mirror of
https://github.com/oxen-io/lokinet.git
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7caa87862e
All #ifndef guards on headers have been removed, I think, in favor of #pragma once Headers are now included as `#include "filename"` if the included file resides in the same directory as the file including it, or any subdirectory therein. Otherwise they are included as `#include <project/top/dir/relative/path/filename>` The above does not include system/os headers.
229 lines
5.9 KiB
C++
229 lines
5.9 KiB
C++
#include "endpoint.hpp"
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#include <llarp/handlers/exit.hpp>
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#include <llarp/path/path_context.hpp>
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#include <llarp/router/abstractrouter.hpp>
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namespace llarp
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{
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namespace exit
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{
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Endpoint::Endpoint(
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const llarp::PubKey& remoteIdent,
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const llarp::PathID_t& beginPath,
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bool rewriteIP,
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huint128_t ip,
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llarp::handlers::ExitEndpoint* parent)
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: createdAt(parent->Now())
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, m_Parent(parent)
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, m_remoteSignKey(remoteIdent)
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, m_CurrentPath(beginPath)
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, m_IP(ip)
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, m_RewriteSource(rewriteIP)
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, m_Counter(0)
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{
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m_LastActive = parent->Now();
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}
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Endpoint::~Endpoint()
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{
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m_Parent->DelEndpointInfo(m_CurrentPath);
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}
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void
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Endpoint::Close()
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{
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m_Parent->RemoveExit(this);
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}
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util::StatusObject
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Endpoint::ExtractStatus() const
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{
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auto now = m_Parent->Now();
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util::StatusObject obj{
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{"identity", m_remoteSignKey.ToString()},
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{"ip", m_IP.ToString()},
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{"txRate", m_TxRate},
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{"rxRate", m_RxRate},
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{"createdAt", to_json(createdAt)},
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{"exiting", !m_RewriteSource},
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{"looksDead", LooksDead(now)},
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{"expiresSoon", ExpiresSoon(now)},
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{"expired", IsExpired(now)}};
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return obj;
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}
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bool
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Endpoint::UpdateLocalPath(const llarp::PathID_t& nextPath)
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{
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if (!m_Parent->UpdateEndpointPath(m_remoteSignKey, nextPath))
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return false;
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m_CurrentPath = nextPath;
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return true;
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}
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void
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Endpoint::Tick(llarp_time_t now)
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{
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(void)now;
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m_RxRate = 0;
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m_TxRate = 0;
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}
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bool
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Endpoint::IsExpired(llarp_time_t now) const
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{
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auto path = GetCurrentPath();
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if (path)
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{
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return path->Expired(now);
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}
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// if we don't have an underlying path we are considered expired
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return true;
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}
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bool
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Endpoint::ExpiresSoon(llarp_time_t now, llarp_time_t dlt) const
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{
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auto path = GetCurrentPath();
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if (path)
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return path->ExpiresSoon(now, dlt);
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return true;
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}
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bool
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Endpoint::LooksDead(llarp_time_t now, llarp_time_t timeout) const
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{
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if (ExpiresSoon(now, timeout))
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return true;
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auto path = GetCurrentPath();
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if (!path)
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return true;
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auto lastPing = path->LastRemoteActivityAt();
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if (lastPing == 0s || (now > lastPing && now - lastPing > timeout))
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return now > m_LastActive && now - m_LastActive > timeout;
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else if (lastPing > 0s) // NOLINT
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return now > lastPing && now - lastPing > timeout;
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return lastPing > 0s;
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}
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bool
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Endpoint::QueueOutboundTraffic(ManagedBuffer buf, uint64_t counter)
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{
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// queue overflow
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if (m_UpstreamQueue.size() > MaxUpstreamQueueSize)
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return false;
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llarp::net::IPPacket pkt;
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if (!pkt.Load(buf.underlying))
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return false;
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if (pkt.IsV6() && m_Parent->SupportsV6())
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{
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huint128_t dst;
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if (m_RewriteSource)
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dst = m_Parent->GetIfAddr();
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else
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dst = pkt.dstv6();
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pkt.UpdateIPv6Address(m_IP, dst);
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}
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else if (pkt.IsV4() && !m_Parent->SupportsV6())
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{
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huint32_t dst;
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if (m_RewriteSource)
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dst = net::TruncateV6(m_Parent->GetIfAddr());
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else
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dst = pkt.dstv4();
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pkt.UpdateIPv4Address(xhtonl(net::TruncateV6(m_IP)), xhtonl(dst));
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}
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else
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{
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return false;
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}
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m_UpstreamQueue.emplace(pkt, counter);
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m_TxRate += buf.underlying.sz;
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m_LastActive = m_Parent->Now();
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return true;
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}
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bool
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Endpoint::QueueInboundTraffic(ManagedBuffer buf)
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{
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llarp::net::IPPacket pkt;
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if (!pkt.Load(buf.underlying))
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return false;
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huint128_t src;
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if (m_RewriteSource)
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src = m_Parent->GetIfAddr();
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else
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src = pkt.srcv6();
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if (pkt.IsV6())
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pkt.UpdateIPv6Address(src, m_IP);
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else
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pkt.UpdateIPv4Address(xhtonl(net::TruncateV6(src)), xhtonl(net::TruncateV6(m_IP)));
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const auto _pktbuf = pkt.Buffer();
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const llarp_buffer_t& pktbuf = _pktbuf.underlying;
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const uint8_t queue_idx = pktbuf.sz / llarp::routing::ExitPadSize;
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if (m_DownstreamQueues.find(queue_idx) == m_DownstreamQueues.end())
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m_DownstreamQueues.emplace(queue_idx, InboundTrafficQueue_t{});
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auto& queue = m_DownstreamQueues.at(queue_idx);
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if (queue.size() == 0)
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{
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queue.emplace_back();
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return queue.back().PutBuffer(pktbuf, m_Counter++);
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}
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auto& msg = queue.back();
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if (msg.Size() + pktbuf.sz > llarp::routing::ExitPadSize)
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{
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queue.emplace_back();
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return queue.back().PutBuffer(pktbuf, m_Counter++);
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}
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return msg.PutBuffer(pktbuf, m_Counter++);
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}
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bool
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Endpoint::Flush()
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{
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// flush upstream queue
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while (m_UpstreamQueue.size())
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{
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m_Parent->QueueOutboundTraffic(m_UpstreamQueue.top().pkt);
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m_UpstreamQueue.pop();
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}
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// flush downstream queue
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auto path = GetCurrentPath();
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bool sent = path != nullptr;
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if (path)
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{
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for (auto& item : m_DownstreamQueues)
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{
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auto& queue = item.second;
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while (queue.size())
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{
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auto& msg = queue.front();
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msg.S = path->NextSeqNo();
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if (path->SendRoutingMessage(msg, m_Parent->GetRouter()))
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{
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m_RxRate += msg.Size();
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sent = true;
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}
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queue.pop_front();
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}
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}
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}
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for (auto& item : m_DownstreamQueues)
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item.second.clear();
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return sent;
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}
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llarp::path::HopHandler_ptr
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Endpoint::GetCurrentPath() const
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{
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auto router = m_Parent->GetRouter();
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return router->pathContext().GetByUpstream(router->pubkey(), m_CurrentPath);
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}
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} // namespace exit
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} // namespace llarp
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