Add geodesic option for measure
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@@ -75,10 +75,11 @@
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<option value="length">Length</option>
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<option value="area">Area</option>
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</select>
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<label class="checkbox"><input type="checkbox" id="geodesic"/>use geodesic measures</label>
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</form>
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<div id="docs">
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<p><i>NOTE: Measure is done in simple way on projected plane. Earth
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<p><i>NOTE: If use geodesic measures is not checked, measure is done in simple way on projected plane. Earth
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curvature is not taken into account</i></p>
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<p>See the <a href="measure.js" target="_blank">measure.js source</a> to see how this is done.</p>
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</div>
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@@ -1,5 +1,6 @@
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goog.require('ol.Map');
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goog.require('ol.Overlay');
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goog.require('ol.Sphere');
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goog.require('ol.View');
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goog.require('ol.geom.LineString');
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goog.require('ol.geom.Polygon');
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@@ -7,6 +8,7 @@ goog.require('ol.interaction');
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goog.require('ol.interaction.Draw');
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goog.require('ol.layer.Tile');
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goog.require('ol.layer.Vector');
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goog.require('ol.proj');
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goog.require('ol.source.MapQuest');
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goog.require('ol.source.Vector');
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goog.require('ol.style.Circle');
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@@ -14,6 +16,9 @@ goog.require('ol.style.Fill');
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goog.require('ol.style.Stroke');
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goog.require('ol.style.Style');
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var wgs84Sphere = new ol.Sphere(6378137);
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var raster = new ol.layer.Tile({
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source: new ol.source.MapQuest({layer: 'sat'})
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});
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@@ -135,6 +140,7 @@ var map = new ol.Map({
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map.on('pointermove', pointerMoveHandler);
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var typeSelect = document.getElementById('type');
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var geodesicCheckbox = document.getElementById('geodesic');
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var draw; // global so we can remove it later
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function addInteraction() {
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@@ -238,7 +244,19 @@ typeSelect.onchange = function(e) {
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* @return {string}
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*/
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var formatLength = function(line) {
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var length = Math.round(line.getLength() * 100) / 100;
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var length;
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if (geodesicCheckbox.checked) {
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var coordinates = line.getCoordinates();
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length = 0;
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var sourceProj = map.getView().getProjection();
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for (var i = 0, ii = coordinates.length - 1; i < ii; ++i) {
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var c1 = ol.proj.transform(coordinates[i], sourceProj, 'EPSG:4326');
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var c2 = ol.proj.transform(coordinates[i + 1], sourceProj, 'EPSG:4326');
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length += wgs84Sphere.haversineDistance(c1, c2);
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}
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} else {
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length = Math.round(line.getLength() * 100) / 100;
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}
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var output;
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if (length > 100) {
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output = (Math.round(length / 1000 * 100) / 100) +
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@@ -257,7 +275,16 @@ var formatLength = function(line) {
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* @return {string}
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*/
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var formatArea = function(polygon) {
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var area = polygon.getArea();
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var area;
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if (geodesicCheckbox.checked) {
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var sourceProj = map.getView().getProjection();
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var geom = /** @type {ol.geom.Polygon} */(polygon.clone().transform(
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sourceProj, 'EPSG:4326'));
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var coordinates = geom.getLinearRing(0).getCoordinates();
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area = Math.abs(wgs84Sphere.geodesicArea(coordinates));
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} else {
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area = polygon.getArea();
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}
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var output;
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if (area > 10000) {
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output = (Math.round(area / 1000000 * 100) / 100) +
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@@ -57,6 +57,36 @@ ol.Sphere.prototype.cosineDistance = function(c1, c2) {
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};
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/**
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* Returns the geodesic area for a list of coordinates.
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*
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* [Reference](http://trs-new.jpl.nasa.gov/dspace/handle/2014/40409)
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* Robert. G. Chamberlain and William H. Duquette, "Some Algorithms for
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* Polygons on a Sphere", JPL Publication 07-03, Jet Propulsion
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* Laboratory, Pasadena, CA, June 2007
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*
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* @param {Array.<ol.Coordinate>} coordinates List of coordinates of a linear
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* ring. If the ring is oriented clockwise, the area will be positive,
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* otherwise it will be negative.
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* @return {number} Area.
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* @api
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*/
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ol.Sphere.prototype.geodesicArea = function(coordinates) {
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var area = 0, len = coordinates.length;
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var x1 = coordinates[len - 1][0];
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var y1 = coordinates[len - 1][1];
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for (var i = 0; i < len; i++) {
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var x2 = coordinates[i][0], y2 = coordinates[i][1];
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area += goog.math.toRadians(x2 - x1) *
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(2 + Math.sin(goog.math.toRadians(y1)) +
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Math.sin(goog.math.toRadians(y2)));
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x1 = x2;
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y1 = y2;
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}
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return area * this.radius * this.radius / 2.0;
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};
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/**
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* Returns the distance of c3 from the great circle path defined by c1 and c2.
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*
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@@ -110,6 +140,7 @@ ol.Sphere.prototype.finalBearing = function(c1, c2) {
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* @param {ol.Coordinate} c1 Coordinate 1.
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* @param {ol.Coordinate} c2 Coordinate 2.
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* @return {number} Haversine distance.
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* @api
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*/
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ol.Sphere.prototype.haversineDistance = function(c1, c2) {
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var lat1 = goog.math.toRadians(c1[1]);
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1
test/spec/ol/format/wkt/illinois.wkt
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1
test/spec/ol/format/wkt/illinois.wkt
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File diff suppressed because one or more lines are too long
@@ -264,8 +264,30 @@ describe('ol.Sphere', function() {
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});
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describe('Vincenty area', function() {
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var geometry;
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before(function(done) {
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afterLoadText('spec/ol/format/wkt/illinois.wkt', function(wkt) {
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try {
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var format = new ol.format.WKT();
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geometry = format.readGeometry(wkt);
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} catch (e) {
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done(e);
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}
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done();
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});
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});
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it('results match the expected area of Ilinois', function() {
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var coords = geometry.getPolygon(0).getLinearRing(0).getCoordinates();
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expect(ol.sphere.WGS84.geodesicArea(coords)).to.equal(145978332359.37125);
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});
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});
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});
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goog.require('goog.math');
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goog.require('ol.Sphere');
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goog.require('ol.sphere.WGS84');
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goog.require('ol.format.WKT');
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