWithCount(ctx context.Context) ([]ListAlbumYearsWithCountRow, error) {
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rows, err := q.db.Query(ctx, listAlbumYearsWithCount)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []ListAlbumYearsWithCountRow
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for rows.Next() {
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var i ListAlbumYearsWithCountRow
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if err := rows.Scan(&i.Year, &i.AlbumCount); err != nil {
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return nil, err
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}
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items = append(items, i)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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const listAlbumsByGenreWithArtist = `-- name: ListAlbumsByGenreWithArtist :many
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SELECT albums.id, albums.title, albums.sort_title, albums.artist_id, albums.release_date, albums.mbid, albums.cover_art_path, albums.created_at, albums.updated_at, albums.cover_art_source, albums.cover_art_sources_version, artists.name AS artist_name
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FROM albums
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JOIN artists ON artists.id = albums.artist_id
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WHERE EXISTS (
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SELECT 1
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FROM tracks
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JOIN LATERAL regexp_split_to_table(coalesce(tracks.genre, ''), '[;,]') AS g(genre) ON true
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WHERE tracks.album_id = albums.id
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AND tracks.missing_since IS NULL
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AND trim(g.genre) = trim($1::text)
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)
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ORDER BY albums.sort_title, albums.id
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LIMIT $3 OFFSET $2
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`
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type ListAlbumsByGenreWithArtistParams struct {
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Genre string
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Off int32
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Lim int32
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}
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type ListAlbumsByGenreWithArtistRow struct {
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Album Album
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ArtistName string
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}
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// Albums for one genre, joined with artist_name for the browse grid.
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// An album belongs to a genre when ANY of its tracks carry it. Splits and
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// trims identically to ListGenresWithCount — if the list is built by
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// splitting and the detail matched exactly, every multi-genre track would
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// produce a genre row that leads to an empty page.
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func (q *Queries) ListAlbumsByGenreWithArtist(ctx context.Context, arg ListAlbumsByGenreWithArtistParams) ([]ListAlbumsByGenreWithArtistRow, error) {
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rows, err := q.db.Query(ctx, listAlbumsByGenreWithArtist, arg.Genre, arg.Off, arg.Lim)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []ListAlbumsByGenreWithArtistRow
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for rows.Next() {
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var i ListAlbumsByGenreWithArtistRow
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if err := rows.Scan(
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&i.Album.ID,
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&i.Album.Title,
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&i.Album.SortTitle,
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&i.Album.ArtistID,
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&i.Album.ReleaseDate,
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&i.Album.Mbid,
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&i.Album.CoverArtPath,
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&i.Album.CreatedAt,
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&i.Album.UpdatedAt,
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&i.Album.CoverArtSource,
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&i.Album.CoverArtSourcesVersion,
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&i.ArtistName,
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); err != nil {
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return nil, err
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}
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items = append(items, i)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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const listAlbumsByYearRangeWithArtist = `-- name: ListAlbumsByYearRangeWithArtist :many
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SELECT albums.id, albums.title, albums.sort_title, albums.artist_id, albums.release_date, albums.mbid, albums.cover_art_path, albums.created_at, albums.updated_at, albums.cover_art_source, albums.cover_art_sources_version, artists.name AS artist_name
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FROM albums
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JOIN artists ON artists.id = albums.artist_id
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WHERE albums.release_date IS NOT NULL
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AND EXTRACT(YEAR FROM albums.release_date)::int
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BETWEEN $1::int AND $2::int
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ORDER BY albums.sort_title, albums.id
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LIMIT $4 OFFSET $3
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`
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type ListAlbumsByYearRangeWithArtistParams struct {
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YearFrom int32
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YearTo int32
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Off int32
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Lim int32
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}
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type ListAlbumsByYearRangeWithArtistRow struct {
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Album Album
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ArtistName string
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}
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// Albums released within an inclusive year range, for the albums-page filter.
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func (q *Queries) ListAlbumsByYearRangeWithArtist(ctx context.Context, arg ListAlbumsByYearRangeWithArtistParams) ([]ListAlbumsByYearRangeWithArtistRow, error) {
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rows, err := q.db.Query(ctx, listAlbumsByYearRangeWithArtist,
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arg.YearFrom,
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arg.YearTo,
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arg.Off,
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arg.Lim,
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)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []ListAlbumsByYearRangeWithArtistRow
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for rows.Next() {
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var i ListAlbumsByYearRangeWithArtistRow
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if err := rows.Scan(
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&i.Album.ID,
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&i.Album.Title,
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&i.Album.SortTitle,
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&i.Album.ArtistID,
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&i.Album.ReleaseDate,
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&i.Album.Mbid,
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&i.Album.CoverArtPath,
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&i.Album.CreatedAt,
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&i.Album.UpdatedAt,
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&i.Album.CoverArtSource,
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&i.Album.CoverArtSourcesVersion,
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&i.ArtistName,
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); err != nil {
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return nil, err
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}
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items = append(items, i)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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const listGenresForAlbum = `-- name: ListGenresForAlbum :many
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SELECT DISTINCT trim(g.genre) AS genre
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FROM tracks
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JOIN LATERAL regexp_split_to_table(coalesce(tracks.genre, ''), '[;,]') AS g(genre) ON true
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WHERE tracks.album_id = $1 AND trim(g.genre) <> ''
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AND tracks.missing_since IS NULL
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ORDER BY trim(g.genre)
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`
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// Distinct genres carried by an album's tracks, for the album detail page's
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// quick-jump chips. Split and trimmed identically to ListGenresWithCount, so a
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// chip always leads to a page that actually contains this album — the two
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// diverging is exactly the bug #367 had to fix in ListAlbumsByGenre.
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func (q *Queries) ListGenresForAlbum(ctx context.Context, albumID pgtype.UUID) ([]string, error) {
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rows, err := q.db.Query(ctx, listGenresForAlbum, albumID)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []string
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for rows.Next() {
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var genre string
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if err := rows.Scan(&genre); err != nil {
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return nil, err
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}
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items = append(items, genre)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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const listGenresForArtist = `-- name: ListGenresForArtist :many
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SELECT DISTINCT trim(g.genre) AS genre
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FROM tracks
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JOIN LATERAL regexp_split_to_table(coalesce(tracks.genre, ''), '[;,]') AS g(genre) ON true
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WHERE tracks.artist_id = $1 AND trim(g.genre) <> ''
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AND tracks.missing_since IS NULL
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ORDER BY trim(g.genre)
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`
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// Same, across everything by one artist. Alphabetical rather than by count:
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// an artist's genre set is small, and a stable order reads better than a
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// frequency ranking nobody asked about.
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func (q *Queries) ListGenresForArtist(ctx context.Context, artistID pgtype.UUID) ([]string, error) {
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rows, err := q.db.Query(ctx, listGenresForArtist, artistID)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []string
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for rows.Next() {
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var genre string
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if err := rows.Scan(&genre); err != nil {
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return nil, err
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}
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items = append(items, genre)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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const listGenresWithCount = `-- name: ListGenresWithCount :many
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SELECT trim(g.genre) AS genre, COUNT(DISTINCT tracks.id)::bigint AS track_count
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FROM tracks
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JOIN LATERAL regexp_split_to_table(coalesce(tracks.genre, ''), '[;,]') AS g(genre) ON true
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WHERE trim(g.genre) <> ''
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AND tracks.missing_since IS NULL
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GROUP BY trim(g.genre)
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ORDER BY track_count DESC, trim(g.genre)
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`
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type ListGenresWithCountRow struct {
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Genre string
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TrackCount int64
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}
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// Every query in this file filters `tracks.missing_since IS NULL` (#2523).
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// A row whose file has vanished keeps its genre forever — the scanner walks the
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// filesystem, so it never revisits a path that no longer exists — which is how
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// pre-#2499 welded genres survived a full re-scan and kept showing in the index.
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// Browsing is a way of finding something to play, so a track that cannot play
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// should not shape it.
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//
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// Year queries below join albums only and are deliberately left alone: an album
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// is still a real release even if some of its tracks are gone. An album whose
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// EVERY track is missing will linger on the year axis; that's a narrower case,
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// tracked with the rest of the cleanup work.
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// Genre browse index (#367).
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//
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// Genres live inline on tracks.genre as a delimited string, so this splits on
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// the same [;,] pattern already used by recommendation.sql and discover.sql —
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// a track tagged "Rock;Pop" must count toward both, and diverging from the
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// established pattern here would make the browse surface disagree with what
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// the recommendation engine believes the library contains.
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//
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// trim() but deliberately NO lower(): trimming repairs an artifact of OUR
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// splitting ("Rock; Pop" yields " Pop", and showing that as a distinct genre
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// would be a bug), whereas case is what the tag actually says. Raw ID3 is
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// exposed as-is for v1, so "Rock" and "rock" appear as separate rows.
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//
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// COUNT(DISTINCT) because a sloppy tag like "Rock;Rock" would otherwise
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// inflate its own row.
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//
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// Ordered by count first: raw ID3 data has a long tail of one-off junk tags,
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// so alphabetical would bury the handful of genres an operator actually has a
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// library's worth of. Name breaks ties for a stable order.
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// Ordered by the expression, not the output alias: `ORDER BY genre` is
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// ambiguous between the alias and tracks.genre, and sqlc rejects it.
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func (q *Queries) ListGenresWithCount(ctx context.Context) ([]ListGenresWithCountRow, error) {
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rows, err := q.db.Query(ctx, listGenresWithCount)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var items []ListGenresWithCountRow
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for rows.Next() {
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var i ListGenresWithCountRow
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if err := rows.Scan(&i.Genre, &i.TrackCount); err != nil {
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return nil, err
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}
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items = append(items, i)
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}
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if err := rows.Err(); err != nil {
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return nil, err
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}
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return items, nil
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}
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