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203 lines
6.0 KiB
C++
203 lines
6.0 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkBSPIntersections.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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Copyright (c) Sandia Corporation
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See Copyright.txt or http://www.paraview.org/HTML/Copyright.html for details.
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----------------------------------------------------------------------------*/
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/**
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* @class vtkBSPIntersections
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* @brief Perform calculations (mostly intersection
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* calculations) on regions of a 3D binary spatial partitioning.
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*
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*
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* Given an axis aligned binary spatial partitioning described by a
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* vtkBSPCuts object, perform intersection queries on various
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* geometric entities with regions of the spatial partitioning.
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*
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* @sa
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* vtkBSPCuts vtkKdTree
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*/
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#ifndef vtkBSPIntersections_h
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#define vtkBSPIntersections_h
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#include "vtkCommonDataModelModule.h" // For export macro
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#include "vtkObject.h"
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class vtkTimeStamp;
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class vtkCell;
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class vtkKdNode;
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class vtkBSPCuts;
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class VTKCOMMONDATAMODEL_EXPORT vtkBSPIntersections : public vtkObject
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{
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public:
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vtkTypeMacro(vtkBSPIntersections, vtkObject);
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void PrintSelf(ostream& os, vtkIndent indent) override;
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static vtkBSPIntersections* New();
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/**
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* Define the binary spatial partitioning.
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*/
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void SetCuts(vtkBSPCuts* cuts);
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vtkGetObjectMacro(Cuts, vtkBSPCuts);
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/**
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* Get the bounds of the whole space (xmin, xmax, ymin, ymax, zmin, zmax)
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* Return 0 if OK, 1 on error.
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*/
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int GetBounds(double* bounds);
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/**
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* The number of regions in the binary spatial partitioning
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*/
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int GetNumberOfRegions();
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/**
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* Get the spatial bounds of a particular region
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* Return 0 if OK, 1 on error.
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*/
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int GetRegionBounds(int regionID, double bounds[6]);
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/**
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* Get the bounds of the data within the k-d tree region, possibly
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* smaller than the bounds of the region.
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* Return 0 if OK, 1 on error.
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*/
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int GetRegionDataBounds(int regionID, double bounds[6]);
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//@{
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/**
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* Determine whether a region of the spatial decomposition
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* intersects an axis aligned box.
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*/
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int IntersectsBox(int regionId, double* x);
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int IntersectsBox(
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int regionId, double xmin, double xmax, double ymin, double ymax, double zmin, double zmax);
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//@}
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//@{
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/**
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* Compute a list of the Ids of all regions that
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* intersect the specified axis aligned box.
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* Returns: the number of ids in the list.
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*/
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int IntersectsBox(int* ids, int len, double* x);
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int IntersectsBox(
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int* ids, int len, double x0, double x1, double y0, double y1, double z0, double z1);
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//@}
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/**
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* Determine whether a region of the spatial decomposition
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* intersects a sphere, given the center of the sphere
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* and the square of it's radius.
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*/
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int IntersectsSphere2(int regionId, double x, double y, double z, double rSquared);
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/**
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* Compute a list of the Ids of all regions that
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* intersect the specified sphere. The sphere is given
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* by it's center and the square of it's radius.
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* Returns: the number of ids in the list.
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*/
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int IntersectsSphere2(int* ids, int len, double x, double y, double z, double rSquared);
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/**
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* Determine whether a region of the spatial decomposition
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* intersects the given cell. If you already
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* know the region that the cell centroid lies in, provide
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* that as the last argument to make the computation quicker.
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*/
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int IntersectsCell(int regionId, vtkCell* cell, int cellRegion = -1);
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/**
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* Compute a list of the Ids of all regions that
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* intersect the given cell. If you already
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* know the region that the cell centroid lies in, provide
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* that as the last argument to make the computation quicker.
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* Returns the number of regions the cell intersects.
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*/
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int IntersectsCell(int* ids, int len, vtkCell* cell, int cellRegion = -1);
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/**
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* When computing the intersection of k-d tree regions with other
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* objects, we use the spatial bounds of the region. To use the
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* tighter bound of the bounding box of the data within the region,
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* set this variable ON. (Specifying data bounds in the vtkBSPCuts
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* object is optional. If data bounds were not specified, this
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* option has no meaning.)
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*/
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vtkGetMacro(ComputeIntersectionsUsingDataBounds, int);
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void SetComputeIntersectionsUsingDataBounds(int c);
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void ComputeIntersectionsUsingDataBoundsOn();
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void ComputeIntersectionsUsingDataBoundsOff();
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protected:
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vtkBSPIntersections();
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~vtkBSPIntersections() override;
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vtkGetMacro(RegionListBuildTime, vtkMTimeType);
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int BuildRegionList();
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vtkKdNode** GetRegionList() { return this->RegionList; }
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double CellBoundsCache[6]; // to speed cell intersection queries
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enum
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{
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XDIM = 0, // don't change these values
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YDIM = 1,
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ZDIM = 2
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};
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private:
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static int NumberOfLeafNodes(vtkKdNode* kd);
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static void SetIDRanges(vtkKdNode* kd, int& min, int& max);
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int SelfRegister(vtkKdNode* kd);
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static void SetCellBounds(vtkCell* cell, double* bounds);
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int _IntersectsBox(vtkKdNode* node, int* ids, int len, double x0, double x1, double y0, double y1,
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double z0, double z1);
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int _IntersectsSphere2(
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vtkKdNode* node, int* ids, int len, double x, double y, double z, double rSquared);
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int _IntersectsCell(vtkKdNode* node, int* ids, int len, vtkCell* cell, int cellRegion = -1);
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vtkBSPCuts* Cuts;
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int NumberOfRegions;
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vtkKdNode** RegionList;
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vtkTimeStamp RegionListBuildTime;
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int ComputeIntersectionsUsingDataBounds;
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vtkBSPIntersections(const vtkBSPIntersections&) = delete;
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void operator=(const vtkBSPIntersections&) = delete;
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};
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#endif
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