#include #include #include #include #include #include #include #include #include #include "handler.hpp" using boost::asio::awaitable; using boost::asio::co_spawn; using boost::asio::deferred; using boost::asio::detached; using boost::asio::ip::tcp; namespace this_coro = boost::asio::this_coro; awaitable dofinger(const std::string &username) { co_return process(username); //co_return std::string("this is some finger information for ") + username + std::string("\r\n"); } awaitable echo(tcp::socket socket) { try { char data[1024]; co_await socket.async_read_some(boost::asio::buffer(data), deferred); auto response = co_await dofinger(std::string(data)); co_await async_write(socket, boost::asio::buffer(response), deferred); co_return; } catch (std::exception &e) { std::printf("echo Exception: %s\n", e.what()); } } awaitable listener() { auto executor = co_await this_coro::executor; tcp::acceptor acceptor(executor, {tcp::v4(), 79}); for (;;) { tcp::socket socket = co_await acceptor.async_accept(deferred); co_spawn(executor, echo(std::move(socket)), detached); } } int main() { try { boost::asio::io_context io_context(1); boost::asio::signal_set signals(io_context, SIGINT, SIGTERM); signals.async_wait([&](auto, auto) { io_context.stop(); }); co_spawn(io_context, listener(), detached); io_context.run(); } catch (std::exception &e) { std::printf("Exception: %s\n", e.what()); } }