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206 lines
7.6 KiB
C++
206 lines
7.6 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtk3DLinearGridCrinkleExtractor.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 vtk3DLinearGridCrinkleExtractor
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* @brief fast extraction of cells intersected by a plane
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*
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* vtk3DLinearGridCrinkleExtractor is a specialized filter that, given a
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* specified implicit function, extracts unstructured grid cells that
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* intersect the implicit function. (Since the surface of these cells roughly
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* follows the implicit function but is "bumpy", it is referred to as a
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* "crinkle" suface.) This filter operates on vtkUnstructuredGrids consisting
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* of 3D linear cells: tetrahedra, hexahedra, voxels, pyramids, and/or
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* wedges. (The cells are linear in the sense that each cell edge is a
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* straight line.) The filter is designed for high-speed, specialized
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* operation. All other cell types are skipped and produce no output.
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*
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* To use this filter you must specify an input unstructured grid or
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* vtkCompositeDataSet (containing unstructured grids) and an implicit
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* function to cut with.
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*
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* The RemoveUnusedPoints data member controls whether the filter remaps the
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* input points to the output. Since the algorithm simply extracts a subset
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* of the original data (points and cells), it is possible simply to pass the
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* input points to the output, which is much faster (factor of ~2X) then
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* mapping the input points to the output. Of course, not removing the unused
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* points means extra points in the output dataset, but because the input
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* points are shallow copied to the output, no additional memory is consumed.
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*
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* @warning
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* When the input is of type vtkCompositeDataSet the filter will process the
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* unstructured grid(s) contained in the composite data set. As a result the
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* output of this filter is then a vtkMultiBlockDataSet containing multiple
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* vtkUnstructuredGrids. When a vtkUnstructuredGrid is provided as input the
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* output is a single vtkUnstructuredGrid.
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*
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* @warning
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* Input cells that are not of 3D linear type (tetrahedron, hexahedron,
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* wedge, pyramid, and voxel) are simply skipped and not processed.
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*
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* @warning
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* The filter is templated on types of input and output points, and input
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* scalar type. To reduce object file bloat, only real points (float,double) are
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* processed.
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*
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* @warning
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* This class has been threaded with vtkSMPTools. Using TBB or other
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* non-sequential type (set in the CMake variable
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* VTK_SMP_IMPLEMENTATION_TYPE) may improve performance significantly.
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*
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* @warning
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* The vtkExtractGeometry filter is similar to this filter when
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* ExtractOnlyBoundaryCells is enabled.
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*
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* @sa
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* vtk3DLinearGrid vtk3DLinearGridPlaneCutter vtkExtractGeometry
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*/
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#ifndef vtk3DLinearGridCrinkleExtractor_h
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#define vtk3DLinearGridCrinkleExtractor_h
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#include "vtkDataObjectAlgorithm.h"
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#include "vtkFiltersCoreModule.h" // For export macro
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class vtkUnstructuredGrid;
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class vtkImplicitFunction;
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class VTKFILTERSCORE_EXPORT vtk3DLinearGridCrinkleExtractor : public vtkDataObjectAlgorithm
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{
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public:
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//@{
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/**
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* Standard methods for construction, type info, and printing.
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*/
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static vtk3DLinearGridCrinkleExtractor* New();
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vtkTypeMacro(vtk3DLinearGridCrinkleExtractor, vtkDataObjectAlgorithm);
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void PrintSelf(ostream& os, vtkIndent indent) override;
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//@}
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//@{
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/**
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* Specify the implicit function which is used to select the output cell
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* faces. Note that the implicit function invocation must be thread
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* safe. Also, there is a fast path for vtkPlane implicit functions.
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*/
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virtual void SetImplicitFunction(vtkImplicitFunction*);
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vtkGetObjectMacro(ImplicitFunction, vtkImplicitFunction);
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//@}
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//@{
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/**
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* Indicate whether to copy input point data/attributes onto the output
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* points. By default this option is on.
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*/
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vtkSetMacro(CopyPointData, bool);
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vtkGetMacro(CopyPointData, bool);
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vtkBooleanMacro(CopyPointData, bool);
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//@}
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//@{
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/**
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* Indicate whether to copy input cell data/attributes onto the output
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* cells. By default this option is off.
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*/
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vtkSetMacro(CopyCellData, bool);
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vtkGetMacro(CopyCellData, bool);
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vtkBooleanMacro(CopyCellData, bool);
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//@}
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//@{
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/**
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* Indicate whether to eliminate unused output points. When this flag is
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* disabled, the input points and associated point data are simply shallow
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* copied to the output (which improves performance). When enabled, any
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* points that are not used by the output cells are not sent to the output,
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* nor is associated point data copied. By default this option is disabled.
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* Removing unused points does have a significant performance impact.
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*/
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vtkSetMacro(RemoveUnusedPoints, bool);
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vtkGetMacro(RemoveUnusedPoints, bool);
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vtkBooleanMacro(RemoveUnusedPoints, bool);
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//@}
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/**
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* Overloaded GetMTime() because of delegation to the helper
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* vtkImplicitFunction.
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*/
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vtkMTimeType GetMTime() override;
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//@{
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/**
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* Set/get the desired precision for the output points. See the
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* documentation for the vtkAlgorithm::Precision enum for an explanation of
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* the available precision settings.
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*/
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void SetOutputPointsPrecision(int precision);
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int GetOutputPointsPrecision() const;
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//@}
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//@{
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/**
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* Force sequential processing (i.e. single thread) of the crinkle cut
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* process. By default, sequential processing is off. Note this flag only
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* applies if the class has been compiled with VTK_SMP_IMPLEMENTATION_TYPE
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* set to something other than Sequential. (If set to Sequential, then the
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* filter always runs in serial mode.) This flag is typically used for
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* benchmarking purposes.
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*/
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vtkSetMacro(SequentialProcessing, bool);
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vtkGetMacro(SequentialProcessing, bool);
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vtkBooleanMacro(SequentialProcessing, bool);
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//@}
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/**
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* Return the number of threads actually used during execution. This is
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* valid only after algorithm execution.
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*/
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int GetNumberOfThreadsUsed() { return this->NumberOfThreadsUsed; }
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/**
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* Returns true if the data object passed in is fully supported by this
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* filter, i.e., all cell types are linear. For composite datasets, this
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* means all dataset leaves have only linear cell types that can be processed
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* by this filter.
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*/
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static bool CanFullyProcessDataObject(vtkDataObject* object);
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protected:
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vtk3DLinearGridCrinkleExtractor();
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~vtk3DLinearGridCrinkleExtractor() override;
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vtkImplicitFunction* ImplicitFunction;
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bool RemoveUnusedPoints;
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bool CopyPointData;
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bool CopyCellData;
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int OutputPointsPrecision;
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bool SequentialProcessing;
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int NumberOfThreadsUsed;
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// Process the data: input unstructured grid and output an unstructured grid
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int ProcessPiece(vtkUnstructuredGrid* input, vtkImplicitFunction* f, vtkUnstructuredGrid* grid);
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int RequestDataObject(vtkInformation* request, vtkInformationVector** inputVector,
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vtkInformationVector* outputVector) override;
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int RequestData(vtkInformation* request, vtkInformationVector** inputVector,
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vtkInformationVector* outputVector) override;
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int FillInputPortInformation(int port, vtkInformation* info) override;
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private:
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vtk3DLinearGridCrinkleExtractor(const vtk3DLinearGridCrinkleExtractor&) = delete;
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void operator=(const vtk3DLinearGridCrinkleExtractor&) = delete;
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};
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#endif
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