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| virtual int | IsA (const char *type) |
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| vtkGenericSubdivisionErrorMetric * | NewInstance () const |
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| void | PrintSelf (ostream &os, vtkIndent indent) |
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| virtual int | RequiresEdgeSubdivision (double *leftPoint, double *midPoint, double *rightPoint, double alpha)=0 |
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| virtual double | GetError (double *leftPoint, double *midPoint, double *rightPoint, double alpha)=0 |
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| void | SetGenericCell (vtkGenericAdaptorCell *cell) |
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| virtual vtkGenericAdaptorCell * | GetGenericCell () |
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| void | SetDataSet (vtkGenericDataSet *ds) |
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| virtual vtkGenericDataSet * | GetDataSet () |
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| vtkObject * | NewInstance () const |
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| virtual void | DebugOn () |
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| virtual void | DebugOff () |
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| bool | GetDebug () |
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| void | SetDebug (bool debugFlag) |
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| virtual void | Modified () |
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| virtual unsigned long | GetMTime () |
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| unsigned long | AddObserver (unsigned long event, vtkCommand *, float priority=0.0f) |
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| unsigned long | AddObserver (const char *event, vtkCommand *, float priority=0.0f) |
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| vtkCommand * | GetCommand (unsigned long tag) |
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| void | RemoveObserver (vtkCommand *) |
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| void | RemoveObservers (unsigned long event, vtkCommand *) |
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| void | RemoveObservers (const char *event, vtkCommand *) |
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| int | HasObserver (unsigned long event, vtkCommand *) |
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| int | HasObserver (const char *event, vtkCommand *) |
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| void | RemoveObserver (unsigned long tag) |
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| void | RemoveObservers (unsigned long event) |
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| void | RemoveObservers (const char *event) |
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| void | RemoveAllObservers () |
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| int | HasObserver (unsigned long event) |
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| int | HasObserver (const char *event) |
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| template<class U , class T > |
| unsigned long | AddObserver (unsigned long event, U observer, void(T::*callback)(), float priority=0.0f) |
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| template<class U , class T > |
| unsigned long | AddObserver (unsigned long event, U observer, void(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f) |
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| template<class U , class T > |
| unsigned long | AddObserver (unsigned long event, U observer, bool(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f) |
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| int | InvokeEvent (unsigned long event, void *callData) |
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| int | InvokeEvent (const char *event, void *callData) |
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| int | InvokeEvent (unsigned long event) |
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| int | InvokeEvent (const char *event) |
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| const char * | GetClassName () const |
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| virtual void | Delete () |
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| virtual void | FastDelete () |
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| void | Print (ostream &os) |
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| virtual void | PrintHeader (ostream &os, vtkIndent indent) |
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| virtual void | PrintTrailer (ostream &os, vtkIndent indent) |
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| virtual void | Register (vtkObjectBase *o) |
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| virtual void | UnRegister (vtkObjectBase *o) |
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| int | GetReferenceCount () |
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| void | SetReferenceCount (int) |
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| void | PrintRevisions (ostream &) |
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Objects that compute error during cell tessellation.
Objects of that class answer the following question during the cell subdivision: "does the edge need to be subdivided?" through RequiresEdgeSubdivision(). The answer depends on the criterium actually used in the subclass of this abstract class: a geometric-based error metric (variation of edge from a straight line), an attribute-based error metric (variation of the active attribute/component value from a linear ramp) , a view-depend error metric, ... Cell subdivision is performed in the context of the adaptor framework: higher-order, or complex cells, are automatically tessellated into simplices so that they can be processed with conventional visualization algorithms.
- See also
- vtkGenericCellTessellator
Definition at line 47 of file vtkGenericSubdivisionErrorMetric.h.
| virtual int vtkGenericSubdivisionErrorMetric::RequiresEdgeSubdivision |
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double * |
leftPoint, |
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double * |
midPoint, |
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double * |
rightPoint, |
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double |
alpha |
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pure virtual |
Does the edge need to be subdivided according to the implemented computation? The edge is defined by its ‘leftPoint’ and its ‘rightPoint’. ‘leftPoint’, ‘midPoint’ and ‘rightPoint’ have to be initialized before calling RequiresEdgeSubdivision(). Their format is global coordinates, parametric coordinates and point centered attributes: xyx rst abc de... ‘alpha’ is the normalized abscissa of the midpoint along the edge. (close to 0 means close to the left point, close to 1 means close to the right point)
- Precondition
- leftPoint_exists: leftPoint!=0
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midPoint_exists: midPoint!=0
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rightPoint_exists: rightPoint!=0
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clamped_alpha: alpha>0 && alpha<1
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valid_size: sizeof(leftPoint)=sizeof(midPoint)=sizeof(rightPoint) =GetAttributeCollection()->GetNumberOfPointCenteredComponents()+6
Implemented in vtkViewDependentErrorMetric, vtkSmoothErrorMetric, vtkGeometricErrorMetric, and vtkAttributesErrorMetric.