VTK  9.1.0
vtkKdTree.h
Go to the documentation of this file.
1/*=========================================================================
2
3 Program: Visualization Toolkit
4 Module: vtkKdTree.h
5
6 Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
7 All rights reserved.
8 See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
9
10 This software is distributed WITHOUT ANY WARRANTY; without even
11 the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
12 PURPOSE. See the above copyright notice for more information.
13
14=========================================================================*/
15/*----------------------------------------------------------------------------
16 Copyright (c) Sandia Corporation
17 See Copyright.txt or http://www.paraview.org/HTML/Copyright.html for details.
18----------------------------------------------------------------------------*/
19
71#ifndef vtkKdTree_h
72#define vtkKdTree_h
73
74#include "vtkCommonDataModelModule.h" // For export macro
75#include "vtkLocator.h"
76
77class vtkTimerLog;
78class vtkIdList;
79class vtkIdTypeArray;
80class vtkIntArray;
81class vtkPointSet;
82class vtkPoints;
83class vtkCellArray;
84class vtkCell;
85class vtkKdNode;
86class vtkBSPCuts;
89
90class VTKCOMMONDATAMODEL_EXPORT vtkKdTree : public vtkLocator
91{
92public:
93 vtkTypeMacro(vtkKdTree, vtkLocator);
94 void PrintSelf(ostream& os, vtkIndent indent) override;
95
96 static vtkKdTree* New();
97
99
102 vtkBooleanMacro(Timing, vtkTypeBool);
103 vtkSetMacro(Timing, vtkTypeBool);
104 vtkGetMacro(Timing, vtkTypeBool);
106
108
111 vtkSetMacro(MinCells, int);
112 vtkGetMacro(MinCells, int);
114
122 vtkGetMacro(NumberOfRegionsOrLess, int);
123 vtkSetMacro(NumberOfRegionsOrLess, int);
124
132 vtkGetMacro(NumberOfRegionsOrMore, int);
133 vtkSetMacro(NumberOfRegionsOrMore, int);
134
142 vtkGetMacro(FudgeFactor, double);
143 vtkSetMacro(FudgeFactor, double);
144
150 vtkGetObjectMacro(Cuts, vtkBSPCuts);
151
158 void SetCuts(vtkBSPCuts* cuts);
159
164
169
174
179
184
189
194
209 void SetDataSet(vtkDataSet* set) override;
210
215 virtual void AddDataSet(vtkDataSet* set);
216
218
221 virtual void RemoveDataSet(int index);
222 virtual void RemoveDataSet(vtkDataSet* set);
223 virtual void RemoveAllDataSets();
225
230
241
246 vtkDataSet* GetDataSet() override { return this->GetDataSet(0); }
247
249
252 vtkGetObjectMacro(DataSets, vtkDataSetCollection);
254
260
265 void GetBounds(double* bounds);
266
275 void SetNewBounds(double* bounds);
276
278
281 vtkGetMacro(NumberOfRegions, int);
283
287 void GetRegionBounds(int regionID, double bounds[6]);
288
292 void GetRegionDataBounds(int regionID, double bounds[6]);
293
295
298 void PrintTree();
301
305 void PrintRegion(int id);
306
319 void CreateCellLists(int dataSetIndex, int* regionReqList, int reqListSize);
320 void CreateCellLists(vtkDataSet* set, int* regionReqList, int reqListSize);
321 void CreateCellLists(int* regionReqList, int listSize);
323
325
332 vtkSetMacro(IncludeRegionBoundaryCells, vtkTypeBool);
333 vtkGetMacro(IncludeRegionBoundaryCells, vtkTypeBool);
334 vtkBooleanMacro(IncludeRegionBoundaryCells, vtkTypeBool);
336
341
346 vtkIdList* GetCellList(int regionID);
347
359
361
382 vtkIntArray* regions, int set, vtkIdList* inRegionCells, vtkIdList* onBoundaryCells);
384 vtkIntArray* regions, vtkDataSet* set, vtkIdList* inRegionCells, vtkIdList* onBoundaryCells);
386 vtkIntArray* regions, vtkIdList* inRegionCells, vtkIdList* onBoundaryCells);
388
390
397 int GetRegionContainingCell(int set, vtkIdType cellID);
400
410
414 int GetRegionContainingPoint(double x, double y, double z);
415
421 void BuildLocator() override;
422
437 int MinimalNumberOfConvexSubRegions(vtkIntArray* regionIdList, double** convexRegionBounds);
438
447 const double directionOfProjection[3], vtkIntArray* orderedList);
448
457 vtkIntArray* regionIds, const double directionOfProjection[3], vtkIntArray* orderedList);
458
467 const double directionOfProjection[3], vtkIntArray* orderedList);
468
477 vtkIntArray* regionIds, const double directionOfProjection[3], vtkIntArray* orderedList);
478
480
495 void BuildLocatorFromPoints(vtkPoints** ptArray, int numPtArrays);
497
513
515
521 vtkIdType FindPoint(double x, double y, double z);
523
525
530 vtkIdType FindClosestPoint(double* x, double& dist2);
531 vtkIdType FindClosestPoint(double x, double y, double z, double& dist2);
533
539 vtkIdType FindClosestPointWithinRadius(double radius, const double x[3], double& dist2);
540
542
547 vtkIdType FindClosestPointInRegion(int regionId, double* x, double& dist2);
548 vtkIdType FindClosestPointInRegion(int regionId, double x, double y, double z, double& dist2);
550
557 void FindPointsWithinRadius(double R, const double x[3], vtkIdList* result);
558
567 void FindClosestNPoints(int N, const double x[3], vtkIdList* result);
568
574
579 void FreeSearchStructure() override;
580
586 void GenerateRepresentation(int level, vtkPolyData* pd) override;
587
592 void GenerateRepresentation(int* regionList, int len, vtkPolyData* pd);
593
595
601 vtkBooleanMacro(GenerateRepresentationUsingDataBounds, vtkTypeBool);
602 vtkSetMacro(GenerateRepresentationUsingDataBounds, vtkTypeBool);
603 vtkGetMacro(GenerateRepresentationUsingDataBounds, vtkTypeBool);
605
609 virtual void PrintTiming(ostream& os, vtkIndent indent);
610
615 virtual int NewGeometry();
616
622 virtual int NewGeometry(vtkDataSet** sets, int numDataSets);
623
629 virtual void InvalidateGeometry();
630
637
644 void FindPointsInArea(double* area, vtkIdTypeArray* ids, bool clearArray = true);
645
646protected:
648 ~vtkKdTree() override;
649
652
654
655 int ProcessUserDefinedCuts(double* bounds);
656
657 void SetCuts(vtkBSPCuts* cuts, int userDefined);
658
665
673 int DivideTest(int numberOfPoints, int level);
674
675 enum
676 {
677 XDIM = 0, // don't change these values
678 YDIM = 1,
679 ZDIM = 2
680 };
681
683
685 vtkKdNode** RegionList; // indexed by region ID
686
688
690
693 void SetActualLevel() { this->Level = vtkKdTree::ComputeLevel(this->Top); }
694
700 void GetRegionsAtLevel(int level, vtkKdNode** nodes);
701
707 static void GetLeafNodeIds(vtkKdNode* node, vtkIntArray* ids);
708
714
720 int GetDataSetsNumberOfCells(int set1, int set2);
721
728 void ComputeCellCenter(vtkDataSet* set, int cellId, float* center);
729 void ComputeCellCenter(vtkDataSet* set, int cellId, double* center);
730
741 float* ComputeCellCenters(int set);
743
745
751 void UpdateProgress(double amount);
752
754
757 vtkSetClampMacro(Progress, double, 0.0, 1.0);
758 vtkGetMacro(Progress, double);
760
761protected:
762 // So that each suboperation can report progress
763 // in [0,1], yet we will be able to report a global
764 // progress. Sub-operations must use UpdateSubOperationProgress()
765 // for this to work.
768
769 // Update progress for a sub-operation. \c amount goes from 0.0 to 1.0.
770 // Actual progress is given by
771 // (this->ProgressOffset + this->ProgressScale* amount).
772 void UpdateSubOperationProgress(double amount);
773
774 static void _SetNewBounds(vtkKdNode* kd, double* b, int* fixDim);
775 static void CopyChildNodes(vtkKdNode* to, vtkKdNode* from);
776 static void CopyKdNode(vtkKdNode* to, vtkKdNode* from);
779
780 // Recursive helper for public FindPointsWithinRadius
781 void FindPointsWithinRadius(vtkKdNode* node, double R2, const double x[3], vtkIdList* ids);
782
783 // Recursive helper for public FindPointsWithinRadius
785
786 // Recursive helper for public FindPointsInArea
787 void FindPointsInArea(vtkKdNode* node, double* area, vtkIdTypeArray* ids);
788
789 // Recursive helper for public FindPointsInArea
791
792 int DivideRegion(vtkKdNode* kd, float* c1, int* ids, int nlevels);
793
794 void DoMedianFind(vtkKdNode* kd, float* c1, int* ids, int d1, int d2, int d3);
795
797
799 {
800 vtkDataSet* dataSet; // cell lists for which data set
801 int* regionIds; // nullptr if listing all regions
806 };
807
809 vtkIdList* GetList(int regionId, vtkIdList** which);
810
811 void ComputeCellCenter(vtkCell* cell, double* center, double* weights);
812
815 vtkKdNode* kd, vtkPoints* pts, vtkCellArray* polys, int level);
816
819 vtkKdNode* kd, vtkPoints* pts, vtkCellArray* polys, int level);
820
821 void AddPolys(vtkKdNode* kd, vtkPoints* pts, vtkCellArray* polys);
822
823 void _printTree(int verbose);
824
826 int regionId, float* point, int** pointsSoFar, int* len, float tolerance, float tolerance2);
827
828 int SearchRegionForDuplicate(float* point, int* pointsSoFar, int len, float tolerance2);
829
830 int _FindClosestPointInRegion(int regionId, double x, double y, double z, double& dist2);
831
833 double x, double y, double z, double radius, int skipRegion, double& dist2);
834
836 vtkIntArray* IdsOfInterest, const double dop[3], vtkIntArray* orderedList);
837
839 vtkIntArray* IdsOfInterest, const double dir[3], int nextId);
840
842 vtkIntArray* IdsOfInterest, const double pos[3], vtkIntArray* orderedList);
843
845 vtkIntArray* IdsOfInterest, const double pos[3], int nextId);
846
847 static int __ConvexSubRegions(int* ids, int len, vtkKdNode* tree, vtkKdNode** nodes);
848 static int FoundId(vtkIntArray* idArray, int id);
849
850 void SetInputDataInfo(int i, int dims[3], double origin[3], double spacing[3]);
851 int CheckInputDataInfo(int i, int dims[3], double origin[3], double spacing[3]);
853
854 static void __printTree(vtkKdNode* kd, int depth, int verbose);
855
856 static int MidValue(int dim, float* c1, int nvals, double& coord);
857
858 static int Select(int dim, float* c1, int* ids, int nvals, double& coord);
859 static float FindMaxLeftHalf(int dim, float* c1, int K);
860 static void _Select(int dim, float* X, int* ids, int L, int R, int K);
861
862 static int ComputeLevel(vtkKdNode* kd);
863 static int SelfOrder(int id, vtkKdNode* kd);
864 static int findRegion(vtkKdNode* node, float x, float y, float z);
865 static int findRegion(vtkKdNode* node, double x, double y, double z);
866
867 static vtkKdNode** _GetRegionsAtLevel(int level, vtkKdNode** nodes, vtkKdNode* kd);
868
869 static void AddNewRegions(vtkKdNode* kd, float* c1, int midpt, int dim, double coord);
870
872
875
877 double CellBoundsCache[6]; // to optimize IntersectsCell()
878
880
881 struct _cellList CellList;
882
883 // Region Ids, by data set by cell id - this list is large (one
884 // int per cell) but accelerates creation of cell lists
885
887
889 int NumberOfRegions; // number of leaf nodes
890
892 double FudgeFactor; // a very small distance, relative to the dataset's size
893
894 // These instance variables are used by the special locator created
895 // to find duplicate points. (BuildLocatorFromPoints)
896
901
902 float MaxWidth;
903
904 // These Last* values are here to save state so we can
905 // determine later if k-d tree must be rebuilt.
906
913 double* LastBounds;
916
918 double Progress;
919
920 vtkKdTree(const vtkKdTree&) = delete;
921 void operator=(const vtkKdTree&) = delete;
922};
923#endif
This class represents an axis-aligned Binary Spatial Partitioning of a 3D space.
Definition: vtkBSPCuts.h:45
Perform calculations (mostly intersection calculations) on regions of a 3D binary spatial partitionin...
object to represent cell connectivity
Definition: vtkCellArray.h:190
abstract class to specify cell behavior
Definition: vtkCell.h:67
maintain an unordered list of dataset objects
abstract class to specify dataset behavior
Definition: vtkDataSet.h:66
list of point or cell ids
Definition: vtkIdList.h:40
dynamic, self-adjusting array of vtkIdType
a simple class to control print indentation
Definition: vtkIndent.h:43
dynamic, self-adjusting array of int
Definition: vtkIntArray.h:49
This class represents a single spatial region in an 3D axis aligned binary spatial partitioning.
Definition: vtkKdNode.h:43
a Kd-tree spatial decomposition of a set of points
Definition: vtkKdTree.h:91
void SelfRegister(vtkKdNode *kd)
vtkIdList * GetBoundaryCellList(int regionID)
The cell list obtained with GetCellList is the list of all cells such that their centroid is containe...
void NewPartitioningRequest(int req)
void SetInputDataInfo(int i, int dims[3], double origin[3], double spacing[3])
virtual void RemoveAllDataSets()
Remove the given data set.
static void __printTree(vtkKdNode *kd, int depth, int verbose)
int * LastDataSetType
Definition: vtkKdTree.h:911
vtkTypeBool Timing
Definition: vtkKdTree.h:891
vtkIdTypeArray * GetPointsInRegion(int regionId)
Get a list of the original IDs of all points in a region.
int DivideRegion(vtkKdNode *kd, float *c1, int *ids, int nlevels)
static void CopyKdNode(vtkKdNode *to, vtkKdNode *from)
static void _SetNewBounds(vtkKdNode *kd, double *b, int *fixDim)
int MinimalNumberOfConvexSubRegions(vtkIntArray *regionIdList, double **convexRegionBounds)
Given a list of region IDs, determine the decomposition of these regions into the minimal number of c...
vtkDataSetCollection * DataSets
Definition: vtkKdTree.h:744
static vtkKdNode ** _GetRegionsAtLevel(int level, vtkKdNode **nodes, vtkKdNode *kd)
void CreateCellLists(int *regionReqList, int listSize)
int ValidDirections
Definition: vtkKdTree.h:682
vtkIdType FindPoint(double x, double y, double z)
Find the Id of the point that was previously supplied to BuildLocatorFromPoints().
int NumberOfRegions
Definition: vtkKdTree.h:889
int GetRegionContainingCell(vtkIdType cellID)
Get the id of the region containing the cell centroid.
void GetRegionDataBounds(int regionID, double bounds[6])
Get the bounds of the data within the k-d tree region.
void InitializeCellLists()
virtual void InvalidateGeometry()
Forget about the last geometry used.
void OmitYZPartitioning()
Omit partitions along the Y and Z axes, yielding slabs along X.
vtkTypeBool IncludeRegionBoundaryCells
Definition: vtkKdTree.h:876
static int SelfOrder(int id, vtkKdNode *kd)
void OmitZXPartitioning()
Omit partitions along the Z and X axes, yielding slabs along Y.
vtkIdType GetCellLists(vtkIntArray *regions, vtkDataSet *set, vtkIdList *inRegionCells, vtkIdList *onBoundaryCells)
For a list of regions, get two cell lists.
int LastDataCacheSize
Definition: vtkKdTree.h:908
float MaxWidth
Definition: vtkKdTree.h:902
vtkIdType GetCellLists(vtkIntArray *regions, int set, vtkIdList *inRegionCells, vtkIdList *onBoundaryCells)
For a list of regions, get two cell lists.
void BuildRegionList()
int _ViewOrderRegionsInDirection(vtkIntArray *IdsOfInterest, const double dop[3], vtkIntArray *orderedList)
void OmitNoPartitioning()
Partition along all three axes - this is the default.
void _printTree(int verbose)
int GetNumberOfCells()
Returns the total number of cells in all the data sets.
void GenerateRepresentationDataBounds(int level, vtkPolyData *pd)
vtkDataSet * GetDataSet(int n)
Get the nth defined data set in the spatial partitioning.
float * ComputeCellCenters(int set)
vtkIdTypeArray * BuildMapForDuplicatePoints(float tolerance)
This call returns a mapping from the original point IDs supplied to BuildLocatorFromPoints to a subse...
void SetDataSet(vtkDataSet *set) override
This class can compute a spatial decomposition based on the cells in a list of one or more input data...
int NumberOfRegionsOrLess
Definition: vtkKdTree.h:873
static int Select(int dim, float *c1, int *ids, int nvals, double &coord)
void UpdateSubOperationProgress(double amount)
void CreateCellLists()
vtkDataSet ** LastInputDataSets
Definition: vtkKdTree.h:909
void ComputeCellCenter(vtkCell *cell, double *center, double *weights)
double * LastInputDataInfo
Definition: vtkKdTree.h:912
static vtkKdNode * CopyTree(vtkKdNode *kd)
Create a copy of the binary tree representation of the k-d tree spatial partitioning provided.
vtkBSPCuts * Cuts
Definition: vtkKdTree.h:917
vtkBSPIntersections * BSPCalculator
Definition: vtkKdTree.h:650
void SetCuts(vtkBSPCuts *cuts, int userDefined)
vtkKdNode ** RegionList
Definition: vtkKdTree.h:685
int SearchNeighborsForDuplicate(int regionId, float *point, int **pointsSoFar, int *len, float tolerance, float tolerance2)
void GenerateRepresentation(int level, vtkPolyData *pd) override
Create a polydata representation of the boundaries of the k-d tree regions.
void AddAllPointsInRegion(vtkKdNode *node, vtkIdList *ids)
int LastNumDataSets
Definition: vtkKdTree.h:907
static float FindMaxLeftHalf(int dim, float *c1, int K)
int * LocatorRegionLocation
Definition: vtkKdTree.h:900
void CreateCellLists(int dataSetIndex, int *regionReqList, int reqListSize)
Create a list for each of the requested regions, listing the IDs of all cells whose centroid falls in...
void PrintTree()
Print out nodes of kd tree.
void FreeSearchStructure() override
Delete the k-d tree data structure.
virtual void RemoveDataSet(vtkDataSet *set)
Remove the given data set.
int CheckInputDataInfo(int i, int dims[3], double origin[3], double spacing[3])
virtual int NewGeometry(vtkDataSet **sets, int numDataSets)
Return 1 if the geometry of these data sets differs for the geometry of the last data sets used to bu...
static int findRegion(vtkKdNode *node, float x, float y, float z)
void DeleteCellLists()
Free the memory used by the cell lists.
vtkIdType * LastNumPoints
Definition: vtkKdTree.h:914
void _generateRepresentationWholeSpace(vtkKdNode *kd, vtkPoints *pts, vtkCellArray *polys, int level)
void ClearLastBuildCache()
vtkIdType FindClosestPointWithinRadius(double radius, const double x[3], double &dist2)
Given a position x and a radius r, return the id of the point closest to the point in that radius.
void OmitYPartitioning()
Omit partitions along the Y axis, yielding shafts in the Y direction.
void GetBounds(double *bounds)
Get the spatial bounds of the entire k-d tree space.
int NumberOfLocatorPoints
Definition: vtkKdTree.h:897
static void SetDataBoundsToSpatialBounds(vtkKdNode *kd)
static void CopyChildNodes(vtkKdNode *to, vtkKdNode *from)
static void _Select(int dim, float *X, int *ids, int L, int R, int K)
float * ComputeCellCenters(vtkDataSet *set)
double * LastBounds
Definition: vtkKdTree.h:913
int GetNumberOfDataSets()
Get the number of data sets included in spatial partitioning.
static int ComputeLevel(vtkKdNode *kd)
int GetRegionContainingCell(int set, vtkIdType cellID)
Get the id of the region containing the cell centroid.
static vtkKdTree * New()
static int findRegion(vtkKdNode *node, double x, double y, double z)
void UpdateProgress(double amount)
Modelled on vtkAlgorithm::UpdateProgress().
void FindPointsWithinRadius(double R, const double x[3], vtkIdList *result)
Find all points within a specified radius R of position x.
vtkDataSet * GetDataSet() override
Return the 0'th data set.
Definition: vtkKdTree.h:246
int NumberOfRegionsOrMore
Definition: vtkKdTree.h:874
void SetNewBounds(double *bounds)
There are certain applications where you want the bounds of the k-d tree space to be at least as larg...
int ProcessUserDefinedCuts(double *bounds)
static void AddNewRegions(vtkKdNode *kd, float *c1, int midpt, int dim, double coord)
static int __ViewOrderRegionsInDirection(vtkKdNode *node, vtkIntArray *list, vtkIntArray *IdsOfInterest, const double dir[3], int nextId)
static int FoundId(vtkIntArray *idArray, int id)
double ProgressScale
Definition: vtkKdTree.h:766
void OmitZPartitioning()
Omit partitions along the Z axis, yielding shafts in the Z direction.
void AddAllPointsInRegion(vtkKdNode *node, vtkIdTypeArray *ids)
void GenerateRepresentation(int *regionList, int len, vtkPolyData *pd)
Generate a polygonal representation of a list of regions.
int * LocatorIds
Definition: vtkKdTree.h:899
int ViewOrderRegionsInDirection(vtkIntArray *regionIds, const double directionOfProjection[3], vtkIntArray *orderedList)
Given a direction of projection and a list of k-d tree region IDs, this method, creates a list of the...
void FindPointsWithinRadius(vtkKdNode *node, double R2, const double x[3], vtkIdList *ids)
double ProgressOffset
Definition: vtkKdTree.h:767
void ComputeCellCenter(vtkDataSet *set, int cellId, double *center)
void BuildLocatorFromPoints(vtkPoints **ptArray, int numPtArrays)
This is a special purpose locator that builds a k-d tree to find duplicate and near-by points.
void operator=(const vtkKdTree &)=delete
void BuildLocator() override
Create the k-d tree decomposition of the cells of the data set or data sets.
int _ViewOrderRegionsFromPosition(vtkIntArray *IdsOfInterest, const double pos[3], vtkIntArray *orderedList)
void SetActualLevel()
Definition: vtkKdTree.h:693
void _generateRepresentationDataBounds(vtkKdNode *kd, vtkPoints *pts, vtkCellArray *polys, int level)
void BuildLocatorFromPoints(vtkPointSet *pointset)
This is a special purpose locator that builds a k-d tree to find duplicate and near-by points.
void PrintVerboseTree()
Print out nodes of kd tree.
vtkIdType FindClosestPointInRegion(int regionId, double *x, double &dist2)
Find the Id of the point in the given region which is closest to the given point.
vtkIdType FindClosestPoint(double *x, double &dist2)
Find the Id of the point that was previously supplied to BuildLocatorFromPoints() which is closest to...
double Progress
Definition: vtkKdTree.h:918
static int MidValue(int dim, float *c1, int nvals, double &coord)
int UserDefinedCuts
Definition: vtkKdTree.h:651
virtual int SelectCutDirection(vtkKdNode *kd)
~vtkKdTree() override
vtkIdType FindClosestPoint(double x, double y, double z, double &dist2)
Find the Id of the point that was previously supplied to BuildLocatorFromPoints() which is closest to...
vtkTypeBool GenerateRepresentationUsingDataBounds
Definition: vtkKdTree.h:879
static int __ViewOrderRegionsFromPosition(vtkKdNode *node, vtkIntArray *list, vtkIntArray *IdsOfInterest, const double pos[3], int nextId)
int MinCells
Definition: vtkKdTree.h:888
virtual void AddDataSet(vtkDataSet *set)
This class can compute a spatial decomposition based on the cells in a list of one or more input data...
int ViewOrderRegionsFromPosition(vtkIntArray *regionIds, const double directionOfProjection[3], vtkIntArray *orderedList)
Given a camera position and a list of k-d tree region IDs, this method, creates a list of the k-d tre...
double FudgeFactor
Definition: vtkKdTree.h:892
void ComputeCellCenter(vtkDataSet *set, int cellId, float *center)
Get or compute the center of one cell.
void CreateCellLists(vtkDataSet *set, int *regionReqList, int reqListSize)
virtual void PrintTiming(ostream &os, vtkIndent indent)
Print timing of k-d tree build.
void FindPointsInArea(vtkKdNode *node, double *area, vtkIdTypeArray *ids)
void UpdateBuildTime()
Save enough state so NewGeometry() can work, and update the BuildTime time stamp.
virtual int NewGeometry()
Return 1 if the geometry of the input data sets has changed since the last time the k-d tree was buil...
int FindClosestPointInSphere(double x, double y, double z, double radius, int skipRegion, double &dist2)
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
void SetCalculator(vtkKdNode *kd)
vtkKdTree(const vtkKdTree &)=delete
int GetRegionContainingCell(vtkDataSet *set, vtkIdType cellID)
Get the id of the region containing the cell centroid.
int ViewOrderAllRegionsFromPosition(const double directionOfProjection[3], vtkIntArray *orderedList)
Given a camera position (typically obtained with vtkCamera::GetPosition()), this method,...
vtkTimerLog * TimerLog
Definition: vtkKdTree.h:687
vtkIdList * GetCellList(int regionID)
Get the cell list for a region.
void GetRegionsAtLevel(int level, vtkKdNode **nodes)
Get back a list of the nodes at a specified level, nodes must be preallocated to hold 2^^(level) node...
unsigned long * LastDataSetObserverTags
Definition: vtkKdTree.h:910
void OmitXPartitioning()
Omit partitions along the X axis, yielding shafts in the X direction.
int * AllGetRegionContainingCell()
Get a list (in order by data set by cell id) of the region IDs of the region containing the centroid ...
static void GetLeafNodeIds(vtkKdNode *node, vtkIntArray *ids)
Adds to the vtkIntArray the list of region IDs of all leaf nodes in the given node.
int * CellRegionList
Definition: vtkKdTree.h:886
int ViewOrderAllRegionsInDirection(const double directionOfProjection[3], vtkIntArray *orderedList)
Given a direction of projection (typically obtained with vtkCamera::GetDirectionOfProjection()),...
static int __ConvexSubRegions(int *ids, int len, vtkKdNode *tree, vtkKdNode **nodes)
int _FindClosestPointInRegion(int regionId, double x, double y, double z, double &dist2)
void DoMedianFind(vtkKdNode *kd, float *c1, int *ids, int d1, int d2, int d3)
void PrintRegion(int id)
Print out leaf node data for given id.
vtkIdType FindClosestPointInRegion(int regionId, double x, double y, double z, double &dist2)
Find the Id of the point in the given region which is closest to the given point.
int DivideTest(int numberOfPoints, int level)
Prior to dividing a region at level "level", of size "numberOfPoints", apply the tests implied by Min...
virtual void RemoveDataSet(int index)
Remove the given data set.
void OmitXYPartitioning()
Omit partitions along the X and Y axes, yielding slabs along Z.
void BuildLocatorFromPoints(vtkPoints *ptArray)
This is a special purpose locator that builds a k-d tree to find duplicate and near-by points.
void GenerateRepresentationWholeSpace(int level, vtkPolyData *pd)
vtkIdList * GetList(int regionId, vtkIdList **which)
int SearchRegionForDuplicate(float *point, int *pointsSoFar, int len, float tolerance2)
static void DeleteAllDescendants(vtkKdNode *nd)
void AddPolys(vtkKdNode *kd, vtkPoints *pts, vtkCellArray *polys)
vtkIdType FindPoint(double *x)
Find the Id of the point that was previously supplied to BuildLocatorFromPoints().
vtkIdType GetCellLists(vtkIntArray *regions, vtkIdList *inRegionCells, vtkIdList *onBoundaryCells)
For a list of regions, get two cell lists.
vtkIdType * LastNumCells
Definition: vtkKdTree.h:915
void GetRegionBounds(int regionID, double bounds[6])
Get the spatial bounds of k-d tree region.
int GetRegionContainingPoint(double x, double y, double z)
Get the id of the region containing the specified location.
int GetDataSetsNumberOfCells(int set1, int set2)
Returns the total number of cells in data set 1 through data set 2.
void SetCuts(vtkBSPCuts *cuts)
Normally the k-d tree is computed from the dataset(s) provided in SetDataSet.
void FindPointsInArea(double *area, vtkIdTypeArray *ids, bool clearArray=true)
Fill ids with points found in area.
void FindClosestNPoints(int N, const double x[3], vtkIdList *result)
Find the closest N points to a position.
static void ZeroNumberOfPoints(vtkKdNode *kd)
float * ComputeCellCenters()
Compute and return a pointer to a list of all cell centers, in order by data set by cell Id.
vtkKdNode * Top
Definition: vtkKdTree.h:684
int GetDataSetIndex(vtkDataSet *set)
Return the index of the given data set.
float * LocatorPoints
Definition: vtkKdTree.h:898
abstract base class for objects that accelerate spatial searches
Definition: vtkLocator.h:79
concrete class for storing a set of points
Definition: vtkPointSet.h:76
represent and manipulate 3D points
Definition: vtkPoints.h:43
concrete dataset represents vertices, lines, polygons, and triangle strips
Definition: vtkPolyData.h:95
Timer support and logging.
Definition: vtkTimerLog.h:99
vtkIdList ** boundaryCells
Definition: vtkKdTree.h:804
vtkIdList * emptyList
Definition: vtkKdTree.h:805
vtkIdList ** cells
Definition: vtkKdTree.h:803
vtkDataSet * dataSet
Definition: vtkKdTree.h:800
int vtkTypeBool
Definition: vtkABI.h:69
int vtkIdType
Definition: vtkType.h:332