InetAddress.cpp 17 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: 2023-01-01
  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 <stdio.h>
  14. #include <string.h>
  15. #include <stdint.h>
  16. #include <string>
  17. #include "Constants.hpp"
  18. #include "InetAddress.hpp"
  19. #include "Utils.hpp"
  20. namespace ZeroTier {
  21. const InetAddress InetAddress::LO4((const void *)("\x7f\x00\x00\x01"),4,0);
  22. const InetAddress InetAddress::LO6((const void *)("\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x01"),16,0);
  23. const InetAddress InetAddress::NIL;
  24. InetAddress::IpScope InetAddress::ipScope() const
  25. {
  26. switch(ss_family) {
  27. case AF_INET: {
  28. const uint32_t ip = Utils::ntoh((uint32_t)reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr);
  29. switch(ip >> 24) {
  30. case 0x00: return IP_SCOPE_NONE; // 0.0.0.0/8 (reserved, never used)
  31. case 0x06: return IP_SCOPE_PSEUDOPRIVATE; // 6.0.0.0/8 (US Army)
  32. case 0x0a: return IP_SCOPE_PRIVATE; // 10.0.0.0/8
  33. case 0x0b: return IP_SCOPE_PSEUDOPRIVATE; // 11.0.0.0/8 (US DoD)
  34. case 0x15: return IP_SCOPE_PSEUDOPRIVATE; // 21.0.0.0/8 (US DDN-RVN)
  35. case 0x16: return IP_SCOPE_PSEUDOPRIVATE; // 22.0.0.0/8 (US DISA)
  36. case 0x19: return IP_SCOPE_PSEUDOPRIVATE; // 25.0.0.0/8 (UK Ministry of Defense)
  37. case 0x1a: return IP_SCOPE_PSEUDOPRIVATE; // 26.0.0.0/8 (US DISA)
  38. case 0x1c: return IP_SCOPE_PSEUDOPRIVATE; // 28.0.0.0/8 (US DSI-North)
  39. case 0x1d: return IP_SCOPE_PSEUDOPRIVATE; // 29.0.0.0/8 (US DISA)
  40. case 0x1e: return IP_SCOPE_PSEUDOPRIVATE; // 30.0.0.0/8 (US DISA)
  41. case 0x33: return IP_SCOPE_PSEUDOPRIVATE; // 51.0.0.0/8 (UK Department of Social Security)
  42. case 0x37: return IP_SCOPE_PSEUDOPRIVATE; // 55.0.0.0/8 (US DoD)
  43. case 0x38: return IP_SCOPE_PSEUDOPRIVATE; // 56.0.0.0/8 (US Postal Service)
  44. case 0x64:
  45. if ((ip & 0xffc00000) == 0x64400000) return IP_SCOPE_PRIVATE; // 100.64.0.0/10
  46. break;
  47. case 0x7f: return IP_SCOPE_LOOPBACK; // 127.0.0.0/8
  48. case 0xa9:
  49. if ((ip & 0xffff0000) == 0xa9fe0000) return IP_SCOPE_LINK_LOCAL; // 169.254.0.0/16
  50. break;
  51. case 0xac:
  52. if ((ip & 0xfff00000) == 0xac100000) return IP_SCOPE_PRIVATE; // 172.16.0.0/12
  53. break;
  54. case 0xc0:
  55. if ((ip & 0xffff0000) == 0xc0a80000) return IP_SCOPE_PRIVATE; // 192.168.0.0/16
  56. break;
  57. case 0xff: return IP_SCOPE_NONE; // 255.0.0.0/8 (broadcast, or unused/unusable)
  58. }
  59. switch(ip >> 28) {
  60. case 0xe: return IP_SCOPE_MULTICAST; // 224.0.0.0/4
  61. case 0xf: return IP_SCOPE_PSEUDOPRIVATE; // 240.0.0.0/4 ("reserved," usually unusable)
  62. }
  63. return IP_SCOPE_GLOBAL;
  64. } break;
  65. case AF_INET6: {
  66. const unsigned char *ip = reinterpret_cast<const unsigned char *>(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr);
  67. if ((ip[0] & 0xf0) == 0xf0) {
  68. if (ip[0] == 0xff) return IP_SCOPE_MULTICAST; // ff00::/8
  69. if ((ip[0] == 0xfe)&&((ip[1] & 0xc0) == 0x80)) {
  70. unsigned int k = 2;
  71. while ((!ip[k])&&(k < 15)) ++k;
  72. if ((k == 15)&&(ip[15] == 0x01))
  73. return IP_SCOPE_LOOPBACK; // fe80::1/128
  74. else return IP_SCOPE_LINK_LOCAL; // fe80::/10
  75. }
  76. if ((ip[0] & 0xfe) == 0xfc) return IP_SCOPE_PRIVATE; // fc00::/7
  77. }
  78. unsigned int k = 0;
  79. while ((!ip[k])&&(k < 15)) ++k;
  80. if (k == 15) { // all 0's except last byte
  81. if (ip[15] == 0x01) return IP_SCOPE_LOOPBACK; // ::1/128
  82. if (ip[15] == 0x00) return IP_SCOPE_NONE; // ::/128
  83. }
  84. return IP_SCOPE_GLOBAL;
  85. } break;
  86. }
  87. return IP_SCOPE_NONE;
  88. }
  89. void InetAddress::set(const void *ipBytes,unsigned int ipLen,unsigned int port)
  90. {
  91. memset(this,0,sizeof(InetAddress));
  92. if (ipLen == 4) {
  93. uint32_t ipb[1];
  94. memcpy(ipb,ipBytes,4);
  95. ss_family = AF_INET;
  96. reinterpret_cast<struct sockaddr_in *>(this)->sin_addr.s_addr = ipb[0];
  97. reinterpret_cast<struct sockaddr_in *>(this)->sin_port = Utils::hton((uint16_t)port);
  98. } else if (ipLen == 16) {
  99. ss_family = AF_INET6;
  100. memcpy(reinterpret_cast<struct sockaddr_in6 *>(this)->sin6_addr.s6_addr,ipBytes,16);
  101. reinterpret_cast<struct sockaddr_in6 *>(this)->sin6_port = Utils::hton((uint16_t)port);
  102. }
  103. }
  104. char *InetAddress::toString(char buf[64]) const
  105. {
  106. char *p = toIpString(buf);
  107. if (*p) {
  108. while (*p) ++p;
  109. *(p++) = '/';
  110. Utils::decimal(port(),p);
  111. }
  112. return buf;
  113. }
  114. char *InetAddress::toIpString(char buf[64]) const
  115. {
  116. buf[0] = (char)0;
  117. switch(ss_family) {
  118. case AF_INET: {
  119. #ifdef _WIN32
  120. inet_ntop(AF_INET, (void*)&reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr, buf, INET_ADDRSTRLEN);
  121. #else
  122. inet_ntop(AF_INET, &reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr, buf, INET_ADDRSTRLEN);
  123. #endif
  124. } break;
  125. case AF_INET6: {
  126. #ifdef _WIN32
  127. inet_ntop(AF_INET6, (void*)reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr, buf, INET6_ADDRSTRLEN);
  128. #else
  129. inet_ntop(AF_INET6, reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr, buf, INET6_ADDRSTRLEN);
  130. #endif
  131. } break;
  132. }
  133. return buf;
  134. }
  135. bool InetAddress::fromString(const char *ipSlashPort)
  136. {
  137. char buf[64];
  138. memset(this,0,sizeof(InetAddress));
  139. if (!*ipSlashPort)
  140. return true;
  141. if (!Utils::scopy(buf,sizeof(buf),ipSlashPort))
  142. return false;
  143. char *portAt = buf;
  144. while ((*portAt)&&(*portAt != '/'))
  145. ++portAt;
  146. unsigned int port = 0;
  147. if (*portAt) {
  148. *(portAt++) = (char)0;
  149. port = Utils::strToUInt(portAt) & 0xffff;
  150. }
  151. if (strchr(buf,':')) {
  152. struct sockaddr_in6 *const in6 = reinterpret_cast<struct sockaddr_in6 *>(this);
  153. inet_pton(AF_INET6, buf, &in6->sin6_addr.s6_addr);
  154. in6->sin6_family = AF_INET6;
  155. in6->sin6_port = Utils::hton((uint16_t)port);
  156. return true;
  157. } else if (strchr(buf,'.')) {
  158. struct sockaddr_in *const in = reinterpret_cast<struct sockaddr_in *>(this);
  159. inet_pton(AF_INET, buf, &in->sin_addr.s_addr);
  160. in->sin_family = AF_INET;
  161. in->sin_port = Utils::hton((uint16_t)port);
  162. return true;
  163. } else {
  164. return false;
  165. }
  166. }
  167. InetAddress InetAddress::netmask() const
  168. {
  169. InetAddress r(*this);
  170. switch(r.ss_family) {
  171. case AF_INET:
  172. reinterpret_cast<struct sockaddr_in *>(&r)->sin_addr.s_addr = Utils::hton((uint32_t)(0xffffffff << (32 - netmaskBits())));
  173. break;
  174. case AF_INET6: {
  175. uint64_t nm[2];
  176. const unsigned int bits = netmaskBits();
  177. if(bits) {
  178. nm[0] = Utils::hton((uint64_t)((bits >= 64) ? 0xffffffffffffffffULL : (0xffffffffffffffffULL << (64 - bits))));
  179. nm[1] = Utils::hton((uint64_t)((bits <= 64) ? 0ULL : (0xffffffffffffffffULL << (128 - bits))));
  180. } else {
  181. nm[0] = 0;
  182. nm[1] = 0;
  183. }
  184. memcpy(reinterpret_cast<struct sockaddr_in6 *>(&r)->sin6_addr.s6_addr,nm,16);
  185. } break;
  186. }
  187. return r;
  188. }
  189. InetAddress InetAddress::broadcast() const
  190. {
  191. if (ss_family == AF_INET) {
  192. InetAddress r(*this);
  193. reinterpret_cast<struct sockaddr_in *>(&r)->sin_addr.s_addr |= Utils::hton((uint32_t)(0xffffffff >> netmaskBits()));
  194. return r;
  195. }
  196. return InetAddress();
  197. }
  198. InetAddress InetAddress::network() const
  199. {
  200. InetAddress r(*this);
  201. switch(r.ss_family) {
  202. case AF_INET:
  203. reinterpret_cast<struct sockaddr_in *>(&r)->sin_addr.s_addr &= Utils::hton((uint32_t)(0xffffffff << (32 - netmaskBits())));
  204. break;
  205. case AF_INET6: {
  206. uint64_t nm[2];
  207. const unsigned int bits = netmaskBits();
  208. memcpy(nm,reinterpret_cast<struct sockaddr_in6 *>(&r)->sin6_addr.s6_addr,16);
  209. nm[0] &= Utils::hton((uint64_t)((bits >= 64) ? 0xffffffffffffffffULL : (0xffffffffffffffffULL << (64 - bits))));
  210. nm[1] &= Utils::hton((uint64_t)((bits <= 64) ? 0ULL : (0xffffffffffffffffULL << (128 - bits))));
  211. memcpy(reinterpret_cast<struct sockaddr_in6 *>(&r)->sin6_addr.s6_addr,nm,16);
  212. } break;
  213. }
  214. return r;
  215. }
  216. bool InetAddress::isEqualPrefix(const InetAddress &addr) const
  217. {
  218. if (addr.ss_family == ss_family) {
  219. switch(ss_family) {
  220. case AF_INET6: {
  221. const InetAddress mask(netmask());
  222. InetAddress addr_mask(addr.netmask());
  223. const uint8_t *n = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(&addr_mask)->sin6_addr.s6_addr);
  224. const uint8_t *m = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(&mask)->sin6_addr.s6_addr);
  225. const uint8_t *a = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(&addr)->sin6_addr.s6_addr);
  226. const uint8_t *b = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr);
  227. for(unsigned int i=0;i<16;++i) {
  228. if ((a[i] & m[i]) != (b[i] & n[i]))
  229. return false;
  230. }
  231. return true;
  232. }
  233. }
  234. }
  235. return false;
  236. }
  237. bool InetAddress::containsAddress(const InetAddress &addr) const
  238. {
  239. if (addr.ss_family == ss_family) {
  240. switch(ss_family) {
  241. case AF_INET: {
  242. const unsigned int bits = netmaskBits();
  243. if (bits == 0)
  244. return true;
  245. return ( (Utils::ntoh((uint32_t)reinterpret_cast<const struct sockaddr_in *>(&addr)->sin_addr.s_addr) >> (32 - bits)) == (Utils::ntoh((uint32_t)reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr) >> (32 - bits)) );
  246. }
  247. case AF_INET6: {
  248. const InetAddress mask(netmask());
  249. const uint8_t *m = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(&mask)->sin6_addr.s6_addr);
  250. const uint8_t *a = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(&addr)->sin6_addr.s6_addr);
  251. const uint8_t *b = reinterpret_cast<const uint8_t *>(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr);
  252. for(unsigned int i=0;i<16;++i) {
  253. if ((a[i] & m[i]) != b[i])
  254. return false;
  255. }
  256. return true;
  257. }
  258. }
  259. }
  260. return false;
  261. }
  262. bool InetAddress::isNetwork() const
  263. {
  264. switch(ss_family) {
  265. case AF_INET: {
  266. unsigned int bits = netmaskBits();
  267. if (bits <= 0)
  268. return false;
  269. if (bits >= 32)
  270. return false;
  271. uint32_t ip = Utils::ntoh((uint32_t)reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr);
  272. return ((ip & (0xffffffff >> bits)) == 0);
  273. }
  274. case AF_INET6: {
  275. unsigned int bits = netmaskBits();
  276. if (bits <= 0)
  277. return false;
  278. if (bits >= 128)
  279. return false;
  280. const unsigned char *ip = reinterpret_cast<const unsigned char *>(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr);
  281. unsigned int p = bits / 8;
  282. if ((ip[p++] & (0xff >> (bits % 8))) != 0)
  283. return false;
  284. while (p < 16) {
  285. if (ip[p++])
  286. return false;
  287. }
  288. return true;
  289. }
  290. }
  291. return false;
  292. }
  293. bool InetAddress::operator==(const InetAddress &a) const
  294. {
  295. if (ss_family == a.ss_family) {
  296. switch(ss_family) {
  297. case AF_INET:
  298. return (
  299. (reinterpret_cast<const struct sockaddr_in *>(this)->sin_port == reinterpret_cast<const struct sockaddr_in *>(&a)->sin_port)&&
  300. (reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr == reinterpret_cast<const struct sockaddr_in *>(&a)->sin_addr.s_addr));
  301. break;
  302. case AF_INET6:
  303. return (
  304. (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_port == reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_port)&&
  305. (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_flowinfo == reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_flowinfo)&&
  306. (memcmp(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr,reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_addr.s6_addr,16) == 0)&&
  307. (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_scope_id == reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_scope_id));
  308. break;
  309. default:
  310. return (memcmp(this,&a,sizeof(InetAddress)) == 0);
  311. }
  312. }
  313. return false;
  314. }
  315. bool InetAddress::operator<(const InetAddress &a) const
  316. {
  317. if (ss_family < a.ss_family)
  318. return true;
  319. else if (ss_family == a.ss_family) {
  320. switch(ss_family) {
  321. case AF_INET:
  322. if (reinterpret_cast<const struct sockaddr_in *>(this)->sin_port < reinterpret_cast<const struct sockaddr_in *>(&a)->sin_port)
  323. return true;
  324. else if (reinterpret_cast<const struct sockaddr_in *>(this)->sin_port == reinterpret_cast<const struct sockaddr_in *>(&a)->sin_port) {
  325. if (reinterpret_cast<const struct sockaddr_in *>(this)->sin_addr.s_addr < reinterpret_cast<const struct sockaddr_in *>(&a)->sin_addr.s_addr)
  326. return true;
  327. }
  328. break;
  329. case AF_INET6:
  330. if (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_port < reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_port)
  331. return true;
  332. else if (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_port == reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_port) {
  333. if (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_flowinfo < reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_flowinfo)
  334. return true;
  335. else if (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_flowinfo == reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_flowinfo) {
  336. if (memcmp(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr,reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_addr.s6_addr,16) < 0)
  337. return true;
  338. else if (memcmp(reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_addr.s6_addr,reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_addr.s6_addr,16) == 0) {
  339. if (reinterpret_cast<const struct sockaddr_in6 *>(this)->sin6_scope_id < reinterpret_cast<const struct sockaddr_in6 *>(&a)->sin6_scope_id)
  340. return true;
  341. }
  342. }
  343. }
  344. break;
  345. default:
  346. return (memcmp(this,&a,sizeof(InetAddress)) < 0);
  347. }
  348. }
  349. return false;
  350. }
  351. InetAddress InetAddress::makeIpv6LinkLocal(const MAC &mac)
  352. {
  353. struct sockaddr_in6 sin6;
  354. sin6.sin6_family = AF_INET6;
  355. sin6.sin6_addr.s6_addr[0] = 0xfe;
  356. sin6.sin6_addr.s6_addr[1] = 0x80;
  357. sin6.sin6_addr.s6_addr[2] = 0x00;
  358. sin6.sin6_addr.s6_addr[3] = 0x00;
  359. sin6.sin6_addr.s6_addr[4] = 0x00;
  360. sin6.sin6_addr.s6_addr[5] = 0x00;
  361. sin6.sin6_addr.s6_addr[6] = 0x00;
  362. sin6.sin6_addr.s6_addr[7] = 0x00;
  363. sin6.sin6_addr.s6_addr[8] = mac[0] & 0xfd;
  364. sin6.sin6_addr.s6_addr[9] = mac[1];
  365. sin6.sin6_addr.s6_addr[10] = mac[2];
  366. sin6.sin6_addr.s6_addr[11] = 0xff;
  367. sin6.sin6_addr.s6_addr[12] = 0xfe;
  368. sin6.sin6_addr.s6_addr[13] = mac[3];
  369. sin6.sin6_addr.s6_addr[14] = mac[4];
  370. sin6.sin6_addr.s6_addr[15] = mac[5];
  371. sin6.sin6_port = Utils::hton((uint16_t)64);
  372. return InetAddress(sin6);
  373. }
  374. InetAddress InetAddress::makeIpv6rfc4193(uint64_t nwid,uint64_t zeroTierAddress)
  375. {
  376. InetAddress r;
  377. struct sockaddr_in6 *const sin6 = reinterpret_cast<struct sockaddr_in6 *>(&r);
  378. sin6->sin6_family = AF_INET6;
  379. sin6->sin6_addr.s6_addr[0] = 0xfd;
  380. sin6->sin6_addr.s6_addr[1] = (uint8_t)(nwid >> 56);
  381. sin6->sin6_addr.s6_addr[2] = (uint8_t)(nwid >> 48);
  382. sin6->sin6_addr.s6_addr[3] = (uint8_t)(nwid >> 40);
  383. sin6->sin6_addr.s6_addr[4] = (uint8_t)(nwid >> 32);
  384. sin6->sin6_addr.s6_addr[5] = (uint8_t)(nwid >> 24);
  385. sin6->sin6_addr.s6_addr[6] = (uint8_t)(nwid >> 16);
  386. sin6->sin6_addr.s6_addr[7] = (uint8_t)(nwid >> 8);
  387. sin6->sin6_addr.s6_addr[8] = (uint8_t)nwid;
  388. sin6->sin6_addr.s6_addr[9] = 0x99;
  389. sin6->sin6_addr.s6_addr[10] = 0x93;
  390. sin6->sin6_addr.s6_addr[11] = (uint8_t)(zeroTierAddress >> 32);
  391. sin6->sin6_addr.s6_addr[12] = (uint8_t)(zeroTierAddress >> 24);
  392. sin6->sin6_addr.s6_addr[13] = (uint8_t)(zeroTierAddress >> 16);
  393. sin6->sin6_addr.s6_addr[14] = (uint8_t)(zeroTierAddress >> 8);
  394. sin6->sin6_addr.s6_addr[15] = (uint8_t)zeroTierAddress;
  395. sin6->sin6_port = Utils::hton((uint16_t)88); // /88 includes 0xfd + network ID, discriminating by device ID below that
  396. return r;
  397. }
  398. InetAddress InetAddress::makeIpv66plane(uint64_t nwid,uint64_t zeroTierAddress)
  399. {
  400. nwid ^= (nwid >> 32);
  401. InetAddress r;
  402. struct sockaddr_in6 *const sin6 = reinterpret_cast<struct sockaddr_in6 *>(&r);
  403. sin6->sin6_family = AF_INET6;
  404. sin6->sin6_addr.s6_addr[0] = 0xfc;
  405. sin6->sin6_addr.s6_addr[1] = (uint8_t)(nwid >> 24);
  406. sin6->sin6_addr.s6_addr[2] = (uint8_t)(nwid >> 16);
  407. sin6->sin6_addr.s6_addr[3] = (uint8_t)(nwid >> 8);
  408. sin6->sin6_addr.s6_addr[4] = (uint8_t)nwid;
  409. sin6->sin6_addr.s6_addr[5] = (uint8_t)(zeroTierAddress >> 32);
  410. sin6->sin6_addr.s6_addr[6] = (uint8_t)(zeroTierAddress >> 24);
  411. sin6->sin6_addr.s6_addr[7] = (uint8_t)(zeroTierAddress >> 16);
  412. sin6->sin6_addr.s6_addr[8] = (uint8_t)(zeroTierAddress >> 8);
  413. sin6->sin6_addr.s6_addr[9] = (uint8_t)zeroTierAddress;
  414. sin6->sin6_addr.s6_addr[15] = 0x01;
  415. sin6->sin6_port = Utils::hton((uint16_t)40);
  416. return r;
  417. }
  418. } // namespace ZeroTier