Developer Documentation
NormalAttribT_impl.hh
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34 
35 #define NORMALATTRIBT_CC
36 
37 #include <set>
38 
39 #include "NormalAttrib.hh"
40 
41 #include "../Core/GeometryKernel.hh"
42 
43 namespace OpenVolumeMesh {
44 
45 template <class GeomKernelT>
46 NormalAttrib<GeomKernelT>::NormalAttrib(GeomKernelT& _kernel) :
47 kernel_(_kernel),
48 v_normals_(_kernel.template request_vertex_property<typename GeomKernelT::PointT>("vertex_normals", typename GeomKernelT::PointT(0.0))),
49 f_normals_(_kernel.template request_face_property<typename GeomKernelT::PointT>("face_normals", typename GeomKernelT::PointT(0.0)))
50 {
51 
52 }
53 
54 template <class GeomKernelT>
55 NormalAttrib<GeomKernelT>::~NormalAttrib() {
56 
57 }
58 
59 template <class GeomKernelT>
61 
62  if(!kernel_.has_face_bottom_up_incidences()) {
63  std::cerr << "Error: update_vertex_normals() needs bottom-up incidences!" << std::endl;
64  return;
65  }
66 
67  // Compute face normals
69 
70  for(VertexIter v_it = kernel_.v_iter(); v_it.valid(); ++v_it) {
71  compute_vertex_normal(*v_it);
72  }
73 }
74 
75 template <class GeomKernelT>
77 
78  if(!kernel_.has_face_bottom_up_incidences()) {
79  std::cerr << "Error: update_normals() needs bottom-up incidences!" << std::endl;
80  return;
81  }
82 
83  for(FaceIter f_it = kernel_.f_iter(); f_it.valid(); ++f_it) {
84  // Assume the face is planar, so just take the
85  // first two edges
86  compute_face_normal(*f_it);
87  }
88 }
89 
90 template <class GeomKernelT>
92 
93  std::set<HalfFaceHandle> halffaces;
94  for(VertexOHalfEdgeIter voh_it = kernel_.voh_iter(_vh);
95  voh_it.valid(); ++voh_it) {
96 
97  for(HalfEdgeHalfFaceIter hehf_it = kernel_.hehf_iter(*voh_it);
98  hehf_it.valid(); ++hehf_it) {
99  if(kernel_.is_boundary(*hehf_it)) {
100  halffaces.insert(*hehf_it);
101  }
102  }
103  }
104  typename GeomKernelT::PointT normal = typename GeomKernelT::PointT(0.0);
105  for(std::set<HalfFaceHandle>::const_iterator hf_it = halffaces.begin();
106  hf_it != halffaces.end(); ++hf_it) {
107  normal += (*this)[*hf_it];
108  }
109 
110  normal.normalize();
111 
112  v_normals_[_vh] = normal;
113 }
114 
115 template <class GeomKernelT>
117 
118  if(kernel_.face(_fh).halfedges().size() < 3) {
119  std::cerr << "Warning: Degenerate face detected!" << std::endl;
120  return;
121  }
122 
123  const std::vector<HalfEdgeHandle>& halfedges = kernel_.face(_fh).halfedges();
124  std::vector<HalfEdgeHandle>::const_iterator he_it = halfedges.begin();
125 
126  typename GeomKernelT::PointT p1 = kernel_.vertex(kernel_.halfedge(*he_it).from_vertex());
127  typename GeomKernelT::PointT p2 = kernel_.vertex(kernel_.halfedge(*he_it).to_vertex());
128  ++he_it;
129  typename GeomKernelT::PointT p3 = kernel_.vertex(kernel_.halfedge(*he_it).to_vertex());
130 
131  typename GeomKernelT::PointT n = (p2 - p1) % (p3 - p2);
132  n.normalize();
133 
134  f_normals_[_fh] = n;
135 }
136 
137 } // Namespace OpenVolumeMesh
void update_vertex_normals()
A simple heuristic to estimate the vertex normals.
void update_face_normals()
Compute face normals.