IncomingPacket.cpp 51 KB

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  1. /*
  2. * ZeroTier One - Network Virtualization Everywhere
  3. * Copyright (C) 2011-2017 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. * --
  19. *
  20. * You can be released from the requirements of the license by purchasing
  21. * a commercial license. Buying such a license is mandatory as soon as you
  22. * develop commercial closed-source software that incorporates or links
  23. * directly against ZeroTier software without disclosing the source code
  24. * of your own application.
  25. */
  26. #include <stdio.h>
  27. #include <string.h>
  28. #include <stdlib.h>
  29. #include "../version.h"
  30. #include "../include/ZeroTierOne.h"
  31. #include "Constants.hpp"
  32. #include "RuntimeEnvironment.hpp"
  33. #include "IncomingPacket.hpp"
  34. #include "Topology.hpp"
  35. #include "Switch.hpp"
  36. #include "Peer.hpp"
  37. #include "NetworkController.hpp"
  38. #include "SelfAwareness.hpp"
  39. #include "Salsa20.hpp"
  40. #include "SHA512.hpp"
  41. #include "World.hpp"
  42. #include "Node.hpp"
  43. #include "CertificateOfMembership.hpp"
  44. #include "CertificateOfRepresentation.hpp"
  45. #include "Capability.hpp"
  46. #include "Tag.hpp"
  47. #include "Revocation.hpp"
  48. #include "Trace.hpp"
  49. namespace ZeroTier {
  50. bool IncomingPacket::tryDecode(const RuntimeEnvironment *RR,void *tPtr)
  51. {
  52. const Address sourceAddress(source());
  53. try {
  54. // Check for trusted paths or unencrypted HELLOs (HELLO is the only packet sent in the clear)
  55. const unsigned int c = cipher();
  56. bool trusted = false;
  57. if (c == ZT_PROTO_CIPHER_SUITE__NO_CRYPTO_TRUSTED_PATH) {
  58. // If this is marked as a packet via a trusted path, check source address and path ID.
  59. // Obviously if no trusted paths are configured this always returns false and such
  60. // packets are dropped on the floor.
  61. const uint64_t tpid = trustedPathId();
  62. if (RR->topology->shouldInboundPathBeTrusted(_path->address(),tpid)) {
  63. RR->t->incomingPacketTrustedPath(tPtr,_path,packetId(),sourceAddress,tpid,true);
  64. trusted = true;
  65. } else {
  66. RR->t->incomingPacketTrustedPath(tPtr,_path,packetId(),sourceAddress,tpid,false);
  67. return true;
  68. }
  69. } else if ((c == ZT_PROTO_CIPHER_SUITE__C25519_POLY1305_NONE)&&(verb() == Packet::VERB_HELLO)) {
  70. // Only HELLO is allowed in the clear, but will still have a MAC
  71. return _doHELLO(RR,tPtr,false);
  72. }
  73. const SharedPtr<Peer> peer(RR->topology->getPeer(tPtr,sourceAddress));
  74. if (peer) {
  75. if (!trusted) {
  76. if (!dearmor(peer->key())) {
  77. //fprintf(stderr,"dropped packet from %s(%s), MAC authentication failed (size: %u)" ZT_EOL_S,sourceAddress.toString().c_str(),_path->address().toString().c_str(),size());
  78. RR->t->incomingPacketMessageAuthenticationFailure(tPtr,_path,packetId(),sourceAddress,hops());
  79. return true;
  80. }
  81. }
  82. if (!uncompress()) {
  83. //fprintf(stderr,"dropped packet from %s(%s), compressed data invalid (size %u, verb may be %u)" ZT_EOL_S,sourceAddress.toString().c_str(),_path->address().toString().c_str(),size(),(unsigned int)verb());
  84. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),sourceAddress,hops(),Packet::VERB_NOP,"LZ4 decompression failed");
  85. return true;
  86. }
  87. const Packet::Verb v = verb();
  88. switch(v) {
  89. //case Packet::VERB_NOP:
  90. default: // ignore unknown verbs, but if they pass auth check they are "received"
  91. peer->received(tPtr,_path,hops(),packetId(),v,0,Packet::VERB_NOP,false,0);
  92. return true;
  93. case Packet::VERB_HELLO: return _doHELLO(RR,tPtr,true);
  94. case Packet::VERB_ERROR: return _doERROR(RR,tPtr,peer);
  95. case Packet::VERB_OK: return _doOK(RR,tPtr,peer);
  96. case Packet::VERB_WHOIS: return _doWHOIS(RR,tPtr,peer);
  97. case Packet::VERB_RENDEZVOUS: return _doRENDEZVOUS(RR,tPtr,peer);
  98. case Packet::VERB_FRAME: return _doFRAME(RR,tPtr,peer);
  99. case Packet::VERB_EXT_FRAME: return _doEXT_FRAME(RR,tPtr,peer);
  100. case Packet::VERB_ECHO: return _doECHO(RR,tPtr,peer);
  101. case Packet::VERB_MULTICAST_LIKE: return _doMULTICAST_LIKE(RR,tPtr,peer);
  102. case Packet::VERB_NETWORK_CREDENTIALS: return _doNETWORK_CREDENTIALS(RR,tPtr,peer);
  103. case Packet::VERB_NETWORK_CONFIG_REQUEST: return _doNETWORK_CONFIG_REQUEST(RR,tPtr,peer);
  104. case Packet::VERB_NETWORK_CONFIG: return _doNETWORK_CONFIG(RR,tPtr,peer);
  105. case Packet::VERB_MULTICAST_GATHER: return _doMULTICAST_GATHER(RR,tPtr,peer);
  106. case Packet::VERB_MULTICAST_FRAME: return _doMULTICAST_FRAME(RR,tPtr,peer);
  107. case Packet::VERB_PUSH_DIRECT_PATHS: return _doPUSH_DIRECT_PATHS(RR,tPtr,peer);
  108. case Packet::VERB_USER_MESSAGE: return _doUSER_MESSAGE(RR,tPtr,peer);
  109. }
  110. } else {
  111. RR->sw->requestWhois(tPtr,sourceAddress);
  112. return false;
  113. }
  114. } catch ( ... ) {
  115. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),sourceAddress,hops(),verb(),"unexpected exception in tryDecode() (outer)");
  116. return true;
  117. }
  118. }
  119. bool IncomingPacket::_doERROR(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  120. {
  121. try {
  122. const Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_ERROR_IDX_IN_RE_VERB];
  123. const uint64_t inRePacketId = at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_IN_RE_PACKET_ID);
  124. const Packet::ErrorCode errorCode = (Packet::ErrorCode)(*this)[ZT_PROTO_VERB_ERROR_IDX_ERROR_CODE];
  125. uint64_t networkId = 0;
  126. /* Security note: we do not gate doERROR() with expectingReplyTo() to
  127. * avoid having to log every outgoing packet ID. Instead we put the
  128. * logic to determine whether we should consider an ERROR in each
  129. * error handler. In most cases these are only trusted in specific
  130. * circumstances. */
  131. switch(errorCode) {
  132. case Packet::ERROR_OBJ_NOT_FOUND:
  133. // Object not found, currently only meaningful from network controllers.
  134. if (inReVerb == Packet::VERB_NETWORK_CONFIG_REQUEST) {
  135. const SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  136. if ((network)&&(network->controller() == peer->address()))
  137. network->setNotFound();
  138. }
  139. break;
  140. case Packet::ERROR_UNSUPPORTED_OPERATION:
  141. // This can be sent in response to any operation, though right now we only
  142. // consider it meaningful from network controllers. This would indicate
  143. // that the queried node does not support acting as a controller.
  144. if (inReVerb == Packet::VERB_NETWORK_CONFIG_REQUEST) {
  145. const SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  146. if ((network)&&(network->controller() == peer->address()))
  147. network->setNotFound();
  148. }
  149. break;
  150. case Packet::ERROR_IDENTITY_COLLISION:
  151. // FIXME: for federation this will need a payload with a signature or something.
  152. if (RR->topology->isUpstream(peer->identity()))
  153. RR->node->postEvent(tPtr,ZT_EVENT_FATAL_ERROR_IDENTITY_COLLISION);
  154. break;
  155. case Packet::ERROR_NEED_MEMBERSHIP_CERTIFICATE: {
  156. // Peers can send this in response to frames if they do not have a recent enough COM from us
  157. networkId = at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD);
  158. const SharedPtr<Network> network(RR->node->network(networkId));
  159. const uint64_t now = RR->node->now();
  160. if ( (network) && (network->config().com) && (peer->rateGateIncomingComRequest(now)) )
  161. network->pushCredentialsNow(tPtr,peer->address(),now);
  162. } break;
  163. case Packet::ERROR_NETWORK_ACCESS_DENIED_: {
  164. // Network controller: network access denied.
  165. const SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  166. if ((network)&&(network->controller() == peer->address()))
  167. network->setAccessDenied();
  168. } break;
  169. case Packet::ERROR_UNWANTED_MULTICAST: {
  170. // Members of networks can use this error to indicate that they no longer
  171. // want to receive multicasts on a given channel.
  172. networkId = at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD);
  173. const SharedPtr<Network> network(RR->node->network(networkId));
  174. if ((network)&&(network->gate(tPtr,peer))) {
  175. const MulticastGroup mg(MAC(field(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD + 8,6),6),at<uint32_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD + 14));
  176. RR->mc->remove(network->id(),mg,peer->address());
  177. }
  178. } break;
  179. default: break;
  180. }
  181. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_ERROR,inRePacketId,inReVerb,false,networkId);
  182. } catch ( ... ) {
  183. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_ERROR,"unexpected exception");
  184. }
  185. return true;
  186. }
  187. bool IncomingPacket::_doHELLO(const RuntimeEnvironment *RR,void *tPtr,const bool alreadyAuthenticated)
  188. {
  189. try {
  190. const uint64_t now = RR->node->now();
  191. const uint64_t pid = packetId();
  192. const Address fromAddress(source());
  193. const unsigned int protoVersion = (*this)[ZT_PROTO_VERB_HELLO_IDX_PROTOCOL_VERSION];
  194. const unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MAJOR_VERSION];
  195. const unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MINOR_VERSION];
  196. const unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO_IDX_REVISION);
  197. const uint64_t timestamp = at<uint64_t>(ZT_PROTO_VERB_HELLO_IDX_TIMESTAMP);
  198. Identity id;
  199. unsigned int ptr = ZT_PROTO_VERB_HELLO_IDX_IDENTITY + id.deserialize(*this,ZT_PROTO_VERB_HELLO_IDX_IDENTITY);
  200. if (protoVersion < ZT_PROTO_VERSION_MIN) {
  201. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"protocol version too old");
  202. return true;
  203. }
  204. if (fromAddress != id.address()) {
  205. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"identity/address mismatch");
  206. return true;
  207. }
  208. SharedPtr<Peer> peer(RR->topology->getPeer(tPtr,id.address()));
  209. if (peer) {
  210. // We already have an identity with this address -- check for collisions
  211. if (!alreadyAuthenticated) {
  212. if (peer->identity() != id) {
  213. // Identity is different from the one we already have -- address collision
  214. // Check rate limits
  215. if (!RR->node->rateGateIdentityVerification(now,_path->address()))
  216. return true;
  217. uint8_t key[ZT_PEER_SECRET_KEY_LENGTH];
  218. if (RR->identity.agree(id,key,ZT_PEER_SECRET_KEY_LENGTH)) {
  219. if (dearmor(key)) { // ensure packet is authentic, otherwise drop
  220. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"address collision");
  221. Packet outp(id.address(),RR->identity.address(),Packet::VERB_ERROR);
  222. outp.append((uint8_t)Packet::VERB_HELLO);
  223. outp.append((uint64_t)pid);
  224. outp.append((uint8_t)Packet::ERROR_IDENTITY_COLLISION);
  225. outp.armor(key,true,_path->nextOutgoingCounter());
  226. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  227. } else {
  228. RR->t->incomingPacketMessageAuthenticationFailure(tPtr,_path,pid,fromAddress,hops());
  229. }
  230. } else {
  231. RR->t->incomingPacketMessageAuthenticationFailure(tPtr,_path,pid,fromAddress,hops());
  232. }
  233. return true;
  234. } else {
  235. // Identity is the same as the one we already have -- check packet integrity
  236. if (!dearmor(peer->key())) {
  237. RR->t->incomingPacketMessageAuthenticationFailure(tPtr,_path,pid,fromAddress,hops());
  238. return true;
  239. }
  240. // Continue at // VALID
  241. }
  242. } // else if alreadyAuthenticated then continue at // VALID
  243. } else {
  244. // We don't already have an identity with this address -- validate and learn it
  245. // Sanity check: this basically can't happen
  246. if (alreadyAuthenticated) {
  247. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"illegal alreadyAuthenticated state");
  248. return true;
  249. }
  250. // Check rate limits
  251. if (!RR->node->rateGateIdentityVerification(now,_path->address())) {
  252. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"rate limit exceeded");
  253. return true;
  254. }
  255. // Check packet integrity and MAC (this is faster than locallyValidate() so do it first to filter out total crap)
  256. SharedPtr<Peer> newPeer(new Peer(RR,RR->identity,id));
  257. if (!dearmor(newPeer->key())) {
  258. RR->t->incomingPacketMessageAuthenticationFailure(tPtr,_path,pid,fromAddress,hops());
  259. return true;
  260. }
  261. // Check that identity's address is valid as per the derivation function
  262. if (!id.locallyValidate()) {
  263. RR->t->incomingPacketDroppedHELLO(tPtr,_path,pid,fromAddress,"invalid identity");
  264. return true;
  265. }
  266. peer = RR->topology->addPeer(tPtr,newPeer);
  267. // Continue at // VALID
  268. }
  269. // VALID -- if we made it here, packet passed identity and authenticity checks!
  270. // Get external surface address if present (was not in old versions)
  271. InetAddress externalSurfaceAddress;
  272. if (ptr < size()) {
  273. ptr += externalSurfaceAddress.deserialize(*this,ptr);
  274. if ((externalSurfaceAddress)&&(hops() == 0))
  275. RR->sa->iam(tPtr,id.address(),_path->localSocket(),_path->address(),externalSurfaceAddress,RR->topology->isUpstream(id),now);
  276. }
  277. // Get primary planet world ID and world timestamp if present
  278. uint64_t planetWorldId = 0;
  279. uint64_t planetWorldTimestamp = 0;
  280. if ((ptr + 16) <= size()) {
  281. planetWorldId = at<uint64_t>(ptr); ptr += 8;
  282. planetWorldTimestamp = at<uint64_t>(ptr); ptr += 8;
  283. }
  284. std::vector< std::pair<uint64_t,uint64_t> > moonIdsAndTimestamps;
  285. if (ptr < size()) {
  286. // Remainder of packet, if present, is encrypted
  287. cryptField(peer->key(),ptr,size() - ptr);
  288. // Get moon IDs and timestamps if present
  289. if ((ptr + 2) <= size()) {
  290. const unsigned int numMoons = at<uint16_t>(ptr); ptr += 2;
  291. for(unsigned int i=0;i<numMoons;++i) {
  292. if ((World::Type)(*this)[ptr++] == World::TYPE_MOON)
  293. moonIdsAndTimestamps.push_back(std::pair<uint64_t,uint64_t>(at<uint64_t>(ptr),at<uint64_t>(ptr + 8)));
  294. ptr += 16;
  295. }
  296. }
  297. // Handle COR if present (older versions don't send this)
  298. if ((ptr + 2) <= size()) {
  299. if (at<uint16_t>(ptr) > 0) {
  300. CertificateOfRepresentation cor;
  301. ptr += 2;
  302. ptr += cor.deserialize(*this,ptr);
  303. } else ptr += 2;
  304. }
  305. }
  306. // Send OK(HELLO) with an echo of the packet's timestamp and some of the same
  307. // information about us: version, sent-to address, etc.
  308. Packet outp(id.address(),RR->identity.address(),Packet::VERB_OK);
  309. outp.append((unsigned char)Packet::VERB_HELLO);
  310. outp.append((uint64_t)pid);
  311. outp.append((uint64_t)timestamp);
  312. outp.append((unsigned char)ZT_PROTO_VERSION);
  313. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MAJOR);
  314. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MINOR);
  315. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  316. if (protoVersion >= 5) {
  317. _path->address().serialize(outp);
  318. } else {
  319. /* LEGACY COMPATIBILITY HACK:
  320. *
  321. * For a while now (since 1.0.3), ZeroTier has recognized changes in
  322. * its network environment empirically by examining its external network
  323. * address as reported by trusted peers. In versions prior to 1.1.0
  324. * (protocol version < 5), they did this by saving a snapshot of this
  325. * information (in SelfAwareness.hpp) keyed by reporting device ID and
  326. * address type.
  327. *
  328. * This causes problems when clustering is combined with symmetric NAT.
  329. * Symmetric NAT remaps ports, so different endpoints in a cluster will
  330. * report back different exterior addresses. Since the old code keys
  331. * this by device ID and not sending physical address and compares the
  332. * entire address including port, it constantly thinks its external
  333. * surface is changing and resets connections when talking to a cluster.
  334. *
  335. * In new code we key by sending physical address and device and we also
  336. * take the more conservative position of only interpreting changes in
  337. * IP address (neglecting port) as a change in network topology that
  338. * necessitates a reset. But we can make older clients work here by
  339. * nulling out the port field. Since this info is only used for empirical
  340. * detection of link changes, it doesn't break anything else.
  341. */
  342. InetAddress tmpa(_path->address());
  343. tmpa.setPort(0);
  344. tmpa.serialize(outp);
  345. }
  346. const unsigned int worldUpdateSizeAt = outp.size();
  347. outp.addSize(2); // make room for 16-bit size field
  348. if ((planetWorldId)&&(RR->topology->planetWorldTimestamp() > planetWorldTimestamp)&&(planetWorldId == RR->topology->planetWorldId())) {
  349. RR->topology->planet().serialize(outp,false);
  350. }
  351. if (moonIdsAndTimestamps.size() > 0) {
  352. std::vector<World> moons(RR->topology->moons());
  353. for(std::vector<World>::const_iterator m(moons.begin());m!=moons.end();++m) {
  354. for(std::vector< std::pair<uint64_t,uint64_t> >::const_iterator i(moonIdsAndTimestamps.begin());i!=moonIdsAndTimestamps.end();++i) {
  355. if (i->first == m->id()) {
  356. if (m->timestamp() > i->second)
  357. m->serialize(outp,false);
  358. break;
  359. }
  360. }
  361. }
  362. }
  363. outp.setAt<uint16_t>(worldUpdateSizeAt,(uint16_t)(outp.size() - (worldUpdateSizeAt + 2)));
  364. const unsigned int corSizeAt = outp.size();
  365. outp.addSize(2);
  366. RR->topology->appendCertificateOfRepresentation(outp);
  367. outp.setAt(corSizeAt,(uint16_t)(outp.size() - (corSizeAt + 2)));
  368. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  369. _path->send(RR,tPtr,outp.data(),outp.size(),now);
  370. peer->setRemoteVersion(protoVersion,vMajor,vMinor,vRevision); // important for this to go first so received() knows the version
  371. peer->received(tPtr,_path,hops(),pid,Packet::VERB_HELLO,0,Packet::VERB_NOP,false,0);
  372. } catch ( ... ) {
  373. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_HELLO,"unexpected exception");
  374. }
  375. return true;
  376. }
  377. bool IncomingPacket::_doOK(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  378. {
  379. try {
  380. const Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_OK_IDX_IN_RE_VERB];
  381. const uint64_t inRePacketId = at<uint64_t>(ZT_PROTO_VERB_OK_IDX_IN_RE_PACKET_ID);
  382. uint64_t networkId = 0;
  383. if (!RR->node->expectingReplyTo(inRePacketId))
  384. return true;
  385. switch(inReVerb) {
  386. case Packet::VERB_HELLO: {
  387. const uint64_t latency = RR->node->now() - at<uint64_t>(ZT_PROTO_VERB_HELLO__OK__IDX_TIMESTAMP);
  388. if (latency > ZT_HELLO_MAX_ALLOWABLE_LATENCY)
  389. return true;
  390. const unsigned int vProto = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_PROTOCOL_VERSION];
  391. const unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MAJOR_VERSION];
  392. const unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MINOR_VERSION];
  393. const unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO__OK__IDX_REVISION);
  394. if (vProto < ZT_PROTO_VERSION_MIN)
  395. return true;
  396. InetAddress externalSurfaceAddress;
  397. unsigned int ptr = ZT_PROTO_VERB_HELLO__OK__IDX_REVISION + 2;
  398. // Get reported external surface address if present
  399. if (ptr < size())
  400. ptr += externalSurfaceAddress.deserialize(*this,ptr);
  401. // Handle planet or moon updates if present
  402. if ((ptr + 2) <= size()) {
  403. const unsigned int worldsLen = at<uint16_t>(ptr); ptr += 2;
  404. if (RR->topology->shouldAcceptWorldUpdateFrom(peer->address())) {
  405. const unsigned int endOfWorlds = ptr + worldsLen;
  406. while (ptr < endOfWorlds) {
  407. World w;
  408. ptr += w.deserialize(*this,ptr);
  409. RR->topology->addWorld(tPtr,w,false);
  410. }
  411. } else {
  412. ptr += worldsLen;
  413. }
  414. }
  415. // Handle certificate of representation if present
  416. if ((ptr + 2) <= size()) {
  417. if (at<uint16_t>(ptr) > 0) {
  418. CertificateOfRepresentation cor;
  419. ptr += 2;
  420. ptr += cor.deserialize(*this,ptr);
  421. } else ptr += 2;
  422. }
  423. if (!hops())
  424. peer->addDirectLatencyMeasurment((unsigned int)latency);
  425. peer->setRemoteVersion(vProto,vMajor,vMinor,vRevision);
  426. if ((externalSurfaceAddress)&&(hops() == 0))
  427. RR->sa->iam(tPtr,peer->address(),_path->localSocket(),_path->address(),externalSurfaceAddress,RR->topology->isUpstream(peer->identity()),RR->node->now());
  428. } break;
  429. case Packet::VERB_WHOIS:
  430. if (RR->topology->isUpstream(peer->identity())) {
  431. const Identity id(*this,ZT_PROTO_VERB_WHOIS__OK__IDX_IDENTITY);
  432. RR->sw->doAnythingWaitingForPeer(tPtr,RR->topology->addPeer(tPtr,SharedPtr<Peer>(new Peer(RR,RR->identity,id))));
  433. }
  434. break;
  435. case Packet::VERB_NETWORK_CONFIG_REQUEST: {
  436. networkId = at<uint64_t>(ZT_PROTO_VERB_OK_IDX_PAYLOAD);
  437. const SharedPtr<Network> network(RR->node->network(networkId));
  438. if (network)
  439. network->handleConfigChunk(tPtr,packetId(),source(),*this,ZT_PROTO_VERB_OK_IDX_PAYLOAD);
  440. } break;
  441. case Packet::VERB_MULTICAST_GATHER: {
  442. networkId = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_NETWORK_ID);
  443. const SharedPtr<Network> network(RR->node->network(networkId));
  444. if (network) {
  445. const MulticastGroup mg(MAC(field(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_MAC,6),6),at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_ADI));
  446. const unsigned int count = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_GATHER_RESULTS + 4);
  447. RR->mc->addMultiple(tPtr,RR->node->now(),networkId,mg,field(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_GATHER_RESULTS + 6,count * 5),count,at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_GATHER_RESULTS));
  448. }
  449. } break;
  450. case Packet::VERB_MULTICAST_FRAME: {
  451. const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_FLAGS];
  452. networkId = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_NETWORK_ID);
  453. const MulticastGroup mg(MAC(field(ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_MAC,6),6),at<uint32_t>(ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_ADI));
  454. const SharedPtr<Network> network(RR->node->network(networkId));
  455. if (network) {
  456. unsigned int offset = 0;
  457. if ((flags & 0x01) != 0) { // deprecated but still used by older peers
  458. CertificateOfMembership com;
  459. offset += com.deserialize(*this,ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_COM_AND_GATHER_RESULTS);
  460. if (com)
  461. network->addCredential(tPtr,com);
  462. }
  463. if ((flags & 0x02) != 0) {
  464. // OK(MULTICAST_FRAME) includes implicit gather results
  465. offset += ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_COM_AND_GATHER_RESULTS;
  466. unsigned int totalKnown = at<uint32_t>(offset); offset += 4;
  467. unsigned int count = at<uint16_t>(offset); offset += 2;
  468. RR->mc->addMultiple(tPtr,RR->node->now(),networkId,mg,field(offset,count * 5),count,totalKnown);
  469. }
  470. }
  471. } break;
  472. default: break;
  473. }
  474. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_OK,inRePacketId,inReVerb,false,networkId);
  475. } catch ( ... ) {
  476. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_OK,"unexpected exception");
  477. }
  478. return true;
  479. }
  480. bool IncomingPacket::_doWHOIS(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  481. {
  482. try {
  483. if ((!RR->topology->amRoot())&&(!peer->rateGateInboundWhoisRequest(RR->node->now())))
  484. return true;
  485. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  486. outp.append((unsigned char)Packet::VERB_WHOIS);
  487. outp.append(packetId());
  488. unsigned int count = 0;
  489. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD;
  490. while ((ptr + ZT_ADDRESS_LENGTH) <= size()) {
  491. const Address addr(field(ptr,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  492. ptr += ZT_ADDRESS_LENGTH;
  493. const Identity id(RR->topology->getIdentity(tPtr,addr));
  494. if (id) {
  495. id.serialize(outp,false);
  496. ++count;
  497. } else {
  498. // Request unknown WHOIS from upstream from us (if we have one)
  499. RR->sw->requestWhois(tPtr,addr);
  500. }
  501. }
  502. if (count > 0) {
  503. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  504. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  505. }
  506. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_WHOIS,0,Packet::VERB_NOP,false,0);
  507. } catch ( ... ) {
  508. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_WHOIS,"unexpected exception");
  509. }
  510. return true;
  511. }
  512. bool IncomingPacket::_doRENDEZVOUS(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  513. {
  514. try {
  515. if (RR->topology->isUpstream(peer->identity())) {
  516. const Address with(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ZTADDRESS,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  517. const SharedPtr<Peer> rendezvousWith(RR->topology->getPeer(tPtr,with));
  518. if (rendezvousWith) {
  519. const unsigned int port = at<uint16_t>(ZT_PROTO_VERB_RENDEZVOUS_IDX_PORT);
  520. const unsigned int addrlen = (*this)[ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRLEN];
  521. if ((port > 0)&&((addrlen == 4)||(addrlen == 16))) {
  522. const InetAddress atAddr(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRESS,addrlen),addrlen,port);
  523. if (RR->node->shouldUsePathForZeroTierTraffic(tPtr,with,_path->localSocket(),atAddr)) {
  524. const uint64_t junk = RR->node->prng();
  525. RR->node->putPacket(tPtr,_path->localSocket(),atAddr,&junk,4,2); // send low-TTL junk packet to 'open' local NAT(s) and stateful firewalls
  526. rendezvousWith->attemptToContactAt(tPtr,_path->localSocket(),atAddr,RR->node->now(),false,0);
  527. }
  528. }
  529. }
  530. }
  531. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_RENDEZVOUS,0,Packet::VERB_NOP,false,0);
  532. } catch ( ... ) {
  533. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_RENDEZVOUS,"unexpected exception");
  534. }
  535. return true;
  536. }
  537. bool IncomingPacket::_doFRAME(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  538. {
  539. try {
  540. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID);
  541. const SharedPtr<Network> network(RR->node->network(nwid));
  542. bool trustEstablished = false;
  543. if (network) {
  544. if (network->gate(tPtr,peer)) {
  545. trustEstablished = true;
  546. if (size() > ZT_PROTO_VERB_FRAME_IDX_PAYLOAD) {
  547. const unsigned int etherType = at<uint16_t>(ZT_PROTO_VERB_FRAME_IDX_ETHERTYPE);
  548. const MAC sourceMac(peer->address(),nwid);
  549. const unsigned int frameLen = size() - ZT_PROTO_VERB_FRAME_IDX_PAYLOAD;
  550. const uint8_t *const frameData = reinterpret_cast<const uint8_t *>(data()) + ZT_PROTO_VERB_FRAME_IDX_PAYLOAD;
  551. if (network->filterIncomingPacket(tPtr,peer,RR->identity.address(),sourceMac,network->mac(),frameData,frameLen,etherType,0) > 0)
  552. RR->node->putFrame(tPtr,nwid,network->userPtr(),sourceMac,network->mac(),etherType,0,(const void *)frameData,frameLen);
  553. }
  554. } else {
  555. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  556. RR->t->incomingNetworkAccessDenied(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_FRAME,true);
  557. }
  558. } else {
  559. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  560. }
  561. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_FRAME,0,Packet::VERB_NOP,trustEstablished,nwid);
  562. } catch ( ... ) {
  563. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_FRAME,"unexpected exception");
  564. }
  565. return true;
  566. }
  567. bool IncomingPacket::_doEXT_FRAME(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  568. {
  569. try {
  570. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_EXT_FRAME_IDX_NETWORK_ID);
  571. const SharedPtr<Network> network(RR->node->network(nwid));
  572. if (network) {
  573. const unsigned int flags = (*this)[ZT_PROTO_VERB_EXT_FRAME_IDX_FLAGS];
  574. unsigned int comLen = 0;
  575. if ((flags & 0x01) != 0) { // inline COM with EXT_FRAME is deprecated but still used with old peers
  576. CertificateOfMembership com;
  577. comLen = com.deserialize(*this,ZT_PROTO_VERB_EXT_FRAME_IDX_COM);
  578. if (com)
  579. network->addCredential(tPtr,com);
  580. }
  581. if (!network->gate(tPtr,peer)) {
  582. RR->t->incomingNetworkAccessDenied(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_EXT_FRAME,true);
  583. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  584. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,false,nwid);
  585. return true;
  586. }
  587. if (size() > ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD) {
  588. const unsigned int etherType = at<uint16_t>(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_ETHERTYPE);
  589. const MAC to(field(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_TO,ZT_PROTO_VERB_EXT_FRAME_LEN_TO),ZT_PROTO_VERB_EXT_FRAME_LEN_TO);
  590. const MAC from(field(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_FROM,ZT_PROTO_VERB_EXT_FRAME_LEN_FROM),ZT_PROTO_VERB_EXT_FRAME_LEN_FROM);
  591. const unsigned int frameLen = size() - (comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD);
  592. const uint8_t *const frameData = (const uint8_t *)field(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD,frameLen);
  593. if ((!from)||(from == network->mac())) {
  594. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  595. return true;
  596. }
  597. switch (network->filterIncomingPacket(tPtr,peer,RR->identity.address(),from,to,frameData,frameLen,etherType,0)) {
  598. case 1:
  599. if (from != MAC(peer->address(),nwid)) {
  600. if (network->config().permitsBridging(peer->address())) {
  601. network->learnBridgeRoute(from,peer->address());
  602. } else {
  603. RR->t->incomingNetworkFrameDropped(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_EXT_FRAME,from,to,"bridging not allowed (remote)");
  604. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  605. return true;
  606. }
  607. } else if (to != network->mac()) {
  608. if (to.isMulticast()) {
  609. if (network->config().multicastLimit == 0) {
  610. RR->t->incomingNetworkFrameDropped(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_EXT_FRAME,from,to,"multicast disabled");
  611. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  612. return true;
  613. }
  614. } else if (!network->config().permitsBridging(RR->identity.address())) {
  615. RR->t->incomingNetworkFrameDropped(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_EXT_FRAME,from,to,"bridging not allowed (local)");
  616. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  617. return true;
  618. }
  619. }
  620. // fall through -- 2 means accept regardless of bridging checks or other restrictions
  621. case 2:
  622. RR->node->putFrame(tPtr,nwid,network->userPtr(),from,to,etherType,0,(const void *)frameData,frameLen);
  623. break;
  624. }
  625. }
  626. if ((flags & 0x10) != 0) { // ACK requested
  627. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  628. outp.append((uint8_t)Packet::VERB_EXT_FRAME);
  629. outp.append((uint64_t)packetId());
  630. outp.append((uint64_t)nwid);
  631. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  632. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  633. }
  634. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,true,nwid);
  635. } else {
  636. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP,false,nwid);
  637. }
  638. } catch ( ... ) {
  639. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_EXT_FRAME,"unexpected exception");
  640. }
  641. return true;
  642. }
  643. bool IncomingPacket::_doECHO(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  644. {
  645. try {
  646. if (!peer->rateGateEchoRequest(RR->node->now()))
  647. return true;
  648. const uint64_t pid = packetId();
  649. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  650. outp.append((unsigned char)Packet::VERB_ECHO);
  651. outp.append((uint64_t)pid);
  652. if (size() > ZT_PACKET_IDX_PAYLOAD)
  653. outp.append(reinterpret_cast<const unsigned char *>(data()) + ZT_PACKET_IDX_PAYLOAD,size() - ZT_PACKET_IDX_PAYLOAD);
  654. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  655. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  656. peer->received(tPtr,_path,hops(),pid,Packet::VERB_ECHO,0,Packet::VERB_NOP,false,0);
  657. } catch ( ... ) {
  658. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_ECHO,"unexpected exception");
  659. }
  660. return true;
  661. }
  662. bool IncomingPacket::_doMULTICAST_LIKE(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  663. {
  664. try {
  665. const uint64_t now = RR->node->now();
  666. uint64_t authOnNetwork[256]; // cache for approved network IDs
  667. unsigned int authOnNetworkCount = 0;
  668. SharedPtr<Network> network;
  669. bool trustEstablished = false;
  670. // Iterate through 18-byte network,MAC,ADI tuples
  671. for(unsigned int ptr=ZT_PACKET_IDX_PAYLOAD;ptr<size();ptr+=18) {
  672. const uint64_t nwid = at<uint64_t>(ptr);
  673. bool auth = false;
  674. for(unsigned int i=0;i<authOnNetworkCount;++i) {
  675. if (nwid == authOnNetwork[i]) {
  676. auth = true;
  677. break;
  678. }
  679. }
  680. if (!auth) {
  681. if ((!network)||(network->id() != nwid))
  682. network = RR->node->network(nwid);
  683. const bool authOnNet = ((network)&&(network->gate(tPtr,peer)));
  684. if (!authOnNet)
  685. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  686. trustEstablished |= authOnNet;
  687. if (authOnNet||RR->mc->cacheAuthorized(peer->address(),nwid,now)) {
  688. auth = true;
  689. if (authOnNetworkCount < 256) // sanity check, packets can't really be this big
  690. authOnNetwork[authOnNetworkCount++] = nwid;
  691. }
  692. }
  693. if (auth) {
  694. const MulticastGroup group(MAC(field(ptr + 8,6),6),at<uint32_t>(ptr + 14));
  695. RR->mc->add(tPtr,now,nwid,group,peer->address());
  696. }
  697. }
  698. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_LIKE,0,Packet::VERB_NOP,trustEstablished,(network) ? network->id() : 0);
  699. } catch ( ... ) {
  700. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_MULTICAST_LIKE,"unexpected exception");
  701. }
  702. return true;
  703. }
  704. bool IncomingPacket::_doNETWORK_CREDENTIALS(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  705. {
  706. try {
  707. if (!peer->rateGateCredentialsReceived(RR->node->now()))
  708. return true;
  709. CertificateOfMembership com;
  710. Capability cap;
  711. Tag tag;
  712. Revocation revocation;
  713. CertificateOfOwnership coo;
  714. bool trustEstablished = false;
  715. SharedPtr<Network> network;
  716. unsigned int p = ZT_PACKET_IDX_PAYLOAD;
  717. while ((p < size())&&((*this)[p] != 0)) {
  718. p += com.deserialize(*this,p);
  719. if (com) {
  720. network = RR->node->network(com.networkId());
  721. if (network) {
  722. switch (network->addCredential(tPtr,com)) {
  723. case Membership::ADD_REJECTED:
  724. break;
  725. case Membership::ADD_ACCEPTED_NEW:
  726. case Membership::ADD_ACCEPTED_REDUNDANT:
  727. trustEstablished = true;
  728. break;
  729. case Membership::ADD_DEFERRED_FOR_WHOIS:
  730. return false;
  731. }
  732. } else RR->mc->addCredential(tPtr,com,false);
  733. }
  734. }
  735. ++p; // skip trailing 0 after COMs if present
  736. if (p < size()) { // older ZeroTier versions do not send capabilities, tags, or revocations
  737. const unsigned int numCapabilities = at<uint16_t>(p); p += 2;
  738. for(unsigned int i=0;i<numCapabilities;++i) {
  739. p += cap.deserialize(*this,p);
  740. if ((!network)||(network->id() != cap.networkId()))
  741. network = RR->node->network(cap.networkId());
  742. if (network) {
  743. switch (network->addCredential(tPtr,cap)) {
  744. case Membership::ADD_REJECTED:
  745. break;
  746. case Membership::ADD_ACCEPTED_NEW:
  747. case Membership::ADD_ACCEPTED_REDUNDANT:
  748. trustEstablished = true;
  749. break;
  750. case Membership::ADD_DEFERRED_FOR_WHOIS:
  751. return false;
  752. }
  753. }
  754. }
  755. if (p >= size()) return true;
  756. const unsigned int numTags = at<uint16_t>(p); p += 2;
  757. for(unsigned int i=0;i<numTags;++i) {
  758. p += tag.deserialize(*this,p);
  759. if ((!network)||(network->id() != tag.networkId()))
  760. network = RR->node->network(tag.networkId());
  761. if (network) {
  762. switch (network->addCredential(tPtr,tag)) {
  763. case Membership::ADD_REJECTED:
  764. break;
  765. case Membership::ADD_ACCEPTED_NEW:
  766. case Membership::ADD_ACCEPTED_REDUNDANT:
  767. trustEstablished = true;
  768. break;
  769. case Membership::ADD_DEFERRED_FOR_WHOIS:
  770. return false;
  771. }
  772. }
  773. }
  774. if (p >= size()) return true;
  775. const unsigned int numRevocations = at<uint16_t>(p); p += 2;
  776. for(unsigned int i=0;i<numRevocations;++i) {
  777. p += revocation.deserialize(*this,p);
  778. if ((!network)||(network->id() != revocation.networkId()))
  779. network = RR->node->network(revocation.networkId());
  780. if (network) {
  781. switch(network->addCredential(tPtr,peer->address(),revocation)) {
  782. case Membership::ADD_REJECTED:
  783. break;
  784. case Membership::ADD_ACCEPTED_NEW:
  785. case Membership::ADD_ACCEPTED_REDUNDANT:
  786. trustEstablished = true;
  787. break;
  788. case Membership::ADD_DEFERRED_FOR_WHOIS:
  789. return false;
  790. }
  791. }
  792. }
  793. if (p >= size()) return true;
  794. const unsigned int numCoos = at<uint16_t>(p); p += 2;
  795. for(unsigned int i=0;i<numCoos;++i) {
  796. p += coo.deserialize(*this,p);
  797. if ((!network)||(network->id() != coo.networkId()))
  798. network = RR->node->network(coo.networkId());
  799. if (network) {
  800. switch(network->addCredential(tPtr,coo)) {
  801. case Membership::ADD_REJECTED:
  802. break;
  803. case Membership::ADD_ACCEPTED_NEW:
  804. case Membership::ADD_ACCEPTED_REDUNDANT:
  805. trustEstablished = true;
  806. break;
  807. case Membership::ADD_DEFERRED_FOR_WHOIS:
  808. return false;
  809. }
  810. }
  811. }
  812. }
  813. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_NETWORK_CREDENTIALS,0,Packet::VERB_NOP,trustEstablished,(network) ? network->id() : 0);
  814. } catch ( ... ) {
  815. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_NETWORK_CREDENTIALS,"unexpected exception");
  816. }
  817. return true;
  818. }
  819. bool IncomingPacket::_doNETWORK_CONFIG_REQUEST(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  820. {
  821. try {
  822. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_NETWORK_ID);
  823. const unsigned int hopCount = hops();
  824. const uint64_t requestPacketId = packetId();
  825. if (RR->localNetworkController) {
  826. const unsigned int metaDataLength = (ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT_LEN <= size()) ? at<uint16_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT_LEN) : 0;
  827. const char *metaDataBytes = (metaDataLength != 0) ? (const char *)field(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT,metaDataLength) : (const char *)0;
  828. const Dictionary<ZT_NETWORKCONFIG_METADATA_DICT_CAPACITY> metaData(metaDataBytes,metaDataLength);
  829. RR->localNetworkController->request(nwid,(hopCount > 0) ? InetAddress() : _path->address(),requestPacketId,peer->identity(),metaData);
  830. } else {
  831. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_ERROR);
  832. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  833. outp.append(requestPacketId);
  834. outp.append((unsigned char)Packet::ERROR_UNSUPPORTED_OPERATION);
  835. outp.append(nwid);
  836. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  837. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  838. }
  839. peer->received(tPtr,_path,hopCount,requestPacketId,Packet::VERB_NETWORK_CONFIG_REQUEST,0,Packet::VERB_NOP,false,nwid);
  840. } catch ( ... ) {
  841. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_NETWORK_CONFIG_REQUEST,"unexpected exception");
  842. }
  843. return true;
  844. }
  845. bool IncomingPacket::_doNETWORK_CONFIG(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  846. {
  847. try {
  848. const SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PACKET_IDX_PAYLOAD)));
  849. if (network) {
  850. const uint64_t configUpdateId = network->handleConfigChunk(tPtr,packetId(),source(),*this,ZT_PACKET_IDX_PAYLOAD);
  851. if (configUpdateId) {
  852. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  853. outp.append((uint8_t)Packet::VERB_ECHO);
  854. outp.append((uint64_t)packetId());
  855. outp.append((uint64_t)network->id());
  856. outp.append((uint64_t)configUpdateId);
  857. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  858. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  859. }
  860. }
  861. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_NETWORK_CONFIG,0,Packet::VERB_NOP,false,(network) ? network->id() : 0);
  862. } catch ( ... ) {
  863. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_NETWORK_CONFIG,"unexpected exception");
  864. }
  865. return true;
  866. }
  867. bool IncomingPacket::_doMULTICAST_GATHER(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  868. {
  869. try {
  870. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_NETWORK_ID);
  871. const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_GATHER_IDX_FLAGS];
  872. const MulticastGroup mg(MAC(field(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_MAC,6),6),at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_ADI));
  873. const unsigned int gatherLimit = at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_GATHER_LIMIT);
  874. const SharedPtr<Network> network(RR->node->network(nwid));
  875. if ((flags & 0x01) != 0) {
  876. try {
  877. CertificateOfMembership com;
  878. com.deserialize(*this,ZT_PROTO_VERB_MULTICAST_GATHER_IDX_COM);
  879. if (com) {
  880. if (network)
  881. network->addCredential(tPtr,com);
  882. else RR->mc->addCredential(tPtr,com,false);
  883. }
  884. } catch ( ... ) {} // discard invalid COMs
  885. }
  886. const bool trustEstablished = ((network)&&(network->gate(tPtr,peer)));
  887. if (!trustEstablished)
  888. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  889. if ( ( trustEstablished || RR->mc->cacheAuthorized(peer->address(),nwid,RR->node->now()) ) && (gatherLimit > 0) ) {
  890. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  891. outp.append((unsigned char)Packet::VERB_MULTICAST_GATHER);
  892. outp.append(packetId());
  893. outp.append(nwid);
  894. mg.mac().appendTo(outp);
  895. outp.append((uint32_t)mg.adi());
  896. const unsigned int gatheredLocally = RR->mc->gather(peer->address(),nwid,mg,outp,gatherLimit);
  897. if (gatheredLocally > 0) {
  898. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  899. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  900. }
  901. }
  902. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_GATHER,0,Packet::VERB_NOP,trustEstablished,nwid);
  903. } catch ( ... ) {
  904. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_MULTICAST_GATHER,"unexpected exception");
  905. }
  906. return true;
  907. }
  908. bool IncomingPacket::_doMULTICAST_FRAME(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  909. {
  910. try {
  911. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_NETWORK_ID);
  912. const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FLAGS];
  913. const SharedPtr<Network> network(RR->node->network(nwid));
  914. if (network) {
  915. // Offset -- size of optional fields added to position of later fields
  916. unsigned int offset = 0;
  917. if ((flags & 0x01) != 0) {
  918. // This is deprecated but may still be sent by old peers
  919. CertificateOfMembership com;
  920. offset += com.deserialize(*this,ZT_PROTO_VERB_MULTICAST_FRAME_IDX_COM);
  921. if (com)
  922. network->addCredential(tPtr,com);
  923. }
  924. if (!network->gate(tPtr,peer)) {
  925. RR->t->incomingNetworkAccessDenied(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_MULTICAST_FRAME,true);
  926. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  927. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,false,nwid);
  928. return true;
  929. }
  930. unsigned int gatherLimit = 0;
  931. if ((flags & 0x02) != 0) {
  932. gatherLimit = at<uint32_t>(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_GATHER_LIMIT);
  933. offset += 4;
  934. }
  935. MAC from;
  936. if ((flags & 0x04) != 0) {
  937. from.setTo(field(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_SOURCE_MAC,6),6);
  938. offset += 6;
  939. } else {
  940. from.fromAddress(peer->address(),nwid);
  941. }
  942. const MulticastGroup to(MAC(field(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_DEST_MAC,6),6),at<uint32_t>(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_DEST_ADI));
  943. const unsigned int etherType = at<uint16_t>(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_ETHERTYPE);
  944. const unsigned int frameLen = size() - (offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME);
  945. if (network->config().multicastLimit == 0) {
  946. RR->t->incomingNetworkFrameDropped(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_MULTICAST_FRAME,from,to.mac(),"multicast disabled");
  947. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,false,nwid);
  948. return true;
  949. }
  950. if ((frameLen > 0)&&(frameLen <= ZT_MAX_MTU)) {
  951. if (!to.mac().isMulticast()) {
  952. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_MULTICAST_FRAME,"destination not multicast");
  953. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  954. return true;
  955. }
  956. if ((!from)||(from.isMulticast())||(from == network->mac())) {
  957. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_MULTICAST_FRAME,"invalid source MAC");
  958. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  959. return true;
  960. }
  961. if (from != MAC(peer->address(),nwid)) {
  962. if (network->config().permitsBridging(peer->address())) {
  963. network->learnBridgeRoute(from,peer->address());
  964. } else {
  965. RR->t->incomingNetworkFrameDropped(tPtr,network,_path,packetId(),size(),peer->address(),Packet::VERB_MULTICAST_FRAME,from,to.mac(),"bridging not allowed (remote)");
  966. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,true,nwid); // trustEstablished because COM is okay
  967. return true;
  968. }
  969. }
  970. const uint8_t *const frameData = (const uint8_t *)field(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME,frameLen);
  971. if (network->filterIncomingPacket(tPtr,peer,RR->identity.address(),from,to.mac(),frameData,frameLen,etherType,0) > 0)
  972. RR->node->putFrame(tPtr,nwid,network->userPtr(),from,to.mac(),etherType,0,(const void *)frameData,frameLen);
  973. }
  974. if (gatherLimit) {
  975. Packet outp(source(),RR->identity.address(),Packet::VERB_OK);
  976. outp.append((unsigned char)Packet::VERB_MULTICAST_FRAME);
  977. outp.append(packetId());
  978. outp.append(nwid);
  979. to.mac().appendTo(outp);
  980. outp.append((uint32_t)to.adi());
  981. outp.append((unsigned char)0x02); // flag 0x02 = contains gather results
  982. if (RR->mc->gather(peer->address(),nwid,to,outp,gatherLimit)) {
  983. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  984. _path->send(RR,tPtr,outp.data(),outp.size(),RR->node->now());
  985. }
  986. }
  987. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,true,nwid);
  988. } else {
  989. _sendErrorNeedCredentials(RR,tPtr,peer,nwid);
  990. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP,false,nwid);
  991. }
  992. } catch ( ... ) {
  993. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_MULTICAST_FRAME,"unexpected exception");
  994. }
  995. return true;
  996. }
  997. bool IncomingPacket::_doPUSH_DIRECT_PATHS(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  998. {
  999. try {
  1000. const uint64_t now = RR->node->now();
  1001. // First, subject this to a rate limit
  1002. if (!peer->rateGatePushDirectPaths(now)) {
  1003. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_PUSH_DIRECT_PATHS,0,Packet::VERB_NOP,false,0);
  1004. return true;
  1005. }
  1006. // Second, limit addresses by scope and type
  1007. uint8_t countPerScope[ZT_INETADDRESS_MAX_SCOPE+1][2]; // [][0] is v4, [][1] is v6
  1008. memset(countPerScope,0,sizeof(countPerScope));
  1009. unsigned int count = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD);
  1010. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD + 2;
  1011. while (count--) { // if ptr overflows Buffer will throw
  1012. // TODO: some flags are not yet implemented
  1013. unsigned int flags = (*this)[ptr++];
  1014. unsigned int extLen = at<uint16_t>(ptr); ptr += 2;
  1015. ptr += extLen; // unused right now
  1016. unsigned int addrType = (*this)[ptr++];
  1017. unsigned int addrLen = (*this)[ptr++];
  1018. switch(addrType) {
  1019. case 4: {
  1020. const InetAddress a(field(ptr,4),4,at<uint16_t>(ptr + 4));
  1021. if (
  1022. ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_FORGET_PATH) == 0) && // not being told to forget
  1023. (!( ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_CLUSTER_REDIRECT) == 0) && (peer->hasActivePathTo(now,a)) )) && // not already known
  1024. (RR->node->shouldUsePathForZeroTierTraffic(tPtr,peer->address(),_path->localSocket(),a)) ) // should use path
  1025. {
  1026. if ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_CLUSTER_REDIRECT) != 0) {
  1027. peer->redirect(tPtr,_path->localSocket(),a,now);
  1028. } else if (++countPerScope[(int)a.ipScope()][0] <= ZT_PUSH_DIRECT_PATHS_MAX_PER_SCOPE_AND_FAMILY) {
  1029. peer->attemptToContactAt(tPtr,InetAddress(),a,now,false,0);
  1030. }
  1031. }
  1032. } break;
  1033. case 6: {
  1034. const InetAddress a(field(ptr,16),16,at<uint16_t>(ptr + 16));
  1035. if (
  1036. ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_FORGET_PATH) == 0) && // not being told to forget
  1037. (!( ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_CLUSTER_REDIRECT) == 0) && (peer->hasActivePathTo(now,a)) )) && // not already known
  1038. (RR->node->shouldUsePathForZeroTierTraffic(tPtr,peer->address(),_path->localSocket(),a)) ) // should use path
  1039. {
  1040. if ((flags & ZT_PUSH_DIRECT_PATHS_FLAG_CLUSTER_REDIRECT) != 0) {
  1041. peer->redirect(tPtr,_path->localSocket(),a,now);
  1042. } else if (++countPerScope[(int)a.ipScope()][1] <= ZT_PUSH_DIRECT_PATHS_MAX_PER_SCOPE_AND_FAMILY) {
  1043. peer->attemptToContactAt(tPtr,InetAddress(),a,now,false,0);
  1044. }
  1045. }
  1046. } break;
  1047. }
  1048. ptr += addrLen;
  1049. }
  1050. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_PUSH_DIRECT_PATHS,0,Packet::VERB_NOP,false,0);
  1051. } catch ( ... ) {
  1052. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_PUSH_DIRECT_PATHS,"unexpected exception");
  1053. }
  1054. return true;
  1055. }
  1056. bool IncomingPacket::_doUSER_MESSAGE(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  1057. {
  1058. try {
  1059. if (likely(size() >= (ZT_PACKET_IDX_PAYLOAD + 8))) {
  1060. ZT_UserMessage um;
  1061. um.origin = peer->address().toInt();
  1062. um.typeId = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD);
  1063. um.data = reinterpret_cast<const void *>(reinterpret_cast<const uint8_t *>(data()) + ZT_PACKET_IDX_PAYLOAD + 8);
  1064. um.length = size() - (ZT_PACKET_IDX_PAYLOAD + 8);
  1065. RR->node->postEvent(tPtr,ZT_EVENT_USER_MESSAGE,reinterpret_cast<const void *>(&um));
  1066. }
  1067. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_USER_MESSAGE,0,Packet::VERB_NOP,false,0);
  1068. } catch ( ... ) {
  1069. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_USER_MESSAGE,"unexpected exception");
  1070. }
  1071. return true;
  1072. }
  1073. bool IncomingPacket::_doREMOTE_TRACE(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer)
  1074. {
  1075. ZT_RemoteTrace rt;
  1076. try {
  1077. const char *ptr = reinterpret_cast<const char *>(data()) + ZT_PACKET_IDX_PAYLOAD;
  1078. const char *const eof = reinterpret_cast<const char *>(data()) + size();
  1079. rt.origin = peer->address().toInt();
  1080. rt.data = const_cast<char *>(ptr); // start of first string
  1081. while (ptr < eof) {
  1082. if (!*ptr) { // end of string
  1083. rt.len = (unsigned int)(ptr - rt.data);
  1084. if ((rt.len > 0)&&(rt.len <= ZT_MAX_REMOTE_TRACE_SIZE))
  1085. RR->node->postEvent(tPtr,ZT_EVENT_REMOTE_TRACE,&rt);
  1086. rt.data = const_cast<char *>(++ptr); // start of next string, if any
  1087. } else {
  1088. ++ptr;
  1089. }
  1090. }
  1091. peer->received(tPtr,_path,hops(),packetId(),Packet::VERB_REMOTE_TRACE,0,Packet::VERB_NOP,false,0);
  1092. } catch ( ... ) {
  1093. RR->t->incomingPacketInvalid(tPtr,_path,packetId(),source(),hops(),Packet::VERB_REMOTE_TRACE,"unexpected exception");
  1094. }
  1095. return true;
  1096. }
  1097. void IncomingPacket::_sendErrorNeedCredentials(const RuntimeEnvironment *RR,void *tPtr,const SharedPtr<Peer> &peer,const uint64_t nwid)
  1098. {
  1099. const uint64_t now = RR->node->now();
  1100. if (peer->rateGateOutgoingComRequest(now)) {
  1101. Packet outp(source(),RR->identity.address(),Packet::VERB_ERROR);
  1102. outp.append((uint8_t)verb());
  1103. outp.append(packetId());
  1104. outp.append((uint8_t)Packet::ERROR_NEED_MEMBERSHIP_CERTIFICATE);
  1105. outp.append(nwid);
  1106. outp.armor(peer->key(),true,_path->nextOutgoingCounter());
  1107. _path->send(RR,tPtr,outp.data(),outp.size(),now);
  1108. }
  1109. }
  1110. } // namespace ZeroTier