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273270916e
This commit reflects changes to clang-format rules. Unfortunately, these rule changes create a massive change to the codebase, which causes an apparent rewrite of git history. Git blame's --ignore-rev flag can be used to ignore this commit when attempting to `git blame` some code.
327 lines
8.6 KiB
C++
327 lines
8.6 KiB
C++
#ifndef LLARP_HANDLERS_TUN_HPP
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#define LLARP_HANDLERS_TUN_HPP
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#include <dns/server.hpp>
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#include <ev/ev.h>
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#include <ev/vpnio.hpp>
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#include <net/ip.hpp>
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#include <net/net.hpp>
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#include <service/endpoint.hpp>
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#include <util/codel.hpp>
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#include <util/thread/threading.hpp>
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#include <future>
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namespace llarp
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{
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namespace handlers
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{
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struct TunEndpoint : public service::Endpoint,
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public dns::IQueryHandler,
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public std::enable_shared_from_this<TunEndpoint>
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{
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TunEndpoint(
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const std::string& nickname,
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AbstractRouter* r,
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llarp::service::Context* parent,
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bool lazyVPN = false);
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~TunEndpoint() override;
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path::PathSet_ptr
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GetSelf() override
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{
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return shared_from_this();
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}
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bool
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SetOption(const std::string& k, const std::string& v) override;
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void
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Tick(llarp_time_t now) override;
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util::StatusObject
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ExtractStatus() const;
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std::unordered_map<std::string, std::string>
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NotifyParams() const override;
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bool
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SupportsV6() const override;
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bool
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ShouldHookDNSMessage(const dns::Message& msg) const override;
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bool
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HandleHookedDNSMessage(
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dns::Message query, std::function<void(dns::Message)> sendreply) override;
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void
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TickTun(llarp_time_t now);
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static void
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tunifTick(llarp_tun_io*);
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bool
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MapAddress(const service::Address& remote, huint128_t ip, bool SNode);
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bool
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Start() override;
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bool
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Stop() override;
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bool
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IsSNode() const;
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/// set up tun interface, blocking
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bool
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SetupTun();
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/// overrides Endpoint
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bool
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SetupNetworking() override;
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/// overrides Endpoint
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bool
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HandleInboundPacket(
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const service::ConvoTag tag, const llarp_buffer_t& pkt, service::ProtocolType t) override
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{
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if (t != service::eProtocolTrafficV4 && t != service::eProtocolTrafficV6)
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return false;
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AlignedBuffer<32> addr;
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bool snode = false;
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if (!GetEndpointWithConvoTag(tag, addr, snode))
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return false;
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return HandleWriteIPPacket(
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pkt, [=]() -> huint128_t { return ObtainIPForAddr(addr, snode); });
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}
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/// handle inbound traffic
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bool
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HandleWriteIPPacket(const llarp_buffer_t& buf, std::function<huint128_t(void)> getFromIP);
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/// queue outbound packet to the world
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bool
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QueueOutboundTraffic(llarp::net::IPPacket&& pkt);
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/// get the local interface's address
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huint128_t
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GetIfAddr() const override;
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/// we have an interface addr
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bool
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HasIfAddr() const override
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{
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return true;
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}
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bool
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HasLocalIP(const huint128_t& ip) const;
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std::unique_ptr<llarp_tun_io> tunif;
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llarp_vpn_io* vpnif = nullptr;
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bool
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InjectVPN(llarp_vpn_io* io, llarp_vpn_ifaddr_info info) override
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{
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if (tunif)
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return false;
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m_LazyVPNPromise.set_value(lazy_vpn{info, io});
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return true;
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}
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/// called before writing to tun interface
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static void
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tunifBeforeWrite(llarp_tun_io* t);
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/// handle user to network send buffer flush
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/// called in router logic thread
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static void
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handleNetSend(void*);
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/// called every time we wish to read a packet from the tun interface
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static void
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tunifRecvPkt(llarp_tun_io* t, const llarp_buffer_t& buf);
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/// called in the endpoint logic thread
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static void
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handleTickTun(void* u);
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/// get a key for ip address
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template <typename Addr_t>
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Addr_t
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ObtainAddrForIP(huint128_t ip, bool isSNode)
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{
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Addr_t addr;
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auto itr = m_IPToAddr.find(ip);
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if (itr != m_IPToAddr.end() and m_SNodes[itr->second] == isSNode)
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{
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addr = Addr_t(itr->second);
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}
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// found
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return addr;
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}
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template <typename Addr_t>
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bool
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FindAddrForIP(Addr_t& addr, huint128_t ip);
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bool
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HasAddress(const AlignedBuffer<32>& addr) const
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{
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return m_AddrToIP.find(addr) != m_AddrToIP.end();
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}
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/// get ip address for key unconditionally
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huint128_t
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ObtainIPForAddr(const AlignedBuffer<32>& addr, bool serviceNode);
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/// flush network traffic
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void
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Flush();
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void
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ResetInternalState() override;
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protected:
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bool
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ShouldFlushNow(llarp_time_t now) const;
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llarp_time_t m_LastFlushAt = 0s;
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using PacketQueue_t = llarp::util::CoDelQueue<
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net::IPPacket,
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net::IPPacket::GetTime,
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net::IPPacket::PutTime,
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net::IPPacket::CompareOrder,
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net::IPPacket::GetNow>;
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/// queue packet for send on net thread from user
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std::vector<net::IPPacket> m_TunPkts;
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/// queue for sending packets over the network from us
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PacketQueue_t m_UserToNetworkPktQueue;
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/// queue for sending packets to user from network
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PacketQueue_t m_NetworkToUserPktQueue;
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/// return true if we have a remote loki address for this ip address
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bool
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HasRemoteForIP(huint128_t ipv4) const;
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/// mark this address as active
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void
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MarkIPActive(huint128_t ip);
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/// mark this address as active forever
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void
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MarkIPActiveForever(huint128_t ip);
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/// flush ip packets
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virtual void
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FlushSend();
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/// maps ip to key (host byte order)
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std::unordered_map<huint128_t, AlignedBuffer<32>> m_IPToAddr;
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/// maps key to ip (host byte order)
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std::unordered_map<AlignedBuffer<32>, huint128_t, AlignedBuffer<32>::Hash> m_AddrToIP;
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/// maps key to true if key is a service node, maps key to false if key is
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/// a hidden service
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std::unordered_map<AlignedBuffer<32>, bool, AlignedBuffer<32>::Hash> m_SNodes;
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private:
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llarp_vpn_io_impl*
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GetVPNImpl()
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{
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if (vpnif && vpnif->impl)
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return static_cast<llarp_vpn_io_impl*>(vpnif->impl);
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return nullptr;
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}
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bool
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QueueInboundPacketForExit(const llarp_buffer_t& buf)
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{
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ManagedBuffer copy{buf};
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return m_NetworkToUserPktQueue.EmplaceIf([&](llarp::net::IPPacket& pkt) -> bool {
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if (!pkt.Load(copy.underlying))
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return false;
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if (SupportsV6())
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{
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if (pkt.IsV4())
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{
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pkt.UpdateIPv6Address(net::IPPacket::ExpandV4(pkt.srcv4()), m_OurIP);
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}
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else
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{
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pkt.UpdateIPv6Address(pkt.srcv6(), m_OurIP);
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}
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}
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else
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{
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if (pkt.IsV4())
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pkt.UpdateIPv4Address(
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xhtonl(pkt.srcv4()), xhtonl(net::IPPacket::TruncateV6(m_OurIP)));
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else
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return false;
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}
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return true;
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});
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}
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template <typename Addr_t, typename Endpoint_t>
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void
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SendDNSReply(
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Addr_t addr,
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Endpoint_t ctx,
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std::shared_ptr<dns::Message> query,
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std::function<void(dns::Message)> reply,
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bool snode,
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bool sendIPv6)
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{
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if (ctx)
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{
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huint128_t ip = ObtainIPForAddr(addr, snode);
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query->answers.clear();
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query->AddINReply(ip, sendIPv6);
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}
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else
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query->AddNXReply();
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reply(*query);
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}
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/// our dns resolver
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std::shared_ptr<dns::Proxy> m_Resolver;
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/// maps ip address to timestamp last active
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std::unordered_map<huint128_t, llarp_time_t> m_IPActivity;
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/// our ip address (host byte order)
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huint128_t m_OurIP;
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/// next ip address to allocate (host byte order)
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huint128_t m_NextIP;
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/// highest ip address to allocate (host byte order)
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huint128_t m_MaxIP;
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/// our ip range we are using
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llarp::IPRange m_OurRange;
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/// upstream dns resolver list
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std::vector<llarp::Addr> m_UpstreamResolvers;
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/// local dns
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llarp::Addr m_LocalResolverAddr;
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/// list of strict connect addresses for hooks
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std::vector<llarp::Addr> m_StrictConnectAddrs;
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/// use v6?
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bool m_UseV6;
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struct lazy_vpn
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{
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llarp_vpn_ifaddr_info info;
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llarp_vpn_io* io;
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};
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std::promise<lazy_vpn> m_LazyVPNPromise;
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/// send packets on endpoint to user using send function
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/// send function returns true to indicate stop iteration and do codel
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/// drop
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void
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FlushToUser(std::function<bool(net::IPPacket&)> sendfunc);
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};
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} // namespace handlers
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} // namespace llarp
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#endif
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