Files
minstrel/internal/db/dbq/events.sql.go
T
bvandeusen 37b396a7e4
test-go / test (push) Failing after 41s
test-go / integration (push) Canceled after 4m46s
fix(scanner): read multi-value genre frames correctly — #2499
dhowden/tag's readTFrame splits ID3v2 null-separated multi-value text
frames and rejoins them with the EMPTY string, so a file tagged
"Alternative Rock" + "Rock" was stored as "Alternative RockRock". It also
leaves bare numeric ID3v1 references unresolved, which is why the
library showed genres like "4017" and "526617".

This corrupted more than the browse axis added in #367: taste_profile.sql
reads tracks.genre directly, so the welded tokens were entering the taste
profile's tag vocabulary, and recommendation.sql/discover.sql were
comparing them as single opaque tags. Genre counts were wrong everywhere.

ffprobe is not a fix — ffmpeg's read_ttag calls decode_str once with no
loop, keeping only the first value. Truncating multi-genre tags would
blunt the similarity signal genre mainly feeds. So the TCON frame is now
parsed directly (ID3v2.2/2.3/2.4, all four text encodings, per-frame and
tag-level unsynchronisation, numeric and parenthesised ID3v1 references);
everything else still comes from dhowden/tag. Values are stored
";"-delimited, which the read side already splits on, so no query changes.

Existing rows are repaired without an operator-run rebuild: migration
0054 adds tracks.tag_read_version DEFAULT 0, below the scanner's current
tagReadVersion, so the next scan re-reads tags it would otherwise skip on
mtime. Such a re-read reuses the stored duration instead of re-running
ffprobe, keeping a repair pass tag-read-bound rather than one fork+exec
per file. Bumping the constant is how a future extraction fix reaches an
existing library.

Only ID3v2 is in scope — dhowden welds nowhere else. The Vorbis/MP4
repeated-field question is #2500, unproven and deliberately not built.
2026-08-05 21:17:59 -04:00

404 lines
11 KiB
Go

// Code generated by sqlc. DO NOT EDIT.
// versions:
// sqlc v1.31.1
// source: events.sql
package dbq
import (
"context"
"github.com/jackc/pgx/v5/pgtype"
)
const getCurrentSessionVectorForUser = `-- name: GetCurrentSessionVectorForUser :one
SELECT pe.session_vector_at_play
FROM play_events pe
JOIN play_sessions s ON s.id = pe.session_id
WHERE pe.user_id = $1
AND s.ended_at IS NULL
ORDER BY pe.started_at DESC
LIMIT 1
`
// Returns the session_vector_at_play of the user's most recent play_event
// in a still-active (un-timed-out) session. NoRows means no current vector.
// Joined with play_sessions so closed sessions don't leak stale vectors.
func (q *Queries) GetCurrentSessionVectorForUser(ctx context.Context, userID pgtype.UUID) ([]byte, error) {
row := q.db.QueryRow(ctx, getCurrentSessionVectorForUser, userID)
var session_vector_at_play []byte
err := row.Scan(&session_vector_at_play)
return session_vector_at_play, err
}
const getMostRecentPlaySessionForUser = `-- name: GetMostRecentPlaySessionForUser :one
SELECT id, user_id, started_at, ended_at, last_event_at, track_count, client_id FROM play_sessions
WHERE user_id = $1
ORDER BY last_event_at DESC
LIMIT 1
`
func (q *Queries) GetMostRecentPlaySessionForUser(ctx context.Context, userID pgtype.UUID) (PlaySession, error) {
row := q.db.QueryRow(ctx, getMostRecentPlaySessionForUser, userID)
var i PlaySession
err := row.Scan(
&i.ID,
&i.UserID,
&i.StartedAt,
&i.EndedAt,
&i.LastEventAt,
&i.TrackCount,
&i.ClientID,
)
return i, err
}
const getOpenPlayEventForUser = `-- name: GetOpenPlayEventForUser :one
SELECT id, user_id, track_id, session_id, started_at, ended_at, duration_played_ms, completion_ratio, was_skipped, client_id, session_vector_at_play, scrobbled_at, source, pick_kind, device_class FROM play_events
WHERE user_id = $1 AND ended_at IS NULL
ORDER BY started_at DESC
LIMIT 1
`
// Returns the most recent play_event for a user where ended_at IS NULL.
// Used by the auto-close-prior step in playevents.RecordPlayStarted.
func (q *Queries) GetOpenPlayEventForUser(ctx context.Context, userID pgtype.UUID) (PlayEvent, error) {
row := q.db.QueryRow(ctx, getOpenPlayEventForUser, userID)
var i PlayEvent
err := row.Scan(
&i.ID,
&i.UserID,
&i.TrackID,
&i.SessionID,
&i.StartedAt,
&i.EndedAt,
&i.DurationPlayedMs,
&i.CompletionRatio,
&i.WasSkipped,
&i.ClientID,
&i.SessionVectorAtPlay,
&i.ScrobbledAt,
&i.Source,
&i.PickKind,
&i.DeviceClass,
)
return i, err
}
const getPlayEventByID = `-- name: GetPlayEventByID :one
SELECT id, user_id, track_id, session_id, started_at, ended_at, duration_played_ms, completion_ratio, was_skipped, client_id, session_vector_at_play, scrobbled_at, source, pick_kind, device_class FROM play_events WHERE id = $1
`
func (q *Queries) GetPlayEventByID(ctx context.Context, id pgtype.UUID) (PlayEvent, error) {
row := q.db.QueryRow(ctx, getPlayEventByID, id)
var i PlayEvent
err := row.Scan(
&i.ID,
&i.UserID,
&i.TrackID,
&i.SessionID,
&i.StartedAt,
&i.EndedAt,
&i.DurationPlayedMs,
&i.CompletionRatio,
&i.WasSkipped,
&i.ClientID,
&i.SessionVectorAtPlay,
&i.ScrobbledAt,
&i.Source,
&i.PickKind,
&i.DeviceClass,
)
return i, err
}
const getSystemPickKindForTrack = `-- name: GetSystemPickKindForTrack :one
SELECT pt.pick_kind
FROM playlist_tracks pt
JOIN playlists p ON p.id = pt.playlist_id
WHERE p.user_id = $1
AND p.system_variant = $2
AND pt.track_id = $3
LIMIT 1
`
type GetSystemPickKindForTrackParams struct {
UserID pgtype.UUID
SystemVariant *string
TrackID pgtype.UUID
}
// Looks a track up in the user's CURRENT snapshot of the given system
// variant and returns its pick_kind. Used at play-ingestion time to
// freeze provenance onto the play_event — snapshots rebuild daily, so
// attribution can't be reconstructed at read time (#1249/#1270). No
// row = track not in today's snapshot (caller stores NULL); a row with
// NULL pick_kind = the variant doesn't stamp (yet). songs_like_artist
// is non-singleton (up to 3 mixes/user); a track in two of them takes
// whichever LIMIT 1 hits — acceptable, tier stamps there describe the
// same eligibility ladder.
func (q *Queries) GetSystemPickKindForTrack(ctx context.Context, arg GetSystemPickKindForTrackParams) (*string, error) {
row := q.db.QueryRow(ctx, getSystemPickKindForTrack, arg.UserID, arg.SystemVariant, arg.TrackID)
var pick_kind *string
err := row.Scan(&pick_kind)
return pick_kind, err
}
const insertPlayEvent = `-- name: InsertPlayEvent :one
INSERT INTO play_events (
user_id, track_id, session_id, started_at, client_id, source, pick_kind,
device_class
) VALUES ($1, $2, $3, $4, $5, $6, $7::text,
$8::text)
RETURNING id, user_id, track_id, session_id, started_at, ended_at, duration_played_ms, completion_ratio, was_skipped, client_id, session_vector_at_play, scrobbled_at, source, pick_kind, device_class
`
type InsertPlayEventParams struct {
UserID pgtype.UUID
TrackID pgtype.UUID
SessionID pgtype.UUID
StartedAt pgtype.Timestamptz
ClientID *string
Source *string
PickKind *string
DeviceClass *string
}
// pick_kind is non-NULL only for system-playlist plays whose track was
// found (with a stamped kind) in the user's live snapshot for that
// variant at ingestion time (#1249, generalized in #1270).
func (q *Queries) InsertPlayEvent(ctx context.Context, arg InsertPlayEventParams) (PlayEvent, error) {
row := q.db.QueryRow(ctx, insertPlayEvent,
arg.UserID,
arg.TrackID,
arg.SessionID,
arg.StartedAt,
arg.ClientID,
arg.Source,
arg.PickKind,
arg.DeviceClass,
)
var i PlayEvent
err := row.Scan(
&i.ID,
&i.UserID,
&i.TrackID,
&i.SessionID,
&i.StartedAt,
&i.EndedAt,
&i.DurationPlayedMs,
&i.CompletionRatio,
&i.WasSkipped,
&i.ClientID,
&i.SessionVectorAtPlay,
&i.ScrobbledAt,
&i.Source,
&i.PickKind,
&i.DeviceClass,
)
return i, err
}
const insertPlaySession = `-- name: InsertPlaySession :one
INSERT INTO play_sessions (user_id, started_at, last_event_at, client_id)
VALUES ($1, $2, $2, $3)
RETURNING id, user_id, started_at, ended_at, last_event_at, track_count, client_id
`
type InsertPlaySessionParams struct {
UserID pgtype.UUID
StartedAt pgtype.Timestamptz
ClientID *string
}
func (q *Queries) InsertPlaySession(ctx context.Context, arg InsertPlaySessionParams) (PlaySession, error) {
row := q.db.QueryRow(ctx, insertPlaySession, arg.UserID, arg.StartedAt, arg.ClientID)
var i PlaySession
err := row.Scan(
&i.ID,
&i.UserID,
&i.StartedAt,
&i.EndedAt,
&i.LastEventAt,
&i.TrackCount,
&i.ClientID,
)
return i, err
}
const insertSkipEvent = `-- name: InsertSkipEvent :one
INSERT INTO skip_events (user_id, track_id, session_id, skipped_at, position_ms)
VALUES ($1, $2, $3, $4, $5)
RETURNING id, user_id, track_id, session_id, skipped_at, position_ms
`
type InsertSkipEventParams struct {
UserID pgtype.UUID
TrackID pgtype.UUID
SessionID pgtype.UUID
SkippedAt pgtype.Timestamptz
PositionMs int32
}
func (q *Queries) InsertSkipEvent(ctx context.Context, arg InsertSkipEventParams) (SkipEvent, error) {
row := q.db.QueryRow(ctx, insertSkipEvent,
arg.UserID,
arg.TrackID,
arg.SessionID,
arg.SkippedAt,
arg.PositionMs,
)
var i SkipEvent
err := row.Scan(
&i.ID,
&i.UserID,
&i.TrackID,
&i.SessionID,
&i.SkippedAt,
&i.PositionMs,
)
return i, err
}
const listRecentSessionTracks = `-- name: ListRecentSessionTracks :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 FROM tracks t
JOIN play_events pe ON pe.track_id = t.id
WHERE pe.session_id = $1
AND pe.started_at < $2
ORDER BY pe.started_at DESC
LIMIT $3
`
type ListRecentSessionTracksParams struct {
SessionID pgtype.UUID
StartedAt pgtype.Timestamptz
Limit int32
}
// Returns up to $3 tracks in session $1 whose play_event started before
// $2, ordered newest-first. Used by playevents.RecordPlayStarted to
// build the session_vector for the just-inserted play_event.
func (q *Queries) ListRecentSessionTracks(ctx context.Context, arg ListRecentSessionTracksParams) ([]Track, error) {
rows, err := q.db.Query(ctx, listRecentSessionTracks, arg.SessionID, arg.StartedAt, arg.Limit)
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,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const touchPlaySessionLastEvent = `-- name: TouchPlaySessionLastEvent :exec
UPDATE play_sessions
SET last_event_at = $2,
track_count = track_count + 1
WHERE id = $1
`
type TouchPlaySessionLastEventParams struct {
ID pgtype.UUID
LastEventAt pgtype.Timestamptz
}
func (q *Queries) TouchPlaySessionLastEvent(ctx context.Context, arg TouchPlaySessionLastEventParams) error {
_, err := q.db.Exec(ctx, touchPlaySessionLastEvent, arg.ID, arg.LastEventAt)
return err
}
const updatePlayEventEnded = `-- name: UpdatePlayEventEnded :one
UPDATE play_events
SET ended_at = $2,
duration_played_ms = $3,
completion_ratio = $4,
was_skipped = $5
WHERE id = $1
RETURNING id, user_id, track_id, session_id, started_at, ended_at, duration_played_ms, completion_ratio, was_skipped, client_id, session_vector_at_play, scrobbled_at, source, pick_kind, device_class
`
type UpdatePlayEventEndedParams struct {
ID pgtype.UUID
EndedAt pgtype.Timestamptz
DurationPlayedMs *int32
CompletionRatio *float64
WasSkipped bool
}
// Closes a play_event by id with the given ended_at, duration, and skip flag.
// completion_ratio is computed from duration_played_ms and the track duration
// (looked up by the caller — sqlc doesn't do joins on UPDATE).
func (q *Queries) UpdatePlayEventEnded(ctx context.Context, arg UpdatePlayEventEndedParams) (PlayEvent, error) {
row := q.db.QueryRow(ctx, updatePlayEventEnded,
arg.ID,
arg.EndedAt,
arg.DurationPlayedMs,
arg.CompletionRatio,
arg.WasSkipped,
)
var i PlayEvent
err := row.Scan(
&i.ID,
&i.UserID,
&i.TrackID,
&i.SessionID,
&i.StartedAt,
&i.EndedAt,
&i.DurationPlayedMs,
&i.CompletionRatio,
&i.WasSkipped,
&i.ClientID,
&i.SessionVectorAtPlay,
&i.ScrobbledAt,
&i.Source,
&i.PickKind,
&i.DeviceClass,
)
return i, err
}
const updatePlayEventVector = `-- name: UpdatePlayEventVector :exec
UPDATE play_events
SET session_vector_at_play = $2
WHERE id = $1
`
type UpdatePlayEventVectorParams struct {
ID pgtype.UUID
SessionVectorAtPlay []byte
}
// Used right after InsertPlayEvent to populate session_vector_at_play
// once the vector has been computed.
func (q *Queries) UpdatePlayEventVector(ctx context.Context, arg UpdatePlayEventVectorParams) error {
_, err := q.db.Exec(ctx, updatePlayEventVector, arg.ID, arg.SessionVectorAtPlay)
return err
}