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167 lines
5.6 KiB
C
167 lines
5.6 KiB
C
3 weeks ago
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/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkImageAccumulate.h
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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/**
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* @class vtkImageAccumulate
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* @brief Generalized histograms up to 3 dimensions.
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*
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* vtkImageAccumulate - This filter divides component space into
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* discrete bins. It then counts the number of pixels associated
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* with each bin.
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* The dimensionality of the output depends on how many components the
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* input pixels have. An input images with N components per pixels will
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* result in an N-dimensional histogram, where N can be 1, 2, or 3.
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* The input can be any type, but the output is always int.
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* Some statistics are computed on the pixel values at the same time.
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* The SetStencil and ReverseStencil functions allow the statistics to be
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* computed on an arbitrary portion of the input data.
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* See the documentation for vtkImageStencilData for more information.
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*
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* This filter also supports ignoring pixels with value equal to 0. Using this
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* option with vtkImageMask may result in results being slightly off since 0
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* could be a valid value from your input.
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*
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*/
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#ifndef vtkImageAccumulate_h
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#define vtkImageAccumulate_h
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#include "vtkImageAlgorithm.h"
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#include "vtkImagingStatisticsModule.h" // For export macro
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class vtkImageStencilData;
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class VTKIMAGINGSTATISTICS_EXPORT vtkImageAccumulate : public vtkImageAlgorithm
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{
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public:
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static vtkImageAccumulate* New();
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vtkTypeMacro(vtkImageAccumulate, vtkImageAlgorithm);
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void PrintSelf(ostream& os, vtkIndent indent) override;
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//@{
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/**
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* Set/Get - The component spacing is the dimension of each bin.
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* This ends up being the spacing of the output "image".
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* If the number of input scalar components are less than three,
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* then some of these spacing values are ignored.
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* For a 1D histogram with 10 bins spanning the values 1000 to 2000,
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* this spacing should be set to 100, 0, 0.
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* Initial value is (1.0,1.0,1.0).
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*/
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vtkSetVector3Macro(ComponentSpacing, double);
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vtkGetVector3Macro(ComponentSpacing, double);
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//@}
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//@{
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/**
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* Set/Get - The component origin is the location of bin (0, 0, 0).
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* Note that if the Component extent does not include the value (0,0,0),
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* then this origin bin will not actually be in the output.
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* The origin of the output ends up being the same as the componenet origin.
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* For a 1D histogram with 10 bins spanning the values 1000 to 2000,
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* this origin should be set to 1000, 0, 0.
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* Initial value is (0.0,0.0,0.0).
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*/
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vtkSetVector3Macro(ComponentOrigin, double);
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vtkGetVector3Macro(ComponentOrigin, double);
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//@}
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//@{
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/**
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* Set/Get - The component extent sets the number/extent of the bins.
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* For a 1D histogram with 10 bins spanning the values 1000 to 2000,
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* this extent should be set to 0, 9, 0, 0, 0, 0.
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* The extent specifies inclusive min/max values.
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* This implies that the top extent should be set to the number of bins - 1.
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* Initial value is (0,255,0,0,0,0)
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*/
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void SetComponentExtent(int extent[6]);
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void SetComponentExtent(int minX, int maxX, int minY, int maxY, int minZ, int maxZ);
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void GetComponentExtent(int extent[6]);
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int* GetComponentExtent() VTK_SIZEHINT(6) { return this->ComponentExtent; }
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//@}
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//@{
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/**
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* Use a stencil to specify which voxels to accumulate.
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* Backcompatible methods.
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* It set and get the stencil on input port 1.
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* Initial value is nullptr.
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*/
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void SetStencilData(vtkImageStencilData* stencil);
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vtkImageStencilData* GetStencil();
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//@}
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//@{
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/**
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* Reverse the stencil. Initial value is false.
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*/
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vtkSetClampMacro(ReverseStencil, vtkTypeBool, 0, 1);
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vtkBooleanMacro(ReverseStencil, vtkTypeBool);
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vtkGetMacro(ReverseStencil, vtkTypeBool);
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//@}
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//@{
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/**
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* Get the statistics information for the data.
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* The values only make sense after the execution of the filter.
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* Initial values are 0.
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*/
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vtkGetVector3Macro(Min, double);
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vtkGetVector3Macro(Max, double);
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vtkGetVector3Macro(Mean, double);
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vtkGetVector3Macro(StandardDeviation, double);
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vtkGetMacro(VoxelCount, vtkIdType);
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//@}
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//@{
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/**
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* Should the data with value 0 be ignored? Initial value is false.
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*/
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vtkSetClampMacro(IgnoreZero, vtkTypeBool, 0, 1);
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vtkGetMacro(IgnoreZero, vtkTypeBool);
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vtkBooleanMacro(IgnoreZero, vtkTypeBool);
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//@}
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protected:
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vtkImageAccumulate();
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~vtkImageAccumulate() override;
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double ComponentSpacing[3];
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double ComponentOrigin[3];
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int ComponentExtent[6];
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int RequestUpdateExtent(vtkInformation*, vtkInformationVector**, vtkInformationVector*) override;
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int RequestInformation(vtkInformation*, vtkInformationVector**, vtkInformationVector*) override;
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int RequestData(vtkInformation* request, vtkInformationVector** inputVector,
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vtkInformationVector* outputVector) override;
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vtkTypeBool IgnoreZero;
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double Min[3];
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double Max[3];
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double Mean[3];
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double StandardDeviation[3];
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vtkIdType VoxelCount;
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vtkTypeBool ReverseStencil;
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int FillInputPortInformation(int port, vtkInformation* info) override;
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private:
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vtkImageAccumulate(const vtkImageAccumulate&) = delete;
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void operator=(const vtkImageAccumulate&) = delete;
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};
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#endif
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