forked from upstream-mirrors/OpenTracks
267 lines
9.7 KiB
Java
267 lines
9.7 KiB
Java
/*
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* Copyright 2009 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 de.dennisguse.opentracks.stats;
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import android.util.Log;
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import androidx.annotation.NonNull;
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import androidx.annotation.VisibleForTesting;
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import de.dennisguse.opentracks.content.data.TrackPoint;
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import de.dennisguse.opentracks.content.data.TrackPointsColumns;
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import de.dennisguse.opentracks.content.provider.TrackPointIterator;
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import de.dennisguse.opentracks.util.LocationUtils;
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import de.dennisguse.opentracks.util.TrackPointUtils;
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/**
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* Updater for {@link TrackStatistics}.
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* For updating track {@link TrackStatistics} as new {@link TrackPoint}s are added.
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* NOTE: Some of the locations represent pause/resume separator.
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* NOTE: Has still support for segments (at the moment unused).
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*
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* @author Sandor Dornbush
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* @author Rodrigo Damazio
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*/
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public class TrackStatisticsUpdater {
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/**
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* The number of elevation readings to smooth to get a somewhat accurate signal.
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*/
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@VisibleForTesting
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private static final int ELEVATION_SMOOTHING_FACTOR = 25;
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/**
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* The number of speed reading to smooth to get a somewhat accurate signal.
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*/
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@VisibleForTesting
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private static final int SPEED_SMOOTHING_FACTOR = 25;
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private static final String TAG = TrackStatisticsUpdater.class.getSimpleName();
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/**
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* Ignore any acceleration faster than this.
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* Will ignore any speeds that imply acceleration greater than 2g's
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* 2g = 19.6 m/s^2 = 0.0002 m/ms^2 = 0.02 m/(m*ms)
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*/
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private static final double MAX_ACCELERATION = 0.02;
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// The track's statistics
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private final TrackStatistics trackStatistics;
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// A buffer of the recent elevation readings (m)
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private final DoubleBuffer elevationBuffer_m = new DoubleBuffer(ELEVATION_SMOOTHING_FACTOR);
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// A buffer of the recent speed readings (m/s) for calculating max speed
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private final DoubleBuffer speedBuffer_ms = new DoubleBuffer(SPEED_SMOOTHING_FACTOR);
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// The current segment's statistics
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private TrackStatistics currentSegment;
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// Current segment's last trackPoint
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private TrackPoint lastTrackPoint;
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// Current segment's last moving trackPoint
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private TrackPoint lastMovingTrackPoint;
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/**
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* Creates a new {@link TrackStatisticsUpdater}.
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*
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* @param startTime_ms the start time in milliseconds
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*/
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public TrackStatisticsUpdater(long startTime_ms) {
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trackStatistics = init(startTime_ms);
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currentSegment = init(startTime_ms);
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}
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/**
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* Creates a new{@link TrackStatisticsUpdater} with a {@link TrackStatisticsUpdater} already existed.
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*
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* @param trackStatistics a {@link TrackStatisticsUpdater}
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*/
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public TrackStatisticsUpdater(TrackStatistics trackStatistics) {
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this.trackStatistics = trackStatistics;
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currentSegment = init(System.currentTimeMillis());
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}
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public void updateTime(long time) {
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currentSegment.setStopTime_ms(time);
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currentSegment.setTotalTime(time - currentSegment.getStartTime_ms());
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}
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/**
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* Gets the track's statistics.
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*/
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public TrackStatistics getTrackStatistics() {
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// Take a snapshot - we don't want anyone messing with our trackStatistics
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TrackStatistics stats = new TrackStatistics(trackStatistics);
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stats.merge(currentSegment);
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return stats;
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}
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/**
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* Adds a trackPoint.
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* TODO: This assume trackPoint has a valid time.
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*
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* @param trackPoint the trackPoint
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* @param minRecordingDistance the min recording distance
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*/
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public void addTrackPoint(TrackPoint trackPoint, int minRecordingDistance) {
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// Always update time
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updateTime(trackPoint.getTime());
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if (!LocationUtils.isValidLocation(trackPoint.getLocation())) {
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// Either pause or resume marker
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if (trackPoint.getLatitude() == TrackPointsColumns.PAUSE_LATITUDE) {
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if (lastTrackPoint != null && lastMovingTrackPoint != null && lastTrackPoint != lastMovingTrackPoint) {
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currentSegment.addTotalDistance(lastMovingTrackPoint.distanceTo(lastTrackPoint));
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}
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trackStatistics.merge(currentSegment);
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}
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currentSegment = init(trackPoint.getTime());
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lastTrackPoint = null;
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lastMovingTrackPoint = null;
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elevationBuffer_m.reset();
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speedBuffer_ms.reset();
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return;
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}
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//TODO Use Barometer to compute elevation gain.
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double elevationDifference = trackPoint.hasAltitude() ? updateElevation(trackPoint.getAltitude()) : 0.0;
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if (lastTrackPoint == null || lastMovingTrackPoint == null) {
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lastTrackPoint = trackPoint;
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lastMovingTrackPoint = trackPoint;
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return;
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}
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double movingDistance = lastMovingTrackPoint.distanceTo(trackPoint);
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if (movingDistance < minRecordingDistance && !TrackPointUtils.isMoving(trackPoint)) {
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speedBuffer_ms.reset();
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lastTrackPoint = trackPoint;
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return;
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}
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long movingTime = trackPoint.getTime() - lastTrackPoint.getTime();
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if (movingTime < 0) {
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lastTrackPoint = trackPoint;
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return;
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}
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// Update total distance
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currentSegment.addTotalDistance(movingDistance);
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// Update moving time
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currentSegment.addMovingTime(movingTime);
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// Update max speed
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if (trackPoint.hasSpeed() && lastTrackPoint.hasSpeed()) {
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updateSpeed(trackPoint, lastTrackPoint);
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}
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lastTrackPoint = trackPoint;
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lastMovingTrackPoint = trackPoint;
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}
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public void addTrackPoint(TrackPointIterator iterator, int minRecordingDistance) {
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while (iterator.hasNext()) {
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TrackPoint location = iterator.next();
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addTrackPoint(location, minRecordingDistance);
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}
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}
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/**
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* Gets the smoothed elevation over several readings.
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* The elevation readings is noisy so the smoothed elevation is better than the raw elevation for many tasks.
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*/
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public double getSmoothedElevation() {
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return elevationBuffer_m.getAverage();
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}
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public double getSmoothedSpeed() {
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return speedBuffer_ms.getAverage();
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}
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/**
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* Updates a speed reading while assuming the user is moving.
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*/
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@VisibleForTesting
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private void updateSpeed(@NonNull TrackPoint trackPoint, @NonNull TrackPoint lastTrackPoint) {
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if (!TrackPointUtils.isMoving(trackPoint)) {
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speedBuffer_ms.reset();
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} else if (isValidSpeed(trackPoint, lastTrackPoint)) {
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speedBuffer_ms.setNext(trackPoint.getSpeed());
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if (speedBuffer_ms.getAverage() > currentSegment.getMaxSpeed()) {
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currentSegment.setMaxSpeed(speedBuffer_ms.getAverage());
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}
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} else {
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Log.d(TAG, "Invalid speed. speed: " + trackPoint.getSpeed() + " lastLocationSpeed: " + lastTrackPoint.getSpeed());
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}
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}
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/**
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* Updates an elevation reading. Returns the difference.
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*
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* @param elevation the elevation
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*/
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@VisibleForTesting
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private double updateElevation(double elevation) {
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// Update elevation using the smoothed average
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double oldAverage = elevationBuffer_m.getAverage();
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elevationBuffer_m.setNext(elevation);
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double newAverage = elevationBuffer_m.getAverage();
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currentSegment.updateElevationExtremities(newAverage);
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double difference = newAverage - oldAverage;
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if (difference > 0) {
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currentSegment.addTotalElevationGain(difference);
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}
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return difference;
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}
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private TrackStatistics init(long time) {
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TrackStatistics stats = new TrackStatistics();
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stats.setStartTime_ms(time);
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stats.setStopTime_ms(time);
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return stats;
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}
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/**
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* Returns true if the speed is valid.
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*/
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private boolean isValidSpeed(@NonNull TrackPoint trackPoint, @NonNull TrackPoint lastTrackPoint) {
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// There are a lot of noisy speed readings. Do the cheapest checks first, most expensive last.
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if (trackPoint.getSpeed() == 0) {
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return false;
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}
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// The following code will ignore unlikely readings. 128 m/s seems to be an internal android error code.
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if (Math.abs(trackPoint.getSpeed() - 128) < 1) {
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return false;
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}
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// See if the speed seems physically likely. Ignore any speeds that imply acceleration greater than 2g.
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long timeDifference = trackPoint.getTime() - lastTrackPoint.getTime();
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double speedDifference = Math.abs(lastTrackPoint.getSpeed() - trackPoint.getSpeed());
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if (speedDifference > MAX_ACCELERATION * timeDifference) {
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return false;
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}
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// Only check if the speed buffer is full. Check that the speed is less than 10X the smoothed average and the speed difference doesn't imply 2g acceleration.
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if (speedBuffer_ms.isFull()) {
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double average = speedBuffer_ms.getAverage();
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double diff = Math.abs(average - trackPoint.getSpeed());
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return (trackPoint.getSpeed() < average * 10) && (diff < MAX_ACCELERATION * timeDifference);
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}
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return true;
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}
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}
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