VTK
Public Types | Public Member Functions | Static Public Member Functions | Protected Member Functions | Protected Attributes | List of all members
vtkHyperOctreeCutter Class Reference

Cut vtkHyperOctree with user-specified implicit function. More...

#include <vtkHyperOctreeCutter.h>

Inheritance diagram for vtkHyperOctreeCutter:
[legend]
Collaboration diagram for vtkHyperOctreeCutter:
[legend]

Public Types

typedef vtkPolyDataAlgorithm Superclass
 
- Public Types inherited from vtkPolyDataAlgorithm
typedef vtkAlgorithm Superclass
 
- Public Types inherited from vtkAlgorithm
typedef vtkObject Superclass
 
enum  DesiredOutputPrecision { SINGLE_PRECISION, DOUBLE_PRECISION, DEFAULT_PRECISION }
 
- Public Types inherited from vtkObject
typedef vtkObjectBase Superclass
 

Public Member Functions

virtual int IsA (const char *type)
 
vtkHyperOctreeCutterNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent)
 
unsigned long GetMTime ()
 
void CreateDefaultLocator ()
 
void SetValue (int i, double value)
 
double GetValue (int i)
 
doubleGetValues ()
 
void GetValues (double *contourValues)
 
void SetNumberOfContours (int number)
 
int GetNumberOfContours ()
 
void GenerateValues (int numContours, double range[2])
 
void GenerateValues (int numContours, double rangeStart, double rangeEnd)
 
virtual void SetCutFunction (vtkImplicitFunction *)
 
virtual vtkImplicitFunctionGetCutFunction ()
 
virtual void SetGenerateCutScalars (int)
 
virtual int GetGenerateCutScalars ()
 
virtual void GenerateCutScalarsOn ()
 
virtual void GenerateCutScalarsOff ()
 
void SetLocator (vtkIncrementalPointLocator *locator)
 
virtual vtkIncrementalPointLocatorGetLocator ()
 
virtual void SetSortBy (int)
 
virtual int GetSortBy ()
 
void SetSortByToSortByValue ()
 
void SetSortByToSortByCell ()
 
const char * GetSortByAsString ()
 
- Public Member Functions inherited from vtkPolyDataAlgorithm
vtkPolyDataAlgorithmNewInstance () const
 
vtkDataObjectGetInput ()
 
vtkDataObjectGetInput (int port)
 
vtkPolyDataGetPolyDataInput (int port)
 
vtkPolyDataGetOutput ()
 
vtkPolyDataGetOutput (int)
 
virtual void SetOutput (vtkDataObject *d)
 
virtual int ProcessRequest (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 
void SetInputData (vtkDataObject *)
 
void SetInputData (int, vtkDataObject *)
 
void AddInputData (vtkDataObject *)
 
void AddInputData (int, vtkDataObject *)
 
- Public Member Functions inherited from vtkAlgorithm
vtkAlgorithmNewInstance () const
 
int HasExecutive ()
 
vtkExecutiveGetExecutive ()
 
virtual void SetExecutive (vtkExecutive *executive)
 
virtual int ModifyRequest (vtkInformation *request, int when)
 
vtkInformationGetInputPortInformation (int port)
 
vtkInformationGetOutputPortInformation (int port)
 
int GetNumberOfInputPorts ()
 
int GetNumberOfOutputPorts ()
 
void UpdateProgress (double amount)
 
vtkInformationGetInputArrayInformation (int idx)
 
void RemoveAllInputs ()
 
vtkDataObjectGetOutputDataObject (int port)
 
virtual void RemoveInputConnection (int port, vtkAlgorithmOutput *input)
 
virtual void RemoveInputConnection (int port, int idx)
 
virtual void RemoveAllInputConnections (int port)
 
int GetNumberOfInputConnections (int port)
 
int GetTotalNumberOfInputConnections ()
 
vtkAlgorithmOutputGetInputConnection (int port, int index)
 
vtkAlgorithmGetInputAlgorithm (int port, int index, int &algPort)
 
vtkAlgorithmGetInputAlgorithm (int port, int index)
 
vtkExecutiveGetInputExecutive (int port, int index)
 
vtkInformationGetInputInformation (int port, int index)
 
vtkInformationGetOutputInformation (int port)
 
virtual void UpdateInformation ()
 
virtual void UpdateDataObject ()
 
virtual void PropagateUpdateExtent ()
 
virtual void UpdateWholeExtent ()
 
void ConvertTotalInputToPortConnection (int ind, int &port, int &conn)
 
int SetUpdateExtentToWholeExtent (int port)
 
int SetUpdateExtentToWholeExtent ()
 
void SetUpdateExtent (int port, int extent[6])
 
int ProcessRequest (vtkInformation *request, vtkCollection *inInfo, vtkInformationVector *outInfo)
 
virtual int ComputePipelineMTime (vtkInformation *request, vtkInformationVector **inInfoVec, vtkInformationVector *outInfoVec, int requestFromOutputPort, unsigned long *mtime)
 
virtual vtkInformationGetInformation ()
 
virtual void SetInformation (vtkInformation *)
 
virtual void Register (vtkObjectBase *o)
 
virtual void UnRegister (vtkObjectBase *o)
 
virtual void SetAbortExecute (int)
 
virtual int GetAbortExecute ()
 
virtual void AbortExecuteOn ()
 
virtual void AbortExecuteOff ()
 
virtual void SetProgress (double)
 
virtual double GetProgress ()
 
void SetProgressText (const char *ptext)
 
virtual char * GetProgressText ()
 
virtual unsigned long GetErrorCode ()
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, int fieldAssociation, const char *name)
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, int fieldAssociation, int fieldAttributeType)
 
virtual void SetInputArrayToProcess (int idx, vtkInformation *info)
 
virtual void SetInputArrayToProcess (int idx, int port, int connection, const char *fieldAssociation, const char *attributeTypeorName)
 
vtkDataObjectGetInputDataObject (int port, int connection)
 
virtual void SetInputConnection (int port, vtkAlgorithmOutput *input)
 
virtual void SetInputConnection (vtkAlgorithmOutput *input)
 
virtual void AddInputConnection (int port, vtkAlgorithmOutput *input)
 
virtual void AddInputConnection (vtkAlgorithmOutput *input)
 
virtual void SetInputDataObject (int port, vtkDataObject *data)
 
virtual void SetInputDataObject (vtkDataObject *data)
 
virtual void AddInputDataObject (int port, vtkDataObject *data)
 
virtual void AddInputDataObject (vtkDataObject *data)
 
vtkAlgorithmOutputGetOutputPort (int index)
 
vtkAlgorithmOutputGetOutputPort ()
 
vtkAlgorithmGetInputAlgorithm ()
 
vtkExecutiveGetInputExecutive ()
 
vtkInformationGetInputInformation ()
 
virtual void Update (int port)
 
virtual void Update ()
 
virtual void SetReleaseDataFlag (int)
 
virtual int GetReleaseDataFlag ()
 
void ReleaseDataFlagOn ()
 
void ReleaseDataFlagOff ()
 
int UpdateExtentIsEmpty (vtkInformation *pinfo, vtkDataObject *output)
 
int UpdateExtentIsEmpty (vtkInformation *pinfo, int extentType)
 
void SetUpdateExtent (int port, int piece, int numPieces, int ghostLevel)
 
void SetUpdateExtent (int piece, int numPieces, int ghostLevel)
 
void SetUpdateExtent (int extent[6])
 
intGetUpdateExtent ()
 
intGetUpdateExtent (int port)
 
void GetUpdateExtent (int &x0, int &x1, int &y0, int &y1, int &z0, int &z1)
 
void GetUpdateExtent (int port, int &x0, int &x1, int &y0, int &y1, int &z0, int &z1)
 
void GetUpdateExtent (int extent[6])
 
void GetUpdateExtent (int port, int extent[6])
 
int GetUpdatePiece ()
 
int GetUpdatePiece (int port)
 
int GetUpdateNumberOfPieces ()
 
int GetUpdateNumberOfPieces (int port)
 
int GetUpdateGhostLevel ()
 
int GetUpdateGhostLevel (int port)
 
void SetProgressObserver (vtkProgressObserver *)
 
virtual vtkProgressObserverGetProgressObserver ()
 
- Public Member Functions inherited from vtkObject
vtkObjectNewInstance () const
 
virtual void DebugOn ()
 
virtual void DebugOff ()
 
bool GetDebug ()
 
void SetDebug (bool debugFlag)
 
virtual void Modified ()
 
unsigned long AddObserver (unsigned long event, vtkCommand *, float priority=0.0f)
 
unsigned long AddObserver (const char *event, vtkCommand *, float priority=0.0f)
 
vtkCommandGetCommand (unsigned long tag)
 
void RemoveObserver (vtkCommand *)
 
void RemoveObservers (unsigned long event, vtkCommand *)
 
void RemoveObservers (const char *event, vtkCommand *)
 
int HasObserver (unsigned long event, vtkCommand *)
 
int HasObserver (const char *event, vtkCommand *)
 
void RemoveObserver (unsigned long tag)
 
void RemoveObservers (unsigned long event)
 
void RemoveObservers (const char *event)
 
void RemoveAllObservers ()
 
int HasObserver (unsigned long event)
 
int HasObserver (const char *event)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(), float priority=0.0f)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, bool(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 
int InvokeEvent (unsigned long event, void *callData)
 
int InvokeEvent (const char *event, void *callData)
 
int InvokeEvent (unsigned long event)
 
int InvokeEvent (const char *event)
 
- Public Member Functions inherited from vtkObjectBase
const char * GetClassName () const
 
virtual void Delete ()
 
virtual void FastDelete ()
 
void Print (ostream &os)
 
void SetReferenceCount (int)
 
void PrintRevisions (ostream &)
 
virtual void PrintHeader (ostream &os, vtkIndent indent)
 
virtual void PrintTrailer (ostream &os, vtkIndent indent)
 
int GetReferenceCount ()
 

Static Public Member Functions

static int IsTypeOf (const char *type)
 
static vtkHyperOctreeCutterSafeDownCast (vtkObjectBase *o)
 
static vtkHyperOctreeCutterNew ()
 
- Static Public Member Functions inherited from vtkPolyDataAlgorithm
static vtkPolyDataAlgorithmNew ()
 
static int IsTypeOf (const char *type)
 
static vtkPolyDataAlgorithmSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkAlgorithm
static vtkAlgorithmNew ()
 
static int IsTypeOf (const char *type)
 
static vtkAlgorithmSafeDownCast (vtkObjectBase *o)
 
static vtkInformationIntegerKeyINPUT_IS_OPTIONAL ()
 
static vtkInformationIntegerKeyINPUT_IS_REPEATABLE ()
 
static vtkInformationInformationVectorKeyINPUT_REQUIRED_FIELDS ()
 
static vtkInformationStringVectorKeyINPUT_REQUIRED_DATA_TYPE ()
 
static vtkInformationInformationVectorKeyINPUT_ARRAYS_TO_PROCESS ()
 
static vtkInformationIntegerKeyINPUT_PORT ()
 
static vtkInformationIntegerKeyINPUT_CONNECTION ()
 
static vtkInformationIntegerKeyCAN_PRODUCE_SUB_EXTENT ()
 
static vtkInformationIntegerKeyCAN_HANDLE_PIECE_REQUEST ()
 
static void SetDefaultExecutivePrototype (vtkExecutive *proto)
 
- Static Public Member Functions inherited from vtkObject
static int IsTypeOf (const char *type)
 
static vtkObjectSafeDownCast (vtkObjectBase *o)
 
static vtkObjectNew ()
 
static void BreakOnError ()
 
static void SetGlobalWarningDisplay (int val)
 
static void GlobalWarningDisplayOn ()
 
static void GlobalWarningDisplayOff ()
 
static int GetGlobalWarningDisplay ()
 
- Static Public Member Functions inherited from vtkObjectBase
static int IsTypeOf (const char *name)
 
static vtkObjectBaseNew ()
 

Protected Member Functions

virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkHyperOctreeCutter (vtkImplicitFunction *cf=NULL)
 
 ~vtkHyperOctreeCutter ()
 
virtual int RequestData (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 
virtual int RequestUpdateExtent (vtkInformation *, vtkInformationVector **, vtkInformationVector *)
 
virtual int FillInputPortInformation (int port, vtkInformation *info)
 
void CutNode (vtkHyperOctreeCursor *cursor, int level, double bounds[6])
 
- Protected Member Functions inherited from vtkPolyDataAlgorithm
 vtkPolyDataAlgorithm ()
 
 ~vtkPolyDataAlgorithm ()
 
virtual int RequestInformation (vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector)
 
virtual int FillOutputPortInformation (int port, vtkInformation *info)
 
- Protected Member Functions inherited from vtkAlgorithm
 vtkAlgorithm ()
 
 ~vtkAlgorithm ()
 
virtual void SetNumberOfInputPorts (int n)
 
virtual void SetNumberOfOutputPorts (int n)
 
int InputPortIndexInRange (int index, const char *action)
 
int OutputPortIndexInRange (int index, const char *action)
 
int GetInputArrayAssociation (int idx, vtkInformationVector **inputVector)
 
virtual vtkExecutiveCreateDefaultExecutive ()
 
virtual void ReportReferences (vtkGarbageCollector *)
 
virtual void SetNumberOfInputConnections (int port, int n)
 
int GetInputArrayAssociation (int idx, int connection, vtkInformationVector **inputVector)
 
int GetInputArrayAssociation (int idx, vtkDataObject *input)
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkInformationVector **inputVector)
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkInformationVector **inputVector, int &association)
 
vtkDataArrayGetInputArrayToProcess (int idx, int connection, vtkInformationVector **inputVector)
 
vtkDataArrayGetInputArrayToProcess (int idx, int connection, vtkInformationVector **inputVector, int &association)
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkDataObject *input)
 
vtkDataArrayGetInputArrayToProcess (int idx, vtkDataObject *input, int &association)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkInformationVector **inputVector)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkInformationVector **inputVector, int &association)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, int connection, vtkInformationVector **inputVector)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, int connection, vtkInformationVector **inputVector, int &association)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkDataObject *input)
 
vtkAbstractArrayGetInputAbstractArrayToProcess (int idx, vtkDataObject *input, int &association)
 
vtkInformationGetInputArrayFieldInformation (int idx, vtkInformationVector **inputVector)
 
virtual void SetNthInputConnection (int port, int index, vtkAlgorithmOutput *input)
 
void SetInputDataInternal (int port, vtkDataObject *input)
 
void AddInputDataInternal (int port, vtkDataObject *input)
 
virtual void SetErrorCode (unsigned long)
 
- Protected Member Functions inherited from vtkObject
 vtkObject ()
 
virtual ~vtkObject ()
 
virtual void RegisterInternal (vtkObjectBase *, int check)
 
virtual void UnRegisterInternal (vtkObjectBase *, int check)
 
void InternalGrabFocus (vtkCommand *mouseEvents, vtkCommand *keypressEvents=NULL)
 
void InternalReleaseFocus ()
 
- Protected Member Functions inherited from vtkObjectBase
 vtkObjectBase ()
 
virtual ~vtkObjectBase ()
 
virtual void CollectRevisions (ostream &)
 
 vtkObjectBase (const vtkObjectBase &)
 
void operator= (const vtkObjectBase &)
 

Protected Attributes

vtkImplicitFunctionCutFunction
 
vtkIncrementalPointLocatorLocator
 
int SortBy
 
vtkContourValuesContourValues
 
int GenerateCutScalars
 
vtkHyperOctreeInput
 
vtkPolyDataOutput
 
vtkCellArrayNewVerts
 
vtkCellArrayNewLines
 
vtkCellArrayNewPolys
 
vtkDataSetAttributesInCD
 
vtkCellDataOutCD
 
vtkPointDataOutPD
 
vtkOrderedTriangulatorTriangulator
 
vtkHyperOctreeCursorSibling
 
int Iter
 
vtkDoubleArrayCellScalars
 
vtkTetraTetra
 
vtkDoubleArrayTetScalars
 
vtkPointsPts
 
vtkPolygonPolygon
 
vtkIdType CellTypeCounter [65536]
 
vtkIdType TotalCounter
 
vtkIdType TemplateCounter
 
intAllLess
 
intAllGreater
 
vtkHyperOctreeClipCutPointsGrabberGrabber
 
- Protected Attributes inherited from vtkAlgorithm
vtkInformationInformation
 
double Progress
 
char * ProgressText
 
vtkProgressObserverProgressObserver
 
unsigned long ErrorCode
 
- Protected Attributes inherited from vtkObject
bool Debug
 
vtkTimeStamp MTime
 
vtkSubjectHelper * SubjectHelper
 
- Protected Attributes inherited from vtkObjectBase
vtkAtomicInt32 ReferenceCount
 
vtkWeakPointerBase ** WeakPointers
 

Additional Inherited Members

- Public Attributes inherited from vtkAlgorithm
int AbortExecute
 
- Static Protected Member Functions inherited from vtkAlgorithm
static vtkInformationIntegerKeyPORT_REQUIREMENTS_FILLED ()
 
- Static Protected Attributes inherited from vtkAlgorithm
static vtkExecutiveDefaultExecutivePrototype
 

Detailed Description

Cut vtkHyperOctree with user-specified implicit function.

vtkHyperOctreeCutter is a filter to cut through data using any subclass of vtkImplicitFunction. That is, a polygonal surface is created corresponding to the implicit function F(x,y,z) = value(s), where you can specify one or more values used to cut with.

In VTK, cutting means reducing a cell of dimension N to a cut surface of dimension N-1. For example, a tetrahedron when cut by a plane (i.e., vtkPlane implicit function) will generate triangles. (In comparison, clipping takes a N dimensional cell and creates N dimension primitives.)

vtkHyperOctreeCutter is generally used to "slice-through" a dataset, generating a surface that can be visualized. It is also possible to use vtkHyperOctreeCutter to do a form of volume rendering. vtkHyperOctreeCutter does this by generating multiple cut surfaces (usually planes) which are ordered (and rendered) from back-to-front. The surfaces are set translucent to give a volumetric rendering effect.

Note that data can be cut using either 1) the scalar values associated with the dataset or 2) an implicit function associated with this class. By default, if an implicit function is set it is used to cut the data set, otherwise the dataset scalars are used to perform the cut.

See also
vtkImplicitFunction vtkHyperOctree
Tests:
vtkHyperOctreeCutter (Tests)

Definition at line 73 of file vtkHyperOctreeCutter.h.

Member Typedef Documentation

Definition at line 76 of file vtkHyperOctreeCutter.h.

Constructor & Destructor Documentation

vtkHyperOctreeCutter::vtkHyperOctreeCutter ( vtkImplicitFunction cf = NULL)
protected
vtkHyperOctreeCutter::~vtkHyperOctreeCutter ( )
protected

Member Function Documentation

static int vtkHyperOctreeCutter::IsTypeOf ( const char *  type)
static
virtual int vtkHyperOctreeCutter::IsA ( const char *  name)
virtual

Return 1 if this class is the same type of (or a subclass of) the named class. Returns 0 otherwise. This method works in combination with vtkTypeMacro found in vtkSetGet.h.

Reimplemented from vtkPolyDataAlgorithm.

static vtkHyperOctreeCutter* vtkHyperOctreeCutter::SafeDownCast ( vtkObjectBase o)
static
virtual vtkObjectBase* vtkHyperOctreeCutter::NewInstanceInternal ( ) const
protectedvirtual

Reimplemented from vtkPolyDataAlgorithm.

vtkHyperOctreeCutter* vtkHyperOctreeCutter::NewInstance ( ) const
void vtkHyperOctreeCutter::PrintSelf ( ostream &  os,
vtkIndent  indent 
)
virtual

Methods invoked by print to print information about the object including superclasses. Typically not called by the user (use Print() instead) but used in the hierarchical print process to combine the output of several classes.

Reimplemented from vtkPolyDataAlgorithm.

static vtkHyperOctreeCutter* vtkHyperOctreeCutter::New ( )
static

Construct with user-specified implicit function; initial value of 0.0; and generating cut scalars turned off.

void vtkHyperOctreeCutter::SetValue ( int  i,
double  value 
)
inline

Set a particular contour value at contour number i. The index i ranges between 0<=i<NumberOfContours.

Definition at line 86 of file vtkHyperOctreeCutter.h.

double vtkHyperOctreeCutter::GetValue ( int  i)
inline

Get the ith contour value.

Definition at line 92 of file vtkHyperOctreeCutter.h.

double* vtkHyperOctreeCutter::GetValues ( )
inline

Get a pointer to an array of contour values. There will be GetNumberOfContours() values in the list.

Definition at line 99 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::GetValues ( double contourValues)
inline

Fill a supplied list with contour values. There will be GetNumberOfContours() values in the list. Make sure you allocate enough memory to hold the list.

Definition at line 107 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::SetNumberOfContours ( int  number)
inline

Set the number of contours to place into the list. You only really need to use this method to reduce list size. The method SetValue() will automatically increase list size as needed.

Definition at line 115 of file vtkHyperOctreeCutter.h.

int vtkHyperOctreeCutter::GetNumberOfContours ( )
inline

Get the number of contours in the list of contour values.

Definition at line 121 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::GenerateValues ( int  numContours,
double  range[2] 
)
inline

Generate numContours equally spaced contour values between specified range. Contour values will include min/max range values.

Definition at line 128 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::GenerateValues ( int  numContours,
double  rangeStart,
double  rangeEnd 
)
inline

Generate numContours equally spaced contour values between specified range. Contour values will include min/max range values.

Definition at line 135 of file vtkHyperOctreeCutter.h.

unsigned long vtkHyperOctreeCutter::GetMTime ( )
virtual

Override GetMTime because we delegate to vtkContourValues and refer to vtkImplicitFunction.

Reimplemented from vtkObject.

virtual void vtkHyperOctreeCutter::SetCutFunction ( vtkImplicitFunction )
virtual

Specify the implicit function to perform the cutting.

virtual vtkImplicitFunction* vtkHyperOctreeCutter::GetCutFunction ( )
virtual

Specify the implicit function to perform the cutting.

virtual void vtkHyperOctreeCutter::SetGenerateCutScalars ( int  )
virtual

If this flag is enabled, then the output scalar values will be interpolated from the implicit function values, and not the input scalar data.

virtual int vtkHyperOctreeCutter::GetGenerateCutScalars ( )
virtual

If this flag is enabled, then the output scalar values will be interpolated from the implicit function values, and not the input scalar data.

virtual void vtkHyperOctreeCutter::GenerateCutScalarsOn ( )
virtual

If this flag is enabled, then the output scalar values will be interpolated from the implicit function values, and not the input scalar data.

virtual void vtkHyperOctreeCutter::GenerateCutScalarsOff ( )
virtual

If this flag is enabled, then the output scalar values will be interpolated from the implicit function values, and not the input scalar data.

void vtkHyperOctreeCutter::SetLocator ( vtkIncrementalPointLocator locator)

Specify a spatial locator for merging points. By default, an instance of vtkMergePoints is used.

virtual vtkIncrementalPointLocator* vtkHyperOctreeCutter::GetLocator ( )
virtual

Specify a spatial locator for merging points. By default, an instance of vtkMergePoints is used.

virtual void vtkHyperOctreeCutter::SetSortBy ( int  )
virtual

Set the sorting order for the generated polydata. There are two possibilities: Sort by value = 0 - This is the most efficient sort. For each cell, all contour values are processed. This is the default. Sort by cell = 1 - For each contour value, all cells are processed. This order should be used if the extracted polygons must be rendered in a back-to-front or front-to-back order. This is very problem dependent. For most applications, the default order is fine (and faster). Sort by cell is going to have a problem if the input has 2D and 3D cells. Cell data will be scrambled becauses with vtkPolyData output, verts and lines have lower cell ids than triangles.

virtual int vtkHyperOctreeCutter::GetSortBy ( )
virtual

Set the sorting order for the generated polydata. There are two possibilities: Sort by value = 0 - This is the most efficient sort. For each cell, all contour values are processed. This is the default. Sort by cell = 1 - For each contour value, all cells are processed. This order should be used if the extracted polygons must be rendered in a back-to-front or front-to-back order. This is very problem dependent. For most applications, the default order is fine (and faster). Sort by cell is going to have a problem if the input has 2D and 3D cells. Cell data will be scrambled becauses with vtkPolyData output, verts and lines have lower cell ids than triangles.

void vtkHyperOctreeCutter::SetSortByToSortByValue ( )
inline

Set the sorting order for the generated polydata. There are two possibilities: Sort by value = 0 - This is the most efficient sort. For each cell, all contour values are processed. This is the default. Sort by cell = 1 - For each contour value, all cells are processed. This order should be used if the extracted polygons must be rendered in a back-to-front or front-to-back order. This is very problem dependent. For most applications, the default order is fine (and faster). Sort by cell is going to have a problem if the input has 2D and 3D cells. Cell data will be scrambled becauses with vtkPolyData output, verts and lines have lower cell ids than triangles.

Definition at line 178 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::SetSortByToSortByCell ( )
inline

Set the sorting order for the generated polydata. There are two possibilities: Sort by value = 0 - This is the most efficient sort. For each cell, all contour values are processed. This is the default. Sort by cell = 1 - For each contour value, all cells are processed. This order should be used if the extracted polygons must be rendered in a back-to-front or front-to-back order. This is very problem dependent. For most applications, the default order is fine (and faster). Sort by cell is going to have a problem if the input has 2D and 3D cells. Cell data will be scrambled becauses with vtkPolyData output, verts and lines have lower cell ids than triangles.

Definition at line 180 of file vtkHyperOctreeCutter.h.

const char* vtkHyperOctreeCutter::GetSortByAsString ( void  )
inline

Return the sorting procedure as a descriptive character string.

Definition at line 186 of file vtkHyperOctreeCutter.h.

void vtkHyperOctreeCutter::CreateDefaultLocator ( )

Create default locator. Used to create one when none is specified. The locator is used to merge coincident points.

virtual int vtkHyperOctreeCutter::RequestData ( vtkInformation request,
vtkInformationVector **  inputVector,
vtkInformationVector outputVector 
)
protectedvirtual

This is called by the superclass. This is the method you should override.

Reimplemented from vtkPolyDataAlgorithm.

virtual int vtkHyperOctreeCutter::RequestUpdateExtent ( vtkInformation ,
vtkInformationVector **  ,
vtkInformationVector  
)
protectedvirtual

This is called by the superclass. This is the method you should override.

Reimplemented from vtkPolyDataAlgorithm.

virtual int vtkHyperOctreeCutter::FillInputPortInformation ( int  port,
vtkInformation info 
)
protectedvirtual

Fill the input port information objects for this algorithm. This is invoked by the first call to GetInputPortInformation for each port so subclasses can specify what they can handle.

Reimplemented from vtkPolyDataAlgorithm.

void vtkHyperOctreeCutter::CutNode ( vtkHyperOctreeCursor cursor,
int  level,
double  bounds[6] 
)
protected

Cut the sub-hierarchy pointed by cursor.

Precondition
cursor_exists: cursor!=0
positive_level: level>=0

Member Data Documentation

vtkImplicitFunction* vtkHyperOctreeCutter::CutFunction
protected

Definition at line 219 of file vtkHyperOctreeCutter.h.

vtkIncrementalPointLocator* vtkHyperOctreeCutter::Locator
protected

Definition at line 222 of file vtkHyperOctreeCutter.h.

int vtkHyperOctreeCutter::SortBy
protected

Definition at line 223 of file vtkHyperOctreeCutter.h.

vtkContourValues* vtkHyperOctreeCutter::ContourValues
protected

Definition at line 224 of file vtkHyperOctreeCutter.h.

int vtkHyperOctreeCutter::GenerateCutScalars
protected

Definition at line 225 of file vtkHyperOctreeCutter.h.

vtkHyperOctree* vtkHyperOctreeCutter::Input
protected

Definition at line 227 of file vtkHyperOctreeCutter.h.

vtkPolyData* vtkHyperOctreeCutter::Output
protected

Definition at line 228 of file vtkHyperOctreeCutter.h.

vtkCellArray* vtkHyperOctreeCutter::NewVerts
protected

Definition at line 231 of file vtkHyperOctreeCutter.h.

vtkCellArray* vtkHyperOctreeCutter::NewLines
protected

Definition at line 232 of file vtkHyperOctreeCutter.h.

vtkCellArray* vtkHyperOctreeCutter::NewPolys
protected

Definition at line 233 of file vtkHyperOctreeCutter.h.

vtkDataSetAttributes* vtkHyperOctreeCutter::InCD
protected

Definition at line 235 of file vtkHyperOctreeCutter.h.

vtkCellData* vtkHyperOctreeCutter::OutCD
protected

Definition at line 236 of file vtkHyperOctreeCutter.h.

vtkPointData* vtkHyperOctreeCutter::OutPD
protected

Definition at line 237 of file vtkHyperOctreeCutter.h.

vtkOrderedTriangulator* vtkHyperOctreeCutter::Triangulator
protected

Definition at line 238 of file vtkHyperOctreeCutter.h.

vtkHyperOctreeCursor* vtkHyperOctreeCutter::Sibling
protected

Definition at line 239 of file vtkHyperOctreeCutter.h.

int vtkHyperOctreeCutter::Iter
protected

Definition at line 241 of file vtkHyperOctreeCutter.h.

vtkDoubleArray* vtkHyperOctreeCutter::CellScalars
protected

Definition at line 244 of file vtkHyperOctreeCutter.h.

vtkTetra* vtkHyperOctreeCutter::Tetra
protected

Definition at line 245 of file vtkHyperOctreeCutter.h.

vtkDoubleArray* vtkHyperOctreeCutter::TetScalars
protected

Definition at line 246 of file vtkHyperOctreeCutter.h.

vtkPoints* vtkHyperOctreeCutter::Pts
protected

Definition at line 248 of file vtkHyperOctreeCutter.h.

vtkPolygon* vtkHyperOctreeCutter::Polygon
protected

Definition at line 249 of file vtkHyperOctreeCutter.h.

vtkIdType vtkHyperOctreeCutter::CellTypeCounter[65536]
protected

Definition at line 251 of file vtkHyperOctreeCutter.h.

vtkIdType vtkHyperOctreeCutter::TotalCounter
protected

Definition at line 252 of file vtkHyperOctreeCutter.h.

vtkIdType vtkHyperOctreeCutter::TemplateCounter
protected

Definition at line 253 of file vtkHyperOctreeCutter.h.

int* vtkHyperOctreeCutter::AllLess
protected

Definition at line 257 of file vtkHyperOctreeCutter.h.

int* vtkHyperOctreeCutter::AllGreater
protected

Definition at line 258 of file vtkHyperOctreeCutter.h.

vtkHyperOctreeClipCutPointsGrabber* vtkHyperOctreeCutter::Grabber
protected

Definition at line 259 of file vtkHyperOctreeCutter.h.


The documentation for this class was generated from the following file: