1 | // License: GPL. v2 and later. Copyright 2008-2009 by Pieren <pieren3@gmail.com> and others
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2 | package cadastre_fr;
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3 |
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4 | import java.util.ArrayList;
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5 | import java.util.List;
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6 |
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7 | import org.openstreetmap.josm.data.osm.Node;
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8 | import org.openstreetmap.josm.data.osm.Way;
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9 |
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10 | /**
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11 | * Imported from plugin UtilsPlugin
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12 | * @author
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13 | *
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14 | */
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15 | public class SimplifyWay {
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16 | public void simplifyWay(Way w/*, DataSet dataSet*/, double threshold) {
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17 | Way wnew = new Way(w);
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18 |
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19 | simplifyWayRange(wnew, 0, wnew.getNodesCount() - 1, threshold);
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20 | w.setNodes(wnew.getNodes());
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21 | }
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22 |
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23 | public void simplifyWayRange(Way wnew, int from, int to, double thr) {
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24 | if (to - from >= 2) {
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25 | ArrayList<Node> ns = new ArrayList<Node>();
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26 | simplifyWayRange(wnew, from, to, ns, thr);
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27 | List<Node> nodes = wnew.getNodes();
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28 | for (int j = to - 1; j > from; j--)
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29 | nodes.remove(j);
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30 | nodes.addAll(from+1, ns);
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31 | wnew.setNodes(nodes);
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32 | }
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33 | }
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34 |
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35 | /*
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36 | * Takes an interval [from,to] and adds nodes from (from,to) to ns.
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37 | * (from and to are indices of wnew.nodes.)
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38 | */
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39 | public void simplifyWayRange(Way wnew, int from, int to, ArrayList<Node> ns, double thr) {
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40 | Node fromN = wnew.getNode(from), toN = wnew.getNode(to);
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41 |
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42 | int imax = -1;
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43 | double xtemax = 0;
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44 | for (int i = from + 1; i < to; i++) {
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45 | Node n = wnew.getNode(i);
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46 | double xte = Math.abs(EARTH_RAD
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47 | * xtd(fromN.getCoor().lat() * Math.PI / 180, fromN.getCoor().lon() * Math.PI / 180, toN.getCoor().lat() * Math.PI
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48 | / 180, toN.getCoor().lon() * Math.PI / 180, n.getCoor().lat() * Math.PI / 180, n.getCoor().lon() * Math.PI
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49 | / 180));
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50 | if (xte > xtemax) {
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51 | xtemax = xte;
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52 | imax = i;
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53 | }
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54 | }
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55 |
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56 | if (imax != -1 && xtemax >= thr) {
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57 | simplifyWayRange(wnew, from, imax, ns, thr);
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58 | ns.add(wnew.getNode(imax));
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59 | simplifyWayRange(wnew, imax, to, ns, thr);
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60 | }
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61 | }
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62 | public static double EARTH_RAD = 6378137.0;
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63 | /* From Aviaton Formulary v1.3
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64 | * http://williams.best.vwh.net/avform.htm
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65 | */
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66 | public static double dist(double lat1, double lon1, double lat2, double lon2) {
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67 | return 2 * Math.asin(Math.sqrt(Math.pow(Math.sin((lat1 - lat2) / 2), 2) + Math.cos(lat1) * Math.cos(lat2)
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68 | * Math.pow(Math.sin((lon1 - lon2) / 2), 2)));
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69 | }
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70 |
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71 | public static double course(double lat1, double lon1, double lat2, double lon2) {
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72 | return Math.atan2(Math.sin(lon1 - lon2) * Math.cos(lat2), Math.cos(lat1) * Math.sin(lat2) - Math.sin(lat1)
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73 | * Math.cos(lat2) * Math.cos(lon1 - lon2))
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74 | % (2 * Math.PI);
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75 | }
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76 | public static double xtd(double lat1, double lon1, double lat2, double lon2, double lat3, double lon3) {
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77 | double dist_AD = dist(lat1, lon1, lat3, lon3);
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78 | double crs_AD = course(lat1, lon1, lat3, lon3);
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79 | double crs_AB = course(lat1, lon1, lat2, lon2);
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80 | return Math.asin(Math.sin(dist_AD) * Math.sin(crs_AD - crs_AB));
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81 | }
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82 |
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83 | }
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