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https://github.com/monero-project/monero.git
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[fix] Network 1.8: unlimited the RPC connections
works for unit tests build, too
This commit is contained in:
parent
cbddb5f690
commit
9bfa593eee
6 changed files with 134 additions and 60 deletions
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@ -72,11 +72,6 @@ namespace net_utils
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virtual ~i_connection_filter(){}
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};
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enum t_server_role { // type of the server, e.g. so that we will know how to limit it
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NET = 0, // default (not used? used for misc connections maybe?) TODO
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RPC = 1, // the rpc commands
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P2P = 2 // to other p2p node
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};
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/************************************************************************/
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/* */
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@ -97,7 +92,8 @@ namespace net_utils
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typename t_protocol_handler::config_type& config,
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std::atomic<long> &ref_sock_count, // the ++/-- counter
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std::atomic<long> &sock_number, // the only increasing ++ number generator
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i_connection_filter * &pfilter);
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i_connection_filter * &pfilter
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,t_connection_type connection_type);
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virtual ~connection();
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/// Get the socket associated with the connection.
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@ -109,6 +105,12 @@ namespace net_utils
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void get_context(t_connection_context& context_){context_ = context;}
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void call_back_starter();
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void save_dbg_log();
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bool speed_limit_is_enabled() const; ///< tells us should we be sleeping here (e.g. do not sleep on RPC connections)
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private:
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//----------------- i_service_endpoint ---------------------
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virtual bool do_send(const void* ptr, size_t cb); ///< (see do_send from i_service_endpoint)
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@ -144,7 +146,7 @@ namespace net_utils
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critical_section m_self_refs_lock;
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critical_section m_chunking_lock; // held while we add small chunks of the big do_send() to small do_send_chunk()
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t_server_role m_connection_type;
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t_connection_type m_connection_type;
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// for calculate speed (last 60 sec)
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network_throttle m_throttle_speed_in;
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@ -153,7 +155,7 @@ namespace net_utils
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std::mutex m_throttle_speed_out_mutex;
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public:
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void setRPcStation();
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void setRpcStation();
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};
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@ -169,12 +171,14 @@ namespace net_utils
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typedef typename t_protocol_handler::connection_context t_connection_context;
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/// Construct the server to listen on the specified TCP address and port, and
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/// serve up files from the given directory.
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boosted_tcp_server();
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explicit boosted_tcp_server(boost::asio::io_service& external_io_service, t_server_role s_type);
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boosted_tcp_server(t_connection_type connection_type = e_connection_type_NET);
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explicit boosted_tcp_server(boost::asio::io_service& external_io_service, t_connection_type connection_type = e_connection_type_NET);
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~boosted_tcp_server();
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std::map<std::string, t_server_role> server_type_map;
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void create_server_type_map();
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std::map<std::string, t_connection_type> server_type_map;
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void create_server_type_map();
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bool init_server(uint32_t port, const std::string address = "0.0.0.0");
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bool init_server(const std::string port, const std::string& address = "0.0.0.0");
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@ -292,12 +296,16 @@ namespace net_utils
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boost::thread::id m_main_thread_id;
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critical_section m_threads_lock;
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volatile uint32_t m_thread_index; // TODO change to std::atomic
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t_server_role type;
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void detach_threads();
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t_connection_type m_connection_type;
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/// The next connection to be accepted
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connection_ptr new_connection_;
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}; // class <>boosted_tcp_server
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} // namespace
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} // namespace
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@ -71,16 +71,17 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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std::atomic<long> &ref_sock_count, // the ++/-- counter
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std::atomic<long> &sock_number, // the only increasing ++ number generator
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i_connection_filter* &pfilter
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,t_connection_type connection_type
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)
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:
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connection_basic(io_service, ref_sock_count, sock_number),
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m_protocol_handler(this, config, context),
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m_pfilter( pfilter ),
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m_connection_type(NET),
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m_connection_type( connection_type ),
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m_throttle_speed_in("speed_in", "throttle_speed_in"),
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m_throttle_speed_out("speed_out", "throttle_speed_out")
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{
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_info_c("net/sleepRPC", "connection constructor set m_connection_type="<<m_connection_type);
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_info_c("net/sleepRPC", "test, connection constructor set m_connection_type="<<m_connection_type);
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}
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PRAGMA_WARNING_DISABLE_VS(4355)
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//---------------------------------------------------------------------------------
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@ -239,6 +240,16 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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void connection<t_protocol_handler>::save_dbg_log()
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{
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_mark_c("net/kind" ,
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" connection type " << to_string( m_connection_type ) << " "
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<< socket_.local_endpoint().address().to_string() << ":" << socket_.local_endpoint().port()
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<< " <--> " << socket_.remote_endpoint().address().to_string() << ":" << socket_.remote_endpoint().port()
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);
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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void connection<t_protocol_handler>::handle_read(const boost::system::error_code& e,
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std::size_t bytes_transferred)
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{
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@ -253,25 +264,30 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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context.m_current_speed_down = m_throttle_speed_in.get_current_speed();
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}
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{
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{
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CRITICAL_REGION_LOCAL( epee::net_utils::network_throttle_manager::network_throttle_manager::m_lock_get_global_throttle_in );
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epee::net_utils::network_throttle_manager::network_throttle_manager::get_global_throttle_in().handle_trafic_exact(bytes_transferred * 1024);
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}
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double delay=0; // will be calculated
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do
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{
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{ //_scope_dbg1("CRITICAL_REGION_LOCAL");
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CRITICAL_REGION_LOCAL( epee::net_utils::network_throttle_manager::m_lock_get_global_throttle_in );
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delay = epee::net_utils::network_throttle_manager::get_global_throttle_in().get_sleep_time_after_tick( bytes_transferred ); // decission from global
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}
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delay *= 0.5;
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if (delay > 0) {
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long int ms = (long int)(delay * 100);
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epee::net_utils::data_logger::get_instance().add_data("sleep_down", ms);
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std::this_thread::sleep_for(std::chrono::milliseconds(ms));
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}
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} while(delay > 0);
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double delay=0; // will be calculated - how much we should sleep to obey speed limit etc
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if (speed_limit_is_enabled()) {
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do // keep sleeping if we should sleep
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{
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{ //_scope_dbg1("CRITICAL_REGION_LOCAL");
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CRITICAL_REGION_LOCAL( epee::net_utils::network_throttle_manager::m_lock_get_global_throttle_in );
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delay = epee::net_utils::network_throttle_manager::get_global_throttle_in().get_sleep_time_after_tick( bytes_transferred ); // decission from global throttle
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}
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delay *= 0.5;
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if (delay > 0) {
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long int ms = (long int)(delay * 100);
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epee::net_utils::data_logger::get_instance().add_data("sleep_down", ms);
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std::this_thread::sleep_for(std::chrono::milliseconds(ms));
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}
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} while(delay > 0);
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} // any form of sleeping
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//_info("[sock " << socket_.native_handle() << "] RECV " << bytes_transferred);
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logger_handle_net_read(bytes_transferred);
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@ -356,7 +372,7 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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typedef long long signed int t_safe; // my t_size to avoid any overunderflow in arithmetic
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const t_safe chunksize_good = (t_safe)( 1024 * std::max(1.0,factor) );
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const t_safe chunksize_max = chunksize_good * 2 ;
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const bool allow_split = (m_connection_type == RPC) ? false : true; // TODO config
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const bool allow_split = (m_connection_type == e_connection_type_RPC) ? false : true; // do not split RPC data
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ASRT(! (chunksize_max<0) ); // make sure it is unsigned before removin sign with cast:
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long long unsigned int chunksize_max_unsigned = static_cast<long long unsigned int>( chunksize_max ) ;
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@ -447,7 +463,10 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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//some data should be wrote to stream
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//request complete
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sleep_before_packet(cb, 1, 1);
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if (speed_limit_is_enabled()) {
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sleep_before_packet(cb, 1, 1);
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}
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epee::critical_region_t<decltype(m_send_que_lock)> send_guard(m_send_que_lock); // *** critical ***
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long int retry=0;
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const long int retry_limit = 5*4;
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@ -496,7 +515,8 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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auto size_now = m_send_que.front().size();
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_dbg1_c("net/out/size", "do_send() NOW SENSD: packet="<<size_now<<" B");
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do_send_handler_write( ptr , size_now ); // (((H)))
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if (speed_limit_is_enabled())
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do_send_handler_write( ptr , size_now ); // (((H)))
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ASRT( size_now == m_send_que.front().size() );
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boost::asio::async_write(socket_, boost::asio::buffer(m_send_que.front().data(), size_now ) ,
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@ -545,6 +565,7 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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return true;
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CATCH_ENTRY_L0("connection<t_protocol_handler>::close", false);
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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void connection<t_protocol_handler>::handle_write(const boost::system::error_code& e, size_t cb)
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@ -559,7 +580,11 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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return;
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}
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logger_handle_net_write(cb);
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sleep_before_packet(cb, 1, 1);
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if (speed_limit_is_enabled()) {
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sleep_before_packet(cb, 1, 1);
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}
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bool do_shutdown = false;
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CRITICAL_REGION_BEGIN(m_send_que_lock);
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if(m_send_que.empty())
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@ -580,7 +605,8 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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//have more data to send
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auto size_now = m_send_que.front().size();
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_dbg1_c("net/out/size", "handle_write() NOW SENDS: packet="<<size_now<<" B" <<", from queue size="<<m_send_que.size());
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do_send_handler_write_from_queue(e, m_send_que.front().size() , m_send_que.size()); // (((H)))
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if (speed_limit_is_enabled())
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do_send_handler_write_from_queue(e, m_send_que.front().size() , m_send_que.size()); // (((H)))
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ASRT( size_now == m_send_que.front().size() );
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boost::asio::async_write(socket_, boost::asio::buffer(m_send_que.front().data(), size_now) ,
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// strand_.wrap(
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@ -597,42 +623,52 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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}
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CATCH_ENTRY_L0("connection<t_protocol_handler>::handle_write", void());
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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void connection<t_protocol_handler>::setRPcStation()
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void connection<t_protocol_handler>::setRpcStation()
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{
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m_connection_type = RPC;
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_fact_c("net/sleepRPC", "set m_connection_type = RPC ");
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m_connection_type = e_connection_type_RPC;
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_fact_c("net/sleepRPC", "set m_connection_type = RPC ");
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_info_c("net/kind", "set m_connection_type = RPC ");
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}
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template<class t_protocol_handler>
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bool connection<t_protocol_handler>::speed_limit_is_enabled() const {
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return m_connection_type != e_connection_type_RPC ;
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}
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/************************************************************************/
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/* */
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/************************************************************************/
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template<class t_protocol_handler>
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boosted_tcp_server<t_protocol_handler>::boosted_tcp_server():
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boosted_tcp_server<t_protocol_handler>::boosted_tcp_server( t_connection_type connection_type ) :
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m_io_service_local_instance(new boost::asio::io_service()),
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io_service_(*m_io_service_local_instance.get()),
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acceptor_(io_service_),
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m_stop_signal_sent(false), m_port(0),
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m_sock_count(0), m_sock_number(0), m_threads_count(0),
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m_pfilter(NULL), m_thread_index(0),
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new_connection_(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter))
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m_connection_type( connection_type ),
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new_connection_(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter, m_connection_type))
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{
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create_server_type_map();
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m_thread_name_prefix = "NET";
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type = NET;
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}
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template<class t_protocol_handler>
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boosted_tcp_server<t_protocol_handler>::boosted_tcp_server(boost::asio::io_service& extarnal_io_service, t_server_role s_type):
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boosted_tcp_server<t_protocol_handler>::boosted_tcp_server(boost::asio::io_service& extarnal_io_service, t_connection_type connection_type) :
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io_service_(extarnal_io_service),
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acceptor_(io_service_),
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m_stop_signal_sent(false), m_port(0),
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m_sock_count(0), m_sock_number(0), m_threads_count(0),
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m_pfilter(NULL), m_thread_index(0),
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type(NET),
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new_connection_(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter))
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m_connection_type(connection_type),
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new_connection_(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter, connection_type))
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{
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create_server_type_map();
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create_server_type_map();
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m_thread_name_prefix = "NET";
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}
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//---------------------------------------------------------------------------------
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@ -646,9 +682,9 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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template<class t_protocol_handler>
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void boosted_tcp_server<t_protocol_handler>::create_server_type_map()
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{
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server_type_map["NET"] = t_server_role::NET;
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server_type_map["RPC"] = t_server_role::RPC;
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server_type_map["P2P"] = t_server_role::P2P;
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server_type_map["NET"] = e_connection_type_NET;
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server_type_map["RPC"] = e_connection_type_RPC;
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server_type_map["P2P"] = e_connection_type_P2P;
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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@ -668,6 +704,7 @@ PRAGMA_WARNING_DISABLE_VS(4355)
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acceptor_.listen();
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boost::asio::ip::tcp::endpoint binded_endpoint = acceptor_.local_endpoint();
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m_port = binded_endpoint.port();
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_fact_c("net/RPClog", "start accept");
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acceptor_.async_accept(new_connection_->socket(),
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boost::bind(&boosted_tcp_server<t_protocol_handler>::handle_accept, this,
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boost::asio::placeholders::error));
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@ -724,9 +761,11 @@ POP_WARNINGS
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void boosted_tcp_server<t_protocol_handler>::set_threads_prefix(const std::string& prefix_name)
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{
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m_thread_name_prefix = prefix_name;
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type = server_type_map[m_thread_name_prefix];
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_note("Set server type to: " << type);
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_note("Set server type to: " << m_thread_name_prefix);
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auto it = server_type_map.find(m_thread_name_prefix);
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if (it==server_type_map.end()) throw std::runtime_error("Unknown prefix/server type:" + std::string(prefix_name));
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auto connection_type = it->second; // the value of type
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_info_c("net/RPClog", "Set server type to: " << connection_type << " from name: " << m_thread_name_prefix);
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_info_c("net/RPClog", "prefix_name = " << prefix_name);
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}
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//---------------------------------------------------------------------------------
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template<class t_protocol_handler>
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@ -845,15 +884,17 @@ POP_WARNINGS
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template<class t_protocol_handler>
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void boosted_tcp_server<t_protocol_handler>::handle_accept(const boost::system::error_code& e)
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{
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_fact_c("net/RPClog", "handle_accept");
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TRY_ENTRY();
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if (!e)
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{
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if (type == RPC) {
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new_connection_->setRPcStation();
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_note("New server for RPC connections");
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if (m_connection_type == e_connection_type_RPC) {
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_note_c("net/rpc", "New server for RPC connections");
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_fact_c("net/RPClog", "New server for RPC connections");
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new_connection_->setRpcStation(); // hopefully this is not needed actually
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}
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connection_ptr conn(std::move(new_connection_));
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new_connection_.reset(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter));
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new_connection_.reset(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter, m_connection_type));
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acceptor_.async_accept(new_connection_->socket(),
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boost::bind(&boosted_tcp_server<t_protocol_handler>::handle_accept, this,
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boost::asio::placeholders::error));
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@ -861,6 +902,7 @@ POP_WARNINGS
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bool r = conn->start(true, 1 < m_threads_count);
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if (!r)
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_erro("[sock " << conn->socket().native_handle() << "] Failed to start connection, connections_count = " << m_sock_count);
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conn->save_dbg_log();
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}else
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{
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_erro("Some problems at accept: " << e.message() << ", connections_count = " << m_sock_count);
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@ -873,7 +915,7 @@ POP_WARNINGS
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{
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TRY_ENTRY();
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connection_ptr new_connection_l(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter) );
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connection_ptr new_connection_l(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter, m_connection_type) );
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boost::asio::ip::tcp::socket& sock_ = new_connection_l->socket();
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//////////////////////////////////////////////////////////////////////////
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||||
|
@ -953,6 +995,8 @@ POP_WARNINGS
|
|||
{
|
||||
_erro("[sock " << new_connection_->socket().native_handle() << "] Failed to start connection, connections_count = " << m_sock_count);
|
||||
}
|
||||
|
||||
new_connection_l->save_dbg_log();
|
||||
|
||||
return r;
|
||||
|
||||
|
@ -963,7 +1007,7 @@ POP_WARNINGS
|
|||
bool boosted_tcp_server<t_protocol_handler>::connect_async(const std::string& adr, const std::string& port, uint32_t conn_timeout, t_callback cb, const std::string& bind_ip)
|
||||
{
|
||||
TRY_ENTRY();
|
||||
connection_ptr new_connection_l(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter) );
|
||||
connection_ptr new_connection_l(new connection<t_protocol_handler>(io_service_, m_config, m_sock_count, m_sock_number, m_pfilter, m_connection_type) );
|
||||
boost::asio::ip::tcp::socket& sock_ = new_connection_l->socket();
|
||||
|
||||
//////////////////////////////////////////////////////////////////////////
|
||||
|
|
|
@ -45,7 +45,7 @@ namespace epee
|
|||
|
||||
public:
|
||||
http_server_impl_base()
|
||||
: m_net_server()
|
||||
: m_net_server(epee::net_utils::e_connection_type_RPC)
|
||||
{}
|
||||
|
||||
explicit http_server_impl_base(boost::asio::io_service& external_io_service)
|
||||
|
@ -75,6 +75,7 @@ namespace epee
|
|||
{
|
||||
//go to loop
|
||||
LOG_PRINT("Run net_service loop( " << threads_count << " threads)...", LOG_LEVEL_0);
|
||||
_fact_c("net/RPClog", "Run net_service loop( " << threads_count << " threads)...");
|
||||
if(!m_net_server.run_server(threads_count, wait))
|
||||
{
|
||||
LOG_ERROR("Failed to run net tcp server!");
|
||||
|
|
|
@ -94,6 +94,18 @@ namespace epee
|
|||
namespace net_utils
|
||||
{
|
||||
|
||||
std::string to_string(t_connection_type type)
|
||||
{
|
||||
if (type == e_connection_type_NET)
|
||||
return std::string("NET");
|
||||
else if (type == e_connection_type_RPC)
|
||||
return std::string("RPC");
|
||||
else if (type == e_connection_type_P2P)
|
||||
return std::string("P2P");
|
||||
|
||||
return std::string("UNKNOWN");
|
||||
}
|
||||
|
||||
|
||||
/* ============================================================================ */
|
||||
|
||||
|
|
|
@ -75,6 +75,14 @@ namespace net_utils
|
|||
|
||||
class connection_basic_pimpl; // PIMPL for this class
|
||||
|
||||
enum t_connection_type { // type of the connection (of this server), e.g. so that we will know how to limit it
|
||||
e_connection_type_NET = 0, // default (not used?)
|
||||
e_connection_type_RPC = 1, // the rpc commands (probably not rate limited, not chunked, etc)
|
||||
e_connection_type_P2P = 2 // to other p2p node (probably limited)
|
||||
};
|
||||
|
||||
std::string to_string(t_connection_type type);
|
||||
|
||||
class connection_basic { // not-templated base class for rapid developmet of some code parts
|
||||
public:
|
||||
std::unique_ptr< connection_basic_pimpl > mI; // my Implementation
|
||||
|
|
|
@ -84,7 +84,8 @@ namespace nodetool
|
|||
:m_payload_handler(payload_handler),
|
||||
m_allow_local_ip(false),
|
||||
m_no_igd(false),
|
||||
m_hide_my_port(false)
|
||||
m_hide_my_port(false),
|
||||
m_net_server( epee::net_utils::e_connection_type_P2P ) // this is a P2P connection of the main p2p node server, because this is class node_server<>
|
||||
{
|
||||
m_current_number_of_out_peers = 0;
|
||||
m_save_graph = false;
|
||||
|
|
Loading…
Reference in a new issue