EmbeddedNetworkController.cpp 66 KB

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  1. /*
  2. * Copyright (c)2019 ZeroTier, Inc.
  3. *
  4. * Use of this software is governed by the Business Source License included
  5. * in the LICENSE.TXT file in the project's root directory.
  6. *
  7. * Change Date: 2025-01-01
  8. *
  9. * On the date above, in accordance with the Business Source License, use
  10. * of this software will be governed by version 2.0 of the Apache License.
  11. */
  12. /****/
  13. #include <stdint.h>
  14. #include <stdio.h>
  15. #include <stdlib.h>
  16. #include <string.h>
  17. #include <time.h>
  18. #ifndef _WIN32
  19. #include <sys/time.h>
  20. #endif
  21. #include <sys/types.h>
  22. #include <algorithm>
  23. #include <utility>
  24. #include <stdexcept>
  25. #include <map>
  26. #include <thread>
  27. #include <memory>
  28. #include <iomanip>
  29. #include <sstream>
  30. #include <cctype>
  31. #include "../include/ZeroTierOne.h"
  32. #include "../version.h"
  33. #include "EmbeddedNetworkController.hpp"
  34. #include "LFDB.hpp"
  35. #include "FileDB.hpp"
  36. #ifdef ZT_CONTROLLER_USE_LIBPQ
  37. #include "PostgreSQL.hpp"
  38. #endif
  39. #include "../node/Node.hpp"
  40. #include "../node/CertificateOfMembership.hpp"
  41. #include "../node/NetworkConfig.hpp"
  42. #include "../node/Dictionary.hpp"
  43. #include "../node/MAC.hpp"
  44. using json = nlohmann::json;
  45. // API version reported via JSON control plane
  46. #define ZT_NETCONF_CONTROLLER_API_VERSION 4
  47. // Min duration between requests for an address/nwid combo to prevent floods
  48. #define ZT_NETCONF_MIN_REQUEST_PERIOD 1000
  49. // Global maximum size of arrays in JSON objects
  50. #define ZT_CONTROLLER_MAX_ARRAY_SIZE 16384
  51. namespace ZeroTier {
  52. namespace {
  53. std::string url_encode(const std::string &value) {
  54. std::ostringstream escaped;
  55. escaped.fill('0');
  56. escaped << std::hex;
  57. for (std::string::const_iterator i = value.begin(), n = value.end(); i != n; ++i) {
  58. std::string::value_type c = (*i);
  59. // Keep alphanumeric and other accepted characters intact
  60. if (isalnum(c) || c == '-' || c == '_' || c == '.' || c == '~') {
  61. escaped << c;
  62. continue;
  63. }
  64. // Any other characters are percent-encoded
  65. escaped << std::uppercase;
  66. escaped << '%' << std::setw(2) << int((unsigned char) c);
  67. escaped << std::nouppercase;
  68. }
  69. return escaped.str();
  70. }
  71. static json _renderRule(ZT_VirtualNetworkRule &rule)
  72. {
  73. char tmp[128];
  74. json r = json::object();
  75. const ZT_VirtualNetworkRuleType rt = (ZT_VirtualNetworkRuleType)(rule.t & 0x3f);
  76. switch(rt) {
  77. case ZT_NETWORK_RULE_ACTION_DROP:
  78. r["type"] = "ACTION_DROP";
  79. break;
  80. case ZT_NETWORK_RULE_ACTION_ACCEPT:
  81. r["type"] = "ACTION_ACCEPT";
  82. break;
  83. case ZT_NETWORK_RULE_ACTION_TEE:
  84. r["type"] = "ACTION_TEE";
  85. r["address"] = Address(rule.v.fwd.address).toString(tmp);
  86. r["flags"] = (unsigned int)rule.v.fwd.flags;
  87. r["length"] = (unsigned int)rule.v.fwd.length;
  88. break;
  89. case ZT_NETWORK_RULE_ACTION_WATCH:
  90. r["type"] = "ACTION_WATCH";
  91. r["address"] = Address(rule.v.fwd.address).toString(tmp);
  92. r["flags"] = (unsigned int)rule.v.fwd.flags;
  93. r["length"] = (unsigned int)rule.v.fwd.length;
  94. break;
  95. case ZT_NETWORK_RULE_ACTION_REDIRECT:
  96. r["type"] = "ACTION_REDIRECT";
  97. r["address"] = Address(rule.v.fwd.address).toString(tmp);
  98. r["flags"] = (unsigned int)rule.v.fwd.flags;
  99. break;
  100. case ZT_NETWORK_RULE_ACTION_BREAK:
  101. r["type"] = "ACTION_BREAK";
  102. break;
  103. default:
  104. break;
  105. }
  106. if (r.empty()) {
  107. switch(rt) {
  108. case ZT_NETWORK_RULE_MATCH_SOURCE_ZEROTIER_ADDRESS:
  109. r["type"] = "MATCH_SOURCE_ZEROTIER_ADDRESS";
  110. r["zt"] = Address(rule.v.zt).toString(tmp);
  111. break;
  112. case ZT_NETWORK_RULE_MATCH_DEST_ZEROTIER_ADDRESS:
  113. r["type"] = "MATCH_DEST_ZEROTIER_ADDRESS";
  114. r["zt"] = Address(rule.v.zt).toString(tmp);
  115. break;
  116. case ZT_NETWORK_RULE_MATCH_VLAN_ID:
  117. r["type"] = "MATCH_VLAN_ID";
  118. r["vlanId"] = (unsigned int)rule.v.vlanId;
  119. break;
  120. case ZT_NETWORK_RULE_MATCH_VLAN_PCP:
  121. r["type"] = "MATCH_VLAN_PCP";
  122. r["vlanPcp"] = (unsigned int)rule.v.vlanPcp;
  123. break;
  124. case ZT_NETWORK_RULE_MATCH_VLAN_DEI:
  125. r["type"] = "MATCH_VLAN_DEI";
  126. r["vlanDei"] = (unsigned int)rule.v.vlanDei;
  127. break;
  128. case ZT_NETWORK_RULE_MATCH_MAC_SOURCE:
  129. r["type"] = "MATCH_MAC_SOURCE";
  130. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.2x:%.2x:%.2x:%.2x:%.2x:%.2x",(unsigned int)rule.v.mac[0],(unsigned int)rule.v.mac[1],(unsigned int)rule.v.mac[2],(unsigned int)rule.v.mac[3],(unsigned int)rule.v.mac[4],(unsigned int)rule.v.mac[5]);
  131. r["mac"] = tmp;
  132. break;
  133. case ZT_NETWORK_RULE_MATCH_MAC_DEST:
  134. r["type"] = "MATCH_MAC_DEST";
  135. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.2x:%.2x:%.2x:%.2x:%.2x:%.2x",(unsigned int)rule.v.mac[0],(unsigned int)rule.v.mac[1],(unsigned int)rule.v.mac[2],(unsigned int)rule.v.mac[3],(unsigned int)rule.v.mac[4],(unsigned int)rule.v.mac[5]);
  136. r["mac"] = tmp;
  137. break;
  138. case ZT_NETWORK_RULE_MATCH_IPV4_SOURCE:
  139. r["type"] = "MATCH_IPV4_SOURCE";
  140. r["ip"] = InetAddress(&(rule.v.ipv4.ip),4,(unsigned int)rule.v.ipv4.mask).toString(tmp);
  141. break;
  142. case ZT_NETWORK_RULE_MATCH_IPV4_DEST:
  143. r["type"] = "MATCH_IPV4_DEST";
  144. r["ip"] = InetAddress(&(rule.v.ipv4.ip),4,(unsigned int)rule.v.ipv4.mask).toString(tmp);
  145. break;
  146. case ZT_NETWORK_RULE_MATCH_IPV6_SOURCE:
  147. r["type"] = "MATCH_IPV6_SOURCE";
  148. r["ip"] = InetAddress(rule.v.ipv6.ip,16,(unsigned int)rule.v.ipv6.mask).toString(tmp);
  149. break;
  150. case ZT_NETWORK_RULE_MATCH_IPV6_DEST:
  151. r["type"] = "MATCH_IPV6_DEST";
  152. r["ip"] = InetAddress(rule.v.ipv6.ip,16,(unsigned int)rule.v.ipv6.mask).toString(tmp);
  153. break;
  154. case ZT_NETWORK_RULE_MATCH_IP_TOS:
  155. r["type"] = "MATCH_IP_TOS";
  156. r["mask"] = (unsigned int)rule.v.ipTos.mask;
  157. r["start"] = (unsigned int)rule.v.ipTos.value[0];
  158. r["end"] = (unsigned int)rule.v.ipTos.value[1];
  159. break;
  160. case ZT_NETWORK_RULE_MATCH_IP_PROTOCOL:
  161. r["type"] = "MATCH_IP_PROTOCOL";
  162. r["ipProtocol"] = (unsigned int)rule.v.ipProtocol;
  163. break;
  164. case ZT_NETWORK_RULE_MATCH_ETHERTYPE:
  165. r["type"] = "MATCH_ETHERTYPE";
  166. r["etherType"] = (unsigned int)rule.v.etherType;
  167. break;
  168. case ZT_NETWORK_RULE_MATCH_ICMP:
  169. r["type"] = "MATCH_ICMP";
  170. r["icmpType"] = (unsigned int)rule.v.icmp.type;
  171. if ((rule.v.icmp.flags & 0x01) != 0)
  172. r["icmpCode"] = (unsigned int)rule.v.icmp.code;
  173. else r["icmpCode"] = json();
  174. break;
  175. case ZT_NETWORK_RULE_MATCH_IP_SOURCE_PORT_RANGE:
  176. r["type"] = "MATCH_IP_SOURCE_PORT_RANGE";
  177. r["start"] = (unsigned int)rule.v.port[0];
  178. r["end"] = (unsigned int)rule.v.port[1];
  179. break;
  180. case ZT_NETWORK_RULE_MATCH_IP_DEST_PORT_RANGE:
  181. r["type"] = "MATCH_IP_DEST_PORT_RANGE";
  182. r["start"] = (unsigned int)rule.v.port[0];
  183. r["end"] = (unsigned int)rule.v.port[1];
  184. break;
  185. case ZT_NETWORK_RULE_MATCH_CHARACTERISTICS:
  186. r["type"] = "MATCH_CHARACTERISTICS";
  187. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.16llx",rule.v.characteristics);
  188. r["mask"] = tmp;
  189. break;
  190. case ZT_NETWORK_RULE_MATCH_FRAME_SIZE_RANGE:
  191. r["type"] = "MATCH_FRAME_SIZE_RANGE";
  192. r["start"] = (unsigned int)rule.v.frameSize[0];
  193. r["end"] = (unsigned int)rule.v.frameSize[1];
  194. break;
  195. case ZT_NETWORK_RULE_MATCH_RANDOM:
  196. r["type"] = "MATCH_RANDOM";
  197. r["probability"] = (unsigned long)rule.v.randomProbability;
  198. break;
  199. case ZT_NETWORK_RULE_MATCH_TAGS_DIFFERENCE:
  200. r["type"] = "MATCH_TAGS_DIFFERENCE";
  201. r["id"] = rule.v.tag.id;
  202. r["value"] = rule.v.tag.value;
  203. break;
  204. case ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_AND:
  205. r["type"] = "MATCH_TAGS_BITWISE_AND";
  206. r["id"] = rule.v.tag.id;
  207. r["value"] = rule.v.tag.value;
  208. break;
  209. case ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_OR:
  210. r["type"] = "MATCH_TAGS_BITWISE_OR";
  211. r["id"] = rule.v.tag.id;
  212. r["value"] = rule.v.tag.value;
  213. break;
  214. case ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_XOR:
  215. r["type"] = "MATCH_TAGS_BITWISE_XOR";
  216. r["id"] = rule.v.tag.id;
  217. r["value"] = rule.v.tag.value;
  218. break;
  219. case ZT_NETWORK_RULE_MATCH_TAGS_EQUAL:
  220. r["type"] = "MATCH_TAGS_EQUAL";
  221. r["id"] = rule.v.tag.id;
  222. r["value"] = rule.v.tag.value;
  223. break;
  224. case ZT_NETWORK_RULE_MATCH_TAG_SENDER:
  225. r["type"] = "MATCH_TAG_SENDER";
  226. r["id"] = rule.v.tag.id;
  227. r["value"] = rule.v.tag.value;
  228. break;
  229. case ZT_NETWORK_RULE_MATCH_TAG_RECEIVER:
  230. r["type"] = "MATCH_TAG_RECEIVER";
  231. r["id"] = rule.v.tag.id;
  232. r["value"] = rule.v.tag.value;
  233. break;
  234. case ZT_NETWORK_RULE_MATCH_INTEGER_RANGE:
  235. r["type"] = "INTEGER_RANGE";
  236. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.16llx",rule.v.intRange.start);
  237. r["start"] = tmp;
  238. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%.16llx",rule.v.intRange.start + (uint64_t)rule.v.intRange.end);
  239. r["end"] = tmp;
  240. r["idx"] = rule.v.intRange.idx;
  241. r["little"] = ((rule.v.intRange.format & 0x80) != 0);
  242. r["bits"] = (rule.v.intRange.format & 63) + 1;
  243. break;
  244. default:
  245. break;
  246. }
  247. if (!r.empty()) {
  248. r["not"] = ((rule.t & 0x80) != 0);
  249. r["or"] = ((rule.t & 0x40) != 0);
  250. }
  251. }
  252. return r;
  253. }
  254. static bool _parseRule(json &r,ZT_VirtualNetworkRule &rule)
  255. {
  256. if (!r.is_object())
  257. return false;
  258. const std::string t(OSUtils::jsonString(r["type"],""));
  259. memset(&rule,0,sizeof(ZT_VirtualNetworkRule));
  260. if (OSUtils::jsonBool(r["not"],false))
  261. rule.t = 0x80;
  262. else rule.t = 0x00;
  263. if (OSUtils::jsonBool(r["or"],false))
  264. rule.t |= 0x40;
  265. bool tag = false;
  266. if (t == "ACTION_DROP") {
  267. rule.t |= ZT_NETWORK_RULE_ACTION_DROP;
  268. return true;
  269. } else if (t == "ACTION_ACCEPT") {
  270. rule.t |= ZT_NETWORK_RULE_ACTION_ACCEPT;
  271. return true;
  272. } else if (t == "ACTION_TEE") {
  273. rule.t |= ZT_NETWORK_RULE_ACTION_TEE;
  274. rule.v.fwd.address = Utils::hexStrToU64(OSUtils::jsonString(r["address"],"0").c_str()) & 0xffffffffffULL;
  275. rule.v.fwd.flags = (uint32_t)(OSUtils::jsonInt(r["flags"],0ULL) & 0xffffffffULL);
  276. rule.v.fwd.length = (uint16_t)(OSUtils::jsonInt(r["length"],0ULL) & 0xffffULL);
  277. return true;
  278. } else if (t == "ACTION_WATCH") {
  279. rule.t |= ZT_NETWORK_RULE_ACTION_WATCH;
  280. rule.v.fwd.address = Utils::hexStrToU64(OSUtils::jsonString(r["address"],"0").c_str()) & 0xffffffffffULL;
  281. rule.v.fwd.flags = (uint32_t)(OSUtils::jsonInt(r["flags"],0ULL) & 0xffffffffULL);
  282. rule.v.fwd.length = (uint16_t)(OSUtils::jsonInt(r["length"],0ULL) & 0xffffULL);
  283. return true;
  284. } else if (t == "ACTION_REDIRECT") {
  285. rule.t |= ZT_NETWORK_RULE_ACTION_REDIRECT;
  286. rule.v.fwd.address = Utils::hexStrToU64(OSUtils::jsonString(r["address"],"0").c_str()) & 0xffffffffffULL;
  287. rule.v.fwd.flags = (uint32_t)(OSUtils::jsonInt(r["flags"],0ULL) & 0xffffffffULL);
  288. return true;
  289. } else if (t == "ACTION_BREAK") {
  290. rule.t |= ZT_NETWORK_RULE_ACTION_BREAK;
  291. return true;
  292. } else if (t == "MATCH_SOURCE_ZEROTIER_ADDRESS") {
  293. rule.t |= ZT_NETWORK_RULE_MATCH_SOURCE_ZEROTIER_ADDRESS;
  294. rule.v.zt = Utils::hexStrToU64(OSUtils::jsonString(r["zt"],"0").c_str()) & 0xffffffffffULL;
  295. return true;
  296. } else if (t == "MATCH_DEST_ZEROTIER_ADDRESS") {
  297. rule.t |= ZT_NETWORK_RULE_MATCH_DEST_ZEROTIER_ADDRESS;
  298. rule.v.zt = Utils::hexStrToU64(OSUtils::jsonString(r["zt"],"0").c_str()) & 0xffffffffffULL;
  299. return true;
  300. } else if (t == "MATCH_VLAN_ID") {
  301. rule.t |= ZT_NETWORK_RULE_MATCH_VLAN_ID;
  302. rule.v.vlanId = (uint16_t)(OSUtils::jsonInt(r["vlanId"],0ULL) & 0xffffULL);
  303. return true;
  304. } else if (t == "MATCH_VLAN_PCP") {
  305. rule.t |= ZT_NETWORK_RULE_MATCH_VLAN_PCP;
  306. rule.v.vlanPcp = (uint8_t)(OSUtils::jsonInt(r["vlanPcp"],0ULL) & 0xffULL);
  307. return true;
  308. } else if (t == "MATCH_VLAN_DEI") {
  309. rule.t |= ZT_NETWORK_RULE_MATCH_VLAN_DEI;
  310. rule.v.vlanDei = (uint8_t)(OSUtils::jsonInt(r["vlanDei"],0ULL) & 0xffULL);
  311. return true;
  312. } else if (t == "MATCH_MAC_SOURCE") {
  313. rule.t |= ZT_NETWORK_RULE_MATCH_MAC_SOURCE;
  314. const std::string mac(OSUtils::jsonString(r["mac"],"0"));
  315. Utils::unhex(mac.c_str(),(unsigned int)mac.length(),rule.v.mac,6);
  316. return true;
  317. } else if (t == "MATCH_MAC_DEST") {
  318. rule.t |= ZT_NETWORK_RULE_MATCH_MAC_DEST;
  319. const std::string mac(OSUtils::jsonString(r["mac"],"0"));
  320. Utils::unhex(mac.c_str(),(unsigned int)mac.length(),rule.v.mac,6);
  321. return true;
  322. } else if (t == "MATCH_IPV4_SOURCE") {
  323. rule.t |= ZT_NETWORK_RULE_MATCH_IPV4_SOURCE;
  324. InetAddress ip(OSUtils::jsonString(r["ip"],"0.0.0.0").c_str());
  325. rule.v.ipv4.ip = reinterpret_cast<struct sockaddr_in *>(&ip)->sin_addr.s_addr;
  326. rule.v.ipv4.mask = Utils::ntoh(reinterpret_cast<struct sockaddr_in *>(&ip)->sin_port) & 0xff;
  327. if (rule.v.ipv4.mask > 32) rule.v.ipv4.mask = 32;
  328. return true;
  329. } else if (t == "MATCH_IPV4_DEST") {
  330. rule.t |= ZT_NETWORK_RULE_MATCH_IPV4_DEST;
  331. InetAddress ip(OSUtils::jsonString(r["ip"],"0.0.0.0").c_str());
  332. rule.v.ipv4.ip = reinterpret_cast<struct sockaddr_in *>(&ip)->sin_addr.s_addr;
  333. rule.v.ipv4.mask = Utils::ntoh(reinterpret_cast<struct sockaddr_in *>(&ip)->sin_port) & 0xff;
  334. if (rule.v.ipv4.mask > 32) rule.v.ipv4.mask = 32;
  335. return true;
  336. } else if (t == "MATCH_IPV6_SOURCE") {
  337. rule.t |= ZT_NETWORK_RULE_MATCH_IPV6_SOURCE;
  338. InetAddress ip(OSUtils::jsonString(r["ip"],"::0").c_str());
  339. memcpy(rule.v.ipv6.ip,reinterpret_cast<struct sockaddr_in6 *>(&ip)->sin6_addr.s6_addr,16);
  340. rule.v.ipv6.mask = Utils::ntoh(reinterpret_cast<struct sockaddr_in6 *>(&ip)->sin6_port) & 0xff;
  341. if (rule.v.ipv6.mask > 128) rule.v.ipv6.mask = 128;
  342. return true;
  343. } else if (t == "MATCH_IPV6_DEST") {
  344. rule.t |= ZT_NETWORK_RULE_MATCH_IPV6_DEST;
  345. InetAddress ip(OSUtils::jsonString(r["ip"],"::0").c_str());
  346. memcpy(rule.v.ipv6.ip,reinterpret_cast<struct sockaddr_in6 *>(&ip)->sin6_addr.s6_addr,16);
  347. rule.v.ipv6.mask = Utils::ntoh(reinterpret_cast<struct sockaddr_in6 *>(&ip)->sin6_port) & 0xff;
  348. if (rule.v.ipv6.mask > 128) rule.v.ipv6.mask = 128;
  349. return true;
  350. } else if (t == "MATCH_IP_TOS") {
  351. rule.t |= ZT_NETWORK_RULE_MATCH_IP_TOS;
  352. rule.v.ipTos.mask = (uint8_t)(OSUtils::jsonInt(r["mask"],0ULL) & 0xffULL);
  353. rule.v.ipTos.value[0] = (uint8_t)(OSUtils::jsonInt(r["start"],0ULL) & 0xffULL);
  354. rule.v.ipTos.value[1] = (uint8_t)(OSUtils::jsonInt(r["end"],0ULL) & 0xffULL);
  355. return true;
  356. } else if (t == "MATCH_IP_PROTOCOL") {
  357. rule.t |= ZT_NETWORK_RULE_MATCH_IP_PROTOCOL;
  358. rule.v.ipProtocol = (uint8_t)(OSUtils::jsonInt(r["ipProtocol"],0ULL) & 0xffULL);
  359. return true;
  360. } else if (t == "MATCH_ETHERTYPE") {
  361. rule.t |= ZT_NETWORK_RULE_MATCH_ETHERTYPE;
  362. rule.v.etherType = (uint16_t)(OSUtils::jsonInt(r["etherType"],0ULL) & 0xffffULL);
  363. return true;
  364. } else if (t == "MATCH_ICMP") {
  365. rule.t |= ZT_NETWORK_RULE_MATCH_ICMP;
  366. rule.v.icmp.type = (uint8_t)(OSUtils::jsonInt(r["icmpType"],0ULL) & 0xffULL);
  367. json &code = r["icmpCode"];
  368. if (code.is_null()) {
  369. rule.v.icmp.code = 0;
  370. rule.v.icmp.flags = 0x00;
  371. } else {
  372. rule.v.icmp.code = (uint8_t)(OSUtils::jsonInt(code,0ULL) & 0xffULL);
  373. rule.v.icmp.flags = 0x01;
  374. }
  375. return true;
  376. } else if (t == "MATCH_IP_SOURCE_PORT_RANGE") {
  377. rule.t |= ZT_NETWORK_RULE_MATCH_IP_SOURCE_PORT_RANGE;
  378. rule.v.port[0] = (uint16_t)(OSUtils::jsonInt(r["start"],0ULL) & 0xffffULL);
  379. rule.v.port[1] = (uint16_t)(OSUtils::jsonInt(r["end"],(uint64_t)rule.v.port[0]) & 0xffffULL);
  380. return true;
  381. } else if (t == "MATCH_IP_DEST_PORT_RANGE") {
  382. rule.t |= ZT_NETWORK_RULE_MATCH_IP_DEST_PORT_RANGE;
  383. rule.v.port[0] = (uint16_t)(OSUtils::jsonInt(r["start"],0ULL) & 0xffffULL);
  384. rule.v.port[1] = (uint16_t)(OSUtils::jsonInt(r["end"],(uint64_t)rule.v.port[0]) & 0xffffULL);
  385. return true;
  386. } else if (t == "MATCH_CHARACTERISTICS") {
  387. rule.t |= ZT_NETWORK_RULE_MATCH_CHARACTERISTICS;
  388. if (r.count("mask")) {
  389. json &v = r["mask"];
  390. if (v.is_number()) {
  391. rule.v.characteristics = v;
  392. } else {
  393. std::string tmp = v;
  394. rule.v.characteristics = Utils::hexStrToU64(tmp.c_str());
  395. }
  396. }
  397. return true;
  398. } else if (t == "MATCH_FRAME_SIZE_RANGE") {
  399. rule.t |= ZT_NETWORK_RULE_MATCH_FRAME_SIZE_RANGE;
  400. rule.v.frameSize[0] = (uint16_t)(OSUtils::jsonInt(r["start"],0ULL) & 0xffffULL);
  401. rule.v.frameSize[1] = (uint16_t)(OSUtils::jsonInt(r["end"],(uint64_t)rule.v.frameSize[0]) & 0xffffULL);
  402. return true;
  403. } else if (t == "MATCH_RANDOM") {
  404. rule.t |= ZT_NETWORK_RULE_MATCH_RANDOM;
  405. rule.v.randomProbability = (uint32_t)(OSUtils::jsonInt(r["probability"],0ULL) & 0xffffffffULL);
  406. return true;
  407. } else if (t == "MATCH_TAGS_DIFFERENCE") {
  408. rule.t |= ZT_NETWORK_RULE_MATCH_TAGS_DIFFERENCE;
  409. tag = true;
  410. } else if (t == "MATCH_TAGS_BITWISE_AND") {
  411. rule.t |= ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_AND;
  412. tag = true;
  413. } else if (t == "MATCH_TAGS_BITWISE_OR") {
  414. rule.t |= ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_OR;
  415. tag = true;
  416. } else if (t == "MATCH_TAGS_BITWISE_XOR") {
  417. rule.t |= ZT_NETWORK_RULE_MATCH_TAGS_BITWISE_XOR;
  418. tag = true;
  419. } else if (t == "MATCH_TAGS_EQUAL") {
  420. rule.t |= ZT_NETWORK_RULE_MATCH_TAGS_EQUAL;
  421. tag = true;
  422. } else if (t == "MATCH_TAG_SENDER") {
  423. rule.t |= ZT_NETWORK_RULE_MATCH_TAG_SENDER;
  424. tag = true;
  425. } else if (t == "MATCH_TAG_RECEIVER") {
  426. rule.t |= ZT_NETWORK_RULE_MATCH_TAG_RECEIVER;
  427. tag = true;
  428. } else if (t == "INTEGER_RANGE") {
  429. json &s = r["start"];
  430. if (s.is_string()) {
  431. std::string tmp = s;
  432. rule.v.intRange.start = Utils::hexStrToU64(tmp.c_str());
  433. } else {
  434. rule.v.intRange.start = OSUtils::jsonInt(s,0ULL);
  435. }
  436. json &e = r["end"];
  437. if (e.is_string()) {
  438. std::string tmp = e;
  439. rule.v.intRange.end = (uint32_t)(Utils::hexStrToU64(tmp.c_str()) - rule.v.intRange.start);
  440. } else {
  441. rule.v.intRange.end = (uint32_t)(OSUtils::jsonInt(e,0ULL) - rule.v.intRange.start);
  442. }
  443. rule.v.intRange.idx = (uint16_t)OSUtils::jsonInt(r["idx"],0ULL);
  444. rule.v.intRange.format = (OSUtils::jsonBool(r["little"],false)) ? 0x80 : 0x00;
  445. rule.v.intRange.format |= (uint8_t)((OSUtils::jsonInt(r["bits"],1ULL) - 1) & 63);
  446. }
  447. if (tag) {
  448. rule.v.tag.id = (uint32_t)(OSUtils::jsonInt(r["id"],0ULL) & 0xffffffffULL);
  449. rule.v.tag.value = (uint32_t)(OSUtils::jsonInt(r["value"],0ULL) & 0xffffffffULL);
  450. return true;
  451. }
  452. return false;
  453. }
  454. } // anonymous namespace
  455. EmbeddedNetworkController::EmbeddedNetworkController(Node *node,const char *ztPath,const char *dbPath, int listenPort, RedisConfig *rc) :
  456. _startTime(OSUtils::now()),
  457. _listenPort(listenPort),
  458. _node(node),
  459. _ztPath(ztPath),
  460. _path(dbPath),
  461. _sender((NetworkController::Sender *)0),
  462. _db(this),
  463. _rc(rc)
  464. {
  465. }
  466. EmbeddedNetworkController::~EmbeddedNetworkController()
  467. {
  468. std::lock_guard<std::mutex> l(_threads_l);
  469. _queue.stop();
  470. for(auto t=_threads.begin();t!=_threads.end();++t)
  471. t->join();
  472. }
  473. void EmbeddedNetworkController::setSSORedirectURL(const std::string &url) {
  474. _ssoRedirectURL = url_encode(url);
  475. }
  476. void EmbeddedNetworkController::init(const Identity &signingId,Sender *sender)
  477. {
  478. char tmp[64];
  479. _signingId = signingId;
  480. _sender = sender;
  481. _signingIdAddressString = signingId.address().toString(tmp);
  482. #ifdef ZT_CONTROLLER_USE_LIBPQ
  483. if ((_path.length() > 9)&&(_path.substr(0,9) == "postgres:")) {
  484. _db.addDB(std::shared_ptr<DB>(new PostgreSQL(_signingId,_path.substr(9).c_str(), _listenPort, _rc)));
  485. } else {
  486. #endif
  487. _db.addDB(std::shared_ptr<DB>(new FileDB(_path.c_str())));
  488. #ifdef ZT_CONTROLLER_USE_LIBPQ
  489. }
  490. #endif
  491. std::string lfJSON;
  492. OSUtils::readFile((_ztPath + ZT_PATH_SEPARATOR_S "local.conf").c_str(),lfJSON);
  493. if (lfJSON.length() > 0) {
  494. nlohmann::json lfConfig(OSUtils::jsonParse(lfJSON));
  495. nlohmann::json &settings = lfConfig["settings"];
  496. if (settings.is_object()) {
  497. nlohmann::json &controllerDb = settings["controllerDb"];
  498. if (controllerDb.is_object()) {
  499. std::string type = controllerDb["type"];
  500. if (type == "lf") {
  501. std::string lfOwner = controllerDb["owner"];
  502. std::string lfHost = controllerDb["host"];
  503. int lfPort = controllerDb["port"];
  504. bool storeOnlineState = controllerDb["storeOnlineState"];
  505. if ((lfOwner.length())&&(lfHost.length())&&(lfPort > 0)&&(lfPort < 65536)) {
  506. std::size_t pubHdrLoc = lfOwner.find("Public: ");
  507. if ((pubHdrLoc > 0)&&((pubHdrLoc + 8) < lfOwner.length())) {
  508. std::string lfOwnerPublic = lfOwner.substr(pubHdrLoc + 8);
  509. std::size_t pubHdrEnd = lfOwnerPublic.find_first_of("\n\r\t ");
  510. if (pubHdrEnd != std::string::npos) {
  511. lfOwnerPublic = lfOwnerPublic.substr(0,pubHdrEnd);
  512. _db.addDB(std::shared_ptr<DB>(new LFDB(_signingId,_path.c_str(),lfOwner.c_str(),lfOwnerPublic.c_str(),lfHost.c_str(),lfPort,storeOnlineState)));
  513. }
  514. }
  515. }
  516. }
  517. }
  518. }
  519. }
  520. _db.waitForReady();
  521. }
  522. void EmbeddedNetworkController::request(
  523. uint64_t nwid,
  524. const InetAddress &fromAddr,
  525. uint64_t requestPacketId,
  526. const Identity &identity,
  527. const Dictionary<ZT_NETWORKCONFIG_METADATA_DICT_CAPACITY> &metaData)
  528. {
  529. if (((!_signingId)||(!_signingId.hasPrivate()))||(_signingId.address().toInt() != (nwid >> 24))||(!_sender))
  530. return;
  531. _startThreads();
  532. _RQEntry *qe = new _RQEntry;
  533. qe->nwid = nwid;
  534. qe->requestPacketId = requestPacketId;
  535. qe->fromAddr = fromAddr;
  536. qe->identity = identity;
  537. qe->metaData = metaData;
  538. qe->type = _RQEntry::RQENTRY_TYPE_REQUEST;
  539. _queue.post(qe);
  540. }
  541. unsigned int EmbeddedNetworkController::handleControlPlaneHttpGET(
  542. const std::vector<std::string> &path,
  543. const std::map<std::string,std::string> &urlArgs,
  544. const std::map<std::string,std::string> &headers,
  545. const std::string &body,
  546. std::string &responseBody,
  547. std::string &responseContentType)
  548. {
  549. if ((!path.empty())&&(path[0] == "network")) {
  550. if ((path.size() >= 2)&&(path[1].length() == 16)) {
  551. const uint64_t nwid = Utils::hexStrToU64(path[1].c_str());
  552. json network;
  553. if (!_db.get(nwid,network))
  554. return 404;
  555. if (path.size() >= 3) {
  556. if (path[2] == "member") {
  557. if (path.size() >= 4) {
  558. // Get member
  559. const uint64_t address = Utils::hexStrToU64(path[3].c_str());
  560. json member;
  561. if (!_db.get(nwid,network,address,member))
  562. return 404;
  563. responseBody = OSUtils::jsonDump(member);
  564. responseContentType = "application/json";
  565. } else {
  566. // List members and their revisions
  567. responseBody = "{";
  568. std::vector<json> members;
  569. if (_db.get(nwid,network,members)) {
  570. responseBody.reserve((members.size() + 2) * 32);
  571. std::string mid;
  572. for(auto member=members.begin();member!=members.end();++member) {
  573. mid = OSUtils::jsonString((*member)["id"], "");
  574. char tmp[128];
  575. OSUtils::ztsnprintf(tmp,sizeof(tmp),"%s\"%s\":%llu",(responseBody.length() > 1) ? "," : "",mid.c_str(),(unsigned long long)OSUtils::jsonInt((*member)["revision"],0));
  576. responseBody.append(tmp);
  577. }
  578. }
  579. responseBody.push_back('}');
  580. responseContentType = "application/json";
  581. }
  582. return 200;
  583. } // else 404
  584. } else {
  585. // Get network
  586. responseBody = OSUtils::jsonDump(network);
  587. responseContentType = "application/json";
  588. return 200;
  589. }
  590. } else if (path.size() == 1) {
  591. // List networks
  592. std::set<uint64_t> networkIds;
  593. _db.networks(networkIds);
  594. char tmp[64];
  595. responseBody = "[";
  596. responseBody.reserve((networkIds.size() + 1) * 24);
  597. for(std::set<uint64_t>::const_iterator i(networkIds.begin());i!=networkIds.end();++i) {
  598. if (responseBody.length() > 1)
  599. responseBody.push_back(',');
  600. OSUtils::ztsnprintf(tmp,sizeof(tmp),"\"%.16llx\"",(unsigned long long)*i);
  601. responseBody.append(tmp);
  602. }
  603. responseBody.push_back(']');
  604. responseContentType = "application/json";
  605. return 200;
  606. } // else 404
  607. } else {
  608. // Controller status
  609. char tmp[4096];
  610. const bool dbOk = _db.isReady();
  611. OSUtils::ztsnprintf(tmp,sizeof(tmp),"{\n\t\"controller\": true,\n\t\"apiVersion\": %d,\n\t\"clock\": %llu,\n\t\"databaseReady\": %s\n}\n",ZT_NETCONF_CONTROLLER_API_VERSION,(unsigned long long)OSUtils::now(),dbOk ? "true" : "false");
  612. responseBody = tmp;
  613. responseContentType = "application/json";
  614. return dbOk ? 200 : 503;
  615. }
  616. return 404;
  617. }
  618. unsigned int EmbeddedNetworkController::handleControlPlaneHttpPOST(
  619. const std::vector<std::string> &path,
  620. const std::map<std::string,std::string> &urlArgs,
  621. const std::map<std::string,std::string> &headers,
  622. const std::string &body,
  623. std::string &responseBody,
  624. std::string &responseContentType)
  625. {
  626. if (path.empty())
  627. return 404;
  628. json b;
  629. try {
  630. b = OSUtils::jsonParse(body);
  631. if (!b.is_object()) {
  632. responseBody = "{ \"message\": \"body is not a JSON object\" }";
  633. responseContentType = "application/json";
  634. return 400;
  635. }
  636. } catch ( ... ) {
  637. responseBody = "{ \"message\": \"body JSON is invalid\" }";
  638. responseContentType = "application/json";
  639. return 400;
  640. }
  641. const int64_t now = OSUtils::now();
  642. if (path[0] == "network") {
  643. if ((path.size() >= 2)&&(path[1].length() == 16)) {
  644. uint64_t nwid = Utils::hexStrToU64(path[1].c_str());
  645. char nwids[24];
  646. OSUtils::ztsnprintf(nwids,sizeof(nwids),"%.16llx",(unsigned long long)nwid);
  647. if (path.size() >= 3) {
  648. if ((path.size() == 4)&&(path[2] == "member")&&(path[3].length() == 10)) {
  649. uint64_t address = Utils::hexStrToU64(path[3].c_str());
  650. char addrs[24];
  651. OSUtils::ztsnprintf(addrs,sizeof(addrs),"%.10llx",(unsigned long long)address);
  652. json member,network;
  653. _db.get(nwid,network,address,member);
  654. DB::initMember(member);
  655. try {
  656. if (b.count("activeBridge")) member["activeBridge"] = OSUtils::jsonBool(b["activeBridge"], false);
  657. if (b.count("noAutoAssignIps")) member["noAutoAssignIps"] = OSUtils::jsonBool(b["noAutoAssignIps"], false);
  658. if (b.count("authenticationExpiryTime")) member["authenticationExpiryTime"] = (uint64_t)OSUtils::jsonInt(b["authenticationExpiryTime"], 0ULL);
  659. if (b.count("authenticationURL")) member["authenticationURL"] = OSUtils::jsonString(b["authenticationURL"], "");
  660. if (b.count("remoteTraceTarget")) {
  661. const std::string rtt(OSUtils::jsonString(b["remoteTraceTarget"],""));
  662. if (rtt.length() == 10) {
  663. member["remoteTraceTarget"] = rtt;
  664. } else {
  665. member["remoteTraceTarget"] = json();
  666. }
  667. }
  668. if (b.count("remoteTraceLevel")) member["remoteTraceLevel"] = OSUtils::jsonInt(b["remoteTraceLevel"],0ULL);
  669. if (b.count("authorized")) {
  670. const bool newAuth = OSUtils::jsonBool(b["authorized"],false);
  671. if (newAuth != OSUtils::jsonBool(member["authorized"],false)) {
  672. member["authorized"] = newAuth;
  673. member[((newAuth) ? "lastAuthorizedTime" : "lastDeauthorizedTime")] = now;
  674. if (newAuth) {
  675. member["lastAuthorizedCredentialType"] = "api";
  676. member["lastAuthorizedCredential"] = json();
  677. }
  678. }
  679. }
  680. if (b.count("ipAssignments")) {
  681. json &ipa = b["ipAssignments"];
  682. if (ipa.is_array()) {
  683. json mipa(json::array());
  684. for(unsigned long i=0;i<ipa.size();++i) {
  685. std::string ips = ipa[i];
  686. InetAddress ip(ips.c_str());
  687. if ((ip.ss_family == AF_INET)||(ip.ss_family == AF_INET6)) {
  688. char tmpip[64];
  689. mipa.push_back(ip.toIpString(tmpip));
  690. if (mipa.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  691. break;
  692. }
  693. }
  694. member["ipAssignments"] = mipa;
  695. }
  696. }
  697. if (b.count("tags")) {
  698. json &tags = b["tags"];
  699. if (tags.is_array()) {
  700. std::map<uint64_t,uint64_t> mtags;
  701. for(unsigned long i=0;i<tags.size();++i) {
  702. json &tag = tags[i];
  703. if ((tag.is_array())&&(tag.size() == 2))
  704. mtags[OSUtils::jsonInt(tag[0],0ULL) & 0xffffffffULL] = OSUtils::jsonInt(tag[1],0ULL) & 0xffffffffULL;
  705. }
  706. json mtagsa = json::array();
  707. for(std::map<uint64_t,uint64_t>::iterator t(mtags.begin());t!=mtags.end();++t) {
  708. json ta = json::array();
  709. ta.push_back(t->first);
  710. ta.push_back(t->second);
  711. mtagsa.push_back(ta);
  712. if (mtagsa.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  713. break;
  714. }
  715. member["tags"] = mtagsa;
  716. }
  717. }
  718. if (b.count("capabilities")) {
  719. json &capabilities = b["capabilities"];
  720. if (capabilities.is_array()) {
  721. json mcaps = json::array();
  722. for(unsigned long i=0;i<capabilities.size();++i) {
  723. mcaps.push_back(OSUtils::jsonInt(capabilities[i],0ULL));
  724. if (mcaps.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  725. break;
  726. }
  727. std::sort(mcaps.begin(),mcaps.end());
  728. mcaps.erase(std::unique(mcaps.begin(),mcaps.end()),mcaps.end());
  729. member["capabilities"] = mcaps;
  730. }
  731. }
  732. } catch ( ... ) {
  733. responseBody = "{ \"message\": \"exception while processing parameters in JSON body\" }";
  734. responseContentType = "application/json";
  735. return 400;
  736. }
  737. member["id"] = addrs;
  738. member["address"] = addrs; // legacy
  739. member["nwid"] = nwids;
  740. DB::cleanMember(member);
  741. _db.save(member,true);
  742. responseBody = OSUtils::jsonDump(member);
  743. responseContentType = "application/json";
  744. return 200;
  745. } // else 404
  746. } else {
  747. // POST to network ID
  748. // Magic ID ending with ______ picks a random unused network ID
  749. if (path[1].substr(10) == "______") {
  750. nwid = 0;
  751. uint64_t nwidPrefix = (Utils::hexStrToU64(path[1].substr(0,10).c_str()) << 24) & 0xffffffffff000000ULL;
  752. uint64_t nwidPostfix = 0;
  753. for(unsigned long k=0;k<100000;++k) { // sanity limit on trials
  754. Utils::getSecureRandom(&nwidPostfix,sizeof(nwidPostfix));
  755. uint64_t tryNwid = nwidPrefix | (nwidPostfix & 0xffffffULL);
  756. if ((tryNwid & 0xffffffULL) == 0ULL) tryNwid |= 1ULL;
  757. if (!_db.hasNetwork(tryNwid)) {
  758. nwid = tryNwid;
  759. break;
  760. }
  761. }
  762. if (!nwid)
  763. return 503;
  764. }
  765. OSUtils::ztsnprintf(nwids,sizeof(nwids),"%.16llx",(unsigned long long)nwid);
  766. json network;
  767. _db.get(nwid,network);
  768. DB::initNetwork(network);
  769. try {
  770. if (b.count("name")) network["name"] = OSUtils::jsonString(b["name"],"");
  771. if (b.count("private")) network["private"] = OSUtils::jsonBool(b["private"],true);
  772. if (b.count("enableBroadcast")) network["enableBroadcast"] = OSUtils::jsonBool(b["enableBroadcast"],false);
  773. if (b.count("multicastLimit")) network["multicastLimit"] = OSUtils::jsonInt(b["multicastLimit"],32ULL);
  774. if (b.count("mtu")) network["mtu"] = std::max(std::min((unsigned int)OSUtils::jsonInt(b["mtu"],ZT_DEFAULT_MTU),(unsigned int)ZT_MAX_MTU),(unsigned int)ZT_MIN_MTU);
  775. if (b.count("remoteTraceTarget")) {
  776. const std::string rtt(OSUtils::jsonString(b["remoteTraceTarget"],""));
  777. if (rtt.length() == 10) {
  778. network["remoteTraceTarget"] = rtt;
  779. } else {
  780. network["remoteTraceTarget"] = json();
  781. }
  782. }
  783. if (b.count("remoteTraceLevel")) network["remoteTraceLevel"] = OSUtils::jsonInt(b["remoteTraceLevel"],0ULL);
  784. if (b.count("v4AssignMode")) {
  785. json nv4m;
  786. json &v4m = b["v4AssignMode"];
  787. if (v4m.is_string()) { // backward compatibility
  788. nv4m["zt"] = (OSUtils::jsonString(v4m,"") == "zt");
  789. } else if (v4m.is_object()) {
  790. nv4m["zt"] = OSUtils::jsonBool(v4m["zt"],false);
  791. } else nv4m["zt"] = false;
  792. network["v4AssignMode"] = nv4m;
  793. }
  794. if (b.count("v6AssignMode")) {
  795. json nv6m;
  796. json &v6m = b["v6AssignMode"];
  797. if (!nv6m.is_object()) nv6m = json::object();
  798. if (v6m.is_string()) { // backward compatibility
  799. std::vector<std::string> v6ms(OSUtils::split(OSUtils::jsonString(v6m,"").c_str(),",","",""));
  800. std::sort(v6ms.begin(),v6ms.end());
  801. v6ms.erase(std::unique(v6ms.begin(),v6ms.end()),v6ms.end());
  802. nv6m["rfc4193"] = false;
  803. nv6m["zt"] = false;
  804. nv6m["6plane"] = false;
  805. for(std::vector<std::string>::iterator i(v6ms.begin());i!=v6ms.end();++i) {
  806. if (*i == "rfc4193")
  807. nv6m["rfc4193"] = true;
  808. else if (*i == "zt")
  809. nv6m["zt"] = true;
  810. else if (*i == "6plane")
  811. nv6m["6plane"] = true;
  812. }
  813. } else if (v6m.is_object()) {
  814. if (v6m.count("rfc4193")) nv6m["rfc4193"] = OSUtils::jsonBool(v6m["rfc4193"],false);
  815. if (v6m.count("zt")) nv6m["zt"] = OSUtils::jsonBool(v6m["zt"],false);
  816. if (v6m.count("6plane")) nv6m["6plane"] = OSUtils::jsonBool(v6m["6plane"],false);
  817. } else {
  818. nv6m["rfc4193"] = false;
  819. nv6m["zt"] = false;
  820. nv6m["6plane"] = false;
  821. }
  822. network["v6AssignMode"] = nv6m;
  823. }
  824. if (b.count("routes")) {
  825. json &rts = b["routes"];
  826. if (rts.is_array()) {
  827. json nrts = json::array();
  828. for(unsigned long i=0;i<rts.size();++i) {
  829. json &rt = rts[i];
  830. if (rt.is_object()) {
  831. json &target = rt["target"];
  832. json &via = rt["via"];
  833. if (target.is_string()) {
  834. InetAddress t(target.get<std::string>().c_str());
  835. InetAddress v;
  836. if (via.is_string()) v.fromString(via.get<std::string>().c_str());
  837. if ( ((t.ss_family == AF_INET)||(t.ss_family == AF_INET6)) && (t.netmaskBitsValid()) ) {
  838. json tmp;
  839. char tmp2[64];
  840. tmp["target"] = t.toString(tmp2);
  841. if (v.ss_family == t.ss_family)
  842. tmp["via"] = v.toIpString(tmp2);
  843. else tmp["via"] = json();
  844. nrts.push_back(tmp);
  845. if (nrts.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  846. break;
  847. }
  848. }
  849. }
  850. }
  851. network["routes"] = nrts;
  852. }
  853. }
  854. if (b.count("ipAssignmentPools")) {
  855. json &ipp = b["ipAssignmentPools"];
  856. if (ipp.is_array()) {
  857. json nipp = json::array();
  858. for(unsigned long i=0;i<ipp.size();++i) {
  859. json &ip = ipp[i];
  860. if ((ip.is_object())&&(ip.count("ipRangeStart"))&&(ip.count("ipRangeEnd"))) {
  861. InetAddress f(OSUtils::jsonString(ip["ipRangeStart"],"").c_str());
  862. InetAddress t(OSUtils::jsonString(ip["ipRangeEnd"],"").c_str());
  863. if ( ((f.ss_family == AF_INET)||(f.ss_family == AF_INET6)) && (f.ss_family == t.ss_family) ) {
  864. json tmp = json::object();
  865. char tmp2[64];
  866. tmp["ipRangeStart"] = f.toIpString(tmp2);
  867. tmp["ipRangeEnd"] = t.toIpString(tmp2);
  868. nipp.push_back(tmp);
  869. if (nipp.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  870. break;
  871. }
  872. }
  873. }
  874. network["ipAssignmentPools"] = nipp;
  875. }
  876. }
  877. if (b.count("rules")) {
  878. json &rules = b["rules"];
  879. if (rules.is_array()) {
  880. json nrules = json::array();
  881. for(unsigned long i=0;i<rules.size();++i) {
  882. json &rule = rules[i];
  883. if (rule.is_object()) {
  884. ZT_VirtualNetworkRule ztr;
  885. if (_parseRule(rule,ztr)) {
  886. nrules.push_back(_renderRule(ztr));
  887. if (nrules.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  888. break;
  889. }
  890. }
  891. }
  892. network["rules"] = nrules;
  893. }
  894. }
  895. if (b.count("authTokens")) {
  896. json &authTokens = b["authTokens"];
  897. if (authTokens.is_object()) {
  898. json nat;
  899. for(json::iterator t(authTokens.begin());t!=authTokens.end();++t) {
  900. if ((t.value().is_number())&&(t.value() >= 0))
  901. nat[t.key()] = t.value();
  902. }
  903. network["authTokens"] = nat;
  904. } else {
  905. network["authTokens"] = {{}};
  906. }
  907. }
  908. if (b.count("capabilities")) {
  909. json &capabilities = b["capabilities"];
  910. if (capabilities.is_array()) {
  911. std::map< uint64_t,json > ncaps;
  912. for(unsigned long i=0;i<capabilities.size();++i) {
  913. json &cap = capabilities[i];
  914. if (cap.is_object()) {
  915. json ncap = json::object();
  916. const uint64_t capId = OSUtils::jsonInt(cap["id"],0ULL);
  917. ncap["id"] = capId;
  918. ncap["default"] = OSUtils::jsonBool(cap["default"],false);
  919. json &rules = cap["rules"];
  920. json nrules = json::array();
  921. if (rules.is_array()) {
  922. for(unsigned long i=0;i<rules.size();++i) {
  923. json &rule = rules[i];
  924. if (rule.is_object()) {
  925. ZT_VirtualNetworkRule ztr;
  926. if (_parseRule(rule,ztr)) {
  927. nrules.push_back(_renderRule(ztr));
  928. if (nrules.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  929. break;
  930. }
  931. }
  932. }
  933. }
  934. ncap["rules"] = nrules;
  935. ncaps[capId] = ncap;
  936. }
  937. }
  938. json ncapsa = json::array();
  939. for(std::map< uint64_t,json >::iterator c(ncaps.begin());c!=ncaps.end();++c) {
  940. ncapsa.push_back(c->second);
  941. if (ncapsa.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  942. break;
  943. }
  944. network["capabilities"] = ncapsa;
  945. }
  946. }
  947. if (b.count("tags")) {
  948. json &tags = b["tags"];
  949. if (tags.is_array()) {
  950. std::map< uint64_t,json > ntags;
  951. for(unsigned long i=0;i<tags.size();++i) {
  952. json &tag = tags[i];
  953. if (tag.is_object()) {
  954. json ntag = json::object();
  955. const uint64_t tagId = OSUtils::jsonInt(tag["id"],0ULL);
  956. ntag["id"] = tagId;
  957. json &dfl = tag["default"];
  958. if (dfl.is_null())
  959. ntag["default"] = dfl;
  960. else ntag["default"] = OSUtils::jsonInt(dfl,0ULL);
  961. ntags[tagId] = ntag;
  962. }
  963. }
  964. json ntagsa = json::array();
  965. for(std::map< uint64_t,json >::iterator t(ntags.begin());t!=ntags.end();++t) {
  966. ntagsa.push_back(t->second);
  967. if (ntagsa.size() >= ZT_CONTROLLER_MAX_ARRAY_SIZE)
  968. break;
  969. }
  970. network["tags"] = ntagsa;
  971. }
  972. }
  973. if (b.count("dns")) {
  974. json &dns = b["dns"];
  975. if (dns.is_object()) {
  976. json nd;
  977. nd["domain"] = dns["domain"];
  978. json &srv = dns["servers"];
  979. if (srv.is_array()) {
  980. json ns = json::array();
  981. for(unsigned int i=0;i<srv.size();++i) {
  982. ns.push_back(srv[i]);
  983. }
  984. nd["servers"] = ns;
  985. }
  986. network["dns"] = nd;
  987. }
  988. }
  989. } catch ( ... ) {
  990. responseBody = "{ \"message\": \"exception occurred while parsing body variables\" }";
  991. responseContentType = "application/json";
  992. return 400;
  993. }
  994. network["id"] = nwids;
  995. network["nwid"] = nwids; // legacy
  996. DB::cleanNetwork(network);
  997. _db.save(network,true);
  998. responseBody = OSUtils::jsonDump(network);
  999. responseContentType = "application/json";
  1000. return 200;
  1001. } // else 404
  1002. } // else 404
  1003. }
  1004. return 404;
  1005. }
  1006. unsigned int EmbeddedNetworkController::handleControlPlaneHttpDELETE(
  1007. const std::vector<std::string> &path,
  1008. const std::map<std::string,std::string> &urlArgs,
  1009. const std::map<std::string,std::string> &headers,
  1010. const std::string &body,
  1011. std::string &responseBody,
  1012. std::string &responseContentType)
  1013. {
  1014. if (path.empty())
  1015. return 404;
  1016. if (path[0] == "network") {
  1017. if ((path.size() >= 2)&&(path[1].length() == 16)) {
  1018. const uint64_t nwid = Utils::hexStrToU64(path[1].c_str());
  1019. if (path.size() >= 3) {
  1020. if ((path.size() == 4)&&(path[2] == "member")&&(path[3].length() == 10)) {
  1021. const uint64_t address = Utils::hexStrToU64(path[3].c_str());
  1022. json network,member;
  1023. _db.get(nwid,network,address,member);
  1024. _db.eraseMember(nwid, address);
  1025. {
  1026. std::lock_guard<std::mutex> l(_memberStatus_l);
  1027. _memberStatus.erase(_MemberStatusKey(nwid,address));
  1028. }
  1029. if (!member.size())
  1030. return 404;
  1031. responseBody = OSUtils::jsonDump(member);
  1032. responseContentType = "application/json";
  1033. return 200;
  1034. }
  1035. } else {
  1036. json network;
  1037. _db.get(nwid,network);
  1038. _db.eraseNetwork(nwid);
  1039. {
  1040. std::lock_guard<std::mutex> l(_memberStatus_l);
  1041. for(auto i=_memberStatus.begin();i!=_memberStatus.end();) {
  1042. if (i->first.networkId == nwid)
  1043. _memberStatus.erase(i++);
  1044. else ++i;
  1045. }
  1046. }
  1047. if (!network.size())
  1048. return 404;
  1049. responseBody = OSUtils::jsonDump(network);
  1050. responseContentType = "application/json";
  1051. return 200;
  1052. }
  1053. } // else 404
  1054. } // else 404
  1055. return 404;
  1056. }
  1057. void EmbeddedNetworkController::handleRemoteTrace(const ZT_RemoteTrace &rt)
  1058. {
  1059. static volatile unsigned long idCounter = 0;
  1060. char id[128],tmp[128];
  1061. std::string k,v;
  1062. try {
  1063. // Convert Dictionary into JSON object
  1064. json d;
  1065. char *saveptr = (char *)0;
  1066. for(char *l=Utils::stok(rt.data,"\n",&saveptr);(l);l=Utils::stok((char *)0,"\n",&saveptr)) {
  1067. char *eq = strchr(l,'=');
  1068. if (eq > l) {
  1069. k.assign(l,(unsigned long)(eq - l));
  1070. v.clear();
  1071. ++eq;
  1072. while (*eq) {
  1073. if (*eq == '\\') {
  1074. ++eq;
  1075. if (*eq) {
  1076. switch(*eq) {
  1077. case 'r': v.push_back('\r'); break;
  1078. case 'n': v.push_back('\n'); break;
  1079. case '0': v.push_back((char)0); break;
  1080. case 'e': v.push_back('='); break;
  1081. default: v.push_back(*eq); break;
  1082. }
  1083. ++eq;
  1084. }
  1085. } else {
  1086. v.push_back(*(eq++));
  1087. }
  1088. }
  1089. if ((k.length() > 0)&&(v.length() > 0))
  1090. d[k] = v;
  1091. }
  1092. }
  1093. const int64_t now = OSUtils::now();
  1094. OSUtils::ztsnprintf(id,sizeof(id),"%.10llx-%.16llx-%.10llx-%.4x",_signingId.address().toInt(),now,rt.origin,(unsigned int)(idCounter++ & 0xffff));
  1095. d["id"] = id;
  1096. d["objtype"] = "trace";
  1097. d["ts"] = now;
  1098. d["nodeId"] = Utils::hex10(rt.origin,tmp);
  1099. _db.save(d,true);
  1100. } catch ( ... ) {
  1101. // drop invalid trace messages if an error occurs
  1102. }
  1103. }
  1104. void EmbeddedNetworkController::onNetworkUpdate(const void *db,uint64_t networkId,const nlohmann::json &network)
  1105. {
  1106. // Send an update to all members of the network that are online
  1107. const int64_t now = OSUtils::now();
  1108. std::lock_guard<std::mutex> l(_memberStatus_l);
  1109. for(auto i=_memberStatus.begin();i!=_memberStatus.end();++i) {
  1110. if ((i->first.networkId == networkId)&&(i->second.online(now))&&(i->second.lastRequestMetaData))
  1111. request(networkId,InetAddress(),0,i->second.identity,i->second.lastRequestMetaData);
  1112. }
  1113. }
  1114. void EmbeddedNetworkController::onNetworkMemberUpdate(const void *db,uint64_t networkId,uint64_t memberId,const nlohmann::json &member)
  1115. {
  1116. // Push update to member if online
  1117. try {
  1118. std::lock_guard<std::mutex> l(_memberStatus_l);
  1119. _MemberStatus &ms = _memberStatus[_MemberStatusKey(networkId,memberId)];
  1120. if ((ms.online(OSUtils::now()))&&(ms.lastRequestMetaData))
  1121. request(networkId,InetAddress(),0,ms.identity,ms.lastRequestMetaData);
  1122. } catch ( ... ) {}
  1123. }
  1124. void EmbeddedNetworkController::onNetworkMemberDeauthorize(const void *db,uint64_t networkId,uint64_t memberId)
  1125. {
  1126. const int64_t now = OSUtils::now();
  1127. Revocation rev((uint32_t)_node->prng(),networkId,0,now,ZT_REVOCATION_FLAG_FAST_PROPAGATE,Address(memberId),Revocation::CREDENTIAL_TYPE_COM);
  1128. rev.sign(_signingId);
  1129. {
  1130. std::lock_guard<std::mutex> l(_memberStatus_l);
  1131. for(auto i=_memberStatus.begin();i!=_memberStatus.end();++i) {
  1132. if ((i->first.networkId == networkId)&&(i->second.online(now)))
  1133. _node->ncSendRevocation(Address(i->first.nodeId),rev);
  1134. }
  1135. }
  1136. }
  1137. void EmbeddedNetworkController::_request(
  1138. uint64_t nwid,
  1139. const InetAddress &fromAddr,
  1140. uint64_t requestPacketId,
  1141. const Identity &identity,
  1142. const Dictionary<ZT_NETWORKCONFIG_METADATA_DICT_CAPACITY> &metaData)
  1143. {
  1144. char nwids[24];
  1145. DB::NetworkSummaryInfo ns;
  1146. json network,member;
  1147. if (((!_signingId)||(!_signingId.hasPrivate()))||(_signingId.address().toInt() != (nwid >> 24))||(!_sender))
  1148. return;
  1149. const int64_t now = OSUtils::now();
  1150. if (requestPacketId) {
  1151. std::lock_guard<std::mutex> l(_memberStatus_l);
  1152. _MemberStatus &ms = _memberStatus[_MemberStatusKey(nwid,identity.address().toInt())];
  1153. if ((now - ms.lastRequestTime) <= ZT_NETCONF_MIN_REQUEST_PERIOD)
  1154. return;
  1155. ms.lastRequestTime = now;
  1156. }
  1157. _db.nodeIsOnline(nwid,identity.address().toInt(),fromAddr);
  1158. Utils::hex(nwid,nwids);
  1159. _db.get(nwid,network,identity.address().toInt(),member,ns);
  1160. if ((!network.is_object())||(network.empty())) {
  1161. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_OBJECT_NOT_FOUND, nullptr, 0);
  1162. return;
  1163. }
  1164. const bool newMember = ((!member.is_object())||(member.empty()));
  1165. DB::initMember(member);
  1166. {
  1167. const std::string haveIdStr(OSUtils::jsonString(member["identity"],""));
  1168. if (haveIdStr.length() > 0) {
  1169. // If we already know this member's identity perform a full compare. This prevents
  1170. // a "collision" from being able to auth onto our network in place of an already
  1171. // known member.
  1172. try {
  1173. if (Identity(haveIdStr.c_str()) != identity) {
  1174. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_ACCESS_DENIED, nullptr, 0);
  1175. return;
  1176. }
  1177. } catch ( ... ) {
  1178. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_ACCESS_DENIED, nullptr, 0);
  1179. return;
  1180. }
  1181. } else {
  1182. // If we do not yet know this member's identity, learn it.
  1183. char idtmp[1024];
  1184. member["identity"] = identity.toString(false,idtmp);
  1185. }
  1186. }
  1187. // These are always the same, but make sure they are set
  1188. {
  1189. char tmpid[128];
  1190. const std::string addrs(identity.address().toString(tmpid));
  1191. member["id"] = addrs;
  1192. member["address"] = addrs;
  1193. member["nwid"] = nwids;
  1194. }
  1195. // Determine whether and how member is authorized
  1196. bool authorized = false;
  1197. bool autoAuthorized = false;
  1198. json autoAuthCredentialType,autoAuthCredential;
  1199. if (OSUtils::jsonBool(member["authorized"],false)) {
  1200. authorized = true;
  1201. } else if (!OSUtils::jsonBool(network["private"],true)) {
  1202. authorized = true;
  1203. autoAuthorized = true;
  1204. autoAuthCredentialType = "public";
  1205. } else {
  1206. char presentedAuth[512];
  1207. if (metaData.get(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_AUTH,presentedAuth,sizeof(presentedAuth)) > 0) {
  1208. presentedAuth[511] = (char)0; // sanity check
  1209. if ((strlen(presentedAuth) > 6)&&(!strncmp(presentedAuth,"token:",6))) {
  1210. const char *const presentedToken = presentedAuth + 6;
  1211. json authTokens(network["authTokens"]);
  1212. json &tokenExpires = authTokens[presentedToken];
  1213. if (tokenExpires.is_number()) {
  1214. if ((tokenExpires == 0)||(tokenExpires > now)) {
  1215. authorized = true;
  1216. autoAuthorized = true;
  1217. autoAuthCredentialType = "token";
  1218. autoAuthCredential = presentedToken;
  1219. }
  1220. }
  1221. }
  1222. }
  1223. }
  1224. // If we auto-authorized, update member record
  1225. if ((autoAuthorized)&&(authorized)) {
  1226. member["authorized"] = true;
  1227. member["lastAuthorizedTime"] = now;
  1228. member["lastAuthorizedCredentialType"] = autoAuthCredentialType;
  1229. member["lastAuthorizedCredential"] = autoAuthCredential;
  1230. }
  1231. // Should we check SSO Stuff?
  1232. // If network is configured with SSO, and the member is not marked exempt: yes
  1233. // Otherwise no, we use standard auth logic.
  1234. bool networkSSOEnabled = OSUtils::jsonBool(network["ssoEnabled"], false);
  1235. bool memberSSOExempt = OSUtils::jsonBool(member["ssoExempt"], false);
  1236. std::string authenticationURL;
  1237. if (networkSSOEnabled && !memberSSOExempt) {
  1238. authenticationURL = _db.getSSOAuthURL(member, _ssoRedirectURL);
  1239. std::string memberId = member["id"];
  1240. fprintf(stderr, "ssoEnabled && !ssoExempt %s-%s\n", nwids, memberId.c_str());
  1241. uint64_t authenticationExpiryTime = (int64_t)OSUtils::jsonInt(member["authenticationExpiryTime"], 0);
  1242. fprintf(stderr, "authExpiryTime: %lld\n", authenticationExpiryTime);
  1243. if (authenticationExpiryTime < now) {
  1244. if (!authenticationURL.empty()) {
  1245. Dictionary<3072> authInfo;
  1246. authInfo.add("aU", authenticationURL.c_str());
  1247. fprintf(stderr, "sending auth URL: %s\n", authenticationURL.c_str());
  1248. DB::cleanMember(member);
  1249. _db.save(member,true);
  1250. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_AUTHENTICATION_REQUIRED, authInfo.data(), authInfo.sizeBytes());
  1251. return;
  1252. }
  1253. } else if (authorized) {
  1254. _db.memberWillExpire(authenticationExpiryTime, nwid, identity.address().toInt());
  1255. }
  1256. }
  1257. if (authorized) {
  1258. // Update version info and meta-data if authorized and if this is a genuine request
  1259. if (requestPacketId) {
  1260. const uint64_t vMajor = metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_NODE_MAJOR_VERSION,0);
  1261. const uint64_t vMinor = metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_NODE_MINOR_VERSION,0);
  1262. const uint64_t vRev = metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_NODE_REVISION,0);
  1263. const uint64_t vProto = metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_PROTOCOL_VERSION,0);
  1264. member["vMajor"] = vMajor;
  1265. member["vMinor"] = vMinor;
  1266. member["vRev"] = vRev;
  1267. member["vProto"] = vProto;
  1268. {
  1269. std::lock_guard<std::mutex> l(_memberStatus_l);
  1270. _MemberStatus &ms = _memberStatus[_MemberStatusKey(nwid,identity.address().toInt())];
  1271. ms.vMajor = (int)vMajor;
  1272. ms.vMinor = (int)vMinor;
  1273. ms.vRev = (int)vRev;
  1274. ms.vProto = (int)vProto;
  1275. ms.lastRequestMetaData = metaData;
  1276. ms.identity = identity;
  1277. }
  1278. }
  1279. } else {
  1280. // If they are not authorized, STOP!
  1281. DB::cleanMember(member);
  1282. _db.save(member,true);
  1283. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_ACCESS_DENIED, nullptr, 0);
  1284. return;
  1285. }
  1286. // -------------------------------------------------------------------------
  1287. // If we made it this far, they are authorized (and authenticated).
  1288. // -------------------------------------------------------------------------
  1289. int64_t credentialtmd = ZT_NETWORKCONFIG_DEFAULT_CREDENTIAL_TIME_MAX_MAX_DELTA;
  1290. if (now > ns.mostRecentDeauthTime) {
  1291. // If we recently de-authorized a member, shrink credential TTL/max delta to
  1292. // be below the threshold required to exclude it. Cap this to a min/max to
  1293. // prevent jitter or absurdly large values.
  1294. const uint64_t deauthWindow = now - ns.mostRecentDeauthTime;
  1295. if (deauthWindow < ZT_NETWORKCONFIG_DEFAULT_CREDENTIAL_TIME_MIN_MAX_DELTA) {
  1296. credentialtmd = ZT_NETWORKCONFIG_DEFAULT_CREDENTIAL_TIME_MIN_MAX_DELTA;
  1297. } else if (deauthWindow < (ZT_NETWORKCONFIG_DEFAULT_CREDENTIAL_TIME_MAX_MAX_DELTA + 5000ULL)) {
  1298. credentialtmd = deauthWindow - 5000ULL;
  1299. }
  1300. }
  1301. std::unique_ptr<NetworkConfig> nc(new NetworkConfig());
  1302. nc->networkId = nwid;
  1303. nc->type = OSUtils::jsonBool(network["private"],true) ? ZT_NETWORK_TYPE_PRIVATE : ZT_NETWORK_TYPE_PUBLIC;
  1304. nc->timestamp = now;
  1305. nc->credentialTimeMaxDelta = credentialtmd;
  1306. nc->revision = OSUtils::jsonInt(network["revision"],0ULL);
  1307. nc->issuedTo = identity.address();
  1308. if (OSUtils::jsonBool(network["enableBroadcast"],true)) nc->flags |= ZT_NETWORKCONFIG_FLAG_ENABLE_BROADCAST;
  1309. Utils::scopy(nc->name,sizeof(nc->name),OSUtils::jsonString(network["name"],"").c_str());
  1310. nc->mtu = std::max(std::min((unsigned int)OSUtils::jsonInt(network["mtu"],ZT_DEFAULT_MTU),(unsigned int)ZT_MAX_MTU),(unsigned int)ZT_MIN_MTU);
  1311. nc->multicastLimit = (unsigned int)OSUtils::jsonInt(network["multicastLimit"],32ULL);
  1312. nc->ssoEnabled = OSUtils::jsonBool(network["ssoEnabled"], false);
  1313. nc->authenticationExpiryTime = OSUtils::jsonInt(member["authenticationExpiryTime"], 0LL);
  1314. if (!authenticationURL.empty())
  1315. Utils::scopy(nc->authenticationURL, sizeof(nc->authenticationURL), authenticationURL.c_str());
  1316. std::string rtt(OSUtils::jsonString(member["remoteTraceTarget"],""));
  1317. if (rtt.length() == 10) {
  1318. nc->remoteTraceTarget = Address(Utils::hexStrToU64(rtt.c_str()));
  1319. nc->remoteTraceLevel = (Trace::Level)OSUtils::jsonInt(member["remoteTraceLevel"],0ULL);
  1320. } else {
  1321. rtt = OSUtils::jsonString(network["remoteTraceTarget"],"");
  1322. if (rtt.length() == 10) {
  1323. nc->remoteTraceTarget = Address(Utils::hexStrToU64(rtt.c_str()));
  1324. } else {
  1325. nc->remoteTraceTarget.zero();
  1326. }
  1327. nc->remoteTraceLevel = (Trace::Level)OSUtils::jsonInt(network["remoteTraceLevel"],0ULL);
  1328. }
  1329. for(std::vector<Address>::const_iterator ab(ns.activeBridges.begin());ab!=ns.activeBridges.end();++ab)
  1330. nc->addSpecialist(*ab,ZT_NETWORKCONFIG_SPECIALIST_TYPE_ACTIVE_BRIDGE);
  1331. json &v4AssignMode = network["v4AssignMode"];
  1332. json &v6AssignMode = network["v6AssignMode"];
  1333. json &ipAssignmentPools = network["ipAssignmentPools"];
  1334. json &routes = network["routes"];
  1335. json &rules = network["rules"];
  1336. json &capabilities = network["capabilities"];
  1337. json &tags = network["tags"];
  1338. json &memberCapabilities = member["capabilities"];
  1339. json &memberTags = member["tags"];
  1340. json &dns = network["dns"];
  1341. fprintf(stderr, "IP Assignment Pools for Network %s: %s\n", nwids, OSUtils::jsonDump(ipAssignmentPools, 2).c_str());
  1342. if (metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_RULES_ENGINE_REV,0) <= 0) {
  1343. // Old versions with no rules engine support get an allow everything rule.
  1344. // Since rules are enforced bidirectionally, newer versions *will* still
  1345. // enforce rules on the inbound side.
  1346. nc->ruleCount = 1;
  1347. nc->rules[0].t = ZT_NETWORK_RULE_ACTION_ACCEPT;
  1348. } else {
  1349. if (rules.is_array()) {
  1350. for(unsigned long i=0;i<rules.size();++i) {
  1351. if (nc->ruleCount >= ZT_MAX_NETWORK_RULES)
  1352. break;
  1353. if (_parseRule(rules[i],nc->rules[nc->ruleCount]))
  1354. ++nc->ruleCount;
  1355. }
  1356. }
  1357. std::map< uint64_t,json * > capsById;
  1358. if (!memberCapabilities.is_array())
  1359. memberCapabilities = json::array();
  1360. if (capabilities.is_array()) {
  1361. for(unsigned long i=0;i<capabilities.size();++i) {
  1362. json &cap = capabilities[i];
  1363. if (cap.is_object()) {
  1364. const uint64_t id = OSUtils::jsonInt(cap["id"],0ULL) & 0xffffffffULL;
  1365. capsById[id] = &cap;
  1366. if ((newMember)&&(OSUtils::jsonBool(cap["default"],false))) {
  1367. bool have = false;
  1368. for(unsigned long i=0;i<memberCapabilities.size();++i) {
  1369. if (id == (OSUtils::jsonInt(memberCapabilities[i],0ULL) & 0xffffffffULL)) {
  1370. have = true;
  1371. break;
  1372. }
  1373. }
  1374. if (!have)
  1375. memberCapabilities.push_back(id);
  1376. }
  1377. }
  1378. }
  1379. }
  1380. for(unsigned long i=0;i<memberCapabilities.size();++i) {
  1381. const uint64_t capId = OSUtils::jsonInt(memberCapabilities[i],0ULL) & 0xffffffffULL;
  1382. std::map< uint64_t,json * >::const_iterator ctmp = capsById.find(capId);
  1383. if (ctmp != capsById.end()) {
  1384. json *cap = ctmp->second;
  1385. if ((cap)&&(cap->is_object())&&(!cap->empty())) {
  1386. ZT_VirtualNetworkRule capr[ZT_MAX_CAPABILITY_RULES];
  1387. unsigned int caprc = 0;
  1388. json &caprj = (*cap)["rules"];
  1389. if ((caprj.is_array())&&(!caprj.empty())) {
  1390. for(unsigned long j=0;j<caprj.size();++j) {
  1391. if (caprc >= ZT_MAX_CAPABILITY_RULES)
  1392. break;
  1393. if (_parseRule(caprj[j],capr[caprc]))
  1394. ++caprc;
  1395. }
  1396. }
  1397. nc->capabilities[nc->capabilityCount] = Capability((uint32_t)capId,nwid,now,1,capr,caprc);
  1398. if (nc->capabilities[nc->capabilityCount].sign(_signingId,identity.address()))
  1399. ++nc->capabilityCount;
  1400. if (nc->capabilityCount >= ZT_MAX_NETWORK_CAPABILITIES)
  1401. break;
  1402. }
  1403. }
  1404. }
  1405. std::map< uint32_t,uint32_t > memberTagsById;
  1406. if (memberTags.is_array()) {
  1407. for(unsigned long i=0;i<memberTags.size();++i) {
  1408. json &t = memberTags[i];
  1409. if ((t.is_array())&&(t.size() == 2))
  1410. memberTagsById[(uint32_t)(OSUtils::jsonInt(t[0],0ULL) & 0xffffffffULL)] = (uint32_t)(OSUtils::jsonInt(t[1],0ULL) & 0xffffffffULL);
  1411. }
  1412. }
  1413. if (tags.is_array()) { // check network tags array for defaults that are not present in member tags
  1414. for(unsigned long i=0;i<tags.size();++i) {
  1415. json &t = tags[i];
  1416. if (t.is_object()) {
  1417. const uint32_t id = (uint32_t)(OSUtils::jsonInt(t["id"],0) & 0xffffffffULL);
  1418. json &dfl = t["default"];
  1419. if ((dfl.is_number())&&(memberTagsById.find(id) == memberTagsById.end())) {
  1420. memberTagsById[id] = (uint32_t)(OSUtils::jsonInt(dfl,0) & 0xffffffffULL);
  1421. json mt = json::array();
  1422. mt.push_back(id);
  1423. mt.push_back(dfl);
  1424. memberTags.push_back(mt); // add default to member tags if not present
  1425. }
  1426. }
  1427. }
  1428. }
  1429. for(std::map< uint32_t,uint32_t >::const_iterator t(memberTagsById.begin());t!=memberTagsById.end();++t) {
  1430. if (nc->tagCount >= ZT_MAX_NETWORK_TAGS)
  1431. break;
  1432. nc->tags[nc->tagCount] = Tag(nwid,now,identity.address(),t->first,t->second);
  1433. if (nc->tags[nc->tagCount].sign(_signingId))
  1434. ++nc->tagCount;
  1435. }
  1436. }
  1437. if (routes.is_array()) {
  1438. for(unsigned long i=0;i<routes.size();++i) {
  1439. if (nc->routeCount >= ZT_MAX_NETWORK_ROUTES)
  1440. break;
  1441. json &route = routes[i];
  1442. json &target = route["target"];
  1443. json &via = route["via"];
  1444. if (target.is_string()) {
  1445. const InetAddress t(target.get<std::string>().c_str());
  1446. InetAddress v;
  1447. if (via.is_string()) v.fromString(via.get<std::string>().c_str());
  1448. if ((t.ss_family == AF_INET)||(t.ss_family == AF_INET6)) {
  1449. ZT_VirtualNetworkRoute *r = &(nc->routes[nc->routeCount]);
  1450. *(reinterpret_cast<InetAddress *>(&(r->target))) = t;
  1451. if (v.ss_family == t.ss_family)
  1452. *(reinterpret_cast<InetAddress *>(&(r->via))) = v;
  1453. ++nc->routeCount;
  1454. }
  1455. }
  1456. }
  1457. }
  1458. const bool noAutoAssignIps = OSUtils::jsonBool(member["noAutoAssignIps"],false);
  1459. if ((v6AssignMode.is_object())&&(!noAutoAssignIps)) {
  1460. if ((OSUtils::jsonBool(v6AssignMode["rfc4193"],false))&&(nc->staticIpCount < ZT_MAX_ZT_ASSIGNED_ADDRESSES)) {
  1461. nc->staticIps[nc->staticIpCount++] = InetAddress::makeIpv6rfc4193(nwid,identity.address().toInt());
  1462. nc->flags |= ZT_NETWORKCONFIG_FLAG_ENABLE_IPV6_NDP_EMULATION;
  1463. }
  1464. if ((OSUtils::jsonBool(v6AssignMode["6plane"],false))&&(nc->staticIpCount < ZT_MAX_ZT_ASSIGNED_ADDRESSES)) {
  1465. nc->staticIps[nc->staticIpCount++] = InetAddress::makeIpv66plane(nwid,identity.address().toInt());
  1466. nc->flags |= ZT_NETWORKCONFIG_FLAG_ENABLE_IPV6_NDP_EMULATION;
  1467. }
  1468. }
  1469. bool haveManagedIpv4AutoAssignment = false;
  1470. bool haveManagedIpv6AutoAssignment = false; // "special" NDP-emulated address types do not count
  1471. json ipAssignments = member["ipAssignments"]; // we want to make a copy
  1472. if (ipAssignments.is_array()) {
  1473. for(unsigned long i=0;i<ipAssignments.size();++i) {
  1474. if (ipAssignments[i].is_string()) {
  1475. const std::string ips = ipAssignments[i];
  1476. InetAddress ip(ips.c_str());
  1477. int routedNetmaskBits = -1;
  1478. for(unsigned int rk=0;rk<nc->routeCount;++rk) {
  1479. if (reinterpret_cast<const InetAddress *>(&(nc->routes[rk].target))->containsAddress(ip)) {
  1480. const int nb = (int)(reinterpret_cast<const InetAddress *>(&(nc->routes[rk].target))->netmaskBits());
  1481. if (nb > routedNetmaskBits)
  1482. routedNetmaskBits = nb;
  1483. }
  1484. }
  1485. if (routedNetmaskBits >= 0) {
  1486. if (nc->staticIpCount < ZT_MAX_ZT_ASSIGNED_ADDRESSES) {
  1487. ip.setPort(routedNetmaskBits);
  1488. nc->staticIps[nc->staticIpCount++] = ip;
  1489. }
  1490. if (ip.ss_family == AF_INET)
  1491. haveManagedIpv4AutoAssignment = true;
  1492. else if (ip.ss_family == AF_INET6)
  1493. haveManagedIpv6AutoAssignment = true;
  1494. }
  1495. }
  1496. }
  1497. } else {
  1498. ipAssignments = json::array();
  1499. }
  1500. if ( (ipAssignmentPools.is_array()) && ((v6AssignMode.is_object())&&(OSUtils::jsonBool(v6AssignMode["zt"],false))) && (!haveManagedIpv6AutoAssignment) && (!noAutoAssignIps) ) {
  1501. for(unsigned long p=0;((p<ipAssignmentPools.size())&&(!haveManagedIpv6AutoAssignment));++p) {
  1502. json &pool = ipAssignmentPools[p];
  1503. if (pool.is_object()) {
  1504. InetAddress ipRangeStart(OSUtils::jsonString(pool["ipRangeStart"],"").c_str());
  1505. InetAddress ipRangeEnd(OSUtils::jsonString(pool["ipRangeEnd"],"").c_str());
  1506. if ( (ipRangeStart.ss_family == AF_INET6) && (ipRangeEnd.ss_family == AF_INET6) ) {
  1507. uint64_t s[2],e[2],x[2],xx[2];
  1508. memcpy(s,ipRangeStart.rawIpData(),16);
  1509. memcpy(e,ipRangeEnd.rawIpData(),16);
  1510. s[0] = Utils::ntoh(s[0]);
  1511. s[1] = Utils::ntoh(s[1]);
  1512. e[0] = Utils::ntoh(e[0]);
  1513. e[1] = Utils::ntoh(e[1]);
  1514. x[0] = s[0];
  1515. x[1] = s[1];
  1516. for(unsigned int trialCount=0;trialCount<1000;++trialCount) {
  1517. if ((trialCount == 0)&&(e[1] > s[1])&&((e[1] - s[1]) >= 0xffffffffffULL)) {
  1518. // First see if we can just cram a ZeroTier ID into the higher 64 bits. If so do that.
  1519. xx[0] = Utils::hton(x[0]);
  1520. xx[1] = Utils::hton(x[1] + identity.address().toInt());
  1521. } else {
  1522. // Otherwise pick random addresses -- this technically doesn't explore the whole range if the lower 64 bit range is >= 1 but that won't matter since that would be huge anyway
  1523. Utils::getSecureRandom((void *)xx,16);
  1524. if ((e[0] > s[0]))
  1525. xx[0] %= (e[0] - s[0]);
  1526. else xx[0] = 0;
  1527. if ((e[1] > s[1]))
  1528. xx[1] %= (e[1] - s[1]);
  1529. else xx[1] = 0;
  1530. xx[0] = Utils::hton(x[0] + xx[0]);
  1531. xx[1] = Utils::hton(x[1] + xx[1]);
  1532. }
  1533. InetAddress ip6((const void *)xx,16,0);
  1534. // Check if this IP is within a local-to-Ethernet routed network
  1535. int routedNetmaskBits = 0;
  1536. for(unsigned int rk=0;rk<nc->routeCount;++rk) {
  1537. if ( (!nc->routes[rk].via.ss_family) && (nc->routes[rk].target.ss_family == AF_INET6) && (reinterpret_cast<const InetAddress *>(&(nc->routes[rk].target))->containsAddress(ip6)) )
  1538. routedNetmaskBits = reinterpret_cast<const InetAddress *>(&(nc->routes[rk].target))->netmaskBits();
  1539. }
  1540. // If it's routed, then try to claim and assign it and if successful end loop
  1541. if ( (routedNetmaskBits > 0) && (!std::binary_search(ns.allocatedIps.begin(),ns.allocatedIps.end(),ip6)) ) {
  1542. char tmpip[64];
  1543. const std::string ipStr(ip6.toIpString(tmpip));
  1544. if (std::find(ipAssignments.begin(),ipAssignments.end(),ipStr) == ipAssignments.end()) {
  1545. ipAssignments.push_back(ipStr);
  1546. member["ipAssignments"] = ipAssignments;
  1547. ip6.setPort((unsigned int)routedNetmaskBits);
  1548. if (nc->staticIpCount < ZT_MAX_ZT_ASSIGNED_ADDRESSES)
  1549. nc->staticIps[nc->staticIpCount++] = ip6;
  1550. haveManagedIpv6AutoAssignment = true;
  1551. break;
  1552. }
  1553. }
  1554. }
  1555. }
  1556. }
  1557. }
  1558. }
  1559. if ( (ipAssignmentPools.is_array()) && ((v4AssignMode.is_object())&&(OSUtils::jsonBool(v4AssignMode["zt"],false))) && (!haveManagedIpv4AutoAssignment) && (!noAutoAssignIps) ) {
  1560. for(unsigned long p=0;((p<ipAssignmentPools.size())&&(!haveManagedIpv4AutoAssignment));++p) {
  1561. json &pool = ipAssignmentPools[p];
  1562. if (pool.is_object()) {
  1563. InetAddress ipRangeStartIA(OSUtils::jsonString(pool["ipRangeStart"],"").c_str());
  1564. InetAddress ipRangeEndIA(OSUtils::jsonString(pool["ipRangeEnd"],"").c_str());
  1565. if ( (ipRangeStartIA.ss_family == AF_INET) && (ipRangeEndIA.ss_family == AF_INET) ) {
  1566. uint32_t ipRangeStart = Utils::ntoh((uint32_t)(reinterpret_cast<struct sockaddr_in *>(&ipRangeStartIA)->sin_addr.s_addr));
  1567. uint32_t ipRangeEnd = Utils::ntoh((uint32_t)(reinterpret_cast<struct sockaddr_in *>(&ipRangeEndIA)->sin_addr.s_addr));
  1568. if ((ipRangeEnd < ipRangeStart)||(ipRangeStart == 0))
  1569. continue;
  1570. uint32_t ipRangeLen = ipRangeEnd - ipRangeStart;
  1571. // Start with the LSB of the member's address
  1572. uint32_t ipTrialCounter = (uint32_t)(identity.address().toInt() & 0xffffffff);
  1573. for(uint32_t k=ipRangeStart,trialCount=0;((k<=ipRangeEnd)&&(trialCount < 1000));++k,++trialCount) {
  1574. uint32_t ip = (ipRangeLen > 0) ? (ipRangeStart + (ipTrialCounter % ipRangeLen)) : ipRangeStart;
  1575. ++ipTrialCounter;
  1576. if ((ip & 0x000000ff) == 0x000000ff) {
  1577. continue; // don't allow addresses that end in .255
  1578. }
  1579. // Check if this IP is within a local-to-Ethernet routed network
  1580. int routedNetmaskBits = -1;
  1581. for(unsigned int rk=0;rk<nc->routeCount;++rk) {
  1582. if (nc->routes[rk].target.ss_family == AF_INET) {
  1583. uint32_t targetIp = Utils::ntoh((uint32_t)(reinterpret_cast<const struct sockaddr_in *>(&(nc->routes[rk].target))->sin_addr.s_addr));
  1584. int targetBits = Utils::ntoh((uint16_t)(reinterpret_cast<const struct sockaddr_in *>(&(nc->routes[rk].target))->sin_port));
  1585. if ((ip & (0xffffffff << (32 - targetBits))) == targetIp) {
  1586. routedNetmaskBits = targetBits;
  1587. break;
  1588. }
  1589. }
  1590. }
  1591. // If it's routed, then try to claim and assign it and if successful end loop
  1592. const InetAddress ip4(Utils::hton(ip),0);
  1593. if ( (routedNetmaskBits > 0) && (!std::binary_search(ns.allocatedIps.begin(),ns.allocatedIps.end(),ip4)) ) {
  1594. char tmpip[64];
  1595. const std::string ipStr(ip4.toIpString(tmpip));
  1596. if (std::find(ipAssignments.begin(),ipAssignments.end(),ipStr) == ipAssignments.end()) {
  1597. ipAssignments.push_back(ipStr);
  1598. member["ipAssignments"] = ipAssignments;
  1599. if (nc->staticIpCount < ZT_MAX_ZT_ASSIGNED_ADDRESSES) {
  1600. struct sockaddr_in *const v4ip = reinterpret_cast<struct sockaddr_in *>(&(nc->staticIps[nc->staticIpCount++]));
  1601. v4ip->sin_family = AF_INET;
  1602. v4ip->sin_port = Utils::hton((uint16_t)routedNetmaskBits);
  1603. v4ip->sin_addr.s_addr = Utils::hton(ip);
  1604. }
  1605. haveManagedIpv4AutoAssignment = true;
  1606. break;
  1607. }
  1608. }
  1609. }
  1610. }
  1611. }
  1612. }
  1613. }
  1614. if(dns.is_object()) {
  1615. std::string domain = OSUtils::jsonString(dns["domain"],"");
  1616. memcpy(nc->dns.domain, domain.c_str(), domain.size());
  1617. json &addrArray = dns["servers"];
  1618. if (addrArray.is_array()) {
  1619. for(unsigned int j = 0; j < addrArray.size() && j < ZT_MAX_DNS_SERVERS; ++j) {
  1620. json &addr = addrArray[j];
  1621. nc->dns.server_addr[j] = InetAddress(OSUtils::jsonString(addr,"").c_str());
  1622. }
  1623. }
  1624. } else {
  1625. dns = json::object();
  1626. }
  1627. // Issue a certificate of ownership for all static IPs
  1628. if (nc->staticIpCount) {
  1629. nc->certificatesOfOwnership[0] = CertificateOfOwnership(nwid,now,identity.address(),1);
  1630. for(unsigned int i=0;i<nc->staticIpCount;++i)
  1631. nc->certificatesOfOwnership[0].addThing(nc->staticIps[i]);
  1632. nc->certificatesOfOwnership[0].sign(_signingId);
  1633. nc->certificateOfOwnershipCount = 1;
  1634. }
  1635. CertificateOfMembership com(now,credentialtmd,nwid,identity.address());
  1636. if (com.sign(_signingId)) {
  1637. nc->com = com;
  1638. } else {
  1639. _sender->ncSendError(nwid,requestPacketId,identity.address(),NetworkController::NC_ERROR_INTERNAL_SERVER_ERROR, nullptr, 0);
  1640. return;
  1641. }
  1642. DB::cleanMember(member);
  1643. _db.save(member,true);
  1644. _sender->ncSendConfig(nwid,requestPacketId,identity.address(),*(nc.get()),metaData.getUI(ZT_NETWORKCONFIG_REQUEST_METADATA_KEY_VERSION,0) < 6);
  1645. }
  1646. void EmbeddedNetworkController::_startThreads()
  1647. {
  1648. std::lock_guard<std::mutex> l(_threads_l);
  1649. if (!_threads.empty())
  1650. return;
  1651. const long hwc = std::max((long)std::thread::hardware_concurrency(),(long)1);
  1652. for(long t=0;t<hwc;++t) {
  1653. _threads.emplace_back([this]() {
  1654. for(;;) {
  1655. _RQEntry *qe = (_RQEntry *)0;
  1656. auto timedWaitResult = _queue.get(qe, 1000);
  1657. if (timedWaitResult == BlockingQueue<_RQEntry *>::STOP) {
  1658. break;
  1659. } else if (timedWaitResult == BlockingQueue<_RQEntry *>::OK) {
  1660. if (qe) {
  1661. try {
  1662. _request(qe->nwid,qe->fromAddr,qe->requestPacketId,qe->identity,qe->metaData);
  1663. } catch (std::exception &e) {
  1664. fprintf(stderr,"ERROR: exception in controller request handling thread: %s" ZT_EOL_S,e.what());
  1665. } catch ( ... ) {
  1666. fprintf(stderr,"ERROR: exception in controller request handling thread: unknown exception" ZT_EOL_S);
  1667. }
  1668. delete qe;
  1669. }
  1670. }
  1671. std::set< std::pair<uint64_t, uint64_t> > soon;
  1672. std::set< std::pair<uint64_t, uint64_t> > expired;
  1673. _db.membersExpiring(soon, expired);
  1674. for(auto s=soon.begin();s!=soon.end();++s) {
  1675. Identity identity;
  1676. Dictionary<ZT_NETWORKCONFIG_METADATA_DICT_CAPACITY> lastMetaData;
  1677. {
  1678. std::unique_lock<std::mutex> ll(_memberStatus_l);
  1679. auto ms = _memberStatus.find(_MemberStatusKey(s->first, s->second));
  1680. if (ms != _memberStatus.end()) {
  1681. lastMetaData = ms->second.lastRequestMetaData;
  1682. identity = ms->second.identity;
  1683. }
  1684. }
  1685. if (identity) {
  1686. request(s->first,InetAddress(),0,identity,lastMetaData);
  1687. }
  1688. }
  1689. for(auto e=expired.begin();e!=expired.end();++e) {
  1690. onNetworkMemberDeauthorize(nullptr, e->first, e->second);
  1691. }
  1692. }
  1693. });
  1694. }
  1695. }
  1696. } // namespace ZeroTier