main.c 33 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. * <h2><center>&copy; Copyright (c) 2021 STMicroelectronics.
  10. * All rights reserved.</center></h2>
  11. *
  12. * This software component is licensed by ST under BSD 3-Clause license,
  13. * the "License"; You may not use this file except in compliance with the
  14. * License. You may obtain a copy of the License at:
  15. * opensource.org/licenses/BSD-3-Clause
  16. *
  17. ******************************************************************************
  18. */
  19. /* USER CODE END Header */
  20. /* Includes ------------------------------------------------------------------*/
  21. #include "main.h"
  22. /* Private includes ----------------------------------------------------------*/
  23. /* USER CODE BEGIN Includes */
  24. /* USER CODE END Includes */
  25. /* Private typedef -----------------------------------------------------------*/
  26. /* USER CODE BEGIN PTD */
  27. typedef enum {
  28. Tube_A = 3,
  29. Tube_B = 2,
  30. Tube_D = 1,
  31. Tube_E = 0
  32. } tube_pos_t;
  33. /* USER CODE END PTD */
  34. /* Private define ------------------------------------------------------------*/
  35. /* USER CODE BEGIN PD */
  36. #define SPI_BUFFER_SIZE 5
  37. #define RTC_RX_BUF_SIZE 0x12
  38. #define RTC_TX_BUF_SIZE 7
  39. /* USER CODE END PD */
  40. /* Private macro -------------------------------------------------------------*/
  41. /* USER CODE BEGIN PM */
  42. /* USER CODE END PM */
  43. /* Private variables ---------------------------------------------------------*/
  44. /* USER CODE BEGIN PV */
  45. static LL_RCC_ClocksTypeDef rcc_clocks;
  46. /**
  47. * Nixi Tube cathodes map in Byte Array:
  48. * {E0 E9 E8 E7 E6 E5 E4 E3}
  49. * {E2 E1 D0 D9 D8 D7 D6 D5}
  50. * {D4 D3 D2 D1 B0 B9 B8 B7}
  51. * {B6 B5 B4 B3 B2 B1 A0 A9}
  52. * {A8 A7 A6 A5 A4 A3 A2 A1}
  53. *
  54. * Shift register bit map in Tube cathodes (from 0 to 1):
  55. * {5.7 5.6 5.5 5.4 5.3 5.2 5.1 5.0 4.7 4.6} VL5/E
  56. * {4.5 4.4 4.3 4.2 4.1 4.0 3.7 3.6 3.5 3.4} VL4/D
  57. * {3.3 3.2 3.1 3.0 2.7 2.6 2.5 2.4 2.3 2.2} VL2/B
  58. * {2.1 2.0 1.7 1.6 1.5 1.4 1.3 1.2 1.1 1.0} VL1/A
  59. */
  60. static const uint16_t nixieCathodeMap[4][10] = {
  61. {0x8000, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400, 0x0800, 0x1000, 0x2000, 0x4000},
  62. {0x2000, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400, 0x0800, 0x1000},
  63. {0x0800, 0x0004, 0x0008, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400},
  64. {0x0200, 0x0001, 0x0002, 0x0004, 0x0008, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100}
  65. };
  66. static const uint8_t nixieCathodeMask[4][2] = {{0x00, 0x3f}, {0xc0, 0x0f}, {0xf0, 0x03}, {0xc0, 0x00}};
  67. static uint8_t tubesBuffer[SPI_BUFFER_SIZE] = {0};
  68. static uint8_t i2cBufTX[RTC_TX_BUF_SIZE] = {0};
  69. static uint8_t i2cBufRX[RTC_RX_BUF_SIZE] = {0};
  70. /* USER CODE END PV */
  71. /* Private function prototypes -----------------------------------------------*/
  72. void SystemClock_Config(void);
  73. static void MX_GPIO_Init(void);
  74. static void MX_DMA_Init(void);
  75. static void MX_I2C1_Init(void);
  76. static void MX_SPI1_Init(void);
  77. static void MX_TIM3_Init(void);
  78. static void MX_TIM14_Init(void);
  79. static void MX_TIM16_Init(void);
  80. static void MX_TIM17_Init(void);
  81. /* USER CODE BEGIN PFP */
  82. static void showDigit(tube_pos_t pos, uint8_t dig);
  83. static void SPI_StartTX(void);
  84. static void RTC_Init(void);
  85. static void RTC_ReadAll(void);
  86. /* USER CODE END PFP */
  87. /* Private user code ---------------------------------------------------------*/
  88. /* USER CODE BEGIN 0 */
  89. /* USER CODE END 0 */
  90. /**
  91. * @brief The application entry point.
  92. * @retval int
  93. */
  94. int main(void)
  95. {
  96. /* USER CODE BEGIN 1 */
  97. /* USER CODE END 1 */
  98. /* MCU Configuration--------------------------------------------------------*/
  99. /* Reset of all peripherals, Initializes the Flash interface and the Systick. */
  100. LL_APB2_GRP1_EnableClock(LL_APB2_GRP1_PERIPH_SYSCFG);
  101. LL_APB1_GRP1_EnableClock(LL_APB1_GRP1_PERIPH_PWR);
  102. /* System interrupt init*/
  103. /* Peripheral interrupt init*/
  104. /* RCC_IRQn interrupt configuration */
  105. NVIC_SetPriority(RCC_IRQn, 0);
  106. NVIC_EnableIRQ(RCC_IRQn);
  107. /* USER CODE BEGIN Init */
  108. /* USER CODE END Init */
  109. /* Configure the system clock */
  110. SystemClock_Config();
  111. /* USER CODE BEGIN SysInit */
  112. LL_LPM_EnableSleep();
  113. LL_LPM_DisableSleepOnExit();
  114. LL_RCC_GetSystemClocksFreq(&rcc_clocks);
  115. /* USER CODE END SysInit */
  116. /* Initialize all configured peripherals */
  117. MX_GPIO_Init();
  118. MX_DMA_Init();
  119. MX_I2C1_Init();
  120. MX_SPI1_Init();
  121. MX_TIM3_Init();
  122. MX_TIM14_Init();
  123. MX_TIM16_Init();
  124. MX_TIM17_Init();
  125. /* USER CODE BEGIN 2 */
  126. // __enable_irq();
  127. //LL_Init1msTick(rcc_clocks.HCLK_Frequency);
  128. //LL_mDelay(1);
  129. /* Start RGB PWM */
  130. LL_TIM_CC_EnableChannel(TIM3, LL_TIM_CHANNEL_CH1);
  131. LL_TIM_CC_EnableChannel(TIM3, LL_TIM_CHANNEL_CH2);
  132. LL_TIM_CC_EnableChannel(TIM3, LL_TIM_CHANNEL_CH3);
  133. LL_TIM_EnableCounter(TIM3);
  134. /* Start Tube PWR PWM */
  135. LL_TIM_CC_EnableChannel(TIM14, LL_TIM_CHANNEL_CH1);
  136. LL_TIM_EnableCounter(TIM14);
  137. /* Enable tube power */
  138. TUBE_PWR_ON;
  139. /* Set DMA source and destination addresses. */
  140. /* Source: Address of the SPI buffer. */
  141. DMA1_Channel1->CMAR = (uint32_t)&tubesBuffer;
  142. /* Destination: SPI1 data register. */
  143. DMA1_Channel1->CPAR = (uint32_t)&(SPI1->DR);
  144. /* Set DMA data transfer length (SPI buffer length). */
  145. DMA1_Channel1->CNDTR = SPI_BUFFER_SIZE;
  146. /* Source: Address of the I2C RX buffer. */
  147. DMA1_Channel2->CMAR = (uint32_t)&i2cBufRX;
  148. /* Destination: I2C RX data register. */
  149. DMA1_Channel2->CPAR = (uint32_t)&(I2C1->RXDR);
  150. /* Set DMA data transfer length (I2C RX buffer length). */
  151. DMA1_Channel2->CNDTR = RTC_RX_BUF_SIZE;
  152. /* Source: Address of the I2C TX buffer. */
  153. DMA1_Channel3->CMAR = (uint32_t)&i2cBufTX;
  154. /* Destination: I2C TX data register. */
  155. DMA1_Channel3->CPAR = (uint32_t)&(I2C1->TXDR);
  156. /* Set DMA data transfer length (I2C TX buffer length). */
  157. DMA1_Channel3->CNDTR = RTC_TX_BUF_SIZE;
  158. /* Enable SPI+DMA transfer */
  159. SPI1->CR2 |= SPI_CR2_TXDMAEN;
  160. SPI1->CR1 |= SPI_CR1_SPE;
  161. /* Enable DMA channels for I2C */
  162. DMA1_Channel2->CCR |= DMA_CCR_EN; // LL_DMA_EnableChannel(DMA1, LL_DMA_CHANNEL_2);
  163. DMA1_Channel3->CCR |= DMA_CCR_EN; // LL_DMA_EnableChannel(DMA1, LL_DMA_CHANNEL_3);
  164. /* USER CODE END 2 */
  165. /* USER CODE BEGIN WHILE */
  166. RTC_Init();
  167. IN15_OFF;
  168. /* Infinite loop */
  169. while (1)
  170. {
  171. IN15_OFF;
  172. COLOR_RGB(0, 0, 0);
  173. LL_mDelay(500);
  174. /*
  175. showDigit(Tube_A, 1);
  176. showDigit(Tube_B, 2);
  177. showDigit(Tube_D, 3);
  178. showDigit(Tube_E, 4);
  179. SPI_StartTX();
  180. */
  181. RTC_ReadAll();
  182. if (Flag.RTC_IRQ != 0) {
  183. Flag.RTC_IRQ = 0;
  184. IN15_Minus;
  185. }
  186. COLOR_RGB(0xFF, 0x12, 0x0); // FF7E00 or FFBF00
  187. LL_mDelay(500);
  188. /* USER CODE END WHILE */
  189. /* USER CODE BEGIN 3 */
  190. /*
  191. showDigit(Tube_A, 5);
  192. showDigit(Tube_B, 6);
  193. showDigit(Tube_D, 7);
  194. showDigit(Tube_E, 8);
  195. */
  196. showDigit(Tube_A, i2cBufRX[1] >> 4);
  197. showDigit(Tube_B, i2cBufRX[1] & 0xf);
  198. showDigit(Tube_D, i2cBufRX[0] >> 4);
  199. showDigit(Tube_E, i2cBufRX[0] & 0xf);
  200. SPI_StartTX();
  201. //__WFI();
  202. }
  203. /* USER CODE END 3 */
  204. }
  205. static void SPI_StartTX(void) {
  206. LL_DMA_EnableChannel(DMA1, LL_DMA_CHANNEL_1);
  207. }
  208. static void RTC_Init(void) {
  209. /* Clear flags */
  210. Flag.I2C_RX_End = 0;
  211. Flag.I2C_TX_End = 0;
  212. return;
  213. /* Wait for I2C */
  214. while ( I2C1->ISR & I2C_ISR_BUSY ) {};
  215. /* Fill buffer with register address and register value */
  216. i2cBufTX[0] = DS3231_CONTROL_ADDR;
  217. i2cBufTX[1] = 0x0; // set 1 Hz output squware
  218. i2cBufTX[2] = 0x0; // disable 32 kHz output
  219. LL_I2C_SetSlaveAddr(I2C1, I2C_ADDR_RTC);
  220. // LL_I2C_SetTransferRequest(I2C1, LL_I2C_REQUEST_WRITE);
  221. LL_I2C_SetTransferSize(I2C1, 3); // controll addr + 2 bytes of data
  222. // LL_I2C_EnableDMAReq_TX(I2C1);
  223. // LL_I2C_GenerateStartCondition(I2C1);
  224. /* Set AUTOEND mode, the device address and number bytes to send. */
  225. // I2C1->CR2 &= ~( I2C_CR2_SADD | I2C_CR2_NBYTES);
  226. // I2C1->CR2 = ( I2C_ADDR_RTC << I2C_CR2_SADD_Pos | 3 << I2C_CR2_NBYTES_Pos );
  227. /* Enable I2C DMA requests. */
  228. I2C1->CR1 |= ( I2C_CR1_TXDMAEN );
  229. /* Send a start signal. */
  230. I2C1->CR2 |= ( I2C_CR2_START );
  231. /* (DMA is now running.) */
  232. }
  233. static void RTC_ReadAll(void) {
  234. while ( I2C1->ISR & I2C_ISR_BUSY ) {};
  235. /*
  236. DMA1_Channel3->CMAR = (uint32_t)&i2cBufTX;
  237. DMA1_Channel3->CPAR = (uint32_t)&(I2C1->TXDR);
  238. DMA1_Channel3->CNDTR = RTC_TX_BUF_SIZE;
  239. */
  240. LL_I2C_SetSlaveAddr(I2C1, I2C_ADDR_RTC);
  241. LL_I2C_SetTransferRequest(I2C1, LL_I2C_REQUEST_WRITE);
  242. LL_I2C_SetTransferSize(I2C1, 1);
  243. // i2cBufTX[0] = DS3231_TIME_CAL_ADDR;
  244. // LL_I2C_EnableDMAReq_TX(I2C1);
  245. LL_I2C_GenerateStartCondition(I2C1);
  246. while ( !( I2C1->CR2 & I2C_CR2_START ) ) {};
  247. I2C1->TXDR = 0x0;
  248. while ( I2C1->ISR & I2C_ISR_BUSY ) {};
  249. Flag.I2C_RX_End = 0;
  250. Flag.I2C_TX_End = 0;
  251. /* Reading all from address 00h */
  252. LL_I2C_SetSlaveAddr(I2C1, I2C_ADDR_RTC);
  253. LL_I2C_SetTransferRequest(I2C1, LL_I2C_REQUEST_READ);
  254. LL_I2C_SetTransferSize(I2C1, 0x12); // Clock + Calendar = 7 bytes
  255. LL_I2C_EnableDMAReq_RX(I2C1);
  256. LL_I2C_GenerateStartCondition(I2C1);
  257. }
  258. /**
  259. * @brief System Clock Configuration
  260. * @retval None
  261. */
  262. void SystemClock_Config(void)
  263. {
  264. /* HSI configuration and activation */
  265. LL_RCC_HSI_Enable();
  266. while(LL_RCC_HSI_IsReady() != 1)
  267. {
  268. }
  269. /* Main PLL configuration and activation */
  270. LL_RCC_PLL_ConfigDomain_SYS(LL_RCC_PLLSOURCE_HSI, LL_RCC_PLLM_DIV_2, 9, LL_RCC_PLLR_DIV_3);
  271. LL_RCC_PLL_Enable();
  272. LL_RCC_PLL_EnableDomain_SYS();
  273. while(LL_RCC_PLL_IsReady() != 1)
  274. {
  275. }
  276. /* Set AHB prescaler*/
  277. LL_RCC_SetAHBPrescaler(LL_RCC_SYSCLK_DIV_1);
  278. /* Sysclk activation on the main PLL */
  279. LL_RCC_SetSysClkSource(LL_RCC_SYS_CLKSOURCE_PLL);
  280. while(LL_RCC_GetSysClkSource() != LL_RCC_SYS_CLKSOURCE_STATUS_PLL)
  281. {
  282. }
  283. /* Set APB1 prescaler*/
  284. LL_RCC_SetAPB1Prescaler(LL_RCC_APB1_DIV_1);
  285. LL_Init1msTick(24000000);
  286. /* Update CMSIS variable (which can be updated also through SystemCoreClockUpdate function) */
  287. LL_SetSystemCoreClock(24000000);
  288. LL_RCC_SetI2CClockSource(LL_RCC_I2C1_CLKSOURCE_HSI);
  289. }
  290. /**
  291. * @brief I2C1 Initialization Function
  292. * @param None
  293. * @retval None
  294. */
  295. static void MX_I2C1_Init(void)
  296. {
  297. /* USER CODE BEGIN I2C1_Init 0 */
  298. /* USER CODE END I2C1_Init 0 */
  299. LL_I2C_InitTypeDef I2C_InitStruct = {0};
  300. LL_GPIO_InitTypeDef GPIO_InitStruct = {0};
  301. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOB);
  302. /**I2C1 GPIO Configuration
  303. PB6 ------> I2C1_SCL
  304. PB7 ------> I2C1_SDA
  305. */
  306. GPIO_InitStruct.Pin = LL_GPIO_PIN_6;
  307. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  308. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  309. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_OPENDRAIN;
  310. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  311. GPIO_InitStruct.Alternate = LL_GPIO_AF_6;
  312. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  313. GPIO_InitStruct.Pin = LL_GPIO_PIN_7;
  314. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  315. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  316. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_OPENDRAIN;
  317. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  318. GPIO_InitStruct.Alternate = LL_GPIO_AF_6;
  319. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  320. /* Peripheral clock enable */
  321. LL_APB1_GRP1_EnableClock(LL_APB1_GRP1_PERIPH_I2C1);
  322. /* I2C1 DMA Init */
  323. /* I2C1_RX Init */
  324. LL_DMA_SetPeriphRequest(DMA1, LL_DMA_CHANNEL_2, LL_DMAMUX_REQ_I2C1_RX);
  325. LL_DMA_SetDataTransferDirection(DMA1, LL_DMA_CHANNEL_2, LL_DMA_DIRECTION_PERIPH_TO_MEMORY);
  326. LL_DMA_SetChannelPriorityLevel(DMA1, LL_DMA_CHANNEL_2, LL_DMA_PRIORITY_MEDIUM);
  327. LL_DMA_SetMode(DMA1, LL_DMA_CHANNEL_2, LL_DMA_MODE_CIRCULAR);
  328. LL_DMA_SetPeriphIncMode(DMA1, LL_DMA_CHANNEL_2, LL_DMA_PERIPH_NOINCREMENT);
  329. LL_DMA_SetMemoryIncMode(DMA1, LL_DMA_CHANNEL_2, LL_DMA_MEMORY_INCREMENT);
  330. LL_DMA_SetPeriphSize(DMA1, LL_DMA_CHANNEL_2, LL_DMA_PDATAALIGN_BYTE);
  331. LL_DMA_SetMemorySize(DMA1, LL_DMA_CHANNEL_2, LL_DMA_MDATAALIGN_BYTE);
  332. /* I2C1_TX Init */
  333. LL_DMA_SetPeriphRequest(DMA1, LL_DMA_CHANNEL_3, LL_DMAMUX_REQ_I2C1_TX);
  334. LL_DMA_SetDataTransferDirection(DMA1, LL_DMA_CHANNEL_3, LL_DMA_DIRECTION_MEMORY_TO_PERIPH);
  335. LL_DMA_SetChannelPriorityLevel(DMA1, LL_DMA_CHANNEL_3, LL_DMA_PRIORITY_MEDIUM);
  336. LL_DMA_SetMode(DMA1, LL_DMA_CHANNEL_3, LL_DMA_MODE_CIRCULAR);
  337. LL_DMA_SetPeriphIncMode(DMA1, LL_DMA_CHANNEL_3, LL_DMA_PERIPH_NOINCREMENT);
  338. LL_DMA_SetMemoryIncMode(DMA1, LL_DMA_CHANNEL_3, LL_DMA_MEMORY_INCREMENT);
  339. LL_DMA_SetPeriphSize(DMA1, LL_DMA_CHANNEL_3, LL_DMA_PDATAALIGN_BYTE);
  340. LL_DMA_SetMemorySize(DMA1, LL_DMA_CHANNEL_3, LL_DMA_MDATAALIGN_BYTE);
  341. /* I2C1 interrupt Init */
  342. NVIC_SetPriority(I2C1_IRQn, 0);
  343. NVIC_EnableIRQ(I2C1_IRQn);
  344. /* USER CODE BEGIN I2C1_Init 1 */
  345. /* Enable DMA transfer complete/error interrupts */
  346. LL_DMA_EnableIT_TC(DMA1, LL_DMA_CHANNEL_2);
  347. LL_DMA_EnableIT_TE(DMA1, LL_DMA_CHANNEL_2);
  348. LL_DMA_EnableIT_TC(DMA1, LL_DMA_CHANNEL_3);
  349. LL_DMA_EnableIT_TE(DMA1, LL_DMA_CHANNEL_3);
  350. /* USER CODE END I2C1_Init 1 */
  351. /** I2C Initialization
  352. */
  353. I2C_InitStruct.PeripheralMode = LL_I2C_MODE_I2C;
  354. I2C_InitStruct.Timing = 0x0010061A;
  355. I2C_InitStruct.AnalogFilter = LL_I2C_ANALOGFILTER_ENABLE;
  356. I2C_InitStruct.DigitalFilter = 0;
  357. I2C_InitStruct.OwnAddress1 = 0;
  358. I2C_InitStruct.TypeAcknowledge = LL_I2C_ACK;
  359. I2C_InitStruct.OwnAddrSize = LL_I2C_OWNADDRESS1_7BIT;
  360. LL_I2C_Init(I2C1, &I2C_InitStruct);
  361. LL_I2C_EnableAutoEndMode(I2C1);
  362. LL_I2C_SetOwnAddress2(I2C1, 0, LL_I2C_OWNADDRESS2_NOMASK);
  363. LL_I2C_DisableOwnAddress2(I2C1);
  364. LL_I2C_DisableGeneralCall(I2C1);
  365. LL_I2C_EnableClockStretching(I2C1);
  366. /* USER CODE BEGIN I2C1_Init 2 */
  367. LL_I2C_EnableIT_NACK(I2C1);
  368. /* USER CODE END I2C1_Init 2 */
  369. }
  370. /**
  371. * @brief SPI1 Initialization Function
  372. * @param None
  373. * @retval None
  374. */
  375. static void MX_SPI1_Init(void)
  376. {
  377. /* USER CODE BEGIN SPI1_Init 0 */
  378. /* USER CODE END SPI1_Init 0 */
  379. LL_SPI_InitTypeDef SPI_InitStruct = {0};
  380. LL_GPIO_InitTypeDef GPIO_InitStruct = {0};
  381. /* Peripheral clock enable */
  382. LL_APB2_GRP1_EnableClock(LL_APB2_GRP1_PERIPH_SPI1);
  383. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOB);
  384. /**SPI1 GPIO Configuration
  385. PB3 ------> SPI1_SCK
  386. PB5 ------> SPI1_MOSI
  387. */
  388. GPIO_InitStruct.Pin = LL_GPIO_PIN_3;
  389. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  390. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  391. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_OPENDRAIN; //LL_GPIO_OUTPUT_PUSHPULL;
  392. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  393. GPIO_InitStruct.Alternate = LL_GPIO_AF_0;
  394. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  395. GPIO_InitStruct.Pin = LL_GPIO_PIN_5;
  396. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  397. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  398. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_OPENDRAIN; //LL_GPIO_OUTPUT_PUSHPULL;
  399. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  400. GPIO_InitStruct.Alternate = LL_GPIO_AF_0;
  401. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  402. /* SPI1 DMA Init */
  403. /* SPI1_TX Init */
  404. LL_DMA_SetPeriphRequest(DMA1, LL_DMA_CHANNEL_1, LL_DMAMUX_REQ_SPI1_TX);
  405. LL_DMA_SetDataTransferDirection(DMA1, LL_DMA_CHANNEL_1, LL_DMA_DIRECTION_MEMORY_TO_PERIPH);
  406. LL_DMA_SetChannelPriorityLevel(DMA1, LL_DMA_CHANNEL_1, LL_DMA_PRIORITY_HIGH);
  407. LL_DMA_SetMode(DMA1, LL_DMA_CHANNEL_1, LL_DMA_MODE_CIRCULAR);
  408. LL_DMA_SetPeriphIncMode(DMA1, LL_DMA_CHANNEL_1, LL_DMA_PERIPH_NOINCREMENT);
  409. LL_DMA_SetMemoryIncMode(DMA1, LL_DMA_CHANNEL_1, LL_DMA_MEMORY_INCREMENT);
  410. LL_DMA_SetPeriphSize(DMA1, LL_DMA_CHANNEL_1, LL_DMA_PDATAALIGN_BYTE);
  411. LL_DMA_SetMemorySize(DMA1, LL_DMA_CHANNEL_1, LL_DMA_MDATAALIGN_BYTE);
  412. /* SPI1 interrupt Init */
  413. NVIC_SetPriority(SPI1_IRQn, 0);
  414. NVIC_EnableIRQ(SPI1_IRQn);
  415. /* USER CODE BEGIN SPI1_Init 1 */
  416. /* Enable DMA transfer complete/error interrupts */
  417. LL_DMA_EnableIT_TC(DMA1, LL_DMA_CHANNEL_1);
  418. LL_DMA_EnableIT_TE(DMA1, LL_DMA_CHANNEL_1);
  419. /* USER CODE END SPI1_Init 1 */
  420. /* SPI1 parameter configuration*/
  421. SPI_InitStruct.TransferDirection = LL_SPI_FULL_DUPLEX;
  422. SPI_InitStruct.Mode = LL_SPI_MODE_MASTER;
  423. SPI_InitStruct.DataWidth = LL_SPI_DATAWIDTH_8BIT;
  424. SPI_InitStruct.ClockPolarity = LL_SPI_POLARITY_LOW;
  425. SPI_InitStruct.ClockPhase = LL_SPI_PHASE_1EDGE;
  426. SPI_InitStruct.NSS = LL_SPI_NSS_SOFT;
  427. SPI_InitStruct.BaudRate = LL_SPI_BAUDRATEPRESCALER_DIV16;
  428. SPI_InitStruct.BitOrder = LL_SPI_MSB_FIRST;
  429. SPI_InitStruct.CRCCalculation = LL_SPI_CRCCALCULATION_DISABLE;
  430. SPI_InitStruct.CRCPoly = 7;
  431. LL_SPI_Init(SPI1, &SPI_InitStruct);
  432. LL_SPI_SetStandard(SPI1, LL_SPI_PROTOCOL_MOTOROLA);
  433. LL_SPI_DisableNSSPulseMgt(SPI1);
  434. /* USER CODE BEGIN SPI1_Init 2 */
  435. /* USER CODE END SPI1_Init 2 */
  436. }
  437. /**
  438. * @brief TIM3 Initialization Function
  439. * @param None
  440. * @retval None
  441. */
  442. static void MX_TIM3_Init(void)
  443. {
  444. /* USER CODE BEGIN TIM3_Init 0 */
  445. /* USER CODE END TIM3_Init 0 */
  446. LL_TIM_InitTypeDef TIM_InitStruct = {0};
  447. LL_TIM_OC_InitTypeDef TIM_OC_InitStruct = {0};
  448. LL_GPIO_InitTypeDef GPIO_InitStruct = {0};
  449. /* Peripheral clock enable */
  450. LL_APB1_GRP1_EnableClock(LL_APB1_GRP1_PERIPH_TIM3);
  451. /* USER CODE BEGIN TIM3_Init 1 */
  452. /* USER CODE END TIM3_Init 1 */
  453. TIM_InitStruct.Prescaler = 24;
  454. TIM_InitStruct.CounterMode = LL_TIM_COUNTERMODE_UP;
  455. TIM_InitStruct.Autoreload = 1000;
  456. TIM_InitStruct.ClockDivision = LL_TIM_CLOCKDIVISION_DIV1;
  457. LL_TIM_Init(TIM3, &TIM_InitStruct);
  458. LL_TIM_EnableARRPreload(TIM3);
  459. LL_TIM_OC_EnablePreload(TIM3, LL_TIM_CHANNEL_CH1);
  460. TIM_OC_InitStruct.OCMode = LL_TIM_OCMODE_PWM1;
  461. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  462. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  463. TIM_OC_InitStruct.CompareValue = 100;
  464. TIM_OC_InitStruct.OCPolarity = LL_TIM_OCPOLARITY_HIGH;
  465. LL_TIM_OC_Init(TIM3, LL_TIM_CHANNEL_CH1, &TIM_OC_InitStruct);
  466. LL_TIM_OC_DisableFast(TIM3, LL_TIM_CHANNEL_CH1);
  467. LL_TIM_OC_EnablePreload(TIM3, LL_TIM_CHANNEL_CH2);
  468. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  469. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  470. LL_TIM_OC_Init(TIM3, LL_TIM_CHANNEL_CH2, &TIM_OC_InitStruct);
  471. LL_TIM_OC_DisableFast(TIM3, LL_TIM_CHANNEL_CH2);
  472. LL_TIM_OC_EnablePreload(TIM3, LL_TIM_CHANNEL_CH3);
  473. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  474. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  475. LL_TIM_OC_Init(TIM3, LL_TIM_CHANNEL_CH3, &TIM_OC_InitStruct);
  476. LL_TIM_OC_DisableFast(TIM3, LL_TIM_CHANNEL_CH3);
  477. LL_TIM_SetTriggerOutput(TIM3, LL_TIM_TRGO_RESET);
  478. LL_TIM_DisableMasterSlaveMode(TIM3);
  479. /* USER CODE BEGIN TIM3_Init 2 */
  480. /* USER CODE END TIM3_Init 2 */
  481. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOA);
  482. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOB);
  483. /**TIM3 GPIO Configuration
  484. PA6 ------> TIM3_CH1
  485. PA7 ------> TIM3_CH2
  486. PB0 ------> TIM3_CH3
  487. */
  488. GPIO_InitStruct.Pin = PWM_R_Pin;
  489. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  490. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  491. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  492. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  493. GPIO_InitStruct.Alternate = LL_GPIO_AF_1;
  494. LL_GPIO_Init(PWM_R_GPIO_Port, &GPIO_InitStruct);
  495. GPIO_InitStruct.Pin = PWM_G_Pin;
  496. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  497. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  498. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  499. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  500. GPIO_InitStruct.Alternate = LL_GPIO_AF_1;
  501. LL_GPIO_Init(PWM_G_GPIO_Port, &GPIO_InitStruct);
  502. GPIO_InitStruct.Pin = PWM_B_Pin;
  503. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  504. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  505. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  506. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  507. GPIO_InitStruct.Alternate = LL_GPIO_AF_1;
  508. LL_GPIO_Init(PWM_B_GPIO_Port, &GPIO_InitStruct);
  509. }
  510. /**
  511. * @brief TIM14 Initialization Function
  512. * @param None
  513. * @retval None
  514. */
  515. static void MX_TIM14_Init(void)
  516. {
  517. /* USER CODE BEGIN TIM14_Init 0 */
  518. /* USER CODE END TIM14_Init 0 */
  519. LL_TIM_InitTypeDef TIM_InitStruct = {0};
  520. LL_TIM_OC_InitTypeDef TIM_OC_InitStruct = {0};
  521. LL_GPIO_InitTypeDef GPIO_InitStruct = {0};
  522. /* Peripheral clock enable */
  523. LL_APB2_GRP1_EnableClock(LL_APB2_GRP1_PERIPH_TIM14);
  524. /* TIM14 interrupt Init */
  525. NVIC_SetPriority(TIM14_IRQn, 0);
  526. NVIC_EnableIRQ(TIM14_IRQn);
  527. /* USER CODE BEGIN TIM14_Init 1 */
  528. /* USER CODE END TIM14_Init 1 */
  529. TIM_InitStruct.Prescaler = 240;
  530. TIM_InitStruct.CounterMode = LL_TIM_COUNTERMODE_UP;
  531. TIM_InitStruct.Autoreload = 1000;
  532. TIM_InitStruct.ClockDivision = LL_TIM_CLOCKDIVISION_DIV1;
  533. LL_TIM_Init(TIM14, &TIM_InitStruct);
  534. LL_TIM_EnableARRPreload(TIM14);
  535. LL_TIM_OC_EnablePreload(TIM14, LL_TIM_CHANNEL_CH1);
  536. TIM_OC_InitStruct.OCMode = LL_TIM_OCMODE_PWM1;
  537. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  538. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  539. TIM_OC_InitStruct.CompareValue = 750;
  540. TIM_OC_InitStruct.OCPolarity = LL_TIM_OCPOLARITY_HIGH;
  541. LL_TIM_OC_Init(TIM14, LL_TIM_CHANNEL_CH1, &TIM_OC_InitStruct);
  542. LL_TIM_OC_DisableFast(TIM14, LL_TIM_CHANNEL_CH1);
  543. /* USER CODE BEGIN TIM14_Init 2 */
  544. /* USER CODE END TIM14_Init 2 */
  545. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOB);
  546. /**TIM14 GPIO Configuration
  547. PB1 ------> TIM14_CH1
  548. */
  549. GPIO_InitStruct.Pin = PWM_T_Pin;
  550. GPIO_InitStruct.Mode = LL_GPIO_MODE_ALTERNATE;
  551. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  552. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  553. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  554. GPIO_InitStruct.Alternate = LL_GPIO_AF_0;
  555. LL_GPIO_Init(PWM_T_GPIO_Port, &GPIO_InitStruct);
  556. }
  557. /**
  558. * @brief TIM16 Initialization Function
  559. * @param None
  560. * @retval None
  561. */
  562. static void MX_TIM16_Init(void)
  563. {
  564. /* USER CODE BEGIN TIM16_Init 0 */
  565. /* USER CODE END TIM16_Init 0 */
  566. LL_TIM_InitTypeDef TIM_InitStruct = {0};
  567. LL_TIM_OC_InitTypeDef TIM_OC_InitStruct = {0};
  568. LL_TIM_BDTR_InitTypeDef TIM_BDTRInitStruct = {0};
  569. /* Peripheral clock enable */
  570. LL_APB2_GRP1_EnableClock(LL_APB2_GRP1_PERIPH_TIM16);
  571. /* TIM16 interrupt Init */
  572. NVIC_SetPriority(TIM16_IRQn, 0);
  573. NVIC_EnableIRQ(TIM16_IRQn);
  574. /* USER CODE BEGIN TIM16_Init 1 */
  575. /* USER CODE END TIM16_Init 1 */
  576. TIM_InitStruct.Prescaler = 24;
  577. TIM_InitStruct.CounterMode = LL_TIM_COUNTERMODE_UP;
  578. TIM_InitStruct.Autoreload = 1000;
  579. TIM_InitStruct.ClockDivision = LL_TIM_CLOCKDIVISION_DIV1;
  580. TIM_InitStruct.RepetitionCounter = 0;
  581. LL_TIM_Init(TIM16, &TIM_InitStruct);
  582. LL_TIM_EnableARRPreload(TIM16);
  583. LL_TIM_OC_EnablePreload(TIM16, LL_TIM_CHANNEL_CH1);
  584. TIM_OC_InitStruct.OCMode = LL_TIM_OCMODE_PWM1;
  585. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  586. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  587. TIM_OC_InitStruct.CompareValue = 0;
  588. TIM_OC_InitStruct.OCPolarity = LL_TIM_OCPOLARITY_HIGH;
  589. TIM_OC_InitStruct.OCNPolarity = LL_TIM_OCPOLARITY_HIGH;
  590. TIM_OC_InitStruct.OCIdleState = LL_TIM_OCIDLESTATE_LOW;
  591. TIM_OC_InitStruct.OCNIdleState = LL_TIM_OCIDLESTATE_LOW;
  592. LL_TIM_OC_Init(TIM16, LL_TIM_CHANNEL_CH1, &TIM_OC_InitStruct);
  593. LL_TIM_OC_DisableFast(TIM16, LL_TIM_CHANNEL_CH1);
  594. TIM_BDTRInitStruct.OSSRState = LL_TIM_OSSR_DISABLE;
  595. TIM_BDTRInitStruct.OSSIState = LL_TIM_OSSI_DISABLE;
  596. TIM_BDTRInitStruct.LockLevel = LL_TIM_LOCKLEVEL_OFF;
  597. TIM_BDTRInitStruct.DeadTime = 0;
  598. TIM_BDTRInitStruct.BreakState = LL_TIM_BREAK_DISABLE;
  599. TIM_BDTRInitStruct.BreakPolarity = LL_TIM_BREAK_POLARITY_HIGH;
  600. TIM_BDTRInitStruct.BreakFilter = LL_TIM_BREAK_FILTER_FDIV1;
  601. TIM_BDTRInitStruct.AutomaticOutput = LL_TIM_AUTOMATICOUTPUT_DISABLE;
  602. LL_TIM_BDTR_Init(TIM16, &TIM_BDTRInitStruct);
  603. /* USER CODE BEGIN TIM16_Init 2 */
  604. /* USER CODE END TIM16_Init 2 */
  605. }
  606. /**
  607. * @brief TIM17 Initialization Function
  608. * @param None
  609. * @retval None
  610. */
  611. static void MX_TIM17_Init(void)
  612. {
  613. /* USER CODE BEGIN TIM17_Init 0 */
  614. /* USER CODE END TIM17_Init 0 */
  615. LL_TIM_InitTypeDef TIM_InitStruct = {0};
  616. LL_TIM_OC_InitTypeDef TIM_OC_InitStruct = {0};
  617. LL_TIM_BDTR_InitTypeDef TIM_BDTRInitStruct = {0};
  618. /* Peripheral clock enable */
  619. LL_APB2_GRP1_EnableClock(LL_APB2_GRP1_PERIPH_TIM17);
  620. /* TIM17 interrupt Init */
  621. NVIC_SetPriority(TIM17_IRQn, 0);
  622. NVIC_EnableIRQ(TIM17_IRQn);
  623. /* USER CODE BEGIN TIM17_Init 1 */
  624. /* USER CODE END TIM17_Init 1 */
  625. TIM_InitStruct.Prescaler = 240;
  626. TIM_InitStruct.CounterMode = LL_TIM_COUNTERMODE_UP;
  627. TIM_InitStruct.Autoreload = 1000;
  628. TIM_InitStruct.ClockDivision = LL_TIM_CLOCKDIVISION_DIV1;
  629. TIM_InitStruct.RepetitionCounter = 100;
  630. LL_TIM_Init(TIM17, &TIM_InitStruct);
  631. LL_TIM_EnableARRPreload(TIM17);
  632. LL_TIM_OC_EnablePreload(TIM17, LL_TIM_CHANNEL_CH1);
  633. TIM_OC_InitStruct.OCMode = LL_TIM_OCMODE_PWM1;
  634. TIM_OC_InitStruct.OCState = LL_TIM_OCSTATE_DISABLE;
  635. TIM_OC_InitStruct.OCNState = LL_TIM_OCSTATE_DISABLE;
  636. TIM_OC_InitStruct.CompareValue = 0;
  637. TIM_OC_InitStruct.OCPolarity = LL_TIM_OCPOLARITY_HIGH;
  638. TIM_OC_InitStruct.OCNPolarity = LL_TIM_OCPOLARITY_HIGH;
  639. TIM_OC_InitStruct.OCIdleState = LL_TIM_OCIDLESTATE_LOW;
  640. TIM_OC_InitStruct.OCNIdleState = LL_TIM_OCIDLESTATE_LOW;
  641. LL_TIM_OC_Init(TIM17, LL_TIM_CHANNEL_CH1, &TIM_OC_InitStruct);
  642. LL_TIM_OC_DisableFast(TIM17, LL_TIM_CHANNEL_CH1);
  643. TIM_BDTRInitStruct.OSSRState = LL_TIM_OSSR_DISABLE;
  644. TIM_BDTRInitStruct.OSSIState = LL_TIM_OSSI_DISABLE;
  645. TIM_BDTRInitStruct.LockLevel = LL_TIM_LOCKLEVEL_OFF;
  646. TIM_BDTRInitStruct.DeadTime = 0;
  647. TIM_BDTRInitStruct.BreakState = LL_TIM_BREAK_DISABLE;
  648. TIM_BDTRInitStruct.BreakPolarity = LL_TIM_BREAK_POLARITY_HIGH;
  649. TIM_BDTRInitStruct.BreakFilter = LL_TIM_BREAK_FILTER_FDIV1;
  650. TIM_BDTRInitStruct.AutomaticOutput = LL_TIM_AUTOMATICOUTPUT_DISABLE;
  651. LL_TIM_BDTR_Init(TIM17, &TIM_BDTRInitStruct);
  652. /* USER CODE BEGIN TIM17_Init 2 */
  653. /* USER CODE END TIM17_Init 2 */
  654. }
  655. /**
  656. * Enable DMA controller clock
  657. */
  658. static void MX_DMA_Init(void)
  659. {
  660. /* Init with LL driver */
  661. /* DMA controller clock enable */
  662. LL_AHB1_GRP1_EnableClock(LL_AHB1_GRP1_PERIPH_DMA1);
  663. /* DMA interrupt init */
  664. /* DMA1_Channel1_IRQn interrupt configuration */
  665. NVIC_SetPriority(DMA1_Channel1_IRQn, 0);
  666. NVIC_EnableIRQ(DMA1_Channel1_IRQn);
  667. /* DMA1_Channel2_3_IRQn interrupt configuration */
  668. NVIC_SetPriority(DMA1_Channel2_3_IRQn, 0);
  669. NVIC_EnableIRQ(DMA1_Channel2_3_IRQn);
  670. }
  671. /**
  672. * @brief GPIO Initialization Function
  673. * @param None
  674. * @retval None
  675. */
  676. static void MX_GPIO_Init(void)
  677. {
  678. LL_EXTI_InitTypeDef EXTI_InitStruct = {0};
  679. LL_GPIO_InitTypeDef GPIO_InitStruct = {0};
  680. /* GPIO Ports Clock Enable */
  681. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOB);
  682. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOC);
  683. LL_IOP_GRP1_EnableClock(LL_IOP_GRP1_PERIPH_GPIOA);
  684. /**/
  685. LL_GPIO_ResetOutputPin(LC0_GPIO_Port, LC0_Pin);
  686. /**/
  687. LL_GPIO_ResetOutputPin(LC1_GPIO_Port, LC1_Pin);
  688. /**/
  689. LL_GPIO_ResetOutputPin(LC2_GPIO_Port, LC2_Pin);
  690. /**/
  691. LL_GPIO_ResetOutputPin(LC3_GPIO_Port, LC3_Pin);
  692. /**/
  693. LL_GPIO_ResetOutputPin(SHDN_GPIO_Port, SHDN_Pin);
  694. /**/
  695. LL_GPIO_ResetOutputPin(Latch_GPIO_Port, Latch_Pin);
  696. /**/
  697. GPIO_InitStruct.Pin = LL_GPIO_PIN_9;
  698. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  699. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  700. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  701. /**/
  702. GPIO_InitStruct.Pin = LL_GPIO_PIN_14;
  703. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  704. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  705. LL_GPIO_Init(GPIOC, &GPIO_InitStruct);
  706. /**/
  707. GPIO_InitStruct.Pin = LL_GPIO_PIN_15;
  708. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  709. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  710. LL_GPIO_Init(GPIOC, &GPIO_InitStruct);
  711. /**/
  712. GPIO_InitStruct.Pin = LC0_Pin;
  713. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  714. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  715. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  716. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  717. LL_GPIO_Init(LC0_GPIO_Port, &GPIO_InitStruct);
  718. /**/
  719. GPIO_InitStruct.Pin = LC1_Pin;
  720. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  721. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  722. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  723. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  724. LL_GPIO_Init(LC1_GPIO_Port, &GPIO_InitStruct);
  725. /**/
  726. GPIO_InitStruct.Pin = LC2_Pin;
  727. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  728. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  729. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  730. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  731. LL_GPIO_Init(LC2_GPIO_Port, &GPIO_InitStruct);
  732. /**/
  733. GPIO_InitStruct.Pin = LC3_Pin;
  734. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  735. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  736. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  737. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  738. LL_GPIO_Init(LC3_GPIO_Port, &GPIO_InitStruct);
  739. /**/
  740. GPIO_InitStruct.Pin = SHDN_Pin;
  741. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  742. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  743. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_PUSHPULL;
  744. GPIO_InitStruct.Pull = LL_GPIO_PULL_DOWN;
  745. LL_GPIO_Init(SHDN_GPIO_Port, &GPIO_InitStruct);
  746. /**/
  747. GPIO_InitStruct.Pin = LL_GPIO_PIN_5;
  748. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  749. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  750. LL_GPIO_Init(GPIOA, &GPIO_InitStruct);
  751. /**/
  752. GPIO_InitStruct.Pin = LL_GPIO_PIN_2;
  753. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  754. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  755. LL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  756. /**/
  757. GPIO_InitStruct.Pin = BTN1_Pin;
  758. GPIO_InitStruct.Mode = LL_GPIO_MODE_INPUT;
  759. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  760. LL_GPIO_Init(BTN1_GPIO_Port, &GPIO_InitStruct);
  761. /**/
  762. GPIO_InitStruct.Pin = BTN2_Pin;
  763. GPIO_InitStruct.Mode = LL_GPIO_MODE_INPUT;
  764. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  765. LL_GPIO_Init(BTN2_GPIO_Port, &GPIO_InitStruct);
  766. /**/
  767. GPIO_InitStruct.Pin = LL_GPIO_PIN_6;
  768. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  769. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  770. LL_GPIO_Init(GPIOC, &GPIO_InitStruct);
  771. /**/
  772. GPIO_InitStruct.Pin = BTN3_Pin;
  773. GPIO_InitStruct.Mode = LL_GPIO_MODE_INPUT;
  774. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  775. LL_GPIO_Init(BTN3_GPIO_Port, &GPIO_InitStruct);
  776. /**/
  777. GPIO_InitStruct.Pin = BTN4_Pin;
  778. GPIO_InitStruct.Mode = LL_GPIO_MODE_INPUT;
  779. GPIO_InitStruct.Pull = LL_GPIO_PULL_UP;
  780. LL_GPIO_Init(BTN4_GPIO_Port, &GPIO_InitStruct);
  781. /**/
  782. GPIO_InitStruct.Pin = LL_GPIO_PIN_12;
  783. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  784. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  785. LL_GPIO_Init(GPIOA, &GPIO_InitStruct);
  786. /**/
  787. GPIO_InitStruct.Pin = LL_GPIO_PIN_15;
  788. GPIO_InitStruct.Mode = LL_GPIO_MODE_ANALOG;
  789. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  790. LL_GPIO_Init(GPIOA, &GPIO_InitStruct);
  791. /**/
  792. GPIO_InitStruct.Pin = Latch_Pin;
  793. GPIO_InitStruct.Mode = LL_GPIO_MODE_OUTPUT;
  794. GPIO_InitStruct.Speed = LL_GPIO_SPEED_FREQ_HIGH;
  795. GPIO_InitStruct.OutputType = LL_GPIO_OUTPUT_OPENDRAIN;
  796. GPIO_InitStruct.Pull = LL_GPIO_PULL_NO;
  797. LL_GPIO_Init(Latch_GPIO_Port, &GPIO_InitStruct);
  798. /**/
  799. LL_EXTI_SetEXTISource(LL_EXTI_CONFIG_PORTB, LL_EXTI_CONFIG_LINE8);
  800. /**/
  801. EXTI_InitStruct.Line_0_31 = LL_EXTI_LINE_8;
  802. EXTI_InitStruct.LineCommand = ENABLE;
  803. EXTI_InitStruct.Mode = LL_EXTI_MODE_IT;
  804. EXTI_InitStruct.Trigger = LL_EXTI_TRIGGER_RISING;
  805. LL_EXTI_Init(&EXTI_InitStruct);
  806. /**/
  807. LL_GPIO_SetPinPull(IRQ_GPIO_Port, IRQ_Pin, LL_GPIO_PULL_UP);
  808. /**/
  809. LL_GPIO_SetPinMode(IRQ_GPIO_Port, IRQ_Pin, LL_GPIO_MODE_INPUT);
  810. /* EXTI interrupt init*/
  811. NVIC_SetPriority(EXTI4_15_IRQn, 0);
  812. NVIC_EnableIRQ(EXTI4_15_IRQn);
  813. }
  814. /* USER CODE BEGIN 4 */
  815. /**
  816. * S U B R O U T I N E S
  817. */
  818. /* Feel byte with tube position by digit.
  819. * If digit == 0xf, then tube is off -- clear all bits.
  820. */
  821. static void showDigit(tube_pos_t pos, uint8_t dig)
  822. {
  823. if (dig > 9) {
  824. if (dig != 0xf) {
  825. dig = 0;
  826. }
  827. }
  828. switch (pos) {
  829. case Tube_E:
  830. tubesBuffer[0] = 0;
  831. tubesBuffer[1] &= nixieCathodeMask[Tube_E][1];
  832. if (Tube_E != 0xf) {
  833. tubesBuffer[0] = (uint8_t)(nixieCathodeMap[Tube_E][dig] >> 8);
  834. tubesBuffer[1] |= (uint8_t)(nixieCathodeMap[Tube_E][dig]);
  835. }
  836. break;
  837. case Tube_D:
  838. tubesBuffer[1] &= nixieCathodeMask[Tube_D][0];
  839. tubesBuffer[2] &= nixieCathodeMask[Tube_D][1];
  840. if (Tube_D != 0xf) {
  841. tubesBuffer[1] |= (uint8_t)(nixieCathodeMap[Tube_D][dig] >> 8);
  842. tubesBuffer[2] |= (uint8_t)(nixieCathodeMap[Tube_D][dig]);
  843. }
  844. break;
  845. case Tube_B:
  846. tubesBuffer[2] &= nixieCathodeMask[Tube_B][0];
  847. tubesBuffer[3] &= nixieCathodeMask[Tube_B][1];
  848. if (Tube_B != 0xf) {
  849. tubesBuffer[2] |= (uint8_t)(nixieCathodeMap[Tube_B][dig] >> 8);
  850. tubesBuffer[3] |= (uint8_t)(nixieCathodeMap[Tube_B][dig]);
  851. }
  852. break;
  853. case Tube_A:
  854. tubesBuffer[3] &= nixieCathodeMask[Tube_A][0];
  855. tubesBuffer[4] = 0;
  856. if (Tube_A != 0xf) {
  857. tubesBuffer[3] |= (uint8_t)(nixieCathodeMap[Tube_A][dig] >> 8);
  858. tubesBuffer[4] = (uint8_t)(nixieCathodeMap[Tube_A][dig]);
  859. }
  860. break;
  861. default:
  862. break;
  863. }
  864. }
  865. /* USER CODE END 4 */
  866. /**
  867. * @brief This function is executed in case of error occurrence.
  868. * @retval None
  869. */
  870. void Error_Handler(void)
  871. {
  872. /* USER CODE BEGIN Error_Handler_Debug */
  873. /* User can add his own implementation to report the HAL error return state */
  874. __disable_irq();
  875. while (1)
  876. {
  877. }
  878. /* USER CODE END Error_Handler_Debug */
  879. }
  880. #ifdef USE_FULL_ASSERT
  881. /**
  882. * @brief Reports the name of the source file and the source line number
  883. * where the assert_param error has occurred.
  884. * @param file: pointer to the source file name
  885. * @param line: assert_param error line source number
  886. * @retval None
  887. */
  888. void assert_failed(uint8_t *file, uint32_t line)
  889. {
  890. /* USER CODE BEGIN 6 */
  891. /* User can add his own implementation to report the file name and line number,
  892. ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */
  893. /* USER CODE END 6 */
  894. }
  895. #endif /* USE_FULL_ASSERT */
  896. /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/