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
427 lines
12 KiB
Go
427 lines
12 KiB
Go
// Code generated by sqlc. DO NOT EDIT.
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// versions:
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// sqlc v1.30.0
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// source: albums.sql
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package sqlcgen
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import (
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"context"
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"database/sql"
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)
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const deleteAlbum = `-- name: DeleteAlbum :exec
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DELETE FROM albums WHERE id = ?
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`
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func (q *Queries) DeleteAlbum(ctx context.Context, id int64) error {
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_, err := q.db.ExecContext(ctx, deleteAlbum, id)
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return err
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}
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const deleteAllAlbums = `-- name: DeleteAllAlbums :exec
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DELETE FROM albums
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`
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func (q *Queries) DeleteAllAlbums(ctx context.Context) error {
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_, err := q.db.ExecContext(ctx, deleteAllAlbums)
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return err
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}
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const getAlbum = `-- name: GetAlbum :one
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SELECT id, name, artist_credit, artist_id, mbid, year, original_year, cover_art_id, pending_release_mbid FROM albums WHERE id = ? LIMIT 1
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`
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func (q *Queries) GetAlbum(ctx context.Context, id int64) (Album, error) {
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row := q.db.QueryRowContext(ctx, getAlbum, id)
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var i Album
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err := row.Scan(
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&i.ID,
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&i.Name,
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&i.ArtistCredit,
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&i.ArtistID,
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&i.Mbid,
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&i.Year,
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&i.OriginalYear,
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&i.CoverArtID,
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&i.PendingReleaseMbid,
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)
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return i, err
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}
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const getAlbumCompleteness = `-- name: GetAlbumCompleteness :one
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SELECT
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-- Distinct (disc, track) pairs: this app detects duplicates, and
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-- counting two files of track 3 twice would report a short album as
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-- complete. A file with no track number falls back to its own id,
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-- because three untagged files are three tracks, not one.
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CAST(COUNT(DISTINCT CAST(COALESCE(a.disc_number, 1) AS TEXT) || ':' ||
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COALESCE(CAST(a.track_number AS TEXT), 'f' || a.id)
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) AS INTEGER) AS owned,
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CAST(COALESCE((
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SELECT SUM(per_disc.total)
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FROM (
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SELECT MAX(b.total_tracks) AS total
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FROM audio_files b
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WHERE b.album_id = ?1 AND b.total_tracks IS NOT NULL
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GROUP BY COALESCE(b.disc_number, 1)
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) per_disc
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), 0) AS INTEGER) AS expected,
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CAST((
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SELECT COUNT(*) = 0 FROM audio_files c
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WHERE c.album_id = ?1 AND c.total_tracks IS NULL
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) AS INTEGER) AS known
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FROM audio_files a
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WHERE a.album_id = ?1
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`
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type GetAlbumCompletenessRow struct {
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Owned int64
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Expected int64
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Known int64
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}
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// "Do I have all of this album", answered from the tags on disk.
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//
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// The expectation is a **sum over discs**, not one number: totals are
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// declared per disc ("5/12" on disc 2 means 12 tracks on disc 2), so a
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// multi-disc album's expectation is the sum of each disc's declared
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// total. A disc whose files declared nothing leaves the whole album
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// unknowable rather than being covered by the discs that did -- which is
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// what `known` reports.
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//
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// Owned counts DISTINCT track numbers: this app detects duplicates, and
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// counting two files of track 3 twice would report a short album as
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// complete.
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func (q *Queries) GetAlbumCompleteness(ctx context.Context, albumID sql.NullInt64) (GetAlbumCompletenessRow, error) {
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row := q.db.QueryRowContext(ctx, getAlbumCompleteness, albumID)
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var i GetAlbumCompletenessRow
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err := row.Scan(&i.Owned, &i.Expected, &i.Known)
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return i, err
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}
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const getAlbums = `-- name: GetAlbums :many
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SELECT
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al.id,
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al.name,
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COALESCE(al.original_year, al.year) AS year,
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COALESCE(al.year, 0) AS release_year,
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al.mbid,
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al.artist_credit AS artist_name,
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CAST(COALESCE(ar.mbid, '') AS TEXT) AS artist_mbid,
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COALESCE(ca.file_path, '') AS cover_art_path
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FROM albums al
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LEFT JOIN artists ar ON ar.id = al.artist_id
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LEFT JOIN cover_art ca ON ca.id = al.cover_art_id
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WHERE EXISTS (
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SELECT 1 FROM audio_files af
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WHERE af.album_id = al.id
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AND af.library_id = COALESCE(NULLIF(CAST(?1 AS INTEGER), 0), af.library_id)
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)
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ORDER BY al.name
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`
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type GetAlbumsRow struct {
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ID int64
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Name string
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Year sql.NullInt64
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ReleaseYear int64
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Mbid sql.NullString
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ArtistName string
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ArtistMbid string
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CoverArtPath string
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}
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func (q *Queries) GetAlbums(ctx context.Context, libraryID int64) ([]GetAlbumsRow, error) {
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rows, err := q.db.QueryContext(ctx, getAlbums, libraryID)
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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 []GetAlbumsRow
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for rows.Next() {
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var i GetAlbumsRow
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if err := rows.Scan(
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&i.ID,
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&i.Name,
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&i.Year,
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&i.ReleaseYear,
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&i.Mbid,
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&i.ArtistName,
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&i.ArtistMbid,
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&i.CoverArtPath,
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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.Close(); err != nil {
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return nil, err
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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 getAlbumsByArtistName = `-- name: GetAlbumsByArtistName :many
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SELECT
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al.id,
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al.name,
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COALESCE(al.original_year, al.year) AS year,
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COALESCE(al.year, 0) AS release_year,
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al.mbid,
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al.artist_credit AS artist_name,
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CAST(COALESCE(ar.mbid, '') AS TEXT) AS artist_mbid,
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COALESCE(ca.file_path, '') AS cover_art_path
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FROM albums al
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LEFT JOIN artists ar ON ar.id = al.artist_id
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LEFT JOIN cover_art ca ON ca.id = al.cover_art_id
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WHERE (al.artist_credit = ?1 OR ar.name = ?1)
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AND EXISTS (
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SELECT 1 FROM audio_files af
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WHERE af.album_id = al.id
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AND af.library_id = COALESCE(NULLIF(CAST(?2 AS INTEGER), 0), af.library_id)
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)
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ORDER BY year, al.name
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`
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type GetAlbumsByArtistNameParams struct {
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Artist string
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LibraryID int64
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}
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type GetAlbumsByArtistNameRow struct {
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ID int64
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Name string
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Year sql.NullInt64
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ReleaseYear int64
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Mbid sql.NullString
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ArtistName string
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ArtistMbid string
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CoverArtPath string
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}
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func (q *Queries) GetAlbumsByArtistName(ctx context.Context, arg GetAlbumsByArtistNameParams) ([]GetAlbumsByArtistNameRow, error) {
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rows, err := q.db.QueryContext(ctx, getAlbumsByArtistName, arg.Artist, arg.LibraryID)
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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 []GetAlbumsByArtistNameRow
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for rows.Next() {
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var i GetAlbumsByArtistNameRow
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if err := rows.Scan(
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&i.ID,
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&i.Name,
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&i.Year,
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&i.ReleaseYear,
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&i.Mbid,
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&i.ArtistName,
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&i.ArtistMbid,
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&i.CoverArtPath,
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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.Close(); err != nil {
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return nil, err
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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 getAlbumsWithPendingReleaseMBID = `-- name: GetAlbumsWithPendingReleaseMBID :many
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SELECT id, pending_release_mbid FROM albums
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WHERE pending_release_mbid IS NOT NULL AND pending_release_mbid != ''
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AND (mbid IS NULL OR mbid = '')
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`
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type GetAlbumsWithPendingReleaseMBIDRow struct {
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ID int64
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PendingReleaseMbid sql.NullString
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}
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func (q *Queries) GetAlbumsWithPendingReleaseMBID(ctx context.Context) ([]GetAlbumsWithPendingReleaseMBIDRow, error) {
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rows, err := q.db.QueryContext(ctx, getAlbumsWithPendingReleaseMBID)
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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 []GetAlbumsWithPendingReleaseMBIDRow
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for rows.Next() {
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var i GetAlbumsWithPendingReleaseMBIDRow
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if err := rows.Scan(&i.ID, &i.PendingReleaseMbid); 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.Close(); err != nil {
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return nil, err
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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 getEmptyAlbumIDs = `-- name: GetEmptyAlbumIDs :many
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SELECT id FROM albums al
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WHERE NOT EXISTS (
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SELECT 1 FROM audio_files af WHERE af.album_id = al.id
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)
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`
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// Albums with no file left behind them. Under the old schema this was
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// one of three orphan sweeps that had to run by hand and did not;
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// audio_files is the only thing that can leave an album empty now, so
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// this is the whole of it.
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func (q *Queries) GetEmptyAlbumIDs(ctx context.Context) ([]int64, error) {
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rows, err := q.db.QueryContext(ctx, getEmptyAlbumIDs)
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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 []int64
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for rows.Next() {
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var id int64
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if err := rows.Scan(&id); err != nil {
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return nil, err
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}
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items = append(items, id)
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}
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if err := rows.Close(); err != nil {
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return nil, err
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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 resolveAlbumPendingReleaseMBID = `-- name: ResolveAlbumPendingReleaseMBID :exec
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UPDATE albums
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SET mbid = ?, pending_release_mbid = NULL
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WHERE id = ? AND (mbid IS NULL OR mbid = '')
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`
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type ResolveAlbumPendingReleaseMBIDParams struct {
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Mbid sql.NullString
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ID int64
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}
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// Clears the pending marker once the release-group MBID it stood in for
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// has been resolved. Guarded so a real MBID is never overwritten.
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func (q *Queries) ResolveAlbumPendingReleaseMBID(ctx context.Context, arg ResolveAlbumPendingReleaseMBIDParams) error {
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_, err := q.db.ExecContext(ctx, resolveAlbumPendingReleaseMBID, arg.Mbid, arg.ID)
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return err
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}
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const setAlbumCoverArt = `-- name: SetAlbumCoverArt :exec
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UPDATE albums SET cover_art_id = ? WHERE id = ?
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`
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type SetAlbumCoverArtParams struct {
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CoverArtID sql.NullInt64
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ID int64
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}
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func (q *Queries) SetAlbumCoverArt(ctx context.Context, arg SetAlbumCoverArtParams) error {
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_, err := q.db.ExecContext(ctx, setAlbumCoverArt, arg.CoverArtID, arg.ID)
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return err
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}
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const setAlbumMBID = `-- name: SetAlbumMBID :exec
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UPDATE albums SET mbid = ? WHERE id = ?
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`
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type SetAlbumMBIDParams struct {
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Mbid sql.NullString
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ID int64
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}
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func (q *Queries) SetAlbumMBID(ctx context.Context, arg SetAlbumMBIDParams) error {
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_, err := q.db.ExecContext(ctx, setAlbumMBID, arg.Mbid, arg.ID)
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return err
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}
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const setAlbumOriginalYear = `-- name: SetAlbumOriginalYear :exec
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UPDATE albums SET original_year = ? WHERE id = ?
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`
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type SetAlbumOriginalYearParams struct {
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OriginalYear sql.NullInt64
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ID int64
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}
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func (q *Queries) SetAlbumOriginalYear(ctx context.Context, arg SetAlbumOriginalYearParams) error {
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_, err := q.db.ExecContext(ctx, setAlbumOriginalYear, arg.OriginalYear, arg.ID)
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return err
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}
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const setAlbumPendingReleaseMBID = `-- name: SetAlbumPendingReleaseMBID :exec
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UPDATE albums SET pending_release_mbid = ? WHERE id = ?
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`
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type SetAlbumPendingReleaseMBIDParams struct {
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PendingReleaseMbid sql.NullString
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ID int64
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}
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func (q *Queries) SetAlbumPendingReleaseMBID(ctx context.Context, arg SetAlbumPendingReleaseMBIDParams) error {
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_, err := q.db.ExecContext(ctx, setAlbumPendingReleaseMBID, arg.PendingReleaseMbid, arg.ID)
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return err
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}
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const upsertAlbum = `-- name: UpsertAlbum :one
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INSERT INTO albums (name, artist_credit, artist_id, year, cover_art_id)
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VALUES (?, ?, ?, ?, ?)
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ON CONFLICT(name, artist_credit) DO UPDATE SET
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artist_id = COALESCE(excluded.artist_id, albums.artist_id),
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year = COALESCE(excluded.year, albums.year),
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cover_art_id = COALESCE(excluded.cover_art_id, albums.cover_art_id)
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RETURNING id, name, artist_credit, artist_id, mbid, year, original_year, cover_art_id, pending_release_mbid
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`
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type UpsertAlbumParams struct {
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Name string
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ArtistCredit string
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ArtistID sql.NullInt64
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Year sql.NullInt64
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CoverArtID sql.NullInt64
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}
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// Queries over albums (formerly release_groups).
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//
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// The two-copy pattern is gone here too: one query answers both the
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// whole-library and the single-library case. The `fallback_ac`
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// subquery every album read used to carry -- "if the album has no album
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// artist credit, borrow one from any of its recordings" -- is gone with
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// it, because the album carries its own credit text now.
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func (q *Queries) UpsertAlbum(ctx context.Context, arg UpsertAlbumParams) (Album, error) {
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row := q.db.QueryRowContext(ctx, upsertAlbum,
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arg.Name,
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arg.ArtistCredit,
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arg.ArtistID,
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arg.Year,
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arg.CoverArtID,
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)
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var i Album
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err := row.Scan(
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&i.ID,
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&i.Name,
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&i.ArtistCredit,
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&i.ArtistID,
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&i.Mbid,
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&i.Year,
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&i.OriginalYear,
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&i.CoverArtID,
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&i.PendingReleaseMbid,
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)
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return i, err
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}
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