mirror of
https://github.com/oxen-io/lokinet.git
synced 2024-10-31 09:20:21 +00:00
df4ea34a56
* bump zmq static dep * lokimq -> oxenmq * llarp_nodedb -> llarp::NodeDB * remove all crufty api parts of NodeDB * make NodeDB rc selection api not suck * make path builder api not suck * propagate all above changes so that unit tests work and it all compiles
398 lines
9.7 KiB
C++
398 lines
9.7 KiB
C++
#include <chrono>
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#include <router/rc_lookup_handler.hpp>
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#include <link/i_link_manager.hpp>
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#include <link/server.hpp>
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#include <crypto/crypto.hpp>
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#include <service/context.hpp>
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#include <router_contact.hpp>
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#include <util/types.hpp>
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#include <util/thread/threading.hpp>
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#include <nodedb.hpp>
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#include <dht/context.hpp>
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#include <router/abstractrouter.hpp>
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#include <iterator>
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#include <functional>
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#include <random>
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namespace llarp
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{
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void
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RCLookupHandler::AddValidRouter(const RouterID& router)
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{
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util::Lock l(_mutex);
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whitelistRouters.insert(router);
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}
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void
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RCLookupHandler::RemoveValidRouter(const RouterID& router)
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{
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util::Lock l(_mutex);
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whitelistRouters.erase(router);
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}
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void
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RCLookupHandler::SetRouterWhitelist(const std::vector<RouterID>& routers)
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{
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if (routers.empty())
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return;
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util::Lock l(_mutex);
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whitelistRouters.clear();
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for (auto& router : routers)
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{
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whitelistRouters.emplace(router);
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}
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LogInfo("lokinet service node list now has ", whitelistRouters.size(), " routers");
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}
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bool
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RCLookupHandler::HaveReceivedWhitelist()
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{
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util::Lock l(_mutex);
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return not whitelistRouters.empty();
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}
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void
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RCLookupHandler::GetRC(const RouterID& router, RCRequestCallback callback, bool forceLookup)
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{
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RouterContact remoteRC;
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if (not forceLookup)
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{
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if (const auto maybe = _nodedb->Get(router); maybe.has_value())
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{
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remoteRC = *maybe;
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if (callback)
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{
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callback(router, &remoteRC, RCRequestResult::Success);
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}
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FinalizeRequest(router, &remoteRC, RCRequestResult::Success);
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return;
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}
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}
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bool shouldDoLookup = false;
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{
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util::Lock l(_mutex);
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auto itr_pair = pendingCallbacks.emplace(router, CallbacksQueue{});
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if (callback)
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{
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itr_pair.first->second.push_back(callback);
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}
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shouldDoLookup = itr_pair.second;
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}
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if (shouldDoLookup)
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{
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auto fn =
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std::bind(&RCLookupHandler::HandleDHTLookupResult, this, router, std::placeholders::_1);
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// if we are a client try using the hidden service endpoints
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if (!isServiceNode)
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{
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bool sent = false;
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LogInfo("Lookup ", router, " anonymously");
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_hiddenServiceContext->ForEachService(
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[&](const std::string&, const std::shared_ptr<service::Endpoint>& ep) -> bool {
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const bool success = ep->LookupRouterAnon(router, fn);
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sent = sent || success;
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return !success;
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});
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if (sent)
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return;
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LogWarn("cannot lookup ", router, " anonymously");
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}
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if (!_dht->impl->LookupRouter(router, fn))
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{
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FinalizeRequest(router, nullptr, RCRequestResult::RouterNotFound);
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}
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else
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{
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_routerLookupTimes[router] = std::chrono::steady_clock::now();
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}
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}
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}
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bool
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RCLookupHandler::RemoteIsAllowed(const RouterID& remote) const
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{
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if (_strictConnectPubkeys.size() && _strictConnectPubkeys.count(remote) == 0
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&& !RemoteInBootstrap(remote))
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{
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return false;
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}
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util::Lock l(_mutex);
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if (useWhitelist && whitelistRouters.find(remote) == whitelistRouters.end())
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{
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return false;
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}
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return true;
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}
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bool
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RCLookupHandler::CheckRC(const RouterContact& rc) const
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{
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if (not RemoteIsAllowed(rc.pubkey))
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{
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_dht->impl->DelRCNodeAsync(dht::Key_t{rc.pubkey});
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return false;
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}
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if (not rc.Verify(_dht->impl->Now()))
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{
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LogWarn("RC for ", RouterID(rc.pubkey), " is invalid");
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return false;
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}
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// update nodedb if required
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if (rc.IsPublicRouter())
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{
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LogDebug("Adding or updating RC for ", RouterID(rc.pubkey), " to nodedb and dht.");
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const RouterContact copy{rc};
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LogicCall(_logic, [copy, n = _nodedb]() { n->PutIfNewer(copy); });
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_dht->impl->PutRCNodeAsync(rc);
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}
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return true;
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}
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size_t
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RCLookupHandler::NumberOfStrictConnectRouters() const
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{
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return _strictConnectPubkeys.size();
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}
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bool
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RCLookupHandler::GetRandomWhitelistRouter(RouterID& router) const
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{
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util::Lock l(_mutex);
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const auto sz = whitelistRouters.size();
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auto itr = whitelistRouters.begin();
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if (sz == 0)
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return false;
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if (sz > 1)
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std::advance(itr, randint() % sz);
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router = *itr;
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return true;
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}
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bool
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RCLookupHandler::CheckRenegotiateValid(RouterContact newrc, RouterContact oldrc)
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{
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// mismatch of identity ?
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if (newrc.pubkey != oldrc.pubkey)
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return false;
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if (!RemoteIsAllowed(newrc.pubkey))
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return false;
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auto func = std::bind(&RCLookupHandler::CheckRC, this, newrc);
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_work(func);
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// update dht if required
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if (_dht->impl->Nodes()->HasNode(dht::Key_t{newrc.pubkey}))
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{
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_dht->impl->Nodes()->PutNode(newrc);
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}
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// TODO: check for other places that need updating the RC
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return true;
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}
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void
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RCLookupHandler::PeriodicUpdate(llarp_time_t now)
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{
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// try looking up stale routers
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std::unordered_set<RouterID> routersToLookUp;
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_nodedb->VisitInsertedBefore(
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[&](const RouterContact& rc) {
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if (HavePendingLookup(rc.pubkey))
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return;
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routersToLookUp.insert(rc.pubkey);
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},
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now - RouterContact::UpdateInterval);
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for (const auto& router : routersToLookUp)
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{
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GetRC(router, nullptr, true);
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}
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_nodedb->RemoveStaleRCs(_bootstrapRouterIDList, now - RouterContact::StaleInsertionAge);
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}
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void
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RCLookupHandler::ExploreNetwork()
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{
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const size_t known = _nodedb->NumLoaded();
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if (_bootstrapRCList.empty() && known == 0)
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{
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LogError("we have no bootstrap nodes specified");
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}
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else if (known <= _bootstrapRCList.size())
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{
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for (const auto& rc : _bootstrapRCList)
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{
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LogInfo("Doing explore via bootstrap node: ", RouterID(rc.pubkey));
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_dht->impl->ExploreNetworkVia(dht::Key_t{rc.pubkey});
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}
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}
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if (useWhitelist)
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{
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static constexpr auto RerequestInterval = 10min;
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static constexpr size_t LookupPerTick = 5;
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std::vector<RouterID> lookupRouters;
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lookupRouters.reserve(LookupPerTick);
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const auto now = std::chrono::steady_clock::now();
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{
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// if we are using a whitelist look up a few routers we don't have
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util::Lock l(_mutex);
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for (const auto& r : whitelistRouters)
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{
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if (now > _routerLookupTimes[r] + RerequestInterval and not _nodedb->Has(r))
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{
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lookupRouters.emplace_back(r);
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}
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}
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}
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if (lookupRouters.size() > LookupPerTick)
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{
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static std::mt19937_64 rng{llarp::randint()};
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std::shuffle(lookupRouters.begin(), lookupRouters.end(), rng);
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lookupRouters.resize(LookupPerTick);
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}
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for (const auto& r : lookupRouters)
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GetRC(r, nullptr, true);
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return;
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}
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// service nodes gossip, not explore
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if (_dht->impl->GetRouter()->IsServiceNode())
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return;
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// explore via every connected peer
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_linkManager->ForEachPeer([&](ILinkSession* s) {
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if (!s->IsEstablished())
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return;
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const RouterContact rc = s->GetRemoteRC();
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if (rc.IsPublicRouter() && (_bootstrapRCList.find(rc) == _bootstrapRCList.end()))
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{
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LogDebug("Doing explore via public node: ", RouterID(rc.pubkey));
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_dht->impl->ExploreNetworkVia(dht::Key_t{rc.pubkey});
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}
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});
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}
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void
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RCLookupHandler::Init(
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llarp_dht_context* dht,
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std::shared_ptr<NodeDB> nodedb,
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std::shared_ptr<Logic> logic,
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WorkerFunc_t dowork,
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ILinkManager* linkManager,
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service::Context* hiddenServiceContext,
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const std::unordered_set<RouterID>& strictConnectPubkeys,
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const std::set<RouterContact>& bootstrapRCList,
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bool useWhitelist_arg,
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bool isServiceNode_arg)
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{
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_dht = dht;
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_nodedb = nodedb;
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_logic = logic;
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_work = dowork;
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_hiddenServiceContext = hiddenServiceContext;
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_strictConnectPubkeys = strictConnectPubkeys;
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_bootstrapRCList = bootstrapRCList;
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_linkManager = linkManager;
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useWhitelist = useWhitelist_arg;
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isServiceNode = isServiceNode_arg;
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for (const auto& rc : _bootstrapRCList)
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{
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_bootstrapRouterIDList.insert(rc.pubkey);
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}
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}
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void
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RCLookupHandler::HandleDHTLookupResult(RouterID remote, const std::vector<RouterContact>& results)
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{
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if (not results.size())
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{
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FinalizeRequest(remote, nullptr, RCRequestResult::RouterNotFound);
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return;
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}
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if (not RemoteIsAllowed(remote))
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{
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FinalizeRequest(remote, &results[0], RCRequestResult::InvalidRouter);
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return;
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}
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if (not CheckRC(results[0]))
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{
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FinalizeRequest(remote, &results[0], RCRequestResult::BadRC);
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return;
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}
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FinalizeRequest(remote, &results[0], RCRequestResult::Success);
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}
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bool
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RCLookupHandler::HavePendingLookup(RouterID remote) const
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{
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util::Lock l(_mutex);
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return pendingCallbacks.find(remote) != pendingCallbacks.end();
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}
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bool
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RCLookupHandler::RemoteInBootstrap(const RouterID& remote) const
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{
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for (const auto& rc : _bootstrapRCList)
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{
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if (rc.pubkey == remote)
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{
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return true;
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}
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}
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return false;
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}
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void
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RCLookupHandler::FinalizeRequest(
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const RouterID& router, const RouterContact* const rc, RCRequestResult result)
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{
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CallbacksQueue movedCallbacks;
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{
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util::Lock l(_mutex);
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auto itr = pendingCallbacks.find(router);
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if (itr != pendingCallbacks.end())
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{
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movedCallbacks.splice(movedCallbacks.begin(), itr->second);
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pendingCallbacks.erase(itr);
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}
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} // lock
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for (const auto& callback : movedCallbacks)
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{
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callback(router, rc, result);
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}
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}
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} // namespace llarp
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