navidrome/persistence/criteria_sql_benchmark_test.go
Deluan Quintão b293b96256
refactor(persistence): stateless repositories with per-call context (#6149)
* refactor(persistence): adopt generic deluan/rest repository API

Pin deluan/rest to the refactor branch. REST-facing repository methods
take a context and return typed values. Drop DataStore.Resource and
ResourceRepository; the native API names typed repositories directly
through a per-request adapter that later commits remove.

* refactor(persistence): base repository helpers take a context

* refactor(persistence): LibraryRepository takes a context per call

* refactor(persistence): PropertyRepository takes a context per call

* refactor(persistence): UserPropsRepository takes a context per call

* refactor(persistence): TranscodingRepository takes a context per call

* refactor(persistence): ShareRepository takes a context per call

* refactor(persistence): PlayerRepository takes a context per call

* refactor(persistence): RadioRepository takes a context per call

* refactor(persistence): PlayQueueRepository takes a context per call

* refactor(persistence): Tag and Genre repositories take a context per call

* refactor(persistence): PluginRepository takes a context per call

* refactor(persistence): Scrobble repositories take a context per call

* refactor(persistence): FolderRepository takes a context per call

* refactor(persistence): Artwork repositories take a context per call

* refactor(persistence): UserRepository takes a context per call

* refactor(persistence): ArtistRepository takes a context per call

ReadAll no longer rewrites the shared sort mappings for the role filter;
it works on a per-call copy.

* test(persistence): assert artist role sort sanitization in ReadAll

* refactor(persistence): AlbumRepository takes a context per call

* test(persistence): pass the test context to album repository helpers

* refactor(persistence): MediaFileRepository takes a context per call

* refactor(persistence): Playlist repositories take a context per call

* refactor(persistence): build all repositories once per store

* refactor(core): REST repository wrappers are built once

* refactor(persistence): repositories are stateless

Remove the context field from the base repository and the per-request
REST adapter. Enable the containedctx linter so no repository can hold a
request context again.

* chore(lint): skip containedctx in test files

* refactor: share simplifications from the stateless repositories sweep

Add deleteOwnedAll on sqlRepository and use it in player/share Delete
to remove the duplicated bulk-delete loop; have Share.Repository()
return model.ShareRepository so subsonic sharing.go drops its repeated
type assertions.

* chore(core): assert REST wrappers implement Persistable

* chore: reformat imports

* perf(persistence): build repositories on first use

Each transaction store used to construct all 21 repositories up front,
paying for filter and sort mapping setup the block never touched. Fields
are now sync.OnceValue thunks, so a store only builds what it uses.

* fix(persistence): clean plugin references per deleted user

A bulk user delete that fails on a later id had already removed the
earlier rows but skipped their plugin cleanup. Cleanup now runs right
after each successful delete.

* fix(core): unload disabled plugins even when a user delete fails

A bulk delete can fail on a later id after earlier users were removed
and their plugins auto-disabled. The wrapper returned before unloading,
leaving those plugins running until the next successful delete or a
restart.

* chore(deps): pin deluan/rest to v1.0.1

Replaces the pseudo-version of the refactor branch with the tagged
release. REST error messages now name the bare type (Artist, not
model.Artist).

* test: use the spec context instead of context.Background()

Replace the context.Background()/context.TODO() calls this branch added
to tests with the spec's ctx, GinkgoT().Context(), or t/b.Context(), so
repository calls are bound to the running spec's lifetime.

* test: declare the spec context once per Describe

Set ctx from GinkgoT().Context() first in each top-level BeforeEach and reuse it, building user contexts on top of it instead of repeating inline calls.
2026-09-25 18:06:10 -04:00

291 lines
8.8 KiB
Go

package persistence
import (
"context"
"encoding/json"
"fmt"
"path/filepath"
"strings"
"testing"
"github.com/Masterminds/squirrel"
"github.com/navidrome/navidrome/conf"
"github.com/navidrome/navidrome/conf/configtest"
"github.com/navidrome/navidrome/db"
"github.com/navidrome/navidrome/log"
"github.com/navidrome/navidrome/model"
"github.com/navidrome/navidrome/model/criteria"
"github.com/navidrome/navidrome/model/request"
"github.com/pocketbase/dbx"
)
const (
benchNumArtists = 1_000
benchNumTracks = 40_000
benchNumPatterns = 500
benchArtistsPerTrack = 3
)
// BenchmarkSmartPlaylistRole compares role-based smart playlist query performance
// between the current implementation (merged join-table via criteria pipeline) and
// the old baseline (unmerged json_tree subqueries).
func BenchmarkSmartPlaylistRole(b *testing.B) {
configtest.SetupConfig()
tmpDir := b.TempDir()
conf.Server.DbPath = filepath.Join(tmpDir, "bench-smartpl.db")
cleanup := db.Init(context.Background())
defer cleanup()
log.SetLevel(log.LevelFatal)
conn := dbx.NewFromDB(db.Db(), db.Dialect)
ctx := log.NewContext(context.Background())
user := model.User{ID: "bench-user", UserName: "bench", Name: "Bench User", IsAdmin: true}
ctx = request.WithUser(ctx, user)
setupBenchData(b, ctx, conn, user)
criteria.AddRoles([]string{"artist"})
// Build the criteria expression: 500 "contains artist" patterns in an OR group
anyExprs := make(criteria.Any, benchNumPatterns)
for i := range benchNumPatterns {
anyExprs[i] = criteria.Contains{"artist": fmt.Sprintf("Artist %04d", i)}
}
expr := criteria.Criteria{Expression: anyExprs, Sort: "title", Limit: 500}
b.Run("Current", func(b *testing.B) {
benchmarkCriteriaPipeline(b, ctx, expr)
})
b.Run("Baseline_UnmergedJSONTree", func(b *testing.B) {
benchmarkUnmergedJSONTree(b, ctx)
})
}
// BenchmarkSmartPlaylistNegatedRole compares performance for smart playlists with many
// negated role conditions ANDed together (e.g. 500 "isNot artist" rules, issue #5511)
// between the current implementation (merged NOT EXISTS via criteria pipeline) and the
// old baseline (one separate NOT EXISTS subquery per pattern).
func BenchmarkSmartPlaylistNegatedRole(b *testing.B) {
configtest.SetupConfig()
tmpDir := b.TempDir()
conf.Server.DbPath = filepath.Join(tmpDir, "bench-smartpl-neg.db")
cleanup := db.Init(context.Background())
defer cleanup()
log.SetLevel(log.LevelFatal)
conn := dbx.NewFromDB(db.Db(), db.Dialect)
ctx := log.NewContext(context.Background())
user := model.User{ID: "bench-user", UserName: "bench", Name: "Bench User", IsAdmin: true}
ctx = request.WithUser(ctx, user)
setupBenchData(b, ctx, conn, user)
criteria.AddRoles([]string{"artist"})
// Build the criteria expression: 500 "isNot artist" patterns in an AND group
allExprs := make(criteria.All, benchNumPatterns)
for i := range benchNumPatterns {
allExprs[i] = criteria.IsNot{"artist": fmt.Sprintf("Artist %04d", i)}
}
expr := criteria.Criteria{Expression: allExprs, Sort: "title", Limit: 500}
b.Run("Current", func(b *testing.B) {
benchmarkCriteriaPipeline(b, ctx, expr)
})
b.Run("Baseline_UnmergedNotExists", func(b *testing.B) {
benchmarkUnmergedNegatedJSONTree(b, ctx)
})
}
// benchmarkUnmergedNegatedJSONTree builds the old-style query with N separate negated
// json_tree EXISTS subqueries ANDed together (the pre-optimization baseline).
func benchmarkUnmergedNegatedJSONTree(b *testing.B, ctx context.Context) {
b.Helper()
var sb strings.Builder
sb.WriteString("SELECT media_file.id FROM media_file WHERE (")
args := make([]any, 0, benchNumPatterns)
for i := range benchNumPatterns {
if i > 0 {
sb.WriteString(" AND ")
}
sb.WriteString("not exists (select 1 from json_tree(media_file.participants, '$.artist') where key='name' and value = ?)")
args = append(args, fmt.Sprintf("Artist %04d", i))
}
sb.WriteString(") ORDER BY media_file.title LIMIT 500")
runBenchQuery(b, ctx, sb.String(), args)
}
// benchmarkCriteriaPipeline runs the criteria through the actual production code path:
// newSmartPlaylistCriteria → Where() → ToSql(), then executes the resulting query.
func benchmarkCriteriaPipeline(b *testing.B, ctx context.Context, expr criteria.Criteria) {
b.Helper()
cSQL := newSmartPlaylistCriteria(expr)
// Build the full query matching buildSmartPlaylistQuery + addCriteria
sq := squirrel.Select("media_file.id").From("media_file")
cond, err := cSQL.where()
if err != nil {
b.Fatal(err)
}
sq = sq.Where(cond)
if expr.Limit > 0 {
sq = sq.Limit(uint64(expr.Limit))
}
if order := cSQL.orderBy(); order != "" {
sq = sq.OrderBy(order)
}
query, args, err := sq.PlaceholderFormat(squirrel.Question).ToSql()
if err != nil {
b.Fatal(err)
}
runBenchQuery(b, ctx, query, args)
}
// benchmarkUnmergedJSONTree builds the old-style query with N separate json_tree EXISTS
// subqueries (the pre-optimization baseline).
func benchmarkUnmergedJSONTree(b *testing.B, ctx context.Context) {
b.Helper()
var sb strings.Builder
sb.WriteString("SELECT media_file.id FROM media_file WHERE (")
args := make([]any, 0, benchNumPatterns)
for i := range benchNumPatterns {
if i > 0 {
sb.WriteString(" OR ")
}
sb.WriteString("exists (select 1 from json_tree(media_file.participants, '$.artist') where key='name' and value LIKE ?)")
args = append(args, fmt.Sprintf("%%Artist %04d%%", i))
}
sb.WriteString(") ORDER BY media_file.title LIMIT 500")
runBenchQuery(b, ctx, sb.String(), args)
}
func runBenchQuery(b *testing.B, ctx context.Context, query string, args []any) {
b.Helper()
sqlDB := db.Db()
b.ResetTimer()
for range b.N {
rows, err := sqlDB.QueryContext(ctx, query, args...)
if err != nil {
b.Fatal(err)
}
for rows.Next() {
var id string
_ = rows.Scan(&id)
}
rows.Close()
if err := rows.Err(); err != nil {
b.Fatal(err)
}
}
}
func setupBenchData(b *testing.B, ctx context.Context, conn *dbx.DB, user model.User) {
b.Helper()
sqlDB := db.Db()
ur := NewUserRepository(conn)
if err := ur.Put(ctx, &user); err != nil {
b.Fatal(err)
}
if err := ur.SetUserLibraries(ctx, user.ID, []int{1}); err != nil {
b.Fatal(err)
}
tx, err := sqlDB.Begin()
if err != nil {
b.Fatal(err)
}
// Create artists
artistStmt, err := tx.Prepare("INSERT INTO artist (id, name) VALUES (?, ?)")
if err != nil {
b.Fatal(err)
}
for i := range benchNumArtists {
if _, err := artistStmt.Exec(fmt.Sprintf("artist-%04d", i), fmt.Sprintf("Artist %04d", i)); err != nil {
b.Fatal(err)
}
}
artistStmt.Close()
// Ensure folder exists
folderID := "bench-folder"
if _, err := tx.Exec("INSERT OR IGNORE INTO folder (id, library_id, path, name, parent_id) VALUES (?, 1, '.', '.', '')", folderID); err != nil {
b.Fatal(err)
}
// Create media files with participants JSON, cycling through artists
mfStmt, err := tx.Prepare(`INSERT INTO media_file (id, path, title, album, artist, artist_id, album_id,
duration, year, size, suffix, tags, participants, lyrics, library_id, folder_id, pid, codec)
VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)`)
if err != nil {
b.Fatal(err)
}
// Populate media_file_artists join table
mfaStmt, err := tx.Prepare("INSERT INTO media_file_artists (media_file_id, artist_id, role, sub_role) VALUES (?, ?, ?, ?)")
if err != nil {
b.Fatal(err)
}
for i := range benchNumTracks {
trackID := fmt.Sprintf("track-%05d", i)
// Assign benchArtistsPerTrack artists to each track, cycling through the pool
artistEntries := make([]map[string]string, benchArtistsPerTrack)
for a := range benchArtistsPerTrack {
artistIdx := (i + a) % benchNumArtists
artistEntries[a] = map[string]string{
"id": fmt.Sprintf("artist-%04d", artistIdx),
"name": fmt.Sprintf("Artist %04d", artistIdx),
}
}
primaryArtistIdx := i % benchNumArtists
primaryArtistID := fmt.Sprintf("artist-%04d", primaryArtistIdx)
primaryArtistName := fmt.Sprintf("Artist %04d", primaryArtistIdx)
participants := map[string][]map[string]string{"artist": artistEntries}
participantsJSON, _ := json.Marshal(participants)
if _, err := mfStmt.Exec(
trackID,
fmt.Sprintf("music/%s.mp3", trackID),
fmt.Sprintf("Track %05d", i),
"Bench Album",
primaryArtistName,
primaryArtistID,
"bench-album",
180, 2024, 5000000, "mp3",
"{}",
string(participantsJSON),
"[]",
1, folderID, trackID, "mp3",
); err != nil {
b.Fatal(err)
}
// Insert all artist associations into the join table
for a := range benchArtistsPerTrack {
artistIdx := (i + a) % benchNumArtists
artistID := fmt.Sprintf("artist-%04d", artistIdx)
if _, err := mfaStmt.Exec(trackID, artistID, "artist", ""); err != nil {
b.Fatal(err)
}
}
}
mfStmt.Close()
mfaStmt.Close()
if err := tx.Commit(); err != nil {
b.Fatal(err)
}
b.Logf("Setup complete: %d artists, %d tracks (%d artists/track), %d patterns",
benchNumArtists, benchNumTracks, benchArtistsPerTrack, benchNumPatterns)
}