vtm-jts: PathLayer improvements, #53
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vtm-jts/src/org/oscim/layers/vector/PathLayer.java
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vtm-jts/src/org/oscim/layers/vector/PathLayer.java
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/*
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* Copyright 2012 osmdroid authors: Viesturs Zarins, Martin Pearman
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* Copyright 2012 Hannes Janetzek
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* Copyright 2016 devemux86
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*
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* This file is part of the OpenScienceMap project (http://www.opensciencemap.org).
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*
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* This program is free software: you can redistribute it and/or modify it under the
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* terms of the GNU Lesser General Public License as published by the Free Software
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* Foundation, either version 3 of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT ANY
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* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A
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* PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License along with
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* this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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package org.oscim.layers.vector;
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import com.vividsolutions.jts.geom.LineString;
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import org.oscim.core.GeoPoint;
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import org.oscim.layers.vector.geometries.LineDrawable;
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import org.oscim.layers.vector.geometries.Style;
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import org.oscim.map.Map;
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import org.oscim.utils.geom.GeomBuilder;
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import java.util.ArrayList;
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import java.util.List;
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/**
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* This class draws a path line in given color.
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*/
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public class PathLayer extends VectorLayer {
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protected final ArrayList<GeoPoint> mPoints;
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protected Style mStyle;
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protected LineDrawable mDrawable;
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public PathLayer(Map map, Style style) {
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super(map);
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mStyle = style;
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mPoints = new ArrayList<>();
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}
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public PathLayer(Map map, int lineColor, float lineWidth) {
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this(map, Style.builder()
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.strokeColor(lineColor)
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.strokeWidth(lineWidth)
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.build());
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}
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public PathLayer(Map map, int lineColor) {
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this(map, lineColor, 2);
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}
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public void setStyle(Style style) {
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mStyle = style;
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}
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public void clearPath() {
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if (!mPoints.isEmpty())
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mPoints.clear();
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updatePoints();
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}
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public void setPoints(List<GeoPoint> pts) {
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mPoints.clear();
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mPoints.addAll(pts);
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updatePoints();
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}
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public void addPoint(GeoPoint pt) {
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mPoints.add(pt);
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updatePoints();
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}
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public void addPoint(int latitudeE6, int longitudeE6) {
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mPoints.add(new GeoPoint(latitudeE6, longitudeE6));
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updatePoints();
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}
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private void updatePoints() {
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synchronized (this) {
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if (mDrawable != null) {
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remove(mDrawable);
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mDrawable = null;
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}
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if (!mPoints.isEmpty()) {
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mDrawable = new LineDrawable(mPoints, mStyle);
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if (mDrawable.getGeometry() == null)
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mDrawable = null;
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else
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add(mDrawable);
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}
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}
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mWorker.submit(0);
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}
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public List<GeoPoint> getPoints() {
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return mPoints;
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}
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/**
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* Draw a great circle. Calculate a point for every 100km along the path.
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*
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* @param startPoint start point of the great circle
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* @param endPoint end point of the great circle
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*/
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public void addGreatCircle(GeoPoint startPoint, GeoPoint endPoint) {
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synchronized (mPoints) {
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/* get the great circle path length in meters */
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double length = startPoint.distanceTo(endPoint);
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/* add one point for every 100kms of the great circle path */
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int numberOfPoints = (int) (length / 100000);
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addGreatCircle(startPoint, endPoint, numberOfPoints);
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}
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}
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/**
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* Draw a great circle.
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*
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* @param startPoint start point of the great circle
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* @param endPoint end point of the great circle
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* @param numberOfPoints number of points to calculate along the path
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*/
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public void addGreatCircle(GeoPoint startPoint, GeoPoint endPoint,
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final int numberOfPoints) {
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/* adapted from page
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* http://compastic.blogspot.co.uk/2011/07/how-to-draw-great-circle-on-map
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* -in.html
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* which was adapted from page http://maps.forum.nu/gm_flight_path.html */
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GeomBuilder gb = new GeomBuilder();
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/* convert to radians */
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double lat1 = startPoint.getLatitude() * Math.PI / 180;
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double lon1 = startPoint.getLongitude() * Math.PI / 180;
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double lat2 = endPoint.getLatitude() * Math.PI / 180;
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double lon2 = endPoint.getLongitude() * Math.PI / 180;
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double d = 2 * Math.asin(Math.sqrt(Math.pow(Math.sin((lat1 - lat2) / 2), 2)
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+ Math.cos(lat1) * Math.cos(lat2)
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* Math.pow(Math.sin((lon1 - lon2) / 2), 2)));
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double bearing = Math.atan2(
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Math.sin(lon1 - lon2) * Math.cos(lat2),
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Math.cos(lat1) * Math.sin(lat2) - Math.sin(lat1)
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* Math.cos(lat2)
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* Math.cos(lon1 - lon2))
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/ -(Math.PI / 180);
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bearing = bearing < 0 ? 360 + bearing : bearing;
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for (int i = 0, j = numberOfPoints + 1; i < j; i++) {
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double f = 1.0 / numberOfPoints * i;
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double A = Math.sin((1 - f) * d) / Math.sin(d);
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double B = Math.sin(f * d) / Math.sin(d);
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double x = A * Math.cos(lat1) * Math.cos(lon1) + B * Math.cos(lat2)
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* Math.cos(lon2);
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double y = A * Math.cos(lat1) * Math.sin(lon1) + B * Math.cos(lat2)
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* Math.sin(lon2);
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double z = A * Math.sin(lat1) + B * Math.sin(lat2);
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double latN = Math.atan2(z, Math.sqrt(Math.pow(x, 2) + Math.pow(y, 2)));
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double lonN = Math.atan2(y, x);
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gb.point(latN / (Math.PI / 180), lonN / (Math.PI / 180));
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}
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setLineString(gb.toLineString());
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}
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public void setLineString(LineString path) {
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synchronized (this) {
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if (mDrawable != null)
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remove(mDrawable);
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mDrawable = new LineDrawable(path, mStyle);
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add(mDrawable);
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}
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mWorker.submit(0);
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}
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public void setLineString(double[] lonLat) {
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synchronized (this) {
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if (mDrawable != null)
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remove(mDrawable);
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mDrawable = new LineDrawable(lonLat, mStyle);
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add(mDrawable);
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}
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mWorker.submit(0);
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}
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}
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