let add_vertex and add_face return smart handles
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@@ -113,7 +113,7 @@ void PolyConnectivity::adjust_outgoing_halfedge(VertexHandle _vh)
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//-----------------------------------------------------------------------------
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PolyConnectivity::FaceHandle
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SmartFaceHandle
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PolyConnectivity::add_face(const VertexHandle* _vertex_handles, size_t _vhs_size)
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{
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VertexHandle vh;
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@@ -142,7 +142,7 @@ PolyConnectivity::add_face(const VertexHandle* _vertex_handles, size_t _vhs_size
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if ( !is_boundary(_vertex_handles[i]) )
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{
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omerr() << "PolyMeshT::add_face: complex vertex\n";
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return InvalidFaceHandle;
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return make_smart(InvalidFaceHandle, this);
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}
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// Initialise edge attributes
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@@ -154,7 +154,7 @@ PolyConnectivity::add_face(const VertexHandle* _vertex_handles, size_t _vhs_size
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if (!edgeData_[i].is_new && !is_boundary(edgeData_[i].halfedge_handle))
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{
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omerr() << "PolyMeshT::add_face: complex edge\n";
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return InvalidFaceHandle;
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return make_smart(InvalidFaceHandle, this);
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}
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}
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@@ -186,7 +186,7 @@ PolyConnectivity::add_face(const VertexHandle* _vertex_handles, size_t _vhs_size
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if (boundary_prev == inner_prev)
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{
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omerr() << "PolyMeshT::add_face: patch re-linking failed\n";
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return InvalidFaceHandle;
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return make_smart(InvalidFaceHandle, this);
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}
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assert(is_boundary(boundary_prev));
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@@ -297,12 +297,12 @@ PolyConnectivity::add_face(const VertexHandle* _vertex_handles, size_t _vhs_size
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if (edgeData_[i].needs_adjust)
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adjust_outgoing_halfedge(_vertex_handles[i]);
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return fh;
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return make_smart(fh, this);
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}
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//-----------------------------------------------------------------------------
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FaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2, VertexHandle _vh3)
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SmartFaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2, VertexHandle _vh3)
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{
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VertexHandle vhs[4] = { _vh0, _vh1, _vh2, _vh3 };
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return add_face(vhs, 4);
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@@ -310,7 +310,7 @@ FaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, Vert
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//-----------------------------------------------------------------------------
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FaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2)
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SmartFaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2)
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{
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VertexHandle vhs[3] = { _vh0, _vh1, _vh2 };
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return add_face(vhs, 3);
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@@ -318,9 +318,17 @@ FaceHandle PolyConnectivity::add_face(VertexHandle _vh0, VertexHandle _vh1, Vert
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//-----------------------------------------------------------------------------
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FaceHandle PolyConnectivity::add_face(const std::vector<VertexHandle>& _vhandles)
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SmartFaceHandle PolyConnectivity::add_face(const std::vector<VertexHandle>& _vhandles)
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{ return add_face(&_vhandles.front(), _vhandles.size()); }
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//-----------------------------------------------------------------------------
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SmartFaceHandle PolyConnectivity::add_face(const std::vector<SmartVertexHandle>& _vhandles)
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{
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std::vector<VertexHandle> vhandles(_vhandles.begin(), _vhandles.end());
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return add_face(&vhandles.front(), vhandles.size());
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}
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//-----------------------------------------------------------------------------
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bool PolyConnectivity::is_collapse_ok(HalfedgeHandle v0v1)
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@@ -481,8 +481,7 @@ public:
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//@{
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/// Add a new vertex
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inline VertexHandle add_vertex()
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{ return new_vertex(); }
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inline SmartVertexHandle add_vertex();
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/** \brief Add and connect a new face
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*
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@@ -491,7 +490,16 @@ public:
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*
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* @param _vhandles sorted list of vertex handles (also defines order in which the vertices are added to the face)
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*/
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FaceHandle add_face(const std::vector<VertexHandle>& _vhandles);
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SmartFaceHandle add_face(const std::vector<VertexHandle>& _vhandles);
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/** \brief Add and connect a new face
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*
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* Create a new face consisting of the vertices provided by the vertex handle vector.
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* (The vertices have to be already added to the mesh by add_vertex)
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*
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* @param _vhandles sorted list of vertex handles (also defines order in which the vertices are added to the face)
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*/
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SmartFaceHandle add_face(const std::vector<SmartVertexHandle>& _vhandles);
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/** \brief Add and connect a new face
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@@ -503,7 +511,7 @@ public:
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* @param _vh1 Second vertex handle
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* @param _vh2 Third vertex handle
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*/
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FaceHandle add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2);
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SmartFaceHandle add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2);
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/** \brief Add and connect a new face
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*
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@@ -515,7 +523,7 @@ public:
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* @param _vh2 Third vertex handle
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* @param _vh3 Fourth vertex handle
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*/
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FaceHandle add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2, VertexHandle _vh3);
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SmartFaceHandle add_face(VertexHandle _vh0, VertexHandle _vh1, VertexHandle _vh2, VertexHandle _vh3);
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/** \brief Add and connect a new face
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*
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@@ -525,7 +533,7 @@ public:
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* @param _vhandles pointer to a sorted list of vertex handles (also defines order in which the vertices are added to the face)
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* @param _vhs_size number of vertex handles in the array
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*/
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FaceHandle add_face(const VertexHandle* _vhandles, size_t _vhs_size);
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SmartFaceHandle add_face(const VertexHandle* _vhandles, size_t _vhs_size);
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//@}
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@@ -1526,6 +1534,8 @@ private: // Working storage for add_face()
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namespace OpenMesh {
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inline SmartVertexHandle PolyConnectivity::add_vertex() { return make_smart(new_vertex(), *this); }
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inline SmartHalfedgeHandle PolyConnectivity::next_halfedge_handle(SmartHalfedgeHandle _heh) const { return make_smart(next_halfedge_handle(HalfedgeHandle(_heh)), *this); }
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inline SmartHalfedgeHandle PolyConnectivity::prev_halfedge_handle(SmartHalfedgeHandle _heh) const { return make_smart(prev_halfedge_handle(HalfedgeHandle(_heh)), *this); }
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inline SmartHalfedgeHandle PolyConnectivity::opposite_halfedge_handle(SmartHalfedgeHandle _heh) const { return make_smart(opposite_halfedge_handle(HalfedgeHandle(_heh)), *this); }
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