twai.c 26 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2015-2021 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include "sdkconfig.h"
  7. #include "freertos/FreeRTOS.h"
  8. #include "freertos/task.h"
  9. #include "freertos/queue.h"
  10. #include "freertos/semphr.h"
  11. #include "esp_types.h"
  12. #include "esp_log.h"
  13. #include "esp_intr_alloc.h"
  14. #include "esp_pm.h"
  15. #include "esp_attr.h"
  16. #include "esp_heap_caps.h"
  17. #include "driver/gpio.h"
  18. #include "driver/periph_ctrl.h"
  19. #include "driver/twai.h"
  20. #include "soc/soc_caps.h"
  21. #include "soc/twai_periph.h"
  22. #include "hal/twai_hal.h"
  23. #include "esp_rom_gpio.h"
  24. /* ---------------------------- Definitions --------------------------------- */
  25. //Internal Macros
  26. #define TWAI_CHECK(cond, ret_val) ({ \
  27. if (!(cond)) { \
  28. return (ret_val); \
  29. } \
  30. })
  31. #define TWAI_CHECK_FROM_CRIT(cond, ret_val) ({ \
  32. if (!(cond)) { \
  33. TWAI_EXIT_CRITICAL(); \
  34. return ret_val; \
  35. } \
  36. })
  37. #define TWAI_SET_FLAG(var, mask) ((var) |= (mask))
  38. #define TWAI_RESET_FLAG(var, mask) ((var) &= ~(mask))
  39. #ifdef CONFIG_TWAI_ISR_IN_IRAM
  40. #define TWAI_ISR_ATTR IRAM_ATTR
  41. #define TWAI_MALLOC_CAPS (MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT)
  42. #else
  43. #define TWAI_TAG "TWAI"
  44. #define TWAI_ISR_ATTR
  45. #define TWAI_MALLOC_CAPS MALLOC_CAP_DEFAULT
  46. #endif //CONFIG_TWAI_ISR_IN_IRAM
  47. #define DRIVER_DEFAULT_INTERRUPTS 0xE7 //Exclude data overrun (bit[3]) and brp_div (bit[4])
  48. #define ALERT_LOG_LEVEL_WARNING TWAI_ALERT_ARB_LOST //Alerts above and including this level use ESP_LOGW
  49. #define ALERT_LOG_LEVEL_ERROR TWAI_ALERT_TX_FAILED //Alerts above and including this level use ESP_LOGE
  50. /* ------------------ Typedefs, structures, and variables ------------------- */
  51. //Control structure for TWAI driver
  52. typedef struct {
  53. //Control and status members
  54. twai_state_t state;
  55. twai_mode_t mode;
  56. uint32_t rx_missed_count;
  57. uint32_t rx_overrun_count;
  58. uint32_t tx_failed_count;
  59. uint32_t arb_lost_count;
  60. uint32_t bus_error_count;
  61. intr_handle_t isr_handle;
  62. //TX and RX
  63. #ifdef CONFIG_TWAI_ISR_IN_IRAM
  64. void *tx_queue_buff;
  65. void *tx_queue_struct;
  66. void *rx_queue_buff;
  67. void *rx_queue_struct;
  68. void *semphr_struct;
  69. #endif
  70. QueueHandle_t tx_queue;
  71. QueueHandle_t rx_queue;
  72. int tx_msg_count;
  73. int rx_msg_count;
  74. //Alerts
  75. SemaphoreHandle_t alert_semphr;
  76. uint32_t alerts_enabled;
  77. uint32_t alerts_triggered;
  78. #ifdef CONFIG_PM_ENABLE
  79. //Power Management
  80. esp_pm_lock_handle_t pm_lock;
  81. #endif
  82. } twai_obj_t;
  83. static twai_obj_t *p_twai_obj = NULL;
  84. static portMUX_TYPE twai_spinlock = portMUX_INITIALIZER_UNLOCKED;
  85. #define TWAI_ENTER_CRITICAL_ISR() portENTER_CRITICAL_ISR(&twai_spinlock)
  86. #define TWAI_EXIT_CRITICAL_ISR() portEXIT_CRITICAL_ISR(&twai_spinlock)
  87. #define TWAI_ENTER_CRITICAL() portENTER_CRITICAL(&twai_spinlock)
  88. #define TWAI_EXIT_CRITICAL() portEXIT_CRITICAL(&twai_spinlock)
  89. static twai_hal_context_t twai_context;
  90. /* -------------------- Interrupt and Alert Handlers ------------------------ */
  91. TWAI_ISR_ATTR static void twai_alert_handler(uint32_t alert_code, int *alert_req)
  92. {
  93. if (p_twai_obj->alerts_enabled & alert_code) {
  94. //Signify alert has occurred
  95. TWAI_SET_FLAG(p_twai_obj->alerts_triggered, alert_code);
  96. *alert_req = 1;
  97. #ifndef CONFIG_TWAI_ISR_IN_IRAM //Only log if ISR is not in IRAM
  98. if (p_twai_obj->alerts_enabled & TWAI_ALERT_AND_LOG) {
  99. if (alert_code >= ALERT_LOG_LEVEL_ERROR) {
  100. ESP_EARLY_LOGE(TWAI_TAG, "Alert %d", alert_code);
  101. } else if (alert_code >= ALERT_LOG_LEVEL_WARNING) {
  102. ESP_EARLY_LOGW(TWAI_TAG, "Alert %d", alert_code);
  103. } else {
  104. ESP_EARLY_LOGI(TWAI_TAG, "Alert %d", alert_code);
  105. }
  106. }
  107. #endif //CONFIG_TWAI_ISR_IN_IRAM
  108. }
  109. }
  110. static inline void twai_handle_rx_buffer_frames(BaseType_t *task_woken, int *alert_req)
  111. {
  112. #ifdef SOC_TWAI_SUPPORTS_RX_STATUS
  113. uint32_t msg_count = twai_hal_get_rx_msg_count(&twai_context);
  114. for (uint32_t i = 0; i < msg_count; i++) {
  115. twai_hal_frame_t frame;
  116. if (twai_hal_read_rx_buffer_and_clear(&twai_context, &frame)) {
  117. //Valid frame copied from RX buffer
  118. if (xQueueSendFromISR(p_twai_obj->rx_queue, &frame, task_woken) == pdTRUE) {
  119. p_twai_obj->rx_msg_count++;
  120. twai_alert_handler(TWAI_ALERT_RX_DATA, alert_req);
  121. } else { //Failed to send to queue
  122. p_twai_obj->rx_missed_count++;
  123. twai_alert_handler(TWAI_ALERT_RX_QUEUE_FULL, alert_req);
  124. }
  125. } else { //Failed to read from RX buffer because message is overrun
  126. p_twai_obj->rx_overrun_count++;
  127. twai_alert_handler(TWAI_ALERT_RX_FIFO_OVERRUN, alert_req);
  128. }
  129. }
  130. #else //SOC_TWAI_SUPPORTS_RX_STATUS
  131. uint32_t msg_count = twai_hal_get_rx_msg_count(&twai_context);
  132. bool overrun = false;
  133. //Clear all valid RX frames
  134. for (int i = 0; i < msg_count; i++) {
  135. twai_hal_frame_t frame;
  136. if (twai_hal_read_rx_buffer_and_clear(&twai_context, &frame)) {
  137. //Valid frame copied from RX buffer
  138. if (xQueueSendFromISR(p_twai_obj->rx_queue, &frame, task_woken) == pdTRUE) {
  139. p_twai_obj->rx_msg_count++;
  140. twai_alert_handler(TWAI_ALERT_RX_DATA, alert_req);
  141. } else {
  142. p_twai_obj->rx_missed_count++;
  143. twai_alert_handler(TWAI_ALERT_RX_QUEUE_FULL, alert_req);
  144. }
  145. } else {
  146. overrun = true;
  147. break;
  148. }
  149. }
  150. //All remaining frames are treated as overrun. Clear them all
  151. if (overrun) {
  152. p_twai_obj->rx_overrun_count += twai_hal_clear_rx_fifo_overrun(&twai_context);
  153. twai_alert_handler(TWAI_ALERT_RX_FIFO_OVERRUN, alert_req);
  154. }
  155. #endif //SOC_TWAI_SUPPORTS_RX_STATUS
  156. }
  157. static inline void twai_handle_tx_buffer_frame(BaseType_t *task_woken, int *alert_req)
  158. {
  159. //Handle previously transmitted frame
  160. if (twai_hal_check_last_tx_successful(&twai_context)) {
  161. twai_alert_handler(TWAI_ALERT_TX_SUCCESS, alert_req);
  162. } else {
  163. p_twai_obj->tx_failed_count++;
  164. twai_alert_handler(TWAI_ALERT_TX_FAILED, alert_req);
  165. }
  166. //Update TX message count
  167. p_twai_obj->tx_msg_count--;
  168. assert(p_twai_obj->tx_msg_count >= 0); //Sanity check
  169. //Check if there are more frames to transmit
  170. if (p_twai_obj->tx_msg_count > 0 && p_twai_obj->tx_queue != NULL) {
  171. twai_hal_frame_t frame;
  172. int res = xQueueReceiveFromISR(p_twai_obj->tx_queue, &frame, task_woken);
  173. if (res == pdTRUE) {
  174. twai_hal_set_tx_buffer_and_transmit(&twai_context, &frame);
  175. } else {
  176. assert(false && "failed to get a frame from TX queue");
  177. }
  178. } else {
  179. //No more frames to transmit
  180. twai_alert_handler(TWAI_ALERT_TX_IDLE, alert_req);
  181. }
  182. }
  183. TWAI_ISR_ATTR static void twai_intr_handler_main(void *arg)
  184. {
  185. BaseType_t task_woken = pdFALSE;
  186. int alert_req = 0;
  187. uint32_t events;
  188. TWAI_ENTER_CRITICAL_ISR();
  189. if (p_twai_obj == NULL) { //In case intr occurs whilst driver is being uninstalled
  190. TWAI_EXIT_CRITICAL_ISR();
  191. return;
  192. }
  193. events = twai_hal_get_events(&twai_context); //Get the events that triggered the interrupt
  194. #if defined(CONFIG_TWAI_ERRATA_FIX_RX_FRAME_INVALID) || defined(CONFIG_TWAI_ERRATA_FIX_RX_FIFO_CORRUPT)
  195. if (events & TWAI_HAL_EVENT_NEED_PERIPH_RESET) {
  196. twai_hal_prepare_for_reset(&twai_context);
  197. periph_module_reset(PERIPH_TWAI_MODULE);
  198. twai_hal_recover_from_reset(&twai_context);
  199. p_twai_obj->rx_missed_count += twai_hal_get_reset_lost_rx_cnt(&twai_context);
  200. twai_alert_handler(TWAI_ALERT_PERIPH_RESET, &alert_req);
  201. }
  202. #endif
  203. if (events & TWAI_HAL_EVENT_RX_BUFF_FRAME) {
  204. //Note: This event will never occur if there is a periph reset event
  205. twai_handle_rx_buffer_frames(&task_woken, &alert_req);
  206. }
  207. if (events & TWAI_HAL_EVENT_TX_BUFF_FREE) {
  208. twai_handle_tx_buffer_frame(&task_woken, &alert_req);
  209. }
  210. //Handle events that only require alerting (i.e. no handler)
  211. if (events & TWAI_HAL_EVENT_BUS_OFF) {
  212. p_twai_obj->state = TWAI_STATE_BUS_OFF;
  213. twai_alert_handler(TWAI_ALERT_BUS_OFF, &alert_req);
  214. }
  215. if (events & TWAI_HAL_EVENT_BUS_RECOV_CPLT) {
  216. p_twai_obj->state = TWAI_STATE_STOPPED;
  217. twai_alert_handler(TWAI_ALERT_BUS_RECOVERED, &alert_req);
  218. }
  219. if (events & TWAI_HAL_EVENT_BUS_ERR) {
  220. p_twai_obj->bus_error_count++;
  221. twai_alert_handler(TWAI_ALERT_BUS_ERROR, &alert_req);
  222. }
  223. if (events & TWAI_HAL_EVENT_ARB_LOST) {
  224. p_twai_obj->arb_lost_count++;
  225. twai_alert_handler(TWAI_ALERT_ARB_LOST, &alert_req);
  226. }
  227. if (events & TWAI_HAL_EVENT_BUS_RECOV_PROGRESS) {
  228. //Bus-recovery in progress. TEC has dropped below error warning limit
  229. twai_alert_handler(TWAI_ALERT_RECOVERY_IN_PROGRESS, &alert_req);
  230. }
  231. if (events & TWAI_HAL_EVENT_ERROR_PASSIVE) {
  232. //Entered error passive
  233. twai_alert_handler(TWAI_ALERT_ERR_PASS, &alert_req);
  234. }
  235. if (events & TWAI_HAL_EVENT_ERROR_ACTIVE) {
  236. //Returned to error active
  237. twai_alert_handler(TWAI_ALERT_ERR_ACTIVE, &alert_req);
  238. }
  239. if (events & TWAI_HAL_EVENT_ABOVE_EWL) {
  240. //TEC or REC surpassed error warning limit
  241. twai_alert_handler(TWAI_ALERT_ABOVE_ERR_WARN, &alert_req);
  242. }
  243. if (events & TWAI_HAL_EVENT_BELOW_EWL) {
  244. //TEC and REC are both below error warning
  245. twai_alert_handler(TWAI_ALERT_BELOW_ERR_WARN, &alert_req);
  246. }
  247. TWAI_EXIT_CRITICAL_ISR();
  248. if (p_twai_obj->alert_semphr != NULL && alert_req) {
  249. //Give semaphore if alerts were triggered
  250. xSemaphoreGiveFromISR(p_twai_obj->alert_semphr, &task_woken);
  251. }
  252. if (task_woken == pdTRUE) {
  253. portYIELD_FROM_ISR();
  254. }
  255. }
  256. /* -------------------------- Helper functions ----------------------------- */
  257. static void twai_configure_gpio(gpio_num_t tx, gpio_num_t rx, gpio_num_t clkout, gpio_num_t bus_status)
  258. {
  259. //Set TX pin
  260. gpio_set_pull_mode(tx, GPIO_FLOATING);
  261. esp_rom_gpio_connect_out_signal(tx, TWAI_TX_IDX, false, false);
  262. esp_rom_gpio_pad_select_gpio(tx);
  263. //Set RX pin
  264. gpio_set_pull_mode(rx, GPIO_FLOATING);
  265. esp_rom_gpio_connect_in_signal(rx, TWAI_RX_IDX, false);
  266. esp_rom_gpio_pad_select_gpio(rx);
  267. gpio_set_direction(rx, GPIO_MODE_INPUT);
  268. //Configure output clock pin (Optional)
  269. if (clkout >= 0 && clkout < GPIO_NUM_MAX) {
  270. gpio_set_pull_mode(clkout, GPIO_FLOATING);
  271. esp_rom_gpio_connect_out_signal(clkout, TWAI_CLKOUT_IDX, false, false);
  272. esp_rom_gpio_pad_select_gpio(clkout);
  273. }
  274. //Configure bus status pin (Optional)
  275. if (bus_status >= 0 && bus_status < GPIO_NUM_MAX) {
  276. gpio_set_pull_mode(bus_status, GPIO_FLOATING);
  277. esp_rom_gpio_connect_out_signal(bus_status, TWAI_BUS_OFF_ON_IDX, false, false);
  278. esp_rom_gpio_pad_select_gpio(bus_status);
  279. }
  280. }
  281. static void twai_free_driver_obj(twai_obj_t *p_obj)
  282. {
  283. //Free driver object and any dependent SW resources it uses (queues, semaphores etc)
  284. #ifdef CONFIG_PM_ENABLE
  285. if (p_obj->pm_lock != NULL) {
  286. ESP_ERROR_CHECK(esp_pm_lock_delete(p_obj->pm_lock));
  287. }
  288. #endif
  289. //Delete queues and semaphores
  290. if (p_obj->tx_queue != NULL) {
  291. vQueueDelete(p_obj->tx_queue);
  292. }
  293. if (p_obj->rx_queue != NULL) {
  294. vQueueDelete(p_obj->rx_queue);
  295. }
  296. if (p_obj->alert_semphr != NULL) {
  297. vSemaphoreDelete(p_obj->alert_semphr);
  298. }
  299. #ifdef CONFIG_TWAI_ISR_IN_IRAM
  300. //Free memory used by static queues and semaphores. free() allows freeing NULL pointers
  301. free(p_obj->tx_queue_buff);
  302. free(p_obj->tx_queue_struct);
  303. free(p_obj->rx_queue_buff);
  304. free(p_obj->rx_queue_struct);
  305. free(p_obj->semphr_struct);
  306. #endif //CONFIG_TWAI_ISR_IN_IRAM
  307. free(p_obj);
  308. }
  309. static twai_obj_t *twai_alloc_driver_obj(uint32_t tx_queue_len, uint32_t rx_queue_len)
  310. {
  311. //Allocates driver object and any dependent SW resources it uses (queues, semaphores etc)
  312. //Create a TWAI driver object
  313. twai_obj_t *p_obj = heap_caps_calloc(1, sizeof(twai_obj_t), TWAI_MALLOC_CAPS);
  314. if (p_obj == NULL) {
  315. return NULL;
  316. }
  317. #ifdef CONFIG_TWAI_ISR_IN_IRAM
  318. //Allocate memory for queues and semaphores in DRAM
  319. if (tx_queue_len > 0) {
  320. p_obj->tx_queue_buff = heap_caps_calloc(tx_queue_len, sizeof(twai_hal_frame_t), TWAI_MALLOC_CAPS);
  321. p_obj->tx_queue_struct = heap_caps_calloc(1, sizeof(StaticQueue_t), TWAI_MALLOC_CAPS);
  322. if (p_obj->tx_queue_buff == NULL || p_obj->tx_queue_struct == NULL) {
  323. goto cleanup;
  324. }
  325. }
  326. p_obj->rx_queue_buff = heap_caps_calloc(rx_queue_len, sizeof(twai_hal_frame_t), TWAI_MALLOC_CAPS);
  327. p_obj->rx_queue_struct = heap_caps_calloc(1, sizeof(StaticQueue_t), TWAI_MALLOC_CAPS);
  328. p_obj->semphr_struct = heap_caps_calloc(1, sizeof(StaticSemaphore_t), TWAI_MALLOC_CAPS);
  329. if (p_obj->rx_queue_buff == NULL || p_obj->rx_queue_struct == NULL || p_obj->semphr_struct == NULL) {
  330. goto cleanup;
  331. }
  332. //Create static queues and semaphores
  333. if (tx_queue_len > 0) {
  334. p_obj->tx_queue = xQueueCreateStatic(tx_queue_len, sizeof(twai_hal_frame_t), p_obj->tx_queue_buff, p_obj->tx_queue_struct);
  335. if (p_obj->tx_queue == NULL) {
  336. goto cleanup;
  337. }
  338. }
  339. p_obj->rx_queue = xQueueCreateStatic(rx_queue_len, sizeof(twai_hal_frame_t), p_obj->rx_queue_buff, p_obj->rx_queue_struct);
  340. p_obj->alert_semphr = xSemaphoreCreateBinaryStatic(p_obj->semphr_struct);
  341. if (p_obj->rx_queue == NULL || p_obj->alert_semphr == NULL) {
  342. goto cleanup;
  343. }
  344. #else //CONFIG_TWAI_ISR_IN_IRAM
  345. if (tx_queue_len > 0) {
  346. p_obj->tx_queue = xQueueCreate(tx_queue_len, sizeof(twai_hal_frame_t));
  347. }
  348. p_obj->rx_queue = xQueueCreate(rx_queue_len, sizeof(twai_hal_frame_t));
  349. p_obj->alert_semphr = xSemaphoreCreateBinary();
  350. if ((tx_queue_len > 0 && p_obj->tx_queue == NULL) || p_obj->rx_queue == NULL || p_obj->alert_semphr == NULL) {
  351. goto cleanup;
  352. }
  353. #endif //CONFIG_TWAI_ISR_IN_IRAM
  354. #ifdef CONFIG_PM_ENABLE
  355. esp_err_t pm_err = esp_pm_lock_create(ESP_PM_APB_FREQ_MAX, 0, "twai", &(p_obj->pm_lock));
  356. if (pm_err != ESP_OK ) {
  357. goto cleanup;
  358. }
  359. #endif
  360. return p_obj;
  361. cleanup:
  362. twai_free_driver_obj(p_obj);
  363. return NULL;
  364. }
  365. /* ---------------------------- Public Functions ---------------------------- */
  366. esp_err_t twai_driver_install(const twai_general_config_t *g_config, const twai_timing_config_t *t_config, const twai_filter_config_t *f_config)
  367. {
  368. //Check arguments
  369. TWAI_CHECK(g_config != NULL, ESP_ERR_INVALID_ARG);
  370. TWAI_CHECK(t_config != NULL, ESP_ERR_INVALID_ARG);
  371. TWAI_CHECK(f_config != NULL, ESP_ERR_INVALID_ARG);
  372. TWAI_CHECK(g_config->rx_queue_len > 0, ESP_ERR_INVALID_ARG);
  373. TWAI_CHECK(g_config->tx_io >= 0 && g_config->tx_io < GPIO_NUM_MAX, ESP_ERR_INVALID_ARG);
  374. TWAI_CHECK(g_config->rx_io >= 0 && g_config->rx_io < GPIO_NUM_MAX, ESP_ERR_INVALID_ARG);
  375. TWAI_CHECK(t_config->brp >= SOC_TWAI_BRP_MIN && t_config->brp <= SOC_TWAI_BRP_MAX, ESP_ERR_INVALID_ARG);
  376. #ifndef CONFIG_TWAI_ISR_IN_IRAM
  377. TWAI_CHECK(!(g_config->intr_flags & ESP_INTR_FLAG_IRAM), ESP_ERR_INVALID_ARG);
  378. #endif
  379. TWAI_ENTER_CRITICAL();
  380. TWAI_CHECK_FROM_CRIT(p_twai_obj == NULL, ESP_ERR_INVALID_STATE);
  381. TWAI_EXIT_CRITICAL();
  382. esp_err_t ret;
  383. twai_obj_t *p_twai_obj_dummy;
  384. //Create a TWAI object (including queues and semaphores)
  385. p_twai_obj_dummy = twai_alloc_driver_obj(g_config->tx_queue_len, g_config->rx_queue_len);
  386. TWAI_CHECK(p_twai_obj_dummy != NULL, ESP_ERR_NO_MEM);
  387. //Initialize flags and variables. All other members are already set to zero by twai_alloc_driver_obj()
  388. p_twai_obj_dummy->state = TWAI_STATE_STOPPED;
  389. p_twai_obj_dummy->mode = g_config->mode;
  390. p_twai_obj_dummy->alerts_enabled = g_config->alerts_enabled;
  391. //Initialize TWAI peripheral registers, and allocate interrupt
  392. TWAI_ENTER_CRITICAL();
  393. if (p_twai_obj == NULL) {
  394. p_twai_obj = p_twai_obj_dummy;
  395. } else {
  396. //Check if driver is already installed
  397. TWAI_EXIT_CRITICAL();
  398. ret = ESP_ERR_INVALID_STATE;
  399. goto err;
  400. }
  401. periph_module_reset(PERIPH_TWAI_MODULE);
  402. periph_module_enable(PERIPH_TWAI_MODULE); //Enable APB CLK to TWAI peripheral
  403. bool init = twai_hal_init(&twai_context);
  404. assert(init);
  405. (void)init;
  406. twai_hal_configure(&twai_context, t_config, f_config, DRIVER_DEFAULT_INTERRUPTS, g_config->clkout_divider);
  407. TWAI_EXIT_CRITICAL();
  408. //Allocate GPIO and Interrupts
  409. twai_configure_gpio(g_config->tx_io, g_config->rx_io, g_config->clkout_io, g_config->bus_off_io);
  410. ESP_ERROR_CHECK(esp_intr_alloc(ETS_TWAI_INTR_SOURCE, g_config->intr_flags, twai_intr_handler_main, NULL, &p_twai_obj->isr_handle));
  411. #ifdef CONFIG_PM_ENABLE
  412. ESP_ERROR_CHECK(esp_pm_lock_acquire(p_twai_obj->pm_lock)); //Acquire pm_lock to keep APB clock at 80MHz
  413. #endif
  414. return ESP_OK; //TWAI module is still in reset mode, users need to call twai_start() afterwards
  415. err:
  416. twai_free_driver_obj(p_twai_obj_dummy);
  417. return ret;
  418. }
  419. esp_err_t twai_driver_uninstall(void)
  420. {
  421. twai_obj_t *p_twai_obj_dummy;
  422. TWAI_ENTER_CRITICAL();
  423. //Check state
  424. TWAI_CHECK_FROM_CRIT(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  425. TWAI_CHECK_FROM_CRIT(p_twai_obj->state == TWAI_STATE_STOPPED || p_twai_obj->state == TWAI_STATE_BUS_OFF, ESP_ERR_INVALID_STATE);
  426. //Clear registers by reading
  427. twai_hal_deinit(&twai_context);
  428. periph_module_disable(PERIPH_TWAI_MODULE); //Disable TWAI peripheral
  429. p_twai_obj_dummy = p_twai_obj; //Use dummy to shorten critical section
  430. p_twai_obj = NULL;
  431. TWAI_EXIT_CRITICAL();
  432. ESP_ERROR_CHECK(esp_intr_free(p_twai_obj_dummy->isr_handle)); //Free interrupt
  433. #ifdef CONFIG_PM_ENABLE
  434. //Release and delete power management lock
  435. ESP_ERROR_CHECK(esp_pm_lock_release(p_twai_obj_dummy->pm_lock));
  436. #endif
  437. //Free can driver object
  438. twai_free_driver_obj(p_twai_obj_dummy);
  439. return ESP_OK;
  440. }
  441. esp_err_t twai_start(void)
  442. {
  443. //Check state
  444. TWAI_ENTER_CRITICAL();
  445. TWAI_CHECK_FROM_CRIT(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  446. TWAI_CHECK_FROM_CRIT(p_twai_obj->state == TWAI_STATE_STOPPED, ESP_ERR_INVALID_STATE);
  447. //Reset RX queue, RX message count, amd TX queue
  448. xQueueReset(p_twai_obj->rx_queue);
  449. if (p_twai_obj->tx_queue != NULL) {
  450. xQueueReset(p_twai_obj->tx_queue);
  451. }
  452. p_twai_obj->rx_msg_count = 0;
  453. p_twai_obj->tx_msg_count = 0;
  454. twai_hal_start(&twai_context, p_twai_obj->mode);
  455. p_twai_obj->state = TWAI_STATE_RUNNING;
  456. TWAI_EXIT_CRITICAL();
  457. return ESP_OK;
  458. }
  459. esp_err_t twai_stop(void)
  460. {
  461. //Check state
  462. TWAI_ENTER_CRITICAL();
  463. TWAI_CHECK_FROM_CRIT(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  464. TWAI_CHECK_FROM_CRIT(p_twai_obj->state == TWAI_STATE_RUNNING, ESP_ERR_INVALID_STATE);
  465. twai_hal_stop(&twai_context);
  466. //Reset TX Queue and message count
  467. if (p_twai_obj->tx_queue != NULL) {
  468. xQueueReset(p_twai_obj->tx_queue);
  469. }
  470. p_twai_obj->tx_msg_count = 0;
  471. p_twai_obj->state = TWAI_STATE_STOPPED;
  472. TWAI_EXIT_CRITICAL();
  473. return ESP_OK;
  474. }
  475. esp_err_t twai_transmit(const twai_message_t *message, TickType_t ticks_to_wait)
  476. {
  477. //Check arguments
  478. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  479. TWAI_CHECK(message != NULL, ESP_ERR_INVALID_ARG);
  480. TWAI_CHECK((message->data_length_code <= TWAI_FRAME_MAX_DLC) || message->dlc_non_comp, ESP_ERR_INVALID_ARG);
  481. TWAI_ENTER_CRITICAL();
  482. //Check State
  483. TWAI_CHECK_FROM_CRIT(!(p_twai_obj->mode == TWAI_MODE_LISTEN_ONLY), ESP_ERR_NOT_SUPPORTED);
  484. TWAI_CHECK_FROM_CRIT(p_twai_obj->state == TWAI_STATE_RUNNING, ESP_ERR_INVALID_STATE);
  485. //Format frame
  486. esp_err_t ret = ESP_FAIL;
  487. twai_hal_frame_t tx_frame;
  488. twai_hal_format_frame(message, &tx_frame);
  489. //Check if frame can be sent immediately
  490. if (p_twai_obj->tx_msg_count == 0) {
  491. //No other frames waiting to transmit. Bypass queue and transmit immediately
  492. twai_hal_set_tx_buffer_and_transmit(&twai_context, &tx_frame);
  493. p_twai_obj->tx_msg_count++;
  494. ret = ESP_OK;
  495. }
  496. TWAI_EXIT_CRITICAL();
  497. if (ret != ESP_OK) {
  498. if (p_twai_obj->tx_queue == NULL) {
  499. //TX Queue is disabled and TX buffer is occupied, message was not sent
  500. ret = ESP_FAIL;
  501. } else if (xQueueSend(p_twai_obj->tx_queue, &tx_frame, ticks_to_wait) == pdTRUE) {
  502. //Copied to TX Queue
  503. TWAI_ENTER_CRITICAL();
  504. if ((!twai_hal_check_state_flags(&twai_context, TWAI_HAL_STATE_FLAG_TX_BUFF_OCCUPIED)) && uxQueueMessagesWaiting(p_twai_obj->tx_queue) > 0) {
  505. //If the TX buffer is free but the TX queue is not empty. Check if we need to manually start a transmission
  506. if (twai_hal_check_state_flags(&twai_context, TWAI_HAL_STATE_FLAG_BUS_OFF) || !twai_hal_check_state_flags(&twai_context, TWAI_HAL_STATE_FLAG_RUNNING)) {
  507. //TX buffer became free due to bus-off or is no longer running. No need to start a transmission
  508. ret = ESP_ERR_INVALID_STATE;
  509. } else {
  510. //Manually start a transmission
  511. int res = xQueueReceive(p_twai_obj->tx_queue, &tx_frame, 0);
  512. assert(res == pdTRUE);
  513. (void)res;
  514. twai_hal_set_tx_buffer_and_transmit(&twai_context, &tx_frame);
  515. p_twai_obj->tx_msg_count++;
  516. ret = ESP_OK;
  517. }
  518. } else {
  519. //Frame was copied to queue, waiting to be transmitted
  520. p_twai_obj->tx_msg_count++;
  521. ret = ESP_OK;
  522. }
  523. TWAI_EXIT_CRITICAL();
  524. } else {
  525. //Timed out waiting for free space on TX queue
  526. ret = ESP_ERR_TIMEOUT;
  527. }
  528. }
  529. return ret;
  530. }
  531. esp_err_t twai_receive(twai_message_t *message, TickType_t ticks_to_wait)
  532. {
  533. //Check arguments and state
  534. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  535. TWAI_CHECK(message != NULL, ESP_ERR_INVALID_ARG);
  536. //Get frame from RX Queue or RX Buffer
  537. twai_hal_frame_t rx_frame;
  538. if (xQueueReceive(p_twai_obj->rx_queue, &rx_frame, ticks_to_wait) != pdTRUE) {
  539. return ESP_ERR_TIMEOUT;
  540. }
  541. TWAI_ENTER_CRITICAL();
  542. p_twai_obj->rx_msg_count--;
  543. TWAI_EXIT_CRITICAL();
  544. //Decode frame
  545. twai_hal_parse_frame(&rx_frame, message);
  546. return ESP_OK;
  547. }
  548. esp_err_t twai_read_alerts(uint32_t *alerts, TickType_t ticks_to_wait)
  549. {
  550. //Check arguments and state
  551. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  552. TWAI_CHECK(alerts != NULL, ESP_ERR_INVALID_ARG);
  553. //Wait for an alert to occur
  554. if (xSemaphoreTake(p_twai_obj->alert_semphr, ticks_to_wait) == pdTRUE) {
  555. TWAI_ENTER_CRITICAL();
  556. *alerts = p_twai_obj->alerts_triggered;
  557. p_twai_obj->alerts_triggered = 0; //Clear triggered alerts
  558. TWAI_EXIT_CRITICAL();
  559. return ESP_OK;
  560. } else {
  561. *alerts = 0;
  562. return ESP_ERR_TIMEOUT;
  563. }
  564. }
  565. esp_err_t twai_reconfigure_alerts(uint32_t alerts_enabled, uint32_t *current_alerts)
  566. {
  567. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  568. TWAI_ENTER_CRITICAL();
  569. //Clear any unhandled alerts
  570. if (current_alerts != NULL) {
  571. *current_alerts = p_twai_obj->alerts_triggered;;
  572. }
  573. p_twai_obj->alerts_triggered = 0;
  574. p_twai_obj->alerts_enabled = alerts_enabled; //Update enabled alerts
  575. TWAI_EXIT_CRITICAL();
  576. return ESP_OK;
  577. }
  578. esp_err_t twai_initiate_recovery(void)
  579. {
  580. TWAI_ENTER_CRITICAL();
  581. //Check state
  582. TWAI_CHECK_FROM_CRIT(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  583. TWAI_CHECK_FROM_CRIT(p_twai_obj->state == TWAI_STATE_BUS_OFF, ESP_ERR_INVALID_STATE);
  584. //Reset TX Queue/Counters
  585. if (p_twai_obj->tx_queue != NULL) {
  586. xQueueReset(p_twai_obj->tx_queue);
  587. }
  588. p_twai_obj->tx_msg_count = 0;
  589. //Trigger start of recovery process
  590. twai_hal_start_bus_recovery(&twai_context);
  591. p_twai_obj->state = TWAI_STATE_RECOVERING;
  592. TWAI_EXIT_CRITICAL();
  593. return ESP_OK;
  594. }
  595. esp_err_t twai_get_status_info(twai_status_info_t *status_info)
  596. {
  597. //Check parameters and state
  598. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  599. TWAI_CHECK(status_info != NULL, ESP_ERR_INVALID_ARG);
  600. TWAI_ENTER_CRITICAL();
  601. status_info->tx_error_counter = twai_hal_get_tec(&twai_context);
  602. status_info->rx_error_counter = twai_hal_get_rec(&twai_context);
  603. status_info->msgs_to_tx = p_twai_obj->tx_msg_count;
  604. status_info->msgs_to_rx = p_twai_obj->rx_msg_count;
  605. status_info->tx_failed_count = p_twai_obj->tx_failed_count;
  606. status_info->rx_missed_count = p_twai_obj->rx_missed_count;
  607. status_info->rx_overrun_count = p_twai_obj->rx_overrun_count;
  608. status_info->arb_lost_count = p_twai_obj->arb_lost_count;
  609. status_info->bus_error_count = p_twai_obj->bus_error_count;
  610. status_info->state = p_twai_obj->state;
  611. TWAI_EXIT_CRITICAL();
  612. return ESP_OK;
  613. }
  614. esp_err_t twai_clear_transmit_queue(void)
  615. {
  616. //Check State
  617. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  618. TWAI_CHECK(p_twai_obj->tx_queue != NULL, ESP_ERR_NOT_SUPPORTED);
  619. TWAI_ENTER_CRITICAL();
  620. //If a message is currently undergoing transmission, the tx interrupt handler will decrement tx_msg_count
  621. p_twai_obj->tx_msg_count = twai_hal_check_state_flags(&twai_context, TWAI_HAL_STATE_FLAG_TX_BUFF_OCCUPIED) ? 1 : 0;
  622. xQueueReset(p_twai_obj->tx_queue);
  623. TWAI_EXIT_CRITICAL();
  624. return ESP_OK;
  625. }
  626. esp_err_t twai_clear_receive_queue(void)
  627. {
  628. //Check State
  629. TWAI_CHECK(p_twai_obj != NULL, ESP_ERR_INVALID_STATE);
  630. TWAI_ENTER_CRITICAL();
  631. p_twai_obj->rx_msg_count = 0;
  632. xQueueReset(p_twai_obj->rx_queue);
  633. TWAI_EXIT_CRITICAL();
  634. return ESP_OK;
  635. }