// Boost.Geometry (aka GGL, Generic Geometry Library) // Copyright (c) 2012-2014 Barend Gehrels, Amsterdam, the Netherlands. // This file was modified by Oracle on 2017-2024. // Modifications copyright (c) 2017-2024, Oracle and/or its affiliates. // Contributed and/or modified by Vissarion Fysikopoulos, on behalf of Oracle // Contributed and/or modified by Adam Wulkiewicz, on behalf of Oracle // 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_DETAIL_BUFFER_BUFFER_POLICIES_HPP #define BOOST_GEOMETRY_ALGORITHMS_DETAIL_BUFFER_BUFFER_POLICIES_HPP #include #include #include #include #include #include #include #include #include namespace boost { namespace geometry { #ifndef DOXYGEN_NO_DETAIL namespace detail { namespace buffer { struct buffer_overlay_visitor { public : template void visit_turns(int , Turns const& ) {} template void visit_clusters(Clusters const& , Turns const& ) {} template void visit_traverse(Turns const& /*turns*/, Turn const& /*turn*/, Operation const& /*op*/, const char* /*header*/) { } template void visit_generated_rings(Rings const& ) {} }; // Should follow traversal-turn-concept (enrichment, visit structure) // and adds index in piece vector to find it back template struct buffer_turn_operation : public detail::overlay::traversal_turn_operation { signed_size_type piece_index; signed_size_type index_in_ring; inline buffer_turn_operation() : piece_index(-1) , index_in_ring(-1) {} }; // Version of turn_info for buffer with its turn index and other helper variables template struct buffer_turn_info : public detail::overlay::turn_info < Point, SegmentRatio, buffer_turn_operation > { using point_type = Point; std::size_t turn_index; // Information if turn can be used. It is not traversable if it is within // another piece, or within the original (depending on deflation), // or (for deflate) if there are not enough points to traverse it. bool is_linear_end_point; bool within_original; signed_size_type count_in_original; // increased by +1 for in ext.ring, -1 for int.ring inline buffer_turn_info() : turn_index(0) , is_linear_end_point(false) , within_original(false) , count_in_original(0) {} }; template struct piece_get_box { explicit piece_get_box(Strategy const& strategy) : m_strategy(strategy) {} template inline void apply(Box& total, Piece const& piece) const { assert_coordinate_type_equal(total, piece.m_piece_border.m_envelope); if (piece.m_piece_border.m_has_envelope) { geometry::expand(total, piece.m_piece_border.m_envelope, m_strategy); } } Strategy const& m_strategy; }; template struct piece_overlaps_box { explicit piece_overlaps_box(Strategy const& strategy) : m_strategy(strategy) {} template inline bool apply(Box const& box, Piece const& piece) const { assert_coordinate_type_equal(box, piece.m_piece_border.m_envelope); if (piece.type == strategy::buffer::buffered_flat_end || piece.type == strategy::buffer::buffered_concave) { // Turns cannot be inside a flat end (though they can be on border) // Neither we need to check if they are inside concave helper pieces // Skip all pieces not used as soon as possible return false; } if (! piece.m_piece_border.m_has_envelope) { return false; } return ! geometry::detail::disjoint::disjoint_box_box(box, piece.m_piece_border.m_envelope, m_strategy); } Strategy const& m_strategy; }; template struct turn_get_box { explicit turn_get_box(Strategy const& strategy) : m_strategy(strategy) {} template inline void apply(Box& total, Turn const& turn) const { assert_coordinate_type_equal(total, turn.point); geometry::expand(total, turn.point, m_strategy); } Strategy const& m_strategy; }; template struct turn_overlaps_box { explicit turn_overlaps_box(Strategy const& strategy) : m_strategy(strategy) {} template inline bool apply(Box const& box, Turn const& turn) const { assert_coordinate_type_equal(turn.point, box); return ! geometry::detail::disjoint::disjoint_point_box(turn.point, box, m_strategy); } Strategy const& m_strategy; }; }} // namespace detail::buffer #endif // DOXYGEN_NO_DETAIL }} // namespace boost::geometry #endif // BOOST_GEOMETRY_ALGORITHMS_DETAIL_BUFFER_BUFFER_POLICIES_HPP