test_address.c 29 KB

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  1. /* Copyright (c) 2014-2015, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. #define ADDRESS_PRIVATE
  4. #include "orconfig.h"
  5. #ifdef _WIN32
  6. #include <winsock2.h>
  7. /* For access to structs needed by GetAdaptersAddresses */
  8. #include <iphlpapi.h>
  9. #endif
  10. #ifdef HAVE_IFADDRS_TO_SMARTLIST
  11. #include <net/if.h>
  12. #include <ifaddrs.h>
  13. #endif
  14. #ifdef HAVE_IFCONF_TO_SMARTLIST
  15. #ifdef HAVE_SYS_IOCTL_H
  16. #include <sys/ioctl.h>
  17. #endif
  18. #include <net/if.h>
  19. #endif
  20. #include "or.h"
  21. #include "address.h"
  22. #include "test.h"
  23. /** Return 1 iff <b>sockaddr1</b> and <b>sockaddr2</b> represent
  24. * the same IP address and port combination. Otherwise, return 0.
  25. */
  26. static uint8_t
  27. sockaddr_in_are_equal(struct sockaddr_in *sockaddr1,
  28. struct sockaddr_in *sockaddr2)
  29. {
  30. return ((sockaddr1->sin_family == sockaddr2->sin_family) &&
  31. (sockaddr1->sin_port == sockaddr2->sin_port) &&
  32. (sockaddr1->sin_addr.s_addr == sockaddr2->sin_addr.s_addr));
  33. }
  34. /** Return 1 iff <b>sockaddr1</b> and <b>sockaddr2</b> represent
  35. * the same IP address and port combination. Otherwise, return 0.
  36. */
  37. static uint8_t
  38. sockaddr_in6_are_equal(struct sockaddr_in6 *sockaddr1,
  39. struct sockaddr_in6 *sockaddr2)
  40. {
  41. return ((sockaddr1->sin6_family == sockaddr2->sin6_family) &&
  42. (sockaddr1->sin6_port == sockaddr2->sin6_port) &&
  43. (tor_memeq(sockaddr1->sin6_addr.s6_addr,
  44. sockaddr2->sin6_addr.s6_addr,16)));
  45. }
  46. /** Create a sockaddr_in structure from IP address string <b>ip_str</b>.
  47. *
  48. * If <b>out</b> is not NULL, write the result
  49. * to the memory address in <b>out</b>. Otherwise, allocate the memory
  50. * for result. On success, return pointer to result. Otherwise, return
  51. * NULL.
  52. */
  53. static struct sockaddr_in *
  54. sockaddr_in_from_string(const char *ip_str, struct sockaddr_in *out)
  55. {
  56. // [FIXME: add some error checking?]
  57. if (!out)
  58. out = tor_malloc_zero(sizeof(struct sockaddr_in));
  59. out->sin_family = AF_INET;
  60. out->sin_port = 0;
  61. tor_inet_pton(AF_INET,ip_str,&(out->sin_addr));
  62. return out;
  63. }
  64. /** Return 1 iff <b>smartlist</b> contains a tor_addr_t structure
  65. * that is an IPv4 or IPv6 localhost address. Otherwise, return 0.
  66. */
  67. static int
  68. smartlist_contains_localhost_tor_addr(smartlist_t *smartlist)
  69. {
  70. SMARTLIST_FOREACH_BEGIN(smartlist, tor_addr_t *, tor_addr) {
  71. if (tor_addr_is_loopback(tor_addr)) {
  72. return 1;
  73. }
  74. } SMARTLIST_FOREACH_END(tor_addr);
  75. return 0;
  76. }
  77. /** Return 1 iff <b>smartlist</b> contains a tor_addr_t structure
  78. * that is an IPv4 or IPv6 multicast address. Otherwise, return 0.
  79. */
  80. static int
  81. smartlist_contains_multicast_tor_addr(smartlist_t *smartlist)
  82. {
  83. SMARTLIST_FOREACH_BEGIN(smartlist, tor_addr_t *, tor_addr) {
  84. if (tor_addr_is_multicast(tor_addr)) {
  85. return 1;
  86. }
  87. } SMARTLIST_FOREACH_END(tor_addr);
  88. return 0;
  89. }
  90. /** Return 1 iff <b>smartlist</b> contains a tor_addr_t structure
  91. * that is an IPv4 or IPv6 internal address. Otherwise, return 0.
  92. */
  93. static int
  94. smartlist_contains_internal_tor_addr(smartlist_t *smartlist)
  95. {
  96. SMARTLIST_FOREACH_BEGIN(smartlist, tor_addr_t *, tor_addr) {
  97. if (tor_addr_is_internal(tor_addr, 0)) {
  98. return 1;
  99. }
  100. } SMARTLIST_FOREACH_END(tor_addr);
  101. return 0;
  102. }
  103. /** Return 1 iff <b>smartlist</b> contains a tor_addr_t structure
  104. * that is an IPv4 address. Otherwise, return 0.
  105. */
  106. static int
  107. smartlist_contains_ipv4_tor_addr(smartlist_t *smartlist)
  108. {
  109. SMARTLIST_FOREACH_BEGIN(smartlist, tor_addr_t *, tor_addr) {
  110. if (tor_addr_is_v4(tor_addr)) {
  111. return 1;
  112. }
  113. } SMARTLIST_FOREACH_END(tor_addr);
  114. return 0;
  115. }
  116. /** Return 1 iff <b>smartlist</b> contains a tor_addr_t structure
  117. * that is an IPv6 address. Otherwise, return 0.
  118. */
  119. static int
  120. smartlist_contains_ipv6_tor_addr(smartlist_t *smartlist)
  121. {
  122. SMARTLIST_FOREACH_BEGIN(smartlist, tor_addr_t *, tor_addr) {
  123. /* Since there's no tor_addr_is_v6, assume all non-v4s are v6 */
  124. if (!tor_addr_is_v4(tor_addr)) {
  125. return 1;
  126. }
  127. } SMARTLIST_FOREACH_END(tor_addr);
  128. return 0;
  129. }
  130. #ifdef HAVE_IFADDRS_TO_SMARTLIST
  131. static void
  132. test_address_ifaddrs_to_smartlist(void *arg)
  133. {
  134. struct ifaddrs *ifa = NULL;
  135. struct ifaddrs *ifa_ipv4 = NULL;
  136. struct ifaddrs *ifa_ipv6 = NULL;
  137. struct sockaddr_in *ipv4_sockaddr_local = NULL;
  138. struct sockaddr_in *netmask_slash8 = NULL;
  139. struct sockaddr_in *ipv4_sockaddr_remote = NULL;
  140. struct sockaddr_in6 *ipv6_sockaddr = NULL;
  141. smartlist_t *smartlist = NULL;
  142. tor_addr_t *tor_addr = NULL;
  143. struct sockaddr *sockaddr_to_check = NULL;
  144. socklen_t addr_len;
  145. (void)arg;
  146. netmask_slash8 = sockaddr_in_from_string("255.0.0.0",NULL);
  147. ipv4_sockaddr_local = sockaddr_in_from_string("127.0.0.1",NULL);
  148. ipv4_sockaddr_remote = sockaddr_in_from_string("128.52.160.20",NULL);
  149. ipv6_sockaddr = tor_malloc(sizeof(struct sockaddr_in6));
  150. ipv6_sockaddr->sin6_family = AF_INET6;
  151. ipv6_sockaddr->sin6_port = 0;
  152. tor_inet_pton(AF_INET6, "2001:db8:8714:3a90::12",
  153. &(ipv6_sockaddr->sin6_addr));
  154. ifa = tor_malloc(sizeof(struct ifaddrs));
  155. ifa_ipv4 = tor_malloc(sizeof(struct ifaddrs));
  156. ifa_ipv6 = tor_malloc(sizeof(struct ifaddrs));
  157. ifa->ifa_next = ifa_ipv4;
  158. ifa->ifa_name = tor_strdup("eth0");
  159. ifa->ifa_flags = IFF_UP | IFF_RUNNING;
  160. ifa->ifa_addr = (struct sockaddr *)ipv4_sockaddr_local;
  161. ifa->ifa_netmask = (struct sockaddr *)netmask_slash8;
  162. ifa->ifa_dstaddr = NULL;
  163. ifa->ifa_data = NULL;
  164. ifa_ipv4->ifa_next = ifa_ipv6;
  165. ifa_ipv4->ifa_name = tor_strdup("eth1");
  166. ifa_ipv4->ifa_flags = IFF_UP | IFF_RUNNING;
  167. ifa_ipv4->ifa_addr = (struct sockaddr *)ipv4_sockaddr_remote;
  168. ifa_ipv4->ifa_netmask = (struct sockaddr *)netmask_slash8;
  169. ifa_ipv4->ifa_dstaddr = NULL;
  170. ifa_ipv4->ifa_data = NULL;
  171. ifa_ipv6->ifa_next = NULL;
  172. ifa_ipv6->ifa_name = tor_strdup("eth2");
  173. ifa_ipv6->ifa_flags = IFF_UP | IFF_RUNNING;
  174. ifa_ipv6->ifa_addr = (struct sockaddr *)ipv6_sockaddr;
  175. ifa_ipv6->ifa_netmask = NULL;
  176. ifa_ipv6->ifa_dstaddr = NULL;
  177. ifa_ipv6->ifa_data = NULL;
  178. smartlist = ifaddrs_to_smartlist(ifa);
  179. tt_assert(smartlist);
  180. tt_assert(smartlist_len(smartlist) == 3);
  181. sockaddr_to_check = tor_malloc(sizeof(struct sockaddr_in6));
  182. tor_addr = smartlist_get(smartlist,0);
  183. addr_len =
  184. tor_addr_to_sockaddr(tor_addr,0,sockaddr_to_check,
  185. sizeof(struct sockaddr_in));
  186. tt_int_op(addr_len,==,sizeof(struct sockaddr_in));
  187. tt_assert(sockaddr_in_are_equal((struct sockaddr_in *)sockaddr_to_check,
  188. ipv4_sockaddr_local));
  189. tor_addr = smartlist_get(smartlist,1);
  190. addr_len =
  191. tor_addr_to_sockaddr(tor_addr,0,sockaddr_to_check,
  192. sizeof(struct sockaddr_in));
  193. tt_int_op(addr_len,==,sizeof(struct sockaddr_in));
  194. tt_assert(sockaddr_in_are_equal((struct sockaddr_in *)sockaddr_to_check,
  195. ipv4_sockaddr_remote));
  196. tor_addr = smartlist_get(smartlist,2);
  197. addr_len =
  198. tor_addr_to_sockaddr(tor_addr,0,sockaddr_to_check,
  199. sizeof(struct sockaddr_in6));
  200. tt_int_op(addr_len,==,sizeof(struct sockaddr_in6));
  201. tt_assert(sockaddr_in6_are_equal((struct sockaddr_in6*)sockaddr_to_check,
  202. ipv6_sockaddr));
  203. done:
  204. tor_free(netmask_slash8);
  205. tor_free(ipv4_sockaddr_local);
  206. tor_free(ipv4_sockaddr_remote);
  207. tor_free(ipv6_sockaddr);
  208. tor_free(ifa->ifa_name);
  209. tor_free(ifa_ipv4->ifa_name);
  210. tor_free(ifa_ipv6->ifa_name);
  211. tor_free(ifa);
  212. tor_free(ifa_ipv4);
  213. tor_free(ifa_ipv6);
  214. tor_free(sockaddr_to_check);
  215. if (smartlist) {
  216. SMARTLIST_FOREACH(smartlist, tor_addr_t *, t, tor_free(t));
  217. smartlist_free(smartlist);
  218. }
  219. return;
  220. }
  221. static void
  222. test_address_get_if_addrs_ifaddrs(void *arg)
  223. {
  224. smartlist_t *results = NULL;
  225. (void)arg;
  226. results = get_interface_addresses_ifaddrs(LOG_ERR);
  227. tt_int_op(smartlist_len(results),>=,1);
  228. tt_assert(smartlist_contains_localhost_tor_addr(results));
  229. done:
  230. SMARTLIST_FOREACH(results, tor_addr_t *, t, tor_free(t));
  231. smartlist_free(results);
  232. return;
  233. }
  234. #endif
  235. #ifdef HAVE_IP_ADAPTER_TO_SMARTLIST
  236. static void
  237. test_address_get_if_addrs_win32(void *arg)
  238. {
  239. smartlist_t *results = NULL;
  240. (void)arg;
  241. results = get_interface_addresses_win32(LOG_ERR);
  242. tt_int_op(smartlist_len(results),>=,1);
  243. tt_assert(smartlist_contains_localhost_tor_addr(results));
  244. done:
  245. SMARTLIST_FOREACH(results, tor_addr_t *, t, tor_free(t));
  246. tor_free(results);
  247. return;
  248. }
  249. static void
  250. test_address_ip_adapter_addresses_to_smartlist(void *arg)
  251. {
  252. IP_ADAPTER_ADDRESSES *addrs1;
  253. IP_ADAPTER_ADDRESSES *addrs2;
  254. IP_ADAPTER_UNICAST_ADDRESS *unicast11;
  255. IP_ADAPTER_UNICAST_ADDRESS *unicast12;
  256. IP_ADAPTER_UNICAST_ADDRESS *unicast21;
  257. smartlist_t *result = NULL;
  258. struct sockaddr_in *sockaddr_test1;
  259. struct sockaddr_in *sockaddr_test2;
  260. struct sockaddr_in *sockaddr_localhost;
  261. struct sockaddr_in *sockaddr_to_check;
  262. tor_addr_t *tor_addr;
  263. (void)arg;
  264. (void)sockaddr_in6_are_equal;
  265. sockaddr_to_check = tor_malloc_zero(sizeof(struct sockaddr_in));
  266. addrs1 =
  267. tor_malloc_zero(sizeof(IP_ADAPTER_ADDRESSES));
  268. addrs1->FirstUnicastAddress =
  269. unicast11 = tor_malloc_zero(sizeof(IP_ADAPTER_UNICAST_ADDRESS));
  270. sockaddr_test1 = sockaddr_in_from_string("86.59.30.40",NULL);
  271. unicast11->Address.lpSockaddr = (LPSOCKADDR)sockaddr_test1;
  272. unicast11->Next = unicast12 =
  273. tor_malloc_zero(sizeof(IP_ADAPTER_UNICAST_ADDRESS));
  274. sockaddr_test2 = sockaddr_in_from_string("93.95.227.222", NULL);
  275. unicast12->Address.lpSockaddr = (LPSOCKADDR)sockaddr_test2;
  276. addrs1->Next = addrs2 =
  277. tor_malloc_zero(sizeof(IP_ADAPTER_ADDRESSES));
  278. addrs2->FirstUnicastAddress =
  279. unicast21 = tor_malloc_zero(sizeof(IP_ADAPTER_UNICAST_ADDRESS));
  280. sockaddr_localhost = sockaddr_in_from_string("127.0.0.1", NULL);
  281. unicast21->Address.lpSockaddr = (LPSOCKADDR)sockaddr_localhost;
  282. result = ip_adapter_addresses_to_smartlist(addrs1);
  283. tt_assert(result);
  284. tt_assert(smartlist_len(result) == 3);
  285. tor_addr = smartlist_get(result,0);
  286. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  287. sizeof(struct sockaddr_in));
  288. tt_assert(sockaddr_in_are_equal(sockaddr_test1,sockaddr_to_check));
  289. tor_addr = smartlist_get(result,1);
  290. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  291. sizeof(struct sockaddr_in));
  292. tt_assert(sockaddr_in_are_equal(sockaddr_test2,sockaddr_to_check));
  293. tor_addr = smartlist_get(result,2);
  294. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  295. sizeof(struct sockaddr_in));
  296. tt_assert(sockaddr_in_are_equal(sockaddr_localhost,sockaddr_to_check));
  297. done:
  298. SMARTLIST_FOREACH(result, tor_addr_t *, t, tor_free(t));
  299. smartlist_free(result);
  300. tor_free(addrs1);
  301. tor_free(addrs2);
  302. tor_free(unicast11->Address.lpSockaddr);
  303. tor_free(unicast11);
  304. tor_free(unicast12->Address.lpSockaddr);
  305. tor_free(unicast12);
  306. tor_free(unicast21->Address.lpSockaddr);
  307. tor_free(unicast21);
  308. tor_free(sockaddr_to_check);
  309. return;
  310. }
  311. #endif
  312. #ifdef HAVE_IFCONF_TO_SMARTLIST
  313. static void
  314. test_address_ifreq_to_smartlist(void *arg)
  315. {
  316. smartlist_t *results = NULL;
  317. const tor_addr_t *tor_addr = NULL;
  318. struct sockaddr_in *sockaddr = NULL;
  319. struct sockaddr_in *sockaddr_eth1 = NULL;
  320. struct sockaddr_in *sockaddr_to_check = NULL;
  321. struct ifconf *ifc;
  322. struct ifreq *ifr;
  323. struct ifreq *ifr_next;
  324. socklen_t addr_len;
  325. (void)arg;
  326. sockaddr_to_check = tor_malloc(sizeof(struct sockaddr_in));
  327. ifr = tor_malloc(sizeof(struct ifreq));
  328. memset(ifr,0,sizeof(struct ifreq));
  329. strlcpy(ifr->ifr_name,"lo",3);
  330. sockaddr = (struct sockaddr_in *) &(ifr->ifr_ifru.ifru_addr);
  331. sockaddr_in_from_string("127.0.0.1",sockaddr);
  332. ifc = tor_malloc(sizeof(struct ifconf));
  333. memset(ifc,0,sizeof(struct ifconf));
  334. ifc->ifc_len = sizeof(struct ifreq);
  335. ifc->ifc_ifcu.ifcu_req = ifr;
  336. results = ifreq_to_smartlist(ifc->ifc_buf,ifc->ifc_len);
  337. tt_int_op(smartlist_len(results),==,1);
  338. tor_addr = smartlist_get(results, 0);
  339. addr_len =
  340. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  341. sizeof(struct sockaddr_in));
  342. tt_int_op(addr_len,==,sizeof(struct sockaddr_in));
  343. tt_assert(sockaddr_in_are_equal(sockaddr,sockaddr_to_check));
  344. ifr = tor_realloc(ifr,2*sizeof(struct ifreq));
  345. ifr_next = ifr+1;
  346. strlcpy(ifr_next->ifr_name,"eth1",5);
  347. ifc->ifc_len = 2*sizeof(struct ifreq);
  348. ifc->ifc_ifcu.ifcu_req = ifr;
  349. sockaddr = (struct sockaddr_in *) &(ifr->ifr_ifru.ifru_addr);
  350. sockaddr_eth1 = (struct sockaddr_in *) &(ifr_next->ifr_ifru.ifru_addr);
  351. sockaddr_in_from_string("192.168.10.55",sockaddr_eth1);
  352. SMARTLIST_FOREACH(results, tor_addr_t *, t, tor_free(t));
  353. smartlist_free(results);
  354. results = ifreq_to_smartlist(ifc->ifc_buf,ifc->ifc_len);
  355. tt_int_op(smartlist_len(results),==,2);
  356. tor_addr = smartlist_get(results, 0);
  357. addr_len =
  358. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  359. sizeof(struct sockaddr_in));
  360. tt_int_op(addr_len,==,sizeof(struct sockaddr_in));
  361. tt_assert(sockaddr_in_are_equal(sockaddr,sockaddr_to_check));
  362. tor_addr = smartlist_get(results, 1);
  363. addr_len =
  364. tor_addr_to_sockaddr(tor_addr,0,(struct sockaddr *)sockaddr_to_check,
  365. sizeof(struct sockaddr_in));
  366. tt_int_op(addr_len,==,sizeof(struct sockaddr_in));
  367. tt_assert(sockaddr_in_are_equal(sockaddr_eth1,sockaddr_to_check));
  368. done:
  369. tor_free(sockaddr_to_check);
  370. SMARTLIST_FOREACH(results, tor_addr_t *, t, tor_free(t));
  371. smartlist_free(results);
  372. tor_free(ifc);
  373. tor_free(ifr);
  374. return;
  375. }
  376. static void
  377. test_address_get_if_addrs_ioctl(void *arg)
  378. {
  379. smartlist_t *result = NULL;
  380. (void)arg;
  381. result = get_interface_addresses_ioctl(LOG_ERR);
  382. tt_assert(result);
  383. tt_int_op(smartlist_len(result),>=,1);
  384. tt_assert(smartlist_contains_localhost_tor_addr(result));
  385. done:
  386. if (result) {
  387. SMARTLIST_FOREACH(result, tor_addr_t *, t, tor_free(t));
  388. smartlist_free(result);
  389. }
  390. return;
  391. }
  392. #endif
  393. #define FAKE_SOCKET_FD (42)
  394. static tor_socket_t
  395. fake_open_socket(int domain, int type, int protocol)
  396. {
  397. (void)domain;
  398. (void)type;
  399. (void)protocol;
  400. return FAKE_SOCKET_FD;
  401. }
  402. static int last_connected_socket_fd = 0;
  403. static int connect_retval = 0;
  404. static tor_socket_t
  405. pretend_to_connect(tor_socket_t socket, const struct sockaddr *address,
  406. socklen_t address_len)
  407. {
  408. (void)address;
  409. (void)address_len;
  410. last_connected_socket_fd = socket;
  411. return connect_retval;
  412. }
  413. static struct sockaddr *mock_addr = NULL;
  414. static int
  415. fake_getsockname(tor_socket_t socket, struct sockaddr *address,
  416. socklen_t *address_len)
  417. {
  418. socklen_t bytes_to_copy = 0;
  419. (void) socket;
  420. if (!mock_addr)
  421. return -1;
  422. if (mock_addr->sa_family == AF_INET) {
  423. bytes_to_copy = sizeof(struct sockaddr_in);
  424. } else if (mock_addr->sa_family == AF_INET6) {
  425. bytes_to_copy = sizeof(struct sockaddr_in6);
  426. } else {
  427. return -1;
  428. }
  429. if (*address_len < bytes_to_copy) {
  430. return -1;
  431. }
  432. memcpy(address,mock_addr,bytes_to_copy);
  433. *address_len = bytes_to_copy;
  434. return 0;
  435. }
  436. static void
  437. test_address_udp_socket_trick_whitebox(void *arg)
  438. {
  439. int hack_retval;
  440. tor_addr_t *addr_from_hack = tor_malloc_zero(sizeof(tor_addr_t));
  441. struct sockaddr_in6 *mock_addr6;
  442. struct sockaddr_in6 *ipv6_to_check =
  443. tor_malloc_zero(sizeof(struct sockaddr_in6));
  444. (void)arg;
  445. MOCK(tor_open_socket,fake_open_socket);
  446. MOCK(tor_connect_socket,pretend_to_connect);
  447. MOCK(tor_getsockname,fake_getsockname);
  448. mock_addr = tor_malloc_zero(sizeof(struct sockaddr_storage));
  449. sockaddr_in_from_string("23.32.246.118",(struct sockaddr_in *)mock_addr);
  450. hack_retval =
  451. get_interface_address6_via_udp_socket_hack(LOG_DEBUG,
  452. AF_INET, addr_from_hack);
  453. tt_int_op(hack_retval,==,0);
  454. tt_assert(tor_addr_eq_ipv4h(addr_from_hack, 0x1720f676));
  455. /* Now, lets do an IPv6 case. */
  456. memset(mock_addr,0,sizeof(struct sockaddr_storage));
  457. mock_addr6 = (struct sockaddr_in6 *)mock_addr;
  458. mock_addr6->sin6_family = AF_INET6;
  459. mock_addr6->sin6_port = 0;
  460. tor_inet_pton(AF_INET6,"2001:cdba::3257:9652",&(mock_addr6->sin6_addr));
  461. hack_retval =
  462. get_interface_address6_via_udp_socket_hack(LOG_DEBUG,
  463. AF_INET6, addr_from_hack);
  464. tt_int_op(hack_retval,==,0);
  465. tor_addr_to_sockaddr(addr_from_hack,0,(struct sockaddr *)ipv6_to_check,
  466. sizeof(struct sockaddr_in6));
  467. tt_assert(sockaddr_in6_are_equal(mock_addr6,ipv6_to_check));
  468. UNMOCK(tor_open_socket);
  469. UNMOCK(tor_connect_socket);
  470. UNMOCK(tor_getsockname);
  471. done:
  472. tor_free(ipv6_to_check);
  473. tor_free(mock_addr);
  474. tor_free(addr_from_hack);
  475. return;
  476. }
  477. static void
  478. test_address_udp_socket_trick_blackbox(void *arg)
  479. {
  480. /* We want get_interface_address6_via_udp_socket_hack() to yield
  481. * the same valid address that get_interface_address6() returns.
  482. * If the latter is unable to find a valid address, we want
  483. * _hack() to fail and return-1.
  484. *
  485. * Furthermore, we want _hack() never to crash, even if
  486. * get_interface_addresses_raw() is returning NULL.
  487. */
  488. tor_addr_t addr4;
  489. tor_addr_t addr4_to_check;
  490. tor_addr_t addr6;
  491. tor_addr_t addr6_to_check;
  492. int retval, retval_reference;
  493. (void)arg;
  494. #if 0
  495. retval_reference = get_interface_address6(LOG_DEBUG,AF_INET,&addr4);
  496. retval = get_interface_address6_via_udp_socket_hack(LOG_DEBUG,
  497. AF_INET,
  498. &addr4_to_check);
  499. tt_int_op(retval,==,retval_reference);
  500. tt_assert( (retval == -1 && retval_reference == -1) ||
  501. (tor_addr_compare(&addr4,&addr4_to_check,CMP_EXACT) == 0) );
  502. retval_reference = get_interface_address6(LOG_DEBUG,AF_INET6,&addr6);
  503. retval = get_interface_address6_via_udp_socket_hack(LOG_DEBUG,
  504. AF_INET6,
  505. &addr6_to_check);
  506. tt_int_op(retval,==,retval_reference);
  507. tt_assert( (retval == -1 && retval_reference == -1) ||
  508. (tor_addr_compare(&addr6,&addr6_to_check,CMP_EXACT) == 0) );
  509. #else
  510. /* Both of the blackbox test cases fail horribly if:
  511. * * The host has no external addreses.
  512. * * There are multiple interfaces with either AF_INET or AF_INET6.
  513. * * The last address isn't the one associated with the default route.
  514. *
  515. * The tests SHOULD be re-enabled when #12377 is fixed correctly, but till
  516. * then this fails a lot, in situations we expect failures due to knowing
  517. * about the code being broken.
  518. */
  519. (void)addr4_to_check;
  520. (void)addr6_to_check;
  521. (void)addr6;
  522. (void) retval_reference;
  523. #endif
  524. /* When family is neither AF_INET nor AF_INET6, we want _hack to
  525. * fail and return -1.
  526. */
  527. retval = get_interface_address6_via_udp_socket_hack(LOG_DEBUG,
  528. AF_INET+AF_INET6,&addr4);
  529. tt_assert(retval == -1);
  530. done:
  531. return;
  532. }
  533. static void
  534. test_address_get_if_addrs_list_internal(void *arg)
  535. {
  536. smartlist_t *results = NULL;
  537. (void)arg;
  538. results = get_interface_address_list(LOG_ERR, 1);
  539. tt_assert(results != NULL);
  540. /* When the network is down, a system might not have any non-local
  541. * non-multicast addresseses, not even internal ones.
  542. * Unit tests shouldn't fail because of this. */
  543. tt_int_op(smartlist_len(results),>=,0);
  544. tt_assert(!smartlist_contains_localhost_tor_addr(results));
  545. tt_assert(!smartlist_contains_multicast_tor_addr(results));
  546. /* The list may or may not contain internal addresses */
  547. /* Allow unit tests to pass on IPv6-only machines */
  548. if (smartlist_len(results) > 0) {
  549. tt_assert(smartlist_contains_ipv4_tor_addr(results)
  550. || smartlist_contains_ipv6_tor_addr(results));
  551. }
  552. done:
  553. free_interface_address_list(results);
  554. return;
  555. }
  556. static void
  557. test_address_get_if_addrs_list_no_internal(void *arg)
  558. {
  559. smartlist_t *results = NULL;
  560. (void)arg;
  561. results = get_interface_address_list(LOG_ERR, 0);
  562. tt_assert(results != NULL);
  563. /* Work even on systems with only internal IPv4 addresses */
  564. tt_int_op(smartlist_len(results),>=,0);
  565. tt_assert(!smartlist_contains_localhost_tor_addr(results));
  566. tt_assert(!smartlist_contains_multicast_tor_addr(results));
  567. tt_assert(!smartlist_contains_internal_tor_addr(results));
  568. /* if there are any addresses, they must be IPv4 */
  569. if (smartlist_len(results) > 0) {
  570. tt_assert(smartlist_contains_ipv4_tor_addr(results));
  571. }
  572. tt_assert(!smartlist_contains_ipv6_tor_addr(results));
  573. done:
  574. free_interface_address_list(results);
  575. return;
  576. }
  577. static void
  578. test_address_get_if_addrs6_list_internal(void *arg)
  579. {
  580. smartlist_t *results = NULL;
  581. (void)arg;
  582. results = get_interface_address6_list(LOG_ERR, AF_INET6, 1);
  583. tt_assert(results != NULL);
  584. /* Work even on systems without IPv6 interfaces */
  585. tt_int_op(smartlist_len(results),>=,0);
  586. tt_assert(!smartlist_contains_localhost_tor_addr(results));
  587. tt_assert(!smartlist_contains_multicast_tor_addr(results));
  588. /* The list may or may not contain internal addresses */
  589. /* if there are any addresses, they must be IPv6 */
  590. tt_assert(!smartlist_contains_ipv4_tor_addr(results));
  591. if (smartlist_len(results) > 0) {
  592. tt_assert(smartlist_contains_ipv6_tor_addr(results));
  593. }
  594. done:
  595. free_interface_address6_list(results);
  596. return;
  597. }
  598. static void
  599. test_address_get_if_addrs6_list_no_internal(void *arg)
  600. {
  601. smartlist_t *results = NULL;
  602. (void)arg;
  603. results = get_interface_address6_list(LOG_ERR, AF_INET6, 0);
  604. tt_assert(results != NULL);
  605. /* Work even on systems without IPv6 interfaces */
  606. tt_int_op(smartlist_len(results),>=,0);
  607. tt_assert(!smartlist_contains_localhost_tor_addr(results));
  608. tt_assert(!smartlist_contains_multicast_tor_addr(results));
  609. tt_assert(!smartlist_contains_internal_tor_addr(results));
  610. tt_assert(!smartlist_contains_ipv4_tor_addr(results));
  611. if (smartlist_len(results) > 0) {
  612. tt_assert(smartlist_contains_ipv6_tor_addr(results));
  613. }
  614. done:
  615. free_interface_address6_list(results);
  616. return;
  617. }
  618. static int called_get_interface_addresses_raw = 0;
  619. static smartlist_t *
  620. mock_get_interface_addresses_raw_fail(int severity)
  621. {
  622. (void)severity;
  623. called_get_interface_addresses_raw++;
  624. return smartlist_new();
  625. }
  626. static int called_get_interface_address6_via_udp_socket_hack = 0;
  627. static int
  628. mock_get_interface_address6_via_udp_socket_hack_fail(int severity,
  629. sa_family_t family,
  630. tor_addr_t *addr)
  631. {
  632. (void)severity;
  633. (void)family;
  634. (void)addr;
  635. called_get_interface_address6_via_udp_socket_hack++;
  636. return -1;
  637. }
  638. static void
  639. test_address_get_if_addrs_internal_fail(void *arg)
  640. {
  641. smartlist_t *results1 = NULL, *results2 = NULL;
  642. int rv = 0;
  643. uint32_t ipv4h_addr = 0;
  644. tor_addr_t ipv6_addr;
  645. memset(&ipv6_addr, 0, sizeof(tor_addr_t));
  646. (void)arg;
  647. MOCK(get_interface_addresses_raw,
  648. mock_get_interface_addresses_raw_fail);
  649. MOCK(get_interface_address6_via_udp_socket_hack,
  650. mock_get_interface_address6_via_udp_socket_hack_fail);
  651. results1 = get_interface_address6_list(LOG_ERR, AF_INET6, 1);
  652. tt_assert(results1 != NULL);
  653. tt_int_op(smartlist_len(results1),==,0);
  654. results2 = get_interface_address_list(LOG_ERR, 1);
  655. tt_assert(results2 != NULL);
  656. tt_int_op(smartlist_len(results2),==,0);
  657. rv = get_interface_address6(LOG_ERR, AF_INET6, &ipv6_addr);
  658. tt_assert(rv == -1);
  659. rv = get_interface_address(LOG_ERR, &ipv4h_addr);
  660. tt_assert(rv == -1);
  661. done:
  662. UNMOCK(get_interface_addresses_raw);
  663. UNMOCK(get_interface_address6_via_udp_socket_hack);
  664. free_interface_address6_list(results1);
  665. free_interface_address6_list(results2);
  666. return;
  667. }
  668. static void
  669. test_address_get_if_addrs_no_internal_fail(void *arg)
  670. {
  671. smartlist_t *results1 = NULL, *results2 = NULL;
  672. (void)arg;
  673. MOCK(get_interface_addresses_raw,
  674. mock_get_interface_addresses_raw_fail);
  675. MOCK(get_interface_address6_via_udp_socket_hack,
  676. mock_get_interface_address6_via_udp_socket_hack_fail);
  677. results1 = get_interface_address6_list(LOG_ERR, AF_INET6, 0);
  678. tt_assert(results1 != NULL);
  679. tt_int_op(smartlist_len(results1),==,0);
  680. results2 = get_interface_address_list(LOG_ERR, 0);
  681. tt_assert(results2 != NULL);
  682. tt_int_op(smartlist_len(results2),==,0);
  683. done:
  684. UNMOCK(get_interface_addresses_raw);
  685. UNMOCK(get_interface_address6_via_udp_socket_hack);
  686. free_interface_address6_list(results1);
  687. free_interface_address6_list(results2);
  688. return;
  689. }
  690. static void
  691. test_address_get_if_addrs(void *arg)
  692. {
  693. int rv;
  694. uint32_t addr_h = 0;
  695. tor_addr_t tor_addr;
  696. (void)arg;
  697. rv = get_interface_address(LOG_ERR, &addr_h);
  698. /* When the network is down, a system might not have any non-local
  699. * non-multicast IPv4 addresses, not even internal ones.
  700. * Unit tests shouldn't fail because of this. */
  701. if (rv == 0) {
  702. tor_addr_from_ipv4h(&tor_addr, addr_h);
  703. tt_assert(!tor_addr_is_loopback(&tor_addr));
  704. tt_assert(!tor_addr_is_multicast(&tor_addr));
  705. /* The address may or may not be an internal address */
  706. tt_assert(tor_addr_is_v4(&tor_addr));
  707. }
  708. done:
  709. return;
  710. }
  711. static void
  712. test_address_get_if_addrs6(void *arg)
  713. {
  714. int rv;
  715. tor_addr_t tor_addr;
  716. (void)arg;
  717. rv = get_interface_address6(LOG_ERR, AF_INET6, &tor_addr);
  718. /* Work even on systems without IPv6 interfaces */
  719. if (rv == 0) {
  720. tt_assert(!tor_addr_is_loopback(&tor_addr));
  721. tt_assert(!tor_addr_is_multicast(&tor_addr));
  722. /* The address may or may not be an internal address */
  723. tt_assert(!tor_addr_is_v4(&tor_addr));
  724. }
  725. done:
  726. return;
  727. }
  728. static void
  729. test_address_tor_addr_to_in6(void *ignored)
  730. {
  731. (void)ignored;
  732. tor_addr_t *a = tor_malloc_zero(sizeof(tor_addr_t));
  733. const struct in6_addr *res;
  734. uint8_t expected[16] = {42, 1, 2, 3, 4, 5, 6, 7, 8, 9,
  735. 10, 11, 12, 13, 14, 15};
  736. a->family = AF_INET;
  737. res = tor_addr_to_in6(a);
  738. tt_assert(!res);
  739. a->family = AF_INET6;
  740. memcpy(a->addr.in6_addr.s6_addr, expected, 16);
  741. res = tor_addr_to_in6(a);
  742. tt_assert(res);
  743. tt_mem_op(res->s6_addr, OP_EQ, expected, 16);
  744. done:
  745. (void)0;
  746. }
  747. static void
  748. test_address_tor_addr_to_in(void *ignored)
  749. {
  750. (void)ignored;
  751. tor_addr_t *a = tor_malloc_zero(sizeof(tor_addr_t));
  752. const struct in_addr *res;
  753. a->family = AF_INET6;
  754. res = tor_addr_to_in(a);
  755. tt_assert(!res);
  756. a->family = AF_INET;
  757. a->addr.in_addr.s_addr = 44;
  758. res = tor_addr_to_in(a);
  759. tt_assert(res);
  760. tt_int_op(res->s_addr, OP_EQ, 44);
  761. done:
  762. (void)0;
  763. }
  764. static void
  765. test_address_tor_addr_to_ipv4n(void *ignored)
  766. {
  767. (void)ignored;
  768. tor_addr_t *a = tor_malloc_zero(sizeof(tor_addr_t));
  769. uint32_t res;
  770. a->family = AF_INET6;
  771. res = tor_addr_to_ipv4n(a);
  772. tt_assert(!res);
  773. a->family = AF_INET;
  774. a->addr.in_addr.s_addr = 43;
  775. res = tor_addr_to_ipv4n(a);
  776. tt_assert(res);
  777. tt_int_op(res, OP_EQ, 43);
  778. done:
  779. (void)0;
  780. }
  781. static void
  782. test_address_tor_addr_to_mapped_ipv4h(void *ignored)
  783. {
  784. (void)ignored;
  785. tor_addr_t *a = tor_malloc_zero(sizeof(tor_addr_t));
  786. uint32_t res;
  787. uint8_t toset[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 255, 255, 0, 0, 0, 42};
  788. a->family = AF_INET;
  789. res = tor_addr_to_mapped_ipv4h(a);
  790. tt_assert(!res);
  791. a->family = AF_INET6;
  792. memcpy(a->addr.in6_addr.s6_addr, toset, 16);
  793. res = tor_addr_to_mapped_ipv4h(a);
  794. tt_assert(res);
  795. tt_int_op(res, OP_EQ, 42);
  796. done:
  797. (void)0;
  798. }
  799. static void
  800. test_address_tor_addr_eq_ipv4h(void *ignored)
  801. {
  802. (void)ignored;
  803. tor_addr_t *a = tor_malloc_zero(sizeof(tor_addr_t));
  804. int res;
  805. a->family = AF_INET6;
  806. res = tor_addr_eq_ipv4h(a, 42);
  807. tt_assert(!res);
  808. a->family = AF_INET;
  809. a->addr.in_addr.s_addr = 52;
  810. res = tor_addr_eq_ipv4h(a, 42);
  811. tt_assert(!res);
  812. a->addr.in_addr.s_addr = 52;
  813. res = tor_addr_eq_ipv4h(a, ntohl(52));
  814. tt_assert(res);
  815. done:
  816. (void)0;
  817. }
  818. #define ADDRESS_TEST(name, flags) \
  819. { #name, test_address_ ## name, flags, NULL, NULL }
  820. struct testcase_t address_tests[] = {
  821. ADDRESS_TEST(udp_socket_trick_whitebox, TT_FORK),
  822. ADDRESS_TEST(udp_socket_trick_blackbox, TT_FORK),
  823. ADDRESS_TEST(get_if_addrs_list_internal, 0),
  824. ADDRESS_TEST(get_if_addrs_list_no_internal, 0),
  825. ADDRESS_TEST(get_if_addrs6_list_internal, 0),
  826. ADDRESS_TEST(get_if_addrs6_list_no_internal, 0),
  827. ADDRESS_TEST(get_if_addrs_internal_fail, 0),
  828. ADDRESS_TEST(get_if_addrs_no_internal_fail, 0),
  829. ADDRESS_TEST(get_if_addrs, 0),
  830. ADDRESS_TEST(get_if_addrs6, 0),
  831. #ifdef HAVE_IFADDRS_TO_SMARTLIST
  832. ADDRESS_TEST(get_if_addrs_ifaddrs, TT_FORK),
  833. ADDRESS_TEST(ifaddrs_to_smartlist, 0),
  834. #endif
  835. #ifdef HAVE_IP_ADAPTER_TO_SMARTLIST
  836. ADDRESS_TEST(get_if_addrs_win32, TT_FORK),
  837. ADDRESS_TEST(ip_adapter_addresses_to_smartlist, 0),
  838. #endif
  839. #ifdef HAVE_IFCONF_TO_SMARTLIST
  840. ADDRESS_TEST(get_if_addrs_ioctl, TT_FORK),
  841. ADDRESS_TEST(ifreq_to_smartlist, 0),
  842. #endif
  843. ADDRESS_TEST(tor_addr_to_in6, 0),
  844. ADDRESS_TEST(tor_addr_to_in, 0),
  845. ADDRESS_TEST(tor_addr_to_ipv4n, 0),
  846. ADDRESS_TEST(tor_addr_to_mapped_ipv4h, 0),
  847. ADDRESS_TEST(tor_addr_eq_ipv4h, 0),
  848. END_OF_TESTCASES
  849. };