// Copyright (c) 2001-2010 Hartmut Kaiser // Copyright (c) 2001-2010 Joel de Guzman // // 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_LIST_MAY_01_2007_0229PM) #define SPIRIT_KARMA_LIST_MAY_01_2007_0229PM #if defined(_MSC_VER) #pragma once #endif #include #include #include #include #include #include #include #include #include namespace boost { namespace spirit { /////////////////////////////////////////////////////////////////////////// // Enablers /////////////////////////////////////////////////////////////////////////// template <> struct use_operator // enables g % d : mpl::true_ {}; }} /////////////////////////////////////////////////////////////////////////////// namespace boost { namespace spirit { namespace karma { template struct base_list : binary_generator { private: // iterate over the given container until its exhausted or the embedded // (left) generator succeeds template < typename OutputIterator, typename Context, typename Delimiter , typename Iterator, typename Attribute> bool generate_left(OutputIterator& sink, Context& ctx , Delimiter const& d, Iterator& it, Iterator& end, Attribute const&) const { if (Strict::value) { if (!traits::compare(it, end)) return left.generate(sink, ctx, d, traits::deref(it)); } else { // Failing subject generators are just skipped. This allows to // selectively generate items in the provided attribute. while (!traits::compare(it, end)) { if (left.generate(sink, ctx, d, traits::deref(it))) return true; traits::next(it); } } return false; } template < typename OutputIterator, typename Context, typename Delimiter , typename Iterator> bool generate_left(OutputIterator& sink, Context& ctx , Delimiter const& d, Iterator&, Iterator&, unused_type) const { // There is no way to distinguish a failed generator from a // generator to be skipped. We assume the user takes responsibility // for ending the loop if no attribute is specified. return left.generate(sink, ctx, d, unused); } public: typedef Left left_type; typedef Right right_type; typedef mpl::int_< left_type::properties::value | right_type::properties::value | generator_properties::buffering | generator_properties::counting > properties; // Build a std::vector from the LHS's attribute. Note // that build_std_vector may return unused_type if the // subject's attribute is an unused_type. template struct attribute : traits::build_std_vector< typename traits::attribute_of::type> {}; base_list(Left const& left, Right const& right) : left(left), right(right) {} template < typename OutputIterator, typename Context, typename Delimiter , typename Attribute> bool generate(OutputIterator& sink, Context& ctx , Delimiter const& d, Attribute const& attr) const { typedef typename traits::container_iterator< typename add_const::type >::type iterator_type; iterator_type it = traits::begin(attr); iterator_type end = traits::end(attr); if (generate_left(sink, ctx, d, it, end, attr)) { for (traits::next(it); !traits::compare(it, end); traits::next(it)) { // wrap the given output iterator as generate_left might fail detail::enable_buffering buffering(sink); { detail::disable_counting nocounting(sink); if (!right.generate(sink, ctx, d, unused)) return false; // shouldn't happen if (!generate_left(sink, ctx, d, it, end, attr)) break; // return true as one item succeeded } buffering.buffer_copy(); } return true; } return false; } template info what(Context& context) const { return info("list", std::make_pair(left.what(context), right.what(context))); } Left left; Right right; }; template struct list : base_list > { typedef base_list base_list_; list(Left const& left, Right const& right) : base_list_(left, right) {} }; template struct strict_list : base_list > { typedef base_list base_list_; strict_list (Left const& left, Right const& right) : base_list_(left, right) {} }; /////////////////////////////////////////////////////////////////////////// // Generator generators: make_xxx function (objects) /////////////////////////////////////////////////////////////////////////// namespace detail { template struct make_list : make_binary_composite {}; template struct make_list : make_binary_composite {}; } template struct make_composite : detail::make_list::value> {}; }}} namespace boost { namespace spirit { namespace traits { template struct has_semantic_action > : binary_has_semantic_action {}; template struct has_semantic_action > : binary_has_semantic_action {}; }}} #endif