597 lines
22 KiB
Dart
597 lines
22 KiB
Dart
import 'dart:io';
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import 'package:drift/drift.dart';
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import 'package:drift/native.dart';
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import 'package:flutter/foundation.dart';
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import 'package:path_provider/path_provider.dart';
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import 'package:path/path.dart' as p;
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import 'tables.dart';
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import '../models/download_models.dart';
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import '../utils/app_logger.dart';
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import '../utils/global_key_utils.dart';
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part 'app_database.g.dart';
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/// Action queued in the offline watch-progress sync table. The serialized
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/// form ([id]) is what gets persisted in [OfflineWatchProgress.actionType];
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/// keep these strings stable across renames so existing rows resolve.
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enum OfflineActionType {
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progress,
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watched,
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unwatched;
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/// Stable string id used for persistence. Survives an enum-name rename
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/// (e.g. `progress` → `inProgress`) — `.name` would corrupt every row.
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String get id => switch (this) {
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OfflineActionType.progress => 'progress',
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OfflineActionType.watched => 'watched',
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OfflineActionType.unwatched => 'unwatched',
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};
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/// Inverse of [id]. Throws on unknown so a typo in production doesn't
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/// silently fall back to the wrong action.
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static OfflineActionType fromId(String id) => switch (id) {
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'progress' => OfflineActionType.progress,
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'watched' => OfflineActionType.watched,
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'unwatched' => OfflineActionType.unwatched,
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_ => throw ArgumentError('Unknown OfflineActionType id: $id'),
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};
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}
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// Simplified database with API cache for offline support
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@DriftDatabase(
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tables: [
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DownloadedMedia,
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DownloadOwners,
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DownloadQueue,
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ApiCache,
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OfflineWatchProgress,
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SyncRules,
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Connections,
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Profiles,
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ProfileConnections,
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],
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)
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class AppDatabase extends _$AppDatabase {
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AppDatabase() : super(_openConnection());
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/// Test-only constructor — inject an in-memory [QueryExecutor]
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/// (e.g. `NativeDatabase.memory()`) so tests don't touch real disk.
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@visibleForTesting
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AppDatabase.forTesting(super.e);
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@override
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int get schemaVersion => 14;
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@override
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MigrationStrategy get migration {
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return MigrationStrategy(
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// Enforce ProfileConnections → Profiles/Connections cascades.
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// Drift turns FKs *off* during migrations, so the per-connection
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// pragma we set in `_openConnection` is wiped on first open. This
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// hook runs after migrations and re-enables it for subsequent
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// queries — also applies to in-memory test databases that don't go
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// through `_openConnection`.
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beforeOpen: (details) async {
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await customStatement('PRAGMA foreign_keys = ON');
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},
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onCreate: (Migrator m) async {
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await m.createAll();
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},
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onUpgrade: (Migrator m, int from, int to) async {
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if (from < 7) {
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appLogger.i('Adding OfflineWatchProgress table (v7 migration)');
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await m.createTable(offlineWatchProgress);
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}
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if (from < 8) {
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appLogger.i('Adding bgTaskId column to DownloadedMedia (v8 migration)');
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await _ignoreAlreadyExists(
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'DownloadedMedia.bgTaskId column',
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() => m.addColumn(downloadedMedia, downloadedMedia.bgTaskId),
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);
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}
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if (from < 9) {
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appLogger.i('Adding mediaIndex column to DownloadedMedia (v9 migration)');
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await _ignoreAlreadyExists(
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'DownloadedMedia.mediaIndex column',
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() => m.addColumn(downloadedMedia, downloadedMedia.mediaIndex),
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);
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}
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if (from < 10) {
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appLogger.i('Adding SyncRules table (v10 migration)');
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await m.createTable(syncRules);
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}
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if (from < 11) {
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appLogger.i('Adding enabled column to SyncRules (v11 migration)');
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await _ignoreAlreadyExists('SyncRules.enabled column', () => m.addColumn(syncRules, syncRules.enabled));
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}
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if (from < 12) {
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appLogger.i('Adding downloadFilter column to SyncRules (v12 migration)');
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await _ignoreAlreadyExists(
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'SyncRules.downloadFilter column',
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() => m.addColumn(syncRules, syncRules.downloadFilter),
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);
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}
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if (from < 13) {
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appLogger.i('Adding indexes on DownloadedMedia hot-queried columns (v13 migration)');
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final indexes = {
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'idx_downloaded_media_status': idxDownloadedMediaStatus,
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'idx_downloaded_media_server': idxDownloadedMediaServer,
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'idx_downloaded_media_parent': idxDownloadedMediaParent,
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'idx_downloaded_media_grandparent': idxDownloadedMediaGrandparent,
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};
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for (final entry in indexes.entries) {
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await _ignoreAlreadyExists('Index ${entry.key}', () => m.create(entry.value));
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}
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}
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if (from < 14) {
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appLogger.i(
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'Adding Connections, Profiles, ProfileConnections, DownloadOwners + scope/profile columns (v14 migration)',
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);
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await m.createTable(connections);
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await m.create(idxConnectionsKind);
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await m.createTable(profiles);
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await m.create(idxProfilesKind);
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await m.createTable(profileConnections);
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await m.create(idxProfileConnectionsConnectionId);
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await m.create(idxProfileConnectionsProfileId);
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await _ignoreAlreadyExists('DownloadOwners table', () => m.createTable(downloadOwners));
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await _ignoreAlreadyExists('Index idx_download_owners_profile', () => m.create(idxDownloadOwnersProfile));
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await _ignoreAlreadyExists(
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'Index idx_download_owners_global_key',
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() => m.create(idxDownloadOwnersGlobalKey),
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);
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await _ignoreAlreadyExists(
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'DownloadedMedia.clientScopeId column',
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() => m.addColumn(downloadedMedia, downloadedMedia.clientScopeId),
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);
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await _ignoreAlreadyExists(
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'OfflineWatchProgress.clientScopeId column',
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() => m.addColumn(offlineWatchProgress, offlineWatchProgress.clientScopeId),
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);
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await _ignoreAlreadyExists('SyncRules.profileId column', () => m.addColumn(syncRules, syncRules.profileId));
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await _ignoreAlreadyExists(
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'OfflineWatchProgress.profileId column',
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() => m.addColumn(offlineWatchProgress, offlineWatchProgress.profileId),
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);
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await customStatement('''
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UPDATE downloaded_media
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SET client_scope_id = (
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SELECT id FROM connections
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WHERE kind = 'jellyfin'
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AND substr(id, 1, length(downloaded_media.server_id) + 1) = downloaded_media.server_id || '/'
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LIMIT 1
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)
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WHERE client_scope_id IS NULL
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AND EXISTS (
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SELECT 1 FROM connections
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WHERE kind = 'jellyfin'
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AND substr(id, 1, length(downloaded_media.server_id) + 1) = downloaded_media.server_id || '/'
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)
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''');
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await customStatement('''
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UPDATE offline_watch_progress
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SET client_scope_id = (
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SELECT id FROM connections
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WHERE kind = 'jellyfin'
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AND substr(id, 1, length(offline_watch_progress.server_id) + 1) = offline_watch_progress.server_id || '/'
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LIMIT 1
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)
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WHERE client_scope_id IS NULL
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AND EXISTS (
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SELECT 1 FROM connections
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WHERE kind = 'jellyfin'
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AND substr(id, 1, length(offline_watch_progress.server_id) + 1) = offline_watch_progress.server_id || '/'
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)
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''');
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await m.create(idxOfflineWatchProgressServer);
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await _ignoreAlreadyExists('Index idx_sync_rules_profile', () => m.create(idxSyncRulesProfile));
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await _ignoreAlreadyExists(
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'Index idx_offline_watch_progress_profile',
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() => m.create(idxOfflineWatchProgressProfile),
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);
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}
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},
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);
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}
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Future<void> _ignoreAlreadyExists(String label, Future<void> Function() operation) async {
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try {
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await operation();
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} catch (e) {
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final message = e.toString().toLowerCase();
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if (message.contains('already exists') || message.contains('duplicate column name')) {
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appLogger.w('$label already exists during migration: $e');
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return;
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}
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rethrow;
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}
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}
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// ============================================================
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// Offline Watch Progress Operations
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// ============================================================
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Expression<bool> _clientScopePredicate(GeneratedColumn<String> column, String? clientScopeId) {
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return clientScopeId == null ? column.isNull() : column.equals(clientScopeId);
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}
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Expression<bool> _nullableTextPredicate(GeneratedColumn<String> column, String? value) {
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return value == null ? column.isNull() : column.equals(value);
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}
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/// Get all pending offline watch actions for sync
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Future<List<OfflineWatchProgressItem>> getPendingWatchActions({String? profileId}) {
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final query = select(offlineWatchProgress)..orderBy([(t) => OrderingTerm.asc(t.createdAt)]);
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if (profileId != null) {
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query.where((t) => t.profileId.equals(profileId));
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}
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return query.get();
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}
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/// Claim pre-v18 offline watch actions for [profileId]. Those rows predate
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/// profile ownership and have `NULL profile_id`; the first active profile
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/// inherits them so already-watched offline progress is not stranded.
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Future<void> adoptLegacyOfflineWatchActionsForProfile(String profileId) async {
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if (profileId.isEmpty) return;
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await (update(
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offlineWatchProgress,
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)..where((t) => t.profileId.isNull())).write(OfflineWatchProgressCompanion(profileId: Value(profileId)));
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}
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/// Get pending watch actions for a specific server
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Future<List<OfflineWatchProgressItem>> getPendingWatchActionsForServer(String serverId, {String? profileId}) {
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return (select(offlineWatchProgress)
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..where(
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(t) =>
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t.serverId.equals(serverId) &
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(profileId == null ? const Constant(true) : t.profileId.equals(profileId)),
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)
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..orderBy([(t) => OrderingTerm.asc(t.createdAt)]))
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.get();
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}
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/// Get the latest action for a specific item
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Future<OfflineWatchProgressItem?> getLatestWatchAction(
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String globalKey, {
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String? profileId,
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bool filterProfile = false,
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String? clientScopeId,
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bool filterClientScope = false,
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}) {
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return (select(offlineWatchProgress)
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..where(
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(t) =>
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t.globalKey.equals(globalKey) &
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(filterProfile ? _nullableTextPredicate(t.profileId, profileId) : const Constant(true)) &
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(filterClientScope ? _clientScopePredicate(t.clientScopeId, clientScopeId) : const Constant(true)),
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)
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..orderBy([(t) => OrderingTerm.desc(t.updatedAt)])
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..limit(1))
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.getSingleOrNull();
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}
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/// Get the latest actions for multiple items in a single query
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///
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/// Returns a map of globalKey -> latest action for each key.
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/// Keys with no actions will not be present in the returned map.
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Future<Map<String, OfflineWatchProgressItem>> getLatestWatchActionsForKeys(
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Set<String> globalKeys, {
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String? profileId,
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bool filterProfile = false,
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Map<String, String?>? clientScopeIdsByGlobalKey,
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}) async {
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if (globalKeys.isEmpty) return {};
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// Query all actions for the given keys
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final allActions =
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await (select(offlineWatchProgress)
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..where(
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(t) =>
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t.globalKey.isIn(globalKeys) &
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(filterProfile ? _nullableTextPredicate(t.profileId, profileId) : const Constant(true)),
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)
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..orderBy([(t) => OrderingTerm.desc(t.updatedAt)]))
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.get();
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// Group by globalKey and take the latest (first due to ordering)
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final result = <String, OfflineWatchProgressItem>{};
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for (final action in allActions) {
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if (clientScopeIdsByGlobalKey != null && clientScopeIdsByGlobalKey.containsKey(action.globalKey)) {
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final expectedScope = clientScopeIdsByGlobalKey[action.globalKey];
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if (!_clientScopeValuesMatch(action.clientScopeId, expectedScope)) continue;
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}
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// Only keep the first (latest) action for each key
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result.putIfAbsent(action.globalKey, () => action);
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}
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return result;
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}
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bool _clientScopeValuesMatch(String? actual, String? expected) {
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final normalizedActual = actual == null || actual.isEmpty ? null : actual;
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final normalizedExpected = expected == null || expected.isEmpty ? null : expected;
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return normalizedActual == normalizedExpected;
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}
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/// Insert or update a progress action (merges with existing).
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Future<void> upsertProgressAction({
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String? profileId,
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required String serverId,
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String? clientScopeId,
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required String ratingKey,
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required int viewOffset,
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required int duration,
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required bool shouldMarkWatched,
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}) async {
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final globalKey = buildGlobalKey(serverId, ratingKey);
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final now = DateTime.now().millisecondsSinceEpoch;
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// Check for existing progress entry
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final existing =
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await (select(offlineWatchProgress)
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..where(
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(t) =>
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t.globalKey.equals(globalKey) &
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_nullableTextPredicate(t.profileId, profileId) &
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_clientScopePredicate(t.clientScopeId, clientScopeId) &
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t.actionType.equals(OfflineActionType.progress.id),
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)
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..limit(1))
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.getSingleOrNull();
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if (existing != null) {
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// Update existing progress entry
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await (update(offlineWatchProgress)..where((t) => t.id.equals(existing.id))).write(
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OfflineWatchProgressCompanion(
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viewOffset: Value(viewOffset),
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duration: Value(duration),
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shouldMarkWatched: Value(shouldMarkWatched),
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profileId: Value(profileId),
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clientScopeId: Value(clientScopeId),
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updatedAt: Value(now),
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),
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);
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} else {
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// Insert new progress entry
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await into(offlineWatchProgress).insert(
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OfflineWatchProgressCompanion.insert(
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serverId: serverId,
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profileId: Value(profileId),
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clientScopeId: Value(clientScopeId),
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ratingKey: ratingKey,
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globalKey: globalKey,
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actionType: OfflineActionType.progress.id,
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viewOffset: Value(viewOffset),
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duration: Value(duration),
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shouldMarkWatched: Value(shouldMarkWatched),
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createdAt: now,
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updatedAt: now,
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),
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);
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}
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}
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/// Insert a manual watch action (watched or unwatched).
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/// Removes conflicting actions for the same item.
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Future<void> insertWatchAction({
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String? profileId,
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required String serverId,
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String? clientScopeId,
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required String ratingKey,
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required String actionType, // 'watched' or 'unwatched'
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}) async {
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final globalKey = buildGlobalKey(serverId, ratingKey);
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final now = DateTime.now().millisecondsSinceEpoch;
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// Remove conflicting actions (opposite action type and progress)
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await (delete(offlineWatchProgress)..where(
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(t) =>
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t.globalKey.equals(globalKey) &
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_nullableTextPredicate(t.profileId, profileId) &
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_clientScopePredicate(t.clientScopeId, clientScopeId),
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))
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.go();
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// Insert the new action
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await into(offlineWatchProgress).insert(
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OfflineWatchProgressCompanion.insert(
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serverId: serverId,
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profileId: Value(profileId),
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clientScopeId: Value(clientScopeId),
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ratingKey: ratingKey,
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globalKey: globalKey,
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actionType: actionType,
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createdAt: now,
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updatedAt: now,
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),
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);
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}
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/// Delete a specific watch action after successful sync
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Future<void> deleteWatchAction(int id) {
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return (delete(offlineWatchProgress)..where((t) => t.id.equals(id))).go();
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}
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/// Update sync attempt count and error message
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Future<void> updateSyncAttempt(int id, String? errorMessage) async {
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final existing = await (select(offlineWatchProgress)..where((t) => t.id.equals(id))).getSingleOrNull();
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if (existing != null) {
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await (update(offlineWatchProgress)..where((t) => t.id.equals(id))).write(
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OfflineWatchProgressCompanion(syncAttempts: Value(existing.syncAttempts + 1), lastError: Value(errorMessage)),
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);
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}
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}
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/// Get count of pending sync items
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Future<int> getPendingSyncCount({String? profileId}) async {
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final query = selectOnly(offlineWatchProgress)..addColumns([offlineWatchProgress.id.count()]);
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if (profileId != null) {
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query.where(offlineWatchProgress.profileId.equals(profileId));
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}
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final count = await query.map((row) => row.read(offlineWatchProgress.id.count())).getSingle();
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return count ?? 0;
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}
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/// Clear all pending watch actions (e.g., after logout)
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Future<void> clearAllWatchActions() {
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return delete(offlineWatchProgress).go();
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}
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// ============================================================
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// Sync Rules Operations
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// ============================================================
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Future<List<SyncRuleItem>> getSyncRules({String? profileId}) {
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final query = select(syncRules);
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if (profileId != null) {
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query.where((t) => t.profileId.equals(profileId));
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}
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return query.get();
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}
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Future<SyncRuleItem?> getSyncRule(String globalKey) {
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return (select(syncRules)..where((t) => t.globalKey.equals(globalKey))).getSingleOrNull();
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}
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Future<void> insertSyncRule({
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String profileId = '',
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required String serverId,
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required String ratingKey,
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required String globalKey,
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required String targetType,
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required int episodeCount,
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int mediaIndex = 0,
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String downloadFilter = 'unwatched',
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}) async {
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// [insertOnConflictUpdate] defaults the conflict target to the primary
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// key (`id`), which is auto-incremented — the conflict never triggers
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// and the row's UNIQUE [globalKey] constraint blows up instead. Drive
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// the upsert off the public [globalKey] so re-creating a rule for the same
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// shared target updates the existing row.
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await into(syncRules).insert(
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SyncRulesCompanion.insert(
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serverId: serverId,
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profileId: Value(profileId),
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ratingKey: ratingKey,
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globalKey: globalKey,
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targetType: targetType,
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episodeCount: episodeCount,
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createdAt: DateTime.now().millisecondsSinceEpoch,
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mediaIndex: Value(mediaIndex),
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downloadFilter: Value(downloadFilter),
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),
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onConflict: DoUpdate(
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(_) => SyncRulesCompanion(
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serverId: Value(serverId),
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profileId: Value(profileId),
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ratingKey: Value(ratingKey),
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targetType: Value(targetType),
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episodeCount: Value(episodeCount),
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mediaIndex: Value(mediaIndex),
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downloadFilter: Value(downloadFilter),
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),
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target: [syncRules.globalKey],
|
|
),
|
|
);
|
|
}
|
|
|
|
/// Claim pre-v16 public sync rules for [profileId]. Rules created before
|
|
/// profile ownership have an empty profile id and a public global key.
|
|
Future<void> adoptLegacySyncRulesForProfile(String profileId) async {
|
|
if (profileId.isEmpty) return;
|
|
final legacyRules = await (select(syncRules)..where((t) => t.profileId.equals(''))).get();
|
|
for (final rule in legacyRules) {
|
|
final scopedKey = buildProfileScopedGlobalKey(profileId, rule.serverId, rule.ratingKey);
|
|
final duplicate = await getSyncRule(scopedKey);
|
|
if (duplicate != null) {
|
|
await (delete(syncRules)..where((t) => t.id.equals(rule.id))).go();
|
|
continue;
|
|
}
|
|
await (update(syncRules)..where((t) => t.id.equals(rule.id))).write(
|
|
SyncRulesCompanion(profileId: Value(profileId), globalKey: Value(scopedKey)),
|
|
);
|
|
}
|
|
}
|
|
|
|
Future<void> updateSyncRuleCount(String globalKey, int episodeCount) async {
|
|
await (update(
|
|
syncRules,
|
|
)..where((t) => t.globalKey.equals(globalKey))).write(SyncRulesCompanion(episodeCount: Value(episodeCount)));
|
|
}
|
|
|
|
Future<void> updateSyncRuleFilter(String globalKey, String downloadFilter) async {
|
|
await (update(
|
|
syncRules,
|
|
)..where((t) => t.globalKey.equals(globalKey))).write(SyncRulesCompanion(downloadFilter: Value(downloadFilter)));
|
|
}
|
|
|
|
Future<void> updateSyncRuleEnabled(String globalKey, bool enabled) async {
|
|
await (update(
|
|
syncRules,
|
|
)..where((t) => t.globalKey.equals(globalKey))).write(SyncRulesCompanion(enabled: Value(enabled)));
|
|
}
|
|
|
|
Future<void> updateSyncRuleLastExecuted(String globalKey) async {
|
|
await (update(syncRules)..where((t) => t.globalKey.equals(globalKey))).write(
|
|
SyncRulesCompanion(lastExecutedAt: Value(DateTime.now().millisecondsSinceEpoch)),
|
|
);
|
|
}
|
|
|
|
Future<void> deleteSyncRule(String globalKey) async {
|
|
await (delete(syncRules)..where((t) => t.globalKey.equals(globalKey))).go();
|
|
}
|
|
|
|
// ============================================================
|
|
// Downloaded Media Queries for Watch State Sync
|
|
// ============================================================
|
|
|
|
/// Get all downloaded media items (for syncing watch states)
|
|
Future<List<DownloadedMediaItem>> getAllDownloadedMetadata() {
|
|
return (select(downloadedMedia)..where((t) => t.status.equals(DownloadStatus.completed.index))).get();
|
|
}
|
|
}
|
|
|
|
LazyDatabase _openConnection() {
|
|
return LazyDatabase(() async {
|
|
final dbFolder = (Platform.isAndroid || Platform.isIOS)
|
|
? await getApplicationDocumentsDirectory()
|
|
: await getApplicationSupportDirectory();
|
|
|
|
final file = File(p.join(dbFolder.path, 'plezy_downloads.db'));
|
|
|
|
// Ensure directory exists
|
|
if (!await file.parent.exists()) {
|
|
await file.parent.create(recursive: true);
|
|
}
|
|
|
|
// Migrate from old location on desktop (was in Documents subfolder)
|
|
if (!Platform.isAndroid && !Platform.isIOS && !await file.exists()) {
|
|
final oldFolder = await getApplicationDocumentsDirectory();
|
|
final oldFile = File(p.join(oldFolder.path, 'plezy_downloads.db'));
|
|
if (await oldFile.exists()) {
|
|
await oldFile.rename(file.path);
|
|
}
|
|
}
|
|
|
|
return NativeDatabase.createInBackground(
|
|
file,
|
|
setup: (db) {
|
|
db.execute('PRAGMA journal_mode=WAL');
|
|
db.execute('PRAGMA synchronous=NORMAL');
|
|
// Enforce ProfileConnections → Profiles/Connections cascades.
|
|
// SQLite requires this on every connection — it's not persisted.
|
|
db.execute('PRAGMA foreign_keys = ON');
|
|
},
|
|
);
|
|
});
|
|
}
|