wlan_dsc_test.c 15 KB

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  1. /*
  2. * Copyright (c) 2018-2020 The Linux Foundation. All rights reserved.
  3. * Copyright (c) 2022 Qualcomm Innovation Center, Inc. All rights reserved.
  4. *
  5. * Permission to use, copy, modify, and/or distribute this software for
  6. * any purpose with or without fee is hereby granted, provided that the
  7. * above copyright notice and this permission notice appear in all
  8. * copies.
  9. *
  10. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  11. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  12. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  13. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  14. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  15. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  16. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  17. * PERFORMANCE OF THIS SOFTWARE.
  18. */
  19. #include "__wlan_dsc.h"
  20. #include "qdf_event.h"
  21. #include "qdf_threads.h"
  22. #include "qdf_trace.h"
  23. #include "qdf_types.h"
  24. #include "wlan_dsc.h"
  25. #include "wlan_dsc_test.h"
  26. #include "cds_api.h"
  27. #define dsc_driver_trans_start(driver) dsc_driver_trans_start(driver, __func__)
  28. #define dsc_psoc_trans_start(psoc) dsc_psoc_trans_start(psoc, __func__)
  29. #define dsc_vdev_trans_start(vdev) dsc_vdev_trans_start(vdev, __func__)
  30. #define dsc_driver_trans_start_wait(driver) \
  31. dsc_driver_trans_start_wait(driver, "")
  32. #define dsc_psoc_trans_start_wait(psoc) \
  33. dsc_psoc_trans_start_wait(psoc, __func__)
  34. #define dsc_vdev_trans_start_wait(vdev) \
  35. dsc_vdev_trans_start_wait(vdev, __func__)
  36. static struct dsc_psoc *nth_psoc(struct dsc_driver *driver, int n)
  37. {
  38. struct dsc_psoc *psoc;
  39. QDF_BUG(n > 0);
  40. if (n <= 0)
  41. return NULL;
  42. dsc_for_each_driver_psoc(driver, psoc) {
  43. n--;
  44. if (n)
  45. continue;
  46. return psoc;
  47. }
  48. QDF_DEBUG_PANIC("Failed to find nth psoc: %d", n);
  49. return NULL;
  50. }
  51. static struct dsc_vdev *nth_vdev(struct dsc_psoc *psoc, int n)
  52. {
  53. struct dsc_vdev *vdev;
  54. QDF_BUG(n > 0);
  55. if (n <= 0)
  56. return NULL;
  57. dsc_for_each_psoc_vdev(psoc, vdev) {
  58. n--;
  59. if (n)
  60. continue;
  61. return vdev;
  62. }
  63. QDF_DEBUG_PANIC("Failed to find nth vdev: %d", n);
  64. return NULL;
  65. }
  66. static void __dsc_tree_destroy(struct dsc_driver *driver)
  67. {
  68. struct dsc_psoc *psoc;
  69. struct dsc_psoc *next_psoc;
  70. QDF_BUG(driver);
  71. qdf_list_for_each_del(&driver->psocs, psoc, next_psoc, node) {
  72. struct dsc_vdev *vdev;
  73. struct dsc_vdev *next_vdev;
  74. qdf_list_for_each_del(&psoc->vdevs, vdev, next_vdev, node)
  75. dsc_vdev_destroy(&vdev);
  76. dsc_psoc_destroy(&psoc);
  77. }
  78. dsc_driver_destroy(&driver);
  79. }
  80. static QDF_STATUS __dsc_tree_create(struct dsc_driver **out_driver,
  81. uint8_t psocs_per_driver,
  82. uint8_t vdevs_per_psoc)
  83. {
  84. QDF_STATUS status;
  85. struct dsc_driver *driver;
  86. int i, j;
  87. status = dsc_driver_create(&driver);
  88. if (QDF_IS_STATUS_ERROR(status)) {
  89. dsc_err("Failed to create driver; status:%u", status);
  90. return status;
  91. }
  92. for (i = 0; i < psocs_per_driver; i++) {
  93. struct dsc_psoc *psoc;
  94. status = dsc_psoc_create(driver, &psoc);
  95. if (QDF_IS_STATUS_ERROR(status)) {
  96. dsc_err("Failed to create psoc; status:%u", status);
  97. goto free_tree;
  98. }
  99. for (j = 0; j < vdevs_per_psoc; j++) {
  100. struct dsc_vdev *vdev;
  101. status = dsc_vdev_create(psoc, &vdev);
  102. if (QDF_IS_STATUS_ERROR(status)) {
  103. dsc_err("Failed to create vdev; status:%u",
  104. status);
  105. goto free_tree;
  106. }
  107. }
  108. }
  109. *out_driver = driver;
  110. return QDF_STATUS_SUCCESS;
  111. free_tree:
  112. __dsc_tree_destroy(driver);
  113. return status;
  114. }
  115. static uint32_t dsc_test_create_destroy(void)
  116. {
  117. uint32_t errors = 0;
  118. QDF_STATUS status;
  119. struct dsc_driver *driver;
  120. dsc_enter();
  121. status = __dsc_tree_create(&driver, 2, 2);
  122. if (QDF_IS_STATUS_ERROR(status)) {
  123. errors++;
  124. goto exit;
  125. }
  126. __dsc_tree_destroy(driver);
  127. exit:
  128. dsc_exit();
  129. return errors;
  130. }
  131. #define action_expect(obj, action, status, errors) \
  132. do { \
  133. void *__obj = obj; \
  134. QDF_STATUS __expected = status; \
  135. QDF_STATUS __result; \
  136. \
  137. __result = dsc_##obj##_##action##_start(__obj); \
  138. if (__result != __expected) { \
  139. dsc_err("FAIL: " #obj " " #action \
  140. "; expected " #status " (%u), found %u", \
  141. __expected, __result); \
  142. (errors)++; \
  143. } \
  144. if (QDF_IS_STATUS_SUCCESS(__result) && QDF_IS_STATUS_ERROR(__expected))\
  145. dsc_##obj##_##action##_stop(__obj); \
  146. } while (false)
  147. static uint32_t dsc_test_driver_trans_blocks(void)
  148. {
  149. uint32_t errors = 0;
  150. QDF_STATUS status;
  151. struct dsc_driver *driver;
  152. struct dsc_psoc *psoc;
  153. struct dsc_vdev *vdev;
  154. dsc_enter();
  155. /* setup */
  156. status = __dsc_tree_create(&driver, 2, 2);
  157. if (QDF_IS_STATUS_ERROR(status)) {
  158. errors++;
  159. goto exit;
  160. }
  161. /* test */
  162. /* a driver in transition should cause ... */
  163. action_expect(driver, trans, QDF_STATUS_SUCCESS, errors);
  164. /* ... the same driver trans/ops to fail */
  165. action_expect(driver, trans, QDF_STATUS_E_AGAIN, errors);
  166. action_expect(driver, op, QDF_STATUS_E_AGAIN, errors);
  167. /* ... children psoc trans/ops to fail */
  168. dsc_for_each_driver_psoc(driver, psoc) {
  169. action_expect(psoc, trans, QDF_STATUS_E_INVAL, errors);
  170. action_expect(psoc, op, QDF_STATUS_E_INVAL, errors);
  171. /* ... grandchildren vdev trans/ops to fail */
  172. dsc_for_each_psoc_vdev(psoc, vdev) {
  173. action_expect(vdev, trans, QDF_STATUS_E_INVAL, errors);
  174. action_expect(vdev, op, QDF_STATUS_E_INVAL, errors);
  175. }
  176. }
  177. /* teardown */
  178. dsc_driver_trans_stop(driver);
  179. __dsc_tree_destroy(driver);
  180. exit:
  181. dsc_exit();
  182. return errors;
  183. }
  184. static uint32_t dsc_test_psoc_trans_blocks(void)
  185. {
  186. uint32_t errors = 0;
  187. QDF_STATUS status;
  188. struct dsc_driver *driver;
  189. struct dsc_psoc *psoc;
  190. struct dsc_vdev *vdev;
  191. dsc_enter();
  192. /* setup */
  193. status = __dsc_tree_create(&driver, 2, 2);
  194. if (QDF_IS_STATUS_ERROR(status)) {
  195. errors++;
  196. goto exit;
  197. }
  198. /* test */
  199. /* a psoc in transition should cause ... */
  200. psoc = nth_psoc(driver, 1);
  201. action_expect(psoc, trans, QDF_STATUS_SUCCESS, errors);
  202. /* ... driver trans/ops to fail */
  203. action_expect(driver, trans, QDF_STATUS_E_AGAIN, errors);
  204. action_expect(driver, op, QDF_STATUS_E_AGAIN, errors);
  205. /* ... the same psoc trans/ops to fail */
  206. action_expect(psoc, trans, QDF_STATUS_E_AGAIN, errors);
  207. action_expect(psoc, op, QDF_STATUS_E_AGAIN, errors);
  208. /* ... children vdev trans/ops to fail */
  209. dsc_for_each_psoc_vdev(psoc, vdev) {
  210. action_expect(vdev, trans, QDF_STATUS_E_BUSY, errors);
  211. action_expect(vdev, op, QDF_STATUS_E_BUSY, errors);
  212. }
  213. /* ... while driver unload in progress vdev op and trans should be
  214. * rejected with EINVAL
  215. */
  216. cds_set_unload_in_progress(true);
  217. dsc_for_each_psoc_vdev(psoc, vdev) {
  218. action_expect(vdev, trans, QDF_STATUS_E_INVAL, errors);
  219. action_expect(vdev, op, QDF_STATUS_E_INVAL, errors);
  220. }
  221. cds_set_unload_in_progress(false);
  222. /* ... while SSR recovery in progress vdev op and trans should be
  223. * rejected with EINVAL
  224. */
  225. cds_set_recovery_in_progress(true);
  226. dsc_for_each_psoc_vdev(psoc, vdev) {
  227. action_expect(vdev, trans, QDF_STATUS_E_INVAL, errors);
  228. action_expect(vdev, op, QDF_STATUS_E_INVAL, errors);
  229. }
  230. cds_set_recovery_in_progress(false);
  231. /* a sibling psoc in transition should succeed and cause ... */
  232. psoc = nth_psoc(driver, 2);
  233. action_expect(psoc, trans, QDF_STATUS_SUCCESS, errors);
  234. /* ... driver trans/ops to fail */
  235. action_expect(driver, trans, QDF_STATUS_E_AGAIN, errors);
  236. action_expect(driver, op, QDF_STATUS_E_AGAIN, errors);
  237. /* ... the same psoc trans/ops to fail */
  238. action_expect(psoc, trans, QDF_STATUS_E_AGAIN, errors);
  239. action_expect(psoc, op, QDF_STATUS_E_AGAIN, errors);
  240. /* ... children vdev trans/ops to fail */
  241. dsc_for_each_psoc_vdev(psoc, vdev) {
  242. action_expect(vdev, trans, QDF_STATUS_E_BUSY, errors);
  243. action_expect(vdev, op, QDF_STATUS_E_BUSY, errors);
  244. }
  245. /* teardown */
  246. dsc_for_each_driver_psoc(driver, psoc)
  247. dsc_psoc_trans_stop(psoc);
  248. __dsc_tree_destroy(driver);
  249. exit:
  250. dsc_exit();
  251. return errors;
  252. }
  253. static uint32_t dsc_test_vdev_trans_blocks(void)
  254. {
  255. uint32_t errors = 0;
  256. QDF_STATUS status;
  257. struct dsc_driver *driver;
  258. struct dsc_psoc *psoc;
  259. struct dsc_vdev *vdev;
  260. dsc_enter();
  261. /* setup */
  262. status = __dsc_tree_create(&driver, 2, 2);
  263. if (QDF_IS_STATUS_ERROR(status)) {
  264. errors++;
  265. goto exit;
  266. }
  267. /* test */
  268. /* a vdev in transition should cause ... */
  269. dsc_for_each_driver_psoc(driver, psoc) {
  270. dsc_for_each_psoc_vdev(psoc, vdev)
  271. action_expect(vdev, trans, QDF_STATUS_SUCCESS, errors);
  272. }
  273. /* ... driver trans/ops to fail */
  274. action_expect(driver, trans, QDF_STATUS_E_AGAIN, errors);
  275. action_expect(driver, op, QDF_STATUS_E_AGAIN, errors);
  276. /* ... psoc trans/ops to fail */
  277. dsc_for_each_driver_psoc(driver, psoc) {
  278. action_expect(psoc, trans, QDF_STATUS_E_AGAIN, errors);
  279. action_expect(psoc, op, QDF_STATUS_E_AGAIN, errors);
  280. /* ... the same vdev trans/ops to fail */
  281. dsc_for_each_psoc_vdev(psoc, vdev) {
  282. action_expect(vdev, trans, QDF_STATUS_E_BUSY, errors);
  283. action_expect(vdev, op, QDF_STATUS_E_BUSY, errors);
  284. }
  285. }
  286. /* teardown */
  287. dsc_for_each_driver_psoc(driver, psoc) {
  288. dsc_for_each_psoc_vdev(psoc, vdev)
  289. dsc_vdev_trans_stop(vdev);
  290. }
  291. __dsc_tree_destroy(driver);
  292. exit:
  293. dsc_exit();
  294. return errors;
  295. }
  296. #define THREAD_TIMEOUT 1000 /* ms */
  297. #define dsc_event_wait(event) qdf_wait_single_event(event, THREAD_TIMEOUT)
  298. #define step_assert(field, expected) \
  299. do { \
  300. uint32_t _step = ++(field); \
  301. uint32_t _expected = (expected); \
  302. \
  303. if (_step != _expected) \
  304. QDF_DEBUG_PANIC("Step count is %u; Expected %u", \
  305. _step, _expected); \
  306. } while (false)
  307. #define trans_waiting(ctx) (!qdf_list_empty(&(ctx)->trans.queue))
  308. struct thread_ctx {
  309. struct dsc_driver *driver;
  310. qdf_event_t start_vdev_trans;
  311. qdf_event_t start_vdev_wait;
  312. uint32_t step;
  313. };
  314. static QDF_STATUS dsc_thread_ops(void *context)
  315. {
  316. struct thread_ctx *ctx = context;
  317. struct dsc_driver *driver = ctx->driver;
  318. struct dsc_psoc *psoc = nth_psoc(driver, 1);
  319. struct dsc_vdev *vdev = nth_vdev(psoc, 1);
  320. dsc_enter();
  321. /* thread 1 is doing some operations ... */
  322. step_assert(ctx->step, 1);
  323. dsc_assert_success(dsc_driver_op_start(driver));
  324. dsc_assert_success(dsc_psoc_op_start(psoc));
  325. dsc_assert_success(dsc_vdev_op_start(vdev));
  326. step_assert(ctx->step, 2);
  327. /* ... at which point, thread 2 starts to transition the vdevs */
  328. qdf_event_set(&ctx->start_vdev_trans);
  329. /* meanwhile, thread 3,4,5 queue up to transition vdev/psoc/driver */
  330. while (!trans_waiting(driver))
  331. schedule();
  332. /* at this point, each thread is:
  333. * 1) doing operations
  334. * 2) transitioning vdevs 1/2, waiting for ops to finish
  335. * 3) waiting to transition vdev 1
  336. * 4) waiting to transition psoc
  337. * 5) waitint to transition driver
  338. */
  339. step_assert(ctx->step, 8);
  340. dsc_driver_op_stop(driver);
  341. schedule();
  342. dsc_psoc_op_stop(psoc);
  343. schedule();
  344. dsc_vdev_op_stop(vdev);
  345. /* all operations complete; thread2 is now unblocked */
  346. dsc_exit();
  347. return QDF_STATUS_SUCCESS;
  348. }
  349. static QDF_STATUS dsc_thread_vdev_trans(void *context)
  350. {
  351. struct thread_ctx *ctx = context;
  352. struct dsc_driver *driver = ctx->driver;
  353. struct dsc_psoc *psoc = nth_psoc(driver, 1);
  354. struct dsc_vdev *vdev;
  355. dsc_enter();
  356. /* wait for thread 1 to start operations */
  357. dsc_assert_success(dsc_event_wait(&ctx->start_vdev_trans));
  358. /* start transitions on all vdevs */
  359. step_assert(ctx->step, 3);
  360. dsc_for_each_psoc_vdev(psoc, vdev)
  361. dsc_assert_success(dsc_vdev_trans_start(vdev));
  362. step_assert(ctx->step, 4);
  363. /* meanwhile, thread 3,4,5 queue up to transition vdev/psoc/driver */
  364. qdf_event_set(&ctx->start_vdev_wait);
  365. /* wait for thread 1 to complete pending vdev ops */
  366. dsc_for_each_psoc_vdev(psoc, vdev)
  367. dsc_vdev_wait_for_ops(vdev);
  368. /* actual vdev transition work would happen here */
  369. /* stop transition on vdev 1 */
  370. step_assert(ctx->step, 9);
  371. dsc_vdev_trans_stop(nth_vdev(psoc, 1));
  372. /* psoc trans should not start until both vdev trans are complete */
  373. schedule();
  374. step_assert(ctx->step, 10);
  375. dsc_vdev_trans_stop(nth_vdev(psoc, 2));
  376. dsc_exit();
  377. return QDF_STATUS_SUCCESS;
  378. }
  379. static QDF_STATUS dsc_thread_vdev_wait(void *context)
  380. {
  381. struct thread_ctx *ctx = context;
  382. struct dsc_vdev *vdev = nth_vdev(nth_psoc(ctx->driver, 1), 1);
  383. dsc_enter();
  384. dsc_assert_success(dsc_event_wait(&ctx->start_vdev_wait));
  385. step_assert(ctx->step, 5);
  386. /* vdev trans queues first ... */
  387. dsc_assert_success(dsc_vdev_trans_start_wait(vdev));
  388. /* ... but de-queues third */
  389. step_assert(ctx->step, 15);
  390. dsc_vdev_wait_for_ops(vdev);
  391. step_assert(ctx->step, 16);
  392. dsc_vdev_trans_stop(vdev);
  393. dsc_exit();
  394. return QDF_STATUS_SUCCESS;
  395. }
  396. static QDF_STATUS dsc_thread_psoc_wait(void *context)
  397. {
  398. struct thread_ctx *ctx = context;
  399. struct dsc_psoc *psoc = nth_psoc(ctx->driver, 1);
  400. struct dsc_vdev *vdev = nth_vdev(psoc, 1);
  401. dsc_enter();
  402. while (!trans_waiting(vdev))
  403. schedule();
  404. step_assert(ctx->step, 6);
  405. /* psoc trans queues second ... */
  406. dsc_assert_success(dsc_psoc_trans_start_wait(psoc));
  407. /* ... and de-queues second */
  408. step_assert(ctx->step, 13);
  409. dsc_psoc_wait_for_ops(psoc);
  410. step_assert(ctx->step, 14);
  411. dsc_psoc_trans_stop(psoc);
  412. dsc_exit();
  413. return QDF_STATUS_SUCCESS;
  414. }
  415. static QDF_STATUS dsc_thread_driver_wait(void *context)
  416. {
  417. struct thread_ctx *ctx = context;
  418. struct dsc_driver *driver = ctx->driver;
  419. struct dsc_psoc *psoc = nth_psoc(driver, 1);
  420. dsc_enter();
  421. while (!trans_waiting(psoc))
  422. schedule();
  423. step_assert(ctx->step, 7);
  424. /* driver trans queues third ... */
  425. dsc_assert_success(dsc_driver_trans_start_wait(driver));
  426. /* ... but de-queues first */
  427. step_assert(ctx->step, 11);
  428. dsc_driver_wait_for_ops(driver);
  429. step_assert(ctx->step, 12);
  430. dsc_driver_trans_stop(driver);
  431. dsc_exit();
  432. return QDF_STATUS_SUCCESS;
  433. }
  434. static uint32_t dsc_test_trans_wait(void)
  435. {
  436. uint32_t errors = 0;
  437. QDF_STATUS status;
  438. qdf_thread_t *ops_thread;
  439. qdf_thread_t *vdev_trans_thread;
  440. qdf_thread_t *vdev_wait_thread;
  441. qdf_thread_t *psoc_wait_thread;
  442. qdf_thread_t *driver_wait_thread;
  443. struct thread_ctx ctx = { 0 };
  444. dsc_enter();
  445. status = __dsc_tree_create(&ctx.driver, 1, 2);
  446. if (QDF_IS_STATUS_ERROR(status)) {
  447. errors++;
  448. goto exit;
  449. }
  450. dsc_assert_success(qdf_event_create(&ctx.start_vdev_trans));
  451. dsc_assert_success(qdf_event_create(&ctx.start_vdev_wait));
  452. dsc_debug("starting threads");
  453. ops_thread = qdf_thread_run(dsc_thread_ops, &ctx);
  454. vdev_trans_thread = qdf_thread_run(dsc_thread_vdev_trans, &ctx);
  455. vdev_wait_thread = qdf_thread_run(dsc_thread_vdev_wait, &ctx);
  456. psoc_wait_thread = qdf_thread_run(dsc_thread_psoc_wait, &ctx);
  457. driver_wait_thread = qdf_thread_run(dsc_thread_driver_wait, &ctx);
  458. qdf_thread_join(ops_thread);
  459. qdf_thread_join(vdev_trans_thread);
  460. qdf_thread_join(vdev_wait_thread);
  461. qdf_thread_join(psoc_wait_thread);
  462. qdf_thread_join(driver_wait_thread);
  463. dsc_debug("threads joined");
  464. qdf_event_destroy(&ctx.start_vdev_wait);
  465. qdf_event_destroy(&ctx.start_vdev_trans);
  466. __dsc_tree_destroy(ctx.driver);
  467. exit:
  468. dsc_exit();
  469. return errors;
  470. }
  471. uint32_t dsc_unit_test(void)
  472. {
  473. uint32_t errors = 0;
  474. errors += dsc_test_create_destroy();
  475. errors += dsc_test_driver_trans_blocks();
  476. errors += dsc_test_psoc_trans_blocks();
  477. errors += dsc_test_vdev_trans_blocks();
  478. errors += dsc_test_trans_wait();
  479. return errors;
  480. }