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/* Copyright (c) 2006 The University of Notre Dame. All Rights Reserved. |
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/* Copyright (c) 2008 The University of Notre Dame. All Rights Reserved. |
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* |
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* The University of Notre Dame grants you ("Licensee") a |
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* non-exclusive, royalty free, license to use, modify and |
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* |
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* Created by Charles F. Vardeman II on 11 Dec 2006. |
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* @author Charles F. Vardeman II |
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* @version $Id: ConvexHull.cpp,v 1.6 2008-05-14 14:31:48 chuckv Exp $ |
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* @version $Id: ConvexHull.cpp,v 1.11 2008-10-20 19:36:32 chuckv Exp $ |
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* |
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*/ |
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#include <iterator> |
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#include "math/ConvexHull.hpp" |
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#include "utils/simError.h" |
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using namespace oopse; |
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/* CGAL version of convex hull first then QHULL */ |
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#ifdef HAVE_CGAL |
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//#include <CGAL/Homogeneous.h> |
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#include <CGAL/basic.h> |
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#include <CGAL/Simple_cartesian.h> |
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//#include <CGAL/Simple_cartesian.h> |
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#include <CGAL/Cartesian.h> |
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#include <CGAL/Origin.h> |
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#include <CGAL/Exact_predicates_exact_constructions_kernel.h> |
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#include <CGAL/Convex_hull_traits_3.h> |
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#include <CGAL/convex_hull_3.h> |
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#include <CGAL/Polyhedron_traits_with_normals_3.h> |
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#include <CGAL/Polyhedron_3.h> |
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#include <CGAL/double.h> |
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#include <CGAL/number_utils.h> |
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#include <CGAL/Quotient.h> |
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|
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//#include <CGAL/Quotient.h> |
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#include <CGAL/MP_Float.h> |
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#include <CGAL/Lazy_exact_nt.h> |
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//#include <CGAL/Lazy_exact_nt.h> |
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|
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typedef double RT; |
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typedef CGAL::Simple_cartesian<RT> K; |
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typedef CGAL::Convex_hull_traits_3<K> Traits; |
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typedef Traits::Polyhedron_3 Polyhedron_3; |
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typedef K::Point_3 Point; |
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ConvexHull::ConvexHull(){} |
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typedef CGAL::MP_Float RT; |
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//typedef double RT; |
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//typedef CGAL::Homogeneous<RT> K; |
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typedef CGAL::Exact_predicates_exact_constructions_kernel K; |
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typedef K::Vector_3 Vector_3; |
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//typedef CGAL::Convex_hull_traits_3<K> Traits; |
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typedef CGAL::Polyhedron_traits_with_normals_3<K> Traits; |
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//typedef Traits::Polyhedron_3 Polyhedron_3; |
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typedef CGAL::Polyhedron_3<Traits> Polyhedron_3; |
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typedef K::Point_3 Point_3; |
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|
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bool ConvexHull::genHull(std::vector<Vector3d> pos) |
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|
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typedef Polyhedron_3::HalfedgeDS HalfedgeDS; |
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typedef Polyhedron_3::Facet_iterator Facet_iterator; |
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typedef Polyhedron_3::Halfedge_around_facet_circulator Halfedge_facet_circulator; |
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typedef Polyhedron_3::Halfedge_handle Halfedge_handle; |
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typedef Polyhedron_3::Facet_iterator Facet_iterator; |
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typedef Polyhedron_3::Plane_iterator Plane_iterator; |
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typedef Polyhedron_3::Vertex_iterator Vertex_iterator; |
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typedef Polyhedron_3::Vertex_handle Vertex_handle; |
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typedef Polyhedron_3::Point_iterator Point_iterator; |
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class Enriched_Point_3 : public K::Point_3{ |
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public: |
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Enriched_Point_3(double x,double y,double z) : K::Point_3(x,y,z), yupMyPoint(false), mySD(NULL) {} |
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bool isMyPoint() const{ return yupMyPoint; } |
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void myPoint(){ yupMyPoint = true; } |
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void setSD(StuntDouble* SD){mySD = SD;} |
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StuntDouble* getStuntDouble(){return mySD;} |
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private: |
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bool yupMyPoint; |
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StuntDouble* mySD; |
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}; |
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// compare Point_3's... used in setting up the STL map from points to indices |
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template <typename Pt3> |
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struct Point_3_comp { |
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bool operator() (const Pt3 & p, const Pt3 & q) const { |
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return CGAL::lexicographically_xyz_smaller(p,q); // this is defined inline & hence we had to create fn object & not ptrfun |
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} |
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}; |
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|
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// coordinate-based hashing inefficient but can we do better if pts are copied? |
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typedef std::map<Point_3, StuntDouble* ,Point_3_comp<Point_3> > ptMapType; |
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|
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#ifdef IS_MPI |
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struct { |
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double x,y,z; |
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} surfacePt; |
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#endif |
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|
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ConvexHull::ConvexHull() : Hull(){ |
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//If we are doing the mpi version, set up some vectors for data communication |
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#ifdef IS_MPI |
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nproc_ = MPI::COMM_WORLD.Get_size(); |
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myrank_ = MPI::COMM_WORLD.Get_rank(); |
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NstoProc_ = new int[nproc_]; |
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displs_ = new int[nproc_]; |
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|
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// Create a surface point type in MPI to send |
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surfacePtType = MPI::DOUBLE.Create_contiguous(3); |
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surfacePtType.Commit(); |
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#endif |
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} |
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|
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void ConvexHull::computeHull(std::vector<StuntDouble*> bodydoubles) |
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{ |
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|
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std::vector<Enriched_Point_3> points; |
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ptMapType myMap; |
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Point_iterator hc; |
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std::vector<Point> points; |
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|
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// Copy the positon vector into a points vector for cgal. |
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for (int i = 0; i < pos.size(); ++i) |
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std::vector<StuntDouble*>::iterator SD; |
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|
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for (SD =bodydoubles.begin(); SD != bodydoubles.end(); ++SD) |
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{ |
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Point pt(pos[i][0],pos[i][1],pos[i][2]); |
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points.push_back(pt); |
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Vector3d pos = (*SD)->getPos(); |
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Enriched_Point_3* pt = new Enriched_Point_3(pos.x(),pos.y(),pos.z()); |
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pt->setSD(*SD); |
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points.push_back(*pt); |
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// myMap[pt]=(*SD); |
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} |
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// define object to hold convex hull |
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Polyhedron_3 ch_object_; |
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CGAL::Object ch_object_; |
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Polyhedron_3 polyhedron; |
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|
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// compute convex hull |
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CGAL::convex_hull_3(points.begin(), points.end(), ch_object_); |
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for (Polyhedron_3::Vertex_iterator v = ch_object_.vertices_begin(); ch_object_.vertices_end(); ++v){ |
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std::cout<< v.point()<<std::endl; |
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std::vector<Enriched_Point_3>::iterator testpt; |
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|
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CGAL::convex_hull_3(points.begin(), points.end(), polyhedron); |
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Ns_ = polyhedron.size_of_vertices(); |
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#ifdef IS_MPI |
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/* Gather an array of the number of verticies on each processor */ |
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|
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surfacePtsGlobal_.clear(); |
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surfacePtsLocal_.clear(); |
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MPI::COMM_WORLD.Allgather(&Ns_,1,MPI::INT,&NstoProc_[0],1,MPI::INT); |
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for (int i = 0; i < nproc_; i++){ |
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Nsglobal_ += NstoProc_[i]; |
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} |
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/*Reminder ideally, we would like to reserve size for the vectors here*/ |
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surfacePtsLocal_.reserve(Ns_); |
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surfacePtsGlobal_.resize(Nsglobal_); |
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// std::fill(surfacePtsGlobal_.begin(),surfacePtsGlobal_.end(),0); |
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|
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/* Build a displacements array */ |
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for (int i = 1; i < nproc_; i++){ |
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displs_[i] = displs_[i-1] + NstoProc_[i-1]; |
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} |
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int noffset = displs_[myrank_]; |
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/* gather the potential hull */ |
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for (hc =polyhedron.points_begin();hc != polyhedron.points_end(); ++hc){ |
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Point_3 mypoint = *hc; |
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surfacePt_ mpiSurfacePt; |
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mpiSurfacePt.x = CGAL::to_double(mypoint.x()); |
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mpiSurfacePt.y = CGAL::to_double(mypoint.y()); |
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mpiSurfacePt.z = CGAL::to_double(mypoint.z()); |
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surfacePtsLocal_.push_back(mpiSurfacePt); |
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} |
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|
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MPI::COMM_WORLD.Allgatherv(&surfacePtsLocal_[0],Ns_,surfacePtType,&surfacePtsGlobal_[0],NstoProc_,displs_,surfacePtType); |
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std::vector<surfacePt_>::iterator spt; |
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std::vector<Enriched_Point_3> gblpoints; |
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|
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int mine = 0; |
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int pointidx = 0; |
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for (spt = surfacePtsGlobal_.begin(); spt != surfacePtsGlobal_.end(); ++spt) |
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{ |
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surfacePt_ thispos = *spt; |
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Enriched_Point_3 ept(thispos.x,thispos.y,thispos.z); |
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if (mine >= noffset && mine < noffset + Ns_){ |
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ept.myPoint(); |
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ept.setSD(points[pointidx].getStuntDouble()); |
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pointidx++; |
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} |
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gblpoints.push_back(ept); |
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mine++; |
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} |
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|
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/* Compute the global hull */ |
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polyhedron.clear(); |
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CGAL::convex_hull_3(gblpoints.begin(), gblpoints.end(), polyhedron); |
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#endif |
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/* Loop over all of the surface triangles and build data structures for atoms and normals*/ |
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Facet_iterator j; |
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area_ = 0; |
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for ( j = polyhedron.facets_begin(); j !=polyhedron.facets_end(); ++j) { |
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Halfedge_handle h = j->halfedge(); |
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Point_3 r0=h->vertex()->point(); |
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Point_3 r1=h->next()->vertex()->point(); |
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Point_3 r2=h->next()->next()->vertex()->point(); |
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|
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Point_3* pr0 = &r0; |
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Point_3* pr1 = &r1; |
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Point_3* pr2 = &r2; |
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|
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Enriched_Point_3* er0 = static_cast<Enriched_Point_3*>(pr0); |
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Enriched_Point_3* er1 = static_cast<Enriched_Point_3*>(pr1); |
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Enriched_Point_3* er2 = static_cast<Enriched_Point_3*>(pr2); |
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|
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// StuntDouble* sd = er0->getStuntDouble(); |
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std::cerr << "sd globalIndex = " << to_double(er0->x()) << "\n"; |
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Point_3 thisCentroid = CGAL::centroid(r0,r1,r2); |
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|
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Vector_3 normal = CGAL::cross_product(r1-r0,r2-r0); |
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|
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Triangle* face = new Triangle(); |
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Vector3d V3dNormal(CGAL::to_double(normal.x()),CGAL::to_double(normal.y()),CGAL::to_double(normal.z())); |
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Vector3d V3dCentroid(CGAL::to_double(thisCentroid.x()),CGAL::to_double(thisCentroid.y()),CGAL::to_double(thisCentroid.z())); |
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face->setNormal(V3dNormal); |
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face->setCentroid(V3dCentroid); |
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RealType faceArea = 0.5*V3dNormal.length(); |
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face->setArea(faceArea); |
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area_ += faceArea; |
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Triangles_.push_back(face); |
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// ptMapType::const_iterator locn=myMap.find(mypoint); |
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// int myIndex = locn->second; |
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|
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} |
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std::cout << "Number of surface atoms is: " << Ns_ << std::endl; |
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} |
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void ConvexHull::printHull(const std::string& geomFileName) |
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{ |
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/* |
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std::ofstream newGeomFile; |
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|
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//create new .md file based on old .md file |
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newGeomFile.open("testhull.off"); |
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|
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// Write polyhedron in Object File Format (OFF). |
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CGAL::set_ascii_mode( std::cout); |
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newGeomFile << "OFF" << std::endl << polyhedron.size_of_vertices() << ' ' |
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<< polyhedron.size_of_facets() << " 0" << std::endl; |
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std::copy( polyhedron.points_begin(), polyhedron.points_end(), |
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std::ostream_iterator<Point_3>( newGeomFile, "\n")); |
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for ( Facet_iterator i = polyhedron.facets_begin(); i != polyhedron.facets_end(); ++i) { |
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Halfedge_facet_circulator j = i->facet_begin(); |
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// Facets in polyhedral surfaces are at least triangles. |
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CGAL_assertion( CGAL::circulator_size(j) >= 3); |
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newGeomFile << CGAL::circulator_size(j) << ' '; |
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do { |
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newGeomFile << ' ' << std::distance(polyhedron.vertices_begin(), j->vertex()); |
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} while ( ++j != i->facet_begin()); |
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newGeomFile << std::endl; |
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} |
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newGeomFile.close(); |
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*/ |
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/* |
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std::ofstream newGeomFile; |
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|
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//create new .md file based on old .md file |
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newGeomFile.open(geomFileName.c_str()); |
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|
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// Write polyhedron in Object File Format (OFF). |
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CGAL::set_ascii_mode( std::cout); |
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newGeomFile << "OFF" << std::endl << ch_polyhedron.size_of_vertices() << ' ' |
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<< ch_polyhedron.size_of_facets() << " 0" << std::endl; |
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std::copy( ch_polyhedron.points_begin(), ch_polyhedron.points_end(), |
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std::ostream_iterator<Point_3>( newGeomFile, "\n")); |
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for ( Facet_iterator i = ch_polyhedron.facets_begin(); i != ch_polyhedron.facets_end(); ++i) |
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{ |
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Halfedge_facet_circulator j = i->facet_begin(); |
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// Facets in polyhedral surfaces are at least triangles. |
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CGAL_assertion( CGAL::circulator_size(j) >= 3); |
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newGeomFile << CGAL::circulator_size(j) << ' '; |
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do |
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{ |
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newGeomFile << ' ' << std::distance(ch_polyhedron.vertices_begin(), j->vertex()); |
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} |
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while ( ++j != i->facet_begin()); |
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newGeomFile << std::endl; |
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} |
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|
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newGeomFile.close(); |
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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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#ifdef HAVE_QHULL |
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/* Old options Qt Qu Qg QG0 FA */ |
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ConvexHull::ConvexHull() : dim_(3), options_("qhull Qt Qci Tcv Pp") |
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//ConvexHull::ConvexHull() : dim_(3), options_("qhull d Qbb Qt i") |
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{} |
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/* More old opts Qc Qi Pp*/ |
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ConvexHull::ConvexHull() : Hull(), dim_(3), options_("qhull Qt Pp"), Ns_(200), nTriangles_(0) { |
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//If we are doing the mpi version, set up some vectors for data communication |
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#ifdef IS_MPI |
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|
|
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bool ConvexHull::genHull(std::vector<Vector3d> pos) |
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|
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nproc_ = MPI::COMM_WORLD.Get_size(); |
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myrank_ = MPI::COMM_WORLD.Get_rank(); |
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NstoProc_ = new int[nproc_]; |
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displs_ = new int[nproc_]; |
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|
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// Create a surface point type in MPI to send |
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//surfacePtType = MPI::DOUBLE.Create_contiguous(3); |
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// surfacePtType.Commit(); |
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|
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|
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#endif |
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} |
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|
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|
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|
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void ConvexHull::computeHull(std::vector<StuntDouble*> bodydoubles) |
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{ |
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|
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< |
|
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int numpoints = pos.size(); |
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coordT* pt_array; |
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std::vector<int> surfaceIDs; |
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std::vector<int> surfaceIDsGlobal; |
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std::vector<int> localPtsMap; |
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int numpoints = bodydoubles.size(); |
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|
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//coordT* pt_array; |
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coordT* surfpt_array; |
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std::list<int> surface_atoms; |
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vertexT *vertex, **vertexp; |
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facetT *facet; |
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setT *vertices; |
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int curlong,totlong; |
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int id; |
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|
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coordT *point,**pointp; |
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|
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|
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FILE *outdummy = NULL; |
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FILE *errdummy = NULL; |
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|
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< |
pt_array = (coordT*) malloc(sizeof(coordT) * (numpoints * dim_)); |
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> |
//pt_array = (coordT*) malloc(sizeof(coordT) * (numpoints * dim_)); |
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|
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// double* ptArray = new double[numpoints * 3]; |
418 |
> |
std::vector<double> ptArray(numpoints*3); |
419 |
> |
std::vector<bool> isSurfaceID(numpoints); |
420 |
> |
|
421 |
> |
// Copy the positon vector into a points vector for qhull. |
422 |
> |
std::vector<StuntDouble*>::iterator SD; |
423 |
> |
int i = 0; |
424 |
> |
for (SD =bodydoubles.begin(); SD != bodydoubles.end(); ++SD) |
425 |
> |
{ |
426 |
> |
Vector3d pos = (*SD)->getPos(); |
427 |
> |
|
428 |
> |
ptArray[dim_ * i] = pos.x(); |
429 |
> |
ptArray[dim_ * i + 1] = pos.y(); |
430 |
> |
ptArray[dim_ * i + 2] = pos.z(); |
431 |
> |
i++; |
432 |
> |
} |
433 |
|
|
434 |
+ |
|
435 |
|
|
131 |
– |
for (int i = 0; i < numpoints; i++) { |
132 |
– |
pt_array[dim_ * i] = pos[i][0]; |
133 |
– |
pt_array[dim_ * i + 1] = pos[i][1]; |
134 |
– |
pt_array[dim_ * i + 2] = pos[i][2]; |
135 |
– |
} |
436 |
|
|
437 |
|
|
438 |
|
|
139 |
– |
|
140 |
– |
/* |
141 |
– |
qh_initflags(const_cast<char *>(options_.c_str())); |
142 |
– |
qh_init_B(pospoints, numpoints, dim_, ismalloc); |
143 |
– |
qh_qhull(); |
144 |
– |
qh_check_output(); |
145 |
– |
|
146 |
– |
qh_produce_output(); |
147 |
– |
*/ |
439 |
|
boolT ismalloc = False; |
440 |
+ |
/* Clean up memory from previous convex hull calculations*/ |
441 |
+ |
Triangles_.clear(); |
442 |
+ |
surfaceSDs_.clear(); |
443 |
+ |
surfaceSDs_.reserve(Ns_); |
444 |
+ |
|
445 |
+ |
if (qh_new_qhull(dim_, numpoints, &ptArray[0], ismalloc, |
446 |
+ |
const_cast<char *>(options_.c_str()), NULL, stderr)) { |
447 |
+ |
|
448 |
+ |
sprintf(painCave.errMsg, "ConvexHull: Qhull failed to compute convex hull"); |
449 |
+ |
painCave.isFatal = 1; |
450 |
+ |
simError(); |
451 |
+ |
|
452 |
+ |
} //qh_new_qhull |
453 |
+ |
|
454 |
+ |
|
455 |
+ |
#ifdef IS_MPI |
456 |
+ |
std::vector<double> localPts; |
457 |
+ |
std::vector<double> localVel; |
458 |
+ |
int localPtArraySize; |
459 |
|
|
460 |
< |
if (!qh_new_qhull(dim_, numpoints, pt_array, ismalloc, |
461 |
< |
const_cast<char *>(options_.c_str()), NULL, stderr)) { |
460 |
> |
|
461 |
> |
std::fill(isSurfaceID.begin(),isSurfaceID.end(),false); |
462 |
> |
|
463 |
> |
|
464 |
> |
FORALLfacets { |
465 |
|
|
466 |
< |
vertexT *vertex, **vertexp; |
154 |
< |
facetT *facet; |
155 |
< |
setT *vertices; |
156 |
< |
unsigned int nf = qh num_facets; |
157 |
< |
|
158 |
< |
//Matrix idx(nf, dim); |
159 |
< |
/* |
160 |
< |
int j, i = 0, id = 0; |
161 |
< |
|
162 |
< |
int id2 = 0; |
163 |
< |
coordT *point,**pointp; |
164 |
< |
realT dist; |
165 |
< |
FORALLfacets { |
166 |
< |
j = 0; |
167 |
< |
|
168 |
< |
if (!facet->simplicial){ |
466 |
> |
if (!facet->simplicial){ |
467 |
|
// should never happen with Qt |
468 |
|
sprintf(painCave.errMsg, "ConvexHull: non-simplicaial facet detected"); |
469 |
< |
painCave.isFatal = 0; |
469 |
> |
painCave.isFatal = 1; |
470 |
|
simError(); |
471 |
< |
} |
472 |
< |
|
473 |
< |
vertices = qh_facet3vertex(facet); |
474 |
< |
FOREACHvertex_(vertices){ |
471 |
> |
} |
472 |
> |
|
473 |
> |
|
474 |
> |
vertices = qh_facet3vertex(facet); |
475 |
> |
FOREACHvertex_(vertices){ |
476 |
|
id = qh_pointid(vertex->point); |
477 |
< |
surface_atoms.push_back(id); |
478 |
< |
//std::cout << "Ag " << pos[id][0] << " " << pos[id][1] << " " << pos[id][2]<< std::endl; |
477 |
> |
|
478 |
> |
if( !isSurfaceID[id] ){ |
479 |
> |
isSurfaceID[id] = true; |
480 |
|
} |
481 |
< |
qh_settempfree(&vertices); |
481 |
> |
} |
482 |
> |
qh_settempfree(&vertices); |
483 |
|
|
484 |
< |
FOREACHpoint_(facet->coplanarset){ |
485 |
< |
vertex= qh_nearvertex (facet, point, &dist); |
486 |
< |
//id= qh_pointid (vertex->point); |
487 |
< |
id2= qh_pointid (point); |
488 |
< |
surface_atoms.push_back(id2); |
489 |
< |
//std::cout << "Ag " << pos[id2][0] << " " << pos[id2][1] << " " << pos[id2][2]<< std::endl; |
490 |
< |
//printf ("%d %d %d " qh_REAL_1 "\n", id, id2, facet->id, dist); |
491 |
< |
//std::cout << "Neighbors are: %d $d %d\n" << id << id2 << facet->id; |
492 |
< |
|
493 |
< |
} |
494 |
< |
|
495 |
< |
} |
496 |
< |
|
497 |
< |
*/ |
498 |
< |
|
499 |
< |
|
484 |
> |
} //FORALLfacets |
485 |
> |
|
486 |
> |
|
487 |
> |
|
488 |
> |
/* |
489 |
> |
std::sort(surfaceIDs.begin(),surfaceIDs.end()); |
490 |
> |
surfaceIDs.erase(std::unique(surfaceIDs.begin(), surfaceIDs.end()), surfaceIDs.end()); |
491 |
> |
int localPtArraySize = surfaceIDs.size() * 3; |
492 |
> |
*/ |
493 |
> |
|
494 |
> |
//localPts.resize(localPtArraySize); |
495 |
> |
//std::fill(localPts.begin(),localPts.end(),0.0); |
496 |
> |
|
497 |
> |
|
498 |
> |
int idx = 0; |
499 |
> |
int nIsIts = 0; |
500 |
> |
/* |
501 |
> |
// Copy the surface points into an array. |
502 |
> |
for(std::vector<bool>::iterator list_iter = isSurfaceID.begin(); |
503 |
> |
list_iter != isSurfaceID.end(); list_iter++) |
504 |
> |
{ |
505 |
> |
bool isIt = *list_iter; |
506 |
> |
if (isIt){ |
507 |
> |
localPts.push_back(ptArray[dim_ * idx]); |
508 |
> |
localPts.push_back(ptArray[dim_ * idx + 1]); |
509 |
> |
localPts.push_back(ptArray[dim_ * idx + 2]); |
510 |
> |
localPtsMap.push_back(idx); |
511 |
> |
nIsIts++; |
512 |
> |
} //Isit |
513 |
> |
idx++; |
514 |
> |
} //isSurfaceID |
515 |
> |
*/ |
516 |
> |
FORALLvertices { |
517 |
> |
idx = qh_pointid(vertex->point); |
518 |
> |
localPts.push_back(ptArray[dim_ * idx]); |
519 |
> |
localPts.push_back(ptArray[dim_ * idx + 1]); |
520 |
> |
localPts.push_back(ptArray[dim_ * idx + 2]); |
521 |
> |
|
522 |
> |
Vector3d vel = bodydoubles[idx]->getVel(); |
523 |
> |
localVel.push_back(vel.x()); |
524 |
> |
localVel.push_back(vel.y()); |
525 |
> |
localVel.push_back(vel.z()); |
526 |
> |
|
527 |
> |
localPtsMap.push_back(idx); |
528 |
|
} |
529 |
|
|
530 |
|
|
531 |
+ |
localPtArraySize = localPts.size(); |
532 |
|
|
533 |
+ |
|
534 |
+ |
MPI::COMM_WORLD.Allgather(&localPtArraySize,1,MPI::INT,&NstoProc_[0],1,MPI::INT); |
535 |
|
|
536 |
< |
qh_getarea(qh facet_list); |
537 |
< |
volume_ = qh totvol; |
538 |
< |
area_ = qh totarea; |
539 |
< |
// FILE *newGeomFile; |
536 |
> |
Nsglobal_=0; |
537 |
> |
for (int i = 0; i < nproc_; i++){ |
538 |
> |
Nsglobal_ += NstoProc_[i]; |
539 |
> |
} |
540 |
|
|
541 |
+ |
|
542 |
+ |
int nglobalPts = int(Nsglobal_/3); |
543 |
+ |
|
544 |
+ |
|
545 |
+ |
std::vector<double> globalPts(Nsglobal_); |
546 |
+ |
std::vector<double> globalVel(Nsglobal_); |
547 |
+ |
|
548 |
+ |
isSurfaceID.resize(nglobalPts); |
549 |
+ |
|
550 |
+ |
|
551 |
+ |
std::fill(globalPts.begin(),globalPts.end(),0.0); |
552 |
+ |
|
553 |
+ |
displs_[0] = 0; |
554 |
+ |
/* Build a displacements array */ |
555 |
+ |
for (int i = 1; i < nproc_; i++){ |
556 |
+ |
displs_[i] = displs_[i-1] + NstoProc_[i-1]; |
557 |
+ |
} |
558 |
|
|
559 |
+ |
|
560 |
+ |
int noffset = displs_[myrank_]; |
561 |
+ |
/* gather the potential hull */ |
562 |
+ |
|
563 |
+ |
MPI::COMM_WORLD.Allgatherv(&localPts[0],localPtArraySize,MPI::DOUBLE,&globalPts[0],&NstoProc_[0],&displs_[0],MPI::DOUBLE); |
564 |
+ |
MPI::COMM_WORLD.Allgatherv(&localVel[0],localPtArraySize,MPI::DOUBLE,&globalVel[0],&NstoProc_[0],&displs_[0],MPI::DOUBLE); |
565 |
+ |
|
566 |
|
/* |
567 |
< |
FORALLfacets { |
568 |
< |
for (int k=0; k < qh hull_dim; k++) |
569 |
< |
printf ("%6.2g ", facet->normal[k]); |
214 |
< |
printf ("\n"); |
567 |
> |
if (myrank_ == 0){ |
568 |
> |
for (i = 0; i < globalPts.size(); i++){ |
569 |
> |
std::cout << globalPts[i] << std::endl; |
570 |
|
} |
571 |
+ |
} |
572 |
|
*/ |
573 |
< |
|
218 |
< |
int curlong,totlong; |
219 |
< |
// geomviewHull("junk.off"); |
573 |
> |
// Free previous hull |
574 |
|
qh_freeqhull(!qh_ALL); |
575 |
|
qh_memfreeshort(&curlong, &totlong); |
576 |
|
if (curlong || totlong) |
577 |
|
std::cerr << "qhull internal warning (main): did not free %d bytes of long memory (%d pieces) " |
578 |
|
<< totlong << curlong << std::endl; |
225 |
– |
free(pt_array); |
226 |
– |
/* |
227 |
– |
int j = 0; |
228 |
– |
surface_atoms.sort(); |
229 |
– |
surface_atoms.unique(); |
230 |
– |
surfpt_array = (coordT*) malloc(sizeof(coordT) * (surface_atoms.size() * dim_)); |
231 |
– |
for(std::list<int>::iterator list_iter = surface_atoms.begin(); |
232 |
– |
list_iter != surface_atoms.end(); list_iter++) |
233 |
– |
{ |
234 |
– |
int i = *list_iter; |
235 |
– |
//surfpt_array[dim_ * j] = pos[i][0]; |
236 |
– |
//surfpt_array[dim_ * j + 1] = pos[i][1]; |
237 |
– |
//surfpt_array[dim_ * j + 2] = pos[i][2]; |
238 |
– |
std::cout << "Ag " << pos[i][0] << " " << pos[i][1] << " "<< pos[i][2] << std::endl; |
239 |
– |
j++; |
240 |
– |
} |
241 |
– |
*/ |
242 |
– |
|
243 |
– |
/* |
244 |
– |
std::string deloptions_ = "qhull d Qt"; |
245 |
– |
facetT *facet, *neighbor; |
246 |
– |
ridgeT *ridge, **ridgep; |
247 |
– |
|
248 |
– |
if (!qh_new_qhull(dim_, surface_atoms.size(), surfpt_array, ismalloc, |
249 |
– |
const_cast<char *>(deloptions_.c_str()), NULL, stderr)) { |
250 |
– |
|
251 |
– |
qh visit_id++; |
252 |
– |
FORALLfacets { |
253 |
– |
if (!facet->upperdelaunay) { |
254 |
– |
facet->visitid= qh visit_id; |
255 |
– |
qh_makeridges(facet); |
256 |
– |
FOREACHridge_(facet->ridges) { |
257 |
– |
neighbor= otherfacet_(ridge, facet); |
258 |
– |
if (neighbor->visitid != qh visit_id) { |
259 |
– |
|
260 |
– |
FOREACHvertex_(ridge->vertices) |
261 |
– |
int id2 = qh_pointid (vertex->point); |
262 |
– |
std::cout << "Ag " << pos[id2][0] << " " << pos[id2][1] << " " << pos[id2][2]<< std::endl; |
263 |
– |
} |
264 |
– |
} |
265 |
– |
} |
266 |
– |
|
579 |
|
|
580 |
+ |
if (qh_new_qhull(dim_, nglobalPts, &globalPts[0], ismalloc, |
581 |
+ |
const_cast<char *>(options_.c_str()), NULL, stderr)){ |
582 |
|
|
583 |
< |
|
583 |
> |
sprintf(painCave.errMsg, "ConvexHull: Qhull failed to compute global convex hull"); |
584 |
> |
painCave.isFatal = 1; |
585 |
> |
simError(); |
586 |
> |
|
587 |
> |
} //qh_new_qhull |
588 |
> |
|
589 |
> |
#endif |
590 |
> |
|
591 |
> |
|
592 |
> |
|
593 |
> |
|
594 |
> |
|
595 |
> |
|
596 |
> |
unsigned int nf = qh num_facets; |
597 |
> |
|
598 |
> |
/* Build Surface SD list first */ |
599 |
> |
|
600 |
> |
std::fill(isSurfaceID.begin(),isSurfaceID.end(),false); |
601 |
> |
|
602 |
> |
FORALLfacets { |
603 |
> |
|
604 |
> |
if (!facet->simplicial){ |
605 |
> |
// should never happen with Qt |
606 |
> |
sprintf(painCave.errMsg, "ConvexHull: non-simplicaial facet detected"); |
607 |
> |
painCave.isFatal = 1; |
608 |
> |
simError(); |
609 |
> |
} //simplicical |
610 |
> |
|
611 |
> |
Triangle* face = new Triangle(); |
612 |
> |
Vector3d V3dNormal(facet->normal[0],facet->normal[1],facet->normal[2]); |
613 |
> |
face->setNormal(V3dNormal); |
614 |
> |
|
615 |
> |
|
616 |
> |
|
617 |
> |
RealType faceArea = 0.5*V3dNormal.length(); |
618 |
> |
face->setArea(faceArea); |
619 |
> |
|
620 |
> |
|
621 |
> |
vertices = qh_facet3vertex(facet); |
622 |
> |
|
623 |
> |
coordT *center = qh_getcenter(vertices); |
624 |
> |
Vector3d V3dCentroid(center[0], center[1], center[2]); |
625 |
> |
face->setCentroid(V3dCentroid); |
626 |
> |
Vector3d faceVel = V3Zero; |
627 |
> |
FOREACHvertex_(vertices){ |
628 |
> |
id = qh_pointid(vertex->point); |
629 |
> |
int localindex = id; |
630 |
> |
#ifdef IS_MPI |
631 |
> |
Vector3d velVector(globalVel[dim_ * id],globalVel[dim_ * id + 1], globalVel[dim_ * id + 1]); |
632 |
> |
faceVel = faceVel + velVector; |
633 |
> |
if (id >= noffset/3 && id < (noffset + localPtArraySize)/3 ){ |
634 |
> |
localindex = localPtsMap[id-noffset/3]; |
635 |
> |
#else |
636 |
> |
faceVel = faceVel + bodydoubles[localindex]->getVel(); |
637 |
> |
#endif |
638 |
> |
face->addVertex(bodydoubles[localindex]); |
639 |
> |
if( !isSurfaceID[id] ){ |
640 |
> |
isSurfaceID[id] = true; |
641 |
> |
#ifdef IS_MPI |
642 |
> |
|
643 |
> |
#endif |
644 |
> |
|
645 |
> |
surfaceSDs_.push_back(bodydoubles[localindex]); |
646 |
> |
|
647 |
> |
} //IF isSurfaceID |
648 |
> |
|
649 |
> |
#ifdef IS_MPI |
650 |
> |
|
651 |
> |
}else{ |
652 |
> |
face->addVertex(NULL); |
653 |
> |
} |
654 |
> |
#endif |
655 |
> |
} //Foreachvertex |
656 |
> |
/* |
657 |
> |
if (!SETempty_(facet->coplanarset)){ |
658 |
> |
FOREACHpoint_(facet->coplanarset){ |
659 |
> |
id = qh_pointid(point); |
660 |
> |
surfaceSDs_.push_back(bodydoubles[id]); |
661 |
|
} |
662 |
+ |
} |
663 |
+ |
*/ |
664 |
+ |
face->setFacetVelocity(faceVel/3.0); |
665 |
+ |
Triangles_.push_back(face); |
666 |
+ |
qh_settempfree(&vertices); |
667 |
|
|
668 |
< |
qh_freeqhull(!qh_ALL); |
273 |
< |
qh_memfreeshort(&curlong, &totlong); |
274 |
< |
if (curlong || totlong) |
275 |
< |
std::cerr << "qhull internal warning (main): did not free %d bytes of long memory (%d pieces) " |
276 |
< |
<< totlong << curlong << std::endl; |
277 |
< |
free(surfpt_array); |
278 |
< |
*/ |
279 |
< |
return true; |
280 |
< |
} |
668 |
> |
} //FORALLfacets |
669 |
|
|
670 |
+ |
/* |
671 |
+ |
std::cout << surfaceSDs_.size() << std::endl; |
672 |
+ |
for (SD = surfaceSDs_.begin(); SD != surfaceSDs_.end(); ++SD){ |
673 |
+ |
Vector3d thisatom = (*SD)->getPos(); |
674 |
+ |
std::cout << "Au " << thisatom.x() << " " << thisatom.y() << " " << thisatom.z() << std::endl; |
675 |
+ |
} |
676 |
+ |
*/ |
677 |
|
|
678 |
|
|
679 |
< |
RealType ConvexHull::getVolume() |
680 |
< |
{ |
681 |
< |
return volume_; |
679 |
> |
|
680 |
> |
Ns_ = surfaceSDs_.size(); |
681 |
> |
nTriangles_ = Triangles_.size(); |
682 |
> |
|
683 |
> |
qh_getarea(qh facet_list); |
684 |
> |
volume_ = qh totvol; |
685 |
> |
area_ = qh totarea; |
686 |
> |
|
687 |
> |
|
688 |
> |
|
689 |
> |
qh_freeqhull(!qh_ALL); |
690 |
> |
qh_memfreeshort(&curlong, &totlong); |
691 |
> |
if (curlong || totlong) |
692 |
> |
std::cerr << "qhull internal warning (main): did not free %d bytes of long memory (%d pieces) " |
693 |
> |
<< totlong << curlong << std::endl; |
694 |
> |
|
695 |
> |
|
696 |
> |
|
697 |
|
} |
698 |
|
|
699 |
< |
void ConvexHull::geomviewHull(const std::string& geomFileName) |
699 |
> |
|
700 |
> |
|
701 |
> |
void ConvexHull::printHull(const std::string& geomFileName) |
702 |
|
{ |
703 |
|
|
704 |
|
FILE *newGeomFile; |