/usr/include/boost/lambda/detail
NameSizeModeActions
actions.hpp55920644editdlrm
arity_code.hpp28170644editdlrm
bind_functions.hpp566160644editdlrm
control_constructs_common.hpp12860644editdlrm
function_adaptors.hpp309280644editdlrm
is_instance_of.hpp43960644editdlrm
lambda_config.hpp8590644editdlrm
lambda_functors.hpp109790644editdlrm
lambda_functor_base.hpp221050644editdlrm
lambda_fwd.hpp17790644editdlrm
lambda_traits.hpp154230644editdlrm
member_ptr.hpp263570644editdlrm
operators.hpp170930644editdlrm
operator_actions.hpp38750644editdlrm
operator_lambda_func_base.hpp110750644editdlrm
operator_return_type_traits.hpp285680644editdlrm
ret.hpp103830644editdlrm
return_type_traits.hpp87980644editdlrm
select_functions.hpp24280644editdlrm
suppress_unused.hpp6200644editdlrm
Edit: /usr/include/boost/lambda/detail/arity_code.hpp (2817B)
// -- Boost Lambda Library ------------------------------------------------- // Copyright (C) 1999, 2000 Jaakko Jarvi (jaakko.jarvi@cs.utu.fi) // // 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) // // For more information, see www.boost.org // -------------------------------------------------- #ifndef BOOST_LAMBDA_ARITY_CODE_HPP #define BOOST_LAMBDA_ARITY_CODE_HPP #include "boost/type_traits/cv_traits.hpp" #include "boost/type_traits/transform_traits.hpp" namespace boost { namespace lambda { // These constants state, whether a lambda_functor instantiation results from // an expression which contains no placeholders (NONE), // only free1 placeholders (FIRST), // free2 placeholders and maybe free1 placeholders (SECOND), // free3 and maybe free1 and free2 placeholders (THIRD), // freeE placeholders and maybe free1 and free2 (EXCEPTION). // RETHROW means, that a rethrow expression is used somewhere in the lambda_functor. enum { NONE = 0x00, // Notice we are using bits as flags here. FIRST = 0x01, SECOND = 0x02, THIRD = 0x04, EXCEPTION = 0x08, RETHROW = 0x10}; template struct get_tuple_arity; namespace detail { template struct get_arity_; } // end detail; template struct get_arity { BOOST_STATIC_CONSTANT(int, value = detail::get_arity_::type>::type>::value); }; namespace detail { template struct get_arity_ { BOOST_STATIC_CONSTANT(int, value = 0); }; template struct get_arity_ > { BOOST_STATIC_CONSTANT(int, value = get_arity::value); }; template struct get_arity_ > { BOOST_STATIC_CONSTANT(int, value = get_tuple_arity::value); }; template struct get_arity_ > { BOOST_STATIC_CONSTANT(int, value = I); }; } // detail template struct get_tuple_arity { BOOST_STATIC_CONSTANT(int, value = get_arity::value | get_tuple_arity::value); }; template<> struct get_tuple_arity { BOOST_STATIC_CONSTANT(int, value = 0); }; // Does T have placeholder as it's subexpression? template struct has_placeholder { BOOST_STATIC_CONSTANT(bool, value = (get_arity::value & I) != 0); }; template struct includes_placeholder { BOOST_STATIC_CONSTANT(bool, value = (J & I) != 0); }; template struct lacks_placeholder { BOOST_STATIC_CONSTANT(bool, value = ((J & I) == 0)); }; } // namespace lambda } // namespace boost #endif