test_dir.c 56 KB

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  1. /* Copyright (c) 2001-2004, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2012, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. #include "orconfig.h"
  6. #define DIRSERV_PRIVATE
  7. #define DIRVOTE_PRIVATE
  8. #define ROUTER_PRIVATE
  9. #define ROUTERLIST_PRIVATE
  10. #define HIBERNATE_PRIVATE
  11. #include "or.h"
  12. #include "directory.h"
  13. #include "dirserv.h"
  14. #include "dirvote.h"
  15. #include "hibernate.h"
  16. #include "networkstatus.h"
  17. #include "router.h"
  18. #include "routerlist.h"
  19. #include "routerparse.h"
  20. #include "test.h"
  21. static void
  22. test_dir_nicknames(void)
  23. {
  24. test_assert( is_legal_nickname("a"));
  25. test_assert(!is_legal_nickname(""));
  26. test_assert(!is_legal_nickname("abcdefghijklmnopqrst")); /* 20 chars */
  27. test_assert(!is_legal_nickname("hyphen-")); /* bad char */
  28. test_assert( is_legal_nickname("abcdefghijklmnopqrs")); /* 19 chars */
  29. test_assert(!is_legal_nickname("$AAAAAAAA01234AAAAAAAAAAAAAAAAAAAAAAAAAAA"));
  30. /* valid */
  31. test_assert( is_legal_nickname_or_hexdigest(
  32. "$AAAAAAAA01234AAAAAAAAAAAAAAAAAAAAAAAAAAA"));
  33. test_assert( is_legal_nickname_or_hexdigest(
  34. "$AAAAAAAA01234AAAAAAAAAAAAAAAAAAAAAAAAAAA=fred"));
  35. test_assert( is_legal_nickname_or_hexdigest(
  36. "$AAAAAAAA01234AAAAAAAAAAAAAAAAAAAAAAAAAAA~fred"));
  37. /* too short */
  38. test_assert(!is_legal_nickname_or_hexdigest(
  39. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"));
  40. /* illegal char */
  41. test_assert(!is_legal_nickname_or_hexdigest(
  42. "$AAAAAAzAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"));
  43. /* hex part too long */
  44. test_assert(!is_legal_nickname_or_hexdigest(
  45. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"));
  46. test_assert(!is_legal_nickname_or_hexdigest(
  47. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=fred"));
  48. /* Bad nickname */
  49. test_assert(!is_legal_nickname_or_hexdigest(
  50. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA="));
  51. test_assert(!is_legal_nickname_or_hexdigest(
  52. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA~"));
  53. test_assert(!is_legal_nickname_or_hexdigest(
  54. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA~hyphen-"));
  55. test_assert(!is_legal_nickname_or_hexdigest(
  56. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA~"
  57. "abcdefghijklmnoppqrst"));
  58. /* Bad extra char. */
  59. test_assert(!is_legal_nickname_or_hexdigest(
  60. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA!"));
  61. test_assert(is_legal_nickname_or_hexdigest("xyzzy"));
  62. test_assert(is_legal_nickname_or_hexdigest("abcdefghijklmnopqrs"));
  63. test_assert(!is_legal_nickname_or_hexdigest("abcdefghijklmnopqrst"));
  64. done:
  65. ;
  66. }
  67. /** Run unit tests for router descriptor generation logic. */
  68. static void
  69. test_dir_formats(void)
  70. {
  71. char buf[8192], buf2[8192];
  72. char platform[256];
  73. char fingerprint[FINGERPRINT_LEN+1];
  74. char *pk1_str = NULL, *pk2_str = NULL, *pk3_str = NULL, *cp;
  75. size_t pk1_str_len, pk2_str_len, pk3_str_len;
  76. routerinfo_t *r1=NULL, *r2=NULL;
  77. crypto_pk_t *pk1 = NULL, *pk2 = NULL, *pk3 = NULL;
  78. routerinfo_t *rp1 = NULL;
  79. addr_policy_t *ex1, *ex2;
  80. routerlist_t *dir1 = NULL, *dir2 = NULL;
  81. pk1 = pk_generate(0);
  82. pk2 = pk_generate(1);
  83. pk3 = pk_generate(2);
  84. test_assert(pk1 && pk2 && pk3);
  85. hibernate_set_state_for_testing_(HIBERNATE_STATE_LIVE);
  86. get_platform_str(platform, sizeof(platform));
  87. r1 = tor_malloc_zero(sizeof(routerinfo_t));
  88. r1->address = tor_strdup("18.244.0.1");
  89. r1->addr = 0xc0a80001u; /* 192.168.0.1 */
  90. r1->cache_info.published_on = 0;
  91. r1->or_port = 9000;
  92. r1->dir_port = 9003;
  93. tor_addr_parse(&r1->ipv6_addr, "1:2:3:4::");
  94. r1->ipv6_orport = 9999;
  95. r1->onion_pkey = crypto_pk_dup_key(pk1);
  96. r1->identity_pkey = crypto_pk_dup_key(pk2);
  97. r1->bandwidthrate = 1000;
  98. r1->bandwidthburst = 5000;
  99. r1->bandwidthcapacity = 10000;
  100. r1->exit_policy = NULL;
  101. r1->nickname = tor_strdup("Magri");
  102. r1->platform = tor_strdup(platform);
  103. ex1 = tor_malloc_zero(sizeof(addr_policy_t));
  104. ex2 = tor_malloc_zero(sizeof(addr_policy_t));
  105. ex1->policy_type = ADDR_POLICY_ACCEPT;
  106. tor_addr_from_ipv4h(&ex1->addr, 0);
  107. ex1->maskbits = 0;
  108. ex1->prt_min = ex1->prt_max = 80;
  109. ex2->policy_type = ADDR_POLICY_REJECT;
  110. tor_addr_from_ipv4h(&ex2->addr, 18<<24);
  111. ex2->maskbits = 8;
  112. ex2->prt_min = ex2->prt_max = 24;
  113. r2 = tor_malloc_zero(sizeof(routerinfo_t));
  114. r2->address = tor_strdup("1.1.1.1");
  115. r2->addr = 0x0a030201u; /* 10.3.2.1 */
  116. r2->platform = tor_strdup(platform);
  117. r2->cache_info.published_on = 5;
  118. r2->or_port = 9005;
  119. r2->dir_port = 0;
  120. r2->onion_pkey = crypto_pk_dup_key(pk2);
  121. r2->identity_pkey = crypto_pk_dup_key(pk1);
  122. r2->bandwidthrate = r2->bandwidthburst = r2->bandwidthcapacity = 3000;
  123. r2->exit_policy = smartlist_new();
  124. smartlist_add(r2->exit_policy, ex2);
  125. smartlist_add(r2->exit_policy, ex1);
  126. r2->nickname = tor_strdup("Fred");
  127. test_assert(!crypto_pk_write_public_key_to_string(pk1, &pk1_str,
  128. &pk1_str_len));
  129. test_assert(!crypto_pk_write_public_key_to_string(pk2 , &pk2_str,
  130. &pk2_str_len));
  131. test_assert(!crypto_pk_write_public_key_to_string(pk3 , &pk3_str,
  132. &pk3_str_len));
  133. memset(buf, 0, 2048);
  134. test_assert(router_dump_router_to_string(buf, 2048, r1, pk2)>0);
  135. strlcpy(buf2, "router Magri 18.244.0.1 9000 0 9003\n"
  136. "or-address [1:2:3:4::]:9999\n"
  137. "platform Tor "VERSION" on ", sizeof(buf2));
  138. strlcat(buf2, get_uname(), sizeof(buf2));
  139. strlcat(buf2, "\n"
  140. "opt protocols Link 1 2 Circuit 1\n"
  141. "published 1970-01-01 00:00:00\n"
  142. "opt fingerprint ", sizeof(buf2));
  143. test_assert(!crypto_pk_get_fingerprint(pk2, fingerprint, 1));
  144. strlcat(buf2, fingerprint, sizeof(buf2));
  145. strlcat(buf2, "\nuptime 0\n"
  146. /* XXX the "0" above is hard-coded, but even if we made it reflect
  147. * uptime, that still wouldn't make it right, because the two
  148. * descriptors might be made on different seconds... hm. */
  149. "bandwidth 1000 5000 10000\n"
  150. "onion-key\n", sizeof(buf2));
  151. strlcat(buf2, pk1_str, sizeof(buf2));
  152. strlcat(buf2, "signing-key\n", sizeof(buf2));
  153. strlcat(buf2, pk2_str, sizeof(buf2));
  154. strlcat(buf2, "opt hidden-service-dir\n", sizeof(buf2));
  155. strlcat(buf2, "reject *:*\nrouter-signature\n", sizeof(buf2));
  156. buf[strlen(buf2)] = '\0'; /* Don't compare the sig; it's never the same
  157. * twice */
  158. test_streq(buf, buf2);
  159. test_assert(router_dump_router_to_string(buf, 2048, r1, pk2)>0);
  160. cp = buf;
  161. rp1 = router_parse_entry_from_string((const char*)cp,NULL,1,0,NULL);
  162. test_assert(rp1);
  163. test_streq(rp1->address, r1->address);
  164. test_eq(rp1->or_port, r1->or_port);
  165. //test_eq(rp1->dir_port, r1->dir_port);
  166. test_eq(rp1->bandwidthrate, r1->bandwidthrate);
  167. test_eq(rp1->bandwidthburst, r1->bandwidthburst);
  168. test_eq(rp1->bandwidthcapacity, r1->bandwidthcapacity);
  169. test_assert(crypto_pk_cmp_keys(rp1->onion_pkey, pk1) == 0);
  170. test_assert(crypto_pk_cmp_keys(rp1->identity_pkey, pk2) == 0);
  171. //test_assert(rp1->exit_policy == NULL);
  172. #if 0
  173. /* XXX Once we have exit policies, test this again. XXX */
  174. strlcpy(buf2, "router tor.tor.tor 9005 0 0 3000\n", sizeof(buf2));
  175. strlcat(buf2, pk2_str, sizeof(buf2));
  176. strlcat(buf2, "signing-key\n", sizeof(buf2));
  177. strlcat(buf2, pk1_str, sizeof(buf2));
  178. strlcat(buf2, "accept *:80\nreject 18.*:24\n\n", sizeof(buf2));
  179. test_assert(router_dump_router_to_string(buf, 2048, &r2, pk2)>0);
  180. test_streq(buf, buf2);
  181. cp = buf;
  182. rp2 = router_parse_entry_from_string(&cp,1);
  183. test_assert(rp2);
  184. test_streq(rp2->address, r2.address);
  185. test_eq(rp2->or_port, r2.or_port);
  186. test_eq(rp2->dir_port, r2.dir_port);
  187. test_eq(rp2->bandwidth, r2.bandwidth);
  188. test_assert(crypto_pk_cmp_keys(rp2->onion_pkey, pk2) == 0);
  189. test_assert(crypto_pk_cmp_keys(rp2->identity_pkey, pk1) == 0);
  190. test_eq(rp2->exit_policy->policy_type, EXIT_POLICY_ACCEPT);
  191. test_streq(rp2->exit_policy->string, "accept *:80");
  192. test_streq(rp2->exit_policy->address, "*");
  193. test_streq(rp2->exit_policy->port, "80");
  194. test_eq(rp2->exit_policy->next->policy_type, EXIT_POLICY_REJECT);
  195. test_streq(rp2->exit_policy->next->string, "reject 18.*:24");
  196. test_streq(rp2->exit_policy->next->address, "18.*");
  197. test_streq(rp2->exit_policy->next->port, "24");
  198. test_assert(rp2->exit_policy->next->next == NULL);
  199. /* Okay, now for the directories. */
  200. {
  201. fingerprint_list = smartlist_new();
  202. crypto_pk_get_fingerprint(pk2, buf, 1);
  203. add_fingerprint_to_dir("Magri", buf, fingerprint_list);
  204. crypto_pk_get_fingerprint(pk1, buf, 1);
  205. add_fingerprint_to_dir("Fred", buf, fingerprint_list);
  206. }
  207. {
  208. char d[DIGEST_LEN];
  209. const char *m;
  210. /* XXXX NM re-enable. */
  211. /* Make sure routers aren't too far in the past any more. */
  212. r1->cache_info.published_on = time(NULL);
  213. r2->cache_info.published_on = time(NULL)-3*60*60;
  214. test_assert(router_dump_router_to_string(buf, 2048, r1, pk2)>0);
  215. test_eq(dirserv_add_descriptor(buf,&m,""), ROUTER_ADDED_NOTIFY_GENERATOR);
  216. test_assert(router_dump_router_to_string(buf, 2048, r2, pk1)>0);
  217. test_eq(dirserv_add_descriptor(buf,&m,""), ROUTER_ADDED_NOTIFY_GENERATOR);
  218. get_options()->Nickname = tor_strdup("DirServer");
  219. test_assert(!dirserv_dump_directory_to_string(&cp,pk3, 0));
  220. crypto_pk_get_digest(pk3, d);
  221. test_assert(!router_parse_directory(cp));
  222. test_eq(2, smartlist_len(dir1->routers));
  223. tor_free(cp);
  224. }
  225. #endif
  226. dirserv_free_fingerprint_list();
  227. done:
  228. if (r1)
  229. routerinfo_free(r1);
  230. if (r2)
  231. routerinfo_free(r2);
  232. tor_free(pk1_str);
  233. tor_free(pk2_str);
  234. tor_free(pk3_str);
  235. if (pk1) crypto_pk_free(pk1);
  236. if (pk2) crypto_pk_free(pk2);
  237. if (pk3) crypto_pk_free(pk3);
  238. if (rp1) routerinfo_free(rp1);
  239. tor_free(dir1); /* XXXX And more !*/
  240. tor_free(dir2); /* And more !*/
  241. }
  242. static void
  243. test_dir_versions(void)
  244. {
  245. tor_version_t ver1;
  246. /* Try out version parsing functionality */
  247. test_eq(0, tor_version_parse("0.3.4pre2-cvs", &ver1));
  248. test_eq(0, ver1.major);
  249. test_eq(3, ver1.minor);
  250. test_eq(4, ver1.micro);
  251. test_eq(VER_PRE, ver1.status);
  252. test_eq(2, ver1.patchlevel);
  253. test_eq(0, tor_version_parse("0.3.4rc1", &ver1));
  254. test_eq(0, ver1.major);
  255. test_eq(3, ver1.minor);
  256. test_eq(4, ver1.micro);
  257. test_eq(VER_RC, ver1.status);
  258. test_eq(1, ver1.patchlevel);
  259. test_eq(0, tor_version_parse("1.3.4", &ver1));
  260. test_eq(1, ver1.major);
  261. test_eq(3, ver1.minor);
  262. test_eq(4, ver1.micro);
  263. test_eq(VER_RELEASE, ver1.status);
  264. test_eq(0, ver1.patchlevel);
  265. test_eq(0, tor_version_parse("1.3.4.999", &ver1));
  266. test_eq(1, ver1.major);
  267. test_eq(3, ver1.minor);
  268. test_eq(4, ver1.micro);
  269. test_eq(VER_RELEASE, ver1.status);
  270. test_eq(999, ver1.patchlevel);
  271. test_eq(0, tor_version_parse("0.1.2.4-alpha", &ver1));
  272. test_eq(0, ver1.major);
  273. test_eq(1, ver1.minor);
  274. test_eq(2, ver1.micro);
  275. test_eq(4, ver1.patchlevel);
  276. test_eq(VER_RELEASE, ver1.status);
  277. test_streq("alpha", ver1.status_tag);
  278. test_eq(0, tor_version_parse("0.1.2.4", &ver1));
  279. test_eq(0, ver1.major);
  280. test_eq(1, ver1.minor);
  281. test_eq(2, ver1.micro);
  282. test_eq(4, ver1.patchlevel);
  283. test_eq(VER_RELEASE, ver1.status);
  284. test_streq("", ver1.status_tag);
  285. #define tt_versionstatus_op(vs1, op, vs2) \
  286. tt_assert_test_type(vs1,vs2,#vs1" "#op" "#vs2,version_status_t, \
  287. (val1_ op val2_),"%d",TT_EXIT_TEST_FUNCTION)
  288. #define test_v_i_o(val, ver, lst) \
  289. tt_versionstatus_op(val, ==, tor_version_is_obsolete(ver, lst))
  290. /* make sure tor_version_is_obsolete() works */
  291. test_v_i_o(VS_OLD, "0.0.1", "Tor 0.0.2");
  292. test_v_i_o(VS_OLD, "0.0.1", "0.0.2, Tor 0.0.3");
  293. test_v_i_o(VS_OLD, "0.0.1", "0.0.2,Tor 0.0.3");
  294. test_v_i_o(VS_OLD, "0.0.1","0.0.3,BetterTor 0.0.1");
  295. test_v_i_o(VS_RECOMMENDED, "0.0.2", "Tor 0.0.2,Tor 0.0.3");
  296. test_v_i_o(VS_NEW_IN_SERIES, "0.0.2", "Tor 0.0.2pre1,Tor 0.0.3");
  297. test_v_i_o(VS_OLD, "0.0.2", "Tor 0.0.2.1,Tor 0.0.3");
  298. test_v_i_o(VS_NEW, "0.1.0", "Tor 0.0.2,Tor 0.0.3");
  299. test_v_i_o(VS_RECOMMENDED, "0.0.7rc2", "0.0.7,Tor 0.0.7rc2,Tor 0.0.8");
  300. test_v_i_o(VS_OLD, "0.0.5.0", "0.0.5.1-cvs");
  301. test_v_i_o(VS_NEW_IN_SERIES, "0.0.5.1-cvs", "0.0.5, 0.0.6");
  302. /* Not on list, but newer than any in same series. */
  303. test_v_i_o(VS_NEW_IN_SERIES, "0.1.0.3",
  304. "Tor 0.1.0.2,Tor 0.0.9.5,Tor 0.1.1.0");
  305. /* Series newer than any on list. */
  306. test_v_i_o(VS_NEW, "0.1.2.3", "Tor 0.1.0.2,Tor 0.0.9.5,Tor 0.1.1.0");
  307. /* Series older than any on list. */
  308. test_v_i_o(VS_OLD, "0.0.1.3", "Tor 0.1.0.2,Tor 0.0.9.5,Tor 0.1.1.0");
  309. /* Not on list, not newer than any on same series. */
  310. test_v_i_o(VS_UNRECOMMENDED, "0.1.0.1",
  311. "Tor 0.1.0.2,Tor 0.0.9.5,Tor 0.1.1.0");
  312. /* On list, not newer than any on same series. */
  313. test_v_i_o(VS_UNRECOMMENDED,
  314. "0.1.0.1", "Tor 0.1.0.2,Tor 0.0.9.5,Tor 0.1.1.0");
  315. test_eq(0, tor_version_as_new_as("Tor 0.0.5", "0.0.9pre1-cvs"));
  316. test_eq(1, tor_version_as_new_as(
  317. "Tor 0.0.8 on Darwin 64-121-192-100.c3-0."
  318. "sfpo-ubr1.sfrn-sfpo.ca.cable.rcn.com Power Macintosh",
  319. "0.0.8rc2"));
  320. test_eq(0, tor_version_as_new_as(
  321. "Tor 0.0.8 on Darwin 64-121-192-100.c3-0."
  322. "sfpo-ubr1.sfrn-sfpo.ca.cable.rcn.com Power Macintosh", "0.0.8.2"));
  323. /* Now try svn revisions. */
  324. test_eq(1, tor_version_as_new_as("Tor 0.2.1.0-dev (r100)",
  325. "Tor 0.2.1.0-dev (r99)"));
  326. test_eq(1, tor_version_as_new_as("Tor 0.2.1.0-dev (r100) on Banana Jr",
  327. "Tor 0.2.1.0-dev (r99) on Hal 9000"));
  328. test_eq(1, tor_version_as_new_as("Tor 0.2.1.0-dev (r100)",
  329. "Tor 0.2.1.0-dev on Colossus"));
  330. test_eq(0, tor_version_as_new_as("Tor 0.2.1.0-dev (r99)",
  331. "Tor 0.2.1.0-dev (r100)"));
  332. test_eq(0, tor_version_as_new_as("Tor 0.2.1.0-dev (r99) on MCP",
  333. "Tor 0.2.1.0-dev (r100) on AM"));
  334. test_eq(0, tor_version_as_new_as("Tor 0.2.1.0-dev",
  335. "Tor 0.2.1.0-dev (r99)"));
  336. test_eq(1, tor_version_as_new_as("Tor 0.2.1.1",
  337. "Tor 0.2.1.0-dev (r99)"));
  338. /* Now try git revisions */
  339. test_eq(0, tor_version_parse("0.5.6.7 (git-ff00ff)", &ver1));
  340. test_eq(0, ver1.major);
  341. test_eq(5, ver1.minor);
  342. test_eq(6, ver1.micro);
  343. test_eq(7, ver1.patchlevel);
  344. test_eq(3, ver1.git_tag_len);
  345. test_memeq(ver1.git_tag, "\xff\x00\xff", 3);
  346. test_eq(-1, tor_version_parse("0.5.6.7 (git-ff00xx)", &ver1));
  347. test_eq(-1, tor_version_parse("0.5.6.7 (git-ff00fff)", &ver1));
  348. test_eq(0, tor_version_parse("0.5.6.7 (git ff00fff)", &ver1));
  349. done:
  350. ;
  351. }
  352. /** Run unit tests for directory fp_pair functions. */
  353. static void
  354. test_dir_fp_pairs(void)
  355. {
  356. smartlist_t *sl = smartlist_new();
  357. fp_pair_t *pair;
  358. dir_split_resource_into_fingerprint_pairs(
  359. /* Two pairs, out of order, with one duplicate. */
  360. "73656372657420646174612E0000000000FFFFFF-"
  361. "557365204145532d32353620696e73746561642e+"
  362. "73656372657420646174612E0000000000FFFFFF-"
  363. "557365204145532d32353620696e73746561642e+"
  364. "48657861646563696d616c2069736e277420736f-"
  365. "676f6f6420666f7220686964696e6720796f7572.z", sl);
  366. test_eq(smartlist_len(sl), 2);
  367. pair = smartlist_get(sl, 0);
  368. test_memeq(pair->first, "Hexadecimal isn't so", DIGEST_LEN);
  369. test_memeq(pair->second, "good for hiding your", DIGEST_LEN);
  370. pair = smartlist_get(sl, 1);
  371. test_memeq(pair->first, "secret data.\0\0\0\0\0\xff\xff\xff", DIGEST_LEN);
  372. test_memeq(pair->second, "Use AES-256 instead.", DIGEST_LEN);
  373. done:
  374. SMARTLIST_FOREACH(sl, fp_pair_t *, pair, tor_free(pair));
  375. smartlist_free(sl);
  376. }
  377. static void
  378. test_dir_split_fps(void *testdata)
  379. {
  380. smartlist_t *sl = smartlist_new();
  381. char *mem_op_hex_tmp = NULL;
  382. (void)testdata;
  383. /* Some example hex fingerprints and their base64 equivalents */
  384. #define HEX1 "Fe0daff89127389bc67558691231234551193EEE"
  385. #define HEX2 "Deadbeef99999991111119999911111111f00ba4"
  386. #define HEX3 "b33ff00db33ff00db33ff00db33ff00db33ff00d"
  387. #define HEX256_1 \
  388. "f3f3f3f3fbbbbf3f3f3f3fbbbf3f3f3f3fbbbbf3f3f3f3fbbbf3f3f3f3fbbbbf"
  389. #define HEX256_2 \
  390. "cccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccCCc"
  391. #define HEX256_3 \
  392. "0123456789ABCdef0123456789ABCdef0123456789ABCdef0123456789ABCdef"
  393. #define B64_1 "/g2v+JEnOJvGdVhpEjEjRVEZPu4"
  394. #define B64_2 "3q2+75mZmZERERmZmRERERHwC6Q"
  395. #define B64_3 "sz/wDbM/8A2zP/ANsz/wDbM/8A0"
  396. #define B64_256_1 "8/Pz8/u7vz8/Pz+7vz8/Pz+7u/Pz8/P7u/Pz8/P7u78"
  397. #define B64_256_2 "zMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMzMw"
  398. #define B64_256_3 "ASNFZ4mrze8BI0VniavN7wEjRWeJq83vASNFZ4mrze8"
  399. /* no flags set */
  400. dir_split_resource_into_fingerprints("A+C+B", sl, NULL, 0);
  401. tt_int_op(smartlist_len(sl), ==, 3);
  402. tt_str_op(smartlist_get(sl, 0), ==, "A");
  403. tt_str_op(smartlist_get(sl, 1), ==, "C");
  404. tt_str_op(smartlist_get(sl, 2), ==, "B");
  405. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  406. smartlist_clear(sl);
  407. /* uniq strings. */
  408. dir_split_resource_into_fingerprints("A+C+B+A+B+B", sl, NULL, DSR_SORT_UNIQ);
  409. tt_int_op(smartlist_len(sl), ==, 3);
  410. tt_str_op(smartlist_get(sl, 0), ==, "A");
  411. tt_str_op(smartlist_get(sl, 1), ==, "B");
  412. tt_str_op(smartlist_get(sl, 2), ==, "C");
  413. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  414. smartlist_clear(sl);
  415. /* Decode hex. */
  416. dir_split_resource_into_fingerprints(HEX1"+"HEX2, sl, NULL, DSR_HEX);
  417. tt_int_op(smartlist_len(sl), ==, 2);
  418. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX1);
  419. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX2);
  420. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  421. smartlist_clear(sl);
  422. /* decode hex and drop weirdness. */
  423. dir_split_resource_into_fingerprints(HEX1"+bogus+"HEX2"+"HEX256_1,
  424. sl, NULL, DSR_HEX);
  425. tt_int_op(smartlist_len(sl), ==, 2);
  426. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX1);
  427. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX2);
  428. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  429. smartlist_clear(sl);
  430. /* Decode long hex */
  431. dir_split_resource_into_fingerprints(HEX256_1"+"HEX256_2"+"HEX2"+"HEX256_3,
  432. sl, NULL, DSR_HEX|DSR_DIGEST256);
  433. tt_int_op(smartlist_len(sl), ==, 3);
  434. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX256_1);
  435. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX256_2);
  436. test_mem_op_hex(smartlist_get(sl, 2), ==, HEX256_3);
  437. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  438. smartlist_clear(sl);
  439. /* Decode hex and sort. */
  440. dir_split_resource_into_fingerprints(HEX1"+"HEX2"+"HEX3"+"HEX2,
  441. sl, NULL, DSR_HEX|DSR_SORT_UNIQ);
  442. tt_int_op(smartlist_len(sl), ==, 3);
  443. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX3);
  444. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX2);
  445. test_mem_op_hex(smartlist_get(sl, 2), ==, HEX1);
  446. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  447. smartlist_clear(sl);
  448. /* Decode long hex and sort */
  449. dir_split_resource_into_fingerprints(HEX256_1"+"HEX256_2"+"HEX256_3
  450. "+"HEX256_1,
  451. sl, NULL,
  452. DSR_HEX|DSR_DIGEST256|DSR_SORT_UNIQ);
  453. tt_int_op(smartlist_len(sl), ==, 3);
  454. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX256_3);
  455. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX256_2);
  456. test_mem_op_hex(smartlist_get(sl, 2), ==, HEX256_1);
  457. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  458. smartlist_clear(sl);
  459. /* Decode base64 */
  460. dir_split_resource_into_fingerprints(B64_1"-"B64_2, sl, NULL, DSR_BASE64);
  461. tt_int_op(smartlist_len(sl), ==, 2);
  462. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX1);
  463. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX2);
  464. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  465. smartlist_clear(sl);
  466. /* Decode long base64 */
  467. dir_split_resource_into_fingerprints(B64_256_1"-"B64_256_2,
  468. sl, NULL, DSR_BASE64|DSR_DIGEST256);
  469. tt_int_op(smartlist_len(sl), ==, 2);
  470. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX256_1);
  471. test_mem_op_hex(smartlist_get(sl, 1), ==, HEX256_2);
  472. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  473. smartlist_clear(sl);
  474. dir_split_resource_into_fingerprints(B64_256_1,
  475. sl, NULL, DSR_BASE64|DSR_DIGEST256);
  476. tt_int_op(smartlist_len(sl), ==, 1);
  477. test_mem_op_hex(smartlist_get(sl, 0), ==, HEX256_1);
  478. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  479. smartlist_clear(sl);
  480. done:
  481. SMARTLIST_FOREACH(sl, char *, cp, tor_free(cp));
  482. smartlist_free(sl);
  483. tor_free(mem_op_hex_tmp);
  484. }
  485. static void
  486. test_dir_measured_bw(void)
  487. {
  488. measured_bw_line_t mbwl;
  489. int i;
  490. const char *lines_pass[] = {
  491. "node_id=$557365204145532d32353620696e73746561642e bw=1024\n",
  492. "node_id=$557365204145532d32353620696e73746561642e\t bw=1024 \n",
  493. " node_id=$557365204145532d32353620696e73746561642e bw=1024\n",
  494. "\tnoise\tnode_id=$557365204145532d32353620696e73746561642e "
  495. "bw=1024 junk=007\n",
  496. "misc=junk node_id=$557365204145532d32353620696e73746561642e "
  497. "bw=1024 junk=007\n",
  498. "end"
  499. };
  500. const char *lines_fail[] = {
  501. /* Test possible python stupidity on input */
  502. "node_id=None bw=1024\n",
  503. "node_id=$None bw=1024\n",
  504. "node_id=$557365204145532d32353620696e73746561642e bw=None\n",
  505. "node_id=$557365204145532d32353620696e73746561642e bw=1024.0\n",
  506. "node_id=$557365204145532d32353620696e73746561642e bw=.1024\n",
  507. "node_id=$557365204145532d32353620696e73746561642e bw=1.024\n",
  508. "node_id=$557365204145532d32353620696e73746561642e bw=1024 bw=0\n",
  509. "node_id=$557365204145532d32353620696e73746561642e bw=1024 bw=None\n",
  510. "node_id=$557365204145532d32353620696e73746561642e bw=-1024\n",
  511. /* Test incomplete writes due to race conditions, partial copies, etc */
  512. "node_i",
  513. "node_i\n",
  514. "node_id=",
  515. "node_id=\n",
  516. "node_id=$557365204145532d32353620696e73746561642e bw=",
  517. "node_id=$557365204145532d32353620696e73746561642e bw=1024",
  518. "node_id=$557365204145532d32353620696e73746561642e bw=\n",
  519. "node_id=$557365204145532d32353620696e7374",
  520. "node_id=$557365204145532d32353620696e7374\n",
  521. "",
  522. "\n",
  523. " \n ",
  524. " \n\n",
  525. /* Test assorted noise */
  526. " node_id= ",
  527. "node_id==$557365204145532d32353620696e73746561642e bw==1024\n",
  528. "node_id=$55736520414552d32353620696e73746561642e bw=1024\n",
  529. "node_id=557365204145532d32353620696e73746561642e bw=1024\n",
  530. "node_id= $557365204145532d32353620696e73746561642e bw=0.23\n",
  531. "end"
  532. };
  533. for (i = 0; strcmp(lines_fail[i], "end"); i++) {
  534. //fprintf(stderr, "Testing: %s\n", lines_fail[i]);
  535. test_assert(measured_bw_line_parse(&mbwl, lines_fail[i]) == -1);
  536. }
  537. for (i = 0; strcmp(lines_pass[i], "end"); i++) {
  538. //fprintf(stderr, "Testing: %s %d\n", lines_pass[i], TOR_ISSPACE('\n'));
  539. test_assert(measured_bw_line_parse(&mbwl, lines_pass[i]) == 0);
  540. test_assert(mbwl.bw == 1024);
  541. test_assert(strcmp(mbwl.node_hex,
  542. "557365204145532d32353620696e73746561642e") == 0);
  543. }
  544. done:
  545. return;
  546. }
  547. static void
  548. test_dir_param_voting(void)
  549. {
  550. networkstatus_t vote1, vote2, vote3, vote4;
  551. smartlist_t *votes = smartlist_new();
  552. char *res = NULL;
  553. /* dirvote_compute_params only looks at the net_params field of the votes,
  554. so that's all we need to set.
  555. */
  556. memset(&vote1, 0, sizeof(vote1));
  557. memset(&vote2, 0, sizeof(vote2));
  558. memset(&vote3, 0, sizeof(vote3));
  559. memset(&vote4, 0, sizeof(vote4));
  560. vote1.net_params = smartlist_new();
  561. vote2.net_params = smartlist_new();
  562. vote3.net_params = smartlist_new();
  563. vote4.net_params = smartlist_new();
  564. smartlist_split_string(vote1.net_params,
  565. "ab=90 abcd=20 cw=50 x-yz=-99", NULL, 0, 0);
  566. smartlist_split_string(vote2.net_params,
  567. "ab=27 cw=5 x-yz=88", NULL, 0, 0);
  568. smartlist_split_string(vote3.net_params,
  569. "abcd=20 c=60 cw=500 x-yz=-9 zzzzz=101", NULL, 0, 0);
  570. smartlist_split_string(vote4.net_params,
  571. "ab=900 abcd=200 c=1 cw=51 x-yz=100", NULL, 0, 0);
  572. test_eq(100, networkstatus_get_param(&vote4, "x-yz", 50, 0, 300));
  573. test_eq(222, networkstatus_get_param(&vote4, "foobar", 222, 0, 300));
  574. test_eq(80, networkstatus_get_param(&vote4, "ab", 12, 0, 80));
  575. test_eq(-8, networkstatus_get_param(&vote4, "ab", -12, -100, -8));
  576. test_eq(0, networkstatus_get_param(&vote4, "foobar", 0, -100, 8));
  577. smartlist_add(votes, &vote1);
  578. /* Do the first tests without adding all the other votes, for
  579. * networks without many dirauths. */
  580. res = dirvote_compute_params(votes, 11, 6);
  581. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-99");
  582. tor_free(res);
  583. res = dirvote_compute_params(votes, 12, 2);
  584. test_streq(res, "");
  585. tor_free(res);
  586. res = dirvote_compute_params(votes, 12, 1);
  587. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-99");
  588. tor_free(res);
  589. smartlist_add(votes, &vote2);
  590. res = dirvote_compute_params(votes, 11, 2);
  591. test_streq(res, "ab=27 abcd=20 cw=5 x-yz=-99");
  592. tor_free(res);
  593. res = dirvote_compute_params(votes, 12, 2);
  594. test_streq(res, "ab=27 cw=5 x-yz=-99");
  595. tor_free(res);
  596. res = dirvote_compute_params(votes, 12, 3);
  597. test_streq(res, "ab=27 cw=5 x-yz=-99");
  598. tor_free(res);
  599. res = dirvote_compute_params(votes, 12, 6);
  600. test_streq(res, "");
  601. tor_free(res);
  602. smartlist_add(votes, &vote3);
  603. res = dirvote_compute_params(votes, 11, 3);
  604. test_streq(res, "ab=27 abcd=20 c=60 cw=50 x-yz=-9 zzzzz=101");
  605. tor_free(res);
  606. res = dirvote_compute_params(votes, 12, 3);
  607. test_streq(res, "ab=27 abcd=20 cw=50 x-yz=-9");
  608. tor_free(res);
  609. res = dirvote_compute_params(votes, 12, 5);
  610. test_streq(res, "cw=50 x-yz=-9");
  611. tor_free(res);
  612. res = dirvote_compute_params(votes, 12, 9);
  613. test_streq(res, "cw=50 x-yz=-9");
  614. tor_free(res);
  615. smartlist_add(votes, &vote4);
  616. res = dirvote_compute_params(votes, 11, 4);
  617. test_streq(res, "ab=90 abcd=20 c=1 cw=50 x-yz=-9 zzzzz=101");
  618. tor_free(res);
  619. res = dirvote_compute_params(votes, 12, 4);
  620. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-9");
  621. tor_free(res);
  622. res = dirvote_compute_params(votes, 12, 5);
  623. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-9");
  624. tor_free(res);
  625. /* Test that the special-cased "at least three dirauths voted for
  626. * this param" logic works as expected. */
  627. res = dirvote_compute_params(votes, 12, 6);
  628. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-9");
  629. tor_free(res);
  630. res = dirvote_compute_params(votes, 12, 10);
  631. test_streq(res, "ab=90 abcd=20 cw=50 x-yz=-9");
  632. tor_free(res);
  633. done:
  634. tor_free(res);
  635. SMARTLIST_FOREACH(vote1.net_params, char *, cp, tor_free(cp));
  636. SMARTLIST_FOREACH(vote2.net_params, char *, cp, tor_free(cp));
  637. SMARTLIST_FOREACH(vote3.net_params, char *, cp, tor_free(cp));
  638. SMARTLIST_FOREACH(vote4.net_params, char *, cp, tor_free(cp));
  639. smartlist_free(vote1.net_params);
  640. smartlist_free(vote2.net_params);
  641. smartlist_free(vote3.net_params);
  642. smartlist_free(vote4.net_params);
  643. smartlist_free(votes);
  644. return;
  645. }
  646. extern const char AUTHORITY_CERT_1[];
  647. extern const char AUTHORITY_SIGNKEY_1[];
  648. extern const char AUTHORITY_CERT_2[];
  649. extern const char AUTHORITY_SIGNKEY_2[];
  650. extern const char AUTHORITY_CERT_3[];
  651. extern const char AUTHORITY_SIGNKEY_3[];
  652. /** Helper: Test that two networkstatus_voter_info_t do in fact represent the
  653. * same voting authority, and that they do in fact have all the same
  654. * information. */
  655. static void
  656. test_same_voter(networkstatus_voter_info_t *v1,
  657. networkstatus_voter_info_t *v2)
  658. {
  659. test_streq(v1->nickname, v2->nickname);
  660. test_memeq(v1->identity_digest, v2->identity_digest, DIGEST_LEN);
  661. test_streq(v1->address, v2->address);
  662. test_eq(v1->addr, v2->addr);
  663. test_eq(v1->dir_port, v2->dir_port);
  664. test_eq(v1->or_port, v2->or_port);
  665. test_streq(v1->contact, v2->contact);
  666. test_memeq(v1->vote_digest, v2->vote_digest, DIGEST_LEN);
  667. done:
  668. ;
  669. }
  670. /** Helper: Make a new routerinfo containing the right information for a
  671. * given vote_routerstatus_t. */
  672. static routerinfo_t *
  673. generate_ri_from_rs(const vote_routerstatus_t *vrs)
  674. {
  675. routerinfo_t *r;
  676. const routerstatus_t *rs = &vrs->status;
  677. static time_t published = 0;
  678. r = tor_malloc_zero(sizeof(routerinfo_t));
  679. memcpy(r->cache_info.identity_digest, rs->identity_digest, DIGEST_LEN);
  680. memcpy(r->cache_info.signed_descriptor_digest, rs->descriptor_digest,
  681. DIGEST_LEN);
  682. r->cache_info.do_not_cache = 1;
  683. r->cache_info.routerlist_index = -1;
  684. r->cache_info.signed_descriptor_body =
  685. tor_strdup("123456789012345678901234567890123");
  686. r->cache_info.signed_descriptor_len =
  687. strlen(r->cache_info.signed_descriptor_body);
  688. r->exit_policy = smartlist_new();
  689. r->cache_info.published_on = ++published + time(NULL);
  690. return r;
  691. }
  692. /** Helper: get a detached signatures document for one or two
  693. * consensuses. */
  694. static char *
  695. get_detached_sigs(networkstatus_t *ns, networkstatus_t *ns2)
  696. {
  697. char *r;
  698. smartlist_t *sl;
  699. tor_assert(ns && ns->flavor == FLAV_NS);
  700. sl = smartlist_new();
  701. smartlist_add(sl,ns);
  702. if (ns2)
  703. smartlist_add(sl,ns2);
  704. r = networkstatus_get_detached_signatures(sl);
  705. smartlist_free(sl);
  706. return r;
  707. }
  708. /** Run unit tests for generating and parsing V3 consensus networkstatus
  709. * documents. */
  710. static void
  711. test_dir_v3_networkstatus(void)
  712. {
  713. authority_cert_t *cert1=NULL, *cert2=NULL, *cert3=NULL;
  714. crypto_pk_t *sign_skey_1=NULL, *sign_skey_2=NULL, *sign_skey_3=NULL;
  715. crypto_pk_t *sign_skey_leg1=NULL;
  716. const char *msg=NULL;
  717. time_t now = time(NULL);
  718. networkstatus_voter_info_t *voter;
  719. document_signature_t *sig;
  720. networkstatus_t *vote=NULL, *v1=NULL, *v2=NULL, *v3=NULL, *con=NULL,
  721. *con_md=NULL;
  722. vote_routerstatus_t *vrs;
  723. routerstatus_t *rs;
  724. char *v1_text=NULL, *v2_text=NULL, *v3_text=NULL, *consensus_text=NULL, *cp;
  725. smartlist_t *votes = smartlist_new();
  726. /* For generating the two other consensuses. */
  727. char *detached_text1=NULL, *detached_text2=NULL;
  728. char *consensus_text2=NULL, *consensus_text3=NULL;
  729. char *consensus_text_md2=NULL, *consensus_text_md3=NULL;
  730. char *consensus_text_md=NULL;
  731. networkstatus_t *con2=NULL, *con_md2=NULL, *con3=NULL, *con_md3=NULL;
  732. ns_detached_signatures_t *dsig1=NULL, *dsig2=NULL;
  733. /* Parse certificates and keys. */
  734. cert1 = authority_cert_parse_from_string(AUTHORITY_CERT_1, NULL);
  735. test_assert(cert1);
  736. test_assert(cert1->is_cross_certified);
  737. cert2 = authority_cert_parse_from_string(AUTHORITY_CERT_2, NULL);
  738. test_assert(cert2);
  739. cert3 = authority_cert_parse_from_string(AUTHORITY_CERT_3, NULL);
  740. test_assert(cert3);
  741. sign_skey_1 = crypto_pk_new();
  742. sign_skey_2 = crypto_pk_new();
  743. sign_skey_3 = crypto_pk_new();
  744. sign_skey_leg1 = pk_generate(4);
  745. test_assert(!crypto_pk_read_private_key_from_string(sign_skey_1,
  746. AUTHORITY_SIGNKEY_1, -1));
  747. test_assert(!crypto_pk_read_private_key_from_string(sign_skey_2,
  748. AUTHORITY_SIGNKEY_2, -1));
  749. test_assert(!crypto_pk_read_private_key_from_string(sign_skey_3,
  750. AUTHORITY_SIGNKEY_3, -1));
  751. test_assert(!crypto_pk_cmp_keys(sign_skey_1, cert1->signing_key));
  752. test_assert(!crypto_pk_cmp_keys(sign_skey_2, cert2->signing_key));
  753. /*
  754. * Set up a vote; generate it; try to parse it.
  755. */
  756. vote = tor_malloc_zero(sizeof(networkstatus_t));
  757. vote->type = NS_TYPE_VOTE;
  758. vote->published = now;
  759. vote->valid_after = now+1000;
  760. vote->fresh_until = now+2000;
  761. vote->valid_until = now+3000;
  762. vote->vote_seconds = 100;
  763. vote->dist_seconds = 200;
  764. vote->supported_methods = smartlist_new();
  765. smartlist_split_string(vote->supported_methods, "1 2 3", NULL, 0, -1);
  766. vote->client_versions = tor_strdup("0.1.2.14,0.1.2.15");
  767. vote->server_versions = tor_strdup("0.1.2.14,0.1.2.15,0.1.2.16");
  768. vote->known_flags = smartlist_new();
  769. smartlist_split_string(vote->known_flags,
  770. "Authority Exit Fast Guard Running Stable V2Dir Valid",
  771. 0, SPLIT_SKIP_SPACE|SPLIT_IGNORE_BLANK, 0);
  772. vote->voters = smartlist_new();
  773. voter = tor_malloc_zero(sizeof(networkstatus_voter_info_t));
  774. voter->nickname = tor_strdup("Voter1");
  775. voter->address = tor_strdup("1.2.3.4");
  776. voter->addr = 0x01020304;
  777. voter->dir_port = 80;
  778. voter->or_port = 9000;
  779. voter->contact = tor_strdup("voter@example.com");
  780. crypto_pk_get_digest(cert1->identity_key, voter->identity_digest);
  781. smartlist_add(vote->voters, voter);
  782. vote->cert = authority_cert_dup(cert1);
  783. vote->net_params = smartlist_new();
  784. smartlist_split_string(vote->net_params, "circuitwindow=101 foo=990",
  785. NULL, 0, 0);
  786. vote->routerstatus_list = smartlist_new();
  787. /* add the first routerstatus. */
  788. vrs = tor_malloc_zero(sizeof(vote_routerstatus_t));
  789. rs = &vrs->status;
  790. vrs->version = tor_strdup("0.1.2.14");
  791. rs->published_on = now-1500;
  792. strlcpy(rs->nickname, "router2", sizeof(rs->nickname));
  793. memset(rs->identity_digest, 3, DIGEST_LEN);
  794. memset(rs->descriptor_digest, 78, DIGEST_LEN);
  795. rs->addr = 0x99008801;
  796. rs->or_port = 443;
  797. rs->dir_port = 8000;
  798. /* all flags but running cleared */
  799. rs->is_flagged_running = 1;
  800. smartlist_add(vote->routerstatus_list, vrs);
  801. test_assert(router_add_to_routerlist(generate_ri_from_rs(vrs), &msg,0,0)>=0);
  802. /* add the second routerstatus. */
  803. vrs = tor_malloc_zero(sizeof(vote_routerstatus_t));
  804. rs = &vrs->status;
  805. vrs->version = tor_strdup("0.2.0.5");
  806. rs->published_on = now-1000;
  807. strlcpy(rs->nickname, "router1", sizeof(rs->nickname));
  808. memset(rs->identity_digest, 5, DIGEST_LEN);
  809. memset(rs->descriptor_digest, 77, DIGEST_LEN);
  810. rs->addr = 0x99009901;
  811. rs->or_port = 443;
  812. rs->dir_port = 0;
  813. rs->is_exit = rs->is_stable = rs->is_fast = rs->is_flagged_running =
  814. rs->is_valid = rs->is_v2_dir = rs->is_possible_guard = 1;
  815. smartlist_add(vote->routerstatus_list, vrs);
  816. test_assert(router_add_to_routerlist(generate_ri_from_rs(vrs), &msg,0,0)>=0);
  817. /* add the third routerstatus. */
  818. vrs = tor_malloc_zero(sizeof(vote_routerstatus_t));
  819. rs = &vrs->status;
  820. vrs->version = tor_strdup("0.1.0.3");
  821. rs->published_on = now-1000;
  822. strlcpy(rs->nickname, "router3", sizeof(rs->nickname));
  823. memset(rs->identity_digest, 33, DIGEST_LEN);
  824. memset(rs->descriptor_digest, 79, DIGEST_LEN);
  825. rs->addr = 0xAA009901;
  826. rs->or_port = 400;
  827. rs->dir_port = 9999;
  828. rs->is_authority = rs->is_exit = rs->is_stable = rs->is_fast =
  829. rs->is_flagged_running = rs->is_valid = rs->is_v2_dir =
  830. rs->is_possible_guard = 1;
  831. smartlist_add(vote->routerstatus_list, vrs);
  832. test_assert(router_add_to_routerlist(generate_ri_from_rs(vrs), &msg,0,0)>=0);
  833. /* add a fourth routerstatus that is not running. */
  834. vrs = tor_malloc_zero(sizeof(vote_routerstatus_t));
  835. rs = &vrs->status;
  836. vrs->version = tor_strdup("0.1.6.3");
  837. rs->published_on = now-1000;
  838. strlcpy(rs->nickname, "router4", sizeof(rs->nickname));
  839. memset(rs->identity_digest, 34, DIGEST_LEN);
  840. memset(rs->descriptor_digest, 47, DIGEST_LEN);
  841. rs->addr = 0xC0000203;
  842. rs->or_port = 500;
  843. rs->dir_port = 1999;
  844. /* Running flag (and others) cleared */
  845. smartlist_add(vote->routerstatus_list, vrs);
  846. test_assert(router_add_to_routerlist(generate_ri_from_rs(vrs), &msg,0,0)>=0);
  847. /* dump the vote and try to parse it. */
  848. v1_text = format_networkstatus_vote(sign_skey_1, vote);
  849. test_assert(v1_text);
  850. v1 = networkstatus_parse_vote_from_string(v1_text, NULL, NS_TYPE_VOTE);
  851. test_assert(v1);
  852. /* Make sure the parsed thing was right. */
  853. test_eq(v1->type, NS_TYPE_VOTE);
  854. test_eq(v1->published, vote->published);
  855. test_eq(v1->valid_after, vote->valid_after);
  856. test_eq(v1->fresh_until, vote->fresh_until);
  857. test_eq(v1->valid_until, vote->valid_until);
  858. test_eq(v1->vote_seconds, vote->vote_seconds);
  859. test_eq(v1->dist_seconds, vote->dist_seconds);
  860. test_streq(v1->client_versions, vote->client_versions);
  861. test_streq(v1->server_versions, vote->server_versions);
  862. test_assert(v1->voters && smartlist_len(v1->voters));
  863. voter = smartlist_get(v1->voters, 0);
  864. test_streq(voter->nickname, "Voter1");
  865. test_streq(voter->address, "1.2.3.4");
  866. test_eq(voter->addr, 0x01020304);
  867. test_eq(voter->dir_port, 80);
  868. test_eq(voter->or_port, 9000);
  869. test_streq(voter->contact, "voter@example.com");
  870. test_assert(v1->cert);
  871. test_assert(!crypto_pk_cmp_keys(sign_skey_1, v1->cert->signing_key));
  872. cp = smartlist_join_strings(v1->known_flags, ":", 0, NULL);
  873. test_streq(cp, "Authority:Exit:Fast:Guard:Running:Stable:V2Dir:Valid");
  874. tor_free(cp);
  875. test_eq(smartlist_len(v1->routerstatus_list), 4);
  876. /* Check the first routerstatus. */
  877. vrs = smartlist_get(v1->routerstatus_list, 0);
  878. rs = &vrs->status;
  879. test_streq(vrs->version, "0.1.2.14");
  880. test_eq(rs->published_on, now-1500);
  881. test_streq(rs->nickname, "router2");
  882. test_memeq(rs->identity_digest,
  883. "\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3",
  884. DIGEST_LEN);
  885. test_memeq(rs->descriptor_digest, "NNNNNNNNNNNNNNNNNNNN", DIGEST_LEN);
  886. test_eq(rs->addr, 0x99008801);
  887. test_eq(rs->or_port, 443);
  888. test_eq(rs->dir_port, 8000);
  889. test_eq(vrs->flags, U64_LITERAL(16)); // no flags except "running"
  890. /* Check the second routerstatus. */
  891. vrs = smartlist_get(v1->routerstatus_list, 1);
  892. rs = &vrs->status;
  893. test_streq(vrs->version, "0.2.0.5");
  894. test_eq(rs->published_on, now-1000);
  895. test_streq(rs->nickname, "router1");
  896. test_memeq(rs->identity_digest,
  897. "\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5",
  898. DIGEST_LEN);
  899. test_memeq(rs->descriptor_digest, "MMMMMMMMMMMMMMMMMMMM", DIGEST_LEN);
  900. test_eq(rs->addr, 0x99009901);
  901. test_eq(rs->or_port, 443);
  902. test_eq(rs->dir_port, 0);
  903. test_eq(vrs->flags, U64_LITERAL(254)); // all flags except "authority."
  904. {
  905. measured_bw_line_t mbw;
  906. memset(mbw.node_id, 33, sizeof(mbw.node_id));
  907. mbw.bw = 1024;
  908. test_assert(measured_bw_line_apply(&mbw,
  909. v1->routerstatus_list) == 1);
  910. vrs = smartlist_get(v1->routerstatus_list, 2);
  911. test_assert(vrs->status.has_measured_bw &&
  912. vrs->status.measured_bw == 1024);
  913. }
  914. /* Generate second vote. It disagrees on some of the times,
  915. * and doesn't list versions, and knows some crazy flags */
  916. vote->published = now+1;
  917. vote->fresh_until = now+3005;
  918. vote->dist_seconds = 300;
  919. authority_cert_free(vote->cert);
  920. vote->cert = authority_cert_dup(cert2);
  921. vote->net_params = smartlist_new();
  922. smartlist_split_string(vote->net_params, "bar=2000000000 circuitwindow=20",
  923. NULL, 0, 0);
  924. tor_free(vote->client_versions);
  925. tor_free(vote->server_versions);
  926. voter = smartlist_get(vote->voters, 0);
  927. tor_free(voter->nickname);
  928. tor_free(voter->address);
  929. voter->nickname = tor_strdup("Voter2");
  930. voter->address = tor_strdup("2.3.4.5");
  931. voter->addr = 0x02030405;
  932. crypto_pk_get_digest(cert2->identity_key, voter->identity_digest);
  933. smartlist_add(vote->known_flags, tor_strdup("MadeOfCheese"));
  934. smartlist_add(vote->known_flags, tor_strdup("MadeOfTin"));
  935. smartlist_sort_strings(vote->known_flags);
  936. vrs = smartlist_get(vote->routerstatus_list, 2);
  937. smartlist_del_keeporder(vote->routerstatus_list, 2);
  938. tor_free(vrs->version);
  939. tor_free(vrs);
  940. vrs = smartlist_get(vote->routerstatus_list, 0);
  941. vrs->status.is_fast = 1;
  942. /* generate and parse. */
  943. v2_text = format_networkstatus_vote(sign_skey_2, vote);
  944. test_assert(v2_text);
  945. v2 = networkstatus_parse_vote_from_string(v2_text, NULL, NS_TYPE_VOTE);
  946. test_assert(v2);
  947. /* Check that flags come out right.*/
  948. cp = smartlist_join_strings(v2->known_flags, ":", 0, NULL);
  949. test_streq(cp, "Authority:Exit:Fast:Guard:MadeOfCheese:MadeOfTin:"
  950. "Running:Stable:V2Dir:Valid");
  951. tor_free(cp);
  952. vrs = smartlist_get(v2->routerstatus_list, 1);
  953. /* 1023 - authority(1) - madeofcheese(16) - madeoftin(32) */
  954. test_eq(vrs->flags, U64_LITERAL(974));
  955. /* Generate the third vote. */
  956. vote->published = now;
  957. vote->fresh_until = now+2003;
  958. vote->dist_seconds = 250;
  959. authority_cert_free(vote->cert);
  960. vote->cert = authority_cert_dup(cert3);
  961. vote->net_params = smartlist_new();
  962. smartlist_split_string(vote->net_params, "circuitwindow=80 foo=660",
  963. NULL, 0, 0);
  964. smartlist_add(vote->supported_methods, tor_strdup("4"));
  965. vote->client_versions = tor_strdup("0.1.2.14,0.1.2.17");
  966. vote->server_versions = tor_strdup("0.1.2.10,0.1.2.15,0.1.2.16");
  967. voter = smartlist_get(vote->voters, 0);
  968. tor_free(voter->nickname);
  969. tor_free(voter->address);
  970. voter->nickname = tor_strdup("Voter3");
  971. voter->address = tor_strdup("3.4.5.6");
  972. voter->addr = 0x03040506;
  973. crypto_pk_get_digest(cert3->identity_key, voter->identity_digest);
  974. /* This one has a legacy id. */
  975. memset(voter->legacy_id_digest, (int)'A', DIGEST_LEN);
  976. vrs = smartlist_get(vote->routerstatus_list, 0);
  977. smartlist_del_keeporder(vote->routerstatus_list, 0);
  978. tor_free(vrs->version);
  979. tor_free(vrs);
  980. vrs = smartlist_get(vote->routerstatus_list, 0);
  981. memset(vrs->status.descriptor_digest, (int)'Z', DIGEST_LEN);
  982. test_assert(router_add_to_routerlist(generate_ri_from_rs(vrs), &msg,0,0)>=0);
  983. v3_text = format_networkstatus_vote(sign_skey_3, vote);
  984. test_assert(v3_text);
  985. v3 = networkstatus_parse_vote_from_string(v3_text, NULL, NS_TYPE_VOTE);
  986. test_assert(v3);
  987. /* Compute a consensus as voter 3. */
  988. smartlist_add(votes, v3);
  989. smartlist_add(votes, v1);
  990. smartlist_add(votes, v2);
  991. consensus_text = networkstatus_compute_consensus(votes, 3,
  992. cert3->identity_key,
  993. sign_skey_3,
  994. "AAAAAAAAAAAAAAAAAAAA",
  995. sign_skey_leg1,
  996. FLAV_NS);
  997. test_assert(consensus_text);
  998. con = networkstatus_parse_vote_from_string(consensus_text, NULL,
  999. NS_TYPE_CONSENSUS);
  1000. test_assert(con);
  1001. //log_notice(LD_GENERAL, "<<%s>>\n<<%s>>\n<<%s>>\n",
  1002. // v1_text, v2_text, v3_text);
  1003. consensus_text_md = networkstatus_compute_consensus(votes, 3,
  1004. cert3->identity_key,
  1005. sign_skey_3,
  1006. "AAAAAAAAAAAAAAAAAAAA",
  1007. sign_skey_leg1,
  1008. FLAV_MICRODESC);
  1009. test_assert(consensus_text_md);
  1010. con_md = networkstatus_parse_vote_from_string(consensus_text_md, NULL,
  1011. NS_TYPE_CONSENSUS);
  1012. test_assert(con_md);
  1013. test_eq(con_md->flavor, FLAV_MICRODESC);
  1014. /* Check consensus contents. */
  1015. test_assert(con->type == NS_TYPE_CONSENSUS);
  1016. test_eq(con->published, 0); /* this field only appears in votes. */
  1017. test_eq(con->valid_after, now+1000);
  1018. test_eq(con->fresh_until, now+2003); /* median */
  1019. test_eq(con->valid_until, now+3000);
  1020. test_eq(con->vote_seconds, 100);
  1021. test_eq(con->dist_seconds, 250); /* median */
  1022. test_streq(con->client_versions, "0.1.2.14");
  1023. test_streq(con->server_versions, "0.1.2.15,0.1.2.16");
  1024. cp = smartlist_join_strings(v2->known_flags, ":", 0, NULL);
  1025. test_streq(cp, "Authority:Exit:Fast:Guard:MadeOfCheese:MadeOfTin:"
  1026. "Running:Stable:V2Dir:Valid");
  1027. tor_free(cp);
  1028. cp = smartlist_join_strings(con->net_params, ":", 0, NULL);
  1029. test_streq(cp, "circuitwindow=80:foo=660");
  1030. tor_free(cp);
  1031. test_eq(4, smartlist_len(con->voters)); /*3 voters, 1 legacy key.*/
  1032. /* The voter id digests should be in this order. */
  1033. test_assert(memcmp(cert2->cache_info.identity_digest,
  1034. cert1->cache_info.identity_digest,DIGEST_LEN)<0);
  1035. test_assert(memcmp(cert1->cache_info.identity_digest,
  1036. cert3->cache_info.identity_digest,DIGEST_LEN)<0);
  1037. test_same_voter(smartlist_get(con->voters, 1),
  1038. smartlist_get(v2->voters, 0));
  1039. test_same_voter(smartlist_get(con->voters, 2),
  1040. smartlist_get(v1->voters, 0));
  1041. test_same_voter(smartlist_get(con->voters, 3),
  1042. smartlist_get(v3->voters, 0));
  1043. test_assert(!con->cert);
  1044. test_eq(2, smartlist_len(con->routerstatus_list));
  1045. /* There should be two listed routers: one with identity 3, one with
  1046. * identity 5. */
  1047. /* This one showed up in 2 digests. */
  1048. rs = smartlist_get(con->routerstatus_list, 0);
  1049. test_memeq(rs->identity_digest,
  1050. "\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3\x3",
  1051. DIGEST_LEN);
  1052. test_memeq(rs->descriptor_digest, "NNNNNNNNNNNNNNNNNNNN", DIGEST_LEN);
  1053. test_assert(!rs->is_authority);
  1054. test_assert(!rs->is_exit);
  1055. test_assert(!rs->is_fast);
  1056. test_assert(!rs->is_possible_guard);
  1057. test_assert(!rs->is_stable);
  1058. /* (If it wasn't running it wouldn't be here) */
  1059. test_assert(rs->is_flagged_running);
  1060. test_assert(!rs->is_v2_dir);
  1061. test_assert(!rs->is_valid);
  1062. test_assert(!rs->is_named);
  1063. /* XXXX check version */
  1064. rs = smartlist_get(con->routerstatus_list, 1);
  1065. /* This one showed up in 3 digests. Twice with ID 'M', once with 'Z'. */
  1066. test_memeq(rs->identity_digest,
  1067. "\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5\x5",
  1068. DIGEST_LEN);
  1069. test_streq(rs->nickname, "router1");
  1070. test_memeq(rs->descriptor_digest, "MMMMMMMMMMMMMMMMMMMM", DIGEST_LEN);
  1071. test_eq(rs->published_on, now-1000);
  1072. test_eq(rs->addr, 0x99009901);
  1073. test_eq(rs->or_port, 443);
  1074. test_eq(rs->dir_port, 0);
  1075. test_assert(!rs->is_authority);
  1076. test_assert(rs->is_exit);
  1077. test_assert(rs->is_fast);
  1078. test_assert(rs->is_possible_guard);
  1079. test_assert(rs->is_stable);
  1080. test_assert(rs->is_flagged_running);
  1081. test_assert(rs->is_v2_dir);
  1082. test_assert(rs->is_valid);
  1083. test_assert(!rs->is_named);
  1084. /* XXXX check version */
  1085. /* Check signatures. the first voter is a pseudo-entry with a legacy key.
  1086. * The second one hasn't signed. The fourth one has signed: validate it. */
  1087. voter = smartlist_get(con->voters, 1);
  1088. test_eq(smartlist_len(voter->sigs), 0);
  1089. voter = smartlist_get(con->voters, 3);
  1090. test_eq(smartlist_len(voter->sigs), 1);
  1091. sig = smartlist_get(voter->sigs, 0);
  1092. test_assert(sig->signature);
  1093. test_assert(!sig->good_signature);
  1094. test_assert(!sig->bad_signature);
  1095. test_assert(!networkstatus_check_document_signature(con, sig, cert3));
  1096. test_assert(sig->signature);
  1097. test_assert(sig->good_signature);
  1098. test_assert(!sig->bad_signature);
  1099. {
  1100. const char *msg=NULL;
  1101. /* Compute the other two signed consensuses. */
  1102. smartlist_shuffle(votes);
  1103. consensus_text2 = networkstatus_compute_consensus(votes, 3,
  1104. cert2->identity_key,
  1105. sign_skey_2, NULL,NULL,
  1106. FLAV_NS);
  1107. consensus_text_md2 = networkstatus_compute_consensus(votes, 3,
  1108. cert2->identity_key,
  1109. sign_skey_2, NULL,NULL,
  1110. FLAV_MICRODESC);
  1111. smartlist_shuffle(votes);
  1112. consensus_text3 = networkstatus_compute_consensus(votes, 3,
  1113. cert1->identity_key,
  1114. sign_skey_1, NULL,NULL,
  1115. FLAV_NS);
  1116. consensus_text_md3 = networkstatus_compute_consensus(votes, 3,
  1117. cert1->identity_key,
  1118. sign_skey_1, NULL,NULL,
  1119. FLAV_MICRODESC);
  1120. test_assert(consensus_text2);
  1121. test_assert(consensus_text3);
  1122. test_assert(consensus_text_md2);
  1123. test_assert(consensus_text_md3);
  1124. con2 = networkstatus_parse_vote_from_string(consensus_text2, NULL,
  1125. NS_TYPE_CONSENSUS);
  1126. con3 = networkstatus_parse_vote_from_string(consensus_text3, NULL,
  1127. NS_TYPE_CONSENSUS);
  1128. con_md2 = networkstatus_parse_vote_from_string(consensus_text_md2, NULL,
  1129. NS_TYPE_CONSENSUS);
  1130. con_md3 = networkstatus_parse_vote_from_string(consensus_text_md3, NULL,
  1131. NS_TYPE_CONSENSUS);
  1132. test_assert(con2);
  1133. test_assert(con3);
  1134. test_assert(con_md2);
  1135. test_assert(con_md3);
  1136. /* All three should have the same digest. */
  1137. test_memeq(&con->digests, &con2->digests, sizeof(digests_t));
  1138. test_memeq(&con->digests, &con3->digests, sizeof(digests_t));
  1139. test_memeq(&con_md->digests, &con_md2->digests, sizeof(digests_t));
  1140. test_memeq(&con_md->digests, &con_md3->digests, sizeof(digests_t));
  1141. /* Extract a detached signature from con3. */
  1142. detached_text1 = get_detached_sigs(con3, con_md3);
  1143. tt_assert(detached_text1);
  1144. /* Try to parse it. */
  1145. dsig1 = networkstatus_parse_detached_signatures(detached_text1, NULL);
  1146. tt_assert(dsig1);
  1147. /* Are parsed values as expected? */
  1148. test_eq(dsig1->valid_after, con3->valid_after);
  1149. test_eq(dsig1->fresh_until, con3->fresh_until);
  1150. test_eq(dsig1->valid_until, con3->valid_until);
  1151. {
  1152. digests_t *dsig_digests = strmap_get(dsig1->digests, "ns");
  1153. test_assert(dsig_digests);
  1154. test_memeq(dsig_digests->d[DIGEST_SHA1], con3->digests.d[DIGEST_SHA1],
  1155. DIGEST_LEN);
  1156. dsig_digests = strmap_get(dsig1->digests, "microdesc");
  1157. test_assert(dsig_digests);
  1158. test_memeq(dsig_digests->d[DIGEST_SHA256],
  1159. con_md3->digests.d[DIGEST_SHA256],
  1160. DIGEST256_LEN);
  1161. }
  1162. {
  1163. smartlist_t *dsig_signatures = strmap_get(dsig1->signatures, "ns");
  1164. test_assert(dsig_signatures);
  1165. test_eq(1, smartlist_len(dsig_signatures));
  1166. sig = smartlist_get(dsig_signatures, 0);
  1167. test_memeq(sig->identity_digest, cert1->cache_info.identity_digest,
  1168. DIGEST_LEN);
  1169. test_eq(sig->alg, DIGEST_SHA1);
  1170. dsig_signatures = strmap_get(dsig1->signatures, "microdesc");
  1171. test_assert(dsig_signatures);
  1172. test_eq(1, smartlist_len(dsig_signatures));
  1173. sig = smartlist_get(dsig_signatures, 0);
  1174. test_memeq(sig->identity_digest, cert1->cache_info.identity_digest,
  1175. DIGEST_LEN);
  1176. test_eq(sig->alg, DIGEST_SHA256);
  1177. }
  1178. /* Try adding it to con2. */
  1179. detached_text2 = get_detached_sigs(con2,con_md2);
  1180. test_eq(1, networkstatus_add_detached_signatures(con2, dsig1, "test",
  1181. LOG_INFO, &msg));
  1182. tor_free(detached_text2);
  1183. test_eq(1, networkstatus_add_detached_signatures(con_md2, dsig1, "test",
  1184. LOG_INFO, &msg));
  1185. tor_free(detached_text2);
  1186. detached_text2 = get_detached_sigs(con2,con_md2);
  1187. //printf("\n<%s>\n", detached_text2);
  1188. dsig2 = networkstatus_parse_detached_signatures(detached_text2, NULL);
  1189. test_assert(dsig2);
  1190. /*
  1191. printf("\n");
  1192. SMARTLIST_FOREACH(dsig2->signatures, networkstatus_voter_info_t *, vi, {
  1193. char hd[64];
  1194. base16_encode(hd, sizeof(hd), vi->identity_digest, DIGEST_LEN);
  1195. printf("%s\n", hd);
  1196. });
  1197. */
  1198. test_eq(2,
  1199. smartlist_len((smartlist_t*)strmap_get(dsig2->signatures, "ns")));
  1200. test_eq(2,
  1201. smartlist_len((smartlist_t*)strmap_get(dsig2->signatures,
  1202. "microdesc")));
  1203. /* Try adding to con2 twice; verify that nothing changes. */
  1204. test_eq(0, networkstatus_add_detached_signatures(con2, dsig1, "test",
  1205. LOG_INFO, &msg));
  1206. /* Add to con. */
  1207. test_eq(2, networkstatus_add_detached_signatures(con, dsig2, "test",
  1208. LOG_INFO, &msg));
  1209. /* Check signatures */
  1210. voter = smartlist_get(con->voters, 1);
  1211. sig = smartlist_get(voter->sigs, 0);
  1212. test_assert(sig);
  1213. test_assert(!networkstatus_check_document_signature(con, sig, cert2));
  1214. voter = smartlist_get(con->voters, 2);
  1215. sig = smartlist_get(voter->sigs, 0);
  1216. test_assert(sig);
  1217. test_assert(!networkstatus_check_document_signature(con, sig, cert1));
  1218. }
  1219. done:
  1220. smartlist_free(votes);
  1221. tor_free(v1_text);
  1222. tor_free(v2_text);
  1223. tor_free(v3_text);
  1224. tor_free(consensus_text);
  1225. tor_free(consensus_text_md);
  1226. if (vote)
  1227. networkstatus_vote_free(vote);
  1228. if (v1)
  1229. networkstatus_vote_free(v1);
  1230. if (v2)
  1231. networkstatus_vote_free(v2);
  1232. if (v3)
  1233. networkstatus_vote_free(v3);
  1234. if (con)
  1235. networkstatus_vote_free(con);
  1236. if (con_md)
  1237. networkstatus_vote_free(con_md);
  1238. if (sign_skey_1)
  1239. crypto_pk_free(sign_skey_1);
  1240. if (sign_skey_2)
  1241. crypto_pk_free(sign_skey_2);
  1242. if (sign_skey_3)
  1243. crypto_pk_free(sign_skey_3);
  1244. if (sign_skey_leg1)
  1245. crypto_pk_free(sign_skey_leg1);
  1246. if (cert1)
  1247. authority_cert_free(cert1);
  1248. if (cert2)
  1249. authority_cert_free(cert2);
  1250. if (cert3)
  1251. authority_cert_free(cert3);
  1252. tor_free(consensus_text2);
  1253. tor_free(consensus_text3);
  1254. tor_free(consensus_text_md2);
  1255. tor_free(consensus_text_md3);
  1256. tor_free(detached_text1);
  1257. tor_free(detached_text2);
  1258. if (con2)
  1259. networkstatus_vote_free(con2);
  1260. if (con3)
  1261. networkstatus_vote_free(con3);
  1262. if (con_md2)
  1263. networkstatus_vote_free(con_md2);
  1264. if (con_md3)
  1265. networkstatus_vote_free(con_md3);
  1266. if (dsig1)
  1267. ns_detached_signatures_free(dsig1);
  1268. if (dsig2)
  1269. ns_detached_signatures_free(dsig2);
  1270. }
  1271. static void
  1272. test_dir_random_weighted(void *testdata)
  1273. {
  1274. int histogram[10];
  1275. uint64_t vals[10] = {3,1,2,4,6,0,7,5,8,9}, total=0;
  1276. uint64_t zeros[5] = {0,0,0,0,0};
  1277. int i, choice;
  1278. const int n = 50000;
  1279. double max_sq_error;
  1280. (void) testdata;
  1281. /* Try a ten-element array with values from 0 through 10. The values are
  1282. * in a scrambled order to make sure we don't depend on order. */
  1283. memset(histogram,0,sizeof(histogram));
  1284. for (i=0; i<10; ++i)
  1285. total += vals[i];
  1286. tt_int_op(total, ==, 45);
  1287. for (i=0; i<n; ++i) {
  1288. uint64_t t;
  1289. choice = choose_array_element_by_weight(vals, 10, &t);
  1290. tt_int_op(t, ==, total);
  1291. tt_int_op(choice, >=, 0);
  1292. tt_int_op(choice, <, 10);
  1293. histogram[choice]++;
  1294. }
  1295. /* Now see if we chose things about frequently enough. */
  1296. max_sq_error = 0;
  1297. for (i=0; i<10; ++i) {
  1298. int expected = (int)(n*vals[i]/total);
  1299. double frac_diff = 0, sq;
  1300. TT_BLATHER((" %d : %5d vs %5d\n", (int)vals[i], histogram[i], expected));
  1301. if (expected)
  1302. frac_diff = (histogram[i] - expected) / ((double)expected);
  1303. else
  1304. tt_int_op(histogram[i], ==, 0);
  1305. sq = frac_diff * frac_diff;
  1306. if (sq > max_sq_error)
  1307. max_sq_error = sq;
  1308. }
  1309. /* It should almost always be much much less than this. If you want to
  1310. * figure out the odds, please feel free. */
  1311. tt_double_op(max_sq_error, <, .05);
  1312. /* Now try a singleton; do we choose it? */
  1313. for (i = 0; i < 100; ++i) {
  1314. choice = choose_array_element_by_weight(vals, 1, NULL);
  1315. tt_int_op(choice, ==, 0);
  1316. }
  1317. /* Now try an array of zeros. We should choose randomly. */
  1318. memset(histogram,0,sizeof(histogram));
  1319. for (i = 0; i < n; ++i) {
  1320. uint64_t t;
  1321. choice = choose_array_element_by_weight(zeros, 5, &t);
  1322. tt_int_op(t, ==, 0);
  1323. tt_int_op(choice, >=, 0);
  1324. tt_int_op(choice, <, 5);
  1325. histogram[choice]++;
  1326. }
  1327. /* Now see if we chose things about frequently enough. */
  1328. max_sq_error = 0;
  1329. for (i=0; i<5; ++i) {
  1330. int expected = n/5;
  1331. double frac_diff = 0, sq;
  1332. TT_BLATHER((" %d : %5d vs %5d\n", (int)vals[i], histogram[i], expected));
  1333. frac_diff = (histogram[i] - expected) / ((double)expected);
  1334. sq = frac_diff * frac_diff;
  1335. if (sq > max_sq_error)
  1336. max_sq_error = sq;
  1337. }
  1338. /* It should almost always be much much less than this. If you want to
  1339. * figure out the odds, please feel free. */
  1340. tt_double_op(max_sq_error, <, .05);
  1341. done:
  1342. ;
  1343. }
  1344. #define DIR_LEGACY(name) \
  1345. { #name, legacy_test_helper, TT_FORK, &legacy_setup, test_dir_ ## name }
  1346. #define DIR(name) \
  1347. { #name, test_dir_##name, 0, NULL, NULL }
  1348. struct testcase_t dir_tests[] = {
  1349. DIR_LEGACY(nicknames),
  1350. DIR_LEGACY(formats),
  1351. DIR_LEGACY(versions),
  1352. DIR_LEGACY(fp_pairs),
  1353. DIR(split_fps),
  1354. DIR_LEGACY(measured_bw),
  1355. DIR_LEGACY(param_voting),
  1356. DIR_LEGACY(v3_networkstatus),
  1357. DIR(random_weighted),
  1358. END_OF_TESTCASES
  1359. };