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149 lines
5.3 KiB
C
149 lines
5.3 KiB
C
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3 weeks ago
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/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkViewDependentErrorMetric.h
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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/**
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* @class vtkViewDependentErrorMetric
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* @brief Objects that compute a
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* screen-based error during cell tessellation.
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*
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*
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* It is a concrete error metric, based on a geometric criterium in
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* the screen space: the variation of the projected edge from a projected
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* straight line
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*
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* @sa
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* vtkGenericCellTessellator vtkGenericSubdivisionErrorMetric
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*/
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#ifndef vtkViewDependentErrorMetric_h
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#define vtkViewDependentErrorMetric_h
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#include "vtkRenderingCoreModule.h" // For export macro
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#include "vtkGenericSubdivisionErrorMetric.h"
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class vtkViewport;
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class vtkCoordinate;
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class VTKRENDERINGCORE_EXPORT vtkViewDependentErrorMetric : public vtkGenericSubdivisionErrorMetric
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{
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public:
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/**
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* Construct the error metric with a default squared screen-based geometric
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* accuracy measured in pixels equal to 0.25 (0.5^2).
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*/
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static vtkViewDependentErrorMetric *New();
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//@{
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/**
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* Standard VTK type and error macros.
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*/
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vtkTypeMacro(vtkViewDependentErrorMetric,vtkGenericSubdivisionErrorMetric);
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void PrintSelf(ostream& os, vtkIndent indent);
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//@}
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//@{
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/**
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* Return the squared screen-based geometric accurary measured in pixels.
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* An accuracy less or equal to 0.25 (0.5^2) ensures that the screen-space
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* interpolation of a mid-point matchs exactly with the projection of the
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* mid-point (a value less than 1 but greater than 0.25 is not enough,
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* because of 8-neighbors). Maybe it is useful for lower accuracy in case of
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* anti-aliasing?
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* \post positive_result: result>0
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*/
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vtkGetMacro(PixelTolerance, double);
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//@}
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/**
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* Set the squared screen-based geometric accuracy measured in pixels.
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* Subdivision will be required if the square distance between the projection
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* of the real point and the straight line passing through the projection
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* of the vertices of the edge is greater than `value'.
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* For instance, 0.25 will give better result than 1.
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* \pre positive_value: value>0
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*/
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void SetPixelTolerance(double value);
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//@{
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/**
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* Set/Get the renderer with `renderer' on which the error metric
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* is based. The error metric use the active camera of the renderer.
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*/
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vtkGetObjectMacro(Viewport,vtkViewport);
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void SetViewport(vtkViewport *viewport);
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//@}
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/**
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* Does the edge need to be subdivided according to the distance between
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* the line passing through its endpoints in screen space and the projection
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* of its mid point?
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* The edge is defined by its `leftPoint' and its `rightPoint'.
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* `leftPoint', `midPoint' and `rightPoint' have to be initialized before
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* calling RequiresEdgeSubdivision().
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* Their format is global coordinates, parametric coordinates and
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* point centered attributes: xyx rst abc de...
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* `alpha' is the normalized abscissa of the midpoint along the edge.
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* (close to 0 means close to the left point, close to 1 means close to the
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* right point)
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* \pre leftPoint_exists: leftPoint!=0
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* \pre midPoint_exists: midPoint!=0
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* \pre rightPoint_exists: rightPoint!=0
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* \pre clamped_alpha: alpha>0 && alpha<1
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* \pre valid_size: sizeof(leftPoint)=sizeof(midPoint)=sizeof(rightPoint)
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* =GetAttributeCollection()->GetNumberOfPointCenteredComponents()+6
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*/
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int RequiresEdgeSubdivision(double *leftPoint, double *midPoint, double *rightPoint,
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double alpha);
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/**
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* Return the error at the mid-point. The type of error depends on the state
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* of the concrete error metric. For instance, it can return an absolute
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* or relative error metric.
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* See RequiresEdgeSubdivision() for a description of the arguments.
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* \pre leftPoint_exists: leftPoint!=0
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* \pre midPoint_exists: midPoint!=0
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* \pre rightPoint_exists: rightPoint!=0
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* \pre clamped_alpha: alpha>0 && alpha<1
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* \pre valid_size: sizeof(leftPoint)=sizeof(midPoint)=sizeof(rightPoint)
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* =GetAttributeCollection()->GetNumberOfPointCenteredComponents()+6
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* \post positive_result: result>=0
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*/
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double GetError(double *leftPoint, double *midPoint,
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double *rightPoint, double alpha);
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protected:
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vtkViewDependentErrorMetric();
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~vtkViewDependentErrorMetric();
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/**
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* Square distance between a straight line (defined by points x and y)
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* and a point z. Property: if x and y are equal, the line is a point and
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* the result is the square distance between points x and z.
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*/
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double Distance2LinePoint(double x[2],
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double y[2],
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double z[2]);
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double PixelTolerance;
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vtkViewport *Viewport;
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// used to get display coordinates from world coordinates
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vtkCoordinate *Coordinate;
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private:
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vtkViewDependentErrorMetric(const vtkViewDependentErrorMetric&) VTK_DELETE_FUNCTION;
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void operator=(const vtkViewDependentErrorMetric&) VTK_DELETE_FUNCTION;
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};
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#endif
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