test_trace.c 28 KB

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  1. #include <stddef.h>
  2. #include <stdint.h>
  3. #include <string.h>
  4. #include <stdio.h>
  5. #include <stdarg.h>
  6. #include "unity.h"
  7. #include "driver/timer.h"
  8. #include "freertos/FreeRTOS.h"
  9. #include "freertos/semphr.h"
  10. #include "freertos/task.h"
  11. #if CONFIG_ESP32_APPTRACE_ENABLE == 1
  12. #include "esp_app_trace.h"
  13. #define ESP_APPTRACE_TEST_USE_PRINT_LOCK 0
  14. #define ESP_APPTRACE_TEST_PRN_WRERR_MAX 5
  15. #define ESP_APPTRACE_TEST_BLOCKS_BEFORE_CRASH 100
  16. #define ESP_APPTRACE_TEST_BLOCK_SIZE 1024
  17. #define LOG_LOCAL_LEVEL ESP_LOG_VERBOSE
  18. #include "esp_log.h"
  19. const static char *TAG = "esp_apptrace_test";
  20. #if ESP_APPTRACE_TEST_USE_PRINT_LOCK == 1
  21. #define ESP_APPTRACE_TEST_LOG( format, ... ) \
  22. do { \
  23. BaseType_t ret; \
  24. if (xPortInIsrContext()) \
  25. ret = xSemaphoreTakeFromISR(s_print_lock, NULL); \
  26. else \
  27. ret = xSemaphoreTake(s_print_lock, portMAX_DELAY); \
  28. if (ret == pdTRUE) { \
  29. ets_printf(format, ##__VA_ARGS__); \
  30. if (xPortInIsrContext()) \
  31. xSemaphoreGiveFromISR(s_print_lock, NULL); \
  32. else \
  33. xSemaphoreGive(s_print_lock); \
  34. } \
  35. } while(0)
  36. #else
  37. #define ESP_APPTRACE_TEST_LOG( format, ... ) \
  38. do { \
  39. ets_printf(format, ##__VA_ARGS__); \
  40. } while(0)
  41. #endif
  42. #define ESP_APPTRACE_TEST_LOG_LEVEL( _L_, level, format, ... ) \
  43. do { \
  44. if (LOG_LOCAL_LEVEL >= level) { \
  45. ESP_APPTRACE_TEST_LOG(LOG_FORMAT(_L_, format), esp_log_early_timestamp(), TAG, ##__VA_ARGS__); \
  46. } \
  47. } while(0)
  48. #define ESP_APPTRACE_TEST_LOGE( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(E, ESP_LOG_ERROR, format, ##__VA_ARGS__)
  49. #define ESP_APPTRACE_TEST_LOGW( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(W, ESP_LOG_WARN, format, ##__VA_ARGS__)
  50. #define ESP_APPTRACE_TEST_LOGI( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(I, ESP_LOG_INFO, format, ##__VA_ARGS__)
  51. #define ESP_APPTRACE_TEST_LOGD( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(D, ESP_LOG_DEBUG, format, ##__VA_ARGS__)
  52. #define ESP_APPTRACE_TEST_LOGV( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(V, ESP_LOG_VERBOSE, format, ##__VA_ARGS__)
  53. #define ESP_APPTRACE_TEST_LOGO( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(E, ESP_LOG_NONE, format, ##__VA_ARGS__)
  54. #define ESP_APPTRACE_TEST_WRITE(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, ESP_APPTRACE_TMO_INFINITE)
  55. #define ESP_APPTRACE_TEST_WRITE_FROM_ISR(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, 100UL)
  56. #define ESP_APPTRACE_TEST_WRITE_NOWAIT(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, 0)
  57. #define ESP_APPTRACE_TEST_CPUTICKS2US(_t_) ((_t_)/(XT_CLOCK_FREQ/1000000))
  58. typedef struct {
  59. uint8_t *buf;
  60. uint32_t buf_sz;
  61. uint8_t mask;
  62. uint32_t period; // trace write period in us
  63. uint32_t wr_err;
  64. uint32_t wr_cnt;
  65. } esp_apptrace_test_gen_data_t;
  66. typedef struct {
  67. int group;
  68. int id;
  69. void (*isr_func)(void *);
  70. esp_apptrace_test_gen_data_t data;
  71. } esp_apptrace_test_timer_arg_t;
  72. typedef struct {
  73. int nowait;
  74. int core;
  75. int prio;
  76. void (*task_func)(void *);
  77. esp_apptrace_test_gen_data_t data;
  78. volatile int stop;
  79. SemaphoreHandle_t done;
  80. uint32_t timers_num;
  81. esp_apptrace_test_timer_arg_t *timers;
  82. } esp_apptrace_test_task_arg_t;
  83. typedef struct {
  84. uint32_t tasks_num;
  85. esp_apptrace_test_task_arg_t *tasks;
  86. } esp_apptrace_test_cfg_t;
  87. #if ESP_APPTRACE_TEST_USE_PRINT_LOCK == 1
  88. static SemaphoreHandle_t s_print_lock;
  89. #endif
  90. static uint64_t esp_apptrace_test_ts_get();
  91. static void esp_apptrace_test_timer_init(int timer_group, int timer_idx, uint32_t period)
  92. {
  93. timer_config_t config;
  94. uint64_t alarm_val = (period * (TIMER_BASE_CLK / 1000000UL)) / 2;
  95. config.alarm_en = 1;
  96. config.auto_reload = 1;
  97. config.counter_dir = TIMER_COUNT_UP;
  98. config.divider = 1;
  99. config.intr_type = TIMER_INTR_LEVEL;
  100. config.counter_en = TIMER_PAUSE;
  101. /*Configure timer*/
  102. timer_init(timer_group, timer_idx, &config);
  103. /*Stop timer counter*/
  104. timer_pause(timer_group, timer_idx);
  105. /*Load counter value */
  106. timer_set_counter_value(timer_group, timer_idx, 0x00000000ULL);
  107. /*Set alarm value*/
  108. timer_set_alarm_value(timer_group, timer_idx, alarm_val);
  109. /*Enable timer interrupt*/
  110. timer_enable_intr(timer_group, timer_idx);
  111. }
  112. static void esp_apptrace_test_timer_isr(void *arg)
  113. {
  114. esp_apptrace_test_timer_arg_t *tim_arg = (esp_apptrace_test_timer_arg_t *)arg;
  115. uint32_t *ts = (uint32_t *)(tim_arg->data.buf + sizeof(uint32_t));
  116. *ts = (uint32_t)esp_apptrace_test_ts_get();
  117. memset(tim_arg->data.buf + 2 * sizeof(uint32_t), tim_arg->data.wr_cnt & tim_arg->data.mask, tim_arg->data.buf_sz - 2 * sizeof(uint32_t));
  118. int res = ESP_APPTRACE_TEST_WRITE_FROM_ISR(tim_arg->data.buf, tim_arg->data.buf_sz);
  119. if (res != ESP_OK) {
  120. } else {
  121. if (0) {
  122. ets_printf("tim-%d-%d: Written chunk%d %d bytes, %x\n",
  123. tim_arg->group, tim_arg->id, tim_arg->data.wr_cnt, tim_arg->data.buf_sz, tim_arg->data.wr_cnt & tim_arg->data.mask);
  124. }
  125. tim_arg->data.wr_err = 0;
  126. }
  127. tim_arg->data.wr_cnt++;
  128. if (tim_arg->group == 0) {
  129. if (tim_arg->id == 0) {
  130. TIMERG0.int_clr_timers.t0 = 1;
  131. TIMERG0.hw_timer[0].update = 1;
  132. TIMERG0.hw_timer[0].config.alarm_en = 1;
  133. } else {
  134. TIMERG0.int_clr_timers.t1 = 1;
  135. TIMERG0.hw_timer[1].update = 1;
  136. TIMERG0.hw_timer[1].config.alarm_en = 1;
  137. }
  138. }
  139. if (tim_arg->group == 1) {
  140. if (tim_arg->id == 0) {
  141. TIMERG1.int_clr_timers.t0 = 1;
  142. TIMERG1.hw_timer[0].update = 1;
  143. TIMERG1.hw_timer[0].config.alarm_en = 1;
  144. } else {
  145. TIMERG1.int_clr_timers.t1 = 1;
  146. TIMERG1.hw_timer[1].update = 1;
  147. TIMERG1.hw_timer[1].config.alarm_en = 1;
  148. }
  149. }
  150. }
  151. static void esp_apptrace_test_timer_isr_crash(void *arg)
  152. {
  153. esp_apptrace_test_timer_arg_t *tim_arg = (esp_apptrace_test_timer_arg_t *)arg;
  154. if (tim_arg->group == 0) {
  155. if (tim_arg->id == 0) {
  156. TIMERG0.int_clr_timers.t0 = 1;
  157. TIMERG0.hw_timer[0].update = 1;
  158. TIMERG0.hw_timer[0].config.alarm_en = 1;
  159. } else {
  160. TIMERG0.int_clr_timers.t1 = 1;
  161. TIMERG0.hw_timer[1].update = 1;
  162. TIMERG0.hw_timer[1].config.alarm_en = 1;
  163. }
  164. }
  165. if (tim_arg->group == 1) {
  166. if (tim_arg->id == 0) {
  167. TIMERG1.int_clr_timers.t0 = 1;
  168. TIMERG1.hw_timer[0].update = 1;
  169. TIMERG1.hw_timer[0].config.alarm_en = 1;
  170. } else {
  171. TIMERG1.int_clr_timers.t1 = 1;
  172. TIMERG1.hw_timer[1].update = 1;
  173. TIMERG1.hw_timer[1].config.alarm_en = 1;
  174. }
  175. }
  176. if (tim_arg->data.wr_cnt < ESP_APPTRACE_TEST_BLOCKS_BEFORE_CRASH) {
  177. uint32_t *ts = (uint32_t *)(tim_arg->data.buf + sizeof(uint32_t));
  178. *ts = (uint32_t)esp_apptrace_test_ts_get();//xthal_get_ccount();//xTaskGetTickCount();
  179. memset(tim_arg->data.buf + 2 * sizeof(uint32_t), tim_arg->data.wr_cnt & tim_arg->data.mask, tim_arg->data.buf_sz - 2 * sizeof(uint32_t));
  180. int res = ESP_APPTRACE_TEST_WRITE_FROM_ISR(tim_arg->data.buf, tim_arg->data.buf_sz);
  181. if (res != ESP_OK) {
  182. ets_printf("tim-%d-%d: Failed to write trace %d %x!\n", tim_arg->group, tim_arg->id, res, tim_arg->data.wr_cnt & tim_arg->data.mask);
  183. } else {
  184. ets_printf("tim-%d-%d: Written chunk%d %d bytes, %x\n",
  185. tim_arg->group, tim_arg->id, tim_arg->data.wr_cnt, tim_arg->data.buf_sz, tim_arg->data.wr_cnt & tim_arg->data.mask);
  186. tim_arg->data.wr_cnt++;
  187. }
  188. } else {
  189. uint32_t *ptr = 0;
  190. *ptr = 1000;
  191. }
  192. }
  193. static void esp_apptrace_dummy_task(void *p)
  194. {
  195. esp_apptrace_test_task_arg_t *arg = (esp_apptrace_test_task_arg_t *) p;
  196. int res, flags = 0, i;
  197. timer_isr_handle_t *inth = NULL;
  198. TickType_t tmo_ticks = arg->data.period / (1000 * portTICK_PERIOD_MS);
  199. ESP_APPTRACE_TEST_LOGI("%x: run dummy task (period %u us, %u timers)", xTaskGetCurrentTaskHandle(), arg->data.period, arg->timers_num);
  200. if (arg->timers_num > 0) {
  201. inth = pvPortMalloc(arg->timers_num * sizeof(timer_isr_handle_t));
  202. if (!inth) {
  203. ESP_APPTRACE_TEST_LOGE("Failed to alloc timer ISR handles!");
  204. goto on_fail;
  205. }
  206. memset(inth, 0, arg->timers_num * sizeof(timer_isr_handle_t));
  207. for (int i = 0; i < arg->timers_num; i++) {
  208. esp_apptrace_test_timer_init(arg->timers[i].group, arg->timers[i].id, arg->timers[i].data.period);
  209. res = timer_isr_register(arg->timers[i].group, arg->timers[i].id, arg->timers[i].isr_func, &arg->timers[i], flags, &inth[i]);
  210. if (res != ESP_OK) {
  211. ESP_APPTRACE_TEST_LOGE("Failed to timer_isr_register (%d)!", res);
  212. goto on_fail;
  213. }
  214. *(uint32_t *)arg->timers[i].data.buf = (uint32_t)inth[i] | (1 << 31);
  215. ESP_APPTRACE_TEST_LOGI("%x: start timer %x period %u us", xTaskGetCurrentTaskHandle(), inth[i], arg->timers[i].data.period);
  216. res = timer_start(arg->timers[i].group, arg->timers[i].id);
  217. if (res != ESP_OK) {
  218. ESP_APPTRACE_TEST_LOGE("Failed to timer_start (%d)!", res);
  219. goto on_fail;
  220. }
  221. }
  222. }
  223. i = 0;
  224. while (!arg->stop) {
  225. ESP_APPTRACE_TEST_LOGD("%x: dummy task work %d.%d", xTaskGetCurrentTaskHandle(), xPortGetCoreID(), i++);
  226. if (tmo_ticks) {
  227. vTaskDelay(tmo_ticks);
  228. }
  229. }
  230. on_fail:
  231. if (inth) {
  232. for (int i = 0; i < arg->timers_num; i++) {
  233. timer_pause(arg->timers[i].group, arg->timers[i].id);
  234. timer_disable_intr(arg->timers[i].group, arg->timers[i].id);
  235. if (inth[i]) {
  236. esp_intr_free(inth[i]);
  237. }
  238. }
  239. vPortFree(inth);
  240. }
  241. xSemaphoreGive(arg->done);
  242. vTaskDelay(1);
  243. vTaskDelete(NULL);
  244. }
  245. static void esp_apptrace_test_task(void *p)
  246. {
  247. esp_apptrace_test_task_arg_t *arg = (esp_apptrace_test_task_arg_t *) p;
  248. int res, flags = 0;
  249. timer_isr_handle_t *inth = NULL;
  250. TickType_t tmo_ticks = arg->data.period / (1000 * portTICK_PERIOD_MS);
  251. ESP_APPTRACE_TEST_LOGI("%x: run (period %u us, stamp mask %x, %u timers)", xTaskGetCurrentTaskHandle(), arg->data.period, arg->data.mask, arg->timers_num);
  252. if (arg->timers_num > 0) {
  253. inth = pvPortMalloc(arg->timers_num * sizeof(timer_isr_handle_t));
  254. if (!inth) {
  255. ESP_APPTRACE_TEST_LOGE("Failed to alloc timer ISR handles!");
  256. goto on_fail;
  257. }
  258. memset(inth, 0, arg->timers_num * sizeof(timer_isr_handle_t));
  259. for (int i = 0; i < arg->timers_num; i++) {
  260. esp_apptrace_test_timer_init(arg->timers[i].group, arg->timers[i].id, arg->timers[i].data.period);
  261. res = timer_isr_register(arg->timers[i].group, arg->timers[i].id, arg->timers[i].isr_func, &arg->timers[i], flags, &inth[i]);
  262. if (res != ESP_OK) {
  263. ESP_APPTRACE_TEST_LOGE("Failed to timer_isr_register (%d)!", res);
  264. goto on_fail;
  265. }
  266. *(uint32_t *)arg->timers[i].data.buf = ((uint32_t)inth[i]) | (1 << 31) | (xPortGetCoreID() ? 0x1 : 0);
  267. ESP_APPTRACE_TEST_LOGI("%x: start timer %x period %u us", xTaskGetCurrentTaskHandle(), inth[i], arg->timers[i].data.period);
  268. res = timer_start(arg->timers[i].group, arg->timers[i].id);
  269. if (res != ESP_OK) {
  270. ESP_APPTRACE_TEST_LOGE("Failed to timer_start (%d)!", res);
  271. goto on_fail;
  272. }
  273. }
  274. }
  275. *(uint32_t *)arg->data.buf = (uint32_t)xTaskGetCurrentTaskHandle() | (xPortGetCoreID() ? 0x1 : 0);
  276. arg->data.wr_cnt = 0;
  277. arg->data.wr_err = 0;
  278. while (!arg->stop) {
  279. uint32_t *ts = (uint32_t *)(arg->data.buf + sizeof(uint32_t));
  280. *ts = (uint32_t)esp_apptrace_test_ts_get();
  281. memset(arg->data.buf + 2 * sizeof(uint32_t), arg->data.wr_cnt & arg->data.mask, arg->data.buf_sz - 2 * sizeof(uint32_t));
  282. if (arg->nowait) {
  283. res = ESP_APPTRACE_TEST_WRITE_NOWAIT(arg->data.buf, arg->data.buf_sz);
  284. } else {
  285. res = ESP_APPTRACE_TEST_WRITE(arg->data.buf, arg->data.buf_sz);
  286. }
  287. if (res) {
  288. if (arg->data.wr_err++ < ESP_APPTRACE_TEST_PRN_WRERR_MAX) {
  289. ESP_APPTRACE_TEST_LOGE("%x: Failed to write trace %d %x!", xTaskGetCurrentTaskHandle(), res, arg->data.wr_cnt & arg->data.mask);
  290. if (arg->data.wr_err == ESP_APPTRACE_TEST_PRN_WRERR_MAX) {
  291. ESP_APPTRACE_TEST_LOGE("\n");
  292. }
  293. }
  294. } else {
  295. if (0) {
  296. ESP_APPTRACE_TEST_LOGD("%x:%x: Written chunk%d %d bytes, %x", xTaskGetCurrentTaskHandle(), *ts, arg->data.wr_cnt, arg->data.buf_sz, arg->data.wr_cnt & arg->data.mask);
  297. }
  298. arg->data.wr_err = 0;
  299. }
  300. arg->data.wr_cnt++;
  301. if (tmo_ticks) {
  302. vTaskDelay(tmo_ticks);
  303. }
  304. }
  305. on_fail:
  306. if (inth) {
  307. for (int i = 0; i < arg->timers_num; i++) {
  308. timer_pause(arg->timers[i].group, arg->timers[i].id);
  309. timer_disable_intr(arg->timers[i].group, arg->timers[i].id);
  310. if (inth[i]) {
  311. esp_intr_free(inth[i]);
  312. }
  313. }
  314. vPortFree(inth);
  315. }
  316. xSemaphoreGive(arg->done);
  317. vTaskDelay(1);
  318. vTaskDelete(NULL);
  319. }
  320. static void esp_apptrace_test_task_crash(void *p)
  321. {
  322. esp_apptrace_test_task_arg_t *arg = (esp_apptrace_test_task_arg_t *) p;
  323. int res, i;
  324. ESP_APPTRACE_TEST_LOGE("%x: run (period %u us, stamp mask %x, %u timers)", xTaskGetCurrentTaskHandle(), arg->data.period, arg->data.mask, arg->timers_num);
  325. arg->data.wr_cnt = 0;
  326. *(uint32_t *)arg->data.buf = (uint32_t)xTaskGetCurrentTaskHandle();
  327. for (i = 0; i < ESP_APPTRACE_TEST_BLOCKS_BEFORE_CRASH; i++) {
  328. uint32_t *ts = (uint32_t *)(arg->data.buf + sizeof(uint32_t));
  329. *ts = (uint32_t)esp_apptrace_test_ts_get();
  330. memset(arg->data.buf + sizeof(uint32_t), arg->data.wr_cnt & arg->data.mask, arg->data.buf_sz - sizeof(uint32_t));
  331. res = ESP_APPTRACE_TEST_WRITE(arg->data.buf, arg->data.buf_sz);
  332. if (res) {
  333. ESP_APPTRACE_TEST_LOGE("%x: Failed to write trace %d %x!", xTaskGetCurrentTaskHandle(), res, arg->data.wr_cnt & arg->data.mask);
  334. } else {
  335. ESP_APPTRACE_TEST_LOGD("%x: Written chunk%d %d bytes, %x", xTaskGetCurrentTaskHandle(), arg->data.wr_cnt, arg->data.buf_sz, arg->data.wr_cnt & arg->data.mask);
  336. }
  337. arg->data.wr_cnt++;
  338. }
  339. vTaskDelay(500);
  340. uint32_t *ptr = 0;
  341. *ptr = 1000;
  342. xSemaphoreGive(arg->done);
  343. vTaskDelay(1);
  344. vTaskDelete(NULL);
  345. }
  346. static int s_ts_timer_group, s_ts_timer_idx;
  347. static uint64_t esp_apptrace_test_ts_get()
  348. {
  349. uint64_t ts = 0;
  350. timer_get_counter_value(s_ts_timer_group, s_ts_timer_idx, &ts);
  351. return ts;
  352. }
  353. static void esp_apptrace_test_ts_init(int timer_group, int timer_idx)
  354. {
  355. timer_config_t config;
  356. //uint64_t alarm_val = period * (TIMER_BASE_CLK / 1000000UL);
  357. ESP_APPTRACE_TEST_LOGI("Use timer%d.%d for TS", timer_group, timer_idx);
  358. s_ts_timer_group = timer_group;
  359. s_ts_timer_idx = timer_idx;
  360. config.alarm_en = 0;
  361. config.auto_reload = 0;
  362. config.counter_dir = TIMER_COUNT_UP;
  363. config.divider = 1;
  364. config.counter_en = 0;
  365. /*Configure timer*/
  366. timer_init(timer_group, timer_idx, &config);
  367. /*Load counter value */
  368. timer_set_counter_value(timer_group, timer_idx, 0x00000000ULL);
  369. /*Enable timer interrupt*/
  370. timer_start(timer_group, timer_idx);
  371. }
  372. static void esp_apptrace_test_ts_cleanup()
  373. {
  374. timer_config_t config;
  375. config.alarm_en = 0;
  376. config.auto_reload = 0;
  377. config.counter_dir = TIMER_COUNT_UP;
  378. config.divider = 1;
  379. config.counter_en = 0;
  380. /*Configure timer*/
  381. timer_init(s_ts_timer_group, s_ts_timer_idx, &config);
  382. }
  383. static void esp_apptrace_test(esp_apptrace_test_cfg_t *test_cfg)
  384. {
  385. int i, k;
  386. int tims_in_use[TIMER_GROUP_MAX][TIMER_MAX] = {{0, 0}, {0, 0}};
  387. esp_apptrace_test_task_arg_t dummy_task_arg[1];
  388. memset(dummy_task_arg, 0, sizeof(dummy_task_arg));
  389. dummy_task_arg[0].core = 0;
  390. dummy_task_arg[0].prio = 3;
  391. dummy_task_arg[0].task_func = esp_apptrace_test_task_crash;
  392. dummy_task_arg[0].data.buf = NULL;
  393. dummy_task_arg[0].data.buf_sz = 0;
  394. dummy_task_arg[0].data.period = 500000;
  395. dummy_task_arg[0].timers_num = 0;
  396. dummy_task_arg[0].timers = NULL;
  397. #if ESP_APPTRACE_TEST_USE_PRINT_LOCK == 1
  398. s_print_lock = xSemaphoreCreateBinary();
  399. if (!s_print_lock) {
  400. ets_printf("%s: Failed to create print lock!", TAG);
  401. return;
  402. }
  403. xSemaphoreGive(s_print_lock);
  404. #else
  405. #endif
  406. for (i = 0; i < test_cfg->tasks_num; i++) {
  407. test_cfg->tasks[i].data.mask = 0xFF;
  408. test_cfg->tasks[i].stop = 0;
  409. test_cfg->tasks[i].done = xSemaphoreCreateBinary();
  410. if (!test_cfg->tasks[i].done) {
  411. ESP_APPTRACE_TEST_LOGE("Failed to create task completion semaphore!");
  412. goto on_fail;
  413. }
  414. for (k = 0; k < test_cfg->tasks[i].timers_num; k++) {
  415. test_cfg->tasks[i].timers[k].data.mask = 0xFF;
  416. tims_in_use[test_cfg->tasks[i].timers[k].group][test_cfg->tasks[i].timers[k].id] = 1;
  417. }
  418. }
  419. int found = 0;
  420. for (i = 0; i < TIMER_GROUP_MAX; i++) {
  421. for (k = 0; k < TIMER_MAX; k++) {
  422. if (!tims_in_use[i][k]) {
  423. ESP_APPTRACE_TEST_LOGD("Found timer%d.%d", i, k);
  424. found = 1;
  425. break;
  426. }
  427. }
  428. if (found) {
  429. break;
  430. }
  431. }
  432. if (!found) {
  433. ESP_APPTRACE_TEST_LOGE("No free timer for TS!");
  434. goto on_fail;
  435. }
  436. esp_apptrace_test_ts_init(i, k);
  437. for (int i = 0; i < test_cfg->tasks_num; i++) {
  438. char name[30];
  439. TaskHandle_t thnd;
  440. sprintf(name, "apptrace_test%d", i);
  441. xTaskCreatePinnedToCore(test_cfg->tasks[i].task_func, name, 2048, &test_cfg->tasks[i], test_cfg->tasks[i].prio, &thnd, test_cfg->tasks[i].core);
  442. ESP_APPTRACE_TEST_LOGI("Created task %x", thnd);
  443. }
  444. xTaskCreatePinnedToCore(esp_apptrace_dummy_task, "dummy0", 2048, &dummy_task_arg[0], dummy_task_arg[0].prio, NULL, 0);
  445. xTaskCreatePinnedToCore(esp_apptrace_dummy_task, "dummy1", 2048, &dummy_task_arg[0], dummy_task_arg[0].prio, NULL, 1);
  446. for (int i = 0; i < test_cfg->tasks_num; i++) {
  447. //arg1.stop = 1;
  448. xSemaphoreTake(test_cfg->tasks[i].done, portMAX_DELAY);
  449. }
  450. on_fail:
  451. for (int i = 0; i < test_cfg->tasks_num; i++) {
  452. if (test_cfg->tasks[i].done) {
  453. vSemaphoreDelete(test_cfg->tasks[i].done);
  454. }
  455. }
  456. esp_apptrace_test_ts_cleanup();
  457. #if ESP_APPTRACE_TEST_USE_PRINT_LOCK == 1
  458. vSemaphoreDelete(s_print_lock);
  459. #else
  460. #endif
  461. }
  462. static esp_apptrace_test_task_arg_t s_test_tasks[4];
  463. static esp_apptrace_test_timer_arg_t s_test_timers[2];
  464. static uint8_t s_bufs[6][ESP_APPTRACE_TEST_BLOCK_SIZE];
  465. TEST_CASE("App trace test (1 task + 1 crashed timer ISR @ 1 core)", "[trace][ignore]")
  466. {
  467. esp_apptrace_test_cfg_t test_cfg = {
  468. .tasks_num = 1,
  469. .tasks = s_test_tasks,
  470. };
  471. memset(s_test_timers, 0, sizeof(s_test_timers));
  472. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  473. s_test_timers[0].group = TIMER_GROUP_0;
  474. s_test_timers[0].id = TIMER_0;
  475. s_test_timers[0].isr_func = esp_apptrace_test_timer_isr_crash;
  476. s_test_timers[0].data.buf = s_bufs[0];
  477. s_test_timers[0].data.buf_sz = sizeof(s_bufs[0]);
  478. s_test_timers[0].data.period = 1000;
  479. s_test_tasks[0].core = 0;
  480. s_test_tasks[0].prio = 3;
  481. s_test_tasks[0].task_func = esp_apptrace_dummy_task;
  482. s_test_tasks[0].data.buf = NULL;
  483. s_test_tasks[0].data.buf_sz = 0;
  484. s_test_tasks[0].data.period = 1000000;
  485. s_test_tasks[0].timers_num = 1;
  486. s_test_tasks[0].timers = s_test_timers;
  487. esp_apptrace_test(&test_cfg);
  488. }
  489. TEST_CASE("App trace test (1 crashed task)", "[trace][ignore]")
  490. {
  491. esp_apptrace_test_task_arg_t s_test_tasks[1];
  492. esp_apptrace_test_cfg_t test_cfg = {
  493. .tasks_num = 1,
  494. .tasks = s_test_tasks,
  495. };
  496. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  497. s_test_tasks[0].core = 0;
  498. s_test_tasks[0].prio = 3;
  499. s_test_tasks[0].task_func = esp_apptrace_test_task_crash;
  500. s_test_tasks[0].data.buf = s_bufs[0];
  501. s_test_tasks[0].data.buf_sz = sizeof(s_bufs[0]);
  502. s_test_tasks[0].data.period = 6000;
  503. s_test_tasks[0].timers_num = 0;
  504. s_test_tasks[0].timers = NULL;
  505. esp_apptrace_test(&test_cfg);
  506. }
  507. TEST_CASE("App trace test (2 tasks + 1 timer @ each core", "[trace][ignore]")
  508. {
  509. int ntask = 0;
  510. esp_apptrace_test_cfg_t test_cfg = {
  511. .tasks_num = 4,
  512. .tasks = s_test_tasks,
  513. };
  514. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  515. memset(s_test_timers, 0, sizeof(s_test_timers));
  516. s_test_timers[0].group = TIMER_GROUP_0;
  517. s_test_timers[0].id = TIMER_0;
  518. s_test_timers[0].isr_func = esp_apptrace_test_timer_isr;
  519. s_test_timers[0].data.buf = s_bufs[0];
  520. s_test_timers[0].data.buf_sz = sizeof(s_bufs[0]);
  521. s_test_timers[0].data.period = 150;
  522. s_test_timers[1].group = TIMER_GROUP_1;
  523. s_test_timers[1].id = TIMER_0;
  524. s_test_timers[1].isr_func = esp_apptrace_test_timer_isr;
  525. s_test_timers[1].data.buf = s_bufs[1];
  526. s_test_timers[1].data.buf_sz = sizeof(s_bufs[1]);
  527. s_test_timers[1].data.period = 150;
  528. s_test_tasks[ntask].core = 0;
  529. s_test_tasks[ntask].prio = 4;
  530. s_test_tasks[ntask].task_func = esp_apptrace_test_task;
  531. s_test_tasks[ntask].data.buf = s_bufs[2];
  532. s_test_tasks[ntask].data.buf_sz = sizeof(s_bufs[2]);
  533. s_test_tasks[ntask].data.period = 1000;
  534. s_test_tasks[ntask].timers_num = 1;
  535. s_test_tasks[ntask].timers = &s_test_timers[0];
  536. ntask++;
  537. s_test_tasks[ntask].core = 0;
  538. s_test_tasks[ntask].prio = 3;
  539. s_test_tasks[ntask].task_func = esp_apptrace_test_task;
  540. s_test_tasks[ntask].data.buf = s_bufs[3];
  541. s_test_tasks[ntask].data.buf_sz = sizeof(s_bufs[3]);
  542. s_test_tasks[ntask].data.period = 0;
  543. s_test_tasks[ntask].timers_num = 0;
  544. s_test_tasks[ntask].timers = NULL;
  545. ntask++;
  546. s_test_tasks[ntask].core = 1;
  547. s_test_tasks[ntask].prio = 4;
  548. s_test_tasks[ntask].task_func = esp_apptrace_test_task;
  549. s_test_tasks[ntask].data.buf = s_bufs[4];
  550. s_test_tasks[ntask].data.buf_sz = sizeof(s_bufs[4]);
  551. s_test_tasks[ntask].data.period = 1000;
  552. s_test_tasks[ntask].timers_num = 1;
  553. s_test_tasks[ntask].timers = &s_test_timers[1];
  554. ntask++;
  555. s_test_tasks[ntask].core = 1;
  556. s_test_tasks[ntask].prio = 3;
  557. s_test_tasks[ntask].task_func = esp_apptrace_test_task;
  558. s_test_tasks[ntask].data.buf = s_bufs[5];
  559. s_test_tasks[ntask].data.buf_sz = sizeof(s_bufs[5]);
  560. s_test_tasks[ntask].data.period = 0;
  561. s_test_tasks[ntask].timers_num = 0;
  562. s_test_tasks[ntask].timers = NULL;
  563. ntask++;
  564. esp_apptrace_test(&test_cfg);
  565. }
  566. TEST_CASE("App trace test (1 task + 1 timer @ 1 core)", "[trace][ignore]")
  567. {
  568. esp_apptrace_test_cfg_t test_cfg = {
  569. .tasks_num = 1,
  570. .tasks = s_test_tasks,
  571. };
  572. memset(s_test_timers, 0, sizeof(s_test_timers));
  573. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  574. s_test_timers[0].group = TIMER_GROUP_0;
  575. s_test_timers[0].id = TIMER_0;
  576. s_test_timers[0].isr_func = esp_apptrace_test_timer_isr;
  577. s_test_timers[0].data.buf = s_bufs[0];
  578. s_test_timers[0].data.buf_sz = sizeof(s_bufs[0]);
  579. s_test_timers[0].data.period = 150;
  580. s_test_tasks[0].core = 0;
  581. s_test_tasks[0].prio = 3;
  582. s_test_tasks[0].task_func = esp_apptrace_test_task;
  583. s_test_tasks[0].data.buf = s_bufs[1];
  584. s_test_tasks[0].data.buf_sz = sizeof(s_bufs[1]);
  585. s_test_tasks[0].data.period = 0;
  586. s_test_tasks[0].timers_num = 1;
  587. s_test_tasks[0].timers = s_test_timers;
  588. esp_apptrace_test(&test_cfg);
  589. }
  590. TEST_CASE("App trace test (2 tasks (nowait): 1 @ each core)", "[trace][ignore]")
  591. {
  592. esp_apptrace_test_cfg_t test_cfg = {
  593. .tasks_num = 2,
  594. .tasks = s_test_tasks,
  595. };
  596. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  597. s_test_tasks[0].nowait = 1;
  598. s_test_tasks[0].core = 0;
  599. s_test_tasks[0].prio = 3;
  600. s_test_tasks[0].task_func = esp_apptrace_test_task;
  601. s_test_tasks[0].data.buf = s_bufs[0];
  602. s_test_tasks[0].data.buf_sz = sizeof(s_bufs[0]);
  603. s_test_tasks[0].data.period = 6700;
  604. s_test_tasks[0].timers_num = 0;
  605. s_test_tasks[0].timers = NULL;
  606. s_test_tasks[1].nowait = 1;
  607. s_test_tasks[1].core = 1;
  608. s_test_tasks[1].prio = 3;
  609. s_test_tasks[1].task_func = esp_apptrace_test_task;
  610. s_test_tasks[1].data.buf = s_bufs[1];
  611. s_test_tasks[1].data.buf_sz = sizeof(s_bufs[1]);
  612. s_test_tasks[1].data.period = 6700;
  613. s_test_tasks[1].timers_num = 0;
  614. s_test_tasks[1].timers = NULL;
  615. esp_apptrace_test(&test_cfg);
  616. }
  617. TEST_CASE("App trace test (2 tasks: 1 @ each core)", "[trace][ignore]")
  618. {
  619. esp_apptrace_test_cfg_t test_cfg = {
  620. .tasks_num = 2,
  621. .tasks = s_test_tasks,
  622. };
  623. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  624. s_test_tasks[0].core = 0;
  625. s_test_tasks[0].prio = 3;
  626. s_test_tasks[0].task_func = esp_apptrace_test_task;
  627. s_test_tasks[0].data.buf = s_bufs[0];
  628. s_test_tasks[0].data.buf_sz = sizeof(s_bufs[0]);
  629. s_test_tasks[0].data.period = 0;
  630. s_test_tasks[0].timers_num = 0;
  631. s_test_tasks[0].timers = NULL;
  632. s_test_tasks[1].core = 1;
  633. s_test_tasks[1].prio = 3;
  634. s_test_tasks[1].task_func = esp_apptrace_test_task;
  635. s_test_tasks[1].data.buf = s_bufs[1];
  636. s_test_tasks[1].data.buf_sz = sizeof(s_bufs[1]);
  637. s_test_tasks[1].data.period = 0;
  638. s_test_tasks[1].timers_num = 0;
  639. s_test_tasks[1].timers = NULL;
  640. esp_apptrace_test(&test_cfg);
  641. }
  642. TEST_CASE("App trace test (1 task)", "[trace][ignore]")
  643. {
  644. esp_apptrace_test_cfg_t test_cfg = {
  645. .tasks_num = 1,
  646. .tasks = s_test_tasks,
  647. };
  648. memset(s_test_tasks, 0, sizeof(s_test_tasks));
  649. s_test_tasks[0].core = 1;
  650. s_test_tasks[0].prio = 3;
  651. s_test_tasks[0].task_func = esp_apptrace_test_task;
  652. s_test_tasks[0].data.buf = s_bufs[0];
  653. s_test_tasks[0].data.buf_sz = sizeof(s_bufs[0]);
  654. s_test_tasks[0].data.period = 0;
  655. s_test_tasks[0].timers_num = 0;
  656. s_test_tasks[0].timers = NULL;
  657. esp_apptrace_test(&test_cfg);
  658. }
  659. static int esp_logtrace_printf(const char *fmt, ...)
  660. {
  661. va_list ap;
  662. va_start(ap, fmt);
  663. int ret = esp_apptrace_vprintf_to(ESP_APPTRACE_DEST_TRAX, ESP_APPTRACE_TMO_INFINITE, fmt, ap);
  664. va_end(ap);
  665. return ret;
  666. }
  667. typedef struct {
  668. SemaphoreHandle_t done;
  669. } esp_logtrace_task_t;
  670. static void esp_logtrace_task(void *p)
  671. {
  672. esp_logtrace_task_t *arg = (esp_logtrace_task_t *) p;
  673. ESP_APPTRACE_TEST_LOGI("%x: run log test task", xTaskGetCurrentTaskHandle());
  674. int i = 0;
  675. while (1) {
  676. esp_logtrace_printf("sample print %lx %hx %c\n", 2 * i + 0x10, 2 * i + 0x20, (2 * i + 0x30) & 0xFF);
  677. esp_logtrace_printf("sample print %lx %hx %c %lu %hu %d %d %d %d\n", i, i + 0x10, (i + 0x20) & 0xFF, i + 0x30, i + 0x40, i + 0x50, i + 0x60, i + 0x70, i + 0x80);
  678. ESP_LOGI(TAG, "%p: sample print 1", xTaskGetCurrentTaskHandle());
  679. ESP_LOGI(TAG, "%p: sample print 2 %u", xTaskGetCurrentTaskHandle(), (unsigned)i);
  680. ESP_LOGI(TAG, "%p: sample print 4 %c", xTaskGetCurrentTaskHandle(), ((i & 0xFF) % 95) + 32);
  681. ESP_LOGI(TAG, "%p: sample print 5 %f", xTaskGetCurrentTaskHandle(), 1.0);
  682. ESP_LOGI(TAG, "%p: sample print 6 %f", xTaskGetCurrentTaskHandle(), 3.45);
  683. ESP_LOGI(TAG, "%p: logtrace task work %d.%d", xTaskGetCurrentTaskHandle(), xPortGetCoreID(), i);
  684. if (++i == 10000) {
  685. break;
  686. }
  687. }
  688. esp_err_t ret = esp_apptrace_flush(ESP_APPTRACE_DEST_TRAX, ESP_APPTRACE_TMO_INFINITE);
  689. if (ret != ESP_OK) {
  690. ESP_APPTRACE_TEST_LOGE("Failed to flush printf buf (%d)!", ret);
  691. }
  692. ESP_APPTRACE_TEST_LOGI("%x: finished", xTaskGetCurrentTaskHandle());
  693. xSemaphoreGive(arg->done);
  694. vTaskDelay(1);
  695. vTaskDelete(NULL);
  696. }
  697. TEST_CASE("Log trace test (1 task)", "[trace][ignore]")
  698. {
  699. TaskHandle_t thnd;
  700. esp_logtrace_task_t arg1 = {
  701. .done = xSemaphoreCreateBinary(),
  702. };
  703. esp_logtrace_task_t arg2 = {
  704. .done = xSemaphoreCreateBinary(),
  705. };
  706. xTaskCreatePinnedToCore(esp_logtrace_task, "logtrace0", 2048, &arg1, 3, &thnd, 0);
  707. ESP_APPTRACE_TEST_LOGI("Created task %x", thnd);
  708. xTaskCreatePinnedToCore(esp_logtrace_task, "logtrace1", 2048, &arg2, 3, &thnd, 1);
  709. ESP_APPTRACE_TEST_LOGI("Created task %x", thnd);
  710. xSemaphoreTake(arg1.done, portMAX_DELAY);
  711. vSemaphoreDelete(arg1.done);
  712. xSemaphoreTake(arg2.done, portMAX_DELAY);
  713. vSemaphoreDelete(arg2.done);
  714. }
  715. #endif