Uart.c 13 KB

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  1. #include "Uart.h"
  2. #include "fifo.h"
  3. uint8_t g_bPrintDebug = 0;
  4. void usart0_config(void)
  5. {
  6. /* enable GPIO clock */
  7. rcu_periph_clock_enable(RCU_GPIOA);
  8. /* enable USART clock */
  9. rcu_periph_clock_enable(RCU_USART0);
  10. /* connect port to USARTx_Tx */
  11. gpio_init(GPIOA, GPIO_MODE_AF_PP, GPIO_OSPEED_50MHZ, GPIO_PIN_9);
  12. /* connect port to USARTx_Rx */
  13. gpio_init(GPIOA, GPIO_MODE_IN_FLOATING, GPIO_OSPEED_50MHZ, GPIO_PIN_10);
  14. /* USART configure */
  15. usart_deinit(USART0);
  16. usart_word_length_set(USART0, USART_WL_8BIT);
  17. usart_stop_bit_set(USART0, USART_STB_1BIT);
  18. usart_parity_config(USART0, USART_PM_NONE);
  19. usart_baudrate_set(USART0, 115200U);
  20. usart_receive_config(USART0, USART_RECEIVE_ENABLE);
  21. usart_transmit_config(USART0, USART_TRANSMIT_ENABLE);
  22. usart_enable(USART0);
  23. }
  24. /* retarget the C library printf function to the USART */
  25. int fputc(int ch, FILE *f)
  26. {
  27. usart_data_transmit(USART0, (uint8_t)ch);
  28. while(RESET == usart_flag_get(USART0, USART_FLAG_TC));
  29. return ch;
  30. }
  31. /*测试串口输出4G接收到的数据*/
  32. void data_dump(const char *name, uint8_t *data, uint16_t length)
  33. {
  34. int index = 0;
  35. if(g_bPrintDebug == 0) return;
  36. printf("%s Data Info: \r\n ", name);
  37. for(index = 0;index < length;index++) {
  38. if((index%4 == 0)&&index) {
  39. if((index%16 == 0)&&index) {
  40. printf("\r\n ");
  41. } else {
  42. printf(" ");
  43. }
  44. }
  45. printf("%02x ", *(data + index));
  46. }
  47. printf("\r\n");
  48. }
  49. uartInfo_t g_uart1Info;
  50. uint8_t U1_RxBuff[U1_RX_SIZE];
  51. UCB_CB U1CB;
  52. void dma_init_uart_4G(void)
  53. {
  54. dma_parameter_struct dma_init_Usart1_TX;
  55. dma_parameter_struct dma_init_Usart1_RX;
  56. rcu_periph_clock_enable(RCU_DMA0);
  57. dma_deinit(DMA0, DMA_CH5);
  58. dma_deinit(DMA0, DMA_CH6);
  59. /* initialize DMA0 channel6(Usart1_TX) */
  60. dma_init_Usart1_TX.direction = DMA_MEMORY_TO_PERIPHERAL;
  61. dma_init_Usart1_TX.memory_addr = (uint32_t)g_uart1Info.txfifo;
  62. dma_init_Usart1_TX.memory_inc = DMA_MEMORY_INCREASE_ENABLE;
  63. dma_init_Usart1_TX.memory_width = DMA_MEMORY_WIDTH_8BIT;
  64. dma_init_Usart1_TX.number = (uint32_t)USART1_TX_SIZE;
  65. dma_init_Usart1_TX.periph_addr = (uint32_t)(&USART_DATA(USART1));
  66. dma_init_Usart1_TX.periph_inc = DMA_PERIPH_INCREASE_DISABLE;
  67. dma_init_Usart1_TX.periph_width = DMA_PERIPHERAL_WIDTH_8BIT;
  68. dma_init_Usart1_TX.priority = DMA_PRIORITY_LOW;
  69. dma_init(DMA0, DMA_CH6, &dma_init_Usart1_TX);
  70. dma_circulation_disable(DMA0, DMA_CH6);
  71. /* initialize DMA0 channel5(Usart1_RX) */
  72. dma_init_Usart1_RX.direction = DMA_PERIPHERAL_TO_MEMORY;
  73. dma_init_Usart1_RX.memory_addr = (uint32_t)U1_RxBuff;
  74. dma_init_Usart1_RX.memory_inc = DMA_MEMORY_INCREASE_ENABLE;
  75. dma_init_Usart1_RX.memory_width = DMA_MEMORY_WIDTH_8BIT;
  76. dma_init_Usart1_RX.number = (uint32_t)U1_RX_MAX+1;
  77. dma_init_Usart1_RX.periph_addr = (uint32_t)(&USART_DATA(USART1));
  78. dma_init_Usart1_RX.periph_inc = DMA_PERIPH_INCREASE_DISABLE;
  79. dma_init_Usart1_RX.periph_width = DMA_PERIPHERAL_WIDTH_8BIT;
  80. dma_init_Usart1_RX.priority = DMA_PRIORITY_HIGH;//DMA_PRIORITY_LOW;
  81. dma_init(DMA0, DMA_CH5, &dma_init_Usart1_RX);
  82. dma_circulation_disable(DMA0, DMA_CH5);//circulate or not makes no difference
  83. dma_memory_to_memory_disable(DMA0,DMA_CH5);
  84. dma_memory_to_memory_disable(DMA0,DMA_CH6);
  85. /* enable all DMA channels you need */
  86. dma_channel_enable(DMA0,DMA_CH5);
  87. dma_channel_disable(DMA0,DMA_CH6);
  88. }
  89. void usart_4g_ptr_init(void)
  90. {
  91. U1CB.URxDataIN = &U1CB.URxDataPtr[0];
  92. U1CB.URxDataOUT = &U1CB.URxDataPtr[0];
  93. U1CB.URxDataEND = &U1CB.URxDataPtr[NUM-1];
  94. U1CB.URxDataIN->start = U1_RxBuff;
  95. U1CB.URxCounter = 0;
  96. }
  97. void usart_4G_dma_init(void)
  98. {
  99. rcu_periph_clock_enable(RCU_GPIOA);/* enable GPIO clock */
  100. rcu_periph_clock_enable(RCU_AF);
  101. rcu_periph_clock_enable(RCU_USART1);/* enable USART clock */
  102. gpio_init(GPIOA, GPIO_MODE_AF_PP, GPIO_OSPEED_50MHZ, GPIO_PIN_2);/* connect port to USARTx_Tx */
  103. gpio_init(GPIOA, GPIO_MODE_IN_FLOATING, GPIO_OSPEED_50MHZ, GPIO_PIN_3);/* connect port to USARTx_Rx */
  104. /* USART configure */
  105. usart_deinit(USART1);
  106. usart_word_length_set(USART1, USART_WL_8BIT);
  107. usart_stop_bit_set(USART1, USART_STB_1BIT);
  108. usart_parity_config(USART1, USART_PM_NONE);
  109. usart_baudrate_set(USART1, 115200U);
  110. usart_hardware_flow_rts_config(USART1, USART_RTS_DISABLE);
  111. usart_hardware_flow_cts_config(USART1, USART_CTS_DISABLE);
  112. usart_receive_config(USART1, USART_RECEIVE_ENABLE);
  113. usart_transmit_config(USART1, USART_TRANSMIT_ENABLE);
  114. /* config USARTx_TX transmit by DMA */
  115. usart_dma_transmit_config(USART1,USART_DENT_ENABLE);
  116. usart_dma_receive_config(USART1,USART_DENR_ENABLE);
  117. /* USART1 IRQ set */
  118. nvic_irq_enable(USART1_IRQn, 1, 0);
  119. nvic_irq_enable(DMA0_Channel6_IRQn, 1, 1);
  120. usart_interrupt_enable(USART1, USART_INT_IDLE);
  121. dma_interrupt_enable(DMA0,DMA_CH6,DMA_INT_FTF); /* 使能DAM发送完成中断 */
  122. dma_channel_enable(DMA0, DMA_CH6);
  123. usart_4g_ptr_init();
  124. usart_enable(USART1);
  125. }
  126. void USART1_IRQHandler(void)
  127. {
  128. if((RESET != usart_interrupt_flag_get(USART1, USART_INT_FLAG_IDLE)) \
  129. && (RESET != usart_flag_get(USART1, USART_FLAG_IDLEF)))//
  130. {
  131. usart_flag_get(USART1,USART_FLAG_IDLEF);
  132. usart_data_receive(USART1);
  133. // len = (U1_RX_MAX+1) - dma_transfer_number_get(DMA0,DMA_CH5);
  134. // if(len >1){
  135. U1CB.URxCounter += (U1_RX_MAX+1) - dma_transfer_number_get(DMA0,DMA_CH5);
  136. U1CB.URxDataIN->end = &U1_RxBuff[U1CB.URxCounter-1];
  137. U1CB.URxDataIN++;
  138. if(U1CB.URxDataIN == U1CB.URxDataEND){
  139. U1CB.URxDataIN = &U1CB.URxDataPtr[0];
  140. }
  141. if(U1_RX_SIZE - U1CB.URxCounter >= U1_RX_MAX){
  142. U1CB.URxDataIN->start = &U1_RxBuff[U1CB.URxCounter];
  143. }
  144. else {
  145. U1CB.URxDataIN->start = U1_RxBuff;
  146. U1CB.URxCounter = 0;
  147. }
  148. dma_channel_disable(DMA0, DMA_CH5);
  149. dma_memory_address_config(DMA0, DMA_CH5,(uint32_t)U1CB.URxDataIN->start);
  150. dma_transfer_number_config(DMA0, DMA_CH5, U1_RX_MAX+1);
  151. dma_channel_enable(DMA0, DMA_CH5);
  152. //}
  153. //usart_interrupt_flag_clear(USART1, USART_INT_FLAG_IDLE);//
  154. //usart_flag_clear(USART1, USART_FLAG_IDLEF);
  155. }
  156. }
  157. void DMA0_Channel6_IRQHandler(void)
  158. {
  159. if(dma_interrupt_flag_get(DMA0, DMA_CH6, DMA_INT_FLAG_FTF)){
  160. dma_interrupt_flag_clear(DMA0, DMA_CH6, DMA_INT_FLAG_G);
  161. g_uart1Info.bSdFinish = 1;
  162. }
  163. }
  164. /*------------------------------------------485----------------------------------------*/
  165. void UART3_IRQHandler(void)
  166. {
  167. volatile uint8_t len = 0;
  168. if((RESET != usart_interrupt_flag_get(UART3, USART_INT_FLAG_IDLE)) \
  169. && (RESET != usart_flag_get(UART3, USART_FLAG_IDLEF)))
  170. {
  171. usart_interrupt_flag_clear(UART3, USART_INT_FLAG_IDLE);//
  172. usart_flag_clear(UART3, USART_FLAG_IDLEF);
  173. dma_channel_disable(DMA1, DMA_CH2);
  174. usart_data_receive(UART3);
  175. len = USART3_RX_SIZE - dma_transfer_number_get(DMA1,DMA_CH2);
  176. if(len>12)
  177. fifo_write(&g_rxfifo,usart485RX_Buffer,len);
  178. dma_memory_address_config(DMA1, DMA_CH2,(uint32_t)usart485RX_Buffer);
  179. dma_transfer_number_config(DMA1, DMA_CH2, USART3_RX_SIZE);/* reset DMA_Channel CNT */
  180. dma_channel_enable(DMA1, DMA_CH2);/* enable USART1_RX DMA_Channel */
  181. g_uart485.bRcv = 1;
  182. }
  183. else if(RESET != usart_interrupt_flag_get(UART3,USART_INT_FLAG_TC)) { // 发送完成中断
  184. usart_interrupt_flag_clear(UART3, USART_INT_FLAG_TC);//
  185. usart_flag_clear(UART3, USART_FLAG_TC);
  186. g_uart485.bSdFinish = 1;
  187. gpio_bit_reset(GPIOC, GPIO_PIN_12);
  188. }
  189. }
  190. void DMA1_Channel3_4_IRQHandler(void)
  191. {
  192. if(dma_interrupt_flag_get(DMA1, DMA_CH4, DMA_INT_FLAG_FTF)){
  193. dma_interrupt_flag_clear(DMA1, DMA_CH4, DMA_INT_FLAG_G);
  194. //g_uart485.bSdFinish = 1;
  195. //gpio_bit_reset(GPIOC, GPIO_PIN_12);
  196. usart_interrupt_enable(UART3, USART_INT_TC); // 全能接收完成中断
  197. }
  198. }
  199. uint8_t usart485TX_Buffer[USART3_TX_SIZE] = {0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08};
  200. uint8_t usart485RX_Buffer[USART3_RX_SIZE] = {0};
  201. uart485Info_t g_uart485;
  202. void dam_init_uart_485(void)
  203. {
  204. dma_parameter_struct dma_init_Usart3_TX;
  205. dma_parameter_struct dma_init_Usart3_RX;
  206. rcu_periph_clock_enable(RCU_DMA1);
  207. dma_deinit(DMA1, DMA_CH2); // RX
  208. dma_deinit(DMA1, DMA_CH4); // TX
  209. /* initialize DMA1 channel4(Uart3_TX) */
  210. dma_init_Usart3_TX.direction = DMA_MEMORY_TO_PERIPHERAL;
  211. dma_init_Usart3_TX.memory_addr = (uint32_t)usart485TX_Buffer;
  212. dma_init_Usart3_TX.memory_inc = DMA_MEMORY_INCREASE_ENABLE;
  213. dma_init_Usart3_TX.memory_width = DMA_MEMORY_WIDTH_8BIT;
  214. dma_init_Usart3_TX.number = (uint32_t)USART3_TX_SIZE;
  215. dma_init_Usart3_TX.periph_addr = (uint32_t)(&USART_DATA(UART3));
  216. dma_init_Usart3_TX.periph_inc = DMA_PERIPH_INCREASE_DISABLE;
  217. dma_init_Usart3_TX.periph_width = DMA_PERIPHERAL_WIDTH_8BIT;
  218. dma_init_Usart3_TX.priority = DMA_PRIORITY_LOW;
  219. dma_init(DMA1, DMA_CH4, &dma_init_Usart3_TX);
  220. dma_circulation_disable(DMA1, DMA_CH4);
  221. /* initialize DMA1 channel2(Uart3_RX) */
  222. dma_init_Usart3_RX.direction = DMA_PERIPHERAL_TO_MEMORY;
  223. dma_init_Usart3_RX.memory_addr = (uint32_t)usart485RX_Buffer;
  224. dma_init_Usart3_RX.memory_inc = DMA_MEMORY_INCREASE_ENABLE;
  225. dma_init_Usart3_RX.memory_width = DMA_MEMORY_WIDTH_8BIT;
  226. dma_init_Usart3_RX.number = (uint32_t)USART3_RX_SIZE;
  227. dma_init_Usart3_RX.periph_addr = (uint32_t)(&USART_DATA(UART3));
  228. dma_init_Usart3_RX.periph_inc = DMA_PERIPH_INCREASE_DISABLE;
  229. dma_init_Usart3_RX.periph_width = DMA_PERIPHERAL_WIDTH_8BIT;
  230. dma_init_Usart3_RX.priority = DMA_PRIORITY_LOW;
  231. dma_init(DMA1, DMA_CH2, &dma_init_Usart3_RX);
  232. dma_circulation_disable(DMA1, DMA_CH2);//circulate or not makes no difference
  233. dma_memory_to_memory_disable(DMA1,DMA_CH2);
  234. dma_memory_to_memory_disable(DMA1,DMA_CH4);
  235. /* enable all DMA channels you need */
  236. dma_channel_enable(DMA1,DMA_CH2);
  237. dma_channel_disable(DMA1,DMA_CH4);
  238. }
  239. /*------------------------------------------------------------------------------------
  240. * 485初始化 UART3
  241. * -----------------------------------------------------------------------------------*/
  242. void usart_485_dma_init(void)
  243. {
  244. rcu_periph_clock_enable(RCU_GPIOC);/* enable GPIO clock */
  245. rcu_periph_clock_enable(RCU_AF);
  246. rcu_periph_clock_enable(RCU_UART3);/* enable USART clock */
  247. gpio_init(GPIOC, GPIO_MODE_AF_PP, GPIO_OSPEED_50MHZ, GPIO_PIN_10);/* connect port to USARTx_Tx */
  248. gpio_init(GPIOC, GPIO_MODE_IN_FLOATING, GPIO_OSPEED_50MHZ, GPIO_PIN_11);/* connect port to USARTx_Rx */
  249. //设置rs485芯片,收发模式控制引脚 PC12,低电平接收,高电平发送,初始化为接收模式
  250. gpio_init(GPIOC, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, GPIO_PIN_12);
  251. gpio_bit_reset(GPIOC, GPIO_PIN_12);
  252. /* USART configure */
  253. usart_deinit(UART3);
  254. usart_word_length_set(UART3, USART_WL_8BIT);
  255. usart_stop_bit_set(UART3, USART_STB_1BIT);
  256. usart_parity_config(UART3, USART_PM_NONE);
  257. usart_baudrate_set(UART3, 115200U);
  258. usart_hardware_flow_rts_config(UART3, USART_RTS_DISABLE);
  259. usart_hardware_flow_cts_config(UART3, USART_CTS_DISABLE);
  260. usart_receive_config(UART3, USART_RECEIVE_ENABLE);
  261. usart_transmit_config(UART3, USART_TRANSMIT_ENABLE);
  262. usart_enable(UART3);
  263. /* config USARTx_TX transmit by DMA */
  264. usart_dma_transmit_config(UART3,USART_DENT_ENABLE);
  265. usart_dma_receive_config(UART3,USART_DENR_ENABLE);
  266. /* UART3 IRQ set */
  267. nvic_irq_enable(UART3_IRQn, 4, 0);
  268. usart_interrupt_enable(UART3, USART_INT_FLAG_IDLE);
  269. dma_interrupt_enable(DMA1,DMA_CH4,DMA_INT_FTF); /* 使能DAM发送完成中断 */
  270. dma_channel_enable(DMA1, DMA_CH4);
  271. nvic_irq_enable(DMA1_Channel3_Channel4_IRQn, 4, 1);
  272. g_uart485.bSdFinish = 1;
  273. g_rxfifo.flag = FALSE;
  274. g_rxfifo.front = 0;
  275. g_rxfifo.rear = 0;
  276. }
  277. void usart_tx_dma_send(uint32_t usart_periph,uint8_t* data_buffer,uint16_t length)
  278. {
  279. volatile uint32_t i = 0;
  280. if(usart_periph==USART1)
  281. {
  282. /* Channel disable */
  283. dma_channel_disable(DMA0, DMA_CH6);
  284. dma_memory_address_config(DMA0, DMA_CH6,(uint32_t)data_buffer);
  285. dma_transfer_number_config(DMA0,DMA_CH6,length);
  286. /* enable DMA channel to start send */
  287. dma_channel_enable(DMA0, DMA_CH6);
  288. g_uart1Info.bSdFinish = 0;
  289. }
  290. else if(usart_periph==UART3)
  291. {
  292. /* Channel disable */
  293. gpio_bit_set(GPIOC, GPIO_PIN_12);
  294. dma_interrupt_flag_clear(DMA1, DMA_CH4, DMA_INT_FLAG_FTF);
  295. usart_interrupt_flag_clear(UART3,USART_INT_FLAG_TC);
  296. usart_flag_clear(UART3,USART_FLAG_TC);
  297. for(i=0;i<0xFF;i++);
  298. // if(dma_flag_get(DMA1,DMA_FLAG_FTF)!=RESET){
  299. // }
  300. dma_channel_disable(DMA1, DMA_CH4);
  301. dma_memory_address_config(DMA1, DMA_CH4,(uint32_t)data_buffer);
  302. dma_transfer_number_config(DMA1,DMA_CH4,length);
  303. /* enable DMA channel to start send */
  304. dma_channel_enable(DMA1, DMA_CH4);
  305. usart_dma_transmit_config(UART3,USART_DENT_ENABLE);
  306. g_uart485.bRcv = 0;
  307. g_uart485.bSdFinish = 0;
  308. }
  309. }