qd-changjing/public/static/Build/CesiumUnminified/Workers/CylinderGeometry-2bf20aa7.j...

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{"version":3,"file":"CylinderGeometry-2bf20aa7.js","sources":["../../../../Source/Core/CylinderGeometry.js"],"sourcesContent":["import arrayFill from \"./arrayFill.js\";\nimport BoundingSphere from \"./BoundingSphere.js\";\nimport Cartesian2 from \"./Cartesian2.js\";\nimport Cartesian3 from \"./Cartesian3.js\";\nimport ComponentDatatype from \"./ComponentDatatype.js\";\nimport CylinderGeometryLibrary from \"./CylinderGeometryLibrary.js\";\nimport defaultValue from \"./defaultValue.js\";\nimport defined from \"./defined.js\";\nimport DeveloperError from \"./DeveloperError.js\";\nimport Geometry from \"./Geometry.js\";\nimport GeometryAttribute from \"./GeometryAttribute.js\";\nimport GeometryAttributes from \"./GeometryAttributes.js\";\nimport GeometryOffsetAttribute from \"./GeometryOffsetAttribute.js\";\nimport IndexDatatype from \"./IndexDatatype.js\";\nimport CesiumMath from \"./Math.js\";\nimport PrimitiveType from \"./PrimitiveType.js\";\nimport VertexFormat from \"./VertexFormat.js\";\n\nconst radiusScratch = new Cartesian2();\nconst normalScratch = new Cartesian3();\nconst bitangentScratch = new Cartesian3();\nconst tangentScratch = new Cartesian3();\nconst positionScratch = new Cartesian3();\n\n/**\n * A description of a cylinder.\n *\n * @alias CylinderGeometry\n * @constructor\n *\n * @param {Object} options Object with the following properties:\n * @param {Number} options.length The length of the cylinder.\n * @param {Number} options.topRadius The radius of the top of the cylinder.\n * @param {Number} options.bottomRadius The radius of the bottom of the cylinder.\n * @param {Number} [options.slices=128] The number of edges around the perimeter of the cylinder.\n * @param {VertexFormat} [options.vertexFormat=VertexFormat.DEFAULT] The vertex attributes to be computed.\n *\n * @exception {DeveloperError} options.slices must be greater than or equal to 3.\n *\n * @see CylinderGeometry.createGeometry\n *\n * @example\n * // create cylinder geometry\n * const cylinder = new Cesium.CylinderGeometry({\n * length: 200000,\n * topRadius: 80000,\n * bottomRadius: 200000,\n * });\n * const geometry = Cesium.CylinderGeometry.createGeometry(cylinder);\n */\nfunction CylinderGeometry(options) {\n options = defaultValue(options, defaultValue.EMPTY_OBJECT);\n\n const length = options.length;\n const topRadius = options.topRadius;\n const bottomRadius = options.bottomRadius;\n const vertexFormat = defaultValue(options.vertexFormat, VertexFormat.DEFAULT);\n const slices = defaultValue(options.slices, 128);\n\n //>>includeStart('debug', pragmas.debug);\n if (!defined(length)) {\n throw new DeveloperError(\"options.length must be defined.\");\n }\n if (!defined(topRadius)) {\n throw new DeveloperError(\"options.topRadius must be defined.\");\n }\n if (!defined(bottomRadius)) {\n throw new DeveloperError(\"options.bottomRadius must be defined.\");\n }\n if (slices < 3) {\n throw new DeveloperError(\n \"options.slices must be greater than or equal to 3.\"\n );\n }\n if (\n defined(options.offsetAttribute) &&\n options.offsetAttribute === GeometryOffsetAttribute.TOP\n ) {\n throw new DeveloperError(\n \"GeometryOffsetAttribute.TOP is not a supported options.offsetAttribute for this geometry.\"\n );\n }\n //>>includeEnd('debug');\n\n this._length = length;\n this._topRadius = topRadius;\n this._bottomRadius = bottomRadius;\n this._vertexFormat = VertexFormat.clone(vertexFormat);\n this._slices = slices;\n this._offsetAttribute = options.offsetAttribute;\n this._workerName = \"createCylinderGeometry\";\n}\n\n/**\n * The number of elements used to pack the object into an array.\n * @type {Number}\n */\nCylinderGeometry.packedLength = VertexFormat.packedLength + 5;\n\n/**\n * Stores the provided instance into the provided array.\n *\n * @param {CylinderGeometry} value The value to pack.\n * @param {Number[]} array The array to pack into.\n * @param {Number} [startingIndex=0] The index into the array at which to start packing the elements.\n *\n * @returns {Number[]} The array that was packed into\n */\nCylinderGeometry.pack = function (value, array, startingIndex) {\n //>>includeStart('debug', pragmas.debug);\n if (!defined(value)) {\n throw new DeveloperError(\"value is required\");\n }\n if (!defined(array)) {\n throw new DeveloperError(\"array is required\");\n }\n //>>includeEnd('debug');\n\n startingIndex = defaultValue(startingIndex, 0);\n\n VertexFormat.pack(value._vertexFormat, array, startingIndex);\n startingIndex += VertexFormat.packedLength;\n\n array[startingIndex++] = value._length;\n array[startingIndex++] = value._topRadius;\n array[startingIndex++] = value._bottomRadius;\n array[startingIndex++] = value._slices;\n array[startingIndex] = defaultValue(value._offsetAttribute, -1);\n\n return array;\n};\n\nconst scratchVertexFormat = new VertexFormat();\nconst scratchOptions = {\n vertexFormat: scratchVertexFormat,\n length: undefined,\n topRadius: undefined,\n bottomRadius: undefined,\n slices: undefined,\n offsetAttribute: undefined,\n};\n\n/**\n * Retrieves an instance from a packed array.\n *\n * @param {Number[]} array The packed array.\n * @param {Number} [startingIndex=0] The starting index of the element to be unpacked.\n * @param {CylinderGeometry} [result] The object into which to store the result.\n * @returns {CylinderGeometry} The modified result parameter or a new CylinderGeometry instance if one was not provided.\n */\nCylinderGeometry.unpack = function (array, startingIndex, result) {\n //>>includeStart('debug', pragmas.debug);\n if (!defined(array)) {\n throw new DeveloperError(\"array is required\");\n }\n //>>includeEnd('debug');\n\n startingIndex = defaultValue(startingIndex, 0);\n\n const vertexFormat = VertexFormat.unpack(\n array,\n startingIndex,\n scratchVertexFormat\n );\n startingIndex += VertexFormat.packedLength;\n\n const length = array[startingIndex++];\n const topRadius = array[startingIndex++];\n const bottomRadius = array[startingIndex++];\n const slices = array[startingIndex++];\n const offsetAttribute = array[startingIndex];\n\n if (!defined(result)) {\n scratchOptions.length = length;\n scratchOptions.topRadius = topRadius;\n scratchOptions.bottomRadius = bottomRadius;\n scratchOptions.slices = slices;\n scratchOptions.offsetAttribute =\n offsetAttribute === -1 ? undefined : offsetAttribute;\n return new CylinderGeometry(scratchOptions);\n }\n\n result._vertexFormat = VertexFormat.clone(vertexFormat, result._vertexFormat);\n result._length = length;\n result._topRadius = topRadius;\n result._bottomRadius = bottomRadius;\n result._slices = slices;\n result._offsetAttribute =\n offsetAttribute === -1 ? undefined : offsetAttribute;\n\n return result;\n};\n\n/**\n * Computes the geometric representation of a cylinder, including its vertices, indices, and a bounding sphere.\n *\n * @param {CylinderGeometry} cylinderGeometry A description of the cylinder.\n * @returns {Geometry|undefined} The computed vertices and indices.\n */\nCylinderGeometry.createGeometry = function (cylinderGeometry) {\n let length = cylinderGeometry._length;\n const topRadius = cylinderGeometry._topRadius;\n const bottomRadius = cylinderGeometry._bottomRadius;\n const vertexFormat = cylinderGeometry._vertexFormat;\n const slices = cylinderGeometry._slices;\n\n if (\n length <= 0 ||\n topRadius < 0 ||\n bottomRadius < 0 ||\n (topRadius === 0 && bottomRadius === 0)\n ) {\n return;\n }\n\n const twoSlices = slices + slices;\n const threeSlices = slices + twoSlices;\n const numVertices = twoSlices + twoSlices;\n\n const positions = CylinderGeometryLibrary.computePositions(\n length,\n topRadius,\n bottomRadius,\n slices,\n true\n );\n\n const st = vertexFormat.st ? new Float32Array(numVertices * 2) : undefined;\n const normals = vertexFormat.normal\n ? new Float32Array(numVertices * 3)\n : undefined;\n const tangents = vertexFormat.tangent\n ? new Float32Array(numVertices * 3)\n : undefined;\n const bitangents = vertexFormat.bitangent\n ? new Float32Array(numVertices * 3)\n : undefined;\n\n let i;\n const computeNormal =\n vertexFormat.normal || vertexFormat.tangent || vertexFormat.bitangent;\n\n if (computeNormal) {\n const computeTangent = vertexFormat.tangent || vertexFormat.bitangent;\n\n let normalIndex = 0;\n let tangentIndex = 0;\n let bitangentIndex = 0;\n\n const theta = Math.atan2(bottomRadius - topRadius, length);\n const normal = normalScratch;\n normal.z = Math.sin(theta);\n const normalScale = Math.cos(theta);\n let tangent = tangentScratch;\n let bitangent = bitangentScratch;\n\n for (i = 0; i < slices; i++) {\n const angle = (i / slices) * CesiumMath.TWO_PI;\n const x = normalScale * Math.cos(angle);\n const y = normalScale * Math.sin(angle);\n if (computeNormal) {\n normal.x = x;\n normal.y = y;\n\n if (computeTangent) {\n tangent = Cartesian3.normalize(\n Cartesian3.cross(Cartesian3.UNIT_Z, normal, tangent),\n tangent\n );\n }\n\n if (vertexFormat.normal) {\n normals[normalIndex++] = normal.x;\n normals[normalIndex++] = normal.y;\n normals[normalIndex++] = normal.z;\n normals[normalIndex++] = normal.x;\n normals[normalIndex++] = normal.y;\n normals[normalIndex++] = normal.z;\n }\n\n if (vertexFormat.tangent) {\n tangents[tangentIndex++] = tangent.x;\n tangents[tangentIndex++] = tangent.y;\n tangents[tangentIndex++] = tangent.z;\n tangents[tangentIndex++] = tangent.x;\n tangents[tangentIndex++] = tangent.y;\n tangents[tangentIndex++] = tangent.z;\n }\n\n if (vertexFormat.bitangent) {\n bitangent = Cartesian3.normalize(\n Cartesian3.cross(normal, tangent, bitangent),\n bitangent\n );\n bitangents[bitangentIndex++] = bitangent.x;\n bitangents[bitangentIndex++] = bitangent.y;\n bitangents[bitangentIndex++] = bitangent.z;\n bitangents[bitangentIndex++] = bitangent.x;\n bitangents[bitangentIndex++] = bitangent.y;\n bitangents[bitangentIndex++] = bitangent.z;\n }\n }\n }\n\n for (i = 0; i < slices; i++) {\n if (vertexFormat.normal) {\n normals[normalIndex++] = 0;\n normals[normalIndex++] = 0;\n normals[normalIndex++] = -1;\n }\n if (vertexFormat.tangent) {\n tangents[tangentIndex++] = 1;\n tangents[tangentIndex++] = 0;\n tangents[tangentIndex++] = 0;\n }\n if (vertexFormat.bitangent) {\n bitangents[bitangentIndex++] = 0;\n bitangents[bitangentIndex++] = -1;\n bitangents[bitangentIndex++] = 0;\n }\n }\n\n for (i = 0; i < slices; i++) {\n if (vertexFormat.normal) {\n normals[normalIndex++] = 0;\n normals[normalIndex++] = 0;\n normals[normalIndex++] = 1;\n }\n if (vertexFormat.tangent) {\n tangents[tangentIndex++] = 1;\n tangents[tangentIndex++] = 0;\n tangents[tangentIndex++] = 0;\n }\n if (vertexFormat.bitangent) {\n bitangents[bitangentIndex++] = 0;\n bitangents[bitangentIndex++] = 1;\n bitangents[bitangentIndex++] = 0;\n }\n }\n }\n\n const numIndices = 12 * slices - 12;\n const indices = IndexDatatype.createTypedArray(numVertices, numIndices);\n let index = 0;\n let j = 0;\n for (i = 0; i < slices - 1; i++) {\n indices[index++] = j;\n indices[index++] = j + 2;\n indices[index++] = j + 3;\n\n indices[index++] = j;\n indices[index++] = j + 3;\n indices[index++] = j + 1;\n\n j += 2;\n }\n\n indices[index++] = twoSlices - 2;\n indices[index++] = 0;\n indices[index++] = 1;\n indices[index++] = twoSlices - 2;\n indices[index++] = 1;\n indices[index++] = twoSlices - 1;\n\n for (i = 1; i < slices - 1; i++) {\n indices[index++] = twoSlices + i + 1;\n indices[index++] = twoSlices + i;\n indices[index++] = twoSlices;\n }\n\n for (i = 1; i < slices - 1; i++) {\n indices[index++] = threeSlices;\n indices[index++] = threeSlices + i;\n indices[index++] = threeSlices + i + 1;\n }\n\n let textureCoordIndex = 0;\n if (vertexFormat.st) {\n const rad = Math.max(topRadius, bottomRadius);\n for (i = 0; i < numVertices; i++) {\n const position = Cartesian3.fromArray(positions, i * 3, positionScratch);\n st[textureCoordIndex++] = (position.x + rad) / (2.0 * rad);\n st[textureCoordIndex++] = (position.y + rad) / (2.0 * rad);\n }\n }\n\n const attributes = new GeometryAttributes();\n if (vertexFormat.position) {\n attributes.position = new GeometryAttribute({\n componentDatatype: ComponentDatatype.DOUBLE,\n componentsPerAttribute: 3,\n values: positions,\n });\n }\n\n if (vertexFormat.normal) {\n attributes.normal = new GeometryAttribute({\n componentDatatype: ComponentDatatype.FLOAT,\n componentsPerAttribute: 3,\n values: normals,\n });\n }\n\n if (vertexFormat.tangent) {\n attributes.tangent = new GeometryAttribute({\n componentDatatype: ComponentDatatype.FLOAT,\n componentsPerAttribute: 3,\n values: tangents,\n });\n }\n\n if (vertexFormat.bitangent) {\n attributes.bitangent = new GeometryAttribute({\n componentDatatype: ComponentDatatype.FLOAT,\n componentsPerAttribute: 3,\n values: bitangents,\n });\n }\n\n if (vertexFormat.st) {\n attributes.st = new GeometryAttribute({\n componentDatatype: ComponentDatatype.FLOAT,\n componentsPerAttribute: 2,\n values: st,\n });\n }\n\n radiusScratch.x = 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