mirror of
https://github.com/NGSolve/netgen.git
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264 lines
7.1 KiB
C++
264 lines
7.1 KiB
C++
#include <mystdlib.h>
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#include "meshing.hpp"
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namespace netgen
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{
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GeomSearch3d :: GeomSearch3d()
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{
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size.i1 = 0; size.i2 = 0; size.i3 = 0;
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};
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GeomSearch3d :: ~GeomSearch3d()
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{
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//delete old Hashtable:
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if (size.i1 != 0)
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{
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for (int i = 0; i < size.i1*size.i2*size.i3; i++)
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delete hashtable[i];
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}
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}
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void GeomSearch3d :: Init (Array <FrontPoint3,PointIndex::BASE> *pointsi, Array <FrontFace> *facesi)
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{
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points = pointsi;
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faces = facesi;
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size.i1 = 0; size.i2 = 0; size.i3 = 0;
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reset = 1;
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hashcount = 1;
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}
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void GeomSearch3d :: ElemMaxExt(Point3d& minp, Point3d& maxp, const MiniElement2d& elem)
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{
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maxp.X()=(*points)[elem.PNum(1)].P()(0);
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maxp.Y()=(*points)[elem.PNum(1)].P()(1);
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maxp.Z()=(*points)[elem.PNum(1)].P()(2);
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minp.X()=(*points)[elem.PNum(1)].P()(0);
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minp.Y()=(*points)[elem.PNum(1)].P()(1);
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minp.Z()=(*points)[elem.PNum(1)].P()(2);
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for (int i=2; i <= 3; i++)
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{
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maxp.X()=max2((*points)[elem.PNum(i)].P()(0),maxp.X());
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maxp.Y()=max2((*points)[elem.PNum(i)].P()(1),maxp.Y());
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maxp.Z()=max2((*points)[elem.PNum(i)].P()(2),maxp.Z());
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minp.X()=min2((*points)[elem.PNum(i)].P()(0),minp.X());
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minp.Y()=min2((*points)[elem.PNum(i)].P()(1),minp.Y());
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minp.Z()=min2((*points)[elem.PNum(i)].P()(2),minp.Z());
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}
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}
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void GeomSearch3d :: MinCoords(const Point3d& p1, Point3d& p2)
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{
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p2.X()=min2(p1.X(),p2.X());
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p2.Y()=min2(p1.Y(),p2.Y());
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p2.Z()=min2(p1.Z(),p2.Z());
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}
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void GeomSearch3d :: MaxCoords(const Point3d& p1, Point3d& p2)
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{
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p2.X()=max2(p1.X(),p2.X());
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p2.Y()=max2(p1.Y(),p2.Y());
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p2.Z()=max2(p1.Z(),p2.Z());
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}
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void GeomSearch3d :: Create()
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{
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INDEX i,j,k;
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if (reset)
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{
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const double hashelemsizefactor = 4;
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reset = 0;
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/*
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minext=Point3d(MAXDOUBLE, MAXDOUBLE, MAXDOUBLE);
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maxext=Point3d(MINDOUBLE, MINDOUBLE, MINDOUBLE);
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*/
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ElemMaxExt(minext, maxext, faces->Get(1).Face());
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Point3d maxp, minp;
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Vec3d midext(0,0,0);
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//get max Extension of Frontfaces
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for (i = 1; i <= faces->Size(); i++)
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{
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ElemMaxExt(minp, maxp, faces->Get(i).Face());
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MinCoords(minp, minext);
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MaxCoords(maxp, maxext);
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midext+=maxp-minp;
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}
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maxextreal = maxext;
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maxext = maxext + 1e-4 * (maxext - minext);
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midext*=1./faces->Size();
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Vec3d boxext = maxext - minext;
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//delete old Hashtable:
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if (size.i1 != 0)
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{
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for (i = 1; i <= size.i1*size.i2*size.i3; i++)
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{
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delete hashtable.Get(i);
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}
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}
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size.i1 = int (boxext.X()/midext.X()/hashelemsizefactor+1);
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size.i2 = int (boxext.Y()/midext.Y()/hashelemsizefactor+1);
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size.i3 = int (boxext.Z()/midext.Z()/hashelemsizefactor+1);
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// PrintMessage (5, "hashsizes = ", size.i1, ", ", size.i2, ", ", size.i3);
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elemsize.X()=boxext.X()/size.i1;
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elemsize.Y()=boxext.Y()/size.i2;
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elemsize.Z()=boxext.Z()/size.i3;
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//create Hasharrays:
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hashtable.SetSize(size.i1*size.i2*size.i3);
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for (i = 1; i <= size.i1; i++)
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{
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for (j = 1; j <= size.i2; j++)
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{
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for (k = 1; k <= size.i3; k++)
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{
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INDEX ind=i+(j-1)*size.i1+(k-1)*size.i2*size.i1;
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hashtable.Elem(ind) = new Array <int> ();
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}
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}
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}
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}
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else
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{
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//Clear all Hash-Arrays
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for (i = 1; i <= size.i1; i++)
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{
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for (j = 1; j <= size.i2; j++)
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{
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for (k = 1; k <= size.i3; k++)
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{
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INDEX ind=i+(j-1)*size.i1+(k-1)*size.i2*size.i1;
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hashtable.Elem(ind)->SetSize(0);
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}
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}
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}
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}
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//Faces in Hashtable einfuegen:
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for (i = 1; i <= faces->Size(); i++)
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{
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AddElem(faces->Get(i).Face(),i);
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}
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}
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void GeomSearch3d :: AddElem(const MiniElement2d& elem, INDEX elemnum)
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{
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Point3d minp, maxp;
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ElemMaxExt(minp, maxp, elem);
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int sx = int ((minp.X()-minext.X())/elemsize.X()+1.);
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int ex = int ((maxp.X()-minext.X())/elemsize.X()+1.);
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int sy = int ((minp.Y()-minext.Y())/elemsize.Y()+1.);
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int ey = int ((maxp.Y()-minext.Y())/elemsize.Y()+1.);
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int sz = int ((minp.Z()-minext.Z())/elemsize.Z()+1.);
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int ez = int ((maxp.Z()-minext.Z())/elemsize.Z()+1.);
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for (int ix = sx; ix <= ex; ix++)
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for (int iy = sy; iy <= ey; iy++)
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for (int iz = sz; iz <= ez; iz++)
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{
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INDEX ind=ix+(iy-1)*size.i1+(iz-1)*size.i2*size.i1;
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if (ind < 1 || ind > size.i1 * size.i2 * size.i3)
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{
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cerr << "Illegal hash-position";
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cerr << "Position: " << ix << "," << iy << "," << iz << endl;
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throw NgException ("Illegal position in Geomsearch");
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}
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hashtable.Elem(ind)->Append(elemnum);
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}
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}
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void GeomSearch3d :: GetLocals(Array<MiniElement2d> & locfaces, Array<INDEX> & findex,
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INDEX fstind, const Point3d& p0, double xh)
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{
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hashcount++;
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Point3d minp, maxp, midp;
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minp=p0-Vec3d(xh,xh,xh); //lay cube over sphere
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maxp=p0+Vec3d(xh,xh,xh);
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MaxCoords(minext,minp); //cube may not be out of hash-region
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MinCoords(maxextreal,maxp);
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int cluster = faces->Get(fstind).Cluster();
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int sx = int((minp.X()-minext.X())/elemsize.X()+1.);
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int ex = int((maxp.X()-minext.X())/elemsize.X()+1.);
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int sy = int((minp.Y()-minext.Y())/elemsize.Y()+1.);
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int ey = int((maxp.Y()-minext.Y())/elemsize.Y()+1.);
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int sz = int((minp.Z()-minext.Z())/elemsize.Z()+1.);
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int ez = int((maxp.Z()-minext.Z())/elemsize.Z()+1.);
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int ix,iy,iz,i,k;
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int cnt1 = 0; // test, how efficient hashtable is
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int cnt2 = 0;
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int cnt3 = 0;
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for (ix = sx; ix <= ex; ix++)
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{
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for (iy = sy; iy <= ey; iy++)
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{
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for (iz = sz; iz <= ez; iz++)
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{
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INDEX ind=ix+(iy-1)*size.i1+(iz-1)*size.i2*size.i1;
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//go through all elements in one hash area
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const Array <int> & area = *hashtable.Elem(ind);
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for (k = 1; k <= area.Size(); k++)
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{
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cnt2++;
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i = area.Get(k);
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if (faces->Get(i).Cluster() == cluster &&
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faces->Get(i).Valid() &&
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faces->Get(i).HashValue() != hashcount &&
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i != fstind)
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{
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cnt1++;
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const MiniElement2d & face = faces->Get(i).Face();
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const Point3d & p1 = (*points)[face.PNum(1)].P();
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const Point3d & p2 = (*points)[face.PNum(2)].P();
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const Point3d & p3 = (*points)[face.PNum(3)].P();
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midp = Center (p1, p2, p3);
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// if (Dist2 (midp, p0) <= xh*xh)
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if((Dist2 (p1, p0) <= xh*xh) ||
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(Dist2 (p2, p0) <= xh*xh) ||
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(Dist2 (p3, p0) <= xh*xh) ||
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(Dist2 (midp, p0) <= xh*xh) ) // by Jochen Wild
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{
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cnt3++;
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locfaces.Append(faces->Get(i).Face());
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findex.Append(i);
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faces->Elem(i).SetHashValue(hashcount);
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}
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}
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}
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}
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}
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}
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/*
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if (faces->Size() != 0 && hashcount % 200 == 0)
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{
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(*mycout) << "n.o.f= " << faces->Size();
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(*mycout) << ", n.o.lf= " << locfaces.Size();
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(*mycout) << ", hashf= " << (double)cnt2/(double)faces->Size();
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(*mycout) << " (" << (double)cnt1/(double)faces->Size();
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(*mycout) << ", " << (double)cnt3/(double)faces->Size() << ")" << endl;
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}
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*/
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}
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}
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