test_hs.c 41 KB

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  1. /* Copyright (c) 2007-2017, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. /**
  4. * \file test_hs.c
  5. * \brief Unit tests for hidden service.
  6. **/
  7. #define CONTROL_PRIVATE
  8. #define CIRCUITBUILD_PRIVATE
  9. #define RENDCOMMON_PRIVATE
  10. #define RENDSERVICE_PRIVATE
  11. #include "or.h"
  12. #include "test.h"
  13. #include "control.h"
  14. #include "config.h"
  15. #include "hs_common.h"
  16. #include "rendcommon.h"
  17. #include "rendservice.h"
  18. #include "routerset.h"
  19. #include "circuitbuild.h"
  20. #include "test_helpers.h"
  21. /* mock ID digest and longname for node that's in nodelist */
  22. #define HSDIR_EXIST_ID "\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA" \
  23. "\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA\xAA"
  24. #define STR_HSDIR_EXIST_LONGNAME \
  25. "$AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=TestDir"
  26. /* mock ID digest and longname for node that's not in nodelist */
  27. #define HSDIR_NONE_EXIST_ID "\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB" \
  28. "\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB\xBB"
  29. #define STR_HSDIR_NONE_EXIST_LONGNAME \
  30. "$BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB"
  31. /* DuckDuckGo descriptor as an example. This one has extra "\r" at the end so
  32. * the control port is happy. */
  33. static const char *hs_desc_content_control = "\
  34. rendezvous-service-descriptor g5ojobzupf275beh5ra72uyhb3dkpxwg\r\n\
  35. version 2\r\n\
  36. permanent-key\r\n\
  37. -----BEGIN RSA PUBLIC KEY-----\r\n\
  38. MIGJAoGBAJ/SzzgrXPxTlFrKVhXh3buCWv2QfcNgncUpDpKouLn3AtPH5Ocys0jE\r\n\
  39. aZSKdvaiQ62md2gOwj4x61cFNdi05tdQjS+2thHKEm/KsB9BGLSLBNJYY356bupg\r\n\
  40. I5gQozM65ENelfxYlysBjJ52xSDBd8C4f/p9umdzaaaCmzXG/nhzAgMBAAE=\r\n\
  41. -----END RSA PUBLIC KEY-----\r\n\
  42. secret-id-part anmjoxxwiupreyajjt5yasimfmwcnxlf\r\n\
  43. publication-time 2015-03-11 19:00:00\r\n\
  44. protocol-versions 2,3\r\n\
  45. introduction-points\r\n\
  46. -----BEGIN MESSAGE-----\r\n\
  47. aW50cm9kdWN0aW9uLXBvaW50IDd1bnd4cmg2dG5kNGh6eWt1Z3EzaGZzdHduc2ll\r\n\
  48. cmhyCmlwLWFkZHJlc3MgMTg4LjEzOC4xMjEuMTE4Cm9uaW9uLXBvcnQgOTAwMQpv\r\n\
  49. bmlvbi1rZXkKLS0tLS1CRUdJTiBSU0EgUFVCTElDIEtFWS0tLS0tCk1JR0pBb0dC\r\n\
  50. QUxGRVVyeVpDbk9ROEhURmV5cDVjMTRObWVqL1BhekFLTTBxRENTNElKUWh0Y3g1\r\n\
  51. NXpRSFdOVWIKQ2hHZ0JqR1RjV3ZGRnA0N3FkdGF6WUZhVXE2c0lQKzVqeWZ5b0Q4\r\n\
  52. UmJ1bzBwQmFWclJjMmNhYUptWWM0RDh6Vgpuby9sZnhzOVVaQnZ1cWY4eHIrMDB2\r\n\
  53. S0JJNmFSMlA2OE1WeDhrMExqcUpUU2RKOE9idm9yQWdNQkFBRT0KLS0tLS1FTkQg\r\n\
  54. UlNBIFBVQkxJQyBLRVktLS0tLQpzZXJ2aWNlLWtleQotLS0tLUJFR0lOIFJTQSBQ\r\n\
  55. VUJMSUMgS0VZLS0tLS0KTUlHSkFvR0JBTnJHb0ozeTlHNXQzN2F2ekI1cTlwN1hG\r\n\
  56. VUplRUVYMUNOaExnWmJXWGJhVk5OcXpoZFhyL0xTUQppM1Z6dW5OaUs3cndUVnE2\r\n\
  57. K2QyZ1lRckhMMmIvMXBBY3ZKWjJiNSs0bTRRc0NibFpjRENXTktRbHJnRWN5WXRJ\r\n\
  58. CkdscXJTbFFEaXA0ZnNrUFMvNDVkWTI0QmJsQ3NGU1k3RzVLVkxJck4zZFpGbmJr\r\n\
  59. NEZIS1hBZ01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0tLS0tCmludHJv\r\n\
  60. ZHVjdGlvbi1wb2ludCBiNGM3enlxNXNheGZzN2prNXFibG1wN3I1b3pwdHRvagpp\r\n\
  61. cC1hZGRyZXNzIDEwOS4xNjkuNDUuMjI2Cm9uaW9uLXBvcnQgOTAwMQpvbmlvbi1r\r\n\
  62. ZXkKLS0tLS1CRUdJTiBSU0EgUFVCTElDIEtFWS0tLS0tCk1JR0pBb0dCQU8xSXpw\r\n\
  63. WFFUTUY3RXZUb1NEUXpzVnZiRVFRQUQrcGZ6NzczMVRXZzVaUEJZY1EyUkRaeVp4\r\n\
  64. OEQKNUVQSU1FeUE1RE83cGd0ak5LaXJvYXJGMC8yempjMkRXTUlSaXZyU29YUWVZ\r\n\
  65. ZXlMM1pzKzFIajJhMDlCdkYxZAp6MEswblRFdVhoNVR5V3lyMHdsbGI1SFBnTlI0\r\n\
  66. MS9oYkprZzkwZitPVCtIeGhKL1duUml2QWdNQkFBRT0KLS0tLS1FTkQgUlNBIFBV\r\n\
  67. QkxJQyBLRVktLS0tLQpzZXJ2aWNlLWtleQotLS0tLUJFR0lOIFJTQSBQVUJMSUMg\r\n\
  68. S0VZLS0tLS0KTUlHSkFvR0JBSzNWZEJ2ajFtQllLL3JrcHNwcm9Ub0llNUtHVmth\r\n\
  69. QkxvMW1tK1I2YUVJek1VZFE1SjkwNGtyRwpCd3k5NC8rV0lGNFpGYXh5Z2phejl1\r\n\
  70. N2pKY1k3ZGJhd1pFeG1hYXFCRlRwL2h2ZG9rcHQ4a1ByRVk4OTJPRHJ1CmJORUox\r\n\
  71. N1FPSmVMTVZZZk5Kcjl4TWZCQ3JQai8zOGh2RUdrbWVRNmRVWElvbVFNaUJGOVRB\r\n\
  72. Z01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0tLS0tCmludHJvZHVjdGlv\r\n\
  73. bi1wb2ludCBhdjVtcWl0Y2Q3cjJkandsYmN0c2Jlc2R3eGt0ZWtvegppcC1hZGRy\r\n\
  74. ZXNzIDE0NC43Ni44LjczCm9uaW9uLXBvcnQgNDQzCm9uaW9uLWtleQotLS0tLUJF\r\n\
  75. R0lOIFJTQSBQVUJMSUMgS0VZLS0tLS0KTUlHSkFvR0JBTzVweVZzQmpZQmNmMXBE\r\n\
  76. dklHUlpmWXUzQ05nNldka0ZLMGlvdTBXTGZtejZRVDN0NWhzd3cyVwpjejlHMXhx\r\n\
  77. MmN0Nkd6VWkrNnVkTDlITTRVOUdHTi9BbW8wRG9GV1hKWHpBQkFXd2YyMVdsd1lW\r\n\
  78. eFJQMHRydi9WCkN6UDkzcHc5OG5vSmdGUGRUZ05iMjdKYmVUZENLVFBrTEtscXFt\r\n\
  79. b3NveUN2RitRa25vUS9BZ01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0t\r\n\
  80. LS0tCnNlcnZpY2Uta2V5Ci0tLS0tQkVHSU4gUlNBIFBVQkxJQyBLRVktLS0tLQpN\r\n\
  81. SUdKQW9HQkFMVjNKSmtWN3lTNU9jc1lHMHNFYzFQOTVRclFRR3ZzbGJ6Wi9zRGxl\r\n\
  82. RlpKYXFSOUYvYjRUVERNClNGcFMxcU1GbldkZDgxVmRGMEdYRmN2WVpLamRJdHU2\r\n\
  83. SndBaTRJeEhxeXZtdTRKdUxrcXNaTEFLaXRLVkx4eGsKeERlMjlDNzRWMmJrOTRJ\r\n\
  84. MEgybTNKS2tzTHVwc3VxWWRVUmhOVXN0SElKZmgyZmNIalF0bEFnTUJBQUU9Ci0t\r\n\
  85. LS0tRU5EIFJTQSBQVUJMSUMgS0VZLS0tLS0KCg==\r\n\
  86. -----END MESSAGE-----\r\n\
  87. signature\r\n\
  88. -----BEGIN SIGNATURE-----\r\n\
  89. d4OuCE5OLAOnRB6cQN6WyMEmg/BHem144Vec+eYgeWoKwx3MxXFplUjFxgnMlmwN\r\n\
  90. PcftsZf2ztN0sbNCtPgDL3d0PqvxY3iHTQAI8EbaGq/IAJUZ8U4y963dD5+Bn6JQ\r\n\
  91. myE3ctmh0vy5+QxSiRjmQBkuEpCyks7LvWvHYrhnmcg=\r\n\
  92. -----END SIGNATURE-----";
  93. /* DuckDuckGo descriptor as an example. */
  94. static const char *hs_desc_content = "\
  95. rendezvous-service-descriptor g5ojobzupf275beh5ra72uyhb3dkpxwg\n\
  96. version 2\n\
  97. permanent-key\n\
  98. -----BEGIN RSA PUBLIC KEY-----\n\
  99. MIGJAoGBAJ/SzzgrXPxTlFrKVhXh3buCWv2QfcNgncUpDpKouLn3AtPH5Ocys0jE\n\
  100. aZSKdvaiQ62md2gOwj4x61cFNdi05tdQjS+2thHKEm/KsB9BGLSLBNJYY356bupg\n\
  101. I5gQozM65ENelfxYlysBjJ52xSDBd8C4f/p9umdzaaaCmzXG/nhzAgMBAAE=\n\
  102. -----END RSA PUBLIC KEY-----\n\
  103. secret-id-part anmjoxxwiupreyajjt5yasimfmwcnxlf\n\
  104. publication-time 2015-03-11 19:00:00\n\
  105. protocol-versions 2,3\n\
  106. introduction-points\n\
  107. -----BEGIN MESSAGE-----\n\
  108. aW50cm9kdWN0aW9uLXBvaW50IDd1bnd4cmg2dG5kNGh6eWt1Z3EzaGZzdHduc2ll\n\
  109. cmhyCmlwLWFkZHJlc3MgMTg4LjEzOC4xMjEuMTE4Cm9uaW9uLXBvcnQgOTAwMQpv\n\
  110. bmlvbi1rZXkKLS0tLS1CRUdJTiBSU0EgUFVCTElDIEtFWS0tLS0tCk1JR0pBb0dC\n\
  111. QUxGRVVyeVpDbk9ROEhURmV5cDVjMTRObWVqL1BhekFLTTBxRENTNElKUWh0Y3g1\n\
  112. NXpRSFdOVWIKQ2hHZ0JqR1RjV3ZGRnA0N3FkdGF6WUZhVXE2c0lQKzVqeWZ5b0Q4\n\
  113. UmJ1bzBwQmFWclJjMmNhYUptWWM0RDh6Vgpuby9sZnhzOVVaQnZ1cWY4eHIrMDB2\n\
  114. S0JJNmFSMlA2OE1WeDhrMExqcUpUU2RKOE9idm9yQWdNQkFBRT0KLS0tLS1FTkQg\n\
  115. UlNBIFBVQkxJQyBLRVktLS0tLQpzZXJ2aWNlLWtleQotLS0tLUJFR0lOIFJTQSBQ\n\
  116. VUJMSUMgS0VZLS0tLS0KTUlHSkFvR0JBTnJHb0ozeTlHNXQzN2F2ekI1cTlwN1hG\n\
  117. VUplRUVYMUNOaExnWmJXWGJhVk5OcXpoZFhyL0xTUQppM1Z6dW5OaUs3cndUVnE2\n\
  118. K2QyZ1lRckhMMmIvMXBBY3ZKWjJiNSs0bTRRc0NibFpjRENXTktRbHJnRWN5WXRJ\n\
  119. CkdscXJTbFFEaXA0ZnNrUFMvNDVkWTI0QmJsQ3NGU1k3RzVLVkxJck4zZFpGbmJr\n\
  120. NEZIS1hBZ01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0tLS0tCmludHJv\n\
  121. ZHVjdGlvbi1wb2ludCBiNGM3enlxNXNheGZzN2prNXFibG1wN3I1b3pwdHRvagpp\n\
  122. cC1hZGRyZXNzIDEwOS4xNjkuNDUuMjI2Cm9uaW9uLXBvcnQgOTAwMQpvbmlvbi1r\n\
  123. ZXkKLS0tLS1CRUdJTiBSU0EgUFVCTElDIEtFWS0tLS0tCk1JR0pBb0dCQU8xSXpw\n\
  124. WFFUTUY3RXZUb1NEUXpzVnZiRVFRQUQrcGZ6NzczMVRXZzVaUEJZY1EyUkRaeVp4\n\
  125. OEQKNUVQSU1FeUE1RE83cGd0ak5LaXJvYXJGMC8yempjMkRXTUlSaXZyU29YUWVZ\n\
  126. ZXlMM1pzKzFIajJhMDlCdkYxZAp6MEswblRFdVhoNVR5V3lyMHdsbGI1SFBnTlI0\n\
  127. MS9oYkprZzkwZitPVCtIeGhKL1duUml2QWdNQkFBRT0KLS0tLS1FTkQgUlNBIFBV\n\
  128. QkxJQyBLRVktLS0tLQpzZXJ2aWNlLWtleQotLS0tLUJFR0lOIFJTQSBQVUJMSUMg\n\
  129. S0VZLS0tLS0KTUlHSkFvR0JBSzNWZEJ2ajFtQllLL3JrcHNwcm9Ub0llNUtHVmth\n\
  130. QkxvMW1tK1I2YUVJek1VZFE1SjkwNGtyRwpCd3k5NC8rV0lGNFpGYXh5Z2phejl1\n\
  131. N2pKY1k3ZGJhd1pFeG1hYXFCRlRwL2h2ZG9rcHQ4a1ByRVk4OTJPRHJ1CmJORUox\n\
  132. N1FPSmVMTVZZZk5Kcjl4TWZCQ3JQai8zOGh2RUdrbWVRNmRVWElvbVFNaUJGOVRB\n\
  133. Z01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0tLS0tCmludHJvZHVjdGlv\n\
  134. bi1wb2ludCBhdjVtcWl0Y2Q3cjJkandsYmN0c2Jlc2R3eGt0ZWtvegppcC1hZGRy\n\
  135. ZXNzIDE0NC43Ni44LjczCm9uaW9uLXBvcnQgNDQzCm9uaW9uLWtleQotLS0tLUJF\n\
  136. R0lOIFJTQSBQVUJMSUMgS0VZLS0tLS0KTUlHSkFvR0JBTzVweVZzQmpZQmNmMXBE\n\
  137. dklHUlpmWXUzQ05nNldka0ZLMGlvdTBXTGZtejZRVDN0NWhzd3cyVwpjejlHMXhx\n\
  138. MmN0Nkd6VWkrNnVkTDlITTRVOUdHTi9BbW8wRG9GV1hKWHpBQkFXd2YyMVdsd1lW\n\
  139. eFJQMHRydi9WCkN6UDkzcHc5OG5vSmdGUGRUZ05iMjdKYmVUZENLVFBrTEtscXFt\n\
  140. b3NveUN2RitRa25vUS9BZ01CQUFFPQotLS0tLUVORCBSU0EgUFVCTElDIEtFWS0t\n\
  141. LS0tCnNlcnZpY2Uta2V5Ci0tLS0tQkVHSU4gUlNBIFBVQkxJQyBLRVktLS0tLQpN\n\
  142. SUdKQW9HQkFMVjNKSmtWN3lTNU9jc1lHMHNFYzFQOTVRclFRR3ZzbGJ6Wi9zRGxl\n\
  143. RlpKYXFSOUYvYjRUVERNClNGcFMxcU1GbldkZDgxVmRGMEdYRmN2WVpLamRJdHU2\n\
  144. SndBaTRJeEhxeXZtdTRKdUxrcXNaTEFLaXRLVkx4eGsKeERlMjlDNzRWMmJrOTRJ\n\
  145. MEgybTNKS2tzTHVwc3VxWWRVUmhOVXN0SElKZmgyZmNIalF0bEFnTUJBQUU9Ci0t\n\
  146. LS0tRU5EIFJTQSBQVUJMSUMgS0VZLS0tLS0KCg==\n\
  147. -----END MESSAGE-----\n\
  148. signature\n\
  149. -----BEGIN SIGNATURE-----\n\
  150. d4OuCE5OLAOnRB6cQN6WyMEmg/BHem144Vec+eYgeWoKwx3MxXFplUjFxgnMlmwN\n\
  151. PcftsZf2ztN0sbNCtPgDL3d0PqvxY3iHTQAI8EbaGq/IAJUZ8U4y963dD5+Bn6JQ\n\
  152. myE3ctmh0vy5+QxSiRjmQBkuEpCyks7LvWvHYrhnmcg=\n\
  153. -----END SIGNATURE-----";
  154. /* Helper global variable for hidden service descriptor event test.
  155. * It's used as a pointer to dynamically created message buffer in
  156. * send_control_event_string_replacement function, which mocks
  157. * send_control_event_string function.
  158. *
  159. * Always free it after use! */
  160. static char *received_msg = NULL;
  161. /** Mock function for send_control_event_string
  162. */
  163. static void
  164. queue_control_event_string_replacement(uint16_t event, char *msg)
  165. {
  166. (void) event;
  167. tor_free(received_msg);
  168. received_msg = msg;
  169. }
  170. /** Mock function for node_describe_longname_by_id, it returns either
  171. * STR_HSDIR_EXIST_LONGNAME or STR_HSDIR_NONE_EXIST_LONGNAME
  172. */
  173. static const char *
  174. node_describe_longname_by_id_replacement(const char *id_digest)
  175. {
  176. if (!strcmp(id_digest, HSDIR_EXIST_ID)) {
  177. return STR_HSDIR_EXIST_LONGNAME;
  178. } else {
  179. return STR_HSDIR_NONE_EXIST_LONGNAME;
  180. }
  181. }
  182. /** Test that we can parse a hardcoded v2 HS desc. */
  183. static void
  184. test_hs_parse_static_v2_desc(void *arg)
  185. {
  186. int ret;
  187. rend_encoded_v2_service_descriptor_t desc;
  188. (void) arg;
  189. /* Test an obviously not parseable string */
  190. desc.desc_str = tor_strdup("ceci n'est pas un HS descriptor");
  191. ret = rend_desc_v2_is_parsable(&desc);
  192. tor_free(desc.desc_str);
  193. tt_int_op(ret, OP_EQ, 0);
  194. /* Test an actual descriptor */
  195. desc.desc_str = tor_strdup(hs_desc_content);
  196. ret = rend_desc_v2_is_parsable(&desc);
  197. tor_free(desc.desc_str);
  198. tt_int_op(ret, OP_EQ, 1);
  199. done: ;
  200. }
  201. /** Make sure each hidden service descriptor async event generation
  202. *
  203. * function generates the message in expected format.
  204. */
  205. static void
  206. test_hs_desc_event(void *arg)
  207. {
  208. #define STR_HS_ADDR "ajhb7kljbiru65qo"
  209. #define STR_HS_CONTENT_DESC_ID "g5ojobzupf275beh5ra72uyhb3dkpxwg"
  210. #define STR_DESC_ID_BASE32 "hba3gmcgpfivzfhx5rtfqkfdhv65yrj3"
  211. int ret;
  212. rend_data_v2_t rend_query;
  213. const char *expected_msg;
  214. char desc_id_base32[REND_DESC_ID_V2_LEN_BASE32 + 1];
  215. (void) arg;
  216. MOCK(queue_control_event_string,
  217. queue_control_event_string_replacement);
  218. MOCK(node_describe_longname_by_id,
  219. node_describe_longname_by_id_replacement);
  220. /* setup rend_query struct */
  221. memset(&rend_query, 0, sizeof(rend_query));
  222. rend_query.base_.version = 2;
  223. strncpy(rend_query.onion_address, STR_HS_ADDR,
  224. REND_SERVICE_ID_LEN_BASE32+1);
  225. rend_query.auth_type = REND_NO_AUTH;
  226. rend_query.base_.hsdirs_fp = smartlist_new();
  227. smartlist_add(rend_query.base_.hsdirs_fp, tor_memdup(HSDIR_EXIST_ID,
  228. DIGEST_LEN));
  229. /* Compute descriptor ID for replica 0, should be STR_DESC_ID_BASE32. */
  230. ret = rend_compute_v2_desc_id(rend_query.descriptor_id[0],
  231. rend_query.onion_address,
  232. NULL, 0, 0);
  233. tt_int_op(ret, ==, 0);
  234. base32_encode(desc_id_base32, sizeof(desc_id_base32),
  235. rend_query.descriptor_id[0], DIGEST_LEN);
  236. /* Make sure rend_compute_v2_desc_id works properly. */
  237. tt_mem_op(desc_id_base32, OP_EQ, STR_DESC_ID_BASE32,
  238. sizeof(desc_id_base32));
  239. /* test request event */
  240. control_event_hs_descriptor_requested(&rend_query.base_, HSDIR_EXIST_ID,
  241. STR_DESC_ID_BASE32);
  242. expected_msg = "650 HS_DESC REQUESTED "STR_HS_ADDR" NO_AUTH "\
  243. STR_HSDIR_EXIST_LONGNAME " " STR_DESC_ID_BASE32 "\r\n";
  244. tt_assert(received_msg);
  245. tt_str_op(received_msg,OP_EQ, expected_msg);
  246. tor_free(received_msg);
  247. /* test received event */
  248. rend_query.auth_type = REND_BASIC_AUTH;
  249. control_event_hs_descriptor_received(rend_query.onion_address,
  250. &rend_query.base_, HSDIR_EXIST_ID);
  251. expected_msg = "650 HS_DESC RECEIVED "STR_HS_ADDR" BASIC_AUTH "\
  252. STR_HSDIR_EXIST_LONGNAME " " STR_DESC_ID_BASE32"\r\n";
  253. tt_assert(received_msg);
  254. tt_str_op(received_msg,OP_EQ, expected_msg);
  255. tor_free(received_msg);
  256. /* test failed event */
  257. rend_query.auth_type = REND_STEALTH_AUTH;
  258. control_event_hs_descriptor_failed(&rend_query.base_,
  259. HSDIR_NONE_EXIST_ID,
  260. "QUERY_REJECTED");
  261. expected_msg = "650 HS_DESC FAILED "STR_HS_ADDR" STEALTH_AUTH "\
  262. STR_HSDIR_NONE_EXIST_LONGNAME" REASON=QUERY_REJECTED\r\n";
  263. tt_assert(received_msg);
  264. tt_str_op(received_msg,OP_EQ, expected_msg);
  265. tor_free(received_msg);
  266. /* test invalid auth type */
  267. rend_query.auth_type = 999;
  268. control_event_hs_descriptor_failed(&rend_query.base_,
  269. HSDIR_EXIST_ID,
  270. "QUERY_REJECTED");
  271. expected_msg = "650 HS_DESC FAILED "STR_HS_ADDR" UNKNOWN "\
  272. STR_HSDIR_EXIST_LONGNAME " " STR_DESC_ID_BASE32\
  273. " REASON=QUERY_REJECTED\r\n";
  274. tt_assert(received_msg);
  275. tt_str_op(received_msg,OP_EQ, expected_msg);
  276. tor_free(received_msg);
  277. /* test no HSDir fingerprint type */
  278. rend_query.auth_type = REND_NO_AUTH;
  279. control_event_hs_descriptor_failed(&rend_query.base_, NULL,
  280. "QUERY_NO_HSDIR");
  281. expected_msg = "650 HS_DESC FAILED "STR_HS_ADDR" NO_AUTH " \
  282. "UNKNOWN REASON=QUERY_NO_HSDIR\r\n";
  283. tt_assert(received_msg);
  284. tt_str_op(received_msg,OP_EQ, expected_msg);
  285. tor_free(received_msg);
  286. /* Test invalid content with no HSDir fingerprint. */
  287. char *exp_msg;
  288. control_event_hs_descriptor_content(rend_query.onion_address,
  289. STR_HS_CONTENT_DESC_ID, NULL, NULL);
  290. tor_asprintf(&exp_msg, "650+HS_DESC_CONTENT " STR_HS_ADDR " "\
  291. STR_HS_CONTENT_DESC_ID " UNKNOWN" \
  292. "\r\n\r\n.\r\n650 OK\r\n");
  293. tt_assert(received_msg);
  294. tt_str_op(received_msg, OP_EQ, exp_msg);
  295. tor_free(received_msg);
  296. tor_free(exp_msg);
  297. /* test valid content. */
  298. control_event_hs_descriptor_content(rend_query.onion_address,
  299. STR_HS_CONTENT_DESC_ID, HSDIR_EXIST_ID,
  300. hs_desc_content_control);
  301. tor_asprintf(&exp_msg, "650+HS_DESC_CONTENT " STR_HS_ADDR " "\
  302. STR_HS_CONTENT_DESC_ID " " STR_HSDIR_EXIST_LONGNAME\
  303. "\r\n%s\r\n.\r\n650 OK\r\n", hs_desc_content_control);
  304. tt_assert(received_msg);
  305. tt_str_op(received_msg, OP_EQ, exp_msg);
  306. tor_free(received_msg);
  307. tor_free(exp_msg);
  308. SMARTLIST_FOREACH(rend_query.base_.hsdirs_fp, char *, d, tor_free(d));
  309. smartlist_free(rend_query.base_.hsdirs_fp);
  310. done:
  311. UNMOCK(queue_control_event_string);
  312. UNMOCK(node_describe_longname_by_id);
  313. tor_free(received_msg);
  314. }
  315. /* Make sure we always pick the right RP, given a well formatted
  316. * Tor2webRendezvousPoints value. */
  317. static void
  318. test_pick_tor2web_rendezvous_node(void *arg)
  319. {
  320. or_options_t *options = get_options_mutable();
  321. const node_t *chosen_rp = NULL;
  322. router_crn_flags_t flags = CRN_NEED_DESC;
  323. int retval, i;
  324. const char *tor2web_rendezvous_str = "test003r";
  325. (void) arg;
  326. /* Setup fake routerlist. */
  327. helper_setup_fake_routerlist();
  328. /* Parse Tor2webRendezvousPoints as a routerset. */
  329. options->Tor2webRendezvousPoints = routerset_new();
  330. retval = routerset_parse(options->Tor2webRendezvousPoints,
  331. tor2web_rendezvous_str,
  332. "test_tor2web_rp");
  333. tt_int_op(retval, >=, 0);
  334. /* Pick rendezvous point. Make sure the correct one is
  335. picked. Repeat many times to make sure it works properly. */
  336. for (i = 0; i < 50 ; i++) {
  337. chosen_rp = pick_tor2web_rendezvous_node(flags, options);
  338. tt_assert(chosen_rp);
  339. tt_str_op(chosen_rp->ri->nickname, ==, tor2web_rendezvous_str);
  340. }
  341. done:
  342. routerset_free(options->Tor2webRendezvousPoints);
  343. }
  344. /* Make sure we never pick an RP if Tor2webRendezvousPoints doesn't
  345. * correspond to an actual node. */
  346. static void
  347. test_pick_bad_tor2web_rendezvous_node(void *arg)
  348. {
  349. or_options_t *options = get_options_mutable();
  350. const node_t *chosen_rp = NULL;
  351. router_crn_flags_t flags = CRN_NEED_DESC;
  352. int retval, i;
  353. const char *tor2web_rendezvous_str = "dummy";
  354. (void) arg;
  355. /* Setup fake routerlist. */
  356. helper_setup_fake_routerlist();
  357. /* Parse Tor2webRendezvousPoints as a routerset. */
  358. options->Tor2webRendezvousPoints = routerset_new();
  359. retval = routerset_parse(options->Tor2webRendezvousPoints,
  360. tor2web_rendezvous_str,
  361. "test_tor2web_rp");
  362. tt_int_op(retval, >=, 0);
  363. /* Pick rendezvous point. Since Tor2webRendezvousPoints was set to a
  364. dummy value, we shouldn't find any eligible RPs. */
  365. for (i = 0; i < 50 ; i++) {
  366. chosen_rp = pick_tor2web_rendezvous_node(flags, options);
  367. tt_assert(!chosen_rp);
  368. }
  369. done:
  370. routerset_free(options->Tor2webRendezvousPoints);
  371. }
  372. /* Make sure rend_data_t is valid at creation, destruction and when
  373. * duplicated. */
  374. static void
  375. test_hs_rend_data(void *arg)
  376. {
  377. int rep;
  378. rend_data_t *client = NULL, *client_dup = NULL;
  379. /* Binary format of a descriptor ID. */
  380. char desc_id[DIGEST_LEN];
  381. char client_cookie[REND_DESC_COOKIE_LEN];
  382. time_t now = time(NULL);
  383. rend_data_t *service_dup = NULL;
  384. rend_data_t *service = NULL;
  385. (void)arg;
  386. base32_decode(desc_id, sizeof(desc_id), STR_DESC_ID_BASE32,
  387. REND_DESC_ID_V2_LEN_BASE32);
  388. memset(client_cookie, 'e', sizeof(client_cookie));
  389. client = rend_data_client_create(STR_HS_ADDR, desc_id, client_cookie,
  390. REND_NO_AUTH);
  391. tt_assert(client);
  392. rend_data_v2_t *client_v2 = TO_REND_DATA_V2(client);
  393. tt_int_op(client_v2->auth_type, ==, REND_NO_AUTH);
  394. tt_str_op(client_v2->onion_address, OP_EQ, STR_HS_ADDR);
  395. tt_mem_op(client_v2->desc_id_fetch, OP_EQ, desc_id, sizeof(desc_id));
  396. tt_mem_op(client_v2->descriptor_cookie, OP_EQ, client_cookie,
  397. sizeof(client_cookie));
  398. tt_assert(client->hsdirs_fp);
  399. tt_int_op(smartlist_len(client->hsdirs_fp), ==, 0);
  400. for (rep = 0; rep < REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS; rep++) {
  401. int ret = rend_compute_v2_desc_id(desc_id, client_v2->onion_address,
  402. client_v2->descriptor_cookie, now, rep);
  403. /* That shouldn't never fail. */
  404. tt_int_op(ret, ==, 0);
  405. tt_mem_op(client_v2->descriptor_id[rep], OP_EQ, desc_id,
  406. sizeof(desc_id));
  407. }
  408. /* The rest should be zeroed because this is a client request. */
  409. tt_int_op(tor_digest_is_zero(client_v2->rend_pk_digest), ==, 1);
  410. tt_int_op(tor_digest_is_zero(client->rend_cookie), ==, 1);
  411. /* Test dup(). */
  412. client_dup = rend_data_dup(client);
  413. tt_assert(client_dup);
  414. rend_data_v2_t *client_dup_v2 = TO_REND_DATA_V2(client_dup);
  415. tt_int_op(client_dup_v2->auth_type, ==, client_v2->auth_type);
  416. tt_str_op(client_dup_v2->onion_address, OP_EQ, client_v2->onion_address);
  417. tt_mem_op(client_dup_v2->desc_id_fetch, OP_EQ, client_v2->desc_id_fetch,
  418. sizeof(client_dup_v2->desc_id_fetch));
  419. tt_mem_op(client_dup_v2->descriptor_cookie, OP_EQ,
  420. client_v2->descriptor_cookie,
  421. sizeof(client_dup_v2->descriptor_cookie));
  422. tt_assert(client_dup->hsdirs_fp);
  423. tt_int_op(smartlist_len(client_dup->hsdirs_fp), ==, 0);
  424. for (rep = 0; rep < REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS; rep++) {
  425. tt_mem_op(client_dup_v2->descriptor_id[rep], OP_EQ,
  426. client_v2->descriptor_id[rep], DIGEST_LEN);
  427. }
  428. /* The rest should be zeroed because this is a client request. */
  429. tt_int_op(tor_digest_is_zero(client_dup_v2->rend_pk_digest), ==, 1);
  430. tt_int_op(tor_digest_is_zero(client_dup->rend_cookie), ==, 1);
  431. rend_data_free(client);
  432. client = NULL;
  433. rend_data_free(client_dup);
  434. client_dup = NULL;
  435. /* Reset state. */
  436. base32_decode(desc_id, sizeof(desc_id), STR_DESC_ID_BASE32,
  437. REND_DESC_ID_V2_LEN_BASE32);
  438. memset(client_cookie, 'e', sizeof(client_cookie));
  439. /* Try with different parameters here for which some content should be
  440. * zeroed out. */
  441. client = rend_data_client_create(NULL, desc_id, NULL, REND_BASIC_AUTH);
  442. tt_assert(client);
  443. client_v2 = TO_REND_DATA_V2(client);
  444. tt_int_op(client_v2->auth_type, ==, REND_BASIC_AUTH);
  445. tt_int_op(strlen(client_v2->onion_address), ==, 0);
  446. tt_mem_op(client_v2->desc_id_fetch, OP_EQ, desc_id, sizeof(desc_id));
  447. tt_int_op(tor_mem_is_zero(client_v2->descriptor_cookie,
  448. sizeof(client_v2->descriptor_cookie)), ==, 1);
  449. tt_assert(client->hsdirs_fp);
  450. tt_int_op(smartlist_len(client->hsdirs_fp), ==, 0);
  451. for (rep = 0; rep < REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS; rep++) {
  452. tt_int_op(tor_digest_is_zero(client_v2->descriptor_id[rep]), ==, 1);
  453. }
  454. /* The rest should be zeroed because this is a client request. */
  455. tt_int_op(tor_digest_is_zero(client_v2->rend_pk_digest), ==, 1);
  456. tt_int_op(tor_digest_is_zero(client->rend_cookie), ==, 1);
  457. rend_data_free(client);
  458. client = NULL;
  459. /* Let's test the service object now. */
  460. char rend_pk_digest[DIGEST_LEN];
  461. uint8_t rend_cookie[DIGEST_LEN];
  462. memset(rend_pk_digest, 'f', sizeof(rend_pk_digest));
  463. memset(rend_cookie, 'g', sizeof(rend_cookie));
  464. service = rend_data_service_create(STR_HS_ADDR, rend_pk_digest,
  465. rend_cookie, REND_NO_AUTH);
  466. tt_assert(service);
  467. rend_data_v2_t *service_v2 = TO_REND_DATA_V2(service);
  468. tt_int_op(service_v2->auth_type, ==, REND_NO_AUTH);
  469. tt_str_op(service_v2->onion_address, OP_EQ, STR_HS_ADDR);
  470. tt_mem_op(service_v2->rend_pk_digest, OP_EQ, rend_pk_digest,
  471. sizeof(rend_pk_digest));
  472. tt_mem_op(service->rend_cookie, OP_EQ, rend_cookie, sizeof(rend_cookie));
  473. tt_assert(service->hsdirs_fp);
  474. tt_int_op(smartlist_len(service->hsdirs_fp), ==, 0);
  475. for (rep = 0; rep < REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS; rep++) {
  476. tt_int_op(tor_digest_is_zero(service_v2->descriptor_id[rep]), ==, 1);
  477. }
  478. /* The rest should be zeroed because this is a service request. */
  479. tt_int_op(tor_digest_is_zero(service_v2->descriptor_cookie), ==, 1);
  480. tt_int_op(tor_digest_is_zero(service_v2->desc_id_fetch), ==, 1);
  481. /* Test dup(). */
  482. service_dup = rend_data_dup(service);
  483. rend_data_v2_t *service_dup_v2 = TO_REND_DATA_V2(service_dup);
  484. tt_assert(service_dup);
  485. tt_int_op(service_dup_v2->auth_type, ==, service_v2->auth_type);
  486. tt_str_op(service_dup_v2->onion_address, OP_EQ, service_v2->onion_address);
  487. tt_mem_op(service_dup_v2->rend_pk_digest, OP_EQ, service_v2->rend_pk_digest,
  488. sizeof(service_dup_v2->rend_pk_digest));
  489. tt_mem_op(service_dup->rend_cookie, OP_EQ, service->rend_cookie,
  490. sizeof(service_dup->rend_cookie));
  491. tt_assert(service_dup->hsdirs_fp);
  492. tt_int_op(smartlist_len(service_dup->hsdirs_fp), ==, 0);
  493. for (rep = 0; rep < REND_NUMBER_OF_NON_CONSECUTIVE_REPLICAS; rep++) {
  494. tt_int_op(tor_digest_is_zero(service_dup_v2->descriptor_id[rep]), ==, 1);
  495. }
  496. /* The rest should be zeroed because this is a service request. */
  497. tt_int_op(tor_digest_is_zero(service_dup_v2->descriptor_cookie), ==, 1);
  498. tt_int_op(tor_digest_is_zero(service_dup_v2->desc_id_fetch), ==, 1);
  499. done:
  500. rend_data_free(service);
  501. rend_data_free(service_dup);
  502. rend_data_free(client);
  503. rend_data_free(client_dup);
  504. }
  505. /* Test encoding and decoding service authorization cookies */
  506. static void
  507. test_hs_auth_cookies(void *arg)
  508. {
  509. #define TEST_COOKIE_RAW ((const uint8_t *) "abcdefghijklmnop")
  510. #define TEST_COOKIE_ENCODED "YWJjZGVmZ2hpamtsbW5vcA"
  511. #define TEST_COOKIE_ENCODED_STEALTH "YWJjZGVmZ2hpamtsbW5vcB"
  512. #define TEST_COOKIE_ENCODED_INVALID "YWJjZGVmZ2hpamtsbW5vcD"
  513. char *encoded_cookie;
  514. uint8_t raw_cookie[REND_DESC_COOKIE_LEN];
  515. rend_auth_type_t auth_type;
  516. char *err_msg;
  517. int re;
  518. (void)arg;
  519. /* Test that encoding gives the expected result */
  520. encoded_cookie = rend_auth_encode_cookie(TEST_COOKIE_RAW, REND_BASIC_AUTH);
  521. tt_str_op(encoded_cookie, OP_EQ, TEST_COOKIE_ENCODED);
  522. tor_free(encoded_cookie);
  523. encoded_cookie = rend_auth_encode_cookie(TEST_COOKIE_RAW, REND_STEALTH_AUTH);
  524. tt_str_op(encoded_cookie, OP_EQ, TEST_COOKIE_ENCODED_STEALTH);
  525. tor_free(encoded_cookie);
  526. /* Decoding should give the original value */
  527. re = rend_auth_decode_cookie(TEST_COOKIE_ENCODED, raw_cookie, &auth_type,
  528. &err_msg);
  529. tt_assert(!re);
  530. tt_assert(!err_msg);
  531. tt_mem_op(raw_cookie, OP_EQ, TEST_COOKIE_RAW, REND_DESC_COOKIE_LEN);
  532. tt_int_op(auth_type, OP_EQ, REND_BASIC_AUTH);
  533. memset(raw_cookie, 0, sizeof(raw_cookie));
  534. re = rend_auth_decode_cookie(TEST_COOKIE_ENCODED_STEALTH, raw_cookie,
  535. &auth_type, &err_msg);
  536. tt_assert(!re);
  537. tt_assert(!err_msg);
  538. tt_mem_op(raw_cookie, OP_EQ, TEST_COOKIE_RAW, REND_DESC_COOKIE_LEN);
  539. tt_int_op(auth_type, OP_EQ, REND_STEALTH_AUTH);
  540. memset(raw_cookie, 0, sizeof(raw_cookie));
  541. /* Decoding with padding characters should also work */
  542. re = rend_auth_decode_cookie(TEST_COOKIE_ENCODED "==", raw_cookie, NULL,
  543. &err_msg);
  544. tt_assert(!re);
  545. tt_assert(!err_msg);
  546. tt_mem_op(raw_cookie, OP_EQ, TEST_COOKIE_RAW, REND_DESC_COOKIE_LEN);
  547. /* Decoding with an unknown type should fail */
  548. re = rend_auth_decode_cookie(TEST_COOKIE_ENCODED_INVALID, raw_cookie,
  549. &auth_type, &err_msg);
  550. tt_int_op(re, OP_LT, 0);
  551. tt_assert(err_msg);
  552. tor_free(err_msg);
  553. done:
  554. return;
  555. }
  556. static int mock_get_options_calls = 0;
  557. static or_options_t *mock_options = NULL;
  558. static void
  559. reset_options(or_options_t *options, int *get_options_calls)
  560. {
  561. memset(options, 0, sizeof(or_options_t));
  562. options->TestingTorNetwork = 1;
  563. *get_options_calls = 0;
  564. }
  565. static const or_options_t *
  566. mock_get_options(void)
  567. {
  568. ++mock_get_options_calls;
  569. tor_assert(mock_options);
  570. return mock_options;
  571. }
  572. /* arg can't be 0 (the test fails) or 2 (the test is skipped) */
  573. #define CREATE_HS_DIR_NONE ((intptr_t)0x04)
  574. #define CREATE_HS_DIR1 ((intptr_t)0x08)
  575. #define CREATE_HS_DIR2 ((intptr_t)0x10)
  576. /* Test that single onion poisoning works. */
  577. static void
  578. test_single_onion_poisoning(void *arg)
  579. {
  580. or_options_t opt;
  581. mock_options = &opt;
  582. reset_options(mock_options, &mock_get_options_calls);
  583. MOCK(get_options, mock_get_options);
  584. int ret = -1;
  585. intptr_t create_dir_mask = (intptr_t)arg;
  586. /* Get directories with a random suffix so we can repeat the tests */
  587. mock_options->DataDirectory = tor_strdup(get_fname_rnd("test_data_dir"));
  588. rend_service_t *service_1 = tor_malloc_zero(sizeof(rend_service_t));
  589. char *dir1 = tor_strdup(get_fname_rnd("test_hs_dir1"));
  590. rend_service_t *service_2 = tor_malloc_zero(sizeof(rend_service_t));
  591. char *dir2 = tor_strdup(get_fname_rnd("test_hs_dir2"));
  592. smartlist_t *services = smartlist_new();
  593. char *poison_path = NULL;
  594. /* No services, no service to verify, no problem! */
  595. mock_options->HiddenServiceSingleHopMode = 0;
  596. mock_options->HiddenServiceNonAnonymousMode = 0;
  597. ret = rend_config_services(mock_options, 1);
  598. tt_assert(ret == 0);
  599. /* Either way, no problem. */
  600. mock_options->HiddenServiceSingleHopMode = 1;
  601. mock_options->HiddenServiceNonAnonymousMode = 1;
  602. ret = rend_config_services(mock_options, 1);
  603. tt_assert(ret == 0);
  604. /* Create the data directory, and, if the correct bit in arg is set,
  605. * create a directory for that service.
  606. * The data directory is required for the lockfile, which is used when
  607. * loading keys. */
  608. ret = check_private_dir(mock_options->DataDirectory, CPD_CREATE, NULL);
  609. tt_assert(ret == 0);
  610. if (create_dir_mask & CREATE_HS_DIR1) {
  611. ret = check_private_dir(dir1, CPD_CREATE, NULL);
  612. tt_assert(ret == 0);
  613. }
  614. if (create_dir_mask & CREATE_HS_DIR2) {
  615. ret = check_private_dir(dir2, CPD_CREATE, NULL);
  616. tt_assert(ret == 0);
  617. }
  618. service_1->directory = dir1;
  619. service_2->directory = dir2;
  620. /* The services own the directory pointers now */
  621. dir1 = dir2 = NULL;
  622. /* Add port to service 1 */
  623. service_1->ports = smartlist_new();
  624. service_2->ports = smartlist_new();
  625. char *err_msg = NULL;
  626. rend_service_port_config_t *port1 = rend_service_parse_port_config("80", " ",
  627. &err_msg);
  628. tt_assert(port1);
  629. tt_assert(!err_msg);
  630. smartlist_add(service_1->ports, port1);
  631. rend_service_port_config_t *port2 = rend_service_parse_port_config("90", " ",
  632. &err_msg);
  633. /* Add port to service 2 */
  634. tt_assert(port2);
  635. tt_assert(!err_msg);
  636. smartlist_add(service_2->ports, port2);
  637. /* No services, a service to verify, no problem! */
  638. mock_options->HiddenServiceSingleHopMode = 0;
  639. mock_options->HiddenServiceNonAnonymousMode = 0;
  640. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  641. tt_assert(ret == 0);
  642. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  643. tt_assert(ret == 0);
  644. /* Either way, no problem. */
  645. mock_options->HiddenServiceSingleHopMode = 1;
  646. mock_options->HiddenServiceNonAnonymousMode = 1;
  647. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  648. tt_assert(ret == 0);
  649. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  650. tt_assert(ret == 0);
  651. /* Add the first service */
  652. ret = rend_service_check_dir_and_add(services, mock_options, service_1, 0);
  653. tt_assert(ret == 0);
  654. /* But don't add the second service yet. */
  655. /* Service directories, but no previous keys, no problem! */
  656. mock_options->HiddenServiceSingleHopMode = 0;
  657. mock_options->HiddenServiceNonAnonymousMode = 0;
  658. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  659. tt_assert(ret == 0);
  660. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  661. tt_assert(ret == 0);
  662. /* Either way, no problem. */
  663. mock_options->HiddenServiceSingleHopMode = 1;
  664. mock_options->HiddenServiceNonAnonymousMode = 1;
  665. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  666. tt_assert(ret == 0);
  667. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  668. tt_assert(ret == 0);
  669. /* Poison! Poison! Poison!
  670. * This can only be done in HiddenServiceSingleHopMode. */
  671. mock_options->HiddenServiceSingleHopMode = 1;
  672. mock_options->HiddenServiceNonAnonymousMode = 1;
  673. ret = rend_service_poison_new_single_onion_dir(service_1, mock_options);
  674. tt_assert(ret == 0);
  675. /* Poisoning twice is a no-op. */
  676. ret = rend_service_poison_new_single_onion_dir(service_1, mock_options);
  677. tt_assert(ret == 0);
  678. /* Poisoned service directories, but no previous keys, no problem! */
  679. mock_options->HiddenServiceSingleHopMode = 0;
  680. mock_options->HiddenServiceNonAnonymousMode = 0;
  681. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  682. tt_assert(ret == 0);
  683. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  684. tt_assert(ret == 0);
  685. /* Either way, no problem. */
  686. mock_options->HiddenServiceSingleHopMode = 1;
  687. mock_options->HiddenServiceNonAnonymousMode = 1;
  688. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  689. tt_assert(ret == 0);
  690. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  691. tt_assert(ret == 0);
  692. /* Now add some keys, and we'll have a problem. */
  693. ret = rend_service_load_all_keys(services);
  694. tt_assert(ret == 0);
  695. /* Poisoned service directories with previous keys are not allowed. */
  696. mock_options->HiddenServiceSingleHopMode = 0;
  697. mock_options->HiddenServiceNonAnonymousMode = 0;
  698. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  699. tt_assert(ret < 0);
  700. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  701. tt_assert(ret == 0);
  702. /* But they are allowed if we're in non-anonymous mode. */
  703. mock_options->HiddenServiceSingleHopMode = 1;
  704. mock_options->HiddenServiceNonAnonymousMode = 1;
  705. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  706. tt_assert(ret == 0);
  707. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  708. tt_assert(ret == 0);
  709. /* Re-poisoning directories with existing keys is a no-op, because
  710. * directories with existing keys are ignored. */
  711. mock_options->HiddenServiceSingleHopMode = 1;
  712. mock_options->HiddenServiceNonAnonymousMode = 1;
  713. ret = rend_service_poison_new_single_onion_dir(service_1, mock_options);
  714. tt_assert(ret == 0);
  715. /* And it keeps the poison. */
  716. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  717. tt_assert(ret == 0);
  718. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  719. tt_assert(ret == 0);
  720. /* Now add the second service: it has no key and no poison file */
  721. ret = rend_service_check_dir_and_add(services, mock_options, service_2, 0);
  722. tt_assert(ret == 0);
  723. /* A new service, and an existing poisoned service. Not ok. */
  724. mock_options->HiddenServiceSingleHopMode = 0;
  725. mock_options->HiddenServiceNonAnonymousMode = 0;
  726. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  727. tt_assert(ret < 0);
  728. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  729. tt_assert(ret == 0);
  730. /* But ok to add in non-anonymous mode. */
  731. mock_options->HiddenServiceSingleHopMode = 1;
  732. mock_options->HiddenServiceNonAnonymousMode = 1;
  733. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  734. tt_assert(ret == 0);
  735. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  736. tt_assert(ret == 0);
  737. /* Now remove the poisoning from the first service, and we have the opposite
  738. * problem. */
  739. poison_path = rend_service_sos_poison_path(service_1);
  740. tt_assert(poison_path);
  741. ret = unlink(poison_path);
  742. tt_assert(ret == 0);
  743. /* Unpoisoned service directories with previous keys are ok, as are empty
  744. * directories. */
  745. mock_options->HiddenServiceSingleHopMode = 0;
  746. mock_options->HiddenServiceNonAnonymousMode = 0;
  747. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  748. tt_assert(ret == 0);
  749. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  750. tt_assert(ret == 0);
  751. /* But the existing unpoisoned key is not ok in non-anonymous mode, even if
  752. * there is an empty service. */
  753. mock_options->HiddenServiceSingleHopMode = 1;
  754. mock_options->HiddenServiceNonAnonymousMode = 1;
  755. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  756. tt_assert(ret < 0);
  757. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  758. tt_assert(ret == 0);
  759. /* Poisoning directories with existing keys is a no-op, because directories
  760. * with existing keys are ignored. But the new directory should poison. */
  761. mock_options->HiddenServiceSingleHopMode = 1;
  762. mock_options->HiddenServiceNonAnonymousMode = 1;
  763. ret = rend_service_poison_new_single_onion_dir(service_1, mock_options);
  764. tt_assert(ret == 0);
  765. ret = rend_service_poison_new_single_onion_dir(service_2, mock_options);
  766. tt_assert(ret == 0);
  767. /* And the old directory remains unpoisoned. */
  768. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  769. tt_assert(ret < 0);
  770. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  771. tt_assert(ret == 0);
  772. /* And the new directory should be ignored, because it has no key. */
  773. mock_options->HiddenServiceSingleHopMode = 0;
  774. mock_options->HiddenServiceNonAnonymousMode = 0;
  775. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  776. tt_assert(ret == 0);
  777. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  778. tt_assert(ret == 0);
  779. /* Re-poisoning directories without existing keys is a no-op. */
  780. mock_options->HiddenServiceSingleHopMode = 1;
  781. mock_options->HiddenServiceNonAnonymousMode = 1;
  782. ret = rend_service_poison_new_single_onion_dir(service_1, mock_options);
  783. tt_assert(ret == 0);
  784. ret = rend_service_poison_new_single_onion_dir(service_2, mock_options);
  785. tt_assert(ret == 0);
  786. /* And the old directory remains unpoisoned. */
  787. ret = rend_service_verify_single_onion_poison(service_1, mock_options);
  788. tt_assert(ret < 0);
  789. ret = rend_service_verify_single_onion_poison(service_2, mock_options);
  790. tt_assert(ret == 0);
  791. done:
  792. /* The test harness deletes the directories at exit */
  793. tor_free(poison_path);
  794. tor_free(dir1);
  795. tor_free(dir2);
  796. smartlist_free(services);
  797. rend_service_free(service_1);
  798. rend_service_free(service_2);
  799. UNMOCK(get_options);
  800. tor_free(mock_options->DataDirectory);
  801. }
  802. static rend_service_t *
  803. helper_create_rend_service(const char *path)
  804. {
  805. rend_service_t *s = tor_malloc_zero(sizeof(rend_service_t));
  806. s->ports = smartlist_new();
  807. s->intro_nodes = smartlist_new();
  808. s->expiring_nodes = smartlist_new();
  809. if (path) {
  810. s->directory = tor_strdup(path);
  811. }
  812. return s;
  813. }
  814. static void
  815. test_prune_services_on_reload(void *arg)
  816. {
  817. smartlist_t *new = smartlist_new(), *old = smartlist_new();
  818. /* Non ephemeral service. */
  819. rend_service_t *s1 = helper_create_rend_service("SomePath");
  820. /* Create a non ephemeral service with the _same_ path as so we can test the
  821. * transfer of introduction point between the same services on reload. */
  822. rend_service_t *s2 = helper_create_rend_service(s1->directory);
  823. /* Ephemeral service (directory is NULL). */
  824. rend_service_t *e1 = helper_create_rend_service(NULL);
  825. rend_service_t *e2 = helper_create_rend_service(NULL);
  826. (void) arg;
  827. {
  828. /* Add both services to the old list. */
  829. smartlist_add(old, s1);
  830. smartlist_add(old, e1);
  831. /* Only put the non ephemeral in the new list. */
  832. smartlist_add(new, s1);
  833. set_rend_service_list(old);
  834. set_rend_rend_service_staging_list(new);
  835. rend_service_prune_list_impl_();
  836. /* We expect that the ephemeral one is in the new list but removed from
  837. * the old one. */
  838. tt_int_op(smartlist_len(old), OP_EQ, 1);
  839. tt_assert(smartlist_get(old, 0) == s1);
  840. tt_int_op(smartlist_len(new), OP_EQ, 2);
  841. tt_assert(smartlist_get(new, 0) == s1);
  842. tt_assert(smartlist_get(new, 1) == e1);
  843. /* Cleanup for next test. */
  844. smartlist_clear(new);
  845. smartlist_clear(old);
  846. }
  847. {
  848. /* This test will make sure that only the ephemeral service is kept if the
  849. * new list is empty. The old list should contain only the non ephemeral
  850. * one. */
  851. smartlist_add(old, s1);
  852. smartlist_add(old, e1);
  853. set_rend_service_list(old);
  854. set_rend_rend_service_staging_list(new);
  855. rend_service_prune_list_impl_();
  856. tt_int_op(smartlist_len(old), OP_EQ, 1);
  857. tt_assert(smartlist_get(old, 0) == s1);
  858. tt_int_op(smartlist_len(new), OP_EQ, 1);
  859. tt_assert(smartlist_get(new, 0) == e1);
  860. /* Cleanup for next test. */
  861. smartlist_clear(new);
  862. smartlist_clear(old);
  863. }
  864. {
  865. /* This test makes sure that the new list stays the same even from the old
  866. * list being completely different. */
  867. smartlist_add(new, s1);
  868. smartlist_add(new, e1);
  869. set_rend_service_list(old);
  870. set_rend_rend_service_staging_list(new);
  871. rend_service_prune_list_impl_();
  872. tt_int_op(smartlist_len(old), OP_EQ, 0);
  873. tt_int_op(smartlist_len(new), OP_EQ, 2);
  874. tt_assert(smartlist_get(new, 0) == s1);
  875. tt_assert(smartlist_get(new, 1) == e1);
  876. /* Cleanup for next test. */
  877. smartlist_clear(new);
  878. }
  879. {
  880. rend_intro_point_t ip1;
  881. /* This IP should be found in the s2 service after pruning. */
  882. smartlist_add(s1->intro_nodes, &ip1);
  883. /* Setup our list. */
  884. smartlist_add(old, s1);
  885. smartlist_add(new, s2);
  886. set_rend_service_list(old);
  887. set_rend_rend_service_staging_list(new);
  888. rend_service_prune_list_impl_();
  889. tt_int_op(smartlist_len(old), OP_EQ, 1);
  890. /* Intro nodes have been moved to the s2 in theory so it must be empty. */
  891. tt_int_op(smartlist_len(s1->intro_nodes), OP_EQ, 0);
  892. tt_int_op(smartlist_len(new), OP_EQ, 1);
  893. rend_service_t *elem = smartlist_get(new, 0);
  894. tt_assert(elem);
  895. tt_assert(elem == s2);
  896. tt_int_op(smartlist_len(elem->intro_nodes), OP_EQ, 1);
  897. tt_assert(smartlist_get(elem->intro_nodes, 0) == &ip1);
  898. smartlist_clear(s1->intro_nodes);
  899. smartlist_clear(s2->intro_nodes);
  900. /* Cleanup for next test. */
  901. smartlist_clear(new);
  902. smartlist_clear(old);
  903. }
  904. {
  905. /* Test two ephemeral services. */
  906. smartlist_add(old, e1);
  907. smartlist_add(old, e2);
  908. set_rend_service_list(old);
  909. set_rend_rend_service_staging_list(new);
  910. rend_service_prune_list_impl_();
  911. /* Check if they've all been transfered. */
  912. tt_int_op(smartlist_len(old), OP_EQ, 0);
  913. tt_int_op(smartlist_len(new), OP_EQ, 2);
  914. }
  915. done:
  916. rend_service_free(s1);
  917. rend_service_free(s2);
  918. rend_service_free(e1);
  919. rend_service_free(e2);
  920. smartlist_free(new);
  921. smartlist_free(old);
  922. }
  923. struct testcase_t hs_tests[] = {
  924. { "hs_rend_data", test_hs_rend_data, TT_FORK,
  925. NULL, NULL },
  926. { "hs_parse_static_v2_desc", test_hs_parse_static_v2_desc, TT_FORK,
  927. NULL, NULL },
  928. { "hs_desc_event", test_hs_desc_event, TT_FORK,
  929. NULL, NULL },
  930. { "pick_tor2web_rendezvous_node", test_pick_tor2web_rendezvous_node, TT_FORK,
  931. NULL, NULL },
  932. { "pick_bad_tor2web_rendezvous_node",
  933. test_pick_bad_tor2web_rendezvous_node, TT_FORK,
  934. NULL, NULL },
  935. { "hs_auth_cookies", test_hs_auth_cookies, TT_FORK,
  936. NULL, NULL },
  937. { "single_onion_poisoning_create_dir_none", test_single_onion_poisoning,
  938. TT_FORK, &passthrough_setup, (void*)(CREATE_HS_DIR_NONE) },
  939. { "single_onion_poisoning_create_dir1", test_single_onion_poisoning,
  940. TT_FORK, &passthrough_setup, (void*)(CREATE_HS_DIR1) },
  941. { "single_onion_poisoning_create_dir2", test_single_onion_poisoning,
  942. TT_FORK, &passthrough_setup, (void*)(CREATE_HS_DIR2) },
  943. { "single_onion_poisoning_create_dir_both", test_single_onion_poisoning,
  944. TT_FORK, &passthrough_setup, (void*)(CREATE_HS_DIR1 | CREATE_HS_DIR2) },
  945. { "prune_services_on_reload", test_prune_services_on_reload, TT_FORK,
  946. NULL, NULL },
  947. END_OF_TESTCASES
  948. };