VTK  9.2.6
vtkDataSetAttributes.h
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1/*=========================================================================
2
3 Program: Visualization Toolkit
4 Module: vtkDataSetAttributes.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=========================================================================*/
66#ifndef vtkDataSetAttributes_h
67#define vtkDataSetAttributes_h
68
69#include "vtkCommonDataModelModule.h" // For export macro
70#include "vtkDataSetAttributesFieldList.h" // for vtkDataSetAttributesFieldList
71#include "vtkFieldData.h"
72
73class vtkLookupTable;
74
75class VTKCOMMONDATAMODEL_EXPORT vtkDataSetAttributes : public vtkFieldData
76{
77public:
83
85 void PrintSelf(ostream& os, vtkIndent indent) override;
86
91 void Initialize() override;
92
97 virtual void Update() {}
98
99 // -- shallow and deep copy -----------------------------------------------
100
106 void DeepCopy(vtkFieldData* pd) override;
107
112 void ShallowCopy(vtkFieldData* pd) override;
113
114 // -- attribute types -----------------------------------------------------
115
116 // Always keep NUM_ATTRIBUTES as the last entry
118 {
119 SCALARS = 0,
120 VECTORS = 1,
121 NORMALS = 2,
122 TCOORDS = 3,
123 TENSORS = 4,
124 GLOBALIDS = 5,
125 PEDIGREEIDS = 6,
126 EDGEFLAG = 7,
127 TANGENTS = 8,
128 RATIONALWEIGHTS = 9,
129 HIGHERORDERDEGREES = 10,
130 NUM_ATTRIBUTES
131 };
132
134 {
137 NOLIMIT
138 };
139
140 // ----------- ghost points and ghost cells -------------------------------------------
141 // The following bit fields are consistent with VisIt ghost zones specification
142 // For details, see http://www.visitusers.org/index.php?title=Representing_ghost_data
143
145 {
146 DUPLICATECELL = 1, // the cell is present on multiple processors
147 HIGHCONNECTIVITYCELL = 2, // the cell has more neighbors than in a regular mesh
148 LOWCONNECTIVITYCELL = 4, // the cell has less neighbors than in a regular mesh
149 REFINEDCELL = 8, // other cells are present that refines it.
150 EXTERIORCELL = 16, // the cell is on the exterior of the data set
151 HIDDENCELL =
152 32 // the cell is needed to maintain connectivity, but the data values should be ignored.
153 };
154
156 {
157 DUPLICATEPOINT = 1, // the cell is present on multiple processors
158 HIDDENPOINT =
159 2 // the point is needed to maintain connectivity, but the data values should be ignored.
160 };
161
162 // A vtkDataArray with this name must be of type vtkUnsignedCharArray.
163 // Each value must be assigned according to the bit fields described in
164 // PointGhostTypes or CellGhostType
165 static const char* GhostArrayName() { return "vtkGhostType"; }
166
167 //-----------------------------------------------------------------------------------
168
170
174 int SetActiveScalars(const char* name);
177
179
183 int SetActiveVectors(const char* name);
186
188
192 int SetActiveNormals(const char* name);
195
197
201 int SetActiveTangents(const char* name);
204
206
210 int SetActiveTCoords(const char* name);
213
215
219 int SetActiveTensors(const char* name);
222
224
228 int SetActiveGlobalIds(const char* name);
231
233
237 int SetActivePedigreeIds(const char* name);
240
242
246 int SetActiveRationalWeights(const char* name);
249
251
255 int SetActiveHigherOrderDegrees(const char* name);
258
260
265 vtkDataArray* GetScalars(const char* name);
266 vtkDataArray* GetVectors(const char* name);
267 vtkDataArray* GetNormals(const char* name);
268 vtkDataArray* GetTangents(const char* name);
269 vtkDataArray* GetTCoords(const char* name);
270 vtkDataArray* GetTensors(const char* name);
271 vtkDataArray* GetGlobalIds(const char* name);
276
292 int SetActiveAttribute(const char* name, int attributeType);
293
297 int SetActiveAttribute(int index, int attributeType);
298
303 void GetAttributeIndices(int* indexArray);
304
311 int IsArrayAnAttribute(int idx);
312
335 int SetAttribute(vtkAbstractArray* aa, int attributeType);
336
343 vtkDataArray* GetAttribute(int attributeType);
344
353
355
359 void RemoveArray(int index) override;
361
363
367 static const char* GetAttributeTypeAsString(int attributeType);
368 static const char* GetLongAttributeTypeAsString(int attributeType);
370
371 // -- attribute copy properties ------------------------------------------
372
374 {
375 COPYTUPLE = 0,
376 INTERPOLATE = 1,
377 PASSDATA = 2,
378 ALLCOPY // all of the above
379 };
380
402 void SetCopyAttribute(int index, int value, int ctype = ALLCOPY);
403
408 int GetCopyAttribute(int index, int ctype);
409
411 void SetCopyScalars(vtkTypeBool i, int ctype = ALLCOPY);
412 vtkTypeBool GetCopyScalars(int ctype = ALLCOPY);
413 vtkBooleanMacro(CopyScalars, vtkTypeBool);
414
416 void SetCopyVectors(vtkTypeBool i, int ctype = ALLCOPY);
417 vtkTypeBool GetCopyVectors(int ctype = ALLCOPY);
418 vtkBooleanMacro(CopyVectors, vtkTypeBool);
419
421 void SetCopyNormals(vtkTypeBool i, int ctype = ALLCOPY);
422 vtkTypeBool GetCopyNormals(int ctype = ALLCOPY);
423 vtkBooleanMacro(CopyNormals, vtkTypeBool);
424
426 void SetCopyTangents(vtkTypeBool i, int ctype = ALLCOPY);
427 vtkTypeBool GetCopyTangents(int ctype = ALLCOPY);
428 vtkBooleanMacro(CopyTangents, vtkTypeBool);
429
431 void SetCopyTCoords(vtkTypeBool i, int ctype = ALLCOPY);
432 vtkTypeBool GetCopyTCoords(int ctype = ALLCOPY);
433 vtkBooleanMacro(CopyTCoords, vtkTypeBool);
434
436 void SetCopyTensors(vtkTypeBool i, int ctype = ALLCOPY);
437 vtkTypeBool GetCopyTensors(int ctype = ALLCOPY);
438 vtkBooleanMacro(CopyTensors, vtkTypeBool);
439
441 void SetCopyGlobalIds(vtkTypeBool i, int ctype = ALLCOPY);
442 vtkTypeBool GetCopyGlobalIds(int ctype = ALLCOPY);
443 vtkBooleanMacro(CopyGlobalIds, vtkTypeBool);
444
446 void SetCopyPedigreeIds(vtkTypeBool i, int ctype = ALLCOPY);
447 vtkTypeBool GetCopyPedigreeIds(int ctype = ALLCOPY);
448 vtkBooleanMacro(CopyPedigreeIds, vtkTypeBool);
449
451 void SetCopyRationalWeights(vtkTypeBool i, int ctype = ALLCOPY);
453 vtkBooleanMacro(CopyRationalWeights, vtkTypeBool);
454
456 void SetCopyHigherOrderDegrees(vtkTypeBool i, int ctype = ALLCOPY);
458 vtkBooleanMacro(CopyHigherOrderDegrees, vtkTypeBool);
459
461 void CopyAllOn(int ctype = ALLCOPY) override;
462
464 void CopyAllOff(int ctype = ALLCOPY) override;
465
466 // -- passthrough operations ----------------------------------------------
467
477 void PassData(vtkFieldData* fd) override;
478
479 // -- copytuple operations ------------------------------------------------
480
482
494 {
495 this->CopyAllocate(pd, sze, ext, 0);
496 }
497 void CopyAllocate(vtkDataSetAttributes* pd, vtkIdType sze, vtkIdType ext, int shallowCopyArrays);
499
508
518 vtkDataSetAttributes* inDsa, const int* inExt, const int* outExt, bool setSize = true);
519
521
535 void CopyData(vtkDataSetAttributes* fromPd, vtkIdList* fromIds, vtkIdList* toIds);
536 void CopyData(vtkDataSetAttributes* fromPd, vtkIdList* fromIds, vtkIdType destStartId = 0);
538
544 void CopyData(vtkDataSetAttributes* fromPd, vtkIdType dstStart, vtkIdType n, vtkIdType srcStart);
545
547
554 vtkAbstractArray* fromData, vtkAbstractArray* toData, vtkIdType fromId, vtkIdType toId);
556 vtkAbstractArray* fromData, vtkAbstractArray* toData, vtkIdList* fromIds, vtkIdList* toIds);
557 void CopyTuples(vtkAbstractArray* fromData, vtkAbstractArray* toData, vtkIdType dstStart,
558 vtkIdType n, vtkIdType srcStart);
560
561 // -- interpolate operations ----------------------------------------------
562
564
573 {
574 this->InterpolateAllocate(pd, sze, ext, 0);
575 }
577 vtkDataSetAttributes* pd, vtkIdType sze, vtkIdType ext, int shallowCopyArrays);
579
588 vtkDataSetAttributes* fromPd, vtkIdType toId, vtkIdList* ids, double* weights);
589
600 vtkDataSetAttributes* fromPd, vtkIdType toId, vtkIdType p1, vtkIdType p2, double t);
601
615 vtkDataSetAttributes* from1, vtkDataSetAttributes* from2, vtkIdType id, double t);
616
618
619 // field list copy operations ------------------------------------------
620
626
634 vtkIdType fromId, vtkIdType toId);
636 vtkIdType dstStart, vtkIdType n, vtkIdType srcStart);
637
645 vtkDataSetAttributes::FieldList& list, vtkIdType sze = 0, vtkIdType ext = 1000);
646
654 int idx, vtkIdType toId, vtkIdList* ids, double* weights);
655
656protected:
659
661 vtkIdType ext = 1000, int shallowCopyArrays = 0, bool createNewArrays = true);
662
666 void InitializeFields() override;
667
668 int AttributeIndices[NUM_ATTRIBUTES]; // index to attribute array in field data
669 int CopyAttributeFlags[ALLCOPY][NUM_ATTRIBUTES]; // copy flag for attribute data
670
671 friend struct ArrayList; // Friend to base class in vtkArrayListTemplate
674
675 static const int NumberOfAttributeComponents[NUM_ATTRIBUTES];
676 static const int AttributeLimits[NUM_ATTRIBUTES];
677 static const char AttributeNames[NUM_ATTRIBUTES][19];
678 static const char LongAttributeNames[NUM_ATTRIBUTES][42];
679
680private:
681 static int CheckNumberOfComponents(vtkAbstractArray* da, int attributeType);
682
683 vtkFieldData::BasicIterator ComputeRequiredArrays(vtkDataSetAttributes* pd, int ctype);
684
685private:
687 void operator=(const vtkDataSetAttributes&) = delete;
688
690};
691
692#endif
Abstract superclass for all arrays.
abstract superclass for arrays of numeric data
helps manage arrays from multiple vtkDataSetAttributes.
represent and manipulate attribute data in a dataset
static const char * GetLongAttributeTypeAsString(int attributeType)
Given an integer attribute type, this static method returns a string type for the attribute (i....
vtkTypeBool GetCopyPedigreeIds(int ctype=ALLCOPY)
void PassData(vtkFieldData *fd) override
Pass entire arrays of input data through to output.
virtual void Update()
Attributes have a chance to bring themselves up to date; right now this is ignored.
vtkDataArray * GetTangents(const char *name)
This will first look for an array with the correct name.
int SetActiveTangents(const char *name)
Set/get the tangent data.
int SetGlobalIds(vtkDataArray *da)
Set/Get the global id data.
void InterpolateEdge(vtkDataSetAttributes *fromPd, vtkIdType toId, vtkIdType p1, vtkIdType p2, double t)
Interpolate data from the two points p1,p2 (forming an edge) and an interpolation factor,...
void CopyAllocate(vtkDataSetAttributes *pd, vtkIdType sze, vtkIdType ext, int shallowCopyArrays)
Allocates point data for point-by-point (or cell-by-cell) copy operation.
void Initialize() override
Initialize all of the object's data to nullptr Also, clear the copy flags.
int GetCopyAttribute(int index, int ctype)
Get the attribute copy flag for copy operation ctype of attribute index.
vtkFieldData::BasicIterator RequiredArrays
vtkDataArray * GetHigherOrderDegrees(const char *name)
This will first look for an array with the correct name.
vtkDataArray * GetScalars(const char *name)
This will first look for an array with the correct name.
vtkTypeBool GetCopyScalars(int ctype=ALLCOPY)
vtkDataArray * GetTCoords()
Set/Get the texture coordinate data.
static vtkDataSetAttributes * ExtendedNew()
int SetActiveAttribute(int index, int attributeType)
Make the array with the given index the active attribute.
void SetCopyAttribute(int index, int value, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
~vtkDataSetAttributes() override
int SetHigherOrderDegrees(vtkDataArray *da)
Set/Get the rational degrees data.
int SetActiveNormals(const char *name)
Set/get the normal data.
vtkDataArray * GetTangents()
Set/get the tangent data.
vtkAbstractArray * GetPedigreeIds(const char *name)
This will first look for an array with the correct name.
vtkDataArray * GetRationalWeights()
Set/Get the rational weights data.
void SetCopyNormals(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void InterpolateAllocate(vtkDataSetAttributes *pd, vtkIdType sze=0, vtkIdType ext=1000)
Initialize point interpolation method.
void CopyData(vtkDataSetAttributes *fromPd, vtkIdList *fromIds, vtkIdType destStartId=0)
Copy the attribute data from one id to another.
int SetActiveHigherOrderDegrees(const char *name)
Set/Get the rational degrees data.
vtkDataArray * GetNormals()
Set/get the normal data.
int SetScalars(vtkDataArray *da)
Set/Get the scalar data.
vtkDataArray * GetNormals(const char *name)
This will first look for an array with the correct name.
void SetCopyTCoords(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void InterpolatePoint(vtkDataSetAttributes::FieldList &list, vtkDataSetAttributes *fromPd, int idx, vtkIdType toId, vtkIdList *ids, double *weights)
Interpolate data set attributes from other data set attributes given cell or point ids and associated...
vtkDataArray * GetRationalWeights(const char *name)
This will first look for an array with the correct name.
int SetActiveTCoords(const char *name)
Set/Get the texture coordinate data.
void SetCopyTangents(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
vtkTypeBool GetCopyVectors(int ctype=ALLCOPY)
vtkTypeBool GetCopyNormals(int ctype=ALLCOPY)
void CopyTuples(vtkAbstractArray *fromData, vtkAbstractArray *toData, vtkIdList *fromIds, vtkIdList *toIds)
Copy a tuple (or set of tuples) of data from one data array to another.
void InterpolatePoint(vtkDataSetAttributes *fromPd, vtkIdType toId, vtkIdList *ids, double *weights)
Interpolate data set attributes from other data set attributes given cell or point ids and associated...
void InterpolateAllocate(vtkDataSetAttributes::FieldList &list, vtkIdType sze=0, vtkIdType ext=1000)
A special form of InterpolateAllocate() to be used with FieldLists.
void SetCopyPedigreeIds(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void InitializeFields() override
Initialize all of the object's data to nullptr.
vtkDataArray * GetTensors()
Set/Get the tensor data.
int SetActiveGlobalIds(const char *name)
Set/Get the global id data.
void SetupForCopy(vtkDataSetAttributes *pd)
Create a mapping between the input attributes and this object so that methods like CopyData() and Cop...
int SetActiveScalars(const char *name)
Set/Get the scalar data.
void CopyData(vtkDataSetAttributes *fromPd, vtkIdType dstStart, vtkIdType n, vtkIdType srcStart)
Copy n consecutive attributes starting at srcStart from fromPd to this container, starting at the dst...
int SetNormals(vtkDataArray *da)
Set/get the normal data.
void InterpolateTime(vtkDataSetAttributes *from1, vtkDataSetAttributes *from2, vtkIdType id, double t)
Interpolate data from the same id (point or cell) at different points in time (parameter t).
void CopyData(vtkDataSetAttributes::FieldList &list, vtkDataSetAttributes *dsa, int idx, vtkIdType fromId, vtkIdType toId)
Special forms of CopyData() to be used with FieldLists.
void CopyAllOn(int ctype=ALLCOPY) override
Turn on/off the copying of attribute data.
void SetCopyScalars(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void CopyTuple(vtkAbstractArray *fromData, vtkAbstractArray *toData, vtkIdType fromId, vtkIdType toId)
Copy a tuple (or set of tuples) of data from one data array to another.
void InternalCopyAllocate(vtkDataSetAttributes *pd, int ctype, vtkIdType sze=0, vtkIdType ext=1000, int shallowCopyArrays=0, bool createNewArrays=true)
int IsArrayAnAttribute(int idx)
Determine whether a data array of index idx is considered a data set attribute (i....
vtkTypeBool GetCopyTangents(int ctype=ALLCOPY)
vtkDataArray * GetTCoords(const char *name)
This will first look for an array with the correct name.
void CopyData(vtkDataSetAttributes *fromPd, vtkIdType fromId, vtkIdType toId)
Copy the attribute data from one id to another.
int SetActivePedigreeIds(const char *name)
Set/Get the pedigree id data.
vtkAbstractArray * GetPedigreeIds()
Set/Get the pedigree id data.
vtkDataArray * GetVectors()
Set/Get the vector data.
int SetActiveRationalWeights(const char *name)
Set/Get the rational weights data.
vtkAbstractArray * GetAbstractAttribute(int attributeType)
Return an attribute given the attribute type (see vtkDataSetAttributes::AttributeTypes).
void RemoveArray(int index) override
Remove an array (with the given name) from the list of arrays.
static const char * GhostArrayName()
vtkTypeBool GetCopyRationalWeights(int ctype=ALLCOPY)
vtkTypeBool GetCopyHigherOrderDegrees(int ctype=ALLCOPY)
vtkDataArray * GetAttribute(int attributeType)
Return an attribute given the attribute type (see vtkDataSetAttributes::AttributeTypes).
void CopyTuples(vtkAbstractArray *fromData, vtkAbstractArray *toData, vtkIdType dstStart, vtkIdType n, vtkIdType srcStart)
Copy a tuple (or set of tuples) of data from one data array to another.
void CopyData(vtkDataSetAttributes::FieldList &list, vtkDataSetAttributes *dsa, int idx, vtkIdType dstStart, vtkIdType n, vtkIdType srcStart)
vtkTypeBool GetCopyGlobalIds(int ctype=ALLCOPY)
vtkTypeBool GetCopyTCoords(int ctype=ALLCOPY)
static vtkDataSetAttributes * New()
Construct object with copying turned on for all data.
void CopyStructuredData(vtkDataSetAttributes *inDsa, const int *inExt, const int *outExt, bool setSize=true)
This method is used to copy data arrays in images.
void CopyAllocate(vtkDataSetAttributes::FieldList &list, vtkIdType sze=0, vtkIdType ext=1000)
A special form of CopyAllocate() to be used with FieldLists.
void CopyAllocate(vtkDataSetAttributes *pd, vtkIdType sze=0, vtkIdType ext=1000)
Allocates point data for point-by-point (or cell-by-cell) copy operation.
void DeepCopy(vtkFieldData *pd) override
Deep copy of data (i.e., create new data arrays and copy from input data).
int SetRationalWeights(vtkDataArray *da)
Set/Get the rational weights data.
void ShallowCopy(vtkFieldData *pd) override
Shallow copy of data (i.e., use reference counting).
static const char * GetAttributeTypeAsString(int attributeType)
Given an integer attribute type, this static method returns a string type for the attribute (i....
void GetAttributeIndices(int *indexArray)
Get the field data array indices corresponding to scalars, vectors, tensors, etc.
void SetCopyRationalWeights(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void SetCopyTensors(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
int SetActiveAttribute(const char *name, int attributeType)
Make the array with the given name the active attribute.
int SetTCoords(vtkDataArray *da)
Set/Get the texture coordinate data.
void SetCopyHigherOrderDegrees(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void InterpolateAllocate(vtkDataSetAttributes *pd, vtkIdType sze, vtkIdType ext, int shallowCopyArrays)
Initialize point interpolation method.
int SetPedigreeIds(vtkAbstractArray *da)
Set/Get the pedigree id data.
vtkTypeBool GetCopyTensors(int ctype=ALLCOPY)
void CopyData(vtkDataSetAttributes *fromPd, vtkIdList *fromIds, vtkIdList *toIds)
Copy the attribute data from one id to another.
int SetActiveVectors(const char *name)
Set/Get the vector data.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
void SetCopyGlobalIds(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
void CopyAllOff(int ctype=ALLCOPY) override
Turn on/off the copying of attribute data.
vtkDataArray * GetGlobalIds(const char *name)
This will first look for an array with the correct name.
vtkDataArray * GetScalars()
Set/Get the scalar data.
vtkDataArray * GetHigherOrderDegrees()
Set/Get the rational degrees data.
int SetTangents(vtkDataArray *da)
Set/get the tangent data.
int SetActiveTensors(const char *name)
Set/Get the tensor data.
void SetCopyVectors(vtkTypeBool i, int ctype=ALLCOPY)
Turn on/off the copying of attribute data.
vtkDataArray * GetVectors(const char *name)
This will first look for an array with the correct name.
int SetVectors(vtkDataArray *da)
Set/Get the vector data.
vtkDataArray * GetTensors(const char *name)
This will first look for an array with the correct name.
vtkDataArray * GetGlobalIds()
Set/Get the global id data.
int SetTensors(vtkDataArray *da)
Set/Get the tensor data.
int SetAttribute(vtkAbstractArray *aa, int attributeType)
Set an array to use as the given attribute type (i.e., vtkDataSetAttributes::SCALAR,...
represent and manipulate fields of data
virtual void RemoveArray(const char *name)
Remove an array (with the given name or index) from the list of arrays.
list of point or cell ids
Definition vtkIdList.h:43
a simple class to control print indentation
Definition vtkIndent.h:49
map scalar values into colors via a lookup table
int vtkTypeBool
Definition vtkABI.h:69
int vtkIdType
Definition vtkType.h:332