protocol: add scoring system to drop peers that don't behave
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4f401f6fca
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@ -43,7 +43,7 @@ namespace cryptonote
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{
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{
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cryptonote_connection_context(): m_state(state_before_handshake), m_remote_blockchain_height(0), m_last_response_height(0),
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cryptonote_connection_context(): m_state(state_before_handshake), m_remote_blockchain_height(0), m_last_response_height(0),
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m_last_request_time(boost::date_time::not_a_date_time), m_callback_request_count(0),
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m_last_request_time(boost::date_time::not_a_date_time), m_callback_request_count(0),
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m_last_known_hash(crypto::null_hash), m_pruning_seed(0), m_rpc_port(0), m_rpc_credits_per_hash(0), m_anchor(false) {}
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m_last_known_hash(crypto::null_hash), m_pruning_seed(0), m_rpc_port(0), m_rpc_credits_per_hash(0), m_anchor(false), m_score(0) {}
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enum state
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enum state
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{
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{
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@ -66,7 +66,7 @@ namespace cryptonote
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uint16_t m_rpc_port;
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uint16_t m_rpc_port;
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uint32_t m_rpc_credits_per_hash;
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uint32_t m_rpc_credits_per_hash;
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bool m_anchor;
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bool m_anchor;
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//size_t m_score; TODO: add score calculations
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int32_t m_score;
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};
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};
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inline std::string get_protocol_state_string(cryptonote_connection_context::state s)
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inline std::string get_protocol_state_string(cryptonote_connection_context::state s)
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@ -148,6 +148,7 @@ namespace cryptonote
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void notify_new_stripe(cryptonote_connection_context &context, uint32_t stripe);
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void notify_new_stripe(cryptonote_connection_context &context, uint32_t stripe);
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void skip_unneeded_hashes(cryptonote_connection_context& context, bool check_block_queue) const;
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void skip_unneeded_hashes(cryptonote_connection_context& context, bool check_block_queue) const;
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bool request_txpool_complement(cryptonote_connection_context &context);
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bool request_txpool_complement(cryptonote_connection_context &context);
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void hit_score(cryptonote_connection_context &context, int32_t score);
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t_core& m_core;
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t_core& m_core;
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@ -163,6 +164,7 @@ namespace cryptonote
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epee::math_helper::once_a_time_seconds<30> m_idle_peer_kicker;
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epee::math_helper::once_a_time_seconds<30> m_idle_peer_kicker;
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epee::math_helper::once_a_time_milliseconds<100> m_standby_checker;
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epee::math_helper::once_a_time_milliseconds<100> m_standby_checker;
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epee::math_helper::once_a_time_seconds<101> m_sync_search_checker;
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epee::math_helper::once_a_time_seconds<101> m_sync_search_checker;
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epee::math_helper::once_a_time_seconds<43> m_bad_peer_checker;
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std::atomic<unsigned int> m_max_out_peers;
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std::atomic<unsigned int> m_max_out_peers;
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tools::PerformanceTimer m_sync_timer, m_add_timer;
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tools::PerformanceTimer m_sync_timer, m_add_timer;
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uint64_t m_last_add_end_time;
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uint64_t m_last_add_end_time;
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@ -183,6 +185,8 @@ namespace cryptonote
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double get_avg_block_size();
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double get_avg_block_size();
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boost::circular_buffer<size_t> m_avg_buffer = boost::circular_buffer<size_t>(10);
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boost::circular_buffer<size_t> m_avg_buffer = boost::circular_buffer<size_t>(10);
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boost::mutex m_bad_peer_check_lock;
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template<class t_parameter>
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template<class t_parameter>
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bool post_notify(typename t_parameter::request& arg, cryptonote_connection_context& context)
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bool post_notify(typename t_parameter::request& arg, cryptonote_connection_context& context)
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{
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{
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@ -68,10 +68,11 @@
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#define BLOCK_QUEUE_FORCE_DOWNLOAD_NEAR_BLOCKS 1000
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#define BLOCK_QUEUE_FORCE_DOWNLOAD_NEAR_BLOCKS 1000
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#define REQUEST_NEXT_SCHEDULED_SPAN_THRESHOLD_STANDBY (5 * 1000000) // microseconds
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#define REQUEST_NEXT_SCHEDULED_SPAN_THRESHOLD_STANDBY (5 * 1000000) // microseconds
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#define REQUEST_NEXT_SCHEDULED_SPAN_THRESHOLD (30 * 1000000) // microseconds
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#define REQUEST_NEXT_SCHEDULED_SPAN_THRESHOLD (30 * 1000000) // microseconds
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#define IDLE_PEER_KICK_TIME (600 * 1000000) // microseconds
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#define IDLE_PEER_KICK_TIME (240 * 1000000) // microseconds
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#define PASSIVE_PEER_KICK_TIME (60 * 1000000) // microseconds
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#define PASSIVE_PEER_KICK_TIME (60 * 1000000) // microseconds
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#define DROP_ON_SYNC_WEDGE_THRESHOLD (30 * 1000000000ull) // nanoseconds
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#define DROP_ON_SYNC_WEDGE_THRESHOLD (30 * 1000000000ull) // nanoseconds
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#define LAST_ACTIVITY_STALL_THRESHOLD (2.0f) // seconds
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#define LAST_ACTIVITY_STALL_THRESHOLD (2.0f) // seconds
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#define DROP_PEERS_ON_SCORE -2
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namespace cryptonote
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namespace cryptonote
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{
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{
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@ -142,6 +143,7 @@ namespace cryptonote
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m_core.get_short_chain_history(r.block_ids);
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m_core.get_short_chain_history(r.block_ids);
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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r.prune = m_sync_pruned_blocks;
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r.prune = m_sync_pruned_blocks;
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context.m_last_request_time = boost::posix_time::microsec_clock::universal_time();
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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MLOG_PEER_STATE("requesting chain");
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MLOG_PEER_STATE("requesting chain");
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@ -427,7 +429,7 @@ namespace cryptonote
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template<class t_core>
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template<class t_core>
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int t_cryptonote_protocol_handler<t_core>::handle_notify_new_block(int command, NOTIFY_NEW_BLOCK::request& arg, cryptonote_connection_context& context)
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int t_cryptonote_protocol_handler<t_core>::handle_notify_new_block(int command, NOTIFY_NEW_BLOCK::request& arg, cryptonote_connection_context& context)
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{
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{
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, "Received NOTIFY_NEW_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, context << "Received NOTIFY_NEW_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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if(context.m_state != cryptonote_connection_context::state_normal)
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if(context.m_state != cryptonote_connection_context::state_normal)
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return 1;
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return 1;
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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@ -487,6 +489,7 @@ namespace cryptonote
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m_core.get_short_chain_history(r.block_ids);
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m_core.get_short_chain_history(r.block_ids);
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r.prune = m_sync_pruned_blocks;
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r.prune = m_sync_pruned_blocks;
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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context.m_last_request_time = boost::posix_time::microsec_clock::universal_time();
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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MLOG_PEER_STATE("requesting chain");
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MLOG_PEER_STATE("requesting chain");
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@ -498,7 +501,7 @@ namespace cryptonote
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template<class t_core>
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template<class t_core>
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int t_cryptonote_protocol_handler<t_core>::handle_notify_new_fluffy_block(int command, NOTIFY_NEW_FLUFFY_BLOCK::request& arg, cryptonote_connection_context& context)
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int t_cryptonote_protocol_handler<t_core>::handle_notify_new_fluffy_block(int command, NOTIFY_NEW_FLUFFY_BLOCK::request& arg, cryptonote_connection_context& context)
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{
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{
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, "Received NOTIFY_NEW_FLUFFY_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, context << "Received NOTIFY_NEW_FLUFFY_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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if(context.m_state != cryptonote_connection_context::state_normal)
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if(context.m_state != cryptonote_connection_context::state_normal)
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return 1;
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return 1;
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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@ -765,6 +768,7 @@ namespace cryptonote
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m_core.get_short_chain_history(r.block_ids);
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m_core.get_short_chain_history(r.block_ids);
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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handler_request_blocks_history( r.block_ids ); // change the limit(?), sleep(?)
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r.prune = m_sync_pruned_blocks;
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r.prune = m_sync_pruned_blocks;
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context.m_last_request_time = boost::posix_time::microsec_clock::universal_time();
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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MLOG_P2P_MESSAGE("-->>NOTIFY_REQUEST_CHAIN: m_block_ids.size()=" << r.block_ids.size() );
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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post_notify<NOTIFY_REQUEST_CHAIN>(r, context);
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MLOG_PEER_STATE("requesting chain");
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MLOG_PEER_STATE("requesting chain");
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@ -1029,6 +1033,7 @@ namespace cryptonote
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drop_connection(context, false, false);
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drop_connection(context, false, false);
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return 1;
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return 1;
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}
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}
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context.m_last_request_time = boost::posix_time::microsec_clock::universal_time();
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MLOG_P2P_MESSAGE("-->>NOTIFY_RESPONSE_GET_OBJECTS: blocks.size()="
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MLOG_P2P_MESSAGE("-->>NOTIFY_RESPONSE_GET_OBJECTS: blocks.size()="
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<< rsp.blocks.size() << ", rsp.m_current_blockchain_height=" << rsp.current_blockchain_height
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<< rsp.blocks.size() << ", rsp.m_current_blockchain_height=" << rsp.current_blockchain_height
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<< ", missed_ids.size()=" << rsp.missed_ids.size());
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<< ", missed_ids.size()=" << rsp.missed_ids.size());
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@ -1666,6 +1671,7 @@ skip:
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bool t_cryptonote_protocol_handler<t_core>::kick_idle_peers()
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bool t_cryptonote_protocol_handler<t_core>::kick_idle_peers()
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{
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{
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MTRACE("Checking for idle peers...");
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MTRACE("Checking for idle peers...");
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std::vector<boost::uuids::uuid> idle_peers;
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m_p2p->for_each_connection([&](cryptonote_connection_context& context, nodetool::peerid_type peer_id, uint32_t support_flags)->bool
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m_p2p->for_each_connection([&](cryptonote_connection_context& context, nodetool::peerid_type peer_id, uint32_t support_flags)->bool
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{
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{
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if (context.m_state == cryptonote_connection_context::state_synchronizing && context.m_last_request_time != boost::date_time::not_a_date_time)
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if (context.m_state == cryptonote_connection_context::state_synchronizing && context.m_last_request_time != boost::date_time::not_a_date_time)
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@ -1673,6 +1679,8 @@ skip:
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const boost::posix_time::ptime now = boost::posix_time::microsec_clock::universal_time();
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const boost::posix_time::ptime now = boost::posix_time::microsec_clock::universal_time();
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const boost::posix_time::time_duration dt = now - context.m_last_request_time;
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const boost::posix_time::time_duration dt = now - context.m_last_request_time;
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if (dt.total_microseconds() > IDLE_PEER_KICK_TIME)
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if (dt.total_microseconds() > IDLE_PEER_KICK_TIME)
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{
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if (context.m_score-- >= 0)
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{
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{
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MINFO(context << " kicking idle peer, last update " << (dt.total_microseconds() / 1.e6) << " seconds ago");
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MINFO(context << " kicking idle peer, last update " << (dt.total_microseconds() / 1.e6) << " seconds ago");
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LOG_PRINT_CCONTEXT_L2("requesting callback");
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LOG_PRINT_CCONTEXT_L2("requesting callback");
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@ -1681,9 +1689,25 @@ skip:
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++context.m_callback_request_count;
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++context.m_callback_request_count;
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m_p2p->request_callback(context);
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m_p2p->request_callback(context);
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}
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}
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else
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{
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idle_peers.push_back(context.m_connection_id);
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}
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}
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}
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}
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return true;
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return true;
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});
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});
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for (const auto &uuid: idle_peers)
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{
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if (!m_p2p->for_connection(uuid, [&](cryptonote_connection_context& ctx, nodetool::peerid_type peer_id, uint32_t f)->bool{
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MINFO(ctx << "dropping idle peer with negative score");
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drop_connection(ctx, true, false);
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return true;
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}))
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MDEBUG("Failed to find peer we wanted to drop");
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}
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return true;
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return true;
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}
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}
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//------------------------------------------------------------------------------------------------------------------------
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//------------------------------------------------------------------------------------------------------------------------
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}
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}
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//------------------------------------------------------------------------------------------------------------------------
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//------------------------------------------------------------------------------------------------------------------------
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template<class t_core>
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template<class t_core>
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void t_cryptonote_protocol_handler<t_core>::hit_score(cryptonote_connection_context &context, int32_t score)
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{
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if (score <= 0)
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{
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MERROR("Negative score hit");
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return;
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}
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context.m_score -= score;
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if (context.m_score <= DROP_PEERS_ON_SCORE)
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drop_connection_with_score(context, 5, false);
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}
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//------------------------------------------------------------------------------------------------------------------------
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template<class t_core>
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std::string t_cryptonote_protocol_handler<t_core>::get_peers_overview() const
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std::string t_cryptonote_protocol_handler<t_core>::get_peers_overview() const
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{
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{
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std::stringstream ss;
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std::stringstream ss;
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