mirror of
https://github.com/zarzet/SpotiFLAC-Mobile.git
synced 2026-08-03 01:28:37 +02:00
1164 lines
36 KiB
Dart
1164 lines
36 KiB
Dart
import 'dart:io';
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import 'package:sqflite/sqflite.dart';
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import 'package:path/path.dart';
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import 'package:path_provider/path_provider.dart';
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import 'package:spotiflac_android/utils/logger.dart';
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import 'package:spotiflac_android/utils/audio_format_utils.dart';
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import 'package:spotiflac_android/utils/file_access.dart';
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import 'package:spotiflac_android/services/history_database.dart';
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import 'package:spotiflac_android/services/sqlite_helpers.dart' as sqlite;
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part 'library_database_models.dart';
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part 'library_database_queue_sql.dart';
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final _log = AppLogger('LibraryDatabase');
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class LibraryDatabase {
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static final LibraryDatabase instance = LibraryDatabase._init();
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static const int schemaVersion = 9;
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static const int audioMetadataScanVersion = 1;
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static Database? _database;
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bool _historyAttached = false;
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LibraryDatabase._init();
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Future<Database> get database async {
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if (_database != null) return _database!;
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_database = await sqlite.openAppDatabase(
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'local_library.db',
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version: schemaVersion,
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onCreate: _createDB,
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onUpgrade: _upgradeDB,
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);
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return _database!;
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}
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Future<void> _ensureHistoryAttached(Database db) async {
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if (_historyAttached) return;
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await HistoryDatabase.instance.database;
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final dbPath = await getApplicationDocumentsDirectory();
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final historyPath = join(dbPath.path, 'history.db');
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try {
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await db.execute('ATTACH DATABASE ? AS history_db', [historyPath]);
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} catch (e) {
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final message = e.toString().toLowerCase();
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if (!message.contains('already in use') &&
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!message.contains('already exists')) {
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rethrow;
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}
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}
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_historyAttached = true;
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}
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Future<void> _createDB(Database db, int version) async {
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_log.i('Creating library database schema v$version');
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await db.execute('''
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CREATE TABLE library (
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id TEXT PRIMARY KEY,
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track_name TEXT NOT NULL,
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artist_name TEXT NOT NULL,
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album_name TEXT NOT NULL,
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album_artist TEXT,
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file_path TEXT NOT NULL UNIQUE,
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cover_path TEXT,
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scanned_at TEXT NOT NULL,
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file_mod_time INTEGER,
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isrc TEXT,
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track_number INTEGER,
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total_tracks INTEGER,
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disc_number INTEGER,
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total_discs INTEGER,
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duration INTEGER,
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release_date TEXT,
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bit_depth INTEGER,
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sample_rate INTEGER,
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bitrate INTEGER,
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genre TEXT,
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composer TEXT,
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label TEXT,
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copyright TEXT,
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format TEXT,
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audio_metadata_scan_version INTEGER NOT NULL DEFAULT 1,
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track_name_norm TEXT,
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artist_name_norm TEXT,
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album_name_norm TEXT,
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album_artist_norm TEXT,
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match_key TEXT,
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album_key TEXT
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)
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''');
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await db.execute('CREATE INDEX idx_library_isrc ON library(isrc)');
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await db.execute(
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'CREATE INDEX idx_library_track_artist ON library(track_name, artist_name)',
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);
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await db.execute(
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'CREATE INDEX idx_library_album ON library(album_name, album_artist)',
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);
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await db.execute(
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'CREATE INDEX idx_library_file_path ON library(file_path)',
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);
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await _createNormalizedIndexes(db);
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await _createPathKeyTable(db);
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_log.i('Library database schema created with indexes');
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}
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Future<void> _upgradeDB(Database db, int oldVersion, int newVersion) async {
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_log.i('Upgrading library database from v$oldVersion to v$newVersion');
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if (oldVersion < 2) {
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await db.execute('ALTER TABLE library ADD COLUMN cover_path TEXT');
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_log.i('Added cover_path column');
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}
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if (oldVersion < 3) {
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await db.execute('ALTER TABLE library ADD COLUMN file_mod_time INTEGER');
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_log.i('Added file_mod_time column for incremental scanning');
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}
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if (oldVersion < 4) {
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await db.execute('ALTER TABLE library ADD COLUMN bitrate INTEGER');
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_log.i('Added bitrate column for lossy format quality');
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}
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if (oldVersion < 5) {
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await db.execute('ALTER TABLE library ADD COLUMN label TEXT');
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await db.execute('ALTER TABLE library ADD COLUMN copyright TEXT');
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_log.i('Added label/copyright columns');
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}
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if (oldVersion < 6) {
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await db.execute('ALTER TABLE library ADD COLUMN total_tracks INTEGER');
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await db.execute('ALTER TABLE library ADD COLUMN total_discs INTEGER');
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await db.execute('ALTER TABLE library ADD COLUMN composer TEXT');
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_log.i('Added total_tracks/total_discs/composer columns');
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}
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if (oldVersion < 7) {
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await sqlite.addColumnIfMissing(db, 'library', 'track_name_norm', 'TEXT');
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await sqlite.addColumnIfMissing(
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db,
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'library',
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'artist_name_norm',
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'TEXT',
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);
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await sqlite.addColumnIfMissing(db, 'library', 'album_name_norm', 'TEXT');
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await sqlite.addColumnIfMissing(
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db,
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'library',
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'album_artist_norm',
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'TEXT',
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);
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await sqlite.addColumnIfMissing(db, 'library', 'match_key', 'TEXT');
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await sqlite.addColumnIfMissing(db, 'library', 'album_key', 'TEXT');
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await _backfillNormalizedColumns(db);
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await _createNormalizedIndexes(db);
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_log.i('Added normalized local library lookup columns');
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}
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if (oldVersion < 8) {
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await _createPathKeyTable(db);
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await sqlite.backfillPathKeys(db, 'library', 'library_path_keys');
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_log.i('Added local library path-key lookup table');
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}
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if (oldVersion < 9) {
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await sqlite.addColumnIfMissing(
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db,
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'library',
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'audio_metadata_scan_version',
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'INTEGER NOT NULL DEFAULT 0',
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);
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_log.i('Marked existing rows for one-time audio metadata rescan');
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}
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}
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Future<void> _createPathKeyTable(DatabaseExecutor db) =>
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sqlite.createPathKeyTable(db, 'library_path_keys');
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void _putPathKeysInBatch(Batch batch, String id, String? filePath) =>
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sqlite.putPathKeysInBatch(batch, 'library_path_keys', id, filePath);
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static String normalizeLookupText(String? value) =>
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sqlite.normalizeLookupText(value);
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static String matchKeyFor(String trackName, String artistName) {
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return '${normalizeLookupText(trackName)}|${normalizeLookupText(artistName)}';
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}
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static String albumKeyFor(
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String albumName,
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String? albumArtist,
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String artistName,
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) {
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return '${normalizeLookupText(albumName)}|${normalizeLookupText(albumArtist ?? artistName)}';
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}
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Future<void> _createNormalizedIndexes(DatabaseExecutor db) async {
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_match_key ON library(match_key)',
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);
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_album_key ON library(album_key)',
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);
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_track_norm ON library(track_name_norm)',
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);
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_artist_norm ON library(artist_name_norm)',
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);
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_album_norm ON library(album_name_norm)',
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);
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await db.execute(
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'CREATE INDEX IF NOT EXISTS idx_library_scanned_at ON library(scanned_at)',
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);
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}
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Future<void> _backfillNormalizedColumns(Database db) async {
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final rows = await db.query(
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'library',
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columns: [
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'id',
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'track_name',
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'artist_name',
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'album_name',
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'album_artist',
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],
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);
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final batch = db.batch();
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for (final row in rows) {
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final trackName = row['track_name'] as String? ?? '';
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final artistName = row['artist_name'] as String? ?? '';
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final albumName = row['album_name'] as String? ?? '';
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final albumArtist = row['album_artist'] as String?;
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batch.update(
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'library',
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_normalizedColumns(
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trackName: trackName,
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artistName: artistName,
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albumName: albumName,
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albumArtist: albumArtist,
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),
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where: 'id = ?',
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whereArgs: [row['id']],
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);
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}
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await batch.commit(noResult: true);
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}
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Map<String, dynamic> _normalizedColumns({
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required String trackName,
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required String artistName,
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required String albumName,
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required String? albumArtist,
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}) {
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final trackNorm = normalizeLookupText(trackName);
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final artistNorm = normalizeLookupText(artistName);
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final albumNorm = normalizeLookupText(albumName);
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final albumArtistNorm = normalizeLookupText(albumArtist ?? artistName);
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return {
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'track_name_norm': trackNorm,
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'artist_name_norm': artistNorm,
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'album_name_norm': albumNorm,
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'album_artist_norm': albumArtistNorm,
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'match_key': '$trackNorm|$artistNorm',
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'album_key': '$albumNorm|$albumArtistNorm',
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};
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}
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Map<String, dynamic> _jsonToDbRow(Map<String, dynamic> json) {
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final row = {
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'id': json['id'],
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'track_name': json['trackName'],
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'artist_name': json['artistName'],
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'album_name': json['albumName'],
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'album_artist': json['albumArtist'],
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'file_path': json['filePath'],
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'cover_path': json['coverPath'],
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'scanned_at': json['scannedAt'],
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'file_mod_time': json['fileModTime'],
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'isrc': json['isrc'],
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'track_number': json['trackNumber'],
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'total_tracks': json['totalTracks'],
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'disc_number': json['discNumber'],
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'total_discs': json['totalDiscs'],
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'duration': json['duration'],
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'release_date': json['releaseDate'],
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'bit_depth': json['bitDepth'],
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'sample_rate': json['sampleRate'],
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'bitrate': json['bitrate'],
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'genre': json['genre'],
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'composer': json['composer'],
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'label': json['label'],
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'copyright': json['copyright'],
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'format': json['format'],
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'audio_metadata_scan_version':
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(json['audioMetadataScanVersion'] as num?)?.toInt() ??
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audioMetadataScanVersion,
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};
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row.addAll(
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_normalizedColumns(
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trackName: json['trackName'] as String? ?? '',
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artistName: json['artistName'] as String? ?? '',
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albumName: json['albumName'] as String? ?? '',
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albumArtist: json['albumArtist'] as String?,
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),
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);
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return row;
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}
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Map<String, dynamic> _dbRowToJson(Map<String, dynamic> row) {
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return {
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'id': row['id'],
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'trackName': row['track_name'],
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'artistName': row['artist_name'],
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'albumName': row['album_name'],
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'albumArtist': row['album_artist'],
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'filePath': row['file_path'],
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'coverPath': row['cover_path'],
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'scannedAt': row['scanned_at'],
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'fileModTime': row['file_mod_time'],
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'isrc': row['isrc'],
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'trackNumber': row['track_number'],
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'totalTracks': row['total_tracks'],
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'discNumber': row['disc_number'],
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'totalDiscs': row['total_discs'],
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'duration': row['duration'],
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'releaseDate': row['release_date'],
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'bitDepth': row['bit_depth'],
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'sampleRate': row['sample_rate'],
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'bitrate': row['bitrate'],
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'genre': row['genre'],
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'composer': row['composer'],
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'label': row['label'],
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'copyright': row['copyright'],
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'format': row['format'],
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};
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}
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Future<void> upsert(Map<String, dynamic> json) async {
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final db = await database;
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await db.transaction((txn) async {
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await txn.insert(
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'library',
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_jsonToDbRow(json),
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conflictAlgorithm: ConflictAlgorithm.replace,
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);
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final batch = txn.batch();
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_putPathKeysInBatch(
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batch,
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json['id'] as String,
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json['filePath'] as String?,
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);
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await batch.commit(noResult: true);
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});
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}
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Future<void> upsertBatch(List<Map<String, dynamic>> items) async {
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if (items.isEmpty) return;
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final db = await database;
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await db.transaction((txn) async {
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final batch = txn.batch();
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for (final json in items) {
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batch.insert(
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'library',
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_jsonToDbRow(json),
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conflictAlgorithm: ConflictAlgorithm.replace,
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);
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_putPathKeysInBatch(
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batch,
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json['id'] as String,
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json['filePath'] as String?,
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);
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}
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await batch.commit(noResult: true);
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});
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_log.i('Batch inserted ${items.length} items');
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}
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Future<void> replaceAll(List<Map<String, dynamic>> items) async {
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final db = await database;
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await db.transaction((txn) async {
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await txn.delete('library_path_keys');
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await txn.delete('library');
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if (items.isEmpty) {
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return;
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}
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final batch = txn.batch();
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for (final json in items) {
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batch.insert(
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'library',
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_jsonToDbRow(json),
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conflictAlgorithm: ConflictAlgorithm.replace,
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);
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_putPathKeysInBatch(
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batch,
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json['id'] as String,
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json['filePath'] as String?,
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);
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}
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await batch.commit(noResult: true);
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});
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_log.i('Replaced library with ${items.length} items');
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}
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Future<List<Map<String, dynamic>>> getAll({int? limit, int? offset}) async {
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final db = await database;
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final rows = await db.query(
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'library',
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orderBy: 'album_artist, album_name, disc_number, track_number',
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limit: limit,
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offset: offset,
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);
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return rows.map(_dbRowToJson).toList();
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}
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String _escapeLikePattern(String value) {
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return value
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.replaceAll('\\', r'\\')
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.replaceAll('%', r'\%')
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.replaceAll('_', r'\_');
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}
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String _orderByForSort(LocalLibrarySortMode sortMode) {
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return switch (sortMode) {
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LocalLibrarySortMode.title =>
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'track_name_norm, artist_name_norm, album_name_norm, disc_number, track_number',
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LocalLibrarySortMode.artist =>
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'artist_name_norm, album_name_norm, disc_number, track_number, track_name_norm',
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LocalLibrarySortMode.latest =>
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'scanned_at DESC, album_artist_norm, album_name_norm, disc_number, track_number',
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LocalLibrarySortMode.quality =>
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'COALESCE(bit_depth, 0) DESC, COALESCE(sample_rate, 0) DESC, COALESCE(bitrate, 0) DESC, album_artist_norm, album_name_norm, disc_number, track_number',
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LocalLibrarySortMode.album =>
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'album_artist_norm, album_name_norm, COALESCE(disc_number, 0), COALESCE(track_number, 0), track_name_norm',
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};
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}
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Future<List<Map<String, dynamic>>> getQueueTrackPage(
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QueueLibraryDbQuery request,
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) async {
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final db = await database;
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await _ensureHistoryAttached(db);
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final args = <Object?>[];
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final unionSql = _queueTrackUnionSql(request, args);
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final rows = await db.rawQuery(
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'''
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SELECT *
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FROM ($unionSql)
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ORDER BY ${_queueTrackOrderBy(request.sortMode)}
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LIMIT ? OFFSET ?
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''',
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[...args, request.limit, request.offset],
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);
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return rows.map(_queueTrackRowToJson).toList(growable: false);
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}
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Future<QueueLibraryCounts> getQueueCounts(QueueLibraryDbQuery request) async {
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final db = await database;
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await _ensureHistoryAttached(db);
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final parts = <String>[];
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final args = <Object?>[];
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if (request.source != 'local') {
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final where = <String>[];
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_appendQueueHistoryFilters(where, args, request);
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parts.add('''
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SELECT
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COUNT(*) AS all_count,
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COUNT(DISTINCT CASE WHEN grouped.track_count > 1 THEN h.album_key END) AS album_count,
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COALESCE(SUM(CASE WHEN grouped.track_count = 1 THEN 1 ELSE 0 END), 0) AS single_count
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FROM history_db.history h
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JOIN (
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SELECT album_key, COUNT(*) AS track_count
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FROM history_db.history
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GROUP BY album_key
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) grouped ON grouped.album_key = h.album_key
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${where.isEmpty ? '' : 'WHERE ${where.join(' AND ')}'}
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''');
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}
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if (request.includeLocal && request.source != 'downloaded') {
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final where = <String>[
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'''
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NOT EXISTS (
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SELECT 1
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FROM library_path_keys lpk
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JOIN history_db.history_path_keys hpk ON hpk.path_key = lpk.path_key
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WHERE lpk.item_id = l.id
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)
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''',
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];
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_appendQueueLocalFilters(where, args, request);
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parts.add('''
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SELECT
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COUNT(*) AS all_count,
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COUNT(DISTINCT CASE WHEN grouped.track_count > 1 THEN l.album_key END) AS album_count,
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COALESCE(SUM(CASE WHEN grouped.track_count = 1 THEN 1 ELSE 0 END), 0) AS single_count
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FROM library l
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JOIN (
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SELECT album_key, COUNT(*) AS track_count
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FROM library candidate
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WHERE NOT EXISTS (
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SELECT 1
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FROM library_path_keys lpk
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JOIN history_db.history_path_keys hpk ON hpk.path_key = lpk.path_key
|
|
WHERE lpk.item_id = candidate.id
|
|
)
|
|
GROUP BY album_key
|
|
) grouped ON grouped.album_key = l.album_key
|
|
WHERE ${where.join(' AND ')}
|
|
''');
|
|
}
|
|
|
|
if (parts.isEmpty) {
|
|
return const QueueLibraryCounts(
|
|
allTrackCount: 0,
|
|
albumCount: 0,
|
|
singleTrackCount: 0,
|
|
);
|
|
}
|
|
|
|
final rows = await db.rawQuery('''
|
|
SELECT
|
|
COALESCE(SUM(all_count), 0) AS all_count,
|
|
COALESCE(SUM(single_count), 0) AS single_count,
|
|
COALESCE(SUM(album_count), 0) AS album_count
|
|
FROM (${parts.join(' UNION ALL ')})
|
|
''', args);
|
|
final row = rows.isNotEmpty ? rows.first : const <String, Object?>{};
|
|
|
|
return QueueLibraryCounts(
|
|
allTrackCount: (row['all_count'] as num?)?.toInt() ?? 0,
|
|
albumCount: (row['album_count'] as num?)?.toInt() ?? 0,
|
|
singleTrackCount: (row['single_count'] as num?)?.toInt() ?? 0,
|
|
);
|
|
}
|
|
|
|
Future<List<Map<String, dynamic>>> getQueueAlbumPage(
|
|
QueueLibraryDbQuery request,
|
|
) async {
|
|
final db = await database;
|
|
await _ensureHistoryAttached(db);
|
|
final args = <Object?>[];
|
|
final unionSql = _queueAlbumUnionSql(request, args);
|
|
final rows = await db.rawQuery(
|
|
'''
|
|
SELECT *
|
|
FROM ($unionSql)
|
|
ORDER BY ${_queueAlbumOrderBy(request.sortMode)}
|
|
LIMIT ? OFFSET ?
|
|
''',
|
|
[...args, request.limit, request.offset],
|
|
);
|
|
return rows.toList(growable: false);
|
|
}
|
|
|
|
Future<List<Map<String, dynamic>>> getQueueLocalAlbumTracks(
|
|
String albumName,
|
|
String artistName,
|
|
) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where:
|
|
"LOWER(album_name) = ? AND LOWER(COALESCE(NULLIF(album_artist, ''), artist_name)) = ?",
|
|
whereArgs: [albumName.toLowerCase(), artistName.toLowerCase()],
|
|
orderBy:
|
|
'COALESCE(disc_number, 0), COALESCE(track_number, 0), track_name',
|
|
);
|
|
return rows.map(_dbRowToJson).toList(growable: false);
|
|
}
|
|
|
|
Future<List<Map<String, dynamic>>> getQueueLocalAlbumTracksByKey(
|
|
String albumKey,
|
|
) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where: 'album_key = ?',
|
|
whereArgs: [albumKey],
|
|
orderBy:
|
|
'COALESCE(disc_number, 0), COALESCE(track_number, 0), track_name',
|
|
);
|
|
return rows.map(_dbRowToJson).toList(growable: false);
|
|
}
|
|
|
|
Future<Map<String, dynamic>?> getById(String id) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where: 'id = ?',
|
|
whereArgs: [id],
|
|
limit: 1,
|
|
);
|
|
if (rows.isEmpty) return null;
|
|
return _dbRowToJson(rows.first);
|
|
}
|
|
|
|
Future<Map<String, dynamic>?> getByIsrc(String isrc) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where: 'isrc = ?',
|
|
whereArgs: [isrc],
|
|
limit: 1,
|
|
);
|
|
if (rows.isEmpty) return null;
|
|
return _dbRowToJson(rows.first);
|
|
}
|
|
|
|
Future<List<Map<String, dynamic>>> findByTrackAndArtist(
|
|
String trackName,
|
|
String artistName,
|
|
) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where: 'match_key = ?',
|
|
whereArgs: [matchKeyFor(trackName, artistName)],
|
|
);
|
|
return rows.map(_dbRowToJson).toList();
|
|
}
|
|
|
|
Future<Map<String, dynamic>?> findFirstByTrackAndArtist(
|
|
String trackName,
|
|
String artistName,
|
|
) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
where: 'match_key = ?',
|
|
whereArgs: [matchKeyFor(trackName, artistName)],
|
|
orderBy: _orderByForSort(LocalLibrarySortMode.album),
|
|
limit: 1,
|
|
);
|
|
if (rows.isEmpty) return null;
|
|
return _dbRowToJson(rows.first);
|
|
}
|
|
|
|
Future<Map<String, dynamic>?> findExisting({
|
|
String? isrc,
|
|
String? trackName,
|
|
String? artistName,
|
|
}) async {
|
|
if (isrc != null && isrc.isNotEmpty) {
|
|
final byIsrc = await getByIsrc(isrc);
|
|
if (byIsrc != null) return byIsrc;
|
|
}
|
|
|
|
if (trackName != null && artistName != null) {
|
|
final matches = await findByTrackAndArtist(trackName, artistName);
|
|
if (matches.isNotEmpty) return matches.first;
|
|
}
|
|
|
|
return null;
|
|
}
|
|
|
|
/// Resolves a track list with a bounded number of indexed queries instead
|
|
/// of issuing up to three SQLite calls for every track.
|
|
Future<List<Map<String, dynamic>?>> findExistingBatch(
|
|
List<LocalLibraryBatchLookupRequest> requests,
|
|
) async {
|
|
if (requests.isEmpty) return const [];
|
|
final db = await database;
|
|
final byId = <String, Map<String, dynamic>>{};
|
|
final byIsrc = <String, Map<String, dynamic>>{};
|
|
final byMatchKey = <String, Map<String, dynamic>>{};
|
|
|
|
Future<void> loadColumn(
|
|
String column,
|
|
Iterable<String> rawValues,
|
|
Map<String, Map<String, dynamic>> destination,
|
|
) {
|
|
return sqlite.loadRowsByColumn(
|
|
db,
|
|
table: 'library',
|
|
column: column,
|
|
rawValues: rawValues,
|
|
destination: destination,
|
|
mapRow: _dbRowToJson,
|
|
);
|
|
}
|
|
|
|
await Future.wait([
|
|
loadColumn('id', requests.map((request) => request.id ?? ''), byId),
|
|
loadColumn('isrc', requests.map((request) => request.isrc ?? ''), byIsrc),
|
|
loadColumn(
|
|
'match_key',
|
|
requests.map(
|
|
(request) => matchKeyFor(request.trackName, request.artistName),
|
|
),
|
|
byMatchKey,
|
|
),
|
|
]);
|
|
|
|
return requests
|
|
.map((request) {
|
|
final id = request.id?.trim() ?? '';
|
|
if (id.isNotEmpty && byId[id] != null) return byId[id];
|
|
final isrc = request.isrc?.trim() ?? '';
|
|
if (isrc.isNotEmpty && byIsrc[isrc] != null) return byIsrc[isrc];
|
|
return byMatchKey[matchKeyFor(request.trackName, request.artistName)];
|
|
})
|
|
.toList(growable: false);
|
|
}
|
|
|
|
Future<LocalLibraryLookupIndex> getLookupIndex() async {
|
|
final db = await database;
|
|
final rows = await db.rawQuery('SELECT isrc, match_key FROM library');
|
|
final isrcs = <String>{};
|
|
final matchKeys = <String>{};
|
|
for (final row in rows) {
|
|
final isrc = row['isrc'] as String?;
|
|
if (isrc != null && isrc.isNotEmpty) {
|
|
isrcs.add(isrc);
|
|
}
|
|
final matchKey = row['match_key'] as String?;
|
|
if (matchKey != null && matchKey.isNotEmpty) {
|
|
matchKeys.add(matchKey);
|
|
}
|
|
}
|
|
return LocalLibraryLookupIndex(
|
|
isrcs: Set<String>.unmodifiable(isrcs),
|
|
matchKeys: Set<String>.unmodifiable(matchKeys),
|
|
);
|
|
}
|
|
|
|
Future<List<String>> getCoverPaths({int? limit, int? offset}) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
columns: ['cover_path'],
|
|
where: 'cover_path IS NOT NULL AND cover_path != ""',
|
|
limit: limit,
|
|
offset: offset,
|
|
);
|
|
return rows
|
|
.map((row) => row['cover_path'] as String?)
|
|
.whereType<String>()
|
|
.toList(growable: false);
|
|
}
|
|
|
|
/// Groups of tracks sharing one ISRC across download history and the
|
|
/// local library. Library rows whose path key already appears in history
|
|
/// are excluded so a scanned copy of a download doesn't pair with itself.
|
|
/// Entries come back best-quality first.
|
|
Future<List<IsrcDuplicateGroup>> findIsrcDuplicateGroups() async {
|
|
final db = await database;
|
|
final rows = await db.rawQuery('''
|
|
WITH merged AS (
|
|
SELECT h.id AS id, 'downloaded' AS source, h.track_name, h.artist_name,
|
|
h.album_name, h.file_path, UPPER(TRIM(h.isrc)) AS isrc_key,
|
|
h.bit_depth, h.sample_rate, h.bitrate, h.format
|
|
FROM history_db.history h
|
|
WHERE h.isrc IS NOT NULL AND TRIM(h.isrc) != ''
|
|
UNION ALL
|
|
SELECT l.id AS id, 'local' AS source, l.track_name, l.artist_name,
|
|
l.album_name, l.file_path, UPPER(TRIM(l.isrc)) AS isrc_key,
|
|
l.bit_depth, l.sample_rate, l.bitrate, l.format
|
|
FROM library l
|
|
WHERE l.isrc IS NOT NULL AND TRIM(l.isrc) != ''
|
|
AND NOT EXISTS (
|
|
SELECT 1
|
|
FROM library_path_keys lpk
|
|
JOIN history_db.history_path_keys hpk ON hpk.path_key = lpk.path_key
|
|
WHERE lpk.item_id = l.id
|
|
)
|
|
)
|
|
SELECT * FROM merged
|
|
WHERE isrc_key IN (
|
|
SELECT isrc_key FROM merged GROUP BY isrc_key HAVING COUNT(*) > 1
|
|
)
|
|
ORDER BY isrc_key, bit_depth DESC, sample_rate DESC, bitrate DESC
|
|
''');
|
|
|
|
final groups = <String, List<IsrcDuplicateEntry>>{};
|
|
for (final row in rows) {
|
|
final isrc = row['isrc_key'] as String? ?? '';
|
|
final filePath = row['file_path'] as String? ?? '';
|
|
if (isrc.isEmpty || filePath.isEmpty) continue;
|
|
groups
|
|
.putIfAbsent(isrc, () => [])
|
|
.add(
|
|
IsrcDuplicateEntry(
|
|
id: row['id'] as String,
|
|
source: row['source'] as String,
|
|
trackName: row['track_name'] as String? ?? '',
|
|
artistName: row['artist_name'] as String? ?? '',
|
|
albumName: row['album_name'] as String? ?? '',
|
|
filePath: filePath,
|
|
bitDepth: (row['bit_depth'] as num?)?.toInt(),
|
|
sampleRate: (row['sample_rate'] as num?)?.toInt(),
|
|
bitrate: (row['bitrate'] as num?)?.toInt(),
|
|
format: row['format'] as String?,
|
|
),
|
|
);
|
|
}
|
|
return [
|
|
for (final entry in groups.entries)
|
|
if (entry.value.length > 1)
|
|
IsrcDuplicateGroup(isrc: entry.key, entries: entry.value),
|
|
];
|
|
}
|
|
|
|
Future<void> deleteByPath(String filePath) async {
|
|
final db = await database;
|
|
final rows = await db.query(
|
|
'library',
|
|
columns: ['id'],
|
|
where: 'file_path = ?',
|
|
whereArgs: [filePath],
|
|
);
|
|
final ids = rows.map((row) => row['id'] as String).toList(growable: false);
|
|
await db.transaction((txn) async {
|
|
for (final id in ids) {
|
|
await txn.delete(
|
|
'library_path_keys',
|
|
where: 'item_id = ?',
|
|
whereArgs: [id],
|
|
);
|
|
}
|
|
await txn.delete(
|
|
'library',
|
|
where: 'file_path = ?',
|
|
whereArgs: [filePath],
|
|
);
|
|
});
|
|
}
|
|
|
|
Future<void> replaceWithConvertedItem({
|
|
required LocalLibraryItem item,
|
|
required String newFilePath,
|
|
required String targetFormat,
|
|
required String bitrate,
|
|
int? bitDepth,
|
|
int? sampleRate,
|
|
bool keepOriginal = false,
|
|
}) async {
|
|
final db = await database;
|
|
final stat = await fileStat(newFilePath);
|
|
final now = DateTime.now();
|
|
final normalizedFormat = _normalizeConvertedFormat(targetFormat);
|
|
final convertedBitrate =
|
|
_convertedBitrate(targetFormat: targetFormat, bitrate: bitrate) ??
|
|
estimateAverageBitrateKbps(
|
|
fileSizeBytes: stat?.size,
|
|
durationSeconds: item.duration,
|
|
);
|
|
final updated = item.toJson()
|
|
..['id'] = _generateLibraryId(newFilePath)
|
|
..['filePath'] = newFilePath
|
|
..['scannedAt'] = now.toIso8601String()
|
|
..['fileModTime'] = stat?.modified?.millisecondsSinceEpoch
|
|
..['format'] = normalizedFormat
|
|
..['bitrate'] = convertedBitrate
|
|
..['audioMetadataScanVersion'] = convertedBitrate != null
|
|
? audioMetadataScanVersion
|
|
: 0;
|
|
|
|
if (normalizedFormat == 'mp3' ||
|
|
normalizedFormat == 'opus' ||
|
|
normalizedFormat == 'aac') {
|
|
updated['bitDepth'] = null;
|
|
updated['sampleRate'] = null;
|
|
} else {
|
|
updated['bitDepth'] = bitDepth ?? item.bitDepth;
|
|
updated['sampleRate'] = sampleRate ?? item.sampleRate;
|
|
}
|
|
|
|
await db.transaction((txn) async {
|
|
if (!keepOriginal) {
|
|
await txn.delete(
|
|
'library_path_keys',
|
|
where: 'item_id = ?',
|
|
whereArgs: [item.id],
|
|
);
|
|
await txn.delete(
|
|
'library',
|
|
where: 'id = ? OR file_path = ?',
|
|
whereArgs: [item.id, item.filePath],
|
|
);
|
|
}
|
|
await txn.insert(
|
|
'library',
|
|
_jsonToDbRow(updated),
|
|
conflictAlgorithm: ConflictAlgorithm.replace,
|
|
);
|
|
final batch = txn.batch();
|
|
_putPathKeysInBatch(
|
|
batch,
|
|
updated['id'] as String,
|
|
updated['filePath'] as String?,
|
|
);
|
|
await batch.commit(noResult: true);
|
|
});
|
|
}
|
|
|
|
Future<void> updateAudioMetadata(
|
|
String id, {
|
|
int? duration,
|
|
int? bitDepth,
|
|
int? sampleRate,
|
|
int? bitrate,
|
|
String? format,
|
|
}) async {
|
|
final values = <String, dynamic>{};
|
|
if (duration != null && duration > 0) {
|
|
values['duration'] = duration;
|
|
}
|
|
if (bitDepth != null && bitDepth > 0) {
|
|
values['bit_depth'] = bitDepth;
|
|
}
|
|
if (sampleRate != null && sampleRate > 0) {
|
|
values['sample_rate'] = sampleRate;
|
|
}
|
|
if (bitrate != null && bitrate > 0) {
|
|
values['bitrate'] = bitrate;
|
|
}
|
|
final normalizedFormat = normalizeAudioFormatValue(format);
|
|
if (normalizedFormat != null) {
|
|
values['format'] = normalizedFormat;
|
|
}
|
|
if (values.isEmpty) return;
|
|
values['audio_metadata_scan_version'] = audioMetadataScanVersion;
|
|
|
|
final db = await database;
|
|
await db.update('library', values, where: 'id = ?', whereArgs: [id]);
|
|
}
|
|
|
|
Future<void> delete(String id) async {
|
|
final db = await database;
|
|
await db.transaction((txn) async {
|
|
await txn.delete(
|
|
'library_path_keys',
|
|
where: 'item_id = ?',
|
|
whereArgs: [id],
|
|
);
|
|
await txn.delete('library', where: 'id = ?', whereArgs: [id]);
|
|
});
|
|
}
|
|
|
|
Future<int> cleanupMissingFiles() async {
|
|
final db = await database;
|
|
final rows = await db.query('library', columns: ['id', 'file_path']);
|
|
|
|
final missingIds = <String>[];
|
|
const checkChunkSize = 16;
|
|
for (var i = 0; i < rows.length; i += checkChunkSize) {
|
|
final end = (i + checkChunkSize < rows.length)
|
|
? i + checkChunkSize
|
|
: rows.length;
|
|
final chunk = rows.sublist(i, end);
|
|
final checks = await Future.wait<MapEntry<String, bool>>(
|
|
chunk.map((row) async {
|
|
final id = row['id'] as String;
|
|
final filePath = row['file_path'] as String;
|
|
return MapEntry(id, await fileExists(filePath));
|
|
}),
|
|
);
|
|
for (final check in checks) {
|
|
if (!check.value) {
|
|
missingIds.add(check.key);
|
|
}
|
|
}
|
|
}
|
|
|
|
if (missingIds.isEmpty) {
|
|
return 0;
|
|
}
|
|
|
|
var removed = 0;
|
|
const deleteChunkSize = 500;
|
|
for (var i = 0; i < missingIds.length; i += deleteChunkSize) {
|
|
final end = (i + deleteChunkSize < missingIds.length)
|
|
? i + deleteChunkSize
|
|
: missingIds.length;
|
|
final idChunk = missingIds.sublist(i, end);
|
|
final placeholders = List.filled(idChunk.length, '?').join(',');
|
|
await db.rawDelete(
|
|
'DELETE FROM library_path_keys WHERE item_id IN ($placeholders)',
|
|
idChunk,
|
|
);
|
|
removed += await db.rawDelete(
|
|
'DELETE FROM library WHERE id IN ($placeholders)',
|
|
idChunk,
|
|
);
|
|
}
|
|
|
|
if (removed > 0) {
|
|
_log.i('Cleaned up $removed missing files from library');
|
|
}
|
|
return removed;
|
|
}
|
|
|
|
Future<void> clearAll() async {
|
|
final db = await database;
|
|
await db.transaction((txn) async {
|
|
await txn.delete('library_path_keys');
|
|
await txn.delete('library');
|
|
});
|
|
_log.i('Cleared all library data');
|
|
}
|
|
|
|
Future<int> getCount() async {
|
|
final db = await database;
|
|
final result = await db.rawQuery('SELECT COUNT(*) as count FROM library');
|
|
return Sqflite.firstIntValue(result) ?? 0;
|
|
}
|
|
|
|
Future<void> close() async {
|
|
final db = await database;
|
|
await db.close();
|
|
_database = null;
|
|
_historyAttached = false;
|
|
}
|
|
|
|
Future<Map<String, int>> getFileModTimes() async {
|
|
final db = await database;
|
|
final rows = await db.rawQuery(
|
|
'SELECT file_path, COALESCE(file_mod_time, 0) AS file_mod_time, '
|
|
'audio_metadata_scan_version FROM library',
|
|
);
|
|
final result = <String, int>{};
|
|
for (final row in rows) {
|
|
final path = row['file_path'] as String;
|
|
final modTime = (row['file_mod_time'] as num?)?.toInt() ?? 0;
|
|
final scanVersion =
|
|
(row['audio_metadata_scan_version'] as num?)?.toInt() ?? 0;
|
|
// A sentinel timestamp keeps the path in deletion/dedup checks while
|
|
// making the incremental scanner treat a legacy row as changed once.
|
|
result[path] = libraryIncrementalSnapshotModTime(
|
|
storedModTime: modTime,
|
|
storedScanVersion: scanVersion,
|
|
);
|
|
}
|
|
return result;
|
|
}
|
|
|
|
Future<String> writeFileModTimesSnapshot() async {
|
|
final db = await database;
|
|
final rows = await db.rawQuery(
|
|
'SELECT file_path, COALESCE(file_mod_time, 0) AS file_mod_time, '
|
|
'audio_metadata_scan_version FROM library',
|
|
);
|
|
final tempDir = await getTemporaryDirectory();
|
|
final file = File(
|
|
join(
|
|
tempDir.path,
|
|
'library_file_mod_times_${DateTime.now().microsecondsSinceEpoch}.tsv',
|
|
),
|
|
);
|
|
final buffer = StringBuffer();
|
|
for (final row in rows) {
|
|
final path = row['file_path'] as String?;
|
|
if (path == null || path.isEmpty) continue;
|
|
final modTime = (row['file_mod_time'] as num?)?.toInt() ?? 0;
|
|
final scanVersion =
|
|
(row['audio_metadata_scan_version'] as num?)?.toInt() ?? 0;
|
|
buffer
|
|
..write(
|
|
libraryIncrementalSnapshotModTime(
|
|
storedModTime: modTime,
|
|
storedScanVersion: scanVersion,
|
|
),
|
|
)
|
|
..write('\t')
|
|
..writeln(path);
|
|
}
|
|
await file.writeAsString(buffer.toString(), flush: true);
|
|
return file.path;
|
|
}
|
|
|
|
Future<void> updateFileModTimes(Map<String, int> fileModTimes) async {
|
|
if (fileModTimes.isEmpty) return;
|
|
final db = await database;
|
|
final batch = db.batch();
|
|
for (final entry in fileModTimes.entries) {
|
|
batch.update(
|
|
'library',
|
|
{'file_mod_time': entry.value},
|
|
where: 'file_path = ?',
|
|
whereArgs: [entry.key],
|
|
);
|
|
}
|
|
await batch.commit(noResult: true);
|
|
}
|
|
|
|
Future<Set<String>> getAllFilePaths() async {
|
|
final db = await database;
|
|
final rows = await db.rawQuery('SELECT file_path FROM library');
|
|
return rows.map((r) => r['file_path'] as String).toSet();
|
|
}
|
|
|
|
Future<int> deleteByPaths(List<String> filePaths) async {
|
|
if (filePaths.isEmpty) return 0;
|
|
final db = await database;
|
|
var totalDeleted = 0;
|
|
const chunkSize = 500;
|
|
for (var i = 0; i < filePaths.length; i += chunkSize) {
|
|
final end = (i + chunkSize < filePaths.length)
|
|
? i + chunkSize
|
|
: filePaths.length;
|
|
final chunk = filePaths.sublist(i, end);
|
|
final placeholders = List.filled(chunk.length, '?').join(',');
|
|
final rows = await db.rawQuery(
|
|
'SELECT id FROM library WHERE file_path IN ($placeholders)',
|
|
chunk,
|
|
);
|
|
final ids = rows
|
|
.map((row) => row['id'] as String)
|
|
.toList(growable: false);
|
|
if (ids.isNotEmpty) {
|
|
final idPlaceholders = List.filled(ids.length, '?').join(',');
|
|
await db.rawDelete(
|
|
'DELETE FROM library_path_keys WHERE item_id IN ($idPlaceholders)',
|
|
ids,
|
|
);
|
|
}
|
|
totalDeleted += await db.rawDelete(
|
|
'DELETE FROM library WHERE file_path IN ($placeholders)',
|
|
chunk,
|
|
);
|
|
}
|
|
if (totalDeleted > 0) {
|
|
_log.i('Deleted $totalDeleted items from library');
|
|
}
|
|
return totalDeleted;
|
|
}
|
|
|
|
String _normalizeConvertedFormat(String targetFormat) {
|
|
return normalizeAudioFormatValue(targetFormat) ?? 'mp3';
|
|
}
|
|
|
|
int? _convertedBitrate({
|
|
required String targetFormat,
|
|
required String bitrate,
|
|
}) {
|
|
switch (targetFormat.trim().toLowerCase()) {
|
|
case 'mp3':
|
|
case 'opus':
|
|
case 'aac':
|
|
final match = RegExp(r'(\d+)').firstMatch(bitrate);
|
|
return match != null ? int.tryParse(match.group(1)!) : null;
|
|
default:
|
|
return null;
|
|
}
|
|
}
|
|
|
|
String _generateLibraryId(String filePath) {
|
|
return 'lib_${_hashString(filePath).toRadixString(16)}';
|
|
}
|
|
|
|
int _hashString(String input) {
|
|
var hash = 5381;
|
|
for (final codeUnit in input.codeUnits) {
|
|
hash = (((hash << 5) + hash) + codeUnit) & 0xffffffff;
|
|
}
|
|
return hash;
|
|
}
|
|
}
|