wslay_event_test.c 23 KB

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  1. /*
  2. * Wslay - The WebSocket Library
  3. *
  4. * Copyright (c) 2011, 2012 Tatsuhiro Tsujikawa
  5. *
  6. * Permission is hereby granted, free of charge, to any person obtaining
  7. * a copy of this software and associated documentation files (the
  8. * "Software"), to deal in the Software without restriction, including
  9. * without limitation the rights to use, copy, modify, merge, publish,
  10. * distribute, sublicense, and/or sell copies of the Software, and to
  11. * permit persons to whom the Software is furnished to do so, subject to
  12. * the following conditions:
  13. *
  14. * The above copyright notice and this permission notice shall be
  15. * included in all copies or substantial portions of the Software.
  16. *
  17. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  18. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  19. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  20. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
  21. * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
  22. * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
  23. * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
  24. */
  25. #include "wslay_event_test.h"
  26. #include <assert.h>
  27. #include <CUnit/CUnit.h>
  28. #include "wslay_event.h"
  29. struct scripted_data_feed {
  30. uint8_t data[8192];
  31. uint8_t* datamark;
  32. uint8_t* datalimit;
  33. size_t feedseq[8192];
  34. size_t seqidx;
  35. };
  36. struct accumulator {
  37. uint8_t buf[4096];
  38. size_t length;
  39. };
  40. struct my_user_data {
  41. struct scripted_data_feed *df;
  42. struct accumulator *acc;
  43. };
  44. static void scripted_data_feed_init(struct scripted_data_feed *df,
  45. const uint8_t *data, size_t data_length)
  46. {
  47. memset(df, 0, sizeof(struct scripted_data_feed));
  48. memcpy(df->data, data, data_length);
  49. df->datamark = df->data;
  50. df->datalimit = df->data+data_length;
  51. df->feedseq[0] = data_length;
  52. }
  53. static ssize_t scripted_read_callback
  54. (wslay_event_context_ptr ctx,
  55. uint8_t *data, size_t len, const union wslay_event_msg_source *source,
  56. int *eof, void *user_data)
  57. {
  58. struct scripted_data_feed *df = (struct scripted_data_feed*)source->data;
  59. size_t wlen = df->feedseq[df->seqidx] > len ? len : df->feedseq[df->seqidx];
  60. memcpy(data, df->datamark, wlen);
  61. df->datamark += wlen;
  62. if(wlen <= len) {
  63. ++df->seqidx;
  64. } else {
  65. df->feedseq[df->seqidx] -= wlen;
  66. }
  67. if(df->datamark == df->datalimit) {
  68. *eof = 1;
  69. }
  70. return wlen;
  71. }
  72. static ssize_t scripted_recv_callback(wslay_event_context_ptr ctx,
  73. uint8_t* data, size_t len, int flags,
  74. void *user_data)
  75. {
  76. struct scripted_data_feed *df = ((struct my_user_data*)user_data)->df;
  77. size_t wlen = df->feedseq[df->seqidx] > len ? len : df->feedseq[df->seqidx];
  78. memcpy(data, df->datamark, wlen);
  79. df->datamark += wlen;
  80. if(wlen <= len) {
  81. ++df->seqidx;
  82. } else {
  83. df->feedseq[df->seqidx] -= wlen;
  84. }
  85. return wlen;
  86. }
  87. static ssize_t accumulator_send_callback(wslay_event_context_ptr ctx,
  88. const uint8_t *buf, size_t len,
  89. int flags, void* user_data)
  90. {
  91. struct accumulator *acc = ((struct my_user_data*)user_data)->acc;
  92. assert(acc->length+len < sizeof(acc->buf));
  93. memcpy(acc->buf+acc->length, buf, len);
  94. acc->length += len;
  95. return len;
  96. }
  97. static ssize_t one_accumulator_send_callback(wslay_event_context_ptr ctx,
  98. const uint8_t *buf, size_t len,
  99. int flags, void* user_data)
  100. {
  101. struct accumulator *acc = ((struct my_user_data*)user_data)->acc;
  102. assert(len > 0);
  103. memcpy(acc->buf+acc->length, buf, 1);
  104. acc->length += 1;
  105. return 1;
  106. }
  107. static ssize_t fail_recv_callback(wslay_event_context_ptr ctx,
  108. uint8_t* data, size_t len, int flags,
  109. void *user_data)
  110. {
  111. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  112. return -1;
  113. }
  114. static ssize_t fail_send_callback(wslay_event_context_ptr ctx,
  115. const uint8_t *buf, size_t len, int flags,
  116. void* user_data)
  117. {
  118. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  119. return -1;
  120. }
  121. void test_wslay_event_send_fragmented_msg(void)
  122. {
  123. wslay_event_context_ptr ctx;
  124. struct wslay_event_callbacks callbacks;
  125. struct my_user_data ud;
  126. struct accumulator acc;
  127. const char msg[] = "Hello";
  128. struct scripted_data_feed df;
  129. struct wslay_event_fragmented_msg arg;
  130. const uint8_t ans[] = {
  131. 0x01, 0x03, 0x48, 0x65, 0x6c,
  132. 0x80, 0x02, 0x6c, 0x6f
  133. };
  134. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg)-1);
  135. df.feedseq[0] = 3;
  136. df.feedseq[1] = 2;
  137. memset(&callbacks, 0, sizeof(callbacks));
  138. callbacks.send_callback = accumulator_send_callback;
  139. memset(&acc, 0, sizeof(acc));
  140. ud.acc = &acc;
  141. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  142. memset(&arg, 0, sizeof(arg));
  143. arg.opcode = WSLAY_TEXT_FRAME;
  144. arg.source.data = &df;
  145. arg.read_callback = scripted_read_callback;
  146. CU_ASSERT(0 == wslay_event_queue_fragmented_msg(ctx, &arg));
  147. CU_ASSERT(0 == wslay_event_send(ctx));
  148. CU_ASSERT_EQUAL(9, acc.length);
  149. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  150. wslay_event_context_free(ctx);
  151. }
  152. void test_wslay_event_send_fragmented_msg_with_ctrl(void)
  153. {
  154. int i;
  155. wslay_event_context_ptr ctx;
  156. struct wslay_event_callbacks callbacks;
  157. struct my_user_data ud;
  158. struct accumulator acc;
  159. const char msg[] = "Hello";
  160. struct scripted_data_feed df;
  161. struct wslay_event_fragmented_msg arg;
  162. struct wslay_event_msg ctrl_arg;
  163. const uint8_t ans[] = {
  164. 0x01, 0x03, 0x48, 0x65, 0x6c, /* "Hel" */
  165. 0x89, 0x00, /* unmasked ping */
  166. 0x80, 0x02, 0x6c, 0x6f /* "lo" */
  167. };
  168. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg)-1);
  169. df.feedseq[0] = 3;
  170. df.feedseq[1] = 2;
  171. memset(&callbacks, 0, sizeof(callbacks));
  172. callbacks.send_callback = one_accumulator_send_callback;
  173. memset(&acc, 0, sizeof(acc));
  174. ud.acc = &acc;
  175. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  176. memset(&arg, 0, sizeof(arg));
  177. arg.opcode = WSLAY_TEXT_FRAME;
  178. arg.source.data = &df;
  179. arg.read_callback = scripted_read_callback;
  180. CU_ASSERT(0 == wslay_event_queue_fragmented_msg(ctx, &arg));
  181. CU_ASSERT(1 == wslay_event_get_queued_msg_count(ctx));
  182. CU_ASSERT(0 == wslay_event_get_queued_msg_length(ctx));
  183. CU_ASSERT(0 == wslay_event_send(ctx));
  184. memset(&ctrl_arg, 0, sizeof(ctrl_arg));
  185. ctrl_arg.opcode = WSLAY_PING;
  186. ctrl_arg.msg_length = 0;
  187. CU_ASSERT(0 == wslay_event_queue_msg(ctx, &ctrl_arg));
  188. CU_ASSERT(2 == wslay_event_get_queued_msg_count(ctx));
  189. for(i = 0; i < 10; ++i) {
  190. CU_ASSERT(0 == wslay_event_send(ctx));
  191. }
  192. CU_ASSERT(0 == wslay_event_get_queued_msg_count(ctx));
  193. CU_ASSERT(11 == acc.length);
  194. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  195. wslay_event_context_free(ctx);
  196. }
  197. void test_wslay_event_send_fragmented_msg_with_rsv1(void)
  198. {
  199. wslay_event_context_ptr ctx;
  200. struct wslay_event_callbacks callbacks;
  201. struct my_user_data ud;
  202. struct accumulator acc;
  203. const char msg[] = "Hello";
  204. struct scripted_data_feed df;
  205. struct wslay_event_fragmented_msg arg;
  206. const uint8_t ans[] = {
  207. 0x41, 0x03, 0x48, 0x65, 0x6c,
  208. 0x80, 0x02, 0x6c, 0x6f
  209. };
  210. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg)-1);
  211. df.feedseq[0] = 3;
  212. df.feedseq[1] = 2;
  213. memset(&callbacks, 0, sizeof(callbacks));
  214. callbacks.send_callback = accumulator_send_callback;
  215. memset(&acc, 0, sizeof(acc));
  216. ud.acc = &acc;
  217. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  218. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  219. memset(&arg, 0, sizeof(arg));
  220. arg.opcode = WSLAY_TEXT_FRAME;
  221. arg.source.data = &df;
  222. arg.read_callback = scripted_read_callback;
  223. CU_ASSERT(0 ==
  224. wslay_event_queue_fragmented_msg_ex(ctx, &arg, WSLAY_RSV1_BIT));
  225. CU_ASSERT(0 == wslay_event_send(ctx));
  226. CU_ASSERT_EQUAL(9, acc.length);
  227. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  228. wslay_event_context_free(ctx);
  229. }
  230. void test_wslay_event_send_msg_with_rsv1(void)
  231. {
  232. wslay_event_context_ptr ctx;
  233. struct wslay_event_callbacks callbacks;
  234. struct my_user_data ud;
  235. struct accumulator acc;
  236. const char msg[] = "Hello";
  237. struct wslay_event_msg arg;
  238. const uint8_t ans[] = {
  239. 0xc1, 0x05, 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  240. };
  241. memset(&callbacks, 0, sizeof(callbacks));
  242. callbacks.send_callback = accumulator_send_callback;
  243. memset(&acc, 0, sizeof(acc));
  244. ud.acc = &acc;
  245. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  246. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  247. memset(&arg, 0, sizeof(arg));
  248. arg.opcode = WSLAY_TEXT_FRAME;
  249. arg.msg = (const uint8_t*)msg;
  250. arg.msg_length = 5;
  251. CU_ASSERT(0 == wslay_event_queue_msg_ex(ctx, &arg, WSLAY_RSV1_BIT));
  252. CU_ASSERT(0 == wslay_event_send(ctx));
  253. CU_ASSERT(7 == acc.length);
  254. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  255. wslay_event_context_free(ctx);
  256. }
  257. void test_wslay_event_send_ctrl_msg_first(void)
  258. {
  259. wslay_event_context_ptr ctx;
  260. struct wslay_event_callbacks callbacks;
  261. struct my_user_data ud;
  262. struct accumulator acc;
  263. const char msg[] = "Hello";
  264. struct wslay_event_msg arg;
  265. const uint8_t ans[] = {
  266. 0x89, 0x00, /* unmasked ping */
  267. 0x81, 0x05, 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  268. };
  269. memset(&callbacks, 0, sizeof(callbacks));
  270. callbacks.send_callback = accumulator_send_callback;
  271. memset(&acc, 0, sizeof(acc));
  272. ud.acc = &acc;
  273. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  274. memset(&arg, 0, sizeof(arg));
  275. arg.opcode = WSLAY_PING;
  276. arg.msg_length = 0;
  277. CU_ASSERT(0 == wslay_event_queue_msg(ctx, &arg));
  278. arg.opcode = WSLAY_TEXT_FRAME;
  279. arg.msg = (const uint8_t*)msg;
  280. arg.msg_length = 5;
  281. CU_ASSERT(0 == wslay_event_queue_msg(ctx, &arg));
  282. CU_ASSERT(0 == wslay_event_send(ctx));
  283. CU_ASSERT(9 == acc.length);
  284. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  285. wslay_event_context_free(ctx);
  286. }
  287. void test_wslay_event_send_ctrl_msg_with_rsv1(void)
  288. {
  289. wslay_event_context_ptr ctx;
  290. struct wslay_event_callbacks callbacks;
  291. struct wslay_event_msg arg;
  292. memset(&callbacks, 0, sizeof(callbacks));
  293. wslay_event_context_server_init(&ctx, &callbacks, NULL);
  294. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  295. memset(&arg, 0, sizeof(arg));
  296. arg.opcode = WSLAY_PING;
  297. arg.msg_length = 0;
  298. CU_ASSERT(WSLAY_ERR_INVALID_ARGUMENT ==
  299. wslay_event_queue_msg_ex(ctx, &arg, WSLAY_RSV1_BIT));
  300. wslay_event_context_free(ctx);
  301. }
  302. void test_wslay_event_queue_close(void)
  303. {
  304. wslay_event_context_ptr ctx;
  305. struct wslay_event_callbacks callbacks;
  306. struct my_user_data ud;
  307. struct accumulator acc;
  308. const char msg[] = "H";
  309. const uint8_t ans[] = {
  310. 0x88, 0x03, 0x03, 0xf1, 0x48 /* "H" */
  311. };
  312. memset(&callbacks, 0, sizeof(callbacks));
  313. callbacks.send_callback = accumulator_send_callback;
  314. memset(&acc, 0, sizeof(acc));
  315. ud.acc = &acc;
  316. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  317. CU_ASSERT(0 == wslay_event_queue_close(ctx, WSLAY_CODE_MESSAGE_TOO_BIG,
  318. (const uint8_t*)msg, 1));
  319. CU_ASSERT(0 == wslay_event_send(ctx));
  320. CU_ASSERT(5 == acc.length);
  321. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  322. CU_ASSERT(1 == wslay_event_get_close_sent(ctx));
  323. wslay_event_context_free(ctx);
  324. }
  325. void test_wslay_event_queue_close_without_code(void)
  326. {
  327. wslay_event_context_ptr ctx;
  328. struct wslay_event_callbacks callbacks;
  329. struct my_user_data ud;
  330. struct accumulator acc;
  331. const uint8_t ans[] = { 0x88, 0x00 };
  332. struct wslay_event_msg ping = { WSLAY_PING, NULL, 0 };
  333. memset(&callbacks, 0, sizeof(callbacks));
  334. callbacks.send_callback = accumulator_send_callback;
  335. memset(&acc, 0, sizeof(acc));
  336. ud.acc = &acc;
  337. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  338. CU_ASSERT(0 == wslay_event_queue_msg(ctx, &ping));
  339. /* See that ping is not sent because close frame is queued */
  340. CU_ASSERT(0 == wslay_event_queue_close(ctx, 0, NULL, 0));
  341. CU_ASSERT(0 == wslay_event_send(ctx));
  342. CU_ASSERT(2 == acc.length);
  343. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  344. CU_ASSERT(1 == wslay_event_get_close_sent(ctx));
  345. CU_ASSERT(WSLAY_CODE_NO_STATUS_RCVD ==
  346. wslay_event_get_status_code_sent(ctx));
  347. wslay_event_context_free(ctx);
  348. }
  349. void test_wslay_event_recv_close_without_code(void)
  350. {
  351. wslay_event_context_ptr ctx;
  352. struct wslay_event_callbacks callbacks;
  353. struct my_user_data ud;
  354. const uint8_t msg[] = { 0x88u, 0x00 };
  355. struct scripted_data_feed df;
  356. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  357. memset(&callbacks, 0, sizeof(callbacks));
  358. callbacks.recv_callback = scripted_recv_callback;
  359. ud.df = &df;
  360. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  361. CU_ASSERT(0 == wslay_event_recv(ctx));
  362. CU_ASSERT(1 == wslay_event_get_close_received(ctx));
  363. CU_ASSERT(WSLAY_CODE_NO_STATUS_RCVD ==
  364. wslay_event_get_status_code_received(ctx));
  365. wslay_event_context_free(ctx);
  366. }
  367. void test_wslay_event_reply_close(void)
  368. {
  369. wslay_event_context_ptr ctx;
  370. struct wslay_event_callbacks callbacks;
  371. struct my_user_data ud;
  372. struct accumulator acc;
  373. /* Masked close frame with code = 1009, reason = "Hello" */
  374. const uint8_t msg[] = { 0x88u, 0x87u, 0x00u, 0x00u, 0x00u, 0x00u,
  375. 0x03, 0xf1, /* 1009 */
  376. 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  377. };
  378. const uint8_t ans[] = { 0x88u, 0x07u,
  379. 0x03, 0xf1, /* 1009 */
  380. 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  381. };
  382. struct scripted_data_feed df;
  383. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  384. memset(&callbacks, 0, sizeof(callbacks));
  385. callbacks.send_callback = accumulator_send_callback;
  386. callbacks.recv_callback = scripted_recv_callback;
  387. memset(&acc, 0, sizeof(acc));
  388. ud.df = &df;
  389. ud.acc = &acc;
  390. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  391. CU_ASSERT(0 == wslay_event_recv(ctx));
  392. CU_ASSERT(1 == wslay_event_get_queued_msg_count(ctx));
  393. /* 7 bytes = 2 bytes status code + "Hello" */
  394. CU_ASSERT(7 == wslay_event_get_queued_msg_length(ctx));
  395. CU_ASSERT(1 == wslay_event_get_close_received(ctx));
  396. CU_ASSERT(WSLAY_CODE_MESSAGE_TOO_BIG ==
  397. wslay_event_get_status_code_received(ctx));
  398. CU_ASSERT(WSLAY_CODE_ABNORMAL_CLOSURE ==
  399. wslay_event_get_status_code_sent(ctx));
  400. CU_ASSERT(0 == wslay_event_send(ctx));
  401. CU_ASSERT(0 == wslay_event_get_queued_msg_count(ctx));
  402. CU_ASSERT(0 == wslay_event_get_queued_msg_length(ctx));
  403. CU_ASSERT(9 == acc.length);
  404. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  405. CU_ASSERT(1 == wslay_event_get_close_sent(ctx));
  406. CU_ASSERT(WSLAY_CODE_MESSAGE_TOO_BIG ==
  407. wslay_event_get_status_code_received(ctx));
  408. CU_ASSERT(WSLAY_CODE_MESSAGE_TOO_BIG ==
  409. wslay_event_get_status_code_sent(ctx));
  410. wslay_event_context_free(ctx);
  411. }
  412. void test_wslay_event_no_more_msg(void)
  413. {
  414. wslay_event_context_ptr ctx;
  415. struct wslay_event_callbacks callbacks;
  416. memset(&callbacks, 0, sizeof(callbacks));
  417. wslay_event_context_server_init(&ctx, &callbacks, NULL);
  418. CU_ASSERT(0 == wslay_event_queue_close(ctx, 0, NULL, 0));
  419. CU_ASSERT(WSLAY_ERR_NO_MORE_MSG == wslay_event_queue_close(ctx, 0, NULL, 0));
  420. wslay_event_context_free(ctx);
  421. }
  422. void test_wslay_event_callback_failure(void)
  423. {
  424. wslay_event_context_ptr ctx;
  425. struct wslay_event_callbacks callbacks;
  426. memset(&callbacks, 0, sizeof(callbacks));
  427. callbacks.recv_callback = fail_recv_callback;
  428. callbacks.send_callback = fail_send_callback;
  429. wslay_event_context_server_init(&ctx, &callbacks, NULL);
  430. CU_ASSERT(WSLAY_ERR_CALLBACK_FAILURE == wslay_event_recv(ctx));
  431. /* close control frame is in queue */
  432. CU_ASSERT(WSLAY_ERR_CALLBACK_FAILURE == wslay_event_send(ctx));
  433. wslay_event_context_free(ctx);
  434. }
  435. static void no_buffering_callback(wslay_event_context_ptr ctx,
  436. const struct wslay_event_on_msg_recv_arg *arg,
  437. void *user_data)
  438. {
  439. if(arg->opcode == WSLAY_PING) {
  440. CU_ASSERT(3 == arg->msg_length);
  441. CU_ASSERT(0 == memcmp("Foo", arg->msg, arg->msg_length));
  442. } else {
  443. CU_ASSERT(WSLAY_TEXT_FRAME == arg->opcode);
  444. CU_ASSERT(0 == arg->msg_length);
  445. }
  446. }
  447. void test_wslay_event_no_buffering(void)
  448. {
  449. wslay_event_context_ptr ctx;
  450. struct wslay_event_callbacks callbacks;
  451. struct my_user_data ud;
  452. const uint8_t msg[] = {
  453. 0x01, 0x03, 0x48, 0x65, 0x6c, /* "Hel" */
  454. 0x89, 0x03, 0x46, 0x6f, 0x6f, /* ping with "Foo" */
  455. 0x80, 0x02, 0x6c, 0x6f, /* "lo" */
  456. };
  457. struct scripted_data_feed df;
  458. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  459. memset(&callbacks, 0, sizeof(callbacks));
  460. ud.df = &df;
  461. callbacks.recv_callback = scripted_recv_callback;
  462. callbacks.on_msg_recv_callback = no_buffering_callback;
  463. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  464. wslay_event_config_set_no_buffering(ctx, 1);
  465. CU_ASSERT(0 == wslay_event_recv(ctx));
  466. /* pong must be queued */
  467. CU_ASSERT(wslay_event_want_write(ctx));
  468. wslay_event_context_free(ctx);
  469. }
  470. static void
  471. text_rsv1_on_msg_recv_callback(wslay_event_context_ptr ctx,
  472. const struct wslay_event_on_msg_recv_arg *arg,
  473. void *user_data)
  474. {
  475. CU_ASSERT(WSLAY_TEXT_FRAME == arg->opcode);
  476. CU_ASSERT(WSLAY_RSV1_BIT == arg->rsv);
  477. }
  478. void test_wslay_event_recv_text_frame_with_rsv1(void)
  479. {
  480. wslay_event_context_ptr ctx;
  481. struct wslay_event_callbacks callbacks;
  482. struct my_user_data ud;
  483. const uint8_t msg[] = {
  484. 0xc1, 0x07, 0xf2, 0x48, 0xcd, 0xc9, 0xc9, 0x07, 0x00 // "Hello" pm-deflate
  485. };
  486. const uint8_t fragmented[] = {
  487. 0x41, 0x03, 0xf2, 0x48, 0xcd, // First fragment
  488. 0x80, 0x04, 0xc9, 0xc9, 0x07, 0x00 // Second fragment, RSV1 bit off
  489. };
  490. const uint8_t bad_fragment[] = {
  491. 0x41, 0x03, 0xf2, 0x48, 0xcd,
  492. 0xc0, 0x04, 0xc9, 0xc9, 0x07, 0x00 // RSV1 bit on
  493. };
  494. const uint8_t pingmsg[] = {
  495. 0xc9, 0x03, 0x46, 0x6f, 0x6f /* ping with "Foo" */
  496. };
  497. struct scripted_data_feed df;
  498. /* Message marked with RSV1 should skip UTF-8 validation */
  499. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  500. memset(&callbacks, 0, sizeof(callbacks));
  501. ud.df = &df;
  502. callbacks.recv_callback = scripted_recv_callback;
  503. callbacks.on_msg_recv_callback = text_rsv1_on_msg_recv_callback;
  504. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  505. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  506. CU_ASSERT(0 == wslay_event_recv(ctx));
  507. CU_ASSERT(0 == wslay_event_want_write(ctx));
  508. wslay_event_context_free(ctx);
  509. /* UTF-8 validation is skipped for continuation frames if the
  510. * initial frame was marked with RSV1 bit */
  511. scripted_data_feed_init(&df, (const uint8_t*)fragmented, sizeof(fragmented));
  512. memset(&callbacks, 0, sizeof(callbacks));
  513. ud.df = &df;
  514. callbacks.recv_callback = scripted_recv_callback;
  515. callbacks.on_msg_recv_callback = text_rsv1_on_msg_recv_callback;
  516. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  517. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  518. CU_ASSERT(0 == wslay_event_recv(ctx));
  519. CU_ASSERT(0 == wslay_event_want_write(ctx));
  520. wslay_event_context_free(ctx);
  521. /* disallow RSV1 */
  522. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  523. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  524. CU_ASSERT(0 == wslay_event_recv(ctx));
  525. /* Close frame must be queued */
  526. CU_ASSERT(wslay_event_want_write(ctx));
  527. wslay_event_context_free(ctx);
  528. /* RSV1 is not allowed in continuation frame */
  529. scripted_data_feed_init(&df, (const uint8_t*)bad_fragment,
  530. sizeof(bad_fragment));
  531. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  532. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  533. CU_ASSERT(0 == wslay_event_recv(ctx));
  534. /* Close frame must be queued */
  535. CU_ASSERT(wslay_event_want_write(ctx));
  536. wslay_event_context_free(ctx);
  537. /* RSV1 is not allowed in ping frame */
  538. scripted_data_feed_init(&df, (const uint8_t*)pingmsg, sizeof(pingmsg));
  539. wslay_event_context_client_init(&ctx, &callbacks, &ud);
  540. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  541. CU_ASSERT(0 == wslay_event_recv(ctx));
  542. /* Close frame must be queued */
  543. CU_ASSERT(wslay_event_want_write(ctx));
  544. wslay_event_context_free(ctx);
  545. }
  546. void test_wslay_event_frame_too_big(void)
  547. {
  548. wslay_event_context_ptr ctx;
  549. struct wslay_event_callbacks callbacks;
  550. struct my_user_data ud;
  551. struct accumulator acc;
  552. /* Masked text frame */
  553. const uint8_t msg[] = { 0x81, 0x85, 0x00, 0x00, 0x00, 0x00,
  554. 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  555. };
  556. const uint8_t ans[] = { 0x88, 0x02,
  557. 0x03, 0xf1 /* 1009 */
  558. };
  559. struct scripted_data_feed df;
  560. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  561. memset(&callbacks, 0, sizeof(callbacks));
  562. callbacks.send_callback = accumulator_send_callback;
  563. callbacks.recv_callback = scripted_recv_callback;
  564. memset(&acc, 0, sizeof(acc));
  565. ud.df = &df;
  566. ud.acc = &acc;
  567. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  568. wslay_event_config_set_max_recv_msg_length(ctx, 4);
  569. CU_ASSERT(0 == wslay_event_recv(ctx));
  570. CU_ASSERT(0 == wslay_event_send(ctx));
  571. CU_ASSERT(4 == acc.length);
  572. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  573. CU_ASSERT(1 == wslay_event_get_close_sent(ctx));
  574. CU_ASSERT(WSLAY_CODE_MESSAGE_TOO_BIG ==
  575. wslay_event_get_status_code_sent(ctx));
  576. wslay_event_context_free(ctx);
  577. }
  578. void test_wslay_event_message_too_big(void)
  579. {
  580. wslay_event_context_ptr ctx;
  581. struct wslay_event_callbacks callbacks;
  582. struct my_user_data ud;
  583. struct accumulator acc;
  584. /* Masked text 2 frames */
  585. const uint8_t msg[] = { 0x01, 0x85, 0x00, 0x00, 0x00, 0x00,
  586. 0x48, 0x65, 0x6c, 0x6c, 0x6f, /* "Hello" */
  587. 0x80, 0x85, 0x00, 0x00, 0x00, 0x00,
  588. 0x48, 0x65, 0x6c, 0x6c, 0x6f /* "Hello" */
  589. };
  590. const uint8_t ans[] = { 0x88, 0x02,
  591. 0x03, 0xf1 /* 1009 */
  592. };
  593. struct scripted_data_feed df;
  594. scripted_data_feed_init(&df, (const uint8_t*)msg, sizeof(msg));
  595. memset(&callbacks, 0, sizeof(callbacks));
  596. callbacks.send_callback = accumulator_send_callback;
  597. callbacks.recv_callback = scripted_recv_callback;
  598. memset(&acc, 0, sizeof(acc));
  599. ud.df = &df;
  600. ud.acc = &acc;
  601. wslay_event_context_server_init(&ctx, &callbacks, &ud);
  602. wslay_event_config_set_max_recv_msg_length(ctx, 9);
  603. CU_ASSERT(0 == wslay_event_recv(ctx));
  604. CU_ASSERT(0 == wslay_event_send(ctx));
  605. CU_ASSERT(4 == acc.length);
  606. CU_ASSERT(0 == memcmp(ans, acc.buf, acc.length));
  607. CU_ASSERT(1 == wslay_event_get_close_sent(ctx));
  608. CU_ASSERT(WSLAY_CODE_MESSAGE_TOO_BIG ==
  609. wslay_event_get_status_code_sent(ctx));
  610. wslay_event_context_free(ctx);
  611. }
  612. void test_wslay_event_config_set_allowed_rsv_bits(void)
  613. {
  614. wslay_event_context_ptr ctx;
  615. struct wslay_event_callbacks callbacks;
  616. memset(&callbacks, 0, sizeof(callbacks));
  617. CU_ASSERT(0 == wslay_event_context_server_init(&ctx, &callbacks, NULL));
  618. CU_ASSERT(WSLAY_RSV_NONE == ctx->allowed_rsv_bits);
  619. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT);
  620. CU_ASSERT(WSLAY_RSV1_BIT == ctx->allowed_rsv_bits);
  621. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV1_BIT | WSLAY_RSV2_BIT |
  622. WSLAY_RSV3_BIT);
  623. CU_ASSERT(WSLAY_RSV1_BIT == ctx->allowed_rsv_bits);
  624. wslay_event_config_set_allowed_rsv_bits(ctx, WSLAY_RSV2_BIT | WSLAY_RSV3_BIT);
  625. CU_ASSERT(WSLAY_RSV_NONE == ctx->allowed_rsv_bits);
  626. wslay_event_context_free(ctx);
  627. }