test_event.c 70 KB

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  1. #include <stdbool.h>
  2. #include <string.h>
  3. #include "esp_event.h"
  4. #include "sdkconfig.h"
  5. #include "freertos/FreeRTOS.h"
  6. #include "freertos/task.h"
  7. #include "esp_log.h"
  8. #include "driver/gptimer.h"
  9. #include "esp_event.h"
  10. #include "esp_event_private.h"
  11. #include "esp_event_internal.h"
  12. #include "esp_heap_caps.h"
  13. #include "esp_timer.h"
  14. #include "sdkconfig.h"
  15. #include "unity.h"
  16. #include "test_utils.h"
  17. static const char* TAG = "test_event";
  18. #define TEST_CONFIG_ITEMS_TO_REGISTER 5
  19. #define TEST_CONFIG_TASKS_TO_SPAWN 2
  20. #define TEST_CONFIG_WAIT_MULTIPLIER 5
  21. // The initial logging "initializing test" is to ensure mutex allocation is not counted against memory not being freed
  22. // during teardown.
  23. #define TEST_SETUP() \
  24. ESP_LOGI(TAG, "initializing test"); \
  25. size_t free_mem_before = heap_caps_get_free_size(MALLOC_CAP_DEFAULT); \
  26. test_setup(); \
  27. s_test_core_id = xPortGetCoreID(); \
  28. s_test_priority = uxTaskPriorityGet(NULL);
  29. #define TEST_TEARDOWN() \
  30. test_teardown(); \
  31. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER)); \
  32. TEST_ASSERT_EQUAL(free_mem_before, heap_caps_get_free_size(MALLOC_CAP_DEFAULT));
  33. typedef struct {
  34. void* data;
  35. SemaphoreHandle_t start;
  36. SemaphoreHandle_t done;
  37. } task_arg_t;
  38. typedef struct {
  39. esp_event_base_t base;
  40. int32_t id;
  41. esp_event_handler_t* handles;
  42. int32_t num;
  43. esp_event_loop_handle_t loop;
  44. bool is_registration;
  45. } handler_registration_data_t;
  46. typedef struct {
  47. esp_event_base_t base;
  48. int32_t id;
  49. esp_event_loop_handle_t loop;
  50. int32_t num;
  51. } post_event_data_t;
  52. typedef struct {
  53. int performed;
  54. int expected;
  55. SemaphoreHandle_t done;
  56. } performance_data_t;
  57. typedef struct {
  58. void* data;
  59. SemaphoreHandle_t mutex;
  60. } simple_arg_t;
  61. typedef struct {
  62. esp_event_handler_instance_t *context;
  63. void* data;
  64. } instance_unregister_data_t;
  65. typedef struct {
  66. int *arr;
  67. int index;
  68. } ordered_data_t;
  69. static BaseType_t s_test_core_id;
  70. static UBaseType_t s_test_priority;
  71. ESP_EVENT_DECLARE_BASE(s_test_base1);
  72. ESP_EVENT_DECLARE_BASE(s_test_base2);
  73. ESP_EVENT_DEFINE_BASE(s_test_base1);
  74. ESP_EVENT_DEFINE_BASE(s_test_base2);
  75. enum {
  76. TEST_EVENT_BASE1_EV1,
  77. TEST_EVENT_BASE1_EV2,
  78. TEST_EVENT_BASE1_MAX
  79. };
  80. enum {
  81. TEST_EVENT_BASE2_EV1,
  82. TEST_EVENT_BASE2_EV2,
  83. TEST_EVENT_BASE2_MAX
  84. };
  85. static BaseType_t test_event_get_core(void)
  86. {
  87. static int calls = 0;
  88. if (portNUM_PROCESSORS > 1) {
  89. return (s_test_core_id + calls++) % portNUM_PROCESSORS;
  90. } else {
  91. return s_test_core_id;
  92. }
  93. }
  94. static esp_event_loop_args_t test_event_get_default_loop_args(void)
  95. {
  96. esp_event_loop_args_t loop_config = {
  97. .queue_size = CONFIG_ESP_SYSTEM_EVENT_QUEUE_SIZE,
  98. .task_name = "loop",
  99. .task_priority = s_test_priority,
  100. .task_stack_size = 2048,
  101. .task_core_id = test_event_get_core()
  102. };
  103. return loop_config;
  104. }
  105. static void test_event_simple_handler(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  106. {
  107. if (!event_handler_arg) {
  108. return;
  109. }
  110. simple_arg_t* arg = (simple_arg_t*) event_handler_arg;
  111. xSemaphoreTake(arg->mutex, portMAX_DELAY);
  112. int* count = (int*) arg->data;
  113. if (event_data == NULL) {
  114. (*count)++;
  115. } else {
  116. (*count) += *((int*) event_data);
  117. }
  118. xSemaphoreGive(arg->mutex);
  119. }
  120. static void test_event_ordered_dispatch(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  121. {
  122. int *arg = (int*) event_handler_arg;
  123. ordered_data_t *data = *((ordered_data_t**) (event_data));
  124. data->arr[data->index++] = *arg;
  125. }
  126. static void test_event_performance_handler(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  127. {
  128. performance_data_t* data = (performance_data_t*) event_handler_arg;
  129. data->performed++;
  130. if (data->performed >= data->expected) {
  131. xSemaphoreGive(data->done);
  132. }
  133. }
  134. static void test_event_post_task(void* args)
  135. {
  136. task_arg_t* arg = (task_arg_t*) args;
  137. post_event_data_t* data = arg->data;
  138. xSemaphoreTake(arg->start, portMAX_DELAY);
  139. for (int i = 0; i < data->num; i++) {
  140. TEST_ESP_OK(esp_event_post_to(data->loop, data->base, data->id, NULL, 0, portMAX_DELAY));
  141. vTaskDelay(1);
  142. }
  143. xSemaphoreGive(arg->done);
  144. vTaskDelete(NULL);
  145. }
  146. static void test_event_simple_handler_registration_task(void* args)
  147. {
  148. task_arg_t* arg = (task_arg_t*) args;
  149. handler_registration_data_t* data = (handler_registration_data_t*) arg->data;
  150. xSemaphoreTake(arg->start, portMAX_DELAY);
  151. for(int i = 0; i < data->num; i++) {
  152. if (data->is_registration) {
  153. TEST_ESP_OK(esp_event_handler_register_with(data->loop, data->base, data->id, data->handles[i], NULL));
  154. } else {
  155. TEST_ESP_OK(esp_event_handler_unregister_with(data->loop, data->base, data->id, data->handles[i]));
  156. }
  157. vTaskDelay(1);
  158. }
  159. xSemaphoreGive(arg->done);
  160. vTaskDelete(NULL);
  161. }
  162. static void test_handler_post_w_task(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  163. {
  164. simple_arg_t* arg = (simple_arg_t*) event_handler_arg;
  165. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_data;
  166. int* count = (int*) arg->data;
  167. (*count)++;
  168. if (*count <= 2) {
  169. if (event_base == s_test_base1 && event_id == TEST_EVENT_BASE1_EV1) {
  170. TEST_ESP_OK(esp_event_post_to(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  171. } else{
  172. xSemaphoreGive((SemaphoreHandle_t) arg->mutex);
  173. }
  174. } else {
  175. // Test that once the queue is full and the handler attempts to post to the same loop,
  176. // posting does not block indefinitely.
  177. if (event_base == s_test_base1 && event_id == TEST_EVENT_BASE1_EV1) {
  178. xSemaphoreTake((SemaphoreHandle_t) arg->mutex, portMAX_DELAY);
  179. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  180. }
  181. }
  182. }
  183. static void test_handler_post_wo_task(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  184. {
  185. simple_arg_t* arg = (simple_arg_t*) event_handler_arg;
  186. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_data;
  187. int* count = (int*) arg->data;
  188. (*count)++;
  189. if (*count <= 2) {
  190. if (event_base == s_test_base1 && event_id == TEST_EVENT_BASE1_EV1) {
  191. TEST_ESP_OK(esp_event_post_to(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  192. } else{
  193. xSemaphoreGive((SemaphoreHandle_t) arg->mutex);
  194. }
  195. } else {
  196. // Test that once the queue is full and the handler attempts to post to the same loop,
  197. // posting does not block indefinitely.
  198. if (event_base == s_test_base1 && event_id == TEST_EVENT_BASE1_EV1) {
  199. xSemaphoreTake((SemaphoreHandle_t) arg->mutex, portMAX_DELAY);
  200. TEST_ESP_OK(esp_event_post_to(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  201. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  202. }
  203. }
  204. }
  205. static void test_handler_unregister_itself(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  206. {
  207. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_data;
  208. int* unregistered = (int*) event_handler_arg;
  209. (*unregistered) += (event_base == s_test_base1 ? 0 : 10) + event_id + 1;
  210. // Unregister this handler for this event
  211. TEST_ESP_OK(esp_event_handler_unregister_with(*loop, event_base, event_id, test_handler_unregister_itself));
  212. }
  213. static void test_handler_instance_unregister_itself(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  214. {
  215. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_data;
  216. instance_unregister_data_t *unregister_data = (instance_unregister_data_t*) event_handler_arg;
  217. esp_event_handler_instance_t *context = (esp_event_handler_instance_t*) unregister_data->context;
  218. int *count = (int*) unregister_data->data;
  219. (*count)++;
  220. // Unregister this handler for this event
  221. TEST_ESP_OK(esp_event_handler_instance_unregister_with(*loop, event_base, event_id, *context));
  222. }
  223. static void test_post_from_handler_loop_task(void* args)
  224. {
  225. esp_event_loop_handle_t event_loop = (esp_event_loop_handle_t) args;
  226. while(1) {
  227. TEST_ESP_OK(esp_event_loop_run(event_loop, portMAX_DELAY));
  228. }
  229. }
  230. static void test_setup(void)
  231. {
  232. TEST_ASSERT_TRUE(TEST_CONFIG_TASKS_TO_SPAWN >= 2);
  233. TEST_ESP_OK(esp_event_loop_create_default());
  234. }
  235. static void test_teardown(void)
  236. {
  237. TEST_ESP_OK(esp_event_loop_delete_default());
  238. }
  239. TEST_CASE("can create and delete event loops", "[event]")
  240. {
  241. /* this test aims to verify that:
  242. * - creating loops with and without a task succeeds
  243. * - event queue can accomodate the set queue size, and drops the post when exceeded
  244. * - deleting loops with unconsumed posts and unregistered handlers (when unregistration is enabled) does not leak memory */
  245. TEST_SETUP();
  246. esp_event_loop_handle_t loop1; // with dedicated task
  247. esp_event_loop_handle_t loop2; // without dedicated task
  248. esp_event_loop_handle_t loop3; // with leftover post and handlers
  249. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  250. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop1));
  251. loop_args.task_name = NULL;
  252. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop2));
  253. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop3));
  254. TEST_ESP_OK(esp_event_handler_register_with(loop3, s_test_base1, TEST_EVENT_BASE1_EV1, (void*) 0x00000001, NULL));
  255. TEST_ESP_OK(esp_event_handler_register_with(loop3, s_test_base1, TEST_EVENT_BASE1_EV2, (void*) 0x00000002, NULL));
  256. TEST_ESP_OK(esp_event_handler_register_with(loop3, s_test_base2, TEST_EVENT_BASE1_EV1, (void*) 0x00000003, NULL));
  257. for (int i = 0; i < loop_args.queue_size; i++) {
  258. int mod = i % 4;
  259. switch(mod) {
  260. case 0:
  261. TEST_ESP_OK(esp_event_post_to(loop3, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  262. break;
  263. case 1:
  264. TEST_ESP_OK(esp_event_post_to(loop3, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  265. break;
  266. case 2:
  267. TEST_ESP_OK(esp_event_post_to(loop3, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  268. break;
  269. case 3:
  270. TEST_ESP_OK(esp_event_post_to(loop3, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  271. break;
  272. default:
  273. break;
  274. }
  275. }
  276. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(loop3, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, pdMS_TO_TICKS(10)));
  277. TEST_ESP_OK(esp_event_loop_delete(loop1));
  278. TEST_ESP_OK(esp_event_loop_delete(loop2));
  279. TEST_ESP_OK(esp_event_loop_delete(loop3));
  280. TEST_TEARDOWN();
  281. }
  282. TEST_CASE("registering event handler instance without instance context works", "[event]") {
  283. TEST_SETUP();
  284. esp_event_loop_handle_t loop;
  285. int count_1 = 0;
  286. simple_arg_t arg_1 = {
  287. .data = &count_1,
  288. .mutex = xSemaphoreCreateMutex()
  289. };
  290. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  291. loop_args.task_name = NULL;
  292. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  293. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg_1, NULL));
  294. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  295. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  296. TEST_ASSERT_EQUAL(1, count_1);
  297. TEST_ESP_OK(esp_event_loop_delete(loop));
  298. vSemaphoreDelete(arg_1.mutex);
  299. TEST_TEARDOWN();
  300. }
  301. TEST_CASE("registering event twice with same handler yields updated handler arg", "[event]") {
  302. TEST_SETUP();
  303. esp_event_loop_handle_t loop;
  304. int count = 0;
  305. simple_arg_t arg = {
  306. .data = &count,
  307. .mutex = xSemaphoreCreateMutex()
  308. };
  309. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  310. loop_args.task_name = NULL;
  311. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  312. /* Register the handler twice to the same base and id but with a different argument (expects to return ESP_OK and log a warning)
  313. * This aims to verify: 1) Handler's argument to be updated
  314. * 2) Registration not to leak memory
  315. */
  316. TEST_ESP_OK(esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, NULL));
  317. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  318. // exec loop, no handler data: count stays 0
  319. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  320. TEST_ASSERT_EQUAL(0, count);
  321. // overriding the former registration of the same event
  322. TEST_ESP_OK(esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg));
  323. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  324. // exec loop, registered handler data exists: count increases
  325. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  326. TEST_ASSERT_EQUAL(1, count);
  327. TEST_ESP_OK(esp_event_loop_delete(loop));
  328. vSemaphoreDelete(arg.mutex);
  329. TEST_TEARDOWN();
  330. }
  331. TEST_CASE("registering event handler instance twice works", "[event]") {
  332. TEST_SETUP();
  333. esp_event_loop_handle_t loop;
  334. int count_1 = 0;
  335. int count_2 = 0;
  336. simple_arg_t arg_1 = {
  337. .data = &count_1,
  338. .mutex = xSemaphoreCreateMutex()
  339. };
  340. simple_arg_t arg_2 = {
  341. .data = &count_2,
  342. .mutex = xSemaphoreCreateMutex()
  343. };
  344. esp_event_handler_instance_t ctx_1;
  345. esp_event_handler_instance_t ctx_2;
  346. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  347. loop_args.task_name = NULL;
  348. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  349. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg_1, &ctx_1));
  350. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg_2, &ctx_2));
  351. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  352. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  353. TEST_ASSERT_EQUAL(1, count_1);
  354. TEST_ASSERT_EQUAL(1, count_2);
  355. TEST_ESP_OK(esp_event_loop_delete(loop));
  356. vSemaphoreDelete(arg_1.mutex);
  357. vSemaphoreDelete(arg_2.mutex);
  358. TEST_TEARDOWN();
  359. }
  360. TEST_CASE("registering with ANY_BASE but specific ID fails", "[event]") {
  361. TEST_SETUP();
  362. esp_event_loop_handle_t loop;
  363. int count = 0;
  364. simple_arg_t arg = {
  365. .data = &count,
  366. .mutex = xSemaphoreCreateMutex()
  367. };
  368. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  369. loop_args.task_name = NULL;
  370. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  371. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  372. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  373. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  374. TEST_ASSERT_EQUAL(0, count);
  375. TEST_ESP_OK(esp_event_loop_delete(loop));
  376. vSemaphoreDelete(arg.mutex);
  377. TEST_TEARDOWN();
  378. }
  379. TEST_CASE("registering instance with ANY_BASE but specific ID fails", "[event]") {
  380. TEST_SETUP();
  381. esp_event_loop_handle_t loop;
  382. int count = 0;
  383. esp_event_handler_instance_t ctx;
  384. simple_arg_t arg = {
  385. .data = &count,
  386. .mutex = xSemaphoreCreateMutex()
  387. };
  388. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  389. loop_args.task_name = NULL;
  390. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  391. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_handler_instance_register_with(loop, ESP_EVENT_ANY_BASE, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg, &ctx));
  392. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  393. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  394. TEST_ASSERT_EQUAL(0, count);
  395. TEST_ESP_OK(esp_event_loop_delete(loop));
  396. vSemaphoreDelete(arg.mutex);
  397. TEST_TEARDOWN();
  398. }
  399. TEST_CASE("Check registering ANY_ID", "[event]") {
  400. TEST_SETUP();
  401. esp_event_loop_handle_t loop;
  402. int count = 0;
  403. simple_arg_t arg = {
  404. .data = &count,
  405. .mutex = xSemaphoreCreateMutex()
  406. };
  407. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  408. loop_args.task_name = NULL;
  409. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  410. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg));
  411. // handler shouldn't be triggered with different base
  412. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  413. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  414. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  415. TEST_ASSERT_EQUAL(0, count);
  416. // for all events with correct base, it should be triggered
  417. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  418. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  419. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  420. TEST_ASSERT_EQUAL(2, count);
  421. TEST_ESP_OK(esp_event_loop_delete(loop));
  422. vSemaphoreDelete(arg.mutex);
  423. TEST_TEARDOWN();
  424. }
  425. TEST_CASE("Check registering instance with ANY_ID", "[event]") {
  426. TEST_SETUP();
  427. esp_event_loop_handle_t loop;
  428. int count = 0;
  429. simple_arg_t arg = {
  430. .data = &count,
  431. .mutex = xSemaphoreCreateMutex()
  432. };
  433. esp_event_handler_instance_t ctx;
  434. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  435. loop_args.task_name = NULL;
  436. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  437. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg, &ctx));
  438. // handler shouldn't be triggered with different base
  439. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  440. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  441. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  442. TEST_ASSERT_EQUAL(0, count);
  443. // for all events with correct base, it should be triggered
  444. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  445. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  446. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  447. TEST_ASSERT_EQUAL(2, count);
  448. TEST_ESP_OK(esp_event_loop_delete(loop));
  449. vSemaphoreDelete(arg.mutex);
  450. TEST_TEARDOWN();
  451. }
  452. TEST_CASE("Check registering specific event", "[event]") {
  453. TEST_SETUP();
  454. esp_event_loop_handle_t loop;
  455. int count = 0;
  456. simple_arg_t arg = {
  457. .data = &count,
  458. .mutex = xSemaphoreCreateMutex()
  459. };
  460. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  461. loop_args.task_name = NULL;
  462. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  463. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  464. // handler should not be triggered with different base
  465. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  466. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  467. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  468. TEST_ASSERT_EQUAL(0, count);
  469. // for incorrect id, it should not be triggered
  470. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  471. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  472. TEST_ASSERT_EQUAL(0, count);
  473. // for correct event and base, it should be triggered
  474. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  475. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  476. TEST_ASSERT_EQUAL(1, count);
  477. TEST_ESP_OK(esp_event_loop_delete(loop));
  478. vSemaphoreDelete(arg.mutex);
  479. TEST_TEARDOWN();
  480. }
  481. TEST_CASE("Check registering instance with specific event", "[event]") {
  482. TEST_SETUP();
  483. esp_event_loop_handle_t loop;
  484. int count = 0;
  485. simple_arg_t arg = {
  486. .data = &count,
  487. .mutex = xSemaphoreCreateMutex()
  488. };
  489. esp_event_handler_instance_t ctx;
  490. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  491. loop_args.task_name = NULL;
  492. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  493. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg, &ctx));
  494. // handler should not be triggered with different base
  495. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  496. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  497. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  498. TEST_ASSERT_EQUAL(0, count);
  499. // for incorrect id, it should not be triggered
  500. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  501. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  502. TEST_ASSERT_EQUAL(0, count);
  503. // for correct event and base, it should be triggered
  504. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  505. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  506. TEST_ASSERT_EQUAL(1, count);
  507. TEST_ESP_OK(esp_event_loop_delete(loop));
  508. vSemaphoreDelete(arg.mutex);
  509. TEST_TEARDOWN();
  510. }
  511. TEST_CASE("Specific event is not called when no correct events are posted", "[event]") {
  512. TEST_SETUP();
  513. esp_event_loop_handle_t loop;
  514. int count = 0;
  515. simple_arg_t arg = {
  516. .data = &count,
  517. .mutex = xSemaphoreCreateMutex()
  518. };
  519. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  520. loop_args.task_name = NULL;
  521. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  522. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  523. // handler should not be triggered by any of these postings
  524. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  525. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  526. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  527. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  528. TEST_ASSERT_EQUAL(0, count);
  529. // Post unknown events.
  530. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_MAX, NULL, 0, portMAX_DELAY));
  531. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_MAX, NULL, 0, portMAX_DELAY));
  532. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  533. TEST_ASSERT_EQUAL(0, count);
  534. TEST_ESP_OK(esp_event_loop_delete(loop));
  535. vSemaphoreDelete(arg.mutex);
  536. TEST_TEARDOWN();
  537. }
  538. TEST_CASE("Specific event instance is not called when no correct events are posted", "[event]") {
  539. TEST_SETUP();
  540. esp_event_loop_handle_t loop;
  541. int count = 0;
  542. simple_arg_t arg = {
  543. .data = &count,
  544. .mutex = xSemaphoreCreateMutex()
  545. };
  546. esp_event_handler_instance_t ctx;
  547. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  548. loop_args.task_name = NULL;
  549. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  550. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg, &ctx));
  551. // handler should not be triggered by any of these postings
  552. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  553. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  554. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  555. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  556. TEST_ASSERT_EQUAL(0, count);
  557. // Post unknown events.
  558. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_MAX, NULL, 0, portMAX_DELAY));
  559. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_MAX, NULL, 0, portMAX_DELAY));
  560. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  561. TEST_ASSERT_EQUAL(0, count);
  562. TEST_ESP_OK(esp_event_loop_delete(loop));
  563. vSemaphoreDelete(arg.mutex);
  564. TEST_TEARDOWN();
  565. }
  566. TEST_CASE("can register/unregister handlers for all events/all events for a specific base", "[event]")
  567. {
  568. /* this test aims to verify that handlers can be registered to be called on all events
  569. * or for all events with specific bases */
  570. TEST_SETUP();
  571. esp_event_loop_handle_t loop;
  572. int count = 0;
  573. simple_arg_t arg = {
  574. .data = &count,
  575. .mutex = xSemaphoreCreateMutex()
  576. };
  577. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  578. loop_args.task_name = NULL;
  579. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  580. /* Register the handler twice to the same base and id but with a different argument (expects to return ESP_OK and log a warning)
  581. * This aims to verify: 1) Handler's argument to be updated
  582. * 2) Registration not to leak memory
  583. */
  584. TEST_ESP_OK(esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, NULL));
  585. TEST_ESP_OK(esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg));
  586. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, ESP_EVENT_ANY_ID, test_event_simple_handler, &arg));
  587. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  588. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  589. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler, &arg));
  590. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  591. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, NULL, 0, portMAX_DELAY));
  592. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, s_test_base1, ESP_EVENT_ANY_ID, NULL, 0, portMAX_DELAY));
  593. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, ESP_EVENT_ANY_BASE, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  594. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY)); // exec loop, base and id level (+3)
  595. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY)); // exec loop, base and id level (+3)
  596. // Post unknown events. Respective loop level and base level handlers should still execute.
  597. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_MAX, NULL, 0, portMAX_DELAY)); // exec loop and base level (+2)
  598. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_MAX, NULL, 0, portMAX_DELAY)); // exec loop level (+1)
  599. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  600. TEST_ASSERT_EQUAL(9, count); // 3 + 3 + 2 + 1
  601. TEST_ESP_OK(esp_event_loop_delete(loop));
  602. vSemaphoreDelete(arg.mutex);
  603. TEST_TEARDOWN();
  604. }
  605. TEST_CASE("can unregister handler", "[event]")
  606. {
  607. /* this test aims to verify that unregistered handlers no longer execute when events are raised */
  608. TEST_SETUP();
  609. esp_event_loop_handle_t loop;
  610. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  611. loop_args.task_name = NULL;
  612. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  613. int count = 0;
  614. simple_arg_t arg = {
  615. .data = &count,
  616. .mutex = xSemaphoreCreateMutex()
  617. };
  618. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  619. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  620. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  621. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  622. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  623. TEST_ASSERT_EQUAL(2, count);
  624. TEST_ESP_OK(esp_event_handler_unregister_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler));
  625. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  626. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  627. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  628. TEST_ASSERT_EQUAL(3, count);
  629. TEST_ESP_OK(esp_event_loop_delete(loop));
  630. vSemaphoreDelete(arg.mutex);
  631. TEST_TEARDOWN();
  632. }
  633. TEST_CASE("can unregister handler instance", "[event]")
  634. {
  635. /* this test aims to verify that unregistered handlers no longer execute when events are raised */
  636. TEST_SETUP();
  637. esp_event_loop_handle_t loop;
  638. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  639. loop_args.task_name = NULL;
  640. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  641. int count = 0;
  642. simple_arg_t arg = {
  643. .data = &count,
  644. .mutex = xSemaphoreCreateMutex()
  645. };
  646. esp_event_handler_instance_t ctx;
  647. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg, &ctx));
  648. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  649. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  650. TEST_ASSERT_EQUAL(1, count);
  651. TEST_ESP_OK(esp_event_handler_instance_unregister_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, ctx));
  652. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  653. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  654. TEST_ASSERT_EQUAL(1, count);
  655. TEST_ESP_OK(esp_event_loop_delete(loop));
  656. vSemaphoreDelete(arg.mutex);
  657. TEST_TEARDOWN();
  658. }
  659. TEST_CASE("handler can unregister itself", "[event]")
  660. {
  661. /* this test aims to verify that handlers can unregister themselves */
  662. TEST_SETUP();
  663. esp_event_loop_handle_t loop;
  664. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  665. loop_args.task_name = NULL;
  666. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  667. int unregistered = 0;
  668. /*
  669. * s_test_base1, ev1 = 1
  670. * s_test_base1, ev2 = 2
  671. * s_test_base2, ev1 = 11
  672. * s_test_base2, ev2 = 12
  673. */
  674. int expected_unregistered = 0;
  675. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_unregister_itself, &unregistered));
  676. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_handler_unregister_itself, &unregistered));
  677. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE2_EV1, test_handler_unregister_itself, &unregistered));
  678. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE2_EV2, test_handler_unregister_itself, &unregistered));
  679. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, &loop, sizeof(loop), portMAX_DELAY));
  680. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  681. expected_unregistered = 2; // base1, ev2
  682. TEST_ASSERT_EQUAL(expected_unregistered, unregistered);
  683. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &loop, sizeof(loop), portMAX_DELAY));
  684. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_EV1, &loop, sizeof(loop), portMAX_DELAY));
  685. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  686. expected_unregistered += 1 + 11; // base1, ev1 + base2, ev1
  687. TEST_ASSERT_EQUAL(expected_unregistered, unregistered);
  688. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_EV2, &loop, sizeof(loop), portMAX_DELAY));
  689. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  690. expected_unregistered += 12; // base2, ev2
  691. TEST_ASSERT_EQUAL(expected_unregistered, unregistered);
  692. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &loop, sizeof(loop), portMAX_DELAY));
  693. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, &loop, sizeof(loop), portMAX_DELAY));
  694. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_EV1, &loop, sizeof(loop), portMAX_DELAY));
  695. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_EV2, &loop, sizeof(loop), portMAX_DELAY));
  696. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  697. TEST_ASSERT_EQUAL(expected_unregistered, unregistered); // all handlers unregistered
  698. TEST_ESP_OK(esp_event_loop_delete(loop));
  699. TEST_TEARDOWN();
  700. }
  701. TEST_CASE("handler instance can unregister itself", "[event]")
  702. {
  703. /* this test aims to verify that handlers can unregister themselves */
  704. TEST_SETUP();
  705. esp_event_loop_handle_t loop;
  706. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  707. loop_args.task_name = NULL;
  708. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  709. esp_event_handler_instance_t ctx;
  710. int count = 0;
  711. instance_unregister_data_t instance_data = {
  712. .context = &ctx,
  713. .data = &count
  714. };
  715. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_instance_unregister_itself, &instance_data, &ctx));
  716. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &loop, sizeof(loop), portMAX_DELAY));
  717. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  718. TEST_ASSERT_EQUAL(1, count);
  719. vTaskDelay(1000);
  720. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &loop, sizeof(loop), portMAX_DELAY));
  721. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  722. TEST_ASSERT_EQUAL(1, count);
  723. TEST_ESP_OK(esp_event_loop_delete(loop));
  724. TEST_TEARDOWN();
  725. }
  726. TEST_CASE("can exit running loop at approximately the set amount of time", "[event]")
  727. {
  728. /* this test aims to verify that running loop does not block indefinitely in cases where
  729. * events are posted frequently */
  730. TEST_SETUP();
  731. esp_event_loop_handle_t loop;
  732. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  733. loop_args.task_name = NULL;
  734. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  735. performance_data_t handler_data = {
  736. .performed = 0,
  737. .expected = INT32_MAX,
  738. .done = xSemaphoreCreateBinary()
  739. };
  740. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_performance_handler, &handler_data));
  741. post_event_data_t post_event_data = {
  742. .base = s_test_base1,
  743. .id = TEST_EVENT_BASE1_EV1,
  744. .loop = loop,
  745. .num = INT32_MAX
  746. };
  747. task_arg_t post_event_arg = {
  748. .data = &post_event_data,
  749. .done = xSemaphoreCreateBinary(),
  750. .start = xSemaphoreCreateBinary()
  751. };
  752. TaskHandle_t post_task;
  753. xTaskCreatePinnedToCore(test_event_post_task, "post", 2048, &post_event_arg, s_test_priority, &post_task, test_event_get_core());
  754. int runtime_ms = 10;
  755. int runtime_us = runtime_ms * 1000;
  756. int64_t start, diff;
  757. start = esp_timer_get_time();
  758. xSemaphoreGive(post_event_arg.start);
  759. // Run the loop for the runtime_ms set amount of time, regardless of whether events
  760. // are still being posted to the loop.
  761. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(runtime_ms)));
  762. diff = (esp_timer_get_time() - start);
  763. // Threshold is 25 percent.
  764. TEST_ASSERT(diff < runtime_us * 1.25f);
  765. // Verify that the post task still continues
  766. TEST_ASSERT_NOT_EQUAL(pdTRUE, xSemaphoreTake(post_event_arg.done, pdMS_TO_TICKS(10)));
  767. vSemaphoreDelete(post_event_arg.done);
  768. vSemaphoreDelete(post_event_arg.start);
  769. vSemaphoreDelete(handler_data.done);
  770. vTaskDelete(post_task);
  771. TEST_ESP_OK(esp_event_loop_delete(loop));
  772. TEST_TEARDOWN();
  773. }
  774. TEST_CASE("can register/unregister handlers simultaneously", "[event]")
  775. {
  776. /* this test aims to verify that the event handlers list remains consistent despite
  777. * simultaneous access by differenct tasks */
  778. TEST_SETUP();
  779. const char* base = "base";
  780. int32_t id = 0;
  781. esp_event_loop_handle_t loop;
  782. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  783. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  784. ESP_LOGI(TAG, "registering handlers");
  785. handler_registration_data_t* registration_data = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*registration_data));
  786. task_arg_t* registration_arg = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*registration_arg));
  787. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  788. registration_data[i].base = base;
  789. registration_data[i].id = id;
  790. registration_data[i].loop = loop;
  791. registration_data[i].handles = calloc(TEST_CONFIG_ITEMS_TO_REGISTER, sizeof(esp_event_handler_t));
  792. registration_data[i].num = TEST_CONFIG_ITEMS_TO_REGISTER;
  793. registration_data[i].is_registration = true;
  794. for (int j = 0; j < TEST_CONFIG_ITEMS_TO_REGISTER; j++) {
  795. registration_data[i].handles[j] = (void*) (i * TEST_CONFIG_ITEMS_TO_REGISTER) + (j + TEST_CONFIG_ITEMS_TO_REGISTER);
  796. }
  797. registration_arg[i].start = xSemaphoreCreateBinary();
  798. registration_arg[i].done = xSemaphoreCreateBinary();
  799. registration_arg[i].data = &registration_data[i];
  800. xTaskCreatePinnedToCore(test_event_simple_handler_registration_task, "register", 2048, &registration_arg[i], s_test_priority, NULL, test_event_get_core());
  801. }
  802. // Give the semaphores to the spawned registration task
  803. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  804. xSemaphoreGive(registration_arg[i].start);
  805. }
  806. // Take the same semaphores in order to proceed
  807. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  808. xSemaphoreTake(registration_arg[i].done, portMAX_DELAY);
  809. }
  810. ESP_LOGI(TAG, "checking consistency of handlers list");
  811. // Check consistency of events list
  812. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  813. for (int j = 0; j < TEST_CONFIG_ITEMS_TO_REGISTER; j++) {
  814. TEST_ASSERT_TRUE(esp_event_is_handler_registered(loop, base, id, registration_data[i].handles[j]));
  815. }
  816. }
  817. ESP_LOGI(TAG, "unregistering handlers");
  818. /* Test if tasks can unregister simultaneously */
  819. // Unregister registered events
  820. handler_registration_data_t* unregistration_data = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*unregistration_data));
  821. task_arg_t* unregistration_arg = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*unregistration_arg));
  822. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  823. unregistration_data[i].base = base;
  824. unregistration_data[i].id = id;
  825. unregistration_data[i].loop = loop;
  826. unregistration_data[i].handles = calloc(TEST_CONFIG_ITEMS_TO_REGISTER, sizeof(esp_event_handler_t));
  827. unregistration_data[i].num = TEST_CONFIG_ITEMS_TO_REGISTER;
  828. unregistration_data[i].is_registration = false;
  829. memcpy(unregistration_data[i].handles, registration_data[i].handles, TEST_CONFIG_ITEMS_TO_REGISTER * sizeof(esp_event_handler_t));
  830. unregistration_arg[i].data = &unregistration_data[i];
  831. unregistration_arg[i].start = xSemaphoreCreateBinary();
  832. unregistration_arg[i].done = xSemaphoreCreateBinary();
  833. xTaskCreatePinnedToCore(test_event_simple_handler_registration_task, "unregister", 2048, &unregistration_arg[i], s_test_priority, NULL, test_event_get_core());
  834. }
  835. // Give the semaphores to the spawned unregistration task
  836. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  837. xSemaphoreGive(unregistration_arg[i].start);
  838. }
  839. // Take the same semaphores in order to proceed
  840. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  841. xSemaphoreTake(unregistration_arg[i].done, portMAX_DELAY);
  842. }
  843. ESP_LOGI(TAG, "checking consistency of handlers list");
  844. // Check consistency of events list
  845. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  846. for (int j = 0; j < TEST_CONFIG_ITEMS_TO_REGISTER; j++) {
  847. TEST_ASSERT_FALSE(esp_event_is_handler_registered(loop, base, id, registration_data[i].handles[j]));
  848. }
  849. }
  850. // Do cleanup
  851. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  852. free(registration_data[i].handles);
  853. vSemaphoreDelete(registration_arg[i].start);
  854. vSemaphoreDelete(registration_arg[i].done);
  855. free(unregistration_data[i].handles);
  856. vSemaphoreDelete(unregistration_arg[i].start);
  857. vSemaphoreDelete(unregistration_arg[i].done);
  858. }
  859. free(registration_data);
  860. free(unregistration_data);
  861. free(registration_arg);
  862. free(unregistration_arg);
  863. TEST_ESP_OK(esp_event_loop_delete(loop));
  864. TEST_TEARDOWN();
  865. }
  866. TEST_CASE("posting ANY_EVENT or ANY_ID fails", "[event]") {
  867. TEST_SETUP();
  868. esp_event_loop_handle_t loop;
  869. int count = 0;
  870. simple_arg_t arg = {
  871. .data = &count,
  872. .mutex = xSemaphoreCreateMutex()
  873. };
  874. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  875. loop_args.task_name = NULL;
  876. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  877. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, NULL, 0, portMAX_DELAY));
  878. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, s_test_base1, ESP_EVENT_ANY_ID, NULL, 0, portMAX_DELAY));
  879. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_post_to(loop, ESP_EVENT_ANY_BASE, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  880. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  881. TEST_ASSERT_EQUAL(0, count);
  882. TEST_ESP_OK(esp_event_loop_delete(loop));
  883. vSemaphoreDelete(arg.mutex);
  884. TEST_TEARDOWN();
  885. }
  886. TEST_CASE("can post and run events", "[event]")
  887. {
  888. /* this test aims to verify that:
  889. * - multiple tasks can post to the queue simultaneously
  890. * - handlers recieve the appropriate handler arg and associated event data */
  891. TEST_SETUP();
  892. esp_event_loop_handle_t loop;
  893. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  894. loop_args.task_name = NULL;
  895. loop_args.queue_size = TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER;
  896. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  897. int count = 0;
  898. simple_arg_t arg = {
  899. .data = &count,
  900. .mutex = xSemaphoreCreateMutex()
  901. };
  902. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg));
  903. post_event_data_t* post_event_data = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*post_event_data));
  904. task_arg_t* post_event_arg = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*post_event_arg));
  905. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++)
  906. {
  907. post_event_data[i].base = s_test_base1;
  908. post_event_data[i].id = TEST_EVENT_BASE1_EV1;
  909. post_event_data[i].loop = loop;
  910. post_event_data[i].num = TEST_CONFIG_ITEMS_TO_REGISTER;
  911. post_event_arg[i].data = &post_event_data[i];
  912. post_event_arg[i].start = xSemaphoreCreateBinary();
  913. post_event_arg[i].done = xSemaphoreCreateBinary();
  914. xTaskCreatePinnedToCore(test_event_post_task, "post", 2048, &post_event_arg[i], s_test_priority, NULL, test_event_get_core());
  915. }
  916. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  917. xSemaphoreGive(post_event_arg[i].start);
  918. }
  919. // Execute some events as they are posted
  920. for (int i = 0; i < (TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER) / 2; i++) {
  921. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  922. }
  923. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  924. xSemaphoreTake(post_event_arg[i].done, portMAX_DELAY);
  925. }
  926. // Execute the rest
  927. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  928. TEST_ASSERT_EQUAL(TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER, count);
  929. // Cleanup
  930. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  931. vSemaphoreDelete(post_event_arg[i].start);
  932. vSemaphoreDelete(post_event_arg[i].done);
  933. }
  934. free(post_event_data);
  935. free(post_event_arg);
  936. TEST_ESP_OK(esp_event_loop_delete(loop));
  937. vSemaphoreDelete(arg.mutex);
  938. TEST_TEARDOWN();
  939. }
  940. TEST_CASE("can post and run events with instances", "[event]")
  941. {
  942. /* this test aims to verify that:
  943. * - multiple tasks can post to the queue simultaneously
  944. * - handlers recieve the appropriate handler arg and associated event data */
  945. TEST_SETUP();
  946. esp_event_loop_handle_t loop;
  947. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  948. loop_args.task_name = NULL;
  949. loop_args.queue_size = TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER;
  950. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  951. int count = 0;
  952. simple_arg_t arg = {
  953. .data = &count,
  954. .mutex = xSemaphoreCreateMutex()
  955. };
  956. esp_event_handler_instance_t ctx;
  957. TEST_ESP_OK(esp_event_handler_instance_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_simple_handler, &arg, &ctx));
  958. post_event_data_t* post_event_data = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*post_event_data));
  959. task_arg_t* post_event_arg = calloc(TEST_CONFIG_TASKS_TO_SPAWN, sizeof(*post_event_arg));
  960. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++)
  961. {
  962. post_event_data[i].base = s_test_base1;
  963. post_event_data[i].id = TEST_EVENT_BASE1_EV1;
  964. post_event_data[i].loop = loop;
  965. post_event_data[i].num = TEST_CONFIG_ITEMS_TO_REGISTER;
  966. post_event_arg[i].data = &post_event_data[i];
  967. post_event_arg[i].start = xSemaphoreCreateBinary();
  968. post_event_arg[i].done = xSemaphoreCreateBinary();
  969. xTaskCreatePinnedToCore(test_event_post_task, "post", 2048, &post_event_arg[i], s_test_priority, NULL, test_event_get_core());
  970. }
  971. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  972. xSemaphoreGive(post_event_arg[i].start);
  973. }
  974. // Execute some events as they are posted
  975. for (int i = 0; i < (TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER) / 2; i++) {
  976. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  977. }
  978. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  979. xSemaphoreTake(post_event_arg[i].done, portMAX_DELAY);
  980. }
  981. // Execute the rest
  982. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  983. TEST_ASSERT_EQUAL(TEST_CONFIG_TASKS_TO_SPAWN * TEST_CONFIG_ITEMS_TO_REGISTER, count);
  984. // Cleanup
  985. for (int i = 0; i < TEST_CONFIG_TASKS_TO_SPAWN; i++) {
  986. vSemaphoreDelete(post_event_arg[i].start);
  987. vSemaphoreDelete(post_event_arg[i].done);
  988. }
  989. free(post_event_data);
  990. free(post_event_arg);
  991. TEST_ESP_OK(esp_event_loop_delete(loop));
  992. vSemaphoreDelete(arg.mutex);
  993. TEST_TEARDOWN();
  994. }
  995. static void loop_run_task(void* args)
  996. {
  997. esp_event_loop_handle_t event_loop = (esp_event_loop_handle_t) args;
  998. while(1) {
  999. esp_event_loop_run(event_loop, portMAX_DELAY);
  1000. }
  1001. }
  1002. static void performance_test(bool dedicated_task)
  1003. {
  1004. // rand() seems to do a one-time allocation. Call it here so that the memory it allocates
  1005. // is not counted as a leak.
  1006. unsigned int _rand __attribute__((unused)) = rand();
  1007. TEST_SETUP();
  1008. const char test_base[] = "qwertyuiopasdfghjklzxvbnmmnbvcxz";
  1009. #define TEST_CONFIG_BASES (sizeof(test_base) - 1)
  1010. #define TEST_CONFIG_IDS (TEST_CONFIG_BASES / 2)
  1011. // Create loop
  1012. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1013. esp_event_loop_handle_t loop;
  1014. if (!dedicated_task) {
  1015. loop_args.task_name = NULL;
  1016. }
  1017. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  1018. performance_data_t data;
  1019. // Register the handlers
  1020. for (int base = 0; base < TEST_CONFIG_BASES; base++) {
  1021. for (int id = 0; id < TEST_CONFIG_IDS; id++) {
  1022. TEST_ESP_OK(esp_event_handler_register_with(loop, test_base + base, id, test_event_performance_handler, &data));
  1023. }
  1024. }
  1025. TaskHandle_t mtask = NULL;
  1026. if (!dedicated_task) {
  1027. xTaskCreate(loop_run_task, "loop_run", loop_args.task_stack_size, (void*) loop, loop_args.task_priority, &mtask);
  1028. }
  1029. // Perform performance test
  1030. float running_sum = 0;
  1031. float running_count = 0;
  1032. for (int bases = 1; bases <= TEST_CONFIG_BASES; bases *= 2) {
  1033. for (int ids = 1; ids <= TEST_CONFIG_IDS; ids *= 2) {
  1034. data.performed = 0;
  1035. data.expected = bases * ids;
  1036. data.done = xSemaphoreCreateBinary();
  1037. // Generate randomized list of posts
  1038. int post_bases[TEST_CONFIG_BASES];
  1039. int post_ids[TEST_CONFIG_IDS];
  1040. for (int i = 0; i < bases; i++) {
  1041. post_bases[i] = i;
  1042. }
  1043. for (int i = 0; i < ids; i++) {
  1044. post_ids[i] = i;
  1045. }
  1046. for (int i = 0; i < bases; i++) {
  1047. int rand_a = rand() % bases;
  1048. int rand_b = rand() % bases;
  1049. int temp = post_bases[rand_a];
  1050. post_bases[rand_a]= post_bases[rand_b];
  1051. post_bases[rand_b] = temp;
  1052. }
  1053. for (int i = 0; i < ids; i++) {
  1054. int rand_a = rand() % ids;
  1055. int rand_b = rand() % ids;
  1056. int temp = post_ids[rand_a];
  1057. post_ids[rand_a]= post_ids[rand_b];
  1058. post_ids[rand_b] = temp;
  1059. }
  1060. // Post the events
  1061. int64_t start = esp_timer_get_time();
  1062. for (int base = 0; base < bases; base++) {
  1063. for (int id = 0; id < ids; id++) {
  1064. TEST_ESP_OK(esp_event_post_to(loop, test_base + post_bases[base], post_ids[id], NULL, 0, portMAX_DELAY));
  1065. }
  1066. }
  1067. xSemaphoreTake(data.done, portMAX_DELAY);
  1068. int64_t elapsed = esp_timer_get_time() - start;
  1069. // Record data
  1070. TEST_ASSERT_EQUAL(data.expected, data.performed);
  1071. running_count++;
  1072. running_sum += data.performed / (elapsed / (1000000.0));
  1073. vSemaphoreDelete(data.done);
  1074. }
  1075. }
  1076. int average = (int) (running_sum / (running_count));
  1077. if (!dedicated_task) {
  1078. ((esp_event_loop_instance_t*) loop)->task = mtask;
  1079. }
  1080. TEST_ESP_OK(esp_event_loop_delete(loop));
  1081. TEST_TEARDOWN();
  1082. #ifdef CONFIG_ESP_EVENT_LOOP_PROFILING
  1083. ESP_LOGI(TAG, "events dispatched/second with profiling enabled: %d", average);
  1084. // Enabling profiling will slow down event dispatch, so the set threshold
  1085. // is not valid when it is enabled.
  1086. #else
  1087. #ifndef CONFIG_SPIRAM
  1088. TEST_PERFORMANCE_GREATER_THAN(EVENT_DISPATCH, "%d", average);
  1089. #else
  1090. TEST_PERFORMANCE_GREATER_THAN(EVENT_DISPATCH_PSRAM, "%d", average);
  1091. #endif // CONFIG_SPIRAM
  1092. #endif // CONFIG_ESP_EVENT_LOOP_PROFILING
  1093. }
  1094. TEST_CASE("performance test - dedicated task", "[event]")
  1095. {
  1096. performance_test(true);
  1097. }
  1098. TEST_CASE("performance test - no dedicated task", "[event]")
  1099. {
  1100. performance_test(false);
  1101. }
  1102. TEST_CASE("can post to loop from handler - dedicated task", "[event]")
  1103. {
  1104. TEST_SETUP();
  1105. esp_event_loop_handle_t loop_w_task;
  1106. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1107. int count;
  1108. simple_arg_t arg = {
  1109. .data = &count,
  1110. .mutex = xSemaphoreCreateBinary()
  1111. };
  1112. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop_w_task));
  1113. count = 0;
  1114. // Test that a handler can post to a different loop while there is still slots on the queue
  1115. TEST_ESP_OK(esp_event_handler_register_with(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_post_w_task, &arg));
  1116. TEST_ESP_OK(esp_event_handler_register_with(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, test_handler_post_w_task, &arg));
  1117. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_w_task, sizeof(&loop_w_task), portMAX_DELAY));
  1118. xSemaphoreTake(arg.mutex, portMAX_DELAY);
  1119. TEST_ASSERT_EQUAL(2, count);
  1120. // Test that other tasks can still post while there is still slots in the queue, while handler is executing
  1121. count = 100;
  1122. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_w_task, sizeof(&loop_w_task), portMAX_DELAY));
  1123. for (int i = 0; i < loop_args.queue_size; i++) {
  1124. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  1125. }
  1126. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0,
  1127. pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER)));
  1128. xSemaphoreGive(arg.mutex);
  1129. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1130. TEST_ESP_OK(esp_event_loop_delete(loop_w_task));
  1131. vSemaphoreDelete(arg.mutex);
  1132. TEST_TEARDOWN();
  1133. }
  1134. TEST_CASE("can post to loop from handler instance - dedicated task", "[event]")
  1135. {
  1136. TEST_SETUP();
  1137. esp_event_loop_handle_t loop_w_task;
  1138. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1139. int count;
  1140. simple_arg_t arg = {
  1141. .data = &count,
  1142. .mutex = xSemaphoreCreateBinary()
  1143. };
  1144. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop_w_task));
  1145. count = 0;
  1146. esp_event_handler_instance_t ctx_1;
  1147. esp_event_handler_instance_t ctx_2;
  1148. // Test that a handler can post to a different loop while there is still slots on the queue
  1149. TEST_ESP_OK(esp_event_handler_instance_register_with(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_post_w_task, &arg, &ctx_1));
  1150. TEST_ESP_OK(esp_event_handler_instance_register_with(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, test_handler_post_w_task, &arg, &ctx_2));
  1151. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_w_task, sizeof(&loop_w_task), portMAX_DELAY));
  1152. xSemaphoreTake(arg.mutex, portMAX_DELAY);
  1153. TEST_ASSERT_EQUAL(2, count);
  1154. // Test that other tasks can still post while there is still slots in the queue, while handler is executing
  1155. count = 100;
  1156. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_w_task, sizeof(&loop_w_task), portMAX_DELAY));
  1157. for (int i = 0; i < loop_args.queue_size; i++) {
  1158. TEST_ESP_OK(esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  1159. }
  1160. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(loop_w_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0,
  1161. pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER)));
  1162. xSemaphoreGive(arg.mutex);
  1163. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1164. TEST_ESP_OK(esp_event_loop_delete(loop_w_task));
  1165. vSemaphoreDelete(arg.mutex);
  1166. TEST_TEARDOWN();
  1167. }
  1168. TEST_CASE("can post to loop from handler - no dedicated task", "[event]")
  1169. {
  1170. TEST_SETUP();
  1171. esp_event_loop_handle_t loop_wo_task;
  1172. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1173. int count;
  1174. simple_arg_t arg = {
  1175. .data = &count,
  1176. .mutex = xSemaphoreCreateBinary()
  1177. };
  1178. count = 0;
  1179. loop_args.queue_size = 1;
  1180. loop_args.task_name = NULL;
  1181. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop_wo_task));
  1182. TaskHandle_t mtask;
  1183. xTaskCreate(test_post_from_handler_loop_task, "task", 2584, (void*) loop_wo_task, s_test_priority, &mtask);
  1184. // Test that a handler can post to a different loop while there is still slots on the queue
  1185. TEST_ESP_OK(esp_event_handler_register_with(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_post_wo_task, &arg));
  1186. TEST_ESP_OK(esp_event_handler_register_with(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV2, test_handler_post_wo_task, &arg));
  1187. TEST_ESP_OK(esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_wo_task, sizeof(&loop_wo_task), portMAX_DELAY));
  1188. xSemaphoreTake(arg.mutex, portMAX_DELAY);
  1189. TEST_ASSERT_EQUAL(2, count);
  1190. count = 100;
  1191. TEST_ESP_OK(esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_wo_task, sizeof(&loop_wo_task), portMAX_DELAY));
  1192. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1193. // For loop without tasks, posting is more restrictive. Posting should wait until execution of handler finishes
  1194. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0,
  1195. pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER)));
  1196. xSemaphoreGive(arg.mutex);
  1197. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1198. vTaskDelete(mtask);
  1199. TEST_ESP_OK(esp_event_loop_delete(loop_wo_task));
  1200. vSemaphoreDelete(arg.mutex);
  1201. TEST_TEARDOWN();
  1202. }
  1203. TEST_CASE("can post to loop from handler instance - no dedicated task", "[event]")
  1204. {
  1205. TEST_SETUP();
  1206. esp_event_loop_handle_t loop_wo_task;
  1207. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1208. int count;
  1209. simple_arg_t arg = {
  1210. .data = &count,
  1211. .mutex = xSemaphoreCreateBinary()
  1212. };
  1213. count = 0;
  1214. esp_event_handler_instance_t ctx_1;
  1215. esp_event_handler_instance_t ctx_2;
  1216. loop_args.queue_size = 1;
  1217. loop_args.task_name = NULL;
  1218. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop_wo_task));
  1219. TaskHandle_t mtask;
  1220. xTaskCreate(test_post_from_handler_loop_task, "task", 2584, (void*) loop_wo_task, s_test_priority, &mtask);
  1221. // Test that a handler can post to a different loop while there is still slots on the queue
  1222. TEST_ESP_OK(esp_event_handler_instance_register_with(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, test_handler_post_wo_task, &arg, &ctx_1));
  1223. TEST_ESP_OK(esp_event_handler_instance_register_with(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV2, test_handler_post_wo_task, &arg, &ctx_2));
  1224. TEST_ESP_OK(esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_wo_task, sizeof(&loop_wo_task), portMAX_DELAY));
  1225. xSemaphoreTake(arg.mutex, portMAX_DELAY);
  1226. TEST_ASSERT_EQUAL(2, count);
  1227. count = 100;
  1228. TEST_ESP_OK(esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV1, &loop_wo_task, sizeof(&loop_wo_task), portMAX_DELAY));
  1229. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1230. // For loop without tasks, posting is more restrictive. Posting should wait until execution of handler finishes
  1231. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, esp_event_post_to(loop_wo_task, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0,
  1232. pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER)));
  1233. xSemaphoreGive(arg.mutex);
  1234. vTaskDelay(pdMS_TO_TICKS(CONFIG_ESP_INT_WDT_TIMEOUT_MS * TEST_CONFIG_WAIT_MULTIPLIER));
  1235. vTaskDelete(mtask);
  1236. TEST_ESP_OK(esp_event_loop_delete(loop_wo_task));
  1237. vSemaphoreDelete(arg.mutex);
  1238. TEST_TEARDOWN();
  1239. }
  1240. static void test_event_simple_handler_template(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1241. {
  1242. int* count = (int*) handler_arg;
  1243. (*count)++;
  1244. }
  1245. static void test_event_simple_handler_1(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1246. {
  1247. test_event_simple_handler_template(handler_arg, base, id, event_arg);
  1248. }
  1249. static void test_event_simple_handler_3(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1250. {
  1251. test_event_simple_handler_template(handler_arg, base, id, event_arg);
  1252. }
  1253. static void test_event_simple_handler_2(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1254. {
  1255. test_event_simple_handler_template(handler_arg, base, id, event_arg);
  1256. }
  1257. static void test_registration_from_handler_hdlr(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1258. {
  1259. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_arg;
  1260. TEST_ESP_OK(esp_event_handler_register_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_1, handler_arg));
  1261. TEST_ESP_OK(esp_event_handler_register_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_2, handler_arg));
  1262. TEST_ESP_OK(esp_event_handler_register_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_3, handler_arg));
  1263. }
  1264. static void test_unregistration_from_handler_hdlr(void* handler_arg, esp_event_base_t base, int32_t id, void* event_arg)
  1265. {
  1266. esp_event_loop_handle_t* loop = (esp_event_loop_handle_t*) event_arg;
  1267. TEST_ESP_OK(esp_event_handler_unregister_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_1));
  1268. TEST_ESP_OK(esp_event_handler_unregister_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_2));
  1269. TEST_ESP_OK(esp_event_handler_unregister_with(*loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_simple_handler_3));
  1270. }
  1271. TEST_CASE("can register from handler", "[event]")
  1272. {
  1273. TEST_SETUP();
  1274. esp_event_loop_handle_t loop;
  1275. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1276. loop_args.task_name = NULL;
  1277. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  1278. int count = 0;
  1279. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_registration_from_handler_hdlr, &count));
  1280. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE2_EV1, test_unregistration_from_handler_hdlr, &count));
  1281. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &loop, sizeof(&loop), portMAX_DELAY));
  1282. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1283. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  1284. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1285. TEST_ASSERT_EQUAL(3, count);
  1286. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE2_EV1, &loop, sizeof(&loop), portMAX_DELAY));
  1287. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1288. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  1289. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1290. TEST_ASSERT_EQUAL(3, count);
  1291. TEST_ESP_OK(esp_event_loop_delete(loop));
  1292. TEST_TEARDOWN();
  1293. }
  1294. static void test_create_loop_handler(void* handler_args, esp_event_base_t base, int32_t id, void* event_data)
  1295. {
  1296. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1297. if (id == TEST_EVENT_BASE1_EV1) {
  1298. TEST_ESP_OK(esp_event_loop_create(&loop_args, (esp_event_loop_handle_t*) handler_args));
  1299. } else {
  1300. TEST_ESP_OK(esp_event_loop_delete(*((esp_event_loop_handle_t*) handler_args)));
  1301. }
  1302. }
  1303. TEST_CASE("can create and delete loop from handler", "[event]")
  1304. {
  1305. TEST_SETUP();
  1306. esp_event_loop_handle_t loop;
  1307. esp_event_loop_handle_t test_loop;
  1308. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1309. loop_args.task_name = NULL;
  1310. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  1311. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_create_loop_handler, &test_loop));
  1312. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_create_loop_handler, &test_loop));
  1313. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  1314. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1315. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, NULL, 0, portMAX_DELAY));
  1316. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1317. TEST_ESP_OK(esp_event_loop_delete(loop));
  1318. TEST_TEARDOWN();
  1319. }
  1320. TEST_CASE("events are dispatched in the order they are registered", "[event]")
  1321. {
  1322. TEST_SETUP();
  1323. esp_event_loop_handle_t loop;
  1324. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1325. loop_args.task_name = NULL;
  1326. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  1327. int id_arr[7];
  1328. for (int i = 0; i < 7; i++) {
  1329. id_arr[i] = i;
  1330. }
  1331. int data_arr[12] = {0};
  1332. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE2_EV1, test_event_ordered_dispatch, id_arr + 0));
  1333. TEST_ESP_OK(esp_event_handler_register_with(loop, ESP_EVENT_ANY_BASE, ESP_EVENT_ANY_ID, test_event_ordered_dispatch, id_arr + 1));
  1334. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, ESP_EVENT_ANY_ID, test_event_ordered_dispatch, id_arr + 2));
  1335. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, TEST_EVENT_BASE2_EV2, test_event_ordered_dispatch, id_arr + 3));
  1336. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV1, test_event_ordered_dispatch, id_arr + 4));
  1337. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base2, ESP_EVENT_ANY_ID, test_event_ordered_dispatch, id_arr + 5));
  1338. TEST_ESP_OK(esp_event_handler_register_with(loop, s_test_base1, TEST_EVENT_BASE1_EV2, test_event_ordered_dispatch, id_arr + 6));
  1339. esp_event_dump(stdout);
  1340. ordered_data_t data = {
  1341. .arr = data_arr,
  1342. .index = 0
  1343. };
  1344. ordered_data_t* dptr = &data;
  1345. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV2, &dptr, sizeof(dptr), portMAX_DELAY));
  1346. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &dptr, sizeof(dptr), portMAX_DELAY));
  1347. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV2, &dptr, sizeof(dptr), portMAX_DELAY));
  1348. TEST_ESP_OK(esp_event_post_to(loop, s_test_base2, TEST_EVENT_BASE1_EV1, &dptr, sizeof(dptr), portMAX_DELAY));
  1349. TEST_ESP_OK(esp_event_loop_run(loop, pdMS_TO_TICKS(10)));
  1350. // Expected data executing the posts above
  1351. int ref_arr[12] = {1, 3, 5, 1, 2, 4, 1, 2, 6, 0, 1, 5};
  1352. for (int i = 0; i < 12; i++) {
  1353. TEST_ASSERT_EQUAL(ref_arr[i], data_arr[i]);
  1354. }
  1355. TEST_ESP_OK(esp_event_loop_delete(loop));
  1356. TEST_TEARDOWN();
  1357. }
  1358. #if CONFIG_ESP_EVENT_POST_FROM_ISR
  1359. TEST_CASE("can properly prepare event data posted to loop", "[event]")
  1360. {
  1361. TEST_SETUP();
  1362. esp_event_loop_handle_t loop;
  1363. esp_event_loop_args_t loop_args = test_event_get_default_loop_args();
  1364. loop_args.task_name = NULL;
  1365. TEST_ESP_OK(esp_event_loop_create(&loop_args, &loop));
  1366. esp_event_post_instance_t post;
  1367. esp_event_loop_instance_t* loop_def = (esp_event_loop_instance_t*) loop;
  1368. TEST_ESP_OK(esp_event_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, NULL, 0, portMAX_DELAY));
  1369. TEST_ASSERT_EQUAL(pdTRUE, xQueueReceive(loop_def->queue, &post, portMAX_DELAY));
  1370. TEST_ASSERT_EQUAL(false, post.data_set);
  1371. TEST_ASSERT_EQUAL(false, post.data_allocated);
  1372. TEST_ASSERT_EQUAL(NULL, post.data.ptr);
  1373. int sample = 0;
  1374. TEST_ESP_OK(esp_event_isr_post_to(loop, s_test_base1, TEST_EVENT_BASE1_EV1, &sample, sizeof(sample), NULL));
  1375. TEST_ASSERT_EQUAL(pdTRUE, xQueueReceive(loop_def->queue, &post, portMAX_DELAY));
  1376. TEST_ASSERT_EQUAL(true, post.data_set);
  1377. TEST_ASSERT_EQUAL(false, post.data_allocated);
  1378. TEST_ASSERT_EQUAL(false, post.data.val);
  1379. TEST_ESP_OK(esp_event_loop_delete(loop));
  1380. TEST_TEARDOWN();
  1381. }
  1382. static void test_handler_post_from_isr(void* event_handler_arg, esp_event_base_t event_base, int32_t event_id, void* event_data)
  1383. {
  1384. SemaphoreHandle_t *sem = (SemaphoreHandle_t*) event_handler_arg;
  1385. // Event data is just the address value (maybe have been truncated due to casting).
  1386. int *data = (int*) event_data;
  1387. TEST_ASSERT_EQUAL(*data, (int) (*sem));
  1388. xSemaphoreGive(*sem);
  1389. }
  1390. bool test_event_on_timer_alarm(gptimer_handle_t timer, const gptimer_alarm_event_data_t *edata, void *user_ctx)
  1391. {
  1392. int data = (int)user_ctx;
  1393. gptimer_stop(timer);
  1394. // Posting events with data more than 4 bytes should fail.
  1395. TEST_ASSERT_EQUAL(ESP_ERR_INVALID_ARG, esp_event_isr_post(s_test_base1, TEST_EVENT_BASE1_EV1, &data, 5, NULL));
  1396. // This should succeedd, as data is int-sized. The handler for the event checks that the passed event data
  1397. // is correct.
  1398. BaseType_t task_unblocked;
  1399. TEST_ESP_OK(esp_event_isr_post(s_test_base1, TEST_EVENT_BASE1_EV1, &data, sizeof(data), &task_unblocked));
  1400. return task_unblocked == pdTRUE;
  1401. }
  1402. TEST_CASE("can post events from interrupt handler", "[event]")
  1403. {
  1404. SemaphoreHandle_t sem = xSemaphoreCreateBinary();
  1405. gptimer_handle_t gptimer = NULL;
  1406. /* Select and initialize basic parameters of the timer */
  1407. gptimer_config_t config = {
  1408. .clk_src = GPTIMER_CLK_SRC_APB,
  1409. .direction = GPTIMER_COUNT_UP,
  1410. .resolution_hz = 1000000, // 1MHz, 1 tick = 1us
  1411. };
  1412. TEST_ESP_OK(gptimer_new_timer(&config, &gptimer));
  1413. gptimer_alarm_config_t alarm_config = {
  1414. .reload_count = 0,
  1415. .alarm_count = 500000,
  1416. };
  1417. gptimer_event_callbacks_t cbs = {
  1418. .on_alarm = test_event_on_timer_alarm
  1419. };
  1420. TEST_ESP_OK(gptimer_register_event_callbacks(gptimer, &cbs, sem));
  1421. TEST_ESP_OK(gptimer_set_alarm_action(gptimer, &alarm_config));
  1422. TEST_ESP_OK(gptimer_start(gptimer));
  1423. TEST_SETUP();
  1424. TEST_ESP_OK(esp_event_handler_register(s_test_base1, TEST_EVENT_BASE1_EV1,
  1425. test_handler_post_from_isr, &sem));
  1426. xSemaphoreTake(sem, portMAX_DELAY);
  1427. TEST_TEARDOWN();
  1428. TEST_ESP_OK(gptimer_del_timer(gptimer));
  1429. }
  1430. #endif // CONFIG_ESP_EVENT_POST_FROM_ISR