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I2P: End-to-End encrypted and anonymous Internet
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258 lines
9.0 KiB
258 lines
9.0 KiB
/* |
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* Copyright (c) 2013-2024, The PurpleI2P Project |
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* |
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* This file is part of Purple i2pd project and licensed under BSD3 |
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* |
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* See full license text in LICENSE file at top of project tree |
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*/ |
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#ifndef TRANSPORTS_H__ |
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#define TRANSPORTS_H__ |
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#include <thread> |
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#include <mutex> |
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#include <future> |
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#include <condition_variable> |
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#include <functional> |
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#include <unordered_map> |
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#include <vector> |
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#include <queue> |
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#include <string> |
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#include <memory> |
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#include <atomic> |
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#include <boost/asio.hpp> |
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#include "TransportSession.h" |
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#include "SSU2.h" |
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#include "NTCP2.h" |
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#include "RouterInfo.h" |
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#include "I2NPProtocol.h" |
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#include "Identity.h" |
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#include "util.h" |
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namespace i2p |
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{ |
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namespace transport |
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{ |
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template<typename Keys> |
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class EphemeralKeysSupplier |
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{ |
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// called from this file only, so implementation is in Transports.cpp |
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public: |
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EphemeralKeysSupplier (int size); |
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~EphemeralKeysSupplier (); |
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void Start (); |
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void Stop (); |
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std::shared_ptr<Keys> Acquire (); |
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void Return (std::shared_ptr<Keys> pair); |
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private: |
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void Run (); |
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void CreateEphemeralKeys (int num); |
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private: |
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const int m_QueueSize; |
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i2p::util::MemoryPoolMt<Keys> m_KeysPool; |
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std::queue<std::shared_ptr<Keys> > m_Queue; |
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bool m_IsRunning; |
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std::unique_ptr<std::thread> m_Thread; |
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std::condition_variable m_Acquired; |
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std::mutex m_AcquiredMutex; |
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}; |
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typedef EphemeralKeysSupplier<i2p::crypto::X25519Keys> X25519KeysPairSupplier; |
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const int PEER_ROUTER_INFO_UPDATE_INTERVAL = 31*60; // in seconds |
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const int PEER_ROUTER_INFO_UPDATE_INTERVAL_VARIANCE = 7*60; // in seconds |
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const size_t PEER_ROUTER_INFO_OVERLOAD_QUEUE_SIZE = 25; |
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const int PEER_SELECTION_MIN_INTERVAL = 20; // in seconds |
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struct Peer |
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{ |
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int numAttempts; |
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std::shared_ptr<const i2p::data::RouterInfo> router; |
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std::list<std::shared_ptr<TransportSession> > sessions; |
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uint64_t creationTime, nextRouterInfoUpdateTime, lastSelectionTime; |
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std::list<std::shared_ptr<i2p::I2NPMessage> > delayedMessages; |
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std::vector<i2p::data::RouterInfo::SupportedTransports> priority; |
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bool isHighBandwidth, isEligible; |
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Peer (std::shared_ptr<const i2p::data::RouterInfo> r, uint64_t ts): |
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numAttempts (0), router (r), creationTime (ts), |
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nextRouterInfoUpdateTime (ts + PEER_ROUTER_INFO_UPDATE_INTERVAL), |
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lastSelectionTime (0), isHighBandwidth (false), isEligible (false) |
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{ |
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UpdateParams (router); |
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} |
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void Done () |
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{ |
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for (auto& it: sessions) |
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it->Done (); |
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// drop not sent delayed messages |
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for (auto& it: delayedMessages) |
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it->Drop (); |
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} |
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void SetRouter (std::shared_ptr<const i2p::data::RouterInfo> r) |
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{ |
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router = r; |
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UpdateParams (router); |
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} |
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bool IsConnected () const { return !sessions.empty (); } |
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void UpdateParams (std::shared_ptr<const i2p::data::RouterInfo> router); |
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}; |
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const uint64_t SESSION_CREATION_TIMEOUT = 15; // in seconds |
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const int PEER_TEST_INTERVAL = 71; // in minutes |
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const int PEER_TEST_DELAY_INTERVAL = 20; // in milliseconds |
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const int PEER_TEST_DELAY_INTERVAL_VARIANCE = 30; // in milliseconds |
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const int MAX_NUM_DELAYED_MESSAGES = 150; |
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const int CHECK_PROFILE_NUM_DELAYED_MESSAGES = 15; // check profile after |
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const int NUM_X25519_PRE_GENERATED_KEYS = 25; // pre-generated x25519 keys pairs |
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const int TRAFFIC_SAMPLE_COUNT = 301; // seconds |
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struct TrafficSample |
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{ |
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uint64_t Timestamp; |
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uint64_t TotalReceivedBytes; |
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uint64_t TotalSentBytes; |
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uint64_t TotalTransitTransmittedBytes; |
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}; |
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class Transports |
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{ |
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public: |
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Transports (); |
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~Transports (); |
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void Start (bool enableNTCP2=true, bool enableSSU2=true); |
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void Stop (); |
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bool IsRunning () const { return m_IsRunning; } |
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bool IsBoundSSU2() const { return m_SSU2Server != nullptr; } |
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bool IsBoundNTCP2() const { return m_NTCP2Server != nullptr; } |
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bool IsOnline() const { return m_IsOnline; }; |
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void SetOnline (bool online); |
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auto& GetService () { return *m_Service; }; |
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std::shared_ptr<i2p::crypto::X25519Keys> GetNextX25519KeysPair (); |
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void ReuseX25519KeysPair (std::shared_ptr<i2p::crypto::X25519Keys> pair); |
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std::future<std::shared_ptr<TransportSession> > SendMessage (const i2p::data::IdentHash& ident, std::shared_ptr<i2p::I2NPMessage> msg); |
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std::future<std::shared_ptr<TransportSession> > SendMessages (const i2p::data::IdentHash& ident, std::list<std::shared_ptr<i2p::I2NPMessage> >&& msgs); |
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void PeerConnected (std::shared_ptr<TransportSession> session); |
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void PeerDisconnected (std::shared_ptr<TransportSession> session); |
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bool IsConnected (const i2p::data::IdentHash& ident) const; |
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void UpdateSentBytes (uint64_t numBytes) { m_TotalSentBytes += numBytes; }; |
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void UpdateReceivedBytes (uint64_t numBytes) { m_TotalReceivedBytes += numBytes; }; |
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uint64_t GetTotalSentBytes () const { return m_TotalSentBytes; }; |
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uint64_t GetTotalReceivedBytes () const { return m_TotalReceivedBytes; }; |
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uint64_t GetTotalTransitTransmittedBytes () const { return m_TotalTransitTransmittedBytes; } |
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void UpdateTotalTransitTransmittedBytes (uint32_t add) { m_TotalTransitTransmittedBytes += add; }; |
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uint32_t GetInBandwidth () const { return m_InBandwidth; }; |
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uint32_t GetOutBandwidth () const { return m_OutBandwidth; }; |
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uint32_t GetTransitBandwidth () const { return m_TransitBandwidth; }; |
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uint32_t GetInBandwidth15s () const { return m_InBandwidth15s; }; |
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uint32_t GetOutBandwidth15s () const { return m_OutBandwidth15s; }; |
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uint32_t GetTransitBandwidth15s () const { return m_TransitBandwidth15s; }; |
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int GetCongestionLevel (bool longTerm) const; |
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size_t GetNumPeers () const { return m_Peers.size (); }; |
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std::shared_ptr<const i2p::data::RouterInfo> GetRandomPeer (bool isHighBandwidth) const; |
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/** get a trusted first hop for restricted routes */ |
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std::shared_ptr<const i2p::data::RouterInfo> GetRestrictedPeer() const; |
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/** do we want to use restricted routes? */ |
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bool RoutesRestricted() const; |
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/** restrict routes to use only these router families for first hops */ |
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void RestrictRoutesToFamilies(const std::set<std::string>& families); |
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/** restrict routes to use only these routers for first hops */ |
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void RestrictRoutesToRouters(const std::set<i2p::data::IdentHash>& routers); |
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bool IsRestrictedPeer(const i2p::data::IdentHash & ident) const; |
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void PeerTest (bool ipv4 = true, bool ipv6 = true); |
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void SetCheckReserved (bool check) { m_CheckReserved = check; }; |
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bool IsCheckReserved () const { return m_CheckReserved; }; |
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bool IsInReservedRange (const boost::asio::ip::address& host) const; |
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private: |
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void Run (); |
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void RequestComplete (std::shared_ptr<const i2p::data::RouterInfo> r, const i2p::data::IdentHash& ident); |
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void HandleRequestComplete (std::shared_ptr<const i2p::data::RouterInfo> r, i2p::data::IdentHash ident); |
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std::shared_ptr<TransportSession> PostMessages (const i2p::data::IdentHash& ident, std::list<std::shared_ptr<i2p::I2NPMessage> >& msgs); |
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bool ConnectToPeer (const i2p::data::IdentHash& ident, std::shared_ptr<Peer> peer); |
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void SetPriority (std::shared_ptr<Peer> peer) const; |
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void HandlePeerCleanupTimer (const boost::system::error_code& ecode); |
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void HandlePeerTestTimer (const boost::system::error_code& ecode); |
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void HandleUpdateBandwidthTimer (const boost::system::error_code& ecode); |
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void UpdateBandwidthValues (int interval, uint32_t& in, uint32_t& out, uint32_t& transit); |
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void DetectExternalIP (); |
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template<typename Filter> |
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std::shared_ptr<const i2p::data::RouterInfo> GetRandomPeer (Filter filter) const; |
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private: |
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volatile bool m_IsOnline; |
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bool m_IsRunning, m_IsNAT, m_CheckReserved; |
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std::thread * m_Thread; |
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boost::asio::io_context * m_Service; |
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boost::asio::executor_work_guard<boost::asio::io_context::executor_type> * m_Work; |
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boost::asio::deadline_timer * m_PeerCleanupTimer, * m_PeerTestTimer, * m_UpdateBandwidthTimer; |
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SSU2Server * m_SSU2Server; |
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NTCP2Server * m_NTCP2Server; |
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mutable std::mutex m_PeersMutex; |
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std::unordered_map<i2p::data::IdentHash, std::shared_ptr<Peer> > m_Peers; |
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X25519KeysPairSupplier m_X25519KeysPairSupplier; |
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std::atomic<uint64_t> m_TotalSentBytes, m_TotalReceivedBytes, m_TotalTransitTransmittedBytes; |
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TrafficSample m_TrafficSamples[TRAFFIC_SAMPLE_COUNT]; |
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int m_TrafficSamplePtr; |
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// Bandwidth per second |
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uint32_t m_InBandwidth, m_OutBandwidth, m_TransitBandwidth; |
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// Bandwidth during last 15 seconds |
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uint32_t m_InBandwidth15s, m_OutBandwidth15s, m_TransitBandwidth15s; |
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// Bandwidth during last 5 minutes |
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uint32_t m_InBandwidth5m, m_OutBandwidth5m, m_TransitBandwidth5m; |
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/** which router families to trust for first hops */ |
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std::vector<i2p::data::FamilyID> m_TrustedFamilies; |
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mutable std::mutex m_FamilyMutex; |
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/** which routers for first hop to trust */ |
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std::vector<i2p::data::IdentHash> m_TrustedRouters; |
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mutable std::mutex m_TrustedRoutersMutex; |
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i2p::I2NPMessagesHandler m_LoopbackHandler; |
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public: |
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// for HTTP only |
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const NTCP2Server * GetNTCP2Server () const { return m_NTCP2Server; }; |
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const SSU2Server * GetSSU2Server () const { return m_SSU2Server; }; |
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const decltype(m_Peers)& GetPeers () const { return m_Peers; }; |
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}; |
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extern Transports transports; |
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void InitAddressFromIface (); |
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void InitTransports (); |
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} |
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} |
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#endif
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