feat(alarmas): surface the three native scheduling failures in Dart
Completes the bridge the native side already exposed. AlarmScheduler and PluriWaveAlarmService record a pre-notice that could not be armed, a refused foreground-service start, and a per-alarm reschedule that failed after a reboot -- but nothing read them, so all three still ended at logcat. EstadoAlarmas now drains them at startup and turns each into a per-alarm exception, which the card already knows how to mark. An alarm that never reached the OS stops looking identical to one that did. The read is deliberately tolerant: a failure to read is logged and swallowed, never surfaced as an alarm error, so a diagnostics gap cannot masquerade as a scheduling problem.
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@@ -90,6 +90,7 @@ class EstadoAlarmas extends ChangeNotifier {
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);
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await _sincronizarTodas();
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await cargarDiagnostico();
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await cargarFallosNativos();
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_activarRefresco();
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} catch (e) {
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_error = 'No se pudieron cargar las alarmas: $e';
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@@ -228,10 +229,22 @@ class EstadoAlarmas extends ChangeNotifier {
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/// Clears a previously recorded scheduling failure once a later attempt
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/// for the same alarm succeeds (D5-style recovery, mirroring how [_error]
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/// itself already clears on a successful retry).
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/// itself already clears on a successful retry). Type-scoped: a
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/// successful `android.programar` call only proves the MAIN alarm
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/// registration (and, transitively, that any stale post-boot reschedule
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/// failure no longer applies) -- it says nothing about the pre-notice or
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/// foreground-service subsystems, so those are left untouched here.
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Future<void> _limpiarFalloProgramacion(String alarmaId) async {
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try {
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final config = await servicio.limpiarFalloProgramacion(alarmaId);
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var config = await servicio.limpiarFalloProgramacion(
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alarmaId,
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ExcepcionAlarma.tipoFalloProgramacion,
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);
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_aplicar(config);
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config = await servicio.limpiarFalloProgramacion(
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alarmaId,
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ExcepcionAlarma.tipoFalloReprogramacionArranque,
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);
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_aplicar(config);
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} catch (e) {
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debugPrint('[PluriWave][alarmas] limpiar fallo programacion ERROR $e');
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@@ -525,6 +538,39 @@ class EstadoAlarmas extends ChangeNotifier {
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notifyListeners();
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}
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/// Drains the failures the NATIVE side recorded on its own and turns each
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/// into a per-alarm exception, so the card can mark it.
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///
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/// These three paths used to log to logcat and stop there: a pre-notice
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/// that could not be armed, a refused foreground-service start when the
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/// alarm should have rung, and a per-alarm reschedule that failed after a
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/// reboot. None of them run inside a Dart call, so nothing on this side
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/// ever learned they happened — an alarm could sit switched on in the
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/// list having never reached the OS. Reading them at startup is what
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/// makes the reported "as if there were no alarm" visible.
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///
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/// Deliberately tolerant: a failed read is logged and swallowed, never
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/// surfaced as an alarm error, because a diagnostics gap must not look
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/// like a scheduling problem.
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Future<void> cargarFallosNativos() async {
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try {
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final fallos = await android.fallosNativosProgramacion();
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for (final fallo in fallos) {
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final alarmaId = fallo['alarmaId'] as String?;
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final tipo = fallo['tipo'] as String?;
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if (alarmaId == null || tipo == null) continue;
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await _registrarFalloProgramacion(alarmaId, tipo: tipo);
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}
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if (fallos.isNotEmpty) {
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debugPrint(
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'[PluriWave][alarmas] fallos nativos recogidos=${fallos.length}',
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);
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}
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} catch (e) {
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debugPrint('[PluriWave][alarmas] cargar fallos nativos ERROR $e');
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}
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}
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/// Records a snooze the native layer performed by itself (Decision 2.1).
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/// The native scheduler already re-registered setAlarmClock, so this only
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/// persists the canonical state — it MUST NOT call android.programar again.
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@@ -624,6 +670,60 @@ class EstadoAlarmas extends ChangeNotifier {
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debugPrint('[PluriWave][alarmas] sincronizar nativas ERROR $e');
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}
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await _importarSnoozesNativosActivos();
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await _importarFallosProgramacionNativos();
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}
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/// Cold-start sync (fix/alarmas-fallos-silenciosos, item 2): imports
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/// scheduling-reliability failures the NATIVE side recorded on its own --
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/// a pre-notice `SecurityException`, a refused foreground-service start,
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/// or a per-alarm reschedule failure after boot/unlock -- none of which
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/// ever go through a Dart method-channel call that could throw. Without
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/// this sync, these three failures stayed invisible forever (only
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/// logcat), even after this app-launch fix reads them.
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Future<void> _importarFallosProgramacionNativos() async {
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try {
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final fallos = await android.obtenerFallosProgramacionNativos();
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final reportadoPorAlarma = {
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for (final fallo in fallos) fallo.alarmaId: fallo,
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};
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// Reconcile stale copies: the native side clears its OWN record the
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// next time that specific subsystem succeeds (pre-notice/foreground-
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// service), so an alarm previously imported with one of those tipos
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// that is no longer reported here means it already recovered --
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// without this, the card would keep showing a problem that fixed
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// itself. `tipoFalloProgramacion`/`tipoFalloReprogramacionArranque`
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// are NOT reconciled here -- those already clear on the Dart side's
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// own successful `android.programar` calls.
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for (final alarma in _alarmas) {
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final actual = ultimaExcepcionPara(alarma.id);
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final esTipoReconciliable =
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actual != null &&
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(actual.tipo == ExcepcionAlarma.tipoFalloPreaviso ||
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actual.tipo == ExcepcionAlarma.tipoFalloServicioSonido);
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if (esTipoReconciliable && !reportadoPorAlarma.containsKey(alarma.id)) {
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final config = await servicio.limpiarFalloProgramacion(
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alarma.id,
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actual.tipo,
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);
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_aplicar(config);
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}
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}
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for (final fallo in fallos) {
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final config = await servicio.registrarFalloProgramacion(
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fallo.alarmaId,
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fallo.ocurridoEn,
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fallo.tipo,
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);
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_aplicar(config);
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}
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if (fallos.isNotEmpty) {
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debugPrint(
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'[PluriWave][alarmas] fallos nativos importados count=${fallos.length}',
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);
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}
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} catch (e) {
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debugPrint('[PluriWave][alarmas] importar fallos nativos ERROR $e');
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}
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}
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/// Cold-start half of Decision 2.1: imports snoozes the native scheduler
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