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ptimer-test.c 25 KB

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  1. /*
  2. * QTest testcase for the ptimer
  3. *
  4. * Copyright (c) 2016 Dmitry Osipenko <digetx@gmail.com>
  5. *
  6. * This work is licensed under the terms of the GNU GPL, version 2 or later.
  7. * See the COPYING file in the top-level directory.
  8. *
  9. */
  10. #include "qemu/osdep.h"
  11. #include <glib/gprintf.h>
  12. #include "qemu/main-loop.h"
  13. #include "hw/ptimer.h"
  14. #include "libqtest.h"
  15. #include "ptimer-test.h"
  16. static bool triggered;
  17. static void ptimer_trigger(void *opaque)
  18. {
  19. triggered = true;
  20. }
  21. static void ptimer_test_expire_qemu_timers(int64_t expire_time,
  22. QEMUClockType type)
  23. {
  24. QEMUTimerList *timer_list = main_loop_tlg.tl[type];
  25. QEMUTimer *t = timer_list->active_timers.next;
  26. while (t != NULL) {
  27. if (t->expire_time == expire_time) {
  28. timer_del(t);
  29. if (t->cb != NULL) {
  30. t->cb(t->opaque);
  31. }
  32. }
  33. t = t->next;
  34. }
  35. }
  36. static void ptimer_test_set_qemu_time_ns(int64_t ns)
  37. {
  38. ptimer_test_time_ns = ns;
  39. }
  40. static void qemu_clock_step(uint64_t ns)
  41. {
  42. int64_t deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL,
  43. QEMU_TIMER_ATTR_ALL);
  44. int64_t advanced_time = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + ns;
  45. while (deadline != -1 && deadline <= advanced_time) {
  46. ptimer_test_set_qemu_time_ns(deadline);
  47. ptimer_test_expire_qemu_timers(deadline, QEMU_CLOCK_VIRTUAL);
  48. deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL,
  49. QEMU_TIMER_ATTR_ALL);
  50. }
  51. ptimer_test_set_qemu_time_ns(advanced_time);
  52. }
  53. static void check_set_count(gconstpointer arg)
  54. {
  55. const uint8_t *policy = arg;
  56. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  57. triggered = false;
  58. ptimer_transaction_begin(ptimer);
  59. ptimer_set_count(ptimer, 1000);
  60. ptimer_transaction_commit(ptimer);
  61. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 1000);
  62. g_assert_false(triggered);
  63. ptimer_free(ptimer);
  64. }
  65. static void check_set_limit(gconstpointer arg)
  66. {
  67. const uint8_t *policy = arg;
  68. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  69. triggered = false;
  70. ptimer_transaction_begin(ptimer);
  71. ptimer_set_limit(ptimer, 1000, 0);
  72. ptimer_transaction_commit(ptimer);
  73. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  74. g_assert_cmpuint(ptimer_get_limit(ptimer), ==, 1000);
  75. g_assert_false(triggered);
  76. ptimer_transaction_begin(ptimer);
  77. ptimer_set_limit(ptimer, 2000, 1);
  78. ptimer_transaction_commit(ptimer);
  79. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 2000);
  80. g_assert_cmpuint(ptimer_get_limit(ptimer), ==, 2000);
  81. g_assert_false(triggered);
  82. ptimer_free(ptimer);
  83. }
  84. static void check_oneshot(gconstpointer arg)
  85. {
  86. const uint8_t *policy = arg;
  87. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  88. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  89. triggered = false;
  90. ptimer_transaction_begin(ptimer);
  91. ptimer_set_period(ptimer, 2000000);
  92. ptimer_set_count(ptimer, 10);
  93. ptimer_run(ptimer, 1);
  94. ptimer_transaction_commit(ptimer);
  95. qemu_clock_step(2000000 * 2 + 1);
  96. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 8 : 7);
  97. g_assert_false(triggered);
  98. ptimer_transaction_begin(ptimer);
  99. ptimer_stop(ptimer);
  100. ptimer_transaction_commit(ptimer);
  101. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 8 : 7);
  102. g_assert_false(triggered);
  103. qemu_clock_step(2000000 * 11);
  104. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 8 : 7);
  105. g_assert_false(triggered);
  106. ptimer_transaction_begin(ptimer);
  107. ptimer_run(ptimer, 1);
  108. ptimer_transaction_commit(ptimer);
  109. qemu_clock_step(2000000 * 7 + 1);
  110. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 1 : 0);
  111. if (no_round_down) {
  112. g_assert_false(triggered);
  113. } else {
  114. g_assert_true(triggered);
  115. triggered = false;
  116. }
  117. qemu_clock_step(2000000);
  118. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  119. if (no_round_down) {
  120. g_assert_true(triggered);
  121. triggered = false;
  122. } else {
  123. g_assert_false(triggered);
  124. }
  125. qemu_clock_step(4000000);
  126. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  127. g_assert_false(triggered);
  128. ptimer_transaction_begin(ptimer);
  129. ptimer_set_count(ptimer, 10);
  130. ptimer_transaction_commit(ptimer);
  131. qemu_clock_step(20000000 + 1);
  132. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 10);
  133. g_assert_false(triggered);
  134. ptimer_transaction_begin(ptimer);
  135. ptimer_set_limit(ptimer, 9, 1);
  136. ptimer_transaction_commit(ptimer);
  137. qemu_clock_step(20000000 + 1);
  138. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 9);
  139. g_assert_false(triggered);
  140. ptimer_transaction_begin(ptimer);
  141. ptimer_run(ptimer, 1);
  142. ptimer_transaction_commit(ptimer);
  143. qemu_clock_step(2000000 + 1);
  144. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 8 : 7);
  145. g_assert_false(triggered);
  146. ptimer_transaction_begin(ptimer);
  147. ptimer_set_count(ptimer, 20);
  148. ptimer_transaction_commit(ptimer);
  149. qemu_clock_step(2000000 * 19 + 1);
  150. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 1 : 0);
  151. g_assert_false(triggered);
  152. qemu_clock_step(2000000);
  153. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  154. g_assert_true(triggered);
  155. ptimer_transaction_begin(ptimer);
  156. ptimer_stop(ptimer);
  157. ptimer_transaction_commit(ptimer);
  158. triggered = false;
  159. qemu_clock_step(2000000 * 12 + 1);
  160. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  161. g_assert_false(triggered);
  162. ptimer_free(ptimer);
  163. }
  164. static void check_periodic(gconstpointer arg)
  165. {
  166. const uint8_t *policy = arg;
  167. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  168. bool wrap_policy = (*policy & PTIMER_POLICY_WRAP_AFTER_ONE_PERIOD);
  169. bool no_immediate_trigger = (*policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER);
  170. bool no_immediate_reload = (*policy & PTIMER_POLICY_NO_IMMEDIATE_RELOAD);
  171. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  172. bool trig_only_on_dec = (*policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT);
  173. triggered = false;
  174. ptimer_transaction_begin(ptimer);
  175. ptimer_set_period(ptimer, 2000000);
  176. ptimer_set_limit(ptimer, 10, 1);
  177. ptimer_run(ptimer, 0);
  178. ptimer_transaction_commit(ptimer);
  179. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 10);
  180. g_assert_false(triggered);
  181. qemu_clock_step(1);
  182. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 10 : 9);
  183. g_assert_false(triggered);
  184. qemu_clock_step(2000000 * 10 - 1);
  185. g_assert_cmpuint(ptimer_get_count(ptimer), ==, wrap_policy ? 0 : 10);
  186. g_assert_true(triggered);
  187. qemu_clock_step(1);
  188. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  189. wrap_policy ? 0 : (no_round_down ? 10 : 9));
  190. g_assert_true(triggered);
  191. triggered = false;
  192. qemu_clock_step(2000000);
  193. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  194. (no_round_down ? 9 : 8) + (wrap_policy ? 1 : 0));
  195. g_assert_false(triggered);
  196. ptimer_transaction_begin(ptimer);
  197. ptimer_set_count(ptimer, 20);
  198. ptimer_transaction_commit(ptimer);
  199. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 20);
  200. g_assert_false(triggered);
  201. qemu_clock_step(1);
  202. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 20 : 19);
  203. g_assert_false(triggered);
  204. qemu_clock_step(2000000 * 11 + 1);
  205. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 9 : 8);
  206. g_assert_false(triggered);
  207. qemu_clock_step(2000000 * 10);
  208. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  209. (no_round_down ? 9 : 8) + (wrap_policy ? 1 : 0));
  210. g_assert_true(triggered);
  211. triggered = false;
  212. ptimer_transaction_begin(ptimer);
  213. ptimer_set_count(ptimer, 3);
  214. ptimer_transaction_commit(ptimer);
  215. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 3);
  216. g_assert_false(triggered);
  217. qemu_clock_step(1);
  218. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 3 : 2);
  219. g_assert_false(triggered);
  220. qemu_clock_step(2000000 * 4);
  221. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  222. (no_round_down ? 9 : 8) + (wrap_policy ? 1 : 0));
  223. g_assert_true(triggered);
  224. ptimer_transaction_begin(ptimer);
  225. ptimer_stop(ptimer);
  226. ptimer_transaction_commit(ptimer);
  227. triggered = false;
  228. qemu_clock_step(2000000);
  229. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  230. (no_round_down ? 9 : 8) + (wrap_policy ? 1 : 0));
  231. g_assert_false(triggered);
  232. ptimer_transaction_begin(ptimer);
  233. ptimer_set_count(ptimer, 3);
  234. ptimer_run(ptimer, 0);
  235. ptimer_transaction_commit(ptimer);
  236. qemu_clock_step(2000000 * 3 + 1);
  237. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  238. wrap_policy ? 0 : (no_round_down ? 10 : 9));
  239. g_assert_true(triggered);
  240. triggered = false;
  241. qemu_clock_step(2000000);
  242. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  243. (no_round_down ? 9 : 8) + (wrap_policy ? 1 : 0));
  244. g_assert_false(triggered);
  245. ptimer_transaction_begin(ptimer);
  246. ptimer_set_count(ptimer, 0);
  247. ptimer_transaction_commit(ptimer);
  248. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  249. no_immediate_reload ? 0 : 10);
  250. if (no_immediate_trigger || trig_only_on_dec) {
  251. g_assert_false(triggered);
  252. } else {
  253. g_assert_true(triggered);
  254. }
  255. triggered = false;
  256. qemu_clock_step(1);
  257. if (no_immediate_reload) {
  258. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  259. g_assert_false(triggered);
  260. qemu_clock_step(2000000);
  261. if (no_immediate_trigger) {
  262. g_assert_true(triggered);
  263. } else {
  264. g_assert_false(triggered);
  265. }
  266. triggered = false;
  267. }
  268. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 10 : 9);
  269. g_assert_false(triggered);
  270. qemu_clock_step(2000000 * 12);
  271. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  272. (no_round_down ? 8 : 7) + (wrap_policy ? 1 : 0));
  273. g_assert_true(triggered);
  274. ptimer_transaction_begin(ptimer);
  275. ptimer_stop(ptimer);
  276. ptimer_transaction_commit(ptimer);
  277. triggered = false;
  278. qemu_clock_step(2000000 * 10);
  279. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  280. (no_round_down ? 8 : 7) + (wrap_policy ? 1 : 0));
  281. g_assert_false(triggered);
  282. ptimer_transaction_begin(ptimer);
  283. ptimer_run(ptimer, 0);
  284. ptimer_transaction_commit(ptimer);
  285. ptimer_transaction_begin(ptimer);
  286. ptimer_set_period(ptimer, 0);
  287. ptimer_transaction_commit(ptimer);
  288. qemu_clock_step(2000000 + 1);
  289. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  290. (no_round_down ? 8 : 7) + (wrap_policy ? 1 : 0));
  291. g_assert_false(triggered);
  292. ptimer_free(ptimer);
  293. }
  294. static void check_on_the_fly_mode_change(gconstpointer arg)
  295. {
  296. const uint8_t *policy = arg;
  297. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  298. bool wrap_policy = (*policy & PTIMER_POLICY_WRAP_AFTER_ONE_PERIOD);
  299. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  300. triggered = false;
  301. ptimer_transaction_begin(ptimer);
  302. ptimer_set_period(ptimer, 2000000);
  303. ptimer_set_limit(ptimer, 10, 1);
  304. ptimer_run(ptimer, 1);
  305. ptimer_transaction_commit(ptimer);
  306. qemu_clock_step(2000000 * 9 + 1);
  307. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 1 : 0);
  308. g_assert_false(triggered);
  309. ptimer_transaction_begin(ptimer);
  310. ptimer_run(ptimer, 0);
  311. ptimer_transaction_commit(ptimer);
  312. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 1 : 0);
  313. g_assert_false(triggered);
  314. qemu_clock_step(2000000);
  315. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  316. wrap_policy ? 0 : (no_round_down ? 10 : 9));
  317. g_assert_true(triggered);
  318. triggered = false;
  319. qemu_clock_step(2000000 * 9);
  320. ptimer_transaction_begin(ptimer);
  321. ptimer_run(ptimer, 1);
  322. ptimer_transaction_commit(ptimer);
  323. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  324. (no_round_down ? 1 : 0) + (wrap_policy ? 1 : 0));
  325. g_assert_false(triggered);
  326. qemu_clock_step(2000000 * 3);
  327. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  328. g_assert_true(triggered);
  329. ptimer_free(ptimer);
  330. }
  331. static void check_on_the_fly_period_change(gconstpointer arg)
  332. {
  333. const uint8_t *policy = arg;
  334. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  335. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  336. triggered = false;
  337. ptimer_transaction_begin(ptimer);
  338. ptimer_set_period(ptimer, 2000000);
  339. ptimer_set_limit(ptimer, 8, 1);
  340. ptimer_run(ptimer, 1);
  341. ptimer_transaction_commit(ptimer);
  342. qemu_clock_step(2000000 * 4 + 1);
  343. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 4 : 3);
  344. g_assert_false(triggered);
  345. ptimer_transaction_begin(ptimer);
  346. ptimer_set_period(ptimer, 4000000);
  347. ptimer_transaction_commit(ptimer);
  348. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 4 : 3);
  349. qemu_clock_step(4000000 * 2 + 1);
  350. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 2 : 0);
  351. g_assert_false(triggered);
  352. qemu_clock_step(4000000 * 2);
  353. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  354. g_assert_true(triggered);
  355. ptimer_free(ptimer);
  356. }
  357. static void check_on_the_fly_freq_change(gconstpointer arg)
  358. {
  359. const uint8_t *policy = arg;
  360. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  361. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  362. triggered = false;
  363. ptimer_transaction_begin(ptimer);
  364. ptimer_set_freq(ptimer, 500);
  365. ptimer_set_limit(ptimer, 8, 1);
  366. ptimer_run(ptimer, 1);
  367. ptimer_transaction_commit(ptimer);
  368. qemu_clock_step(2000000 * 4 + 1);
  369. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 4 : 3);
  370. g_assert_false(triggered);
  371. ptimer_transaction_begin(ptimer);
  372. ptimer_set_freq(ptimer, 250);
  373. ptimer_transaction_commit(ptimer);
  374. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 4 : 3);
  375. qemu_clock_step(2000000 * 4 + 1);
  376. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 2 : 0);
  377. g_assert_false(triggered);
  378. qemu_clock_step(2000000 * 4);
  379. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  380. g_assert_true(triggered);
  381. ptimer_free(ptimer);
  382. }
  383. static void check_run_with_period_0(gconstpointer arg)
  384. {
  385. const uint8_t *policy = arg;
  386. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  387. triggered = false;
  388. ptimer_transaction_begin(ptimer);
  389. ptimer_set_count(ptimer, 99);
  390. ptimer_run(ptimer, 1);
  391. ptimer_transaction_commit(ptimer);
  392. qemu_clock_step(10 * NANOSECONDS_PER_SECOND);
  393. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 99);
  394. g_assert_false(triggered);
  395. ptimer_free(ptimer);
  396. }
  397. static void check_run_with_delta_0(gconstpointer arg)
  398. {
  399. const uint8_t *policy = arg;
  400. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  401. bool wrap_policy = (*policy & PTIMER_POLICY_WRAP_AFTER_ONE_PERIOD);
  402. bool no_immediate_trigger = (*policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER);
  403. bool no_immediate_reload = (*policy & PTIMER_POLICY_NO_IMMEDIATE_RELOAD);
  404. bool no_round_down = (*policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN);
  405. bool trig_only_on_dec = (*policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT);
  406. triggered = false;
  407. ptimer_transaction_begin(ptimer);
  408. ptimer_set_period(ptimer, 2000000);
  409. ptimer_set_limit(ptimer, 99, 0);
  410. ptimer_run(ptimer, 1);
  411. ptimer_transaction_commit(ptimer);
  412. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  413. no_immediate_reload ? 0 : 99);
  414. if (no_immediate_trigger || trig_only_on_dec) {
  415. g_assert_false(triggered);
  416. } else {
  417. g_assert_true(triggered);
  418. }
  419. triggered = false;
  420. if (no_immediate_trigger || no_immediate_reload) {
  421. qemu_clock_step(2000000 + 1);
  422. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  423. no_immediate_reload ? 0 : (no_round_down ? 98 : 97));
  424. if (no_immediate_trigger && no_immediate_reload) {
  425. g_assert_true(triggered);
  426. triggered = false;
  427. } else {
  428. g_assert_false(triggered);
  429. }
  430. ptimer_transaction_begin(ptimer);
  431. ptimer_set_count(ptimer, 99);
  432. ptimer_run(ptimer, 1);
  433. ptimer_transaction_commit(ptimer);
  434. }
  435. qemu_clock_step(2000000 + 1);
  436. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 98 : 97);
  437. g_assert_false(triggered);
  438. qemu_clock_step(2000000 * 97);
  439. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 1 : 0);
  440. g_assert_false(triggered);
  441. qemu_clock_step(2000000 * 2);
  442. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  443. g_assert_true(triggered);
  444. triggered = false;
  445. ptimer_transaction_begin(ptimer);
  446. ptimer_set_count(ptimer, 0);
  447. ptimer_run(ptimer, 0);
  448. ptimer_transaction_commit(ptimer);
  449. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  450. no_immediate_reload ? 0 : 99);
  451. if (no_immediate_trigger || trig_only_on_dec) {
  452. g_assert_false(triggered);
  453. } else {
  454. g_assert_true(triggered);
  455. }
  456. triggered = false;
  457. qemu_clock_step(1);
  458. if (no_immediate_reload) {
  459. qemu_clock_step(2000000);
  460. }
  461. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 99 : 98);
  462. if (no_immediate_reload && no_immediate_trigger) {
  463. g_assert_true(triggered);
  464. } else {
  465. g_assert_false(triggered);
  466. }
  467. triggered = false;
  468. qemu_clock_step(2000000);
  469. g_assert_cmpuint(ptimer_get_count(ptimer), ==, no_round_down ? 98 : 97);
  470. g_assert_false(triggered);
  471. qemu_clock_step(2000000 * 98);
  472. g_assert_cmpuint(ptimer_get_count(ptimer), ==,
  473. wrap_policy ? 0 : (no_round_down ? 99 : 98));
  474. g_assert_true(triggered);
  475. ptimer_transaction_begin(ptimer);
  476. ptimer_stop(ptimer);
  477. ptimer_transaction_commit(ptimer);
  478. ptimer_free(ptimer);
  479. }
  480. static void check_periodic_with_load_0(gconstpointer arg)
  481. {
  482. const uint8_t *policy = arg;
  483. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  484. bool continuous_trigger = (*policy & PTIMER_POLICY_CONTINUOUS_TRIGGER);
  485. bool no_immediate_trigger = (*policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER);
  486. bool trig_only_on_dec = (*policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT);
  487. triggered = false;
  488. ptimer_transaction_begin(ptimer);
  489. ptimer_set_period(ptimer, 2000000);
  490. ptimer_run(ptimer, 0);
  491. ptimer_transaction_commit(ptimer);
  492. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  493. if (no_immediate_trigger || trig_only_on_dec) {
  494. g_assert_false(triggered);
  495. } else {
  496. g_assert_true(triggered);
  497. }
  498. triggered = false;
  499. qemu_clock_step(2000000 + 1);
  500. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  501. if (continuous_trigger || no_immediate_trigger) {
  502. g_assert_true(triggered);
  503. } else {
  504. g_assert_false(triggered);
  505. }
  506. triggered = false;
  507. ptimer_transaction_begin(ptimer);
  508. ptimer_set_count(ptimer, 10);
  509. ptimer_run(ptimer, 0);
  510. ptimer_transaction_commit(ptimer);
  511. qemu_clock_step(2000000 * 10 + 1);
  512. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  513. g_assert_true(triggered);
  514. triggered = false;
  515. qemu_clock_step(2000000 + 1);
  516. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  517. if (continuous_trigger) {
  518. g_assert_true(triggered);
  519. } else {
  520. g_assert_false(triggered);
  521. }
  522. ptimer_transaction_begin(ptimer);
  523. ptimer_stop(ptimer);
  524. ptimer_transaction_commit(ptimer);
  525. ptimer_free(ptimer);
  526. }
  527. static void check_oneshot_with_load_0(gconstpointer arg)
  528. {
  529. const uint8_t *policy = arg;
  530. ptimer_state *ptimer = ptimer_init(ptimer_trigger, NULL, *policy);
  531. bool no_immediate_trigger = (*policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER);
  532. bool trig_only_on_dec = (*policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT);
  533. triggered = false;
  534. ptimer_transaction_begin(ptimer);
  535. ptimer_set_period(ptimer, 2000000);
  536. ptimer_run(ptimer, 1);
  537. ptimer_transaction_commit(ptimer);
  538. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  539. if (no_immediate_trigger || trig_only_on_dec) {
  540. g_assert_false(triggered);
  541. } else {
  542. g_assert_true(triggered);
  543. }
  544. triggered = false;
  545. qemu_clock_step(2000000 + 1);
  546. g_assert_cmpuint(ptimer_get_count(ptimer), ==, 0);
  547. if (no_immediate_trigger) {
  548. g_assert_true(triggered);
  549. } else {
  550. g_assert_false(triggered);
  551. }
  552. ptimer_free(ptimer);
  553. }
  554. static void add_ptimer_tests(uint8_t policy)
  555. {
  556. char policy_name[256] = "";
  557. char *tmp;
  558. if (policy == PTIMER_POLICY_DEFAULT) {
  559. g_sprintf(policy_name, "default");
  560. }
  561. if (policy & PTIMER_POLICY_WRAP_AFTER_ONE_PERIOD) {
  562. g_strlcat(policy_name, "wrap_after_one_period,", 256);
  563. }
  564. if (policy & PTIMER_POLICY_CONTINUOUS_TRIGGER) {
  565. g_strlcat(policy_name, "continuous_trigger,", 256);
  566. }
  567. if (policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER) {
  568. g_strlcat(policy_name, "no_immediate_trigger,", 256);
  569. }
  570. if (policy & PTIMER_POLICY_NO_IMMEDIATE_RELOAD) {
  571. g_strlcat(policy_name, "no_immediate_reload,", 256);
  572. }
  573. if (policy & PTIMER_POLICY_NO_COUNTER_ROUND_DOWN) {
  574. g_strlcat(policy_name, "no_counter_rounddown,", 256);
  575. }
  576. if (policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT) {
  577. g_strlcat(policy_name, "trigger_only_on_decrement,", 256);
  578. }
  579. g_test_add_data_func_full(
  580. tmp = g_strdup_printf("/ptimer/set_count policy=%s", policy_name),
  581. g_memdup(&policy, 1), check_set_count, g_free);
  582. g_free(tmp);
  583. g_test_add_data_func_full(
  584. tmp = g_strdup_printf("/ptimer/set_limit policy=%s", policy_name),
  585. g_memdup(&policy, 1), check_set_limit, g_free);
  586. g_free(tmp);
  587. g_test_add_data_func_full(
  588. tmp = g_strdup_printf("/ptimer/oneshot policy=%s", policy_name),
  589. g_memdup(&policy, 1), check_oneshot, g_free);
  590. g_free(tmp);
  591. g_test_add_data_func_full(
  592. tmp = g_strdup_printf("/ptimer/periodic policy=%s", policy_name),
  593. g_memdup(&policy, 1), check_periodic, g_free);
  594. g_free(tmp);
  595. g_test_add_data_func_full(
  596. tmp = g_strdup_printf("/ptimer/on_the_fly_mode_change policy=%s",
  597. policy_name),
  598. g_memdup(&policy, 1), check_on_the_fly_mode_change, g_free);
  599. g_free(tmp);
  600. g_test_add_data_func_full(
  601. tmp = g_strdup_printf("/ptimer/on_the_fly_period_change policy=%s",
  602. policy_name),
  603. g_memdup(&policy, 1), check_on_the_fly_period_change, g_free);
  604. g_free(tmp);
  605. g_test_add_data_func_full(
  606. tmp = g_strdup_printf("/ptimer/on_the_fly_freq_change policy=%s",
  607. policy_name),
  608. g_memdup(&policy, 1), check_on_the_fly_freq_change, g_free);
  609. g_free(tmp);
  610. g_test_add_data_func_full(
  611. tmp = g_strdup_printf("/ptimer/run_with_period_0 policy=%s",
  612. policy_name),
  613. g_memdup(&policy, 1), check_run_with_period_0, g_free);
  614. g_free(tmp);
  615. g_test_add_data_func_full(
  616. tmp = g_strdup_printf("/ptimer/run_with_delta_0 policy=%s",
  617. policy_name),
  618. g_memdup(&policy, 1), check_run_with_delta_0, g_free);
  619. g_free(tmp);
  620. g_test_add_data_func_full(
  621. tmp = g_strdup_printf("/ptimer/periodic_with_load_0 policy=%s",
  622. policy_name),
  623. g_memdup(&policy, 1), check_periodic_with_load_0, g_free);
  624. g_free(tmp);
  625. g_test_add_data_func_full(
  626. tmp = g_strdup_printf("/ptimer/oneshot_with_load_0 policy=%s",
  627. policy_name),
  628. g_memdup(&policy, 1), check_oneshot_with_load_0, g_free);
  629. g_free(tmp);
  630. }
  631. static void add_all_ptimer_policies_comb_tests(void)
  632. {
  633. int last_policy = PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT;
  634. int policy = PTIMER_POLICY_DEFAULT;
  635. for (; policy < (last_policy << 1); policy++) {
  636. if ((policy & PTIMER_POLICY_TRIGGER_ONLY_ON_DECREMENT) &&
  637. (policy & PTIMER_POLICY_NO_IMMEDIATE_TRIGGER)) {
  638. /* Incompatible policy flag settings -- don't try to test them */
  639. continue;
  640. }
  641. add_ptimer_tests(policy);
  642. }
  643. }
  644. int main(int argc, char **argv)
  645. {
  646. int i;
  647. g_test_init(&argc, &argv, NULL);
  648. for (i = 0; i < QEMU_CLOCK_MAX; i++) {
  649. main_loop_tlg.tl[i] = g_new0(QEMUTimerList, 1);
  650. }
  651. add_all_ptimer_policies_comb_tests();
  652. qtest_allowed = true;
  653. return g_test_run();
  654. }