Peer.cpp 14 KB

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  1. /*
  2. * ZeroTier One - Network Virtualization Everywhere
  3. * Copyright (C) 2011-2016 ZeroTier, Inc. https://www.zerotier.com/
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. */
  18. #include "../version.h"
  19. #include "Constants.hpp"
  20. #include "Peer.hpp"
  21. #include "Node.hpp"
  22. #include "Switch.hpp"
  23. #include "Network.hpp"
  24. #include "SelfAwareness.hpp"
  25. #include "Cluster.hpp"
  26. #include "Packet.hpp"
  27. #ifndef AF_MAX
  28. #if AF_INET > AF_INET6
  29. #define AF_MAX AF_INET
  30. #else
  31. #define AF_MAX AF_INET6
  32. #endif
  33. #endif
  34. namespace ZeroTier {
  35. // Used to send varying values for NAT keepalive
  36. static uint32_t _natKeepaliveBuf = 0;
  37. Peer::Peer(const RuntimeEnvironment *renv,const Identity &myIdentity,const Identity &peerIdentity) :
  38. _lastUsed(0),
  39. _lastReceive(0),
  40. _lastUnicastFrame(0),
  41. _lastMulticastFrame(0),
  42. _lastDirectPathPushSent(0),
  43. _lastDirectPathPushReceive(0),
  44. RR(renv),
  45. _remoteClusterOptimal4(0),
  46. _vProto(0),
  47. _vMajor(0),
  48. _vMinor(0),
  49. _vRevision(0),
  50. _id(peerIdentity),
  51. _numPaths(0),
  52. _latency(0),
  53. _directPathPushCutoffCount(0)
  54. {
  55. memset(_remoteClusterOptimal6,0,sizeof(_remoteClusterOptimal6));
  56. if (!myIdentity.agree(peerIdentity,_key,ZT_PEER_SECRET_KEY_LENGTH))
  57. throw std::runtime_error("new peer identity key agreement failed");
  58. }
  59. void Peer::received(
  60. const SharedPtr<Path> &path,
  61. const unsigned int hops,
  62. const uint64_t packetId,
  63. const Packet::Verb verb,
  64. const uint64_t inRePacketId,
  65. const Packet::Verb inReVerb,
  66. const bool trustEstablished,
  67. const SharedPtr<Network> &network)
  68. {
  69. const uint64_t now = RR->node->now();
  70. #ifdef ZT_ENABLE_CLUSTER
  71. bool suboptimalPath = false;
  72. if ((RR->cluster)&&(hops == 0)) {
  73. // Note: findBetterEndpoint() is first since we still want to check
  74. // for a better endpoint even if we don't actually send a redirect.
  75. InetAddress redirectTo;
  76. if ( (verb != Packet::VERB_OK) && (verb != Packet::VERB_ERROR) && (verb != Packet::VERB_RENDEZVOUS) && (verb != Packet::VERB_PUSH_DIRECT_PATHS) && (RR->cluster->findBetterEndpoint(redirectTo,_id.address(),path->address(),false)) ) {
  77. if (_vProto >= 5) {
  78. // For newer peers we can send a more idiomatic verb: PUSH_DIRECT_PATHS.
  79. Packet outp(_id.address(),RR->identity.address(),Packet::VERB_PUSH_DIRECT_PATHS);
  80. outp.append((uint16_t)1); // count == 1
  81. outp.append((uint8_t)ZT_PUSH_DIRECT_PATHS_FLAG_CLUSTER_REDIRECT); // flags: cluster redirect
  82. outp.append((uint16_t)0); // no extensions
  83. if (redirectTo.ss_family == AF_INET) {
  84. outp.append((uint8_t)4);
  85. outp.append((uint8_t)6);
  86. outp.append(redirectTo.rawIpData(),4);
  87. } else {
  88. outp.append((uint8_t)6);
  89. outp.append((uint8_t)18);
  90. outp.append(redirectTo.rawIpData(),16);
  91. }
  92. outp.append((uint16_t)redirectTo.port());
  93. outp.armor(_key,true);
  94. path->send(RR,outp.data(),outp.size(),now);
  95. } else {
  96. // For older peers we use RENDEZVOUS to coax them into contacting us elsewhere.
  97. Packet outp(_id.address(),RR->identity.address(),Packet::VERB_RENDEZVOUS);
  98. outp.append((uint8_t)0); // no flags
  99. RR->identity.address().appendTo(outp);
  100. outp.append((uint16_t)redirectTo.port());
  101. if (redirectTo.ss_family == AF_INET) {
  102. outp.append((uint8_t)4);
  103. outp.append(redirectTo.rawIpData(),4);
  104. } else {
  105. outp.append((uint8_t)16);
  106. outp.append(redirectTo.rawIpData(),16);
  107. }
  108. outp.armor(_key,true);
  109. path->send(RR,outp.data(),outp.size(),now);
  110. }
  111. suboptimalPath = true;
  112. }
  113. }
  114. #endif
  115. _lastReceive = now;
  116. if ((verb == Packet::VERB_FRAME)||(verb == Packet::VERB_EXT_FRAME))
  117. _lastUnicastFrame = now;
  118. else if (verb == Packet::VERB_MULTICAST_FRAME)
  119. _lastMulticastFrame = now;
  120. if (hops == 0) {
  121. bool pathIsConfirmed = false;
  122. {
  123. Mutex::Lock _l(_paths_m);
  124. for(unsigned int p=0;p<_numPaths;++p) {
  125. if (_paths[p].path->address() == path->address()) {
  126. _paths[p].lastReceive = now;
  127. _paths[p].path = path; // local address may have changed!
  128. #ifdef ZT_ENABLE_CLUSTER
  129. _paths[p].localClusterSuboptimal = suboptimalPath;
  130. #endif
  131. pathIsConfirmed = true;
  132. break;
  133. }
  134. }
  135. }
  136. if ( (!pathIsConfirmed) && (RR->node->shouldUsePathForZeroTierTraffic(path->localAddress(),path->address())) ) {
  137. if (verb == Packet::VERB_OK) {
  138. Mutex::Lock _l(_paths_m);
  139. // Since this is a new path, figure out where to put it (possibly replacing an old/dead one)
  140. unsigned int slot;
  141. if (_numPaths < ZT_MAX_PEER_NETWORK_PATHS) {
  142. slot = _numPaths++;
  143. } else {
  144. // First try to replace the worst within the same address family, if possible
  145. int worstSlot = -1;
  146. uint64_t worstScore = 0xffffffffffffffffULL;
  147. for(unsigned int p=0;p<_numPaths;++p) {
  148. if (_paths[p].path->address().ss_family == path->address().ss_family) {
  149. const uint64_t s = _pathScore(p,now);
  150. if (s < worstScore) {
  151. worstScore = s;
  152. worstSlot = (int)p;
  153. }
  154. }
  155. }
  156. if (worstSlot >= 0) {
  157. slot = (unsigned int)worstSlot;
  158. } else {
  159. // If we can't find one with the same family, replace the worst of any family
  160. slot = ZT_MAX_PEER_NETWORK_PATHS - 1;
  161. for(unsigned int p=0;p<_numPaths;++p) {
  162. const uint64_t s = _pathScore(p,now);
  163. if (s < worstScore) {
  164. worstScore = s;
  165. slot = p;
  166. }
  167. }
  168. }
  169. }
  170. _paths[slot].lastReceive = now;
  171. _paths[slot].path = path;
  172. #ifdef ZT_ENABLE_CLUSTER
  173. _paths[slot].localClusterSuboptimal = suboptimalPath;
  174. if (RR->cluster)
  175. RR->cluster->broadcastHavePeer(_id);
  176. #endif
  177. } else {
  178. TRACE("got %s via unknown path %s(%s), confirming...",Packet::verbString(verb),_id.address().toString().c_str(),path->address().toString().c_str());
  179. attemptToContactAt(path->localAddress(),path->address(),now);
  180. path->sent(now);
  181. }
  182. }
  183. } else if (trustEstablished) {
  184. // Send PUSH_DIRECT_PATHS if hops>0 (relayed) and we have a trust relationship (common network membership)
  185. _pushDirectPaths(path,now);
  186. }
  187. }
  188. bool Peer::hasActivePathTo(uint64_t now,const InetAddress &addr) const
  189. {
  190. Mutex::Lock _l(_paths_m);
  191. for(unsigned int p=0;p<_numPaths;++p) {
  192. if ( (_paths[p].path->address() == addr) && ((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION) && (_paths[p].path->alive(now)) )
  193. return true;
  194. }
  195. return false;
  196. }
  197. bool Peer::sendDirect(const void *data,unsigned int len,uint64_t now,bool forceEvenIfDead)
  198. {
  199. Mutex::Lock _l(_paths_m);
  200. int bestp = -1;
  201. uint64_t best = 0ULL;
  202. for(unsigned int p=0;p<_numPaths;++p) {
  203. if ( ((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION) && (_paths[p].path->alive(now)||(forceEvenIfDead)) ) {
  204. const uint64_t s = _pathScore(p,now);
  205. if (s >= best) {
  206. best = s;
  207. bestp = (int)p;
  208. }
  209. }
  210. }
  211. if (bestp >= 0) {
  212. return _paths[bestp].path->send(RR,data,len,now);
  213. } else {
  214. return false;
  215. }
  216. }
  217. SharedPtr<Path> Peer::getBestPath(uint64_t now,bool includeExpired)
  218. {
  219. Mutex::Lock _l(_paths_m);
  220. int bestp = -1;
  221. uint64_t best = 0ULL;
  222. for(unsigned int p=0;p<_numPaths;++p) {
  223. if ( ((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION) || (includeExpired) ) {
  224. const uint64_t s = _pathScore(p,now);
  225. if (s >= best) {
  226. best = s;
  227. bestp = (int)p;
  228. }
  229. }
  230. }
  231. if (bestp >= 0) {
  232. return _paths[bestp].path;
  233. } else {
  234. return SharedPtr<Path>();
  235. }
  236. }
  237. void Peer::sendHELLO(const InetAddress &localAddr,const InetAddress &atAddress,uint64_t now)
  238. {
  239. Packet outp(_id.address(),RR->identity.address(),Packet::VERB_HELLO);
  240. outp.append((unsigned char)ZT_PROTO_VERSION);
  241. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MAJOR);
  242. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MINOR);
  243. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  244. outp.append(now);
  245. RR->identity.serialize(outp,false);
  246. atAddress.serialize(outp);
  247. outp.append((uint64_t)RR->topology->worldId());
  248. outp.append((uint64_t)RR->topology->worldTimestamp());
  249. outp.armor(_key,false); // HELLO is sent in the clear
  250. RR->node->putPacket(localAddr,atAddress,outp.data(),outp.size());
  251. }
  252. void Peer::attemptToContactAt(const InetAddress &localAddr,const InetAddress &atAddress,uint64_t now)
  253. {
  254. if ( (_vProto >= 5) && ( !((_vMajor == 1)&&(_vMinor == 1)&&(_vRevision == 0)) ) ) {
  255. Packet outp(_id.address(),RR->identity.address(),Packet::VERB_ECHO);
  256. outp.armor(_key,true);
  257. RR->node->putPacket(localAddr,atAddress,outp.data(),outp.size());
  258. } else {
  259. sendHELLO(localAddr,atAddress,now);
  260. }
  261. }
  262. bool Peer::doPingAndKeepalive(uint64_t now,int inetAddressFamily)
  263. {
  264. Mutex::Lock _l(_paths_m);
  265. int bestp = -1;
  266. uint64_t best = 0ULL;
  267. for(unsigned int p=0;p<_numPaths;++p) {
  268. if ( ((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION) && ((inetAddressFamily < 0)||((int)_paths[p].path->address().ss_family == inetAddressFamily)) ) {
  269. const uint64_t s = _pathScore(p,now);
  270. if (s >= best) {
  271. best = s;
  272. bestp = (int)p;
  273. }
  274. }
  275. }
  276. if (bestp >= 0) {
  277. if ((now - _paths[bestp].lastReceive) >= ZT_PEER_PING_PERIOD) {
  278. attemptToContactAt(_paths[bestp].path->localAddress(),_paths[bestp].path->address(),now);
  279. _paths[bestp].path->sent(now);
  280. } else if (_paths[bestp].path->needsHeartbeat(now)) {
  281. _natKeepaliveBuf += (uint32_t)((now * 0x9e3779b1) >> 1); // tumble this around to send constantly varying (meaningless) payloads
  282. _paths[bestp].path->send(RR,&_natKeepaliveBuf,sizeof(_natKeepaliveBuf),now);
  283. }
  284. return true;
  285. } else {
  286. return false;
  287. }
  288. }
  289. bool Peer::hasActiveDirectPath(uint64_t now) const
  290. {
  291. Mutex::Lock _l(_paths_m);
  292. for(unsigned int p=0;p<_numPaths;++p) {
  293. if (((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION)&&(_paths[p].path->alive(now)))
  294. return true;
  295. }
  296. return false;
  297. }
  298. bool Peer::resetWithinScope(InetAddress::IpScope scope,int inetAddressFamily,uint64_t now)
  299. {
  300. Mutex::Lock _l(_paths_m);
  301. bool resetSomething = false;
  302. for(unsigned int p=0;p<_numPaths;++p) {
  303. if ( (_paths[p].path->address().ss_family == inetAddressFamily) && (_paths[p].path->address().ipScope() == scope) ) {
  304. attemptToContactAt(_paths[p].path->localAddress(),_paths[p].path->address(),now);
  305. _paths[p].path->sent(now);
  306. _paths[p].lastReceive >>= 2; // de-prioritize heavily vs. other paths, will get reset if we get OK(HELLO) or other traffic
  307. resetSomething = true;
  308. }
  309. }
  310. return resetSomething;
  311. }
  312. void Peer::getBestActiveAddresses(uint64_t now,InetAddress &v4,InetAddress &v6) const
  313. {
  314. Mutex::Lock _l(_paths_m);
  315. int bestp4 = -1,bestp6 = -1;
  316. uint64_t best4 = 0ULL,best6 = 0ULL;
  317. for(unsigned int p=0;p<_numPaths;++p) {
  318. if ( ((now - _paths[p].lastReceive) <= ZT_PEER_PATH_EXPIRATION) && (_paths[p].path->alive(now)) ) {
  319. if (_paths[p].path->address().ss_family == AF_INET) {
  320. const uint64_t s = _pathScore(p,now);
  321. if (s >= best4) {
  322. best4 = s;
  323. bestp4 = (int)p;
  324. }
  325. } else if (_paths[p].path->address().ss_family == AF_INET6) {
  326. const uint64_t s = _pathScore(p,now);
  327. if (s >= best6) {
  328. best6 = s;
  329. bestp6 = (int)p;
  330. }
  331. }
  332. }
  333. }
  334. if (bestp4 >= 0)
  335. v4 = _paths[bestp4].path->address();
  336. if (bestp6 >= 0)
  337. v6 = _paths[bestp6].path->address();
  338. }
  339. bool Peer::_pushDirectPaths(const SharedPtr<Path> &path,uint64_t now)
  340. {
  341. #ifdef ZT_ENABLE_CLUSTER
  342. // Cluster mode disables normal PUSH_DIRECT_PATHS in favor of cluster-based peer redirection
  343. if (RR->cluster)
  344. return false;
  345. #endif
  346. if ((now - _lastDirectPathPushSent) < ZT_DIRECT_PATH_PUSH_INTERVAL)
  347. return false;
  348. else _lastDirectPathPushSent = now;
  349. std::vector<InetAddress> pathsToPush;
  350. std::vector<InetAddress> dps(RR->node->directPaths());
  351. for(std::vector<InetAddress>::const_iterator i(dps.begin());i!=dps.end();++i)
  352. pathsToPush.push_back(*i);
  353. std::vector<InetAddress> sym(RR->sa->getSymmetricNatPredictions());
  354. for(unsigned long i=0,added=0;i<sym.size();++i) {
  355. InetAddress tmp(sym[(unsigned long)RR->node->prng() % sym.size()]);
  356. if (std::find(pathsToPush.begin(),pathsToPush.end(),tmp) == pathsToPush.end()) {
  357. pathsToPush.push_back(tmp);
  358. if (++added >= ZT_PUSH_DIRECT_PATHS_MAX_PER_SCOPE_AND_FAMILY)
  359. break;
  360. }
  361. }
  362. if (pathsToPush.empty())
  363. return false;
  364. #ifdef ZT_TRACE
  365. {
  366. std::string ps;
  367. for(std::vector<InetAddress>::const_iterator p(pathsToPush.begin());p!=pathsToPush.end();++p) {
  368. if (ps.length() > 0)
  369. ps.push_back(',');
  370. ps.append(p->toString());
  371. }
  372. TRACE("pushing %u direct paths to %s: %s",(unsigned int)pathsToPush.size(),_id.address().toString().c_str(),ps.c_str());
  373. }
  374. #endif
  375. std::vector<InetAddress>::const_iterator p(pathsToPush.begin());
  376. while (p != pathsToPush.end()) {
  377. Packet outp(_id.address(),RR->identity.address(),Packet::VERB_PUSH_DIRECT_PATHS);
  378. outp.addSize(2); // leave room for count
  379. unsigned int count = 0;
  380. while ((p != pathsToPush.end())&&((outp.size() + 24) < 1200)) {
  381. uint8_t addressType = 4;
  382. switch(p->ss_family) {
  383. case AF_INET:
  384. break;
  385. case AF_INET6:
  386. addressType = 6;
  387. break;
  388. default: // we currently only push IP addresses
  389. ++p;
  390. continue;
  391. }
  392. outp.append((uint8_t)0); // no flags
  393. outp.append((uint16_t)0); // no extensions
  394. outp.append(addressType);
  395. outp.append((uint8_t)((addressType == 4) ? 6 : 18));
  396. outp.append(p->rawIpData(),((addressType == 4) ? 4 : 16));
  397. outp.append((uint16_t)p->port());
  398. ++count;
  399. ++p;
  400. }
  401. if (count) {
  402. outp.setAt(ZT_PACKET_IDX_PAYLOAD,(uint16_t)count);
  403. outp.armor(_key,true);
  404. path->send(RR,outp.data(),outp.size(),now);
  405. }
  406. }
  407. return true;
  408. }
  409. } // namespace ZeroTier