forked from upstream-mirrors/OpenTracks
131 lines
4.2 KiB
Java
131 lines
4.2 KiB
Java
package de.dennisguse.opentracks.viewmodels;
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import java.util.ArrayList;
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import java.util.List;
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import de.dennisguse.opentracks.content.data.TrackPoint;
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import de.dennisguse.opentracks.util.LocationUtils;
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import de.dennisguse.opentracks.util.UnitConversions;
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public class IntervalStatistics {
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private final List<Interval> intervalList = new ArrayList<>();
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private final float distanceInterval_m;
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/**
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* @param trackPoints the list of TrackPoint.
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* @param distanceInterval_m the meters of every interval.
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*/
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public IntervalStatistics(List<TrackPoint> trackPoints, float distanceInterval_m) {
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intervalList.clear();
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this.distanceInterval_m = distanceInterval_m;
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if (trackPoints == null || trackPoints.size() == 0) {
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return;
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}
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Interval interval = new Interval();
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interval.gain_m += trackPoints.get(0).hasElevationGain() ? trackPoints.get(0).getElevationGain() : 0;
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interval.loss_m += trackPoints.get(0).hasElevationLoss() ? trackPoints.get(0).getElevationLoss() : 0;
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for (int i = 1; i < trackPoints.size(); i++) {
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TrackPoint prevTrackPoint = trackPoints.get(i - 1);
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TrackPoint trackPoint = trackPoints.get(i);
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if (LocationUtils.isValidLocation(trackPoint.getLocation()) && LocationUtils.isValidLocation(prevTrackPoint.getLocation())) {
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interval.distance_m += prevTrackPoint.distanceTo(trackPoint);
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interval.time_ms += trackPoint.getTime() - prevTrackPoint.getTime();
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interval.gain_m += trackPoint.hasElevationGain() ? trackPoint.getElevationGain() : 0;
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interval.loss_m += trackPoint.hasElevationLoss() ? trackPoint.getElevationLoss() : 0;
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if (interval.distance_m >= distanceInterval_m) {
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float adjustFactor = distanceInterval_m / interval.distance_m;
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Interval adjustedInterval = new Interval(interval);
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adjustedInterval.adjust(adjustFactor);
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intervalList.add(adjustedInterval);
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interval = new Interval(interval.distance_m - adjustedInterval.distance_m, interval.time_ms - adjustedInterval.time_ms);
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}
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}
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}
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if (interval.distance_m > 1f) {
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intervalList.add(interval);
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}
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}
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public List<Interval> getIntervalList() {
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return intervalList;
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}
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/**
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* Return the last completed interval.
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* An interval is complete if its distance is equal to distanceInterval_m.
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*
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* @return the interval object or null if any interval is completed.
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*/
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public Interval getLastInterval() {
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if (intervalList.size() == 1 && intervalList.get(0).getDistance_m() < distanceInterval_m) {
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return null;
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}
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for (int i = intervalList.size() - 1; i >= 0; i--) {
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if (intervalList.get(i).getDistance_m() >= distanceInterval_m) {
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return this.intervalList.get(i);
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}
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}
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return null;
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}
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public static class Interval {
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private float distance_m = 0f;
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private float time_ms = 0f;
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private float gain_m = 0f;
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private float loss_m = 0f;
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public Interval() {}
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public Interval(float distance_m, float time_ms) {
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this.distance_m = distance_m;
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this.time_ms = time_ms;
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this.gain_m = 0f;
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this.loss_m = 0f;
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}
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public Interval(Interval i) {
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distance_m = i.distance_m;
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time_ms = i.time_ms;
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gain_m = i.gain_m;
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loss_m = i.loss_m;
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}
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public float getDistance_m() {
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return distance_m;
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}
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public void adjust(float adjustFactor) {
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distance_m *= adjustFactor;
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time_ms *= adjustFactor;
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}
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/**
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* @return speed of the interval in m/s.
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*/
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public float getSpeed_ms() {
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if (distance_m == 0f) {
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return 0f;
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}
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return distance_m / (float) (time_ms * UnitConversions.MS_TO_S);
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}
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public float getGain_m() {
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return gain_m;
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}
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public float getLoss_m() {
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return loss_m;
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}
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}
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}
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