Files
minstrel/internal/db/dbq/tracks.sql.go
T
bvandeusenandClaude Opus 5 c8bf9dc929
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refactor(library): move detection matches on the audio hash, not size and duration (M400 #3914)
A file that comes back renamed or moved keeps its track row, and with
it its likes and play history, by being matched to the missing row it
replaces (#2528). Untagged files were matched on (file_size,
duration_ms), which was never a fingerprint. It could pair two
unrelated files that happened to share a byte count and a duration,
and it missed a file retagged in place, whose size changes. The only
defence was requiring a unique match and otherwise giving up.

Now there is a real identity. FindMissingTrackByAudioHash matches a
missing track by the SHA-256 of its encoded audio (track_fingerprints,
#3906). That survives a rename, a move and a retag, and only an
identical recording can match it. adoptMovedTrack takes the new file's
hash, which the scan already computes before adoption. The size and
duration query and fallback are removed outright, with no second path
(rule 22).

Unchanged:
- MBID first: it identifies the recording and survives a re-encode
  that even the hash does not
- a unique match is still required
- an absent hash is never looked up, so unhashable files cannot pair
  with each other

The test fake answers the hash lookup only for the hash it holds, so
the tests can tell adoption by identity apart from adoption by
coincidence. That includes the case the old pair got wrong: different
audio of equal size and duration is not adopted.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SQ31KQpYbStyK5y58UmPLH
2026-09-11 17:31:42 -04:00

890 lines
25 KiB
Go

// Code generated by sqlc. DO NOT EDIT.
// versions:
// sqlc v1.31.1
// source: tracks.sql
package dbq
import (
"context"
"github.com/jackc/pgx/v5/pgtype"
)
const adoptTrackPath = `-- name: AdoptTrackPath :execrows
UPDATE tracks
SET file_path = $1,
missing_since = NULL
WHERE id = $2
AND missing_since IS NOT NULL
`
type AdoptTrackPathParams struct {
FilePath string
ID pgtype.UUID
}
// Re-points a missing row at the path its file turned up on, and clears the
// mark. The caller's normal UpsertTrack then conflicts on file_path and updates
// THIS row in place, so the track id survives and its likes, play history and
// playlist memberships come with it.
//
// `missing_since IS NOT NULL` again, this time as a race guard: two files can't
// both adopt the same row, and :execrows reports 0 to whichever loses.
func (q *Queries) AdoptTrackPath(ctx context.Context, arg AdoptTrackPathParams) (int64, error) {
result, err := q.db.Exec(ctx, adoptTrackPath, arg.FilePath, arg.ID)
if err != nil {
return 0, err
}
return result.RowsAffected(), nil
}
const clearTracksMissing = `-- name: ClearTracksMissing :execrows
UPDATE tracks
SET missing_since = NULL
WHERE id = ANY($1::uuid[])
AND missing_since IS NOT NULL
`
// Clears the mark on rows whose file is back. Runs independently of the mtime
// skip check, so a file that reappears unchanged is un-marked even though the
// scanner skips re-reading its tags.
func (q *Queries) ClearTracksMissing(ctx context.Context, ids []pgtype.UUID) (int64, error) {
result, err := q.db.Exec(ctx, clearTracksMissing, ids)
if err != nil {
return 0, err
}
return result.RowsAffected(), nil
}
const countMissingTracks = `-- name: CountMissingTracks :one
SELECT COUNT(*) FROM tracks WHERE missing_since IS NOT NULL
`
// Total for the admin surface's badge and paging. Uses the same partial index
// (tracks_missing_since_idx) as the list above.
func (q *Queries) CountMissingTracks(ctx context.Context) (int64, error) {
row := q.db.QueryRow(ctx, countMissingTracks)
var count int64
err := row.Scan(&count)
return count, err
}
const countTracksByAlbum = `-- name: CountTracksByAlbum :one
SELECT count(*) FROM tracks WHERE album_id = $1
`
func (q *Queries) CountTracksByAlbum(ctx context.Context, albumID pgtype.UUID) (int64, error) {
row := q.db.QueryRow(ctx, countTracksByAlbum, albumID)
var count int64
err := row.Scan(&count)
return count, err
}
const countTracksByArtist = `-- name: CountTracksByArtist :one
SELECT COUNT(*) FROM tracks WHERE artist_id = $1
`
// Used by request-progress reporting to count tracks ingested under a
// matched artist (sum across all the artist's albums) while a request
// is still in flight.
func (q *Queries) CountTracksByArtist(ctx context.Context, artistID pgtype.UUID) (int64, error) {
row := q.db.QueryRow(ctx, countTracksByArtist, artistID)
var count int64
err := row.Scan(&count)
return count, err
}
const countTracksMatching = `-- name: CountTracksMatching :one
SELECT COUNT(*) FROM tracks
WHERE title ILIKE '%' || $1::text || '%'
AND NOT EXISTS (
SELECT 1 FROM lidarr_quarantine q
WHERE q.user_id = $2 AND q.track_id = tracks.id
)
`
type CountTracksMatchingParams struct {
Column1 string
UserID pgtype.UUID
}
// $1 = title query, $2 = user_id (NULL to skip quarantine filter).
func (q *Queries) CountTracksMatching(ctx context.Context, arg CountTracksMatchingParams) (int64, error) {
row := q.db.QueryRow(ctx, countTracksMatching, arg.Column1, arg.UserID)
var count int64
err := row.Scan(&count)
return count, err
}
const deleteTrack = `-- name: DeleteTrack :one
DELETE FROM tracks WHERE id = $1
RETURNING id, album_id, artist_id, file_path, mbid
`
type DeleteTrackRow struct {
ID pgtype.UUID
AlbumID pgtype.UUID
ArtistID pgtype.UUID
FilePath string
Mbid *string
}
// M7 #372: hard delete with FK cascade. The CASCADE on track_id from
// play_events / general_likes_tracks / lidarr_quarantine /
// lidarr_quarantine_actions handles their cleanup. RETURNING gives us
// album_id + artist_id for the album-empty / artist-empty cascade
// checks the service does next.
func (q *Queries) DeleteTrack(ctx context.Context, id pgtype.UUID) (DeleteTrackRow, error) {
row := q.db.QueryRow(ctx, deleteTrack, id)
var i DeleteTrackRow
err := row.Scan(
&i.ID,
&i.AlbumID,
&i.ArtistID,
&i.FilePath,
&i.Mbid,
)
return i, err
}
const findMissingTrackByAudioHash = `-- name: FindMissingTrackByAudioHash :many
SELECT t.id, t.file_path
FROM tracks t
JOIN track_fingerprints f ON f.track_id = t.id
WHERE t.missing_since IS NOT NULL
AND f.audio_stream_sha256 = $1
LIMIT 2
`
type FindMissingTrackByAudioHashRow struct {
ID pgtype.UUID
FilePath string
}
// Move detection fallback for files with no MBID (#2528, #3914). The audio stream
// hash identifies the encoded audio itself, so it survives a rename, a move and a
// retag — anything short of a re-encode. It replaced (file_size, duration_ms),
// which could pair two unrelated files that happened to share a byte count and a
// duration, and missed a file retagged in place, whose size changes.
//
// Same missing-only constraint and same LIMIT 2 rationale as the MBID variant.
func (q *Queries) FindMissingTrackByAudioHash(ctx context.Context, audioStreamSha256 []byte) ([]FindMissingTrackByAudioHashRow, error) {
rows, err := q.db.Query(ctx, findMissingTrackByAudioHash, audioStreamSha256)
if err != nil {
return nil, err
}
defer rows.Close()
var items []FindMissingTrackByAudioHashRow
for rows.Next() {
var i FindMissingTrackByAudioHashRow
if err := rows.Scan(&i.ID, &i.FilePath); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const findMissingTrackByMbid = `-- name: FindMissingTrackByMbid :many
SELECT id, file_path FROM tracks
WHERE missing_since IS NOT NULL
AND mbid IS NOT NULL
AND mbid = $1::text
LIMIT 2
`
type FindMissingTrackByMbidRow struct {
ID pgtype.UUID
FilePath string
}
// Move detection, strongest signal (#2528). A file that turned up at a new path
// carrying a recording MBID we already have on a MISSING row is that recording,
// moved — not a new track.
//
// `missing_since IS NOT NULL` is the safety constraint, not an optimisation: a
// row whose file is present elsewhere on disk is a DUPLICATE, and re-pointing
// its file_path would corrupt the copy that still exists.
//
// LIMIT 2 because the caller only needs to know "exactly one" vs "more than
// one" — an ambiguous match must not be adopted arbitrarily.
func (q *Queries) FindMissingTrackByMbid(ctx context.Context, mbid string) ([]FindMissingTrackByMbidRow, error) {
rows, err := q.db.Query(ctx, findMissingTrackByMbid, mbid)
if err != nil {
return nil, err
}
defer rows.Close()
var items []FindMissingTrackByMbidRow
for rows.Next() {
var i FindMissingTrackByMbidRow
if err := rows.Scan(&i.ID, &i.FilePath); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const getTrackByID = `-- name: GetTrackByID :one
SELECT id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since FROM tracks WHERE id = $1
`
func (q *Queries) GetTrackByID(ctx context.Context, id pgtype.UUID) (Track, error) {
row := q.db.QueryRow(ctx, getTrackByID, id)
var i Track
err := row.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
)
return i, err
}
const getTrackByPath = `-- name: GetTrackByPath :one
SELECT id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since FROM tracks WHERE file_path = $1
`
func (q *Queries) GetTrackByPath(ctx context.Context, filePath string) (Track, error) {
row := q.db.QueryRow(ctx, getTrackByPath, filePath)
var i Track
err := row.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
)
return i, err
}
const getTracksByIDs = `-- name: GetTracksByIDs :many
SELECT id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since FROM tracks WHERE id = ANY($1::uuid[])
`
// Batched lookup used by /api/library/sync to hydrate upsert payloads
// (#357). Mirror of GetArtistsByIDs.
func (q *Queries) GetTracksByIDs(ctx context.Context, dollar_1 []pgtype.UUID) ([]Track, error) {
rows, err := q.db.Query(ctx, getTracksByIDs, dollar_1)
if err != nil {
return nil, err
}
defer rows.Close()
var items []Track
for rows.Next() {
var i Track
if err := rows.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listArtistTracksForUser = `-- name: ListArtistTracksForUser :many
SELECT t.id, t.title, t.album_id, t.artist_id, t.track_number, t.disc_number, t.duration_ms, t.file_path, t.file_size, t.file_format, t.bitrate, t.mbid, t.genre, t.added_at, t.updated_at, t.tag_source, t.tag_sources_version, t.tag_read_version, t.missing_since,
albums.title AS album_title,
artists.name AS artist_name
FROM tracks t
JOIN albums ON albums.id = t.album_id
JOIN artists ON artists.id = t.artist_id
WHERE t.artist_id = $1
AND NOT EXISTS (
SELECT 1 FROM lidarr_quarantine q
WHERE q.user_id = $2 AND q.track_id = t.id
)
ORDER BY albums.release_date NULLS LAST, albums.sort_title,
t.disc_number NULLS FIRST, t.track_number NULLS FIRST, t.id
`
type ListArtistTracksForUserParams struct {
ArtistID pgtype.UUID
UserID pgtype.UUID
}
type ListArtistTracksForUserRow struct {
Track Track
AlbumTitle string
ArtistName string
}
// M6a: every track for the artist across their albums, with album_title
// and artist_name joined. Honors per-user lidarr_quarantine. Used by
// /api/artists/{id}/tracks for the artist-card play affordance, which
// shuffles client-side. Ordering matches album/track natural order so
// the shuffle has a deterministic input.
func (q *Queries) ListArtistTracksForUser(ctx context.Context, arg ListArtistTracksForUserParams) ([]ListArtistTracksForUserRow, error) {
rows, err := q.db.Query(ctx, listArtistTracksForUser, arg.ArtistID, arg.UserID)
if err != nil {
return nil, err
}
defer rows.Close()
var items []ListArtistTracksForUserRow
for rows.Next() {
var i ListArtistTracksForUserRow
if err := rows.Scan(
&i.Track.ID,
&i.Track.Title,
&i.Track.AlbumID,
&i.Track.ArtistID,
&i.Track.TrackNumber,
&i.Track.DiscNumber,
&i.Track.DurationMs,
&i.Track.FilePath,
&i.Track.FileSize,
&i.Track.FileFormat,
&i.Track.Bitrate,
&i.Track.Mbid,
&i.Track.Genre,
&i.Track.AddedAt,
&i.Track.UpdatedAt,
&i.Track.TagSource,
&i.Track.TagSourcesVersion,
&i.Track.TagReadVersion,
&i.Track.MissingSince,
&i.AlbumTitle,
&i.ArtistName,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listMissingTracks = `-- name: ListMissingTracks :many
SELECT t.id,
t.title,
t.file_path,
regexp_replace(t.file_path, '/[^/]*$', '') AS directory,
t.missing_since,
t.duration_ms,
albums.id AS album_id,
albums.title AS album_title,
artists.id AS artist_id,
artists.name AS artist_name,
-- Cast is load-bearing: without it sqlc infers the correlated
-- subquery as interface{} and the Go layer loses the timestamp type.
(SELECT MAX(pe.started_at) FROM play_events pe WHERE pe.track_id = t.id)::timestamptz AS last_played_at
FROM tracks t
JOIN albums ON albums.id = t.album_id
JOIN artists ON artists.id = t.artist_id
WHERE t.missing_since IS NOT NULL
ORDER BY directory, t.disc_number NULLS FIRST, t.track_number NULLS FIRST, t.title
LIMIT $2 OFFSET $1
`
type ListMissingTracksParams struct {
PageOffset int32
PageLimit int32
}
type ListMissingTracksRow struct {
ID pgtype.UUID
Title string
FilePath string
Directory string
MissingSince pgtype.Timestamptz
DurationMs int32
AlbumID pgtype.UUID
AlbumTitle string
ArtistID pgtype.UUID
ArtistName string
LastPlayedAt pgtype.Timestamptz
}
// The admin review surface for files the scan could not find (#2527).
//
// Ordered by directory, then by the file's own position within its album,
// because the unit an operator actually reasons about is a FOLDER: the case
// this was built for was three whole albums that had been reorganised, and a
// flat list ordered by timestamp presents that as forty unrelated decisions.
// Grouping happens in the handler; the ordering here is what makes a group
// contiguous, so a page boundary splits a directory at worst.
//
// last_played_at is a correlated MAX rather than a join so a track with no
// plays stays in the result with NULL. It is here because "gone six months,
// never played" and "gone yesterday, played 200 times" deserve opposite
// reactions, and the operator can't tell them apart from a path.
func (q *Queries) ListMissingTracks(ctx context.Context, arg ListMissingTracksParams) ([]ListMissingTracksRow, error) {
rows, err := q.db.Query(ctx, listMissingTracks, arg.PageOffset, arg.PageLimit)
if err != nil {
return nil, err
}
defer rows.Close()
var items []ListMissingTracksRow
for rows.Next() {
var i ListMissingTracksRow
if err := rows.Scan(
&i.ID,
&i.Title,
&i.FilePath,
&i.Directory,
&i.MissingSince,
&i.DurationMs,
&i.AlbumID,
&i.AlbumTitle,
&i.ArtistID,
&i.ArtistName,
&i.LastPlayedAt,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listRandomTracksForUser = `-- name: ListRandomTracksForUser :many
SELECT t.id, t.title, t.album_id, t.artist_id, t.track_number, t.disc_number, t.duration_ms, t.file_path, t.file_size, t.file_format, t.bitrate, t.mbid, t.genre, t.added_at, t.updated_at, t.tag_source, t.tag_sources_version, t.tag_read_version, t.missing_since,
albums.title AS album_title,
artists.name AS artist_name
FROM tracks t
JOIN albums ON albums.id = t.album_id
JOIN artists ON artists.id = t.artist_id
WHERE NOT EXISTS (
SELECT 1 FROM lidarr_quarantine q
WHERE q.user_id = $1 AND q.track_id = t.id
)
ORDER BY random()
LIMIT $2
`
type ListRandomTracksForUserParams struct {
UserID pgtype.UUID
Limit int32
}
type ListRandomTracksForUserRow struct {
Track Track
AlbumTitle string
ArtistName string
}
// #427 S4: backing query for GET /api/library/shuffle — the online
// source for "Shuffle all". N random tracks across the whole
// library, per-user-quarantine filtered. $1 user_id, $2 limit.
func (q *Queries) ListRandomTracksForUser(ctx context.Context, arg ListRandomTracksForUserParams) ([]ListRandomTracksForUserRow, error) {
rows, err := q.db.Query(ctx, listRandomTracksForUser, arg.UserID, arg.Limit)
if err != nil {
return nil, err
}
defer rows.Close()
var items []ListRandomTracksForUserRow
for rows.Next() {
var i ListRandomTracksForUserRow
if err := rows.Scan(
&i.Track.ID,
&i.Track.Title,
&i.Track.AlbumID,
&i.Track.ArtistID,
&i.Track.TrackNumber,
&i.Track.DiscNumber,
&i.Track.DurationMs,
&i.Track.FilePath,
&i.Track.FileSize,
&i.Track.FileFormat,
&i.Track.Bitrate,
&i.Track.Mbid,
&i.Track.Genre,
&i.Track.AddedAt,
&i.Track.UpdatedAt,
&i.Track.TagSource,
&i.Track.TagSourcesVersion,
&i.Track.TagReadVersion,
&i.Track.MissingSince,
&i.AlbumTitle,
&i.ArtistName,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listTrackPathsForReconcile = `-- name: ListTrackPathsForReconcile :many
SELECT id, file_path, missing_since FROM tracks
`
type ListTrackPathsForReconcileRow struct {
ID pgtype.UUID
FilePath string
MissingSince pgtype.Timestamptz
}
// Every row's path + current missing mark, for the scanner's reconcile pass
// (#2523). Deliberately unfiltered and unpaged: reconcile has to compare the
// WHOLE table against what the walk saw, and a filtered subset would let rows
// outside it drift forever. Three narrow columns keep it cheap even on a
// library of a few hundred thousand tracks.
func (q *Queries) ListTrackPathsForReconcile(ctx context.Context) ([]ListTrackPathsForReconcileRow, error) {
rows, err := q.db.Query(ctx, listTrackPathsForReconcile)
if err != nil {
return nil, err
}
defer rows.Close()
var items []ListTrackPathsForReconcileRow
for rows.Next() {
var i ListTrackPathsForReconcileRow
if err := rows.Scan(&i.ID, &i.FilePath, &i.MissingSince); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listTracksByAlbum = `-- name: ListTracksByAlbum :many
SELECT id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since FROM tracks
WHERE album_id = $1
AND NOT EXISTS (
SELECT 1 FROM lidarr_quarantine q
WHERE q.user_id = $2 AND q.track_id = tracks.id
)
ORDER BY disc_number NULLS LAST, track_number NULLS LAST
`
type ListTracksByAlbumParams struct {
AlbumID pgtype.UUID
UserID pgtype.UUID
}
// $1 = album_id, $2 = user_id. Pass pgtype.UUID{Valid: false} (NULL)
// to skip the per-user quarantine filter; the NOT EXISTS clause on
// a NULL user_id never matches a row, so every track passes through.
func (q *Queries) ListTracksByAlbum(ctx context.Context, arg ListTracksByAlbumParams) ([]Track, error) {
rows, err := q.db.Query(ctx, listTracksByAlbum, arg.AlbumID, arg.UserID)
if err != nil {
return nil, err
}
defer rows.Close()
var items []Track
for rows.Next() {
var i Track
if err := rows.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listTracksMissingMbidWithPath = `-- name: ListTracksMissingMbidWithPath :many
SELECT id, file_path
FROM tracks
WHERE mbid IS NULL
ORDER BY id
LIMIT $1
`
type ListTracksMissingMbidWithPathRow struct {
ID pgtype.UUID
FilePath string
}
// Track recording-MBID backfill: tracks with NULL mbid that still have
// a file to re-read. $1 caps the batch (mirrors the album backfill).
func (q *Queries) ListTracksMissingMbidWithPath(ctx context.Context, limit int32) ([]ListTracksMissingMbidWithPathRow, error) {
rows, err := q.db.Query(ctx, listTracksMissingMbidWithPath, limit)
if err != nil {
return nil, err
}
defer rows.Close()
var items []ListTracksMissingMbidWithPathRow
for rows.Next() {
var i ListTracksMissingMbidWithPathRow
if err := rows.Scan(&i.ID, &i.FilePath); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const markTracksMissing = `-- name: MarkTracksMissing :execrows
UPDATE tracks
SET missing_since = now()
WHERE id = ANY($1::uuid[])
AND missing_since IS NULL
`
// Marks rows whose file the walk did not see. `missing_since IS NULL` in the
// predicate makes this idempotent: a row already marked keeps its ORIGINAL
// timestamp, so "how long has it been gone" survives repeated scans. Losing
// that would make any age-based cleanup policy meaningless.
//
// updated_at is deliberately NOT touched. It tracks content changes and gates
// the scanner's mtime skip; moving it here would make a returning file look
// newer than its own mtime and stop its tags being re-read.
func (q *Queries) MarkTracksMissing(ctx context.Context, ids []pgtype.UUID) (int64, error) {
result, err := q.db.Exec(ctx, markTracksMissing, ids)
if err != nil {
return 0, err
}
return result.RowsAffected(), nil
}
const searchTracks = `-- name: SearchTracks :many
SELECT id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since FROM tracks
WHERE title ILIKE '%' || $1::text || '%'
AND NOT EXISTS (
SELECT 1 FROM lidarr_quarantine q
WHERE q.user_id = $2 AND q.track_id = tracks.id
)
ORDER BY title
LIMIT $3 OFFSET $4
`
type SearchTracksParams struct {
Column1 string
UserID pgtype.UUID
Limit int32
Offset int32
}
// $1 = title query, $2 = user_id (NULL to skip quarantine filter),
// $3 = limit, $4 = offset.
func (q *Queries) SearchTracks(ctx context.Context, arg SearchTracksParams) ([]Track, error) {
rows, err := q.db.Query(ctx, searchTracks,
arg.Column1,
arg.UserID,
arg.Limit,
arg.Offset,
)
if err != nil {
return nil, err
}
defer rows.Close()
var items []Track
for rows.Next() {
var i Track
if err := rows.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const setTrackMbidIfNull = `-- name: SetTrackMbidIfNull :exec
UPDATE tracks
SET mbid = $2, updated_at = now()
WHERE id = $1 AND mbid IS NULL
`
type SetTrackMbidIfNullParams struct {
ID pgtype.UUID
Mbid *string
}
// Heal a track's recording MBID only while still NULL — idempotent, so
// re-running the backfill is a no-op for already-healed rows.
func (q *Queries) SetTrackMbidIfNull(ctx context.Context, arg SetTrackMbidIfNullParams) error {
_, err := q.db.Exec(ctx, setTrackMbidIfNull, arg.ID, arg.Mbid)
return err
}
const upsertTrack = `-- name: UpsertTrack :one
INSERT INTO tracks (
title, album_id, artist_id, track_number, disc_number,
duration_ms, file_path, file_size, file_format, bitrate, mbid, genre,
tag_read_version
) VALUES ($1, $2, $3, $4, $5, $6, $7, $8, $9, $10, $11, $12, $13)
ON CONFLICT (file_path) DO UPDATE SET
title = EXCLUDED.title,
album_id = EXCLUDED.album_id,
artist_id = EXCLUDED.artist_id,
track_number = EXCLUDED.track_number,
disc_number = EXCLUDED.disc_number,
duration_ms = EXCLUDED.duration_ms,
file_size = EXCLUDED.file_size,
file_format = EXCLUDED.file_format,
bitrate = EXCLUDED.bitrate,
mbid = EXCLUDED.mbid,
genre = EXCLUDED.genre,
-- Stamped on update too, so a tag-repair pass marks rows as done and the
-- next scan can short-circuit them again (#2499).
tag_read_version = EXCLUDED.tag_read_version,
updated_at = now()
RETURNING id, title, album_id, artist_id, track_number, disc_number, duration_ms, file_path, file_size, file_format, bitrate, mbid, genre, added_at, updated_at, tag_source, tag_sources_version, tag_read_version, missing_since
`
type UpsertTrackParams struct {
Title string
AlbumID pgtype.UUID
ArtistID pgtype.UUID
TrackNumber *int32
DiscNumber *int32
DurationMs int32
FilePath string
FileSize int64
FileFormat string
Bitrate *int32
Mbid *string
Genre *string
TagReadVersion int16
}
// file_path is the canonical identity for library scan; mbid is secondary.
func (q *Queries) UpsertTrack(ctx context.Context, arg UpsertTrackParams) (Track, error) {
row := q.db.QueryRow(ctx, upsertTrack,
arg.Title,
arg.AlbumID,
arg.ArtistID,
arg.TrackNumber,
arg.DiscNumber,
arg.DurationMs,
arg.FilePath,
arg.FileSize,
arg.FileFormat,
arg.Bitrate,
arg.Mbid,
arg.Genre,
arg.TagReadVersion,
)
var i Track
err := row.Scan(
&i.ID,
&i.Title,
&i.AlbumID,
&i.ArtistID,
&i.TrackNumber,
&i.DiscNumber,
&i.DurationMs,
&i.FilePath,
&i.FileSize,
&i.FileFormat,
&i.Bitrate,
&i.Mbid,
&i.Genre,
&i.AddedAt,
&i.UpdatedAt,
&i.TagSource,
&i.TagSourcesVersion,
&i.TagReadVersion,
&i.MissingSince,
)
return i, err
}