/*============================================================================= Boost.Wave: A Standard compliant C++ preprocessor library Definition of the lexer iterator http://www.boost.org/ Copyright (c) 2001-2012 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(CPP_LEX_ITERATOR_HPP_AF0C37E3_CBD8_4F33_A225_51CF576FA61F_INCLUDED) #define CPP_LEX_ITERATOR_HPP_AF0C37E3_CBD8_4F33_A225_51CF576FA61F_INCLUDED #include #include #include #include #include #include #include #include #include // this must occur after all of the includes and before any code appears #ifdef BOOST_HAS_ABI_HEADERS #include BOOST_ABI_PREFIX #endif #if 0 != __COMO_VERSION__ || !BOOST_WORKAROUND(BOOST_MSVC, <= 1310) #define BOOST_WAVE_EOF_PREFIX static #else #define BOOST_WAVE_EOF_PREFIX #endif /////////////////////////////////////////////////////////////////////////////// namespace boost { namespace wave { namespace cpplexer { namespace impl { /////////////////////////////////////////////////////////////////////////////// // // lex_iterator_functor_shim // /////////////////////////////////////////////////////////////////////////////// template class lex_iterator_functor_shim { typedef typename TokenT::position_type position_type; public: lex_iterator_functor_shim() #if /*0 != __DECCXX_VER || */defined(__PGI) : eof() #endif {} #if BOOST_WORKAROUND(BOOST_MSVC, <= 1310) lex_iterator_functor_shim& operator= (lex_iterator_functor_shim const& rhs) { return *this; } // nothing to do here #endif // interface to the iterator_policies::split_functor_input policy typedef TokenT result_type; typedef lex_iterator_functor_shim unique; typedef lex_input_interface* shared; BOOST_WAVE_EOF_PREFIX result_type const eof; template static result_type& get_next(MultiPass& mp, result_type& result) { return mp.shared()->ftor->get(result); } // this will be called whenever the last reference to a multi_pass will // be released template static void destroy(MultiPass& mp) { delete mp.shared()->ftor; } template static void set_position(MultiPass& mp, position_type const &pos) { mp.shared()->ftor->set_position(pos); } #if BOOST_WAVE_SUPPORT_PRAGMA_ONCE != 0 template static bool has_include_guards(MultiPass& mp, std::string& guard_name) { return mp.shared()->ftor->has_include_guards(guard_name); } #endif }; /////////////////////////////////////////////////////////////////////////////// // eof token #if 0 != __COMO_VERSION__ || !BOOST_WORKAROUND(BOOST_MSVC, <= 1310) template typename lex_iterator_functor_shim::result_type const lex_iterator_functor_shim::eof; #endif // 0 != __COMO_VERSION__ /////////////////////////////////////////////////////////////////////////////// } // namespace impl /////////////////////////////////////////////////////////////////////////////// // // lex_iterator // // A generic C++ lexer interface class, which allows to plug in different // lexer implementations. The interface between the lexer type used and // the preprocessor component depends on the token type only (template // parameter TokenT). // Additionally, the following requirements apply: // // - the lexer type should have a function implemented, which returnes // the next lexed token from the input stream: // typename TokenT get(); // - at the end of the input stream this function should return the // eof token equivalent // - the lexer should implement a constructor taking two iterators // pointing to the beginning and the end of the input stream, // a third parameter containing the name of the parsed input file // and a 4th parameter of the type boost::wave::language_support // which specifies, which language subset should be supported (C++, // C99, C++11 etc.). // /////////////////////////////////////////////////////////////////////////////// /////////////////////////////////////////////////////////////////////////////// // Divide the given functor type into its components (unique and shared) // and build a std::pair from these parts template struct make_multi_pass { typedef std::pair functor_data_type; typedef typename FunctorData::result_type result_type; typedef boost::spirit::iterator_policies::split_functor_input input_policy; typedef boost::spirit::iterator_policies::ref_counted ownership_policy; #if defined(BOOST_WAVE_DEBUG) typedef boost::spirit::iterator_policies::buf_id_check check_policy; #else typedef boost::spirit::iterator_policies::no_check check_policy; #endif typedef boost::spirit::iterator_policies::split_std_deque storage_policy; typedef boost::spirit::iterator_policies::default_policy< ownership_policy, check_policy, input_policy, storage_policy> policy_type; typedef boost::spirit::multi_pass type; }; /////////////////////////////////////////////////////////////////////////////// template class lex_iterator : public make_multi_pass >::type { typedef impl::lex_iterator_functor_shim input_policy_type; typedef typename make_multi_pass::type base_type; typedef typename make_multi_pass::functor_data_type functor_data_type; typedef typename input_policy_type::unique unique_functor_type; typedef typename input_policy_type::shared shared_functor_type; public: typedef TokenT token_type; lex_iterator() {} template lex_iterator(IteratorT const &first, IteratorT const &last, typename TokenT::position_type const &pos, boost::wave::language_support language) : base_type( functor_data_type( unique_functor_type(), lex_input_interface_generator ::new_lexer(first, last, pos, language) ) ) {} void set_position(typename TokenT::position_type const &pos) { typedef typename TokenT::position_type position_type; // set the new position in the current token token_type const& currtoken = this->base_type::dereference(*this); position_type currpos = currtoken.get_position(); currpos.set_file(pos.get_file()); currpos.set_line(pos.get_line()); const_cast(currtoken).set_position(currpos); // set the new position for future tokens as well if (token_type::string_type::npos != currtoken.get_value().find_first_of('\n')) { currpos.set_line(pos.get_line() + 1); } unique_functor_type::set_position(*this, currpos); } #if BOOST_WAVE_SUPPORT_PRAGMA_ONCE != 0 // return, whether the current file has include guards // this function returns meaningful results only if the file was scanned // completely bool has_include_guards(std::string& guard_name) const { return unique_functor_type::has_include_guards(*this, guard_name); } #endif }; /////////////////////////////////////////////////////////////////////////////// } // namespace cpplexer } // namespace wave } // namespace boost // the suffix header occurs after all of the code #ifdef BOOST_HAS_ABI_HEADERS #include BOOST_ABI_SUFFIX #endif #undef BOOST_WAVE_EOF_PREFIX #endif // !defined(CPP_LEX_ITERATOR_HPP_AF0C37E3_CBD8_4F33_A225_51CF576FA61F_INCLUDED)