// // Copyright (c) 2016-2017 Vinnie Falco (vinnie dot falco at gmail dot com) // // 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) // // Official repository: https://github.com/boostorg/beast // #ifndef BOOST_BEAST_HTTP_STRING_BODY_HPP #define BOOST_BEAST_HTTP_STRING_BODY_HPP #include #include #include #include #include #include #include #include #include #include #include #include namespace boost { namespace beast { namespace http { /** A @b Body using `std::basic_string` This body uses `std::basic_string` as a memory-based container for holding message payloads. Messages using this body type may be serialized and parsed. */ template< class CharT, class Traits = std::char_traits, class Allocator = std::allocator> struct basic_string_body { private: static_assert( std::is_integral::value && sizeof(CharT) == 1, "CharT requirements not met"); public: /** The type of container used for the body This determines the type of @ref message::body when this body type is used with a message container. */ using value_type = std::basic_string; /** Returns the payload size of the body When this body is used with @ref message::prepare_payload, the Content-Length will be set to the payload size, and any chunked Transfer-Encoding will be removed. */ static std::uint64_t size(value_type const& body) { return body.size(); } /** The algorithm for parsing the body Meets the requirements of @b BodyReader. */ #if BOOST_BEAST_DOXYGEN using reader = implementation_defined; #else class reader { value_type& body_; public: template explicit reader(message& m) : body_(m.body()) { } void init(boost::optional< std::uint64_t> const& length, error_code& ec) { if(length) { if(static_cast(*length) != *length) { ec = error::buffer_overflow; return; } try { body_.reserve( static_cast(*length)); } catch(std::exception const&) { ec = error::buffer_overflow; return; } } ec.assign(0, ec.category()); } template std::size_t put(ConstBufferSequence const& buffers, error_code& ec) { using boost::asio::buffer_size; using boost::asio::buffer_copy; auto const extra = buffer_size(buffers); auto const size = body_.size(); try { body_.resize(size + extra); } catch(std::exception const&) { ec = error::buffer_overflow; return 0; } ec.assign(0, ec.category()); CharT* dest = &body_[size]; for(auto b : beast::detail::buffers_range(buffers)) { Traits::copy(dest, reinterpret_cast< CharT const*>(b.data()), b.size()); dest += b.size(); } return extra; } void finish(error_code& ec) { ec.assign(0, ec.category()); } }; #endif /** The algorithm for serializing the body Meets the requirements of @b BodyWriter. */ #if BOOST_BEAST_DOXYGEN using writer = implementation_defined; #else class writer { value_type const& body_; public: using const_buffers_type = boost::asio::const_buffer; template explicit writer(message const& msg) : body_(msg.body()) { } void init(error_code& ec) { ec.assign(0, ec.category()); } boost::optional> get(error_code& ec) { ec.assign(0, ec.category()); return {{const_buffers_type{ body_.data(), body_.size()}, false}}; } }; #endif }; /// A @b Body using `std::string` using string_body = basic_string_body; } // http } // beast } // boost #endif