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OpenTracks/src/androidTest/java/de/dennisguse/opentracks/fragments/ChartFragmentTest.java
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Java

/*
* Copyright 2012 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.fragments;
import android.location.Location;
import androidx.test.core.app.ApplicationProvider;
import androidx.test.ext.junit.runners.AndroidJUnit4;
import org.junit.Assert;
import org.junit.Before;
import org.junit.Test;
import org.junit.runner.RunWith;
import de.dennisguse.opentracks.ChartView;
import de.dennisguse.opentracks.TrackStubUtils;
import de.dennisguse.opentracks.content.SensorDataSetLocation;
import de.dennisguse.opentracks.content.sensor.SensorDataSet;
import de.dennisguse.opentracks.util.UnitConversions;
/**
* Tests {@link ChartFragment}.
*
* @author Youtao Liu
*/
@RunWith(AndroidJUnit4.class)
public class ChartFragmentTest {
private static final double HOURS_PER_UNIT = 60.0;
private ChartFragment chartFragment;
@Before
public void setUp() {
chartFragment = new ChartFragment();
chartFragment.setChartView(new ChartView(ApplicationProvider.getApplicationContext()));
chartFragment.setTripStatisticsUpdater(TrackStubUtils.INITIAL_TIME);
}
/**
* Tests the logic to get the incorrect values of sensor in {@link ChartFragment#fillDataPoint(Location, double[])}.
*/
@Test
public void testFillDataPoint_sensorIncorrect() {
SensorDataSetLocation sensorDataSetLocation = TrackStubUtils.createSensorDataSetLocation();
// No input.
double[] point = fillDataPointTestHelper(sensorDataSetLocation);
Assert.assertEquals(Float.NaN, point[ChartView.HEART_RATE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.CADENCE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.POWER_SERIES + 1], 0.01);
// Input incorrect state.
// Creates SensorData.
SensorDataSet sensorDataSet = new SensorDataSet(SensorDataSet.DATA_UNAVAILABLE, SensorDataSet.DATA_UNAVAILABLE);
sensorDataSetLocation.setSensorDataSet(sensorDataSet);
// Test.
point = fillDataPointTestHelper(sensorDataSetLocation);
Assert.assertEquals(Float.NaN, point[ChartView.HEART_RATE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.CADENCE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.POWER_SERIES + 1], 0.01);
}
/**
* Tests the logic to get the correct values of sensor in {@link ChartFragment#fillDataPoint(Location, double[])}.
*/
@Test
public void testFillDataPoint_sensorCorrect() {
SensorDataSetLocation sensorDataSetLocation = TrackStubUtils.createSensorDataSetLocation();
// No input.
double[] point = fillDataPointTestHelper(sensorDataSetLocation);
Assert.assertEquals(Float.NaN, point[ChartView.HEART_RATE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.CADENCE_SERIES + 1], 0.01);
Assert.assertEquals(Float.NaN, point[ChartView.POWER_SERIES + 1], 0.01);
// Creates SensorData.
SensorDataSet sensorDataSet = new SensorDataSet(100, 101, 102);
// Creates SensorDataSet.
sensorDataSetLocation.setSensorDataSet(sensorDataSet);
// Test.
point = fillDataPointTestHelper(sensorDataSetLocation);
Assert.assertEquals(100.0, point[ChartView.HEART_RATE_SERIES + 1], 0.01);
Assert.assertEquals(101.0, point[ChartView.CADENCE_SERIES + 1], 0.01);
Assert.assertEquals(102.0, point[ChartView.POWER_SERIES + 1], 0.01);
}
/**
* Tests the logic to get the value of metric Distance in {@link ChartFragment#fillDataPoint(Location, double[])}.
*/
@Test
public void testFillDataPoint_distanceMetric() {
// By distance.
chartFragment.setChartByDistance(true);
// Resets last location and writes first location.
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[0], 0.01);
// The second is a same location, just different time.
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals(0.0, point[0], 0.01);
// The third location is a new location, and use metric.
SensorDataSetLocation sensorDataSetLocation3 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation3.setLatitude(23);
point = fillDataPointTestHelper(sensorDataSetLocation3);
// Computes the distance between Latitude 22 and 23.
float[] results = new float[4];
Location.distanceBetween(sensorDataSetLocation2.getLatitude(), sensorDataSetLocation2.getLongitude(),
sensorDataSetLocation3.getLatitude(), sensorDataSetLocation3.getLongitude(), results);
double distance1 = results[0] * UnitConversions.M_TO_KM;
Assert.assertEquals(distance1, point[0], 0.01);
// The fourth location is a new location, and use metric.
SensorDataSetLocation sensorDataSetLocation4 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation4.setLatitude(24);
point = fillDataPointTestHelper(sensorDataSetLocation4);
// Computes the distance between Latitude 23 and 24.
Location.distanceBetween(sensorDataSetLocation3.getLatitude(), sensorDataSetLocation3.getLongitude(),
sensorDataSetLocation4.getLatitude(), sensorDataSetLocation4.getLongitude(), results);
double distance2 = results[0] * UnitConversions.M_TO_KM;
Assert.assertEquals((distance1 + distance2), point[0], 0.01);
}
/**
* Tests the logic to get the value of imperial Distance in {@link ChartFragment#fillDataPoint(Location, double[])}.
*/
@Test
public void testFillDataPoint_distanceImperial() {
// By distance.
chartFragment.setChartByDistance(true);
// Setups to use imperial.
chartFragment.setMetricUnits(false);
// The first is a same location, just different time.
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[0], 0.01);
// The second location is a new location, and use imperial.
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation2.setLatitude(23);
point = fillDataPointTestHelper(sensorDataSetLocation2);
/*
* Computes the distance between Latitude 22 and 23.
* And for we set using * imperial, the distance should be multiplied by UnitConversions.KM_TO_MI.
*/
float[] results = new float[4];
Location.distanceBetween(sensorDataSetLocation1.getLatitude(), sensorDataSetLocation1.getLongitude(), sensorDataSetLocation2.getLatitude(), sensorDataSetLocation2.getLongitude(), results);
double distance1 = results[0] * UnitConversions.M_TO_KM * UnitConversions.KM_TO_MI;
Assert.assertEquals(distance1, point[0], 0.01);
// The third location is a new location, and use imperial.
SensorDataSetLocation sensorDataSetLocation3 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation3.setLatitude(24);
point = fillDataPointTestHelper(sensorDataSetLocation3);
/*
* Computes the distance between Latitude 23 and 24.
* And for we set using * imperial, the distance should be multiplied by UnitConversions.KM_TO_MI.
*/
Location.distanceBetween(sensorDataSetLocation2.getLatitude(), sensorDataSetLocation2.getLongitude(), sensorDataSetLocation3.getLatitude(), sensorDataSetLocation3.getLongitude(), results);
double distance2 = results[0] * UnitConversions.M_TO_KM * UnitConversions.KM_TO_MI;
Assert.assertEquals(distance1 + distance2, point[0], 0.01);
}
/**
* Tests the logic to get the values of time in {@link ChartFragment#fillDataPoint(Location, double[])}.
*/
@Test
public void testFillDataPoint_time() {
// By time
chartFragment.setChartByDistance(false);
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[0], 0.01);
long timeSpan = 222;
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation2.setTime(sensorDataSetLocation1.getTime() + timeSpan);
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals((double) timeSpan, point[0], 0.01);
}
/**
* Tests the logic to get the value of elevation in {@link ChartFragment#fillDataPoint(Location, double[])} by one and two points.
*/
@Test
public void testFillDataPoint_elevation() {
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
/*
* At first, clear old points of elevation, so give true to the second parameter.
* Then only one value INITIAL_ALTITUDE in buffer.
*/
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(TrackStubUtils.INITIAL_ALTITUDE, point[ChartView.ELEVATION_SERIES + 1], 0.01);
/*
* Send another value to buffer, now there are two values, INITIAL_ALTITUDE and INITIAL_ALTITUDE * 2.
*/
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation2.setAltitude(TrackStubUtils.INITIAL_ALTITUDE * 2);
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals((TrackStubUtils.INITIAL_ALTITUDE + TrackStubUtils.INITIAL_ALTITUDE * 2) / 2.0,
point[ChartView.ELEVATION_SERIES + 1], 0.01);
}
/**
* Tests the logic to get the value of speed in {@link ChartFragment#fillDataPoint(Location, double[])}.
* In this test, firstly remove all points in memory, and then fill in two points one by one.
* The speed values of these points are 129, 130.
*/
@Test
public void testFillDataPoint_speed() {
/*
* At first, clear old points of speed, so give true to the second parameter.
* It will not be filled in to the speed buffer.
*/
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation1.setSpeed(128.5f);
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[ChartView.SPEED_SERIES + 1], 0.01);
/*
* Tests the logic when both metricUnits and reportSpeed are true.
* This location will be filled into speed buffer.
*/
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
/*
* Add a time span here to make sure the second point is valid, the value 222 here is doesn't matter.
*/
sensorDataSetLocation2.setTime(sensorDataSetLocation1.getTime() + 222);
sensorDataSetLocation2.setSpeed(130);
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals(130.0 * UnitConversions.MS_TO_KMH, point[ChartView.SPEED_SERIES + 1], 0.01);
}
/**
* Tests the logic to compute speed when use Imperial.
*/
@Test
public void testFillDataPoint_speedImperial() {
// Setups to use imperial.
chartFragment.setMetricUnits(false);
// First data point is not added to the speed buffer
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation1.setSpeed(100.0f);
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[ChartView.SPEED_SERIES + 1], 0.01);
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
/*
* Add a time span here to make sure the second point and the speed is valid.
* Speed is valid if: speedDifference > Constants.MAX_ACCELERATION * timeDifference speedDifference = 102 -100 timeDifference = 222
*/
sensorDataSetLocation2.setTime(sensorDataSetLocation2.getTime() + 222);
sensorDataSetLocation2.setSpeed(102);
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals(102.0 * UnitConversions.MS_TO_KMH * UnitConversions.KM_TO_MI, point[ChartView.SPEED_SERIES + 1], 0.01);
}
/**
* Tests the logic to get pace value when reportSpeed is false.
*/
@Test
public void testFillDataPoint_pace_nonZeroSpeed() {
// Setups reportSpeed to false.
chartFragment.setReportSpeed(false);
// First data point is not added to the speed buffer
SensorDataSetLocation sensorDataSetLocation1 = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation1.setSpeed(100.0f);
double[] point = fillDataPointTestHelper(sensorDataSetLocation1);
Assert.assertEquals(0.0, point[ChartView.SPEED_SERIES + 1], 0.01);
SensorDataSetLocation sensorDataSetLocation2 = TrackStubUtils.createSensorDataSetLocation();
/*
* Add a time span here to make sure the second point and the speed is valid.
* Speed is valid if: speedDifference > Constants.MAX_ACCELERATION * timeDifference speedDifference = 102 -100 timeDifference = 222
*/
sensorDataSetLocation2.setTime(sensorDataSetLocation2.getTime() + 222);
sensorDataSetLocation2.setSpeed(102);
point = fillDataPointTestHelper(sensorDataSetLocation2);
Assert.assertEquals(HOURS_PER_UNIT / (102.0 * UnitConversions.MS_TO_KMH), point[ChartView.PACE_SERIES + 1], 0.01);
}
/**
* Tests the logic to get pace value when reportSpeed is false and average speed is zero.
*/
@Test
public void testFillDataPoint_pace_zeroSpeed() {
// Setups reportSpeed to false.
chartFragment.setReportSpeed(false);
SensorDataSetLocation sensorDataSetLocation = TrackStubUtils.createSensorDataSetLocation();
sensorDataSetLocation.setSpeed(0);
double[] point = fillDataPointTestHelper(sensorDataSetLocation);
Assert.assertEquals(0.0, point[ChartView.PACE_SERIES + 1], 0.01);
}
/**
* Helper method to test fillDataPoint.
*
* @param location location to fill
* @return data of this location
*/
private double[] fillDataPointTestHelper(Location location) {
double[] point = new double[ChartView.NUM_SERIES + 1];
chartFragment.fillDataPoint(location, point);
return point;
}
}