VTK  9.4.20251007
vtkImageData.h
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1// SPDX-FileCopyrightText: Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
2// SPDX-License-Identifier: BSD-3-Clause
24
25#ifndef vtkImageData_h
26#define vtkImageData_h
27
28#include "vtkCommonDataModelModule.h" // For export macro
29#include "vtkDataSet.h"
30#include "vtkSmartPointer.h" // For vtkSmartPointer ivars
31#include "vtkWrappingHints.h" // For VTK_MARSHALAUTO
32
33#include "vtkStructuredData.h" // Needed for inline methods
34
35VTK_ABI_NAMESPACE_BEGIN
36class vtkDataArray;
38class vtkLine;
39class vtkMatrix3x3;
40class vtkMatrix4x4;
41class vtkPixel;
42class vtkPoints;
43class vtkVertex;
44class vtkVoxel;
45
46class VTKCOMMONDATAMODEL_EXPORT VTK_MARSHALAUTO vtkImageData : public vtkDataSet
47{
48public:
49 static vtkImageData* New();
51
52 vtkTypeMacro(vtkImageData, vtkDataSet);
53 void PrintSelf(ostream& os, vtkIndent indent) override;
54
59 void CopyStructure(vtkDataSet* ds) override;
60
64 void Initialize() override;
65
69 int GetDataObjectType() override { return VTK_IMAGE_DATA; }
70
72
79 vtkIdType GetNumberOfCells() override;
81 vtkPoints* GetPoints() override;
82 double* GetPoint(vtkIdType ptId) VTK_SIZEHINT(3) override;
83 void GetPoint(vtkIdType id, double x[3]) override;
84 vtkCell* GetCell(vtkIdType cellId) override;
85 vtkCell* GetCell(int i, int j, int k) override;
86 void GetCell(vtkIdType cellId, vtkGenericCell* cell) override;
87 void GetCellBounds(vtkIdType cellId, double bounds[6]) override;
89 vtkIdType FindPoint(double x[3]) override;
90 vtkIdType FindCell(double x[3], vtkCell* cell, vtkIdType cellId, double tol2, int& subId,
91 double pcoords[3], double* weights) override;
92 vtkIdType FindCell(double x[3], vtkCell* cell, vtkGenericCell* gencell, vtkIdType cellId,
93 double tol2, int& subId, double pcoords[3], double* weights) override;
94 vtkCell* FindAndGetCell(double x[3], vtkCell* cell, vtkIdType cellId, double tol2, int& subId,
95 double pcoords[3], double* weights) override;
96 int GetCellType(vtkIdType cellId) override;
98 void GetCellPoints(vtkIdType cellId, vtkIdType& npts, vtkIdType const*& pts, vtkIdList* ptIds)
99 VTK_SIZEHINT(pts, npts) override;
100 void GetCellPoints(vtkIdType cellId, vtkIdList* ptIds) override;
101 void GetPointCells(vtkIdType ptId, vtkIdList* cellIds) override
102 {
103 int dimensions[3];
104 this->GetDimensions(dimensions);
105 vtkStructuredData::GetPointCells(ptId, cellIds, dimensions);
106 }
107 void ComputeBounds() override;
108 int GetMaxCellSize() override { return 8; } // voxel is the largest
109 int GetMaxSpatialDimension() override;
110 void GetCellNeighbors(vtkIdType cellId, vtkIdList* ptIds, vtkIdList* cellIds) override;
112
119
127
135 void GetCellNeighbors(vtkIdType cellId, vtkIdList* ptIds, vtkIdList* cellIds, int* seedLoc);
136
138
144 virtual void BlankPoint(vtkIdType ptId);
145 virtual void UnBlankPoint(vtkIdType ptId);
146 virtual void BlankPoint(int i, int j, int k);
147 virtual void UnBlankPoint(int i, int j, int k);
149
151
157 virtual void BlankCell(vtkIdType ptId);
158 virtual void UnBlankCell(vtkIdType ptId);
159 virtual void BlankCell(int i, int j, int k);
160 virtual void UnBlankCell(int i, int j, int k);
162
168 unsigned char IsPointVisible(vtkIdType ptId);
169
175 unsigned char IsCellVisible(vtkIdType cellId);
176
181 bool HasAnyBlankPoints() override;
182
187 bool HasAnyBlankCells() override;
188
192 vtkGetMacro(DataDescription, int);
193
200 void GetCellDims(int cellDims[3]);
201
205 virtual void SetDimensions(int i, int j, int k);
206
210 virtual void SetDimensions(const int dims[3]);
211
218 virtual int* GetDimensions() VTK_SIZEHINT(3);
219
226 virtual void GetDimensions(int dims[3]);
227#if VTK_ID_TYPE_IMPL != VTK_INT
228 virtual void GetDimensions(vtkIdType dims[3]);
229#endif
230
237 virtual int ComputeStructuredCoordinates(const double x[3], int ijk[3], double pcoords[3]);
238
248 virtual void GetVoxelGradient(int i, int j, int k, vtkDataArray* s, vtkDataArray* g);
249
256 virtual void GetPointGradient(int i, int j, int k, vtkDataArray* s, double g[3]);
257
261 virtual int GetDataDimension();
262
266 virtual vtkIdType ComputePointId(int ijk[3])
267 {
269 }
270
274 virtual vtkIdType ComputeCellId(int ijk[3])
275 {
277 }
278
280
284 int axis, int min, int max, const int* updateExtent, int* axisUpdateExtent);
285 virtual void GetAxisUpdateExtent(int axis, int& min, int& max, const int* updateExtent);
287
289
300 virtual void SetExtent(int extent[6]);
301 virtual void SetExtent(int x1, int x2, int y1, int y2, int z1, int z2);
302 vtkGetVector6Macro(Extent, int);
304
306
310 virtual double GetScalarTypeMin(vtkInformation* meta_data);
311 virtual double GetScalarTypeMin();
312 virtual double GetScalarTypeMax(vtkInformation* meta_data);
313 virtual double GetScalarTypeMax();
315
317
320 virtual int GetScalarSize(vtkInformation* meta_data);
321 virtual int GetScalarSize();
323
325
337 virtual void GetIncrements(vtkIdType& incX, vtkIdType& incY, vtkIdType& incZ);
338 virtual void GetIncrements(vtkIdType inc[3]);
340 virtual void GetIncrements(
341 vtkDataArray* scalars, vtkIdType& incX, vtkIdType& incY, vtkIdType& incZ);
342 virtual void GetIncrements(vtkDataArray* scalars, vtkIdType inc[3]);
344
346
360 int extent[6], vtkIdType& incX, vtkIdType& incY, vtkIdType& incZ);
362 vtkDataArray* scalars, int extent[6], vtkIdType& incX, vtkIdType& incY, vtkIdType& incZ);
364
366
369 virtual void* GetScalarPointerForExtent(int extent[6]);
370 virtual void* GetScalarPointer(int coordinates[3]);
371 virtual void* GetScalarPointer(int x, int y, int z);
372 virtual void* GetScalarPointer();
374
376
379 virtual vtkIdType GetScalarIndexForExtent(int extent[6]);
380 virtual vtkIdType GetScalarIndex(int coordinates[3]);
381 virtual vtkIdType GetScalarIndex(int x, int y, int z);
383
385
388 virtual float GetScalarComponentAsFloat(int x, int y, int z, int component);
389 virtual void SetScalarComponentFromFloat(int x, int y, int z, int component, float v);
390 virtual double GetScalarComponentAsDouble(int x, int y, int z, int component);
391 virtual void SetScalarComponentFromDouble(int x, int y, int z, int component, double v);
393
399 virtual void AllocateScalars(int dataType, int numComponents);
400
407 virtual void AllocateScalars(vtkInformation* pipeline_info);
408
410
416 virtual void CopyAndCastFrom(vtkImageData* inData, int extent[6]);
417 virtual void CopyAndCastFrom(vtkImageData* inData, int x0, int x1, int y0, int y1, int z0, int z1)
418 {
419 int e[6];
420 e[0] = x0;
421 e[1] = x1;
422 e[2] = y0;
423 e[3] = y1;
424 e[4] = z0;
425 e[5] = z1;
426 this->CopyAndCastFrom(inData, e);
427 }
428
429
435 void Crop(const int* updateExtent) override;
436
445 unsigned long GetActualMemorySize() override;
446
448
452 vtkGetVector3Macro(Spacing, double);
453 virtual void SetSpacing(double i, double j, double k);
454 virtual void SetSpacing(const double ijk[3]);
456
458
466 vtkGetVector3Macro(Origin, double);
467 virtual void SetOrigin(double i, double j, double k);
468 virtual void SetOrigin(const double ijk[3]);
470
472
476 vtkGetObjectMacro(DirectionMatrix, vtkMatrix3x3);
478 virtual void SetDirectionMatrix(const double elements[9]);
479 virtual void SetDirectionMatrix(double e00, double e01, double e02, double e10, double e11,
480 double e12, double e20, double e21, double e22);
482
484
490
492
503
505
508 virtual void TransformContinuousIndexToPhysicalPoint(double i, double j, double k, double xyz[3]);
509 virtual void TransformContinuousIndexToPhysicalPoint(const double ijk[3], double xyz[3]);
510 virtual void TransformIndexToPhysicalPoint(int i, int j, int k, double xyz[3]);
511 virtual void TransformIndexToPhysicalPoint(const int ijk[3], double xyz[3]);
512 static void TransformContinuousIndexToPhysicalPoint(double i, double j, double k,
513 double const origin[3], double const spacing[3], double const direction[9], double xyz[3]);
515
517
523
525
536
538
541 virtual void TransformPhysicalPointToContinuousIndex(double x, double y, double z, double ijk[3]);
542 virtual void TransformPhysicalPointToContinuousIndex(const double xyz[3], double ijk[3]);
544
546
549 virtual void TransformPhysicalNormalToContinuousIndex(const double xyz[3], double ijk[3]);
551
556 virtual void TransformPhysicalPlaneToContinuousIndex(double const pplane[4], double iplane[4]);
557
559
563 double const origin[3], double const spacing[3], double const direction[9], double result[16]);
564
566
570 double const origin[3], double const spacing[3], double const direction[9], double result[16]);
572
573 static void SetScalarType(int, vtkInformation* meta_data);
574 static int GetScalarType(vtkInformation* meta_data);
575 static bool HasScalarType(vtkInformation* meta_data);
577 const char* GetScalarTypeAsString() { return vtkImageScalarTypeNameMacro(this->GetScalarType()); }
578
580
584 static void SetNumberOfScalarComponents(int n, vtkInformation* meta_data);
589
594 void CopyInformationFromPipeline(vtkInformation* information) override;
595
601 void CopyInformationToPipeline(vtkInformation* information) override;
602
608 void PrepareForNewData() override;
609
611
614 void ShallowCopy(vtkDataObject* src) override;
615 void DeepCopy(vtkDataObject* src) override;
617
618 //--------------------------------------------------------------------------
619 // Methods that apply to any array (not just scalars).
620 // I am starting to experiment with generalizing imaging filters
621 // to operate on more than just scalars.
622
624
629 void* GetArrayPointerForExtent(vtkDataArray* array, int extent[6]);
630 void* GetArrayPointer(vtkDataArray* array, int coordinates[3]);
632
634
641 vtkIdType GetTupleIndex(vtkDataArray* array, int coordinates[3]);
643
648 void GetArrayIncrements(vtkDataArray* array, vtkIdType increments[3]);
649
656 void ComputeInternalExtent(int* intExt, int* tgtExt, int* bnds);
657
661 int GetExtentType() override { return VTK_3D_EXTENT; }
662
664
670
671protected:
673 ~vtkImageData() override;
674
675 // The extent of what is currently in the structured grid.
676 // Dimensions is just an array to return a value.
677 // Its contents are out of data until GetDimensions is called.
680
681 // Variables used to define dataset physical orientation
682 double Origin[3];
683 double Spacing[3];
687
688 int Extent[6];
689
693
694 // The first method assumes Active Scalars
695 void ComputeIncrements();
696 // This one is given the number of components of the
697 // scalar field explicitly
698 void ComputeIncrements(int numberOfComponents);
699 void ComputeIncrements(vtkDataArray* scalars);
700
701 // The first method assumes Acitive Scalars
703 // This one is given the number of components of the
704 // scalar field explicitly
705 void ComputeIncrements(int numberOfComponents, vtkIdType inc[3]);
707
708 // for the index to physical methods
710
715
716private:
717 void InternalImageDataCopy(vtkImageData* src);
718
719 friend class vtkUniformGrid;
720
721 // for the GetPoint method
722 double Point[3];
723
724 int DataDescription;
725 bool DirectionMatrixIsIdentity;
726
727 vtkImageData(const vtkImageData&) = delete;
728 void operator=(const vtkImageData&) = delete;
729};
730
731//----------------------------------------------------------------------------
733{
734 this->ComputeIncrements(this->Increments);
735}
736
737//----------------------------------------------------------------------------
738inline void vtkImageData::ComputeIncrements(int numberOfComponents)
739{
740 this->ComputeIncrements(numberOfComponents, this->Increments);
741}
742
743//----------------------------------------------------------------------------
745{
746 this->ComputeIncrements(scalars, this->Increments);
747}
748
749//----------------------------------------------------------------------------
751{
752 this->GetPoint(id, this->Point);
753 return this->Point;
754}
755
756//----------------------------------------------------------------------------
761
762//----------------------------------------------------------------------------
767
768//----------------------------------------------------------------------------
770{
771 return vtkStructuredData::GetDataDimension(this->DataDescription);
772}
773
774//----------------------------------------------------------------------------
776{
777 return vtkStructuredData::GetDataDimension(this->DataDescription);
778}
779VTK_ABI_NAMESPACE_END
780#endif
abstract class to specify cell behavior
Definition vtkCell.h:51
virtual vtkIdType GetNumberOfPoints()=0
Determine the number of points composing the dataset.
virtual vtkIdType GetNumberOfCells()=0
Determine the number of cells composing the dataset.
virtual int GetMaxSpatialDimension()
Get the maximum spatial dimensionality of the data which is the maximum dimension of all cells.
virtual double * GetPoint(vtkIdType ptId)=0
Get point coordinates with ptId such that: 0 <= ptId < NumberOfPoints.
vtkIdType FindPoint(double x, double y, double z)
Locate the closest point to the global coordinate x.
Definition vtkDataSet.h:245
provides thread-safe access to cells
list of point or cell ids
Definition vtkIdList.h:24
void Crop(const int *updateExtent) override
Reallocates and copies to set the Extent to updateExtent.
virtual void TransformPhysicalPointToContinuousIndex(const double xyz[3], double ijk[3])
Convert coordinates from physical space (xyz) to index space (ijk).
virtual int GetDataDimension()
Return the dimensionality of the data.
vtkIdType FindCell(double x[3], vtkCell *cell, vtkGenericCell *gencell, vtkIdType cellId, double tol2, int &subId, double pcoords[3], double *weights) override
Standard vtkDataSet API methods.
virtual vtkIdType * GetIncrements()
Different ways to get the increments for moving around the data.
void GetArrayIncrements(vtkDataArray *array, vtkIdType increments[3])
Since various arrays have different number of components, the will have different increments.
virtual void TransformContinuousIndexToPhysicalPoint(const double ijk[3], double xyz[3])
Convert coordinates from index space (ijk) to physical space (xyz).
void CopyInformationToPipeline(vtkInformation *information) override
Copy information from this data object to the pipeline information.
vtkPoints * GetPoints() override
Standard vtkDataSet API methods.
vtkIdType GetCellSize(vtkIdType cellId) override
Standard vtkDataSet API methods.
vtkSmartPointer< vtkPoints > StructuredPoints
virtual void UnBlankCell(int i, int j, int k)
Methods for supporting blanking of cells.
void GetCellPoints(vtkIdType cellId, vtkIdType &npts, vtkIdType const *&pts, vtkIdList *ptIds) override
Standard vtkDataSet API methods.
virtual void CopyAndCastFrom(vtkImageData *inData, int extent[6])
This method is passed a input and output region, and executes the filter algorithm to fill the output...
virtual void UnBlankCell(vtkIdType ptId)
Methods for supporting blanking of cells.
bool HasAnyBlankCells() override
Returns 1 if there is any visibility constraint on the cells, 0 otherwise.
virtual vtkIdType ComputePointId(int ijk[3])
Given a location in structured coordinates (i-j-k), return the point id.
void BuildImplicitStructures()
void GetCellNeighbors(vtkIdType cellId, vtkIdList *ptIds, vtkIdList *cellIds) override
Standard vtkDataSet API methods.
friend class vtkUniformGrid
virtual void SetDirectionMatrix(vtkMatrix3x3 *m)
Set/Get the direction transform of the dataset.
virtual float GetScalarComponentAsFloat(int x, int y, int z, int component)
For access to data from wrappers.
vtkStructuredCellArray * GetCells()
Return the image data connectivity array.
vtkMatrix4x4 * IndexToPhysicalMatrix
virtual int * GetDimensions()
Get dimensions of this structured points dataset.
void ComputeInternalExtent(int *intExt, int *tgtExt, int *bnds)
Given how many pixel are required on a side for boundary conditions (in bnds), the target extent to t...
virtual void SetDimensions(int i, int j, int k)
Same as SetExtent(0, i-1, 0, j-1, 0, k-1)
virtual double GetScalarTypeMin()
These returns the minimum and maximum values the ScalarType can hold without overflowing.
virtual void SetDirectionMatrix(const double elements[9])
Set/Get the direction transform of the dataset.
void ComputeIncrements()
void BuildPoints()
vtkCell * FindAndGetCell(double x[3], vtkCell *cell, vtkIdType cellId, double tol2, int &subId, double pcoords[3], double *weights) override
Standard vtkDataSet API methods.
static vtkImageData * GetData(vtkInformationVector *v, int i=0)
Retrieve an instance of this class from an information object.
virtual void TransformIndexToPhysicalPoint(const int ijk[3], double xyz[3])
Convert coordinates from index space (ijk) to physical space (xyz).
static int GetScalarType(vtkInformation *meta_data)
void GetCellNeighbors(vtkIdType cellId, vtkIdList *ptIds, vtkIdList *cellIds, int *seedLoc)
Get cell neighbors around cell located at seedloc, except cell of id cellId.
void ComputeBounds() override
Standard vtkDataSet API methods.
double * GetPoint(vtkIdType ptId) override
Standard vtkDataSet API methods.
void * GetArrayPointerForExtent(vtkDataArray *array, int extent[6])
These are convenience methods for getting a pointer from any filed array.
int Dimensions[3]
vtkCell * GetCell(vtkIdType cellId) override
Standard vtkDataSet API methods.
void BuildCellTypes()
static vtkImageData * ExtendedNew()
virtual double GetScalarTypeMin(vtkInformation *meta_data)
These returns the minimum and maximum values the ScalarType can hold without overflowing.
void GetCellBounds(vtkIdType cellId, double bounds[6]) override
Standard vtkDataSet API methods.
virtual void TransformPhysicalNormalToContinuousIndex(const double xyz[3], double ijk[3])
Convert normal from physical space (xyz) to index space (ijk).
void GetPoint(vtkIdType id, double x[3]) override
Standard vtkDataSet API methods.
void GetCellDims(int cellDims[3])
Given the node dimensions of this grid instance, this method computes the node dimensions.
virtual int GetScalarSize(vtkInformation *meta_data)
Get the size of the scalar type in bytes.
virtual void SetExtent(int extent[6])
Set/Get the extent.
static int GetNumberOfScalarComponents(vtkInformation *meta_data)
Set/Get the number of scalar components for points.
virtual void TransformPhysicalPlaneToContinuousIndex(double const pplane[4], double iplane[4])
Convert a plane from physical to a continuous index.
void GetCellPoints(vtkIdType cellId, vtkIdList *ptIds) override
Standard vtkDataSet API methods.
virtual void GetVoxelGradient(int i, int j, int k, vtkDataArray *s, vtkDataArray *g)
Given structured coordinates (i,j,k) for a voxel cell, compute the eight gradient values for the voxe...
int GetMaxSpatialDimension() override
Standard vtkDataSet API methods.
virtual double GetScalarTypeMax(vtkInformation *meta_data)
These returns the minimum and maximum values the ScalarType can hold without overflowing.
static vtkImageData * New()
vtkIdType GetTupleIndex(vtkDataArray *array, int coordinates[3])
Given a data array and a coordinate, return the index of the tuple in the array corresponding to that...
void ComputeIncrements(int numberOfComponents, vtkIdType inc[3])
int GetNumberOfScalarComponents()
Set/Get the number of scalar components for points.
vtkConstantArray< int > * GetCellTypesArray()
Get the array of all cell types in the image data.
vtkIdType GetNumberOfPoints() override
Standard vtkDataSet API methods.
virtual vtkIdType GetScalarIndex(int coordinates[3])
Access the index for the scalar data.
vtkSmartPointer< vtkStructuredCellArray > StructuredCells
vtkIdType FindCell(double x[3], vtkCell *cell, vtkIdType cellId, double tol2, int &subId, double pcoords[3], double *weights) override
Standard vtkDataSet API methods.
static void ComputePhysicalToIndexMatrix(double const origin[3], double const spacing[3], double const direction[9], double result[16])
Static method to compute the PhysicalToIndexMatrix.
void ComputeIncrements(vtkDataArray *scalars, vtkIdType inc[3])
virtual void GetAxisUpdateExtent(int axis, int &min, int &max, const int *updateExtent)
Set / Get the extent on just one axis.
void * GetArrayPointer(vtkDataArray *array, int coordinates[3])
These are convenience methods for getting a pointer from any filed array.
int GetExtentType() override
The extent type is a 3D extent.
virtual void AllocateScalars(int dataType, int numComponents)
Allocate the point scalars for this dataset.
virtual void BlankPoint(int i, int j, int k)
Methods for supporting blanking of cells.
virtual void SetScalarComponentFromFloat(int x, int y, int z, int component, float v)
For access to data from wrappers.
virtual int ComputeStructuredCoordinates(const double x[3], int ijk[3], double pcoords[3])
Convenience function computes the structured coordinates for a point x[3].
virtual void SetSpacing(double i, double j, double k)
Set the spacing (width,height,length) of the cubical cells that compose the data set.
static void SetNumberOfScalarComponents(int n, vtkInformation *meta_data)
Set/Get the number of scalar components for points.
virtual void SetDirectionMatrix(double e00, double e01, double e02, double e10, double e11, double e12, double e20, double e21, double e22)
Set/Get the direction transform of the dataset.
vtkIdType Increments[3]
int GetCellType(vtkIdType cellId) override
Standard vtkDataSet API methods.
void ApplyIndexToPhysicalMatrix(vtkMatrix4x4 *source)
Set the transformation matrix from the index space to the physical space coordinate system of the dat...
virtual void SetSpacing(const double ijk[3])
Set the spacing (width,height,length) of the cubical cells that compose the data set.
static void SetScalarType(int, vtkInformation *meta_data)
vtkIdType GetNumberOfCells() override
Standard vtkDataSet API methods.
virtual void SetOrigin(const double ijk[3])
Set/Get the origin of the dataset.
virtual void GetContinuousIncrements(int extent[6], vtkIdType &incX, vtkIdType &incY, vtkIdType &incZ)
Different ways to get the increments for moving around the data.
void DeepCopy(vtkDataObject *src) override
Shallow and Deep copy.
virtual int GetScalarSize()
Get the size of the scalar type in bytes.
virtual void UnBlankPoint(vtkIdType ptId)
Methods for supporting blanking of cells.
int GetScalarType()
virtual void TransformPhysicalPointToContinuousIndex(double x, double y, double z, double ijk[3])
Convert coordinates from physical space (xyz) to index space (ijk).
int GetDataObjectType() override
Return what type of dataset this is.
const char * GetScalarTypeAsString()
void CopyInformationFromPipeline(vtkInformation *information) override
Override these to handle origin, spacing, scalar type, and scalar number of components.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
virtual double GetScalarComponentAsDouble(int x, int y, int z, int component)
For access to data from wrappers.
static void TransformContinuousIndexToPhysicalPoint(double i, double j, double k, double const origin[3], double const spacing[3], double const direction[9], double xyz[3])
Convert coordinates from index space (ijk) to physical space (xyz).
virtual vtkIdType GetScalarIndexForExtent(int extent[6])
Access the index for the scalar data.
void ComputeIncrements(vtkIdType inc[3])
double Spacing[3]
void ApplyPhysicalToIndexMatrix(vtkMatrix4x4 *source)
Get the transformation matrix from the physical space to the index space coordinate system of the dat...
void ComputeTransforms()
vtkMatrix3x3 * DirectionMatrix
vtkIdType FindPoint(double x[3]) override
Standard vtkDataSet API methods.
unsigned long GetActualMemorySize() override
Return the actual size of the data in kibibytes (1024 bytes).
void GetCell(vtkIdType cellId, vtkGenericCell *cell) override
Standard vtkDataSet API methods.
double Origin[3]
void Initialize() override
Restore object to initial state.
virtual void BlankCell(vtkIdType ptId)
Methods for supporting blanking of cells.
static void ComputeIndexToPhysicalMatrix(double const origin[3], double const spacing[3], double const direction[9], double result[16])
Static method to compute the IndexToPhysicalMatrix.
virtual void UnBlankPoint(int i, int j, int k)
Methods for supporting blanking of cells.
virtual void SetScalarComponentFromDouble(int x, int y, int z, int component, double v)
For access to data from wrappers.
virtual void TransformContinuousIndexToPhysicalPoint(double i, double j, double k, double xyz[3])
Convert coordinates from index space (ijk) to physical space (xyz).
virtual void SetOrigin(double i, double j, double k)
Set/Get the origin of the dataset.
virtual void * GetScalarPointer(int coordinates[3])
Access the native pointer for the scalar data.
virtual double GetScalarTypeMax()
These returns the minimum and maximum values the ScalarType can hold without overflowing.
virtual void * GetScalarPointerForExtent(int extent[6])
Access the native pointer for the scalar data.
virtual void TransformIndexToPhysicalPoint(int i, int j, int k, double xyz[3])
Convert coordinates from index space (ijk) to physical space (xyz).
int GetMaxCellSize() override
Standard vtkDataSet API methods.
unsigned char IsPointVisible(vtkIdType ptId)
Return non-zero value if specified point is visible.
void GetPointCells(vtkIdType ptId, vtkIdList *cellIds) override
Standard vtkDataSet API methods.
virtual void BlankCell(int i, int j, int k)
Methods for supporting blanking of cells.
vtkSmartPointer< vtkConstantArray< int > > StructuredCellTypes
void ShallowCopy(vtkDataObject *src) override
Shallow and Deep copy.
vtkCell * GetCell(int i, int j, int k) override
Standard vtkDataSet API methods.
virtual void SetAxisUpdateExtent(int axis, int min, int max, const int *updateExtent, int *axisUpdateExtent)
Set / Get the extent on just one axis.
static bool HasNumberOfScalarComponents(vtkInformation *meta_data)
Set/Get the number of scalar components for points.
static bool HasScalarType(vtkInformation *meta_data)
virtual void GetPointGradient(int i, int j, int k, vtkDataArray *s, double g[3])
Given structured coordinates (i,j,k) for a point in a structured point dataset, compute the gradient ...
~vtkImageData() override
unsigned char IsCellVisible(vtkIdType cellId)
Return non-zero value if specified point is visible.
void PrepareForNewData() override
make the output data ready for new data to be inserted.
virtual void BlankPoint(vtkIdType ptId)
Methods for supporting blanking of cells.
virtual void SetExtent(int x1, int x2, int y1, int y2, int z1, int z2)
Set/Get the extent.
void CopyStructure(vtkDataSet *ds) override
Copy the geometric and topological structure of an input image data object.
bool HasAnyBlankPoints() override
Returns 1 if there is any visibility constraint on the points, 0 otherwise.
virtual void SetDimensions(const int dims[3])
Same as SetExtent(0, dims[0]-1, 0, dims[1]-1, 0, dims[2]-1)
void BuildCells()
vtkMatrix4x4 * PhysicalToIndexMatrix
virtual vtkIdType ComputeCellId(int ijk[3])
Given a location in structured coordinates (i-j-k), return the cell id.
static vtkImageData * GetData(vtkInformation *info)
Retrieve an instance of this class from an information object.
a simple class to control print indentation
Definition vtkIndent.h:29
Store zero or more vtkInformation instances.
Store vtkAlgorithm input/output information.
cell represents a 1D line
Definition vtkLine.h:23
represent and manipulate 3x3 transformation matrices
represent and manipulate 4x4 transformation matrices
a cell that represents an orthogonal quadrilateral
Definition vtkPixel.h:27
represent and manipulate 3D points
Definition vtkPoints.h:30
Hold a reference to a vtkObjectBase instance.
implicit object to represent cell connectivity
static vtkIdType ComputePointIdForExtent(const int extent[6], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the extent of the structured dataset,...
static vtkIdType GetNumberOfCells(const int ext[6], int dataDescription=VTK_EMPTY)
Given the grid extent, this method returns the total number of cells within the extent.
static int GetDataDimension(int dataDescription)
Return the topological dimension of the data (e.g., 0, 1, 2, or 3D).
static vtkIdType ComputeCellIdForExtent(const int extent[6], const int ijk[3], int dataDescription=VTK_EMPTY)
Given a location in structured coordinates (i-j-k), and the extent of the structured dataset,...
static void GetPointCells(vtkIdType ptId, vtkIdList *cellIds, VTK_FUTURE_CONST int dim[3])
Get the cells using a point.
static vtkIdType GetNumberOfPoints(const int ext[6], int dataDescription=VTK_EMPTY)
Given the grid extent, this method returns the total number of points within the extent.
a cell that represents a 3D point
Definition vtkVertex.h:23
a cell that represents a 3D orthogonal parallelepiped
Definition vtkVoxel.h:31
boost::graph_traits< vtkGraph * >::vertex_descriptor source(boost::graph_traits< vtkGraph * >::edge_descriptor e, vtkGraph *)
#define vtkDataArray
vtkImplicitArray< vtkConstantImplicitBackend< T > > vtkConstantArray
A utility alias for wrapping constant functions in implicit arrays.
#define VTK_3D_EXTENT
int vtkIdType
Definition vtkType.h:315
#define VTK_IMAGE_DATA
Definition vtkType.h:71
#define VTK_SIZEHINT(...)
#define VTK_MARSHALAUTO
#define max(a, b)