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284 lines
5.5 KiB
C++
284 lines
5.5 KiB
C++
#ifndef FILE_ADFRONT2
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#define FILE_ADFRONT2
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/**************************************************************************/
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/* File: adfront2.hpp */
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/* Author: Joachim Schoeberl */
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/* Date: 01. Okt. 95 */
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/**************************************************************************/
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/**
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Advancing front class for surfaces
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*/
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///
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class FrontPoint2
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{
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/// coordinates
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Point<3> p;
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/// global node index
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PointIndex globalindex;
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/// number of front lines connected to point
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int nlinetopoint;
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/// distance to original boundary
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int frontnr;
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bool onsurface;
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public:
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///
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MultiPointGeomInfo * mgi;
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///
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FrontPoint2 ()
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{
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globalindex = -1;
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nlinetopoint = 0;
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frontnr = INT_MAX-10; // attention: overflow on calculating INT_MAX + 1
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mgi = NULL;
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onsurface = true;
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}
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///
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FrontPoint2 (const Point<3> & ap, PointIndex agi,
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MultiPointGeomInfo * amgi, bool aonsurface = true);
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///
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~FrontPoint2 () { ; }
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///
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const Point<3> & P () const { return p; }
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///
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operator const Point<3> & () const { return p; }
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///
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PointIndex GlobalIndex () const { return globalindex; }
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///
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void AddLine () { nlinetopoint++; }
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///
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void RemoveLine ()
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{
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nlinetopoint--;
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if (nlinetopoint == 0)
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nlinetopoint = -1;
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}
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///
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bool Valid () const
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{ return nlinetopoint >= 0; }
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///
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bool OnSurface() const
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{ return onsurface; }
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///
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void DecFrontNr (int afrontnr)
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{
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if (frontnr > afrontnr) frontnr = afrontnr;
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}
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///
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int FrontNr () const { return frontnr; }
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};
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///
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class FrontLine
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{
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private:
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/// Point Indizes
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INDEX_2 l;
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/// quality class
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int lineclass;
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/// geometry specific data
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PointGeomInfo geominfo[2];
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public:
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FrontLine ()
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{
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lineclass = 1;
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}
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///
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FrontLine (const INDEX_2 & al)
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{
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l = al;
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lineclass = 1;
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}
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///
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const INDEX_2 & L () const
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{
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return l;
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}
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///
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int LineClass() const
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{
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return lineclass;
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}
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///
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void IncrementClass ()
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{
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lineclass++;
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}
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///
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void ResetClass ()
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{
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lineclass = 1;
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}
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///
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bool Valid () const
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{
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return l.I1() != -1;
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}
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///
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void Invalidate ()
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{
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l.I1() = -1;
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l.I2() = -1;
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lineclass = 1000;
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}
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void SetGeomInfo (const PointGeomInfo & gi1, const PointGeomInfo & gi2)
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{
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geominfo[0] = gi1;
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geominfo[1] = gi2;
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}
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const PointGeomInfo * GetGeomInfo () const
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{ return geominfo; }
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const PointGeomInfo & GetGeomInfo (int endp) const
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{ return geominfo[endp-1]; }
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friend class AdFront2;
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};
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class AdFront2
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{
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///
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Array<FrontPoint2> points; /// front points
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Array<FrontLine> lines; /// front lines
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Box3d boundingbox;
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Box3dTree linesearchtree; /// search tree for lines
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Point3dTree pointsearchtree; /// search tree for points
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Point3dTree cpointsearchtree; /// search tree for cone points (not used ???)
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Array<int> delpointl; /// list of deleted front points
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Array<int> dellinel; /// list of deleted front lines
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int nfl; /// number of front lines;
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INDEX_2_HASHTABLE<int> * allflines; /// all front lines ever have been
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Array<int> invpindex;
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int minval;
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int starti;
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public:
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///
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// AdFront2 ();
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AdFront2 (const Box3d & aboundingbox);
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///
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~AdFront2 ();
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///
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// void GetPoints (Array<Point<3> > & apoints) const;
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///
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void Print (ostream & ost) const;
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///
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bool Empty () const
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{
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return nfl == 0;
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}
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///
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int GetNFL () const { return nfl; }
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const FrontLine & GetLine (int nr) { return lines[nr]; }
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const FrontPoint2 & GetPoint (int nr) { return points[nr]; }
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///
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int SelectBaseLine (Point<3> & p1, Point<3> & p2,
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const PointGeomInfo *& geominfo1,
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const PointGeomInfo *& geominfo2,
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int & qualclass);
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///
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int GetLocals (int baseline,
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Array<Point3d> & locpoints,
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Array<MultiPointGeomInfo> & pgeominfo,
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Array<INDEX_2> & loclines, // local index
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Array<int> & pindex,
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Array<int> & lindex,
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double xh);
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///
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void DeleteLine (int li);
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///
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int AddPoint (const Point<3> & p, PointIndex globind,
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MultiPointGeomInfo * mgi = NULL,
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bool pointonsurface = true);
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///
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int AddLine (int pi1, int pi2,
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const PointGeomInfo & gi1, const PointGeomInfo & gi2);
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///
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int ExistsLine (int gpi1, int gpi2);
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///
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void IncrementClass (int li)
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{
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lines[li].IncrementClass();
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}
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///
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void ResetClass (int li)
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{
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lines[li].ResetClass();
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}
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///
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const PointGeomInfo & GetLineGeomInfo (int li, int lend) const
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{ return lines[li].GetGeomInfo (lend); }
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///
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PointIndex GetGlobalIndex (int pi) const
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{
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return points[pi].GlobalIndex();
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}
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/// is Point p inside Surface (flat geometry only)
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bool Inside (const Point<2> & p) const;
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bool SameSide (const Point<2> & lp1, const Point<2> & lp2,
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const Array<int> * /* testfaces */ = NULL) const;
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/*
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{
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return Inside (lp1) == Inside (lp2);
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}
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*/
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///
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void SetStartFront ();
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///
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void PrintOpenSegments (ostream & ost) const;
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};
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#endif
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