test_rendcache.c 39 KB

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  1. /* Copyright (c) 2010-2017, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. #include "orconfig.h"
  4. #include "or.h"
  5. #include "test.h"
  6. #define RENDCACHE_PRIVATE
  7. #include "rendcache.h"
  8. #include "router.h"
  9. #include "routerlist.h"
  10. #include "config.h"
  11. #include "hs_common.h"
  12. #include "rend_intro_point_st.h"
  13. #include "rend_service_descriptor_st.h"
  14. #include "rend_test_helpers.h"
  15. #include "log_test_helpers.h"
  16. #define NS_MODULE rend_cache
  17. static const int RECENT_TIME = -10;
  18. static const int TIME_IN_THE_PAST = -(REND_CACHE_MAX_AGE + \
  19. REND_CACHE_MAX_SKEW + 60);
  20. static const int TIME_IN_THE_FUTURE = REND_CACHE_MAX_SKEW + 60;
  21. static void
  22. test_rend_cache_lookup_entry(void *data)
  23. {
  24. int ret;
  25. rend_data_t *mock_rend_query = NULL;
  26. char desc_id_base32[REND_DESC_ID_V2_LEN_BASE32 + 1];
  27. rend_cache_entry_t *entry = NULL;
  28. rend_encoded_v2_service_descriptor_t *desc_holder = NULL;
  29. char *service_id = NULL;
  30. (void)data;
  31. rend_cache_init();
  32. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  33. ret = rend_cache_lookup_entry("abababababababab", 0, NULL);
  34. tt_int_op(ret, OP_EQ, -ENOENT);
  35. ret = rend_cache_lookup_entry("invalid query", 2, NULL);
  36. tt_int_op(ret, OP_EQ, -EINVAL);
  37. ret = rend_cache_lookup_entry("abababababababab", 2, NULL);
  38. tt_int_op(ret, OP_EQ, -ENOENT);
  39. ret = rend_cache_lookup_entry("abababababababab", 4224, NULL);
  40. tt_int_op(ret, OP_EQ, -ENOENT);
  41. mock_rend_query = mock_rend_data(service_id);
  42. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  43. DIGEST_LEN);
  44. rend_cache_store_v2_desc_as_client(desc_holder->desc_str, desc_id_base32,
  45. mock_rend_query, NULL);
  46. ret = rend_cache_lookup_entry(service_id, 2, NULL);
  47. tt_int_op(ret, OP_EQ, 0);
  48. ret = rend_cache_lookup_entry(service_id, 2, &entry);
  49. tt_int_op(ret, OP_EQ, 0);
  50. tt_assert(entry);
  51. tt_int_op(entry->len, OP_EQ, strlen(desc_holder->desc_str));
  52. tt_str_op(entry->desc, OP_EQ, desc_holder->desc_str);
  53. done:
  54. rend_encoded_v2_service_descriptor_free(desc_holder);
  55. tor_free(service_id);
  56. rend_cache_free_all();
  57. rend_data_free(mock_rend_query);
  58. }
  59. static void
  60. test_rend_cache_store_v2_desc_as_client(void *data)
  61. {
  62. int ret;
  63. rend_data_t *mock_rend_query;
  64. char desc_id_base32[REND_DESC_ID_V2_LEN_BASE32 + 1];
  65. rend_cache_entry_t *entry = NULL;
  66. rend_encoded_v2_service_descriptor_t *desc_holder = NULL;
  67. char *service_id = NULL;
  68. char client_cookie[REND_DESC_COOKIE_LEN];
  69. (void)data;
  70. rend_cache_init();
  71. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  72. // Test success
  73. mock_rend_query = mock_rend_data(service_id);
  74. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  75. DIGEST_LEN);
  76. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  77. desc_id_base32, mock_rend_query,
  78. &entry);
  79. tt_int_op(ret, OP_EQ, 0);
  80. tt_assert(entry);
  81. tt_int_op(entry->len, OP_EQ, strlen(desc_holder->desc_str));
  82. tt_str_op(entry->desc, OP_EQ, desc_holder->desc_str);
  83. // Test various failure modes
  84. // TODO: a too long desc_id_base32 argument crashes the function
  85. /* ret = rend_cache_store_v2_desc_as_client( */
  86. /* desc_holder->desc_str, */
  87. /* "3TOOLONG3TOOLONG3TOOLONG3TOOLONG3TOOLONG3TOOLONG", */
  88. /* &mock_rend_query, NULL); */
  89. /* tt_int_op(ret, OP_EQ, -1); */
  90. // Test bad base32 failure
  91. // This causes an assertion failure if we're running with assertions.
  92. // But when building without asserts, we can test it.
  93. #ifdef DISABLE_ASSERTS_IN_UNIT_TESTS
  94. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  95. "!xqunszqnaolrrfmtzgaki7mxelgvkj", mock_rend_query, NULL);
  96. tt_int_op(ret, OP_EQ, -1);
  97. #endif
  98. // Test invalid descriptor
  99. ret = rend_cache_store_v2_desc_as_client("invalid descriptor",
  100. "3xqunszqnaolrrfmtzgaki7mxelgvkje", mock_rend_query, NULL);
  101. tt_int_op(ret, OP_EQ, -1);
  102. // TODO: it doesn't seem to be possible to test invalid service ID condition.
  103. // that means it is likely not possible to have that condition without
  104. // earlier conditions failing first (such as signature checking of the desc)
  105. rend_cache_free_all();
  106. // Test mismatch between service ID and onion address
  107. rend_cache_init();
  108. strncpy(TO_REND_DATA_V2(mock_rend_query)->onion_address, "abc",
  109. REND_SERVICE_ID_LEN_BASE32+1);
  110. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  111. desc_id_base32,
  112. mock_rend_query, NULL);
  113. tt_int_op(ret, OP_EQ, -1);
  114. rend_cache_free_all();
  115. rend_data_free(mock_rend_query);
  116. // Test incorrect descriptor ID
  117. rend_cache_init();
  118. mock_rend_query = mock_rend_data(service_id);
  119. char orig = desc_id_base32[0];
  120. if (desc_id_base32[0] == 'a')
  121. desc_id_base32[0] = 'b';
  122. else
  123. desc_id_base32[0] = 'a';
  124. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  125. desc_id_base32, mock_rend_query,
  126. NULL);
  127. tt_int_op(ret, OP_EQ, -1);
  128. desc_id_base32[0] = orig;
  129. rend_cache_free_all();
  130. // Test too old descriptor
  131. rend_cache_init();
  132. rend_encoded_v2_service_descriptor_free(desc_holder);
  133. tor_free(service_id);
  134. rend_data_free(mock_rend_query);
  135. generate_desc(TIME_IN_THE_PAST, &desc_holder, &service_id, 3);
  136. mock_rend_query = mock_rend_data(service_id);
  137. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  138. DIGEST_LEN);
  139. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  140. desc_id_base32,
  141. mock_rend_query, NULL);
  142. tt_int_op(ret, OP_EQ, -1);
  143. rend_cache_free_all();
  144. // Test too new descriptor (in the future)
  145. rend_cache_init();
  146. rend_encoded_v2_service_descriptor_free(desc_holder);
  147. tor_free(service_id);
  148. rend_data_free(mock_rend_query);
  149. generate_desc(TIME_IN_THE_FUTURE, &desc_holder, &service_id, 3);
  150. mock_rend_query = mock_rend_data(service_id);
  151. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  152. DIGEST_LEN);
  153. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  154. desc_id_base32, mock_rend_query,
  155. NULL);
  156. tt_int_op(ret, OP_EQ, -1);
  157. rend_cache_free_all();
  158. // Test when a descriptor is already in the cache
  159. rend_cache_init();
  160. rend_encoded_v2_service_descriptor_free(desc_holder);
  161. tor_free(service_id);
  162. rend_data_free(mock_rend_query);
  163. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  164. mock_rend_query = mock_rend_data(service_id);
  165. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  166. DIGEST_LEN);
  167. rend_cache_store_v2_desc_as_client(desc_holder->desc_str, desc_id_base32,
  168. mock_rend_query, NULL);
  169. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  170. desc_id_base32, mock_rend_query,
  171. NULL);
  172. tt_int_op(ret, OP_EQ, 0);
  173. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  174. desc_id_base32, mock_rend_query,
  175. &entry);
  176. tt_int_op(ret, OP_EQ, 0);
  177. tt_assert(entry);
  178. rend_cache_free_all();
  179. // Test unsuccessful decrypting of introduction points
  180. rend_cache_init();
  181. rend_encoded_v2_service_descriptor_free(desc_holder);
  182. tor_free(service_id);
  183. rend_data_free(mock_rend_query);
  184. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  185. mock_rend_query = mock_rend_data(service_id);
  186. TO_REND_DATA_V2(mock_rend_query)->auth_type = REND_BASIC_AUTH;
  187. client_cookie[0] = 'A';
  188. memcpy(TO_REND_DATA_V2(mock_rend_query)->descriptor_cookie, client_cookie,
  189. REND_DESC_COOKIE_LEN);
  190. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  191. DIGEST_LEN);
  192. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  193. desc_id_base32, mock_rend_query,
  194. NULL);
  195. tt_int_op(ret, OP_EQ, 0);
  196. rend_cache_free_all();
  197. // Test successful run when we have REND_BASIC_AUTH but not cookie
  198. rend_cache_init();
  199. rend_encoded_v2_service_descriptor_free(desc_holder);
  200. tor_free(service_id);
  201. rend_data_free(mock_rend_query);
  202. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  203. mock_rend_query = mock_rend_data(service_id);
  204. TO_REND_DATA_V2(mock_rend_query)->auth_type = REND_BASIC_AUTH;
  205. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  206. DIGEST_LEN);
  207. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  208. desc_id_base32, mock_rend_query,
  209. NULL);
  210. tt_int_op(ret, OP_EQ, 0);
  211. rend_cache_free_all();
  212. // Test when we have no introduction points
  213. rend_cache_init();
  214. rend_encoded_v2_service_descriptor_free(desc_holder);
  215. tor_free(service_id);
  216. rend_data_free(mock_rend_query);
  217. generate_desc(RECENT_TIME, &desc_holder, &service_id, 0);
  218. mock_rend_query = mock_rend_data(service_id);
  219. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  220. DIGEST_LEN);
  221. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  222. desc_id_base32, mock_rend_query,
  223. NULL);
  224. tt_int_op(ret, OP_EQ, -1);
  225. rend_cache_free_all();
  226. // Test when we have too many intro points
  227. rend_cache_init();
  228. rend_encoded_v2_service_descriptor_free(desc_holder);
  229. tor_free(service_id);
  230. rend_data_free(mock_rend_query);
  231. generate_desc(RECENT_TIME, &desc_holder, &service_id, MAX_INTRO_POINTS+1);
  232. mock_rend_query = mock_rend_data(service_id);
  233. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  234. DIGEST_LEN);
  235. ret = rend_cache_store_v2_desc_as_client(desc_holder->desc_str,
  236. desc_id_base32, mock_rend_query,
  237. NULL);
  238. tt_int_op(ret, OP_EQ, -1);
  239. done:
  240. rend_encoded_v2_service_descriptor_free(desc_holder);
  241. tor_free(service_id);
  242. rend_cache_free_all();
  243. rend_data_free(mock_rend_query);
  244. }
  245. static void
  246. test_rend_cache_store_v2_desc_as_client_with_different_time(void *data)
  247. {
  248. int ret;
  249. rend_data_t *mock_rend_query;
  250. char desc_id_base32[REND_DESC_ID_V2_LEN_BASE32 + 1];
  251. rend_service_descriptor_t *generated = NULL;
  252. smartlist_t *descs = smartlist_new();
  253. time_t t;
  254. char *service_id = NULL;
  255. rend_encoded_v2_service_descriptor_t *desc_holder_newer;
  256. rend_encoded_v2_service_descriptor_t *desc_holder_older;
  257. t = time(NULL);
  258. rend_cache_init();
  259. create_descriptor(&generated, &service_id, 3);
  260. generated->timestamp = t + RECENT_TIME;
  261. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  262. REND_NO_AUTH, NULL, NULL);
  263. desc_holder_newer = ((rend_encoded_v2_service_descriptor_t *)
  264. smartlist_get(descs, 0));
  265. smartlist_set(descs, 0, NULL);
  266. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  267. rend_encoded_v2_service_descriptor_free(d));
  268. smartlist_free(descs);
  269. descs = smartlist_new();
  270. generated->timestamp = (t + RECENT_TIME) - 20;
  271. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  272. REND_NO_AUTH, NULL, NULL);
  273. desc_holder_older = ((rend_encoded_v2_service_descriptor_t *)
  274. smartlist_get(descs, 0));
  275. smartlist_set(descs, 0, NULL);
  276. (void)data;
  277. // Test when a descriptor is already in the cache and it is newer than the
  278. // one we submit
  279. mock_rend_query = mock_rend_data(service_id);
  280. base32_encode(desc_id_base32, sizeof(desc_id_base32),
  281. desc_holder_newer->desc_id, DIGEST_LEN);
  282. rend_cache_store_v2_desc_as_client(desc_holder_newer->desc_str,
  283. desc_id_base32, mock_rend_query, NULL);
  284. ret = rend_cache_store_v2_desc_as_client(desc_holder_older->desc_str,
  285. desc_id_base32, mock_rend_query,
  286. NULL);
  287. tt_int_op(ret, OP_EQ, 0);
  288. rend_cache_free_all();
  289. // Test when an old descriptor is in the cache and we submit a newer one
  290. rend_cache_init();
  291. rend_cache_store_v2_desc_as_client(desc_holder_older->desc_str,
  292. desc_id_base32, mock_rend_query, NULL);
  293. ret = rend_cache_store_v2_desc_as_client(desc_holder_newer->desc_str,
  294. desc_id_base32, mock_rend_query,
  295. NULL);
  296. tt_int_op(ret, OP_EQ, 0);
  297. done:
  298. rend_encoded_v2_service_descriptor_free(desc_holder_newer);
  299. rend_encoded_v2_service_descriptor_free(desc_holder_older);
  300. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  301. rend_encoded_v2_service_descriptor_free(d));
  302. smartlist_free(descs);
  303. rend_service_descriptor_free(generated);
  304. tor_free(service_id);
  305. rend_cache_free_all();
  306. rend_data_free(mock_rend_query);
  307. }
  308. #define NS_SUBMODULE lookup_v2_desc_as_dir
  309. NS_DECL(const routerinfo_t *, router_get_my_routerinfo, (void));
  310. static routerinfo_t *mock_routerinfo;
  311. static const routerinfo_t *
  312. NS(router_get_my_routerinfo)(void)
  313. {
  314. if (!mock_routerinfo) {
  315. mock_routerinfo = tor_malloc(sizeof(routerinfo_t));
  316. }
  317. return mock_routerinfo;
  318. }
  319. static void
  320. test_rend_cache_lookup_v2_desc_as_dir(void *data)
  321. {
  322. int ret;
  323. char desc_id_base32[REND_DESC_ID_V2_LEN_BASE32 + 1];
  324. rend_encoded_v2_service_descriptor_t *desc_holder = NULL;
  325. char *service_id = NULL;
  326. const char *ret_desc = NULL;
  327. (void)data;
  328. NS_MOCK(router_get_my_routerinfo);
  329. rend_cache_init();
  330. // Test invalid base32
  331. ret = rend_cache_lookup_v2_desc_as_dir("!bababababababab", NULL);
  332. tt_int_op(ret, OP_EQ, -1);
  333. // Test non-existent descriptor but well formed
  334. ret = rend_cache_lookup_v2_desc_as_dir("3xqunszqnaolrrfmtzgaki7mxelgvkje",
  335. NULL);
  336. tt_int_op(ret, OP_EQ, 0);
  337. // Test existing descriptor
  338. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  339. rend_cache_store_v2_desc_as_dir(desc_holder->desc_str);
  340. base32_encode(desc_id_base32, sizeof(desc_id_base32), desc_holder->desc_id,
  341. DIGEST_LEN);
  342. ret = rend_cache_lookup_v2_desc_as_dir(desc_id_base32, &ret_desc);
  343. tt_int_op(ret, OP_EQ, 1);
  344. tt_assert(ret_desc);
  345. done:
  346. NS_UNMOCK(router_get_my_routerinfo);
  347. tor_free(mock_routerinfo);
  348. rend_cache_free_all();
  349. rend_encoded_v2_service_descriptor_free(desc_holder);
  350. tor_free(service_id);
  351. }
  352. #undef NS_SUBMODULE
  353. #define NS_SUBMODULE store_v2_desc_as_dir
  354. NS_DECL(const routerinfo_t *, router_get_my_routerinfo, (void));
  355. static const routerinfo_t *
  356. NS(router_get_my_routerinfo)(void)
  357. {
  358. return mock_routerinfo;
  359. }
  360. static void
  361. test_rend_cache_store_v2_desc_as_dir(void *data)
  362. {
  363. (void)data;
  364. int ret;
  365. rend_encoded_v2_service_descriptor_t *desc_holder = NULL;
  366. char *service_id = NULL;
  367. NS_MOCK(router_get_my_routerinfo);
  368. rend_cache_init();
  369. // Test when we can't parse the descriptor
  370. mock_routerinfo = tor_malloc(sizeof(routerinfo_t));
  371. ret = rend_cache_store_v2_desc_as_dir("unparseable");
  372. tt_int_op(ret, OP_EQ, -1);
  373. // Test when we have an old descriptor
  374. generate_desc(TIME_IN_THE_PAST, &desc_holder, &service_id, 3);
  375. ret = rend_cache_store_v2_desc_as_dir(desc_holder->desc_str);
  376. tt_int_op(ret, OP_EQ, 0);
  377. rend_encoded_v2_service_descriptor_free(desc_holder);
  378. tor_free(service_id);
  379. // Test when we have a descriptor in the future
  380. generate_desc(TIME_IN_THE_FUTURE, &desc_holder, &service_id, 3);
  381. ret = rend_cache_store_v2_desc_as_dir(desc_holder->desc_str);
  382. tt_int_op(ret, OP_EQ, 0);
  383. rend_encoded_v2_service_descriptor_free(desc_holder);
  384. tor_free(service_id);
  385. // Test when two descriptors
  386. generate_desc(TIME_IN_THE_FUTURE, &desc_holder, &service_id, 3);
  387. ret = rend_cache_store_v2_desc_as_dir(desc_holder->desc_str);
  388. tt_int_op(ret, OP_EQ, 0);
  389. rend_encoded_v2_service_descriptor_free(desc_holder);
  390. tor_free(service_id);
  391. // Test when asking for hidden service statistics HiddenServiceStatistics
  392. rend_cache_purge();
  393. generate_desc(RECENT_TIME, &desc_holder, &service_id, 3);
  394. get_options_mutable()->HiddenServiceStatistics = 1;
  395. ret = rend_cache_store_v2_desc_as_dir(desc_holder->desc_str);
  396. tt_int_op(ret, OP_EQ, 0);
  397. done:
  398. NS_UNMOCK(router_get_my_routerinfo);
  399. rend_encoded_v2_service_descriptor_free(desc_holder);
  400. tor_free(service_id);
  401. rend_cache_free_all();
  402. tor_free(mock_routerinfo);
  403. }
  404. static void
  405. test_rend_cache_store_v2_desc_as_dir_with_different_time(void *data)
  406. {
  407. (void)data;
  408. int ret;
  409. rend_service_descriptor_t *generated = NULL;
  410. smartlist_t *descs = smartlist_new();
  411. time_t t;
  412. char *service_id = NULL;
  413. rend_encoded_v2_service_descriptor_t *desc_holder_newer;
  414. rend_encoded_v2_service_descriptor_t *desc_holder_older;
  415. NS_MOCK(router_get_my_routerinfo);
  416. rend_cache_init();
  417. t = time(NULL);
  418. create_descriptor(&generated, &service_id, 3);
  419. generated->timestamp = t + RECENT_TIME;
  420. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  421. REND_NO_AUTH, NULL, NULL);
  422. desc_holder_newer = ((rend_encoded_v2_service_descriptor_t *)
  423. smartlist_get(descs, 0));
  424. smartlist_set(descs, 0, NULL);
  425. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  426. rend_encoded_v2_service_descriptor_free(d));
  427. smartlist_free(descs);
  428. descs = smartlist_new();
  429. generated->timestamp = (t + RECENT_TIME) - 20;
  430. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  431. REND_NO_AUTH, NULL, NULL);
  432. desc_holder_older = ((rend_encoded_v2_service_descriptor_t *)
  433. smartlist_get(descs, 0));
  434. smartlist_set(descs, 0, NULL);
  435. // Test when we have a newer descriptor stored
  436. mock_routerinfo = tor_malloc(sizeof(routerinfo_t));
  437. rend_cache_store_v2_desc_as_dir(desc_holder_newer->desc_str);
  438. ret = rend_cache_store_v2_desc_as_dir(desc_holder_older->desc_str);
  439. tt_int_op(ret, OP_EQ, 0);
  440. // Test when we have an old descriptor stored
  441. rend_cache_purge();
  442. rend_cache_store_v2_desc_as_dir(desc_holder_older->desc_str);
  443. ret = rend_cache_store_v2_desc_as_dir(desc_holder_newer->desc_str);
  444. tt_int_op(ret, OP_EQ, 0);
  445. done:
  446. NS_UNMOCK(router_get_my_routerinfo);
  447. rend_cache_free_all();
  448. rend_service_descriptor_free(generated);
  449. tor_free(service_id);
  450. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  451. rend_encoded_v2_service_descriptor_free(d));
  452. smartlist_free(descs);
  453. rend_encoded_v2_service_descriptor_free(desc_holder_newer);
  454. rend_encoded_v2_service_descriptor_free(desc_holder_older);
  455. tor_free(mock_routerinfo);
  456. }
  457. static void
  458. test_rend_cache_store_v2_desc_as_dir_with_different_content(void *data)
  459. {
  460. (void)data;
  461. int ret;
  462. rend_service_descriptor_t *generated = NULL;
  463. smartlist_t *descs = smartlist_new();
  464. time_t t;
  465. char *service_id = NULL;
  466. rend_encoded_v2_service_descriptor_t *desc_holder_one = NULL;
  467. rend_encoded_v2_service_descriptor_t *desc_holder_two = NULL;
  468. NS_MOCK(router_get_my_routerinfo);
  469. rend_cache_init();
  470. t = time(NULL);
  471. create_descriptor(&generated, &service_id, 3);
  472. generated->timestamp = t + RECENT_TIME;
  473. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  474. REND_NO_AUTH, NULL, NULL);
  475. desc_holder_one = ((rend_encoded_v2_service_descriptor_t *)
  476. smartlist_get(descs, 0));
  477. smartlist_set(descs, 0, NULL);
  478. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  479. rend_encoded_v2_service_descriptor_free(d));
  480. smartlist_free(descs);
  481. descs = smartlist_new();
  482. generated->timestamp = t + RECENT_TIME;
  483. generated->protocols = 41;
  484. rend_encode_v2_descriptors(descs, generated, t + RECENT_TIME, 0,
  485. REND_NO_AUTH, NULL, NULL);
  486. desc_holder_two = ((rend_encoded_v2_service_descriptor_t *)
  487. smartlist_get(descs, 0));
  488. smartlist_set(descs, 0, NULL);
  489. // Test when we have another descriptor stored, with a different descriptor
  490. mock_routerinfo = tor_malloc(sizeof(routerinfo_t));
  491. rend_cache_store_v2_desc_as_dir(desc_holder_one->desc_str);
  492. ret = rend_cache_store_v2_desc_as_dir(desc_holder_two->desc_str);
  493. tt_int_op(ret, OP_EQ, 0);
  494. done:
  495. NS_UNMOCK(router_get_my_routerinfo);
  496. rend_cache_free_all();
  497. rend_service_descriptor_free(generated);
  498. tor_free(service_id);
  499. SMARTLIST_FOREACH(descs, rend_encoded_v2_service_descriptor_t *, d,
  500. rend_encoded_v2_service_descriptor_free(d));
  501. smartlist_free(descs);
  502. rend_encoded_v2_service_descriptor_free(desc_holder_one);
  503. rend_encoded_v2_service_descriptor_free(desc_holder_two);
  504. }
  505. #undef NS_SUBMODULE
  506. static void
  507. test_rend_cache_init(void *data)
  508. {
  509. (void)data;
  510. tt_assert_msg(!rend_cache, "rend_cache should be NULL when starting");
  511. tt_assert_msg(!rend_cache_v2_dir, "rend_cache_v2_dir should be NULL "
  512. "when starting");
  513. tt_assert_msg(!rend_cache_failure, "rend_cache_failure should be NULL when "
  514. "starting");
  515. rend_cache_init();
  516. tt_assert_msg(rend_cache, "rend_cache should not be NULL after initing");
  517. tt_assert_msg(rend_cache_v2_dir, "rend_cache_v2_dir should not be NULL "
  518. "after initing");
  519. tt_assert_msg(rend_cache_failure, "rend_cache_failure should not be NULL "
  520. "after initing");
  521. tt_int_op(strmap_size(rend_cache), OP_EQ, 0);
  522. tt_int_op(digestmap_size(rend_cache_v2_dir), OP_EQ, 0);
  523. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 0);
  524. done:
  525. rend_cache_free_all();
  526. }
  527. static void
  528. test_rend_cache_decrement_allocation(void *data)
  529. {
  530. (void)data;
  531. // Test when the cache has enough allocations
  532. rend_cache_total_allocation = 10;
  533. rend_cache_decrement_allocation(3);
  534. tt_int_op(rend_cache_total_allocation, OP_EQ, 7);
  535. // Test when there are not enough allocations
  536. rend_cache_total_allocation = 1;
  537. setup_full_capture_of_logs(LOG_WARN);
  538. rend_cache_decrement_allocation(2);
  539. tt_int_op(rend_cache_total_allocation, OP_EQ, 0);
  540. expect_single_log_msg_containing(
  541. "Underflow in rend_cache_decrement_allocation");
  542. teardown_capture_of_logs();
  543. // And again
  544. rend_cache_decrement_allocation(2);
  545. tt_int_op(rend_cache_total_allocation, OP_EQ, 0);
  546. done:
  547. teardown_capture_of_logs();
  548. }
  549. static void
  550. test_rend_cache_increment_allocation(void *data)
  551. {
  552. (void)data;
  553. // Test when the cache is not overflowing
  554. rend_cache_total_allocation = 5;
  555. rend_cache_increment_allocation(3);
  556. tt_int_op(rend_cache_total_allocation, OP_EQ, 8);
  557. // Test when there are too many allocations
  558. rend_cache_total_allocation = SIZE_MAX-1;
  559. setup_full_capture_of_logs(LOG_WARN);
  560. rend_cache_increment_allocation(2);
  561. tt_u64_op(rend_cache_total_allocation, OP_EQ, SIZE_MAX);
  562. expect_single_log_msg_containing(
  563. "Overflow in rend_cache_increment_allocation");
  564. teardown_capture_of_logs();
  565. // And again
  566. rend_cache_increment_allocation(2);
  567. tt_u64_op(rend_cache_total_allocation, OP_EQ, SIZE_MAX);
  568. done:
  569. teardown_capture_of_logs();
  570. }
  571. static void
  572. test_rend_cache_failure_intro_entry_new(void *data)
  573. {
  574. time_t now;
  575. rend_cache_failure_intro_t *entry;
  576. rend_intro_point_failure_t failure;
  577. (void)data;
  578. failure = INTRO_POINT_FAILURE_TIMEOUT;
  579. now = time(NULL);
  580. entry = rend_cache_failure_intro_entry_new(failure);
  581. tt_int_op(entry->failure_type, OP_EQ, INTRO_POINT_FAILURE_TIMEOUT);
  582. tt_int_op(entry->created_ts, OP_GE, now-5);
  583. tt_int_op(entry->created_ts, OP_LE, now+5);
  584. done:
  585. tor_free(entry);
  586. }
  587. static void
  588. test_rend_cache_failure_intro_lookup(void *data)
  589. {
  590. (void)data;
  591. int ret;
  592. rend_cache_failure_t *failure;
  593. rend_cache_failure_intro_t *ip;
  594. rend_cache_failure_intro_t *entry;
  595. const char key_ip_one[DIGEST_LEN] = "ip1";
  596. const char key_ip_two[DIGEST_LEN] = "ip2";
  597. const char key_foo[DIGEST_LEN] = "foo1";
  598. rend_cache_init();
  599. failure = rend_cache_failure_entry_new();
  600. ip = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  601. digestmap_set(failure->intro_failures, key_ip_one, ip);
  602. strmap_set_lc(rend_cache_failure, "foo1", failure);
  603. // Test not found
  604. ret = cache_failure_intro_lookup((const uint8_t *) key_foo, "foo2", NULL);
  605. tt_int_op(ret, OP_EQ, 0);
  606. // Test found with no intro failures in it
  607. ret = cache_failure_intro_lookup((const uint8_t *) key_ip_two, "foo1", NULL);
  608. tt_int_op(ret, OP_EQ, 0);
  609. // Test found
  610. ret = cache_failure_intro_lookup((const uint8_t *) key_ip_one, "foo1", NULL);
  611. tt_int_op(ret, OP_EQ, 1);
  612. // Test found and asking for entry
  613. cache_failure_intro_lookup((const uint8_t *) key_ip_one, "foo1", &entry);
  614. tt_assert(entry);
  615. tt_assert(entry == ip);
  616. done:
  617. rend_cache_free_all();
  618. }
  619. static void
  620. test_rend_cache_clean(void *data)
  621. {
  622. rend_cache_entry_t *one, *two;
  623. rend_service_descriptor_t *desc_one, *desc_two;
  624. strmap_iter_t *iter = NULL;
  625. const char *key;
  626. void *val;
  627. (void)data;
  628. rend_cache_init();
  629. // Test with empty rendcache
  630. rend_cache_clean(time(NULL), REND_CACHE_TYPE_CLIENT);
  631. tt_int_op(strmap_size(rend_cache), OP_EQ, 0);
  632. // Test with two old entries
  633. one = tor_malloc_zero(sizeof(rend_cache_entry_t));
  634. two = tor_malloc_zero(sizeof(rend_cache_entry_t));
  635. desc_one = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  636. desc_two = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  637. one->parsed = desc_one;
  638. two->parsed = desc_two;
  639. desc_one->timestamp = time(NULL) + TIME_IN_THE_PAST;
  640. desc_two->timestamp = (time(NULL) + TIME_IN_THE_PAST) - 10;
  641. desc_one->pk = pk_generate(0);
  642. desc_two->pk = pk_generate(1);
  643. strmap_set_lc(rend_cache, "foo1", one);
  644. strmap_set_lc(rend_cache, "foo2", two);
  645. rend_cache_clean(time(NULL), REND_CACHE_TYPE_CLIENT);
  646. tt_int_op(strmap_size(rend_cache), OP_EQ, 0);
  647. // Test with one old entry and one newer entry
  648. one = tor_malloc_zero(sizeof(rend_cache_entry_t));
  649. two = tor_malloc_zero(sizeof(rend_cache_entry_t));
  650. desc_one = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  651. desc_two = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  652. one->parsed = desc_one;
  653. two->parsed = desc_two;
  654. desc_one->timestamp = (time(NULL) + TIME_IN_THE_PAST) - 10;
  655. desc_two->timestamp = time(NULL) - 100;
  656. desc_one->pk = pk_generate(0);
  657. desc_two->pk = pk_generate(1);
  658. strmap_set_lc(rend_cache, "foo1", one);
  659. strmap_set_lc(rend_cache, "foo2", two);
  660. rend_cache_clean(time(NULL), REND_CACHE_TYPE_CLIENT);
  661. tt_int_op(strmap_size(rend_cache), OP_EQ, 1);
  662. iter = strmap_iter_init(rend_cache);
  663. strmap_iter_get(iter, &key, &val);
  664. tt_str_op(key, OP_EQ, "foo2");
  665. done:
  666. rend_cache_free_all();
  667. }
  668. static void
  669. test_rend_cache_failure_entry_new(void *data)
  670. {
  671. rend_cache_failure_t *failure;
  672. (void)data;
  673. failure = rend_cache_failure_entry_new();
  674. tt_assert(failure);
  675. tt_int_op(digestmap_size(failure->intro_failures), OP_EQ, 0);
  676. done:
  677. rend_cache_failure_entry_free(failure);
  678. }
  679. static void
  680. test_rend_cache_failure_entry_free(void *data)
  681. {
  682. (void)data;
  683. // Test that it can deal with a NULL argument
  684. rend_cache_failure_entry_free_(NULL);
  685. /* done: */
  686. /* (void)0; */
  687. }
  688. static void
  689. test_rend_cache_failure_clean(void *data)
  690. {
  691. rend_cache_failure_t *failure;
  692. rend_cache_failure_intro_t *ip_one, *ip_two;
  693. const char key_one[DIGEST_LEN] = "ip1";
  694. const char key_two[DIGEST_LEN] = "ip2";
  695. (void)data;
  696. rend_cache_init();
  697. // Test with empty failure cache
  698. rend_cache_failure_clean(time(NULL));
  699. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 0);
  700. // Test with one empty failure entry
  701. failure = rend_cache_failure_entry_new();
  702. strmap_set_lc(rend_cache_failure, "foo1", failure);
  703. rend_cache_failure_clean(time(NULL));
  704. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 0);
  705. // Test with one new intro point
  706. failure = rend_cache_failure_entry_new();
  707. ip_one = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  708. digestmap_set(failure->intro_failures, key_one, ip_one);
  709. strmap_set_lc(rend_cache_failure, "foo1", failure);
  710. rend_cache_failure_clean(time(NULL));
  711. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 1);
  712. // Test with one old intro point
  713. rend_cache_failure_purge();
  714. failure = rend_cache_failure_entry_new();
  715. ip_one = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  716. ip_one->created_ts = time(NULL) - 7*60;
  717. digestmap_set(failure->intro_failures, key_one, ip_one);
  718. strmap_set_lc(rend_cache_failure, "foo1", failure);
  719. rend_cache_failure_clean(time(NULL));
  720. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 0);
  721. // Test with one old intro point and one new one
  722. rend_cache_failure_purge();
  723. failure = rend_cache_failure_entry_new();
  724. ip_one = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  725. ip_one->created_ts = time(NULL) - 7*60;
  726. digestmap_set(failure->intro_failures, key_one, ip_one);
  727. ip_two = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  728. ip_two->created_ts = time(NULL) - 2*60;
  729. digestmap_set(failure->intro_failures, key_two, ip_two);
  730. strmap_set_lc(rend_cache_failure, "foo1", failure);
  731. rend_cache_failure_clean(time(NULL));
  732. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 1);
  733. tt_int_op(digestmap_size(failure->intro_failures), OP_EQ, 1);
  734. done:
  735. rend_cache_free_all();
  736. }
  737. static void
  738. test_rend_cache_failure_remove(void *data)
  739. {
  740. rend_service_descriptor_t *desc;
  741. (void)data;
  742. rend_cache_init();
  743. // Test that it deals well with a NULL desc
  744. rend_cache_failure_remove(NULL);
  745. // Test a descriptor that isn't in the cache
  746. desc = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  747. desc->pk = pk_generate(0);
  748. rend_cache_failure_remove(desc);
  749. // There seems to not exist any way of getting rend_cache_failure_remove()
  750. // to fail because of a problem with rend_get_service_id from here
  751. rend_cache_free_all();
  752. rend_service_descriptor_free(desc);
  753. /* done: */
  754. /* (void)0; */
  755. }
  756. static void
  757. test_rend_cache_free_all(void *data)
  758. {
  759. rend_cache_failure_t *failure;
  760. rend_cache_entry_t *one;
  761. rend_service_descriptor_t *desc_one;
  762. (void)data;
  763. rend_cache_init();
  764. failure = rend_cache_failure_entry_new();
  765. strmap_set_lc(rend_cache_failure, "foo1", failure);
  766. one = tor_malloc_zero(sizeof(rend_cache_entry_t));
  767. desc_one = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  768. one->parsed = desc_one;
  769. desc_one->timestamp = time(NULL) + TIME_IN_THE_PAST;
  770. desc_one->pk = pk_generate(0);
  771. strmap_set_lc(rend_cache, "foo1", one);
  772. rend_cache_free_all();
  773. tt_ptr_op(rend_cache, OP_EQ, NULL);
  774. tt_ptr_op(rend_cache_v2_dir, OP_EQ, NULL);
  775. tt_ptr_op(rend_cache_failure, OP_EQ, NULL);
  776. tt_assert(!rend_cache_total_allocation);
  777. done:
  778. rend_cache_free_all();
  779. }
  780. static void
  781. test_rend_cache_entry_free(void *data)
  782. {
  783. (void)data;
  784. rend_cache_entry_t *e;
  785. // Handles NULL correctly
  786. rend_cache_entry_free_(NULL);
  787. // Handles NULL descriptor correctly
  788. e = tor_malloc_zero(sizeof(rend_cache_entry_t));
  789. rend_cache_entry_free(e);
  790. // Handles non-NULL descriptor correctly
  791. e = tor_malloc_zero(sizeof(rend_cache_entry_t));
  792. e->desc = tor_malloc(10);
  793. rend_cache_entry_free(e);
  794. /* done: */
  795. /* (void)0; */
  796. }
  797. static void
  798. test_rend_cache_purge(void *data)
  799. {
  800. (void)data;
  801. // Deals with a NULL rend_cache
  802. rend_cache_purge();
  803. tt_assert(rend_cache);
  804. tt_assert(strmap_size(rend_cache) == 0);
  805. // Deals with existing rend_cache
  806. rend_cache_free_all();
  807. rend_cache_init();
  808. tt_assert(rend_cache);
  809. tt_assert(strmap_size(rend_cache) == 0);
  810. rend_cache_purge();
  811. tt_assert(rend_cache);
  812. tt_assert(strmap_size(rend_cache) == 0);
  813. done:
  814. rend_cache_free_all();
  815. }
  816. static void
  817. test_rend_cache_failure_intro_add(void *data)
  818. {
  819. (void)data;
  820. rend_cache_failure_t *fail_entry;
  821. rend_cache_failure_intro_t *entry;
  822. const char identity[DIGEST_LEN] = "foo1";
  823. rend_cache_init();
  824. // Adds non-existing entry
  825. cache_failure_intro_add((const uint8_t *) identity, "foo2",
  826. INTRO_POINT_FAILURE_TIMEOUT);
  827. fail_entry = strmap_get_lc(rend_cache_failure, "foo2");
  828. tt_assert(fail_entry);
  829. tt_int_op(digestmap_size(fail_entry->intro_failures), OP_EQ, 1);
  830. entry = digestmap_get(fail_entry->intro_failures, identity);
  831. tt_assert(entry);
  832. // Adds existing entry
  833. cache_failure_intro_add((const uint8_t *) identity, "foo2",
  834. INTRO_POINT_FAILURE_TIMEOUT);
  835. fail_entry = strmap_get_lc(rend_cache_failure, "foo2");
  836. tt_assert(fail_entry);
  837. tt_int_op(digestmap_size(fail_entry->intro_failures), OP_EQ, 1);
  838. entry = digestmap_get(fail_entry->intro_failures, identity);
  839. tt_assert(entry);
  840. done:
  841. rend_cache_free_all();
  842. }
  843. static void
  844. test_rend_cache_intro_failure_note(void *data)
  845. {
  846. (void)data;
  847. rend_cache_failure_t *fail_entry;
  848. rend_cache_failure_intro_t *entry;
  849. const char key[DIGEST_LEN] = "foo1";
  850. rend_cache_init();
  851. // Test not found
  852. rend_cache_intro_failure_note(INTRO_POINT_FAILURE_TIMEOUT,
  853. (const uint8_t *) key, "foo2");
  854. fail_entry = strmap_get_lc(rend_cache_failure, "foo2");
  855. tt_assert(fail_entry);
  856. tt_int_op(digestmap_size(fail_entry->intro_failures), OP_EQ, 1);
  857. entry = digestmap_get(fail_entry->intro_failures, key);
  858. tt_assert(entry);
  859. tt_int_op(entry->failure_type, OP_EQ, INTRO_POINT_FAILURE_TIMEOUT);
  860. // Test found
  861. rend_cache_intro_failure_note(INTRO_POINT_FAILURE_UNREACHABLE,
  862. (const uint8_t *) key, "foo2");
  863. tt_int_op(entry->failure_type, OP_EQ, INTRO_POINT_FAILURE_UNREACHABLE);
  864. done:
  865. rend_cache_free_all();
  866. }
  867. #define NS_SUBMODULE clean_v2_descs_as_dir
  868. static void
  869. test_rend_cache_clean_v2_descs_as_dir(void *data)
  870. {
  871. rend_cache_entry_t *e;
  872. time_t now, cutoff;
  873. rend_service_descriptor_t *desc;
  874. now = time(NULL);
  875. cutoff = now - (REND_CACHE_MAX_AGE + REND_CACHE_MAX_SKEW);
  876. const char key[DIGEST_LEN] = "abcde";
  877. (void)data;
  878. rend_cache_init();
  879. // Test running with an empty cache
  880. rend_cache_clean_v2_descs_as_dir(cutoff);
  881. tt_int_op(digestmap_size(rend_cache_v2_dir), OP_EQ, 0);
  882. // Test with only one new entry
  883. e = tor_malloc_zero(sizeof(rend_cache_entry_t));
  884. e->last_served = now;
  885. desc = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  886. desc->timestamp = now;
  887. desc->pk = pk_generate(0);
  888. e->parsed = desc;
  889. digestmap_set(rend_cache_v2_dir, key, e);
  890. /* Set the cutoff to minus 10 seconds. */
  891. rend_cache_clean_v2_descs_as_dir(cutoff - 10);
  892. tt_int_op(digestmap_size(rend_cache_v2_dir), OP_EQ, 1);
  893. // Test with one old entry
  894. desc->timestamp = cutoff - 1000;
  895. rend_cache_clean_v2_descs_as_dir(cutoff);
  896. tt_int_op(digestmap_size(rend_cache_v2_dir), OP_EQ, 0);
  897. done:
  898. rend_cache_free_all();
  899. }
  900. #undef NS_SUBMODULE
  901. static void
  902. test_rend_cache_entry_allocation(void *data)
  903. {
  904. (void)data;
  905. size_t ret;
  906. rend_cache_entry_t *e = NULL;
  907. // Handles a null argument
  908. ret = rend_cache_entry_allocation(NULL);
  909. tt_int_op(ret, OP_EQ, 0);
  910. // Handles a non-null argument
  911. e = tor_malloc_zero(sizeof(rend_cache_entry_t));
  912. ret = rend_cache_entry_allocation(e);
  913. tt_int_op(ret, OP_GT, sizeof(rend_cache_entry_t));
  914. done:
  915. tor_free(e);
  916. }
  917. static void
  918. test_rend_cache_failure_intro_entry_free(void *data)
  919. {
  920. (void)data;
  921. rend_cache_failure_intro_t *entry;
  922. // Handles a null argument
  923. rend_cache_failure_intro_entry_free_(NULL);
  924. // Handles a non-null argument
  925. entry = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  926. rend_cache_failure_intro_entry_free(entry);
  927. }
  928. static void
  929. test_rend_cache_failure_purge(void *data)
  930. {
  931. (void)data;
  932. // Handles a null failure cache
  933. strmap_free(rend_cache_failure, rend_cache_failure_entry_free_void);
  934. rend_cache_failure = NULL;
  935. rend_cache_failure_purge();
  936. tt_ptr_op(rend_cache_failure, OP_NE, NULL);
  937. tt_int_op(strmap_size(rend_cache_failure), OP_EQ, 0);
  938. done:
  939. rend_cache_free_all();
  940. }
  941. static void
  942. test_rend_cache_validate_intro_point_failure(void *data)
  943. {
  944. (void)data;
  945. rend_service_descriptor_t *desc = NULL;
  946. char *service_id = NULL;
  947. rend_intro_point_t *intro = NULL;
  948. const char *identity = NULL;
  949. rend_cache_failure_t *failure;
  950. rend_cache_failure_intro_t *ip;
  951. rend_cache_init();
  952. create_descriptor(&desc, &service_id, 3);
  953. desc->timestamp = time(NULL) + RECENT_TIME;
  954. intro = (rend_intro_point_t *)smartlist_get(desc->intro_nodes, 0);
  955. identity = intro->extend_info->identity_digest;
  956. failure = rend_cache_failure_entry_new();
  957. ip = rend_cache_failure_intro_entry_new(INTRO_POINT_FAILURE_TIMEOUT);
  958. digestmap_set(failure->intro_failures, identity, ip);
  959. strmap_set_lc(rend_cache_failure, service_id, failure);
  960. // Test when we have an intro point in our cache
  961. validate_intro_point_failure(desc, service_id);
  962. tt_int_op(smartlist_len(desc->intro_nodes), OP_EQ, 2);
  963. done:
  964. rend_cache_free_all();
  965. rend_service_descriptor_free(desc);
  966. tor_free(service_id);
  967. }
  968. struct testcase_t rend_cache_tests[] = {
  969. { "init", test_rend_cache_init, 0, NULL, NULL },
  970. { "decrement_allocation", test_rend_cache_decrement_allocation, 0,
  971. NULL, NULL },
  972. { "increment_allocation", test_rend_cache_increment_allocation, 0,
  973. NULL, NULL },
  974. { "clean", test_rend_cache_clean, TT_FORK, NULL, NULL },
  975. { "clean_v2_descs_as_dir", test_rend_cache_clean_v2_descs_as_dir, 0,
  976. NULL, NULL },
  977. { "entry_allocation", test_rend_cache_entry_allocation, 0, NULL, NULL },
  978. { "entry_free", test_rend_cache_entry_free, 0, NULL, NULL },
  979. { "failure_intro_entry_free", test_rend_cache_failure_intro_entry_free, 0,
  980. NULL, NULL },
  981. { "free_all", test_rend_cache_free_all, 0, NULL, NULL },
  982. { "purge", test_rend_cache_purge, 0, NULL, NULL },
  983. { "failure_clean", test_rend_cache_failure_clean, 0, NULL, NULL },
  984. { "failure_entry_new", test_rend_cache_failure_entry_new, 0, NULL, NULL },
  985. { "failure_entry_free", test_rend_cache_failure_entry_free, 0, NULL, NULL },
  986. { "failure_intro_add", test_rend_cache_failure_intro_add, 0, NULL, NULL },
  987. { "failure_intro_entry_new", test_rend_cache_failure_intro_entry_new, 0,
  988. NULL, NULL },
  989. { "failure_intro_lookup", test_rend_cache_failure_intro_lookup, 0,
  990. NULL, NULL },
  991. { "failure_purge", test_rend_cache_failure_purge, 0, NULL, NULL },
  992. { "failure_remove", test_rend_cache_failure_remove, 0, NULL, NULL },
  993. { "intro_failure_note", test_rend_cache_intro_failure_note, 0, NULL, NULL },
  994. { "lookup", test_rend_cache_lookup_entry, 0, NULL, NULL },
  995. { "lookup_v2_desc_as_dir", test_rend_cache_lookup_v2_desc_as_dir, 0,
  996. NULL, NULL },
  997. { "store_v2_desc_as_client", test_rend_cache_store_v2_desc_as_client, 0,
  998. NULL, NULL },
  999. { "store_v2_desc_as_client_with_different_time",
  1000. test_rend_cache_store_v2_desc_as_client_with_different_time, 0,
  1001. NULL, NULL },
  1002. { "store_v2_desc_as_dir", test_rend_cache_store_v2_desc_as_dir, 0,
  1003. NULL, NULL },
  1004. { "store_v2_desc_as_dir_with_different_time",
  1005. test_rend_cache_store_v2_desc_as_dir_with_different_time, 0, NULL, NULL },
  1006. { "store_v2_desc_as_dir_with_different_content",
  1007. test_rend_cache_store_v2_desc_as_dir_with_different_content, 0,
  1008. NULL, NULL },
  1009. { "validate_intro_point_failure",
  1010. test_rend_cache_validate_intro_point_failure, 0, NULL, NULL },
  1011. END_OF_TESTCASES
  1012. };