usart.c 10 KB

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  1. /*
  2. * File : usart.c
  3. * This file is part of RT-Thread RTOS
  4. * COPYRIGHT (C) 2006-2013, RT-Thread Development Team
  5. *
  6. * The license and distribution terms for this file may be
  7. * found in the file LICENSE in this distribution or at
  8. * http://www.rt-thread.org/license/LICENSE
  9. *
  10. * Change Logs:
  11. * Date Author Notes
  12. * 2009-01-05 Bernard the first version
  13. * 2010-03-29 Bernard remove interrupt Tx and DMA Rx mode
  14. * 2013-05-13 aozima update for kehong-lingtai.
  15. * 2015-01-31 armink make sure the serial transmit complete in putc()
  16. */
  17. #include "stm32f10x.h"
  18. #include "usart.h"
  19. #include "board.h"
  20. #include <rtdevice.h>
  21. /* USART1 */
  22. #define UART1_GPIO_TX GPIO_Pin_9
  23. #define UART1_GPIO_RX GPIO_Pin_10
  24. #define UART1_GPIO GPIOA
  25. /* USART2 */
  26. #define UART2_GPIO_TX GPIO_Pin_2
  27. #define UART2_GPIO_RX GPIO_Pin_3
  28. #define UART2_GPIO GPIOA
  29. /* USART3_REMAP[1:0] = 00 */
  30. #define UART3_GPIO_TX GPIO_Pin_10
  31. #define UART3_GPIO_RX GPIO_Pin_11
  32. #define UART3_GPIO GPIOB
  33. /* STM32 uart driver */
  34. struct stm32_uart
  35. {
  36. USART_TypeDef* uart_device;
  37. IRQn_Type irq;
  38. };
  39. static rt_err_t stm32_configure(struct rt_serial_device *serial, struct serial_configure *cfg)
  40. {
  41. struct stm32_uart* uart;
  42. USART_InitTypeDef USART_InitStructure;
  43. RT_ASSERT(serial != RT_NULL);
  44. RT_ASSERT(cfg != RT_NULL);
  45. uart = (struct stm32_uart *)serial->parent.user_data;
  46. USART_InitStructure.USART_BaudRate = cfg->baud_rate;
  47. if (cfg->data_bits == DATA_BITS_8){
  48. USART_InitStructure.USART_WordLength = USART_WordLength_8b;
  49. } else if (cfg->data_bits == DATA_BITS_9) {
  50. USART_InitStructure.USART_WordLength = USART_WordLength_9b;
  51. }
  52. if (cfg->stop_bits == STOP_BITS_1){
  53. USART_InitStructure.USART_StopBits = USART_StopBits_1;
  54. } else if (cfg->stop_bits == STOP_BITS_2){
  55. USART_InitStructure.USART_StopBits = USART_StopBits_2;
  56. }
  57. if (cfg->parity == PARITY_NONE){
  58. USART_InitStructure.USART_Parity = USART_Parity_No;
  59. } else if (cfg->parity == PARITY_ODD) {
  60. USART_InitStructure.USART_Parity = USART_Parity_Odd;
  61. } else if (cfg->parity == PARITY_EVEN) {
  62. USART_InitStructure.USART_Parity = USART_Parity_Even;
  63. }
  64. USART_InitStructure.USART_HardwareFlowControl = USART_HardwareFlowControl_None;
  65. USART_InitStructure.USART_Mode = USART_Mode_Rx | USART_Mode_Tx;
  66. USART_Init(uart->uart_device, &USART_InitStructure);
  67. /* Enable USART */
  68. USART_Cmd(uart->uart_device, ENABLE);
  69. return RT_EOK;
  70. }
  71. static rt_err_t stm32_control(struct rt_serial_device *serial, int cmd, void *arg)
  72. {
  73. struct stm32_uart* uart;
  74. RT_ASSERT(serial != RT_NULL);
  75. uart = (struct stm32_uart *)serial->parent.user_data;
  76. switch (cmd)
  77. {
  78. /* disable interrupt */
  79. case RT_DEVICE_CTRL_CLR_INT:
  80. /* disable rx irq */
  81. UART_DISABLE_IRQ(uart->irq);
  82. /* disable interrupt */
  83. USART_ITConfig(uart->uart_device, USART_IT_RXNE, DISABLE);
  84. break;
  85. /* enable interrupt */
  86. case RT_DEVICE_CTRL_SET_INT:
  87. /* enable rx irq */
  88. UART_ENABLE_IRQ(uart->irq);
  89. /* enable interrupt */
  90. USART_ITConfig(uart->uart_device, USART_IT_RXNE, ENABLE);
  91. break;
  92. }
  93. return RT_EOK;
  94. }
  95. static int stm32_putc(struct rt_serial_device *serial, char c)
  96. {
  97. struct stm32_uart* uart;
  98. RT_ASSERT(serial != RT_NULL);
  99. uart = (struct stm32_uart *)serial->parent.user_data;
  100. uart->uart_device->DR = c;
  101. while (!(uart->uart_device->SR & USART_FLAG_TC));
  102. return 1;
  103. }
  104. static int stm32_getc(struct rt_serial_device *serial)
  105. {
  106. int ch;
  107. struct stm32_uart* uart;
  108. RT_ASSERT(serial != RT_NULL);
  109. uart = (struct stm32_uart *)serial->parent.user_data;
  110. ch = -1;
  111. if (uart->uart_device->SR & USART_FLAG_RXNE)
  112. {
  113. ch = uart->uart_device->DR & 0xff;
  114. }
  115. return ch;
  116. }
  117. static const struct rt_uart_ops stm32_uart_ops =
  118. {
  119. stm32_configure,
  120. stm32_control,
  121. stm32_putc,
  122. stm32_getc,
  123. };
  124. #if defined(RT_USING_UART1)
  125. /* UART1 device driver structure */
  126. struct stm32_uart uart1 =
  127. {
  128. USART1,
  129. USART1_IRQn,
  130. };
  131. struct rt_serial_device serial1;
  132. void USART1_IRQHandler(void)
  133. {
  134. struct stm32_uart* uart;
  135. uart = &uart1;
  136. /* enter interrupt */
  137. rt_interrupt_enter();
  138. if(USART_GetITStatus(uart->uart_device, USART_IT_RXNE) != RESET)
  139. {
  140. rt_hw_serial_isr(&serial1, RT_SERIAL_EVENT_RX_IND);
  141. /* clear interrupt */
  142. USART_ClearITPendingBit(uart->uart_device, USART_IT_RXNE);
  143. }
  144. if (USART_GetITStatus(uart->uart_device, USART_IT_TC) != RESET)
  145. {
  146. /* clear interrupt */
  147. USART_ClearITPendingBit(uart->uart_device, USART_IT_TC);
  148. }
  149. if (USART_GetFlagStatus(uart->uart_device, USART_FLAG_ORE) == SET)
  150. {
  151. stm32_getc(&serial1);
  152. }
  153. /* leave interrupt */
  154. rt_interrupt_leave();
  155. }
  156. #endif /* RT_USING_UART1 */
  157. #if defined(RT_USING_UART2)
  158. /* UART1 device driver structure */
  159. struct stm32_uart uart2 =
  160. {
  161. USART2,
  162. USART2_IRQn,
  163. };
  164. struct rt_serial_device serial2;
  165. void USART2_IRQHandler(void)
  166. {
  167. struct stm32_uart* uart;
  168. uart = &uart2;
  169. /* enter interrupt */
  170. rt_interrupt_enter();
  171. if(USART_GetITStatus(uart->uart_device, USART_IT_RXNE) != RESET)
  172. {
  173. rt_hw_serial_isr(&serial2, RT_SERIAL_EVENT_RX_IND);
  174. /* clear interrupt */
  175. USART_ClearITPendingBit(uart->uart_device, USART_IT_RXNE);
  176. }
  177. if (USART_GetITStatus(uart->uart_device, USART_IT_TC) != RESET)
  178. {
  179. /* clear interrupt */
  180. USART_ClearITPendingBit(uart->uart_device, USART_IT_TC);
  181. }
  182. if (USART_GetFlagStatus(uart->uart_device, USART_FLAG_ORE) == SET)
  183. {
  184. stm32_getc(&serial2);
  185. }
  186. /* leave interrupt */
  187. rt_interrupt_leave();
  188. }
  189. #endif /* RT_USING_UART2 */
  190. #if defined(RT_USING_UART3)
  191. /* UART3 device driver structure */
  192. struct stm32_uart uart3 =
  193. {
  194. USART3,
  195. USART3_IRQn,
  196. };
  197. struct rt_serial_device serial3;
  198. void USART3_IRQHandler(void)
  199. {
  200. struct stm32_uart* uart;
  201. uart = &uart3;
  202. /* enter interrupt */
  203. rt_interrupt_enter();
  204. if(USART_GetITStatus(uart->uart_device, USART_IT_RXNE) != RESET)
  205. {
  206. rt_hw_serial_isr(&serial3, RT_SERIAL_EVENT_RX_IND);
  207. /* clear interrupt */
  208. USART_ClearITPendingBit(uart->uart_device, USART_IT_RXNE);
  209. }
  210. if (USART_GetITStatus(uart->uart_device, USART_IT_TC) != RESET)
  211. {
  212. /* clear interrupt */
  213. USART_ClearITPendingBit(uart->uart_device, USART_IT_TC);
  214. }
  215. if (USART_GetFlagStatus(uart->uart_device, USART_FLAG_ORE) == SET)
  216. {
  217. stm32_getc(&serial3);
  218. }
  219. /* leave interrupt */
  220. rt_interrupt_leave();
  221. }
  222. #endif /* RT_USING_UART3 */
  223. static void RCC_Configuration(void)
  224. {
  225. #if defined(RT_USING_UART1)
  226. /* Enable UART GPIO clocks */
  227. RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA, ENABLE);
  228. /* Enable UART clock */
  229. RCC_APB2PeriphClockCmd(RCC_APB2Periph_USART1, ENABLE);
  230. #endif /* RT_USING_UART1 */
  231. #if defined(RT_USING_UART2)
  232. /* Enable UART GPIO clocks */
  233. RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA, ENABLE);
  234. /* Enable UART clock */
  235. RCC_APB1PeriphClockCmd(RCC_APB1Periph_USART2, ENABLE);
  236. #endif /* RT_USING_UART2 */
  237. #if defined(RT_USING_UART3)
  238. /* Enable UART GPIO clocks */
  239. RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOB, ENABLE);
  240. /* Enable UART clock */
  241. RCC_APB1PeriphClockCmd(RCC_APB1Periph_USART3, ENABLE);
  242. #endif /* RT_USING_UART3 */
  243. }
  244. static void GPIO_Configuration(void)
  245. {
  246. GPIO_InitTypeDef GPIO_InitStructure;
  247. GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz;
  248. #if defined(RT_USING_UART1)
  249. /* Configure USART Rx/tx PIN */
  250. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;
  251. GPIO_InitStructure.GPIO_Pin = UART1_GPIO_RX;
  252. GPIO_Init(UART1_GPIO, &GPIO_InitStructure);
  253. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
  254. GPIO_InitStructure.GPIO_Pin = UART1_GPIO_TX;
  255. GPIO_Init(UART1_GPIO, &GPIO_InitStructure);
  256. #endif /* RT_USING_UART1 */
  257. #if defined(RT_USING_UART2)
  258. /* Configure USART Rx/tx PIN */
  259. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;
  260. GPIO_InitStructure.GPIO_Pin = UART2_GPIO_RX;
  261. GPIO_Init(UART2_GPIO, &GPIO_InitStructure);
  262. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
  263. GPIO_InitStructure.GPIO_Pin = UART2_GPIO_TX;
  264. GPIO_Init(UART2_GPIO, &GPIO_InitStructure);
  265. #endif /* RT_USING_UART2 */
  266. #if defined(RT_USING_UART3)
  267. /* Configure USART Rx/tx PIN */
  268. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;
  269. GPIO_InitStructure.GPIO_Pin = UART3_GPIO_RX;
  270. GPIO_Init(UART3_GPIO, &GPIO_InitStructure);
  271. GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
  272. GPIO_InitStructure.GPIO_Pin = UART3_GPIO_TX;
  273. GPIO_Init(UART3_GPIO, &GPIO_InitStructure);
  274. #endif /* RT_USING_UART3 */
  275. }
  276. static void NVIC_Configuration(struct stm32_uart* uart)
  277. {
  278. NVIC_InitTypeDef NVIC_InitStructure;
  279. /* Enable the USART1 Interrupt */
  280. NVIC_InitStructure.NVIC_IRQChannel = uart->irq;
  281. NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 0;
  282. NVIC_InitStructure.NVIC_IRQChannelSubPriority = 0;
  283. NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE;
  284. NVIC_Init(&NVIC_InitStructure);
  285. }
  286. void rt_hw_usart_init(void)
  287. {
  288. struct stm32_uart* uart;
  289. struct serial_configure config = RT_SERIAL_CONFIG_DEFAULT;
  290. RCC_Configuration();
  291. GPIO_Configuration();
  292. #if defined(RT_USING_UART1)
  293. uart = &uart1;
  294. config.baud_rate = BAUD_RATE_115200;
  295. serial1.ops = &stm32_uart_ops;
  296. serial1.config = config;
  297. NVIC_Configuration(&uart1);
  298. /* register UART1 device */
  299. rt_hw_serial_register(&serial1, "uart1",
  300. RT_DEVICE_FLAG_RDWR | RT_DEVICE_FLAG_INT_RX ,
  301. uart);
  302. #endif /* RT_USING_UART1 */
  303. #if defined(RT_USING_UART2)
  304. uart = &uart2;
  305. config.baud_rate = BAUD_RATE_115200;
  306. serial2.ops = &stm32_uart_ops;
  307. serial2.config = config;
  308. NVIC_Configuration(&uart2);
  309. /* register UART1 device */
  310. rt_hw_serial_register(&serial2, "uart2",
  311. RT_DEVICE_FLAG_RDWR | RT_DEVICE_FLAG_INT_RX,
  312. uart);
  313. #endif /* RT_USING_UART2 */
  314. #if defined(RT_USING_UART3)
  315. uart = &uart3;
  316. config.baud_rate = BAUD_RATE_115200;
  317. serial3.ops = &stm32_uart_ops;
  318. serial3.config = config;
  319. NVIC_Configuration(&uart3);
  320. /* register UART1 device */
  321. rt_hw_serial_register(&serial3, "uart3",
  322. RT_DEVICE_FLAG_RDWR | RT_DEVICE_FLAG_INT_RX,
  323. uart);
  324. #endif /* RT_USING_UART3 */
  325. }