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vtkAMRResampleFilter.h
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1 /*=========================================================================
2 
3  Program: Visualization Toolkit
4  Module: vtkAMRResampleFilter.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  =========================================================================*/
36 #ifndef vtkAMRResampleFilter_h
37 #define vtkAMRResampleFilter_h
38 
39 #include "vtkFiltersAMRModule.h" // For export macro
41 #include <vector> // For STL vector
42 
43 class vtkInformation;
45 class vtkUniformGrid;
46 class vtkOverlappingAMR;
49 class vtkFieldData;
50 class vtkCellData;
51 class vtkPointData;
52 class vtkIndent;
53 
54 class vtkAMRBox;
55 class VTKFILTERSAMR_EXPORT vtkAMRResampleFilter : public vtkMultiBlockDataSetAlgorithm
56 {
57 public:
58  static vtkAMRResampleFilter *New();
60  void PrintSelf(ostream &oss, vtkIndent indent);
61 
63 
67  vtkSetVector3Macro(NumberOfSamples,int);
68  vtkGetVector3Macro(NumberOfSamples,int);
70 
72 
75  vtkSetMacro(TransferToNodes,int);
76  vtkGetMacro(TransferToNodes,int);
78 
80 
84  vtkSetMacro(DemandDrivenMode,int);
85  vtkGetMacro(DemandDrivenMode,int);
87 
89 
92  vtkSetMacro(NumberOfPartitions,int);
93  vtkGetMacro(NumberOfPartitions,int);
95 
97 
100  vtkSetVector3Macro(Min,double);
101  vtkGetVector3Macro(Min,double);
103 
105 
108  vtkSetVector3Macro(Max,double);
109  vtkGetVector3Macro(Max,double);
111 
113 
116  vtkSetMacro(UseBiasVector,bool);
117  vtkGetMacro(UseBiasVector,bool);
119 
121 
126  vtkSetVector3Macro(BiasVector,double);
127  vtkGetVector3Macro(BiasVector,double);
129 
131 
135  vtkGetMacro(Controller, vtkMultiProcessController*);
137 
138  // Standard pipeline routines
139 
144  virtual int RequestInformation(
145  vtkInformation *rqst,
146  vtkInformationVector **inputVector,
147  vtkInformationVector *outputVector );
148 
149  virtual int RequestData(
153 
157  virtual int RequestUpdateExtent(
159 
160 
161 protected:
163  virtual ~vtkAMRResampleFilter();
164 
166  vtkMultiBlockDataSet *ROI; // Pointer to the region of interest.
167  int NumberOfSamples[3];
168  int GridNumberOfSamples[3];
169  double Min[3];
170  double Max[3];
171  double GridMin[3];
172  double GridMax[3];
179  double BiasVector[3];
180 
181  // Debugging Stuff
189  double AverageLevel;
190 
191  std::vector< int > BlocksToLoad; // Holds the ids of the blocks to load.
192 
196  bool IsParallel();
197 
202  bool IsRegionMine( const int regionIdx );
203 
208  int GetRegionProcessId( const int regionIdx );
209 
213  void ComputeCellCentroid(
214  vtkUniformGrid *g, const vtkIdType cellIdx, double c[3] );
215 
222  void InitializeFields( vtkFieldData *f, vtkIdType size, vtkCellData *src );
223 
227  void CopyData( vtkFieldData *target, vtkIdType targetIdx,
228  vtkCellData *src, vtkIdType srcIdx );
229 
234  bool FoundDonor(double q[3],vtkUniformGrid *&donorGrid,int &cellIdx);
235 
236 
242  bool SearchForDonorGridAtLevel(
243  double q[3], vtkOverlappingAMR *amrds,
244  unsigned int level, unsigned int& gridId,
245  int &donorCellIdx);
246 
253  int ProbeGridPointInAMR(
254  double q[3], unsigned int &donorLevel, unsigned int& donorGridId,
255  vtkOverlappingAMR *amrds, unsigned int maxLevel, bool useCached);
256 
263  int ProbeGridPointInAMRGraph(double q[3],
264  unsigned int &donorLevel, unsigned int &donorGridId,
265  vtkOverlappingAMR *amrds, unsigned int maxLevel, bool useCached);
266 
271  void TransferToCellCenters(
272  vtkUniformGrid *g, vtkOverlappingAMR *amrds );
273 
278  void TransferToGridNodes(
279  vtkUniformGrid *g, vtkOverlappingAMR *amrds );
280 
284  void TransferSolution(
285  vtkUniformGrid *g, vtkOverlappingAMR *amrds);
286 
290  void ExtractRegion(
292  vtkOverlappingAMR *metadata );
293 
298  bool IsBlockWithinBounds( double *grd );
299 
305  void ComputeAMRBlocksToLoad( vtkOverlappingAMR *metadata );
306 
310  void ComputeRegionParameters(
311  vtkOverlappingAMR *amrds,
312  int N[3], double min[3], double max[3], double h[3] );
313 
317  void GetDomainParameters(
318  vtkOverlappingAMR *amr,
319  double domainMin[3], double domainMax[3], double h[3],
320  int dims[3], double &rf );
321 
325  bool RegionIntersectsWithAMR(
326  double domainMin[3], double domainMax[3],
327  double regionMin[3], double regionMax[3] );
328 
333  void AdjustNumberOfSamplesInRegion(const double Rh[3],
334  const bool outside[6], int N[3] );
335 
341  void ComputeLevelOfResolution(
342  const int N[3], const double h0[3], const double L[3], const double rf);
343 
350  void SnapBounds(
351  const double h0[3], const double domainMin[3], const double domainMax[3],
352  const int dims[3], bool outside[6] );
353 
359  void ComputeAndAdjustRegionParameters(
360  vtkOverlappingAMR *amrds, double h[3] );
361 
365  void GetRegion( double h[3] );
366 
370  bool GridsIntersect( double *g1, double *g2 );
371 
375  vtkUniformGrid* GetReferenceGrid( vtkOverlappingAMR *amrds );
376 
390  void SearchGridDecendants(double q[3],
391  vtkOverlappingAMR *amrds,
392  unsigned int maxLevel,
393  unsigned int &level,
394  unsigned int &gridId,
395  int &id);
396 
401  bool SearchGridAncestors(double q[3],
402  vtkOverlappingAMR *amrds,
403  unsigned int &level,
404  unsigned int &gridId,
405  int &id);
406 
407 
408 private:
409  vtkAMRResampleFilter(const vtkAMRResampleFilter&) VTK_DELETE_FUNCTION;
410  void operator=(const vtkAMRResampleFilter&) VTK_DELETE_FUNCTION;
411 
412 };
413 
414 #endif /* vtkAMRResampleFilter_h */
vtkMultiProcessController * Controller
boost::graph_traits< vtkGraph * >::vertex_descriptor target(boost::graph_traits< vtkGraph * >::edge_descriptor e, vtkGraph *)
represent and manipulate point attribute data
Definition: vtkPointData.h:37
vtkOverlappingAMR * AMRMetaData
vtkMultiBlockDataSet * ROI
Store vtkAlgorithm input/output information.
Encloses a rectangular region of voxel like cells.
Definition: vtkAMRBox.h:39
std::vector< int > BlocksToLoad
represent and manipulate cell attribute data
Definition: vtkCellData.h:38
int vtkIdType
Definition: vtkType.h:287
Superclass for algorithms that produce only vtkMultiBlockDataSet as output.
virtual int RequestData(vtkInformation *, vtkInformationVector **, vtkInformationVector *)
This is called by the superclass.
int FillOutputPortInformation(int port, vtkInformation *info) override
Fill the output port information objects for this algorithm.
static vtkMultiBlockDataSetAlgorithm * New()
virtual int RequestUpdateExtent(vtkInformation *, vtkInformationVector **, vtkInformationVector *)
This is called by the superclass.
This filter is a concrete instance of vtkMultiBlockDataSetAlgorithm and provides functionality for ex...
a simple class to control print indentation
Definition: vtkIndent.h:39
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
int FillInputPortInformation(int port, vtkInformation *info) override
Fill the input port information objects for this algorithm.
vtkSetMacro(IgnoreDriverBugs, bool)
When set known driver bugs are ignored during driver feature detection.
image data with blanking
Composite dataset that organizes datasets into blocks.
hierarchical dataset of vtkUniformGrids
Store zero or more vtkInformation instances.
#define max(a, b)
represent and manipulate fields of data
Definition: vtkFieldData.h:56
virtual int RequestInformation(vtkInformation *, vtkInformationVector **, vtkInformationVector *)
This is called by the superclass.
Multiprocessing communication superclass.