test_oom.c 11 KB

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  1. /* Copyright (c) 2014-2016, The Tor Project, Inc. */
  2. /* See LICENSE for licensing information */
  3. /* Unit tests for OOM handling logic */
  4. #define RELAY_PRIVATE
  5. #define BUFFERS_PRIVATE
  6. #define CIRCUITLIST_PRIVATE
  7. #define CONNECTION_PRIVATE
  8. #include "or.h"
  9. #include "buffers.h"
  10. #include "circuitlist.h"
  11. #include "compat_libevent.h"
  12. #include "connection.h"
  13. #include "config.h"
  14. #include "relay.h"
  15. #include "test.h"
  16. /* small replacement mock for circuit_mark_for_close_ to avoid doing all
  17. * the other bookkeeping that comes with marking circuits. */
  18. static void
  19. circuit_mark_for_close_dummy_(circuit_t *circ, int reason, int line,
  20. const char *file)
  21. {
  22. (void) reason;
  23. if (circ->marked_for_close) {
  24. TT_FAIL(("Circuit already marked for close at %s:%d, but we are marking "
  25. "it again at %s:%d",
  26. circ->marked_for_close_file, (int)circ->marked_for_close,
  27. file, line));
  28. }
  29. circ->marked_for_close = line;
  30. circ->marked_for_close_file = file;
  31. }
  32. static circuit_t *
  33. dummy_or_circuit_new(int n_p_cells, int n_n_cells)
  34. {
  35. or_circuit_t *circ = or_circuit_new(0, NULL);
  36. int i;
  37. cell_t cell;
  38. for (i=0; i < n_p_cells; ++i) {
  39. crypto_rand((void*)&cell, sizeof(cell));
  40. cell_queue_append_packed_copy(TO_CIRCUIT(circ), &circ->p_chan_cells,
  41. 0, &cell, 1, 0);
  42. }
  43. for (i=0; i < n_n_cells; ++i) {
  44. crypto_rand((void*)&cell, sizeof(cell));
  45. cell_queue_append_packed_copy(TO_CIRCUIT(circ),
  46. &TO_CIRCUIT(circ)->n_chan_cells,
  47. 1, &cell, 1, 0);
  48. }
  49. TO_CIRCUIT(circ)->purpose = CIRCUIT_PURPOSE_OR;
  50. return TO_CIRCUIT(circ);
  51. }
  52. static circuit_t *
  53. dummy_origin_circuit_new(int n_cells)
  54. {
  55. origin_circuit_t *circ = origin_circuit_new();
  56. int i;
  57. cell_t cell;
  58. for (i=0; i < n_cells; ++i) {
  59. crypto_rand((void*)&cell, sizeof(cell));
  60. cell_queue_append_packed_copy(TO_CIRCUIT(circ),
  61. &TO_CIRCUIT(circ)->n_chan_cells,
  62. 1, &cell, 1, 0);
  63. }
  64. TO_CIRCUIT(circ)->purpose = CIRCUIT_PURPOSE_C_GENERAL;
  65. return TO_CIRCUIT(circ);
  66. }
  67. static void
  68. add_bytes_to_buf(generic_buffer_t *buf, size_t n_bytes)
  69. {
  70. char b[3000];
  71. while (n_bytes) {
  72. size_t this_add = n_bytes > sizeof(b) ? sizeof(b) : n_bytes;
  73. crypto_rand(b, this_add);
  74. generic_buffer_add(buf, b, this_add);
  75. n_bytes -= this_add;
  76. }
  77. }
  78. static edge_connection_t *
  79. dummy_edge_conn_new(circuit_t *circ,
  80. int type, size_t in_bytes, size_t out_bytes)
  81. {
  82. edge_connection_t *conn;
  83. generic_buffer_t *inbuf, *outbuf;
  84. if (type == CONN_TYPE_EXIT)
  85. conn = edge_connection_new(type, AF_INET);
  86. else
  87. conn = ENTRY_TO_EDGE_CONN(entry_connection_new(type, AF_INET));
  88. inbuf = TO_CONN(conn)->inbuf;
  89. outbuf = TO_CONN(conn)->outbuf;
  90. /* We add these bytes directly to the buffers, to avoid all the
  91. * edge connection read/write machinery. */
  92. add_bytes_to_buf(inbuf, in_bytes);
  93. add_bytes_to_buf(outbuf, out_bytes);
  94. conn->on_circuit = circ;
  95. if (type == CONN_TYPE_EXIT) {
  96. or_circuit_t *oc = TO_OR_CIRCUIT(circ);
  97. conn->next_stream = oc->n_streams;
  98. oc->n_streams = conn;
  99. } else {
  100. origin_circuit_t *oc = TO_ORIGIN_CIRCUIT(circ);
  101. conn->next_stream = oc->p_streams;
  102. oc->p_streams = conn;
  103. }
  104. return conn;
  105. }
  106. /** Run unit tests for buffers.c */
  107. static void
  108. test_oom_circbuf(void *arg)
  109. {
  110. or_options_t *options = get_options_mutable();
  111. circuit_t *c1 = NULL, *c2 = NULL, *c3 = NULL, *c4 = NULL;
  112. struct timeval tv = { 1389631048, 0 };
  113. (void) arg;
  114. MOCK(circuit_mark_for_close_, circuit_mark_for_close_dummy_);
  115. /* Far too low for real life. */
  116. options->MaxMemInQueues = 256*packed_cell_mem_cost();
  117. options->CellStatistics = 0;
  118. tt_int_op(cell_queues_check_size(), OP_EQ, 0); /* We don't start out OOM. */
  119. tt_int_op(cell_queues_get_total_allocation(), OP_EQ, 0);
  120. tt_int_op(buf_get_total_allocation(), OP_EQ, 0);
  121. /* Now we're going to fake up some circuits and get them added to the global
  122. circuit list. */
  123. tv.tv_usec = 0;
  124. tor_gettimeofday_cache_set(&tv);
  125. c1 = dummy_origin_circuit_new(30);
  126. tv.tv_usec = 10*1000;
  127. tor_gettimeofday_cache_set(&tv);
  128. c2 = dummy_or_circuit_new(20, 20);
  129. tt_int_op(packed_cell_mem_cost(), OP_EQ,
  130. sizeof(packed_cell_t));
  131. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  132. packed_cell_mem_cost() * 70);
  133. tt_int_op(cell_queues_check_size(), OP_EQ, 0); /* We are still not OOM */
  134. tv.tv_usec = 20*1000;
  135. tor_gettimeofday_cache_set(&tv);
  136. c3 = dummy_or_circuit_new(100, 85);
  137. tt_int_op(cell_queues_check_size(), OP_EQ, 0); /* We are still not OOM */
  138. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  139. packed_cell_mem_cost() * 255);
  140. tv.tv_usec = 30*1000;
  141. tor_gettimeofday_cache_set(&tv);
  142. /* Adding this cell will trigger our OOM handler. */
  143. c4 = dummy_or_circuit_new(2, 0);
  144. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  145. packed_cell_mem_cost() * 257);
  146. tt_int_op(cell_queues_check_size(), OP_EQ, 1); /* We are now OOM */
  147. tt_assert(c1->marked_for_close);
  148. tt_assert(! c2->marked_for_close);
  149. tt_assert(! c3->marked_for_close);
  150. tt_assert(! c4->marked_for_close);
  151. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  152. packed_cell_mem_cost() * (257 - 30));
  153. circuit_free(c1);
  154. tv.tv_usec = 0;
  155. tor_gettimeofday_cache_set(&tv); /* go back in time */
  156. c1 = dummy_or_circuit_new(90, 0);
  157. tv.tv_usec = 40*1000; /* go back to the future */
  158. tor_gettimeofday_cache_set(&tv);
  159. tt_int_op(cell_queues_check_size(), OP_EQ, 1); /* We are now OOM */
  160. tt_assert(c1->marked_for_close);
  161. tt_assert(! c2->marked_for_close);
  162. tt_assert(! c3->marked_for_close);
  163. tt_assert(! c4->marked_for_close);
  164. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  165. packed_cell_mem_cost() * (257 - 30));
  166. done:
  167. circuit_free(c1);
  168. circuit_free(c2);
  169. circuit_free(c3);
  170. circuit_free(c4);
  171. UNMOCK(circuit_mark_for_close_);
  172. }
  173. /** Run unit tests for buffers.c */
  174. static void
  175. test_oom_streambuf(void *arg)
  176. {
  177. or_options_t *options = get_options_mutable();
  178. circuit_t *c1 = NULL, *c2 = NULL, *c3 = NULL, *c4 = NULL, *c5 = NULL;
  179. struct timeval tv = { 1389641159, 0 };
  180. uint32_t tvms;
  181. int i;
  182. smartlist_t *edgeconns = smartlist_new();
  183. (void) arg;
  184. MOCK(circuit_mark_for_close_, circuit_mark_for_close_dummy_);
  185. /* Far too low for real life. */
  186. options->MaxMemInQueues = 81*packed_cell_mem_cost() + 4096 * 34;
  187. options->CellStatistics = 0;
  188. tt_int_op(cell_queues_check_size(), OP_EQ, 0); /* We don't start out OOM. */
  189. tt_int_op(cell_queues_get_total_allocation(), OP_EQ, 0);
  190. tt_int_op(buf_get_total_allocation(), OP_EQ, 0);
  191. /* Start all circuits with a bit of data queued in cells */
  192. tv.tv_usec = 500*1000; /* go halfway into the second. */
  193. tor_gettimeofday_cache_set(&tv);
  194. c1 = dummy_or_circuit_new(10,10);
  195. tv.tv_usec = 510*1000;
  196. tor_gettimeofday_cache_set(&tv);
  197. c2 = dummy_origin_circuit_new(20);
  198. tv.tv_usec = 520*1000;
  199. tor_gettimeofday_cache_set(&tv);
  200. c3 = dummy_or_circuit_new(20,20);
  201. tv.tv_usec = 530*1000;
  202. tor_gettimeofday_cache_set(&tv);
  203. c4 = dummy_or_circuit_new(0,0);
  204. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  205. packed_cell_mem_cost() * 80);
  206. tv.tv_usec = 600*1000;
  207. tor_gettimeofday_cache_set(&tv);
  208. /* Add some connections to c1...c4. */
  209. for (i = 0; i < 4; ++i) {
  210. edge_connection_t *ec;
  211. /* link it to a circuit */
  212. tv.tv_usec += 10*1000;
  213. tor_gettimeofday_cache_set(&tv);
  214. ec = dummy_edge_conn_new(c1, CONN_TYPE_EXIT, 1000, 1000);
  215. tt_assert(ec);
  216. smartlist_add(edgeconns, ec);
  217. tv.tv_usec += 10*1000;
  218. tor_gettimeofday_cache_set(&tv);
  219. ec = dummy_edge_conn_new(c2, CONN_TYPE_AP, 1000, 1000);
  220. tt_assert(ec);
  221. smartlist_add(edgeconns, ec);
  222. tv.tv_usec += 10*1000;
  223. tor_gettimeofday_cache_set(&tv);
  224. ec = dummy_edge_conn_new(c4, CONN_TYPE_EXIT, 1000, 1000); /* Yes, 4 twice*/
  225. tt_assert(ec);
  226. smartlist_add(edgeconns, ec);
  227. tv.tv_usec += 10*1000;
  228. tor_gettimeofday_cache_set(&tv);
  229. ec = dummy_edge_conn_new(c4, CONN_TYPE_EXIT, 1000, 1000);
  230. smartlist_add(edgeconns, ec);
  231. tt_assert(ec);
  232. }
  233. tv.tv_sec += 1;
  234. tv.tv_usec = 0;
  235. tvms = (uint32_t) tv_to_msec(&tv);
  236. tt_int_op(circuit_max_queued_cell_age(c1, tvms), OP_EQ, 500);
  237. tt_int_op(circuit_max_queued_cell_age(c2, tvms), OP_EQ, 490);
  238. tt_int_op(circuit_max_queued_cell_age(c3, tvms), OP_EQ, 480);
  239. tt_int_op(circuit_max_queued_cell_age(c4, tvms), OP_EQ, 0);
  240. tt_int_op(circuit_max_queued_data_age(c1, tvms), OP_EQ, 390);
  241. tt_int_op(circuit_max_queued_data_age(c2, tvms), OP_EQ, 380);
  242. tt_int_op(circuit_max_queued_data_age(c3, tvms), OP_EQ, 0);
  243. tt_int_op(circuit_max_queued_data_age(c4, tvms), OP_EQ, 370);
  244. tt_int_op(circuit_max_queued_item_age(c1, tvms), OP_EQ, 500);
  245. tt_int_op(circuit_max_queued_item_age(c2, tvms), OP_EQ, 490);
  246. tt_int_op(circuit_max_queued_item_age(c3, tvms), OP_EQ, 480);
  247. tt_int_op(circuit_max_queued_item_age(c4, tvms), OP_EQ, 370);
  248. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  249. packed_cell_mem_cost() * 80);
  250. tt_int_op(buf_get_total_allocation(), OP_EQ, 4096*16*2);
  251. /* Now give c4 a very old buffer of modest size */
  252. {
  253. edge_connection_t *ec;
  254. tv.tv_sec -= 1;
  255. tv.tv_usec = 0;
  256. tor_gettimeofday_cache_set(&tv);
  257. ec = dummy_edge_conn_new(c4, CONN_TYPE_EXIT, 1000, 1000);
  258. tt_assert(ec);
  259. smartlist_add(edgeconns, ec);
  260. }
  261. tt_int_op(buf_get_total_allocation(), OP_EQ, 4096*17*2);
  262. tt_int_op(circuit_max_queued_item_age(c4, tvms), OP_EQ, 1000);
  263. tt_int_op(cell_queues_check_size(), OP_EQ, 0);
  264. /* And run over the limit. */
  265. tv.tv_usec = 800*1000;
  266. tor_gettimeofday_cache_set(&tv);
  267. c5 = dummy_or_circuit_new(0,5);
  268. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  269. packed_cell_mem_cost() * 85);
  270. tt_int_op(buf_get_total_allocation(), OP_EQ, 4096*17*2);
  271. tt_int_op(cell_queues_check_size(), OP_EQ, 1); /* We are now OOM */
  272. /* C4 should have died. */
  273. tt_assert(! c1->marked_for_close);
  274. tt_assert(! c2->marked_for_close);
  275. tt_assert(! c3->marked_for_close);
  276. tt_assert(c4->marked_for_close);
  277. tt_assert(! c5->marked_for_close);
  278. tt_int_op(cell_queues_get_total_allocation(), OP_EQ,
  279. packed_cell_mem_cost() * 85);
  280. tt_int_op(buf_get_total_allocation(), OP_EQ, 4096*8*2);
  281. done:
  282. circuit_free(c1);
  283. circuit_free(c2);
  284. circuit_free(c3);
  285. circuit_free(c4);
  286. circuit_free(c5);
  287. SMARTLIST_FOREACH(edgeconns, edge_connection_t *, ec,
  288. connection_free_(TO_CONN(ec)));
  289. smartlist_free(edgeconns);
  290. UNMOCK(circuit_mark_for_close_);
  291. }
  292. struct testcase_t oom_tests[] = {
  293. { "circbuf", test_oom_circbuf, TT_FORK, NULL, NULL },
  294. { "streambuf", test_oom_streambuf, TT_FORK, NULL, NULL },
  295. END_OF_TESTCASES
  296. };