mirror of https://github.com/CGAL/cgal
Triangulation_2: Add an example that stars a conflict zone
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@ -22,4 +22,5 @@
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\example Triangulation_2/segment_soup_to_polylines.cpp
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\example Triangulation_2/segment_soup_to_polylines.cpp
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\example Triangulation_2/draw_triangulation_2.cpp
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\example Triangulation_2/draw_triangulation_2.cpp
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\example Triangulation_2/low_dimensional.cpp
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\example Triangulation_2/low_dimensional.cpp
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\example Triangulation_2/star_conflict_zone.cpp
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*/
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*/
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@ -17,6 +17,7 @@ endforeach()
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if(CGAL_Qt5_FOUND)
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if(CGAL_Qt5_FOUND)
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target_link_libraries(draw_triangulation_2 PUBLIC CGAL::CGAL_Basic_viewer)
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target_link_libraries(draw_triangulation_2 PUBLIC CGAL::CGAL_Basic_viewer)
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target_link_libraries(star_conflict_zone PUBLIC CGAL::CGAL_Basic_viewer)
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else()
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else()
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message(
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message(
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STATUS
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STATUS
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@ -0,0 +1,59 @@
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#include <CGAL/Exact_predicates_inexact_constructions_kernel.h>
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#include <CGAL/Delaunay_triangulation_2.h>
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#include <CGAL/draw_triangulation_2.h>
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#include <CGAL/spatial_sort.h>
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#include <array>
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#include <vector>
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#include <iostream>
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typedef CGAL::Exact_predicates_inexact_constructions_kernel K;
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typedef K::Point_2 Point_2;
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typedef CGAL::Delaunay_triangulation_2<K> Dt2;
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typedef Dt2::Edge Edge;
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typedef Dt2::Face_handle Face_handle;
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typedef Dt2::Face_circulator Face_circulator;
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typedef Dt2::Vertex_handle Vertex_handle;
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int main( )
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{
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Dt2 dt2;
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dt2.insert(Point_2(0,0));
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dt2.insert(Point_2(10,0));
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dt2.insert(Point_2(0,10));
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std::array<Point_2,3> points = { Point_2(2,2), Point_2(1,0), Point_2(9,9) };
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CGAL::spatial_sort(points.begin(), points.end());
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Face_handle hint;
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std::vector<Face_handle> faces;
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std::vector<Edge> edges;
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assert(dt2.dimension() == 2); // precondition of get_conflicts_and_bounda
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for(const Point_2 p : points){
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faces.clear(); // faster than variables in the scope
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edges.clear();
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dt2.get_conflicts_and_boundary(p,
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std::back_inserter(faces),
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std::back_inserter(edges),
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hint);
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// Do something with the faces before the insertion
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Vertex_handle vh = dt2.star_hole(p,
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edges.begin(), edges.end(),
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faces.begin(), faces.end());
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hint = vh->face(); // we could also take any element of faces
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// Do something with the faces after the insertion
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Face_circulator fc = dt2.incident_faces(vh), done(fc);
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do {
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fc++;
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} while (fc != done);
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draw(dt2);
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}
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return 0;
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}
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