Trace.cpp 23 KB

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  1. /*
  2. * ZeroTier One - Network Virtualization Everywhere
  3. * Copyright (C) 2011-2019 ZeroTier, Inc. https://www.zerotier.com/
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. *
  18. * --
  19. *
  20. * You can be released from the requirements of the license by purchasing
  21. * a commercial license. Buying such a license is mandatory as soon as you
  22. * develop commercial closed-source software that incorporates or links
  23. * directly against ZeroTier software without disclosing the source code
  24. * of your own application.
  25. */
  26. //#define ZT_TRACE
  27. #include <stdio.h>
  28. #include <stdarg.h>
  29. #include "Trace.hpp"
  30. #include "RuntimeEnvironment.hpp"
  31. #include "Switch.hpp"
  32. #include "Node.hpp"
  33. #include "Utils.hpp"
  34. #include "Dictionary.hpp"
  35. #include "CertificateOfMembership.hpp"
  36. #include "CertificateOfOwnership.hpp"
  37. #include "Tag.hpp"
  38. #include "Capability.hpp"
  39. #include "Revocation.hpp"
  40. #include "../include/ZeroTierDebug.h"
  41. namespace ZeroTier {
  42. #ifdef ZT_TRACE
  43. static void ZT_LOCAL_TRACE(void *const tPtr,const RuntimeEnvironment *const RR,const char *const fmt,...)
  44. {
  45. char traceMsgBuf[1024];
  46. va_list ap;
  47. va_start(ap,fmt);
  48. vsnprintf(traceMsgBuf,sizeof(traceMsgBuf),fmt,ap);
  49. va_end(ap);
  50. traceMsgBuf[sizeof(traceMsgBuf) - 1] = (char)0;
  51. RR->node->postEvent(tPtr,ZT_EVENT_TRACE,traceMsgBuf);
  52. }
  53. #else
  54. #define ZT_LOCAL_TRACE(...)
  55. #endif
  56. void Trace::resettingPathsInScope(void *const tPtr,const Address &reporter,const InetAddress &reporterPhysicalAddress,const InetAddress &myPhysicalAddress,const InetAddress::IpScope scope)
  57. {
  58. char tmp[128];
  59. ZT_LOCAL_TRACE(tPtr,RR,"RESET and revalidate paths in scope %d; new phy address %s reported by trusted peer %.10llx",(int)scope,myPhysicalAddress.toIpString(tmp),reporter.toInt());
  60. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  61. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__RESETTING_PATHS_IN_SCOPE_S);
  62. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,reporter);
  63. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,reporterPhysicalAddress.toString(tmp));
  64. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_PHYADDR,myPhysicalAddress.toString(tmp));
  65. d.add(ZT_REMOTE_TRACE_FIELD__IP_SCOPE,(uint64_t)scope);
  66. if (_globalTarget)
  67. _send(tPtr,d,_globalTarget);
  68. _spamToAllNetworks(tPtr,d,Trace::LEVEL_NORMAL);
  69. }
  70. void Trace::peerConfirmingUnknownPath(void *const tPtr,const uint64_t networkId,Peer &peer,const SharedPtr<Path> &path,const uint64_t packetId,const Packet::Verb verb)
  71. {
  72. char tmp[128];
  73. if (!path) return; // sanity check
  74. ZT_LOCAL_TRACE(tPtr,RR,"trying unknown path %s to %.10llx (packet %.16llx verb %d local socket %lld network %.16llx)",path->address().toString(tmp),peer.address().toInt(),packetId,(double)verb,path->localSocket(),networkId);
  75. std::pair<Address,Trace::Level> byn;
  76. if (networkId) { Mutex::Lock l(_byNet_m); _byNet.get(networkId,byn); }
  77. if ((_globalTarget)||(byn.first)) {
  78. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  79. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PEER_CONFIRMING_UNKNOWN_PATH_S);
  80. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  81. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_VERB,(uint64_t)verb);
  82. if (networkId)
  83. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,networkId);
  84. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,peer.address());
  85. if (path) {
  86. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  87. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  88. }
  89. if (_globalTarget)
  90. _send(tPtr,d,_globalTarget);
  91. if (byn.first)
  92. _send(tPtr,d,byn.first);
  93. }
  94. }
  95. void Trace::peerLinkNowRedundant(void *const tPtr,Peer &peer)
  96. {
  97. ZT_LOCAL_TRACE(tPtr,RR,"link to peer %.10llx is fully redundant",peer.address().toInt());
  98. }
  99. void Trace::peerLinkNoLongerRedundant(void *const tPtr,Peer &peer)
  100. {
  101. ZT_LOCAL_TRACE(tPtr,RR,"link to peer %.10llx is no longer redundant",peer.address().toInt());
  102. }
  103. void Trace::peerLinkAggregateStatistics(void *const tPtr,Peer &peer)
  104. {
  105. ZT_LOCAL_TRACE(tPtr,RR,"link to peer %.10llx is composed of (%d) physical paths %s, has packet delay variance (%.0f ms), mean latency (%.0f ms)",
  106. peer.address().toInt(),
  107. peer.aggregateLinkPhysicalPathCount(),
  108. peer.interfaceListStr(),
  109. peer.computeAggregateLinkPacketDelayVariance(),
  110. peer.computeAggregateLinkMeanLatency());
  111. }
  112. void Trace::peerLearnedNewPath(void *const tPtr,const uint64_t networkId,Peer &peer,const SharedPtr<Path> &newPath,const uint64_t packetId)
  113. {
  114. char tmp[128];
  115. if (!newPath) return; // sanity check
  116. ZT_LOCAL_TRACE(tPtr,RR,"learned new path %s to %.10llx (packet %.16llx local socket %lld network %.16llx)",newPath->address().toString(tmp),peer.address().toInt(),packetId,newPath->localSocket(),networkId);
  117. std::pair<Address,Trace::Level> byn;
  118. if (networkId) { Mutex::Lock l(_byNet_m); _byNet.get(networkId,byn); }
  119. if ((_globalTarget)||(byn.first)) {
  120. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  121. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PEER_LEARNED_NEW_PATH_S);
  122. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  123. if (networkId)
  124. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,networkId);
  125. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,peer.address());
  126. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,newPath->address().toString(tmp));
  127. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,newPath->localSocket());
  128. if (_globalTarget)
  129. _send(tPtr,d,_globalTarget);
  130. if (byn.first)
  131. _send(tPtr,d,byn.first);
  132. }
  133. }
  134. void Trace::peerRedirected(void *const tPtr,const uint64_t networkId,Peer &peer,const SharedPtr<Path> &newPath)
  135. {
  136. char tmp[128];
  137. if (!newPath) return; // sanity check
  138. ZT_LOCAL_TRACE(tPtr,RR,"explicit redirect from %.10llx to path %s",peer.address().toInt(),newPath->address().toString(tmp));
  139. std::pair<Address,Trace::Level> byn;
  140. if (networkId) { Mutex::Lock l(_byNet_m); _byNet.get(networkId,byn); }
  141. if ((_globalTarget)||(byn.first)) {
  142. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  143. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PEER_REDIRECTED_S);
  144. if (networkId)
  145. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,networkId);
  146. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,peer.address());
  147. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,newPath->address().toString(tmp));
  148. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,newPath->localSocket());
  149. if (_globalTarget)
  150. _send(tPtr,d,_globalTarget);
  151. if (byn.first)
  152. _send(tPtr,d,byn.first);
  153. }
  154. }
  155. void Trace::outgoingNetworkFrameDropped(void *const tPtr,const SharedPtr<Network> &network,const MAC &sourceMac,const MAC &destMac,const unsigned int etherType,const unsigned int vlanId,const unsigned int frameLen,const char *reason)
  156. {
  157. #ifdef ZT_TRACE
  158. char tmp[128],tmp2[128];
  159. #endif
  160. if (!network) return; // sanity check
  161. ZT_LOCAL_TRACE(tPtr,RR,"%.16llx DROP frame %s -> %s etherType %.4x size %u (%s)",network->id(),sourceMac.toString(tmp),destMac.toString(tmp2),etherType,frameLen,(reason) ? reason : "unknown reason");
  162. std::pair<Address,Trace::Level> byn;
  163. { Mutex::Lock l(_byNet_m); _byNet.get(network->id(),byn); }
  164. if ( ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE)) || ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE)) ) {
  165. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  166. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__OUTGOING_NETWORK_FRAME_DROPPED_S);
  167. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,network->id());
  168. d.add(ZT_REMOTE_TRACE_FIELD__SOURCE_MAC,sourceMac.toInt());
  169. d.add(ZT_REMOTE_TRACE_FIELD__DEST_MAC,destMac.toInt());
  170. d.add(ZT_REMOTE_TRACE_FIELD__ETHERTYPE,(uint64_t)etherType);
  171. d.add(ZT_REMOTE_TRACE_FIELD__VLAN_ID,(uint64_t)vlanId);
  172. d.add(ZT_REMOTE_TRACE_FIELD__FRAME_LENGTH,(uint64_t)frameLen);
  173. if (reason)
  174. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  175. if ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE))
  176. _send(tPtr,d,_globalTarget);
  177. if ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE))
  178. _send(tPtr,d,byn.first);
  179. }
  180. }
  181. void Trace::incomingNetworkAccessDenied(void *const tPtr,const SharedPtr<Network> &network,const SharedPtr<Path> &path,const uint64_t packetId,const unsigned int packetLength,const Address &source,const Packet::Verb verb,bool credentialsRequested)
  182. {
  183. char tmp[128];
  184. if (!network) return; // sanity check
  185. ZT_LOCAL_TRACE(tPtr,RR,"%.16llx DENIED packet from %.10llx(%s) verb %d size %u%s",network->id(),source.toInt(),(path) ? (path->address().toString(tmp)) : "???",(int)verb,packetLength,credentialsRequested ? " (credentials requested)" : " (credentials not requested)");
  186. std::pair<Address,Trace::Level> byn;
  187. { Mutex::Lock l(_byNet_m); _byNet.get(network->id(),byn); }
  188. if ( ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE)) || ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE)) ) {
  189. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  190. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__INCOMING_NETWORK_ACCESS_DENIED_S);
  191. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  192. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_VERB,(uint64_t)verb);
  193. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,source);
  194. if (path) {
  195. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  196. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  197. }
  198. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,network->id());
  199. if ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE))
  200. _send(tPtr,d,_globalTarget);
  201. if ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE))
  202. _send(tPtr,d,byn.first);
  203. }
  204. }
  205. void Trace::incomingNetworkFrameDropped(void *const tPtr,const SharedPtr<Network> &network,const SharedPtr<Path> &path,const uint64_t packetId,const unsigned int packetLength,const Address &source,const Packet::Verb verb,const MAC &sourceMac,const MAC &destMac,const char *reason)
  206. {
  207. char tmp[128];
  208. if (!network) return; // sanity check
  209. ZT_LOCAL_TRACE(tPtr,RR,"%.16llx DROPPED frame from %.10llx(%s) verb %d size %u",network->id(),source.toInt(),(path) ? (path->address().toString(tmp)) : "???",(int)verb,packetLength);
  210. std::pair<Address,Trace::Level> byn;
  211. { Mutex::Lock l(_byNet_m); _byNet.get(network->id(),byn); }
  212. if ( ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE)) || ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE)) ) {
  213. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  214. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__INCOMING_NETWORK_FRAME_DROPPED_S);
  215. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  216. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_VERB,(uint64_t)verb);
  217. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,source);
  218. if (path) {
  219. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  220. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  221. }
  222. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,network->id());
  223. d.add(ZT_REMOTE_TRACE_FIELD__SOURCE_MAC,sourceMac.toInt());
  224. d.add(ZT_REMOTE_TRACE_FIELD__DEST_MAC,destMac.toInt());
  225. if (reason)
  226. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  227. if ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_VERBOSE))
  228. _send(tPtr,d,_globalTarget);
  229. if ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_VERBOSE))
  230. _send(tPtr,d,byn.first);
  231. }
  232. }
  233. void Trace::incomingPacketMessageAuthenticationFailure(void *const tPtr,const SharedPtr<Path> &path,const uint64_t packetId,const Address &source,const unsigned int hops,const char *reason)
  234. {
  235. char tmp[128];
  236. ZT_LOCAL_TRACE(tPtr,RR,"MAC failed for packet %.16llx from %.10llx(%s)",packetId,source.toInt(),(path) ? path->address().toString(tmp) : "???");
  237. if ((_globalTarget)&&((int)_globalLevel >= Trace::LEVEL_DEBUG)) {
  238. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  239. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PACKET_MAC_FAILURE_S);
  240. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  241. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_HOPS,(uint64_t)hops);
  242. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,source);
  243. if (path) {
  244. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  245. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  246. }
  247. if (reason)
  248. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  249. _send(tPtr,d,_globalTarget);
  250. }
  251. }
  252. void Trace::incomingPacketInvalid(void *const tPtr,const SharedPtr<Path> &path,const uint64_t packetId,const Address &source,const unsigned int hops,const Packet::Verb verb,const char *reason)
  253. {
  254. char tmp[128];
  255. ZT_LOCAL_TRACE(tPtr,RR,"INVALID packet %.16llx from %.10llx(%s) (%s)",packetId,source.toInt(),(path) ? path->address().toString(tmp) : "???",(reason) ? reason : "unknown reason");
  256. if ((_globalTarget)&&((int)_globalLevel >= Trace::LEVEL_DEBUG)) {
  257. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  258. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PACKET_INVALID_S);
  259. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  260. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_VERB,(uint64_t)verb);
  261. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,source);
  262. if (path) {
  263. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  264. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  265. }
  266. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_HOPS,(uint64_t)hops);
  267. if (reason)
  268. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  269. _send(tPtr,d,_globalTarget);
  270. }
  271. }
  272. void Trace::incomingPacketDroppedHELLO(void *const tPtr,const SharedPtr<Path> &path,const uint64_t packetId,const Address &source,const char *reason)
  273. {
  274. char tmp[128];
  275. ZT_LOCAL_TRACE(tPtr,RR,"DROPPED HELLO from %.10llx(%s) (%s)",source.toInt(),(path) ? path->address().toString(tmp) : "???",(reason) ? reason : "???");
  276. if ((_globalTarget)&&((int)_globalLevel >= Trace::LEVEL_DEBUG)) {
  277. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  278. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__PACKET_INVALID_S);
  279. d.add(ZT_REMOTE_TRACE_FIELD__PACKET_ID,packetId);
  280. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_ZTADDR,source);
  281. if (path) {
  282. d.add(ZT_REMOTE_TRACE_FIELD__REMOTE_PHYADDR,path->address().toString(tmp));
  283. d.add(ZT_REMOTE_TRACE_FIELD__LOCAL_SOCKET,path->localSocket());
  284. }
  285. if (reason)
  286. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  287. _send(tPtr,d,_globalTarget);
  288. }
  289. }
  290. void Trace::networkConfigRequestSent(void *const tPtr,const Network &network,const Address &controller)
  291. {
  292. ZT_LOCAL_TRACE(tPtr,RR,"requesting configuration for network %.16llx",network.id());
  293. if ((_globalTarget)&&((int)_globalLevel >= Trace::LEVEL_DEBUG)) {
  294. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  295. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__NETWORK_CONFIG_REQUEST_SENT_S);
  296. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,network.id());
  297. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_CONTROLLER_ID,controller);
  298. _send(tPtr,d,_globalTarget);
  299. }
  300. }
  301. void Trace::networkFilter(
  302. void *const tPtr,
  303. const Network &network,
  304. const RuleResultLog &primaryRuleSetLog,
  305. const RuleResultLog *const matchingCapabilityRuleSetLog,
  306. const Capability *const matchingCapability,
  307. const Address &ztSource,
  308. const Address &ztDest,
  309. const MAC &macSource,
  310. const MAC &macDest,
  311. const uint8_t *const frameData,
  312. const unsigned int frameLen,
  313. const unsigned int etherType,
  314. const unsigned int vlanId,
  315. const bool noTee,
  316. const bool inbound,
  317. const int accept)
  318. {
  319. std::pair<Address,Trace::Level> byn;
  320. { Mutex::Lock l(_byNet_m); _byNet.get(network.id(),byn); }
  321. if ( ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_RULES)) || ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_RULES)) ) {
  322. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  323. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__NETWORK_FILTER_TRACE_S);
  324. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,network.id());
  325. d.add(ZT_REMOTE_TRACE_FIELD__SOURCE_ZTADDR,ztSource);
  326. d.add(ZT_REMOTE_TRACE_FIELD__DEST_ZTADDR,ztDest);
  327. d.add(ZT_REMOTE_TRACE_FIELD__SOURCE_MAC,macSource.toInt());
  328. d.add(ZT_REMOTE_TRACE_FIELD__DEST_MAC,macDest.toInt());
  329. d.add(ZT_REMOTE_TRACE_FIELD__ETHERTYPE,(uint64_t)etherType);
  330. d.add(ZT_REMOTE_TRACE_FIELD__VLAN_ID,(uint64_t)vlanId);
  331. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_FLAG_NOTEE,noTee ? "1" : "0");
  332. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_FLAG_INBOUND,inbound ? "1" : "0");
  333. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_RESULT,(int64_t)accept);
  334. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_BASE_RULE_LOG,(const char *)primaryRuleSetLog.data(),(int)primaryRuleSetLog.sizeBytes());
  335. if (matchingCapabilityRuleSetLog)
  336. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_CAP_RULE_LOG,(const char *)matchingCapabilityRuleSetLog->data(),(int)matchingCapabilityRuleSetLog->sizeBytes());
  337. if (matchingCapability)
  338. d.add(ZT_REMOTE_TRACE_FIELD__FILTER_CAP_ID,(uint64_t)matchingCapability->id());
  339. d.add(ZT_REMOTE_TRACE_FIELD__FRAME_LENGTH,(uint64_t)frameLen);
  340. if (frameLen > 0)
  341. d.add(ZT_REMOTE_TRACE_FIELD__FRAME_DATA,(const char *)frameData,(frameLen > 256) ? (int)256 : (int)frameLen);
  342. if ((_globalTarget)&&((int)_globalLevel >= (int)Trace::LEVEL_RULES))
  343. _send(tPtr,d,_globalTarget);
  344. if ((byn.first)&&((int)byn.second >= (int)Trace::LEVEL_RULES))
  345. _send(tPtr,d,byn.first);
  346. }
  347. }
  348. void Trace::credentialRejected(void *const tPtr,const CertificateOfMembership &c,const char *reason)
  349. {
  350. std::pair<Address,Trace::Level> byn;
  351. if (c.networkId()) { Mutex::Lock l(_byNet_m); _byNet.get(c.networkId(),byn); }
  352. if ((_globalTarget)||(byn.first)) {
  353. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  354. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__CREDENTIAL_REJECTED_S);
  355. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,c.networkId());
  356. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TYPE,(uint64_t)c.credentialType());
  357. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ID,(uint64_t)c.id());
  358. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TIMESTAMP,c.timestamp());
  359. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ISSUED_TO,c.issuedTo());
  360. if (reason)
  361. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  362. if (_globalTarget)
  363. _send(tPtr,d,_globalTarget);
  364. if (byn.first)
  365. _send(tPtr,d,byn.first);
  366. }
  367. }
  368. void Trace::credentialRejected(void *const tPtr,const CertificateOfOwnership &c,const char *reason)
  369. {
  370. std::pair<Address,Trace::Level> byn;
  371. if (c.networkId()) { Mutex::Lock l(_byNet_m); _byNet.get(c.networkId(),byn); }
  372. if ((_globalTarget)||(byn.first)) {
  373. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  374. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__CREDENTIAL_REJECTED_S);
  375. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,c.networkId());
  376. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TYPE,(uint64_t)c.credentialType());
  377. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ID,(uint64_t)c.id());
  378. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TIMESTAMP,c.timestamp());
  379. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ISSUED_TO,c.issuedTo());
  380. if (reason)
  381. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  382. if (_globalTarget)
  383. _send(tPtr,d,_globalTarget);
  384. if (byn.first)
  385. _send(tPtr,d,byn.first);
  386. }
  387. }
  388. void Trace::credentialRejected(void *const tPtr,const Capability &c,const char *reason)
  389. {
  390. std::pair<Address,Trace::Level> byn;
  391. if (c.networkId()) { Mutex::Lock l(_byNet_m); _byNet.get(c.networkId(),byn); }
  392. if ((_globalTarget)||(byn.first)) {
  393. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  394. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__CREDENTIAL_REJECTED_S);
  395. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,c.networkId());
  396. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TYPE,(uint64_t)c.credentialType());
  397. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ID,(uint64_t)c.id());
  398. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TIMESTAMP,c.timestamp());
  399. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ISSUED_TO,c.issuedTo());
  400. if (reason)
  401. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  402. if (_globalTarget)
  403. _send(tPtr,d,_globalTarget);
  404. if (byn.first)
  405. _send(tPtr,d,byn.first);
  406. }
  407. }
  408. void Trace::credentialRejected(void *const tPtr,const Tag &c,const char *reason)
  409. {
  410. std::pair<Address,Trace::Level> byn;
  411. if (c.networkId()) { Mutex::Lock l(_byNet_m); _byNet.get(c.networkId(),byn); }
  412. if ((_globalTarget)||(byn.first)) {
  413. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  414. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__CREDENTIAL_REJECTED_S);
  415. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,c.networkId());
  416. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TYPE,(uint64_t)c.credentialType());
  417. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ID,(uint64_t)c.id());
  418. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TIMESTAMP,c.timestamp());
  419. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ISSUED_TO,c.issuedTo());
  420. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_INFO,(uint64_t)c.value());
  421. if (reason)
  422. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  423. if (_globalTarget)
  424. _send(tPtr,d,_globalTarget);
  425. if (byn.first)
  426. _send(tPtr,d,byn.first);
  427. }
  428. }
  429. void Trace::credentialRejected(void *const tPtr,const Revocation &c,const char *reason)
  430. {
  431. std::pair<Address,Trace::Level> byn;
  432. if (c.networkId()) { Mutex::Lock l(_byNet_m); _byNet.get(c.networkId(),byn); }
  433. if ((_globalTarget)||(byn.first)) {
  434. Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> d;
  435. d.add(ZT_REMOTE_TRACE_FIELD__EVENT,ZT_REMOTE_TRACE_EVENT__CREDENTIAL_REJECTED_S);
  436. d.add(ZT_REMOTE_TRACE_FIELD__NETWORK_ID,c.networkId());
  437. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_TYPE,(uint64_t)c.credentialType());
  438. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_ID,(uint64_t)c.id());
  439. d.add(ZT_REMOTE_TRACE_FIELD__CREDENTIAL_REVOCATION_TARGET,c.target());
  440. if (reason)
  441. d.add(ZT_REMOTE_TRACE_FIELD__REASON,reason);
  442. if (_globalTarget)
  443. _send(tPtr,d,_globalTarget);
  444. if (byn.first)
  445. _send(tPtr,d,byn.first);
  446. }
  447. }
  448. void Trace::updateMemoizedSettings()
  449. {
  450. _globalTarget = RR->node->remoteTraceTarget();
  451. _globalLevel = RR->node->remoteTraceLevel();
  452. const std::vector< SharedPtr<Network> > nws(RR->node->allNetworks());
  453. {
  454. Mutex::Lock l(_byNet_m);
  455. _byNet.clear();
  456. for(std::vector< SharedPtr<Network> >::const_iterator n(nws.begin());n!=nws.end();++n) {
  457. const Address dest((*n)->config().remoteTraceTarget);
  458. if (dest) {
  459. std::pair<Address,Trace::Level> &m = _byNet[(*n)->id()];
  460. m.first = dest;
  461. m.second = (*n)->config().remoteTraceLevel;
  462. }
  463. }
  464. }
  465. }
  466. void Trace::_send(void *const tPtr,const Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> &d,const Address &dest)
  467. {
  468. Packet outp(dest,RR->identity.address(),Packet::VERB_REMOTE_TRACE);
  469. outp.appendCString(d.data());
  470. outp.compress();
  471. RR->sw->send(tPtr,outp,true);
  472. }
  473. void Trace::_spamToAllNetworks(void *const tPtr,const Dictionary<ZT_MAX_REMOTE_TRACE_SIZE> &d,const Level level)
  474. {
  475. Mutex::Lock l(_byNet_m);
  476. Hashtable< uint64_t,std::pair< Address,Trace::Level > >::Iterator i(_byNet);
  477. uint64_t *k = (uint64_t *)0;
  478. std::pair<Address,Trace::Level> *v = (std::pair<Address,Trace::Level> *)0;
  479. while (i.next(k,v)) {
  480. if ((v)&&(v->first)&&((int)v->second >= (int)level))
  481. _send(tPtr,d,v->first);
  482. }
  483. }
  484. } // namespace ZeroTier