Answers "which of my 100 tills are alive and healthy", and fixes three things that were fine on one device and broken on a hundred. Terminal identity (lib/data/local/terminal_identity.dart) - Every device mints a UUID on first run, stored in its own database, plus a short code (T4A9) derived from it. Renaming keeps the device id, so history keeps pointing at the same physical till. - Replaces the literal 'TERM-01', which was hardcoded in five places. The whole fleet reported as one terminal: shift reports merged, MQTT topics collided, and a second connection with the same client id evicts the first from the broker — so two tills would have knocked each other offline in a loop. Invoice numbers now carry the terminal code - INV-2608-T4A9-00042. The sequence counter lives in each till's own database and starts at 1, so without this every terminal in the fleet minted INV-2608-00001 for its first sale of the month. The order UUID kept the data distinct; the number a customer quotes on a receipt was not. SQLite pragmas - WAL, so the product grid refreshing does not block the sale being written, and the file is never left mid-rewrite by a power cut. - busy_timeout 5s, so a contended lock waits instead of throwing "database is locked" — which at checkout is a failed sale with a customer standing there. - synchronous NORMAL, the right trade under WAL for a till. Fleet presence (lib/data/sync/presence_reporter.dart) - Retained status record on connect and once a minute: device id, code, name, app version, pending bill count, last upload, catalogue revision, sync halt state. Retained so a dashboard connecting at noon gets all 100 terminals immediately rather than a blank board. - The Last Will already said "reachable". A till can be connected and still be holding 200 unsent bills or running last month's prices; only pending_bills and catalogue_revision say so. NATS - The MQTT gateway maps / to . so the existing transport works unchanged. SyncConfig.asNatsSubject() exposes the translation, and the contract doc gives the JetStream subjects (pos.*.*.order, pos.*.*.status) plus the two server-side requirements: a file-backed stream, and the ack published by the consumer after commit rather than by the ingest handler. Tests: 129 -> 140. New coverage for identity minting and stability, per-device invoice uniqueness, topic and client-id separation, NATS subject mapping, and the two pragmas. Suite run three times clean. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
247 lines
7.7 KiB
Dart
247 lines
7.7 KiB
Dart
import 'package:flutter_riverpod/flutter_riverpod.dart';
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import '../../../app/providers.dart';
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import '../../../core/constants/app_constants.dart';
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import '../../../data/remote/mqtt_order_transport.dart';
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import '../../../data/sync/presence_reporter.dart';
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import '../../../domain/entities/shift_report.dart';
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import '../../../domain/entities/sync_event.dart';
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import '../../../domain/repositories/sync_repository.dart';
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import '../../auth/providers/auth_controller.dart';
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import '../../pos/providers/catalog_providers.dart';
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/// Bumped after every import so catalogue-backed providers refetch.
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final catalogueVersionProvider = StateProvider<int>((ref) => 0);
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/// Bumped after every sale or sync so order-backed providers refetch.
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final orderVersionProvider = StateProvider<int>((ref) => 0);
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/// Whether products exist on this terminal. Billing is gated on it.
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final catalogueReadyProvider = Provider<bool>((ref) {
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ref.watch(catalogueVersionProvider);
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return ref.watch(syncRepositoryProvider).hasCatalogue;
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});
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final lastImportAtProvider = Provider<DateTime?>((ref) {
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ref.watch(catalogueVersionProvider);
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return ref.watch(syncRepositoryProvider).lastImportAt;
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});
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// ------------------------------------------------------- Morning: import
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sealed class ImportState {
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const ImportState();
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}
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class ImportIdle extends ImportState {
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const ImportIdle();
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}
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class ImportRunning extends ImportState {
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const ImportRunning(this.progress, this.stage);
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final double progress;
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final String stage;
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}
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class ImportDone extends ImportState {
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const ImportDone(this.event);
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final SyncEvent event;
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}
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class ImportFailed extends ImportState {
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const ImportFailed(this.message);
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final String message;
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}
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class CatalogueImportController extends StateNotifier<ImportState> {
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CatalogueImportController(this._ref) : super(const ImportIdle());
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final Ref _ref;
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Future<bool> run() async {
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if (state is ImportRunning) return false;
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state = const ImportRunning(0, 'Starting…');
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final event = await _ref.read(syncRepositoryProvider).importCatalogue(
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onProgress: (progress, stage) {
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if (mounted) state = ImportRunning(progress, stage);
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},
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);
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if (event.status == SyncStatus.synced) {
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_ref.read(catalogueVersionProvider.notifier).state++;
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_ref.invalidate(allProductsProvider);
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_ref.invalidate(visibleProductsProvider);
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_ref.invalidate(categoryCountsProvider);
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_ref.invalidate(lowStockProductsProvider);
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state = ImportDone(event);
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return true;
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}
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state = ImportFailed(event.error ?? 'Import failed.');
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return false;
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}
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/// Drops a stale success or failure banner.
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void reset() => state = const ImportIdle();
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}
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final catalogueImportProvider =
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StateNotifierProvider<CatalogueImportController, ImportState>(
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(ref) => CatalogueImportController(ref),
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);
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// ---------------------------------------------------- Business hours: read
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/// Bills still held on this terminal at sync_status = 0.
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final unsyncedCountProvider = FutureProvider<int>((ref) {
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ref.watch(orderVersionProvider);
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return ref.watch(syncRepositoryProvider).unsyncedCount();
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});
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/// Everything this terminal traded today, across every operator.
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final todayReportProvider = FutureProvider<ShiftReport>((ref) {
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ref.watch(orderVersionProvider);
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final session = ref.watch(cashierSessionProvider);
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final user = ref.watch(currentUserProvider);
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return ref.watch(syncRepositoryProvider).todayReport(
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terminalId: session.terminalId,
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cashierName: user?.name ?? session.name,
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);
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});
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/// Only the bills the signed-in operator rang.
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///
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/// This is the figure a cashier counts their drawer against at the end of a
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/// shift, so it must not include anyone else's sales.
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final myShiftReportProvider = FutureProvider<ShiftReport>((ref) {
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ref.watch(orderVersionProvider);
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final session = ref.watch(cashierSessionProvider);
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final user = ref.watch(currentUserProvider);
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return ref.watch(syncRepositoryProvider).todayReport(
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terminalId: session.terminalId,
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cashierName: user?.name ?? session.name,
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scopeToCashier: true,
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);
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});
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/// Per-order sync state for the events log.
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final orderSyncRowsProvider = FutureProvider<List<OrderSyncRow>>((ref) {
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ref.watch(orderVersionProvider);
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return ref.watch(syncRepositoryProvider).orderSyncRows();
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});
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final syncEventsProvider = Provider<List<SyncEvent>>((ref) {
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ref.watch(orderVersionProvider);
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ref.watch(catalogueVersionProvider);
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return ref.watch(syncRepositoryProvider).events;
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});
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// ------------------------------------------------------ End of day: upload
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sealed class OrderSyncState {
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const OrderSyncState();
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}
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class SyncIdle extends OrderSyncState {
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const SyncIdle();
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}
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class SyncRunning extends OrderSyncState {
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const SyncRunning(this.progress, this.stage);
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final double progress;
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final String stage;
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}
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class SyncFinished extends OrderSyncState {
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const SyncFinished(this.outcome);
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final SyncOutcome outcome;
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}
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class OrderSyncController extends StateNotifier<OrderSyncState> {
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OrderSyncController(this._ref) : super(const SyncIdle());
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final Ref _ref;
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bool get isRunning => state is SyncRunning;
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/// Uploads every bill at sync_status = 0 and flips the accepted ones to 1.
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///
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/// Goes through the engine rather than straight to the repository, so a
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/// cashier pressing sync while a background drain is already mid-flight
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/// joins it instead of starting a second pass over the same rows. It also
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/// clears a halt: pressing the button is how you retry after the back office
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/// has been fixed.
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Future<SyncOutcome> run() async {
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if (isRunning) {
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return const SyncOutcome(attempted: 0, uploaded: 0);
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}
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state = const SyncRunning(0, 'Starting…');
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final outcome = await _ref.read(syncEngineProvider).syncNow(
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onProgress: (progress, stage) {
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if (mounted) state = SyncRunning(progress, stage);
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},
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);
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_ref.read(orderVersionProvider.notifier).state++;
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if (mounted) state = SyncFinished(outcome);
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return outcome;
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}
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void reset() => state = const SyncIdle();
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}
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final orderSyncProvider =
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StateNotifierProvider<OrderSyncController, OrderSyncState>(
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(ref) => OrderSyncController(ref),
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);
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// ------------------------------------------------------- Background drain
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/// Brings the queue-and-drain machinery up, once, when the shell mounts.
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///
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/// Deliberately not gated on sign-in: a terminal that boots holding yesterday's
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/// bills should be emptying its queue before anyone reaches the till.
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///
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/// Overridden to a no-op in widget tests, which have no network stack and
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/// cannot drive real disk I/O on a fake clock.
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final syncBootstrapProvider = FutureProvider<void>((ref) async {
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await ref.read(connectivityServiceProvider).start();
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final engine = ref.read(syncEngineProvider);
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// A background drain moves bills out of the pending set, so the tallies and
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// shift totals on screen are stale the moment one finishes.
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var wasSyncing = false;
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final subscription = engine.states.listen((state) {
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if (wasSyncing && !state.isSyncing) {
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ref.read(orderVersionProvider.notifier).state++;
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}
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wasSyncing = state.isSyncing;
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});
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ref.onDispose(subscription.cancel);
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await engine.start();
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// Fleet presence only exists on a transport that can carry it.
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final transport = ref.read(orderTransportProvider);
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if (transport is MqttOrderTransport) {
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final reporter = PresenceReporter(
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transport: transport,
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terminal: ref.read(terminalIdentityProvider),
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config: ref.read(syncConfigProvider),
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engine: engine,
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appVersion: AppConstants.appVersion,
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catalogueRevision: () async =>
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ref.read(syncRepositoryProvider).catalogueRevision,
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);
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ref.onDispose(reporter.dispose);
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await reporter.start();
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}
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});
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