forked from upstream-mirrors/OpenTracks
336 lines
10 KiB
Java
336 lines
10 KiB
Java
/*
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* Copyright 2010 Google Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may not
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* use this file except in compliance with the License. You may obtain a copy of
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* the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations under
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* the License.
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*/
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package com.google.android.apps.mytracks;
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import static com.google.android.apps.mytracks.Constants.TAG;
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import com.google.android.apps.mytracks.content.Sensor;
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import com.google.android.apps.mytracks.services.ITrackRecordingService;
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import com.google.android.apps.mytracks.services.TrackRecordingServiceConnection;
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import com.google.android.apps.mytracks.services.sensors.SensorManager;
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import com.google.android.apps.mytracks.services.sensors.SensorManagerFactory;
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import com.google.android.apps.mytracks.services.sensors.SensorUtils;
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import com.google.android.apps.mytracks.util.StringUtils;
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import com.google.android.maps.mytracks.R;
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import com.google.protobuf.InvalidProtocolBufferException;
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import android.app.Activity;
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import android.os.Bundle;
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import android.os.RemoteException;
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import android.util.Log;
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import android.widget.TextView;
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import java.util.Timer;
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import java.util.TimerTask;
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/**
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* An activity that displays information about sensors.
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*
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* @author Sandor Dornbush
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*/
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public class SensorStateActivity extends Activity {
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private static final long REFRESH_PERIOD_MS = 250;
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private final StatsUtilities utils;
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/**
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* This timer periodically invokes the refresh timer task.
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*/
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private Timer timer;
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private final Runnable stateUpdater = new Runnable() {
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public void run() {
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if (isVisible) // only update when UI is visible
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updateState();
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}
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};
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/**
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* Connection to the recording service.
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*/
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private TrackRecordingServiceConnection serviceConnection;
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/**
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* A task which will update the U/I.
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*/
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private class RefreshTask extends TimerTask {
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@Override
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public void run() {
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runOnUiThread(stateUpdater);
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}
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};
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/**
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* A temporary sensor manager, when none is available.
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*/
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private SensorManager tempSensorManager = null;
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/**
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* A state flag set to true when the activity is active/visible,
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* i.e. after resume, and before pause
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*
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* Used to avoid updating after the pause event, because sometimes an update
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* event occurs even after the timer is cancelled. In this case,
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* it could cause the {@link #tempSensorManager} to be recreated, after it
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* is destroyed at the pause event.
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*/
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private boolean isVisible = false;
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public SensorStateActivity() {
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utils = new StatsUtilities(this);
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Log.w(TAG, "SensorStateActivity()");
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}
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@Override
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protected void onCreate(Bundle savedInstanceState) {
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super.onCreate(savedInstanceState);
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Log.w(TAG, "SensorStateActivity.onCreate");
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setContentView(R.layout.sensor_state);
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serviceConnection = new TrackRecordingServiceConnection(this, stateUpdater);
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serviceConnection.bindIfRunning();
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updateState();
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}
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@Override
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protected void onResume() {
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super.onResume();
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isVisible = true;
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serviceConnection.bindIfRunning();
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timer = new Timer();
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timer.schedule(new RefreshTask(), REFRESH_PERIOD_MS, REFRESH_PERIOD_MS);
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}
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@Override
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protected void onPause() {
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isVisible = false;
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timer.cancel();
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timer.purge();
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timer = null;
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stopTempSensorManager();
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super.onPause();
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}
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@Override
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protected void onDestroy() {
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serviceConnection.unbind();
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super.onDestroy();
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}
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private void updateState() {
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Log.d(TAG, "Updating SensorStateActivity");
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ITrackRecordingService service = serviceConnection.getServiceIfBound();
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// Check if service is available, and recording.
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boolean isRecording = false;
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if (service != null) {
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try {
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isRecording = service.isRecording();
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} catch (RemoteException e) {
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Log.e(TAG, "Unable to determine if service is recording.", e);
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}
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}
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// If either service isn't available, or not recording.
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if (!isRecording) {
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updateFromTempSensorManager();
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} else {
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updateFromSysSensorManager();
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}
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}
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private void updateFromTempSensorManager() {
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// Use variables to hold the sensor state and data set.
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Sensor.SensorState currentState = null;
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Sensor.SensorDataSet currentDataSet = null;
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// If no temp sensor manager is present, create one, and start it.
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if (tempSensorManager == null) {
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tempSensorManager = SensorManagerFactory.getInstance().getSensorManager(this);
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}
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// If a temp sensor manager is available, use states from temp sensor
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// manager.
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if (tempSensorManager != null) {
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currentState = tempSensorManager.getSensorState();
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currentDataSet = tempSensorManager.getSensorDataSet();
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}
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// Update the sensor state, and sensor data, using the variables.
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updateSensorStateAndData(currentState, currentDataSet);
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}
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private void updateFromSysSensorManager() {
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// Use variables to hold the sensor state and data set.
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Sensor.SensorState currentState = null;
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Sensor.SensorDataSet currentDataSet = null;
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ITrackRecordingService service = serviceConnection.getServiceIfBound();
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// If a temp sensor manager is present, shut it down,
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// probably recording just started.
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stopTempSensorManager();
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// Get sensor details from the service.
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if (service == null) {
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Log.d(TAG, "Could not get track recording service.");
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} else {
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try {
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byte[] buff = service.getSensorData();
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if (buff != null) {
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currentDataSet = Sensor.SensorDataSet.parseFrom(buff);
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}
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} catch (RemoteException e) {
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Log.e(TAG, "Could not read sensor data.", e);
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} catch (InvalidProtocolBufferException e) {
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Log.e(TAG, "Could not read sensor data.", e);
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}
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try {
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currentState = Sensor.SensorState.valueOf(service.getSensorState());
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} catch (RemoteException e) {
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Log.e(TAG, "Could not read sensor state.", e);
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currentState = Sensor.SensorState.NONE;
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}
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}
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// Update the sensor state, and sensor data, using the variables.
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updateSensorStateAndData(currentState, currentDataSet);
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}
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/**
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* Stops the temporary sensor manager, if one exists.
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*/
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private void stopTempSensorManager() {
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if (tempSensorManager != null) {
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SensorManagerFactory.getInstance().releaseSensorManager(tempSensorManager);
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tempSensorManager = null;
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}
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}
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private void updateSensorStateAndData(Sensor.SensorState state, Sensor.SensorDataSet dataSet) {
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updateSensorState(state == null ? Sensor.SensorState.NONE : state);
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updateSensorData(dataSet);
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}
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private void updateSensorState(Sensor.SensorState state) {
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((TextView) findViewById(R.id.sensor_state)).setText(SensorUtils.getStateAsString(state, this));
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}
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private void updateSensorData(Sensor.SensorDataSet sds) {
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if (sds == null) {
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utils.setUnknown(R.id.sensor_state_last_sensor_time);
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utils.setUnknown(R.id.sensor_state_power);
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utils.setUnknown(R.id.sensor_state_cadence);
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utils.setUnknown(R.id.sensor_state_battery);
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} else {
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((TextView) findViewById(R.id.sensor_state_last_sensor_time)).setText(getLastSensorTime(sds));
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((TextView) findViewById(R.id.sensor_state_power)).setText(getPower(sds));
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((TextView) findViewById(R.id.sensor_state_cadence)).setText(getCadence(sds));
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((TextView) findViewById(R.id.sensor_state_heart_rate)).setText(getHeartRate(sds));
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((TextView) findViewById(R.id.sensor_state_battery)).setText(getBattery(sds));
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}
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}
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/**
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* Gets the last sensor time.
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*
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* @param sds sensor data set
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*/
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private String getLastSensorTime(Sensor.SensorDataSet sds) {
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return StringUtils.formatTime(this, sds.getCreationTime());
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}
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/**
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* Gets the power.
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*
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* @param sds sensor data set
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*/
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private String getPower(Sensor.SensorDataSet sds) {
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String value;
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if (sds.hasPower() && sds.getPower().hasValue()
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&& sds.getPower().getState() == Sensor.SensorState.SENDING) {
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String format = getString(R.string.sensor_state_power_value);
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value = String.format(format, sds.getPower().getValue());
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} else {
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value = SensorUtils.getStateAsString(
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sds.hasPower() ? sds.getPower().getState() : Sensor.SensorState.NONE, this);
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}
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return value;
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}
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/**
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* Gets the cadence.
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*
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* @param sds sensor data set
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*/
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private String getCadence(Sensor.SensorDataSet sds) {
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String value;
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if (sds.hasCadence() && sds.getCadence().hasValue()
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&& sds.getCadence().getState() == Sensor.SensorState.SENDING) {
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String format = getString(R.string.sensor_state_cadence_value);
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value = String.format(format, sds.getCadence().getValue());
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} else {
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value = SensorUtils.getStateAsString(
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sds.hasCadence() ? sds.getCadence().getState() : Sensor.SensorState.NONE, this);
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}
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return value;
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}
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/**
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* Gets the heart rate.
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*
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* @param sds sensor data set
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*/
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private String getHeartRate(Sensor.SensorDataSet sds) {
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String value;
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if (sds.hasHeartRate() && sds.getHeartRate().hasValue()
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&& sds.getHeartRate().getState() == Sensor.SensorState.SENDING) {
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String format = getString(R.string.sensor_state_heart_rate_value);
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value = String.format(format, sds.getHeartRate().getValue());
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} else {
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value = SensorUtils.getStateAsString(
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sds.hasHeartRate() ? sds.getHeartRate().getState() : Sensor.SensorState.NONE, this);
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}
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return value;
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}
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/**
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* Gets the battery.
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*
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* @param sds sensor data set
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*/
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private String getBattery(Sensor.SensorDataSet sds) {
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String value;
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if (sds.hasBatteryLevel() && sds.getBatteryLevel().hasValue()
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&& sds.getBatteryLevel().getState() == Sensor.SensorState.SENDING) {
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String format = getString(R.string.sensor_state_battery_value);
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value = String.format(format, sds.getBatteryLevel().getValue());
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} else {
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value = SensorUtils.getStateAsString(
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sds.hasBatteryLevel() ? sds.getBatteryLevel().getState() : Sensor.SensorState.NONE, this);
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}
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return value;
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}
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} |