import GeometryCollection from '../../../../src/ol/geom/GeometryCollection.js'; import LineString from '../../../../src/ol/geom/LineString.js'; import MultiLineString from '../../../../src/ol/geom/MultiLineString.js'; import MultiPoint from '../../../../src/ol/geom/MultiPoint.js'; import Point from '../../../../src/ol/geom/Point.js'; import WKT from '../../../../src/ol/format/WKT.js'; import {getArea, getDistance, getLength} from '../../../../src/ol/sphere.js'; describe('ol/sphere', function () { describe('getDistance()', function () { const expected = [ { c1: [0, 0], c2: [0, 0], distance: 0, }, { c1: [0, 0], c2: [45, 45], distance: 6671704.814011975, }, { c1: [0, 0], c2: [-45, 45], distance: 6671704.814011975, }, { c1: [0, 0], c2: [-45, -45], distance: 6671704.814011975, }, { c1: [0, 0], c2: [45, -45], distance: 6671704.814011975, }, { c1: [45, 45], c2: [45, 45], distance: 0, }, { c1: [45, 45], c2: [-45, 45], distance: 6671704.814011975, }, { c1: [45, 45], c2: [-45, -45], distance: 13343409.628023949, }, { c1: [45, 45], c2: [45, -45], distance: 10007557.221017962, }, { c1: [-45, 45], c2: [-45, 45], distance: 0, }, { c1: [-45, 45], c2: [-45, -45], distance: 10007557.221017962, }, { c1: [-45, 45], c2: [45, -45], distance: 13343409.628023949, }, { c1: [-45, -45], c2: [-45, -45], distance: 0, }, { c1: [-45, -45], c2: [45, -45], distance: 6671704.814011975, }, { c1: [45, -45], c2: [45, -45], distance: 0, }, ]; expected.forEach(function (e, i) { it('calculates the distance between two points: ' + i, function () { expect(getDistance(e.c1, e.c2)).to.roughlyEqual(e.distance, 1e-6); }); }); }); describe('getLength()', function () { const cases = [ { geometry: new Point([0, 0]), length: 0, }, { geometry: new MultiPoint([ [0, 0], [1, 1], ]), length: 0, }, { geometry: new LineString([ [12801741.441226462, -3763310.627144653], [14582853.293918837, -2511525.2348457114], [15918687.18343812, -2875744.624352243], [16697923.618991036, -4028802.0261344076], ]), length: 4407939.124914191, }, { geometry: new GeometryCollection([ new LineString([ [12801741.441226462, -3763310.627144653], [14582853.293918837, -2511525.2348457114], [15918687.18343812, -2875744.624352243], [16697923.618991036, -4028802.0261344076], ]), new LineString([ [12801741.441226462, -3763310.627144653], [14582853.293918837, -2511525.2348457114], [15918687.18343812, -2875744.624352243], [16697923.618991036, -4028802.0261344076], ]), ]), length: 2 * 4407939.124914191, }, { geometry: new LineString([ [115, -32], [131, -22], [143, -25], [150, -34], ]), options: {projection: 'EPSG:4326'}, length: 4407939.124914191, }, { geometry: new MultiLineString([ [ [115, -32], [131, -22], [143, -25], [150, -34], ], [ [115, -32], [131, -22], [143, -25], [150, -34], ], ]), options: {projection: 'EPSG:4326'}, length: 2 * 4407939.124914191, }, { geometry: new GeometryCollection([ new LineString([ [115, -32], [131, -22], [143, -25], [150, -34], ]), new LineString([ [115, -32], [131, -22], [143, -25], [150, -34], ]), ]), options: {projection: 'EPSG:4326'}, length: 2 * 4407939.124914191, }, ]; cases.forEach(function (c, i) { it('works for case ' + i, function () { const c = cases[i]; const length = getLength(c.geometry, c.options); expect(length).to.roughlyEqual(c.length, 1e-8); }); }); }); describe('getArea()', function () { let geometry; const expectedArea = 145652224192.4434; before(function (done) { afterLoadText('spec/ol/format/wkt/illinois.wkt', function (wkt) { try { const format = new WKT(); geometry = format.readGeometry(wkt); } catch (e) { done(e); } done(); }); }); it('calculates the area of Ilinois', function () { const area = getArea(geometry, {projection: 'EPSG:4326'}); expect(area).to.equal(expectedArea); }); it('calculates the area of a projected geometry', function () { const projected = geometry.clone().transform('EPSG:4326', 'EPSG:3857'); const area = getArea(projected); expect(area).to.roughlyEqual(expectedArea, 1e-3); }); it('calculates the area of a projected geometry collection', function () { const part = geometry.clone().transform('EPSG:4326', 'EPSG:3857'); const collection = new GeometryCollection([part, part.clone()]); const area = getArea(collection); expect(area).to.roughlyEqual(2 * expectedArea, 1e-3); }); }); });