/usr/include/boost/geometry/util
NameSizeModeActions
add_const_if_c.hpp16770644editdlrm
bare_type.hpp13300644editdlrm
calculation_type.hpp48730644editdlrm
closure_as_bool.hpp10800644editdlrm
combine_if.hpp29270644editdlrm
compress_variant.hpp30980644editdlrm
condition.hpp13460644editdlrm
coordinate_cast.hpp15300644editdlrm
for_each_coordinate.hpp26270644editdlrm
has_infinite_coordinate.hpp13760644editdlrm
has_nan_coordinate.hpp23750644editdlrm
has_non_finite_coordinate.hpp14050644editdlrm
is_inverse_spheroidal_coordinates.hpp15530644editdlrm
math.hpp219720644editdlrm
normalize_spheroidal_box_coordinates.hpp73170644editdlrm
normalize_spheroidal_coordinates.hpp144160644editdlrm
order_as_direction.hpp12110644editdlrm
parameter_type_of.hpp21560644editdlrm
promote_floating_point.hpp13560644editdlrm
promote_integral.hpp97750644editdlrm
range.hpp124450644editdlrm
rational.hpp45800644editdlrm
select_calculation_type.hpp25320644editdlrm
select_coordinate_type.hpp20030644editdlrm
select_most_precise.hpp54590644editdlrm
select_sequence_element.hpp20520644editdlrm
series_expansion.hpp256700644editdlrm
transform_variant.hpp27350644editdlrm
tuples.hpp88190644editdlrm
Edit: /usr/include/boost/geometry/util/calculation_type.hpp (4873B)
// Boost.Geometry (aka GGL, Generic Geometry Library) // Copyright (c) 2012 Barend Gehrels, Amsterdam, the Netherlands. // Copyright (c) 2012 Bruno Lalande, Paris, France. // Copyright (c) 2012 Mateusz Loskot, London, UK. // This file was modified by Oracle on 2018. // Modifications copyright (c) 2018, Oracle and/or its affiliates. // 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_UTIL_CALCULATION_TYPE_HPP #define BOOST_GEOMETRY_UTIL_CALCULATION_TYPE_HPP #include #include #include #include #include #include #include #include namespace boost { namespace geometry { namespace util { namespace detail { struct default_integral { #ifdef BOOST_HAS_LONG_LONG typedef boost::long_long_type type; #else typedef int type; #endif }; /*! \details Selects the most appropriate: - if calculation type is specified (not void), that one is used - else if type is non-fundamental (user defined e.g. ttmath), that one - else if type is floating point, the specified default FP is used - else it is integral and the specified default integral is used */ template < typename Type, typename CalculationType, typename DefaultFloatingPointCalculationType, typename DefaultIntegralCalculationType > struct calculation_type { BOOST_STATIC_ASSERT(( boost::is_fundamental < DefaultFloatingPointCalculationType >::type::value )); BOOST_STATIC_ASSERT(( boost::is_fundamental < DefaultIntegralCalculationType >::type::value )); typedef typename boost::mpl::if_ < boost::is_void, typename boost::mpl::if_ < boost::is_floating_point, typename select_most_precise < DefaultFloatingPointCalculationType, Type >::type, typename select_most_precise < DefaultIntegralCalculationType, Type >::type >::type, CalculationType >::type type; }; } // namespace detail namespace calculation_type { namespace geometric { template < typename Geometry, typename CalculationType, typename DefaultFloatingPointCalculationType = double, typename DefaultIntegralCalculationType = detail::default_integral::type > struct unary { typedef typename detail::calculation_type < typename geometry::coordinate_type::type, CalculationType, DefaultFloatingPointCalculationType, DefaultIntegralCalculationType >::type type; }; template < typename Geometry1, typename Geometry2, typename CalculationType, typename DefaultFloatingPointCalculationType = double, typename DefaultIntegralCalculationType = detail::default_integral::type > struct binary { typedef typename detail::calculation_type < typename select_coordinate_type::type, CalculationType, DefaultFloatingPointCalculationType, DefaultIntegralCalculationType >::type type; }; /*! \brief calculation type (ternary, for three geometry types) */ template < typename Geometry1, typename Geometry2, typename Geometry3, typename CalculationType, typename DefaultFloatingPointCalculationType = double, typename DefaultIntegralCalculationType = detail::default_integral::type > struct ternary { typedef typename detail::calculation_type < typename select_most_precise < typename coordinate_type::type, typename select_coordinate_type < Geometry2, Geometry3 >::type >::type, CalculationType, DefaultFloatingPointCalculationType, DefaultIntegralCalculationType >::type type; }; }} // namespace calculation_type::geometric } // namespace util }} // namespace boost::geometry #endif // BOOST_GEOMETRY_UTIL_CALCULATION_TYPE_HPP