Files
OpenTracks/src/main/java/de/dennisguse/opentracks/sensors/BluetoothConnectionManager.java
T
2022-01-15 22:24:59 +01:00

278 lines
11 KiB
Java

/*
* Copyright (C) 2010 Google Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not
* use this file except in compliance with the License. You may obtain a copy of
* the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
* License for the specific language governing permissions and limitations under
* the License.
*/
package de.dennisguse.opentracks.sensors;
import android.bluetooth.BluetoothDevice;
import android.bluetooth.BluetoothGatt;
import android.bluetooth.BluetoothGattCallback;
import android.bluetooth.BluetoothGattCharacteristic;
import android.bluetooth.BluetoothGattDescriptor;
import android.bluetooth.BluetoothGattService;
import android.bluetooth.BluetoothProfile;
import android.content.Context;
import android.util.Log;
import androidx.annotation.NonNull;
import java.util.UUID;
import de.dennisguse.opentracks.sensors.sensorData.SensorData;
import de.dennisguse.opentracks.sensors.sensorData.SensorDataCycling;
import de.dennisguse.opentracks.sensors.sensorData.SensorDataCyclingPower;
import de.dennisguse.opentracks.sensors.sensorData.SensorDataHeartRate;
import de.dennisguse.opentracks.sensors.sensorData.SensorDataRunning;
/**
* Manages connection to a Bluetooth LE sensor and subscribes for onChange-notifications.
* Also parses the transferred data into {@link SensorDataObserver}.
*/
public abstract class BluetoothConnectionManager<DataType> {
private static final String TAG = BluetoothConnectionManager.class.getSimpleName();
private final SensorDataObserver observer;
private final UUID serviceUUUID;
private final UUID measurementUUID;
private BluetoothGatt bluetoothGatt;
private final BluetoothGattCallback connectCallback = new BluetoothGattCallback() {
@Override
public void onConnectionStateChange(BluetoothGatt gatt, int status, int newState) {
switch (newState) {
case BluetoothProfile.STATE_CONNECTING:
Log.d(TAG, "Connecting to sensor: " + gatt.getDevice());
break;
case BluetoothProfile.STATE_CONNECTED:
Log.d(TAG, "Connected to sensor: " + gatt.getDevice());
gatt.discoverServices();
break;
case BluetoothProfile.STATE_DISCONNECTING:
Log.d(TAG, "Disconnecting from sensor: " + gatt.getDevice());
break;
case BluetoothProfile.STATE_DISCONNECTED:
Log.d(TAG, "Disconnected from sensor: " + gatt.getDevice());
clearData();
break;
}
}
@Override
public void onServicesDiscovered(@NonNull BluetoothGatt gatt, int status) {
BluetoothGattService service = gatt.getService(serviceUUUID);
if (service == null) {
Log.e(TAG, "Could not get service for address=" + gatt.getDevice().getAddress() + " serviceUUID=" + serviceUUUID);
return;
}
BluetoothGattCharacteristic characteristic = service.getCharacteristic(measurementUUID);
if (characteristic == null) {
Log.e(TAG, "Could not get BluetoothCharacteristic for address=" + gatt.getDevice().getAddress() + " serviceUUID=" + serviceUUUID + " characteristicUUID=" + measurementUUID);
return;
}
gatt.setCharacteristicNotification(characteristic, true);
// Register for updates.
BluetoothGattDescriptor descriptor = characteristic.getDescriptor(BluetoothUtils.CLIENT_CHARACTERISTIC_CONFIG_UUID);
if (descriptor == null) {
Log.e(TAG, "CLIENT_CHARACTERISTIC_CONFIG_UUID characteristic not available; cannot request notifications for changed data.");
return;
}
descriptor.setValue(BluetoothGattDescriptor.ENABLE_NOTIFICATION_VALUE);
gatt.writeDescriptor(descriptor);
}
@Override
public void onCharacteristicChanged(BluetoothGatt gatt, @NonNull BluetoothGattCharacteristic characteristic) {
Log.d(TAG, "Received data from " + gatt.getDevice().getAddress());
SensorData<DataType> sensorData = parsePayload(gatt.getDevice().getName(), gatt.getDevice().getAddress(), characteristic);
if (sensorData != null) {
Log.d(TAG, "Decoded data from " + gatt.getDevice().getAddress() + ": " + sensorData);
observer.onChanged(sensorData);
}
}
};
BluetoothConnectionManager(UUID serviceUUUID, UUID measurementUUID, SensorDataObserver observer) {
this.serviceUUUID = serviceUUUID;
this.measurementUUID = measurementUUID;
this.observer = observer;
}
synchronized void connect(Context context, @NonNull BluetoothDevice device) {
if (bluetoothGatt != null) {
Log.w(TAG, "Already connected; ignoring.");
}
Log.d(TAG, "Connecting to: " + device);
bluetoothGatt = device.connectGatt(context, true, connectCallback);
SensorData<?> sensorData = createEmptySensorData(bluetoothGatt.getDevice().getAddress());
observer.onChanged(sensorData);
}
private synchronized void clearData() {
observer.onDisconnecting(createEmptySensorData(bluetoothGatt.getDevice().getAddress()));
}
synchronized void disconnect() {
if (bluetoothGatt == null) {
Log.w(TAG, "Cannot disconnect if not connected.");
return;
}
bluetoothGatt.close();
clearData();
bluetoothGatt = null;
}
synchronized boolean isSameBluetoothDevice(String address) {
if (bluetoothGatt == null) {
return false;
}
return address.equals(bluetoothGatt.getDevice().getAddress());
}
protected abstract SensorData<DataType> createEmptySensorData(String address);
/**
* @return null if data could not be parsed.
*/
protected abstract SensorData<DataType> parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic);
public static class HeartRate extends BluetoothConnectionManager<Float> {
HeartRate(@NonNull SensorDataObserver observer) {
super(BluetoothUtils.HEART_RATE_SERVICE_UUID, BluetoothUtils.HEART_RATE_MEASUREMENT_CHAR_UUID, observer);
}
@Override
protected SensorDataHeartRate createEmptySensorData(String address) {
return new SensorDataHeartRate(address);
}
@Override
protected SensorDataHeartRate parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic) {
Integer heartRate = BluetoothUtils.parseHeartRate(characteristic);
return heartRate != null ? new SensorDataHeartRate(address, sensorName, heartRate) : null;
}
}
public static class CyclingCadence extends BluetoothConnectionManager<Float> {
CyclingCadence(SensorDataObserver observer) {
super(BluetoothUtils.CYCLING_SPEED_CADENCE_SERVICE_UUID, BluetoothUtils.CYCLING_SPEED_CADENCE_MEASUREMENT_CHAR_UUID, observer);
}
@Override
protected SensorDataCycling.Cadence createEmptySensorData(String address) {
return new SensorDataCycling.Cadence(address);
}
@Override
protected SensorDataCycling.Cadence parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic) {
SensorDataCycling.CadenceAndSpeed cadenceAndSpeed = BluetoothUtils.parseCyclingCrankAndWheel(address, sensorName, characteristic);
if (cadenceAndSpeed == null) {
return null;
}
if (cadenceAndSpeed.getCadence() != null) {
return cadenceAndSpeed.getCadence();
}
return null;
}
}
public static class CyclingDistanceSpeed extends BluetoothConnectionManager<SensorDataCycling.DistanceSpeed.Data> {
CyclingDistanceSpeed(SensorDataObserver observer) {
super(BluetoothUtils.CYCLING_SPEED_CADENCE_SERVICE_UUID, BluetoothUtils.CYCLING_SPEED_CADENCE_MEASUREMENT_CHAR_UUID, observer);
}
@Override
protected SensorDataCycling.DistanceSpeed createEmptySensorData(String address) {
return new SensorDataCycling.DistanceSpeed(address);
}
@Override
protected SensorDataCycling.DistanceSpeed parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic) {
SensorDataCycling.CadenceAndSpeed cadenceAndSpeed = BluetoothUtils.parseCyclingCrankAndWheel(address, sensorName, characteristic);
if (cadenceAndSpeed == null) {
return null;
}
if (cadenceAndSpeed.getDistanceSpeed() != null) {
return cadenceAndSpeed.getDistanceSpeed();
}
return null;
}
}
public static class CyclingPower extends BluetoothConnectionManager<Float> {
CyclingPower(@NonNull SensorDataObserver observer) {
super(BluetoothUtils.CYCLING_POWER_UUID, BluetoothUtils.CYCLING_POWER_MEASUREMENT_CHAR_UUID, observer);
}
@Override
protected SensorDataCyclingPower createEmptySensorData(String address) {
return new SensorDataCyclingPower(address);
}
@Override
protected SensorDataCyclingPower parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic) {
Integer cyclingPower = BluetoothUtils.parseCyclingPower(characteristic);
return cyclingPower != null ? new SensorDataCyclingPower(address, sensorName, cyclingPower) : null;
}
}
public static class RunningSpeedAndCadence extends BluetoothConnectionManager<SensorDataRunning.Data> {
RunningSpeedAndCadence(@NonNull SensorDataObserver observer) {
super(BluetoothUtils.RUNNING_RUNNING_SPEED_CADENCE_UUID, BluetoothUtils.RUNNING_RUNNING_SPEED_CADENCE_CHAR_UUID, observer);
}
@Override
protected SensorDataRunning createEmptySensorData(String address) {
return new SensorDataRunning(address);
}
@Override
protected SensorDataRunning parsePayload(String sensorName, String address, BluetoothGattCharacteristic characteristic) {
return BluetoothUtils.parseRunningSpeedAndCadence(address, sensorName, characteristic);
}
}
interface SensorDataObserver {
void onChanged(SensorData<?> sensorData);
void onDisconnecting(SensorData<?> sensorData);
}
}