Node.cpp 23 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 <stdlib.h>
  29. #include <stdarg.h>
  30. #include <string.h>
  31. #include <stdint.h>
  32. #include "../version.h"
  33. #include "Constants.hpp"
  34. #include "Node.hpp"
  35. #include "RuntimeEnvironment.hpp"
  36. #include "NetworkController.hpp"
  37. #include "Switch.hpp"
  38. #include "Multicaster.hpp"
  39. #include "AntiRecursion.hpp"
  40. #include "Topology.hpp"
  41. #include "Buffer.hpp"
  42. #include "Packet.hpp"
  43. #include "Address.hpp"
  44. #include "Identity.hpp"
  45. #include "SelfAwareness.hpp"
  46. #include "Defaults.hpp"
  47. namespace ZeroTier {
  48. /****************************************************************************/
  49. /* Public Node interface (C++, exposed via CAPI bindings) */
  50. /****************************************************************************/
  51. Node::Node(
  52. uint64_t now,
  53. void *uptr,
  54. ZT1_DataStoreGetFunction dataStoreGetFunction,
  55. ZT1_DataStorePutFunction dataStorePutFunction,
  56. ZT1_WirePacketSendFunction wirePacketSendFunction,
  57. ZT1_VirtualNetworkFrameFunction virtualNetworkFrameFunction,
  58. ZT1_VirtualNetworkConfigFunction virtualNetworkConfigFunction,
  59. ZT1_EventCallback eventCallback,
  60. const char *overrideRootTopology) :
  61. _RR(this),
  62. RR(&_RR),
  63. _uPtr(uptr),
  64. _dataStoreGetFunction(dataStoreGetFunction),
  65. _dataStorePutFunction(dataStorePutFunction),
  66. _wirePacketSendFunction(wirePacketSendFunction),
  67. _virtualNetworkFrameFunction(virtualNetworkFrameFunction),
  68. _virtualNetworkConfigFunction(virtualNetworkConfigFunction),
  69. _eventCallback(eventCallback),
  70. _networks(),
  71. _networks_m(),
  72. _prngStreamPtr(0),
  73. _now(now),
  74. _lastPingCheck(0),
  75. _lastHousekeepingRun(0)
  76. {
  77. _newestVersionSeen[0] = ZEROTIER_ONE_VERSION_MAJOR;
  78. _newestVersionSeen[1] = ZEROTIER_ONE_VERSION_MINOR;
  79. _newestVersionSeen[2] = ZEROTIER_ONE_VERSION_REVISION;
  80. _online = false;
  81. // Use Salsa20 alone as a high-quality non-crypto PRNG
  82. {
  83. char foo[32];
  84. Utils::getSecureRandom(foo,32);
  85. _prng.init(foo,256,foo,8);
  86. memset(_prngStream,0,sizeof(_prngStream));
  87. _prng.encrypt(_prngStream,_prngStream,sizeof(_prngStream));
  88. }
  89. std::string idtmp(dataStoreGet("identity.secret"));
  90. if ((!idtmp.length())||(!RR->identity.fromString(idtmp))||(!RR->identity.hasPrivate())) {
  91. TRACE("identity.secret not found, generating...");
  92. RR->identity.generate();
  93. idtmp = RR->identity.toString(true);
  94. if (!dataStorePut("identity.secret",idtmp,true))
  95. throw std::runtime_error("unable to write identity.secret");
  96. }
  97. RR->publicIdentityStr = RR->identity.toString(false);
  98. RR->secretIdentityStr = RR->identity.toString(true);
  99. idtmp = dataStoreGet("identity.public");
  100. if (idtmp != RR->publicIdentityStr) {
  101. if (!dataStorePut("identity.public",RR->publicIdentityStr,false))
  102. throw std::runtime_error("unable to write identity.public");
  103. }
  104. try {
  105. RR->sw = new Switch(RR);
  106. RR->mc = new Multicaster(RR);
  107. RR->antiRec = new AntiRecursion();
  108. RR->topology = new Topology(RR);
  109. RR->sa = new SelfAwareness(RR);
  110. } catch ( ... ) {
  111. delete RR->sa;
  112. delete RR->topology;
  113. delete RR->antiRec;
  114. delete RR->mc;
  115. delete RR->sw;
  116. throw;
  117. }
  118. Dictionary rt;
  119. if (overrideRootTopology) {
  120. rt.fromString(std::string(overrideRootTopology));
  121. } else {
  122. std::string rttmp(dataStoreGet("root-topology"));
  123. if (rttmp.length() > 0) {
  124. rt.fromString(rttmp);
  125. if (!Topology::authenticateRootTopology(rt))
  126. rt.clear();
  127. }
  128. if ((!rt.size())||(!rt.contains("rootservers")))
  129. rt.fromString(ZT_DEFAULTS.defaultRootTopology);
  130. }
  131. RR->topology->setRootServers(Dictionary(rt.get("rootservers","")));
  132. postEvent(ZT1_EVENT_UP);
  133. }
  134. Node::~Node()
  135. {
  136. Mutex::Lock _l(_networks_m);
  137. _networks.clear(); // ensure that networks are destroyed before shutdown
  138. delete RR->sa;
  139. delete RR->topology;
  140. delete RR->antiRec;
  141. delete RR->mc;
  142. delete RR->sw;
  143. }
  144. ZT1_ResultCode Node::processWirePacket(
  145. uint64_t now,
  146. const struct sockaddr_storage *remoteAddress,
  147. const void *packetData,
  148. unsigned int packetLength,
  149. volatile uint64_t *nextBackgroundTaskDeadline)
  150. {
  151. _now = now;
  152. RR->sw->onRemotePacket(*(reinterpret_cast<const InetAddress *>(remoteAddress)),packetData,packetLength);
  153. return ZT1_RESULT_OK;
  154. }
  155. ZT1_ResultCode Node::processVirtualNetworkFrame(
  156. uint64_t now,
  157. uint64_t nwid,
  158. uint64_t sourceMac,
  159. uint64_t destMac,
  160. unsigned int etherType,
  161. unsigned int vlanId,
  162. const void *frameData,
  163. unsigned int frameLength,
  164. volatile uint64_t *nextBackgroundTaskDeadline)
  165. {
  166. _now = now;
  167. SharedPtr<Network> nw(this->network(nwid));
  168. if (nw) {
  169. RR->sw->onLocalEthernet(nw,MAC(sourceMac),MAC(destMac),etherType,vlanId,frameData,frameLength);
  170. return ZT1_RESULT_OK;
  171. } else return ZT1_RESULT_ERROR_NETWORK_NOT_FOUND;
  172. }
  173. class _PingPeersThatNeedPing
  174. {
  175. public:
  176. _PingPeersThatNeedPing(const RuntimeEnvironment *renv,uint64_t now,const std::vector< std::pair<Address,InetAddress> > &relays) :
  177. lastReceiveFromUpstream(0),
  178. RR(renv),
  179. _now(now),
  180. _relays(relays),
  181. _rootAddresses(RR->topology->rootAddresses())
  182. {
  183. }
  184. uint64_t lastReceiveFromUpstream;
  185. inline void operator()(Topology &t,const SharedPtr<Peer> &p)
  186. {
  187. bool isRelay = false;
  188. for(std::vector< std::pair<Address,InetAddress> >::const_iterator r(_relays.begin());r!=_relays.end();++r) {
  189. if (r->first == p->address()) {
  190. isRelay = true;
  191. break;
  192. }
  193. }
  194. if ((isRelay)||(std::find(_rootAddresses.begin(),_rootAddresses.end(),p->address()) != _rootAddresses.end())) {
  195. p->doPingAndKeepalive(RR,_now);
  196. if (p->lastReceive() > lastReceiveFromUpstream)
  197. lastReceiveFromUpstream = p->lastReceive();
  198. } else {
  199. if (p->alive(_now))
  200. p->doPingAndKeepalive(RR,_now);
  201. }
  202. }
  203. private:
  204. const RuntimeEnvironment *RR;
  205. uint64_t _now;
  206. const std::vector< std::pair<Address,InetAddress> > &_relays;
  207. std::vector<Address> _rootAddresses;
  208. };
  209. ZT1_ResultCode Node::processBackgroundTasks(uint64_t now,volatile uint64_t *nextBackgroundTaskDeadline)
  210. {
  211. _now = now;
  212. Mutex::Lock bl(_backgroundTasksLock);
  213. if ((now - _lastPingCheck) >= ZT_PING_CHECK_INVERVAL) {
  214. try {
  215. _lastPingCheck = now;
  216. // Get relays and networks that need config without leaving the mutex locked
  217. std::vector< std::pair<Address,InetAddress> > networkRelays;
  218. std::vector< SharedPtr<Network> > needConfig;
  219. {
  220. Mutex::Lock _l(_networks_m);
  221. for(std::vector< std::pair< uint64_t,SharedPtr<Network> > >::const_iterator n(_networks.begin());n!=_networks.end();++n) {
  222. SharedPtr<NetworkConfig> nc(n->second->config2());
  223. if (((now - n->second->lastConfigUpdate()) >= ZT_NETWORK_AUTOCONF_DELAY)||(!nc))
  224. needConfig.push_back(n->second);
  225. if (nc)
  226. networkRelays.insert(networkRelays.end(),nc->relays().begin(),nc->relays().end());
  227. }
  228. }
  229. // Request updated configuration for networks that need it
  230. for(std::vector< SharedPtr<Network> >::const_iterator n(needConfig.begin());n!=needConfig.end();++n)
  231. (*n)->requestConfiguration();
  232. // Attempt to contact network preferred relays that we don't have direct links to
  233. std::sort(networkRelays.begin(),networkRelays.end());
  234. networkRelays.erase(std::unique(networkRelays.begin(),networkRelays.end()),networkRelays.end());
  235. for(std::vector< std::pair<Address,InetAddress> >::const_iterator nr(networkRelays.begin());nr!=networkRelays.end();++nr) {
  236. if (nr->second) {
  237. SharedPtr<Peer> rp(RR->topology->getPeer(nr->first));
  238. if ((rp)&&(!rp->hasActiveDirectPath(now)))
  239. rp->attemptToContactAt(RR,nr->second,now);
  240. }
  241. }
  242. // Ping living or root server/relay peers
  243. _PingPeersThatNeedPing pfunc(RR,now,networkRelays);
  244. RR->topology->eachPeer<_PingPeersThatNeedPing &>(pfunc);
  245. // Update online status, post status change as event
  246. bool oldOnline = _online;
  247. _online = ((now - pfunc.lastReceiveFromUpstream) < ZT_PEER_ACTIVITY_TIMEOUT);
  248. if (oldOnline != _online)
  249. postEvent(_online ? ZT1_EVENT_ONLINE : ZT1_EVENT_OFFLINE);
  250. } catch ( ... ) {
  251. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  252. }
  253. }
  254. if ((now - _lastHousekeepingRun) >= ZT_HOUSEKEEPING_PERIOD) {
  255. try {
  256. _lastHousekeepingRun = now;
  257. RR->topology->clean(now);
  258. RR->sa->clean(now);
  259. RR->mc->clean(now);
  260. } catch ( ... ) {
  261. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  262. }
  263. }
  264. try {
  265. *nextBackgroundTaskDeadline = now + (uint64_t)std::max(std::min((unsigned long)ZT_PING_CHECK_INVERVAL,RR->sw->doTimerTasks(now)),(unsigned long)ZT_CORE_TIMER_TASK_GRANULARITY);
  266. } catch ( ... ) {
  267. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  268. }
  269. return ZT1_RESULT_OK;
  270. }
  271. ZT1_ResultCode Node::join(uint64_t nwid)
  272. {
  273. Mutex::Lock _l(_networks_m);
  274. SharedPtr<Network> nw = _network(nwid);
  275. if(!nw)
  276. _networks.push_back(std::pair< uint64_t,SharedPtr<Network> >(nwid,SharedPtr<Network>(new Network(RR,nwid))));
  277. std::sort(_networks.begin(),_networks.end()); // will sort by nwid since it's the first in a pair<>
  278. return ZT1_RESULT_OK;
  279. }
  280. ZT1_ResultCode Node::leave(uint64_t nwid)
  281. {
  282. std::vector< std::pair< uint64_t,SharedPtr<Network> > > newn;
  283. Mutex::Lock _l(_networks_m);
  284. for(std::vector< std::pair< uint64_t,SharedPtr<Network> > >::const_iterator n(_networks.begin());n!=_networks.end();++n) {
  285. if (n->first != nwid)
  286. newn.push_back(*n);
  287. else n->second->destroy();
  288. }
  289. _networks.swap(newn);
  290. return ZT1_RESULT_OK;
  291. }
  292. ZT1_ResultCode Node::multicastSubscribe(uint64_t nwid,uint64_t multicastGroup,unsigned long multicastAdi)
  293. {
  294. SharedPtr<Network> nw(this->network(nwid));
  295. if (nw) {
  296. nw->multicastSubscribe(MulticastGroup(MAC(multicastGroup),(uint32_t)(multicastAdi & 0xffffffff)));
  297. return ZT1_RESULT_OK;
  298. } else return ZT1_RESULT_ERROR_NETWORK_NOT_FOUND;
  299. }
  300. ZT1_ResultCode Node::multicastUnsubscribe(uint64_t nwid,uint64_t multicastGroup,unsigned long multicastAdi)
  301. {
  302. SharedPtr<Network> nw(this->network(nwid));
  303. if (nw) {
  304. nw->multicastUnsubscribe(MulticastGroup(MAC(multicastGroup),(uint32_t)(multicastAdi & 0xffffffff)));
  305. return ZT1_RESULT_OK;
  306. } else return ZT1_RESULT_ERROR_NETWORK_NOT_FOUND;
  307. }
  308. uint64_t Node::address() const
  309. {
  310. return RR->identity.address().toInt();
  311. }
  312. void Node::status(ZT1_NodeStatus *status) const
  313. {
  314. status->address = RR->identity.address().toInt();
  315. status->publicIdentity = RR->publicIdentityStr.c_str();
  316. status->secretIdentity = RR->secretIdentityStr.c_str();
  317. status->online = _online ? 1 : 0;
  318. }
  319. ZT1_PeerList *Node::peers() const
  320. {
  321. std::map< Address,SharedPtr<Peer> > peers(RR->topology->allPeers());
  322. char *buf = (char *)::malloc(sizeof(ZT1_PeerList) + (sizeof(ZT1_Peer) * peers.size()));
  323. if (!buf)
  324. return (ZT1_PeerList *)0;
  325. ZT1_PeerList *pl = (ZT1_PeerList *)buf;
  326. pl->peers = (ZT1_Peer *)(buf + sizeof(ZT1_PeerList));
  327. pl->peerCount = 0;
  328. for(std::map< Address,SharedPtr<Peer> >::iterator pi(peers.begin());pi!=peers.end();++pi) {
  329. ZT1_Peer *p = &(pl->peers[pl->peerCount++]);
  330. p->address = pi->second->address().toInt();
  331. p->lastUnicastFrame = pi->second->lastUnicastFrame();
  332. p->lastMulticastFrame = pi->second->lastMulticastFrame();
  333. if (pi->second->remoteVersionKnown()) {
  334. p->versionMajor = pi->second->remoteVersionMajor();
  335. p->versionMinor = pi->second->remoteVersionMinor();
  336. p->versionRev = pi->second->remoteVersionRevision();
  337. } else {
  338. p->versionMajor = -1;
  339. p->versionMinor = -1;
  340. p->versionRev = -1;
  341. }
  342. p->latency = pi->second->latency();
  343. p->role = RR->topology->isRoot(pi->second->identity()) ? ZT1_PEER_ROLE_ROOT : ZT1_PEER_ROLE_LEAF;
  344. std::vector<RemotePath> paths(pi->second->paths());
  345. RemotePath *bestPath = pi->second->getBestPath(_now);
  346. p->pathCount = 0;
  347. for(std::vector<RemotePath>::iterator path(paths.begin());path!=paths.end();++path) {
  348. memcpy(&(p->paths[p->pathCount].address),&(path->address()),sizeof(struct sockaddr_storage));
  349. p->paths[p->pathCount].lastSend = path->lastSend();
  350. p->paths[p->pathCount].lastReceive = path->lastReceived();
  351. p->paths[p->pathCount].fixed = path->fixed() ? 1 : 0;
  352. p->paths[p->pathCount].active = path->active(_now) ? 1 : 0;
  353. p->paths[p->pathCount].preferred = ((bestPath)&&(*path == *bestPath)) ? 1 : 0;
  354. ++p->pathCount;
  355. }
  356. }
  357. return pl;
  358. }
  359. ZT1_VirtualNetworkConfig *Node::networkConfig(uint64_t nwid) const
  360. {
  361. Mutex::Lock _l(_networks_m);
  362. SharedPtr<Network> nw = _network(nwid);
  363. if(nw) {
  364. ZT1_VirtualNetworkConfig *nc = (ZT1_VirtualNetworkConfig *)::malloc(sizeof(ZT1_VirtualNetworkConfig));
  365. nw->externalConfig(nc);
  366. return nc;
  367. }
  368. return (ZT1_VirtualNetworkConfig *)0;
  369. }
  370. ZT1_VirtualNetworkList *Node::networks() const
  371. {
  372. Mutex::Lock _l(_networks_m);
  373. char *buf = (char *)::malloc(sizeof(ZT1_VirtualNetworkList) + (sizeof(ZT1_VirtualNetworkConfig) * _networks.size()));
  374. if (!buf)
  375. return (ZT1_VirtualNetworkList *)0;
  376. ZT1_VirtualNetworkList *nl = (ZT1_VirtualNetworkList *)buf;
  377. nl->networks = (ZT1_VirtualNetworkConfig *)(buf + sizeof(ZT1_VirtualNetworkList));
  378. nl->networkCount = 0;
  379. for(std::vector< std::pair< uint64_t,SharedPtr<Network> > >::const_iterator n(_networks.begin());n!=_networks.end();++n)
  380. n->second->externalConfig(&(nl->networks[nl->networkCount++]));
  381. return nl;
  382. }
  383. void Node::freeQueryResult(void *qr)
  384. {
  385. if (qr)
  386. ::free(qr);
  387. }
  388. int Node::addLocalInterfaceAddress(const struct sockaddr_storage *addr,int metric,ZT1_LocalInterfaceAddressTrust trust)
  389. {
  390. if (Path::isAddressValidForPath(*(reinterpret_cast<const InetAddress *>(addr)))) {
  391. Mutex::Lock _l(_directPaths_m);
  392. _directPaths.push_back(Path(*(reinterpret_cast<const InetAddress *>(addr)),metric,(Path::Trust)trust));
  393. std::sort(_directPaths.begin(),_directPaths.end());
  394. _directPaths.erase(std::unique(_directPaths.begin(),_directPaths.end()),_directPaths.end());
  395. return 1;
  396. }
  397. return 0;
  398. }
  399. void Node::clearLocalInterfaceAddresses()
  400. {
  401. Mutex::Lock _l(_directPaths_m);
  402. _directPaths.clear();
  403. }
  404. void Node::setNetconfMaster(void *networkControllerInstance)
  405. {
  406. RR->localNetworkController = reinterpret_cast<NetworkController *>(networkControllerInstance);
  407. }
  408. /****************************************************************************/
  409. /* Node methods used only within node/ */
  410. /****************************************************************************/
  411. std::string Node::dataStoreGet(const char *name)
  412. {
  413. char buf[16384];
  414. std::string r;
  415. unsigned long olen = 0;
  416. do {
  417. long n = _dataStoreGetFunction(reinterpret_cast<ZT1_Node *>(this),_uPtr,name,buf,sizeof(buf),(unsigned long)r.length(),&olen);
  418. if (n <= 0)
  419. return std::string();
  420. r.append(buf,n);
  421. } while (r.length() < olen);
  422. return r;
  423. }
  424. void Node::postNewerVersionIfNewer(unsigned int major,unsigned int minor,unsigned int rev)
  425. {
  426. if (Utils::compareVersion(major,minor,rev,_newestVersionSeen[0],_newestVersionSeen[1],_newestVersionSeen[2]) > 0) {
  427. _newestVersionSeen[0] = major;
  428. _newestVersionSeen[1] = minor;
  429. _newestVersionSeen[2] = rev;
  430. this->postEvent(ZT1_EVENT_SAW_MORE_RECENT_VERSION,(const void *)_newestVersionSeen);
  431. }
  432. }
  433. #ifdef ZT_TRACE
  434. void Node::postTrace(const char *module,unsigned int line,const char *fmt,...)
  435. {
  436. static Mutex traceLock;
  437. va_list ap;
  438. char tmp1[1024],tmp2[1024],tmp3[256];
  439. Mutex::Lock _l(traceLock);
  440. time_t now = (time_t)(_now / 1000ULL);
  441. #ifdef __WINDOWS__
  442. ctime_s(tmp3,sizeof(tmp3),&now);
  443. char *nowstr = tmp3;
  444. #else
  445. char *nowstr = ctime_r(&now,tmp3);
  446. #endif
  447. unsigned long nowstrlen = (unsigned long)strlen(nowstr);
  448. if (nowstr[nowstrlen-1] == '\n')
  449. nowstr[--nowstrlen] = (char)0;
  450. if (nowstr[nowstrlen-1] == '\r')
  451. nowstr[--nowstrlen] = (char)0;
  452. va_start(ap,fmt);
  453. vsnprintf(tmp2,sizeof(tmp2),fmt,ap);
  454. va_end(ap);
  455. tmp2[sizeof(tmp2)-1] = (char)0;
  456. Utils::snprintf(tmp1,sizeof(tmp1),"[%s] %s:%u %s",nowstr,module,line,tmp2);
  457. postEvent(ZT1_EVENT_TRACE,tmp1);
  458. }
  459. #endif // ZT_TRACE
  460. uint64_t Node::prng()
  461. {
  462. unsigned int p = (++_prngStreamPtr % (sizeof(_prngStream) / sizeof(uint64_t)));
  463. if (!p)
  464. _prng.encrypt(_prngStream,_prngStream,sizeof(_prngStream));
  465. return _prngStream[p];
  466. }
  467. } // namespace ZeroTier
  468. /****************************************************************************/
  469. /* CAPI bindings */
  470. /****************************************************************************/
  471. extern "C" {
  472. enum ZT1_ResultCode ZT1_Node_new(
  473. ZT1_Node **node,
  474. void *uptr,
  475. uint64_t now,
  476. ZT1_DataStoreGetFunction dataStoreGetFunction,
  477. ZT1_DataStorePutFunction dataStorePutFunction,
  478. ZT1_WirePacketSendFunction wirePacketSendFunction,
  479. ZT1_VirtualNetworkFrameFunction virtualNetworkFrameFunction,
  480. ZT1_VirtualNetworkConfigFunction virtualNetworkConfigFunction,
  481. ZT1_EventCallback eventCallback,
  482. const char *overrideRootTopology)
  483. {
  484. *node = (ZT1_Node *)0;
  485. try {
  486. *node = reinterpret_cast<ZT1_Node *>(new ZeroTier::Node(now,uptr,dataStoreGetFunction,dataStorePutFunction,wirePacketSendFunction,virtualNetworkFrameFunction,virtualNetworkConfigFunction,eventCallback,overrideRootTopology));
  487. return ZT1_RESULT_OK;
  488. } catch (std::bad_alloc &exc) {
  489. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  490. } catch (std::runtime_error &exc) {
  491. return ZT1_RESULT_FATAL_ERROR_DATA_STORE_FAILED;
  492. } catch ( ... ) {
  493. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  494. }
  495. }
  496. void ZT1_Node_delete(ZT1_Node *node)
  497. {
  498. try {
  499. delete (reinterpret_cast<ZeroTier::Node *>(node));
  500. } catch ( ... ) {}
  501. }
  502. enum ZT1_ResultCode ZT1_Node_processWirePacket(
  503. ZT1_Node *node,
  504. uint64_t now,
  505. const struct sockaddr_storage *remoteAddress,
  506. const void *packetData,
  507. unsigned int packetLength,
  508. volatile uint64_t *nextBackgroundTaskDeadline)
  509. {
  510. try {
  511. return reinterpret_cast<ZeroTier::Node *>(node)->processWirePacket(now,remoteAddress,packetData,packetLength,nextBackgroundTaskDeadline);
  512. } catch (std::bad_alloc &exc) {
  513. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  514. } catch ( ... ) {
  515. reinterpret_cast<ZeroTier::Node *>(node)->postEvent(ZT1_EVENT_INVALID_PACKET,(const void *)remoteAddress);
  516. return ZT1_RESULT_OK;
  517. }
  518. }
  519. enum ZT1_ResultCode ZT1_Node_processVirtualNetworkFrame(
  520. ZT1_Node *node,
  521. uint64_t now,
  522. uint64_t nwid,
  523. uint64_t sourceMac,
  524. uint64_t destMac,
  525. unsigned int etherType,
  526. unsigned int vlanId,
  527. const void *frameData,
  528. unsigned int frameLength,
  529. volatile uint64_t *nextBackgroundTaskDeadline)
  530. {
  531. try {
  532. return reinterpret_cast<ZeroTier::Node *>(node)->processVirtualNetworkFrame(now,nwid,sourceMac,destMac,etherType,vlanId,frameData,frameLength,nextBackgroundTaskDeadline);
  533. } catch (std::bad_alloc &exc) {
  534. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  535. } catch ( ... ) {
  536. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  537. }
  538. }
  539. enum ZT1_ResultCode ZT1_Node_processBackgroundTasks(ZT1_Node *node,uint64_t now,volatile uint64_t *nextBackgroundTaskDeadline)
  540. {
  541. try {
  542. return reinterpret_cast<ZeroTier::Node *>(node)->processBackgroundTasks(now,nextBackgroundTaskDeadline);
  543. } catch (std::bad_alloc &exc) {
  544. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  545. } catch ( ... ) {
  546. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  547. }
  548. }
  549. enum ZT1_ResultCode ZT1_Node_join(ZT1_Node *node,uint64_t nwid)
  550. {
  551. try {
  552. return reinterpret_cast<ZeroTier::Node *>(node)->join(nwid);
  553. } catch (std::bad_alloc &exc) {
  554. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  555. } catch ( ... ) {
  556. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  557. }
  558. }
  559. enum ZT1_ResultCode ZT1_Node_leave(ZT1_Node *node,uint64_t nwid)
  560. {
  561. try {
  562. return reinterpret_cast<ZeroTier::Node *>(node)->leave(nwid);
  563. } catch (std::bad_alloc &exc) {
  564. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  565. } catch ( ... ) {
  566. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  567. }
  568. }
  569. enum ZT1_ResultCode ZT1_Node_multicastSubscribe(ZT1_Node *node,uint64_t nwid,uint64_t multicastGroup,unsigned long multicastAdi)
  570. {
  571. try {
  572. return reinterpret_cast<ZeroTier::Node *>(node)->multicastSubscribe(nwid,multicastGroup,multicastAdi);
  573. } catch (std::bad_alloc &exc) {
  574. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  575. } catch ( ... ) {
  576. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  577. }
  578. }
  579. enum ZT1_ResultCode ZT1_Node_multicastUnsubscribe(ZT1_Node *node,uint64_t nwid,uint64_t multicastGroup,unsigned long multicastAdi)
  580. {
  581. try {
  582. return reinterpret_cast<ZeroTier::Node *>(node)->multicastUnsubscribe(nwid,multicastGroup,multicastAdi);
  583. } catch (std::bad_alloc &exc) {
  584. return ZT1_RESULT_FATAL_ERROR_OUT_OF_MEMORY;
  585. } catch ( ... ) {
  586. return ZT1_RESULT_FATAL_ERROR_INTERNAL;
  587. }
  588. }
  589. uint64_t ZT1_Node_address(ZT1_Node *node)
  590. {
  591. return reinterpret_cast<ZeroTier::Node *>(node)->address();
  592. }
  593. void ZT1_Node_status(ZT1_Node *node,ZT1_NodeStatus *status)
  594. {
  595. try {
  596. reinterpret_cast<ZeroTier::Node *>(node)->status(status);
  597. } catch ( ... ) {}
  598. }
  599. ZT1_PeerList *ZT1_Node_peers(ZT1_Node *node)
  600. {
  601. try {
  602. return reinterpret_cast<ZeroTier::Node *>(node)->peers();
  603. } catch ( ... ) {
  604. return (ZT1_PeerList *)0;
  605. }
  606. }
  607. ZT1_VirtualNetworkConfig *ZT1_Node_networkConfig(ZT1_Node *node,uint64_t nwid)
  608. {
  609. try {
  610. return reinterpret_cast<ZeroTier::Node *>(node)->networkConfig(nwid);
  611. } catch ( ... ) {
  612. return (ZT1_VirtualNetworkConfig *)0;
  613. }
  614. }
  615. ZT1_VirtualNetworkList *ZT1_Node_networks(ZT1_Node *node)
  616. {
  617. try {
  618. return reinterpret_cast<ZeroTier::Node *>(node)->networks();
  619. } catch ( ... ) {
  620. return (ZT1_VirtualNetworkList *)0;
  621. }
  622. }
  623. void ZT1_Node_freeQueryResult(ZT1_Node *node,void *qr)
  624. {
  625. try {
  626. reinterpret_cast<ZeroTier::Node *>(node)->freeQueryResult(qr);
  627. } catch ( ... ) {}
  628. }
  629. void ZT1_Node_setNetconfMaster(ZT1_Node *node,void *networkControllerInstance)
  630. {
  631. try {
  632. reinterpret_cast<ZeroTier::Node *>(node)->setNetconfMaster(networkControllerInstance);
  633. } catch ( ... ) {}
  634. }
  635. int ZT1_Node_addLocalInterfaceAddress(ZT1_Node *node,const struct sockaddr_storage *addr,int metric,ZT1_LocalInterfaceAddressTrust trust)
  636. {
  637. try {
  638. return reinterpret_cast<ZeroTier::Node *>(node)->addLocalInterfaceAddress(addr,metric,trust);
  639. } catch ( ... ) {
  640. return 0;
  641. }
  642. }
  643. void ZT1_Node_clearLocalInterfaceAddresses(ZT1_Node *node)
  644. {
  645. try {
  646. reinterpret_cast<ZeroTier::Node *>(node)->clearLocalInterfaceAddresses();
  647. } catch ( ... ) {}
  648. }
  649. void ZT1_version(int *major,int *minor,int *revision,unsigned long *featureFlags)
  650. {
  651. if (major) *major = ZEROTIER_ONE_VERSION_MAJOR;
  652. if (minor) *minor = ZEROTIER_ONE_VERSION_MINOR;
  653. if (revision) *revision = ZEROTIER_ONE_VERSION_REVISION;
  654. if (featureFlags) {
  655. *featureFlags = (
  656. ZT1_FEATURE_FLAG_THREAD_SAFE
  657. );
  658. }
  659. }
  660. } // extern "C"