2009-02-06 13:37:46 +00:00
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//=============================================================================
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//
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// OpenMesh
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// Copyright (C) 2003 by Computer Graphics Group, RWTH Aachen
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// www.openmesh.org
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//
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//-----------------------------------------------------------------------------
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//
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// License
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//
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// This library is free software; you can redistribute it and/or modify it
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// under the terms of the GNU Lesser General Public License as published
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// by the Free Software Foundation, version 2.1.
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//
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// This library is distributed in the hope that it will be useful, but
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// WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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//
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//-----------------------------------------------------------------------------
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//
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2009-02-27 16:31:45 +00:00
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// $Revision$
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// $Date$
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2009-02-06 13:37:46 +00:00
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//
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//=============================================================================
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/** \file JacobiLaplaceSmootherT.cc
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*/
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//=============================================================================
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//
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// CLASS JacobiLaplaceSmootherT - IMPLEMENTATION
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//
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//=============================================================================
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#define OPENMESH_JACOBI_LAPLACE_SMOOTHERT_C
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//== INCLUDES =================================================================
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#include <OpenMesh/Tools/Smoother/JacobiLaplaceSmootherT.hh>
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//== NAMESPACES ===============================================================
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namespace OpenMesh {
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namespace Smoother {
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//== IMPLEMENTATION ==========================================================
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template <class Mesh>
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void
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JacobiLaplaceSmootherT<Mesh>::
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smooth(unsigned int _n)
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{
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if (Base::continuity() > Base::C0)
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{
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Base::mesh_.add_property(umbrellas_);
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if (Base::continuity() > Base::C1)
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Base::mesh_.add_property(squared_umbrellas_);
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}
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LaplaceSmootherT<Mesh>::smooth(_n);
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if (Base::continuity() > Base::C0)
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{
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Base::mesh_.remove_property(umbrellas_);
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if (Base::continuity() > Base::C1)
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Base::mesh_.remove_property(squared_umbrellas_);
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}
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}
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//-----------------------------------------------------------------------------
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template <class Mesh>
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void
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JacobiLaplaceSmootherT<Mesh>::
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compute_new_positions_C0()
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{
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typename Mesh::VertexIter v_it, v_end(Base::mesh_.vertices_end());
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typename Mesh::CVVIter vv_it;
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typename Mesh::Normal u, p, zero(0,0,0);
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typename Mesh::Scalar w;
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for (v_it=Base::mesh_.vertices_begin(); v_it!=v_end; ++v_it)
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{
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if (is_active(v_it))
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{
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// compute umbrella
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u = zero;
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for (vv_it=Base::mesh_.cvv_iter(v_it); vv_it; ++vv_it)
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{
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w = weight(Base::mesh_.edge_handle(vv_it.current_halfedge_handle()));
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u += vector_cast<typename Mesh::Normal>(Base::mesh_.point(vv_it)) * w;
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}
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u *= weight(v_it);
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u -= vector_cast<typename Mesh::Normal>(Base::mesh_.point(v_it));
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// damping
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u *= 0.5;
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// store new position
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p = vector_cast<typename Mesh::Normal>(Base::mesh_.point(v_it));
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p += u;
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set_new_position(v_it, p);
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}
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}
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}
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//-----------------------------------------------------------------------------
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template <class Mesh>
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void
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JacobiLaplaceSmootherT<Mesh>::
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compute_new_positions_C1()
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{
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typename Mesh::VertexIter v_it, v_end(Base::mesh_.vertices_end());
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typename Mesh::CVVIter vv_it;
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typename Mesh::Normal u, uu, p, zero(0,0,0);
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typename Mesh::Scalar w, diag;
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// 1st pass: compute umbrellas
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for (v_it=Base::mesh_.vertices_begin(); v_it!=v_end; ++v_it)
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{
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u = zero;
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for (vv_it=Base::mesh_.cvv_iter(v_it); vv_it; ++vv_it)
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{
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w = weight(Base::mesh_.edge_handle(vv_it.current_halfedge_handle()));
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u -= vector_cast<typename Mesh::Normal>(Base::mesh_.point(vv_it))*w;
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}
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u *= weight(v_it);
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u += vector_cast<typename Mesh::Normal>(Base::mesh_.point(v_it));
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Base::mesh_.property(umbrellas_, v_it) = u;
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}
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// 2nd pass: compute updates
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for (v_it=Base::mesh_.vertices_begin(); v_it!=v_end; ++v_it)
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{
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if (is_active(v_it))
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{
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uu = zero;
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diag = 0.0;
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for (vv_it=Base::mesh_.cvv_iter(v_it); vv_it; ++vv_it)
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{
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w = weight(Base::mesh_.edge_handle(vv_it.current_halfedge_handle()));
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uu -= Base::mesh_.property(umbrellas_, vv_it);
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diag += (w * weight(vv_it) + 1.0) * w;
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}
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uu *= weight(v_it);
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diag *= weight(v_it);
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uu += Base::mesh_.property(umbrellas_, v_it);
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if (diag) uu *= 1.0/diag;
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// damping
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uu *= 0.25;
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// store new position
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p = vector_cast<typename Mesh::Normal>(Base::mesh_.point(v_it));
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p -= uu;
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set_new_position(v_it, p);
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}
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}
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}
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//=============================================================================
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} // namespace Smoother
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} // namespace OpenMesh
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//=============================================================================
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