// Copyright (c) 2001-2011 Hartmut Kaiser // // 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) #if !defined(SPIRIT_KARMA_ATTR_CAST_SEP_26_2009_0348PM) #define SPIRIT_KARMA_ATTR_CAST_SEP_26_2009_0348PM #if defined(_MSC_VER) #pragma once #endif #include #include #include #include #include #include #include #include namespace boost { namespace spirit { /////////////////////////////////////////////////////////////////////////// // enables attr_cast<>() pseudo generator template struct use_terminal > : mpl::true_ {}; }} namespace boost { namespace spirit { namespace karma { #ifndef BOOST_SPIRIT_NO_PREDEFINED_TERMINALS using spirit::attr_cast; #endif /////////////////////////////////////////////////////////////////////////// // attr_cast_generator consumes the attribute of subject generator without // generating anything /////////////////////////////////////////////////////////////////////////// template struct attr_cast_generator : unary_generator > { typedef typename result_of::compile::type subject_type; typedef mpl::int_ properties; typedef typename mpl::eval_if< traits::not_is_unused , mpl::identity , traits::attribute_of >::type transformed_attribute_type; attr_cast_generator(Subject const& subject) : subject(subject) { // If you got an error_invalid_expression error message here, // then the expression (Subject) is not a valid spirit karma // expression. BOOST_SPIRIT_ASSERT_MATCH(karma::domain, Subject); } // If Exposed is given, we use the given type, otherwise all we can do // is to guess, so we expose our inner type as an attribute and // deal with the passed attribute inside the parse function. template struct attribute : mpl::if_, Exposed , transformed_attribute_type> {}; template bool generate(OutputIterator& sink, Context& ctx, Delimiter const& d , Attribute const& attr) const { typedef traits::transform_attribute< Attribute const, transformed_attribute_type, domain> transform; return compile(subject).generate( sink, ctx, d, transform::pre(attr)); } template info what(Context& context) const { return info("attr_cast" , compile(subject).what(context)); } Subject subject; }; /////////////////////////////////////////////////////////////////////////// // Generator generator: make_xxx function (objects) /////////////////////////////////////////////////////////////////////////// template struct make_primitive< tag::stateful_tag, Modifiers> { typedef attr_cast_generator result_type; template result_type operator()(Terminal const& term, unused_type) const { typedef tag::stateful_tag< Expr, tag::attr_cast, Exposed, Transformed> tag_type; using spirit::detail::get_stateful_data; return result_type(get_stateful_data::call(term)); } }; }}} #endif