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IncomingPacket.cpp 60 KB

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  1. /*
  2. * ZeroTier One - Network Virtualization Everywhere
  3. * Copyright (C) 2011-2015 ZeroTier, Inc.
  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 "../include/ZeroTierOne.h"
  32. #include "Constants.hpp"
  33. #include "RuntimeEnvironment.hpp"
  34. #include "IncomingPacket.hpp"
  35. #include "Topology.hpp"
  36. #include "Switch.hpp"
  37. #include "Peer.hpp"
  38. #include "NetworkController.hpp"
  39. #include "SelfAwareness.hpp"
  40. #include "Salsa20.hpp"
  41. #include "SHA512.hpp"
  42. #include "World.hpp"
  43. #include "Cluster.hpp"
  44. #include "Node.hpp"
  45. #include "AntiRecursion.hpp"
  46. #include "DeferredPackets.hpp"
  47. namespace ZeroTier {
  48. bool IncomingPacket::tryDecode(const RuntimeEnvironment *RR,bool deferred)
  49. {
  50. const Address sourceAddress(source());
  51. try {
  52. if ((cipher() == ZT_PROTO_CIPHER_SUITE__C25519_POLY1305_NONE)&&(verb() == Packet::VERB_HELLO)) {
  53. // Unencrypted HELLOs require some potentially expensive verification, so
  54. // do this in the background if background processing is enabled.
  55. DeferredPackets *const dp = RR->dp; // read volatile pointer
  56. if ((dp)&&(!deferred)) {
  57. dp->enqueue(this);
  58. return true; // 'handled' via deferring to background thread(s)
  59. } else {
  60. // A null pointer for peer to _doHELLO() tells it to run its own
  61. // special internal authentication logic. This is done for unencrypted
  62. // HELLOs to learn new identities, etc.
  63. SharedPtr<Peer> tmp;
  64. return _doHELLO(RR,tmp);
  65. }
  66. }
  67. SharedPtr<Peer> peer(RR->topology->getPeer(sourceAddress));
  68. if (peer) {
  69. if (!dearmor(peer->key())) {
  70. TRACE("dropped packet from %s(%s), MAC authentication failed (size: %u)",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),size());
  71. return true;
  72. }
  73. if (!uncompress()) {
  74. TRACE("dropped packet from %s(%s), compressed data invalid",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  75. return true;
  76. }
  77. //TRACE("<< %s from %s(%s)",Packet::verbString(v),sourceAddress.toString().c_str(),_remoteAddress.toString().c_str());
  78. const Packet::Verb v = verb();
  79. switch(v) {
  80. //case Packet::VERB_NOP:
  81. default: // ignore unknown verbs, but if they pass auth check they are "received"
  82. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),v,0,Packet::VERB_NOP);
  83. return true;
  84. case Packet::VERB_HELLO: return _doHELLO(RR,peer);
  85. case Packet::VERB_ERROR: return _doERROR(RR,peer);
  86. case Packet::VERB_OK: return _doOK(RR,peer);
  87. case Packet::VERB_WHOIS: return _doWHOIS(RR,peer);
  88. case Packet::VERB_RENDEZVOUS: return _doRENDEZVOUS(RR,peer);
  89. case Packet::VERB_FRAME: return _doFRAME(RR,peer);
  90. case Packet::VERB_EXT_FRAME: return _doEXT_FRAME(RR,peer);
  91. case Packet::VERB_ECHO: return _doECHO(RR,peer);
  92. case Packet::VERB_MULTICAST_LIKE: return _doMULTICAST_LIKE(RR,peer);
  93. case Packet::VERB_NETWORK_MEMBERSHIP_CERTIFICATE: return _doNETWORK_MEMBERSHIP_CERTIFICATE(RR,peer);
  94. case Packet::VERB_NETWORK_CONFIG_REQUEST: return _doNETWORK_CONFIG_REQUEST(RR,peer);
  95. case Packet::VERB_NETWORK_CONFIG_REFRESH: return _doNETWORK_CONFIG_REFRESH(RR,peer);
  96. case Packet::VERB_MULTICAST_GATHER: return _doMULTICAST_GATHER(RR,peer);
  97. case Packet::VERB_MULTICAST_FRAME: return _doMULTICAST_FRAME(RR,peer);
  98. case Packet::VERB_PUSH_DIRECT_PATHS: return _doPUSH_DIRECT_PATHS(RR,peer);
  99. case Packet::VERB_CIRCUIT_TEST: return _doCIRCUIT_TEST(RR,peer);
  100. case Packet::VERB_CIRCUIT_TEST_REPORT: return _doCIRCUIT_TEST_REPORT(RR,peer);
  101. case Packet::VERB_REQUEST_PROOF_OF_WORK: return _doREQUEST_PROOF_OF_WORK(RR,peer);
  102. }
  103. } else {
  104. RR->sw->requestWhois(sourceAddress);
  105. return false;
  106. }
  107. } catch ( ... ) {
  108. // Exceptions are more informatively caught in _do...() handlers but
  109. // this outer try/catch will catch anything else odd.
  110. TRACE("dropped ??? from %s(%s): unexpected exception in tryDecode()",sourceAddress.toString().c_str(),_remoteAddress.toString().c_str());
  111. return true;
  112. }
  113. }
  114. bool IncomingPacket::_doERROR(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  115. {
  116. try {
  117. const Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_ERROR_IDX_IN_RE_VERB];
  118. const uint64_t inRePacketId = at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_IN_RE_PACKET_ID);
  119. const Packet::ErrorCode errorCode = (Packet::ErrorCode)(*this)[ZT_PROTO_VERB_ERROR_IDX_ERROR_CODE];
  120. //TRACE("ERROR %s from %s(%s) in-re %s",Packet::errorString(errorCode),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),Packet::verbString(inReVerb));
  121. switch(errorCode) {
  122. case Packet::ERROR_OBJ_NOT_FOUND:
  123. if (inReVerb == Packet::VERB_NETWORK_CONFIG_REQUEST) {
  124. SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  125. if ((network)&&(network->controller() == peer->address()))
  126. network->setNotFound();
  127. }
  128. break;
  129. case Packet::ERROR_UNSUPPORTED_OPERATION:
  130. if (inReVerb == Packet::VERB_NETWORK_CONFIG_REQUEST) {
  131. SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  132. if ((network)&&(network->controller() == peer->address()))
  133. network->setNotFound();
  134. }
  135. break;
  136. case Packet::ERROR_IDENTITY_COLLISION:
  137. if (RR->topology->isRoot(peer->identity()))
  138. RR->node->postEvent(ZT_EVENT_FATAL_ERROR_IDENTITY_COLLISION);
  139. break;
  140. case Packet::ERROR_NEED_MEMBERSHIP_CERTIFICATE: {
  141. /* Note: certificates are public so it's safe to push them to anyone
  142. * who asks. We won't communicate unless we also get a certificate
  143. * from the remote that agrees. */
  144. SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  145. if (network) {
  146. SharedPtr<NetworkConfig> nconf(network->config2());
  147. if (nconf) {
  148. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_NETWORK_MEMBERSHIP_CERTIFICATE);
  149. nconf->com().serialize(outp);
  150. outp.armor(peer->key(),true);
  151. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  152. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  153. }
  154. }
  155. } break;
  156. case Packet::ERROR_NETWORK_ACCESS_DENIED_: {
  157. SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD)));
  158. if ((network)&&(network->controller() == peer->address()))
  159. network->setAccessDenied();
  160. } break;
  161. case Packet::ERROR_UNWANTED_MULTICAST: {
  162. uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD);
  163. MulticastGroup mg(MAC(field(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD + 8,6),6),at<uint32_t>(ZT_PROTO_VERB_ERROR_IDX_PAYLOAD + 14));
  164. TRACE("%.16llx: peer %s unsubscrubed from multicast group %s",nwid,peer->address().toString().c_str(),mg.toString().c_str());
  165. RR->mc->remove(nwid,mg,peer->address());
  166. } break;
  167. default: break;
  168. }
  169. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_ERROR,inRePacketId,inReVerb);
  170. } catch ( ... ) {
  171. TRACE("dropped ERROR from %s(%s): unexpected exception",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  172. }
  173. return true;
  174. }
  175. bool IncomingPacket::_doHELLO(const RuntimeEnvironment *RR,SharedPtr<Peer> &peer)
  176. {
  177. /* Note: this is the only packet ever sent in the clear, and it's also
  178. * the only packet that we authenticate via a different path. Authentication
  179. * occurs here and is based on the validity of the identity and the
  180. * integrity of the packet's MAC, but it must be done after we check
  181. * the identity since HELLO is a mechanism for learning new identities
  182. * in the first place. */
  183. try {
  184. const uint64_t pid = packetId();
  185. const Address fromAddress(source());
  186. const unsigned int protoVersion = (*this)[ZT_PROTO_VERB_HELLO_IDX_PROTOCOL_VERSION];
  187. const unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MAJOR_VERSION];
  188. const unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO_IDX_MINOR_VERSION];
  189. const unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO_IDX_REVISION);
  190. const uint64_t timestamp = at<uint64_t>(ZT_PROTO_VERB_HELLO_IDX_TIMESTAMP);
  191. Identity id;
  192. InetAddress externalSurfaceAddress;
  193. uint64_t worldId = ZT_WORLD_ID_NULL;
  194. uint64_t worldTimestamp = 0;
  195. {
  196. unsigned int ptr = ZT_PROTO_VERB_HELLO_IDX_IDENTITY + id.deserialize(*this,ZT_PROTO_VERB_HELLO_IDX_IDENTITY);
  197. if (ptr < size()) // ZeroTier One < 1.0.3 did not include physical destination address info
  198. ptr += externalSurfaceAddress.deserialize(*this,ptr);
  199. if ((ptr + 16) <= size()) { // older versions also did not include World IDs or timestamps
  200. worldId = at<uint64_t>(ptr); ptr += 8;
  201. worldTimestamp = at<uint64_t>(ptr);
  202. }
  203. }
  204. if (protoVersion < ZT_PROTO_VERSION_MIN) {
  205. TRACE("dropped HELLO from %s(%s): protocol version too old",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  206. return true;
  207. }
  208. if (fromAddress != id.address()) {
  209. TRACE("dropped HELLO from %s(%s): identity not for sending address",fromAddress.toString().c_str(),_remoteAddress.toString().c_str());
  210. return true;
  211. }
  212. if (!peer) { // peer == NULL is the normal case here
  213. peer = RR->topology->getPeer(id.address());
  214. if (peer) {
  215. // We already have an identity with this address -- check for collisions
  216. if (peer->identity() != id) {
  217. // Identity is different from the one we already have -- address collision
  218. unsigned char key[ZT_PEER_SECRET_KEY_LENGTH];
  219. if (RR->identity.agree(id,key,ZT_PEER_SECRET_KEY_LENGTH)) {
  220. if (dearmor(key)) { // ensure packet is authentic, otherwise drop
  221. TRACE("rejected HELLO from %s(%s): address already claimed",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  222. Packet outp(id.address(),RR->identity.address(),Packet::VERB_ERROR);
  223. outp.append((unsigned char)Packet::VERB_HELLO);
  224. outp.append((uint64_t)pid);
  225. outp.append((unsigned char)Packet::ERROR_IDENTITY_COLLISION);
  226. outp.armor(key,true);
  227. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  228. } else {
  229. TRACE("rejected HELLO from %s(%s): packet failed authentication",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  230. }
  231. } else {
  232. TRACE("rejected HELLO from %s(%s): key agreement failed",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  233. }
  234. return true;
  235. } else {
  236. // Identity is the same as the one we already have -- check packet integrity
  237. if (!dearmor(peer->key())) {
  238. TRACE("rejected HELLO from %s(%s): packet failed authentication",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  239. return true;
  240. }
  241. // Continue at // VALID
  242. }
  243. } else {
  244. // We don't already have an identity with this address -- validate and learn it
  245. // Check identity proof of work
  246. if (!id.locallyValidate()) {
  247. TRACE("dropped HELLO from %s(%s): identity invalid",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  248. return true;
  249. }
  250. // Check packet integrity and authentication
  251. SharedPtr<Peer> newPeer(new Peer(RR->identity,id));
  252. if (!dearmor(newPeer->key())) {
  253. TRACE("rejected HELLO from %s(%s): packet failed authentication",id.address().toString().c_str(),_remoteAddress.toString().c_str());
  254. return true;
  255. }
  256. peer = RR->topology->addPeer(newPeer);
  257. // Continue at // VALID
  258. }
  259. // VALID -- if we made it here, packet passed identity and authenticity checks!
  260. }
  261. if (externalSurfaceAddress)
  262. RR->sa->iam(id.address(),_remoteAddress,externalSurfaceAddress,RR->topology->isRoot(id),RR->node->now());
  263. Packet outp(id.address(),RR->identity.address(),Packet::VERB_OK);
  264. outp.append((unsigned char)Packet::VERB_HELLO);
  265. outp.append((uint64_t)pid);
  266. outp.append((uint64_t)timestamp);
  267. outp.append((unsigned char)ZT_PROTO_VERSION);
  268. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MAJOR);
  269. outp.append((unsigned char)ZEROTIER_ONE_VERSION_MINOR);
  270. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  271. if (protoVersion >= 5) {
  272. _remoteAddress.serialize(outp);
  273. } else {
  274. /* LEGACY COMPATIBILITY HACK:
  275. *
  276. * For a while now (since 1.0.3), ZeroTier has recognized changes in
  277. * its network environment empirically by examining its external network
  278. * address as reported by trusted peers. In versions prior to 1.1.0
  279. * (protocol version < 5), they did this by saving a snapshot of this
  280. * information (in SelfAwareness.hpp) keyed by reporting device ID and
  281. * address type.
  282. *
  283. * This causes problems when clustering is combined with symmetric NAT.
  284. * Symmetric NAT remaps ports, so different endpoints in a cluster will
  285. * report back different exterior addresses. Since the old code keys
  286. * this by device ID and not sending physical address and compares the
  287. * entire address including port, it constantly thinks its external
  288. * surface is changing and resets connections when talking to a cluster.
  289. *
  290. * In new code we key by sending physical address and device and we also
  291. * take the more conservative position of only interpreting changes in
  292. * IP address (neglecting port) as a change in network topology that
  293. * necessitates a reset. But we can make older clients work here by
  294. * nulling out the port field. Since this info is only used for empirical
  295. * detection of link changes, it doesn't break anything else.
  296. */
  297. InetAddress tmpa(_remoteAddress);
  298. tmpa.setPort(0);
  299. tmpa.serialize(outp);
  300. }
  301. if ((worldId != ZT_WORLD_ID_NULL)&&(RR->topology->worldTimestamp() > worldTimestamp)&&(worldId == RR->topology->worldId())) {
  302. World w(RR->topology->world());
  303. const unsigned int sizeAt = outp.size();
  304. outp.addSize(2); // make room for 16-bit size field
  305. w.serialize(outp,false);
  306. outp.setAt<uint16_t>(sizeAt,(uint16_t)(outp.size() - (sizeAt + 2)));
  307. } else {
  308. outp.append((uint16_t)0); // no world update needed
  309. }
  310. outp.armor(peer->key(),true);
  311. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  312. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  313. peer->setRemoteVersion(protoVersion,vMajor,vMinor,vRevision);
  314. peer->received(RR,_localAddress,_remoteAddress,hops(),pid,Packet::VERB_HELLO,0,Packet::VERB_NOP);
  315. } catch ( ... ) {
  316. TRACE("dropped HELLO from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  317. }
  318. return true;
  319. }
  320. bool IncomingPacket::_doOK(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  321. {
  322. try {
  323. const Packet::Verb inReVerb = (Packet::Verb)(*this)[ZT_PROTO_VERB_OK_IDX_IN_RE_VERB];
  324. const uint64_t inRePacketId = at<uint64_t>(ZT_PROTO_VERB_OK_IDX_IN_RE_PACKET_ID);
  325. //TRACE("%s(%s): OK(%s)",source().toString().c_str(),_remoteAddress.toString().c_str(),Packet::verbString(inReVerb));
  326. switch(inReVerb) {
  327. case Packet::VERB_HELLO: {
  328. const unsigned int latency = std::min((unsigned int)(RR->node->now() - at<uint64_t>(ZT_PROTO_VERB_HELLO__OK__IDX_TIMESTAMP)),(unsigned int)0xffff);
  329. const unsigned int vProto = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_PROTOCOL_VERSION];
  330. const unsigned int vMajor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MAJOR_VERSION];
  331. const unsigned int vMinor = (*this)[ZT_PROTO_VERB_HELLO__OK__IDX_MINOR_VERSION];
  332. const unsigned int vRevision = at<uint16_t>(ZT_PROTO_VERB_HELLO__OK__IDX_REVISION);
  333. if (vProto < ZT_PROTO_VERSION_MIN) {
  334. TRACE("%s(%s): OK(HELLO) dropped, protocol version too old",source().toString().c_str(),_remoteAddress.toString().c_str());
  335. return true;
  336. }
  337. const bool trusted = RR->topology->isRoot(peer->identity());
  338. InetAddress externalSurfaceAddress;
  339. unsigned int ptr = ZT_PROTO_VERB_HELLO__OK__IDX_REVISION + 2;
  340. if (ptr < size()) // ZeroTier One < 1.0.3 did not include this field
  341. ptr += externalSurfaceAddress.deserialize(*this,ptr);
  342. if ((trusted)&&((ptr + 2) <= size())) { // older versions also did not include this field, and right now we only use if from a root
  343. World worldUpdate;
  344. const unsigned int worldLen = at<uint16_t>(ptr); ptr += 2;
  345. if (worldLen > 0) {
  346. World w;
  347. w.deserialize(*this,ptr);
  348. RR->topology->worldUpdateIfValid(w);
  349. }
  350. }
  351. TRACE("%s(%s): OK(HELLO), version %u.%u.%u, latency %u, reported external address %s",source().toString().c_str(),_remoteAddress.toString().c_str(),vMajor,vMinor,vRevision,latency,((externalSurfaceAddress) ? externalSurfaceAddress.toString().c_str() : "(none)"));
  352. peer->addDirectLatencyMeasurment(latency);
  353. peer->setRemoteVersion(vProto,vMajor,vMinor,vRevision);
  354. if (externalSurfaceAddress)
  355. RR->sa->iam(peer->address(),_remoteAddress,externalSurfaceAddress,trusted,RR->node->now());
  356. } break;
  357. case Packet::VERB_WHOIS: {
  358. /* Right now only root servers are allowed to send OK(WHOIS) to prevent
  359. * poisoning attacks. Further decentralization will require some other
  360. * kind of trust mechanism. */
  361. if (RR->topology->isRoot(peer->identity())) {
  362. const Identity id(*this,ZT_PROTO_VERB_WHOIS__OK__IDX_IDENTITY);
  363. if (id.locallyValidate())
  364. RR->sw->doAnythingWaitingForPeer(RR->topology->addPeer(SharedPtr<Peer>(new Peer(RR->identity,id))));
  365. }
  366. } break;
  367. case Packet::VERB_NETWORK_CONFIG_REQUEST: {
  368. const SharedPtr<Network> nw(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_NETWORK_ID)));
  369. if ((nw)&&(nw->controller() == peer->address())) {
  370. const unsigned int dictlen = at<uint16_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_DICT_LEN);
  371. const std::string dict((const char *)field(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST__OK__IDX_DICT,dictlen),dictlen);
  372. if (dict.length()) {
  373. nw->setConfiguration(Dictionary(dict));
  374. TRACE("got network configuration for network %.16llx from %s",(unsigned long long)nw->id(),source().toString().c_str());
  375. }
  376. }
  377. } break;
  378. case Packet::VERB_MULTICAST_GATHER: {
  379. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_NETWORK_ID);
  380. 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));
  381. TRACE("%s(%s): OK(MULTICAST_GATHER) %.16llx/%s length %u",source().toString().c_str(),_remoteAddress.toString().c_str(),nwid,mg.toString().c_str(),size());
  382. const unsigned int count = at<uint16_t>(ZT_PROTO_VERB_MULTICAST_GATHER__OK__IDX_GATHER_RESULTS + 4);
  383. RR->mc->addMultiple(RR->node->now(),nwid,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));
  384. } break;
  385. case Packet::VERB_MULTICAST_FRAME: {
  386. const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_FLAGS];
  387. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_NETWORK_ID);
  388. 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));
  389. //TRACE("%s(%s): OK(MULTICAST_FRAME) %.16llx/%s flags %.2x",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),nwid,mg.toString().c_str(),flags);
  390. unsigned int offset = 0;
  391. if ((flags & 0x01) != 0) {
  392. // OK(MULTICAST_FRAME) includes certificate of membership update
  393. CertificateOfMembership com;
  394. offset += com.deserialize(*this,ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_COM_AND_GATHER_RESULTS);
  395. peer->validateAndSetNetworkMembershipCertificate(RR,nwid,com);
  396. }
  397. if ((flags & 0x02) != 0) {
  398. // OK(MULTICAST_FRAME) includes implicit gather results
  399. offset += ZT_PROTO_VERB_MULTICAST_FRAME__OK__IDX_COM_AND_GATHER_RESULTS;
  400. unsigned int totalKnown = at<uint32_t>(offset); offset += 4;
  401. unsigned int count = at<uint16_t>(offset); offset += 2;
  402. RR->mc->addMultiple(RR->node->now(),nwid,mg,field(offset,count * 5),count,totalKnown);
  403. }
  404. } break;
  405. default: break;
  406. }
  407. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_OK,inRePacketId,inReVerb);
  408. } catch ( ... ) {
  409. TRACE("dropped OK from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  410. }
  411. return true;
  412. }
  413. bool IncomingPacket::_doWHOIS(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  414. {
  415. try {
  416. if (payloadLength() == ZT_ADDRESS_LENGTH) {
  417. Identity queried(RR->topology->getIdentity(Address(payload(),ZT_ADDRESS_LENGTH)));
  418. if (queried) {
  419. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  420. outp.append((unsigned char)Packet::VERB_WHOIS);
  421. outp.append(packetId());
  422. queried.serialize(outp,false);
  423. outp.armor(peer->key(),true);
  424. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  425. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  426. } else {
  427. #ifdef ZT_ENABLE_CLUSTER
  428. if (RR->cluster)
  429. RR->cluster->sendDistributedQuery(*this);
  430. #endif
  431. }
  432. } else {
  433. TRACE("dropped WHOIS from %s(%s): missing or invalid address",source().toString().c_str(),_remoteAddress.toString().c_str());
  434. }
  435. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_WHOIS,0,Packet::VERB_NOP);
  436. } catch ( ... ) {
  437. TRACE("dropped WHOIS from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  438. }
  439. return true;
  440. }
  441. bool IncomingPacket::_doRENDEZVOUS(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  442. {
  443. try {
  444. if (RR->topology->isUpstream(peer->identity())) {
  445. const Address with(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ZTADDRESS,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  446. const SharedPtr<Peer> withPeer(RR->topology->getPeer(with));
  447. if (withPeer) {
  448. const unsigned int port = at<uint16_t>(ZT_PROTO_VERB_RENDEZVOUS_IDX_PORT);
  449. const unsigned int addrlen = (*this)[ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRLEN];
  450. if ((port > 0)&&((addrlen == 4)||(addrlen == 16))) {
  451. InetAddress atAddr(field(ZT_PROTO_VERB_RENDEZVOUS_IDX_ADDRESS,addrlen),addrlen,port);
  452. TRACE("RENDEZVOUS from %s says %s might be at %s, starting NAT-t",peer->address().toString().c_str(),with.toString().c_str(),atAddr.toString().c_str());
  453. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_RENDEZVOUS,0,Packet::VERB_NOP);
  454. RR->sw->rendezvous(withPeer,_localAddress,atAddr);
  455. } else {
  456. TRACE("dropped corrupt RENDEZVOUS from %s(%s) (bad address or port)",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  457. }
  458. } else {
  459. RR->sw->requestWhois(with);
  460. TRACE("ignored RENDEZVOUS from %s(%s) to meet unknown peer %s",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),with.toString().c_str());
  461. }
  462. } else {
  463. TRACE("ignored RENDEZVOUS from %s(%s): not a root server or a network relay",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  464. }
  465. } catch ( ... ) {
  466. TRACE("dropped RENDEZVOUS from %s(%s): unexpected exception",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  467. }
  468. return true;
  469. }
  470. bool IncomingPacket::_doFRAME(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  471. {
  472. try {
  473. const SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID)));
  474. if (network) {
  475. if (size() > ZT_PROTO_VERB_FRAME_IDX_PAYLOAD) {
  476. if (!network->isAllowed(peer)) {
  477. TRACE("dropped FRAME from %s(%s): not a member of private network %.16llx",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),(unsigned long long)network->id());
  478. _sendErrorNeedCertificate(RR,peer,network->id());
  479. return true;
  480. }
  481. const unsigned int etherType = at<uint16_t>(ZT_PROTO_VERB_FRAME_IDX_ETHERTYPE);
  482. if (!network->config()->permitsEtherType(etherType)) {
  483. TRACE("dropped FRAME from %s(%s): ethertype %.4x not allowed on %.16llx",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),(unsigned int)etherType,(unsigned long long)network->id());
  484. return true;
  485. }
  486. const unsigned int payloadLen = size() - ZT_PROTO_VERB_FRAME_IDX_PAYLOAD;
  487. RR->node->putFrame(network->id(),MAC(peer->address(),network->id()),network->mac(),etherType,0,field(ZT_PROTO_VERB_FRAME_IDX_PAYLOAD,payloadLen),payloadLen);
  488. }
  489. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_FRAME,0,Packet::VERB_NOP);
  490. } else {
  491. TRACE("dropped FRAME from %s(%s): we are not connected to network %.16llx",source().toString().c_str(),_remoteAddress.toString().c_str(),at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID));
  492. }
  493. } catch ( ... ) {
  494. TRACE("dropped FRAME from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  495. }
  496. return true;
  497. }
  498. bool IncomingPacket::_doEXT_FRAME(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  499. {
  500. try {
  501. SharedPtr<Network> network(RR->node->network(at<uint64_t>(ZT_PROTO_VERB_EXT_FRAME_IDX_NETWORK_ID)));
  502. if (network) {
  503. if (size() > ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD) {
  504. const unsigned int flags = (*this)[ZT_PROTO_VERB_EXT_FRAME_IDX_FLAGS];
  505. unsigned int comLen = 0;
  506. if ((flags & 0x01) != 0) {
  507. CertificateOfMembership com;
  508. comLen = com.deserialize(*this,ZT_PROTO_VERB_EXT_FRAME_IDX_COM);
  509. peer->validateAndSetNetworkMembershipCertificate(RR,network->id(),com);
  510. }
  511. if (!network->isAllowed(peer)) {
  512. TRACE("dropped EXT_FRAME from %s(%s): not a member of private network %.16llx",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),network->id());
  513. _sendErrorNeedCertificate(RR,peer,network->id());
  514. return true;
  515. }
  516. // Everything after flags must be adjusted based on the length
  517. // of the certificate, if there was one...
  518. const unsigned int etherType = at<uint16_t>(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_ETHERTYPE);
  519. if (!network->config()->permitsEtherType(etherType)) {
  520. TRACE("dropped EXT_FRAME from %s(%s): ethertype %.4x not allowed on network %.16llx",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),(unsigned int)etherType,(unsigned long long)network->id());
  521. return true;
  522. }
  523. 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);
  524. 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);
  525. if (to.isMulticast()) {
  526. TRACE("dropped EXT_FRAME from %s@%s(%s) to %s: destination is multicast, must use MULTICAST_FRAME",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str());
  527. return true;
  528. }
  529. if ((!from)||(from.isMulticast())||(from == network->mac())) {
  530. TRACE("dropped EXT_FRAME from %s@%s(%s) to %s: invalid source MAC",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str());
  531. return true;
  532. }
  533. if (from != MAC(peer->address(),network->id())) {
  534. if (network->permitsBridging(peer->address())) {
  535. network->learnBridgeRoute(from,peer->address());
  536. } else {
  537. TRACE("dropped EXT_FRAME from %s@%s(%s) to %s: sender not allowed to bridge into %.16llx",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str(),network->id());
  538. return true;
  539. }
  540. } else if (to != network->mac()) {
  541. if (!network->permitsBridging(RR->identity.address())) {
  542. TRACE("dropped EXT_FRAME from %s@%s(%s) to %s: I cannot bridge to %.16llx or bridging disabled on network",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str(),network->id());
  543. return true;
  544. }
  545. }
  546. const unsigned int payloadLen = size() - (comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD);
  547. RR->node->putFrame(network->id(),from,to,etherType,0,field(comLen + ZT_PROTO_VERB_EXT_FRAME_IDX_PAYLOAD,payloadLen),payloadLen);
  548. }
  549. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_EXT_FRAME,0,Packet::VERB_NOP);
  550. } else {
  551. TRACE("dropped EXT_FRAME from %s(%s): we are not connected to network %.16llx",source().toString().c_str(),_remoteAddress.toString().c_str(),at<uint64_t>(ZT_PROTO_VERB_FRAME_IDX_NETWORK_ID));
  552. }
  553. } catch ( ... ) {
  554. TRACE("dropped EXT_FRAME from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  555. }
  556. return true;
  557. }
  558. bool IncomingPacket::_doECHO(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  559. {
  560. try {
  561. const uint64_t pid = packetId();
  562. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  563. outp.append((unsigned char)Packet::VERB_ECHO);
  564. outp.append((uint64_t)pid);
  565. outp.append(field(ZT_PACKET_IDX_PAYLOAD,size() - ZT_PACKET_IDX_PAYLOAD),size() - ZT_PACKET_IDX_PAYLOAD);
  566. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  567. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  568. peer->received(RR,_localAddress,_remoteAddress,hops(),pid,Packet::VERB_ECHO,0,Packet::VERB_NOP);
  569. } catch ( ... ) {
  570. TRACE("dropped ECHO from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  571. }
  572. return true;
  573. }
  574. bool IncomingPacket::_doMULTICAST_LIKE(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  575. {
  576. try {
  577. const uint64_t now = RR->node->now();
  578. // Iterate through 18-byte network,MAC,ADI tuples
  579. for(unsigned int ptr=ZT_PACKET_IDX_PAYLOAD;ptr<size();ptr+=18) {
  580. const uint64_t nwid = at<uint64_t>(ptr);
  581. const MulticastGroup group(MAC(field(ptr + 8,6),6),at<uint32_t>(ptr + 14));
  582. RR->mc->add(now,nwid,group,peer->address());
  583. }
  584. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_MULTICAST_LIKE,0,Packet::VERB_NOP);
  585. } catch ( ... ) {
  586. TRACE("dropped MULTICAST_LIKE from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  587. }
  588. return true;
  589. }
  590. bool IncomingPacket::_doNETWORK_MEMBERSHIP_CERTIFICATE(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  591. {
  592. try {
  593. CertificateOfMembership com;
  594. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD;
  595. while (ptr < size()) {
  596. ptr += com.deserialize(*this,ptr);
  597. peer->validateAndSetNetworkMembershipCertificate(RR,com.networkId(),com);
  598. }
  599. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_NETWORK_MEMBERSHIP_CERTIFICATE,0,Packet::VERB_NOP);
  600. } catch ( ... ) {
  601. TRACE("dropped NETWORK_MEMBERSHIP_CERTIFICATE from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  602. }
  603. return true;
  604. }
  605. bool IncomingPacket::_doNETWORK_CONFIG_REQUEST(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  606. {
  607. try {
  608. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_NETWORK_ID);
  609. const unsigned int metaDataLength = at<uint16_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT_LEN);
  610. const Dictionary metaData((const char *)field(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT,metaDataLength),metaDataLength);
  611. //const uint64_t haveRevision = ((ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT + metaDataLength + 8) <= size()) ? at<uint64_t>(ZT_PROTO_VERB_NETWORK_CONFIG_REQUEST_IDX_DICT + metaDataLength) : 0ULL;
  612. const unsigned int h = hops();
  613. const uint64_t pid = packetId();
  614. peer->received(RR,_localAddress,_remoteAddress,h,pid,Packet::VERB_NETWORK_CONFIG_REQUEST,0,Packet::VERB_NOP);
  615. if (RR->localNetworkController) {
  616. Dictionary netconf;
  617. switch(RR->localNetworkController->doNetworkConfigRequest((h > 0) ? InetAddress() : _remoteAddress,RR->identity,peer->identity(),nwid,metaData,netconf)) {
  618. case NetworkController::NETCONF_QUERY_OK: {
  619. const std::string netconfStr(netconf.toString());
  620. if (netconfStr.length() > 0xffff) { // sanity check since field ix 16-bit
  621. TRACE("NETWORK_CONFIG_REQUEST failed: internal error: netconf size %u is too large",(unsigned int)netconfStr.length());
  622. } else {
  623. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  624. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  625. outp.append(pid);
  626. outp.append(nwid);
  627. outp.append((uint16_t)netconfStr.length());
  628. outp.append(netconfStr.data(),(unsigned int)netconfStr.length());
  629. outp.compress();
  630. outp.armor(peer->key(),true);
  631. if (outp.size() > ZT_PROTO_MAX_PACKET_LENGTH) { // sanity check
  632. TRACE("NETWORK_CONFIG_REQUEST failed: internal error: netconf size %u is too large",(unsigned int)netconfStr.length());
  633. } else {
  634. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  635. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  636. }
  637. }
  638. } break;
  639. case NetworkController::NETCONF_QUERY_OBJECT_NOT_FOUND: {
  640. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_ERROR);
  641. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  642. outp.append(pid);
  643. outp.append((unsigned char)Packet::ERROR_OBJ_NOT_FOUND);
  644. outp.append(nwid);
  645. outp.armor(peer->key(),true);
  646. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  647. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  648. } break;
  649. case NetworkController::NETCONF_QUERY_ACCESS_DENIED: {
  650. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_ERROR);
  651. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  652. outp.append(pid);
  653. outp.append((unsigned char)Packet::ERROR_NETWORK_ACCESS_DENIED_);
  654. outp.append(nwid);
  655. outp.armor(peer->key(),true);
  656. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  657. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  658. } break;
  659. case NetworkController::NETCONF_QUERY_INTERNAL_SERVER_ERROR:
  660. TRACE("NETWORK_CONFIG_REQUEST failed: internal error: %s",netconf.get("error","(unknown)").c_str());
  661. break;
  662. case NetworkController::NETCONF_QUERY_IGNORE:
  663. break;
  664. default:
  665. TRACE("NETWORK_CONFIG_REQUEST failed: invalid return value from NetworkController::doNetworkConfigRequest()");
  666. break;
  667. }
  668. } else {
  669. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_ERROR);
  670. outp.append((unsigned char)Packet::VERB_NETWORK_CONFIG_REQUEST);
  671. outp.append(pid);
  672. outp.append((unsigned char)Packet::ERROR_UNSUPPORTED_OPERATION);
  673. outp.append(nwid);
  674. outp.armor(peer->key(),true);
  675. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  676. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  677. }
  678. } catch ( ... ) {
  679. TRACE("dropped NETWORK_CONFIG_REQUEST from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  680. }
  681. return true;
  682. }
  683. bool IncomingPacket::_doNETWORK_CONFIG_REFRESH(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  684. {
  685. try {
  686. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD;
  687. while ((ptr + 8) <= size()) {
  688. uint64_t nwid = at<uint64_t>(ptr);
  689. SharedPtr<Network> nw(RR->node->network(nwid));
  690. if ((nw)&&(peer->address() == nw->controller()))
  691. nw->requestConfiguration();
  692. ptr += 8;
  693. }
  694. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_NETWORK_CONFIG_REFRESH,0,Packet::VERB_NOP);
  695. } catch ( ... ) {
  696. TRACE("dropped NETWORK_CONFIG_REFRESH from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  697. }
  698. return true;
  699. }
  700. bool IncomingPacket::_doMULTICAST_GATHER(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  701. {
  702. try {
  703. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_NETWORK_ID);
  704. const MulticastGroup mg(MAC(field(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_MAC,6),6),at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_ADI));
  705. const unsigned int gatherLimit = at<uint32_t>(ZT_PROTO_VERB_MULTICAST_GATHER_IDX_GATHER_LIMIT);
  706. //TRACE("<<MC %s(%s) GATHER up to %u in %.16llx/%s",source().toString().c_str(),_remoteAddress.toString().c_str(),gatherLimit,nwid,mg.toString().c_str());
  707. if (gatherLimit) {
  708. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  709. outp.append((unsigned char)Packet::VERB_MULTICAST_GATHER);
  710. outp.append(packetId());
  711. outp.append(nwid);
  712. mg.mac().appendTo(outp);
  713. outp.append((uint32_t)mg.adi());
  714. const unsigned int gatheredLocally = RR->mc->gather(peer->address(),nwid,mg,outp,gatherLimit);
  715. if (gatheredLocally) {
  716. outp.armor(peer->key(),true);
  717. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  718. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  719. }
  720. #ifdef ZT_ENABLE_CLUSTER
  721. if ((RR->cluster)&&(gatheredLocally < gatherLimit))
  722. RR->cluster->sendDistributedQuery(*this);
  723. #endif
  724. }
  725. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_MULTICAST_GATHER,0,Packet::VERB_NOP);
  726. } catch ( ... ) {
  727. TRACE("dropped MULTICAST_GATHER from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  728. }
  729. return true;
  730. }
  731. bool IncomingPacket::_doMULTICAST_FRAME(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  732. {
  733. try {
  734. const uint64_t nwid = at<uint64_t>(ZT_PROTO_VERB_MULTICAST_FRAME_IDX_NETWORK_ID);
  735. const unsigned int flags = (*this)[ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FLAGS];
  736. const SharedPtr<Network> network(RR->node->network(nwid));
  737. if (network) {
  738. // Offset -- size of optional fields added to position of later fields
  739. unsigned int offset = 0;
  740. if ((flags & 0x01) != 0) {
  741. CertificateOfMembership com;
  742. offset += com.deserialize(*this,ZT_PROTO_VERB_MULTICAST_FRAME_IDX_COM);
  743. peer->validateAndSetNetworkMembershipCertificate(RR,nwid,com);
  744. }
  745. // Check membership after we've read any included COM, since
  746. // that cert might be what we needed.
  747. if (!network->isAllowed(peer)) {
  748. TRACE("dropped MULTICAST_FRAME from %s(%s): not a member of private network %.16llx",peer->address().toString().c_str(),_remoteAddress.toString().c_str(),(unsigned long long)network->id());
  749. _sendErrorNeedCertificate(RR,peer,network->id());
  750. return true;
  751. }
  752. unsigned int gatherLimit = 0;
  753. if ((flags & 0x02) != 0) {
  754. gatherLimit = at<uint32_t>(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_GATHER_LIMIT);
  755. offset += 4;
  756. }
  757. MAC from;
  758. if ((flags & 0x04) != 0) {
  759. from.setTo(field(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_SOURCE_MAC,6),6);
  760. offset += 6;
  761. } else {
  762. from.fromAddress(peer->address(),nwid);
  763. }
  764. 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));
  765. const unsigned int etherType = at<uint16_t>(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_ETHERTYPE);
  766. const unsigned int payloadLen = size() - (offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME);
  767. //TRACE("<<MC FRAME %.16llx/%s from %s@%s flags %.2x length %u",nwid,to.toString().c_str(),from.toString().c_str(),peer->address().toString().c_str(),flags,payloadLen);
  768. if ((payloadLen > 0)&&(payloadLen <= ZT_IF_MTU)) {
  769. if (!to.mac().isMulticast()) {
  770. TRACE("dropped MULTICAST_FRAME from %s@%s(%s) to %s: destination is unicast, must use FRAME or EXT_FRAME",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str());
  771. return true;
  772. }
  773. if ((!from)||(from.isMulticast())||(from == network->mac())) {
  774. TRACE("dropped MULTICAST_FRAME from %s@%s(%s) to %s: invalid source MAC",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str());
  775. return true;
  776. }
  777. if (from != MAC(peer->address(),network->id())) {
  778. if (network->permitsBridging(peer->address())) {
  779. network->learnBridgeRoute(from,peer->address());
  780. } else {
  781. TRACE("dropped MULTICAST_FRAME from %s@%s(%s) to %s: sender not allowed to bridge into %.16llx",from.toString().c_str(),peer->address().toString().c_str(),_remoteAddress.toString().c_str(),to.toString().c_str(),network->id());
  782. return true;
  783. }
  784. }
  785. RR->node->putFrame(network->id(),from,to.mac(),etherType,0,field(offset + ZT_PROTO_VERB_MULTICAST_FRAME_IDX_FRAME,payloadLen),payloadLen);
  786. }
  787. if (gatherLimit) {
  788. Packet outp(source(),RR->identity.address(),Packet::VERB_OK);
  789. outp.append((unsigned char)Packet::VERB_MULTICAST_FRAME);
  790. outp.append(packetId());
  791. outp.append(nwid);
  792. to.mac().appendTo(outp);
  793. outp.append((uint32_t)to.adi());
  794. outp.append((unsigned char)0x02); // flag 0x02 = contains gather results
  795. if (RR->mc->gather(peer->address(),nwid,to,outp,gatherLimit)) {
  796. outp.armor(peer->key(),true);
  797. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  798. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  799. }
  800. }
  801. } // else ignore -- not a member of this network
  802. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_MULTICAST_FRAME,0,Packet::VERB_NOP);
  803. } catch ( ... ) {
  804. TRACE("dropped MULTICAST_FRAME from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  805. }
  806. return true;
  807. }
  808. bool IncomingPacket::_doPUSH_DIRECT_PATHS(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  809. {
  810. try {
  811. const uint64_t now = RR->node->now();
  812. // First, subject this to a rate limit
  813. if (!peer->shouldRespondToDirectPathPush(now)) {
  814. TRACE("dropped PUSH_DIRECT_PATHS from %s(%s): circuit breaker tripped",source().toString().c_str(),_remoteAddress.toString().c_str());
  815. return true;
  816. }
  817. // Second, limit addresses by scope and type
  818. uint8_t countPerScope[ZT_INETADDRESS_MAX_SCOPE+1][2]; // [][0] is v4, [][1] is v6
  819. memset(countPerScope,0,sizeof(countPerScope));
  820. unsigned int count = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD);
  821. unsigned int ptr = ZT_PACKET_IDX_PAYLOAD + 2;
  822. while (count--) { // if ptr overflows Buffer will throw
  823. // TODO: some flags are not yet implemented
  824. unsigned int flags = (*this)[ptr++];
  825. unsigned int extLen = at<uint16_t>(ptr); ptr += 2;
  826. ptr += extLen; // unused right now
  827. unsigned int addrType = (*this)[ptr++];
  828. unsigned int addrLen = (*this)[ptr++];
  829. switch(addrType) {
  830. case 4: {
  831. InetAddress a(field(ptr,4),4,at<uint16_t>(ptr + 4));
  832. if ( ((flags & 0x01) == 0) && (Path::isAddressValidForPath(a)) ) {
  833. if (++countPerScope[(int)a.ipScope()][0] <= ZT_PUSH_DIRECT_PATHS_MAX_PER_SCOPE_AND_FAMILY) {
  834. TRACE("attempting to contact %s at pushed direct path %s",peer->address().toString().c_str(),a.toString().c_str());
  835. peer->sendHELLO(RR,_localAddress,a,now);
  836. } else {
  837. TRACE("ignoring contact for %s at %s -- too many per scope",peer->address().toString().c_str(),a.toString().c_str());
  838. }
  839. }
  840. } break;
  841. case 6: {
  842. InetAddress a(field(ptr,16),16,at<uint16_t>(ptr + 16));
  843. if ( ((flags & 0x01) == 0) && (Path::isAddressValidForPath(a)) ) {
  844. if (++countPerScope[(int)a.ipScope()][1] <= ZT_PUSH_DIRECT_PATHS_MAX_PER_SCOPE_AND_FAMILY) {
  845. TRACE("attempting to contact %s at pushed direct path %s",peer->address().toString().c_str(),a.toString().c_str());
  846. peer->sendHELLO(RR,_localAddress,a,now);
  847. } else {
  848. TRACE("ignoring contact for %s at %s -- too many per scope",peer->address().toString().c_str(),a.toString().c_str());
  849. }
  850. }
  851. } break;
  852. }
  853. ptr += addrLen;
  854. }
  855. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_PUSH_DIRECT_PATHS,0,Packet::VERB_NOP);
  856. } catch ( ... ) {
  857. TRACE("dropped PUSH_DIRECT_PATHS from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  858. }
  859. return true;
  860. }
  861. bool IncomingPacket::_doCIRCUIT_TEST(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  862. {
  863. try {
  864. const Address originatorAddress(field(ZT_PACKET_IDX_PAYLOAD,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  865. SharedPtr<Peer> originator(RR->topology->getPeer(originatorAddress));
  866. if (!originator) {
  867. RR->sw->requestWhois(originatorAddress);
  868. return false;
  869. }
  870. const unsigned int flags = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 5);
  871. const uint64_t timestamp = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 7);
  872. const uint64_t testId = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 15);
  873. // Tracks total length of variable length fields, initialized to originator credential length below
  874. unsigned int vlf;
  875. // Originator credentials
  876. const unsigned int originatorCredentialLength = vlf = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 23);
  877. uint64_t originatorCredentialNetworkId = 0;
  878. if (originatorCredentialLength >= 1) {
  879. switch((*this)[ZT_PACKET_IDX_PAYLOAD + 25]) {
  880. case 0x01: { // 64-bit network ID, originator must be controller
  881. if (originatorCredentialLength >= 9)
  882. originatorCredentialNetworkId = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 26);
  883. } break;
  884. default: break;
  885. }
  886. }
  887. // Add length of "additional fields," which are currently unused
  888. vlf += at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 25 + vlf);
  889. // Verify signature -- only tests signed by their originators are allowed
  890. const unsigned int signatureLength = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 27 + vlf);
  891. if (!originator->identity().verify(field(ZT_PACKET_IDX_PAYLOAD,27 + vlf),27 + vlf,field(ZT_PACKET_IDX_PAYLOAD + 29 + vlf,signatureLength),signatureLength)) {
  892. TRACE("dropped CIRCUIT_TEST from %s(%s): signature by originator %s invalid",source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str());
  893. return true;
  894. }
  895. vlf += signatureLength;
  896. // Save this length so we can copy the immutable parts of this test
  897. // into the one we send along to next hops.
  898. const unsigned int lengthOfSignedPortionAndSignature = 29 + vlf;
  899. // Get previous hop's credential, if any
  900. const unsigned int previousHopCredentialLength = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 29 + vlf);
  901. CertificateOfMembership previousHopCom;
  902. if (previousHopCredentialLength >= 1) {
  903. switch((*this)[ZT_PACKET_IDX_PAYLOAD + 31 + vlf]) {
  904. case 0x01: { // network certificate of membership for previous hop
  905. if (previousHopCom.deserialize(*this,ZT_PACKET_IDX_PAYLOAD + 32 + vlf) != (previousHopCredentialLength - 1)) {
  906. TRACE("dropped CIRCUIT_TEST from %s(%s): previous hop COM invalid",source().toString().c_str(),_remoteAddress.toString().c_str());
  907. return true;
  908. }
  909. } break;
  910. default: break;
  911. }
  912. }
  913. vlf += previousHopCredentialLength;
  914. // Check credentials (signature already verified)
  915. SharedPtr<NetworkConfig> originatorCredentialNetworkConfig;
  916. if (originatorCredentialNetworkId) {
  917. if (Network::controllerFor(originatorCredentialNetworkId) == originatorAddress) {
  918. SharedPtr<Network> nw(RR->node->network(originatorCredentialNetworkId));
  919. if (nw) {
  920. originatorCredentialNetworkConfig = nw->config2();
  921. if ( (originatorCredentialNetworkConfig) && ((originatorCredentialNetworkConfig->isPublic())||(peer->address() == originatorAddress)||((originatorCredentialNetworkConfig->com())&&(previousHopCom)&&(originatorCredentialNetworkConfig->com().agreesWith(previousHopCom)))) ) {
  922. TRACE("CIRCUIT_TEST %.16llx received from hop %s(%s) and originator %s with valid network ID credential %.16llx (verified from originator and next hop)",testId,source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str(),originatorCredentialNetworkId);
  923. } else {
  924. TRACE("dropped CIRCUIT_TEST from %s(%s): originator %s specified network ID %.16llx as credential, and previous hop %s did not supply a valid COM",source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str(),originatorCredentialNetworkId,peer->address().toString().c_str());
  925. return true;
  926. }
  927. } else {
  928. TRACE("dropped CIRCUIT_TEST from %s(%s): originator %s specified network ID %.16llx as credential, and we are not a member",source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str(),originatorCredentialNetworkId);
  929. return true;
  930. }
  931. } else {
  932. TRACE("dropped CIRCUIT_TEST from %s(%s): originator %s specified network ID as credential, is not controller for %.16llx",source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str(),originatorCredentialNetworkId);
  933. return true;
  934. }
  935. } else {
  936. TRACE("dropped CIRCUIT_TEST from %s(%s): originator %s did not specify a credential or credential type",source().toString().c_str(),_remoteAddress.toString().c_str(),originatorAddress.toString().c_str());
  937. return true;
  938. }
  939. const uint64_t now = RR->node->now();
  940. unsigned int breadth = 0;
  941. Address nextHop[256]; // breadth is a uin8_t, so this is the max
  942. InetAddress nextHopBestPathAddress[256];
  943. unsigned int remainingHopsPtr = ZT_PACKET_IDX_PAYLOAD + 33 + vlf;
  944. if ((ZT_PACKET_IDX_PAYLOAD + 31 + vlf) < size()) {
  945. // unsigned int nextHopFlags = (*this)[ZT_PACKET_IDX_PAYLOAD + 31 + vlf]
  946. breadth = (*this)[ZT_PACKET_IDX_PAYLOAD + 32 + vlf];
  947. for(unsigned int h=0;h<breadth;++h) {
  948. nextHop[h].setTo(field(remainingHopsPtr,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH);
  949. remainingHopsPtr += ZT_ADDRESS_LENGTH;
  950. SharedPtr<Peer> nhp(RR->topology->getPeer(nextHop[h]));
  951. if (nhp) {
  952. Path *const rp = nhp->getBestPath(now);
  953. if (rp)
  954. nextHopBestPathAddress[h] = rp->address();
  955. }
  956. }
  957. }
  958. // Report back to originator, depending on flags and whether we are last hop
  959. if ( ((flags & 0x01) != 0) || ((breadth == 0)&&((flags & 0x02) != 0)) ) {
  960. Packet outp(originatorAddress,RR->identity.address(),Packet::VERB_CIRCUIT_TEST_REPORT);
  961. outp.append((uint64_t)timestamp);
  962. outp.append((uint64_t)testId);
  963. outp.append((uint64_t)now);
  964. outp.append((uint8_t)ZT_VENDOR_ZEROTIER);
  965. outp.append((uint8_t)ZT_PROTO_VERSION);
  966. outp.append((uint8_t)ZEROTIER_ONE_VERSION_MAJOR);
  967. outp.append((uint8_t)ZEROTIER_ONE_VERSION_MINOR);
  968. outp.append((uint16_t)ZEROTIER_ONE_VERSION_REVISION);
  969. outp.append((uint16_t)ZT_PLATFORM_UNSPECIFIED);
  970. outp.append((uint16_t)ZT_ARCHITECTURE_UNSPECIFIED);
  971. outp.append((uint16_t)0); // error code, currently unused
  972. outp.append((uint64_t)0); // flags, currently unused
  973. outp.append((uint64_t)packetId());
  974. peer->address().appendTo(outp);
  975. outp.append((uint8_t)hops());
  976. _localAddress.serialize(outp);
  977. _remoteAddress.serialize(outp);
  978. outp.append((uint16_t)0); // no additional fields
  979. outp.append((uint8_t)breadth);
  980. for(unsigned int h=0;h<breadth;++h) {
  981. nextHop[h].appendTo(outp);
  982. nextHopBestPathAddress[h].serialize(outp); // appends 0 if null InetAddress
  983. }
  984. RR->sw->send(outp,true,0);
  985. }
  986. // If there are next hops, forward the test along through the graph
  987. if (breadth > 0) {
  988. Packet outp(Address(),RR->identity.address(),Packet::VERB_CIRCUIT_TEST);
  989. outp.append(field(ZT_PACKET_IDX_PAYLOAD,lengthOfSignedPortionAndSignature),lengthOfSignedPortionAndSignature);
  990. const unsigned int previousHopCredentialPos = outp.size();
  991. outp.append((uint16_t)0); // no previous hop credentials: default
  992. if ((originatorCredentialNetworkConfig)&&(!originatorCredentialNetworkConfig->isPublic())&&(originatorCredentialNetworkConfig->com())) {
  993. outp.append((uint8_t)0x01); // COM
  994. originatorCredentialNetworkConfig->com().serialize(outp);
  995. outp.setAt<uint16_t>(previousHopCredentialPos,(uint16_t)(size() - previousHopCredentialPos));
  996. }
  997. if (remainingHopsPtr < size())
  998. outp.append(field(remainingHopsPtr,size() - remainingHopsPtr),size() - remainingHopsPtr);
  999. for(unsigned int h=0;h<breadth;++h) {
  1000. if (RR->identity.address() != nextHop[h]) { // next hops that loop back to the current hop are not valid
  1001. outp.newInitializationVector();
  1002. outp.setDestination(nextHop[h]);
  1003. RR->sw->send(outp,true,originatorCredentialNetworkId);
  1004. }
  1005. }
  1006. }
  1007. peer->received(RR,_localAddress,_remoteAddress,hops(),packetId(),Packet::VERB_CIRCUIT_TEST,0,Packet::VERB_NOP);
  1008. } catch ( ... ) {
  1009. TRACE("dropped CIRCUIT_TEST from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  1010. }
  1011. return true;
  1012. }
  1013. bool IncomingPacket::_doCIRCUIT_TEST_REPORT(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  1014. {
  1015. try {
  1016. ZT_CircuitTestReport report;
  1017. memset(&report,0,sizeof(report));
  1018. report.current = peer->address().toInt();
  1019. report.upstream = Address(field(ZT_PACKET_IDX_PAYLOAD + 52,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH).toInt();
  1020. report.testId = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 8);
  1021. report.timestamp = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD);
  1022. report.remoteTimestamp = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 16);
  1023. report.sourcePacketId = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 44);
  1024. report.flags = at<uint64_t>(ZT_PACKET_IDX_PAYLOAD + 36);
  1025. report.sourcePacketHopCount = (*this)[ZT_PACKET_IDX_PAYLOAD + 57]; // end of fixed length headers: 58
  1026. report.errorCode = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 34);
  1027. report.vendor = (enum ZT_Vendor)((*this)[ZT_PACKET_IDX_PAYLOAD + 24]);
  1028. report.protocolVersion = (*this)[ZT_PACKET_IDX_PAYLOAD + 25];
  1029. report.majorVersion = (*this)[ZT_PACKET_IDX_PAYLOAD + 26];
  1030. report.minorVersion = (*this)[ZT_PACKET_IDX_PAYLOAD + 27];
  1031. report.revision = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 28);
  1032. report.platform = (enum ZT_Platform)at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 30);
  1033. report.architecture = (enum ZT_Architecture)at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 32);
  1034. const unsigned int receivedOnLocalAddressLen = reinterpret_cast<InetAddress *>(&(report.receivedOnLocalAddress))->deserialize(*this,ZT_PACKET_IDX_PAYLOAD + 58);
  1035. const unsigned int receivedFromRemoteAddressLen = reinterpret_cast<InetAddress *>(&(report.receivedFromRemoteAddress))->deserialize(*this,ZT_PACKET_IDX_PAYLOAD + 58 + receivedOnLocalAddressLen);
  1036. unsigned int nhptr = ZT_PACKET_IDX_PAYLOAD + 58 + receivedOnLocalAddressLen + receivedFromRemoteAddressLen;
  1037. nhptr += at<uint16_t>(nhptr) + 2; // add "additional field" length, which right now will be zero
  1038. report.nextHopCount = (*this)[nhptr++];
  1039. if (report.nextHopCount > ZT_CIRCUIT_TEST_MAX_HOP_BREADTH) // sanity check, shouldn't be possible
  1040. report.nextHopCount = ZT_CIRCUIT_TEST_MAX_HOP_BREADTH;
  1041. for(unsigned int h=0;h<report.nextHopCount;++h) {
  1042. report.nextHops[h].address = Address(field(nhptr,ZT_ADDRESS_LENGTH),ZT_ADDRESS_LENGTH).toInt(); nhptr += ZT_ADDRESS_LENGTH;
  1043. nhptr += reinterpret_cast<InetAddress *>(&(report.nextHops[h].physicalAddress))->deserialize(*this,nhptr);
  1044. }
  1045. RR->node->postCircuitTestReport(&report);
  1046. } catch ( ... ) {
  1047. TRACE("dropped CIRCUIT_TEST_REPORT from %s(%s): unexpected exception",source().toString().c_str(),_remoteAddress.toString().c_str());
  1048. }
  1049. return true;
  1050. }
  1051. bool IncomingPacket::_doREQUEST_PROOF_OF_WORK(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer)
  1052. {
  1053. try {
  1054. // Right now this is only allowed from root servers -- may be allowed from controllers and relays later.
  1055. if (RR->topology->isRoot(peer->identity())) {
  1056. const uint64_t pid = packetId();
  1057. const unsigned int difficulty = (*this)[ZT_PACKET_IDX_PAYLOAD + 1];
  1058. const unsigned int challengeLength = at<uint16_t>(ZT_PACKET_IDX_PAYLOAD + 2);
  1059. if (challengeLength > ZT_PROTO_MAX_PACKET_LENGTH)
  1060. return true; // sanity check, drop invalid size
  1061. const unsigned char *challenge = field(ZT_PACKET_IDX_PAYLOAD + 4,challengeLength);
  1062. switch((*this)[ZT_PACKET_IDX_PAYLOAD]) {
  1063. // Salsa20/12+SHA512 hashcash
  1064. case 0x01: {
  1065. if (difficulty <= 14) {
  1066. unsigned char result[16];
  1067. computeSalsa2012Sha512ProofOfWork(difficulty,challenge,challengeLength,result);
  1068. TRACE("PROOF_OF_WORK computed for %s: difficulty==%u, challengeLength==%u, result: %.16llx%.16llx",peer->address().toString().c_str(),difficulty,challengeLength,Utils::ntoh(*(reinterpret_cast<const uint64_t *>(result))),Utils::ntoh(*(reinterpret_cast<const uint64_t *>(result + 8))));
  1069. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_OK);
  1070. outp.append((unsigned char)Packet::VERB_REQUEST_PROOF_OF_WORK);
  1071. outp.append(pid);
  1072. outp.append((uint16_t)sizeof(result));
  1073. outp.append(result,sizeof(result));
  1074. outp.armor(peer->key(),true);
  1075. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  1076. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  1077. } else {
  1078. Packet outp(peer->address(),RR->identity.address(),Packet::VERB_ERROR);
  1079. outp.append((unsigned char)Packet::VERB_REQUEST_PROOF_OF_WORK);
  1080. outp.append(pid);
  1081. outp.append((unsigned char)Packet::ERROR_INVALID_REQUEST);
  1082. outp.armor(peer->key(),true);
  1083. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  1084. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  1085. }
  1086. } break;
  1087. default:
  1088. TRACE("dropped REQUEST_PROOF_OF_WORK from %s(%s): unrecognized proof of work type",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  1089. break;
  1090. }
  1091. peer->received(RR,_localAddress,_remoteAddress,hops(),pid,Packet::VERB_REQUEST_PROOF_OF_WORK,0,Packet::VERB_NOP);
  1092. } else {
  1093. TRACE("dropped REQUEST_PROOF_OF_WORK from %s(%s): not trusted enough",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  1094. }
  1095. } catch ( ... ) {
  1096. TRACE("dropped REQUEST_PROOF_OF_WORK from %s(%s): unexpected exception",peer->address().toString().c_str(),_remoteAddress.toString().c_str());
  1097. }
  1098. return true;
  1099. }
  1100. void IncomingPacket::computeSalsa2012Sha512ProofOfWork(unsigned int difficulty,const void *challenge,unsigned int challengeLength,unsigned char result[16])
  1101. {
  1102. unsigned char salsabuf[131072]; // 131072 == protocol constant, size of memory buffer for this proof of work function
  1103. char candidatebuf[ZT_PROTO_MAX_PACKET_LENGTH + 256];
  1104. unsigned char shabuf[ZT_SHA512_DIGEST_LEN];
  1105. const uint64_t s20iv = 0; // zero IV for Salsa20
  1106. char *const candidate = (char *)(( ((uintptr_t)&(candidatebuf[0])) | 0xf ) + 1); // align to 16-byte boundary to ensure that uint64_t type punning of initial nonce is okay
  1107. Salsa20 s20;
  1108. unsigned int d;
  1109. unsigned char *p;
  1110. Utils::getSecureRandom(candidate,16);
  1111. memcpy(candidate + 16,challenge,challengeLength);
  1112. if (difficulty > 512)
  1113. difficulty = 512; // sanity check
  1114. try_salsa2012sha512_again:
  1115. ++*(reinterpret_cast<volatile uint64_t *>(candidate));
  1116. SHA512::hash(shabuf,candidate,16 + challengeLength);
  1117. s20.init(shabuf,256,&s20iv);
  1118. memset(salsabuf,0,sizeof(salsabuf));
  1119. s20.encrypt12(salsabuf,salsabuf,sizeof(salsabuf));
  1120. SHA512::hash(shabuf,salsabuf,sizeof(salsabuf));
  1121. d = difficulty;
  1122. p = shabuf;
  1123. while (d >= 8) {
  1124. if (*(p++))
  1125. goto try_salsa2012sha512_again;
  1126. d -= 8;
  1127. }
  1128. if (d > 0) {
  1129. if ( ((((unsigned int)*p) << d) & 0xff00) != 0 )
  1130. goto try_salsa2012sha512_again;
  1131. }
  1132. memcpy(result,candidate,16);
  1133. }
  1134. bool IncomingPacket::testSalsa2012Sha512ProofOfWorkResult(unsigned int difficulty,const void *challenge,unsigned int challengeLength,const unsigned char proposedResult[16])
  1135. {
  1136. unsigned char salsabuf[131072]; // 131072 == protocol constant, size of memory buffer for this proof of work function
  1137. char candidate[ZT_PROTO_MAX_PACKET_LENGTH + 256];
  1138. unsigned char shabuf[ZT_SHA512_DIGEST_LEN];
  1139. const uint64_t s20iv = 0; // zero IV for Salsa20
  1140. Salsa20 s20;
  1141. unsigned int d;
  1142. unsigned char *p;
  1143. if (difficulty > 512)
  1144. difficulty = 512; // sanity check
  1145. memcpy(candidate,proposedResult,16);
  1146. memcpy(candidate + 16,challenge,challengeLength);
  1147. SHA512::hash(shabuf,candidate,16 + challengeLength);
  1148. s20.init(shabuf,256,&s20iv);
  1149. memset(salsabuf,0,sizeof(salsabuf));
  1150. s20.encrypt12(salsabuf,salsabuf,sizeof(salsabuf));
  1151. SHA512::hash(shabuf,salsabuf,sizeof(salsabuf));
  1152. d = difficulty;
  1153. p = shabuf;
  1154. while (d >= 8) {
  1155. if (*(p++))
  1156. return false;
  1157. d -= 8;
  1158. }
  1159. if (d > 0) {
  1160. if ( ((((unsigned int)*p) << d) & 0xff00) != 0 )
  1161. return false;
  1162. }
  1163. return true;
  1164. }
  1165. void IncomingPacket::_sendErrorNeedCertificate(const RuntimeEnvironment *RR,const SharedPtr<Peer> &peer,uint64_t nwid)
  1166. {
  1167. Packet outp(source(),RR->identity.address(),Packet::VERB_ERROR);
  1168. outp.append((unsigned char)verb());
  1169. outp.append(packetId());
  1170. outp.append((unsigned char)Packet::ERROR_NEED_MEMBERSHIP_CERTIFICATE);
  1171. outp.append(nwid);
  1172. outp.armor(peer->key(),true);
  1173. RR->antiRec->logOutgoingZT(outp.data(),outp.size());
  1174. RR->node->putPacket(_localAddress,_remoteAddress,outp.data(),outp.size());
  1175. }
  1176. } // namespace ZeroTier