board.c 22 KB

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  1. #include "board.h"
  2. /* private defines */
  3. #define SPI_BUFFER_SIZE 5
  4. /* private variables */
  5. /**
  6. * Nixi Tube cathodes map in Byte Array:
  7. * {E0 E9 E8 E7 E6 E5 E4 E3}
  8. * {E2 E1 D0 D9 D8 D7 D6 D5}
  9. * {D4 D3 D2 D1 B0 B9 B8 B7}
  10. * {B6 B5 B4 B3 B2 B1 A0 A9}
  11. * {A8 A7 A6 A5 A4 A3 A2 A1}
  12. *
  13. * Shift register bit map in Tube cathodes (from 0 to 1):
  14. * {5.7 5.6 5.5 5.4 5.3 5.2 5.1 5.0 4.7 4.6} VL5/E
  15. * {4.5 4.4 4.3 4.2 4.1 4.0 3.7 3.6 3.5 3.4} VL4/D
  16. * {3.3 3.2 3.1 3.0 2.7 2.6 2.5 2.4 2.3 2.2} VL2/B
  17. * {2.1 2.0 1.7 1.6 1.5 1.4 1.3 1.2 1.1 1.0} VL1/A
  18. */
  19. static const uint16_t nixieCathodeMap[4][10] = {
  20. {0x8000, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400, 0x0800, 0x1000, 0x2000, 0x4000},
  21. {0x2000, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400, 0x0800, 0x1000},
  22. {0x0800, 0x0004, 0x0008, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100, 0x0200, 0x0400},
  23. {0x0200, 0x0001, 0x0002, 0x0004, 0x0008, 0x0010, 0x0020, 0x0040, 0x0080, 0x0100}
  24. };
  25. //static const uint8_t nixieCathodeMask[4][2] = {{0x00, 0x3f}, {0xc0, 0x0f}, {0xf0, 0x03}, {0xc0, 0x00}};
  26. static uint8_t tubesBuffer[SPI_BUFFER_SIZE] = {0};
  27. //convert linear bright level to logariphmic
  28. const uint8_t cie[8] = { 0, 5, 14, 33, 64, 109, 172, 255 };
  29. /* private typedef */
  30. /* private functions */
  31. static void _show_digits(const tube4_t dig);
  32. static void GPIO_Init(void);
  33. static void DMA_Init(void);
  34. static void I2C1_Init(void);
  35. static void SPI1_Init(void);
  36. static void TIM1_Init(void);
  37. static void TIM3_Init(void);
  38. static void TIM14_Init(void);
  39. static void TIM16_Init(void);
  40. static void TIM17_Init(void);
  41. static void USART1_UART_Init(void);
  42. /* Board perephireal Configuration */
  43. void Board_Init(void)
  44. {
  45. /* Main peripheral clock enable */
  46. RCC->APBENR1 = (RCC_APBENR1_PWREN | RCC_APBENR1_I2C1EN | RCC_APBENR1_TIM3EN);
  47. RCC->APBENR2 = (RCC_APBENR2_SYSCFGEN | RCC_APBENR2_SPI1EN | RCC_APBENR2_TIM1EN);
  48. /* GPIO Ports Clock Enable */
  49. RCC->IOPENR = (RCC_IOPENR_GPIOAEN | RCC_IOPENR_GPIOBEN | RCC_IOPENR_GPIOCEN);
  50. /* Peripheral interrupt init*/
  51. /* RCC_IRQn interrupt configuration */
  52. NVIC_SetPriority(RCC_IRQn, 0);
  53. NVIC_EnableIRQ(RCC_IRQn);
  54. /* Configure the system clock */
  55. SystemClock_Config();
  56. /* Processor uses sleep as its low power mode */
  57. SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPDEEP_Msk);
  58. /* DisableSleepOnExit */
  59. SCB->SCR &= ~((uint32_t)SCB_SCR_SLEEPONEXIT_Msk);
  60. /* Initialize all configured peripherals */
  61. GPIO_Init();
  62. DMA_Init();
  63. I2C1_Init();
  64. SPI1_Init();
  65. /** Star SPI transfer to shift registers */
  66. /* Set DMA source and destination addresses. */
  67. /* Source: Address of the SPI buffer. */
  68. DMA1_Channel1->CMAR = (uint32_t)&tubesBuffer;
  69. /* Destination: SPI1 data register. */
  70. DMA1_Channel1->CPAR = (uint32_t)&(SPI1->DR);
  71. /* Set DMA data transfer length (SPI buffer length). */
  72. DMA1_Channel1->CNDTR = SPI_BUFFER_SIZE;
  73. /* Enable SPI transfer */
  74. SPI1->CR1 |= SPI_CR1_SPE;
  75. Flag.SPI_TX_End = 1;
  76. /* Enable tube power */
  77. TUBE_PWR_ON;
  78. /* display work now */
  79. /* Start RGB & Tube Power PWM */
  80. TIM1_Init();
  81. TIM3_Init();
  82. //TIM14_Init();
  83. //TIM16_Init();
  84. //TIM17_Init();
  85. //USART1_UART_Init();
  86. }
  87. /**
  88. * @brief Out digits to SPI buffer. ON/off tube power.
  89. * @param : array with four BCD digits
  90. * @retval : None
  91. */
  92. void showDigits(tube4_t dig)
  93. {
  94. static uint32_t old_dig = 0;
  95. uint8_t st = 0, ov = 0;
  96. if (old_dig == dig.u32) {
  97. _show_digits(dig);
  98. } else {
  99. while (ov < 10) {
  100. if (st == 0) {
  101. // new tube value
  102. st = 1;
  103. _show_digits(dig);
  104. ov ++;
  105. tdelay_ms(ov);
  106. } else {
  107. // old tube value
  108. st = 0;
  109. _show_digits((tube4_t)old_dig);
  110. tdelay_ms(10 - ov);
  111. }
  112. } // End of while
  113. old_dig = dig.u32;
  114. } // End of if-else
  115. }
  116. static void _show_digits(tube4_t dig)
  117. {
  118. /* Clear buffer */
  119. tubesBuffer[0] = 0;
  120. tubesBuffer[1] = 0;
  121. tubesBuffer[2] = 0;
  122. tubesBuffer[3] = 0;
  123. tubesBuffer[4] = 0;
  124. /* check values range */
  125. int i;
  126. for (i=0; i<4; i++) {
  127. if (dig.ar[i] > 9) {
  128. if (dig.ar[i] != 0xf) {
  129. dig.ar[i] = 0;
  130. }
  131. }
  132. }
  133. /* Wait for SPI */
  134. while (Flag.SPI_TX_End == 0) {};
  135. Flag.SPI_TX_End = 0;
  136. /* Feel buffer */
  137. tubesBuffer[0] = (uint8_t)(nixieCathodeMap[Tube_E][dig.s8.tE] >> 8);
  138. tubesBuffer[1] = (uint8_t)((nixieCathodeMap[Tube_E][dig.s8.tE]) | (nixieCathodeMap[Tube_D][dig.s8.tD] >> 8));
  139. tubesBuffer[2] = (uint8_t)((nixieCathodeMap[Tube_D][dig.s8.tD]) | (nixieCathodeMap[Tube_B][dig.s8.tB] >> 8));
  140. tubesBuffer[3] = (uint8_t)((nixieCathodeMap[Tube_B][dig.s8.tB]) | (nixieCathodeMap[Tube_A][dig.s8.tA] >> 8));
  141. tubesBuffer[4] = (uint8_t)(nixieCathodeMap[Tube_A][dig.s8.tA]);
  142. /* Start DMA transfer to SPI */
  143. DMA1_Channel1->CCR |= DMA_CCR_EN;
  144. /* On/Off tube power */
  145. for (i=0; i<4; i++) {
  146. if (dig.ar[i] == 0xf) {
  147. tube_PowerOff((tube_pos_t)i);
  148. } else {
  149. tube_PowerOn((tube_pos_t)i);
  150. }
  151. }
  152. /*
  153. if (dig.s8.tA == 0xf) {
  154. TUBE_A_OFF;
  155. } else {
  156. TUBE_A_ON;
  157. }
  158. if (dig.s8.tB == 0xf) {
  159. TUBE_B_OFF;
  160. } else {
  161. TUBE_B_ON;
  162. }
  163. if (dig.s8.tD == 0xf) {
  164. TUBE_D_OFF;
  165. } else {
  166. TUBE_D_ON;
  167. }
  168. if (dig.s8.tE == 0xf) {
  169. TUBE_E_OFF;
  170. } else {
  171. TUBE_E_ON;
  172. }
  173. */
  174. }
  175. /**
  176. * @brief HSV to RGB convertion
  177. * @param hue: 0-59, sat: 0-255, val (lightness): 0-255
  178. * @return none. RGB value out direct to LED.
  179. */
  180. void HSV2LED(const uint8_t hue, const uint8_t sat, const uint8_t val) {
  181. int base;
  182. uint8_t r=0, g=0, b=0;
  183. if (sat == 0)
  184. { // Achromatic color (gray).
  185. r = val;
  186. g = val;
  187. b = val;
  188. } else {
  189. base = ((255 - sat) * val) >> 8;
  190. switch (hue / 10) {
  191. case 0:
  192. r = val;
  193. g = (((val - base) * hue) / 10) + base;
  194. b = base;
  195. break;
  196. case 1:
  197. r = (((val - base) * (10 - (hue % 10))) / 10) + base;
  198. g = val;
  199. b = base;
  200. break;
  201. case 2:
  202. r = base;
  203. g = val;
  204. b = (((val - base) * (hue % 10)) / 10) + base;
  205. break;
  206. case 3:
  207. r = base;
  208. g = (((val - base) * (10 - (hue % 10))) / 10) + base;
  209. b = val;
  210. break;
  211. case 4:
  212. r = (((val - base) * (hue % 10)) / 10) + base;
  213. g = base;
  214. b = val;
  215. break;
  216. case 5:
  217. r = val;
  218. g = base;
  219. b = (((val - base) * (10 - (hue % 10))) / 10) + base;
  220. break;
  221. }
  222. }
  223. COLOR_R(r);
  224. COLOR_G(g);
  225. COLOR_B(b);
  226. }
  227. void tube_PowerOn(tube_pos_t tube)
  228. {
  229. switch (tube) {
  230. case Tube_A:
  231. TUBE_A_ON;
  232. break;
  233. case Tube_B:
  234. TUBE_B_ON;
  235. break;
  236. case Tube_D:
  237. TUBE_D_ON;
  238. break;
  239. case Tube_E:
  240. TUBE_E_ON;
  241. break;
  242. default:
  243. break;
  244. }
  245. }
  246. void tube_PowerOff(tube_pos_t tube)
  247. {
  248. switch (tube) {
  249. case Tube_A:
  250. TUBE_A_OFF;
  251. break;
  252. case Tube_B:
  253. TUBE_B_OFF;
  254. break;
  255. case Tube_D:
  256. TUBE_D_OFF;
  257. break;
  258. case Tube_E:
  259. TUBE_E_OFF;
  260. break;
  261. default:
  262. break;
  263. }
  264. }
  265. /**
  266. * @brief System Clock Configuration
  267. * @retval None
  268. */
  269. void SystemClock_Config(void)
  270. {
  271. /* HSI configuration and activation */
  272. RCC->CR |= RCC_CR_HSION; // Enable HSI
  273. while((RCC->CR & RCC_CR_HSIRDY) == 0)
  274. {
  275. }
  276. /* Main PLL configuration and activation */
  277. //RCC->PLLCFGR &= ~(RCC_PLLCFGR_PLLSRC | RCC_PLLCFGR_PLLM | RCC_PLLCFGR_PLLN | RCC_PLLCFGR_PLLR);
  278. RCC->PLLCFGR = (RCC_PLLCFGR_PLLSRC_HSI | RCC_PLLCFGR_PLLM_0 | (9 << RCC_PLLCFGR_PLLN_Pos) | RCC_PLLCFGR_PLLR_1);
  279. RCC->PLLCFGR |= RCC_PLLCFGR_PLLREN; // RCC_PLL_EnableDomain_SYS
  280. RCC->CR |= RCC_CR_PLLON; // RCC_PLL_Enable
  281. while((RCC->CR & RCC_CR_PLLRDY) == 0)
  282. {
  283. }
  284. /* Set AHB prescaler*/
  285. //RCC->CFGR &= ~(RCC_CFGR_HPRE);
  286. //RCC->CFGR |= 0x00000000U;
  287. /* Sysclk activation on the main PLL */
  288. RCC->CFGR &= RCC_CFGR_SW;
  289. RCC->CFGR |= RCC_CFGR_SW_1;
  290. while((RCC->CFGR & RCC_CFGR_SWS) != RCC_CFGR_SWS_1)
  291. {
  292. }
  293. /* Set APB1 prescaler !!! uncorrect !!! */
  294. //RCC->CFGR &= RCC_CFGR_PPRE;
  295. //RCC->CFGR |= 0x00000000U;
  296. /* Update CMSIS variable (which can be updated also through SystemCoreClockUpdate function) */
  297. SystemCoreClock = 24000000;
  298. /* Set I2C Clock Source */
  299. RCC->CCIPR &= ~(RCC_CCIPR_I2C1SEL);
  300. RCC->CCIPR |= RCC_CCIPR_I2C1SEL_1;
  301. }
  302. /**
  303. * @brief GPIO Initialization Function
  304. * @param None
  305. * @retval None
  306. */
  307. static void GPIO_Init(void)
  308. {
  309. /* EXTI Line: falling, no pull, input */
  310. // interrupt on line 14
  311. EXTI->IMR1 |= EXTI_IMR1_IM14;
  312. // wake-up with event ?
  313. //EXTI->EMR1 |= EXTI_EMR1_EM14;
  314. // TRIGGER FALLING
  315. EXTI->FTSR1 = EXTI_FTSR1_FT14;
  316. // external interrupt selection - PC14 to EXTI14
  317. EXTI->EXTICR[3] = EXTI_EXTICR4_EXTI14_1;
  318. /* EXTI interrupt init*/
  319. NVIC_SetPriority(EXTI4_15_IRQn, 0);
  320. NVIC_EnableIRQ(EXTI4_15_IRQn);
  321. /* set GPIO modes */
  322. GPIO_SetPinMode(IRQ_GPIO_Port, IRQ_Pin, GPIO_MODE_IN);
  323. GPIO_SetPinPull(IRQ_GPIO_Port, IRQ_Pin, GPIO_PUPDR_UP);
  324. /* L0, L1, L2, L3 - IN-15 symbols control, PP out, high speed, pull down */
  325. GPIO_SetPinMode(LC0_GPIO_Port, LC0_Pin, GPIO_MODE_OUT);
  326. GPIO_SetPinSpeed(LC0_GPIO_Port, LC0_Pin, GPIO_OSPEED_HI);
  327. GPIO_SetPinPull(LC0_GPIO_Port, LC0_Pin, GPIO_PUPDR_DW);
  328. GPIO_SetPinMode(LC1_GPIO_Port, LC1_Pin, GPIO_MODE_OUT);
  329. GPIO_SetPinSpeed(LC1_GPIO_Port, LC1_Pin, GPIO_OSPEED_HI);
  330. GPIO_SetPinPull(LC1_GPIO_Port, LC1_Pin, GPIO_PUPDR_DW);
  331. GPIO_SetPinMode(LC2_GPIO_Port, LC2_Pin, GPIO_MODE_OUT);
  332. GPIO_SetPinSpeed(LC2_GPIO_Port, LC2_Pin, GPIO_OSPEED_HI);
  333. GPIO_SetPinPull(LC2_GPIO_Port, LC2_Pin, GPIO_PUPDR_DW);
  334. GPIO_SetPinMode(LC3_GPIO_Port, LC3_Pin, GPIO_MODE_OUT);
  335. GPIO_SetPinSpeed(LC3_GPIO_Port, LC3_Pin, GPIO_OSPEED_HI);
  336. GPIO_SetPinPull(LC3_GPIO_Port, LC3_Pin, GPIO_PUPDR_DW);
  337. /* Pwer Shutdown: PP out, high speed, pull down */
  338. GPIO_SetPinMode(SHDN_GPIO_Port, SHDN_Pin, GPIO_MODE_OUT);
  339. GPIO_SetPinSpeed(SHDN_GPIO_Port, SHDN_Pin, GPIO_OSPEED_HI);
  340. GPIO_SetPinPull(SHDN_GPIO_Port, SHDN_Pin, GPIO_PUPDR_DW);
  341. /* SPI Latch: OD out, high speed, no pull */
  342. GPIO_SetPinMode(Latch_GPIO_Port, Latch_Pin, GPIO_MODE_OUT);
  343. GPIO_SetPinOutputType(Latch_GPIO_Port, Latch_Pin, GPIO_OTYPE_OD);
  344. GPIO_SetPinSpeed(Latch_GPIO_Port, Latch_Pin, GPIO_OSPEED_HI);
  345. /* UART_Enable: PP out, low speed, no pull*/
  346. GPIO_SetPinMode(UART_EN_GPIO_Port, UART_EN_Pin, GPIO_MODE_OUT);
  347. /* UART_State: input, pull up */
  348. GPIO_SetPinPull(UART_ST_GPIO_Port, UART_ST_Pin, GPIO_PUPDR_UP);
  349. GPIO_SetPinMode(UART_ST_GPIO_Port, UART_ST_Pin, GPIO_MODE_IN);
  350. /* BTN1, BTN2, BTN3, BTN4: input, pull up */
  351. GPIO_SetPinPull(BTN1_GPIO_Port, BTN1_Pin, GPIO_PUPDR_UP);
  352. GPIO_SetPinMode(BTN1_GPIO_Port, BTN1_Pin, GPIO_MODE_IN);
  353. GPIO_SetPinPull(BTN2_GPIO_Port, BTN2_Pin, GPIO_PUPDR_UP);
  354. GPIO_SetPinMode(BTN2_GPIO_Port, BTN2_Pin, GPIO_MODE_IN);
  355. GPIO_SetPinPull(BTN3_GPIO_Port, BTN3_Pin, GPIO_PUPDR_UP);
  356. GPIO_SetPinMode(BTN4_GPIO_Port, BTN3_Pin, GPIO_MODE_IN);
  357. GPIO_SetPinPull(BTN4_GPIO_Port, BTN4_Pin, GPIO_PUPDR_UP);
  358. GPIO_SetPinMode(BTN4_GPIO_Port, BTN4_Pin, GPIO_MODE_IN);
  359. }
  360. /**
  361. * Enable DMA controller clock
  362. */
  363. static void DMA_Init(void)
  364. {
  365. /* DMA controller clock enable */
  366. RCC->AHBENR |= RCC_AHBENR_DMA1EN;
  367. /* enable DMA1 clock in Sleep/Stop mode */
  368. //RCC->AHBSMENR |= RCC_AHBSMENR_DMA1SMEN;
  369. /* DMA interrupt init */
  370. /* DMA1_Channel1_IRQn interrupt configuration */
  371. NVIC_SetPriority(DMA1_Channel1_IRQn, 0);
  372. NVIC_EnableIRQ(DMA1_Channel1_IRQn);
  373. /* DMA1_Channel2_3_IRQn interrupt configuration */
  374. NVIC_SetPriority(DMA1_Channel2_3_IRQn, 0);
  375. NVIC_EnableIRQ(DMA1_Channel2_3_IRQn);
  376. }
  377. /**
  378. * @brief I2C1 Initialization Function
  379. * @param None
  380. * @retval None
  381. */
  382. static void I2C1_Init(void)
  383. {
  384. /** I2C1 GPIO Configuration
  385. PB8 ------> I2C1_SCL
  386. PB9 ------> I2C1_SDA
  387. */
  388. GPIO_SetPinMode(GPIOB, GPIO_PIN_8, GPIO_MODE_AFF);
  389. GPIO_SetPinOutputType(GPIOB, GPIO_PIN_8, GPIO_OTYPE_OD);
  390. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_8, GPIO_OSPEED_HI);
  391. GPIO_SetPinPull(GPIOB, GPIO_PIN_8, GPIO_PUPDR_UP);
  392. GPIO_SetAFPin_8_15(GPIOB, GPIO_PIN_8, GPIO_AF_6);
  393. GPIO_SetPinMode(GPIOB, GPIO_PIN_9, GPIO_MODE_AFF);
  394. GPIO_SetPinOutputType(GPIOB, GPIO_PIN_9, GPIO_OTYPE_OD);
  395. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_9, GPIO_OSPEED_HI);
  396. GPIO_SetPinPull(GPIOB, GPIO_PIN_9, GPIO_PUPDR_UP);
  397. GPIO_SetAFPin_8_15(GPIOB, GPIO_PIN_9, GPIO_AF_6);
  398. /** I2C1 DMA Init */
  399. /* I2C1_RX Init: Priority medium, Memory increment, read from perephireal,
  400. transfer error interrupt enable, transfer complete interrupt enable */
  401. DMA1_Channel2->CCR = (DMA_CCR_PL_0 | DMA_CCR_MINC | DMA_CCR_TEIE | DMA_CCR_TCIE);
  402. /* Route DMA channel 2 to I2C1 RX */
  403. DMAMUX1_Channel1->CCR = 10;
  404. /* I2C1_TX Init: Priority medium, Memory increment, read from memory,
  405. transfer error interrupt enable, transfer complete interrupt enable */
  406. DMA1_Channel3->CCR = (DMA_CCR_PL_0 | DMA_CCR_MINC| DMA_CCR_DIR | DMA_CCR_TEIE | DMA_CCR_TCIE);
  407. /* Route DMA channel 3 to I2C1 TX */
  408. DMAMUX1_Channel2->CCR = 11;
  409. /** I2C Initialization: I2C_Fast */
  410. I2C1->TIMINGR = 0x0010061A;
  411. I2C1->CR2 = I2C_CR2_AUTOEND;
  412. I2C1->CR1 = I2C_CR1_PE;
  413. }
  414. /**
  415. * @brief SPI1 Initialization Function
  416. * @param None
  417. * @retval None
  418. */
  419. static void SPI1_Init(void)
  420. {
  421. /**SPI1 GPIO Configuration
  422. PB3 ------> SPI1_SCK
  423. PB5 ------> SPI1_MOSI
  424. */
  425. GPIO_SetPinMode(GPIOB, GPIO_PIN_3, GPIO_MODE_AFF);
  426. GPIO_SetPinOutputType(GPIOB, GPIO_PIN_3, GPIO_OTYPE_OD);
  427. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_3, GPIO_OSPEED_HI);
  428. GPIO_SetPinMode(GPIOB, GPIO_PIN_5, GPIO_MODE_AFF);
  429. GPIO_SetPinOutputType(GPIOB, GPIO_PIN_5, GPIO_OTYPE_OD);
  430. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_5, GPIO_OSPEED_HI);
  431. /* SPI1 DMA Init */
  432. /* SPI1_TX Init: Priority high, Memory increment, read from memory, circular mode,
  433. Enable DMA transfer complete/error interrupts */
  434. DMA1_Channel1->CCR = (DMA_CCR_PL_1 | DMA_CCR_MINC | DMA_CCR_CIRC | DMA_CCR_TEIE | DMA_CCR_DIR | DMA_CCR_TCIE);
  435. /* Route DMA channel 1 to SPI1 TX */
  436. DMAMUX1_Channel0->CCR = 0x11;
  437. /* SPI1 interrupt Init */
  438. NVIC_SetPriority(SPI1_IRQn, 0);
  439. NVIC_EnableIRQ(SPI1_IRQn);
  440. /* SPI1 parameter configuration: master mode, data 8 bit, divider = 16, TX DMA */
  441. SPI1->CR1 = (SPI_CR1_MSTR | SPI_CR1_BR_1 | SPI_CR1_BR_0 | SPI_CR1_SSM | SPI_CR1_SSI);
  442. SPI1->CR2 = (SPI_CR2_DS_2 | SPI_CR2_DS_1 | SPI_CR2_DS_0 | SPI_CR2_TXDMAEN | SPI_CR2_FRXTH);
  443. }
  444. /**
  445. * @brief TIM1 Initialization Function
  446. * @param None
  447. * @retval None
  448. */
  449. static void TIM1_Init(void)
  450. {
  451. /* target clock */
  452. TIM1->PSC = TIM1_PSC; // prescaler
  453. TIM1->ARR = TIM1_ARR; // auto reload value
  454. TIM1->CR1 = TIM_CR1_ARPE;
  455. // initial pwm value
  456. TIM1->CCR1 = PWM_TUBE_INIT_VAL;
  457. TIM1->CCR2 = PWM_LED_INIT_VAL;
  458. TIM1->CCR3 = PWM_LED_INIT_VAL;
  459. TIM1->CCR4 = PWM_LED_INIT_VAL;
  460. // pwm mode 1 for 4 chanels
  461. TIM1->CCMR1 = (TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC2M_1 | TIM_CCMR1_OC2M_2 | TIM_CCMR1_OC1PE | TIM_CCMR1_OC2PE);
  462. TIM1->CCMR2 = (TIM_CCMR2_OC3M_1 | TIM_CCMR2_OC3M_2 | TIM_CCMR2_OC4M_1 | TIM_CCMR2_OC4M_2 | TIM_CCMR2_OC3PE | TIM_CCMR2_OC4PE);
  463. // reset int flag - not needed, int unused
  464. //TIM1->SR |= TIM_SR_UIF;
  465. TIM1->BDTR = TIM_BDTR_MOE; // enable main output
  466. TIM1->EGR = TIM_EGR_UG; // force timer update
  467. /* TIM1 CC_EnableChannel */
  468. TIM1->CCER = (TIM_CCER_CC1E | TIM_CCER_CC2E | TIM_CCER_CC3E | TIM_CCER_CC4E);
  469. /* TIM_EnableCounter */
  470. TIM1->CR1 |= TIM_CR1_CEN;
  471. /** TIM1 GPIO Configuration
  472. PA8 ------> TIM1_CH1
  473. PA9 ------> TIM1_CH2
  474. PA10 ------> TIM1_CH3
  475. PA11 [PA9] ------> TIM1_CH4
  476. */
  477. GPIO_SetPinMode(PWM_1_GPIO_Port, PWM_1_Pin, GPIO_MODE_AFF);
  478. GPIO_SetPinSpeed(PWM_1_GPIO_Port, PWM_1_Pin, GPIO_OSPEED_HI);
  479. GPIO_SetPinPull(PWM_1_GPIO_Port, PWM_1_Pin, GPIO_PUPDR_DW);
  480. GPIO_SetAFPin_8_15(PWM_1_GPIO_Port, PWM_1_Pin, GPIO_AF_2);
  481. GPIO_SetPinMode(PWM_R_GPIO_Port, PWM_R_Pin, GPIO_MODE_AFF);
  482. GPIO_SetPinSpeed(PWM_R_GPIO_Port, PWM_R_Pin, GPIO_OSPEED_HI);
  483. GPIO_SetPinPull(PWM_R_GPIO_Port, PWM_R_Pin, GPIO_PUPDR_DW);
  484. GPIO_SetAFPin_8_15(PWM_R_GPIO_Port, PWM_R_Pin, GPIO_AF_2);
  485. GPIO_SetPinMode(PWM_B_GPIO_Port, PWM_B_Pin, GPIO_MODE_AFF);
  486. GPIO_SetPinSpeed(PWM_B_GPIO_Port, PWM_B_Pin, GPIO_OSPEED_HI);
  487. GPIO_SetPinPull(PWM_B_GPIO_Port, PWM_B_Pin, GPIO_PUPDR_DW);
  488. GPIO_SetAFPin_8_15(PWM_B_GPIO_Port, PWM_B_Pin, GPIO_AF_2);
  489. GPIO_SetPinMode(PWM_G_GPIO_Port, PWM_G_Pin, GPIO_MODE_AFF);
  490. GPIO_SetPinSpeed(PWM_G_GPIO_Port, PWM_G_Pin, GPIO_OSPEED_HI);
  491. GPIO_SetPinPull(PWM_G_GPIO_Port, PWM_G_Pin, GPIO_PUPDR_DW);
  492. GPIO_SetAFPin_8_15(PWM_G_GPIO_Port, PWM_G_Pin, GPIO_AF_2);
  493. }
  494. /**
  495. * @brief TIM3 Initialization Function
  496. * @param None
  497. * @retval None
  498. */
  499. static void TIM3_Init(void)
  500. {
  501. /* target clock */
  502. TIM3->PSC = TIM3_PSC; // prescaler
  503. TIM3->ARR = TIM3_ARR; // auto reload value
  504. TIM3->CR1 = TIM_CR1_ARPE;
  505. // initial pwm value
  506. TIM3->CCR1 = PWM_TUBE_INIT_VAL;
  507. TIM3->CCR2 = PWM_TUBE_INIT_VAL;
  508. TIM3->CCR3 = PWM_TUBE_INIT_VAL;
  509. TIM3->CCR4 = PWM_TUBE_INIT_VAL;
  510. // pwm mode 1 for 4 chanels
  511. TIM3->CCMR1 = (TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC2M_1 | TIM_CCMR1_OC2M_2 | TIM_CCMR1_OC1PE | TIM_CCMR1_OC2PE);
  512. TIM3->CCMR2 = (TIM_CCMR2_OC3M_1 | TIM_CCMR2_OC3M_2 | TIM_CCMR2_OC4M_1 | TIM_CCMR2_OC4M_2 | TIM_CCMR2_OC3PE | TIM_CCMR2_OC4PE);
  513. // launch timer
  514. TIM3->EGR = TIM_EGR_UG; // force timer update
  515. /* TIM3 TIM_CC_EnableChannel */
  516. TIM3->CCER = (TIM_CCER_CC1E | TIM_CCER_CC2E | TIM_CCER_CC3E | TIM_CCER_CC4E);
  517. /* TIM3 enable */
  518. TIM3->CR1 |= TIM_CR1_CEN;
  519. /**TIM3 GPIO Configuration
  520. PA6 ------> TIM3_CH1
  521. PA7 ------> TIM3_CH2
  522. PB0 ------> TIM3_CH3
  523. PB1 ------> TIM3_CH4
  524. */
  525. GPIO_SetPinMode(PWM_5_GPIO_Port, PWM_5_Pin, GPIO_MODE_AFF);
  526. GPIO_SetPinSpeed(PWM_5_GPIO_Port, PWM_5_Pin, GPIO_OSPEED_HI);
  527. GPIO_SetPinPull(PWM_5_GPIO_Port, PWM_5_Pin, GPIO_PUPDR_DW);
  528. GPIO_SetAFPin_0_7(PWM_5_GPIO_Port, PWM_5_Pin, GPIO_AF_1);
  529. GPIO_SetPinMode(PWM_4_GPIO_Port, PWM_4_Pin, GPIO_MODE_AFF);
  530. GPIO_SetPinSpeed(PWM_4_GPIO_Port, PWM_4_Pin, GPIO_OSPEED_HI);
  531. GPIO_SetPinPull(PWM_4_GPIO_Port, PWM_4_Pin, GPIO_PUPDR_DW);
  532. GPIO_SetAFPin_0_7(PWM_4_GPIO_Port, PWM_4_Pin, GPIO_AF_1);
  533. GPIO_SetPinMode(PWM_3_GPIO_Port, PWM_3_Pin, GPIO_MODE_AFF);
  534. GPIO_SetPinSpeed(PWM_3_GPIO_Port, PWM_3_Pin, GPIO_OSPEED_HI);
  535. GPIO_SetPinPull(PWM_3_GPIO_Port, PWM_3_Pin, GPIO_PUPDR_DW);
  536. GPIO_SetAFPin_0_7(PWM_3_GPIO_Port, PWM_3_Pin, GPIO_AF_1);
  537. GPIO_SetPinMode(PWM_2_GPIO_Port, PWM_2_Pin, GPIO_MODE_AFF);
  538. GPIO_SetPinSpeed(PWM_2_GPIO_Port, PWM_2_Pin, GPIO_OSPEED_HI);
  539. GPIO_SetPinPull(PWM_2_GPIO_Port, PWM_2_Pin, GPIO_PUPDR_DW);
  540. GPIO_SetAFPin_0_7(PWM_2_GPIO_Port, PWM_2_Pin, GPIO_AF_1);
  541. }
  542. /**
  543. * @brief TIM14 Initialization Function
  544. * @param None
  545. * @retval None
  546. * @desc "Блинкование" разрядами - 0,75/0,25 сек вкл/выкл.
  547. */
  548. static void TIM14_Init(void)
  549. {
  550. /* Peripheral clock enable */
  551. RCC->APBENR2 |= RCC_APBENR2_TIM14EN;
  552. /* TIM14 interrupt Init */
  553. NVIC_SetPriority(TIM14_IRQn, 0);
  554. NVIC_EnableIRQ(TIM14_IRQn);
  555. /* Set TIM14 for 1 sec period */
  556. TIM14->PSC = TIM14_PSC;
  557. TIM14->ARR = TIM14_ARR;
  558. /* Enable: Auto-reload preload, One-pulse mode, */
  559. TIM14->CR1 = (TIM_CR1_ARPE | TIM_CR1_OPM);
  560. /* OC or PWM? (for pwm - (TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_1) ) , Output compare 1 preload */
  561. TIM14->CCMR1 = (TIM_CCMR1_OC1M_0 | TIM_CCMR1_OC1PE);
  562. /* Enable Channel_1 or no needed ??? */
  563. TIM14->CCER = TIM_CCER_CC1E;
  564. /* Impulse value in msek */
  565. TIM14->CCR1 = TIM14_PULSE_VAL;
  566. /* Enable IRQ for Update end CaptureCompare envents or only CC ??? */
  567. //TIM14->DIER = (TIM_DIER_UIE | TIM_DIER_CC1IE);
  568. TIM14->DIER = TIM_DIER_CC1IE;
  569. }
  570. /**
  571. * На старте активируем все каналы, при совпадении отключаем (не)нужные.
  572. */
  573. void Blink_Start(void)
  574. {
  575. /* enable all channels */
  576. TUBE_ALL_ON;
  577. /* clear IRQ flag */
  578. TIM14->SR |= TIM_SR_CC1IF;
  579. /* clear counter value */
  580. TIM14->CNT = 0;
  581. /* enable timer */
  582. TIM14->CR1 |= TIM_CR1_CEN;
  583. }
  584. void Blink_Stop(void)
  585. {
  586. /* disable timer */
  587. TIM14->CR1 &= ~(TIM_CR1_CEN);
  588. /* On all tubes */
  589. TUBE_ALL_ON;
  590. }
  591. /**
  592. * @brief TIM16 Initialization Function
  593. * @param None
  594. * @retval None
  595. */
  596. static void TIM16_Init(void)
  597. {
  598. /* Peripheral clock enable */
  599. RCC->APBENR2 |= RCC_APBENR2_TIM16EN;
  600. /* TIM16 interrupt Init */
  601. NVIC_SetPriority(TIM16_IRQn, 0);
  602. NVIC_EnableIRQ(TIM16_IRQn);
  603. /* setup clock */
  604. TIM16->PSC = TIM16_PSC; // prescaler
  605. TIM16->ARR = TIM16_ARR; // auto reload value
  606. TIM16->CR1 = TIM_CR1_ARPE;
  607. // initial pwm value
  608. //TIM16->CCR1 = TIM16_PWM_VAL;
  609. // pwm mode 1 for 1 chanel
  610. TIM16->CCMR1 = (TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1PE);
  611. // reset int flag
  612. TIM16->SR |= TIM_SR_UIF;
  613. TIM16->BDTR = TIM_BDTR_MOE; // enable main output
  614. TIM16->EGR = TIM_EGR_UG; // force timer update
  615. /* TIM16 CC_EnableChannel */
  616. TIM16->CCER = TIM_CCER_CC1E;
  617. /* TIM_EnableCounter */
  618. TIM16->CR1 |= TIM_CR1_CEN;
  619. /* Enable IRQ */
  620. TIM16->DIER = TIM_DIER_UIE;
  621. }
  622. /**
  623. * @brief TIM17 Initialization Function
  624. * @param None
  625. * @retval None
  626. */
  627. static void TIM17_Init(void)
  628. {
  629. /* Peripheral clock enable */
  630. RCC->APBENR2 |= RCC_APBENR2_TIM17EN;
  631. /* TIM17 interrupt Init */
  632. NVIC_SetPriority(TIM17_IRQn, 0);
  633. NVIC_EnableIRQ(TIM17_IRQn);
  634. /* setup clock */
  635. TIM17->PSC = TIM17_PSC; // prescaler
  636. TIM17->ARR = TIM17_ARR; // auto reload value
  637. TIM17->CR1 = TIM_CR1_ARPE;
  638. // initial pwm value
  639. //TIM17->CCR1 = TIM17_PWM_VAL;
  640. // pwm mode 1 for 1 chanel
  641. TIM17->CCMR1 = (TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1PE);
  642. // reset int flag
  643. TIM17->SR |= TIM_SR_UIF;
  644. TIM17->BDTR = TIM_BDTR_MOE; // enable main output
  645. TIM17->EGR = TIM_EGR_UG; // force timer update
  646. /* TIM17 CC_EnableChannel */
  647. TIM17->CCER = TIM_CCER_CC1E;
  648. /* TIM_EnableCounter */
  649. TIM17->CR1 |= TIM_CR1_CEN;
  650. /* Enable IRQ */
  651. TIM17->DIER = TIM_DIER_UIE;
  652. }
  653. /**
  654. * @brief USART1 Initialization Function
  655. * @param None
  656. * @retval None
  657. */
  658. static void USART1_UART_Init(void)
  659. {
  660. /* Peripheral clock enable */
  661. RCC->APBENR2 |= RCC_APBENR2_USART1EN;
  662. /**USART1 GPIO Configuration
  663. PB6 ------> USART1_TX
  664. PB7 ------> USART1_RX
  665. */
  666. GPIO_SetPinMode(GPIOB, GPIO_PIN_6, GPIO_MODE_AFF);
  667. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_6, GPIO_OSPEED_HI);
  668. GPIO_SetPinMode(GPIOB, GPIO_PIN_7, GPIO_MODE_AFF);
  669. GPIO_SetPinSpeed(GPIOB, GPIO_PIN_7, GPIO_OSPEED_HI);
  670. /* USART1 interrupt Init */
  671. NVIC_SetPriority(USART1_IRQn, 0);
  672. NVIC_EnableIRQ(USART1_IRQn);
  673. USART1->CR1 |= (USART_CR1_TE |USART_CR1_RE);
  674. USART1->BRR = 138;
  675. /* USART1 Enable */
  676. USART1->CR1 |= USART_CR1_UE;
  677. /* Polling USART1 initialisation */
  678. while((!(USART1->ISR & USART_ISR_TEACK)) || (!(USART1->ISR & USART_ISR_REACK)))
  679. {
  680. }
  681. }