Bitcoin Core  29.1.0
P2P Digital Currency
netif.cpp
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1 // Copyright (c) 2024 The Bitcoin Core developers
2 // Distributed under the MIT software license, see the accompanying
3 // file COPYING or https://www.opensource.org/licenses/mit-license.php.
4 
5 #include <bitcoin-build-config.h> // IWYU pragma: keep
6 
7 #include <common/netif.h>
8 
9 #include <logging.h>
10 #include <netbase.h>
11 #include <util/check.h>
12 #include <util/sock.h>
13 #include <util/syserror.h>
14 
15 #if defined(__linux__)
16 #include <linux/rtnetlink.h>
17 #elif defined(__FreeBSD__)
18 #include <osreldate.h>
19 #if __FreeBSD_version >= 1400000
20 // Workaround https://github.com/freebsd/freebsd-src/pull/1070.
21 #define typeof __typeof
22 #include <netlink/netlink.h>
23 #include <netlink/netlink_route.h>
24 #endif
25 #elif defined(WIN32)
26 #include <iphlpapi.h>
27 #elif defined(__APPLE__)
28 #include <net/route.h>
29 #include <sys/sysctl.h>
30 #endif
31 
32 namespace {
33 
34 // Linux and FreeBSD 14.0+. For FreeBSD 13.2 the code can be compiled but
35 // running it requires loading a special kernel module, otherwise socket(AF_NETLINK,...)
36 // will fail, so we skip that.
37 #if defined(__linux__) || (defined(__FreeBSD__) && __FreeBSD_version >= 1400000)
38 
39 std::optional<CNetAddr> QueryDefaultGatewayImpl(sa_family_t family)
40 {
41  // Create a netlink socket.
42  auto sock{CreateSock(AF_NETLINK, SOCK_DGRAM, NETLINK_ROUTE)};
43  if (!sock) {
44  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "socket(AF_NETLINK): %s\n", NetworkErrorString(errno));
45  return std::nullopt;
46  }
47 
48  // Send request.
49  struct {
50  nlmsghdr hdr;
51  rtmsg data;
52  nlattr dst_hdr;
53  char dst_data[16];
54  } request{};
55 
56  // Whether to use the first 4 or 16 bytes from request.dst_data.
57  const size_t dst_data_len = family == AF_INET ? 4 : 16;
58 
59  request.hdr.nlmsg_type = RTM_GETROUTE;
60  request.hdr.nlmsg_flags = NLM_F_REQUEST;
61 #ifdef __linux__
62  // Linux IPv4 / IPv6 - this must be present, otherwise no gateway is found
63  // FreeBSD IPv4 - does not matter, the gateway is found with or without this
64  // FreeBSD IPv6 - this must be absent, otherwise no gateway is found
65  request.hdr.nlmsg_flags |= NLM_F_DUMP;
66 #endif
67  request.hdr.nlmsg_len = NLMSG_LENGTH(sizeof(rtmsg) + sizeof(nlattr) + dst_data_len);
68  request.hdr.nlmsg_seq = 0; // Sequence number, used to match which reply is to which request. Irrelevant for us because we send just one request.
69  request.data.rtm_family = family;
70  request.data.rtm_dst_len = 0; // Prefix length.
71 #ifdef __FreeBSD__
72  // Linux IPv4 / IPv6 this must be absent, otherwise no gateway is found
73  // FreeBSD IPv4 - does not matter, the gateway is found with or without this
74  // FreeBSD IPv6 - this must be present, otherwise no gateway is found
75  request.data.rtm_flags = RTM_F_PREFIX;
76 #endif
77  request.dst_hdr.nla_type = RTA_DST;
78  request.dst_hdr.nla_len = sizeof(nlattr) + dst_data_len;
79 
80  if (sock->Send(&request, request.hdr.nlmsg_len, 0) != static_cast<ssize_t>(request.hdr.nlmsg_len)) {
81  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "send() to netlink socket: %s\n", NetworkErrorString(errno));
82  return std::nullopt;
83  }
84 
85  // Receive response.
86  char response[4096];
87  int64_t recv_result;
88  do {
89  recv_result = sock->Recv(response, sizeof(response), 0);
90  } while (recv_result < 0 && (errno == EINTR || errno == EAGAIN));
91  if (recv_result < 0) {
92  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "recv() from netlink socket: %s\n", NetworkErrorString(errno));
93  return std::nullopt;
94  }
95 
96  for (nlmsghdr* hdr = (nlmsghdr*)response; NLMSG_OK(hdr, recv_result); hdr = NLMSG_NEXT(hdr, recv_result)) {
97  rtmsg* r = (rtmsg*)NLMSG_DATA(hdr);
98  int remaining_len = RTM_PAYLOAD(hdr);
99 
100  // Iterate over the attributes.
101  rtattr *rta_gateway = nullptr;
102  int scope_id = 0;
103  for (rtattr* attr = RTM_RTA(r); RTA_OK(attr, remaining_len); attr = RTA_NEXT(attr, remaining_len)) {
104  if (attr->rta_type == RTA_GATEWAY) {
105  rta_gateway = attr;
106  } else if (attr->rta_type == RTA_OIF && sizeof(int) == RTA_PAYLOAD(attr)) {
107  std::memcpy(&scope_id, RTA_DATA(attr), sizeof(scope_id));
108  }
109  }
110 
111  // Found gateway?
112  if (rta_gateway != nullptr) {
113  if (family == AF_INET && sizeof(in_addr) == RTA_PAYLOAD(rta_gateway)) {
114  in_addr gw;
115  std::memcpy(&gw, RTA_DATA(rta_gateway), sizeof(gw));
116  return CNetAddr(gw);
117  } else if (family == AF_INET6 && sizeof(in6_addr) == RTA_PAYLOAD(rta_gateway)) {
118  in6_addr gw;
119  std::memcpy(&gw, RTA_DATA(rta_gateway), sizeof(gw));
120  return CNetAddr(gw, scope_id);
121  }
122  }
123  }
124 
125  return std::nullopt;
126 }
127 
128 #elif defined(WIN32)
129 
130 std::optional<CNetAddr> QueryDefaultGatewayImpl(sa_family_t family)
131 {
132  NET_LUID interface_luid = {};
133  SOCKADDR_INET destination_address = {};
134  MIB_IPFORWARD_ROW2 best_route = {};
135  SOCKADDR_INET best_source_address = {};
136  DWORD best_if_idx = 0;
137  DWORD status = 0;
138 
139  // Pass empty destination address of the requested type (:: or 0.0.0.0) to get interface of default route.
140  destination_address.si_family = family;
141  status = GetBestInterfaceEx((sockaddr*)&destination_address, &best_if_idx);
142  if (status != NO_ERROR) {
143  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "Could not get best interface for default route: %s\n", NetworkErrorString(status));
144  return std::nullopt;
145  }
146 
147  // Get best route to default gateway.
148  // Leave interface_luid at all-zeros to use interface index instead.
149  status = GetBestRoute2(&interface_luid, best_if_idx, nullptr, &destination_address, 0, &best_route, &best_source_address);
150  if (status != NO_ERROR) {
151  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "Could not get best route for default route for interface index %d: %s\n",
152  best_if_idx, NetworkErrorString(status));
153  return std::nullopt;
154  }
155 
156  Assume(best_route.NextHop.si_family == family);
157  if (family == AF_INET) {
158  return CNetAddr(best_route.NextHop.Ipv4.sin_addr);
159  } else if(family == AF_INET6) {
160  return CNetAddr(best_route.NextHop.Ipv6.sin6_addr, best_route.InterfaceIndex);
161  }
162  return std::nullopt;
163 }
164 
165 #elif defined(__APPLE__)
166 
167 #define ROUNDUP32(a) \
168  ((a) > 0 ? (1 + (((a) - 1) | (sizeof(uint32_t) - 1))) : sizeof(uint32_t))
169 
170 std::optional<CNetAddr> FromSockAddr(const struct sockaddr* addr)
171 {
172  // Fill in a CService from the sockaddr, then drop the port part.
173  CService service;
174  if (service.SetSockAddr(addr, addr->sa_len)) {
175  return (CNetAddr)service;
176  }
177  return std::nullopt;
178 }
179 
181 std::optional<CNetAddr> QueryDefaultGatewayImpl(sa_family_t family)
182 {
183  // net.route.0.inet[6].flags.gateway
184  int mib[] = {CTL_NET, PF_ROUTE, 0, family, NET_RT_FLAGS, RTF_GATEWAY};
185  // The size of the available data is determined by calling sysctl() with oldp=nullptr. See sysctl(3).
186  size_t l = 0;
187  if (sysctl(/*name=*/mib, /*namelen=*/sizeof(mib) / sizeof(int), /*oldp=*/nullptr, /*oldlenp=*/&l, /*newp=*/nullptr, /*newlen=*/0) < 0) {
188  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "Could not get sysctl length of routing table: %s\n", SysErrorString(errno));
189  return std::nullopt;
190  }
191  std::vector<std::byte> buf(l);
192  if (sysctl(/*name=*/mib, /*namelen=*/sizeof(mib) / sizeof(int), /*oldp=*/buf.data(), /*oldlenp=*/&l, /*newp=*/nullptr, /*newlen=*/0) < 0) {
193  LogPrintLevel(BCLog::NET, BCLog::Level::Error, "Could not get sysctl data of routing table: %s\n", SysErrorString(errno));
194  return std::nullopt;
195  }
196  // Iterate over messages (each message is a routing table entry).
197  for (size_t msg_pos = 0; msg_pos < buf.size(); ) {
198  if ((msg_pos + sizeof(rt_msghdr)) > buf.size()) return std::nullopt;
199  const struct rt_msghdr* rt = (const struct rt_msghdr*)(buf.data() + msg_pos);
200  const size_t next_msg_pos = msg_pos + rt->rtm_msglen;
201  if (rt->rtm_msglen < sizeof(rt_msghdr) || next_msg_pos > buf.size()) return std::nullopt;
202  // Iterate over addresses within message, get destination and gateway (if present).
203  // Address data starts after header.
204  size_t sa_pos = msg_pos + sizeof(struct rt_msghdr);
205  std::optional<CNetAddr> dst, gateway;
206  for (int i = 0; i < RTAX_MAX; i++) {
207  if (rt->rtm_addrs & (1 << i)) {
208  // 2 is just sa_len + sa_family, the theoretical minimum size of a socket address.
209  if ((sa_pos + 2) > next_msg_pos) return std::nullopt;
210  const struct sockaddr* sa = (const struct sockaddr*)(buf.data() + sa_pos);
211  if ((sa_pos + sa->sa_len) > next_msg_pos) return std::nullopt;
212  if (i == RTAX_DST) {
213  dst = FromSockAddr(sa);
214  } else if (i == RTAX_GATEWAY) {
215  gateway = FromSockAddr(sa);
216  }
217  // Skip sockaddr entries for bit flags we're not interested in,
218  // move cursor.
219  sa_pos += ROUNDUP32(sa->sa_len);
220  }
221  }
222  // Found default gateway?
223  if (dst && gateway && dst->IsBindAny()) { // Route to 0.0.0.0 or :: ?
224  return *gateway;
225  }
226  // Skip to next message.
227  msg_pos = next_msg_pos;
228  }
229  return std::nullopt;
230 }
231 
232 #else
233 
234 // Dummy implementation.
235 std::optional<CNetAddr> QueryDefaultGatewayImpl(sa_family_t)
236 {
237  return std::nullopt;
238 }
239 
240 #endif
241 
242 }
243 
244 std::optional<CNetAddr> QueryDefaultGateway(Network network)
245 {
246  Assume(network == NET_IPV4 || network == NET_IPV6);
247 
248  sa_family_t family;
249  if (network == NET_IPV4) {
250  family = AF_INET;
251  } else if(network == NET_IPV6) {
252  family = AF_INET6;
253  } else {
254  return std::nullopt;
255  }
256 
257  std::optional<CNetAddr> ret = QueryDefaultGatewayImpl(family);
258 
259  // It's possible for the default gateway to be 0.0.0.0 or ::0 on at least Windows
260  // for some routing strategies. If so, return as if no default gateway was found.
261  if (ret && !ret->IsBindAny()) {
262  return ret;
263  } else {
264  return std::nullopt;
265  }
266 }
267 
268 std::vector<CNetAddr> GetLocalAddresses()
269 {
270  std::vector<CNetAddr> addresses;
271 #ifdef WIN32
272  char pszHostName[256] = "";
273  if (gethostname(pszHostName, sizeof(pszHostName)) != SOCKET_ERROR) {
274  addresses = LookupHost(pszHostName, 0, true);
275  }
276 #elif (HAVE_DECL_GETIFADDRS && HAVE_DECL_FREEIFADDRS)
277  struct ifaddrs* myaddrs;
278  if (getifaddrs(&myaddrs) == 0) {
279  for (struct ifaddrs* ifa = myaddrs; ifa != nullptr; ifa = ifa->ifa_next)
280  {
281  if (ifa->ifa_addr == nullptr) continue;
282  if ((ifa->ifa_flags & IFF_UP) == 0) continue;
283  if ((ifa->ifa_flags & IFF_LOOPBACK) != 0) continue;
284  if (ifa->ifa_addr->sa_family == AF_INET) {
285  struct sockaddr_in* s4 = (struct sockaddr_in*)(ifa->ifa_addr);
286  addresses.emplace_back(s4->sin_addr);
287  } else if (ifa->ifa_addr->sa_family == AF_INET6) {
288  struct sockaddr_in6* s6 = (struct sockaddr_in6*)(ifa->ifa_addr);
289  addresses.emplace_back(s6->sin6_addr);
290  }
291  }
292  freeifaddrs(myaddrs);
293  }
294 #endif
295  return addresses;
296 }
int ret
bool SetSockAddr(const struct sockaddr *paddr, socklen_t addrlen)
Set CService from a network sockaddr.
Definition: netaddress.cpp:810
IPv4.
Definition: netaddress.h:37
memcpy(result.begin(), stream.data(), stream.size())
std::string SysErrorString(int err)
Return system error string from errno value.
Definition: syserror.cpp:19
#define SOCKET_ERROR
Definition: compat.h:57
std::vector< CNetAddr > LookupHost(const std::string &name, unsigned int nMaxSolutions, bool fAllowLookup, DNSLookupFn dns_lookup_function)
Resolve a host string to its corresponding network addresses.
Definition: netbase.cpp:177
A combination of a network address (CNetAddr) and a (TCP) port.
Definition: netaddress.h:530
#define LogPrintLevel(category, level,...)
Definition: logging.h:372
Network
A network type.
Definition: netaddress.h:32
std::optional< CNetAddr > QueryDefaultGateway(Network network)
Query the OS for the default gateway for network.
Definition: netif.cpp:244
#define Assume(val)
Assume is the identity function.
Definition: check.h:97
std::string NetworkErrorString(int err)
Return readable error string for a network error code.
Definition: sock.cpp:422
Network address.
Definition: netaddress.h:111
IPv6.
Definition: netaddress.h:40
std::vector< CNetAddr > GetLocalAddresses()
Return all local non-loopback IPv4 and IPv6 network addresses.
Definition: netif.cpp:268
std::function< std::unique_ptr< Sock >int, int, int)> CreateSock
Socket factory.
Definition: netbase.cpp:557