/usr/include/boost/log/detail
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adaptive_mutex.hpp63320644editdlrm
allocator_traits.hpp25030644editdlrm
asio_fwd.hpp11030644editdlrm
attachable_sstream_buf.hpp113120644editdlrm
attribute_get_value_impl.hpp11660644editdlrm
attribute_predicate.hpp32910644editdlrm
attr_output_impl.hpp38620644editdlrm
attr_output_terminal.hpp50770644editdlrm
cleanup_scope_guard.hpp13510644editdlrm
code_conversion.hpp108960644editdlrm
config.hpp152500644editdlrm
copy_cv.hpp14030644editdlrm
custom_terminal_spec.hpp20200644editdlrm
c_str.hpp14380644editdlrm
date_time_fmt_gen_traits_fwd.hpp11130644editdlrm
date_time_format_parser.hpp187370644editdlrm
decomposed_time.hpp134990644editdlrm
deduce_char_type.hpp20970644editdlrm
default_attribute_names.hpp14280644editdlrm
embedded_string_type.hpp30020644editdlrm
enqueued_record.hpp29080644editdlrm
event.hpp42920644editdlrm
fake_mutex.hpp15160644editdlrm
footer.hpp5960644editdlrm
format.hpp108090644editdlrm
function_traits.hpp71260644editdlrm
generate_overloads.hpp8920644editdlrm
header.hpp24930644editdlrm
id.hpp20690644editdlrm
is_character_type.hpp15500644editdlrm
is_ostream.hpp15650644editdlrm
light_function.hpp146810644editdlrm
light_function_pp.hpp122580644editdlrm
light_rw_mutex.hpp38540644editdlrm
locking_ptr.hpp38850644editdlrm
locks.hpp52600644editdlrm
named_scope_fmt_pp.hpp38650644editdlrm
native_typeof.hpp14710644editdlrm
parameter_tools.hpp60450644editdlrm
pause.hpp15280644editdlrm
pp_identity.hpp7680644editdlrm
process_id.hpp14720644editdlrm
setup_config.hpp17890644editdlrm
sfinae_tools.hpp11200644editdlrm
singleton.hpp22420644editdlrm
sink_init_helpers.hpp50850644editdlrm
snprintf.hpp27160644editdlrm
tagged_integer.hpp44920644editdlrm
threadsafe_queue.hpp85500644editdlrm
thread_id.hpp15660644editdlrm
thread_specific.hpp28950644editdlrm
timestamp.hpp23270644editdlrm
trivial_keyword.hpp10830644editdlrm
unary_function_terminal.hpp43550644editdlrm
value_ref_visitation.hpp36460644editdlrm
Edit: /usr/include/boost/log/detail/function_traits.hpp (7126B)
/* * Copyright Andrey Semashev 2007 - 2015. * Distributed under 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) */ /*! * \file function_traits.hpp * \author Andrey Semashev * \date 30.08.2009 * * \brief This header is the Boost.Log library implementation, see the library documentation * at http://www.boost.org/doc/libs/release/libs/log/doc/html/index.html. */ #ifndef BOOST_LOG_DETAIL_FUNCTION_TRAITS_HPP_INCLUDED_ #define BOOST_LOG_DETAIL_FUNCTION_TRAITS_HPP_INCLUDED_ #include #include #if defined(BOOST_NO_SFINAE) || defined(BOOST_MPL_CFG_NO_HAS_XXX) # if !defined(BOOST_LOG_NO_FUNCTION_TRAITS) # define BOOST_LOG_NO_FUNCTION_TRAITS # endif #else #include #include #include #include #include #include #include #include #include #ifdef BOOST_HAS_PRAGMA_ONCE #pragma once #endif namespace boost { BOOST_LOG_OPEN_NAMESPACE namespace aux { // A number of traits to deal with functors BOOST_MPL_HAS_XXX_TRAIT_NAMED_DEF(has_argument_type, argument_type, false) BOOST_MPL_HAS_XXX_TRAIT_NAMED_DEF(has_first_argument_type, first_argument_type, false) BOOST_MPL_HAS_XXX_TRAIT_NAMED_DEF(has_second_argument_type, second_argument_type, false) BOOST_MPL_HAS_XXX_TRAIT_NAMED_DEF(has_arg1_type, arg1_type, false) BOOST_MPL_HAS_XXX_TRAIT_NAMED_DEF(has_arg2_type, arg2_type, false) namespace has_arity_no_adl { typedef char yes_type; struct no_type { char dummy[2]; }; template< typename FunT, int ArityV = FunT::arity > struct checker { }; template< typename FunT > yes_type has_arity_impl(FunT const&, checker< FunT >*); template< typename FunT > no_type has_arity_impl(FunT const&, ...); } // namespace has_arity_no_adl //! The metafunction detects if the type has an arity static constant member template< typename FunT > struct has_arity { static FunT const& get_FunT(); enum value_t { value = (sizeof(has_arity_no_adl::has_arity_impl(get_FunT(), 0)) == sizeof(has_arity_no_adl::yes_type)) }; typedef mpl::bool_< value > type; }; //! The metafunction results in an unqualified type with removed reference template< typename T > struct root_type : public remove_cv< typename remove_reference< T >::type > { }; template< typename FunT, bool = function_types::is_nonmember_callable_builtin< FunT >::value, bool = has_argument_type< FunT >::value, bool = has_first_argument_type< FunT >::value, bool = has_arg1_type< FunT >::value > struct first_argument_type_of_impl { }; template< typename FunT > struct first_argument_type_of_impl< FunT, true, false, false, false > { typedef typename root_type< typename mpl::front< typename function_types::parameter_types< FunT >::type >::type >::type type; }; template< typename FunT, bool HasFirstArgumentV, bool HasArg1V > struct first_argument_type_of_impl< FunT, false, true, HasFirstArgumentV, HasArg1V > { typedef typename root_type< typename FunT::argument_type >::type type; }; template< typename FunT, bool HasArg1V > struct first_argument_type_of_impl< FunT, false, false, true, HasArg1V > { typedef typename root_type< typename FunT::first_argument_type >::type type; }; template< typename FunT > struct first_argument_type_of_impl< FunT, false, false, false, true > { typedef typename root_type< typename FunT::arg1_type >::type type; }; //! The metafunction returns the first argument type of a function template< typename FunT > struct first_argument_type_of : public first_argument_type_of_impl< FunT > { }; template< typename FunT, bool = function_types::is_nonmember_callable_builtin< FunT >::value, bool = has_second_argument_type< FunT >::value, bool = has_arg2_type< FunT >::value > struct second_argument_type_of_impl { }; template< typename FunT > struct second_argument_type_of_impl< FunT, true, false, false > { typedef typename root_type< typename mpl::front< typename mpl::pop_front< typename function_types::parameter_types< FunT >::type >::type >::type >::type type; }; template< typename FunT, bool HasArg2V > struct second_argument_type_of_impl< FunT, false, true, HasArg2V > { typedef typename root_type< typename FunT::second_argument_type >::type type; }; template< typename FunT > struct second_argument_type_of_impl< FunT, false, false, true > { typedef typename root_type< typename FunT::arg2_type >::type type; }; //! The metafunction returns the second argument type of a function template< typename FunT > struct second_argument_type_of : public second_argument_type_of_impl< FunT > { }; template< typename FunT, bool = function_types::is_nonmember_callable_builtin< FunT >::value, bool = has_arity< FunT >::value, bool = has_argument_type< FunT >::value, bool = has_second_argument_type< FunT >::value > struct arity_of_impl { }; template< typename FunT > struct arity_of_impl< FunT, true, false, false, false > : public function_types::function_arity< FunT > { }; template< typename FunT, bool HasArgumentTypeV, bool HasSecondArgumentTypeV > struct arity_of_impl< FunT, false, true, HasArgumentTypeV, HasSecondArgumentTypeV > : public mpl::int_< FunT::arity > { }; template< typename FunT, bool HasArgumentTypeV > struct arity_of_impl< FunT, false, false, HasArgumentTypeV, true > : public mpl::int_< 2 > { }; template< typename FunT > struct arity_of_impl< FunT, false, false, true, false > : public mpl::int_< 1 > { }; //! The metafunction returns the arity of a function template< typename FunT > struct arity_of : public arity_of_impl< FunT > { }; } // namespace aux BOOST_LOG_CLOSE_NAMESPACE // namespace log } // namespace boost #include #endif // defined(BOOST_NO_SFINAE) || defined(BOOST_MPL_CFG_NO_HAS_XXX) #endif // BOOST_LOG_DETAIL_FUNCTION_TRAITS_HPP_INCLUDED_