MacEthernetTap.cpp 13 KB

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  1. /*
  2. * Copyright (c)2019 ZeroTier, Inc.
  3. *
  4. * Use of this software is governed by the Business Source License included
  5. * in the LICENSE.TXT file in the project's root directory.
  6. *
  7. * Change Date: 2025-01-01
  8. *
  9. * On the date above, in accordance with the Business Source License, use
  10. * of this software will be governed by version 2.0 of the Apache License.
  11. */
  12. /****/
  13. #include "../node/Constants.hpp"
  14. #ifdef __APPLE__
  15. #include "../node/Utils.hpp"
  16. #include "../node/Mutex.hpp"
  17. #include "../node/Dictionary.hpp"
  18. #include "OSUtils.hpp"
  19. #include "MacEthernetTap.hpp"
  20. #include "MacEthernetTapAgent.h"
  21. #include "MacDNSHelper.hpp"
  22. #include <stdint.h>
  23. #include <stdio.h>
  24. #include <stdlib.h>
  25. #include <string.h>
  26. #include <errno.h>
  27. #include <unistd.h>
  28. #include <signal.h>
  29. #include <fcntl.h>
  30. #include <sys/types.h>
  31. #include <sys/stat.h>
  32. #include <sys/ioctl.h>
  33. #include <sys/wait.h>
  34. #include <sys/select.h>
  35. #include <sys/cdefs.h>
  36. #include <sys/uio.h>
  37. #include <sys/param.h>
  38. #include <sys/ioctl.h>
  39. #include <sys/socket.h>
  40. #include <netinet/in.h>
  41. #include <arpa/inet.h>
  42. #include <net/route.h>
  43. #include <net/if.h>
  44. #include <net/if_dl.h>
  45. #include <sys/sysctl.h>
  46. #include <ifaddrs.h>
  47. #include <string>
  48. #include <map>
  49. #include <set>
  50. #include <algorithm>
  51. #include <filesystem>
  52. static const ZeroTier::MulticastGroup _blindWildcardMulticastGroup(ZeroTier::MAC(0xff),0);
  53. namespace ZeroTier {
  54. static Mutex globalTapCreateLock;
  55. static bool globalTapInitialized = false;
  56. MacEthernetTap::MacEthernetTap(
  57. const char *homePath,
  58. const MAC &mac,
  59. unsigned int mtu,
  60. unsigned int metric,
  61. uint64_t nwid,
  62. const char *friendlyName,
  63. void (*handler)(void *,void *,uint64_t,const MAC &,const MAC &,unsigned int,unsigned int,const void *data,unsigned int len),
  64. void *arg) :
  65. _handler(handler),
  66. _arg(arg),
  67. _nwid(nwid),
  68. _homePath(homePath),
  69. _mtu(mtu),
  70. _metric(metric),
  71. _devNo(0),
  72. _agentStdin(-1),
  73. _agentStdout(-1),
  74. _agentStderr(-1),
  75. _agentStdin2(-1),
  76. _agentStdout2(-1),
  77. _agentStderr2(-1),
  78. _agentPid(-1),
  79. _enabled(true)
  80. {
  81. char ethaddr[64],mtustr[16],devnostr[16],devstr[16],metricstr[16];
  82. OSUtils::ztsnprintf(ethaddr,sizeof(ethaddr),"%.2x:%.2x:%.2x:%.2x:%.2x:%.2x",(int)mac[0],(int)mac[1],(int)mac[2],(int)mac[3],(int)mac[4],(int)mac[5]);
  83. OSUtils::ztsnprintf(mtustr,sizeof(mtustr),"%u",mtu);
  84. OSUtils::ztsnprintf(metricstr,sizeof(metricstr),"%u",metric);
  85. std::string agentPath(homePath);
  86. agentPath.push_back(ZT_PATH_SEPARATOR);
  87. agentPath.append("MacEthernetTapAgent");
  88. if (!OSUtils::fileExists(agentPath.c_str()))
  89. throw std::runtime_error("MacEthernetTapAgent not present in ZeroTier home");
  90. Mutex::Lock _gl(globalTapCreateLock); // only make one at a time
  91. // Destroy all feth devices on first tap start in case ZeroTier did not exit cleanly last time.
  92. // We leave interfaces less than feth100 alone in case something else is messing with feth devices.
  93. if (!globalTapInitialized) {
  94. globalTapInitialized = true;
  95. struct ifaddrs *ifa = (struct ifaddrs *)0;
  96. std::set<std::string> deleted;
  97. if (!getifaddrs(&ifa)) {
  98. struct ifaddrs *p = ifa;
  99. while (p) {
  100. int nameLen = (int)strlen(p->ifa_name);
  101. // Delete feth# from feth0 to feth9999, but don't touch >10000.
  102. if ((!strncmp(p->ifa_name,"feth",4))&&(nameLen >= 5)&&(nameLen <= 8)&&(deleted.count(std::string(p->ifa_name)) == 0)) {
  103. deleted.insert(std::string(p->ifa_name));
  104. const char *args[4];
  105. args[0] = "/sbin/ifconfig";
  106. args[1] = p->ifa_name;
  107. args[2] = "destroy";
  108. args[3] = (char *)0;
  109. const pid_t pid = vfork();
  110. if (pid == 0) {
  111. execv(args[0],const_cast<char **>(args));
  112. _exit(-1);
  113. } else if (pid > 0) {
  114. int rv = 0;
  115. waitpid(pid,&rv,0);
  116. }
  117. }
  118. p = p->ifa_next;
  119. }
  120. freeifaddrs(ifa);
  121. }
  122. }
  123. unsigned int devNo = 100 + ((nwid ^ (nwid >> 32) ^ (nwid >> 48)) % 4900);
  124. for(;;) {
  125. OSUtils::ztsnprintf(devnostr,sizeof(devnostr),"%u",devNo);
  126. OSUtils::ztsnprintf(devstr,sizeof(devstr),"feth%u",devNo);
  127. bool duplicate = false;
  128. struct ifaddrs *ifa = (struct ifaddrs *)0;
  129. if (!getifaddrs(&ifa)) {
  130. struct ifaddrs *p = ifa;
  131. while (p) {
  132. if (!strcmp(p->ifa_name,devstr)) {
  133. duplicate = true;
  134. break;
  135. }
  136. p = p->ifa_next;
  137. }
  138. freeifaddrs(ifa);
  139. }
  140. if (duplicate) {
  141. devNo = (devNo + 1) % 5000;
  142. if (devNo < 100)
  143. devNo = 100;
  144. } else {
  145. _dev = devstr;
  146. _devNo = devNo;
  147. break;
  148. }
  149. }
  150. if (::pipe(_shutdownSignalPipe))
  151. throw std::runtime_error("pipe creation failed");
  152. int agentStdin[2];
  153. int agentStdout[2];
  154. int agentStderr[2];
  155. if (::pipe(agentStdin))
  156. throw std::runtime_error("pipe creation failed");
  157. if (::pipe(agentStdout))
  158. throw std::runtime_error("pipe creation failed");
  159. if (::pipe(agentStderr))
  160. throw std::runtime_error("pipe creation failed");
  161. _agentStdin = agentStdin[1];
  162. _agentStdout = agentStdout[0];
  163. _agentStderr = agentStderr[0];
  164. _agentStdin2 = agentStdin[0];
  165. _agentStdout2 = agentStdout[1];
  166. _agentStderr2 = agentStderr[1];
  167. long apid = (long)fork();
  168. if (apid < 0) {
  169. throw std::runtime_error("fork failed");
  170. } else if (apid == 0) {
  171. ::dup2(agentStdin[0],STDIN_FILENO);
  172. ::dup2(agentStdout[1],STDOUT_FILENO);
  173. ::dup2(agentStderr[1],STDERR_FILENO);
  174. ::close(agentStdin[0]);
  175. ::close(agentStdin[1]);
  176. ::close(agentStdout[0]);
  177. ::close(agentStdout[1]);
  178. ::close(agentStderr[0]);
  179. ::close(agentStderr[1]);
  180. ::execl(agentPath.c_str(),agentPath.c_str(),devnostr,ethaddr,mtustr,metricstr,(char *)0);
  181. ::_exit(-1);
  182. } else {
  183. _agentPid = apid;
  184. }
  185. Thread::sleep(100); // this causes them to come up in a more user-friendly order on launch
  186. _thread = Thread::start(this);
  187. }
  188. MacEthernetTap::~MacEthernetTap()
  189. {
  190. char tmp[64];
  191. const char *args[4];
  192. pid_t pid0,pid1;
  193. MacDNSHelper::removeDNS(_nwid);
  194. Mutex::Lock _gl(globalTapCreateLock);
  195. ::write(_shutdownSignalPipe[1],"\0",1); // causes thread to exit
  196. int ec = 0;
  197. ::kill(_agentPid,SIGKILL);
  198. ::waitpid(_agentPid,&ec,0);
  199. args[0] = "/sbin/ifconfig";
  200. args[1] = _dev.c_str();
  201. args[2] = "destroy";
  202. args[3] = (char *)0;
  203. pid0 = vfork();
  204. if (pid0 == 0) {
  205. execv(args[0],const_cast<char **>(args));
  206. _exit(-1);
  207. }
  208. snprintf(tmp,sizeof(tmp),"feth%u",_devNo + 5000);
  209. //args[0] = "/sbin/ifconfig";
  210. args[1] = tmp;
  211. //args[2] = "destroy";
  212. //args[3] = (char *)0;
  213. pid1 = vfork();
  214. if (pid1 == 0) {
  215. execv(args[0],const_cast<char **>(args));
  216. _exit(-1);
  217. }
  218. if (pid0 > 0) {
  219. int rv = 0;
  220. waitpid(pid0,&rv,0);
  221. }
  222. if (pid1 > 0) {
  223. int rv = 0;
  224. waitpid(pid1,&rv,0);
  225. }
  226. Thread::join(_thread);
  227. }
  228. void MacEthernetTap::setEnabled(bool en) { _enabled = en; }
  229. bool MacEthernetTap::enabled() const { return _enabled; }
  230. bool MacEthernetTap::addIp(const InetAddress &ip)
  231. {
  232. char tmp[128];
  233. if (!ip)
  234. return false;
  235. std::string cmd;
  236. cmd.push_back((char)ZT_MACETHERNETTAPAGENT_STDIN_CMD_IFCONFIG);
  237. cmd.append((ip.ss_family == AF_INET6) ? "inet6" : "inet");
  238. cmd.push_back(0);
  239. cmd.append(ip.toString(tmp));
  240. cmd.push_back(0);
  241. cmd.append("alias");
  242. cmd.push_back(0);
  243. uint16_t l = (uint16_t)cmd.length();
  244. _putLock.lock();
  245. write(_agentStdin,&l,2);
  246. write(_agentStdin,cmd.data(),cmd.length());
  247. _putLock.unlock();
  248. return true;
  249. }
  250. bool MacEthernetTap::removeIp(const InetAddress &ip)
  251. {
  252. char tmp[128];
  253. if (!ip)
  254. return false;
  255. std::string cmd;
  256. cmd.push_back((char)ZT_MACETHERNETTAPAGENT_STDIN_CMD_IFCONFIG);
  257. cmd.append((ip.ss_family == AF_INET6) ? "inet6" : "inet");
  258. cmd.push_back(0);
  259. cmd.append(ip.toString(tmp));
  260. cmd.push_back(0);
  261. cmd.append("-alias");
  262. cmd.push_back(0);
  263. uint16_t l = (uint16_t)cmd.length();
  264. _putLock.lock();
  265. write(_agentStdin,&l,2);
  266. write(_agentStdin,cmd.data(),cmd.length());
  267. _putLock.unlock();
  268. return true;
  269. }
  270. std::vector<InetAddress> MacEthernetTap::ips() const
  271. {
  272. struct ifaddrs *ifa = (struct ifaddrs *)0;
  273. std::vector<InetAddress> r;
  274. if (!getifaddrs(&ifa)) {
  275. struct ifaddrs *p = ifa;
  276. while (p) {
  277. if ((p->ifa_name)&&(!strcmp(p->ifa_name,_dev.c_str()))&&(p->ifa_addr)) {
  278. switch(p->ifa_addr->sa_family) {
  279. case AF_INET: {
  280. struct sockaddr_in *sin = (struct sockaddr_in *)p->ifa_addr;
  281. struct sockaddr_in *nm = (struct sockaddr_in *)p->ifa_netmask;
  282. r.push_back(InetAddress(&(sin->sin_addr.s_addr),4,Utils::countBits((uint32_t)nm->sin_addr.s_addr)));
  283. } break;
  284. case AF_INET6: {
  285. struct sockaddr_in6 *sin = (struct sockaddr_in6 *)p->ifa_addr;
  286. struct sockaddr_in6 *nm = (struct sockaddr_in6 *)p->ifa_netmask;
  287. uint32_t b[4];
  288. memcpy(b,nm->sin6_addr.s6_addr,sizeof(b));
  289. r.push_back(InetAddress(sin->sin6_addr.s6_addr,16,Utils::countBits(b[0]) + Utils::countBits(b[1]) + Utils::countBits(b[2]) + Utils::countBits(b[3])));
  290. } break;
  291. }
  292. }
  293. p = p->ifa_next;
  294. }
  295. freeifaddrs(ifa);
  296. }
  297. std::sort(r.begin(),r.end());
  298. r.erase(std::unique(r.begin(),r.end()),r.end());
  299. return r;
  300. }
  301. void MacEthernetTap::put(const MAC &from,const MAC &to,unsigned int etherType,const void *data,unsigned int len)
  302. {
  303. struct iovec iov[3];
  304. unsigned char hdr[15];
  305. uint16_t l;
  306. if ((_agentStdin > 0)&&(len <= _mtu)&&(_enabled)) {
  307. hdr[0] = ZT_MACETHERNETTAPAGENT_STDIN_CMD_PACKET;
  308. to.copyTo(hdr + 1,6);
  309. from.copyTo(hdr + 7,6);
  310. hdr[13] = (unsigned char)((etherType >> 8) & 0xff);
  311. hdr[14] = (unsigned char)(etherType & 0xff);
  312. l = (uint16_t)(len + 15);
  313. iov[0].iov_base = &l;
  314. iov[0].iov_len = 2;
  315. iov[1].iov_base = hdr;
  316. iov[1].iov_len = 15;
  317. iov[2].iov_base = const_cast<void *>(data);
  318. iov[2].iov_len = len;
  319. _putLock.lock();
  320. writev(_agentStdin,iov,3);
  321. _putLock.unlock();
  322. }
  323. }
  324. std::string MacEthernetTap::deviceName() const { return _dev; }
  325. void MacEthernetTap::setFriendlyName(const char *friendlyName) {}
  326. void MacEthernetTap::scanMulticastGroups(std::vector<MulticastGroup> &added,std::vector<MulticastGroup> &removed)
  327. {
  328. std::vector<MulticastGroup> newGroups;
  329. struct ifmaddrs *ifmap = (struct ifmaddrs *)0;
  330. if (!getifmaddrs(&ifmap)) {
  331. struct ifmaddrs *p = ifmap;
  332. while (p) {
  333. if (p->ifma_addr->sa_family == AF_LINK) {
  334. struct sockaddr_dl *in = (struct sockaddr_dl *)p->ifma_name;
  335. struct sockaddr_dl *la = (struct sockaddr_dl *)p->ifma_addr;
  336. if ((la->sdl_alen == 6)&&(in->sdl_nlen <= _dev.length())&&(!memcmp(_dev.data(),in->sdl_data,in->sdl_nlen)))
  337. newGroups.push_back(MulticastGroup(MAC(la->sdl_data + la->sdl_nlen,6),0));
  338. }
  339. p = p->ifma_next;
  340. }
  341. freeifmaddrs(ifmap);
  342. }
  343. std::vector<InetAddress> allIps(ips());
  344. for(std::vector<InetAddress>::iterator ip(allIps.begin());ip!=allIps.end();++ip)
  345. newGroups.push_back(MulticastGroup::deriveMulticastGroupForAddressResolution(*ip));
  346. std::sort(newGroups.begin(),newGroups.end());
  347. newGroups.erase(std::unique(newGroups.begin(),newGroups.end()),newGroups.end());
  348. for(std::vector<MulticastGroup>::iterator m(newGroups.begin());m!=newGroups.end();++m) {
  349. if (!std::binary_search(_multicastGroups.begin(),_multicastGroups.end(),*m))
  350. added.push_back(*m);
  351. }
  352. for(std::vector<MulticastGroup>::iterator m(_multicastGroups.begin());m!=_multicastGroups.end();++m) {
  353. if (!std::binary_search(newGroups.begin(),newGroups.end(),*m))
  354. removed.push_back(*m);
  355. }
  356. _multicastGroups.swap(newGroups);
  357. }
  358. void MacEthernetTap::setMtu(unsigned int mtu)
  359. {
  360. if (_mtu != mtu) {
  361. char tmp[16];
  362. std::string cmd;
  363. cmd.push_back((char)ZT_MACETHERNETTAPAGENT_STDIN_CMD_IFCONFIG);
  364. cmd.append("mtu");
  365. cmd.push_back(0);
  366. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%u",mtu);
  367. cmd.append(tmp);
  368. cmd.push_back(0);
  369. uint16_t l = (uint16_t)cmd.length();
  370. _putLock.lock();
  371. write(_agentStdin,&l,2);
  372. write(_agentStdin,cmd.data(),cmd.length());
  373. _putLock.unlock();
  374. _mtu = mtu;
  375. }
  376. }
  377. #define ZT_MACETHERNETTAP_AGENT_READ_BUF_SIZE 131072
  378. void MacEthernetTap::threadMain()
  379. throw()
  380. {
  381. char agentReadBuf[ZT_MACETHERNETTAP_AGENT_READ_BUF_SIZE];
  382. char agentStderrBuf[256];
  383. fd_set readfds,nullfds;
  384. MAC to,from;
  385. Thread::sleep(250);
  386. const int nfds = std::max(std::max(_shutdownSignalPipe[0],_agentStdout),_agentStderr) + 1;
  387. long agentReadPtr = 0;
  388. fcntl(_agentStdout,F_SETFL,fcntl(_agentStdout,F_GETFL)|O_NONBLOCK);
  389. fcntl(_agentStderr,F_SETFL,fcntl(_agentStderr,F_GETFL)|O_NONBLOCK);
  390. FD_ZERO(&readfds);
  391. FD_ZERO(&nullfds);
  392. for(;;) {
  393. FD_SET(_shutdownSignalPipe[0],&readfds);
  394. FD_SET(_agentStdout,&readfds);
  395. FD_SET(_agentStderr,&readfds);
  396. select(nfds,&readfds,&nullfds,&nullfds,(struct timeval *)0);
  397. if (FD_ISSET(_shutdownSignalPipe[0],&readfds))
  398. break;
  399. if (FD_ISSET(_agentStdout,&readfds)) {
  400. long n = (long)read(_agentStdout,agentReadBuf + agentReadPtr,ZT_MACETHERNETTAP_AGENT_READ_BUF_SIZE - agentReadPtr);
  401. if (n > 0) {
  402. agentReadPtr += n;
  403. while (agentReadPtr >= 2) {
  404. long len = *((uint16_t *)agentReadBuf);
  405. if (agentReadPtr >= (len + 2)) {
  406. char *msg = agentReadBuf + 2;
  407. if ((len > 14)&&(_enabled)) {
  408. to.setTo(msg,6);
  409. from.setTo(msg + 6,6);
  410. _handler(_arg,(void *)0,_nwid,from,to,ntohs(((const uint16_t *)msg)[6]),0,(const void *)(msg + 14),(unsigned int)len - 14);
  411. }
  412. if (agentReadPtr > (len + 2)) {
  413. memmove(agentReadBuf,agentReadBuf + len + 2,agentReadPtr -= (len + 2));
  414. } else {
  415. agentReadPtr = 0;
  416. }
  417. } else {
  418. break;
  419. }
  420. }
  421. }
  422. }
  423. if (FD_ISSET(_agentStderr,&readfds)) {
  424. read(_agentStderr,agentStderrBuf,sizeof(agentStderrBuf));
  425. /*
  426. const ssize_t n = read(_agentStderr,agentStderrBuf,sizeof(agentStderrBuf));
  427. if (n > 0)
  428. write(STDERR_FILENO,agentStderrBuf,(size_t)n);
  429. */
  430. }
  431. }
  432. ::close(_agentStdin);
  433. ::close(_agentStdout);
  434. ::close(_agentStderr);
  435. ::close(_agentStdin2);
  436. ::close(_agentStdout2);
  437. ::close(_agentStderr2);
  438. ::close(_shutdownSignalPipe[0]);
  439. ::close(_shutdownSignalPipe[1]);
  440. }
  441. void MacEthernetTap::setDns(const char *domain, const std::vector<InetAddress> &servers)
  442. {
  443. MacDNSHelper::setDNS(this->_nwid, domain, servers);
  444. }
  445. } // namespace ZeroTier
  446. #endif // __APPLE__