| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445 | /* This file is automatically rebuilt by the Cesium build process. */define(['exports', './GeometryOffsetAttribute-3e8c299c', './Transforms-323408fe', './Matrix2-69c32d33', './ComponentDatatype-b1ea011a', './defaultValue-94c3e563', './RuntimeError-c581ca93', './EllipseGeometryLibrary-84444adb', './GeometryAttribute-cb73bb3f', './GeometryAttributes-7df9bef6', './IndexDatatype-c4099fe9'], (function (exports, GeometryOffsetAttribute, Transforms, Matrix2, ComponentDatatype, defaultValue, RuntimeError, EllipseGeometryLibrary, GeometryAttribute, GeometryAttributes, IndexDatatype) { 'use strict';  const scratchCartesian1 = new Matrix2.Cartesian3();  let boundingSphereCenter = new Matrix2.Cartesian3();  function computeEllipse(options) {    const center = options.center;    boundingSphereCenter = Matrix2.Cartesian3.multiplyByScalar(      options.ellipsoid.geodeticSurfaceNormal(center, boundingSphereCenter),      options.height,      boundingSphereCenter    );    boundingSphereCenter = Matrix2.Cartesian3.add(      center,      boundingSphereCenter,      boundingSphereCenter    );    const boundingSphere = new Transforms.BoundingSphere(      boundingSphereCenter,      options.semiMajorAxis    );    const positions = EllipseGeometryLibrary.EllipseGeometryLibrary.computeEllipsePositions(      options,      false,      true    ).outerPositions;    const attributes = new GeometryAttributes.GeometryAttributes({      position: new GeometryAttribute.GeometryAttribute({        componentDatatype: ComponentDatatype.ComponentDatatype.DOUBLE,        componentsPerAttribute: 3,        values: EllipseGeometryLibrary.EllipseGeometryLibrary.raisePositionsToHeight(          positions,          options,          false        ),      }),    });    const length = positions.length / 3;    const indices = IndexDatatype.IndexDatatype.createTypedArray(length, length * 2);    let index = 0;    for (let i = 0; i < length; ++i) {      indices[index++] = i;      indices[index++] = (i + 1) % length;    }    return {      boundingSphere: boundingSphere,      attributes: attributes,      indices: indices,    };  }  const topBoundingSphere = new Transforms.BoundingSphere();  const bottomBoundingSphere = new Transforms.BoundingSphere();  function computeExtrudedEllipse(options) {    const center = options.center;    const ellipsoid = options.ellipsoid;    const semiMajorAxis = options.semiMajorAxis;    let scaledNormal = Matrix2.Cartesian3.multiplyByScalar(      ellipsoid.geodeticSurfaceNormal(center, scratchCartesian1),      options.height,      scratchCartesian1    );    topBoundingSphere.center = Matrix2.Cartesian3.add(      center,      scaledNormal,      topBoundingSphere.center    );    topBoundingSphere.radius = semiMajorAxis;    scaledNormal = Matrix2.Cartesian3.multiplyByScalar(      ellipsoid.geodeticSurfaceNormal(center, scaledNormal),      options.extrudedHeight,      scaledNormal    );    bottomBoundingSphere.center = Matrix2.Cartesian3.add(      center,      scaledNormal,      bottomBoundingSphere.center    );    bottomBoundingSphere.radius = semiMajorAxis;    let positions = EllipseGeometryLibrary.EllipseGeometryLibrary.computeEllipsePositions(      options,      false,      true    ).outerPositions;    const attributes = new GeometryAttributes.GeometryAttributes({      position: new GeometryAttribute.GeometryAttribute({        componentDatatype: ComponentDatatype.ComponentDatatype.DOUBLE,        componentsPerAttribute: 3,        values: EllipseGeometryLibrary.EllipseGeometryLibrary.raisePositionsToHeight(          positions,          options,          true        ),      }),    });    positions = attributes.position.values;    const boundingSphere = Transforms.BoundingSphere.union(      topBoundingSphere,      bottomBoundingSphere    );    let length = positions.length / 3;    if (defaultValue.defined(options.offsetAttribute)) {      let applyOffset = new Uint8Array(length);      if (options.offsetAttribute === GeometryOffsetAttribute.GeometryOffsetAttribute.TOP) {        applyOffset = GeometryOffsetAttribute.arrayFill(applyOffset, 1, 0, length / 2);      } else {        const offsetValue =          options.offsetAttribute === GeometryOffsetAttribute.GeometryOffsetAttribute.NONE ? 0 : 1;        applyOffset = GeometryOffsetAttribute.arrayFill(applyOffset, offsetValue);      }      attributes.applyOffset = new GeometryAttribute.GeometryAttribute({        componentDatatype: ComponentDatatype.ComponentDatatype.UNSIGNED_BYTE,        componentsPerAttribute: 1,        values: applyOffset,      });    }    let numberOfVerticalLines = defaultValue.defaultValue(options.numberOfVerticalLines, 16);    numberOfVerticalLines = ComponentDatatype.CesiumMath.clamp(      numberOfVerticalLines,      0,      length / 2    );    const indices = IndexDatatype.IndexDatatype.createTypedArray(      length,      length * 2 + numberOfVerticalLines * 2    );    length /= 2;    let index = 0;    let i;    for (i = 0; i < length; ++i) {      indices[index++] = i;      indices[index++] = (i + 1) % length;      indices[index++] = i + length;      indices[index++] = ((i + 1) % length) + length;    }    let numSide;    if (numberOfVerticalLines > 0) {      const numSideLines = Math.min(numberOfVerticalLines, length);      numSide = Math.round(length / numSideLines);      const maxI = Math.min(numSide * numberOfVerticalLines, length);      for (i = 0; i < maxI; i += numSide) {        indices[index++] = i;        indices[index++] = i + length;      }    }    return {      boundingSphere: boundingSphere,      attributes: attributes,      indices: indices,    };  }  /**   * A description of the outline of an ellipse on an ellipsoid.   *   * @alias EllipseOutlineGeometry   * @constructor   *   * @param {Object} options Object with the following properties:   * @param {Cartesian3} options.center The ellipse's center point in the fixed frame.   * @param {Number} options.semiMajorAxis The length of the ellipse's semi-major axis in meters.   * @param {Number} options.semiMinorAxis The length of the ellipse's semi-minor axis in meters.   * @param {Ellipsoid} [options.ellipsoid=Ellipsoid.WGS84] The ellipsoid the ellipse will be on.   * @param {Number} [options.height=0.0] The distance in meters between the ellipse and the ellipsoid surface.   * @param {Number} [options.extrudedHeight] The distance in meters between the ellipse's extruded face and the ellipsoid surface.   * @param {Number} [options.rotation=0.0] The angle from north (counter-clockwise) in radians.   * @param {Number} [options.granularity=0.02] The angular distance between points on the ellipse in radians.   * @param {Number} [options.numberOfVerticalLines=16] Number of lines to draw between the top and bottom surface of an extruded ellipse.   *   * @exception {DeveloperError} semiMajorAxis and semiMinorAxis must be greater than zero.   * @exception {DeveloperError} semiMajorAxis must be greater than or equal to the semiMinorAxis.   * @exception {DeveloperError} granularity must be greater than zero.   *   * @see EllipseOutlineGeometry.createGeometry   *   * @example   * const ellipse = new Cesium.EllipseOutlineGeometry({   *   center : Cesium.Cartesian3.fromDegrees(-75.59777, 40.03883),   *   semiMajorAxis : 500000.0,   *   semiMinorAxis : 300000.0,   *   rotation : Cesium.Math.toRadians(60.0)   * });   * const geometry = Cesium.EllipseOutlineGeometry.createGeometry(ellipse);   */  function EllipseOutlineGeometry(options) {    options = defaultValue.defaultValue(options, defaultValue.defaultValue.EMPTY_OBJECT);    const center = options.center;    const ellipsoid = defaultValue.defaultValue(options.ellipsoid, Matrix2.Ellipsoid.WGS84);    const semiMajorAxis = options.semiMajorAxis;    const semiMinorAxis = options.semiMinorAxis;    const granularity = defaultValue.defaultValue(      options.granularity,      ComponentDatatype.CesiumMath.RADIANS_PER_DEGREE    );    //>>includeStart('debug', pragmas.debug);    if (!defaultValue.defined(center)) {      throw new RuntimeError.DeveloperError("center is required.");    }    if (!defaultValue.defined(semiMajorAxis)) {      throw new RuntimeError.DeveloperError("semiMajorAxis is required.");    }    if (!defaultValue.defined(semiMinorAxis)) {      throw new RuntimeError.DeveloperError("semiMinorAxis is required.");    }    if (semiMajorAxis < semiMinorAxis) {      throw new RuntimeError.DeveloperError(        "semiMajorAxis must be greater than or equal to the semiMinorAxis."      );    }    if (granularity <= 0.0) {      throw new RuntimeError.DeveloperError("granularity must be greater than zero.");    }    //>>includeEnd('debug');    const height = defaultValue.defaultValue(options.height, 0.0);    const extrudedHeight = defaultValue.defaultValue(options.extrudedHeight, height);    this._center = Matrix2.Cartesian3.clone(center);    this._semiMajorAxis = semiMajorAxis;    this._semiMinorAxis = semiMinorAxis;    this._ellipsoid = Matrix2.Ellipsoid.clone(ellipsoid);    this._rotation = defaultValue.defaultValue(options.rotation, 0.0);    this._height = Math.max(extrudedHeight, height);    this._granularity = granularity;    this._extrudedHeight = Math.min(extrudedHeight, height);    this._numberOfVerticalLines = Math.max(      defaultValue.defaultValue(options.numberOfVerticalLines, 16),      0    );    this._offsetAttribute = options.offsetAttribute;    this._workerName = "createEllipseOutlineGeometry";  }  /**   * The number of elements used to pack the object into an array.   * @type {Number}   */  EllipseOutlineGeometry.packedLength =    Matrix2.Cartesian3.packedLength + Matrix2.Ellipsoid.packedLength + 8;  /**   * Stores the provided instance into the provided array.   *   * @param {EllipseOutlineGeometry} 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   */  EllipseOutlineGeometry.pack = function (value, array, startingIndex) {    //>>includeStart('debug', pragmas.debug);    if (!defaultValue.defined(value)) {      throw new RuntimeError.DeveloperError("value is required");    }    if (!defaultValue.defined(array)) {      throw new RuntimeError.DeveloperError("array is required");    }    //>>includeEnd('debug');    startingIndex = defaultValue.defaultValue(startingIndex, 0);    Matrix2.Cartesian3.pack(value._center, array, startingIndex);    startingIndex += Matrix2.Cartesian3.packedLength;    Matrix2.Ellipsoid.pack(value._ellipsoid, array, startingIndex);    startingIndex += Matrix2.Ellipsoid.packedLength;    array[startingIndex++] = value._semiMajorAxis;    array[startingIndex++] = value._semiMinorAxis;    array[startingIndex++] = value._rotation;    array[startingIndex++] = value._height;    array[startingIndex++] = value._granularity;    array[startingIndex++] = value._extrudedHeight;    array[startingIndex++] = value._numberOfVerticalLines;    array[startingIndex] = defaultValue.defaultValue(value._offsetAttribute, -1);    return array;  };  const scratchCenter = new Matrix2.Cartesian3();  const scratchEllipsoid = new Matrix2.Ellipsoid();  const scratchOptions = {    center: scratchCenter,    ellipsoid: scratchEllipsoid,    semiMajorAxis: undefined,    semiMinorAxis: undefined,    rotation: undefined,    height: undefined,    granularity: undefined,    extrudedHeight: undefined,    numberOfVerticalLines: undefined,    offsetAttribute: 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 {EllipseOutlineGeometry} [result] The object into which to store the result.   * @returns {EllipseOutlineGeometry} The modified result parameter or a new EllipseOutlineGeometry instance if one was not provided.   */  EllipseOutlineGeometry.unpack = function (array, startingIndex, result) {    //>>includeStart('debug', pragmas.debug);    if (!defaultValue.defined(array)) {      throw new RuntimeError.DeveloperError("array is required");    }    //>>includeEnd('debug');    startingIndex = defaultValue.defaultValue(startingIndex, 0);    const center = Matrix2.Cartesian3.unpack(array, startingIndex, scratchCenter);    startingIndex += Matrix2.Cartesian3.packedLength;    const ellipsoid = Matrix2.Ellipsoid.unpack(array, startingIndex, scratchEllipsoid);    startingIndex += Matrix2.Ellipsoid.packedLength;    const semiMajorAxis = array[startingIndex++];    const semiMinorAxis = array[startingIndex++];    const rotation = array[startingIndex++];    const height = array[startingIndex++];    const granularity = array[startingIndex++];    const extrudedHeight = array[startingIndex++];    const numberOfVerticalLines = array[startingIndex++];    const offsetAttribute = array[startingIndex];    if (!defaultValue.defined(result)) {      scratchOptions.height = height;      scratchOptions.extrudedHeight = extrudedHeight;      scratchOptions.granularity = granularity;      scratchOptions.rotation = rotation;      scratchOptions.semiMajorAxis = semiMajorAxis;      scratchOptions.semiMinorAxis = semiMinorAxis;      scratchOptions.numberOfVerticalLines = numberOfVerticalLines;      scratchOptions.offsetAttribute =        offsetAttribute === -1 ? undefined : offsetAttribute;      return new EllipseOutlineGeometry(scratchOptions);    }    result._center = Matrix2.Cartesian3.clone(center, result._center);    result._ellipsoid = Matrix2.Ellipsoid.clone(ellipsoid, result._ellipsoid);    result._semiMajorAxis = semiMajorAxis;    result._semiMinorAxis = semiMinorAxis;    result._rotation = rotation;    result._height = height;    result._granularity = granularity;    result._extrudedHeight = extrudedHeight;    result._numberOfVerticalLines = numberOfVerticalLines;    result._offsetAttribute =      offsetAttribute === -1 ? undefined : offsetAttribute;    return result;  };  /**   * Computes the geometric representation of an outline of an ellipse on an ellipsoid, including its vertices, indices, and a bounding sphere.   *   * @param {EllipseOutlineGeometry} ellipseGeometry A description of the ellipse.   * @returns {Geometry|undefined} The computed vertices and indices.   */  EllipseOutlineGeometry.createGeometry = function (ellipseGeometry) {    if (      ellipseGeometry._semiMajorAxis <= 0.0 ||      ellipseGeometry._semiMinorAxis <= 0.0    ) {      return;    }    const height = ellipseGeometry._height;    const extrudedHeight = ellipseGeometry._extrudedHeight;    const extrude = !ComponentDatatype.CesiumMath.equalsEpsilon(      height,      extrudedHeight,      0,      ComponentDatatype.CesiumMath.EPSILON2    );    ellipseGeometry._center = ellipseGeometry._ellipsoid.scaleToGeodeticSurface(      ellipseGeometry._center,      ellipseGeometry._center    );    const options = {      center: ellipseGeometry._center,      semiMajorAxis: ellipseGeometry._semiMajorAxis,      semiMinorAxis: ellipseGeometry._semiMinorAxis,      ellipsoid: ellipseGeometry._ellipsoid,      rotation: ellipseGeometry._rotation,      height: height,      granularity: ellipseGeometry._granularity,      numberOfVerticalLines: ellipseGeometry._numberOfVerticalLines,    };    let geometry;    if (extrude) {      options.extrudedHeight = extrudedHeight;      options.offsetAttribute = ellipseGeometry._offsetAttribute;      geometry = computeExtrudedEllipse(options);    } else {      geometry = computeEllipse(options);      if (defaultValue.defined(ellipseGeometry._offsetAttribute)) {        const length = geometry.attributes.position.values.length;        const applyOffset = new Uint8Array(length / 3);        const offsetValue =          ellipseGeometry._offsetAttribute === GeometryOffsetAttribute.GeometryOffsetAttribute.NONE            ? 0            : 1;        GeometryOffsetAttribute.arrayFill(applyOffset, offsetValue);        geometry.attributes.applyOffset = new GeometryAttribute.GeometryAttribute({          componentDatatype: ComponentDatatype.ComponentDatatype.UNSIGNED_BYTE,          componentsPerAttribute: 1,          values: applyOffset,        });      }    }    return new GeometryAttribute.Geometry({      attributes: geometry.attributes,      indices: geometry.indices,      primitiveType: GeometryAttribute.PrimitiveType.LINES,      boundingSphere: geometry.boundingSphere,      offsetAttribute: ellipseGeometry._offsetAttribute,    });  };  exports.EllipseOutlineGeometry = EllipseOutlineGeometry;}));
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