// java wrapper for vtkQuadraticPolygon object // package vtk; import vtk.*; public class vtkQuadraticPolygon extends vtkNonLinearCell { private native int IsTypeOf_0(String id0); public int IsTypeOf(String id0) { return IsTypeOf_0(id0); } private native int IsA_1(String id0); public int IsA(String id0) { return IsA_1(id0); } private native int GetCellType_2(); public int GetCellType() { return GetCellType_2(); } private native int GetCellDimension_3(); public int GetCellDimension() { return GetCellDimension_3(); } private native int GetNumberOfEdges_4(); public int GetNumberOfEdges() { return GetNumberOfEdges_4(); } private native int GetNumberOfFaces_5(); public int GetNumberOfFaces() { return GetNumberOfFaces_5(); } private native long GetEdge_6(int id0); public vtkCell GetEdge(int id0) { long temp = GetEdge_6(id0); if (temp == 0) return null; return (vtkCell)vtkObjectBase.JAVA_OBJECT_MANAGER.getJavaObject(temp); } private native long GetFace_7(int id0); public vtkCell GetFace(int id0) { long temp = GetFace_7(id0); if (temp == 0) return null; return (vtkCell)vtkObjectBase.JAVA_OBJECT_MANAGER.getJavaObject(temp); } private native int IsPrimaryCell_8(); public int IsPrimaryCell() { return IsPrimaryCell_8(); } private native int CellBoundary_9(int id0,double id1[],vtkIdList id2); public int CellBoundary(int id0,double id1[],vtkIdList id2) { return CellBoundary_9(id0,id1,id2); } private native void Contour_10(double id0,vtkDataArray id1,vtkIncrementalPointLocator id2,vtkCellArray id3,vtkCellArray id4,vtkCellArray id5,vtkPointData id6,vtkPointData id7,vtkCellData id8,int id9,vtkCellData id10); public void Contour(double id0,vtkDataArray id1,vtkIncrementalPointLocator id2,vtkCellArray id3,vtkCellArray id4,vtkCellArray id5,vtkPointData id6,vtkPointData id7,vtkCellData id8,int id9,vtkCellData id10) { Contour_10(id0,id1,id2,id3,id4,id5,id6,id7,id8,id9,id10); } private native void Clip_11(double id0,vtkDataArray id1,vtkIncrementalPointLocator id2,vtkCellArray id3,vtkPointData id4,vtkPointData id5,vtkCellData id6,int id7,vtkCellData id8,int id9); public void Clip(double id0,vtkDataArray id1,vtkIncrementalPointLocator id2,vtkCellArray id3,vtkPointData id4,vtkPointData id5,vtkCellData id6,int id7,vtkCellData id8,int id9) { Clip_11(id0,id1,id2,id3,id4,id5,id6,id7,id8,id9); } private native void ComputeCentroid_12(vtkIdTypeArray id0,vtkPoints id1,double id2[]); public void ComputeCentroid(vtkIdTypeArray id0,vtkPoints id1,double id2[]) { ComputeCentroid_12(id0,id1,id2); } private native int Triangulate_13(vtkIdList id0); public int Triangulate(vtkIdList id0) { return Triangulate_13(id0); } private native int Triangulate_14(int id0,vtkIdList id1,vtkPoints id2); public int Triangulate(int id0,vtkIdList id1,vtkPoints id2) { return Triangulate_14(id0,id1,id2); } private native int NonDegenerateTriangulate_15(vtkIdList id0); public int NonDegenerateTriangulate(vtkIdList id0) { return NonDegenerateTriangulate_15(id0); } private native int IntersectConvex2DCells_16(vtkCell id0,vtkCell id1,double id2,double id3[],double id4[]); public int IntersectConvex2DCells(vtkCell id0,vtkCell id1,double id2,double id3[],double id4[]) { return IntersectConvex2DCells_16(id0,id1,id2,id3,id4); } private native boolean GetUseMVCInterpolation_17(); public boolean GetUseMVCInterpolation() { return GetUseMVCInterpolation_17(); } private native void SetUseMVCInterpolation_18(boolean id0); public void SetUseMVCInterpolation(boolean id0) { SetUseMVCInterpolation_18(id0); } public vtkQuadraticPolygon() { super(); } public vtkQuadraticPolygon(long id) { super(id); } public native long VTKInit(); }