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10 Commits

16 changed files with 1790 additions and 58 deletions
@@ -52,8 +52,49 @@ class PhoenixSensorRepository implements SensorRepository {
Future<Sensor> unplaceSensor(int id) async =>
Sensor.fromJson(await client.unplaceSensor(id));
@override
Future<String?> getVersion(int id) => client.getVersion(id);
@override
Stream<Map<String, dynamic>> sensorEvents() => realtime
.channelMessages('sensors')
.map((m) => {'event': m.event, ...m.payload});
@override
Future<int> beginCalibration(int id) async {
final json = await client.beginCalibration(id);
return json['samples_needed'] as int;
}
@override
Future<void> startStage(int id, double distance) =>
client.startStage(id, distance);
@override
Future<({double rssiRef, double pathLossExp})> finishCalibration(
int id) async {
final json = await client.finishCalibration(id);
return (
rssiRef: (json['rssi_ref'] as num).toDouble(),
pathLossExp: (json['path_loss_exp'] as num).toDouble(),
);
}
@override
Future<int> setCalibrationTag(int id, String tagId) async {
final json = await client.setCalibrationTag(id, tagId);
return json['samples_needed'] as int;
}
@override
Future<void> cancelCalibration(int id) => client.cancelCalibration(id);
@override
Stream<({String event, Map<String, dynamic> payload})> calibrationEvents(
String sensorDeviceId) =>
realtime.channelMessages('calibration:$sensorDeviceId');
@override
void leaveCalibrationChannel(String sensorDeviceId) =>
realtime.leaveChannel('calibration:$sensorDeviceId');
}
@@ -38,19 +38,42 @@ class PhoenixTagRepository implements TagRepository {
Future<void> deleteTag(int id) => tagClient.deleteTag(id);
@override
Stream<List<TagPosition>> watchPositions() =>
realtime.channel('tags').map((payload) {
final list = payload['positions'] as List<dynamic>? ?? [];
return list.map((j) {
final m = j as Map<String, dynamic>;
return TagPosition(
tagId: m['tag_id'] as String,
name: m['name'] as String,
color: m['color'] as String,
roomId: m['room_id'] as int?,
);
}).toList();
});
Stream<List<TagPosition>> watchPositions() async* {
var tagMap = await _fetchTagMap();
await for (final occupancy in watchRoomOccupancy()) {
// Re-fetch on every occupancy change so name/color edits and new tags
// are reflected without restarting the stream.
tagMap = await _fetchTagMap();
final positions = <TagPosition>[];
for (final entry in occupancy.entries) {
for (final tagId in entry.value) {
final tag = tagMap[tagId];
positions.add(TagPosition(
tagId: tagId,
name: tag?.name ?? tagId,
color: tag?.color ?? _colorForTagId(tagId),
roomId: entry.key,
));
}
}
yield positions;
}
}
Future<Map<String, Tag>> _fetchTagMap() async {
final raw = await tagClient.getTags();
return {
for (final j in raw.cast<Map<String, dynamic>>())
j['tag_id'] as String: Tag.fromJson(j),
};
}
static String _colorForTagId(String tagId) {
final hash = tagId.codeUnits.fold(0, (h, c) => (h * 31 + c) & 0xFFFFFF);
return '#${hash.toRadixString(16).padLeft(6, '0')}';
}
@override
Stream<ParticleSnapshot> watchParticleCloud(String tagId) =>
@@ -11,7 +11,38 @@ abstract class SensorRepository {
{required int roomId, required double x, required double y});
Future<Sensor> unplaceSensor(int id);
Future<String?> getVersion(int id);
/// Stream of raw SensorsChannel messages. Each map contains an `event` key
/// (`sensor_announced` or `sensor_enrollment_timeout`) plus the payload.
Stream<Map<String, dynamic>> sensorEvents();
// ---------------------------------------------------------------------------
// Calibration
// ---------------------------------------------------------------------------
/// Enters calibration mode on the sensor. Returns the number of samples the
/// server will collect per stage.
Future<int> beginCalibration(int id);
/// Starts a collection stage at [distance] metres.
Future<void> startStage(int id, double distance);
/// Runs least-squares regression over all completed stages and persists the
/// result. Returns the fitted (rssiRef, pathLossExp) pair.
Future<({double rssiRef, double pathLossExp})> finishCalibration(int id);
/// Commits a specific tag for calibration stages. Returns samples_needed.
Future<int> setCalibrationTag(int id, String tagId);
/// Aborts calibration and discards all accumulated stage data.
Future<void> cancelCalibration(int id);
/// Real-time events from the server's CalibrationChannel.
/// Topic: `calibration:{sensorDeviceId}` (the string BLE device ID).
Stream<({String event, Map<String, dynamic> payload})> calibrationEvents(
String sensorDeviceId);
/// Leaves the calibration Phoenix channel for [sensorDeviceId].
void leaveCalibrationChannel(String sensorDeviceId);
}
@@ -78,6 +78,12 @@ class RealtimeDataClient {
.map((msg) => (event: msg.event.value, payload: msg.payload ?? const {}));
}
/// Leaves [topic] and removes it from the channel cache.
void leaveChannel(String topic) {
final ch = _channels.remove(topic);
ch?.leave();
}
/// Pushes [event] on [topic] and waits for the server reply.
/// The channel must have been joined first via [channel].
Future<Map<String, dynamic>> push(
+39 -12
View File
@@ -13,30 +13,57 @@ class SensorClient extends LocaliserdClient {
await get('/api/sensors/$id') as Map<String, dynamic>;
Future<Map<String, dynamic>> updateSensor(
int id, Map<String, dynamic> params) async =>
await put('/api/sensors/$id', params) as Map<String, dynamic>;
int id,
Map<String, dynamic> params,
) async => await put('/api/sensors/$id', params) as Map<String, dynamic>;
Future<void> deleteSensor(int id) => delete('/api/sensors/$id');
Future<Map<String, dynamic>> placeSensor(
int id, Map<String, dynamic> params) async =>
int id,
Map<String, dynamic> params,
) async =>
await put('/api/sensors/$id/place', params) as Map<String, dynamic>;
Future<Map<String, dynamic>> unplaceSensor(int id) async =>
await deleteBody('/api/sensors/$id/place') as Map<String, dynamic>;
Future<Map<String, dynamic>> createSensor(String sensorId,
{String? name}) async =>
Future<Map<String, dynamic>> createSensor(
String sensorId, {
String? name,
}) async =>
await post('/api/sensors', {
'sensor_id': sensorId,
if (name != null) 'name': name,
}) as Map<String, dynamic>;
})
as Map<String, dynamic>;
Future<Map<String, dynamic>> startCalibration(
int id, double referenceDistance) async =>
await post('/api/sensors/$id/calibration/start',
{'reference_distance': referenceDistance}) as Map<String, dynamic>;
Future<Map<String, dynamic>> beginCalibration(int id) async =>
await post('/api/sensors/$id/calibration/begin') as Map<String, dynamic>;
Future<Map<String, dynamic>> stopCalibration(int id) async =>
await post('/api/sensors/$id/calibration/stop') as Map<String, dynamic>;
Future<Map<String, dynamic>> startStage(int id, double distance) async =>
await post('/api/sensors/$id/calibration/stage', {
'distance': distance,
})
as Map<String, dynamic>;
Future<Map<String, dynamic>> finishCalibration(int id) async =>
await post(
'/api/sensors/$id/calibration/finish',
) as Map<String, dynamic>;
Future<Map<String, dynamic>> setCalibrationTag(int id, String tagId) async =>
await post('/api/sensors/$id/calibration/tag', {
'tag_id': tagId,
})
as Map<String, dynamic>;
Future<void> cancelCalibration(int id) =>
delete('/api/sensors/$id/calibration');
Future<String> getVersion(int id) async {
final response =
(await get('/api/sensors/$id/version') as Map<String, dynamic>);
return response['version']!;
}
}
+86
View File
@@ -0,0 +1,86 @@
enum CalibrationPhase { idle, selectingTag, ready, collecting, done, error }
const calibrationDistances = [0.5, 1.0, 2.0, 3.0];
class CalibrationState {
const CalibrationState({
this.phase = CalibrationPhase.idle,
this.samplesNeeded = 0,
this.samplesCollected = 0,
this.selectedDistance,
this.completedDistances = const {},
this.waveform = const [],
this.latestRssi,
this.avgRssi,
this.resultRssiRef,
this.resultPathLossExp,
this.tagRssiReadings = const {},
this.selectedTagId,
this.error,
});
final CalibrationPhase phase;
final int samplesNeeded;
final int samplesCollected;
final double? selectedDistance;
final Set<double> completedDistances;
/// Circular buffer of recent RSSI readings for the waveform, max 30.
final List<double> waveform;
final double? latestRssi;
final double? avgRssi;
final double? resultRssiRef;
final double? resultPathLossExp;
/// Latest scan RSSI per tag device ID, updated during selectingTag phase.
final Map<String, double> tagRssiReadings;
/// The tag device ID committed for this calibration session.
final String? selectedTagId;
final String? error;
bool get canFinish =>
completedDistances.length >= 2 && phase != CalibrationPhase.collecting;
double get progress =>
samplesNeeded == 0 ? 0 : samplesCollected / samplesNeeded;
CalibrationState copyWith({
CalibrationPhase? phase,
int? samplesNeeded,
int? samplesCollected,
double? selectedDistance,
Set<double>? completedDistances,
List<double>? waveform,
double? latestRssi,
double? avgRssi,
double? resultRssiRef,
double? resultPathLossExp,
Map<String, double>? tagRssiReadings,
String? selectedTagId,
String? error,
bool clearSelectedDistance = false,
bool clearLatestRssi = false,
bool clearAvgRssi = false,
bool clearTagRssiReadings = false,
bool clearSelectedTagId = false,
bool clearError = false,
}) =>
CalibrationState(
phase: phase ?? this.phase,
samplesNeeded: samplesNeeded ?? this.samplesNeeded,
samplesCollected: samplesCollected ?? this.samplesCollected,
selectedDistance: clearSelectedDistance
? null
: selectedDistance ?? this.selectedDistance,
completedDistances: completedDistances ?? this.completedDistances,
waveform: waveform ?? this.waveform,
latestRssi: clearLatestRssi ? null : latestRssi ?? this.latestRssi,
avgRssi: clearAvgRssi ? null : avgRssi ?? this.avgRssi,
resultRssiRef: resultRssiRef ?? this.resultRssiRef,
resultPathLossExp: resultPathLossExp ?? this.resultPathLossExp,
tagRssiReadings: clearTagRssiReadings
? const {}
: tagRssiReadings ?? this.tagRssiReadings,
selectedTagId:
clearSelectedTagId ? null : selectedTagId ?? this.selectedTagId,
error: clearError ? null : error ?? this.error,
);
}
+5 -1
View File
@@ -7,6 +7,7 @@ class Sensor {
this.roomId,
this.x,
this.y,
this.version,
});
final int id;
@@ -16,6 +17,7 @@ class Sensor {
final int? roomId;
final double? x; // room relative
final double? y; // room relative
final String? version;
bool get isPlaced => roomId != null && x != null && y != null;
String get displayName => name ?? sensorId;
@@ -28,6 +30,7 @@ class Sensor {
roomId: json['room_id'] as int?,
x: (json['x'] as num?)?.toDouble(),
y: (json['y'] as num?)?.toDouble(),
version: json['version'] as String?,
);
Sensor copyWith({
@@ -35,7 +38,7 @@ class Sensor {
int? roomId,
double? x,
double? y,
double? rssiRef,
String? version,
}) =>
Sensor(
id: id,
@@ -45,5 +48,6 @@ class Sensor {
roomId: roomId ?? this.roomId,
x: x ?? this.x,
y: y ?? this.y,
version: version ?? this.version,
);
}
+4
View File
@@ -8,11 +8,13 @@ class Tag {
this.currentRoomId,
this.lastPosition,
this.lastSeen,
this.color,
});
final int id;
final String tagId; // BLE beacon advertised identifier
final String name;
final String? color;
final String? currentRoomId;
final Position? lastPosition;
final DateTime? lastSeen;
@@ -34,6 +36,7 @@ class Tag {
'current_room_id': currentRoomId,
'last_position': lastPosition?.toJson(),
'last_seen': lastSeen?.toIso8601String(),
'color': color,
};
factory Tag.fromJson(Map<String, dynamic> json) => Tag(
@@ -41,6 +44,7 @@ class Tag {
tagId: json['tag_id'] as String,
name: json['name'] as String,
currentRoomId: json['current_room_id'] as String?,
color: json['color'] as String?,
lastPosition: json['last_position'] == null
? null
: Position.fromJson(json['last_position'] as Map<String, dynamic>),
@@ -4,7 +4,9 @@ import 'package:go_router/go_router.dart';
import '../../data/sources/ble/ble_provisioner.dart';
import '../../data/sources/local/credential_store.dart';
import '../../domain/models/sensor.dart';
import '../../providers.dart';
import '../sensors/calibration_sheet.dart';
enum _Step { scan, configure, done }
@@ -30,6 +32,7 @@ class _BleProvisionSheetState extends ConsumerState<BleProvisionSheet> {
_Step _step = _Step.scan;
BleScanResult? _selected;
Sensor? _provisionedSensor;
bool _provisioning = false;
bool _mqttOverrideEnabled = false;
bool _usingNewWifiConnection = true;
@@ -102,7 +105,7 @@ class _BleProvisionSheetState extends ConsumerState<BleProvisionSheet> {
mqttHost: mqttHost,
mqttPort: mqttPort,
);
await ref
_provisionedSensor = await ref
.read(sensorRepositoryProvider)
.createSensor(_selected!.name, name: _selected!.name);
@@ -254,12 +257,26 @@ class _BleProvisionSheetState extends ConsumerState<BleProvisionSheet> {
),
_DoneStep(
onGoToFloorPlan: () {
final router = GoRouter.of(context);
Navigator.of(context).pop();
router.go('/floorplan');
if (_provisionedSensor != null) {
_placeOnFloorPlan(context, _provisionedSensor!);
}
},
onAddAnother: _reset,
onDone: () => Navigator.of(context).pop(),
onCalibrate: _provisionedSensor == null
? null
: () {
final sensor = _provisionedSensor!;
Navigator.of(
context,
rootNavigator: true,
).pop();
showCalibrationSheet(
context,
sensor.id,
sensor.sensorId,
);
},
),
]
.map(
@@ -276,6 +293,16 @@ class _BleProvisionSheetState extends ConsumerState<BleProvisionSheet> {
),
);
}
void _placeOnFloorPlan(BuildContext context, Sensor sensor) {
final router = GoRouter.of(context);
final fromSensors =
router.routeInformationProvider.value.uri.path == '/sensors';
ref.read(sensorPlacementProvider.notifier).state = sensor;
ref.read(sensorPlacementOriginSensorsProvider.notifier).state = fromSensors;
Navigator.of(context, rootNavigator: true).pop();
router.go('/floorplan');
}
}
class _ScanPage extends StatefulWidget {
@@ -491,9 +518,7 @@ class _ConfigurePageState extends State<_ConfigurePage> {
border: const OutlineInputBorder(),
suffixIcon: IconButton(
icon: Icon(
_obscurePassword
? Icons.visibility_off
: Icons.visibility,
_obscurePassword ? Icons.visibility_off : Icons.visibility,
),
onPressed: () =>
setState(() => _obscurePassword = !_obscurePassword),
@@ -595,14 +620,17 @@ class _DoneStep extends StatelessWidget {
required this.onGoToFloorPlan,
required this.onAddAnother,
required this.onDone,
this.onCalibrate,
});
final VoidCallback onGoToFloorPlan;
final VoidCallback onAddAnother;
final VoidCallback onDone;
final VoidCallback? onCalibrate;
@override
Widget build(BuildContext context) {
final theme = Theme.of(context);
return SingleChildScrollView(
padding: const EdgeInsets.symmetric(vertical: 16),
child: Column(
@@ -613,22 +641,36 @@ class _DoneStep extends StatelessWidget {
const SizedBox(height: 16),
Text(
'Sensor provisioned!',
style: Theme.of(context).textTheme.titleLarge,
style: theme.textTheme.titleLarge,
textAlign: TextAlign.center,
),
const SizedBox(height: 8),
Text(
'The sensor will appear in the list once it connects to the network. '
'Open the floor plan to place it.',
style: Theme.of(context).textTheme.bodyMedium,
style: theme.textTheme.bodyMedium,
textAlign: TextAlign.center,
),
const SizedBox(height: 32),
FilledButton.icon(
icon: const Icon(Icons.map_outlined),
icon: const Icon(Icons.gps_fixed),
label: const Text('Place on floor plan'),
onPressed: onGoToFloorPlan,
),
const SizedBox(height: 16),
OutlinedButton.icon(
icon: const Icon(Icons.tune),
label: const Text('Calibrate sensor'),
onPressed: onCalibrate,
),
const SizedBox(height: 8),
Text(
'For best accuracy, calibrate after mounting the sensor in its intended position.',
style: theme.textTheme.bodySmall?.copyWith(
color: theme.colorScheme.onSurfaceVariant,
),
textAlign: TextAlign.center,
),
const SizedBox(height: 12),
OutlinedButton.icon(
icon: const Icon(Icons.add),
@@ -520,7 +520,7 @@ class _TrackingCard extends StatelessWidget {
padding: const EdgeInsets.symmetric(horizontal: 12, vertical: 10),
child: Row(
children: [
const Icon(Icons.label_outline),
const Icon(Icons.label),
const SizedBox(width: 10),
Expanded(
child: Column(
@@ -3,7 +3,7 @@ import 'dart:convert';
import 'package:flutter/material.dart';
import 'package:webview_flutter/webview_flutter.dart';
import 'package:vibration/vibration.dart';
import 'package:flutter/services.dart';
import '../../../domain/models/floor.dart';
import '../../../domain/models/floor_plan_mode.dart';
@@ -77,8 +77,7 @@ class FloorPlanEditorState extends State<FloorPlanEditor> {
case 'sensorTapped':
final id = data['id'] as String;
widget.onSensorTapped(id);
Vibration.hasVibrator()
.then((t) { if (t) Vibration.vibrate(duration: 20); });
HapticFeedback.lightImpact();
case 'sensorMoved':
final id = data['id'] as String;
if (_repositioningSensorId == id) {
@@ -0,0 +1,212 @@
import 'dart:async';
import 'package:flutter/services.dart';
import 'package:flutter_riverpod/flutter_riverpod.dart';
import '../../data/repositories/sensor_repository.dart';
import '../../domain/models/calibration.dart';
const _waveformCapacity = 30;
class CalibrationNotifier extends StateNotifier<CalibrationState> {
CalibrationNotifier({
required this.sensorId,
required this.sensorDeviceId,
required this.repo,
}) : super(const CalibrationState());
final int sensorId;
final String sensorDeviceId;
final SensorRepository repo;
StreamSubscription<({String event, Map<String, dynamic> payload})>? _sub;
/// Joins the calibration Phoenix channel and calls the begin REST endpoint.
/// Channel subscription is set up first to guarantee no reading events are
/// dropped before the server acknowledges the stage start.
Future<void> beginCalibration() async {
_sub = repo
.calibrationEvents(sensorDeviceId)
.listen(_onEvent, onError: _onError);
try {
final samplesNeeded = await repo.beginCalibration(sensorId);
state = state.copyWith(
phase: CalibrationPhase.selectingTag,
samplesNeeded: samplesNeeded,
samplesCollected: 0,
selectedDistance: calibrationDistances.first,
completedDistances: {},
waveform: [],
clearLatestRssi: true,
clearTagRssiReadings: true,
clearSelectedTagId: true,
);
} catch (e) {
_sub?.cancel();
_sub = null;
state = state.copyWith(
phase: CalibrationPhase.error,
error: e.toString(),
);
}
}
void selectTag(String tagId) {
if (state.phase != CalibrationPhase.selectingTag) return;
state = state.copyWith(selectedTagId: tagId);
}
Future<void> commitTag() async {
final tagId = state.selectedTagId;
if (tagId == null || state.phase != CalibrationPhase.selectingTag) return;
try {
final samplesNeeded = await repo.setCalibrationTag(sensorId, tagId);
state = state.copyWith(
phase: CalibrationPhase.ready,
samplesNeeded: samplesNeeded,
);
} catch (e) {
state = state.copyWith(
phase: CalibrationPhase.error,
error: e.toString(),
);
}
}
void selectDistance(double distance) {
if (state.phase != CalibrationPhase.ready) return;
if (state.completedDistances.contains(distance)) return;
state = state.copyWith(selectedDistance: distance);
}
Future<void> startStage() async {
final distance = state.selectedDistance;
if (distance == null || state.phase != CalibrationPhase.ready) return;
state = state.copyWith(
phase: CalibrationPhase.collecting,
samplesCollected: 0,
waveform: [],
clearLatestRssi: true,
clearAvgRssi: true,
);
try {
await repo.startStage(sensorId, distance);
} catch (e) {
state = state.copyWith(
phase: CalibrationPhase.error,
error: e.toString(),
);
}
}
Future<void> finishCalibration() async {
try {
final result = await repo.finishCalibration(sensorId);
_sub?.cancel();
_sub = null;
repo.leaveCalibrationChannel(sensorDeviceId);
state = state.copyWith(
phase: CalibrationPhase.done,
resultRssiRef: result.rssiRef,
resultPathLossExp: result.pathLossExp,
);
} catch (e) {
state = state.copyWith(
phase: CalibrationPhase.error,
error: e.toString(),
);
}
}
Future<void> cancelCalibration() async {
_sub?.cancel();
_sub = null;
repo.leaveCalibrationChannel(sensorDeviceId);
try {
await repo.cancelCalibration(sensorId);
} catch (_) {
// Best-effort: ignore errors on cancel (sensor may already be idle).
}
state = const CalibrationState();
}
void _onEvent(({String event, Map<String, dynamic> payload}) msg) {
switch (msg.event) {
case 'scan_reading':
_handleScanReading(msg.payload);
case 'tag_set':
final tagId = msg.payload['tag_id'] as String;
state = state.copyWith(selectedTagId: tagId);
case 'reading':
_handleReading(msg.payload);
case 'stage_complete':
_handleStageComplete(msg.payload);
case 'cancelled':
state = const CalibrationState();
default:
break;
}
}
void _handleScanReading(Map<String, dynamic> payload) {
final tagId = payload['tag_id'] as String;
final rssi = (payload['rssi'] as num).toDouble();
state = state.copyWith(
tagRssiReadings: {...state.tagRssiReadings, tagId: rssi},
);
}
void _handleReading(Map<String, dynamic> payload) {
final rssi = (payload['rssi'] as num).toDouble();
final progress = payload['stage_progress'] as Map<String, dynamic>;
final current = progress['current'] as int;
final newWaveform = List<double>.from(state.waveform);
if (newWaveform.length >= _waveformCapacity) newWaveform.removeAt(0);
newWaveform.add(rssi);
final avg = newWaveform.reduce((a, b) => a + b) / newWaveform.length;
state = state.copyWith(
latestRssi: rssi,
samplesCollected: current,
waveform: newWaveform,
avgRssi: avg,
);
}
void _handleStageComplete(Map<String, dynamic> payload) {
final distance = (payload['distance'] as num).toDouble();
final meanRssi = (payload['mean_rssi'] as num).toDouble();
final completed = {...state.completedDistances, distance};
final nextDistance = calibrationDistances
.where((d) => !completed.contains(d))
.firstOrNull;
HapticFeedback.mediumImpact();
state = state.copyWith(
phase: CalibrationPhase.ready,
completedDistances: completed,
avgRssi: meanRssi,
selectedDistance: nextDistance,
samplesCollected: 0,
waveform: [],
);
}
void _onError(Object error) {
state = state.copyWith(
phase: CalibrationPhase.error,
error: error.toString(),
);
}
@override
void dispose() {
_sub?.cancel();
super.dispose();
}
}
File diff suppressed because it is too large Load Diff
@@ -4,6 +4,7 @@ import 'package:go_router/go_router.dart';
import '../../domain/models/sensor.dart';
import '../../providers.dart';
import 'calibration_sheet.dart';
void showSensorDetailSheet(BuildContext context, int sensorId) {
showModalBottomSheet<void>(
@@ -89,6 +90,7 @@ class _SensorDetailSheetState extends ConsumerState<SensorDetailSheet> {
Widget build(BuildContext context) {
final sensorAsync = ref.watch(sensorProvider(widget.sensorId));
final roomsAsync = ref.watch(roomsProvider);
final versionAsync = ref.watch(sensorVersionProvider(widget.sensorId));
return sensorAsync.when(
loading: () => const SizedBox(
@@ -110,9 +112,12 @@ class _SensorDetailSheetState extends ConsumerState<SensorDetailSheet> {
?.name,
);
final version = versionAsync.whenOrNull(data: (v) => v);
return _SheetBody(
sensor: sensor,
roomName: roomName,
version: version,
editing: _editing,
nameCtrl: _nameCtrl,
onEditToggle: () => setState(() {
@@ -121,6 +126,10 @@ class _SensorDetailSheetState extends ConsumerState<SensorDetailSheet> {
}),
onSaveName: () => _saveName(sensor),
onPlace: () => _placeOnFloorPlan(context, sensor),
onCalibrate: () {
Navigator.of(context, rootNavigator: true).pop();
showCalibrationSheet(context, sensor.id, sensor.sensorId);
},
onDelete: () => _delete(context, sensor),
);
},
@@ -132,21 +141,25 @@ class _SheetBody extends StatelessWidget {
const _SheetBody({
required this.sensor,
required this.roomName,
required this.version,
required this.editing,
required this.nameCtrl,
required this.onEditToggle,
required this.onSaveName,
required this.onPlace,
required this.onCalibrate,
required this.onDelete,
});
final Sensor sensor;
final String? roomName;
final String? version;
final bool editing;
final TextEditingController nameCtrl;
final VoidCallback onEditToggle;
final VoidCallback onSaveName;
final VoidCallback onPlace;
final VoidCallback onCalibrate;
final VoidCallback onDelete;
@override
@@ -210,6 +223,7 @@ class _SheetBody extends StatelessWidget {
? '(${sensor.x!.toStringAsFixed(2)}, ${sensor.y!.toStringAsFixed(2)})'
: 'Not placed',
),
_InfoRow(label: 'Firmware', value: version ?? ''),
const SizedBox(height: 24),
FilledButton.icon(
icon: Icon(Icons.my_location),
@@ -219,6 +233,12 @@ class _SheetBody extends StatelessWidget {
onPressed: onPlace,
),
const SizedBox(height: 12),
OutlinedButton.icon(
icon: const Icon(Icons.tune),
label: const Text('Calibrate'),
onPressed: onCalibrate,
),
const SizedBox(height: 8),
OutlinedButton.icon(
icon: const Icon(Icons.bluetooth),
label: const Text('Reprovision'),
+5 -11
View File
@@ -178,7 +178,7 @@ class _TagDetailSheetState extends ConsumerState<TagDetailSheet> {
value: _formatLastSeen(tag.lastSeen!),
),
const SizedBox(height: 24),
FilledButton.tonal(
OutlinedButton.icon(
onPressed: () {
final isTracking = trackedTag?.tagId == tag.tagId;
ref.read(trackedTagProvider.notifier).state = isTracking
@@ -189,22 +189,16 @@ class _TagDetailSheetState extends ConsumerState<TagDetailSheet> {
GoRouter.of(context).go('/floorplan');
}
},
child: Row(
mainAxisAlignment: MainAxisAlignment.center,
children: [
Icon(
icon: Icon(
trackedTag?.tagId == tag.tagId
? Icons.radar
: Icons.radar_outlined,
? Icons.blur_off
: Icons.blur_on,
),
const SizedBox(width: 8),
Text(
label: Text(
trackedTag?.tagId == tag.tagId
? 'Hide particle cloud'
: 'View particle cloud',
),
],
),
),
const SizedBox(height: 8),
TextButton(
+22
View File
@@ -2,6 +2,8 @@ import 'package:flutter_riverpod/flutter_riverpod.dart';
import 'domain/models/server_config.dart';
import 'domain/models/sensor.dart';
import 'domain/models/calibration.dart';
import 'features/sensors/calibration_notifier.dart';
import 'domain/models/floor.dart';
import 'domain/models/tag.dart';
import 'domain/models/particle.dart';
@@ -145,6 +147,11 @@ final sensorProvider =
return ref.watch(sensorRepositoryProvider).getSensor(id);
});
final sensorVersionProvider =
FutureProvider.autoDispose.family<String?, int>((ref, id) {
return ref.watch(sensorRepositoryProvider).getVersion(id);
});
// ---------------------------------------------------------------------------
// Tag data
// ---------------------------------------------------------------------------
@@ -203,3 +210,18 @@ final particleSnapshotProvider =
StreamProvider.autoDispose.family<ParticleSnapshot, String>((ref, tagId) {
return ref.watch(tagRepositoryProvider).watchParticleCloud(tagId);
});
// ---------------------------------------------------------------------------
// Calibration state - keyed by sensor DB id
// ---------------------------------------------------------------------------
/// Interactive calibration state machine for a specific sensor.
/// Auto-disposed when no widget is watching (e.g. after the sheet closes).
final calibrationProvider = StateNotifierProvider.autoDispose
.family<CalibrationNotifier, CalibrationState, ({int id, String deviceId})>(
(ref, sensor) => CalibrationNotifier(
sensorId: sensor.id,
sensorDeviceId: sensor.deviceId,
repo: ref.watch(sensorRepositoryProvider),
),
);