232 lines
7.2 KiB
C++
232 lines
7.2 KiB
C++
// Boost.Geometry (aka GGL, Generic Geometry Library)
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// Copyright (c) 2023 Adam Wulkiewicz, Lodz, Poland.
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// Copyright (c) 2015, Oracle and/or its affiliates.
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// Contributed and/or modified by Menelaos Karavelas, on behalf of Oracle
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// Contributed and/or modified by Adam Wulkiewicz, on behalf of Oracle
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// Licensed under the Boost Software License version 1.0.
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// http://www.boost.org/users/license.html
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#ifndef BOOST_GEOMETRY_POLICIES_IS_VALID_FAILING_REASON_POLICY_HPP
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#define BOOST_GEOMETRY_POLICIES_IS_VALID_FAILING_REASON_POLICY_HPP
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#include <sstream>
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#include <boost/geometry/io/dsv/write.hpp>
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#include <boost/geometry/util/constexpr.hpp>
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#include <boost/geometry/util/range.hpp>
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#include <boost/geometry/algorithms/validity_failure_type.hpp>
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#include <boost/geometry/algorithms/detail/overlay/debug_turn_info.hpp>
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namespace boost { namespace geometry
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{
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inline char const* validity_failure_type_message(validity_failure_type failure)
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{
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switch (failure)
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{
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case no_failure:
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return "Geometry is valid";
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case failure_few_points:
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return "Geometry has too few points";
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case failure_wrong_topological_dimension:
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return "Geometry has wrong topological dimension";
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case failure_not_closed:
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return "Geometry is defined as closed but is open";
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case failure_spikes:
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return "Geometry has spikes";
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case failure_self_intersections:
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return "Geometry has invalid self-intersections";
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case failure_wrong_orientation:
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return "Geometry has wrong orientation";
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case failure_interior_rings_outside:
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return "Geometry has interior rings defined outside the outer boundary";
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case failure_nested_interior_rings:
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return "Geometry has nested interior rings";
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case failure_disconnected_interior:
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return "Geometry has disconnected interior";
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case failure_intersecting_interiors:
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return "Multi-polygon has intersecting interiors";
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case failure_duplicate_points:
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return "Geometry has duplicate (consecutive) points";
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case failure_wrong_corner_order:
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return "Box has corners in wrong order";
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case failure_invalid_coordinate:
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return "Geometry has point(s) with invalid coordinate(s)";
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default: // to avoid -Wreturn-type warning
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return "";
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}
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}
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template <bool AllowDuplicates = true, bool AllowSpikes = true>
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class failing_reason_policy
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{
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private:
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static inline
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validity_failure_type transform_failure_type(validity_failure_type failure)
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{
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if BOOST_GEOMETRY_CONSTEXPR (AllowDuplicates)
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{
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if (failure == failure_duplicate_points)
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{
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return no_failure;
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}
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}
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return failure;
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}
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static inline
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validity_failure_type transform_failure_type(validity_failure_type failure,
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bool is_linear)
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{
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if BOOST_GEOMETRY_CONSTEXPR (AllowSpikes)
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{
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if (is_linear && failure == failure_spikes)
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{
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return no_failure;
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}
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}
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return transform_failure_type(failure);
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}
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inline void set_failure_message(validity_failure_type failure)
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{
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m_oss.str("");
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m_oss.clear();
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m_oss << validity_failure_type_message(failure);
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}
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template
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<
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validity_failure_type Failure,
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typename Data1,
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typename Data2 = Data1,
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typename Dummy = void
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>
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struct process_data
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{
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static inline void apply(std::ostringstream&, Data1 const&)
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{
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}
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static inline void apply(std::ostringstream&,
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Data1 const&,
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Data2 const&)
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{
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}
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};
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template <typename SpikePoint>
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struct process_data<failure_spikes, bool, SpikePoint>
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{
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static inline void apply(std::ostringstream& oss,
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bool is_linear,
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SpikePoint const& spike_point)
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{
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if BOOST_GEOMETRY_CONSTEXPR (AllowSpikes)
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{
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if (is_linear)
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{
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return;
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}
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}
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oss << ". A spike point was found with apex at "
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<< geometry::dsv(spike_point);
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}
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};
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template <typename Turns>
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struct process_data<failure_self_intersections, Turns>
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{
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static inline
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void apply_to_segment_identifier(std::ostringstream& oss,
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segment_identifier seg_id)
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{
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oss << "{" << seg_id.source_index
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<< ", " << seg_id.multi_index
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<< ", " << seg_id.ring_index
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<< ", " << seg_id.segment_index
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<< "}";
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}
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static inline void apply(std::ostringstream& oss,
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Turns const& turns)
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{
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typedef typename boost::range_value<Turns>::type turn_type;
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turn_type const& turn = range::front(turns);
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oss << ". A self-intersection point was found at "
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<< geometry::dsv(turn.point);
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oss << "; method: " << method_char(turn.method)
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<< "; operations: "
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<< operation_char(turn.operations[0].operation)
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<< "/"
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<< operation_char(turn.operations[1].operation)
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<< "; segment IDs {source, multi, ring, segment}: ";
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apply_to_segment_identifier(oss, turn.operations[0].seg_id);
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oss << "/";
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apply_to_segment_identifier(oss, turn.operations[1].seg_id);
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}
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};
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template <typename Point>
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struct process_data<failure_duplicate_points, Point>
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{
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static inline void apply(std::ostringstream& oss,
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Point const& point)
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{
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if BOOST_GEOMETRY_CONSTEXPR (! AllowDuplicates)
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{
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oss << ". Duplicate points were found near point "
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<< geometry::dsv(point);
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}
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}
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};
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public:
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failing_reason_policy(std::ostringstream& oss)
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: m_oss(oss)
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{}
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template <validity_failure_type Failure>
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inline bool apply()
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{
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validity_failure_type const failure = transform_failure_type(Failure);
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set_failure_message(failure);
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return failure == no_failure;
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}
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template <validity_failure_type Failure, typename Data>
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inline bool apply(Data const& data)
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{
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validity_failure_type const failure = transform_failure_type(Failure);
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set_failure_message(failure);
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process_data<Failure, Data>::apply(m_oss, data);
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return failure == no_failure;
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}
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template <validity_failure_type Failure, typename Data1, typename Data2>
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inline bool apply(Data1 const& data1, Data2 const& data2)
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{
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validity_failure_type const failure
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= transform_failure_type(Failure, data1);
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set_failure_message(failure);
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process_data<Failure, Data1, Data2>::apply(m_oss, data1, data2);
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return failure == no_failure;
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}
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private:
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std::ostringstream& m_oss;
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};
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}} // namespace boost::geometry
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#endif // BOOST_GEOMETRY_POLICIES_IS_VALID_FAILING_REASON_POLICY_HPP
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