206 lines
8.2 KiB
Plaintext
206 lines
8.2 KiB
Plaintext
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// (C) Copyright 2009-2011 Frederic Bron, Robert Stewart, Steven Watanabe & Roman Perepelitsa.
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//
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// Use, modification and distribution are subject to the Boost Software License,
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// Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt).
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//
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// See http://www.boost.org/libs/type_traits for most recent version including documentation.
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#include <boost/config.hpp>
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#include <boost/type_traits/detail/yes_no_type.hpp>
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#include <boost/type_traits/integral_constant.hpp>
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#include <boost/type_traits/is_const.hpp>
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#include <boost/type_traits/is_fundamental.hpp>
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#include <boost/type_traits/is_integral.hpp>
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#include <boost/type_traits/is_pointer.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/type_traits/is_void.hpp>
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#include <boost/type_traits/remove_cv.hpp>
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#include <boost/type_traits/remove_pointer.hpp>
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#include <boost/type_traits/remove_reference.hpp>
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// cannot include this header without getting warnings of the kind:
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// gcc:
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// warning: value computed is not used
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// warning: comparison between signed and unsigned integer expressions
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// msvc:
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// warning C4146: unary minus operator applied to unsigned type, result still unsigned
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// warning C4804: '-' : unsafe use of type 'bool' in operation
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// cannot find another implementation -> declared as system header to suppress these warnings.
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#if defined(__GNUC__)
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# pragma GCC system_header
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#elif defined(BOOST_MSVC)
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# pragma warning ( push )
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# pragma warning ( disable : 4146 4804 4913 4244)
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# if BOOST_WORKAROUND(BOOST_MSVC_FULL_VER, >= 140050000)
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# pragma warning ( disable : 6334)
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# endif
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#endif
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namespace boost {
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namespace detail {
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// This namespace ensures that argument-dependent name lookup does not mess things up.
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namespace BOOST_JOIN(BOOST_TT_TRAIT_NAME,_impl) {
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// 1. a function to have an instance of type T without requiring T to be default
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// constructible
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template <typename T> T &make();
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// 2. we provide our operator definition for types that do not have one already
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// a type returned from operator BOOST_TT_TRAIT_OP when no such operator is
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// found in the type's own namespace (our own operator is used) so that we have
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// a means to know that our operator was used
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struct no_operator { };
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// this class allows implicit conversions and makes the following operator
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// definition less-preferred than any other such operators that might be found
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// via argument-dependent name lookup
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struct any { template <class T> any(T const&); };
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// when operator BOOST_TT_TRAIT_OP is not available, this one is used
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no_operator operator BOOST_TT_TRAIT_OP (const any&);
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// 3. checks if the operator returns void or not
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// conditions: Rhs!=void
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// we first redefine "operator," so that we have no compilation error if
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// operator BOOST_TT_TRAIT_OP returns void and we can use the return type of
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// (BOOST_TT_TRAIT_OP rhs, returns_void_t()) to deduce if
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// operator BOOST_TT_TRAIT_OP returns void or not:
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// - operator BOOST_TT_TRAIT_OP returns void -> (BOOST_TT_TRAIT_OP rhs, returns_void_t()) returns returns_void_t
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// - operator BOOST_TT_TRAIT_OP returns !=void -> (BOOST_TT_TRAIT_OP rhs, returns_void_t()) returns int
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struct returns_void_t { };
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template <typename T> int operator,(const T&, returns_void_t);
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template <typename T> int operator,(const volatile T&, returns_void_t);
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// this intermediate trait has member value of type bool:
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// - value==true -> operator BOOST_TT_TRAIT_OP returns void
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// - value==false -> operator BOOST_TT_TRAIT_OP does not return void
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template < typename Rhs >
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struct operator_returns_void {
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// overloads of function returns_void make the difference
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// yes_type and no_type have different size by construction
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static ::boost::type_traits::yes_type returns_void(returns_void_t);
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static ::boost::type_traits::no_type returns_void(int);
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BOOST_STATIC_CONSTANT(bool, value = (sizeof(::boost::type_traits::yes_type)==sizeof(returns_void((BOOST_TT_TRAIT_OP make<Rhs>(),returns_void_t())))));
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};
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// 4. checks if the return type is Ret or Ret==dont_care
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// conditions: Rhs!=void
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struct dont_care { };
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template < typename Rhs, typename Ret, bool Returns_void >
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struct operator_returns_Ret;
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template < typename Rhs >
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struct operator_returns_Ret < Rhs, dont_care, true > {
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BOOST_STATIC_CONSTANT(bool, value = true);
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};
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template < typename Rhs >
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struct operator_returns_Ret < Rhs, dont_care, false > {
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BOOST_STATIC_CONSTANT(bool, value = true);
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};
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template < typename Rhs >
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struct operator_returns_Ret < Rhs, void, true > {
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BOOST_STATIC_CONSTANT(bool, value = true);
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};
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template < typename Rhs >
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struct operator_returns_Ret < Rhs, void, false > {
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BOOST_STATIC_CONSTANT(bool, value = false);
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};
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template < typename Rhs, typename Ret >
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struct operator_returns_Ret < Rhs, Ret, true > {
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BOOST_STATIC_CONSTANT(bool, value = false);
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};
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// otherwise checks if it is convertible to Ret using the sizeof trick
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// based on overload resolution
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// condition: Ret!=void and Ret!=dont_care and the operator does not return void
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template < typename Rhs, typename Ret >
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struct operator_returns_Ret < Rhs, Ret, false > {
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static ::boost::type_traits::yes_type is_convertible_to_Ret(Ret); // this version is preferred for types convertible to Ret
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static ::boost::type_traits::no_type is_convertible_to_Ret(...); // this version is used otherwise
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BOOST_STATIC_CONSTANT(bool, value = (sizeof(is_convertible_to_Ret(BOOST_TT_TRAIT_OP make<Rhs>()))==sizeof(::boost::type_traits::yes_type)));
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};
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// 5. checks for operator existence
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// condition: Rhs!=void
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// checks if our definition of operator BOOST_TT_TRAIT_OP is used or an other
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// existing one;
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// this is done with redefinition of "operator," that returns no_operator or has_operator
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struct has_operator { };
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no_operator operator,(no_operator, has_operator);
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template < typename Rhs >
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struct operator_exists {
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static ::boost::type_traits::yes_type s_check(has_operator); // this version is preferred when operator exists
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static ::boost::type_traits::no_type s_check(no_operator); // this version is used otherwise
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BOOST_STATIC_CONSTANT(bool, value = (sizeof(s_check(((BOOST_TT_TRAIT_OP make<Rhs>()),make<has_operator>())))==sizeof(::boost::type_traits::yes_type)));
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};
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// 6. main trait: to avoid any compilation error, this class behaves
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// differently when operator BOOST_TT_TRAIT_OP(Rhs) is forbidden by the
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// standard.
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// Forbidden_if is a bool that is:
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// - true when the operator BOOST_TT_TRAIT_OP(Rhs) is forbidden by the standard
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// (would yield compilation error if used)
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// - false otherwise
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template < typename Rhs, typename Ret, bool Forbidden_if >
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struct trait_impl1;
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template < typename Rhs, typename Ret >
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struct trait_impl1 < Rhs, Ret, true > {
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BOOST_STATIC_CONSTANT(bool, value = false);
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};
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template < typename Rhs, typename Ret >
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struct trait_impl1 < Rhs, Ret, false > {
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BOOST_STATIC_CONSTANT(bool,
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value = (operator_exists < Rhs >::value && operator_returns_Ret < Rhs, Ret, operator_returns_void < Rhs >::value >::value));
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};
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// specialization needs to be declared for the special void case
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template < typename Ret >
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struct trait_impl1 < void, Ret, false > {
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BOOST_STATIC_CONSTANT(bool, value = false);
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};
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// defines some typedef for convenience
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template < typename Rhs, typename Ret >
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struct trait_impl {
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typedef typename ::boost::remove_reference<Rhs>::type Rhs_noref;
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typedef typename ::boost::remove_cv<Rhs_noref>::type Rhs_nocv;
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typedef typename ::boost::remove_cv< typename ::boost::remove_reference< typename ::boost::remove_pointer<Rhs_noref>::type >::type >::type Rhs_noptr;
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BOOST_STATIC_CONSTANT(bool, value = (trait_impl1 < Rhs_noref, Ret, BOOST_TT_FORBIDDEN_IF >::value));
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};
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} // namespace impl
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} // namespace detail
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// this is the accessible definition of the trait to end user
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template <class Rhs, class Ret=::boost::detail::BOOST_JOIN(BOOST_TT_TRAIT_NAME,_impl)::dont_care>
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struct BOOST_TT_TRAIT_NAME : public integral_constant<bool, (::boost::detail::BOOST_JOIN(BOOST_TT_TRAIT_NAME, _impl)::trait_impl < Rhs, Ret >::value)>{};
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} // namespace boost
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#if defined(BOOST_MSVC)
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# pragma warning ( pop )
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#endif
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