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199 lines
4.5 KiB
C++
199 lines
4.5 KiB
C++
#ifndef LOCALH
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#define LOCALH
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/**************************************************************************/
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/* File: localh.hh */
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/* Author: Joachim Schoeberl */
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/* Date: 29. Jan. 97 */
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/**************************************************************************/
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namespace netgen
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{
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/// box for grading
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class GradingBox
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{
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/// xmid
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float xmid[3];
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/// half edgelength
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float h2;
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///
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GradingBox * childs[8];
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///
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GradingBox * father;
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///
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double hopt;
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///
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public:
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struct
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{
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unsigned int cutboundary:1;
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unsigned int isinner:1;
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unsigned int oldcell:1;
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unsigned int pinner:1;
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} flags;
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///
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GradingBox (const double * ax1, const double * ax2);
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///
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void DeleteChilds();
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///
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Point<3> PMid() const { return Point<3> (xmid[0], xmid[1], xmid[2]); }
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double H2() const { return h2; }
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bool HasChilds() const
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{
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for (int i = 0; i < 8; i++)
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if (childs[i]) return true;
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return false;
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}
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friend class LocalH;
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static BlockAllocator ball;
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void * operator new(size_t);
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void operator delete (void *);
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};
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/**
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Control of 3D mesh grading
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*/
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class LocalH
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{
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///
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GradingBox * root;
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///
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double grading;
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///
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NgArray<GradingBox*> boxes;
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///
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Box<3> boundingbox;
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/// octree or quadtree
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int dimension;
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public:
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///
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LocalH (Point<3> pmin, Point<3> pmax, double grading, int adimension = 3);
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///
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LocalH (const Box<3> & box, double grading, int adimension = 3)
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: LocalH (box.PMin(), box.PMax(), grading, adimension) { ; }
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///
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~LocalH();
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///
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void Delete();
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///
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void SetGrading (double agrading) { grading = agrading; }
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///
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void SetH (Point<3> x, double h);
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///
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double GetH (Point<3> x) const;
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/// minimal h in box (pmin, pmax)
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double GetMinH (Point<3> pmin, Point<3> pmax) const;
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/// mark boxes intersecting with boundary-box
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// void CutBoundary (const Point3d & pmin, const Point3d & pmax)
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// { CutBoundaryRec (pmin, pmax, root); }
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void CutBoundary (const Box<3> & box)
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{ CutBoundaryRec (box.PMin(), box.PMax(), root); }
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/// find inner boxes
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void FindInnerBoxes (class AdFront3 * adfront,
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int (*testinner)(const Point3d & p1));
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void FindInnerBoxes (class AdFront2 * adfront,
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int (*testinner)(const Point<2> & p1));
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/// clears all flags
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void ClearFlags ()
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{ ClearFlagsRec(root); }
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/// widen refinement zone
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void WidenRefinement ();
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/// get points in inner elements
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void GetInnerPoints (NgArray<Point<3> > & points);
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/// get points in outer closure
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void GetOuterPoints (NgArray<Point<3> > & points);
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///
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void Convexify ();
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///
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int GetNBoxes () { return boxes.Size(); }
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const Box<3> & GetBoundingBox () const
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{ return boundingbox; }
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///
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void PrintMemInfo (ostream & ost) const;
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private:
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///
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double GetMinHRec (const Point3d & pmin, const Point3d & pmax,
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const GradingBox * box) const;
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///
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void CutBoundaryRec (const Point3d & pmin, const Point3d & pmax,
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GradingBox * box);
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///
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void FindInnerBoxesRec ( int (*inner)(const Point3d & p),
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GradingBox * box);
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///
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void FindInnerBoxesRec2 (GradingBox * box,
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class AdFront3 * adfront,
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NgArray<Box3d> & faceboxes,
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NgArray<int> & finds, int nfinbox);
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void FindInnerBoxesRec ( int (*inner)(const Point<2> & p),
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GradingBox * box);
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///
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void FindInnerBoxesRec2 (GradingBox * box,
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class AdFront2 * adfront,
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NgArray<Box<3> > & faceboxes,
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NgArray<int> & finds, int nfinbox);
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///
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void SetInnerBoxesRec (GradingBox * box);
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///
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void ClearFlagsRec (GradingBox * box);
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///
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void ConvexifyRec (GradingBox * box);
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friend ostream & operator<< (ostream & ost, const LocalH & loch);
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};
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inline ostream & operator<< (ostream & ost, const GradingBox & box)
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{
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ost << "gradbox, pmid = " << box.PMid() << ", h2 = " << box.H2()
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<< " cutbound = " << box.flags.cutboundary << " isinner = " << box.flags.isinner
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<< endl;
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return ost;
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}
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inline ostream & operator<< (ostream & ost, const LocalH & loch)
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{
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for (int i = 0; i < loch.boxes.Size(); i++)
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ost << "box[" << i << "] = " << *(loch.boxes[i]);
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return ost;
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}
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}
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#endif
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