Files
OpenTracks/src/androidTest/java/de/dennisguse/opentracks/viewmodels/IntervalStatisticsTest.java
T

149 lines
5.3 KiB
Java

package de.dennisguse.opentracks.viewmodels;
import android.content.Context;
import android.util.Pair;
import androidx.test.core.app.ApplicationProvider;
import org.junit.Before;
import org.junit.Test;
import org.junit.runner.RunWith;
import org.junit.runners.JUnit4;
import java.util.List;
import de.dennisguse.opentracks.content.data.Distance;
import de.dennisguse.opentracks.content.data.TestDataUtil;
import de.dennisguse.opentracks.content.data.Track;
import de.dennisguse.opentracks.content.data.TrackPoint;
import de.dennisguse.opentracks.content.provider.ContentProviderUtils;
import de.dennisguse.opentracks.content.provider.TrackPointIterator;
import de.dennisguse.opentracks.stats.TrackStatistics;
import de.dennisguse.opentracks.stats.TrackStatisticsUpdater;
import de.dennisguse.opentracks.util.UnitConversions;
import static org.junit.Assert.assertEquals;
@RunWith(JUnit4.class)
public class IntervalStatisticsTest {
private static final String TAG = IntervalStatisticsTest.class.getSimpleName();
private final Context context = ApplicationProvider.getApplicationContext();
private ContentProviderUtils contentProviderUtils;
@Before
public void setUp() {
contentProviderUtils = new ContentProviderUtils(context);
}
private TrackStatistics buildTrackStatistics(List<TrackPoint> trackPoints) {
TrackStatisticsUpdater trackStatisticsUpdater = new TrackStatisticsUpdater();
for (TrackPoint tp : trackPoints) {
trackStatisticsUpdater.addTrackPoint(tp, Distance.of(0));
}
return trackStatisticsUpdater.getTrackStatistics();
}
/**
* Tests that build method compute the distance correctly comparing the result with TrackStatisticsUpdater result.
*/
@Test
public void testBuild_1() {
// With 50 points and interval distance of 1000m.
// given
float distanceInterval = 1000f;
// when and then
whenAndThen(50, distanceInterval);
}
/**
* Tests that build method compute the distance correctly comparing the result with TrackStatisticsUpdater result.
*/
@Test
public void testBuild_2() {
// With 200 points and interval distance of 1000m.
// given
float distanceInterval = 1000f;
// when and then
whenAndThen(200, distanceInterval);
}
/**
* Tests that build method compute the distance correctly comparing the result with TrackStatisticsUpdater result.
*/
@Test
public void testBuild_3() {
// With 200 points and interval distance of 3000m.
// given
float distanceInterval = 3000f;
// when and then
whenAndThen(3000, distanceInterval);
}
/**
* Tests that build method compute the distance correctly comparing the result with TrackStatisticsUpdater result.
*/
@Test
public void testBuild_4() {
// With 1000 points and interval distance of 3000m.
// given
float distanceInterval = 3000f;
// when and then
whenAndThen(1000, distanceInterval);
}
/**
* Tests that build method compute the distance correctly comparing the result with TrackStatisticsUpdater result.
*/
@Test
public void testBuild_5() {
// With 10000 points and interval distance of 1000m.
// given
float distanceInterval = 1000f;
// when and then
whenAndThen(10000, distanceInterval);
}
private void whenAndThen(int numberOfPoints, float distanceInterval) {
IntervalStatistics intervalStatistics = new IntervalStatistics(Distance.of(distanceInterval), Distance.of(0));
Pair<Track.Id, TrackStatistics> trackWithStats = TestDataUtil.buildTrackWithTrackPoints(contentProviderUtils, numberOfPoints);
Track.Id trackId = trackWithStats.first;
TrackStatistics trackStatistics = trackWithStats.second;
try (TrackPointIterator trackPointIterator = contentProviderUtils.getTrackPointLocationIterator(trackId, null)) {
assertEquals(trackPointIterator.getCount(), numberOfPoints);
intervalStatistics.addTrackPoints(trackPointIterator);
}
List<IntervalStatistics.Interval> intervalList = intervalStatistics.getIntervalList();
Distance totalDistance = Distance.of(0);
float totalTime = 0L;
float totalGain = 0f;
for (IntervalStatistics.Interval i : intervalList) {
totalDistance = totalDistance.plus(i.getDistance());
totalTime += i.getDistance().toM() / i.getSpeed().toMPS();
totalGain += i.getGain_m();
}
// then
assertEquals(trackStatistics.getTotalDistance().toM(), totalDistance.toM(), 0.01);
assertEquals(trackStatistics.getTotalTime().toMillis(), totalTime * UnitConversions.S_TO_MS, 1);
assertEquals(intervalList.size(), (int) Math.ceil(trackStatistics.getTotalDistance().toM() / distanceInterval));
assertEquals(totalGain, numberOfPoints * TestDataUtil.ALTITUDE_GAIN, 0.1);
for (int i = 0; i < intervalList.size() - 1; i++) {
assertEquals(intervalList.get(i).getDistance().toM(), distanceInterval, 0.001);
totalDistance = totalDistance.minus(intervalList.get(i).getDistance());
}
assertEquals(intervalList.get(intervalList.size() - 1).getDistance().toM(), totalDistance.toM(), 0.01);
}
}