test.c 47 KB

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  1. /* Copyright (c) 2001-2004, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2013, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. /* Ordinarily defined in tor_main.c; this bit is just here to provide one
  6. * since we're not linking to tor_main.c */
  7. const char tor_git_revision[] = "";
  8. /**
  9. * \file test.c
  10. * \brief Unit tests for many pieces of the lower level Tor modules.
  11. **/
  12. #include "orconfig.h"
  13. #include <stdio.h>
  14. #ifdef HAVE_FCNTL_H
  15. #include <fcntl.h>
  16. #endif
  17. #ifdef _WIN32
  18. /* For mkdir() */
  19. #include <direct.h>
  20. #else
  21. #include <dirent.h>
  22. #endif
  23. /* These macros pull in declarations for some functions and structures that
  24. * are typically file-private. */
  25. #define GEOIP_PRIVATE
  26. #define ROUTER_PRIVATE
  27. #define CIRCUITSTATS_PRIVATE
  28. #define CIRCUITLIST_PRIVATE
  29. /*
  30. * Linux doesn't provide lround in math.h by default, but mac os does...
  31. * It's best just to leave math.h out of the picture entirely.
  32. */
  33. //#include <math.h>
  34. long int lround(double x);
  35. double fabs(double x);
  36. #include "or.h"
  37. #include "buffers.h"
  38. #include "circuitlist.h"
  39. #include "circuitstats.h"
  40. #include "config.h"
  41. #include "connection_edge.h"
  42. #include "geoip.h"
  43. #include "rendcommon.h"
  44. #include "test.h"
  45. #include "torgzip.h"
  46. #include "mempool.h"
  47. #include "memarea.h"
  48. #include "onion.h"
  49. #include "onion_ntor.h"
  50. #include "onion_tap.h"
  51. #include "policies.h"
  52. #include "rephist.h"
  53. #include "routerparse.h"
  54. #ifdef CURVE25519_ENABLED
  55. #include "crypto_curve25519.h"
  56. #include "onion_ntor.h"
  57. #endif
  58. #ifdef USE_DMALLOC
  59. #include <dmalloc.h>
  60. #include <openssl/crypto.h>
  61. #include "main.h"
  62. #endif
  63. /** Set to true if any unit test has failed. Mostly, this is set by the macros
  64. * in test.h */
  65. int have_failed = 0;
  66. /** Temporary directory (set up by setup_directory) under which we store all
  67. * our files during testing. */
  68. static char temp_dir[256];
  69. #ifdef _WIN32
  70. #define pid_t int
  71. #endif
  72. static pid_t temp_dir_setup_in_pid = 0;
  73. /** Select and create the temporary directory we'll use to run our unit tests.
  74. * Store it in <b>temp_dir</b>. Exit immediately if we can't create it.
  75. * idempotent. */
  76. static void
  77. setup_directory(void)
  78. {
  79. static int is_setup = 0;
  80. int r;
  81. char rnd[256], rnd32[256];
  82. if (is_setup) return;
  83. /* Due to base32 limitation needs to be a multiple of 5. */
  84. #define RAND_PATH_BYTES 5
  85. crypto_rand(rnd, RAND_PATH_BYTES);
  86. base32_encode(rnd32, sizeof(rnd32), rnd, RAND_PATH_BYTES);
  87. #ifdef _WIN32
  88. {
  89. char buf[MAX_PATH];
  90. const char *tmp = buf;
  91. /* If this fails, we're probably screwed anyway */
  92. if (!GetTempPathA(sizeof(buf),buf))
  93. tmp = "c:\\windows\\temp";
  94. tor_snprintf(temp_dir, sizeof(temp_dir),
  95. "%s\\tor_test_%d_%s", tmp, (int)getpid(), rnd32);
  96. r = mkdir(temp_dir);
  97. }
  98. #else
  99. tor_snprintf(temp_dir, sizeof(temp_dir), "/tmp/tor_test_%d_%s",
  100. (int) getpid(), rnd32);
  101. r = mkdir(temp_dir, 0700);
  102. #endif
  103. if (r) {
  104. fprintf(stderr, "Can't create directory %s:", temp_dir);
  105. perror("");
  106. exit(1);
  107. }
  108. is_setup = 1;
  109. temp_dir_setup_in_pid = getpid();
  110. }
  111. /** Return a filename relative to our testing temporary directory */
  112. const char *
  113. get_fname(const char *name)
  114. {
  115. static char buf[1024];
  116. setup_directory();
  117. if (!name)
  118. return temp_dir;
  119. tor_snprintf(buf,sizeof(buf),"%s/%s",temp_dir,name);
  120. return buf;
  121. }
  122. /* Remove a directory and all of its subdirectories */
  123. static void
  124. rm_rf(const char *dir)
  125. {
  126. struct stat st;
  127. smartlist_t *elements;
  128. elements = tor_listdir(dir);
  129. if (elements) {
  130. SMARTLIST_FOREACH_BEGIN(elements, const char *, cp) {
  131. char *tmp = NULL;
  132. tor_asprintf(&tmp, "%s"PATH_SEPARATOR"%s", dir, cp);
  133. if (0 == stat(tmp,&st) && (st.st_mode & S_IFDIR)) {
  134. rm_rf(tmp);
  135. } else {
  136. if (unlink(tmp)) {
  137. fprintf(stderr, "Error removing %s: %s\n", tmp, strerror(errno));
  138. }
  139. }
  140. tor_free(tmp);
  141. } SMARTLIST_FOREACH_END(cp);
  142. SMARTLIST_FOREACH(elements, char *, cp, tor_free(cp));
  143. smartlist_free(elements);
  144. }
  145. if (rmdir(dir))
  146. fprintf(stderr, "Error removing directory %s: %s\n", dir, strerror(errno));
  147. }
  148. /** Remove all files stored under the temporary directory, and the directory
  149. * itself. Called by atexit(). */
  150. static void
  151. remove_directory(void)
  152. {
  153. if (getpid() != temp_dir_setup_in_pid) {
  154. /* Only clean out the tempdir when the main process is exiting. */
  155. return;
  156. }
  157. rm_rf(temp_dir);
  158. }
  159. /** Define this if unit tests spend too much time generating public keys*/
  160. #undef CACHE_GENERATED_KEYS
  161. static crypto_pk_t *pregen_keys[5] = {NULL, NULL, NULL, NULL, NULL};
  162. #define N_PREGEN_KEYS ((int)(sizeof(pregen_keys)/sizeof(pregen_keys[0])))
  163. /** Generate and return a new keypair for use in unit tests. If we're using
  164. * the key cache optimization, we might reuse keys: we only guarantee that
  165. * keys made with distinct values for <b>idx</b> are different. The value of
  166. * <b>idx</b> must be at least 0, and less than N_PREGEN_KEYS. */
  167. crypto_pk_t *
  168. pk_generate(int idx)
  169. {
  170. #ifdef CACHE_GENERATED_KEYS
  171. tor_assert(idx < N_PREGEN_KEYS);
  172. if (! pregen_keys[idx]) {
  173. pregen_keys[idx] = crypto_pk_new();
  174. tor_assert(!crypto_pk_generate_key(pregen_keys[idx]));
  175. }
  176. return crypto_pk_dup_key(pregen_keys[idx]);
  177. #else
  178. crypto_pk_t *result;
  179. (void) idx;
  180. result = crypto_pk_new();
  181. tor_assert(!crypto_pk_generate_key(result));
  182. return result;
  183. #endif
  184. }
  185. /** Free all storage used for the cached key optimization. */
  186. static void
  187. free_pregenerated_keys(void)
  188. {
  189. unsigned idx;
  190. for (idx = 0; idx < N_PREGEN_KEYS; ++idx) {
  191. if (pregen_keys[idx]) {
  192. crypto_pk_free(pregen_keys[idx]);
  193. pregen_keys[idx] = NULL;
  194. }
  195. }
  196. }
  197. /** Run unit tests for the onion handshake code. */
  198. static void
  199. test_onion_handshake(void)
  200. {
  201. /* client-side */
  202. crypto_dh_t *c_dh = NULL;
  203. char c_buf[TAP_ONIONSKIN_CHALLENGE_LEN];
  204. char c_keys[40];
  205. /* server-side */
  206. char s_buf[TAP_ONIONSKIN_REPLY_LEN];
  207. char s_keys[40];
  208. int i;
  209. /* shared */
  210. crypto_pk_t *pk = NULL, *pk2 = NULL;
  211. pk = pk_generate(0);
  212. pk2 = pk_generate(1);
  213. /* client handshake 1. */
  214. memset(c_buf, 0, TAP_ONIONSKIN_CHALLENGE_LEN);
  215. test_assert(! onion_skin_TAP_create(pk, &c_dh, c_buf));
  216. for (i = 1; i <= 3; ++i) {
  217. crypto_pk_t *k1, *k2;
  218. if (i==1) {
  219. /* server handshake: only one key known. */
  220. k1 = pk; k2 = NULL;
  221. } else if (i==2) {
  222. /* server handshake: try the right key first. */
  223. k1 = pk; k2 = pk2;
  224. } else {
  225. /* server handshake: try the right key second. */
  226. k1 = pk2; k2 = pk;
  227. }
  228. memset(s_buf, 0, TAP_ONIONSKIN_REPLY_LEN);
  229. memset(s_keys, 0, 40);
  230. test_assert(! onion_skin_TAP_server_handshake(c_buf, k1, k2,
  231. s_buf, s_keys, 40));
  232. /* client handshake 2 */
  233. memset(c_keys, 0, 40);
  234. test_assert(! onion_skin_TAP_client_handshake(c_dh, s_buf, c_keys, 40));
  235. test_memeq(c_keys, s_keys, 40);
  236. memset(s_buf, 0, 40);
  237. test_memneq(c_keys, s_buf, 40);
  238. }
  239. done:
  240. crypto_dh_free(c_dh);
  241. crypto_pk_free(pk);
  242. crypto_pk_free(pk2);
  243. }
  244. static void
  245. test_bad_onion_handshake(void *arg)
  246. {
  247. char junk_buf[TAP_ONIONSKIN_CHALLENGE_LEN];
  248. char junk_buf2[TAP_ONIONSKIN_CHALLENGE_LEN];
  249. /* client-side */
  250. crypto_dh_t *c_dh = NULL;
  251. char c_buf[TAP_ONIONSKIN_CHALLENGE_LEN];
  252. char c_keys[40];
  253. /* server-side */
  254. char s_buf[TAP_ONIONSKIN_REPLY_LEN];
  255. char s_keys[40];
  256. /* shared */
  257. crypto_pk_t *pk = NULL, *pk2 = NULL;
  258. (void)arg;
  259. pk = pk_generate(0);
  260. pk2 = pk_generate(1);
  261. /* Server: Case 1: the encrypted data is degenerate. */
  262. memset(junk_buf, 0, sizeof(junk_buf));
  263. crypto_pk_public_hybrid_encrypt(pk, junk_buf2, TAP_ONIONSKIN_CHALLENGE_LEN,
  264. junk_buf, DH_KEY_LEN, PK_PKCS1_OAEP_PADDING, 1);
  265. tt_int_op(-1, ==,
  266. onion_skin_TAP_server_handshake(junk_buf2, pk, NULL,
  267. s_buf, s_keys, 40));
  268. /* Server: Case 2: the encrypted data is not long enough. */
  269. memset(junk_buf, 0, sizeof(junk_buf));
  270. memset(junk_buf2, 0, sizeof(junk_buf2));
  271. crypto_pk_public_encrypt(pk, junk_buf2, sizeof(junk_buf2),
  272. junk_buf, 48, PK_PKCS1_OAEP_PADDING);
  273. tt_int_op(-1, ==,
  274. onion_skin_TAP_server_handshake(junk_buf2, pk, NULL,
  275. s_buf, s_keys, 40));
  276. /* client handshake 1: do it straight. */
  277. memset(c_buf, 0, TAP_ONIONSKIN_CHALLENGE_LEN);
  278. test_assert(! onion_skin_TAP_create(pk, &c_dh, c_buf));
  279. /* Server: Case 3: we just don't have the right key. */
  280. tt_int_op(-1, ==,
  281. onion_skin_TAP_server_handshake(c_buf, pk2, NULL,
  282. s_buf, s_keys, 40));
  283. /* Server: Case 4: The RSA-encrypted portion is corrupt. */
  284. c_buf[64] ^= 33;
  285. tt_int_op(-1, ==,
  286. onion_skin_TAP_server_handshake(c_buf, pk, NULL,
  287. s_buf, s_keys, 40));
  288. c_buf[64] ^= 33;
  289. /* (Let the server procede) */
  290. tt_int_op(0, ==,
  291. onion_skin_TAP_server_handshake(c_buf, pk, NULL,
  292. s_buf, s_keys, 40));
  293. /* Client: Case 1: The server sent back junk. */
  294. s_buf[64] ^= 33;
  295. tt_int_op(-1, ==,
  296. onion_skin_TAP_client_handshake(c_dh, s_buf, c_keys, 40));
  297. s_buf[64] ^= 33;
  298. /* Let the client finish; make sure it can. */
  299. tt_int_op(0, ==,
  300. onion_skin_TAP_client_handshake(c_dh, s_buf, c_keys, 40));
  301. test_memeq(s_keys, c_keys, 40);
  302. /* Client: Case 2: The server sent back a degenerate DH. */
  303. memset(s_buf, 0, sizeof(s_buf));
  304. tt_int_op(-1, ==,
  305. onion_skin_TAP_client_handshake(c_dh, s_buf, c_keys, 40));
  306. done:
  307. crypto_dh_free(c_dh);
  308. crypto_pk_free(pk);
  309. crypto_pk_free(pk2);
  310. }
  311. #ifdef CURVE25519_ENABLED
  312. static void
  313. test_ntor_handshake(void *arg)
  314. {
  315. /* client-side */
  316. ntor_handshake_state_t *c_state = NULL;
  317. uint8_t c_buf[NTOR_ONIONSKIN_LEN];
  318. uint8_t c_keys[400];
  319. /* server-side */
  320. di_digest256_map_t *s_keymap=NULL;
  321. curve25519_keypair_t s_keypair;
  322. uint8_t s_buf[NTOR_REPLY_LEN];
  323. uint8_t s_keys[400];
  324. /* shared */
  325. const curve25519_public_key_t *server_pubkey;
  326. uint8_t node_id[20] = "abcdefghijklmnopqrst";
  327. (void) arg;
  328. /* Make the server some keys */
  329. curve25519_secret_key_generate(&s_keypair.seckey, 0);
  330. curve25519_public_key_generate(&s_keypair.pubkey, &s_keypair.seckey);
  331. dimap_add_entry(&s_keymap, s_keypair.pubkey.public_key, &s_keypair);
  332. server_pubkey = &s_keypair.pubkey;
  333. /* client handshake 1. */
  334. memset(c_buf, 0, NTOR_ONIONSKIN_LEN);
  335. tt_int_op(0, ==, onion_skin_ntor_create(node_id, server_pubkey,
  336. &c_state, c_buf));
  337. /* server handshake */
  338. memset(s_buf, 0, NTOR_REPLY_LEN);
  339. memset(s_keys, 0, 40);
  340. tt_int_op(0, ==, onion_skin_ntor_server_handshake(c_buf, s_keymap, NULL,
  341. node_id,
  342. s_buf, s_keys, 400));
  343. /* client handshake 2 */
  344. memset(c_keys, 0, 40);
  345. tt_int_op(0, ==, onion_skin_ntor_client_handshake(c_state, s_buf,
  346. c_keys, 400));
  347. test_memeq(c_keys, s_keys, 400);
  348. memset(s_buf, 0, 40);
  349. test_memneq(c_keys, s_buf, 40);
  350. done:
  351. ntor_handshake_state_free(c_state);
  352. dimap_free(s_keymap, NULL);
  353. }
  354. #endif
  355. /** Run unit tests for the onion queues. */
  356. static void
  357. test_onion_queues(void)
  358. {
  359. uint8_t buf1[TAP_ONIONSKIN_CHALLENGE_LEN] = {0};
  360. uint8_t buf2[NTOR_ONIONSKIN_LEN] = {0};
  361. or_circuit_t *circ1 = or_circuit_new(0, NULL);
  362. or_circuit_t *circ2 = or_circuit_new(0, NULL);
  363. create_cell_t *onionskin = NULL;
  364. create_cell_t *create1 = tor_malloc_zero(sizeof(create_cell_t));
  365. create_cell_t *create2 = tor_malloc_zero(sizeof(create_cell_t));
  366. create_cell_init(create1, CELL_CREATE, ONION_HANDSHAKE_TYPE_TAP,
  367. TAP_ONIONSKIN_CHALLENGE_LEN, buf1);
  368. create_cell_init(create2, CELL_CREATE, ONION_HANDSHAKE_TYPE_NTOR,
  369. NTOR_ONIONSKIN_LEN, buf2);
  370. test_eq(0, onion_num_pending(ONION_HANDSHAKE_TYPE_TAP));
  371. test_eq(0, onion_pending_add(circ1, create1));
  372. create1 = NULL;
  373. test_eq(1, onion_num_pending(ONION_HANDSHAKE_TYPE_TAP));
  374. test_eq(0, onion_num_pending(ONION_HANDSHAKE_TYPE_NTOR));
  375. test_eq(0, onion_pending_add(circ2, create2));
  376. create2 = NULL;
  377. test_eq(1, onion_num_pending(ONION_HANDSHAKE_TYPE_NTOR));
  378. test_eq_ptr(circ2, onion_next_task(&onionskin));
  379. test_eq(1, onion_num_pending(ONION_HANDSHAKE_TYPE_TAP));
  380. test_eq(0, onion_num_pending(ONION_HANDSHAKE_TYPE_NTOR));
  381. clear_pending_onions();
  382. test_eq(0, onion_num_pending(ONION_HANDSHAKE_TYPE_TAP));
  383. test_eq(0, onion_num_pending(ONION_HANDSHAKE_TYPE_NTOR));
  384. done:
  385. circuit_free(TO_CIRCUIT(circ1));
  386. circuit_free(TO_CIRCUIT(circ2));
  387. tor_free(create1);
  388. tor_free(create2);
  389. }
  390. static void
  391. test_circuit_timeout(void)
  392. {
  393. /* Plan:
  394. * 1. Generate 1000 samples
  395. * 2. Estimate parameters
  396. * 3. If difference, repeat
  397. * 4. Save state
  398. * 5. load state
  399. * 6. Estimate parameters
  400. * 7. compare differences
  401. */
  402. circuit_build_times_t initial;
  403. circuit_build_times_t estimate;
  404. circuit_build_times_t final;
  405. double timeout1, timeout2;
  406. or_state_t state;
  407. int i, runs;
  408. double close_ms;
  409. circuit_build_times_init(&initial);
  410. circuit_build_times_init(&estimate);
  411. circuit_build_times_init(&final);
  412. memset(&state, 0, sizeof(or_state_t));
  413. circuitbuild_running_unit_tests();
  414. #define timeout0 (build_time_t)(30*1000.0)
  415. initial.Xm = 3000;
  416. circuit_build_times_initial_alpha(&initial,
  417. CBT_DEFAULT_QUANTILE_CUTOFF/100.0,
  418. timeout0);
  419. close_ms = MAX(circuit_build_times_calculate_timeout(&initial,
  420. CBT_DEFAULT_CLOSE_QUANTILE/100.0),
  421. CBT_DEFAULT_TIMEOUT_INITIAL_VALUE);
  422. do {
  423. for (i=0; i < CBT_DEFAULT_MIN_CIRCUITS_TO_OBSERVE; i++) {
  424. build_time_t sample = circuit_build_times_generate_sample(&initial,0,1);
  425. if (sample > close_ms) {
  426. circuit_build_times_add_time(&estimate, CBT_BUILD_ABANDONED);
  427. } else {
  428. circuit_build_times_add_time(&estimate, sample);
  429. }
  430. }
  431. circuit_build_times_update_alpha(&estimate);
  432. timeout1 = circuit_build_times_calculate_timeout(&estimate,
  433. CBT_DEFAULT_QUANTILE_CUTOFF/100.0);
  434. circuit_build_times_set_timeout(&estimate);
  435. log_notice(LD_CIRC, "Timeout1 is %f, Xm is %d", timeout1, estimate.Xm);
  436. /* 2% error */
  437. } while (fabs(circuit_build_times_cdf(&initial, timeout0) -
  438. circuit_build_times_cdf(&initial, timeout1)) > 0.02);
  439. test_assert(estimate.total_build_times <= CBT_NCIRCUITS_TO_OBSERVE);
  440. circuit_build_times_update_state(&estimate, &state);
  441. test_assert(circuit_build_times_parse_state(&final, &state) == 0);
  442. circuit_build_times_update_alpha(&final);
  443. timeout2 = circuit_build_times_calculate_timeout(&final,
  444. CBT_DEFAULT_QUANTILE_CUTOFF/100.0);
  445. circuit_build_times_set_timeout(&final);
  446. log_notice(LD_CIRC, "Timeout2 is %f, Xm is %d", timeout2, final.Xm);
  447. /* 5% here because some accuracy is lost due to histogram conversion */
  448. test_assert(fabs(circuit_build_times_cdf(&initial, timeout0) -
  449. circuit_build_times_cdf(&initial, timeout2)) < 0.05);
  450. for (runs = 0; runs < 50; runs++) {
  451. int build_times_idx = 0;
  452. int total_build_times = 0;
  453. final.close_ms = final.timeout_ms = CBT_DEFAULT_TIMEOUT_INITIAL_VALUE;
  454. estimate.close_ms = estimate.timeout_ms
  455. = CBT_DEFAULT_TIMEOUT_INITIAL_VALUE;
  456. for (i = 0; i < CBT_DEFAULT_RECENT_CIRCUITS*2; i++) {
  457. circuit_build_times_network_circ_success(&estimate);
  458. circuit_build_times_add_time(&estimate,
  459. circuit_build_times_generate_sample(&estimate, 0,
  460. CBT_DEFAULT_QUANTILE_CUTOFF/100.0));
  461. circuit_build_times_network_circ_success(&estimate);
  462. circuit_build_times_add_time(&final,
  463. circuit_build_times_generate_sample(&final, 0,
  464. CBT_DEFAULT_QUANTILE_CUTOFF/100.0));
  465. }
  466. test_assert(!circuit_build_times_network_check_changed(&estimate));
  467. test_assert(!circuit_build_times_network_check_changed(&final));
  468. /* Reset liveness to be non-live */
  469. final.liveness.network_last_live = 0;
  470. estimate.liveness.network_last_live = 0;
  471. build_times_idx = estimate.build_times_idx;
  472. total_build_times = estimate.total_build_times;
  473. test_assert(circuit_build_times_network_check_live(&estimate));
  474. test_assert(circuit_build_times_network_check_live(&final));
  475. circuit_build_times_count_close(&estimate, 0,
  476. (time_t)(approx_time()-estimate.close_ms/1000.0-1));
  477. circuit_build_times_count_close(&final, 0,
  478. (time_t)(approx_time()-final.close_ms/1000.0-1));
  479. test_assert(!circuit_build_times_network_check_live(&estimate));
  480. test_assert(!circuit_build_times_network_check_live(&final));
  481. log_info(LD_CIRC, "idx: %d %d, tot: %d %d",
  482. build_times_idx, estimate.build_times_idx,
  483. total_build_times, estimate.total_build_times);
  484. /* Check rollback index. Should match top of loop. */
  485. test_assert(build_times_idx == estimate.build_times_idx);
  486. // This can fail if estimate.total_build_times == 1000, because
  487. // in that case, rewind actually causes us to lose timeouts
  488. if (total_build_times != CBT_NCIRCUITS_TO_OBSERVE)
  489. test_assert(total_build_times == estimate.total_build_times);
  490. /* Now simulate that the network has become live and we need
  491. * a change */
  492. circuit_build_times_network_is_live(&estimate);
  493. circuit_build_times_network_is_live(&final);
  494. for (i = 0; i < CBT_DEFAULT_MAX_RECENT_TIMEOUT_COUNT; i++) {
  495. circuit_build_times_count_timeout(&estimate, 1);
  496. if (i < CBT_DEFAULT_MAX_RECENT_TIMEOUT_COUNT-1) {
  497. circuit_build_times_count_timeout(&final, 1);
  498. }
  499. }
  500. test_assert(estimate.liveness.after_firsthop_idx == 0);
  501. test_assert(final.liveness.after_firsthop_idx ==
  502. CBT_DEFAULT_MAX_RECENT_TIMEOUT_COUNT-1);
  503. test_assert(circuit_build_times_network_check_live(&estimate));
  504. test_assert(circuit_build_times_network_check_live(&final));
  505. circuit_build_times_count_timeout(&final, 1);
  506. }
  507. done:
  508. return;
  509. }
  510. /** Test encoding and parsing of rendezvous service descriptors. */
  511. static void
  512. test_rend_fns(void)
  513. {
  514. rend_service_descriptor_t *generated = NULL, *parsed = NULL;
  515. char service_id[DIGEST_LEN];
  516. char service_id_base32[REND_SERVICE_ID_LEN_BASE32+1];
  517. const char *next_desc;
  518. smartlist_t *descs = smartlist_new();
  519. char computed_desc_id[DIGEST_LEN];
  520. char parsed_desc_id[DIGEST_LEN];
  521. crypto_pk_t *pk1 = NULL, *pk2 = NULL;
  522. time_t now;
  523. char *intro_points_encrypted = NULL;
  524. size_t intro_points_size;
  525. size_t encoded_size;
  526. int i;
  527. char address1[] = "fooaddress.onion";
  528. char address2[] = "aaaaaaaaaaaaaaaa.onion";
  529. char address3[] = "fooaddress.exit";
  530. char address4[] = "www.torproject.org";
  531. char address5[] = "foo.abcdefghijklmnop.onion";
  532. char address6[] = "foo.bar.abcdefghijklmnop.onion";
  533. char address7[] = ".abcdefghijklmnop.onion";
  534. test_assert(BAD_HOSTNAME == parse_extended_hostname(address1));
  535. test_assert(ONION_HOSTNAME == parse_extended_hostname(address2));
  536. test_streq(address2, "aaaaaaaaaaaaaaaa");
  537. test_assert(EXIT_HOSTNAME == parse_extended_hostname(address3));
  538. test_assert(NORMAL_HOSTNAME == parse_extended_hostname(address4));
  539. test_assert(ONION_HOSTNAME == parse_extended_hostname(address5));
  540. test_streq(address5, "abcdefghijklmnop");
  541. test_assert(ONION_HOSTNAME == parse_extended_hostname(address6));
  542. test_streq(address6, "abcdefghijklmnop");
  543. test_assert(BAD_HOSTNAME == parse_extended_hostname(address7));
  544. pk1 = pk_generate(0);
  545. pk2 = pk_generate(1);
  546. generated = tor_malloc_zero(sizeof(rend_service_descriptor_t));
  547. generated->pk = crypto_pk_dup_key(pk1);
  548. crypto_pk_get_digest(generated->pk, service_id);
  549. base32_encode(service_id_base32, REND_SERVICE_ID_LEN_BASE32+1,
  550. service_id, REND_SERVICE_ID_LEN);
  551. now = time(NULL);
  552. generated->timestamp = now;
  553. generated->version = 2;
  554. generated->protocols = 42;
  555. generated->intro_nodes = smartlist_new();
  556. for (i = 0; i < 3; i++) {
  557. rend_intro_point_t *intro = tor_malloc_zero(sizeof(rend_intro_point_t));
  558. crypto_pk_t *okey = pk_generate(2 + i);
  559. intro->extend_info = tor_malloc_zero(sizeof(extend_info_t));
  560. intro->extend_info->onion_key = okey;
  561. crypto_pk_get_digest(intro->extend_info->onion_key,
  562. intro->extend_info->identity_digest);
  563. //crypto_rand(info->identity_digest, DIGEST_LEN); /* Would this work? */
  564. intro->extend_info->nickname[0] = '$';
  565. base16_encode(intro->extend_info->nickname + 1,
  566. sizeof(intro->extend_info->nickname) - 1,
  567. intro->extend_info->identity_digest, DIGEST_LEN);
  568. /* Does not cover all IP addresses. */
  569. tor_addr_from_ipv4h(&intro->extend_info->addr, crypto_rand_int(65536));
  570. intro->extend_info->port = 1 + crypto_rand_int(65535);
  571. intro->intro_key = crypto_pk_dup_key(pk2);
  572. smartlist_add(generated->intro_nodes, intro);
  573. }
  574. test_assert(rend_encode_v2_descriptors(descs, generated, now, 0,
  575. REND_NO_AUTH, NULL, NULL) > 0);
  576. test_assert(rend_compute_v2_desc_id(computed_desc_id, service_id_base32,
  577. NULL, now, 0) == 0);
  578. test_memeq(((rend_encoded_v2_service_descriptor_t *)
  579. smartlist_get(descs, 0))->desc_id, computed_desc_id, DIGEST_LEN);
  580. test_assert(rend_parse_v2_service_descriptor(&parsed, parsed_desc_id,
  581. &intro_points_encrypted,
  582. &intro_points_size,
  583. &encoded_size,
  584. &next_desc,
  585. ((rend_encoded_v2_service_descriptor_t *)
  586. smartlist_get(descs, 0))->desc_str) == 0);
  587. test_assert(parsed);
  588. test_memeq(((rend_encoded_v2_service_descriptor_t *)
  589. smartlist_get(descs, 0))->desc_id, parsed_desc_id, DIGEST_LEN);
  590. test_eq(rend_parse_introduction_points(parsed, intro_points_encrypted,
  591. intro_points_size), 3);
  592. test_assert(!crypto_pk_cmp_keys(generated->pk, parsed->pk));
  593. test_eq(parsed->timestamp, now);
  594. test_eq(parsed->version, 2);
  595. test_eq(parsed->protocols, 42);
  596. test_eq(smartlist_len(parsed->intro_nodes), 3);
  597. for (i = 0; i < smartlist_len(parsed->intro_nodes); i++) {
  598. rend_intro_point_t *par_intro = smartlist_get(parsed->intro_nodes, i),
  599. *gen_intro = smartlist_get(generated->intro_nodes, i);
  600. extend_info_t *par_info = par_intro->extend_info;
  601. extend_info_t *gen_info = gen_intro->extend_info;
  602. test_assert(!crypto_pk_cmp_keys(gen_info->onion_key, par_info->onion_key));
  603. test_memeq(gen_info->identity_digest, par_info->identity_digest,
  604. DIGEST_LEN);
  605. test_streq(gen_info->nickname, par_info->nickname);
  606. test_assert(tor_addr_eq(&gen_info->addr, &par_info->addr));
  607. test_eq(gen_info->port, par_info->port);
  608. }
  609. rend_service_descriptor_free(parsed);
  610. rend_service_descriptor_free(generated);
  611. parsed = generated = NULL;
  612. done:
  613. if (descs) {
  614. for (i = 0; i < smartlist_len(descs); i++)
  615. rend_encoded_v2_service_descriptor_free(smartlist_get(descs, i));
  616. smartlist_free(descs);
  617. }
  618. if (parsed)
  619. rend_service_descriptor_free(parsed);
  620. if (generated)
  621. rend_service_descriptor_free(generated);
  622. if (pk1)
  623. crypto_pk_free(pk1);
  624. if (pk2)
  625. crypto_pk_free(pk2);
  626. tor_free(intro_points_encrypted);
  627. }
  628. /* Record odd numbered fake-IPs using ipv6, even numbered fake-IPs
  629. * using ipv4. Since our fake geoip database is the same between
  630. * ipv4 and ipv6, we should get the same result no matter which
  631. * address family we pick for each IP. */
  632. #define SET_TEST_ADDRESS(i) do { \
  633. if ((i) & 1) { \
  634. SET_TEST_IPV6(i); \
  635. tor_addr_from_in6(&addr, &in6); \
  636. } else { \
  637. tor_addr_from_ipv4h(&addr, (uint32_t) i); \
  638. } \
  639. } while (0)
  640. /* Make sure that country ID actually works. */
  641. #define SET_TEST_IPV6(i) \
  642. do { \
  643. set_uint32(in6.s6_addr + 12, htonl((uint32_t) (i))); \
  644. } while (0)
  645. #define CHECK_COUNTRY(country, val) do { \
  646. /* test ipv4 country lookup */ \
  647. test_streq(country, \
  648. geoip_get_country_name(geoip_get_country_by_ipv4(val))); \
  649. /* test ipv6 country lookup */ \
  650. SET_TEST_IPV6(val); \
  651. test_streq(country, \
  652. geoip_get_country_name(geoip_get_country_by_ipv6(&in6))); \
  653. } while (0)
  654. /** Run unit tests for GeoIP code. */
  655. static void
  656. test_geoip(void)
  657. {
  658. int i, j;
  659. time_t now = 1281533250; /* 2010-08-11 13:27:30 UTC */
  660. char *s = NULL, *v = NULL;
  661. const char *bridge_stats_1 =
  662. "bridge-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  663. "bridge-ips zz=24,xy=8\n"
  664. "bridge-ip-versions v4=16,v6=16\n"
  665. "bridge-ip-transports <OR>=24\n",
  666. *dirreq_stats_1 =
  667. "dirreq-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  668. "dirreq-v3-ips ab=8\n"
  669. "dirreq-v3-reqs ab=8\n"
  670. "dirreq-v3-resp ok=0,not-enough-sigs=0,unavailable=0,not-found=0,"
  671. "not-modified=0,busy=0\n"
  672. "dirreq-v3-direct-dl complete=0,timeout=0,running=0\n"
  673. "dirreq-v3-tunneled-dl complete=0,timeout=0,running=0\n",
  674. *dirreq_stats_2 =
  675. "dirreq-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  676. "dirreq-v3-ips \n"
  677. "dirreq-v3-reqs \n"
  678. "dirreq-v3-resp ok=0,not-enough-sigs=0,unavailable=0,not-found=0,"
  679. "not-modified=0,busy=0\n"
  680. "dirreq-v3-direct-dl complete=0,timeout=0,running=0\n"
  681. "dirreq-v3-tunneled-dl complete=0,timeout=0,running=0\n",
  682. *dirreq_stats_3 =
  683. "dirreq-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  684. "dirreq-v3-ips \n"
  685. "dirreq-v3-reqs \n"
  686. "dirreq-v3-resp ok=8,not-enough-sigs=0,unavailable=0,not-found=0,"
  687. "not-modified=0,busy=0\n"
  688. "dirreq-v3-direct-dl complete=0,timeout=0,running=0\n"
  689. "dirreq-v3-tunneled-dl complete=0,timeout=0,running=0\n",
  690. *dirreq_stats_4 =
  691. "dirreq-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  692. "dirreq-v3-ips \n"
  693. "dirreq-v3-reqs \n"
  694. "dirreq-v3-resp ok=8,not-enough-sigs=0,unavailable=0,not-found=0,"
  695. "not-modified=0,busy=0\n"
  696. "dirreq-v3-direct-dl complete=0,timeout=0,running=0\n"
  697. "dirreq-v3-tunneled-dl complete=0,timeout=0,running=4\n",
  698. *entry_stats_1 =
  699. "entry-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  700. "entry-ips ab=8\n",
  701. *entry_stats_2 =
  702. "entry-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  703. "entry-ips \n";
  704. tor_addr_t addr;
  705. struct in6_addr in6;
  706. /* Populate the DB a bit. Add these in order, since we can't do the final
  707. * 'sort' step. These aren't very good IP addresses, but they're perfectly
  708. * fine uint32_t values. */
  709. test_eq(0, geoip_parse_entry("10,50,AB", AF_INET));
  710. test_eq(0, geoip_parse_entry("52,90,XY", AF_INET));
  711. test_eq(0, geoip_parse_entry("95,100,AB", AF_INET));
  712. test_eq(0, geoip_parse_entry("\"105\",\"140\",\"ZZ\"", AF_INET));
  713. test_eq(0, geoip_parse_entry("\"150\",\"190\",\"XY\"", AF_INET));
  714. test_eq(0, geoip_parse_entry("\"200\",\"250\",\"AB\"", AF_INET));
  715. /* Populate the IPv6 DB equivalently with fake IPs in the same range */
  716. test_eq(0, geoip_parse_entry("::a,::32,AB", AF_INET6));
  717. test_eq(0, geoip_parse_entry("::34,::5a,XY", AF_INET6));
  718. test_eq(0, geoip_parse_entry("::5f,::64,AB", AF_INET6));
  719. test_eq(0, geoip_parse_entry("::69,::8c,ZZ", AF_INET6));
  720. test_eq(0, geoip_parse_entry("::96,::be,XY", AF_INET6));
  721. test_eq(0, geoip_parse_entry("::c8,::fa,AB", AF_INET6));
  722. /* We should have 4 countries: ??, ab, xy, zz. */
  723. test_eq(4, geoip_get_n_countries());
  724. memset(&in6, 0, sizeof(in6));
  725. CHECK_COUNTRY("??", 3);
  726. CHECK_COUNTRY("ab", 32);
  727. CHECK_COUNTRY("??", 5);
  728. CHECK_COUNTRY("??", 51);
  729. CHECK_COUNTRY("xy", 150);
  730. CHECK_COUNTRY("xy", 190);
  731. CHECK_COUNTRY("??", 2000);
  732. test_eq(0, geoip_get_country_by_ipv4(3));
  733. SET_TEST_IPV6(3);
  734. test_eq(0, geoip_get_country_by_ipv6(&in6));
  735. get_options_mutable()->BridgeRelay = 1;
  736. get_options_mutable()->BridgeRecordUsageByCountry = 1;
  737. /* Put 9 observations in AB... */
  738. for (i=32; i < 40; ++i) {
  739. SET_TEST_ADDRESS(i);
  740. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now-7200);
  741. }
  742. SET_TEST_ADDRESS(225);
  743. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now-7200);
  744. /* and 3 observations in XY, several times. */
  745. for (j=0; j < 10; ++j)
  746. for (i=52; i < 55; ++i) {
  747. SET_TEST_ADDRESS(i);
  748. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now-3600);
  749. }
  750. /* and 17 observations in ZZ... */
  751. for (i=110; i < 127; ++i) {
  752. SET_TEST_ADDRESS(i);
  753. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now);
  754. }
  755. geoip_get_client_history(GEOIP_CLIENT_CONNECT, &s, &v);
  756. test_assert(s);
  757. test_assert(v);
  758. test_streq("zz=24,ab=16,xy=8", s);
  759. test_streq("v4=16,v6=16", v);
  760. tor_free(s);
  761. tor_free(v);
  762. /* Now clear out all the AB observations. */
  763. geoip_remove_old_clients(now-6000);
  764. geoip_get_client_history(GEOIP_CLIENT_CONNECT, &s, &v);
  765. test_assert(s);
  766. test_assert(v);
  767. test_streq("zz=24,xy=8", s);
  768. test_streq("v4=16,v6=16", v);
  769. tor_free(s);
  770. tor_free(v);
  771. /* Start testing bridge statistics by making sure that we don't output
  772. * bridge stats without initializing them. */
  773. s = geoip_format_bridge_stats(now + 86400);
  774. test_assert(!s);
  775. /* Initialize stats and generate the bridge-stats history string out of
  776. * the connecting clients added above. */
  777. geoip_bridge_stats_init(now);
  778. s = geoip_format_bridge_stats(now + 86400);
  779. test_assert(s);
  780. test_streq(bridge_stats_1, s);
  781. tor_free(s);
  782. /* Stop collecting bridge stats and make sure we don't write a history
  783. * string anymore. */
  784. geoip_bridge_stats_term();
  785. s = geoip_format_bridge_stats(now + 86400);
  786. test_assert(!s);
  787. /* Stop being a bridge and start being a directory mirror that gathers
  788. * directory request statistics. */
  789. geoip_bridge_stats_term();
  790. get_options_mutable()->BridgeRelay = 0;
  791. get_options_mutable()->BridgeRecordUsageByCountry = 0;
  792. get_options_mutable()->DirReqStatistics = 1;
  793. /* Start testing dirreq statistics by making sure that we don't collect
  794. * dirreq stats without initializing them. */
  795. SET_TEST_ADDRESS(100);
  796. geoip_note_client_seen(GEOIP_CLIENT_NETWORKSTATUS, &addr, NULL, now);
  797. s = geoip_format_dirreq_stats(now + 86400);
  798. test_assert(!s);
  799. /* Initialize stats, note one connecting client, and generate the
  800. * dirreq-stats history string. */
  801. geoip_dirreq_stats_init(now);
  802. SET_TEST_ADDRESS(100);
  803. geoip_note_client_seen(GEOIP_CLIENT_NETWORKSTATUS, &addr, NULL, now);
  804. s = geoip_format_dirreq_stats(now + 86400);
  805. test_streq(dirreq_stats_1, s);
  806. tor_free(s);
  807. /* Stop collecting stats, add another connecting client, and ensure we
  808. * don't generate a history string. */
  809. geoip_dirreq_stats_term();
  810. SET_TEST_ADDRESS(101);
  811. geoip_note_client_seen(GEOIP_CLIENT_NETWORKSTATUS, &addr, NULL, now);
  812. s = geoip_format_dirreq_stats(now + 86400);
  813. test_assert(!s);
  814. /* Re-start stats, add a connecting client, reset stats, and make sure
  815. * that we get an all empty history string. */
  816. geoip_dirreq_stats_init(now);
  817. SET_TEST_ADDRESS(100);
  818. geoip_note_client_seen(GEOIP_CLIENT_NETWORKSTATUS, &addr, NULL, now);
  819. geoip_reset_dirreq_stats(now);
  820. s = geoip_format_dirreq_stats(now + 86400);
  821. test_streq(dirreq_stats_2, s);
  822. tor_free(s);
  823. /* Note a successful network status response and make sure that it
  824. * appears in the history string. */
  825. geoip_note_ns_response(GEOIP_SUCCESS);
  826. s = geoip_format_dirreq_stats(now + 86400);
  827. test_streq(dirreq_stats_3, s);
  828. tor_free(s);
  829. /* Start a tunneled directory request. */
  830. geoip_start_dirreq((uint64_t) 1, 1024, DIRREQ_TUNNELED);
  831. s = geoip_format_dirreq_stats(now + 86400);
  832. test_streq(dirreq_stats_4, s);
  833. /* Stop collecting directory request statistics and start gathering
  834. * entry stats. */
  835. geoip_dirreq_stats_term();
  836. get_options_mutable()->DirReqStatistics = 0;
  837. get_options_mutable()->EntryStatistics = 1;
  838. /* Start testing entry statistics by making sure that we don't collect
  839. * anything without initializing entry stats. */
  840. SET_TEST_ADDRESS(100);
  841. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now);
  842. s = geoip_format_entry_stats(now + 86400);
  843. test_assert(!s);
  844. /* Initialize stats, note one connecting client, and generate the
  845. * entry-stats history string. */
  846. geoip_entry_stats_init(now);
  847. SET_TEST_ADDRESS(100);
  848. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now);
  849. s = geoip_format_entry_stats(now + 86400);
  850. test_streq(entry_stats_1, s);
  851. tor_free(s);
  852. /* Stop collecting stats, add another connecting client, and ensure we
  853. * don't generate a history string. */
  854. geoip_entry_stats_term();
  855. SET_TEST_ADDRESS(101);
  856. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now);
  857. s = geoip_format_entry_stats(now + 86400);
  858. test_assert(!s);
  859. /* Re-start stats, add a connecting client, reset stats, and make sure
  860. * that we get an all empty history string. */
  861. geoip_entry_stats_init(now);
  862. SET_TEST_ADDRESS(100);
  863. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now);
  864. geoip_reset_entry_stats(now);
  865. s = geoip_format_entry_stats(now + 86400);
  866. test_streq(entry_stats_2, s);
  867. tor_free(s);
  868. /* Stop collecting entry statistics. */
  869. geoip_entry_stats_term();
  870. get_options_mutable()->EntryStatistics = 0;
  871. done:
  872. tor_free(s);
  873. tor_free(v);
  874. }
  875. static void
  876. test_geoip_with_pt(void)
  877. {
  878. time_t now = 1281533250; /* 2010-08-11 13:27:30 UTC */
  879. char *s = NULL;
  880. int i;
  881. tor_addr_t addr;
  882. struct in6_addr in6;
  883. get_options_mutable()->BridgeRelay = 1;
  884. get_options_mutable()->BridgeRecordUsageByCountry = 1;
  885. /* No clients seen yet. */
  886. s = geoip_get_transport_history();
  887. tor_assert(!s);
  888. /* 4 connections without a pluggable transport */
  889. for (i=0; i < 4; ++i) {
  890. SET_TEST_ADDRESS(i);
  891. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, NULL, now-7200);
  892. }
  893. /* 9 connections with "alpha" */
  894. for (i=4; i < 13; ++i) {
  895. SET_TEST_ADDRESS(i);
  896. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "alpha", now-7200);
  897. }
  898. /* one connection with "beta" */
  899. SET_TEST_ADDRESS(13);
  900. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "beta", now-7200);
  901. /* 14 connections with "charlie" */
  902. for (i=14; i < 28; ++i) {
  903. SET_TEST_ADDRESS(i);
  904. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "charlie", now-7200);
  905. }
  906. /* 131 connections with "ddr" */
  907. for (i=28; i < 159; ++i) {
  908. SET_TEST_ADDRESS(i);
  909. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "ddr", now-7200);
  910. }
  911. /* 8 connections with "entropy" */
  912. for (i=159; i < 167; ++i) {
  913. SET_TEST_ADDRESS(i);
  914. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "entropy", now-7200);
  915. }
  916. /* 2 connections from the same IP with two different transports. */
  917. SET_TEST_ADDRESS(++i);
  918. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "fire", now-7200);
  919. geoip_note_client_seen(GEOIP_CLIENT_CONNECT, &addr, "google", now-7200);
  920. /* Test the transport history string. */
  921. s = geoip_get_transport_history();
  922. tor_assert(s);
  923. test_streq(s, "<OR>=8,alpha=16,beta=8,charlie=16,ddr=136,"
  924. "entropy=8,fire=8,google=8");
  925. /* Stop collecting entry statistics. */
  926. geoip_entry_stats_term();
  927. get_options_mutable()->EntryStatistics = 0;
  928. done:
  929. tor_free(s);
  930. }
  931. #undef SET_TEST_ADDRESS
  932. #undef SET_TEST_IPV6
  933. #undef CHECK_COUNTRY
  934. /** Run unit tests for stats code. */
  935. static void
  936. test_stats(void)
  937. {
  938. time_t now = 1281533250; /* 2010-08-11 13:27:30 UTC */
  939. char *s = NULL;
  940. int i;
  941. /* Start with testing exit port statistics; we shouldn't collect exit
  942. * stats without initializing them. */
  943. rep_hist_note_exit_stream_opened(80);
  944. rep_hist_note_exit_bytes(80, 100, 10000);
  945. s = rep_hist_format_exit_stats(now + 86400);
  946. test_assert(!s);
  947. /* Initialize stats, note some streams and bytes, and generate history
  948. * string. */
  949. rep_hist_exit_stats_init(now);
  950. rep_hist_note_exit_stream_opened(80);
  951. rep_hist_note_exit_bytes(80, 100, 10000);
  952. rep_hist_note_exit_stream_opened(443);
  953. rep_hist_note_exit_bytes(443, 100, 10000);
  954. rep_hist_note_exit_bytes(443, 100, 10000);
  955. s = rep_hist_format_exit_stats(now + 86400);
  956. test_streq("exit-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  957. "exit-kibibytes-written 80=1,443=1,other=0\n"
  958. "exit-kibibytes-read 80=10,443=20,other=0\n"
  959. "exit-streams-opened 80=4,443=4,other=0\n", s);
  960. tor_free(s);
  961. /* Add a few bytes on 10 more ports and ensure that only the top 10
  962. * ports are contained in the history string. */
  963. for (i = 50; i < 60; i++) {
  964. rep_hist_note_exit_bytes(i, i, i);
  965. rep_hist_note_exit_stream_opened(i);
  966. }
  967. s = rep_hist_format_exit_stats(now + 86400);
  968. test_streq("exit-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  969. "exit-kibibytes-written 52=1,53=1,54=1,55=1,56=1,57=1,58=1,"
  970. "59=1,80=1,443=1,other=1\n"
  971. "exit-kibibytes-read 52=1,53=1,54=1,55=1,56=1,57=1,58=1,"
  972. "59=1,80=10,443=20,other=1\n"
  973. "exit-streams-opened 52=4,53=4,54=4,55=4,56=4,57=4,58=4,"
  974. "59=4,80=4,443=4,other=4\n", s);
  975. tor_free(s);
  976. /* Stop collecting stats, add some bytes, and ensure we don't generate
  977. * a history string. */
  978. rep_hist_exit_stats_term();
  979. rep_hist_note_exit_bytes(80, 100, 10000);
  980. s = rep_hist_format_exit_stats(now + 86400);
  981. test_assert(!s);
  982. /* Re-start stats, add some bytes, reset stats, and see what history we
  983. * get when observing no streams or bytes at all. */
  984. rep_hist_exit_stats_init(now);
  985. rep_hist_note_exit_stream_opened(80);
  986. rep_hist_note_exit_bytes(80, 100, 10000);
  987. rep_hist_reset_exit_stats(now);
  988. s = rep_hist_format_exit_stats(now + 86400);
  989. test_streq("exit-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  990. "exit-kibibytes-written other=0\n"
  991. "exit-kibibytes-read other=0\n"
  992. "exit-streams-opened other=0\n", s);
  993. tor_free(s);
  994. /* Continue with testing connection statistics; we shouldn't collect
  995. * conn stats without initializing them. */
  996. rep_hist_note_or_conn_bytes(1, 20, 400, now);
  997. s = rep_hist_format_conn_stats(now + 86400);
  998. test_assert(!s);
  999. /* Initialize stats, note bytes, and generate history string. */
  1000. rep_hist_conn_stats_init(now);
  1001. rep_hist_note_or_conn_bytes(1, 30000, 400000, now);
  1002. rep_hist_note_or_conn_bytes(1, 30000, 400000, now + 5);
  1003. rep_hist_note_or_conn_bytes(2, 400000, 30000, now + 10);
  1004. rep_hist_note_or_conn_bytes(2, 400000, 30000, now + 15);
  1005. s = rep_hist_format_conn_stats(now + 86400);
  1006. test_streq("conn-bi-direct 2010-08-12 13:27:30 (86400 s) 0,0,1,0\n", s);
  1007. tor_free(s);
  1008. /* Stop collecting stats, add some bytes, and ensure we don't generate
  1009. * a history string. */
  1010. rep_hist_conn_stats_term();
  1011. rep_hist_note_or_conn_bytes(2, 400000, 30000, now + 15);
  1012. s = rep_hist_format_conn_stats(now + 86400);
  1013. test_assert(!s);
  1014. /* Re-start stats, add some bytes, reset stats, and see what history we
  1015. * get when observing no bytes at all. */
  1016. rep_hist_conn_stats_init(now);
  1017. rep_hist_note_or_conn_bytes(1, 30000, 400000, now);
  1018. rep_hist_note_or_conn_bytes(1, 30000, 400000, now + 5);
  1019. rep_hist_note_or_conn_bytes(2, 400000, 30000, now + 10);
  1020. rep_hist_note_or_conn_bytes(2, 400000, 30000, now + 15);
  1021. rep_hist_reset_conn_stats(now);
  1022. s = rep_hist_format_conn_stats(now + 86400);
  1023. test_streq("conn-bi-direct 2010-08-12 13:27:30 (86400 s) 0,0,0,0\n", s);
  1024. tor_free(s);
  1025. /* Continue with testing buffer statistics; we shouldn't collect buffer
  1026. * stats without initializing them. */
  1027. rep_hist_add_buffer_stats(2.0, 2.0, 20);
  1028. s = rep_hist_format_buffer_stats(now + 86400);
  1029. test_assert(!s);
  1030. /* Initialize stats, add statistics for a single circuit, and generate
  1031. * the history string. */
  1032. rep_hist_buffer_stats_init(now);
  1033. rep_hist_add_buffer_stats(2.0, 2.0, 20);
  1034. s = rep_hist_format_buffer_stats(now + 86400);
  1035. test_streq("cell-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  1036. "cell-processed-cells 20,0,0,0,0,0,0,0,0,0\n"
  1037. "cell-queued-cells 2.00,0.00,0.00,0.00,0.00,0.00,0.00,0.00,"
  1038. "0.00,0.00\n"
  1039. "cell-time-in-queue 2,0,0,0,0,0,0,0,0,0\n"
  1040. "cell-circuits-per-decile 1\n", s);
  1041. tor_free(s);
  1042. /* Add nineteen more circuit statistics to the one that's already in the
  1043. * history to see that the math works correctly. */
  1044. for (i = 21; i < 30; i++)
  1045. rep_hist_add_buffer_stats(2.0, 2.0, i);
  1046. for (i = 20; i < 30; i++)
  1047. rep_hist_add_buffer_stats(3.5, 3.5, i);
  1048. s = rep_hist_format_buffer_stats(now + 86400);
  1049. test_streq("cell-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  1050. "cell-processed-cells 29,28,27,26,25,24,23,22,21,20\n"
  1051. "cell-queued-cells 2.75,2.75,2.75,2.75,2.75,2.75,2.75,2.75,"
  1052. "2.75,2.75\n"
  1053. "cell-time-in-queue 3,3,3,3,3,3,3,3,3,3\n"
  1054. "cell-circuits-per-decile 2\n", s);
  1055. tor_free(s);
  1056. /* Stop collecting stats, add statistics for one circuit, and ensure we
  1057. * don't generate a history string. */
  1058. rep_hist_buffer_stats_term();
  1059. rep_hist_add_buffer_stats(2.0, 2.0, 20);
  1060. s = rep_hist_format_buffer_stats(now + 86400);
  1061. test_assert(!s);
  1062. /* Re-start stats, add statistics for one circuit, reset stats, and make
  1063. * sure that the history has all zeros. */
  1064. rep_hist_buffer_stats_init(now);
  1065. rep_hist_add_buffer_stats(2.0, 2.0, 20);
  1066. rep_hist_reset_buffer_stats(now);
  1067. s = rep_hist_format_buffer_stats(now + 86400);
  1068. test_streq("cell-stats-end 2010-08-12 13:27:30 (86400 s)\n"
  1069. "cell-processed-cells 0,0,0,0,0,0,0,0,0,0\n"
  1070. "cell-queued-cells 0.00,0.00,0.00,0.00,0.00,0.00,0.00,0.00,"
  1071. "0.00,0.00\n"
  1072. "cell-time-in-queue 0,0,0,0,0,0,0,0,0,0\n"
  1073. "cell-circuits-per-decile 0\n", s);
  1074. done:
  1075. tor_free(s);
  1076. }
  1077. static void *
  1078. legacy_test_setup(const struct testcase_t *testcase)
  1079. {
  1080. return testcase->setup_data;
  1081. }
  1082. void
  1083. legacy_test_helper(void *data)
  1084. {
  1085. void (*fn)(void) = data;
  1086. fn();
  1087. }
  1088. static int
  1089. legacy_test_cleanup(const struct testcase_t *testcase, void *ptr)
  1090. {
  1091. (void)ptr;
  1092. (void)testcase;
  1093. return 1;
  1094. }
  1095. const struct testcase_setup_t legacy_setup = {
  1096. legacy_test_setup, legacy_test_cleanup
  1097. };
  1098. #define ENT(name) \
  1099. { #name, legacy_test_helper, 0, &legacy_setup, test_ ## name }
  1100. #define FORK(name) \
  1101. { #name, legacy_test_helper, TT_FORK, &legacy_setup, test_ ## name }
  1102. static struct testcase_t test_array[] = {
  1103. ENT(onion_handshake),
  1104. { "bad_onion_handshake", test_bad_onion_handshake, 0, NULL, NULL },
  1105. ENT(onion_queues),
  1106. #ifdef CURVE25519_ENABLED
  1107. { "ntor_handshake", test_ntor_handshake, 0, NULL, NULL },
  1108. #endif
  1109. ENT(circuit_timeout),
  1110. ENT(rend_fns),
  1111. ENT(geoip),
  1112. FORK(geoip_with_pt),
  1113. FORK(stats),
  1114. END_OF_TESTCASES
  1115. };
  1116. extern struct testcase_t addr_tests[];
  1117. extern struct testcase_t buffer_tests[];
  1118. extern struct testcase_t crypto_tests[];
  1119. extern struct testcase_t container_tests[];
  1120. extern struct testcase_t util_tests[];
  1121. extern struct testcase_t dir_tests[];
  1122. extern struct testcase_t microdesc_tests[];
  1123. extern struct testcase_t pt_tests[];
  1124. extern struct testcase_t config_tests[];
  1125. extern struct testcase_t introduce_tests[];
  1126. extern struct testcase_t replaycache_tests[];
  1127. extern struct testcase_t relaycell_tests[];
  1128. extern struct testcase_t cell_format_tests[];
  1129. extern struct testcase_t circuitlist_tests[];
  1130. extern struct testcase_t circuitmux_tests[];
  1131. extern struct testcase_t cell_queue_tests[];
  1132. extern struct testcase_t options_tests[];
  1133. extern struct testcase_t socks_tests[];
  1134. extern struct testcase_t extorport_tests[];
  1135. extern struct testcase_t controller_event_tests[];
  1136. extern struct testcase_t logging_tests[];
  1137. extern struct testcase_t hs_tests[];
  1138. extern struct testcase_t nodelist_tests[];
  1139. extern struct testcase_t routerkeys_tests[];
  1140. extern struct testcase_t oom_tests[];
  1141. extern struct testcase_t policy_tests[];
  1142. extern struct testcase_t status_tests[];
  1143. static struct testgroup_t testgroups[] = {
  1144. { "", test_array },
  1145. { "buffer/", buffer_tests },
  1146. { "socks/", socks_tests },
  1147. { "addr/", addr_tests },
  1148. { "crypto/", crypto_tests },
  1149. { "container/", container_tests },
  1150. { "util/", util_tests },
  1151. { "util/logging/", logging_tests },
  1152. { "cellfmt/", cell_format_tests },
  1153. { "cellqueue/", cell_queue_tests },
  1154. { "dir/", dir_tests },
  1155. { "dir/md/", microdesc_tests },
  1156. { "pt/", pt_tests },
  1157. { "config/", config_tests },
  1158. { "replaycache/", replaycache_tests },
  1159. { "relaycell/", relaycell_tests },
  1160. { "introduce/", introduce_tests },
  1161. { "circuitlist/", circuitlist_tests },
  1162. { "circuitmux/", circuitmux_tests },
  1163. { "options/", options_tests },
  1164. { "extorport/", extorport_tests },
  1165. { "control/", controller_event_tests },
  1166. { "hs/", hs_tests },
  1167. { "nodelist/", nodelist_tests },
  1168. { "routerkeys/", routerkeys_tests },
  1169. { "oom/", oom_tests },
  1170. { "policy/" , policy_tests },
  1171. { "status/" , status_tests },
  1172. END_OF_GROUPS
  1173. };
  1174. /** Main entry point for unit test code: parse the command line, and run
  1175. * some unit tests. */
  1176. int
  1177. main(int c, const char **v)
  1178. {
  1179. or_options_t *options;
  1180. char *errmsg = NULL;
  1181. int i, i_out;
  1182. int loglevel = LOG_ERR;
  1183. int accel_crypto = 0;
  1184. #ifdef USE_DMALLOC
  1185. {
  1186. int r = CRYPTO_set_mem_ex_functions(tor_malloc_, tor_realloc_, tor_free_);
  1187. tor_assert(r);
  1188. }
  1189. #endif
  1190. update_approx_time(time(NULL));
  1191. options = options_new();
  1192. tor_threads_init();
  1193. init_logging();
  1194. for (i_out = i = 1; i < c; ++i) {
  1195. if (!strcmp(v[i], "--warn")) {
  1196. loglevel = LOG_WARN;
  1197. } else if (!strcmp(v[i], "--notice")) {
  1198. loglevel = LOG_NOTICE;
  1199. } else if (!strcmp(v[i], "--info")) {
  1200. loglevel = LOG_INFO;
  1201. } else if (!strcmp(v[i], "--debug")) {
  1202. loglevel = LOG_DEBUG;
  1203. } else if (!strcmp(v[i], "--accel")) {
  1204. accel_crypto = 1;
  1205. } else {
  1206. v[i_out++] = v[i];
  1207. }
  1208. }
  1209. c = i_out;
  1210. {
  1211. log_severity_list_t s;
  1212. memset(&s, 0, sizeof(s));
  1213. set_log_severity_config(loglevel, LOG_ERR, &s);
  1214. add_stream_log(&s, "", fileno(stdout));
  1215. }
  1216. options->command = CMD_RUN_UNITTESTS;
  1217. if (crypto_global_init(accel_crypto, NULL, NULL)) {
  1218. printf("Can't initialize crypto subsystem; exiting.\n");
  1219. return 1;
  1220. }
  1221. crypto_set_tls_dh_prime(NULL);
  1222. crypto_seed_rng(1);
  1223. rep_hist_init();
  1224. network_init();
  1225. setup_directory();
  1226. options_init(options);
  1227. options->DataDirectory = tor_strdup(temp_dir);
  1228. options->EntryStatistics = 1;
  1229. if (set_options(options, &errmsg) < 0) {
  1230. printf("Failed to set initial options: %s\n", errmsg);
  1231. tor_free(errmsg);
  1232. return 1;
  1233. }
  1234. atexit(remove_directory);
  1235. have_failed = (tinytest_main(c, v, testgroups) != 0);
  1236. free_pregenerated_keys();
  1237. #ifdef USE_DMALLOC
  1238. tor_free_all(0);
  1239. dmalloc_log_unfreed();
  1240. #endif
  1241. if (have_failed)
  1242. return 1;
  1243. else
  1244. return 0;
  1245. }