mirror of
https://github.com/oxen-io/lokinet.git
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382 lines
9.4 KiB
C++
382 lines
9.4 KiB
C++
#ifndef LLARP_ROUTER_HPP
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#define LLARP_ROUTER_HPP
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#include <buffer.h>
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#include <config.h>
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#include <crypto.hpp>
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#include <dht.h>
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#include <dht.hpp>
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#include <establish_job.hpp>
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#include <ev.h>
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#include <exit.hpp>
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#include <fs.hpp>
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#include <handlers/tun.hpp>
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#include <link_layer.hpp>
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#include <link_message_parser.hpp>
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#include <logic.hpp>
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#include <mem.hpp>
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#include <nodedb.hpp>
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#include <path.hpp>
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#include <profiling.hpp>
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#include <router_contact.hpp>
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#include <routing/handler.hpp>
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#include <rpc.hpp>
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#include <service.hpp>
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#include <str.hpp>
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#include <threadpool.hpp>
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#include <functional>
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#include <list>
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#include <map>
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#include <vector>
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#include <unordered_map>
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bool
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llarp_findOrCreateEncryption(llarp::Crypto *crypto, const char *fpath,
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llarp::SecretKey &encryption);
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bool
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llarp_findOrCreateIdentity(struct llarp::Crypto *crypto, const char *path,
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byte_t *secretkey);
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struct TryConnectJob;
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namespace llarp
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{
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struct Router
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{
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bool ready;
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// transient iwp encryption key
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fs::path transport_keyfile = "transport.key";
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// nodes to connect to on startup
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// DEPRECATED
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// std::map< std::string, fs::path > connect;
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// long term identity key
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fs::path ident_keyfile = "identity.key";
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fs::path encryption_keyfile = "encryption.key";
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// path to write our self signed rc to
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fs::path our_rc_file = "rc.signed";
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// our router contact
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llarp::RouterContact _rc;
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/// should we obey the service node whitelist?
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bool whitelistRouters = false;
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const llarp::RouterContact &
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rc() const
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{
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return _rc;
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}
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// our ipv4 public setting
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bool publicOverride = false;
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struct sockaddr_in ip4addr;
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llarp::AddressInfo addrInfo;
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llarp_ev_loop *netloop;
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llarp_threadpool *tp;
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llarp::Logic *logic;
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llarp::Crypto crypto;
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llarp::path::PathContext paths;
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llarp::exit::Context exitContext;
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llarp::SecretKey identity;
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llarp::SecretKey encryption;
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llarp_threadpool *disk;
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llarp_dht_context *dht = nullptr;
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llarp_nodedb *nodedb;
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// buffer for serializing link messages
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byte_t linkmsg_buffer[MAX_LINK_MSG_SIZE];
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/// always maintain this many connections to other routers
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size_t minConnectedRouters = 1;
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/// hard upperbound limit on the number of router to router connections
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size_t maxConnectedRouters = 2000;
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size_t minRequiredRouters = 4;
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// should we be sending padded messages every interval?
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bool sendPadding = false;
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uint32_t ticker_job_id = 0;
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llarp::InboundMessageParser inbound_link_msg_parser;
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llarp::routing::InboundMessageParser inbound_routing_msg_parser;
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llarp::service::Context hiddenServiceContext;
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using NetConfig_t = std::unordered_multimap< std::string, std::string >;
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/// default network config for default network interface
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NetConfig_t netConfig;
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/// identity keys whitelist of routers we will connect to directly (not for
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/// service nodes)
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std::set< llarp::RouterID > strictConnectPubkeys;
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/// bootstrap RCs
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std::list< llarp::RouterContact > bootstrapRCList;
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bool
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ExitEnabled() const
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{
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// TODO: use equal_range ?
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auto itr = netConfig.find("exit");
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if(itr == netConfig.end())
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return false;
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return llarp::IsTrueValue(itr->second.c_str());
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}
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bool
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CreateDefaultHiddenService();
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const std::string DefaultRPCBindAddr = "127.0.0.1:1190";
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bool enableRPCServer = true;
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std::unique_ptr< llarp::rpc::Server > rpcServer;
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std::string rpcBindAddr = DefaultRPCBindAddr;
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/// lokid caller
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const std::string DefaultLokidRPCAddr = "127.0.0.1:22023";
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std::unique_ptr< llarp::rpc::Caller > rpcCaller;
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std::string lokidRPCAddr = DefaultLokidRPCAddr;
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std::unique_ptr< llarp::ILinkLayer > outboundLink;
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std::vector< std::unique_ptr< llarp::ILinkLayer > > inboundLinks;
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llarp::Profiling routerProfiling;
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std::string routerProfilesFile = "profiles.dat";
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using MessageQueue = std::queue< std::vector< byte_t > >;
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/// outbound message queue
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std::unordered_map< llarp::RouterID, MessageQueue, llarp::RouterID::Hash >
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outboundMessageQueue;
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/// loki verified routers
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std::unordered_map< llarp::RouterID, llarp::RouterContact,
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llarp::RouterID::Hash >
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validRouters;
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// pending establishing session with routers
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std::unordered_map< llarp::RouterID, std::unique_ptr< TryConnectJob >,
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llarp::RouterID::Hash >
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pendingEstablishJobs;
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// pending RCs to be verified by pubkey
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std::unordered_map< llarp::RouterID, llarp_async_verify_rc,
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llarp::RouterID::Hash >
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pendingVerifyRC;
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// sessions to persist -> timestamp to end persist at
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std::unordered_map< llarp::RouterID, llarp_time_t, llarp::RouterID::Hash >
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m_PersistingSessions;
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// lokinet routers from lokid, maps pubkey to when we think it will expire,
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// set to max value right now
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std::unordered_map< llarp::RouterID, llarp_time_t, llarp::PubKey::Hash >
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lokinetRouters;
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Router(struct llarp_threadpool *tp, struct llarp_ev_loop *netloop,
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llarp::Logic *logic);
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~Router();
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void
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HandleLinkSessionEstablished(llarp::RouterContact, llarp::ILinkLayer *);
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bool
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HandleRecvLinkMessageBuffer(llarp::ILinkSession *from, llarp_buffer_t msg);
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void
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AddInboundLink(std::unique_ptr< llarp::ILinkLayer > &link);
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bool
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InitOutboundLink();
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bool
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GetRandomGoodRouter(RouterID &r);
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/// initialize us as a service node
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/// return true on success
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bool
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InitServiceNode();
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/// return true if we are running in service node mode
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bool
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IsServiceNode() const;
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void
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Close();
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bool
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LoadHiddenServiceConfig(const char *fname);
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bool
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AddHiddenService(const llarp::service::Config::section_t &config);
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bool
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Configure(struct llarp_config *conf);
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bool
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Ready();
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bool
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Run(struct llarp_nodedb *nodedb);
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void
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Stop();
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void
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PersistSessionUntil(const llarp::RouterID &remote, llarp_time_t until);
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bool
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EnsureIdentity();
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bool
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EnsureEncryptionKey();
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bool
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ConnectionToRouterAllowed(const llarp::RouterID &router) const;
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bool
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SaveRC();
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const byte_t *
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pubkey() const
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{
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return llarp::seckey_topublic(identity);
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}
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void
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OnConnectTimeout(const llarp::RouterID &remote);
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bool
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HasPendingConnectJob(const llarp::RouterID &remote);
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void
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try_connect(fs::path rcfile);
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bool
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ReloadConfig(const llarp_config *conf);
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/// send to remote router or queue for sending
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/// returns false on overflow
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/// returns true on successful queue
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/// NOT threadsafe
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/// MUST be called in the logic thread
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bool
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SendToOrQueue(const llarp::RouterID &remote,
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const llarp::ILinkMessage *msg);
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/// sendto or drop
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void
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SendTo(llarp::RouterID remote, const llarp::ILinkMessage *msg,
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llarp::ILinkLayer *chosen);
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/// manually flush outbound message queue for just 1 router
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void
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FlushOutboundFor(llarp::RouterID remote,
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llarp::ILinkLayer *chosen = nullptr);
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/// manually discard all pending messages to remote router
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void
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DiscardOutboundFor(const llarp::RouterID &remote);
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/// try establishing a session to a remote router
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void
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TryEstablishTo(const llarp::RouterID &remote);
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void
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HandleDHTLookupForExplore(
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llarp::RouterID remote,
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const std::vector< llarp::RouterContact > &results);
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void
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ForEachPeer(
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std::function< void(const llarp::ILinkSession *, bool) > visit) const;
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/// flush outbound message queue
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void
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FlushOutbound();
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/// called by link when a remote session is expunged
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void
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SessionClosed(const llarp::RouterID &remote);
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/// call internal router ticker
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void
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Tick();
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/// get time from 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(netloop);
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}
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/// schedule ticker to call i ms from now
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void
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ScheduleTicker(uint64_t i = 1000);
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llarp::ILinkLayer *
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GetLinkWithSessionByPubkey(const llarp::RouterID &remote);
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void
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ConnectToRandomRouters(int N);
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size_t
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NumberOfConnectedRouters() const;
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bool
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GetRandomConnectedRouter(llarp::RouterContact &result) const;
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void
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async_verify_RC(const llarp::RouterContact &rc, llarp::ILinkLayer *link);
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void
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HandleDHTLookupForSendTo(
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llarp::RouterID remote,
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const std::vector< llarp::RouterContact > &results);
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bool
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HasSessionTo(const llarp::RouterID &remote) const;
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void
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HandleDHTLookupForTryEstablishTo(
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llarp::RouterID remote,
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const std::vector< llarp::RouterContact > &results);
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static void
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on_verify_client_rc(llarp_async_verify_rc *context);
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static void
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on_verify_server_rc(llarp_async_verify_rc *context);
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static void
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handle_router_ticker(void *user, uint64_t orig, uint64_t left);
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static void
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HandleAsyncLoadRCForSendTo(llarp_async_load_rc *async);
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private:
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template < typename Config >
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void
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mergeHiddenServiceConfig(const Config &in, Config &out)
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{
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for(const auto &item : netConfig)
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out.push_back({item.first, item.second});
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for(const auto &item : in)
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out.push_back({item.first, item.second});
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}
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};
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} // namespace llarp
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#endif
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