pos to edge
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@ -22,6 +22,9 @@
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****************************************************************************/
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/****************************************************************************
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$Log: not supported by cvs2svn $
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Revision 1.12 2004/09/15 11:16:02 ganovelli
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changed P() to cP()
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Revision 1.11 2004/09/09 13:23:01 ponchio
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Header guards typo
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@ -79,31 +82,34 @@ public:
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};
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protected:
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typedef typename TriMeshType::FaceType FaceType;
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typedef typename FaceType::VertexType VertexType;
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typedef typename TriMeshType::FaceType::VertexType VertexType;
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typedef typename FaceType::EdgeType EdgeType;
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typedef typename FaceType::VertexType::CoordType CoordType;
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typedef typename TriMeshType::VertexType::ScalarType ScalarType;
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typedef vcg::face::Pos<FaceType> PosType;
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typedef typename LocalOptimization<TriMeshType>::HeapElem HeapElem;
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typedef typename LocalOptimization<TriMeshType>::HeapType HeapType;
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///the pos of collapse
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PosType pos;
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TriMeshType *mt;
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///the pair to collapse
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EdgeType pos;
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///mark for up_dating
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static int& _Imark(){ static int im=0; return im;}
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static int& GlobalMark(){ static int im=0; return im;}
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///mark for up_dating
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int localMark;
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/// priority in the heap
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ScalarType _priority;
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public:
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/// Default Constructor
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TriEdgeCollapse()
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inline TriEdgeCollapse()
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{}
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///Constructor with postype
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TriEdgeCollapse(PosType p, int mark)
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inline TriEdgeCollapse(EdgeType p, int mark)
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{
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_Imark() = mark;
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localMark = mark;
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pos=p;
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_priority = ComputePriority();
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}
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@ -117,71 +123,112 @@ private:
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public:
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ScalarType ComputePriority()
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inline ScalarType ComputePriority()
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{
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_priority = Distance(pos.V()->cP(),pos.VFlip()->cP());
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_priority = Distance(pos.V(0)->cP(),pos.V(1)->cP());
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return _priority;
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}
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virtual const char *Info(TriMeshType &m) {
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mt = &m;
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static char buf[60];
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sprintf(buf,"collapse %i -> %i %f\n", pos.V()-&m.vert[0], pos.VFlip()-&m.vert[0],_priority);
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return buf;
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sprintf(buf,"%i -> %i %g\n", pos.V(0)-&m.vert[0], pos.V(1)-&m.vert[0],-_priority);
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return buf;
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}
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void Execute(TriMeshType &m)
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inline void Execute(TriMeshType &m)
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{
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CoordType MidPoint=(pos.V()->P()+pos.VFlip()->P())/2.0;
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CoordType MidPoint=(pos.V(0)->P()+pos.V(1)->P())/2.0;
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int FaceDel=DoCollapse(pos, MidPoint);
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m.fn-=FaceDel;
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--m.vn;
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}
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void UpdateHeap(HeapType & h_ret)
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inline void UpdateHeap(HeapType & h_ret)
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{
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_Imark()++;
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vcg::face::VFIterator<FaceType> vfi(pos.V(1)->VFp(),pos.V(1)->VFi());
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#ifdef __SAVE__LOG__
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static FILE * co = fopen("col.txt","w");
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#endif __SAVE__LOG__
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GlobalMark()++;int nn=0;
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VertexType *v[2];
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v[0]= pos.V(0);v[1]=pos.V(1);
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v[1]->IMark() = GlobalMark();
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vcg::face::VFIterator<FaceType> vfi(v[1]->VFp(),v[1]->VFi());
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while (!vfi.End()){
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vfi.F()->V1(vfi.I())->ClearV();
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vfi.F()->V2(vfi.I())->ClearV();
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++vfi;
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}
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vfi.F() = v[1]->VFp();
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vfi.I() = v[1]->VFi();
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while (!vfi.End())
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{
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assert(!vfi.F()->IsD());
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for (int j=0;j<3;j++)
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if( (vfi.F()->V(vfi.I())->IsRW()) && (vfi.F()->V1(vfi.I())->IsRW()))
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{
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PosType p;
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p.Set(vfi.F(),vfi.I(),vfi.f->V(vfi.z));
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h_ret.push_back(HeapElem(new MYTYPE(p,_Imark())));
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{
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if( !(vfi.F()->V1(vfi.I())->IsV()) && (vfi.F()->V1(vfi.I())->IsRW()))
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{
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#ifdef __SAVE__LOG__
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fprintf(co,"%i %i \n",vfi.F()->V(vfi.I())-&*mt->vert.begin(),
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vfi.F()->V1(vfi.I())-&*mt->vert.begin());
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#endif __SAVE__LOG__
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vfi.F()->V1(vfi.I())->SetV();
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h_ret.push_back(HeapElem(new MYTYPE(EdgeType (vfi.F()->V(vfi.I()),vfi.F()->V1(vfi.I())),GlobalMark())));
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std::push_heap(h_ret.begin(),h_ret.end());
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//// update the mark of the vertices
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vfi.f->V(vfi.z)->IMark() = _Imark();
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vfi.f->V( (vfi.z+1) % 3 )->IMark() = _Imark();
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//if(false){
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// h_ret.push_back(HeapElem(new MYTYPE(EdgeType (vfi.F()->V1(vfi.I()),vfi.F()->V(vfi.I())),GlobalMark())));
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// std::push_heap(h_ret.begin(),h_ret.end());
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// }
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}
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++vfi;
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if( !(vfi.F()->V2(vfi.I())->IsV()) && (vfi.F()->V2(vfi.I())->IsRW()))
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{
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#ifdef __SAVE__LOG__
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fprintf(co,"%i %i \n",vfi.F()->V(vfi.I())-&*mt->vert.begin(),
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vfi.F()->V2(vfi.I())-&*mt->vert.begin());
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#endif __SAVE__LOG__
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vfi.F()->V2(vfi.I())->SetV();
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h_ret.push_back(HeapElem(new MYTYPE(EdgeType (vfi.F()->V(vfi.I()),vfi.F()->V2(vfi.I())),GlobalMark())));
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std::push_heap(h_ret.begin(),h_ret.end());
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//if(false){
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// h_ret.push_back(HeapElem(new MYTYPE(EdgeType (vfi.F()->V1(vfi.I()),vfi.F()->V(vfi.I())),GlobalMark())));
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// std::push_heap(h_ret.begin(),h_ret.end());
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// }
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}
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}
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++vfi;nn++;
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}
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// printf("ADDED %d\n",nn);
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}
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ModifierType IsOfType(){ return TriEdgeCollapseOp;}
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bool IsFeasible(){
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inline bool IsFeasible(){
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return LinkConditions(pos);
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}
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bool IsUpToDate(){
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if(pos.f->IsD()) {
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++FailStat::OutOfDate();
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return false;
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}
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inline bool IsUpToDate(){
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// if(pos.V(1)->IsD()) {
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// ++FailStat::OutOfDate();
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// return false;
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//}
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//
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// if(pos.V(1)->IsD()) {
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// ++FailStat::OutOfDate();
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// return false;
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//}
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if(pos.v->IsD()) {
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++FailStat::OutOfDate();
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return false;
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}
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VertexType *v0=pos.V();
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VertexType *v1=pos.VFlip();
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VertexType *v0=pos.V(0);
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VertexType *v1=pos.V(1);
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if(! (( (!v0->IsD()) && (!v1->IsD())) &&
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_Imark()>=v0->IMark() &&
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_Imark()>=v1->IMark()))
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localMark>=v0->IMark() &&
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localMark>=v1->IMark()))
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{
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++FailStat::OutOfDate();
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return false;
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if(!(*fi).IsD()){
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for (int j=0;j<3;j++)
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{
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PosType p=PosType(&*fi,j,(*fi).V(j));
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EdgeType p=EdgeType(&*fi,j,(*fi).V(j));
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h_ret.push_back(HeapElem(new MYTYPE(p,m.IMark())));
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//printf("Inserting in heap coll %3i ->%3i %f\n",p.V()-&m.vert[0],p.VFlip()-&m.vert[0],h_ret.back().locModPtr->Priority());
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}
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