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179 lines
4.0 KiB
C++
179 lines
4.0 KiB
C++
#ifndef LLARP_PATH_CONTEXT_HPP
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#define LLARP_PATH_CONTEXT_HPP
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#include <crypto/encrypted_frame.hpp>
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#include <path/ihophandler.hpp>
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#include <path/path_types.hpp>
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#include <path/pathset.hpp>
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#include <path/transit_hop.hpp>
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#include <routing/handler.hpp>
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#include <router/i_outbound_message_handler.hpp>
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#include <util/compare_ptr.hpp>
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#include <util/decaying_hashset.hpp>
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#include <util/types.hpp>
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#include <memory>
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#include <unordered_map>
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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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struct RelayDownstreamMessage;
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struct RelayUpstreamMessage;
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struct RouterID;
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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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struct PathContext
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{
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PathContext(AbstractRouter* router);
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/// called from router tick function
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void
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ExpirePaths(llarp_time_t now);
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void
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PumpUpstream();
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void
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PumpDownstream();
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void
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AllowTransit();
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void
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RejectTransit();
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bool
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CheckPathLimitHitByIP(const llarp::Addr& ip);
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bool
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AllowingTransit() const;
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bool
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HasTransitHop(const TransitHopInfo& info);
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bool
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HandleRelayCommit(const LR_CommitMessage& msg);
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void
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PutTransitHop(std::shared_ptr< TransitHop > hop);
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HopHandler_ptr
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GetByUpstream(const RouterID& id, const PathID_t& path);
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bool
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TransitHopPreviousIsRouter(const PathID_t& path, const RouterID& r);
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TransitHop_ptr
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GetPathForTransfer(const PathID_t& topath);
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HopHandler_ptr
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GetByDownstream(const RouterID& id, const PathID_t& path);
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PathSet_ptr
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GetLocalPathSet(const PathID_t& id);
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routing::MessageHandler_ptr
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GetHandler(const PathID_t& id);
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using EndpointPathPtrSet = std::set< Path_ptr, ComparePtr< Path_ptr > >;
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/// get a set of all paths that we own who's endpoint is r
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EndpointPathPtrSet
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FindOwnedPathsWithEndpoint(const RouterID& r);
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bool
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ForwardLRCM(const RouterID& nextHop,
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const std::array< EncryptedFrame, 8 >& frames,
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SendStatusHandler handler);
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bool
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HopIsUs(const RouterID& k) const;
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bool
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HandleLRUM(const RelayUpstreamMessage& msg);
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bool
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HandleLRDM(const RelayDownstreamMessage& msg);
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void
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AddOwnPath(PathSet_ptr set, Path_ptr p);
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void
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RemovePathSet(PathSet_ptr set);
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using TransitHopsMap_t =
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std::unordered_multimap< PathID_t, TransitHop_ptr, PathID_t::Hash >;
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struct SyncTransitMap_t
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{
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using Mutex_t = util::NullMutex;
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using Lock_t = util::NullLock;
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Mutex_t first; // protects second
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TransitHopsMap_t second GUARDED_BY(first);
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void
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ForEach(std::function< void(const TransitHop_ptr&) > visit)
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LOCKS_EXCLUDED(first)
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{
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Lock_t lock(&first);
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for(const auto& item : second)
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visit(item.second);
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}
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};
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// maps path id -> pathset owner of path
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using OwnedPathsMap_t =
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std::unordered_map< PathID_t, Path_ptr, PathID_t::Hash >;
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struct SyncOwnedPathsMap_t
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{
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using Mutex_t = util::Mutex;
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using Lock_t = util::Lock;
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Mutex_t first; // protects second
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OwnedPathsMap_t second GUARDED_BY(first);
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void
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ForEach(std::function< void(const Path_ptr&) > visit)
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{
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Lock_t lock(&first);
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for(const auto& item : second)
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visit(item.second);
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}
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};
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std::shared_ptr< thread::ThreadPool >
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Worker();
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std::shared_ptr< Logic >
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logic();
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AbstractRouter*
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Router();
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const SecretKey&
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EncryptionSecretKey();
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const byte_t*
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OurRouterID() const;
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private:
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AbstractRouter* m_Router;
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SyncTransitMap_t m_TransitPaths;
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SyncOwnedPathsMap_t m_OurPaths;
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bool m_AllowTransit;
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util::DecayingHashSet< llarp::Addr > m_PathLimits;
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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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