PacketDecoder.cpp 32 KB

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  1. /*
  2. * ZeroTier One - Global Peer to Peer Ethernet
  3. * Copyright (C) 2012-2013 ZeroTier Networks LLC
  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. * ZeroTier may be used and distributed under the terms of the GPLv3, which
  21. * are available at: http://www.gnu.org/licenses/gpl-3.0.html
  22. *
  23. * If you would like to embed ZeroTier into a commercial application or
  24. * redistribute it in a modified binary form, please contact ZeroTier Networks
  25. * LLC. Start here: http://www.zerotier.com/
  26. */
  27. #include <stdio.h>
  28. #include <string.h>
  29. #include <stdlib.h>
  30. #include "../version.h"
  31. #include "Constants.hpp"
  32. #include "Defaults.hpp"
  33. #include "RuntimeEnvironment.hpp"
  34. #include "Topology.hpp"
  35. #include "PacketDecoder.hpp"
  36. #include "Switch.hpp"
  37. #include "Peer.hpp"
  38. #include "NodeConfig.hpp"
  39. #include "Filter.hpp"
  40. #include "Service.hpp"
  41. #include "Demarc.hpp"
  42. namespace ZeroTier {
  43. bool PacketDecoder::tryDecode(const RuntimeEnvironment *_r)
  44. throw(std::out_of_range,std::runtime_error)
  45. {
  46. if ((!encrypted())&&(verb() == Packet::VERB_HELLO)) {
  47. // Unencrypted HELLOs are handled here since they are used to
  48. // populate our identity cache in the first place. _doHELLO() is special
  49. // in that it contains its own authentication logic.
  50. TRACE("HELLO from %s(%s)",source().toString().c_str(),_remoteAddress.toString().c_str());
  51. return _doHELLO(_r);
  52. }
  53. SharedPtr<Peer> peer = _r->topology->getPeer(source());
  54. if (peer) {
  55. // Resume saved intermediate decode state?
  56. if (_step == DECODE_WAITING_FOR_MULTICAST_FRAME_ORIGINAL_SENDER_LOOKUP) {
  57. // In this state we have already authenticated and decrypted the
  58. // packet and are waiting for the lookup of the original sender
  59. // for a multicast frame. So check to see if we've got it.
  60. return _doMULTICAST_FRAME(_r,peer);
  61. }
  62. if (!dearmor(peer->key())) {
  63. TRACE("dropped packet from %s(%s), MAC authentication failed (size: %u)",source().toString().c_str(),_remoteAddress.toString().c_str(),size());
  64. return true;
  65. }
  66. if (!uncompress()) {
  67. TRACE("dropped packet from %s(%s), compressed data invalid",source().toString().c_str(),_remoteAddress.toString().c_str());
  68. return true;
  69. }
  70. Packet::Verb v = verb();
  71. // Once a packet is determined to be basically valid, it can be used
  72. // to passively learn a new network path to the sending peer. It
  73. // also results in statistics updates.
  74. peer->onReceive(_r,_localPort,_remoteAddress,hops(),v,Utils::now());
  75. switch(v) {
  76. case Packet::VERB_NOP:
  77. TRACE("NOP from %s(%s)",source().toString().c_str(),_remoteAddress.toString().c_str());
  78. return true;
  79. case Packet::VERB_HELLO:
  80. return _doHELLO(_r); // legal, but why? :)
  81. case Packet::VERB_ERROR:
  82. return _doERROR(_r,peer);
  83. case Packet::VERB_OK:
  84. return _doOK(_r,peer);
  85. case Packet::VERB_WHOIS:
  86. return _doWHOIS(_r,peer);
  87. case Packet::VERB_RENDEZVOUS:
  88. return _doRENDEZVOUS(_r,peer);
  89. case Packet::VERB_FRAME:
  90. return _doFRAME(_r,peer);
  91. case Packet::VERB_PROXY_FRAME:
  92. return _doPROXY_FRAME(_r,peer);
  93. case Packet::VERB_MULTICAST_FRAME:
  94. return _doMULTICAST_FRAME(_r,peer);
  95. case Packet::VERB_MULTICAST_LIKE:
  96. return _doMULTICAST_LIKE(_r,peer);
  97. case Packet::VERB_NETWORK_MEMBERSHIP_CERTIFICATE:
  98. return _doNETWORK_MEMBERSHIP_CERTIFICATE(_r,peer);
  99. case Packet::VERB_NETWORK_CONFIG_REQUEST:
  100. return _doNETWORK_CONFIG_REQUEST(_r,peer);
  101. case Packet::VERB_NETWORK_CONFIG_REFRESH:
  102. return _doNETWORK_CONFIG_REFRESH(_r,peer);
  103. default:
  104. // This might be something from a new or old version of the protocol.
  105. // Technically it passed MAC so the packet is still valid, but we
  106. // ignore it.
  107. TRACE("ignored unrecognized verb %.2x from %s(%s)",(unsigned int)v,source().toString().c_str(),_remoteAddress.toString().c_str());
  108. return true;
  109. }
  110. } else {
  111. _step = DECODE_WAITING_FOR_SENDER_LOOKUP; // should already be this...
  112. _r->sw->requestWhois(source());
  113. return false;
  114. }
  115. }
  116. void PacketDecoder::_CBaddPeerFromHello(void *arg,const SharedPtr<Peer> &p,Topology::PeerVerifyResult result)
  117. {
  118. _CBaddPeerFromHello_Data *req = (_CBaddPeerFromHello_Data *)arg;
  119. const RuntimeEnvironment *_r = req->renv;
  120. try {
  121. switch(result) {
  122. case Topology::PEER_VERIFY_ACCEPTED_NEW:
  123. case Topology::PEER_VERIFY_ACCEPTED_ALREADY_HAVE:
  124. case Topology::PEER_VERIFY_ACCEPTED_DISPLACED_INVALID_ADDRESS: {
  125. _r->sw->doAnythingWaitingForPeer(p);
  126. Packet outp(req->source,_r->identity.address(),Packet::VERB_OK);
  127. outp.append((unsigned char)Packet::VERB_HELLO);
  128. outp.append(req->helloPacketId);
  129. outp.append(req->helloTimestamp);
  130. outp.append((unsigned char)ZT_PROTO_VERSION);
  131. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MAJOR);
  132. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MINOR);
  133. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  134. outp.armor(p->key(),true);
  135. _r->demarc->send(req->localPort,req->remoteAddress,outp.data(),outp.size(),-1);
  136. } break;
  137. case Topology::PEER_VERIFY_REJECTED_INVALID_IDENTITY: {
  138. Packet outp(req->source,_r->identity.address(),Packet::VERB_ERROR);
  139. outp.append((unsigned char)Packet::VERB_HELLO);
  140. outp.append(req->helloPacketId);
  141. outp.append((unsigned char)Packet::ERROR_IDENTITY_INVALID);
  142. outp.armor(p->key(),true);
  143. _r->demarc->send(req->localPort,req->remoteAddress,outp.data(),outp.size(),-1);
  144. } break;
  145. case Topology::PEER_VERIFY_REJECTED_DUPLICATE:
  146. case Topology::PEER_VERIFY_REJECTED_DUPLICATE_TRIAGED: {
  147. Packet outp(req->source,_r->identity.address(),Packet::VERB_ERROR);
  148. outp.append((unsigned char)Packet::VERB_HELLO);
  149. outp.append(req->helloPacketId);
  150. outp.append((unsigned char)Packet::ERROR_IDENTITY_COLLISION);
  151. outp.armor(p->key(),true);
  152. _r->demarc->send(req->localPort,req->remoteAddress,outp.data(),outp.size(),-1);
  153. } break;
  154. }
  155. } catch ( ... ) {
  156. TRACE("unexpected exception in addPeer() result callback for peer received via HELLO");
  157. }
  158. delete req;
  159. }
  160. void PacketDecoder::_CBaddPeerFromWhois(void *arg,const SharedPtr<Peer> &p,Topology::PeerVerifyResult result)
  161. {
  162. const RuntimeEnvironment *_r = (const RuntimeEnvironment *)arg;
  163. try {
  164. switch(result) {
  165. case Topology::PEER_VERIFY_ACCEPTED_NEW:
  166. case Topology::PEER_VERIFY_ACCEPTED_ALREADY_HAVE:
  167. case Topology::PEER_VERIFY_ACCEPTED_DISPLACED_INVALID_ADDRESS:
  168. _r->sw->doAnythingWaitingForPeer(p);
  169. break;
  170. default:
  171. break;
  172. }
  173. } catch ( ... ) {
  174. TRACE("unexpected exception in addPeer() result callback for peer received via OK(WHOIS)");
  175. }
  176. }
  177. bool PacketDecoder::_doERROR(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  178. {
  179. try {
  180. Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_ERROR_IDX_IN_RE_VERB];
  181. Packet::ErrorCode errorCode = (Packet::ErrorCode)(*this)[ZT_PROTO_VERB_ERROR_IDX_ERROR_CODE];
  182. TRACE("ERROR %s from %s(%s) in-re %s",Packet::errorString(errorCode),source().toString().c_str(),_remoteAddress.toString().c_str(),Packet::verbString(inReVerb));
  183. switch(errorCode) {
  184. case Packet::ERROR_OBJ_NOT_FOUND:
  185. if (inReVerb == Packet::VERB_WHOIS) {
  186. // TODO: abort WHOIS if sender is a supernode
  187. }
  188. break;
  189. case Packet::ERROR_IDENTITY_COLLISION:
  190. case Packet::ERROR_IDENTITY_INVALID:
  191. // TODO: if it comes from a supernode, regenerate a new identity
  192. break;
  193. case Packet::ERROR_NO_MEMBER_CERTIFICATE:
  194. // TODO: send member certificate
  195. break;
  196. default:
  197. break;
  198. }
  199. } catch (std::exception &ex) {
  200. TRACE("dropped ERROR from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  201. } catch ( ... ) {
  202. TRACE("dropped ERROR from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  203. }
  204. return true;
  205. }
  206. bool PacketDecoder::_doHELLO(const RuntimeEnvironment *_r)
  207. {
  208. try {
  209. //unsigned int protoVersion = (*this)[ZT_PROTO_VERB_HELLO_IDX_PROTOCOL_VERSION];
  210. unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MAJOR_VERSION];
  211. unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MINOR_VERSION];
  212. unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO_IDX_REVISION);
  213. uint64_t timestamp = at<uint64_t>(ZT_PROTO_VERB_HELLO_IDX_TIMESTAMP);
  214. Identity id(*this,ZT_PROTO_VERB_HELLO_IDX_IDENTITY);
  215. // Initial sniff test for valid addressing and that this is indeed the
  216. // submitter's identity.
  217. if ((id.address().isReserved())||(id.address() != source())) {
  218. #ifdef ZT_TRACE
  219. if (id.address().isReserved()) {
  220. TRACE("dropped HELLO from %s(%s): identity has reserved address",source().toString().c_str(),_remoteAddress.toString().c_str());
  221. } else {
  222. TRACE("dropped HELLO from %s(%s): identity is not for sender of packet (HELLO is a self-announcement)",source().toString().c_str(),_remoteAddress.toString().c_str());
  223. }
  224. #endif
  225. return true;
  226. }
  227. // Is this a HELLO for a peer we already know? If so just update its
  228. // packet receive stats and send an OK.
  229. SharedPtr<Peer> existingPeer(_r->topology->getPeer(id.address()));
  230. if ((existingPeer)&&(existingPeer->identity() == id)) {
  231. existingPeer->onReceive(_r,_localPort,_remoteAddress,hops(),Packet::VERB_HELLO,Utils::now());
  232. existingPeer->setRemoteVersion(vMajor,vMinor,vRevision);
  233. Packet outp(source(),_r->identity.address(),Packet::VERB_OK);
  234. outp.append((unsigned char)Packet::VERB_HELLO);
  235. outp.append(packetId());
  236. outp.append(timestamp);
  237. outp.append((unsigned char)ZT_PROTO_VERSION);
  238. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MAJOR);
  239. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MINOR);
  240. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  241. outp.armor(existingPeer->key(),true);
  242. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  243. return true;
  244. }
  245. SharedPtr<Peer> candidate(new Peer(_r->identity,id));
  246. candidate->setPathAddress(_remoteAddress,false);
  247. candidate->setRemoteVersion(vMajor,vMinor,vRevision);
  248. _CBaddPeerFromHello_Data *arg = new _CBaddPeerFromHello_Data;
  249. arg->renv = _r;
  250. arg->source = source();
  251. arg->remoteAddress = _remoteAddress;
  252. arg->localPort = _localPort;
  253. arg->vMajor = vMajor;
  254. arg->vMinor = vMinor;
  255. arg->vRevision = vRevision;
  256. arg->helloPacketId = packetId();
  257. arg->helloTimestamp = timestamp;
  258. _r->topology->addPeer(candidate,&PacketDecoder::_CBaddPeerFromHello,arg);
  259. } catch (std::exception &ex) {
  260. TRACE("dropped HELLO from %s(%s): %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  261. } catch ( ... ) {
  262. TRACE("dropped HELLO from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  263. }
  264. return true;
  265. }
  266. bool PacketDecoder::_doOK(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  267. {
  268. try {
  269. Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_OK_IDX_IN_RE_VERB];
  270. switch(inReVerb) {
  271. case Packet::VERB_HELLO: {
  272. // OK from HELLO permits computation of latency.
  273. unsigned int latency = std::min((unsigned int)(Utils::now() - at<uint64_t>(ZT_PROTO_VERB_HELLO__OK__IDX_TIMESTAMP)),(unsigned int)0xffff);
  274. unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MAJOR_VERSION];
  275. unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MINOR_VERSION];
  276. unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO__OK__IDX_REVISION);
  277. TRACE("%s(%s): OK(HELLO), latency: %u, version %u.%u.%u",source().toString().c_str(),_remoteAddress.toString().c_str(),latency,vMajor,vMinor,vRevision);
  278. peer->setLatency(_remoteAddress,latency);
  279. peer->setRemoteVersion(vMajor,vMinor,vRevision);
  280. } break;
  281. case Packet::VERB_WHOIS: {
  282. TRACE("%s(%s): OK(%s)",source().toString().c_str(),_remoteAddress.toString().c_str(),Packet::verbString(inReVerb));
  283. if (_r->topology->isSupernode(source())) {
  284. // Right now, only supernodes are queried for WHOIS so we only
  285. // accept OK(WHOIS) from supernodes. Otherwise peers could
  286. // potentially cache-poison.
  287. _r->topology->addPeer(SharedPtr<Peer>(new Peer(_r->identity,Identity(*this,ZT_PROTO_VERB_WHOIS__OK__IDX_IDENTITY))),&PacketDecoder::_CBaddPeerFromWhois,const_cast<void *>((const void *)_r));
  288. }
  289. } break;
  290. case Packet::VERB_NETWORK_CONFIG_REQUEST: {
  291. SharedPtr<Network> nw(_r->nc->network(at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_NETWORK_ID)));
  292. if ((nw)&&(nw->controller() == source())) {
  293. // OK(NETWORK_CONFIG_REQUEST) is only accepted from a network's
  294. // controller.
  295. unsigned int dictlen = at<uint16_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_DICT_LEN);
  296. std::string dict((const char *)field(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_DICT,dictlen),dictlen);
  297. if (dict.length()) {
  298. Network::Config netconf(dict);
  299. TRACE("got network configuration for network %.16llx from %s",(unsigned long long)nw->id(),source().toString().c_str());
  300. nw->setConfiguration(netconf);
  301. }
  302. }
  303. } break;
  304. default:
  305. //TRACE("%s(%s): OK(%s)",source().toString().c_str(),_remoteAddress.toString().c_str(),Packet::verbString(inReVerb));
  306. break;
  307. }
  308. } catch (std::exception &ex) {
  309. TRACE("dropped OK from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  310. } catch ( ... ) {
  311. TRACE("dropped OK from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  312. }
  313. return true;
  314. }
  315. bool PacketDecoder::_doWHOIS(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  316. {
  317. if (payloadLength() == ZT_ADDRESS_LENGTH) {
  318. SharedPtr<Peer> p(_r->topology->getPeer(Address(payload(),ZT_ADDRESS_LENGTH)));
  319. if (p) {
  320. Packet outp(source(),_r->identity.address(),Packet::VERB_OK);
  321. outp.append((unsigned char)Packet::VERB_WHOIS);
  322. outp.append(packetId());
  323. p->identity().serialize(outp,false);
  324. outp.armor(peer->key(),true);
  325. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  326. TRACE("sent WHOIS response to %s for %s",source().toString().c_str(),Address(payload(),ZT_ADDRESS_LENGTH).toString().c_str());
  327. } else {
  328. Packet outp(source(),_r->identity.address(),Packet::VERB_ERROR);
  329. outp.append((unsigned char)Packet::VERB_WHOIS);
  330. outp.append(packetId());
  331. outp.append((unsigned char)Packet::ERROR_OBJ_NOT_FOUND);
  332. outp.append(payload(),ZT_ADDRESS_LENGTH);
  333. outp.armor(peer->key(),true);
  334. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  335. TRACE("sent WHOIS ERROR to %s for %s (not found)",source().toString().c_str(),Address(payload(),ZT_ADDRESS_LENGTH).toString().c_str());
  336. }
  337. } else {
  338. TRACE("dropped WHOIS from %s(%s): missing or invalid address",source().toString().c_str(),_remoteAddress.toString().c_str());
  339. }
  340. return true;
  341. }
  342. bool PacketDecoder::_doRENDEZVOUS(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  343. {
  344. try {
  345. /*
  346. * At the moment, we only obey RENDEZVOUS if it comes from a designated
  347. * supernode. If relay offloading is implemented to scale the net, this
  348. * will need reconsideration.
  349. *
  350. * The reason is that RENDEZVOUS could technically be used to cause a
  351. * peer to send a weird encrypted UDP packet to an arbitrary IP:port.
  352. * The sender of RENDEZVOUS has no control over the content of this
  353. * packet, but it's still maybe something we want to not allow just
  354. * anyone to order due to possible DDOS or network forensic implications.
  355. * So if we diversify relays, we'll need some way of deciding whether the
  356. * sender is someone we should trust with a RENDEZVOUS hint.
  357. */
  358. if (_r->topology->isSupernode(source())) {
  359. Address with(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ZTADDRESS,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  360. SharedPtr<Peer> withPeer(_r->topology->getPeer(with));
  361. if (withPeer) {
  362. unsigned int port = at<uint16_t>(ZT_PROTO_VERB_RENDEZVOUS_IDX_PORT);
  363. unsigned int addrlen = (*this)[ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRLEN];
  364. if ((port > 0)&&((addrlen == 4)||(addrlen == 16))) {
  365. InetAddress atAddr(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRESS,addrlen),addrlen,port);
  366. TRACE("RENDEZVOUS from %s says %s might be at %s, starting NAT-t",source().toString().c_str(),with.toString().c_str(),atAddr.toString().c_str());
  367. _r->sw->contact(withPeer,atAddr);
  368. } else {
  369. TRACE("dropped corrupt RENDEZVOUS from %s(%s) (bad address or port)",source().toString().c_str(),_remoteAddress.toString().c_str());
  370. }
  371. } else {
  372. TRACE("ignored RENDEZVOUS from %s(%s) to meet unknown peer %s",source().toString().c_str(),_remoteAddress.toString().c_str(),with.toString().c_str());
  373. }
  374. } else {
  375. TRACE("ignored RENDEZVOUS from %s(%s): source not supernode",source().toString().c_str(),_remoteAddress.toString().c_str());
  376. }
  377. } catch (std::exception &ex) {
  378. TRACE("dropped RENDEZVOUS from %s(%s): %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  379. } catch ( ... ) {
  380. TRACE("dropped RENDEZVOUS from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  381. }
  382. return true;
  383. }
  384. bool PacketDecoder::_doFRAME(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  385. {
  386. try {
  387. SharedPtr<Network> network(_r->nc->network(at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID)));
  388. if (network) {
  389. if (network->isAllowed(source())) {
  390. unsigned int etherType = at<uint16_t>(ZT_PROTO_VERB_FRAME_IDX_ETHERTYPE);
  391. if (network->permitsEtherType(etherType)) {
  392. network->tap().put(source().toMAC(),network->tap().mac(),etherType,data() + ZT_PROTO_VERB_FRAME_IDX_PAYLOAD,size() - ZT_PROTO_VERB_FRAME_IDX_PAYLOAD);
  393. } else if (size() > ZT_PROTO_VERB_FRAME_IDX_PAYLOAD) {
  394. TRACE("dropped FRAME from %s: ethernet type %u not allowed on network %.16llx",source().toString().c_str(),etherType,(unsigned long long)network->id());
  395. }
  396. // Source moves "closer" to us in multicast propagation priority when
  397. // we receive unicast frames from it. This is called "implicit social
  398. // ordering" in other docs.
  399. _r->mc->bringCloser(network->id(),source());
  400. } else {
  401. TRACE("dropped FRAME from %s(%s): not a member of closed network %llu",source().toString().c_str(),_remoteAddress.toString().c_str(),network->id());
  402. Packet outp(source(),_r->identity.address(),Packet::VERB_ERROR);
  403. outp.append((unsigned char)Packet::VERB_FRAME);
  404. outp.append(packetId());
  405. outp.append((unsigned char)Packet::ERROR_NO_MEMBER_CERTIFICATE);
  406. outp.append(network->id());
  407. outp.armor(peer->key(),true);
  408. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  409. }
  410. } else {
  411. TRACE("dropped FRAME from %s(%s): network %llu unknown",source().toString().c_str(),_remoteAddress.toString().c_str(),at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID));
  412. }
  413. } catch (std::exception &ex) {
  414. TRACE("dropped FRAME from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  415. } catch ( ... ) {
  416. TRACE("dropped FRAME from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  417. }
  418. return true;
  419. }
  420. bool PacketDecoder::_doPROXY_FRAME(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  421. {
  422. // TODO: bridging is not implemented yet
  423. return true;
  424. }
  425. bool PacketDecoder::_doMULTICAST_FRAME(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  426. {
  427. try {
  428. Address origin(Address(field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_ORIGIN,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_ORIGIN),ZT_ADDRESS_LENGTH));
  429. SharedPtr<Peer> originPeer(_r->topology->getPeer(origin));
  430. if (!originPeer) {
  431. // We must have the origin's identity in order to authenticate a multicast
  432. _r->sw->requestWhois(origin);
  433. _step = DECODE_WAITING_FOR_MULTICAST_FRAME_ORIGINAL_SENDER_LOOKUP; // causes processing to come back here
  434. return false;
  435. }
  436. // These fields change
  437. unsigned int depth = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_DEPTH);
  438. unsigned char *const fifo = field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_FIFO,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_PROPAGATION_FIFO);
  439. unsigned char *const bloom = field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_BLOOM,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_PROPAGATION_BLOOM);
  440. // These fields don't -- they're signed by the original sender
  441. // const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FLAGS];
  442. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_NETWORK_ID);
  443. const uint16_t bloomNonce = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_BLOOM_NONCE);
  444. const unsigned int prefixBits = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_PREFIX_BITS];
  445. const unsigned int prefix = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_PREFIX];
  446. const uint64_t guid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_GUID);
  447. const MAC sourceMac(field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_SOURCE_MAC,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_SOURCE_MAC));
  448. const MulticastGroup dest(MAC(field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_DEST_MAC,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_DEST_MAC)),at<uint32_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_DEST_ADI));
  449. const unsigned int etherType = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_ETHERTYPE);
  450. const unsigned int frameLen = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME_LEN);
  451. const unsigned char *const frame = field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME,frameLen);
  452. const unsigned int signatureLen = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME + frameLen);
  453. const unsigned char *const signature = field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME + frameLen + 2,signatureLen);
  454. const unsigned int signedPartLen = (ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME - ZT_PROTO_VERB_MULTICAST_FRAME_IDX__START_OF_SIGNED_PORTION) + frameLen;
  455. if (!originPeer->identity().verify(field(ZT_PROTO_VERB_MULTICAST_FRAME_IDX__START_OF_SIGNED_PORTION,signedPartLen),signedPartLen,signature,signatureLen)) {
  456. TRACE("dropped MULTICAST_FRAME from %s(%s): failed signature verification, claims to be from %s",source().toString().c_str(),_remoteAddress.toString().c_str(),origin.toString().c_str());
  457. return true;
  458. }
  459. #ifdef ZT_TRACE_MULTICAST
  460. char mct[256];
  461. Utils::snprintf(mct,sizeof(mct),"%c %s <- %.16llx %.16llx %s via %s depth:%u len:%u",(_r->topology->amSupernode() ? 'S' : '-'),_r->identity.address().toString().c_str(),nwid,guid,origin.toString().c_str(),source().toString().c_str(),depth,frameLen);
  462. _r->demarc->send(Demarc::ANY_PORT,ZT_DEFAULTS.multicastTraceWatcher,mct,strlen(mct),-1);
  463. #endif
  464. // Security check to prohibit multicasts that are really Ethernet unicasts
  465. if (!dest.mac().isMulticast()) {
  466. TRACE("dropped MULTICAST_FRAME from %s(%s): %s is not a multicast/broadcast address",source().toString().c_str(),_remoteAddress.toString().c_str(),dest.mac().toString().c_str());
  467. return true;
  468. }
  469. bool rateLimitsExceeded = false;
  470. unsigned int maxDepth = ZT_MULTICAST_GLOBAL_MAX_DEPTH;
  471. if ((origin == _r->identity.address())||(_r->mc->deduplicate(nwid,guid))) {
  472. // Ordinary frames will drop duplicates. Supernodes keep propagating
  473. // them since they're used as hubs to link disparate clusters of
  474. // members of the same multicast group.
  475. if (!_r->topology->amSupernode()) {
  476. TRACE("dropped MULTICAST_FRAME from %s(%s): duplicate",source().toString().c_str(),_remoteAddress.toString().c_str());
  477. return true;
  478. }
  479. } else {
  480. // Supernodes however won't do this more than once. If the supernode
  481. // does happen to be a member of the network -- which is usually not
  482. // true -- we don't want to see a ton of copies of the same frame on
  483. // its tap device. Also double or triple counting bandwidth metrics
  484. // for the same frame would not be fair.
  485. SharedPtr<Network> network(_r->nc->network(nwid));
  486. if (network) {
  487. maxDepth = network->multicastDepth(); // pull from network config if available
  488. if (!network->isAllowed(origin)) {
  489. TRACE("didn't inject MULTICAST_FRAME from %s(%s) into %.16llx: sender %s not allowed or we don't have a certificate",source().toString().c_str(),nwid,_remoteAddress.toString().c_str(),origin.toString().c_str());
  490. Packet outp(source(),_r->identity.address(),Packet::VERB_ERROR);
  491. outp.append((unsigned char)Packet::VERB_FRAME);
  492. outp.append(packetId());
  493. outp.append((unsigned char)Packet::ERROR_NO_MEMBER_CERTIFICATE);
  494. outp.append(nwid);
  495. outp.armor(peer->key(),true);
  496. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  497. // We do not terminate here, since if the member just has an out of
  498. // date cert or hasn't sent us a cert yet we still want to propagate
  499. // the message so multicast works.
  500. } else if ((!network->permitsBridging())&&(!origin.wouldHaveMac(sourceMac))) {
  501. TRACE("didn't inject MULTICAST_FRAME from %s(%s) into %.16llx: source mac %s doesn't belong to %s, and bridging is not supported on network",source().toString().c_str(),nwid,_remoteAddress.toString().c_str(),sourceMac.toString().c_str(),origin.toString().c_str());
  502. } else if (!network->permitsEtherType(etherType)) {
  503. TRACE("didn't inject MULTICAST_FRAME from %s(%s) into %.16llx: ethertype %u is not allowed",source().toString().c_str(),nwid,_remoteAddress.toString().c_str(),etherType);
  504. } else if (!network->updateAndCheckMulticastBalance(origin,dest,frameLen)) {
  505. rateLimitsExceeded = true;
  506. } else {
  507. network->tap().put(sourceMac,dest.mac(),etherType,frame,frameLen);
  508. }
  509. }
  510. }
  511. // We can only really know if rate limit was exceeded if we're a member of
  512. // this network. This will nearly always be true for anyone getting a
  513. // multicast except supernodes, so the net effect will be to truncate
  514. // multicast propagation if the rate limit is exceeded.
  515. if (rateLimitsExceeded) {
  516. TRACE("dropped MULTICAST_FRAME from %s(%s): rate limits exceeded for sender %s",source().toString().c_str(),_remoteAddress.toString().c_str(),origin.toString().c_str());
  517. return true;
  518. }
  519. if (depth == 0xffff) {
  520. TRACE("not forwarding MULTICAST_FRAME from %s(%s): depth == 0xffff (do not forward)",source().toString().c_str(),_remoteAddress.toString().c_str());
  521. return true;
  522. }
  523. if (++depth > maxDepth) {
  524. TRACE("not forwarding MULTICAST_FRAME from %s(%s): max propagation depth reached",source().toString().c_str(),_remoteAddress.toString().c_str());
  525. return true;
  526. }
  527. setAt(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_PROPAGATION_DEPTH,(uint16_t)depth);
  528. // New FIFO with room for one extra, since head will be next hop
  529. unsigned char newFifo[ZT_PROTO_VERB_MULTICAST_FRAME_LEN_PROPAGATION_FIFO + ZT_ADDRESS_LENGTH];
  530. unsigned char *newFifoPtr = newFifo;
  531. unsigned char *const newFifoEnd = newFifo + sizeof(newFifo);
  532. // Copy old FIFO into new buffer, terminating at first NULL address
  533. for(unsigned char *f=fifo,*const fifoEnd=(fifo + ZT_PROTO_VERB_MULTICAST_FRAME_LEN_PROPAGATION_FIFO);f!=fifoEnd;) {
  534. unsigned char *nf = newFifoPtr;
  535. unsigned char *e = nf + ZT_ADDRESS_LENGTH;
  536. unsigned char *ftmp = f;
  537. unsigned char zeroCheckMask = 0;
  538. while (nf != e)
  539. zeroCheckMask |= (*(nf++) = *(ftmp++));
  540. if (zeroCheckMask) {
  541. f = ftmp;
  542. newFifoPtr = nf;
  543. } else break;
  544. }
  545. // Add any next hops we know about to FIFO
  546. _r->mc->getNextHops(nwid,dest,Multicaster::AddToPropagationQueue(&newFifoPtr,newFifoEnd,bloom,bloomNonce,origin,prefixBits,prefix));
  547. // Zero-terminate new FIFO if not completely full
  548. while (newFifoPtr != newFifoEnd)
  549. *(newFifoPtr++) = (unsigned char)0;
  550. // First element in newFifo[] is next hop
  551. Address nextHop(newFifo,ZT_ADDRESS_LENGTH);
  552. if ((!nextHop)&&(!_r->topology->amSupernode())) {
  553. SharedPtr<Peer> supernode(_r->topology->getBestSupernode(&origin,1,true));
  554. if (supernode)
  555. nextHop = supernode->address();
  556. }
  557. if ((!nextHop)||(nextHop == _r->identity.address())) { // check against our addr is a sanity check
  558. TRACE("not forwarding MULTICAST_FRAME from %s(%s): no next hop",source().toString().c_str(),_remoteAddress.toString().c_str());
  559. return true;
  560. }
  561. // The rest of newFifo[] goes back into the packet
  562. memcpy(fifo,newFifo + ZT_ADDRESS_LENGTH,ZT_PROTO_VERB_MULTICAST_FRAME_LEN_PROPAGATION_FIFO);
  563. #ifdef ZT_TRACE_MULTICAST
  564. char mct[256];
  565. Utils::snprintf(mct,sizeof(mct),"%c %s -> %.16llx %.16llx %s via %s",(_r->topology->amSupernode() ? 'S' : '-'),_r->identity.address().toString().c_str(),nwid,guid,origin.toString().c_str(),nextHop.toString().c_str());
  566. _r->demarc->send(Demarc::ANY_PORT,ZT_DEFAULTS.multicastTraceWatcher,mct,strlen(mct),-1);
  567. #endif
  568. // Send to next hop, reusing this packet as scratch space
  569. newInitializationVector();
  570. setDestination(nextHop);
  571. setSource(_r->identity.address());
  572. compress(); // note: bloom filters and empty FIFOs are highly compressable!
  573. _r->sw->send(*this,true);
  574. return true;
  575. } catch (std::exception &ex) {
  576. TRACE("dropped MULTICAST_FRAME from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  577. } catch ( ... ) {
  578. TRACE("dropped MULTICAST_FRAME from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  579. }
  580. return true;
  581. }
  582. bool PacketDecoder::_doMULTICAST_LIKE(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  583. {
  584. try {
  585. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD;
  586. if (ptr >= size())
  587. return true;
  588. uint64_t now = Utils::now();
  589. Address src(source());
  590. // Iterate through 18-byte network,MAC,ADI tuples
  591. for(;;) {
  592. _r->mc->likesGroup(at<uint64_t>(ptr),src,MulticastGroup(MAC(field(ptr + 8,6)),at<uint32_t>(ptr + 14)),now);
  593. if ((ptr += 18) >= size())
  594. break;
  595. }
  596. } catch (std::exception &ex) {
  597. TRACE("dropped MULTICAST_LIKE from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),ex.what());
  598. } catch ( ... ) {
  599. TRACE("dropped MULTICAST_LIKE from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  600. }
  601. return true;
  602. }
  603. bool PacketDecoder::_doNETWORK_MEMBERSHIP_CERTIFICATE(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  604. {
  605. // TODO: not implemented yet, will be needed for private networks.
  606. return true;
  607. }
  608. bool PacketDecoder::_doNETWORK_CONFIG_REQUEST(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  609. {
  610. try {
  611. uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_NETWORK_ID);
  612. #ifndef __WINDOWS__
  613. if (_r->netconfService) {
  614. char tmp[128];
  615. unsigned int dictLen = at<uint16_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT_LEN);
  616. Dictionary request;
  617. if (dictLen)
  618. request["meta"] = std::string((const char *)field(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT,dictLen),dictLen);
  619. request["type"] = "netconf-request";
  620. request["peerId"] = peer->identity().toString(false);
  621. Utils::snprintf(tmp,sizeof(tmp),"%llx",(unsigned long long)nwid);
  622. request["nwid"] = tmp;
  623. Utils::snprintf(tmp,sizeof(tmp),"%llx",(unsigned long long)packetId());
  624. request["requestId"] = tmp;
  625. //TRACE("to netconf:\n%s",request.toString().c_str());
  626. _r->netconfService->send(request);
  627. } else {
  628. #endif // !__WINDOWS__
  629. Packet outp(source(),_r->identity.address(),Packet::VERB_ERROR);
  630. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  631. outp.append(packetId());
  632. outp.append((unsigned char)Packet::ERROR_UNSUPPORTED_OPERATION);
  633. outp.append(nwid);
  634. outp.armor(peer->key(),true);
  635. _r->demarc->send(_localPort,_remoteAddress,outp.data(),outp.size(),-1);
  636. #ifndef __WINDOWS__
  637. }
  638. #endif // !__WINDOWS__
  639. } catch (std::exception &exc) {
  640. TRACE("dropped NETWORK_CONFIG_REQUEST from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),exc.what());
  641. } catch ( ... ) {
  642. TRACE("dropped NETWORK_CONFIG_REQUEST from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  643. }
  644. return true;
  645. }
  646. bool PacketDecoder::_doNETWORK_CONFIG_REFRESH(const RuntimeEnvironment *_r,const SharedPtr<Peer> &peer)
  647. {
  648. try {
  649. uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REFRESH_IDX_NETWORK_ID);
  650. SharedPtr<Network> nw(_r->nc->network(nwid));
  651. if ((nw)&&(source() == nw->controller())) // only respond to requests from controller
  652. nw->requestConfiguration();
  653. } catch (std::exception &exc) {
  654. TRACE("dropped NETWORK_CONFIG_REFRESH from %s(%s): unexpected exception: %s",source().toString().c_str(),_remoteAddress.toString().c_str(),exc.what());
  655. } catch ( ... ) {
  656. TRACE("dropped NETWORK_CONFIG_REFRESH from %s(%s): unexpected exception: (unknown)",source().toString().c_str(),_remoteAddress.toString().c_str());
  657. }
  658. return true;
  659. }
  660. } // namespace ZeroTier