test_addr.c 21 KB

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  1. /* Copyright (c) 2001-2004, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2011, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. #include "orconfig.h"
  6. #include "or.h"
  7. #include "test.h"
  8. static void
  9. test_addr_basic(void)
  10. {
  11. uint32_t u32;
  12. uint16_t u16;
  13. char *cp;
  14. /* Test parse_addr_port */
  15. cp = NULL; u32 = 3; u16 = 3;
  16. test_assert(!parse_addr_port(LOG_WARN, "1.2.3.4", &cp, &u32, &u16));
  17. test_streq(cp, "1.2.3.4");
  18. test_eq(u32, 0x01020304u);
  19. test_eq(u16, 0);
  20. tor_free(cp);
  21. test_assert(!parse_addr_port(LOG_WARN, "4.3.2.1:99", &cp, &u32, &u16));
  22. test_streq(cp, "4.3.2.1");
  23. test_eq(u32, 0x04030201u);
  24. test_eq(u16, 99);
  25. tor_free(cp);
  26. test_assert(!parse_addr_port(LOG_WARN, "nonexistent.address:4040",
  27. &cp, NULL, &u16));
  28. test_streq(cp, "nonexistent.address");
  29. test_eq(u16, 4040);
  30. tor_free(cp);
  31. test_assert(!parse_addr_port(LOG_WARN, "localhost:9999", &cp, &u32, &u16));
  32. test_streq(cp, "localhost");
  33. test_eq(u32, 0x7f000001u);
  34. test_eq(u16, 9999);
  35. tor_free(cp);
  36. u32 = 3;
  37. test_assert(!parse_addr_port(LOG_WARN, "localhost", NULL, &u32, &u16));
  38. test_eq(cp, NULL);
  39. test_eq(u32, 0x7f000001u);
  40. test_eq(u16, 0);
  41. tor_free(cp);
  42. test_eq(0, addr_mask_get_bits(0x0u));
  43. test_eq(32, addr_mask_get_bits(0xFFFFFFFFu));
  44. test_eq(16, addr_mask_get_bits(0xFFFF0000u));
  45. test_eq(31, addr_mask_get_bits(0xFFFFFFFEu));
  46. test_eq(1, addr_mask_get_bits(0x80000000u));
  47. /* Test inet_ntop */
  48. {
  49. char tmpbuf[TOR_ADDR_BUF_LEN];
  50. const char *ip = "176.192.208.224";
  51. struct in_addr in;
  52. tor_inet_pton(AF_INET, ip, &in);
  53. tor_inet_ntop(AF_INET, &in, tmpbuf, sizeof(tmpbuf));
  54. test_streq(tmpbuf, ip);
  55. }
  56. done:
  57. ;
  58. }
  59. #define _test_op_ip6(a,op,b,e1,e2) \
  60. STMT_BEGIN \
  61. tt_assert_test_fmt_type(a,b,e1" "#op" "e2,struct in6_addr*, \
  62. (memcmp(_val1->s6_addr, _val2->s6_addr, 16) op 0), \
  63. char *, "%s", \
  64. { int i; char *cp; \
  65. cp = _print = tor_malloc(64); \
  66. for (i=0;i<16;++i) { \
  67. tor_snprintf(cp, 3,"%02x", (unsigned)_value->s6_addr[i]);\
  68. cp += 2; \
  69. if (i != 15) *cp++ = ':'; \
  70. } \
  71. }, { tor_free(_print); } \
  72. ); \
  73. STMT_END
  74. /** Helper: Assert that two strings both decode as IPv6 addresses with
  75. * tor_inet_pton(), and both decode to the same address. */
  76. #define test_pton6_same(a,b) STMT_BEGIN \
  77. test_eq(tor_inet_pton(AF_INET6, a, &a1), 1); \
  78. test_eq(tor_inet_pton(AF_INET6, b, &a2), 1); \
  79. _test_op_ip6(&a1,==,&a2,#a,#b); \
  80. STMT_END
  81. /** Helper: Assert that <b>a</b> is recognized as a bad IPv6 address by
  82. * tor_inet_pton(). */
  83. #define test_pton6_bad(a) \
  84. test_eq(0, tor_inet_pton(AF_INET6, a, &a1))
  85. /** Helper: assert that <b>a</b>, when parsed by tor_inet_pton() and displayed
  86. * with tor_inet_ntop(), yields <b>b</b>. Also assert that <b>b</b> parses to
  87. * the same value as <b>a</b>. */
  88. #define test_ntop6_reduces(a,b) STMT_BEGIN \
  89. test_eq(tor_inet_pton(AF_INET6, a, &a1), 1); \
  90. test_streq(tor_inet_ntop(AF_INET6, &a1, buf, sizeof(buf)), b); \
  91. test_eq(tor_inet_pton(AF_INET6, b, &a2), 1); \
  92. _test_op_ip6(&a1, ==, &a2, a, b); \
  93. STMT_END
  94. /** Helper: assert that <b>a</b> parses by tor_inet_pton() into a address that
  95. * passes tor_addr_is_internal() with <b>for_listening</b>. */
  96. #define test_internal_ip(a,for_listening) STMT_BEGIN \
  97. test_eq(tor_inet_pton(AF_INET6, a, &t1.addr.in6_addr), 1); \
  98. t1.family = AF_INET6; \
  99. if (!tor_addr_is_internal(&t1, for_listening)) \
  100. test_fail_msg( a "was not internal."); \
  101. STMT_END
  102. /** Helper: assert that <b>a</b> parses by tor_inet_pton() into a address that
  103. * does not pass tor_addr_is_internal() with <b>for_listening</b>. */
  104. #define test_external_ip(a,for_listening) STMT_BEGIN \
  105. test_eq(tor_inet_pton(AF_INET6, a, &t1.addr.in6_addr), 1); \
  106. t1.family = AF_INET6; \
  107. if (tor_addr_is_internal(&t1, for_listening)) \
  108. test_fail_msg(a "was not external."); \
  109. STMT_END
  110. /** Helper: Assert that <b>a</b> and <b>b</b>, when parsed by
  111. * tor_inet_pton(), give addresses that compare in the order defined by
  112. * <b>op</b> with tor_addr_compare(). */
  113. #define test_addr_compare(a, op, b) STMT_BEGIN \
  114. test_eq(tor_inet_pton(AF_INET6, a, &t1.addr.in6_addr), 1); \
  115. test_eq(tor_inet_pton(AF_INET6, b, &t2.addr.in6_addr), 1); \
  116. t1.family = t2.family = AF_INET6; \
  117. r = tor_addr_compare(&t1,&t2,CMP_SEMANTIC); \
  118. if (!(r op 0)) \
  119. test_fail_msg("failed: tor_addr_compare("a","b") "#op" 0"); \
  120. STMT_END
  121. /** Helper: Assert that <b>a</b> and <b>b</b>, when parsed by
  122. * tor_inet_pton(), give addresses that compare in the order defined by
  123. * <b>op</b> with tor_addr_compare_masked() with <b>m</b> masked. */
  124. #define test_addr_compare_masked(a, op, b, m) STMT_BEGIN \
  125. test_eq(tor_inet_pton(AF_INET6, a, &t1.addr.in6_addr), 1); \
  126. test_eq(tor_inet_pton(AF_INET6, b, &t2.addr.in6_addr), 1); \
  127. t1.family = t2.family = AF_INET6; \
  128. r = tor_addr_compare_masked(&t1,&t2,m,CMP_SEMANTIC); \
  129. if (!(r op 0)) \
  130. test_fail_msg("failed: tor_addr_compare_masked("a","b","#m") "#op" 0"); \
  131. STMT_END
  132. /** Helper: assert that <b>xx</b> is parseable as a masked IPv6 address with
  133. * ports by tor_parse_mask_addr_ports(), with family <b>f</b>, IP address
  134. * as 4 32-bit words <b>ip1...ip4</b>, mask bits as <b>mm</b>, and port range
  135. * as <b>pt1..pt2</b>. */
  136. #define test_addr_mask_ports_parse(xx, f, ip1, ip2, ip3, ip4, mm, pt1, pt2) \
  137. STMT_BEGIN \
  138. test_eq(tor_addr_parse_mask_ports(xx, &t1, &mask, &port1, &port2), f); \
  139. p1=tor_inet_ntop(AF_INET6, &t1.addr.in6_addr, bug, sizeof(bug)); \
  140. test_eq(htonl(ip1), tor_addr_to_in6_addr32(&t1)[0]); \
  141. test_eq(htonl(ip2), tor_addr_to_in6_addr32(&t1)[1]); \
  142. test_eq(htonl(ip3), tor_addr_to_in6_addr32(&t1)[2]); \
  143. test_eq(htonl(ip4), tor_addr_to_in6_addr32(&t1)[3]); \
  144. test_eq(mask, mm); \
  145. test_eq(port1, pt1); \
  146. test_eq(port2, pt2); \
  147. STMT_END
  148. /** Run unit tests for IPv6 encoding/decoding/manipulation functions. */
  149. static void
  150. test_addr_ip6_helpers(void)
  151. {
  152. char buf[TOR_ADDR_BUF_LEN], bug[TOR_ADDR_BUF_LEN];
  153. struct in6_addr a1, a2;
  154. tor_addr_t t1, t2;
  155. int r, i;
  156. uint16_t port1, port2;
  157. maskbits_t mask;
  158. const char *p1;
  159. struct sockaddr_storage sa_storage;
  160. struct sockaddr_in *sin;
  161. struct sockaddr_in6 *sin6;
  162. // struct in_addr b1, b2;
  163. /* Test tor_inet_ntop and tor_inet_pton: IPv6 */
  164. /* ==== Converting to and from sockaddr_t. */
  165. sin = (struct sockaddr_in *)&sa_storage;
  166. sin->sin_family = AF_INET;
  167. sin->sin_port = 9090;
  168. sin->sin_addr.s_addr = htonl(0x7f7f0102); /*127.127.1.2*/
  169. tor_addr_from_sockaddr(&t1, (struct sockaddr *)sin, NULL);
  170. test_eq(tor_addr_family(&t1), AF_INET);
  171. test_eq(tor_addr_to_ipv4h(&t1), 0x7f7f0102);
  172. memset(&sa_storage, 0, sizeof(sa_storage));
  173. test_eq(sizeof(struct sockaddr_in),
  174. tor_addr_to_sockaddr(&t1, 1234, (struct sockaddr *)&sa_storage,
  175. sizeof(sa_storage)));
  176. test_eq(1234, ntohs(sin->sin_port));
  177. test_eq(0x7f7f0102, ntohl(sin->sin_addr.s_addr));
  178. memset(&sa_storage, 0, sizeof(sa_storage));
  179. sin6 = (struct sockaddr_in6 *)&sa_storage;
  180. sin6->sin6_family = AF_INET6;
  181. sin6->sin6_port = htons(7070);
  182. sin6->sin6_addr.s6_addr[0] = 128;
  183. tor_addr_from_sockaddr(&t1, (struct sockaddr *)sin6, NULL);
  184. test_eq(tor_addr_family(&t1), AF_INET6);
  185. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 0);
  186. test_streq(p1, "8000::");
  187. memset(&sa_storage, 0, sizeof(sa_storage));
  188. test_eq(sizeof(struct sockaddr_in6),
  189. tor_addr_to_sockaddr(&t1, 9999, (struct sockaddr *)&sa_storage,
  190. sizeof(sa_storage)));
  191. test_eq(AF_INET6, sin6->sin6_family);
  192. test_eq(9999, ntohs(sin6->sin6_port));
  193. test_eq(0x80000000, ntohl(S6_ADDR32(sin6->sin6_addr)[0]));
  194. /* ==== tor_addr_lookup: static cases. (Can't test dns without knowing we
  195. * have a good resolver. */
  196. test_eq(0, tor_addr_lookup("127.128.129.130", AF_UNSPEC, &t1));
  197. test_eq(AF_INET, tor_addr_family(&t1));
  198. test_eq(tor_addr_to_ipv4h(&t1), 0x7f808182);
  199. test_eq(0, tor_addr_lookup("9000::5", AF_UNSPEC, &t1));
  200. test_eq(AF_INET6, tor_addr_family(&t1));
  201. test_eq(0x90, tor_addr_to_in6_addr8(&t1)[0]);
  202. test_assert(tor_mem_is_zero((char*)tor_addr_to_in6_addr8(&t1)+1, 14));
  203. test_eq(0x05, tor_addr_to_in6_addr8(&t1)[15]);
  204. /* === Test pton: valid af_inet6 */
  205. /* Simple, valid parsing. */
  206. r = tor_inet_pton(AF_INET6,
  207. "0102:0304:0506:0708:090A:0B0C:0D0E:0F10", &a1);
  208. test_assert(r==1);
  209. for (i=0;i<16;++i) { test_eq(i+1, (int)a1.s6_addr[i]); }
  210. /* ipv4 ending. */
  211. test_pton6_same("0102:0304:0506:0708:090A:0B0C:0D0E:0F10",
  212. "0102:0304:0506:0708:090A:0B0C:13.14.15.16");
  213. /* shortened words. */
  214. test_pton6_same("0001:0099:BEEF:0000:0123:FFFF:0001:0001",
  215. "1:99:BEEF:0:0123:FFFF:1:1");
  216. /* zeros at the beginning */
  217. test_pton6_same("0000:0000:0000:0000:0009:C0A8:0001:0001",
  218. "::9:c0a8:1:1");
  219. test_pton6_same("0000:0000:0000:0000:0009:C0A8:0001:0001",
  220. "::9:c0a8:0.1.0.1");
  221. /* zeros in the middle. */
  222. test_pton6_same("fe80:0000:0000:0000:0202:1111:0001:0001",
  223. "fe80::202:1111:1:1");
  224. /* zeros at the end. */
  225. test_pton6_same("1000:0001:0000:0007:0000:0000:0000:0000",
  226. "1000:1:0:7::");
  227. /* === Test ntop: af_inet6 */
  228. test_ntop6_reduces("0:0:0:0:0:0:0:0", "::");
  229. test_ntop6_reduces("0001:0099:BEEF:0006:0123:FFFF:0001:0001",
  230. "1:99:beef:6:123:ffff:1:1");
  231. //test_ntop6_reduces("0:0:0:0:0:0:c0a8:0101", "::192.168.1.1");
  232. test_ntop6_reduces("0:0:0:0:0:ffff:c0a8:0101", "::ffff:192.168.1.1");
  233. test_ntop6_reduces("002:0:0000:0:3::4", "2::3:0:0:4");
  234. test_ntop6_reduces("0:0::1:0:3", "::1:0:3");
  235. test_ntop6_reduces("008:0::0", "8::");
  236. test_ntop6_reduces("0:0:0:0:0:ffff::1", "::ffff:0.0.0.1");
  237. test_ntop6_reduces("abcd:0:0:0:0:0:7f00::", "abcd::7f00:0");
  238. test_ntop6_reduces("0000:0000:0000:0000:0009:C0A8:0001:0001",
  239. "::9:c0a8:1:1");
  240. test_ntop6_reduces("fe80:0000:0000:0000:0202:1111:0001:0001",
  241. "fe80::202:1111:1:1");
  242. test_ntop6_reduces("1000:0001:0000:0007:0000:0000:0000:0000",
  243. "1000:1:0:7::");
  244. /* === Test pton: invalid in6. */
  245. test_pton6_bad("foobar.");
  246. test_pton6_bad("55555::");
  247. test_pton6_bad("9:-60::");
  248. test_pton6_bad("1:2:33333:4:0002:3::");
  249. //test_pton6_bad("1:2:3333:4:00002:3::");// BAD, but glibc doesn't say so.
  250. test_pton6_bad("1:2:3333:4:fish:3::");
  251. test_pton6_bad("1:2:3:4:5:6:7:8:9");
  252. test_pton6_bad("1:2:3:4:5:6:7");
  253. test_pton6_bad("1:2:3:4:5:6:1.2.3.4.5");
  254. test_pton6_bad("1:2:3:4:5:6:1.2.3");
  255. test_pton6_bad("::1.2.3");
  256. test_pton6_bad("::1.2.3.4.5");
  257. test_pton6_bad("99");
  258. test_pton6_bad("");
  259. test_pton6_bad("1::2::3:4");
  260. test_pton6_bad("a:::b:c");
  261. test_pton6_bad(":::a:b:c");
  262. test_pton6_bad("a:b:c:::");
  263. /* test internal checking */
  264. test_external_ip("fbff:ffff::2:7", 0);
  265. test_internal_ip("fc01::2:7", 0);
  266. test_internal_ip("fdff:ffff::f:f", 0);
  267. test_external_ip("fe00::3:f", 0);
  268. test_external_ip("fe7f:ffff::2:7", 0);
  269. test_internal_ip("fe80::2:7", 0);
  270. test_internal_ip("febf:ffff::f:f", 0);
  271. test_internal_ip("fec0::2:7:7", 0);
  272. test_internal_ip("feff:ffff::e:7:7", 0);
  273. test_external_ip("ff00::e:7:7", 0);
  274. test_internal_ip("::", 0);
  275. test_internal_ip("::1", 0);
  276. test_internal_ip("::1", 1);
  277. test_internal_ip("::", 0);
  278. test_external_ip("::", 1);
  279. test_external_ip("::2", 0);
  280. test_external_ip("2001::", 0);
  281. test_external_ip("ffff::", 0);
  282. test_external_ip("::ffff:0.0.0.0", 1);
  283. test_internal_ip("::ffff:0.0.0.0", 0);
  284. test_internal_ip("::ffff:0.255.255.255", 0);
  285. test_external_ip("::ffff:1.0.0.0", 0);
  286. test_external_ip("::ffff:9.255.255.255", 0);
  287. test_internal_ip("::ffff:10.0.0.0", 0);
  288. test_internal_ip("::ffff:10.255.255.255", 0);
  289. test_external_ip("::ffff:11.0.0.0", 0);
  290. test_external_ip("::ffff:126.255.255.255", 0);
  291. test_internal_ip("::ffff:127.0.0.0", 0);
  292. test_internal_ip("::ffff:127.255.255.255", 0);
  293. test_external_ip("::ffff:128.0.0.0", 0);
  294. test_external_ip("::ffff:172.15.255.255", 0);
  295. test_internal_ip("::ffff:172.16.0.0", 0);
  296. test_internal_ip("::ffff:172.31.255.255", 0);
  297. test_external_ip("::ffff:172.32.0.0", 0);
  298. test_external_ip("::ffff:192.167.255.255", 0);
  299. test_internal_ip("::ffff:192.168.0.0", 0);
  300. test_internal_ip("::ffff:192.168.255.255", 0);
  301. test_external_ip("::ffff:192.169.0.0", 0);
  302. test_external_ip("::ffff:169.253.255.255", 0);
  303. test_internal_ip("::ffff:169.254.0.0", 0);
  304. test_internal_ip("::ffff:169.254.255.255", 0);
  305. test_external_ip("::ffff:169.255.0.0", 0);
  306. test_assert(is_internal_IP(0x7f000001, 0));
  307. /* tor_addr_compare(tor_addr_t x2) */
  308. test_addr_compare("ffff::", ==, "ffff::0");
  309. test_addr_compare("0::3:2:1", <, "0::ffff:0.3.2.1");
  310. test_addr_compare("0::2:2:1", <, "0::ffff:0.3.2.1");
  311. test_addr_compare("0::ffff:0.3.2.1", >, "0::0:0:0");
  312. test_addr_compare("0::ffff:5.2.2.1", <, "::ffff:6.0.0.0"); /* XXXX wrong. */
  313. tor_addr_parse_mask_ports("[::ffff:2.3.4.5]", &t1, NULL, NULL, NULL);
  314. tor_addr_parse_mask_ports("2.3.4.5", &t2, NULL, NULL, NULL);
  315. test_assert(tor_addr_compare(&t1, &t2, CMP_SEMANTIC) == 0);
  316. tor_addr_parse_mask_ports("[::ffff:2.3.4.4]", &t1, NULL, NULL, NULL);
  317. tor_addr_parse_mask_ports("2.3.4.5", &t2, NULL, NULL, NULL);
  318. test_assert(tor_addr_compare(&t1, &t2, CMP_SEMANTIC) < 0);
  319. /* test compare_masked */
  320. test_addr_compare_masked("ffff::", ==, "ffff::0", 128);
  321. test_addr_compare_masked("ffff::", ==, "ffff::0", 64);
  322. test_addr_compare_masked("0::2:2:1", <, "0::8000:2:1", 81);
  323. test_addr_compare_masked("0::2:2:1", ==, "0::8000:2:1", 80);
  324. /* Test decorated addr_to_string. */
  325. test_eq(AF_INET6, tor_addr_from_str(&t1, "[123:45:6789::5005:11]"));
  326. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 1);
  327. test_streq(p1, "[123:45:6789::5005:11]");
  328. test_eq(AF_INET, tor_addr_from_str(&t1, "18.0.0.1"));
  329. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 1);
  330. test_streq(p1, "18.0.0.1");
  331. /* Test tor_addr_parse_reverse_lookup_name */
  332. i = tor_addr_parse_reverse_lookup_name(&t1, "Foobar.baz", AF_UNSPEC, 0);
  333. test_eq(0, i);
  334. i = tor_addr_parse_reverse_lookup_name(&t1, "Foobar.baz", AF_UNSPEC, 1);
  335. test_eq(0, i);
  336. i = tor_addr_parse_reverse_lookup_name(&t1, "1.0.168.192.in-addr.arpa",
  337. AF_UNSPEC, 1);
  338. test_eq(1, i);
  339. test_eq(tor_addr_family(&t1), AF_INET);
  340. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 1);
  341. test_streq(p1, "192.168.0.1");
  342. i = tor_addr_parse_reverse_lookup_name(&t1, "192.168.0.99", AF_UNSPEC, 0);
  343. test_eq(0, i);
  344. i = tor_addr_parse_reverse_lookup_name(&t1, "192.168.0.99", AF_UNSPEC, 1);
  345. test_eq(1, i);
  346. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 1);
  347. test_streq(p1, "192.168.0.99");
  348. memset(&t1, 0, sizeof(t1));
  349. i = tor_addr_parse_reverse_lookup_name(&t1,
  350. "0.1.2.3.4.5.6.7.8.9.a.b.c.d.e.f."
  351. "f.e.e.b.1.e.b.e.e.f.f.e.e.e.d.9."
  352. "ip6.ARPA",
  353. AF_UNSPEC, 0);
  354. test_eq(1, i);
  355. p1 = tor_addr_to_str(buf, &t1, sizeof(buf), 1);
  356. test_streq(p1, "[9dee:effe:ebe1:beef:fedc:ba98:7654:3210]");
  357. /* Failing cases. */
  358. i = tor_addr_parse_reverse_lookup_name(&t1,
  359. "6.7.8.9.a.b.c.d.e.f."
  360. "f.e.e.b.1.e.b.e.e.f.f.e.e.e.d.9."
  361. "ip6.ARPA",
  362. AF_UNSPEC, 0);
  363. test_eq(i, -1);
  364. i = tor_addr_parse_reverse_lookup_name(&t1,
  365. "6.7.8.9.a.b.c.d.e.f.a.b.c.d.e.f.0."
  366. "f.e.e.b.1.e.b.e.e.f.f.e.e.e.d.9."
  367. "ip6.ARPA",
  368. AF_UNSPEC, 0);
  369. test_eq(i, -1);
  370. i = tor_addr_parse_reverse_lookup_name(&t1,
  371. "6.7.8.9.a.b.c.d.e.f.X.0.0.0.0.9."
  372. "f.e.e.b.1.e.b.e.e.f.f.e.e.e.d.9."
  373. "ip6.ARPA",
  374. AF_UNSPEC, 0);
  375. test_eq(i, -1);
  376. i = tor_addr_parse_reverse_lookup_name(&t1, "32.1.1.in-addr.arpa",
  377. AF_UNSPEC, 0);
  378. test_eq(i, -1);
  379. i = tor_addr_parse_reverse_lookup_name(&t1, ".in-addr.arpa",
  380. AF_UNSPEC, 0);
  381. test_eq(i, -1);
  382. i = tor_addr_parse_reverse_lookup_name(&t1, "1.2.3.4.5.in-addr.arpa",
  383. AF_UNSPEC, 0);
  384. test_eq(i, -1);
  385. i = tor_addr_parse_reverse_lookup_name(&t1, "1.2.3.4.5.in-addr.arpa",
  386. AF_INET6, 0);
  387. test_eq(i, -1);
  388. i = tor_addr_parse_reverse_lookup_name(&t1,
  389. "6.7.8.9.a.b.c.d.e.f.a.b.c.d.e.0."
  390. "f.e.e.b.1.e.b.e.e.f.f.e.e.e.d.9."
  391. "ip6.ARPA",
  392. AF_INET, 0);
  393. test_eq(i, -1);
  394. /* test tor_addr_parse_mask_ports */
  395. test_addr_mask_ports_parse("[::f]/17:47-95", AF_INET6,
  396. 0, 0, 0, 0x0000000f, 17, 47, 95);
  397. //test_addr_parse("[::fefe:4.1.1.7/120]:999-1000");
  398. //test_addr_parse_check("::fefe:401:107", 120, 999, 1000);
  399. test_addr_mask_ports_parse("[::ffff:4.1.1.7]/120:443", AF_INET6,
  400. 0, 0, 0x0000ffff, 0x04010107, 120, 443, 443);
  401. test_addr_mask_ports_parse("[abcd:2::44a:0]:2-65000", AF_INET6,
  402. 0xabcd0002, 0, 0, 0x044a0000, 128, 2, 65000);
  403. r=tor_addr_parse_mask_ports("[fefef::]/112", &t1, NULL, NULL, NULL);
  404. test_assert(r == -1);
  405. r=tor_addr_parse_mask_ports("efef::/112", &t1, NULL, NULL, NULL);
  406. test_assert(r == -1);
  407. r=tor_addr_parse_mask_ports("[f:f:f:f:f:f:f:f::]", &t1, NULL, NULL, NULL);
  408. test_assert(r == -1);
  409. r=tor_addr_parse_mask_ports("[::f:f:f:f:f:f:f:f]", &t1, NULL, NULL, NULL);
  410. test_assert(r == -1);
  411. r=tor_addr_parse_mask_ports("[f:f:f:f:f:f:f:f:f]", &t1, NULL, NULL, NULL);
  412. test_assert(r == -1);
  413. /* Test for V4-mapped address with mask < 96. (arguably not valid) */
  414. r=tor_addr_parse_mask_ports("[::ffff:1.1.2.2/33]", &t1, &mask, NULL, NULL);
  415. test_assert(r == -1);
  416. r=tor_addr_parse_mask_ports("1.1.2.2/33", &t1, &mask, NULL, NULL);
  417. test_assert(r == -1);
  418. r=tor_addr_parse_mask_ports("1.1.2.2/31", &t1, &mask, NULL, NULL);
  419. test_assert(r == AF_INET);
  420. r=tor_addr_parse_mask_ports("[efef::]/112", &t1, &mask, &port1, &port2);
  421. test_assert(r == AF_INET6);
  422. test_assert(port1 == 1);
  423. test_assert(port2 == 65535);
  424. /* make sure inet address lengths >= max */
  425. test_assert(INET_NTOA_BUF_LEN >= sizeof("255.255.255.255"));
  426. test_assert(TOR_ADDR_BUF_LEN >=
  427. sizeof("ffff:ffff:ffff:ffff:ffff:ffff:255.255.255.255"));
  428. test_assert(sizeof(tor_addr_t) >= sizeof(struct in6_addr));
  429. /* get interface addresses */
  430. r = get_interface_address6(LOG_DEBUG, AF_INET, &t1);
  431. i = get_interface_address6(LOG_DEBUG, AF_INET6, &t2);
  432. #if 0
  433. tor_inet_ntop(AF_INET, &t1.sa.sin_addr, buf, sizeof(buf));
  434. printf("\nv4 address: %s (family=%i)", buf, IN_FAMILY(&t1));
  435. tor_inet_ntop(AF_INET6, &t2.sa6.sin6_addr, buf, sizeof(buf));
  436. printf("\nv6 address: %s (family=%i)", buf, IN_FAMILY(&t2));
  437. #endif
  438. done:
  439. ;
  440. }
  441. #define ADDR_LEGACY(name) \
  442. { #name, legacy_test_helper, 0, &legacy_setup, test_addr_ ## name }
  443. struct testcase_t addr_tests[] = {
  444. ADDR_LEGACY(basic),
  445. ADDR_LEGACY(ip6_helpers),
  446. END_OF_TESTCASES
  447. };