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vtkAbstractArray.h
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1// SPDX-FileCopyrightText: Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
2// SPDX-License-Identifier: BSD-3-Clause
3//
65#ifndef vtkAbstractArray_h
66#define vtkAbstractArray_h
67
68#include "vtkCommonCoreModule.h" // For export macro
69#include "vtkIdList.h" // For InsertTuples
70#include "vtkObject.h"
71#include "vtkVariant.h" // for variant arguments
72#include "vtkWrappingHints.h" // For VTK_MARSHALAUTO
73
74VTK_ABI_NAMESPACE_BEGIN
76class vtkDataArray;
77class vtkIdList;
78class vtkIdTypeArray;
79class vtkInformation;
84class vtkVariantArray;
85
86class VTKCOMMONCORE_EXPORT VTK_MARSHALAUTO vtkAbstractArray : public vtkObject
87{
88public:
90 void PrintSelf(ostream& os, vtkIndent indent) override;
91
95 void PrintValues(ostream& os);
96
105 virtual vtkTypeBool Allocate(vtkIdType numValues, vtkIdType ext = 1000) = 0;
106
110 virtual void Initialize() = 0;
111
116 virtual int GetDataType() const = 0;
117
119
124 virtual int GetDataTypeSize() const = 0;
125 static int GetDataTypeSize(int type);
127
135 virtual int GetElementComponentSize() const = 0;
136
138
142 vtkSetClampMacro(NumberOfComponents, int, 1, VTK_INT_MAX);
143 int GetNumberOfComponents() const { return this->NumberOfComponents; }
145
149 void SetComponentName(vtkIdType component, const char* name);
150
155 const char* GetComponentName(vtkIdType component) const;
156
160 bool HasAComponentName() const;
161
167
182 virtual bool CopyComponent(int dstComponent, vtkAbstractArray* src, int srcComponent) = 0;
183
191 virtual void SetNumberOfTuples(vtkIdType numTuples) = 0;
192
200 virtual bool SetNumberOfValues(vtkIdType numValues);
201
205 vtkIdType GetNumberOfTuples() const { return (this->MaxId + 1) / this->NumberOfComponents; }
206
214 vtkIdType GetNumberOfValues() const { return (this->MaxId + 1); }
215
222 virtual void SetTuple(vtkIdType dstTupleIdx, vtkIdType srcTupleIdx, vtkAbstractArray* source) = 0;
223
229 virtual void InsertTuple(
230 vtkIdType dstTupleIdx, vtkIdType srcTupleIdx, vtkAbstractArray* source) = 0;
231
237 virtual void InsertTuples(vtkIdList* dstIds, vtkIdList* srcIds, vtkAbstractArray* source) = 0;
238
245 vtkIdType dstStart, vtkIdList* srcIds, vtkAbstractArray* source) = 0;
246
252 virtual void InsertTuples(
253 vtkIdType dstStart, vtkIdType n, vtkIdType srcStart, vtkAbstractArray* source) = 0;
254
261
267 virtual void GetTuples(vtkIdList* tupleIds, vtkAbstractArray* output);
268
274 virtual void GetTuples(vtkIdType p1, vtkIdType p2, vtkAbstractArray* output);
275
282 virtual bool HasStandardMemoryLayout() const;
283
291 virtual void* GetVoidPointer(vtkIdType valueIdx) = 0;
292
301 virtual void DeepCopy(vtkAbstractArray* da);
302
310 virtual void InterpolateTuple(
311 vtkIdType dstTupleIdx, vtkIdList* ptIndices, vtkAbstractArray* source, double* weights) = 0;
312
321 virtual void InterpolateTuple(vtkIdType dstTupleIdx, vtkIdType srcTupleIdx1,
322 vtkAbstractArray* source1, vtkIdType srcTupleIdx2, vtkAbstractArray* source2, double t) = 0;
323
329 virtual void Squeeze() = 0;
330
340 virtual vtkTypeBool Resize(vtkIdType numTuples) = 0;
341
343
346 void Reset()
347 {
348 this->MaxId = -1;
349 this->DataChanged();
350 }
352
357 vtkIdType GetSize() const { return this->Size; }
358
362 vtkIdType GetMaxId() const { return this->MaxId; }
363
365 {
369 VTK_DATA_ARRAY_USER_DEFINED
370 };
371
373
390 virtual void SetVoidArray(
391 void* vtkNotUsed(array), vtkIdType vtkNotUsed(size), int vtkNotUsed(save)) = 0;
392 virtual void SetVoidArray(void* array, vtkIdType size, int save, int vtkNotUsed(deleteMethod))
393 {
394 this->SetVoidArray(array, size, save);
395 }
397
404 virtual void SetArrayFreeFunction(void (*callback)(void*)) = 0;
405
411 virtual void ExportToVoidPointer(void* out_ptr);
412
421 virtual unsigned long GetActualMemorySize() const = 0;
422
424
427 vtkSetStringMacro(Name);
428 vtkGetStringMacro(Name);
430
434 virtual const char* GetDataTypeAsString() const
435 {
436 return vtkImageScalarTypeNameMacro(this->GetDataType());
437 }
438
449 static vtkAbstractArray* CreateArray(int dataType);
450
455 virtual int IsNumeric() const = 0;
456
460 virtual bool IsIntegral() const;
461
468
475 virtual vtkIdType GetDataSize() const
476 {
477 return this->GetNumberOfComponents() * this->GetNumberOfTuples();
478 }
479
481
488 virtual vtkIdType LookupValue(vtkVariant value) = 0;
489 virtual void LookupValue(vtkVariant value, vtkIdList* valueIds) = 0;
491
496 VTK_EXPECTS(0 <= valueIdx && valueIdx < GetNumberOfValues());
497
502 virtual void InsertVariantValue(vtkIdType valueIdx, vtkVariant value)
503 VTK_EXPECTS(0 <= valueIdx) = 0;
504
509 virtual void SetVariantValue(vtkIdType valueIdx, vtkVariant value)
510 VTK_EXPECTS(0 <= valueIdx && valueIdx < GetNumberOfValues()) = 0;
511
520 virtual void DataChanged() = 0;
521
527 virtual void ClearLookup() = 0;
528
581 virtual void GetProminentComponentValues(int comp, vtkVariantArray* values,
582 double uncertainty = 1.e-6, double minimumProminence = 1.e-3);
583
584 // TODO: Implement these lookup functions also.
585 // virtual void LookupRange(vtkVariant min, vtkVariant max, vtkIdList* ids,
586 // bool includeMin = true, bool includeMax = true) = 0;
587 // virtual void LookupGreaterThan(vtkVariant min, vtkIdList* ids, bool includeMin = false) = 0;
588 // virtual void LookupLessThan(vtkVariant max, vtkIdList* ids, bool includeMax = false) = 0;
589
600 bool HasInformation() const { return this->Information != nullptr; }
601
613 virtual int CopyInformation(vtkInformation* infoFrom, vtkTypeBool deep = 1);
614
621
636
651
655 void Modified() override;
656
664
674
675 // Deprecated. Use vtkAbstractArray::MaxDiscreteValues instead.
676 enum
677 {
678 MAX_DISCRETE_VALUES = 32
679 };
680
682
686 vtkGetMacro(MaxDiscreteValues, unsigned int);
687 vtkSetMacro(MaxDiscreteValues, unsigned int);
689
690 // NOLINTNEXTLINE(readability-enum-initial-value)
691 enum
692 {
693 AbstractArray = 0,
697 TypedDataArray VTK_DEPRECATED_IN_9_5_0("TypedDataArray has been deprecated"),
698 MappedDataArray VTK_DEPRECATED_IN_9_5_0("MappedDataArray has been deprecated"),
701
702 DataArrayTemplate VTK_DEPRECATED_IN_9_6_0("DataArrayTemplate has been deprecated") =
703 AoSDataArrayTemplate,
704 ScaleSoADataArrayTemplate VTK_DEPRECATED_IN_9_6_0(
705 "ScaleSoADataArrayTemplate has been renamed to ScaledSoADataArrayTemplate") =
706 ScaledSoADataArrayTemplate
707 };
708
713 virtual int GetArrayType() const { return AbstractArray; }
714
718 const char* GetArrayTypeAsString() const;
719
720protected:
721 // Construct object with default tuple dimension (number of components) of 1.
724
731
743 virtual void UpdateDiscreteValueSet(double uncertainty, double minProminence);
744
745 vtkIdType Size; // allocated size of data
746 vtkIdType MaxId; // maximum index inserted thus far
747 int NumberOfComponents; // the number of components per tuple
748
749 // maximum number of prominent values before array is considered continuous.
750 unsigned int MaxDiscreteValues;
751
752 char* Name;
753
754 bool RebuildArray; // whether to rebuild the fast lookup data structure.
755
757
758 class vtkInternalComponentNames;
759 vtkInternalComponentNames* ComponentNames; // names for each component
760
761private:
762 vtkAbstractArray(const vtkAbstractArray&) = delete;
763 void operator=(const vtkAbstractArray&) = delete;
764};
765
767
772template <typename ArrayT>
774{
775 ArrayT* operator()(vtkAbstractArray* array) { return ArrayT::SafeDownCast(array); }
776};
778
796template <typename ArrayT>
798{
799 // The default vtkArrayDownCast_impl struct uses SafeDownCast, but is
800 // specialized for arrays that support FastDownCast.
801 return vtkArrayDownCast_impl<ArrayT>()(array);
802}
803
804VTK_ABI_NAMESPACE_END
805
807
811#define vtkArrayDownCast_FastCastMacro(ArrayT) \
812 template <> \
813 struct vtkArrayDownCast_impl<ArrayT> \
814 { \
815 inline ArrayT* operator()(vtkAbstractArray* array) \
816 { \
817 return ArrayT::FastDownCast(array); \
818 } \
819 }
821
823
829#define vtkArrayDownCast_TemplateFastCastMacro(ArrayT) \
830 template <typename ValueT> \
831 struct vtkArrayDownCast_impl<ArrayT<ValueT>> \
832 { \
833 inline ArrayT<ValueT>* operator()(vtkAbstractArray* array) \
834 { \
835 return ArrayT<ValueT>::FastDownCast(array); \
836 } \
837 }
839#endif
Abstract superclass for all arrays.
virtual void GetTuples(vtkIdList *tupleIds, vtkAbstractArray *output)
Given a list of tuple ids, return an array of tuples.
bool HasInformation() const
Inquire if this array has an instance of vtkInformation already associated with it.
const char * GetArrayTypeAsString() const
Get the name for the array type as string.
virtual int IsNumeric() const =0
This method is here to make backward compatibility easier.
virtual void Initialize()=0
Release storage and reset array to initial state.
void PrintValues(ostream &os)
Print the array values to an ostream object.
virtual void DeepCopy(vtkAbstractArray *da)
Deep copy of data.
vtkInformation * GetInformation()
Get an information object that can be used to annotate the array.
virtual int GetElementComponentSize() const =0
Return the size, in bytes, of the lowest-level element of an array.
virtual void SetInformation(vtkInformation *)
Set an information object that can be used to annotate the array.
virtual void SetVoidArray(void *array, vtkIdType size, int save)=0
This method lets the user specify data to be held by the array.
virtual void InterpolateTuple(vtkIdType dstTupleIdx, vtkIdType srcTupleIdx1, vtkAbstractArray *source1, vtkIdType srcTupleIdx2, vtkAbstractArray *source2, double t)=0
Insert the tuple at dstTupleIdx in this array to the tuple interpolated from the two tuple indices,...
virtual bool CopyComponent(int dstComponent, vtkAbstractArray *src, int srcComponent)=0
Copy a component from one array into a component on this array.
virtual void UpdateDiscreteValueSet(double uncertainty, double minProminence)
Obtain the set of unique values taken on by each component of the array, as well as by the tuples of ...
virtual vtkTypeBool Allocate(vtkIdType numValues, vtkIdType ext=1000)=0
Allocate memory for this array.
virtual unsigned long GetActualMemorySize() const =0
Return the memory in kibibytes (1024 bytes) consumed by this data array.
int GetNumberOfComponents() const
Set/Get the dimension (n) of the components.
vtkIdType GetSize() const
Get the capacity of the array.
unsigned int MaxDiscreteValues
vtkInternalComponentNames * ComponentNames
virtual vtkArrayIterator * NewIterator()=0
Subclasses must override this method and provide the right kind of templated vtkArrayIteratorTemplate...
static int GetDataTypeSize(int type)
Return the size of the underlying data type.
void SetComponentName(vtkIdType component, const char *name)
Set the name for a component.
virtual vtkTypeBool Resize(vtkIdType numTuples)=0
Resize the array to the requested number of tuples and preserve data.
virtual vtkIdType GetDataSize() const
Returns the size of the data in DataTypeSize units.
static vtkAbstractArray * CreateArray(int dataType)
Creates an array for dataType where dataType is one of VTK_BIT, VTK_CHAR, VTK_UNSIGNED_CHAR,...
virtual vtkVariant GetVariantValue(vtkIdType valueIdx)
Retrieve value from the array as a variant.
vtkIdType GetMaxId() const
What is the maximum id currently in the array.
virtual void SetNumberOfTuples(vtkIdType numTuples)=0
Set the number of tuples (a component group) in the array.
virtual void SetTuple(vtkIdType dstTupleIdx, vtkIdType srcTupleIdx, vtkAbstractArray *source)=0
Set the tuple at dstTupleIdx in this array to the tuple at srcTupleIdx in the source array.
virtual void ClearLookup()=0
Delete the associated fast lookup data structure on this array, if it exists.
virtual int GetDataTypeSize() const =0
Return the size of the underlying data type.
virtual void InsertTuples(vtkIdList *dstIds, vtkIdList *srcIds, vtkAbstractArray *source)=0
Copy the tuples indexed in srcIds from the source array to the tuple locations indexed by dstIds in t...
virtual void InsertTuplesStartingAt(vtkIdType dstStart, vtkIdList *srcIds, vtkAbstractArray *source)=0
Copy the tuples indexed in srcIds from the source array to the tuple locations starting at index dstS...
virtual void InterpolateTuple(vtkIdType dstTupleIdx, vtkIdList *ptIndices, vtkAbstractArray *source, double *weights)=0
Set the tuple at dstTupleIdx in this array to the interpolated tuple value, given the ptIndices in th...
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
vtkInformation * Information
void Reset()
Reset to an empty state, without freeing any memory.
virtual void SetArrayFreeFunction(void(*callback)(void *))=0
This method allows the user to specify a custom free function to be called when the array is dealloca...
int CopyComponentNames(vtkAbstractArray *da)
Copies the component names from the inputted array to the current array make sure that the current ar...
void Modified() override
Removes out-of-date PER_COMPONENT() and PER_FINITE_COMPONENT() values.
virtual void ExportToVoidPointer(void *out_ptr)
This method copies the array data to the void pointer specified by the user.
virtual void InsertTuples(vtkIdType dstStart, vtkIdType n, vtkIdType srcStart, vtkAbstractArray *source)=0
Copy n consecutive tuples starting at srcStart from the source array to this array,...
virtual void SetVariantValue(vtkIdType valueIdx, vtkVariant value)=0
Set a value in the array from a variant.
virtual void InsertTuple(vtkIdType dstTupleIdx, vtkIdType srcTupleIdx, vtkAbstractArray *source)=0
Insert the tuple at srcTupleIdx in the source array into this array at dstTupleIdx.
virtual bool HasStandardMemoryLayout() const
Returns true if this array uses the standard memory layout defined in the VTK user guide,...
virtual bool IsIntegral() const
This method will return true if and only if an array contains integer-valued data.
bool HasAComponentName() const
Returns if any component has had a name assigned.
virtual void * GetVoidPointer(vtkIdType valueIdx)=0
Return a void pointer.
virtual void GetTuples(vtkIdType p1, vtkIdType p2, vtkAbstractArray *output)
Get the tuples for the range of tuple ids specified (i.e., p1->p2 inclusive).
virtual int GetArrayType() const
Method for type-checking in FastDownCast implementations.
virtual vtkIdType LookupValue(vtkVariant value)=0
Return the value indices where a specific value appears.
virtual int GetDataType() const =0
Return the underlying data type.
~vtkAbstractArray() override
const char * GetComponentName(vtkIdType component) const
Get the component name for a given component.
virtual void LookupValue(vtkVariant value, vtkIdList *valueIds)=0
Return the value indices where a specific value appears.
virtual void InsertVariantValue(vtkIdType valueIdx, vtkVariant value)=0
Insert a value into the array from a variant.
virtual const char * GetDataTypeAsString() const
Get the name of a data type as a string.
virtual vtkIdType InsertNextTuple(vtkIdType srcTupleIdx, vtkAbstractArray *source)=0
Insert the tuple from srcTupleIdx in the source array at the end of this array.
virtual void Squeeze()=0
Free any unnecessary memory.
virtual void SetVoidArray(void *array, vtkIdType size, int save, int deleteMethod)
This method lets the user specify data to be held by the array.
virtual void GetProminentComponentValues(int comp, vtkVariantArray *values, double uncertainty=1.e-6, double minimumProminence=1.e-3)
Populate the given vtkVariantArray with a set of distinct values taken on by the requested component ...
virtual void DataChanged()=0
Tell the array explicitly that the data has changed.
virtual int CopyInformation(vtkInformation *infoFrom, vtkTypeBool deep=1)
Copy information instance.
Abstract superclass to iterate over elements in an vtkAbstractArray.
abstract superclass for arrays of numeric data
list of point or cell ids
Definition vtkIdList.h:133
dynamic, self-adjusting array of vtkIdType
a simple class to control print indentation
Definition vtkIndent.h:108
Key for integer values in vtkInformation.
Store vtkAlgorithm input/output information.
abstract base class for most VTK objects
Definition vtkObject.h:162
An array holding vtkVariants.
A type representing the union of many types.
Definition vtkVariant.h:162
static vtkInformationInformationVectorKey * PER_FINITE_COMPONENT()
This key is used to hold a vector of COMPONENT_VALUES (and, for vtkDataArray subclasses,...
static vtkInformationInformationVectorKey * PER_COMPONENT()
This key is used to hold a vector of COMPONENT_VALUES (and, for vtkDataArray subclasses,...
static vtkInformationVariantVectorKey * DISCRETE_VALUES()
A key used to hold discrete values taken on either by the tuples of the array (when present in this->...
static vtkInformationDoubleVectorKey * DISCRETE_VALUE_SAMPLE_PARAMETERS()
A key used to hold conditions under which cached discrete values were generated; the value is a 2-vec...
static vtkInformationIntegerKey * GUI_HIDE()
This key is a hint to end user interface that this array is internal and should not be shown to the e...
Implementation of vtkArrayDownCast.
ArrayT * operator()(vtkAbstractArray *array)
int vtkTypeBool
Definition vtkABI.h:64
ArrayT * vtkArrayDownCast(vtkAbstractArray *array)
vtkArrayDownCast is to be used by generic (e.g.
boost::graph_traits< vtkGraph * >::vertex_descriptor source(boost::graph_traits< vtkGraph * >::edge_descriptor e, vtkGraph *)
#define VTK_DEPRECATED_IN_9_6_0(reason)
#define VTK_DEPRECATED_IN_9_5_0(reason)
int vtkIdType
Definition vtkType.h:333
#define VTK_INT_MAX
Definition vtkType.h:162
void save(Archiver &ar, const std::string &str, const unsigned int version)
#define VTK_MARSHAL_EXCLUDE_REASON_IS_INTERNAL
#define VTK_EXPECTS(x)
#define VTK_MARSHALAUTO
#define VTK_MARSHALEXCLUDE(reason)
#define VTK_NEWINSTANCE