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https://github.com/michaelrausch/Party-Parrots-At-Sea.git
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Added unit tests for Mercator projection class.
- changed its methods to static - add some documentation for its methods #story[928]
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@@ -9,36 +9,36 @@ package seng302.models.map;
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*/
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public class Boundary {
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private double north, east, south, west;
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private double northLat, eastLng, southLat, westLng;
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public Boundary(double north, double east, double south, double west) {
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this.north = north;
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this.east = east;
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this.south = south;
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this.west = west;
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public Boundary(double northLat, double eastLng, double southLat, double westLng) {
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this.northLat = northLat;
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this.eastLng = eastLng;
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this.southLat = southLat;
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this.westLng = westLng;
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}
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public double getCentreLat() {
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return (north + south) / 2;
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return (northLat + southLat) / 2;
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}
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public double getCentreLng() {
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return (east + west) / 2;
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return (eastLng + westLng) / 2;
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}
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public double getNorth() {
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return north;
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public double getNorthLat() {
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return northLat;
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}
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public double getEast() {
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return east;
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public double getEastLng() {
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return eastLng;
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}
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public double getSouth() {
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return south;
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public double getSouthLat() {
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return southLat;
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}
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public double getWest() {
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return west;
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public double getWestLng() {
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return westLng;
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}
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}
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@@ -2,21 +2,16 @@ package seng302.models.map;
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public class MercatorProjection {
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private double MERCATOR_RANGE = 256;
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private double pixelsPerLngDegree, pixelsPerLngRadian;
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public MercatorProjection() {
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pixelsPerLngDegree = MERCATOR_RANGE / 360.0;
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pixelsPerLngRadian = MERCATOR_RANGE / (2 * Math.PI);
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}
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private static final double MERCATOR_RANGE = 256;
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private static final double pixelsPerLngDegree = MERCATOR_RANGE / 360.0;
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private static final double pixelsPerLngRadian = MERCATOR_RANGE / (2 * Math.PI);
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/**
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* A help function keeps the value in bound between -0.9999 and 0.9999.
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* @param value in bound value
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* @return the value in bound
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*/
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private double bound(double value) {
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private static double bound(double value) {
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return Math.min(Math.max(value, -0.9999), 0.9999);
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}
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@@ -25,7 +20,7 @@ public class MercatorProjection {
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* @param geo MapGeo (lat, lng) location to be projected
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* @return the projection GeoPoint (x, y) on planar
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*/
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public MapPoint toMapPoint(MapGeo geo) {
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public static MapPoint toMapPoint(MapGeo geo) {
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MapPoint point = new MapPoint(0, 0);
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MapPoint origin = new MapPoint(MERCATOR_RANGE / 2.0, MERCATOR_RANGE / 2.0);
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point.setX(origin.getX() + geo.getLng() * pixelsPerLngDegree);
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@@ -42,7 +37,7 @@ public class MercatorProjection {
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* @param point MapPoint (x, y) to be converted back
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* @return the original Geo location converted from the given projection point
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*/
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public MapGeo toMapGeo(MapPoint point) {
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public static MapGeo toMapGeo(MapPoint point) {
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MapPoint origin = new MapPoint(MERCATOR_RANGE / 2.0, MERCATOR_RANGE / 2.0);
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double lng = (point.getX() - origin.getX()) / pixelsPerLngDegree;
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double latRadians = (point.getY() - origin.getY()) / (-pixelsPerLngRadian);
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@@ -0,0 +1,42 @@
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package seng302.models.map;
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import org.junit.Test;
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import static org.junit.Assert.*;
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/**
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* Unit test for Mercator Project class.
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* Created by hyi25 on 15/05/17.
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*/
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public class MercatorProjectionTest {
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@Test
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public void toMapPoint() throws Exception {
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MapGeo geo1 = new MapGeo(12.485394, 19.38947);
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MapPoint actualPoint1 = MercatorProjection.toMapPoint(geo1);
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MapPoint expectedPoint1 = new MapPoint(141.78806755555556, 119.0503853635612);
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assertEquals(expectedPoint1.getX(), actualPoint1.getX(), 0.0001);
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assertEquals(expectedPoint1.getY(), actualPoint1.getY(), 0.0001);
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MapGeo geo2 = new MapGeo(77.456432, -23.456462);
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MapPoint actualPoint2 = MercatorProjection.toMapPoint(geo2);
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MapPoint expectedPoint2 = new MapPoint(111.31984924444444, 38.03143323746788);
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assertEquals(expectedPoint2.getX(), actualPoint2.getX(), 0.0001);
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assertEquals(expectedPoint2.getY(), actualPoint2.getY(), 0.0001);
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}
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@Test
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public void toMapGeo() throws Exception {
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MapPoint point1 = new MapPoint(123.1234, 25.4565);
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MapGeo actualGeo1 = MercatorProjection.toMapGeo(point1);
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MapGeo expectedGeo1 = new MapGeo(80.77043127275441, -6.857718749999995);
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assertEquals(expectedGeo1.getLat(), actualGeo1.getLat(), 0.0001);
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assertEquals(expectedGeo1.getLng(), actualGeo1.getLng(), 0.0001);
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MapPoint point2 = new MapPoint(1.235, 255.4565);
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MapGeo actualGeo2 = MercatorProjection.toMapGeo(point2);
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MapGeo expectedGeo2 = new MapGeo(-84.98475532898011, -178.26328125);
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assertEquals(expectedGeo2.getLat(), actualGeo2.getLat(), 0.0001);
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assertEquals(expectedGeo2.getLng(), actualGeo2.getLng(), 0.0001);
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}
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}
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