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// This file is part of libigl, a simple c++ geometry processing library.
//
// Copyright (C) 2015 Alec Jacobson <alecjacobson@gmail.com>
//
// This Source Code Form is subject to the terms of the Mozilla Public License
// v. 2.0. If a copy of the MPL was not distributed with this file, You can
// obtain one at http://mozilla.org/MPL/2.0/.
#ifndef IGL_COPYLEFT_CGAL_OUTER_HULL_LEGACY_H
#define IGL_COPYLEFT_CGAL_OUTER_HULL_LEGACY_H
#include "../../igl_inline.h"
#include <Eigen/Core>
namespace igl
{
namespace copyleft
{
namespace cgal
{
/// Compute the "outer hull" of a potentially non-manifold mesh (V,F) whose
/// intersections have been "resolved" (e.g. using `cork` or
/// `igl::copyleft::cgal::selfintersect`). The outer hull is defined to be all facets
/// (regardless of orientation) for which there exists some path from infinity
/// to the face without intersecting any other facets. For solids, this is the
/// surface of the solid. In general this includes any thin "wings" or
/// "flaps". This implementation largely follows Section 3.6 of "Direct
/// repair of self-intersecting meshes" [Attene 2014].
///
/// \note This doesn't require the input mesh to be piecewise constant
/// winding number, but won't handle multiple non-nested connected
/// components.
///
/// @param[in] V #V by 3 list of vertex positions
/// @param[in] F #F by 3 list of triangle indices into V
/// @param[out] G #G by 3 list of output triangle indices into V
/// @param[out] J #G list of indices into F
/// @param[out] flip #F list of whether facet was added to G **and** flipped orientation
/// (false for faces not added to G)
template <
typename DerivedV,
typename DerivedF,
typename DerivedG,
typename DerivedJ,
typename Derivedflip>
IGL_INLINE void outer_hull_legacy(
const Eigen::PlainObjectBase<DerivedV> & V,
const Eigen::PlainObjectBase<DerivedF> & F,
Eigen::PlainObjectBase<DerivedG> & G,
Eigen::PlainObjectBase<DerivedJ> & J,
Eigen::PlainObjectBase<Derivedflip> & flip);
}
}
}
#ifndef IGL_STATIC_LIBRARY
# include "outer_hull_legacy.cpp"
#endif
#endif