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202 lines
5.7 KiB
C
202 lines
5.7 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: vtkHyperTreeCursor.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 vtkHyperTreeCursor
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* @brief Objects that can traverse hypertree nodes.
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*
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* Objects that can traverse hyper3TREE nodes. It is an abstract class.
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* Cursors are created by the hyper3TREE.
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* @sa
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* vtkDataObject vtkFieldData vtkHyper3TREEAlgorithm
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* @par Thanks:
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* This class was written by Philippe Pebay, Joachim Pouderoux and Charles Law,
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* Kitware 2013
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* This work was supported in part by Commissariat a l'Energie Atomique (CEA/DIF)
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*/
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#ifndef vtkHyperTreeCursor_h
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#define vtkHyperTreeCursor_h
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#include "vtkCommonDataModelModule.h" // For export macro
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#include "vtkObject.h"
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enum
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{
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VTK_3TREE_CHILD_ZMIN_YMIN_XMIN=0,
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VTK_3TREE_CHILD_ZMIN_YMIN_XMAX,
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VTK_3TREE_CHILD_ZMIN_YMAX_XMIN,
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VTK_3TREE_CHILD_ZMIN_YMAX_XMAX,
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VTK_3TREE_CHILD_ZMAX_YMIN_XMIN,
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VTK_3TREE_CHILD_ZMAX_YMIN_XMAX,
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VTK_3TREE_CHILD_ZMAX_YMAX_XMIN,
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VTK_3TREE_CHILD_ZMAX_YMAX_XMAX
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};
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const int VTK_2TREE_CHILD_SW=VTK_3TREE_CHILD_ZMIN_YMIN_XMIN;
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const int VTK_2TREE_CHILD_SE=VTK_3TREE_CHILD_ZMIN_YMIN_XMAX;
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const int VTK_2TREE_CHILD_NW=VTK_3TREE_CHILD_ZMIN_YMAX_XMIN;
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const int VTK_2TREE_CHILD_NE=VTK_3TREE_CHILD_ZMIN_YMAX_XMAX;
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const int VTK_1TREE_TREE_CHILD_LEFT=VTK_2TREE_CHILD_SW;
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const int VTK_1TREE_TREE_CHILD_RIGHT=VTK_2TREE_CHILD_SE;
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class vtkHyperTree;
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class VTKCOMMONDATAMODEL_EXPORT vtkHyperTreeCursor : public vtkObject
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{
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public:
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vtkTypeMacro(vtkHyperTreeCursor,vtkObject);
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void PrintSelf(ostream& os, vtkIndent indent) VTK_OVERRIDE;
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/**
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* Return the HyperTree on which the cursor points to.
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*/
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virtual vtkHyperTree* GetTree() = 0;
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/**
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* Return the index of the current leaf in the data arrays.
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* \pre is_leaf: IsLeaf()
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*/
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virtual vtkIdType GetLeafId() = 0;
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/**
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* Return the index of the current node in the data arrays.
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*/
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virtual vtkIdType GetNodeId() = 0;
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/**
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* Is the node pointed by the cursor a leaf?
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*/
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virtual bool IsLeaf() = 0;
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// Are the children of the current node all leaves?
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// This query can be called also on a leaf node.
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// \post compatible: result implies !IsLeaf()
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virtual bool IsTerminalNode() = 0;
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/**
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* Is the node pointed by the cursor the root?
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*/
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virtual bool IsRoot() = 0;
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/**
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* Return the level of the node pointed by the cursor.
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* \post positive_result: result>=0
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*/
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virtual int GetCurrentLevel() = 0;
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/**
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* Return the child number of the current node relative to its parent.
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* \pre not_root: !IsRoot().
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* \post valid_range: result>=0 && result<GetNumberOfChildren()
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*/
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virtual int GetChildIndex() = 0;
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/**
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* Move the cursor to the root node.
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* \pre can be root
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* \post is_root: IsRoot()
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*/
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virtual void ToRoot() = 0;
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/**
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* Move the cursor to the parent of the current node.
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* \pre not_root: !IsRoot()
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*/
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virtual void ToParent() = 0;
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/**
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* Move the cursor to child `child' of the current node.
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* \pre not_leaf: !IsLeaf()
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* \pre valid_child: child>=0 && child<this->GetNumberOfChildren()
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*/
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virtual void ToChild( int child ) = 0;
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/**
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* Move the cursor to the same node pointed by `other'.
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* \pre other_exists: other!=0
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* \pre same_hyper3TREE: this->SameTree(other);
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* \post equal: this->IsEqual(other)
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*/
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virtual void ToSameNode( vtkHyperTreeCursor* other ) = 0;
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/**
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* Is `this' equal to `other'?
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* \pre other_exists: other!=0
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* \pre same_hyper3TREE: this->SameTree(other);
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*/
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virtual bool IsEqual( vtkHyperTreeCursor* other ) = 0;
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/**
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* Create a copy of `this'.
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* \post results_exists:result!=0
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* \post same_tree: result->SameTree(this)
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*/
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virtual vtkHyperTreeCursor* Clone() = 0;
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/**
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* Are `this' and `other' pointing on the same hyper3TREE?
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* \pre other_exists: other!=0
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*/
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virtual int SameTree( vtkHyperTreeCursor* other ) = 0;
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/**
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* Return the index in dimension `d', as if the node was a cell of a
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* uniform grid of 1<<GetCurrentLevel() cells in each dimension.
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* \pre valid_range: d>=0 && d<GetDimension()
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* \post valid_result: result>=0 && result<(1<<GetCurrentLevel())
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*/
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virtual int GetIndex( int d ) = 0;
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/**
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* Return the number of children for each node of the tree.
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* \post positive_number: result>0
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*/
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virtual int GetNumberOfChildren() = 0;
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/**
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* Return the dimension of the tree.
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* \post positive_result: result>0
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*/
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virtual int GetDimension() = 0;
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/**
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* Move to the node described by its indices in each dimension and
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* at a given level. If there is actually a node or a leaf at this
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* location, Found() returns true. Otherwise, Found() returns false and the
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* cursor moves to the closest parent of the query. It can be the root in the
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* worst case.
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* \pre indices_exists: indices!=0
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* \pre valid_size: sizeof(indices)==GetDimension()
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* \pre valid_level: level>=0
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*/
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virtual void MoveToNode( int* indices, int level ) = 0;
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/**
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* Did the last call to MoveToNode succeed?
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*/
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virtual bool Found() = 0;
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protected:
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// Constructor.
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vtkHyperTreeCursor();
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~vtkHyperTreeCursor() VTK_OVERRIDE;
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private:
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vtkHyperTreeCursor(const vtkHyperTreeCursor&) VTK_DELETE_FUNCTION;
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void operator=(const vtkHyperTreeCursor&) VTK_DELETE_FUNCTION;
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};
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#endif
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