/** * Cesium - https://github.com/CesiumGS/cesium * * Copyright 2011-2020 Cesium Contributors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * * Columbus View (Pat. Pend.) * * Portions licensed separately. * See https://github.com/CesiumGS/cesium/blob/master/LICENSE.md for full licensing details. */ define(['./when-8d13db60', './Check-70bec281', './Math-61ede240', './Cartographic-f2a06374', './Cartesian2-16a61632', './BoundingSphere-d018a565', './Cartesian4-5af5bb24', './RuntimeError-ba10bc3e', './WebGLConstants-4c11ee5f', './ComponentDatatype-5862616f', './GeometryAttribute-1e248a71', './PrimitiveType-97893bc7', './FeatureDetection-7bd32c34', './Transforms-cd52cbaf', './buildModuleUrl-e7952659', './GeometryAttributes-aacecde6', './IndexDatatype-9435b55f', './arrayFill-9766fb2e', './GeometryOffsetAttribute-999fc023', './VertexFormat-fe4db402', './EllipsoidGeometry-7b16faf8'], function (when, Check, _Math, Cartographic, Cartesian2, BoundingSphere, Cartesian4, RuntimeError, WebGLConstants, ComponentDatatype, GeometryAttribute, PrimitiveType, FeatureDetection, Transforms, buildModuleUrl, GeometryAttributes, IndexDatatype, arrayFill, GeometryOffsetAttribute, VertexFormat, EllipsoidGeometry) { 'use strict'; /** * A description of a sphere centered at the origin. * * @alias SphereGeometry * @constructor * * @param {Object} [options] Object with the following properties: * @param {Number} [options.radius=1.0] The radius of the sphere. * @param {Number} [options.stackPartitions=64] The number of times to partition the ellipsoid into stacks. * @param {Number} [options.slicePartitions=64] The number of times to partition the ellipsoid into radial slices. * @param {VertexFormat} [options.vertexFormat=VertexFormat.DEFAULT] The vertex attributes to be computed. * * @exception {DeveloperError} options.slicePartitions cannot be less than three. * @exception {DeveloperError} options.stackPartitions cannot be less than three. * * @see SphereGeometry#createGeometry * * @example * var sphere = new Cesium.SphereGeometry({ * radius : 100.0, * vertexFormat : Cesium.VertexFormat.POSITION_ONLY * }); * var geometry = Cesium.SphereGeometry.createGeometry(sphere); */ function SphereGeometry(options) { var radius = when.defaultValue(options.radius, 1.0); var radii = new Cartographic.Cartesian3(radius, radius, radius); var ellipsoidOptions = { radii: radii, stackPartitions: options.stackPartitions, slicePartitions: options.slicePartitions, vertexFormat: options.vertexFormat }; this._ellipsoidGeometry = new EllipsoidGeometry.EllipsoidGeometry(ellipsoidOptions); this._workerName = 'createSphereGeometry'; } /** * The number of elements used to pack the object into an array. * @type {Number} */ SphereGeometry.packedLength = EllipsoidGeometry.EllipsoidGeometry.packedLength; /** * Stores the provided instance into the provided array. * * @param {SphereGeometry} value The value to pack. * @param {Number[]} array The array to pack into. * @param {Number} [startingIndex=0] The index into the array at which to start packing the elements. * * @returns {Number[]} The array that was packed into */ SphereGeometry.pack = function(value, array, startingIndex) { //>>includeStart('debug', pragmas.debug); Check.Check.typeOf.object('value', value); //>>includeEnd('debug'); return EllipsoidGeometry.EllipsoidGeometry.pack(value._ellipsoidGeometry, array, startingIndex); }; var scratchEllipsoidGeometry = new EllipsoidGeometry.EllipsoidGeometry(); var scratchOptions = { radius : undefined, radii : new Cartographic.Cartesian3(), vertexFormat : new VertexFormat.VertexFormat(), stackPartitions : undefined, slicePartitions : undefined }; /** * Retrieves an instance from a packed array. * * @param {Number[]} array The packed array. * @param {Number} [startingIndex=0] The starting index of the element to be unpacked. * @param {SphereGeometry} [result] The object into which to store the result. * @returns {SphereGeometry} The modified result parameter or a new SphereGeometry instance if one was not provided. */ SphereGeometry.unpack = function(array, startingIndex, result) { var ellipsoidGeometry = EllipsoidGeometry.EllipsoidGeometry.unpack(array, startingIndex, scratchEllipsoidGeometry); scratchOptions.vertexFormat = VertexFormat.VertexFormat.clone(ellipsoidGeometry._vertexFormat, scratchOptions.vertexFormat); scratchOptions.stackPartitions = ellipsoidGeometry._stackPartitions; scratchOptions.slicePartitions = ellipsoidGeometry._slicePartitions; if (!when.defined(result)) { scratchOptions.radius = ellipsoidGeometry._radii.x; return new SphereGeometry(scratchOptions); } Cartographic.Cartesian3.clone(ellipsoidGeometry._radii, scratchOptions.radii); result._ellipsoidGeometry = new EllipsoidGeometry.EllipsoidGeometry(scratchOptions); return result; }; /** * Computes the geometric representation of a sphere, including its vertices, indices, and a bounding sphere. * * @param {SphereGeometry} sphereGeometry A description of the sphere. * @returns {Geometry} The computed vertices and indices. */ SphereGeometry.createGeometry = function(sphereGeometry) { return EllipsoidGeometry.EllipsoidGeometry.createGeometry(sphereGeometry._ellipsoidGeometry); }; function createSphereGeometry(sphereGeometry, offset) { if (when.defined(offset)) { sphereGeometry = SphereGeometry.unpack(sphereGeometry, offset); } return SphereGeometry.createGeometry(sphereGeometry); } return createSphereGeometry; });