NodeConfig.cpp 11 KB

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  1. /*
  2. * ZeroTier One - Global Peer to Peer Ethernet
  3. * Copyright (C) 2012-2013 ZeroTier Networks LLC
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. *
  18. * --
  19. *
  20. * ZeroTier may be used and distributed under the terms of the GPLv3, which
  21. * are available at: http://www.gnu.org/licenses/gpl-3.0.html
  22. *
  23. * If you would like to embed ZeroTier into a commercial application or
  24. * redistribute it in a modified binary form, please contact ZeroTier Networks
  25. * LLC. Start here: http://www.zerotier.com/
  26. */
  27. #include <stdio.h>
  28. #include <string.h>
  29. #include <stdlib.h>
  30. #include <stdint.h>
  31. #include <memory>
  32. #include <string>
  33. #include <map>
  34. #include <set>
  35. #include <openssl/sha.h>
  36. #include "Constants.hpp"
  37. #ifdef __WINDOWS__
  38. #include <WinSock2.h>
  39. #include <Windows.h>
  40. #endif
  41. #include "NodeConfig.hpp"
  42. #include "RuntimeEnvironment.hpp"
  43. #include "Defaults.hpp"
  44. #include "Utils.hpp"
  45. #include "Logger.hpp"
  46. #include "Topology.hpp"
  47. #include "Demarc.hpp"
  48. #include "InetAddress.hpp"
  49. #include "Peer.hpp"
  50. #include "Salsa20.hpp"
  51. #include "HMAC.hpp"
  52. #include "Node.hpp"
  53. #ifdef __WINDOWS__
  54. #define strtoull _strtoui64
  55. #endif
  56. namespace ZeroTier {
  57. NodeConfig::NodeConfig(const RuntimeEnvironment *renv,const char *authToken)
  58. throw(std::runtime_error) :
  59. _r(renv),
  60. _controlSocket(true,ZT_CONTROL_UDP_PORT,false,&_CBcontrolPacketHandler,this)
  61. {
  62. SHA256_CTX sha;
  63. SHA256_Init(&sha);
  64. SHA256_Update(&sha,authToken,strlen(authToken));
  65. SHA256_Final(_controlSocketKey,&sha);
  66. std::map<std::string,bool> networksDotD(Utils::listDirectory((_r->homePath + ZT_PATH_SEPARATOR_S + "networks.d").c_str()));
  67. std::set<uint64_t> nwids;
  68. for(std::map<std::string,bool>::iterator d(networksDotD.begin());d!=networksDotD.end();++d) {
  69. if (!d->second) {
  70. std::string::size_type dot = d->first.rfind(".conf");
  71. if (dot != std::string::npos) {
  72. uint64_t nwid = strtoull(d->first.substr(0,dot).c_str(),(char **)0,16);
  73. if (nwid > 0)
  74. nwids.insert(nwid);
  75. }
  76. }
  77. }
  78. // TODO:
  79. // This might go away eventually. This causes the LAN called Earth to be
  80. // automatically joined if there are no other networks. This is for backward
  81. // compatibility with the expectations of previous alpha users.
  82. if (nwids.empty())
  83. nwids.insert(0x6c92786fee000001ULL);
  84. for(std::set<uint64_t>::iterator nwid(nwids.begin());nwid!=nwids.end();++nwid) {
  85. try {
  86. SharedPtr<Network> nw(Network::newInstance(_r,*nwid));
  87. _networks[*nwid] = nw;
  88. } catch (std::exception &exc) {
  89. LOG("unable to create network %.16llx: %s",(unsigned long long)*nwid,exc.what());
  90. } catch ( ... ) {
  91. LOG("unable to create network %.16llx: (unknown exception)",(unsigned long long)*nwid);
  92. }
  93. }
  94. }
  95. NodeConfig::~NodeConfig()
  96. {
  97. }
  98. void NodeConfig::whackAllTaps()
  99. {
  100. std::vector< SharedPtr<Network> > nwlist;
  101. Mutex::Lock _l(_networks_m);
  102. for(std::map< uint64_t,SharedPtr<Network> >::const_iterator n(_networks.begin());n!=_networks.end();++n)
  103. n->second->tap().whack();
  104. }
  105. void NodeConfig::clean()
  106. {
  107. Mutex::Lock _l(_networks_m);
  108. for(std::map< uint64_t,SharedPtr<Network> >::const_iterator n(_networks.begin());n!=_networks.end();++n)
  109. n->second->clean();
  110. }
  111. // Macro used in execute()
  112. #undef _P
  113. #define _P(f,...) { r.push_back(std::string()); Utils::stdsprintf(r.back(),(f),##__VA_ARGS__); }
  114. // Used with Topology::eachPeer to dump peer stats
  115. class _DumpPeerStatistics
  116. {
  117. public:
  118. _DumpPeerStatistics(std::vector<std::string> &out) :
  119. r(out),
  120. _now(Utils::now())
  121. {
  122. }
  123. inline void operator()(Topology &t,const SharedPtr<Peer> &p)
  124. {
  125. InetAddress v4(p->ipv4ActivePath(_now));
  126. InetAddress v6(p->ipv6ActivePath(_now));
  127. _P("200 listpeers %s %s %s %u %s",
  128. p->address().toString().c_str(),
  129. ((v4) ? v4.toString().c_str() : "-"),
  130. ((v6) ? v6.toString().c_str() : "-"),
  131. (((v4)||(v6)) ? p->latency() : 0),
  132. p->remoteVersion().c_str());
  133. }
  134. private:
  135. std::vector<std::string> &r;
  136. uint64_t _now;
  137. };
  138. std::vector<std::string> NodeConfig::execute(const char *command)
  139. {
  140. std::vector<std::string> r;
  141. std::vector<std::string> cmd(Utils::split(command,"\r\n \t","\\","'"));
  142. //
  143. // Not coincidentally, response type codes correspond with HTTP
  144. // status codes.
  145. //
  146. if ((cmd.empty())||(cmd[0] == "help")) {
  147. _P("200 help help");
  148. _P("200 help listpeers");
  149. _P("200 help listnetworks");
  150. _P("200 help join <network ID>");
  151. _P("200 help leave <network ID>");
  152. _P("200 help terminate [<reason>]");
  153. } else if (cmd[0] == "listpeers") {
  154. _P("200 listpeers <ztaddr> <ipv4> <ipv6> <latency> <version>");
  155. _r->topology->eachPeer(_DumpPeerStatistics(r));
  156. } else if (cmd[0] == "listnetworks") {
  157. Mutex::Lock _l(_networks_m);
  158. _P("200 listnetworks <nwid> <status> <type> <dev> <ips>");
  159. for(std::map< uint64_t,SharedPtr<Network> >::const_iterator nw(_networks.begin());nw!=_networks.end();++nw) {
  160. std::string tmp;
  161. std::set<InetAddress> ips(nw->second->tap().ips());
  162. for(std::set<InetAddress>::iterator i(ips.begin());i!=ips.end();++i) {
  163. if (tmp.length())
  164. tmp.push_back(',');
  165. tmp.append(i->toString());
  166. }
  167. // TODO: display network status, such as "permission denied to closed
  168. // network" or "waiting".
  169. _P("200 listnetworks %.16llx %s %s %s %s",
  170. (unsigned long long)nw->first,
  171. Network::statusString(nw->second->status()),
  172. (nw->second->isOpen() ? "open" : "private"),
  173. nw->second->tap().deviceName().c_str(),
  174. ((tmp.length() > 0) ? tmp.c_str() : "-"));
  175. }
  176. } else if (cmd[0] == "join") {
  177. if (cmd.size() > 1) {
  178. uint64_t nwid = strtoull(cmd[1].c_str(),(char **)0,16);
  179. if (nwid > 0) {
  180. Mutex::Lock _l(_networks_m);
  181. if (_networks.count(nwid)) {
  182. _P("400 already a member of %.16llx",(unsigned long long)nwid);
  183. } else {
  184. try {
  185. SharedPtr<Network> nw(Network::newInstance(_r,nwid));
  186. _networks[nwid] = nw;
  187. _P("200 join %.16llx OK",(unsigned long long)nwid);
  188. } catch (std::exception &exc) {
  189. _P("500 join %.16llx ERROR: %s",(unsigned long long)nwid,exc.what());
  190. } catch ( ... ) {
  191. _P("500 join %.16llx ERROR: (unknown exception)",(unsigned long long)nwid);
  192. }
  193. }
  194. } else {
  195. _P("400 join requires a network ID (>0) in hexadecimal format");
  196. }
  197. } else {
  198. _P("400 join requires a network ID (>0) in hexadecimal format");
  199. }
  200. } else if (cmd[0] == "leave") {
  201. if (cmd.size() > 1) {
  202. Mutex::Lock _l(_networks_m);
  203. uint64_t nwid = strtoull(cmd[1].c_str(),(char **)0,16);
  204. std::map< uint64_t,SharedPtr<Network> >::iterator nw(_networks.find(nwid));
  205. if (nw == _networks.end()) {
  206. _P("404 leave %.16llx ERROR: not a member of that network",(unsigned long long)nwid);
  207. } else {
  208. nw->second->destroyOnDelete();
  209. _networks.erase(nw);
  210. }
  211. } else {
  212. _P("400 leave requires a network ID (>0) in hexadecimal format");
  213. }
  214. } else if (cmd[0] == "terminate") {
  215. if (cmd.size() > 1)
  216. _r->node->terminate(Node::NODE_NORMAL_TERMINATION,cmd[1].c_str());
  217. else _r->node->terminate(Node::NODE_NORMAL_TERMINATION,(const char *)0);
  218. } else {
  219. _P("404 %s No such command. Use 'help' for help.",cmd[0].c_str());
  220. }
  221. r.push_back(std::string()); // terminate with empty line
  222. return r;
  223. }
  224. std::vector< Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> > NodeConfig::encodeControlMessage(const void *key,unsigned long conversationId,const std::vector<std::string> &payload)
  225. throw(std::out_of_range)
  226. {
  227. char hmac[32];
  228. char keytmp[32];
  229. std::vector< Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> > packets;
  230. Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> packet;
  231. packet.setSize(16); // room for HMAC and IV
  232. packet.append((uint32_t)(conversationId & 0xffffffff));
  233. for(unsigned int i=0;i<payload.size();++i) {
  234. packet.append(payload[i]); // will throw if too big
  235. packet.append((unsigned char)0);
  236. if (((i + 1) >= payload.size())||((packet.size() + payload[i + 1].length() + 1) >= packet.capacity())) {
  237. Utils::getSecureRandom(packet.field(8,8),8);
  238. Salsa20 s20(key,256,packet.field(8,8));
  239. s20.encrypt(packet.field(16,packet.size() - 16),packet.field(16,packet.size() - 16),packet.size() - 16);
  240. memcpy(keytmp,key,32);
  241. for(unsigned int i=0;i<32;++i)
  242. keytmp[i] ^= 0x77; // use a different permutation of key for HMAC than for Salsa20
  243. HMAC::sha256(keytmp,32,packet.field(16,packet.size() - 16),packet.size() - 16,hmac);
  244. memcpy(packet.field(0,8),hmac,8);
  245. packets.push_back(packet);
  246. packet.setSize(16); // room for HMAC and IV
  247. packet.append((uint32_t)(conversationId & 0xffffffff));
  248. }
  249. }
  250. return packets;
  251. }
  252. bool NodeConfig::decodeControlMessagePacket(const void *key,const void *data,unsigned int len,unsigned long &conversationId,std::vector<std::string> &payload)
  253. {
  254. char hmac[32];
  255. char keytmp[32];
  256. try {
  257. if (len < 20)
  258. return false;
  259. Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> packet(data,len);
  260. memcpy(keytmp,key,32);
  261. for(unsigned int i=0;i<32;++i)
  262. keytmp[i] ^= 0x77; // use a different permutation of key for HMAC than for Salsa20
  263. HMAC::sha256(keytmp,32,packet.field(16,packet.size() - 16),packet.size() - 16,hmac);
  264. if (memcmp(packet.field(0,8),hmac,8))
  265. return false;
  266. Salsa20 s20(key,256,packet.field(8,8));
  267. s20.decrypt(packet.field(16,packet.size() - 16),packet.field(16,packet.size() - 16),packet.size() - 16);
  268. conversationId = packet.at<uint32_t>(16);
  269. const char *pl = ((const char *)packet.data()) + 20;
  270. unsigned int pll = packet.size() - 20;
  271. for(unsigned int i=0;i<pll;) {
  272. unsigned int eos = i;
  273. while ((eos < pll)&&(pl[eos]))
  274. ++eos;
  275. if (eos >= i) {
  276. payload.push_back(std::string(pl + i,eos - i));
  277. i = eos + 1;
  278. } else break;
  279. }
  280. return true;
  281. } catch ( ... ) {
  282. return false;
  283. }
  284. }
  285. void NodeConfig::_CBcontrolPacketHandler(UdpSocket *sock,void *arg,const InetAddress &remoteAddr,const void *data,unsigned int len)
  286. {
  287. NodeConfig *nc = (NodeConfig *)arg;
  288. const RuntimeEnvironment *_r = nc->_r;
  289. try {
  290. unsigned long convId = 0;
  291. std::vector<std::string> commands;
  292. if (!decodeControlMessagePacket(nc->_controlSocketKey,data,len,convId,commands)) {
  293. TRACE("control bus packet from %s failed decode, discarded",remoteAddr.toString().c_str());
  294. return;
  295. }
  296. TRACE("control bus packet from %s, contains %d commands",remoteAddr.toString().c_str(),(int)commands.size());
  297. for(std::vector<std::string>::iterator c(commands.begin());c!=commands.end();++c) {
  298. std::vector< Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> > resultPackets(encodeControlMessage(nc->_controlSocketKey,convId,nc->execute(c->c_str())));
  299. for(std::vector< Buffer<ZT_NODECONFIG_MAX_PACKET_SIZE> >::iterator p(resultPackets.begin());p!=resultPackets.end();++p)
  300. sock->send(remoteAddr,p->data(),p->size(),-1);
  301. }
  302. } catch (std::exception &exc) {
  303. TRACE("exception handling control bus packet from %s: %s",remoteAddr.toString().c_str(),exc.what());
  304. } catch ( ... ) {
  305. TRACE("exception handling control bus packet from %s: (unknown)",remoteAddr.toString().c_str());
  306. }
  307. }
  308. } // namespace ZeroTier