annotate DEPENDENCIES/generic/include/boost/detail/identifier.hpp @ 133:4acb5d8d80b6 tip

Don't fail environmental check if README.md exists (but .txt and no-suffix don't)
author Chris Cannam
date Tue, 30 Jul 2019 12:25:44 +0100
parents c530137014c0
children
rev   line source
Chris@16 1 // boost/identifier.hpp ----------------------------------------------------//
Chris@16 2
Chris@16 3 // Copyright Beman Dawes 2006
Chris@16 4
Chris@16 5 // Distributed under the Boost Software License, Version 1.0. (See accompanying
Chris@16 6 // file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
Chris@16 7
Chris@16 8 // See documentation at http://www.boost.org/libs/utility
Chris@16 9
Chris@16 10 #ifndef BOOST_IDENTIFIER_HPP
Chris@16 11 #define BOOST_IDENTIFIER_HPP
Chris@16 12
Chris@16 13 #include <boost/utility/enable_if.hpp>
Chris@16 14 #include <boost/type_traits/is_base_of.hpp>
Chris@16 15 #include <iosfwd>
Chris@16 16
Chris@16 17 namespace boost
Chris@16 18 {
Chris@16 19 namespace detail
Chris@16 20 {
Chris@16 21 // class template identifier ---------------------------------------------//
Chris@16 22
Chris@16 23 // Always used as a base class so that different instantiations result in
Chris@16 24 // different class types even if instantiated with the same value type T.
Chris@16 25
Chris@16 26 // Expected usage is that T is often an integer type, best passed by
Chris@16 27 // value. There is no reason why T can't be a possibly larger class such as
Chris@16 28 // std::string, best passed by const reference.
Chris@16 29
Chris@16 30 // This implementation uses pass by value, based on expected common uses.
Chris@16 31
Chris@16 32 template <typename T, typename D>
Chris@16 33 class identifier
Chris@16 34 {
Chris@16 35 public:
Chris@16 36 typedef T value_type;
Chris@16 37
Chris@16 38 const value_type value() const { return m_value; }
Chris@16 39 void assign( value_type v ) { m_value = v; }
Chris@16 40
Chris@16 41 bool operator==( const D & rhs ) const { return m_value == rhs.m_value; }
Chris@16 42 bool operator!=( const D & rhs ) const { return m_value != rhs.m_value; }
Chris@16 43 bool operator< ( const D & rhs ) const { return m_value < rhs.m_value; }
Chris@16 44 bool operator<=( const D & rhs ) const { return m_value <= rhs.m_value; }
Chris@16 45 bool operator> ( const D & rhs ) const { return m_value > rhs.m_value; }
Chris@16 46 bool operator>=( const D & rhs ) const { return m_value >= rhs.m_value; }
Chris@16 47
Chris@16 48 typedef void (*unspecified_bool_type)(D); // without the D, unspecified_bool_type
Chris@16 49 static void unspecified_bool_true(D){} // conversion allows relational operators
Chris@16 50 // between different identifier types
Chris@16 51
Chris@16 52 operator unspecified_bool_type() const { return m_value == value_type() ? 0 : unspecified_bool_true; }
Chris@16 53 bool operator!() const { return m_value == value_type(); }
Chris@16 54
Chris@16 55 // constructors are protected so that class can only be used as a base class
Chris@16 56 protected:
Chris@16 57 identifier() {}
Chris@16 58 explicit identifier( value_type v ) : m_value(v) {}
Chris@16 59
Chris@16 60 private:
Chris@16 61 T m_value;
Chris@16 62 };
Chris@16 63
Chris@16 64 //#ifndef BOOST_NO_SFINAE
Chris@16 65
Chris@16 66 // template <class Ostream, class Id>
Chris@16 67 // typename enable_if< is_base_of< identifier< typename Id::value_type, Id >, Id >,
Chris@16 68 // Ostream & >::type operator<<( Ostream & os, const Id & id )
Chris@16 69 // {
Chris@16 70 // return os << id.value();
Chris@16 71 // }
Chris@16 72
Chris@16 73 // template <class Istream, class Id>
Chris@16 74 // typename enable_if< is_base_of< identifier< typename Id::value_type, Id >, Id >,
Chris@16 75 // Istream & >::type operator>>( Istream & is, Id & id )
Chris@16 76 // {
Chris@16 77 // typename Id::value_type v;
Chris@16 78 // is >> v;
Chris@16 79 // id.value( v );
Chris@16 80 // return is;
Chris@16 81 // }
Chris@16 82 //#endif
Chris@16 83
Chris@16 84 } // namespace detail
Chris@16 85 } // namespace boost
Chris@16 86
Chris@16 87 #endif // BOOST_IDENTIFIER_HPP