Merge pull request #2073
07c4276c
Don't issue a new timedsync while one is already in progress (Howard Chu)cf3a376c
Don't timeout a slow operation that's making progress (Howard Chu)340830de
Fix PR#2039 (Howard Chu)
This commit is contained in:
commit
f31b89012d
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@ -42,6 +42,10 @@
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#undef MONERO_DEFAULT_LOG_CATEGORY
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#define MONERO_DEFAULT_LOG_CATEGORY "net"
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#ifndef MIN_BYTES_WANTED
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#define MIN_BYTES_WANTED 512
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#endif
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namespace epee
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{
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namespace levin
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@ -139,26 +143,23 @@ public:
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virtual bool is_timer_started() const=0;
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virtual void cancel()=0;
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virtual bool cancel_timer()=0;
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virtual void reset_timer()=0;
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virtual void timeout_handler(const boost::system::error_code& error)=0;
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};
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template <class callback_t>
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struct anvoke_handler: invoke_response_handler_base
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{
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anvoke_handler(const callback_t& cb, uint64_t timeout, async_protocol_handler& con, int command)
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:m_cb(cb), m_con(con), m_timer(con.m_pservice_endpoint->get_io_service()), m_timer_started(false),
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:m_cb(cb), m_timeout(timeout), m_con(con), m_timer(con.m_pservice_endpoint->get_io_service()), m_timer_started(false),
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m_cancel_timer_called(false), m_timer_cancelled(false), m_command(command)
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{
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if(m_con.start_outer_call())
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{
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MDEBUG(con.get_context_ref() << "anvoke_handler, timeout: " << timeout);
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m_timer.expires_from_now(boost::posix_time::milliseconds(timeout));
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m_timer.async_wait([&con, command, cb](const boost::system::error_code& ec)
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m_timer.async_wait([this](const boost::system::error_code& ec)
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{
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if(ec == boost::asio::error::operation_aborted)
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return;
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MINFO(con.get_context_ref() << "Timeout on invoke operation happened, command: " << command);
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std::string fake;
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cb(LEVIN_ERROR_CONNECTION_TIMEDOUT, fake, con.get_context_ref());
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con.close();
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con.finish_outer_call();
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timeout_handler(ec);
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});
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m_timer_started = true;
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}
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@ -171,7 +172,18 @@ public:
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bool m_timer_started;
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bool m_cancel_timer_called;
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bool m_timer_cancelled;
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uint64_t m_timeout;
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int m_command;
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virtual void timeout_handler(const boost::system::error_code& error)
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{
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if(error == boost::asio::error::operation_aborted)
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return;
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MINFO(m_con.get_context_ref() << "Timeout on invoke operation happened, command: " << m_command << " timeout: " << m_timeout);
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std::string fake;
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m_cb(LEVIN_ERROR_CONNECTION_TIMEDOUT, fake, m_con.get_context_ref());
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m_con.close();
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m_con.finish_outer_call();
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}
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virtual bool handle(int res, const std::string& buff, typename async_protocol_handler::connection_context& context)
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{
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if(!cancel_timer())
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@ -203,6 +215,18 @@ public:
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}
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return m_timer_cancelled;
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}
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virtual void reset_timer()
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{
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boost::system::error_code ignored_ec;
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if (!m_cancel_timer_called && m_timer.cancel(ignored_ec) > 0)
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{
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m_timer.expires_from_now(boost::posix_time::milliseconds(m_timeout));
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m_timer.async_wait([this](const boost::system::error_code& ec)
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{
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timeout_handler(ec);
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});
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}
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}
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};
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critical_section m_invoke_response_handlers_lock;
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std::list<boost::shared_ptr<invoke_response_handler_base> > m_invoke_response_handlers;
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@ -342,6 +366,13 @@ public:
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if(m_cache_in_buffer.size() < m_current_head.m_cb)
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{
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is_continue = false;
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if(cb >= MIN_BYTES_WANTED && !m_invoke_response_handlers.empty())
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{
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//async call scenario
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boost::shared_ptr<invoke_response_handler_base> response_handler = m_invoke_response_handlers.front();
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response_handler->reset_timer();
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MDEBUG(m_connection_context << "LEVIN_PACKET partial msg received. len=" << cb);
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}
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break;
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}
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{
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@ -595,9 +626,15 @@ public:
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<< ", ver=" << head.m_protocol_version);
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uint64_t ticks_start = misc_utils::get_tick_count();
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size_t prev_size = 0;
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while(!boost::interprocess::ipcdetail::atomic_read32(&m_invoke_buf_ready) && !m_deletion_initiated && !m_protocol_released)
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{
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if(m_cache_in_buffer.size() - prev_size >= MIN_BYTES_WANTED)
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{
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prev_size = m_cache_in_buffer.size();
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ticks_start = misc_utils::get_tick_count();
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}
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if(misc_utils::get_tick_count() - ticks_start > m_config.m_invoke_timeout)
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{
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MWARNING(m_connection_context << "invoke timeout (" << m_config.m_invoke_timeout << "), closing connection ");
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@ -156,6 +156,7 @@ namespace net_utils
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const network_address m_remote_address;
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const bool m_is_income;
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const time_t m_started;
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bool m_in_timedsync;
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time_t m_last_recv;
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time_t m_last_send;
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uint64_t m_recv_cnt;
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@ -171,6 +172,7 @@ namespace net_utils
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m_remote_address(remote_address),
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m_is_income(is_income),
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m_started(time(NULL)),
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m_in_timedsync(false),
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m_last_recv(last_recv),
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m_last_send(last_send),
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m_recv_cnt(recv_cnt),
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@ -183,6 +185,7 @@ namespace net_utils
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m_remote_address(new ipv4_network_address(0,0)),
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m_is_income(false),
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m_started(time(NULL)),
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m_in_timedsync(false),
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m_last_recv(0),
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m_last_send(0),
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m_recv_cnt(0),
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@ -812,6 +812,7 @@ namespace nodetool
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bool r = epee::net_utils::async_invoke_remote_command2<typename COMMAND_TIMED_SYNC::response>(context_.m_connection_id, COMMAND_TIMED_SYNC::ID, arg, m_net_server.get_config_object(),
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[this](int code, const typename COMMAND_TIMED_SYNC::response& rsp, p2p_connection_context& context)
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{
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context.m_in_timedsync = false;
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if(code < 0)
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{
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LOG_ERROR_CC(context, "COMMAND_TIMED_SYNC invoke failed. (" << code << ", " << epee::levin::get_err_descr(code) << ")");
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@ -1295,10 +1296,13 @@ namespace nodetool
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MDEBUG("STARTED PEERLIST IDLE HANDSHAKE");
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typedef std::list<std::pair<epee::net_utils::connection_context_base, peerid_type> > local_connects_type;
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local_connects_type cncts;
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m_net_server.get_config_object().foreach_connection([&](const p2p_connection_context& cntxt)
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m_net_server.get_config_object().foreach_connection([&](p2p_connection_context& cntxt)
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{
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if(cntxt.peer_id)
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if(cntxt.peer_id && !cntxt.m_in_timedsync)
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{
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cntxt.m_in_timedsync = true;
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cncts.push_back(local_connects_type::value_type(cntxt, cntxt.peer_id));//do idle sync only with handshaked connections
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}
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return true;
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});
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