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221 lines
7.6 KiB
C
221 lines
7.6 KiB
C
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3 weeks ago
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/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkThreshold.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 vtkThreshold
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* @brief extracts cells where scalar value in cell satisfies threshold criterion
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*
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* vtkThreshold is a filter that extracts cells from any dataset type that
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* satisfy a threshold criterion. A cell satisfies the criterion if the
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* scalar value of (every or any) point satisfies the criterion. The
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* criterion can take three forms: 1) greater than a particular value; 2)
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* less than a particular value; or 3) between two values. The output of this
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* filter is an unstructured grid.
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*
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* Note that scalar values are available from the point and cell attribute
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* data. By default, point data is used to obtain scalars, but you can
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* control this behavior. See the AttributeMode ivar below.
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*
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* By default only the first scalar value is used in the decision. Use the ComponentMode
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* and SelectedComponent ivars to control this behavior.
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*
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* @sa
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* vtkThresholdPoints vtkThresholdTextureCoords
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*/
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#ifndef vtkThreshold_h
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#define vtkThreshold_h
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#include "vtkFiltersCoreModule.h" // For export macro
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#include "vtkUnstructuredGridAlgorithm.h"
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#define VTK_ATTRIBUTE_MODE_DEFAULT 0
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#define VTK_ATTRIBUTE_MODE_USE_POINT_DATA 1
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#define VTK_ATTRIBUTE_MODE_USE_CELL_DATA 2
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// order / values are important because of the SetClampMacro
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#define VTK_COMPONENT_MODE_USE_SELECTED 0
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#define VTK_COMPONENT_MODE_USE_ALL 1
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#define VTK_COMPONENT_MODE_USE_ANY 2
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class vtkDataArray;
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class vtkIdList;
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class VTKFILTERSCORE_EXPORT vtkThreshold : public vtkUnstructuredGridAlgorithm
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{
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public:
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static vtkThreshold *New();
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vtkTypeMacro(vtkThreshold,vtkUnstructuredGridAlgorithm);
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void PrintSelf(ostream& os, vtkIndent indent) VTK_OVERRIDE;
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/**
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* Criterion is cells whose scalars are less or equal to lower threshold.
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*/
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void ThresholdByLower(double lower);
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/**
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* Criterion is cells whose scalars are greater or equal to upper threshold.
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*/
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void ThresholdByUpper(double upper);
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/**
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* Criterion is cells whose scalars are between lower and upper thresholds
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* (inclusive of the end values).
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*/
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void ThresholdBetween(double lower, double upper);
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//@{
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/**
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* Get the Upper and Lower thresholds.
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*/
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vtkGetMacro(UpperThreshold,double);
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vtkGetMacro(LowerThreshold,double);
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//@}
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//@{
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/**
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* Control how the filter works with scalar point data and cell attribute
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* data. By default (AttributeModeToDefault), the filter will use point
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* data, and if no point data is available, then cell data is
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* used. Alternatively you can explicitly set the filter to use point data
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* (AttributeModeToUsePointData) or cell data (AttributeModeToUseCellData).
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*/
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vtkSetMacro(AttributeMode,int);
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vtkGetMacro(AttributeMode,int);
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void SetAttributeModeToDefault()
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{this->SetAttributeMode(VTK_ATTRIBUTE_MODE_DEFAULT);};
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void SetAttributeModeToUsePointData()
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{this->SetAttributeMode(VTK_ATTRIBUTE_MODE_USE_POINT_DATA);};
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void SetAttributeModeToUseCellData()
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{this->SetAttributeMode(VTK_ATTRIBUTE_MODE_USE_CELL_DATA);};
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const char *GetAttributeModeAsString();
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//@}
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//@{
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/**
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* Control how the decision of in / out is made with multi-component data.
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* The choices are to use the selected component (specified in the
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* SelectedComponent ivar), or to look at all components. When looking at
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* all components, the evaluation can pass if all the components satisfy
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* the rule (UseAll) or if any satisfy is (UseAny). The default value is
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* UseSelected.
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*/
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vtkSetClampMacro(ComponentMode,int,
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VTK_COMPONENT_MODE_USE_SELECTED,
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VTK_COMPONENT_MODE_USE_ANY);
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vtkGetMacro(ComponentMode,int);
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void SetComponentModeToUseSelected()
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{this->SetComponentMode(VTK_COMPONENT_MODE_USE_SELECTED);};
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void SetComponentModeToUseAll()
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{this->SetComponentMode(VTK_COMPONENT_MODE_USE_ALL);};
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void SetComponentModeToUseAny()
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{this->SetComponentMode(VTK_COMPONENT_MODE_USE_ANY);};
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const char *GetComponentModeAsString();
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//@}
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//@{
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/**
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* When the component mode is UseSelected, this ivar indicated the selected
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* component. The default value is 0.
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*/
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vtkSetClampMacro(SelectedComponent,int,0,VTK_INT_MAX);
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vtkGetMacro(SelectedComponent,int);
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//@}
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//@{
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/**
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* If using scalars from point data, all scalars for all points in a cell
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* must satisfy the threshold criterion if AllScalars is set. Otherwise,
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* just a single scalar value satisfying the threshold criterion enables
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* will extract the cell.
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*/
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vtkSetMacro(AllScalars,int);
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vtkGetMacro(AllScalars,int);
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vtkBooleanMacro(AllScalars,int);
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//@}
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//@{
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/**
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* If this is on (default is off), we will use the continuous interval
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* [minimum cell scalar, maxmimum cell scalar] to intersect the threshold bound
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* , rather than the set of discrete scalar values from the vertices
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* *WARNING*: For higher order cells, the scalar range of the cell is
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* not the same as the vertex scalar interval used here, so the
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* result will not be accurate.
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*/
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vtkSetMacro(UseContinuousCellRange,int);
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vtkGetMacro(UseContinuousCellRange,int);
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vtkBooleanMacro(UseContinuousCellRange,int);
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//@}
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//@{
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/**
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* Set the data type of the output points (See the data types defined in
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* vtkType.h). The default data type is float.
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* These methods are deprecated. Please use the SetOutputPointsPrecision()
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* and GetOutputPointsPrecision() methods instead.
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*/
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void SetPointsDataTypeToDouble() { this->SetPointsDataType( VTK_DOUBLE ); }
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void SetPointsDataTypeToFloat() { this->SetPointsDataType( VTK_FLOAT ); }
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void SetPointsDataType(int type);
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int GetPointsDataType();
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//@}
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//@{
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/**
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* Set/get the desired precision for the output types. See the documentation
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* for the vtkAlgorithm::DesiredOutputPrecision 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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protected:
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vtkThreshold();
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~vtkThreshold() VTK_OVERRIDE;
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// Usual data generation method
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int RequestData(vtkInformation *, vtkInformationVector **, vtkInformationVector *) VTK_OVERRIDE;
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int FillInputPortInformation(int port, vtkInformation *info) VTK_OVERRIDE;
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int AllScalars;
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double LowerThreshold;
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double UpperThreshold;
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int AttributeMode;
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int ComponentMode;
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int SelectedComponent;
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int OutputPointsPrecision;
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int UseContinuousCellRange;
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int (vtkThreshold::*ThresholdFunction)(double s);
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int Lower(double s) {return ( s <= this->LowerThreshold ? 1 : 0 );};
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int Upper(double s) {return ( s >= this->UpperThreshold ? 1 : 0 );};
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int Between(double s) {return ( s >= this->LowerThreshold ?
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( s <= this->UpperThreshold ? 1 : 0 ) : 0 );};
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int EvaluateComponents( vtkDataArray *scalars, vtkIdType id );
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int EvaluateCell( vtkDataArray *scalars, vtkIdList* cellPts, int numCellPts );
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int EvaluateCell( vtkDataArray *scalars, int c, vtkIdList* cellPts, int numCellPts );
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private:
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vtkThreshold(const vtkThreshold&) VTK_DELETE_FUNCTION;
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void operator=(const vtkThreshold&) VTK_DELETE_FUNCTION;
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};
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#endif
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