can.c 6.1 KB

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  1. #include <stdio.h>
  2. #include "os/queue.h"
  3. #include "bsp/bsp_driver.h"
  4. #include "libs/utils.h"
  5. #include "libs/circle_buffer.h"
  6. #define CAN_RX_MESSAGE_RX_ID 1
  7. #define CAN_SEND_QUEUE_SIZE 32
  8. #define RX_ID_OFFSET 16
  9. #define CAN_SEND_OK 0
  10. #define CAN_SEND_ERROR -1
  11. #define CAN_SEND_WAIT_TIMEOUT -2
  12. #define TX_NUM 64
  13. #define RX_NUM 64
  14. static c_buffer_t g_tx_circle;
  15. static c_buffer_t g_rx_circle;
  16. static uint8_t _g_tx_buffer[sizeof(can_trasnmit_message_struct) * TX_NUM + 1];
  17. static uint8_t _g_rx_buffer[sizeof(can_receive_message_struct) * RX_NUM + 1];
  18. static int shark_send_can0_data(can_trasnmit_message_struct *P_message);
  19. static uint8_t can_get_mailbox(uint32_t can_periph);
  20. /* this function can be overide by app, which need recv the can frame */
  21. __weak void handle_can_frame(can_id_t id, uint8_t *data, int len){
  22. }
  23. void can_rx_poll(void){
  24. can_receive_message_struct message;
  25. if (circle_get_data(&g_rx_circle, (uint8_t *)&message, sizeof(message)) != sizeof(message)) {
  26. return;
  27. }
  28. can_id_t can_id;
  29. can_id.id = message.rx_efid;
  30. handle_can_frame(can_id, message.rx_data, message.rx_dlen);
  31. return ;
  32. }
  33. void can_tx_poll(void){
  34. can_trasnmit_message_struct can_tr_m;
  35. if (CAN_ERR(CAN0) & CAN_ERR_BOERR){
  36. shark_can0_reset();
  37. }
  38. while (can_get_mailbox(CAN0) != CAN_NOMAILBOX) {
  39. if (circle_get_data(&g_tx_circle, (uint8_t * )&can_tr_m, sizeof(can_tr_m)) != sizeof(can_tr_m)) {
  40. break;
  41. }
  42. can_message_transmit(CAN0,&can_tr_m);
  43. }
  44. }
  45. static u32 _can_poll_task(void *args) {
  46. can_rx_poll();
  47. can_tx_poll();
  48. return 0;
  49. }
  50. static __inline__ void can_fifo_recv(int fifo){
  51. can_receive_message_struct Rxmessage;
  52. can_message_receive(CAN0, fifo, &Rxmessage);
  53. circle_put_data(&g_rx_circle, (uint8_t *)&Rxmessage, sizeof(Rxmessage));
  54. }
  55. void CAN_RX0_IRQHandler(void)
  56. {
  57. can_fifo_recv(CAN_FIFO0);
  58. }
  59. void CAN0_RX1_IRQHandler(void)
  60. {
  61. can_fifo_recv(CAN_FIFO1);
  62. }
  63. static void shark_can0_txrx_pin_config(void){
  64. /* enable can clock */
  65. rcu_periph_clock_enable(RCU_CAN0);
  66. rcu_periph_clock_enable(CAN_PIN_RCU);
  67. rcu_periph_clock_enable(RCU_AF);
  68. #ifdef CAN_REMAP
  69. gpio_pin_remap_config(CAN_REMAP,ENABLE);
  70. #endif
  71. gpio_init(CAN_TX_GROUP, GPIO_MODE_AF_PP, GPIO_OSPEED_50MHZ, CAN_TX_PIN);
  72. gpio_init(CAN_RX_GROUP, GPIO_MODE_IPU, GPIO_OSPEED_50MHZ, CAN_RX_PIN);
  73. }
  74. static void shark_can0_config(void)
  75. {
  76. can_parameter_struct can_parameter;
  77. can_struct_para_init(CAN_INIT_STRUCT, &can_parameter);
  78. /* initialize CAN register */
  79. can_deinit(CAN0);
  80. //can_deinit(CAN1);
  81. /* initialize CAN parameters */
  82. can_parameter.time_triggered = DISABLE;
  83. can_parameter.auto_bus_off_recovery = ENABLE;
  84. can_parameter.auto_wake_up = DISABLE;
  85. can_parameter.rec_fifo_overwrite = DISABLE;
  86. can_parameter.trans_fifo_order = ENABLE;
  87. can_parameter.no_auto_retrans = ENABLE;
  88. #if CAN0_SPEED==250 //250k bps
  89. if (SystemCoreClock == 120000000) {
  90. can_parameter.resync_jump_width = CAN_BT_SJW_1TQ;
  91. can_parameter.time_segment_1 = CAN_BT_BS1_5TQ;
  92. can_parameter.time_segment_2 = CAN_BT_BS2_4TQ;
  93. } else {
  94. can_parameter.resync_jump_width = CAN_BT_SJW_1TQ;
  95. can_parameter.time_segment_1 = CAN_BT_BS1_5TQ;
  96. can_parameter.time_segment_2 = CAN_BT_BS2_3TQ;
  97. }
  98. #endif
  99. can_parameter.working_mode = CAN_NORMAL_MODE;
  100. can_parameter.prescaler = 24;
  101. /* initialize CAN */
  102. can_init(CAN0, &can_parameter);
  103. /* recv my can ID, use fifo0 */
  104. can_filter_mask_mode_init(CAN_MY_ADDRESS, CAN_FILTER_DEST_MASK, CAN_EXTENDED_FIFO0, 0);
  105. nvic_irq_enable(CAN_IRQ0,CAN_IRQ_PRIORITY,0);
  106. /* enable can receive FIFO0 not empty interrupt */
  107. can_interrupt_enable(CAN0, CAN_INTEN_RFNEIE0);
  108. }
  109. static int shark_send_can0_data(can_trasnmit_message_struct *P_message){
  110. can_tx_poll();
  111. if (circle_put_data(&g_tx_circle, (u8 *)P_message, sizeof(can_trasnmit_message_struct))){
  112. return CAN_SEND_OK;
  113. }
  114. return CAN_SEND_ERROR;
  115. }
  116. static uint8_t can_get_mailbox(uint32_t can_periph)
  117. {
  118. uint8_t mailbox_number = CAN_MAILBOX0;
  119. /* select one empty mailbox */
  120. if(CAN_TSTAT_TME0 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME0)){
  121. mailbox_number = CAN_MAILBOX0;
  122. }else if(CAN_TSTAT_TME1 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME1)){
  123. mailbox_number = CAN_MAILBOX1;
  124. }else if(CAN_TSTAT_TME2 == (CAN_TSTAT(can_periph)&CAN_TSTAT_TME2)){
  125. mailbox_number = CAN_MAILBOX2;
  126. }else{
  127. mailbox_number = CAN_NOMAILBOX;
  128. }
  129. /* return no mailbox empty */
  130. if(CAN_NOMAILBOX == mailbox_number){
  131. return CAN_NOMAILBOX;
  132. }
  133. return mailbox_number;
  134. }
  135. int shark_can0_send_message(uint32_t can_id, const void*buff, int len){
  136. can_trasnmit_message_struct trasnmit_msg;
  137. can_id_t can_frame_id;
  138. u32 total_frames = ((len + 7) >> 3);
  139. int send_len = len;
  140. u32 frame_id = 1;
  141. can_frame_id.id = can_id;
  142. can_frame_id.total = total_frames;
  143. while(send_len > 0){
  144. can_frame_id.idx = frame_id;
  145. trasnmit_msg.tx_sfid = 0;
  146. trasnmit_msg.tx_efid = can_frame_id.id;
  147. trasnmit_msg.tx_ft = CAN_FT_DATA;
  148. trasnmit_msg.tx_ff = CAN_FF_EXTENDED;
  149. trasnmit_msg.tx_dlen = min(CAN_DATA_SIZE,send_len);
  150. memcpy((char *)trasnmit_msg.tx_data, (char *)buff + (len - send_len), trasnmit_msg.tx_dlen);
  151. send_len -= trasnmit_msg.tx_dlen;
  152. frame_id ++;
  153. if (shark_send_can0_data(&trasnmit_msg) != CAN_SEND_OK){
  154. return CAN_SEND_ERROR;
  155. }
  156. }
  157. return CAN_SEND_OK;
  158. }
  159. int shark_can0_send_ext_message(uint32_t can_id, const void*buff, int len){
  160. can_trasnmit_message_struct trasnmit_msg;
  161. trasnmit_msg.tx_sfid = 0;
  162. trasnmit_msg.tx_efid = can_id;
  163. trasnmit_msg.tx_ft = CAN_FT_DATA;
  164. trasnmit_msg.tx_ff = CAN_FF_EXTENDED;
  165. trasnmit_msg.tx_dlen = min(CAN_DLC_LENGTH,len);
  166. memcpy((char *)trasnmit_msg.tx_data, (char *)buff, trasnmit_msg.tx_dlen);
  167. if (shark_send_can0_data(&trasnmit_msg) != CAN_SEND_OK){
  168. return CAN_SEND_ERROR;
  169. }
  170. return CAN_SEND_OK;
  171. }
  172. void shark_can0_reset(void){
  173. shark_can0_txrx_pin_config();
  174. shark_can0_config();
  175. }
  176. void shark_can0_deinit(void){
  177. can_deinit(CAN0);
  178. rcu_periph_clock_disable(RCU_CAN0);
  179. }
  180. void shark_can0_init(void){
  181. circle_buffer_init(&g_tx_circle, _g_tx_buffer, sizeof(_g_tx_buffer));
  182. circle_buffer_init(&g_rx_circle, _g_rx_buffer, sizeof(_g_rx_buffer));
  183. shark_task_create(_can_poll_task, NULL);
  184. shark_can0_txrx_pin_config();
  185. shark_can0_config();
  186. }