changed name of include, removed use of an undefined type (scalar instead of Scalar)
removed unused code portions (the old closest code)
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@ -24,6 +24,11 @@
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History
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$Log: not supported by cvs2svn $
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Revision 1.12 2005/09/21 09:24:30 pietroni
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Added RayIterators.
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Added ClosestIterators on Triangles and Vertices.
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Added Closest Functions on triangles and Vertices.
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Revision 1.11 2005/09/19 13:36:24 pietroni
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added ray iterator of faces
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@ -76,7 +81,7 @@ header added
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#include <vcg/simplex/face/distance.h>
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//#include <vcg/space/index/grid_static_ptr.h>
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#include <vcg/space/index/space_iterators.h>
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#include <vcg/space/index/closest.h>
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#include <vcg/space/index/grid_closest.h>
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namespace vcg {
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namespace trimesh {
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@ -175,115 +180,9 @@ void Closest( MESH & mesh, const Point3<SCALAR> & p, GRID & gr, SCALAR & mdist,
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Point3<SCALAR> & normf, Point3<SCALAR> & bestq, typename MESH::FaceType * &f, Point3<SCALAR> &ip)
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{
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typedef SCALAR ScalarType;
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typedef Point3<scalar> Point3x;
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typedef Point3<ScalarType> Point3x;
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typedef Box3<SCALAR> Box3x;
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//if(!gr.bbox.IsIn(p)) return;
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////typedef typename GridStaticPtr<typename MESH::FaceContainer,double>::Link A2UGridLink;
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//typedef typename GRID::Link A2UGridLink;
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// scalar ax = p[0] - gr.bbox.min[0]; // Real coodinate of point refer to
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// scalar ay = p[1] - gr.bbox.min[1];
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// scalar az = p[2] - gr.bbox.min[2];
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// int gx = int( ax/gr.voxel[0] ); // Integer coordinate of the point
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// int gy = int( ay/gr.voxel[1] ); // voxel
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// int gz = int( az/gr.voxel[2] );
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// scalar vx = gr.bbox.min[0]+gx*gr.voxel[0]; // Real world coordinate of the Voxel
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// scalar vy = gr.bbox.min[1]+gy*gr.voxel[1]; // origin
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//scalar vz = gr.bbox.min[2]+gz*gr.voxel[2];
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//scalar dx = math::Min(p[0] - vx, vx+gr.voxel[0]-p[0]); // Dist from the voxel
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// scalar dy = math::Min(p[1] - vy, vy+gr.voxel[1]-p[1]);
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// scalar dz = math::Min(p[2] - vz, vz+gr.voxel[2]-p[2]);
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//scalar vdist,vstep;
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//if(dx<dy && dx<dz)
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//{
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// vdist = dx;
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// vstep = gr.voxel[0];
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//}
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//else if(dy<dz)
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//{
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// vdist = dy;
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// vstep = gr.voxel[1];
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//}
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//else
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//{
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// vdist = dz;
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// vstep = gr.voxel[2];
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//}
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////scalar error = gr.bbox.SquaredDiag();
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////scalar error = gr.bbox.Diag();
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//scalar error = mdist;
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//Point3x q;
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//typename MESH::FaceIterator bestf = (typename MESH::FaceIterator)0;
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// mesh.UnMarkAll();
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//int mxsd = gr.siz[0];
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//if(mxsd<gr.siz[1]) mxsd = gr.siz[1];
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//if(mxsd<gr.siz[2]) mxsd = gr.siz[2];
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//for(int s=0;s<mxsd;++s)
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//{
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// if(s==0)
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// {
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// A2UGridLink *first, *last, *l;
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// gr.Grid( gx, gy, gz, first, last );
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// for(l=first;l!=last;++l)
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// if (!l->Elem()->IsD())
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// {
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// if( ! mesh.IsMarked( &*(l->Elem())) )
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// {
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// if( face::PointDistance((*(l->Elem())), p, error, q) )
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// {
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// bestq = q;
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// bestf = l->Elem();
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// }
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// mesh.Mark( &*(l->Elem()) );
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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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// for(int ix=gx-s;ix<=gx+s;++ix)
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// if( ix>=0 && ix<gr.siz[0] )
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// {
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// for(int iy=gy-s;iy<=gy+s;++iy)
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// if( iy>=0 && iy<gr.siz[1] )
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// {
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// int sz = ( ix==gx-s || ix==gx+s ||
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// iy==gy-s || iy==gy+s )?1:2*s;
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// for(int iz=gz-s;iz<=gz+s;iz+=sz)
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// if( iz>=0 && iz<gr.siz[2] )
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// {
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// A2UGridLink *first, *last, *l;
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// gr.Grid( ix, iy, iz, first, last );
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// for(l=first;l!=last;++l)
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// if (!l->Elem()->IsD())
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// {
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// if( ! mesh.IsMarked( &*(l->Elem())) )
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// {
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// if( vcg::face::PointDistance((*(l->Elem())), p, error, q) )
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// {
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// bestq = q;
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// bestf = l->Elem();
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// }
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// mesh.Mark(&*l->Elem());
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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( fabs(error)<vdist )
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// break;
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// vdist += vstep;
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//}
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ScalarType error = mdist;
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typedef FaceTmark<MESH> MarkerFace;
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@ -292,7 +191,7 @@ void Closest( MESH & mesh, const Point3<SCALAR> & p, GRID & gr, SCALAR & mdist,
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typedef typename FaceDistance<typename MESH::FaceType> FDistFunct;
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typename MESH::FaceType* bestf= vcg::GetClosest<GRID,FDistFunct,MarkerFace>(p,mdist,FDistFunct() ,error,bestq,t,gr);
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if(mdist > scalar(fabs(error)))
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if(mdist > ScalarType(fabs(error)))
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{
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f=bestf;
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typename MESH::ScalarType alfa, beta, gamma;
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@ -304,7 +203,7 @@ void Closest( MESH & mesh, const Point3<SCALAR> & p, GRID & gr, SCALAR & mdist,
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ip=Point3x(alfa,beta,gamma);
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//normf.Normalize(); inutile si assume le normali ai vertici benfatte
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mdist = scalar(fabs(error));
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mdist = ScalarType(fabs(error));
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}
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}
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