tester-socket.c 14 KB

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  1. // SPDX-License-Identifier: Apache-2.0
  2. /*
  3. * Copyright (C) 2014 Intel Corporation
  4. *
  5. */
  6. #define _GNU_SOURCE
  7. #include <fcntl.h>
  8. #include <unistd.h>
  9. #include <stdbool.h>
  10. #include "emulator/bthost.h"
  11. #include "src/shared/tester.h"
  12. #include "src/shared/queue.h"
  13. #include "tester-main.h"
  14. static struct queue *list; /* List of socket test cases */
  15. static bt_bdaddr_t bdaddr_dummy = {
  16. .address = { 0x00, 0x11, 0x22, 0x33, 0x44, 0x55}
  17. };
  18. static int got_fd_result = -1;
  19. static struct bt_action_data btsock_param_socktype_0 = {
  20. .addr = &bdaddr_dummy,
  21. .sock_type = 0,
  22. .channel = 1,
  23. .service_uuid = NULL,
  24. .service_name = "Test service",
  25. .flags = 0,
  26. .fd = &got_fd_result,
  27. };
  28. static struct bt_action_data btsock_param_socktype_l2cap = {
  29. .addr = &bdaddr_dummy,
  30. .sock_type = BTSOCK_L2CAP,
  31. .channel = 1,
  32. .service_uuid = NULL,
  33. .service_name = "Test service",
  34. .flags = 0,
  35. .fd = &got_fd_result,
  36. };
  37. static struct bt_action_data btsock_param_channel_0 = {
  38. .addr = &bdaddr_dummy,
  39. .sock_type = BTSOCK_RFCOMM,
  40. .channel = 0,
  41. .service_uuid = NULL,
  42. .service_name = "Test service",
  43. .flags = 0,
  44. .fd = &got_fd_result,
  45. };
  46. static struct bt_action_data btsock_param = {
  47. .addr = &bdaddr_dummy,
  48. .sock_type = BTSOCK_RFCOMM,
  49. .channel = 1,
  50. .service_uuid = NULL,
  51. .service_name = "Test service",
  52. .flags = 0,
  53. .fd = &got_fd_result,
  54. };
  55. static struct bt_action_data btsock_param_inv_bdaddr = {
  56. .addr = NULL,
  57. .sock_type = BTSOCK_RFCOMM,
  58. .channel = 1,
  59. .service_uuid = NULL,
  60. .service_name = "Test service",
  61. .flags = 0,
  62. .fd = &got_fd_result,
  63. };
  64. static bt_bdaddr_t emu_remote_bdaddr_val = {
  65. .address = { 0x00, 0xaa, 0x01, 0x01, 0x00, 0x00 },
  66. };
  67. static bt_property_t prop_emu_remote_bdadr = {
  68. .type = BT_PROPERTY_BDADDR,
  69. .val = &emu_remote_bdaddr_val,
  70. .len = sizeof(emu_remote_bdaddr_val),
  71. };
  72. static bt_property_t prop_emu_remotes_default_set[] = {
  73. { BT_PROPERTY_BDADDR, sizeof(emu_remote_bdaddr_val),
  74. &emu_remote_bdaddr_val },
  75. };
  76. static struct bt_action_data btsock_param_emu_bdaddr = {
  77. .addr = &emu_remote_bdaddr_val,
  78. .sock_type = BTSOCK_RFCOMM,
  79. .channel = 1,
  80. .service_uuid = NULL,
  81. .service_name = "Test service",
  82. .flags = 0,
  83. .fd = &got_fd_result,
  84. };
  85. static struct emu_set_l2cap_data l2cap_setup_data = {
  86. .psm = 0x0003,
  87. .func = NULL,
  88. .user_data = NULL,
  89. };
  90. static struct bt_action_data prop_emu_remote_bdaddr_req = {
  91. .addr = &emu_remote_bdaddr_val,
  92. .prop_type = BT_PROPERTY_BDADDR,
  93. .prop = &prop_emu_remote_bdadr,
  94. };
  95. static void socket_listen_action(void)
  96. {
  97. struct test_data *data = tester_get_data();
  98. struct step *current_data_step = queue_peek_head(data->steps);
  99. struct bt_action_data *action_data = current_data_step->set_data;
  100. struct step *step = g_new0(struct step, 1);
  101. *action_data->fd = -1;
  102. step->action_status = data->if_sock->listen(action_data->sock_type,
  103. action_data->service_name,
  104. action_data->service_uuid,
  105. action_data->channel,
  106. action_data->fd,
  107. action_data->flags);
  108. schedule_action_verification(step);
  109. }
  110. static void socket_connect_action(void)
  111. {
  112. struct test_data *data = tester_get_data();
  113. struct step *current_data_step = queue_peek_head(data->steps);
  114. struct bt_action_data *action_data = current_data_step->set_data;
  115. struct step *step;
  116. int status;
  117. *action_data->fd = -1;
  118. status = data->if_sock->connect(action_data->addr,
  119. action_data->sock_type,
  120. action_data->service_uuid,
  121. action_data->channel,
  122. action_data->fd,
  123. action_data->flags);
  124. tester_print("status %d sock_fd %d", status, *action_data->fd);
  125. if (!status)
  126. return;
  127. step = g_new0(struct step, 1);
  128. step->action_status = status;
  129. schedule_action_verification(step);
  130. }
  131. static gboolean socket_chan_cb(GIOChannel *io, GIOCondition cond,
  132. gpointer user_data)
  133. {
  134. int sock_fd = g_io_channel_unix_get_fd(io);
  135. struct step *step = g_new0(struct step, 1);
  136. int channel, len;
  137. tester_print("%s", __func__);
  138. if (cond & G_IO_HUP) {
  139. tester_warn("Socket %d hang up", sock_fd);
  140. step->action_status = BT_STATUS_FAIL;
  141. goto done;
  142. }
  143. if (cond & (G_IO_ERR | G_IO_NVAL)) {
  144. tester_warn("Socket error: sock %d cond %d", sock_fd, cond);
  145. step->action_status = BT_STATUS_FAIL;
  146. goto done;
  147. }
  148. len = read(sock_fd, &channel, sizeof(channel));
  149. if (len != sizeof(channel)) {
  150. tester_warn("Socket read failed");
  151. step->action_status = BT_STATUS_FAIL;
  152. goto done;
  153. }
  154. tester_print("read correct channel: %d", channel);
  155. step->action_status = BT_STATUS_SUCCESS;
  156. done:
  157. schedule_action_verification(step);
  158. return FALSE;
  159. }
  160. static void socket_read_fd_action(void)
  161. {
  162. struct test_data *data = tester_get_data();
  163. struct step *current_data_step = queue_peek_head(data->steps);
  164. struct bt_action_data *action_data = current_data_step->set_data;
  165. GIOChannel *io;
  166. io = g_io_channel_unix_new(*action_data->fd);
  167. g_io_channel_set_close_on_unref(io, TRUE);
  168. g_io_add_watch(io, G_IO_IN | G_IO_HUP | G_IO_ERR | G_IO_NVAL,
  169. socket_chan_cb, NULL);
  170. g_io_channel_unref(io);
  171. }
  172. static void socket_verify_fd_action(void)
  173. {
  174. struct test_data *data = tester_get_data();
  175. struct step *current_data_step = queue_peek_head(data->steps);
  176. struct bt_action_data *action_data = current_data_step->set_data;
  177. struct step *step = g_new0(struct step, 1);
  178. if (!*action_data->fd) {
  179. step->action_status = BT_STATUS_FAIL;
  180. goto done;
  181. }
  182. step->action_status = (fcntl(*action_data->fd, F_GETFD) < 0) ?
  183. BT_STATUS_FAIL : BT_STATUS_SUCCESS;
  184. done:
  185. schedule_action_verification(step);
  186. }
  187. static void socket_verify_channel_action(void)
  188. {
  189. struct test_data *data = tester_get_data();
  190. struct step *current_data_step = queue_peek_head(data->steps);
  191. struct bt_action_data *action_data = current_data_step->set_data;
  192. int channel, len;
  193. struct step *step = g_new0(struct step, 1);
  194. if (!*action_data->fd) {
  195. tester_warn("Ups no action_data->fd");
  196. step->action_status = BT_STATUS_FAIL;
  197. goto done;
  198. }
  199. len = read(*action_data->fd, &channel, sizeof(channel));
  200. if (len != sizeof(channel) || channel != action_data->channel) {
  201. tester_warn("Ups bad channel");
  202. step->action_status = BT_STATUS_FAIL;
  203. goto done;
  204. }
  205. step->action_status = BT_STATUS_SUCCESS;
  206. done:
  207. schedule_action_verification(step);
  208. }
  209. static void socket_close_channel_action(void)
  210. {
  211. struct test_data *data = tester_get_data();
  212. struct step *current_data_step = queue_peek_head(data->steps);
  213. struct bt_action_data *action_data = current_data_step->set_data;
  214. struct step *step = g_new0(struct step, 1);
  215. if (!*action_data->fd) {
  216. tester_warn("Ups no action_data->fd");
  217. step->action_status = BT_STATUS_FAIL;
  218. goto done;
  219. }
  220. close(*action_data->fd);
  221. *action_data->fd = -1;
  222. step->action_status = BT_STATUS_SUCCESS;
  223. done:
  224. schedule_action_verification(step);
  225. }
  226. static struct test_case test_cases[] = {
  227. TEST_CASE_BREDRLE("Socket Init",
  228. ACTION_SUCCESS(dummy_action, NULL),
  229. ),
  230. TEST_CASE_BREDRLE("Socket Listen - Invalid: sock_type 0",
  231. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  232. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  233. ACTION(BT_STATUS_PARM_INVALID, socket_listen_action,
  234. &btsock_param_socktype_0),
  235. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  236. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  237. ),
  238. TEST_CASE_BREDRLE("Socket Listen - Invalid: sock_type L2CAP",
  239. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  240. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  241. ACTION(BT_STATUS_UNSUPPORTED, socket_listen_action,
  242. &btsock_param_socktype_l2cap),
  243. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  244. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  245. ),
  246. TEST_CASE_BREDRLE("Socket Listen - Invalid: chan, uuid",
  247. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  248. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  249. ACTION(BT_STATUS_PARM_INVALID, socket_listen_action,
  250. &btsock_param_channel_0),
  251. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  252. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  253. ),
  254. TEST_CASE_BREDRLE("Socket Listen - Check returned fd valid",
  255. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  256. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  257. ACTION_SUCCESS(socket_listen_action, &btsock_param),
  258. ACTION_SUCCESS(socket_verify_fd_action, &btsock_param),
  259. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  260. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  261. ),
  262. TEST_CASE_BREDRLE("Socket Listen - Check returned channel",
  263. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  264. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  265. ACTION_SUCCESS(socket_listen_action, &btsock_param),
  266. ACTION_SUCCESS(socket_verify_fd_action, &btsock_param),
  267. ACTION_SUCCESS(socket_verify_channel_action, &btsock_param),
  268. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  269. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  270. ),
  271. TEST_CASE_BREDRLE("Socket Listen - Close and Listen again",
  272. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  273. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  274. ACTION_SUCCESS(socket_listen_action, &btsock_param),
  275. ACTION_SUCCESS(socket_verify_fd_action, &btsock_param),
  276. ACTION_SUCCESS(socket_verify_channel_action, &btsock_param),
  277. ACTION_SUCCESS(socket_close_channel_action, &btsock_param),
  278. ACTION_SUCCESS(socket_listen_action, &btsock_param),
  279. ACTION_SUCCESS(socket_verify_fd_action, &btsock_param),
  280. ACTION_SUCCESS(socket_verify_channel_action, &btsock_param),
  281. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  282. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  283. ),
  284. TEST_CASE_BREDRLE("Socket Listen - Invalid: double Listen",
  285. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  286. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  287. ACTION_SUCCESS(socket_listen_action, &btsock_param),
  288. ACTION_SUCCESS(socket_verify_fd_action, &btsock_param),
  289. ACTION_SUCCESS(socket_verify_channel_action, &btsock_param),
  290. ACTION(BT_STATUS_BUSY, socket_listen_action, &btsock_param),
  291. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  292. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  293. ),
  294. TEST_CASE_BREDRLE("Socket Connect - Invalid: sock_type 0",
  295. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  296. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  297. ACTION(BT_STATUS_PARM_INVALID, socket_connect_action,
  298. &btsock_param_socktype_0),
  299. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  300. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  301. ),
  302. TEST_CASE_BREDRLE("Socket Connect - Invalid: sock_type L2CAP",
  303. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  304. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  305. ACTION(BT_STATUS_UNSUPPORTED, socket_connect_action,
  306. &btsock_param_socktype_l2cap),
  307. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  308. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  309. ),
  310. TEST_CASE_BREDRLE("Socket Connect - Invalid: chan, uuid",
  311. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  312. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  313. ACTION(BT_STATUS_PARM_INVALID, socket_connect_action,
  314. &btsock_param_channel_0),
  315. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  316. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  317. ),
  318. TEST_CASE_BREDRLE("Socket Connect - Invalid: bdaddr",
  319. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  320. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  321. ACTION(BT_STATUS_PARM_INVALID, socket_connect_action,
  322. &btsock_param_inv_bdaddr),
  323. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  324. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  325. ),
  326. TEST_CASE_BREDRLE("Socket Connect - Check returned fd valid",
  327. ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
  328. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  329. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  330. ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
  331. ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
  332. ACTION_SUCCESS(bt_create_bond_action,
  333. &prop_emu_remote_bdaddr_req),
  334. CALLBACK_BOND_STATE(BT_BOND_STATE_BONDING,
  335. &prop_emu_remote_bdadr, 1),
  336. CALLBACK_DEVICE_FOUND(prop_emu_remotes_default_set, 1),
  337. CALLBACK_BOND_STATE(BT_BOND_STATE_BONDED,
  338. &prop_emu_remote_bdadr, 1),
  339. CALLBACK_DEVICE_PROPS(NULL, 0),
  340. ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
  341. ACTION_SUCCESS(emu_add_rfcomm_server_action,
  342. &btsock_param_emu_bdaddr),
  343. ACTION_SUCCESS(socket_connect_action, &btsock_param_emu_bdaddr),
  344. ACTION_SUCCESS(socket_verify_fd_action,
  345. &btsock_param_emu_bdaddr),
  346. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  347. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  348. ),
  349. TEST_CASE_BREDRLE("Socket Connect - Check returned chann",
  350. ACTION_SUCCESS(set_default_ssp_request_handler, NULL),
  351. ACTION_SUCCESS(bluetooth_enable_action, NULL),
  352. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_ON),
  353. ACTION_SUCCESS(emu_setup_powered_remote_action, NULL),
  354. ACTION_SUCCESS(emu_set_ssp_mode_action, NULL),
  355. ACTION_SUCCESS(bt_create_bond_action,
  356. &prop_emu_remote_bdaddr_req),
  357. CALLBACK_BOND_STATE(BT_BOND_STATE_BONDING,
  358. &prop_emu_remote_bdadr, 1),
  359. CALLBACK_DEVICE_FOUND(prop_emu_remotes_default_set, 1),
  360. CALLBACK_BOND_STATE(BT_BOND_STATE_BONDED,
  361. &prop_emu_remote_bdadr, 1),
  362. CALLBACK_DEVICE_PROPS(NULL, 0),
  363. ACTION_SUCCESS(emu_add_l2cap_server_action, &l2cap_setup_data),
  364. ACTION_SUCCESS(emu_add_rfcomm_server_action,
  365. &btsock_param_emu_bdaddr),
  366. ACTION_SUCCESS(socket_connect_action, &btsock_param_emu_bdaddr),
  367. ACTION_SUCCESS(socket_verify_fd_action,
  368. &btsock_param_emu_bdaddr),
  369. ACTION_SUCCESS(socket_verify_channel_action,
  370. &btsock_param_emu_bdaddr),
  371. ACTION_SUCCESS(socket_read_fd_action, &btsock_param_emu_bdaddr),
  372. ACTION_SUCCESS(bluetooth_disable_action, NULL),
  373. CALLBACK_STATE(CB_BT_ADAPTER_STATE_CHANGED, BT_STATE_OFF),
  374. ),
  375. };
  376. struct queue *get_socket_tests(void)
  377. {
  378. uint16_t i = 0;
  379. list = queue_new();
  380. for (; i < sizeof(test_cases) / sizeof(test_cases[0]); ++i)
  381. queue_push_tail(list, &test_cases[i]);
  382. return list;
  383. }
  384. void remove_socket_tests(void)
  385. {
  386. queue_destroy(list, NULL);
  387. }