main.c 21 KB

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  1. /* USER CODE BEGIN Header */
  2. /**
  3. ******************************************************************************
  4. * @file : main.c
  5. * @brief : Main program body
  6. ******************************************************************************
  7. * @attention
  8. *
  9. * Copyright (c) 2025 STMicroelectronics.
  10. * All rights reserved.
  11. *
  12. * This software is licensed under terms that can be found in the LICENSE file
  13. * in the root directory of this software component.
  14. * If no LICENSE file comes with this software, it is provided AS-IS.
  15. *
  16. ******************************************************************************
  17. */
  18. /* USER CODE END Header */
  19. /* Includes ------------------------------------------------------------------*/
  20. #include "main.h"
  21. #include <time.h>
  22. #include <stdlib.h>
  23. #include "string.h"
  24. #include "E52.h"
  25. #include "E104-BT5005A.h"
  26. //上船测试版本
  27. /* Private includes ----------------------------------------------------------*/
  28. /* USER CODE BEGIN Includes */
  29. /* USER CODE END Includes */
  30. /* Private typedef -----------------------------------------------------------*/
  31. /* USER CODE BEGIN PTD */
  32. /* USER CODE END PTD */
  33. /* Private define ------------------------------------------------------------*/
  34. /* USER CODE BEGIN PD */
  35. /* USER CODE END PD */
  36. /* Private macro -------------------------------------------------------------*/
  37. /* USER CODE BEGIN PM */
  38. /* USER CODE END PM */
  39. /* Private variables ---------------------------------------------------------*/
  40. RTC_HandleTypeDef hrtc;
  41. TIM_HandleTypeDef htim4;
  42. UART_HandleTypeDef huart1;
  43. UART_HandleTypeDef huart2;
  44. UART_HandleTypeDef huart3;
  45. DMA_HandleTypeDef hdma_usart2_rx;
  46. DMA_HandleTypeDef hdma_usart3_rx;
  47. /* USER CODE BEGIN PV */
  48. uint8_t rx_buf[100] = {0};
  49. uint8_t rx_buf_uart2[100] = {0};
  50. uint8_t totalData[120][50] = {0};
  51. uint8_t uart2_rx_byte[10] = {0};
  52. uint8_t loraSendNextDataFlag = 0;
  53. uint8_t baseRandomTimer = 3*60;
  54. uint8_t RandomTimer= 3*60;
  55. // uint8_t loraDataErrorCount = 0;
  56. uint8_t workMode = 0; // 0: 接收蓝牙数据 1: 使用lora发生数据 2:等待间隔时间
  57. uint8_t receiveBlDataCount = 0;
  58. /* USER CODE END PV */
  59. /* Private function prototypes -----------------------------------------------*/
  60. void SystemClock_Config(void);
  61. static void MX_GPIO_Init(void);
  62. static void MX_DMA_Init(void);
  63. static void MX_USART1_UART_Init(void);
  64. static void MX_USART2_UART_Init(void);
  65. static void MX_USART3_UART_Init(void);
  66. static void MX_TIM4_Init(void);
  67. static void MX_RTC_Init(void);
  68. /* USER CODE BEGIN PFP */
  69. /* USER CODE END PFP */
  70. /* Private user code ---------------------------------------------------------*/
  71. /* USER CODE BEGIN 0 */
  72. #include <stdio.h>
  73. int __io_putchar(int ch)
  74. {
  75. uint8_t c = ch;
  76. HAL_UART_Transmit(&huart1, &c, 1, HAL_MAX_DELAY);
  77. return ch;
  78. }
  79. void sentLoraData(uint8_t sendDataNum) {
  80. HAL_UART_Transmit(&huart2, totalData[sendDataNum], 8, HAL_MAX_DELAY);
  81. }
  82. uint16_t randomFun() {
  83. return rand() % RandomTimer + baseRandomTimer; //随机时间1分钟到3分钟之间随机数
  84. }
  85. void Device_Info_Init_Fun() {
  86. deviceInfo.isOnline = FALSE;
  87. deviceInfo.broadcast_type = BROADCAST_ALL;
  88. deviceInfo.loraDeviceAddress_H = 0xFE; //默认地址高位
  89. deviceInfo.loraDeviceAddress_L = 0xEF; //默认地址低位
  90. deviceInfo.powerValue = 0;
  91. deviceInfo.target_addr_H = 0xFF;
  92. deviceInfo.target_addr_L = 0xFF;
  93. deviceInfo.BlDataFlag = BL_IDLE;
  94. // deviceInfo.newLoraDataFlag = 0;
  95. // deviceInfo.isReady = 0;
  96. deviceInfo.loraSendSuccessFlag = 0;
  97. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT); //初始化
  98. //TODO: 大循环,获取设备地址信息,否则重新发送。发送上线信息,等待反馈,否则重新发送上线信息。一切准备就绪后,开启isready为1,进入工作模式。
  99. // while (1){}
  100. }
  101. // 保留通用框架,但仅处理定时器4
  102. HAL_StatusTypeDef Timer_Managment_Fun(TIM_HandleTypeDef *htim, Timer_Operation op) {
  103. HAL_StatusTypeDef status = HAL_ERROR; // 默认返回错误状态
  104. // 只处理定时器4,其他定时器直接返回错误
  105. if (htim->Instance != TIM4) {
  106. printf("错误:仅支持定时器 TIM4\r\n");
  107. return status;
  108. }
  109. if (htim == NULL) {
  110. printf("错误:定时器句柄为空\r\n");
  111. return status;
  112. }
  113. switch (op) {
  114. case TIMER_OP_START:
  115. // 检查定时器4是否处于就绪状态
  116. if (htim->State == HAL_TIM_STATE_READY) {
  117. status = HAL_TIM_Base_Start_IT(htim); // 启动定时器+使能中断
  118. if (status == HAL_OK) {
  119. printf("定时器 TIM4 启动成功\r\n");
  120. } else {
  121. printf("定时器 TIM4 启动失败,状态码: %d\r\n", status);
  122. }
  123. }
  124. break;
  125. case TIMER_OP_STOP:
  126. // 检查定时器4是否正在运行
  127. if (htim->State == HAL_TIM_STATE_BUSY) {
  128. status = HAL_TIM_Base_Stop_IT(htim); // 停止定时器+禁用中断
  129. if (status == HAL_OK) {
  130. printf("定时器 TIM4 停止成功\r\n");
  131. } else {
  132. printf("定时器 TIM4 停止失败,状态码: %d\r\n", status);
  133. }
  134. }
  135. break;
  136. default:
  137. printf("错误:未知的定时器操作类型\r\n");
  138. break;
  139. }
  140. return status;
  141. }
  142. /* USER CODE END 0 */
  143. /**
  144. * @brief The application entry point.
  145. * @retval int
  146. */
  147. int main(void)
  148. {
  149. /* USER CODE BEGIN 1 */
  150. /* USER CODE END 1 */
  151. /* MCU Configuration--------------------------------------------------------*/
  152. /* Reset of all peripherals, Initializes the Flash interface and the Systick. */
  153. HAL_Init();
  154. /* USER CODE BEGIN Init */
  155. /* USER CODE END Init */
  156. /* Configure the system clock */
  157. SystemClock_Config();
  158. /* USER CODE BEGIN SysInit */
  159. /* USER CODE END SysInit */
  160. /* Initialize all configured peripherals */
  161. MX_GPIO_Init();
  162. // 将GPIO引脚拉高
  163. HAL_GPIO_WritePin(POWER_ON_GPIO_Port, POWER_ON_Pin, GPIO_PIN_SET);
  164. MX_DMA_Init();
  165. MX_USART1_UART_Init();
  166. MX_USART2_UART_Init();
  167. MX_USART3_UART_Init();
  168. MX_TIM4_Init();
  169. MX_RTC_Init();
  170. /* USER CODE BEGIN 2 */
  171. // 启动 USART2 DMA 接收
  172. HAL_UART_Receive_DMA(&huart3, rx_buf, sizeof(rx_buf));
  173. // // HAL_UART_Receive_IT(&huart2, uart2_rx_byte, 7);
  174. // // 使能 USART2 空闲中断
  175. __HAL_UART_ENABLE_IT(&huart3, UART_IT_IDLE);
  176. HAL_UART_Receive_DMA(&huart2, rx_buf_uart2, sizeof(rx_buf_uart2));
  177. // HAL_UART_Receive_IT(&huart2, uart2_rx_byte, 7);
  178. // 使能 USART2 空闲中断
  179. __HAL_UART_ENABLE_IT(&huart2, UART_IT_IDLE);
  180. printf("开始初始化1\r\n");
  181. HAL_Delay(4000);
  182. printf("开始初始化\r\n");
  183. printf("切换为观察者模式\r\n");
  184. E104_BT5005A_ROLE_Fun();
  185. HAL_Delay(2000);
  186. printf("初始化扫描间隔\r\n");
  187. E104_BT5005A_SCANINTV_Fun();
  188. HAL_Delay(2000);
  189. printf("初始化扫描窗口\r\n");
  190. E104_BT5005A_SCANWND_Fun();
  191. HAL_Delay(2000);
  192. printf("初始化复位\r\n");
  193. E104_BT5005A_RESET_Fun();
  194. HAL_Delay(2000);
  195. Device_Info_Init_Fun();
  196. printf("开启Lora广播模块\r\n");
  197. E52_CONFIG_BROADCAST_TYPE_FUN(BROADCAST_ALL);
  198. HAL_Delay(2000);
  199. const char *lora_msg1 = "AT+TYPE=1";
  200. HAL_UART_Transmit(&huart2, (uint8_t *)lora_msg1, strlen(lora_msg1), HAL_MAX_DELAY);
  201. HAL_Delay(2000);
  202. const char *lora_msg3 = "AT+HEAD=0";
  203. HAL_UART_Transmit(&huart2, (uint8_t *)lora_msg3, strlen(lora_msg3), HAL_MAX_DELAY);
  204. HAL_Delay(2000);
  205. const char *lora_msg4 = "AT+SRC_ADDR=?";
  206. HAL_UART_Transmit(&huart2, (uint8_t *)lora_msg4, strlen(lora_msg4), HAL_MAX_DELAY);
  207. HAL_Delay(2000);
  208. // uint16_t count = 0;
  209. // uint16_t randomTime = 0;
  210. srand(HAL_GetTick());
  211. // HAL_TIM_Base_Start(&htim4);
  212. /* USER CODE END 2 */
  213. /* Infinite loop */
  214. /* USER CODE BEGIN WHILE */
  215. printf("Device is ready\r\n");
  216. uint8_t i = 0;
  217. while (1)
  218. {
  219. /* USER CODE END WHILE */
  220. /* USER CODE BEGIN 3 */
  221. // 命令为IDLE,且步骤为STEP_INIT 说明有新数据。
  222. if (GET_CMD( deviceInfo.commandFromCloud) == IDLE && GET_STEP(deviceInfo.commandFromCloud) == STEP_VERIFY) {
  223. E52_Analyze_Data();
  224. }
  225. // 检查是否接收到"心跳"命令,且设备在线
  226. if (!deviceInfo.isOnline){
  227. printf("The device is not online.\r\n");
  228. if (!deviceInfo.loraSendSuccessFlag) {
  229. E52_Heartbeat_Fun();
  230. }
  231. HAL_Delay(3000);
  232. }
  233. // 03:请求蓝牙数据
  234. if (GET_CMD( deviceInfo.commandFromCloud) == REQUEST_BLUETOOTH_DATA && deviceInfo.isOnline) {
  235. switch (GET_STEP(deviceInfo.commandFromCloud)) {
  236. case REQUEST_BLUETOOTH_DATA_SCAN:
  237. Timer_Managment_Fun(&htim4, TIMER_OP_START);
  238. deviceInfo.BlDataFlag = BL_START;
  239. printf("开启蓝牙扫描\r\n");
  240. break; //扫描蓝牙阶段
  241. case REQUEST_BLUETOOTH_DATA_SEND:
  242. Timer_Managment_Fun(&htim4, TIMER_OP_STOP);
  243. deviceInfo.BlDataFlag = BL_STOP;
  244. i = 0;
  245. while (receiveBlDataCount > i) {
  246. printf("发送第%d个蓝牙数据给Lora\r\n", i);
  247. if (deviceInfo.loraSendSuccessFlag == 0) {
  248. E52_Send_Bl_Data_Fun(i,0x00);
  249. }else {
  250. continue;
  251. }
  252. memset(totalData[i], 0, sizeof(totalData[i]));
  253. i++;
  254. }
  255. E52_Send_Bl_Data_Fun(i,0x01);
  256. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(REQUEST_BLUETOOTH_DATA, STEP_COMPLETE);
  257. printf("停止蓝牙扫描,开始发送蓝牙数据给Lora\r\n");
  258. break; //发送数据阶段
  259. case STEP_COMPLETE:
  260. receiveBlDataCount = 0;
  261. deviceInfo.timeCount = 0;
  262. deviceInfo.forwardBLAndLoraDataDuration = 0;
  263. i = 0;
  264. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT);
  265. printf("发送结束\r\n");
  266. break;
  267. default:
  268. // 处理未知步骤
  269. printf("收到未知步骤,忽略处理\r\n");
  270. break;
  271. }
  272. }
  273. // 08:请求心跳数据
  274. if (GET_CMD( deviceInfo.commandFromCloud) == E52_HEARTBEAT && deviceInfo.isOnline) {
  275. switch (GET_STEP(deviceInfo.commandFromCloud)) {
  276. case HEARTBEAT_SEND:
  277. if (deviceInfo.loraSendSuccessFlag == 0) {
  278. E52_Heartbeat_Fun();
  279. }else {
  280. continue;
  281. }
  282. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(REQUEST_BLUETOOTH_DATA, STEP_COMPLETE);
  283. break;
  284. case STEP_COMPLETE:
  285. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT);
  286. break;
  287. default:
  288. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT);
  289. printf("收到未知步骤,忽略处理\r\n");
  290. break;
  291. }
  292. }
  293. // 07:配置E52
  294. if (GET_CMD( deviceInfo.commandFromCloud) == CONFIGURE_E52 && deviceInfo.isOnline) {
  295. switch (GET_STEP(deviceInfo.commandFromCloud)) {
  296. case CONFIGURE_E52_SET_BROADCAST_TYPE: //第一步,配置广播类型
  297. E52_CONFIG_BROADCAST_TYPE_FUN(deviceInfo.broadcast_type);
  298. HAL_Delay(2000);
  299. if (deviceInfo.broadcast_type == BROADCAST_ALL) {
  300. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(CONFIGURE_E52, STEP_COMPLETE); //TODO 广播,直接结束.或者进入测试流程。
  301. }else {
  302. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(CONFIGURE_E52, CONFIGURE_E52_SET_LORA_ADDRESS); //第三步,配置Lora地址
  303. }
  304. break;
  305. case CONFIGURE_E52_SET_LORA_ADDRESS:
  306. E104_BT5005A_DST_ADDR_Fun();
  307. HAL_Delay(2000);
  308. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(CONFIGURE_E52, STEP_COMPLETE); //TODO 广播,直接结束.或者进入测试流程。
  309. break; //如果是单波,多播,配置目标地址
  310. case STEP_COMPLETE:
  311. if (deviceInfo.loraSendSuccessFlag == 0) {
  312. E52_Heartbeat_Fun();
  313. }else {
  314. continue;
  315. }
  316. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT);
  317. break;
  318. default:
  319. printf("未知配置命令\r\n");
  320. deviceInfo.commandFromCloud = COMBINE_CMD_STEP(IDLE, STEP_INIT);
  321. ;break;
  322. }
  323. }
  324. }
  325. /* USER CODE END 3 */
  326. }
  327. /**
  328. * @brief System Clock Configuration
  329. * @retval None
  330. */
  331. void SystemClock_Config(void)
  332. {
  333. RCC_OscInitTypeDef RCC_OscInitStruct = {0};
  334. RCC_ClkInitTypeDef RCC_ClkInitStruct = {0};
  335. RCC_PeriphCLKInitTypeDef PeriphClkInit = {0};
  336. /** Initializes the RCC Oscillators according to the specified parameters
  337. * in the RCC_OscInitTypeDef structure.
  338. */
  339. RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSE|RCC_OSCILLATORTYPE_LSE;
  340. RCC_OscInitStruct.HSEState = RCC_HSE_ON;
  341. RCC_OscInitStruct.HSEPredivValue = RCC_HSE_PREDIV_DIV1;
  342. RCC_OscInitStruct.LSEState = RCC_LSE_ON;
  343. RCC_OscInitStruct.HSIState = RCC_HSI_ON;
  344. RCC_OscInitStruct.PLL.PLLState = RCC_PLL_ON;
  345. RCC_OscInitStruct.PLL.PLLSource = RCC_PLLSOURCE_HSE;
  346. RCC_OscInitStruct.PLL.PLLMUL = RCC_PLL_MUL9;
  347. if (HAL_RCC_OscConfig(&RCC_OscInitStruct) != HAL_OK)
  348. {
  349. Error_Handler();
  350. }
  351. /** Initializes the CPU, AHB and APB buses clocks
  352. */
  353. RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK|RCC_CLOCKTYPE_SYSCLK
  354. |RCC_CLOCKTYPE_PCLK1|RCC_CLOCKTYPE_PCLK2;
  355. RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK;
  356. RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1;
  357. RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV2;
  358. RCC_ClkInitStruct.APB2CLKDivider = RCC_HCLK_DIV1;
  359. if (HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_2) != HAL_OK)
  360. {
  361. Error_Handler();
  362. }
  363. PeriphClkInit.PeriphClockSelection = RCC_PERIPHCLK_RTC;
  364. PeriphClkInit.RTCClockSelection = RCC_RTCCLKSOURCE_LSE;
  365. if (HAL_RCCEx_PeriphCLKConfig(&PeriphClkInit) != HAL_OK)
  366. {
  367. Error_Handler();
  368. }
  369. }
  370. /**
  371. * @brief RTC Initialization Function
  372. * @param None
  373. * @retval None
  374. */
  375. static void MX_RTC_Init(void)
  376. {
  377. /* USER CODE BEGIN RTC_Init 0 */
  378. /* USER CODE END RTC_Init 0 */
  379. RTC_TimeTypeDef sTime = {0};
  380. RTC_DateTypeDef DateToUpdate = {0};
  381. /* USER CODE BEGIN RTC_Init 1 */
  382. /* USER CODE END RTC_Init 1 */
  383. /** Initialize RTC Only
  384. */
  385. hrtc.Instance = RTC;
  386. hrtc.Init.AsynchPrediv = RTC_AUTO_1_SECOND;
  387. hrtc.Init.OutPut = RTC_OUTPUTSOURCE_ALARM;
  388. if (HAL_RTC_Init(&hrtc) != HAL_OK)
  389. {
  390. Error_Handler();
  391. }
  392. /* USER CODE BEGIN Check_RTC_BKUP */
  393. /* USER CODE END Check_RTC_BKUP */
  394. /** Initialize RTC and set the Time and Date
  395. */
  396. sTime.Hours = 0x0;
  397. sTime.Minutes = 0x0;
  398. sTime.Seconds = 0x0;
  399. if (HAL_RTC_SetTime(&hrtc, &sTime, RTC_FORMAT_BCD) != HAL_OK)
  400. {
  401. Error_Handler();
  402. }
  403. DateToUpdate.WeekDay = RTC_WEEKDAY_MONDAY;
  404. DateToUpdate.Month = RTC_MONTH_JANUARY;
  405. DateToUpdate.Date = 0x1;
  406. DateToUpdate.Year = 0x0;
  407. if (HAL_RTC_SetDate(&hrtc, &DateToUpdate, RTC_FORMAT_BCD) != HAL_OK)
  408. {
  409. Error_Handler();
  410. }
  411. /* USER CODE BEGIN RTC_Init 2 */
  412. /* USER CODE END RTC_Init 2 */
  413. }
  414. /**
  415. * @brief TIM4 Initialization Function
  416. * @param None
  417. * @retval None
  418. */
  419. static void MX_TIM4_Init(void)
  420. {
  421. /* USER CODE BEGIN TIM4_Init 0 */
  422. /* USER CODE END TIM4_Init 0 */
  423. TIM_ClockConfigTypeDef sClockSourceConfig = {0};
  424. TIM_MasterConfigTypeDef sMasterConfig = {0};
  425. /* USER CODE BEGIN TIM4_Init 1 */
  426. /* USER CODE END TIM4_Init 1 */
  427. htim4.Instance = TIM4;
  428. htim4.Init.Prescaler = 71;
  429. htim4.Init.CounterMode = TIM_COUNTERMODE_UP;
  430. htim4.Init.Period = 999;
  431. htim4.Init.ClockDivision = TIM_CLOCKDIVISION_DIV1;
  432. htim4.Init.AutoReloadPreload = TIM_AUTORELOAD_PRELOAD_ENABLE;
  433. if (HAL_TIM_Base_Init(&htim4) != HAL_OK)
  434. {
  435. Error_Handler();
  436. }
  437. sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_INTERNAL;
  438. if (HAL_TIM_ConfigClockSource(&htim4, &sClockSourceConfig) != HAL_OK)
  439. {
  440. Error_Handler();
  441. }
  442. sMasterConfig.MasterOutputTrigger = TIM_TRGO_RESET;
  443. sMasterConfig.MasterSlaveMode = TIM_MASTERSLAVEMODE_DISABLE;
  444. if (HAL_TIMEx_MasterConfigSynchronization(&htim4, &sMasterConfig) != HAL_OK)
  445. {
  446. Error_Handler();
  447. }
  448. /* USER CODE BEGIN TIM4_Init 2 */
  449. /* USER CODE END TIM4_Init 2 */
  450. }
  451. /**
  452. * @brief USART1 Initialization Function
  453. * @param None
  454. * @retval None
  455. */
  456. static void MX_USART1_UART_Init(void)
  457. {
  458. /* USER CODE BEGIN USART1_Init 0 */
  459. /* USER CODE END USART1_Init 0 */
  460. /* USER CODE BEGIN USART1_Init 1 */
  461. /* USER CODE END USART1_Init 1 */
  462. huart1.Instance = USART1;
  463. huart1.Init.BaudRate = 115200;
  464. huart1.Init.WordLength = UART_WORDLENGTH_8B;
  465. huart1.Init.StopBits = UART_STOPBITS_1;
  466. huart1.Init.Parity = UART_PARITY_NONE;
  467. huart1.Init.Mode = UART_MODE_TX_RX;
  468. huart1.Init.HwFlowCtl = UART_HWCONTROL_NONE;
  469. huart1.Init.OverSampling = UART_OVERSAMPLING_16;
  470. if (HAL_UART_Init(&huart1) != HAL_OK)
  471. {
  472. Error_Handler();
  473. }
  474. /* USER CODE BEGIN USART1_Init 2 */
  475. /* USER CODE END USART1_Init 2 */
  476. }
  477. /**
  478. * @brief USART2 Initialization Function
  479. * @param None
  480. * @retval None
  481. */
  482. static void MX_USART2_UART_Init(void)
  483. {
  484. /* USER CODE BEGIN USART2_Init 0 */
  485. /* USER CODE END USART2_Init 0 */
  486. /* USER CODE BEGIN USART2_Init 1 */
  487. /* USER CODE END USART2_Init 1 */
  488. huart2.Instance = USART2;
  489. huart2.Init.BaudRate = 115200;
  490. huart2.Init.WordLength = UART_WORDLENGTH_8B;
  491. huart2.Init.StopBits = UART_STOPBITS_1;
  492. huart2.Init.Parity = UART_PARITY_NONE;
  493. huart2.Init.Mode = UART_MODE_TX_RX;
  494. huart2.Init.HwFlowCtl = UART_HWCONTROL_NONE;
  495. huart2.Init.OverSampling = UART_OVERSAMPLING_16;
  496. if (HAL_UART_Init(&huart2) != HAL_OK)
  497. {
  498. Error_Handler();
  499. }
  500. /* USER CODE BEGIN USART2_Init 2 */
  501. /* USER CODE END USART2_Init 2 */
  502. }
  503. /**
  504. * @brief USART3 Initialization Function
  505. * @param None
  506. * @retval None
  507. */
  508. static void MX_USART3_UART_Init(void)
  509. {
  510. /* USER CODE BEGIN USART3_Init 0 */
  511. /* USER CODE END USART3_Init 0 */
  512. /* USER CODE BEGIN USART3_Init 1 */
  513. /* USER CODE END USART3_Init 1 */
  514. huart3.Instance = USART3;
  515. huart3.Init.BaudRate = 115200;
  516. huart3.Init.WordLength = UART_WORDLENGTH_8B;
  517. huart3.Init.StopBits = UART_STOPBITS_1;
  518. huart3.Init.Parity = UART_PARITY_NONE;
  519. huart3.Init.Mode = UART_MODE_TX_RX;
  520. huart3.Init.HwFlowCtl = UART_HWCONTROL_NONE;
  521. huart3.Init.OverSampling = UART_OVERSAMPLING_16;
  522. if (HAL_UART_Init(&huart3) != HAL_OK)
  523. {
  524. Error_Handler();
  525. }
  526. /* USER CODE BEGIN USART3_Init 2 */
  527. /* USER CODE END USART3_Init 2 */
  528. }
  529. /**
  530. * Enable DMA controller clock
  531. */
  532. static void MX_DMA_Init(void)
  533. {
  534. /* DMA controller clock enable */
  535. __HAL_RCC_DMA1_CLK_ENABLE();
  536. /* DMA interrupt init */
  537. /* DMA1_Channel3_IRQn interrupt configuration */
  538. HAL_NVIC_SetPriority(DMA1_Channel3_IRQn, 0, 0);
  539. HAL_NVIC_EnableIRQ(DMA1_Channel3_IRQn);
  540. /* DMA1_Channel6_IRQn interrupt configuration */
  541. HAL_NVIC_SetPriority(DMA1_Channel6_IRQn, 0, 0);
  542. HAL_NVIC_EnableIRQ(DMA1_Channel6_IRQn);
  543. }
  544. /**
  545. * @brief GPIO Initialization Function
  546. * @param None
  547. * @retval None
  548. */
  549. static void MX_GPIO_Init(void)
  550. {
  551. GPIO_InitTypeDef GPIO_InitStruct = {0};
  552. /* USER CODE BEGIN MX_GPIO_Init_1 */
  553. /* USER CODE END MX_GPIO_Init_1 */
  554. /* GPIO Ports Clock Enable */
  555. __HAL_RCC_GPIOC_CLK_ENABLE();
  556. __HAL_RCC_GPIOD_CLK_ENABLE();
  557. __HAL_RCC_GPIOA_CLK_ENABLE();
  558. __HAL_RCC_GPIOB_CLK_ENABLE();
  559. /*Configure GPIO pin Output Level */
  560. HAL_GPIO_WritePin(POWER_ON_GPIO_Port, POWER_ON_Pin, GPIO_PIN_SET);
  561. /*Configure GPIO pin : JUGE_PIN_Pin */
  562. GPIO_InitStruct.Pin = JUGE_PIN_Pin;
  563. GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
  564. GPIO_InitStruct.Pull = GPIO_NOPULL;
  565. HAL_GPIO_Init(JUGE_PIN_GPIO_Port, &GPIO_InitStruct);
  566. /*Configure GPIO pin : POWER_ON_Pin */
  567. GPIO_InitStruct.Pin = POWER_ON_Pin;
  568. GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
  569. GPIO_InitStruct.Pull = GPIO_PULLUP;
  570. GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
  571. HAL_GPIO_Init(POWER_ON_GPIO_Port, &GPIO_InitStruct);
  572. /* USER CODE BEGIN MX_GPIO_Init_2 */
  573. /* USER CODE END MX_GPIO_Init_2 */
  574. }
  575. /* USER CODE BEGIN 4 */
  576. /* USER CODE END 4 */
  577. /**
  578. * @brief Period elapsed callback in non blocking mode
  579. * @note This function is called when TIM3 interrupt took place, inside
  580. * HAL_TIM_IRQHandler(). It makes a direct call to HAL_IncTick() to increment
  581. * a global variable "uwTick" used as application time base.
  582. * @param htim : TIM handle
  583. * @retval None
  584. */
  585. void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef *htim)
  586. {
  587. /* USER CODE BEGIN Callback 0 */
  588. /* USER CODE END Callback 0 */
  589. if (htim->Instance == TIM3)
  590. {
  591. HAL_IncTick();
  592. }
  593. /* USER CODE BEGIN Callback 1 */
  594. /* USER CODE END Callback 1 */
  595. }
  596. /**
  597. * @brief This function is executed in case of error occurrence.
  598. * @retval None
  599. */
  600. void Error_Handler(void)
  601. {
  602. /* USER CODE BEGIN Error_Handler_Debug */
  603. /* User can add his own implementation to report the HAL error return state */
  604. __disable_irq();
  605. while (1)
  606. {
  607. }
  608. /* USER CODE END Error_Handler_Debug */
  609. }
  610. #ifdef USE_FULL_ASSERT
  611. /**
  612. * @brief Reports the name of the source file and the source line number
  613. * where the assert_param error has occurred.
  614. * @param file: pointer to the source file name
  615. * @param line: assert_param error line source number
  616. * @retval None
  617. */
  618. void assert_failed(uint8_t *file, uint32_t line)
  619. {
  620. /* USER CODE BEGIN 6 */
  621. /* User can add his own implementation to report the file name and line number,
  622. ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */
  623. /* USER CODE END 6 */
  624. }
  625. #endif /* USE_FULL_ASSERT */