291 lines
9.9 KiB
Dart
291 lines
9.9 KiB
Dart
import '../../domain/entities/customer.dart';
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import '../../domain/entities/product.dart';
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import '../../domain/entities/sync_event.dart';
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import '../local/app_database.dart';
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import '../local/catalogue_dao.dart';
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import '../local/order_dao.dart';
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import '../local/promo_dao.dart';
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import '../local/staff_dao.dart';
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import '../local/sync_config_store.dart';
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import '../local/sync_log_dao.dart';
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import '../local/terminal_identity.dart';
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/// Terminal-side storage facade.
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///
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/// SQLite is the source of truth. The catalogue is additionally held in memory
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/// because barcode resolution happens on every scan and the product grid reads
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/// it constantly — but every write goes to disk first, so nothing depends on
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/// the process staying alive.
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class LocalStore {
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LocalStore._();
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static final LocalStore instance = LocalStore._();
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late CatalogueDao catalogue;
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late OrderDao orders;
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late SyncLogDao syncLog;
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late StaffDao staff;
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late PromoDao promos;
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late SyncConfigStore syncConfig;
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late TerminalIdentityStore identityStore;
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/// Who this till is. Minted on first run, then stable forever.
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late TerminalIdentity terminal;
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final Map<String, Product> _products = {};
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final Map<String, Customer> _customers = {};
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final List<SyncEvent> _syncEvents = [];
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DateTime? _lastImportAt;
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String? _catalogueRevision;
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int _unsyncedOrders = 0;
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int _unsyncedCustomers = 0;
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bool _ready = false;
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bool get isReady => _ready;
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/// Opens the database and loads the catalogue into memory.
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Future<void> init({String? databasePath, bool inMemory = false}) async {
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if (inMemory) {
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await AppDatabase.instance.openInMemory();
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} else {
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await AppDatabase.instance.open(overridePath: databasePath);
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}
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catalogue = CatalogueDao(AppDatabase.instance.db);
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orders = OrderDao(AppDatabase.instance.db);
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syncLog = SyncLogDao(AppDatabase.instance.db);
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staff = StaffDao(AppDatabase.instance.db);
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promos = PromoDao(AppDatabase.instance.db);
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syncConfig = SyncConfigStore(catalogue);
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identityStore = TerminalIdentityStore(catalogue);
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// A terminal with no staff cannot be signed into at all, so this runs
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// before anything else can ask who is on shift.
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await staff.seedIfEmpty();
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// Before anything can be written or published: a bill stamped with the
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// wrong terminal cannot be traced back to the till that rang it.
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terminal = await identityStore.load();
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await hydrate();
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_ready = true;
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}
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/// Re-reads cached state from disk. Called on start and after an import.
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Future<void> hydrate() async {
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_products
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..clear()
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..addEntries(
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(await catalogue.allProducts()).map((p) => MapEntry(p.id, p)),
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);
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_customers
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..clear()
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..addEntries(
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(await catalogue.allCustomers()).map((c) => MapEntry(c.id, c)),
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);
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final stamp = await catalogue.meta(MetaKeys.lastImportAt);
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_lastImportAt = stamp == null
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? null
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: DateTime.fromMillisecondsSinceEpoch(int.parse(stamp));
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_catalogueRevision = await catalogue.meta(MetaKeys.catalogueRevision);
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terminal = await identityStore.load();
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_unsyncedOrders = await orders.unsyncedCount();
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_unsyncedCustomers = await catalogue.unsyncedCustomerCount();
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_syncEvents
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..clear()
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..addAll(await syncLog.recent());
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}
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// ---------------------------------------------------------------- Sync log
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/// Newest first. Backed by the table, so it survives a restart.
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List<SyncEvent> get syncEvents => List.unmodifiable(_syncEvents);
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Future<void> appendSyncEvent(SyncEvent event) async {
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await syncLog.insert(event);
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await syncLog.trim();
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_syncEvents.insert(0, event);
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}
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/// Test helper: wipes every table and reloads.
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Future<void> reset({bool withCatalogue = false}) async {
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if (!_ready) await init(inMemory: true);
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await AppDatabase.instance.clear();
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// Staff and identity are cleared with everything else, and a terminal
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// without them cannot be signed into or stamp a bill. Re-minted here so a
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// reset leaves a usable till rather than a half-built one.
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await staff.seedIfEmpty();
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terminal = await identityStore.load();
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if (withCatalogue) {
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// Imported here rather than at the top of the file so the seed data is
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// only pulled in by tests and the simulated remote source.
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await catalogue.replaceCatalogue(
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products: _seedProducts(),
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customers: _seedCustomers(),
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);
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await catalogue.setMeta(
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MetaKeys.lastImportAt,
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'${DateTime.now().millisecondsSinceEpoch}',
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);
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await catalogue.setMeta(MetaKeys.catalogueRevision, 'seed');
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}
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await hydrate();
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}
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// -------------------------------------------------------------- Catalogue
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/// True once products exist on this terminal. Billing is gated on it.
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bool get hasCatalogue => _products.isNotEmpty;
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DateTime? get lastImportAt => _lastImportAt;
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String? get catalogueRevision => _catalogueRevision;
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int get unsyncedOrders => _unsyncedOrders;
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/// Drops the imported catalogue from disk and from the in-memory cache.
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///
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/// Called at sign-out so the next shift never bills against a copy left
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/// over from this one — [hasCatalogue] goes back to false, and the only way
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/// to sell again is a fresh pull from the back office.
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Future<void> clearCatalogue() async {
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await catalogue.clearCatalogue();
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_products.clear();
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_lastImportAt = null;
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_catalogueRevision = null;
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}
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Future<void> importCatalogue({
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required List<Product> products,
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required List<Customer> customers,
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required String revision,
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required DateTime at,
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bool isDelta = false,
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List<String> retiredProductIds = const [],
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}) async {
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if (isDelta) {
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// A change set must not withdraw what it does not mention. Applied as a
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// full snapshot, the first morning price change would empty the shelf.
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await catalogue.applyCatalogueDelta(
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products: products,
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customers: customers,
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retiredProductIds: retiredProductIds,
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);
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} else {
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await catalogue.replaceCatalogue(
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products: products,
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customers: customers,
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);
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}
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// The server's stock figure predates any sale this terminal has made but
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// not yet uploaded, so those units would reappear on the shelf. Replay them
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// before anyone can bill against the inflated count.
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//
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// Scoped to the products the pull actually overwrote. A full snapshot
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// rewrites every row, so the replay covers everything; a delta rewrites
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// only what it carried, and replaying the rest would subtract those units a
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// second time from a count that was never reset — quietly emptying a shelf
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// that is full.
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var committed = await orders.unsyncedStockCommitments();
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if (isDelta) {
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final touched = products.map((p) => p.id).toSet();
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committed = {
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for (final entry in committed.entries)
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if (touched.contains(entry.key)) entry.key: entry.value,
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};
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}
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if (committed.isNotEmpty) {
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await catalogue.decrementStock(committed);
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}
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await catalogue.setMeta(
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MetaKeys.lastImportAt,
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'${at.millisecondsSinceEpoch}',
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);
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await catalogue.setMeta(MetaKeys.catalogueRevision, revision);
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await hydrate();
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}
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// --------------------------------------------------------------- Products
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List<Product> get products => _products.values.toList(growable: false);
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Product? productById(String id) => _products[id];
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Product? productByBarcode(String barcode) {
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final needle = barcode.trim();
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for (final p in _products.values) {
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if (p.barcode == needle && p.isActive) return p;
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}
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return null;
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}
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/// Write-through: disk first, then the cache.
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Future<void> putProduct(Product p) async {
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await catalogue.upsertProduct(p);
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_products[p.id] = p;
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}
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Future<void> applyStockMovement(Map<String, double> quantities) async {
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await catalogue.decrementStock(quantities);
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cacheStockMovement(quantities);
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}
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/// Mirrors a stock decrement already written to disk into the memory cache.
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/// Used after a sale is committed as part of a larger transaction.
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void cacheStockMovement(Map<String, double> quantities) {
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quantities.forEach((id, qty) {
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final p = _products[id];
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if (p == null) return;
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_products[id] =
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p.copyWith(stock: (p.stock - qty).clamp(0, double.infinity));
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});
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}
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// -------------------------------------------------------------- Customers
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List<Customer> get customers => _customers.values.toList(growable: false);
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Customer? customerById(String id) => _customers[id];
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Future<void> putCustomer(Customer c) async {
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await catalogue.upsertCustomer(c);
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_customers[c.id] = c;
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await refreshUnsyncedCustomerCount();
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}
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/// Mirrors a customer already written to disk into the memory cache.
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void cacheCustomer(Customer c) => _customers[c.id] = c;
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/// Shoppers registered here and not yet uploaded.
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int get unsyncedCustomers => _unsyncedCustomers;
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Future<int> refreshUnsyncedCustomerCount() async {
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_unsyncedCustomers = await catalogue.unsyncedCustomerCount();
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return _unsyncedCustomers;
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}
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// ----------------------------------------------------------------- Orders
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/// Refreshes the cached unsynced tally after a write or a sync.
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Future<int> refreshUnsyncedCount() async {
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_unsyncedOrders = await orders.unsyncedCount();
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return _unsyncedOrders;
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}
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// ------------------------------------------------------------- Seed data
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// Kept behind these hooks so production code never reaches for them.
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static List<Product> Function() _seedProducts = () => const [];
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static List<Customer> Function() _seedCustomers = () => const [];
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/// Lets the simulated remote source and tests supply demo rows.
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static void registerSeed({
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required List<Product> Function() products,
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required List<Customer> Function() customers,
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}) {
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_seedProducts = products;
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_seedCustomers = customers;
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}
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}
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