| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470 | ////////////////////////////////////////////////////////////////////////////////// \file generate.hpp/// Contains definition of generate\<\> class template, which end users can/// specialize for generating domain-specific expression wrappers.////  Copyright 2008 Eric Niebler. 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)#ifndef BOOST_PROTO_GENERATE_HPP_EAN_02_13_2007#define BOOST_PROTO_GENERATE_HPP_EAN_02_13_2007#include <boost/config.hpp>#include <boost/version.hpp>#include <boost/preprocessor/cat.hpp>#include <boost/preprocessor/iteration/iterate.hpp>#include <boost/preprocessor/facilities/intercept.hpp>#include <boost/preprocessor/repetition/enum_params.hpp>#include <boost/preprocessor/repetition/enum_binary_params.hpp>#include <boost/preprocessor/repetition/enum_trailing_params.hpp>#include <boost/mpl/bool.hpp>#include <boost/utility/enable_if.hpp>#include <boost/utility/result_of.hpp>#include <boost/proto/proto_fwd.hpp>#include <boost/proto/args.hpp>#if defined(_MSC_VER)# pragma warning(push)# pragma warning(disable : 4714) // function 'xxx' marked as __forceinline not inlined#endifnamespace boost { namespace proto{    namespace detail    {        template<typename Expr>        struct by_value_generator_;        template<typename Tag, typename Arg>        struct by_value_generator_<proto::expr<Tag, term<Arg>, 0> >        {            typedef                proto::expr<                    Tag                  , term<typename detail::term_traits<Arg>::value_type>                  , 0                >            type;            BOOST_FORCEINLINE            static type const call(proto::expr<Tag, term<Arg>, 0> const &e)            {                type that = {e.child0};                return that;            }        };        template<typename Tag, typename Arg>        struct by_value_generator_<proto::basic_expr<Tag, term<Arg>, 0> >        {            typedef                proto::basic_expr<                    Tag                  , term<typename detail::term_traits<Arg>::value_type>                  , 0                >            type;            BOOST_FORCEINLINE            static type const call(proto::basic_expr<Tag, term<Arg>, 0> const &e)            {                type that = {e.child0};                return that;            }        };        // Include the other specializations of by_value_generator_        #include <boost/proto/detail/generate_by_value.hpp>    }    /// \brief Annotate a generator to indicate that it would    /// prefer to be passed instances of \c proto::basic_expr\<\> rather    /// than \c proto::expr\<\>. <tt>use_basic_expr\<Generator\></tt> is    /// itself a generator.    ///    template<typename Generator>    struct use_basic_expr      : Generator    {        BOOST_PROTO_USE_BASIC_EXPR()    };    /// \brief A simple generator that passes an expression    /// through unchanged.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// The \c default_generator makes no modifications to the expressions    /// passed to it.    struct default_generator    {        BOOST_PROTO_CALLABLE()        template<typename Sig>        struct result;        template<typename This, typename Expr>        struct result<This(Expr)>        {            typedef Expr type;        };        /// \param expr A Proto expression        /// \return expr        template<typename Expr>        BOOST_FORCEINLINE        BOOST_PROTO_RETURN_TYPE_STRICT_LOOSE(Expr, Expr const &)        operator ()(Expr const &e) const        {            return e;        }    };    /// \brief A simple generator that passes an expression    /// through unchanged and specifies a preference for    /// \c proto::basic_expr\<\> over \c proto::expr\<\>.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// The \c default_generator makes no modifications to the expressions    /// passed to it.    struct basic_default_generator      : proto::use_basic_expr<default_generator>    {};        /// \brief A generator that wraps expressions passed    /// to it in the specified extension wrapper.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// \c generator\<\> wraps each expression passed to it in    /// the \c Extends\<\> wrapper.    template<template<typename> class Extends>    struct generator    {        BOOST_PROTO_CALLABLE()        BOOST_PROTO_USE_BASIC_EXPR()        template<typename Sig>        struct result;        template<typename This, typename Expr>        struct result<This(Expr)>        {            typedef Extends<Expr> type;        };        template<typename This, typename Expr>        struct result<This(Expr &)>        {            typedef Extends<Expr> type;        };        template<typename This, typename Expr>        struct result<This(Expr const &)>        {            typedef Extends<Expr> type;        };        /// \param expr A Proto expression        /// \return Extends<Expr>(expr)        template<typename Expr>        BOOST_FORCEINLINE        Extends<Expr> operator ()(Expr const &e) const        {            return Extends<Expr>(e);        }    };    /// \brief A generator that wraps expressions passed    /// to it in the specified extension wrapper and uses    /// aggregate initialization for the wrapper.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// \c pod_generator\<\> wraps each expression passed to it in    /// the \c Extends\<\> wrapper, and uses aggregate initialzation    /// for the wrapped object.    template<template<typename> class Extends>    struct pod_generator    {        BOOST_PROTO_CALLABLE()        BOOST_PROTO_USE_BASIC_EXPR()        template<typename Sig>        struct result;        template<typename This, typename Expr>        struct result<This(Expr)>        {            typedef Extends<Expr> type;        };        template<typename This, typename Expr>        struct result<This(Expr &)>        {            typedef Extends<Expr> type;        };        template<typename This, typename Expr>        struct result<This(Expr const &)>        {            typedef Extends<Expr> type;        };        /// \param expr The expression to wrap        /// \return <tt>Extends\<Expr\> that = {expr}; return that;</tt>        template<typename Expr>        BOOST_FORCEINLINE        Extends<Expr> operator ()(Expr const &e) const        {            Extends<Expr> that = {e};            return that;        }        // Work-around for:        // https://connect.microsoft.com/VisualStudio/feedback/details/765449/codegen-stack-corruption-using-runtime-checks-when-aggregate-initializing-struct    #if BOOST_WORKAROUND(BOOST_MSVC, < 1800)        template<typename Class, typename Member>        BOOST_FORCEINLINE        Extends<expr<tag::terminal, proto::term<Member Class::*> > > operator ()(expr<tag::terminal, proto::term<Member Class::*> > const &e) const        {            Extends<expr<tag::terminal, proto::term<Member Class::*> > > that;            proto::value(that.proto_expr_) = proto::value(e);            return that;        }        template<typename Class, typename Member>        BOOST_FORCEINLINE        Extends<basic_expr<tag::terminal, proto::term<Member Class::*> > > operator ()(basic_expr<tag::terminal, proto::term<Member Class::*> > const &e) const        {            Extends<basic_expr<tag::terminal, proto::term<Member Class::*> > > that;            proto::value(that.proto_expr_) = proto::value(e);            return that;        }    #endif    };    /// \brief A generator that replaces child nodes held by    /// reference with ones held by value. Use with    /// \c compose_generators to forward that result to another    /// generator.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// \c by_value_generator ensures all child nodes are    /// held by value. This generator is typically composed with a    /// second generator for further processing, as    /// <tt>compose_generators\<by_value_generator, MyGenerator\></tt>.    struct by_value_generator    {        BOOST_PROTO_CALLABLE()        template<typename Sig>        struct result;        template<typename This, typename Expr>        struct result<This(Expr)>        {            typedef                typename detail::by_value_generator_<Expr>::type            type;        };        template<typename This, typename Expr>        struct result<This(Expr &)>        {            typedef                typename detail::by_value_generator_<Expr>::type            type;        };        template<typename This, typename Expr>        struct result<This(Expr const &)>        {            typedef                typename detail::by_value_generator_<Expr>::type            type;        };        /// \param expr The expression to modify.        /// \return <tt>deep_copy(expr)</tt>        template<typename Expr>        BOOST_FORCEINLINE        typename result<by_value_generator(Expr)>::type operator ()(Expr const &e) const        {            return detail::by_value_generator_<Expr>::call(e);        }    };    /// \brief A composite generator that first applies one    /// transform to an expression and then forwards the result    /// on to another generator for further transformation.    ///    /// Generators are intended for use as the first template parameter    /// to the \c domain\<\> class template and control if and how    /// expressions within that domain are to be customized.    /// \c compose_generators\<\> is a composite generator that first    /// applies one transform to an expression and then forwards the    /// result on to another generator for further transformation.    template<typename First, typename Second>    struct compose_generators    {        BOOST_PROTO_CALLABLE()        template<typename Sig>        struct result;        template<typename This, typename Expr>        struct result<This(Expr)>        {            typedef                typename Second::template result<                    Second(typename First::template result<First(Expr)>::type)                >::type            type;        };        template<typename This, typename Expr>        struct result<This(Expr &)>        {            typedef                typename Second::template result<                    Second(typename First::template result<First(Expr)>::type)                >::type            type;        };        template<typename This, typename Expr>        struct result<This(Expr const &)>        {            typedef                typename Second::template result<                    Second(typename First::template result<First(Expr)>::type)                >::type            type;        };        /// \param expr The expression to modify.        /// \return Second()(First()(expr))        template<typename Expr>        BOOST_FORCEINLINE        typename result<compose_generators(Expr)>::type operator ()(Expr const &e) const        {            return Second()(First()(e));        }    };    /// \brief Tests a generator to see whether it would prefer    /// to be passed instances of \c proto::basic_expr\<\> rather than    /// \c proto::expr\<\>.    ///    template<typename Generator, typename Void>    struct wants_basic_expr      : mpl::false_    {};    template<typename Generator>    struct wants_basic_expr<Generator, typename Generator::proto_use_basic_expr_>      : mpl::true_    {};    /// INTERNAL ONLY    template<>    struct is_callable<default_generator>      : mpl::true_    {};    /// INTERNAL ONLY    template<template<typename> class Extends>    struct is_callable<generator<Extends> >      : mpl::true_    {};    /// INTERNAL ONLY    template<template<typename> class Extends>    struct is_callable<pod_generator<Extends> >      : mpl::true_    {};    /// INTERNAL ONLY    template<>    struct is_callable<by_value_generator>      : mpl::true_    {};    /// INTERNAL ONLY    template<typename First, typename Second>    struct is_callable<compose_generators<First, Second> >      : mpl::true_    {};}}// Specializations of boost::result_of and boost::tr1_result_of to eliminate// some unnecessary template instantiationsnamespace boost{    template<typename Expr>    struct result_of<proto::default_domain(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct result_of<proto::basic_default_domain(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct result_of<proto::default_generator(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct result_of<proto::basic_default_generator(Expr)>    {        typedef Expr type;    };    #if BOOST_VERSION >= 104400    template<typename Expr>    struct tr1_result_of<proto::default_domain(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct tr1_result_of<proto::basic_default_domain(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct tr1_result_of<proto::default_generator(Expr)>    {        typedef Expr type;    };    template<typename Expr>    struct tr1_result_of<proto::basic_default_generator(Expr)>    {        typedef Expr type;    };    #endif}#if defined(_MSC_VER)# pragma warning(pop)#endif#endif // BOOST_PROTO_GENERATE_HPP_EAN_02_13_2007
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