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402 lines
10 KiB
C++
402 lines
10 KiB
C++
#ifndef LLARP_PATH_HPP
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#define LLARP_PATH_HPP
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#include <constants/path.hpp>
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#include <crypto/encrypted_frame.hpp>
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#include <crypto/types.hpp>
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#include <messages/relay.hpp>
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#include <path/ihophandler.hpp>
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#include <path/path_types.hpp>
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#include <path/pathbuilder.hpp>
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#include <path/pathset.hpp>
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#include <router_id.hpp>
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#include <routing/handler.hpp>
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#include <routing/message.hpp>
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#include <service/intro.hpp>
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#include <util/aligned.hpp>
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#include <util/compare_ptr.hpp>
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#include <util/thread/threading.hpp>
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#include <util/time.hpp>
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#include <algorithm>
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#include <functional>
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#include <list>
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#include <map>
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#include <unordered_map>
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#include <vector>
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namespace llarp
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{
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class Logic;
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struct AbstractRouter;
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struct LR_CommitMessage;
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namespace path
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{
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struct TransitHop;
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struct TransitHopInfo;
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using TransitHop_ptr = std::shared_ptr< TransitHop >;
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/// configuration for a single hop when building a path
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struct PathHopConfig
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{
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/// path id
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PathID_t txID, rxID;
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// router contact of router
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RouterContact rc;
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// temp public encryption key
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SecretKey commkey;
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/// shared secret at this hop
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SharedSecret shared;
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/// hash of shared secret used for nonce mutation
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ShortHash nonceXOR;
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/// next hop's router id
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RouterID upstream;
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/// nonce for key exchange
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TunnelNonce nonce;
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// lifetime
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llarp_time_t lifetime = default_lifetime;
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util::StatusObject
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ExtractStatus() const;
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};
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inline bool
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operator<(const PathHopConfig& lhs, const PathHopConfig& rhs)
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{
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return std::tie(lhs.txID, lhs.rxID, lhs.rc, lhs.upstream, lhs.lifetime)
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< std::tie(rhs.txID, rhs.rxID, rhs.rc, rhs.upstream, rhs.lifetime);
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}
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/// A path we made
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struct Path final : public IHopHandler,
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public routing::IMessageHandler,
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public std::enable_shared_from_this< Path >
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{
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using BuildResultHookFunc = std::function< void(Path_ptr) >;
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using CheckForDeadFunc = std::function< bool(Path_ptr, llarp_time_t) >;
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using DropHandlerFunc =
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std::function< bool(Path_ptr, const PathID_t&, uint64_t) >;
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using HopList = std::vector< PathHopConfig >;
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using DataHandlerFunc =
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std::function< bool(Path_ptr, const service::ProtocolFrame&) >;
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using ExitUpdatedFunc = std::function< bool(Path_ptr) >;
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using ExitClosedFunc = std::function< bool(Path_ptr) >;
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using ExitTrafficHandlerFunc =
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std::function< bool(Path_ptr, const llarp_buffer_t&, uint64_t) >;
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/// (path, backoff) backoff is 0 on success
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using ObtainedExitHandler = std::function< bool(Path_ptr, llarp_time_t) >;
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HopList hops;
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PathSet* const m_PathSet;
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service::Introduction intro;
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llarp_time_t buildStarted = 0;
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Path(const std::vector< RouterContact >& routers, PathSet* parent,
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PathRole startingRoles);
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util::StatusObject
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ExtractStatus() const;
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PathRole
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Role() const
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{
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return _role;
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}
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struct Hash
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{
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size_t
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operator()(const Path& p) const
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{
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const auto& tx = p.hops[0].txID;
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const auto& rx = p.hops[0].rxID;
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const auto& r = p.hops[0].upstream;
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const size_t rhash =
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std::accumulate(r.begin(), r.end(), 0, std::bit_xor< size_t >());
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return std::accumulate(rx.begin(), rx.begin(),
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std::accumulate(tx.begin(), tx.end(), rhash,
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std::bit_xor< size_t >()),
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std::bit_xor< size_t >());
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}
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};
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struct Ptr_Hash
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{
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size_t
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operator()(const std::shared_ptr< Path >& p) const
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{
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if(p == nullptr)
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return 0;
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return Hash{}(*p);
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}
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};
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bool
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operator<(const Path& other) const
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{
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return hops < other.hops;
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}
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void
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MarkActive(llarp_time_t now)
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{
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m_LastRecvMessage = std::max(now, m_LastRecvMessage);
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}
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/// return true if ALL of the specified roles are supported
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bool
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SupportsAllRoles(PathRole roles) const
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{
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return (_role & roles) == roles;
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}
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/// return true if ANY of the specified roles are supported
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bool
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SupportsAnyRoles(PathRole roles) const
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{
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return roles == ePathRoleAny || (_role | roles) != 0;
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}
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/// clear role bits
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void
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ClearRoles(PathRole roles)
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{
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_role &= ~roles;
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}
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PathStatus
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Status() const
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{
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return _status;
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}
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std::string
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HopsString() const;
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llarp_time_t
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LastRemoteActivityAt() const override
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{
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return m_LastRecvMessage;
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}
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bool
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HandleLRSM(uint64_t status, std::array< EncryptedFrame, 8 >& frames,
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AbstractRouter* r) override;
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void
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SetBuildResultHook(BuildResultHookFunc func);
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void
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SetExitTrafficHandler(ExitTrafficHandlerFunc handler)
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{
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m_ExitTrafficHandler = handler;
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}
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void
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SetCloseExitFunc(ExitClosedFunc handler)
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{
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m_ExitClosed = handler;
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}
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void
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SetUpdateExitFunc(ExitUpdatedFunc handler)
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{
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m_ExitUpdated = handler;
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}
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void
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SetDataHandler(DataHandlerFunc func)
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{
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m_DataHandler = func;
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}
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void
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SetDropHandler(DropHandlerFunc func)
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{
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m_DropHandler = func;
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}
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void
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SetDeadChecker(CheckForDeadFunc func)
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{
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m_CheckForDead = func;
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}
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void
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EnterState(PathStatus st, llarp_time_t now);
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llarp_time_t
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ExpireTime() const
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{
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return buildStarted + hops[0].lifetime;
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}
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bool
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ExpiresSoon(llarp_time_t now, llarp_time_t dlt = 5000) const override
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{
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return now >= (ExpireTime() - dlt);
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}
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bool
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Expired(llarp_time_t now) const override;
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/// build a new path on the same set of hops as us
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/// regenerates keys
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void
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Rebuild();
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void
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Tick(llarp_time_t now, AbstractRouter* r);
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bool
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SendRoutingMessage(const routing::IMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleObtainExitMessage(const routing::ObtainExitMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleUpdateExitVerifyMessage(const routing::UpdateExitVerifyMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleTransferTrafficMessage(const routing::TransferTrafficMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleUpdateExitMessage(const routing::UpdateExitMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleCloseExitMessage(const routing::CloseExitMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleGrantExitMessage(const routing::GrantExitMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleRejectExitMessage(const routing::RejectExitMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleDataDiscardMessage(const routing::DataDiscardMessage& msg,
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AbstractRouter* r) override;
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bool
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HandlePathConfirmMessage(AbstractRouter* r);
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bool
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HandlePathConfirmMessage(const routing::PathConfirmMessage& msg,
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AbstractRouter* r) override;
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bool
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HandlePathLatencyMessage(const routing::PathLatencyMessage& msg,
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AbstractRouter* r) override;
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bool
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HandlePathTransferMessage(const routing::PathTransferMessage& msg,
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AbstractRouter* r) override;
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bool
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HandleHiddenServiceFrame(const service::ProtocolFrame& frame) override;
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bool
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HandleGotIntroMessage(const dht::GotIntroMessage& msg);
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bool
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HandleDHTMessage(const dht::IMessage& msg, AbstractRouter* r) override;
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bool
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HandleRoutingMessage(const llarp_buffer_t& buf, AbstractRouter* r);
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bool
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IsReady() const;
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// Is this deprecated?
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// nope not deprecated :^DDDD
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PathID_t
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TXID() const;
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RouterID
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Endpoint() const;
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PubKey
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EndpointPubKey() const;
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bool
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IsEndpoint(const RouterID& router, const PathID_t& path) const;
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PathID_t
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RXID() const;
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RouterID
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Upstream() const;
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std::string
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Name() const;
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void
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AddObtainExitHandler(ObtainedExitHandler handler)
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{
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m_ObtainedExitHooks.push_back(handler);
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}
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bool
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SendExitRequest(const routing::ObtainExitMessage& msg, AbstractRouter* r);
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bool
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SendExitClose(const routing::CloseExitMessage& msg, AbstractRouter* r);
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void
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FlushUpstream(AbstractRouter* r) override;
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void
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FlushDownstream(AbstractRouter* r) override;
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protected:
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void
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UpstreamWork(TrafficQueue_ptr queue, AbstractRouter* r) override;
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void
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DownstreamWork(TrafficQueue_ptr queue, AbstractRouter* r) override;
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void
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HandleAllUpstream(std::vector< RelayUpstreamMessage > msgs,
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AbstractRouter* r) override;
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void
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HandleAllDownstream(std::vector< RelayDownstreamMessage > msgs,
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AbstractRouter* r) override;
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private:
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/// call obtained exit hooks
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bool
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InformExitResult(llarp_time_t b);
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BuildResultHookFunc m_BuiltHook;
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DataHandlerFunc m_DataHandler;
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DropHandlerFunc m_DropHandler;
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CheckForDeadFunc m_CheckForDead;
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ExitUpdatedFunc m_ExitUpdated;
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ExitClosedFunc m_ExitClosed;
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ExitTrafficHandlerFunc m_ExitTrafficHandler;
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std::vector< ObtainedExitHandler > m_ObtainedExitHooks;
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llarp_time_t m_LastRecvMessage = 0;
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llarp_time_t m_LastLatencyTestTime = 0;
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uint64_t m_LastLatencyTestID = 0;
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uint64_t m_UpdateExitTX = 0;
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uint64_t m_CloseExitTX = 0;
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uint64_t m_ExitObtainTX = 0;
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PathStatus _status;
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PathRole _role;
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};
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} // namespace path
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} // namespace llarp
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#endif
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