mirror of
https://github.com/oxen-io/lokinet.git
synced 2024-11-17 15:25:35 +00:00
46ad8d4058
- includes are now sorted in consistent, logical order; first step in an attempt to fix the tomfoolery (no relation to Tom) brought in by include-what-you-use - shuffled around some cmake linking to simplify dependency graph - superfluous files removed
465 lines
13 KiB
C++
465 lines
13 KiB
C++
#pragma once
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#include "common.hpp"
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#include "platform.hpp"
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#include <llarp.hpp>
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#include <llarp/net/net.hpp>
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#include <llarp/router/router.hpp>
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#include <llarp/util/fs.hpp>
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#include <llarp/util/str.hpp>
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#include <arpa/inet.h>
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#include <fcntl.h>
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#include <linux/if_tun.h>
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#include <linux/rtnetlink.h>
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#include <net/if.h>
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#include <oxenc/endian.h>
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#include <sys/socket.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include <cstring>
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#include <exception>
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namespace llarp::vpn
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{
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struct in6_ifreq
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{
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in6_addr addr;
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uint32_t prefixlen;
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unsigned int ifindex;
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};
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class LinuxInterface : public NetworkInterface
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{
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const int m_fd;
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public:
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LinuxInterface(InterfaceInfo info)
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: NetworkInterface{std::move(info)}, m_fd{::open("/dev/net/tun", O_RDWR)}
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{
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if (m_fd == -1)
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throw std::runtime_error("cannot open /dev/net/tun " + std::string{strerror(errno)});
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ifreq ifr{};
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in6_ifreq ifr6{};
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ifr.ifr_flags = IFF_TUN | IFF_NO_PI;
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std::copy_n(
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m_Info.ifname.c_str(),
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std::min(m_Info.ifname.size(), sizeof(ifr.ifr_name)),
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ifr.ifr_name);
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if (::ioctl(m_fd, TUNSETIFF, &ifr) == -1)
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throw std::runtime_error("cannot set interface name: " + std::string{strerror(errno)});
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IOCTL control{AF_INET};
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control.ioctl(SIOCGIFFLAGS, &ifr);
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const int flags = ifr.ifr_flags;
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control.ioctl(SIOCGIFINDEX, &ifr);
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m_Info.index = ifr.ifr_ifindex;
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for (const auto& ifaddr : m_Info.addrs)
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{
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if (ifaddr.fam == AF_INET)
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{
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ifr.ifr_addr.sa_family = AF_INET;
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const nuint32_t addr = ToNet(net::TruncateV6(ifaddr.range.addr));
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((sockaddr_in*)&ifr.ifr_addr)->sin_addr.s_addr = addr.n;
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control.ioctl(SIOCSIFADDR, &ifr);
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const nuint32_t mask = ToNet(net::TruncateV6(ifaddr.range.netmask_bits));
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((sockaddr_in*)&ifr.ifr_netmask)->sin_addr.s_addr = mask.n;
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control.ioctl(SIOCSIFNETMASK, &ifr);
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}
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if (ifaddr.fam == AF_INET6)
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{
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ifr6.addr = net::HUIntToIn6(ifaddr.range.addr);
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ifr6.prefixlen = llarp::bits::count_bits(ifaddr.range.netmask_bits);
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ifr6.ifindex = m_Info.index;
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try
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{
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IOCTL{AF_INET6}.ioctl(SIOCSIFADDR, &ifr6);
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}
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catch (std::exception& ex)
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{
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LogError("we are not allowed to use IPv6 on this system: ", ex.what());
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}
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}
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}
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ifr.ifr_flags = static_cast<short>(flags | IFF_UP | IFF_NO_PI);
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control.ioctl(SIOCSIFFLAGS, &ifr);
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}
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virtual ~LinuxInterface()
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{
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::close(m_fd);
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}
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int
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PollFD() const override
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{
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return m_fd;
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}
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net::IPPacket
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ReadNextPacket() override
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{
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std::vector<byte_t> pkt;
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pkt.resize(net::IPPacket::MaxSize);
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const auto sz = read(m_fd, pkt.data(), pkt.capacity());
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if (sz < 0)
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{
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if (errno == EAGAIN or errno == EWOULDBLOCK)
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{
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errno = 0;
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return net::IPPacket{};
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}
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throw std::error_code{errno, std::system_category()};
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}
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pkt.resize(sz);
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return pkt;
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}
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bool
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WritePacket(net::IPPacket pkt) override
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{
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const auto sz = write(m_fd, pkt.data(), pkt.size());
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if (sz <= 0)
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return false;
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return sz == static_cast<ssize_t>(pkt.size());
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}
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};
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class LinuxRouteManager : public AbstractRouteManager
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{
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const int fd;
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enum class GatewayMode
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{
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eFirstHop,
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eLowerDefault,
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eUpperDefault
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};
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struct NLRequest
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{
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nlmsghdr n;
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rtmsg r;
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char buf[4096];
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void
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AddData(int type, const void* data, int alen)
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{
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#define NLMSG_TAIL(nmsg) ((struct rtattr*)(((intptr_t)(nmsg)) + NLMSG_ALIGN((nmsg)->nlmsg_len)))
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int len = RTA_LENGTH(alen);
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rtattr* rta;
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if (NLMSG_ALIGN(n.nlmsg_len) + RTA_ALIGN(len) > sizeof(*this))
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{
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throw std::length_error{"nlrequest add data overflow"};
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}
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rta = NLMSG_TAIL(&n);
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rta->rta_type = type;
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rta->rta_len = len;
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if (alen)
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{
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memcpy(RTA_DATA(rta), data, alen);
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}
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n.nlmsg_len = NLMSG_ALIGN(n.nlmsg_len) + RTA_ALIGN(len);
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#undef NLMSG_TAIL
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}
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};
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/* Helper structure for ip address data and attributes */
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struct _inet_addr
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{
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unsigned char family;
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unsigned char bitlen;
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unsigned char data[sizeof(struct in6_addr)];
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_inet_addr(oxen::quic::Address& addr)
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{
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const auto& v4 = addr.is_ipv4();
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family = (v4) ? AF_INET : AF_INET6;
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bitlen = (v4) ? 32 : 128;
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std::memcpy(data, addr.host().data(), (v4) ? 4 : 16);
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}
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_inet_addr(net::ipv4addr_t addr, size_t bits = 32)
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{
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family = AF_INET;
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bitlen = bits;
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std::memcpy(data, &addr.n, 4);
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}
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_inet_addr(net::ipv6addr_t addr, size_t bits = 128)
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{
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family = AF_INET6;
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bitlen = bits;
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std::memcpy(data, &addr.n, 16);
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}
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};
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void
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make_blackhole(int cmd, int flags, int af)
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{
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NLRequest nl_request{};
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/* Initialize request structure */
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nl_request.n.nlmsg_len = NLMSG_LENGTH(sizeof(struct rtmsg));
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nl_request.n.nlmsg_flags = NLM_F_REQUEST | flags;
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nl_request.n.nlmsg_type = cmd;
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nl_request.n.nlmsg_pid = getpid();
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nl_request.r.rtm_family = af;
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nl_request.r.rtm_table = RT_TABLE_LOCAL;
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nl_request.r.rtm_type = RTN_BLACKHOLE;
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nl_request.r.rtm_scope = RT_SCOPE_UNIVERSE;
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if (af == AF_INET)
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{
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uint32_t addr{};
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nl_request.AddData(RTA_DST, &addr, sizeof(addr));
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}
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else
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{
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uint128_t addr{};
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nl_request.AddData(RTA_DST, &addr, sizeof(addr));
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}
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send(fd, &nl_request, sizeof(nl_request), 0);
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}
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void
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make_route(
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int cmd,
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int flags,
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const _inet_addr& dst,
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const _inet_addr& gw,
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GatewayMode mode,
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int if_idx)
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{
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NLRequest nl_request{};
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/* Initialize request structure */
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nl_request.n.nlmsg_len = NLMSG_LENGTH(sizeof(struct rtmsg));
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nl_request.n.nlmsg_flags = NLM_F_REQUEST | flags;
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nl_request.n.nlmsg_type = cmd;
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nl_request.n.nlmsg_pid = getpid();
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nl_request.r.rtm_family = dst.family;
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nl_request.r.rtm_table = RT_TABLE_MAIN;
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if (if_idx)
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{
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nl_request.r.rtm_scope = RT_SCOPE_LINK;
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}
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else
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{
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nl_request.r.rtm_scope = RT_SCOPE_NOWHERE;
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}
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/* Set additional flags if NOT deleting route */
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if (cmd != RTM_DELROUTE)
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{
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nl_request.r.rtm_protocol = RTPROT_BOOT;
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nl_request.r.rtm_type = RTN_UNICAST;
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}
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nl_request.r.rtm_family = dst.family;
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nl_request.r.rtm_dst_len = dst.bitlen;
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nl_request.r.rtm_scope = 0;
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/* Set gateway */
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if (gw.bitlen != 0 and dst.family == AF_INET)
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{
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nl_request.AddData(RTA_GATEWAY, &gw.data, gw.bitlen / 8);
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}
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nl_request.r.rtm_family = gw.family;
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if (mode == GatewayMode::eFirstHop)
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{
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nl_request.AddData(RTA_DST, &dst.data, dst.bitlen / 8);
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/* Set interface */
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nl_request.AddData(RTA_OIF, &if_idx, sizeof(int));
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}
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if (mode == GatewayMode::eUpperDefault)
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{
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if (dst.family == AF_INET)
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{
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nl_request.AddData(RTA_DST, &dst.data, sizeof(uint32_t));
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}
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else
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{
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nl_request.AddData(RTA_OIF, &if_idx, sizeof(int));
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nl_request.AddData(RTA_DST, &dst.data, sizeof(in6_addr));
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}
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}
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/* Send message to the netlink */
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send(fd, &nl_request, sizeof(nl_request), 0);
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}
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void
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default_route_via_interface(NetworkInterface& vpn, int cmd, int flags)
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{
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const auto& info = vpn.Info();
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const auto maybe = Net().GetInterfaceAddr(info.ifname);
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if (not maybe)
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throw std::runtime_error{"we dont have our own network interface?"};
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const _inet_addr gateway{maybe->getIPv4()};
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const _inet_addr lower{ToNet(ipaddr_ipv4_bits(0, 0, 0, 0)), 1};
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const _inet_addr upper{ToNet(ipaddr_ipv4_bits(128, 0, 0, 0)), 1};
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make_route(cmd, flags, lower, gateway, GatewayMode::eLowerDefault, info.index);
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make_route(cmd, flags, upper, gateway, GatewayMode::eUpperDefault, info.index);
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if (const auto maybe6 = Net().GetInterfaceIPv6Address(info.ifname))
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{
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const _inet_addr gateway6{ToNet(*maybe6), 128};
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for (const std::string str : {"::", "4000::", "8000::", "c000::"})
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{
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const _inet_addr hole6{net::ipv6addr_t::from_string(str), 2};
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make_route(cmd, flags, hole6, gateway6, GatewayMode::eUpperDefault, info.index);
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}
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}
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}
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void
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route_via_interface(int cmd, int flags, NetworkInterface& vpn, IPRange range)
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{
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const auto& info = vpn.Info();
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if (range.IsV4())
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{
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const auto maybe = Net().GetInterfaceAddr(info.ifname);
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if (not maybe)
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throw std::runtime_error{"we dont have our own network interface?"};
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const auto gateway = var::visit([](auto&& ip) { return _inet_addr{ip}; }, maybe->getIP());
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const _inet_addr addr{
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ToNet(net::TruncateV6(range.addr)),
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bits::count_bits(net::TruncateV6(range.netmask_bits))};
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make_route(cmd, flags, addr, gateway, GatewayMode::eUpperDefault, info.index);
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}
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else
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{
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const auto maybe = Net().GetInterfaceIPv6Address(info.ifname);
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if (not maybe)
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throw std::runtime_error{"we dont have our own network interface?"};
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const _inet_addr gateway{ToNet(*maybe), 128};
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const _inet_addr addr{ToNet(range.addr), bits::count_bits(range.netmask_bits)};
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make_route(cmd, flags, addr, gateway, GatewayMode::eUpperDefault, info.index);
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}
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}
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void
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make_route(int cmd, int flags, oxen::quic::Address ip, oxen::quic::Address gateway)
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{
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make_route(cmd, flags, _inet_addr{ip}, _inet_addr{gateway}, GatewayMode::eFirstHop, 0);
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}
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public:
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LinuxRouteManager() : fd{socket(AF_NETLINK, SOCK_DGRAM, NETLINK_ROUTE)}
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{
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if (fd == -1)
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throw std::runtime_error{"failed to make netlink socket"};
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}
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~LinuxRouteManager()
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{
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close(fd);
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}
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void
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add_route(oxen::quic::Address ip, oxen::quic::Address gateway) override
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{
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make_route(RTM_NEWROUTE, NLM_F_CREATE | NLM_F_EXCL, ip, gateway);
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}
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void
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delete_route(oxen::quic::Address ip, oxen::quic::Address gateway) override
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{
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make_route(RTM_DELROUTE, 0, ip, gateway);
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}
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void
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add_default_route_via_interface(NetworkInterface& vpn) override
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{
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default_route_via_interface(vpn, RTM_NEWROUTE, NLM_F_CREATE | NLM_F_EXCL);
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}
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void
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delete_default_route_via_interface(NetworkInterface& vpn) override
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{
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default_route_via_interface(vpn, RTM_DELROUTE, 0);
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}
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void
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add_route_via_interface(NetworkInterface& vpn, IPRange range) override
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{
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route_via_interface(RTM_NEWROUTE, NLM_F_CREATE | NLM_F_EXCL, vpn, range);
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}
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void
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delete_route_via_interface(NetworkInterface& vpn, IPRange range) override
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{
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route_via_interface(RTM_DELROUTE, 0, vpn, range);
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}
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std::vector<oxen::quic::Address>
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get_non_interface_gateways(NetworkInterface& vpn) override
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{
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const auto& ifname = vpn.Info().ifname;
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std::vector<oxen::quic::Address> gateways{};
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std::ifstream inf{"/proc/net/route"};
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for (std::string line; std::getline(inf, line);)
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{
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const auto parts = split(line, "\t");
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if (parts[1].find_first_not_of('0') == std::string::npos and parts[0] != ifname)
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{
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const auto& ip = parts[2];
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if ((ip.size() == sizeof(uint32_t) * 2) and oxenc::is_hex(ip))
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{
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std::string buf;
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oxenc::from_hex(ip.begin(), ip.end(), buf.data());
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oxen::quic::Address addr{buf, 0};
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gateways.push_back(std::move(addr));
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}
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}
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}
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return gateways;
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}
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void
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add_blackhole() override
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{
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make_blackhole(RTM_NEWROUTE, NLM_F_CREATE | NLM_F_EXCL, AF_INET);
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make_blackhole(RTM_NEWROUTE, NLM_F_CREATE | NLM_F_EXCL, AF_INET6);
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}
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void
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delete_blackhole() override
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{
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make_blackhole(RTM_DELROUTE, 0, AF_INET);
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make_blackhole(RTM_DELROUTE, 0, AF_INET6);
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}
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};
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class LinuxPlatform : public Platform
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{
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LinuxRouteManager _routeManager{};
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public:
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std::shared_ptr<NetworkInterface>
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ObtainInterface(InterfaceInfo info, Router*) override
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{
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return std::make_shared<LinuxInterface>(std::move(info));
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};
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AbstractRouteManager&
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RouteManager() override
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{
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return _routeManager;
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}
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};
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} // namespace llarp::vpn
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