// java wrapper for vtkVolumeRayCastSpaceLeapingImageFilter object // package vtk; import vtk.*; public class vtkVolumeRayCastSpaceLeapingImageFilter extends vtkThreadedImageAlgorithm { 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 void SetCurrentScalars_2(vtkDataArray id0); public void SetCurrentScalars(vtkDataArray id0) { SetCurrentScalars_2(id0); } private native long GetCurrentScalars_3(); public vtkDataArray GetCurrentScalars() { long temp = GetCurrentScalars_3(); if (temp == 0) return null; return (vtkDataArray)vtkObjectBase.JAVA_OBJECT_MANAGER.getJavaObject(temp); } private native void SetIndependentComponents_4(int id0); public void SetIndependentComponents(int id0) { SetIndependentComponents_4(id0); } private native int GetIndependentComponents_5(); public int GetIndependentComponents() { return GetIndependentComponents_5(); } private native void SetComputeGradientOpacity_6(int id0); public void SetComputeGradientOpacity(int id0) { SetComputeGradientOpacity_6(id0); } private native int GetComputeGradientOpacity_7(); public int GetComputeGradientOpacity() { return GetComputeGradientOpacity_7(); } private native void ComputeGradientOpacityOn_8(); public void ComputeGradientOpacityOn() { ComputeGradientOpacityOn_8(); } private native void ComputeGradientOpacityOff_9(); public void ComputeGradientOpacityOff() { ComputeGradientOpacityOff_9(); } private native void SetComputeMinMax_10(int id0); public void SetComputeMinMax(int id0) { SetComputeMinMax_10(id0); } private native int GetComputeMinMax_11(); public int GetComputeMinMax() { return GetComputeMinMax_11(); } private native void ComputeMinMaxOn_12(); public void ComputeMinMaxOn() { ComputeMinMaxOn_12(); } private native void ComputeMinMaxOff_13(); public void ComputeMinMaxOff() { ComputeMinMaxOff_13(); } private native void SetUpdateGradientOpacityFlags_14(int id0); public void SetUpdateGradientOpacityFlags(int id0) { SetUpdateGradientOpacityFlags_14(id0); } private native int GetUpdateGradientOpacityFlags_15(); public int GetUpdateGradientOpacityFlags() { return GetUpdateGradientOpacityFlags_15(); } private native void UpdateGradientOpacityFlagsOn_16(); public void UpdateGradientOpacityFlagsOn() { UpdateGradientOpacityFlagsOn_16(); } private native void UpdateGradientOpacityFlagsOff_17(); public void UpdateGradientOpacityFlagsOff() { UpdateGradientOpacityFlagsOff_17(); } private native int GetLastMinMaxBuildTime_18(); public int GetLastMinMaxBuildTime() { return GetLastMinMaxBuildTime_18(); } private native int GetLastMinMaxFlagTime_19(); public int GetLastMinMaxFlagTime() { return GetLastMinMaxFlagTime_19(); } private native void SetTableShift_20(double id0,double id1,double id2,double id3); public void SetTableShift(double id0,double id1,double id2,double id3) { SetTableShift_20(id0,id1,id2,id3); } private native void SetTableShift_21(double id0[]); public void SetTableShift(double id0[]) { SetTableShift_21(id0); } private native double[] GetTableShift_22(); public double[] GetTableShift() { return GetTableShift_22(); } private native void SetTableScale_23(double id0,double id1,double id2,double id3); public void SetTableScale(double id0,double id1,double id2,double id3) { SetTableScale_23(id0,id1,id2,id3); } private native void SetTableScale_24(double id0[]); public void SetTableScale(double id0[]) { SetTableScale_24(id0); } private native double[] GetTableScale_25(); public double[] GetTableScale() { return GetTableScale_25(); } private native void SetTableSize_26(int id0,int id1,int id2,int id3); public void SetTableSize(int id0,int id1,int id2,int id3) { SetTableSize_26(id0,id1,id2,id3); } private native void SetTableSize_27(int id0[]); public void SetTableSize(int id0[]) { SetTableSize_27(id0); } private native int[] GetTableSize_28(); public int[] GetTableSize() { return GetTableSize_28(); } private native int GetNumberOfIndependentComponents_29(); public int GetNumberOfIndependentComponents() { return GetNumberOfIndependentComponents_29(); } private native void SetCache_30(vtkImageData id0); public void SetCache(vtkImageData id0) { SetCache_30(id0); } private native void ComputeInputExtentsForOutput_31(int id0[],int id1[],int id2[],vtkImageData id3); public void ComputeInputExtentsForOutput(int id0[],int id1[],int id2[],vtkImageData id3) { ComputeInputExtentsForOutput_31(id0,id1,id2,id3); } private native int ComputeOffset_32(int id0[],int id1[],int id2); public int ComputeOffset(int id0[],int id1[],int id2) { return ComputeOffset_32(id0,id1,id2); } public vtkVolumeRayCastSpaceLeapingImageFilter() { super(); } public vtkVolumeRayCastSpaceLeapingImageFilter(long id) { super(id); } public native long VTKInit(); }