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https://github.com/monero-project/monero.git
synced 2024-10-01 11:49:47 -04:00
Add support for i2p and tor seed nodes
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parent
76cc82c292
commit
263579b217
@ -164,6 +164,7 @@ namespace nodetool
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network_zone()
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: m_connect(nullptr),
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m_net_server(epee::net_utils::e_connection_type_P2P),
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m_seed_nodes(),
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m_bind_ip(),
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m_bind_ipv6_address(),
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m_port(),
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@ -175,7 +176,9 @@ namespace nodetool
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m_proxy_address(),
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m_current_number_of_out_peers(0),
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m_current_number_of_in_peers(0),
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m_can_pingback(false)
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m_seed_nodes_lock(),
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m_can_pingback(false),
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m_seed_nodes_initialized(false)
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{
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set_config_defaults();
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}
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@ -183,6 +186,7 @@ namespace nodetool
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network_zone(boost::asio::io_service& public_service)
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: m_connect(nullptr),
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m_net_server(public_service, epee::net_utils::e_connection_type_P2P),
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m_seed_nodes(),
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m_bind_ip(),
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m_bind_ipv6_address(),
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m_port(),
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@ -194,13 +198,16 @@ namespace nodetool
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m_proxy_address(),
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m_current_number_of_out_peers(0),
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m_current_number_of_in_peers(0),
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m_can_pingback(false)
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m_seed_nodes_lock(),
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m_can_pingback(false),
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m_seed_nodes_initialized(false)
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{
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set_config_defaults();
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}
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connect_func* m_connect;
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net_server m_net_server;
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std::vector<epee::net_utils::network_address> m_seed_nodes;
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std::string m_bind_ip;
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std::string m_bind_ipv6_address;
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std::string m_port;
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@ -212,7 +219,9 @@ namespace nodetool
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boost::asio::ip::tcp::endpoint m_proxy_address;
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std::atomic<unsigned int> m_current_number_of_out_peers;
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std::atomic<unsigned int> m_current_number_of_in_peers;
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boost::shared_mutex m_seed_nodes_lock;
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bool m_can_pingback;
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bool m_seed_nodes_initialized;
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private:
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void set_config_defaults() noexcept
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@ -383,9 +392,10 @@ namespace nodetool
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void record_addr_failed(const epee::net_utils::network_address& addr);
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bool is_addr_recently_failed(const epee::net_utils::network_address& addr);
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bool is_priority_node(const epee::net_utils::network_address& na);
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std::set<std::string> get_seed_nodes(cryptonote::network_type nettype) const;
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std::set<std::string> get_seed_nodes();
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bool connect_to_seed();
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std::set<std::string> get_ip_seed_nodes() const;
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std::set<std::string> get_dns_seed_nodes();
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std::set<std::string> get_seed_nodes(epee::net_utils::zone);
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bool connect_to_seed(epee::net_utils::zone);
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template <class Container>
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bool connect_to_peerlist(const Container& peers);
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@ -467,9 +477,6 @@ namespace nodetool
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std::list<epee::net_utils::network_address> m_priority_peers;
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std::vector<epee::net_utils::network_address> m_exclusive_peers;
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std::vector<epee::net_utils::network_address> m_seed_nodes;
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bool m_seed_nodes_initialized = false;
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boost::shared_mutex m_seed_nodes_lock;
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std::atomic_flag m_fallback_seed_nodes_added;
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std::vector<nodetool::peerlist_entry> m_command_line_peers;
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uint64_t m_peer_livetime;
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@ -435,9 +435,9 @@ namespace nodetool
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if (command_line::has_arg(vm, arg_p2p_seed_node))
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{
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boost::unique_lock<boost::shared_mutex> lock(m_seed_nodes_lock);
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boost::unique_lock<boost::shared_mutex> lock(public_zone.m_seed_nodes_lock);
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if (!parse_peers_and_add_to_container(vm, arg_p2p_seed_node, m_seed_nodes))
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if (!parse_peers_and_add_to_container(vm, arg_p2p_seed_node, public_zone.m_seed_nodes))
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return false;
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}
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@ -598,21 +598,21 @@ namespace nodetool
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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std::set<std::string> node_server<t_payload_net_handler>::get_seed_nodes(cryptonote::network_type nettype) const
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std::set<std::string> node_server<t_payload_net_handler>::get_ip_seed_nodes() const
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{
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std::set<std::string> full_addrs;
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if (nettype == cryptonote::TESTNET)
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if (m_nettype == cryptonote::TESTNET)
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{
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full_addrs.insert("212.83.175.67:28080");
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full_addrs.insert("212.83.172.165:28080");
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full_addrs.insert("192.110.160.146:28080");
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}
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else if (nettype == cryptonote::STAGENET)
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else if (m_nettype == cryptonote::STAGENET)
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{
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full_addrs.insert("162.210.173.150:38080");
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full_addrs.insert("192.110.160.146:38080");
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}
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else if (nettype == cryptonote::FAKECHAIN)
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else if (m_nettype == cryptonote::FAKECHAIN)
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{
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}
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else
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@ -630,7 +630,7 @@ namespace nodetool
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}
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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std::set<std::string> node_server<t_payload_net_handler>::get_seed_nodes()
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std::set<std::string> node_server<t_payload_net_handler>::get_dns_seed_nodes()
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{
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if (!m_exclusive_peers.empty() || m_offline)
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{
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@ -638,11 +638,11 @@ namespace nodetool
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}
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if (m_nettype == cryptonote::TESTNET)
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{
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return get_seed_nodes(cryptonote::TESTNET);
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return get_ip_seed_nodes();
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}
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if (m_nettype == cryptonote::STAGENET)
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{
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return get_seed_nodes(cryptonote::STAGENET);
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return get_ip_seed_nodes();
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}
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std::set<std::string> full_addrs;
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@ -730,7 +730,7 @@ namespace nodetool
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else
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MINFO("Not enough DNS seed nodes found, using fallback defaults too");
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for (const auto &peer: get_seed_nodes(cryptonote::MAINNET))
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for (const auto &peer: get_ip_seed_nodes())
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full_addrs.insert(peer);
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m_fallback_seed_nodes_added.test_and_set();
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}
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@ -739,6 +739,23 @@ namespace nodetool
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}
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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std::set<std::string> node_server<t_payload_net_handler>::get_seed_nodes(epee::net_utils::zone zone)
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{
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switch (zone)
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{
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case epee::net_utils::zone::public_:
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return get_dns_seed_nodes();
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case epee::net_utils::zone::tor:
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return {};
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case epee::net_utils::zone::i2p:
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return {};
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default:
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break;
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}
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throw std::logic_error{"Bad zone given to get_seed_nodes"};
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}
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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typename node_server<t_payload_net_handler>::network_zone& node_server<t_payload_net_handler>::add_zone(const epee::net_utils::zone zone)
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{
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const auto zone_ = m_network_zones.lower_bound(zone);
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@ -1541,56 +1558,59 @@ namespace nodetool
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}
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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bool node_server<t_payload_net_handler>::connect_to_seed()
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bool node_server<t_payload_net_handler>::connect_to_seed(epee::net_utils::zone zone)
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{
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boost::upgrade_lock<boost::shared_mutex> seed_nodes_upgrade_lock(m_seed_nodes_lock);
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network_zone& server = m_network_zones.at(zone);
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boost::upgrade_lock<boost::shared_mutex> seed_nodes_upgrade_lock(server.m_seed_nodes_lock);
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if (!m_seed_nodes_initialized)
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if (!server.m_seed_nodes_initialized)
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{
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const std::uint16_t default_port = cryptonote::get_config(m_nettype).P2P_DEFAULT_PORT;
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boost::upgrade_to_unique_lock<boost::shared_mutex> seed_nodes_lock(seed_nodes_upgrade_lock);
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m_seed_nodes_initialized = true;
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for (const auto& full_addr : get_seed_nodes())
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server.m_seed_nodes_initialized = true;
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for (const auto& full_addr : get_seed_nodes(zone))
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{
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// seeds should have hostname converted to IP already
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MDEBUG("Seed node: " << full_addr);
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append_net_address(m_seed_nodes, full_addr, cryptonote::get_config(m_nettype).P2P_DEFAULT_PORT);
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server.m_seed_nodes.push_back(MONERO_UNWRAP(net::get_network_address(full_addr, default_port)));
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}
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MDEBUG("Number of seed nodes: " << m_seed_nodes.size());
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MDEBUG("Number of seed nodes: " << server.m_seed_nodes.size());
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}
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if (m_seed_nodes.empty() || m_offline || !m_exclusive_peers.empty())
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if (server.m_seed_nodes.empty() || m_offline || !m_exclusive_peers.empty())
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return true;
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size_t try_count = 0;
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bool is_connected_to_at_least_one_seed_node = false;
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size_t current_index = crypto::rand_idx(m_seed_nodes.size());
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const net_server& server = m_network_zones.at(epee::net_utils::zone::public_).m_net_server;
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size_t current_index = crypto::rand_idx(server.m_seed_nodes.size());
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while(true)
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{
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if(server.is_stop_signal_sent())
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if(server.m_net_server.is_stop_signal_sent())
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return false;
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peerlist_entry pe_seed{};
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pe_seed.adr = m_seed_nodes[current_index];
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pe_seed.adr = server.m_seed_nodes[current_index];
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if (is_peer_used(pe_seed))
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is_connected_to_at_least_one_seed_node = true;
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else if (try_to_connect_and_handshake_with_new_peer(m_seed_nodes[current_index], true))
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else if (try_to_connect_and_handshake_with_new_peer(server.m_seed_nodes[current_index], true))
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break;
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if(++try_count > m_seed_nodes.size())
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if(++try_count > server.m_seed_nodes.size())
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{
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if (!m_fallback_seed_nodes_added.test_and_set())
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// only IP zone has fallback (to direct IP) seeds
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if (zone == epee::net_utils::zone::public_ && !m_fallback_seed_nodes_added.test_and_set())
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{
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MWARNING("Failed to connect to any of seed peers, trying fallback seeds");
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current_index = m_seed_nodes.size() - 1;
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current_index = server.m_seed_nodes.size() - 1;
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{
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boost::upgrade_to_unique_lock<boost::shared_mutex> seed_nodes_lock(seed_nodes_upgrade_lock);
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for (const auto &peer: get_seed_nodes(m_nettype))
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for (const auto &peer: get_ip_seed_nodes())
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{
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MDEBUG("Fallback seed node: " << peer);
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append_net_address(m_seed_nodes, peer, cryptonote::get_config(m_nettype).P2P_DEFAULT_PORT);
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append_net_address(server.m_seed_nodes, peer, cryptonote::get_config(m_nettype).P2P_DEFAULT_PORT);
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}
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}
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if (current_index == m_seed_nodes.size() - 1)
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if (current_index == server.m_seed_nodes.size() - 1)
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{
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MWARNING("No fallback seeds, continuing without seeds");
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break;
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@ -1604,7 +1624,7 @@ namespace nodetool
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break;
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}
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}
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if(++current_index >= m_seed_nodes.size())
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if(++current_index >= server.m_seed_nodes.size())
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current_index = 0;
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}
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return true;
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@ -1620,20 +1640,21 @@ namespace nodetool
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if (!m_exclusive_peers.empty()) return true;
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// Only have seeds in the public zone right now.
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size_t start_conn_count = get_public_outgoing_connections_count();
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if(!get_public_white_peers_count() && !connect_to_seed())
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{
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return false;
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}
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if (!connect_to_peerlist(m_priority_peers)) return false;
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bool one_succeeded = false;
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for(auto& zone : m_network_zones)
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{
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size_t start_conn_count = get_outgoing_connections_count(zone.second);
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if(!zone.second.m_peerlist.get_white_peers_count() && !connect_to_seed(zone.first))
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{
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continue;
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}
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if (zone.first == zone_type::public_ && !connect_to_peerlist(m_priority_peers)) continue;
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size_t base_expected_white_connections = (zone.second.m_config.m_net_config.max_out_connection_count*P2P_DEFAULT_WHITELIST_CONNECTIONS_PERCENT)/100;
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// carefully avoid `continue` in nested loop
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size_t conn_count = get_outgoing_connections_count(zone.second);
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while(conn_count < zone.second.m_config.m_net_config.max_out_connection_count)
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{
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@ -1670,16 +1691,17 @@ namespace nodetool
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}
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conn_count = new_conn_count;
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}
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if (start_conn_count == get_outgoing_connections_count(zone.second) && start_conn_count < zone.second.m_config.m_net_config.max_out_connection_count)
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{
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MINFO("Failed to connect to any, trying seeds");
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if (!connect_to_seed(zone.first))
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continue;
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}
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one_succeeded = true;
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}
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if (start_conn_count == get_public_outgoing_connections_count() && start_conn_count < m_network_zones.at(zone_type::public_).m_config.m_net_config.max_out_connection_count)
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{
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MINFO("Failed to connect to any, trying seeds");
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if (!connect_to_seed())
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return false;
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}
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return true;
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return one_succeeded;
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}
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//-----------------------------------------------------------------------------------
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template<class t_payload_net_handler>
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