drv_adc.c 12 KB

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  1. /*
  2. * Copyright (c) 2006-2023, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2018-12-05 zylx first version
  9. * 2018-12-12 greedyhao Porting for stm32f7xx
  10. * 2019-02-01 yuneizhilin fix the stm32_adc_init function initialization issue
  11. * 2020-06-17 thread-liu Porting for stm32mp1xx
  12. * 2020-10-14 Dozingfiretruck Porting for stm32wbxx
  13. * 2022-05-22 Stanley Lwin Add stm32_adc_get_vref
  14. * 2022-12-26 wdfk-prog Change the order of configuration channels and calibration functions
  15. */
  16. #include <board.h>
  17. #if defined(BSP_USING_ADC1) || defined(BSP_USING_ADC2) || defined(BSP_USING_ADC3)
  18. #include "drv_config.h"
  19. //#define DRV_DEBUG
  20. #define LOG_TAG "drv.adc"
  21. #include <drv_log.h>
  22. static ADC_HandleTypeDef adc_config[] =
  23. {
  24. #ifdef BSP_USING_ADC1
  25. ADC1_CONFIG,
  26. #endif
  27. #ifdef BSP_USING_ADC2
  28. ADC2_CONFIG,
  29. #endif
  30. #ifdef BSP_USING_ADC3
  31. ADC3_CONFIG,
  32. #endif
  33. };
  34. struct stm32_adc
  35. {
  36. ADC_HandleTypeDef ADC_Handler;
  37. struct rt_adc_device stm32_adc_device;
  38. };
  39. static struct stm32_adc stm32_adc_obj[sizeof(adc_config) / sizeof(adc_config[0])];
  40. static rt_uint32_t stm32_adc_get_channel(rt_uint32_t channel);
  41. static rt_err_t stm32_adc_enabled(struct rt_adc_device *device, rt_uint32_t channel, rt_bool_t enabled)
  42. {
  43. ADC_HandleTypeDef *stm32_adc_handler;
  44. RT_ASSERT(device != RT_NULL);
  45. stm32_adc_handler = device->parent.user_data;
  46. if (enabled)
  47. {
  48. ADC_ChannelConfTypeDef ADC_ChanConf;
  49. rt_memset(&ADC_ChanConf, 0, sizeof(ADC_ChanConf));
  50. #ifndef ADC_CHANNEL_16
  51. if (channel == 16)
  52. {
  53. LOG_E("ADC channel must not be 16.");
  54. return -RT_ERROR;
  55. }
  56. #endif
  57. /* ADC channel number is up to 17 */
  58. #if !defined(ADC_CHANNEL_18)
  59. if (channel <= 17 || (
  60. #ifdef ADC_CHANNEL_VREFINT
  61. channel != (ADC_CHANNEL_VREFINT - ADC_CHANNEL_0)
  62. #endif /* ADC_CHANNEL_VREFINT */
  63. #ifdef ADC_CHANNEL_TEMPSENSOR
  64. || channel != (ADC_CHANNEL_TEMPSENSOR - ADC_CHANNEL_0)
  65. #endif /* ADC_CHANNEL_TEMPSENSOR */
  66. #ifdef ADC_CHANNEL_VBAT
  67. || channel != (ADC_CHANNEL_VBAT - ADC_CHANNEL_0)
  68. #endif /* ADC_CHANNEL_VBAT */
  69. ))
  70. /* ADC channel number is up to 19 */
  71. #elif defined(ADC_CHANNEL_19)
  72. if (channel <= 19 || (
  73. #ifdef ADC_CHANNEL_VREFINT
  74. channel != (ADC_CHANNEL_VREFINT - ADC_CHANNEL_0)
  75. #endif /* ADC_CHANNEL_VREFINT */
  76. #ifndef ADC_CHANNEL_TEMPSENSOR
  77. || channel != (ADC_CHANNEL_TEMPSENSOR - ADC_CHANNEL_0)
  78. #endif /* ADC_CHANNEL_TEMPSENSOR */
  79. #ifdef ADC_CHANNEL_VBAT
  80. || channel != (=ADC_CHANNEL_VBAT - ADC_CHANNEL_0)
  81. #endif /* ADC_CHANNEL_VBAT */
  82. ))
  83. /* ADC channel number is up to 18 */
  84. #else
  85. if (channel <= 18 || (
  86. #ifdef ADC_CHANNEL_VREFINT
  87. channel != (ADC_CHANNEL_VREFINT - ADC_CHANNEL_0)
  88. #endif /* ADC_CHANNEL_VREFINT */
  89. #ifdef ADC_CHANNEL_TEMPSENSOR
  90. || channel != (ADC_CHANNEL_TEMPSENSOR - ADC_CHANNEL_0)
  91. #endif /* ADC_CHANNEL_TEMPSENSOR */
  92. #ifdef ADC_CHANNEL_VBAT
  93. || channel != (ADC_CHANNEL_VBAT - ADC_CHANNEL_0)
  94. #endif /* ADC_CHANNEL_VBAT */
  95. ))
  96. #endif /* !defined(ADC_CHANNEL_18) */
  97. {
  98. /* set stm32 ADC channel */
  99. ADC_ChanConf.Channel = stm32_adc_get_channel(channel);
  100. }
  101. else
  102. {
  103. #if !defined(ADC_CHANNEL_18)
  104. LOG_E("ADC channel must be between 0 and 17.");
  105. #elif defined(ADC_CHANNEL_19)
  106. LOG_E("ADC channel must be between 0 and 19.");
  107. #else
  108. LOG_E("ADC channel must be between 0 and 18.");
  109. #endif /* !defined(ADC_CHANNEL_18) */
  110. return -RT_ERROR;
  111. }
  112. #if defined(SOC_SERIES_STM32MP1) || defined (SOC_SERIES_STM32H7) || defined (SOC_SERIES_STM32WB)
  113. ADC_ChanConf.Rank = ADC_REGULAR_RANK_1;
  114. #else
  115. ADC_ChanConf.Rank = 1;
  116. #endif
  117. #if defined(SOC_SERIES_STM32F0)
  118. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_71CYCLES_5;
  119. #elif defined(SOC_SERIES_STM32F1)
  120. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_55CYCLES_5;
  121. #elif defined(SOC_SERIES_STM32F2) || defined(SOC_SERIES_STM32F4) || defined(SOC_SERIES_STM32F7)
  122. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_112CYCLES;
  123. #elif defined(SOC_SERIES_STM32L4)
  124. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_247CYCLES_5;
  125. #elif defined(SOC_SERIES_STM32MP1)
  126. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_810CYCLES_5;
  127. #elif defined(SOC_SERIES_STM32H7)
  128. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_810CYCLES_5;
  129. #elif defined (SOC_SERIES_STM32WB)
  130. ADC_ChanConf.SamplingTime = ADC_SAMPLETIME_2CYCLES_5;
  131. #endif
  132. #if defined(SOC_SERIES_STM32F2) || defined(SOC_SERIES_STM32F4) || defined(SOC_SERIES_STM32F7) || defined(SOC_SERIES_STM32L4) || defined (SOC_SERIES_STM32WB)
  133. ADC_ChanConf.Offset = 0;
  134. #endif
  135. #if defined(SOC_SERIES_STM32L4)
  136. ADC_ChanConf.OffsetNumber = ADC_OFFSET_NONE;
  137. ADC_ChanConf.SingleDiff = LL_ADC_SINGLE_ENDED;
  138. #elif defined(SOC_SERIES_STM32MP1) || defined(SOC_SERIES_STM32H7) || defined (SOC_SERIES_STM32WB)
  139. ADC_ChanConf.OffsetNumber = ADC_OFFSET_NONE; /* ADC channel affected to offset number */
  140. ADC_ChanConf.Offset = 0;
  141. ADC_ChanConf.SingleDiff = ADC_SINGLE_ENDED; /* ADC channel differential mode */
  142. #endif
  143. if(HAL_ADC_ConfigChannel(stm32_adc_handler, &ADC_ChanConf) != HAL_OK)
  144. {
  145. LOG_E("Failed to configure ADC channel %d", channel);
  146. }
  147. /* perform an automatic ADC calibration to improve the conversion accuracy */
  148. #if defined(SOC_SERIES_STM32L4) || defined (SOC_SERIES_STM32WB)
  149. if (HAL_ADCEx_Calibration_Start(stm32_adc_handler, ADC_ChanConf.SingleDiff) != HAL_OK)
  150. {
  151. LOG_E("ADC calibration error!\n");
  152. return -RT_ERROR;
  153. }
  154. #elif defined(SOC_SERIES_STM32MP1) || defined(SOC_SERIES_STM32H7)
  155. /* Run the ADC linear calibration in single-ended mode */
  156. if (HAL_ADCEx_Calibration_Start(stm32_adc_handler, ADC_CALIB_OFFSET_LINEARITY, ADC_ChanConf.SingleDiff) != HAL_OK)
  157. {
  158. LOG_E("ADC open linear calibration error!\n");
  159. /* Calibration Error */
  160. return -RT_ERROR;
  161. }
  162. #endif
  163. HAL_ADC_Start(stm32_adc_handler);
  164. }
  165. else
  166. {
  167. HAL_ADC_Stop(stm32_adc_handler);
  168. }
  169. return RT_EOK;
  170. }
  171. static rt_uint8_t stm32_adc_get_resolution(struct rt_adc_device *device)
  172. {
  173. #if defined(SOC_SERIES_STM32F1) || defined(SOC_SERIES_STM32F3)
  174. return 12;
  175. #else
  176. ADC_HandleTypeDef *stm32_adc_handler = device->parent.user_data;
  177. RT_ASSERT(device != RT_NULL);
  178. switch(stm32_adc_handler->Init.Resolution)
  179. {
  180. #ifdef SOC_SERIES_STM32H7
  181. case ADC_RESOLUTION_16B:
  182. return 16;
  183. case ADC_RESOLUTION_14B:
  184. return 14;
  185. #endif /* SOC_SERIES_STM32H7 */
  186. case ADC_RESOLUTION_12B:
  187. return 12;
  188. case ADC_RESOLUTION_10B:
  189. return 10;
  190. case ADC_RESOLUTION_8B:
  191. return 8;
  192. #ifndef SOC_SERIES_STM32H7
  193. case ADC_RESOLUTION_6B:
  194. return 6;
  195. #endif /* SOC_SERIES_STM32H7 */
  196. default:
  197. return 0;
  198. }
  199. #endif /* defined(SOC_SERIES_STM32F1) || defined(SOC_SERIES_STM32F3) */
  200. }
  201. static rt_uint32_t stm32_adc_get_channel(rt_uint32_t channel)
  202. {
  203. rt_uint32_t stm32_channel = 0;
  204. switch (channel)
  205. {
  206. case 0:
  207. stm32_channel = ADC_CHANNEL_0;
  208. break;
  209. case 1:
  210. stm32_channel = ADC_CHANNEL_1;
  211. break;
  212. case 2:
  213. stm32_channel = ADC_CHANNEL_2;
  214. break;
  215. case 3:
  216. stm32_channel = ADC_CHANNEL_3;
  217. break;
  218. case 4:
  219. stm32_channel = ADC_CHANNEL_4;
  220. break;
  221. case 5:
  222. stm32_channel = ADC_CHANNEL_5;
  223. break;
  224. case 6:
  225. stm32_channel = ADC_CHANNEL_6;
  226. break;
  227. case 7:
  228. stm32_channel = ADC_CHANNEL_7;
  229. break;
  230. case 8:
  231. stm32_channel = ADC_CHANNEL_8;
  232. break;
  233. case 9:
  234. stm32_channel = ADC_CHANNEL_9;
  235. break;
  236. case 10:
  237. stm32_channel = ADC_CHANNEL_10;
  238. break;
  239. case 11:
  240. stm32_channel = ADC_CHANNEL_11;
  241. break;
  242. case 12:
  243. stm32_channel = ADC_CHANNEL_12;
  244. break;
  245. case 13:
  246. stm32_channel = ADC_CHANNEL_13;
  247. break;
  248. case 14:
  249. stm32_channel = ADC_CHANNEL_14;
  250. break;
  251. case 15:
  252. stm32_channel = ADC_CHANNEL_15;
  253. break;
  254. #ifdef ADC_CHANNEL_16
  255. case 16:
  256. stm32_channel = ADC_CHANNEL_16;
  257. break;
  258. #endif
  259. case 17:
  260. stm32_channel = ADC_CHANNEL_17;
  261. break;
  262. #ifdef ADC_CHANNEL_18
  263. case 18:
  264. stm32_channel = ADC_CHANNEL_18;
  265. break;
  266. #endif
  267. #ifdef ADC_CHANNEL_19
  268. case 19:
  269. stm32_channel = ADC_CHANNEL_19;
  270. break;
  271. #endif
  272. default:
  273. switch (channel)
  274. {
  275. #ifdef ADC_CHANNEL_VREFINT
  276. case ADC_CHANNEL_VREFINT - ADC_CHANNEL_0:
  277. stm32_channel = ADC_CHANNEL_VREFINT;
  278. break;
  279. #endif /* ADC_CHANNEL_VREFINT */
  280. #ifdef ADC_CHANNEL_VBAT
  281. case ADC_CHANNEL_VBAT - ADC_CHANNEL_0:
  282. stm32_channel = ADC_CHANNEL_VBAT;
  283. break;
  284. #endif /* ADC_CHANNEL_VBAT */
  285. #ifdef ADC_CHANNEL_TEMPSENSOR
  286. case ADC_CHANNEL_TEMPSENSOR - ADC_CHANNEL_0:
  287. stm32_channel = ADC_CHANNEL_TEMPSENSOR;
  288. break;
  289. #endif /* ADC_CHANNEL_TEMPSENSOR */
  290. }
  291. break;
  292. }
  293. return stm32_channel;
  294. }
  295. static rt_int16_t stm32_adc_get_vref (struct rt_adc_device *device)
  296. {
  297. if(device == RT_NULL)
  298. return -RT_ERROR;
  299. rt_uint16_t vref_mv;
  300. #ifdef __LL_ADC_CALC_VREFANALOG_VOLTAGE
  301. rt_err_t ret = RT_EOK;
  302. rt_uint32_t vref_value;
  303. ADC_HandleTypeDef *stm32_adc_handler = device->parent.user_data;
  304. ret = rt_adc_enable(device, ADC_CHANNEL_VREFINT - ADC_CHANNEL_0);
  305. if (ret != RT_EOK) return (rt_int16_t)ret;
  306. vref_value = rt_adc_read(device, ADC_CHANNEL_VREFINT - ADC_CHANNEL_0);
  307. ret = rt_adc_disable(device, ADC_CHANNEL_VREFINT - ADC_CHANNEL_0);
  308. if (ret != RT_EOK) return (rt_int16_t)ret;
  309. vref_mv = __LL_ADC_CALC_VREFANALOG_VOLTAGE(vref_value, stm32_adc_handler->Init.Resolution);
  310. #else
  311. vref_mv = 3300;
  312. #endif /* __LL_ADC_CALC_VREFANALOG_VOLTAGE */
  313. return vref_mv;
  314. }
  315. static rt_err_t stm32_adc_get_value(struct rt_adc_device *device, rt_uint32_t channel, rt_uint32_t *value)
  316. {
  317. ADC_HandleTypeDef *stm32_adc_handler;
  318. RT_ASSERT(device != RT_NULL);
  319. RT_ASSERT(value != RT_NULL);
  320. stm32_adc_handler = device->parent.user_data;
  321. /* Wait for the ADC to convert */
  322. HAL_ADC_PollForConversion(stm32_adc_handler, 100);
  323. /* get ADC value */
  324. *value = (rt_uint32_t)HAL_ADC_GetValue(stm32_adc_handler);
  325. return RT_EOK;
  326. }
  327. static const struct rt_adc_ops stm_adc_ops =
  328. {
  329. .enabled = stm32_adc_enabled,
  330. .convert = stm32_adc_get_value,
  331. .get_resolution = stm32_adc_get_resolution,
  332. .get_vref = stm32_adc_get_vref,
  333. };
  334. static int stm32_adc_init(void)
  335. {
  336. int result = RT_EOK;
  337. /* save adc name */
  338. char name_buf[5] = {'a', 'd', 'c', '0', 0};
  339. int i = 0;
  340. for (i = 0; i < sizeof(adc_config) / sizeof(adc_config[0]); i++)
  341. {
  342. /* ADC init */
  343. name_buf[3] = '0';
  344. stm32_adc_obj[i].ADC_Handler = adc_config[i];
  345. #if defined(ADC1)
  346. if (stm32_adc_obj[i].ADC_Handler.Instance == ADC1)
  347. {
  348. name_buf[3] = '1';
  349. }
  350. #endif
  351. #if defined(ADC2)
  352. if (stm32_adc_obj[i].ADC_Handler.Instance == ADC2)
  353. {
  354. name_buf[3] = '2';
  355. }
  356. #endif
  357. #if defined(ADC3)
  358. if (stm32_adc_obj[i].ADC_Handler.Instance == ADC3)
  359. {
  360. name_buf[3] = '3';
  361. }
  362. #endif
  363. if (HAL_ADC_Init(&stm32_adc_obj[i].ADC_Handler) != HAL_OK)
  364. {
  365. LOG_E("%s init failed", name_buf);
  366. result = -RT_ERROR;
  367. }
  368. else
  369. {
  370. /* register ADC device */
  371. if (rt_hw_adc_register(&stm32_adc_obj[i].stm32_adc_device, name_buf, &stm_adc_ops, &stm32_adc_obj[i].ADC_Handler) == RT_EOK)
  372. {
  373. LOG_D("%s init success", name_buf);
  374. }
  375. else
  376. {
  377. LOG_E("%s register failed", name_buf);
  378. result = -RT_ERROR;
  379. }
  380. }
  381. }
  382. return result;
  383. }
  384. INIT_BOARD_EXPORT(stm32_adc_init);
  385. #endif /* BSP_USING_ADC */