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geometry
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algorithms
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/usr/include/boost/geometry/algorithms
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detail/
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dispatch/
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append.hpp
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area.hpp
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assign.hpp
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buffer.hpp
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centroid.hpp
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clear.hpp
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comparable_distance.hpp
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convert.hpp
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convex_hull.hpp
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correct.hpp
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correct_closure.hpp
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covered_by.hpp
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crosses.hpp
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densify.hpp
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difference.hpp
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discrete_frechet_distance.hpp
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discrete_hausdorff_distance.hpp
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disjoint.hpp
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distance.hpp
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envelope.hpp
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equals.hpp
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intersection.hpp
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intersects.hpp
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is_convex.hpp
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is_simple.hpp
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length.hpp
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line_interpolate.hpp
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make.hpp
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not_implemented.hpp
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num_geometries.hpp
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num_interior_rings.hpp
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num_points.hpp
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num_segments.hpp
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overlaps.hpp
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perimeter.hpp
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point_on_surface.hpp
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relate.hpp
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relation.hpp
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remove_spikes.hpp
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within.hpp
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/usr/include/boost/geometry/algorithms/correct_closure.hpp
(5862B)
// Boost.Geometry // Copyright (c) 2017 Barend Gehrels, Amsterdam, the Netherlands. // Use, modification and distribution is subject to the Boost Software License, // Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt) #ifndef BOOST_GEOMETRY_ALGORITHMS_CORRECT_CLOSURE_HPP #define BOOST_GEOMETRY_ALGORITHMS_CORRECT_CLOSURE_HPP #include <cstddef> #include <boost/range.hpp> #include <boost/variant/apply_visitor.hpp> #include <boost/variant/static_visitor.hpp> #include <boost/variant/variant_fwd.hpp> #include <boost/geometry/algorithms/detail/interior_iterator.hpp> #include <boost/geometry/core/closure.hpp> #include <boost/geometry/core/exterior_ring.hpp> #include <boost/geometry/core/interior_rings.hpp> #include <boost/geometry/core/ring_type.hpp> #include <boost/geometry/core/tags.hpp> #include <boost/geometry/geometries/concepts/check.hpp> #include <boost/geometry/algorithms/disjoint.hpp> #include <boost/geometry/algorithms/detail/multi_modify.hpp> namespace boost { namespace geometry { // Silence warning C4127: conditional expression is constant #if defined(_MSC_VER) #pragma warning(push) #pragma warning(disable : 4127) #endif #ifndef DOXYGEN_NO_DETAIL namespace detail { namespace correct_closure { template <typename Geometry> struct nop { static inline void apply(Geometry& ) {} }; // Close a ring, if not closed, or open it template <typename Ring> struct close_or_open_ring { static inline void apply(Ring& r) { if (boost::size(r) <= 2) { return; } bool const disjoint = geometry::disjoint(*boost::begin(r), *(boost::end(r) - 1)); closure_selector const s = geometry::closure<Ring>::value; if (disjoint && s == closed) { // Close it by adding first point geometry::append(r, *boost::begin(r)); } else if (! disjoint && s != closed) { // Open it by removing last point geometry::traits::resize<Ring>::apply(r, boost::size(r) - 1); } } }; // Close/open exterior ring and all its interior rings template <typename Polygon> struct close_or_open_polygon { typedef typename ring_type<Polygon>::type ring_type; static inline void apply(Polygon& poly) { close_or_open_ring<ring_type>::apply(exterior_ring(poly)); typename interior_return_type<Polygon>::type rings = interior_rings(poly); for (typename detail::interior_iterator<Polygon>::type it = boost::begin(rings); it != boost::end(rings); ++it) { close_or_open_ring<ring_type>::apply(*it); } } }; }} // namespace detail::correct_closure #endif // DOXYGEN_NO_DETAIL #ifndef DOXYGEN_NO_DISPATCH namespace dispatch { template <typename Geometry, typename Tag = typename tag<Geometry>::type> struct correct_closure: not_implemented<Tag> {}; template <typename Point> struct correct_closure<Point, point_tag> : detail::correct_closure::nop<Point> {}; template <typename LineString> struct correct_closure<LineString, linestring_tag> : detail::correct_closure::nop<LineString> {}; template <typename Segment> struct correct_closure<Segment, segment_tag> : detail::correct_closure::nop<Segment> {}; template <typename Box> struct correct_closure<Box, box_tag> : detail::correct_closure::nop<Box> {}; template <typename Ring> struct correct_closure<Ring, ring_tag> : detail::correct_closure::close_or_open_ring<Ring> {}; template <typename Polygon> struct correct_closure<Polygon, polygon_tag> : detail::correct_closure::close_or_open_polygon<Polygon> {}; template <typename MultiPoint> struct correct_closure<MultiPoint, multi_point_tag> : detail::correct_closure::nop<MultiPoint> {}; template <typename MultiLineString> struct correct_closure<MultiLineString, multi_linestring_tag> : detail::correct_closure::nop<MultiLineString> {}; template <typename Geometry> struct correct_closure<Geometry, multi_polygon_tag> : detail::multi_modify < Geometry, detail::correct_closure::close_or_open_polygon < typename boost::range_value<Geometry>::type > > {}; } // namespace dispatch #endif // DOXYGEN_NO_DISPATCH namespace resolve_variant { template <typename Geometry> struct correct_closure { static inline void apply(Geometry& geometry) { concepts::check<Geometry const>(); dispatch::correct_closure<Geometry>::apply(geometry); } }; template <BOOST_VARIANT_ENUM_PARAMS(typename T)> struct correct_closure<boost::variant<BOOST_VARIANT_ENUM_PARAMS(T)> > { struct visitor: boost::static_visitor<void> { template <typename Geometry> void operator()(Geometry& geometry) const { correct_closure<Geometry>::apply(geometry); } }; static inline void apply(boost::variant<BOOST_VARIANT_ENUM_PARAMS(T)>& geometry) { visitor vis; boost::apply_visitor(vis, geometry); } }; } // namespace resolve_variant /*! \brief Closes or opens a geometry, according to its type \details Corrects a geometry w.r.t. closure points to all rings which do not have a closing point and are typed as they should have one, the first point is appended. \ingroup correct_closure \tparam Geometry \tparam_geometry \param geometry \param_geometry which will be corrected if necessary */ template <typename Geometry> inline void correct_closure(Geometry& geometry) { resolve_variant::correct_closure<Geometry>::apply(geometry); } #if defined(_MSC_VER) #pragma warning(pop) #endif }} // namespace boost::geometry #endif // BOOST_GEOMETRY_ALGORITHMS_CORRECT_CLOSURE_HPP
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