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237 lines
5.5 KiB
C++
237 lines
5.5 KiB
C++
#ifndef LLARP_LINK_SERVER_HPP
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#define LLARP_LINK_SERVER_HPP
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#include <crypto/types.hpp>
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#include <ev/ev.h>
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#include <link/session.hpp>
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#include <net/net.hpp>
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#include <router_contact.hpp>
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#include <util/logic.hpp>
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#include <util/threading.hpp>
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#include <list>
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#include <unordered_map>
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namespace llarp
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{
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/// handle a link layer message
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using LinkMessageHandler =
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std::function< bool(ILinkSession*, llarp_buffer_t) >;
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/// sign a buffer with identity key
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using SignBufferFunc = std::function< bool(Signature&, llarp_buffer_t) >;
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/// handle connection timeout
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using TimeoutHandler = std::function< void(ILinkSession*) >;
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/// get our RC
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using GetRCFunc = std::function< const llarp::RouterContact&(void) >;
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/// handler of session established
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using SessionEstablishedHandler = std::function< void(llarp::RouterContact) >;
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/// f(new, old)
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/// handler of session renegotiation
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/// returns true if the new rc is valid
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/// returns false otherwise and the session is terminated
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using SessionRenegotiateHandler =
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std::function< bool(llarp::RouterContact, llarp::RouterContact) >;
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/// handles close of all sessions with pubkey
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using SessionClosedHandler = std::function< void(llarp::RouterID) >;
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struct ILinkLayer
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{
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ILinkLayer(const SecretKey& routerEncSecret, GetRCFunc getrc,
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LinkMessageHandler handler, SignBufferFunc signFunc,
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SessionEstablishedHandler sessionEstablish,
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SessionRenegotiateHandler renegotiate, TimeoutHandler timeout,
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SessionClosedHandler closed);
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virtual ~ILinkLayer();
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/// get current time via event loop
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llarp_time_t
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Now() const
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{
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return llarp_ev_loop_time_now_ms(m_Loop);
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}
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bool
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HasSessionTo(const RouterID& pk);
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bool
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HasSessionVia(const Addr& addr);
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void
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ForEachSession(std::function< void(const ILinkSession*) > visit) const;
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void
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ForEachSession(std::function< void(ILinkSession*) > visit);
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static void
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udp_tick(llarp_udp_io* udp)
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{
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static_cast< ILinkLayer* >(udp->user)->Pump();
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}
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static void
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udp_recv_from(llarp_udp_io* udp, const sockaddr* from, llarp_buffer_t buf)
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{
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if(!udp)
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{
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llarp::LogWarn("no udp set");
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return;
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}
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// maybe check from too?
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// no it's never null
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static_cast< ILinkLayer* >(udp->user)->RecvFrom(*from, buf.base, buf.sz);
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}
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void
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SendTo_LL(const llarp::Addr& to, llarp_buffer_t pkt)
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{
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llarp_ev_udp_sendto(&m_udp, to, pkt);
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}
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bool
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Configure(llarp_ev_loop* loop, const std::string& ifname, int af,
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uint16_t port);
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virtual ILinkSession*
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NewOutboundSession(const RouterContact& rc, const AddressInfo& ai) = 0;
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virtual void
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Pump();
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virtual void
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RecvFrom(const Addr& from, const void* buf, size_t sz) = 0;
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bool
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PickAddress(const RouterContact& rc, AddressInfo& picked) const;
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bool
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TryEstablishTo(RouterContact rc);
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virtual bool
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Start(llarp::Logic* l);
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void
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Stop();
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virtual const char*
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Name() const = 0;
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void
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CloseSessionTo(const RouterID& remote);
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void
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KeepAliveSessionTo(const RouterID& remote);
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bool
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SendTo(const RouterID& remote, llarp_buffer_t buf);
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bool
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GetOurAddressInfo(AddressInfo& addr) const;
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bool
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VisitSessionByPubkey(const RouterID& pk,
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std::function< bool(ILinkSession*) > visit);
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virtual uint16_t
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Rank() const = 0;
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virtual bool
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KeyGen(SecretKey&) = 0;
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const byte_t*
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TransportPubKey() const;
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const SecretKey&
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RouterEncryptionSecret() const
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{
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return m_RouterEncSecret;
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}
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const SecretKey&
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TransportSecretKey() const;
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bool
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IsCompatable(const llarp::RouterContact& other) const
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{
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const std::string us = Name();
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for(const auto& ai : other.addrs)
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if(ai.dialect == us)
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return true;
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return false;
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}
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bool
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EnsureKeys(const char* fpath);
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bool
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GenEphemeralKeys();
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bool
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MapAddr(const RouterID& pk, ILinkSession* s);
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virtual void Tick(llarp_time_t)
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{
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}
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LinkMessageHandler HandleMessage;
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TimeoutHandler HandleTimeout;
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SignBufferFunc Sign;
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GetRCFunc GetOurRC;
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SessionEstablishedHandler SessionEstablished;
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SessionClosedHandler SessionClosed;
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SessionRenegotiateHandler SessionRenegotiate;
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/// called by link session to remove a pending session who is timed out
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void
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RemovePending(ILinkSession* s);
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private:
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static void
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on_timer_tick(void* user, uint64_t orig, uint64_t left)
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{
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// timer cancelled
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if(left)
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return;
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static_cast< ILinkLayer* >(user)->OnTick(orig);
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}
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void
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OnTick(uint64_t interval);
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void
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ScheduleTick(uint64_t interval);
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uint32_t tick_id;
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const SecretKey& m_RouterEncSecret;
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protected:
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using Lock = util::NullLock;
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using Mutex = util::NullMutex;
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bool
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PutSession(ILinkSession* s);
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llarp::Logic* m_Logic = nullptr;
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llarp_ev_loop* m_Loop = nullptr;
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Addr m_ourAddr;
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llarp_udp_io m_udp;
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SecretKey m_SecretKey;
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Mutex m_AuthedLinksMutex;
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std::unordered_multimap< RouterID, std::unique_ptr< ILinkSession >,
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RouterID::Hash >
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m_AuthedLinks;
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Mutex m_PendingMutex;
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std::unordered_map< llarp::Addr, std::unique_ptr< ILinkSession >,
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llarp::Addr::Hash >
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m_Pending;
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};
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} // namespace llarp
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#endif
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