232 lines
12 KiB
C++
232 lines
12 KiB
C++
/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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*
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* Copyright 2013 - 2020, nymea GmbH
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* Contact: contact@nymea.io
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*
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* This file is part of nymea.
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* This project including source code and documentation is protected by
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* copyright law, and remains the property of nymea GmbH. All rights, including
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* reproduction, publication, editing and translation, are reserved. The use of
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* this project is subject to the terms of a license agreement to be concluded
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* with nymea GmbH in accordance with the terms of use of nymea GmbH, available
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* under https://nymea.io/license
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*
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* GNU Lesser General Public License Usage
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* Alternatively, this project may be redistributed and/or modified under the
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* terms of the GNU Lesser General Public License as published by the Free
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* Software Foundation; version 3. This project is distributed in the hope that
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* it will be useful, but WITHOUT ANY WARRANTY; without even the implied
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* warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this project. If not, see <https://www.gnu.org/licenses/>.
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*
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* For any further details and any questions please contact us under
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* contact@nymea.io or see our FAQ/Licensing Information on
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* https://nymea.io/license/faq
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*
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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#include "deviceplugintexasinstruments.h"
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#include "plugininfo.h"
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#include "sensortag.h"
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#include "hardware/bluetoothlowenergy/bluetoothlowenergymanager.h"
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#include "plugintimer.h"
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#include <QBluetoothDeviceInfo>
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DevicePluginTexasInstruments::DevicePluginTexasInstruments(QObject *parent) : DevicePlugin(parent)
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{
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}
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DevicePluginTexasInstruments::~DevicePluginTexasInstruments()
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{
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}
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void DevicePluginTexasInstruments::discoverDevices(DeviceDiscoveryInfo *info)
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{
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Q_ASSERT_X(info->deviceClassId() == sensorTagDeviceClassId, "DevicePluginTexasInstruments", "Unhandled DeviceClassId!");
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if (!hardwareManager()->bluetoothLowEnergyManager()->available() || !hardwareManager()->bluetoothLowEnergyManager()->enabled()) {
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return info->finish(Device::DeviceErrorHardwareNotAvailable, QT_TR_NOOP("Bluetooth is not available on this system."));
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}
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BluetoothDiscoveryReply *reply = hardwareManager()->bluetoothLowEnergyManager()->discoverDevices();
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connect(reply, &BluetoothDiscoveryReply::finished, reply, &BluetoothDiscoveryReply::deleteLater);
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connect(reply, &BluetoothDiscoveryReply::finished, info, [this, info, reply](){
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if (reply->error() != BluetoothDiscoveryReply::BluetoothDiscoveryReplyErrorNoError) {
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qCWarning(dcTexasInstruments()) << "Bluetooth discovery error:" << reply->error();
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info->finish(Device::DeviceErrorHardwareFailure, QT_TR_NOOP("An error happened during Bluetooth discovery."));
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return;
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}
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foreach (const QBluetoothDeviceInfo &deviceInfo, reply->discoveredDevices()) {
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if (deviceInfo.name().contains("SensorTag")) {
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DeviceDescriptor descriptor(sensorTagDeviceClassId, "Sensor Tag", deviceInfo.address().toString());
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Devices existingDevice = myDevices().filterByParam(sensorTagDeviceMacParamTypeId, deviceInfo.address().toString());
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if (!existingDevice.isEmpty()) {
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descriptor.setDeviceId(existingDevice.first()->id());
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}
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ParamList params;
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params.append(Param(sensorTagDeviceMacParamTypeId, deviceInfo.address().toString()));
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foreach (Device *existingDevice, myDevices()) {
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if (existingDevice->paramValue(sensorTagDeviceMacParamTypeId).toString() == deviceInfo.address().toString()) {
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descriptor.setDeviceId(existingDevice->id());
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break;
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}
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}
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descriptor.setParams(params);
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info->addDeviceDescriptor(descriptor);
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}
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}
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info->finish(Device::DeviceErrorNoError);
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});
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}
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void DevicePluginTexasInstruments::setupDevice(DeviceSetupInfo *info)
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{
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Device *device = info->device();
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qCDebug(dcTexasInstruments()) << "Setting up Multi Sensor" << device->name() << device->params();
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QBluetoothAddress address = QBluetoothAddress(device->paramValue(sensorTagDeviceMacParamTypeId).toString());
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QBluetoothDeviceInfo deviceInfo = QBluetoothDeviceInfo(address, device->name(), 0);
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BluetoothLowEnergyDevice *bluetoothDevice = hardwareManager()->bluetoothLowEnergyManager()->registerDevice(deviceInfo, QLowEnergyController::PublicAddress);
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SensorTag *sensorTag = new SensorTag(device, bluetoothDevice, this);
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m_sensorTags.insert(device, sensorTag);
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if (!m_reconnectTimer) {
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m_reconnectTimer = hardwareManager()->pluginTimerManager()->registerTimer(10);
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connect(m_reconnectTimer, &PluginTimer::timeout, this, [this](){
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foreach (SensorTag *sensorTag, m_sensorTags) {
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if (!sensorTag->bluetoothDevice()->connected()) {
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sensorTag->bluetoothDevice()->connectDevice();
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}
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}
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});
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}
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info->finish(Device::DeviceErrorNoError);
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}
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void DevicePluginTexasInstruments::postSetupDevice(Device *device)
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{
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// Try to connect right after setup
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SensorTag *sensorTag = m_sensorTags.value(device);
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// Configure sensor with state configurations
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sensorTag->setTemperatureSensorEnabled(device->stateValue(sensorTagTemperatureSensorEnabledStateTypeId).toBool());
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sensorTag->setHumiditySensorEnabled(device->stateValue(sensorTagHumiditySensorEnabledStateTypeId).toBool());
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sensorTag->setPressureSensorEnabled(device->stateValue(sensorTagPressureSensorEnabledStateTypeId).toBool());
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sensorTag->setOpticalSensorEnabled(device->stateValue(sensorTagOpticalSensorEnabledStateTypeId).toBool());
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sensorTag->setAccelerometerEnabled(device->stateValue(sensorTagAccelerometerEnabledStateTypeId).toBool());
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sensorTag->setGyroscopeEnabled(device->stateValue(sensorTagGyroscopeEnabledStateTypeId).toBool());
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sensorTag->setMagnetometerEnabled(device->stateValue(sensorTagMagnetometerEnabledStateTypeId).toBool());
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sensorTag->setMeasurementPeriod(device->stateValue(sensorTagMeasurementPeriodStateTypeId).toInt());
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sensorTag->setMeasurementPeriodMovement(device->stateValue(sensorTagMeasurementPeriodMovementStateTypeId).toInt());
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// Connect to the sensor
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sensorTag->bluetoothDevice()->connectDevice();
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}
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void DevicePluginTexasInstruments::deviceRemoved(Device *device)
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{
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if (!m_sensorTags.contains(device)) {
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return;
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}
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SensorTag *sensorTag = m_sensorTags.take(device);
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hardwareManager()->bluetoothLowEnergyManager()->unregisterDevice(sensorTag->bluetoothDevice());
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sensorTag->deleteLater();
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if (myDevices().isEmpty()) {
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hardwareManager()->pluginTimerManager()->unregisterTimer(m_reconnectTimer);
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m_reconnectTimer = nullptr;
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}
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}
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void DevicePluginTexasInstruments::executeAction(DeviceActionInfo *info)
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{
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Device *device = info->device();
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Action action = info->action();
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SensorTag *sensorTag = m_sensorTags.value(device);
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if (action.actionTypeId() == sensorTagBuzzerActionTypeId) {
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sensorTag->setBuzzerPower(action.param(sensorTagBuzzerActionBuzzerParamTypeId).value().toBool());
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagGreenLedActionTypeId) {
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sensorTag->setGreenLedPower(action.param(sensorTagGreenLedActionGreenLedParamTypeId).value().toBool());
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagRedLedActionTypeId) {
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sensorTag->setRedLedPower(action.param(sensorTagRedLedActionRedLedParamTypeId).value().toBool());
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagBuzzerImpulseActionTypeId) {
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sensorTag->buzzerImpulse();
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagTemperatureSensorEnabledActionTypeId) {
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bool enabled = action.param(sensorTagTemperatureSensorEnabledActionTemperatureSensorEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagTemperatureSensorEnabledStateTypeId, enabled);
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sensorTag->setTemperatureSensorEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagHumiditySensorEnabledActionTypeId) {
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bool enabled = action.param(sensorTagHumiditySensorEnabledActionHumiditySensorEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagHumiditySensorEnabledStateTypeId, enabled);
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sensorTag->setHumiditySensorEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagPressureSensorEnabledActionTypeId) {
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bool enabled = action.param(sensorTagPressureSensorEnabledActionPressureSensorEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagPressureSensorEnabledStateTypeId, enabled);
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sensorTag->setPressureSensorEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagOpticalSensorEnabledActionTypeId) {
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bool enabled = action.param(sensorTagOpticalSensorEnabledActionOpticalSensorEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagOpticalSensorEnabledStateTypeId, enabled);
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sensorTag->setOpticalSensorEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagAccelerometerEnabledActionTypeId) {
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bool enabled = action.param(sensorTagAccelerometerEnabledActionAccelerometerEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagAccelerometerEnabledStateTypeId, enabled);
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sensorTag->setAccelerometerEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagGyroscopeEnabledActionTypeId) {
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bool enabled = action.param(sensorTagGyroscopeEnabledActionGyroscopeEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagGyroscopeEnabledStateTypeId, enabled);
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sensorTag->setGyroscopeEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagMagnetometerEnabledActionTypeId) {
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bool enabled = action.param(sensorTagMagnetometerEnabledActionMagnetometerEnabledParamTypeId).value().toBool();
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device->setStateValue(sensorTagMagnetometerEnabledStateTypeId, enabled);
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sensorTag->setMagnetometerEnabled(enabled);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagMeasurementPeriodActionTypeId) {
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int period = action.param(sensorTagMeasurementPeriodActionMeasurementPeriodParamTypeId).value().toInt();
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device->setStateValue(sensorTagMeasurementPeriodStateTypeId, period);
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sensorTag->setMeasurementPeriod(period);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagMeasurementPeriodMovementActionTypeId) {
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int period = action.param(sensorTagMeasurementPeriodMovementActionMeasurementPeriodMovementParamTypeId).value().toInt();
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device->setStateValue(sensorTagMeasurementPeriodMovementStateTypeId, period);
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sensorTag->setMeasurementPeriodMovement(period);
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return info->finish(Device::DeviceErrorNoError);
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} else if (action.actionTypeId() == sensorTagMovementSensitivityActionTypeId) {
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int sensitivity = action.param(sensorTagMovementSensitivityActionMovementSensitivityParamTypeId).value().toInt();
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device->setStateValue(sensorTagMovementSensitivityStateTypeId, sensitivity);
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sensorTag->setMovementSensitivity(sensitivity);
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return info->finish(Device::DeviceErrorNoError);
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}
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Q_ASSERT_X(false, "TexasInstruments", "Unhandled action type: " + action.actionTypeId().toString().toUtf8());
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}
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