stm32f1xx_hal_hcd.c 34 KB

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  1. /**
  2. ******************************************************************************
  3. * @file stm32f1xx_hal_hcd.c
  4. * @author MCD Application Team
  5. * @version V1.1.1
  6. * @date 12-May-2017
  7. * @brief HCD HAL module driver.
  8. * This file provides firmware functions to manage the following
  9. * functionalities of the USB Peripheral Controller:
  10. * + Initialization and de-initialization functions
  11. * + IO operation functions
  12. * + Peripheral Control functions
  13. * + Peripheral State functions
  14. *
  15. @verbatim
  16. ==============================================================================
  17. ##### How to use this driver #####
  18. ==============================================================================
  19. [..]
  20. (#)Declare a HCD_HandleTypeDef handle structure, for example:
  21. HCD_HandleTypeDef hhcd;
  22. (#)Fill parameters of Init structure in HCD handle
  23. (#)Call HAL_HCD_Init() API to initialize the HCD peripheral (Core, Host core, ...)
  24. (#)Initialize the HCD low level resources through the HAL_HCD_MspInit() API:
  25. (##) Enable the HCD/USB Low Level interface clock using the following macro
  26. (+++) __HAL_RCC_USB_OTG_FS_CLK_ENABLE()
  27. (##) Initialize the related GPIO clocks
  28. (##) Configure HCD pin-out
  29. (##) Configure HCD NVIC interrupt
  30. (#)Associate the Upper USB Host stack to the HAL HCD Driver:
  31. (##) hhcd.pData = phost;
  32. (#)Enable HCD transmission and reception:
  33. (##) HAL_HCD_Start();
  34. @endverbatim
  35. ******************************************************************************
  36. * @attention
  37. *
  38. * <h2><center>&copy; COPYRIGHT(c) 2016 STMicroelectronics</center></h2>
  39. *
  40. * Redistribution and use in source and binary forms, with or without modification,
  41. * are permitted provided that the following conditions are met:
  42. * 1. Redistributions of source code must retain the above copyright notice,
  43. * this list of conditions and the following disclaimer.
  44. * 2. Redistributions in binary form must reproduce the above copyright notice,
  45. * this list of conditions and the following disclaimer in the documentation
  46. * and/or other materials provided with the distribution.
  47. * 3. Neither the name of STMicroelectronics nor the names of its contributors
  48. * may be used to endorse or promote products derived from this software
  49. * without specific prior written permission.
  50. *
  51. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  52. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  53. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  54. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  55. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  56. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  57. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  58. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  59. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  60. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  61. *
  62. ******************************************************************************
  63. */
  64. /* Includes ------------------------------------------------------------------*/
  65. #include "stm32f1xx_hal.h"
  66. /** @addtogroup STM32F1xx_HAL_Driver
  67. * @{
  68. */
  69. #ifdef HAL_HCD_MODULE_ENABLED
  70. #if defined(STM32F105xC) || defined(STM32F107xC)
  71. /** @defgroup HCD HCD
  72. * @brief HCD HAL module driver
  73. * @{
  74. */
  75. /* Private types -------------------------------------------------------------*/
  76. /* Private variables ---------------------------------------------------------*/
  77. /* Private constants ---------------------------------------------------------*/
  78. /* Private macros ------------------------------------------------------------*/
  79. /* Private function ----------------------------------------------------------*/
  80. /** @defgroup HCD_Private_Functions HCD Private Functions
  81. * @{
  82. */
  83. static void HCD_HC_IN_IRQHandler(HCD_HandleTypeDef *hhcd, uint8_t chnum);
  84. static void HCD_HC_OUT_IRQHandler(HCD_HandleTypeDef *hhcd, uint8_t chnum);
  85. static void HCD_RXQLVL_IRQHandler(HCD_HandleTypeDef *hhcd);
  86. static void HCD_Port_IRQHandler(HCD_HandleTypeDef *hhcd);
  87. /**
  88. * @}
  89. */
  90. /* Exported functions --------------------------------------------------------*/
  91. /** @defgroup HCD_Exported_Functions HCD Exported Functions
  92. * @{
  93. */
  94. /** @defgroup HCD_Exported_Functions_Group1 Initialization and de-initialization functions
  95. * @brief Initialization and Configuration functions
  96. *
  97. @verbatim
  98. ===============================================================================
  99. ##### Initialization and de-initialization functions #####
  100. ===============================================================================
  101. [..] This section provides functions allowing to:
  102. @endverbatim
  103. * @{
  104. */
  105. /**
  106. * @brief Initialize the host driver
  107. * @param hhcd: HCD handle
  108. * @retval HAL status
  109. */
  110. HAL_StatusTypeDef HAL_HCD_Init(HCD_HandleTypeDef *hhcd)
  111. {
  112. /* Check the HCD handle allocation */
  113. if(hhcd == NULL)
  114. {
  115. return HAL_ERROR;
  116. }
  117. /* Check the parameters */
  118. assert_param(IS_HCD_ALL_INSTANCE(hhcd->Instance));
  119. if(hhcd->State == HAL_HCD_STATE_RESET)
  120. {
  121. /* Allocate lock resource and initialize it */
  122. hhcd->Lock = HAL_UNLOCKED;
  123. /* Init the low level hardware : GPIO, CLOCK, NVIC... */
  124. HAL_HCD_MspInit(hhcd);
  125. }
  126. hhcd->State = HAL_HCD_STATE_BUSY;
  127. /* Disable the Interrupts */
  128. __HAL_HCD_DISABLE(hhcd);
  129. /* Init the Core (common init.) */
  130. USB_CoreInit(hhcd->Instance, hhcd->Init);
  131. /* Force Host Mode*/
  132. USB_SetCurrentMode(hhcd->Instance , USB_HOST_MODE);
  133. /* Init Host */
  134. USB_HostInit(hhcd->Instance, hhcd->Init);
  135. hhcd->State= HAL_HCD_STATE_READY;
  136. return HAL_OK;
  137. }
  138. /**
  139. * @brief Initialize a host channel
  140. * @param hhcd: HCD handle
  141. * @param ch_num: Channel number.
  142. * This parameter can be a value from 1 to 15
  143. * @param epnum: Endpoint number.
  144. * This parameter can be a value from 1 to 15
  145. * @param dev_address : Current device address
  146. * This parameter can be a value from 0 to 255
  147. * @param speed: Current device speed.
  148. * This parameter can be one of these values:
  149. * HCD_SPEED_FULL: Full speed mode,
  150. * HCD_SPEED_LOW: Low speed mode
  151. * @param ep_type: Endpoint Type.
  152. * This parameter can be one of these values:
  153. * EP_TYPE_CTRL: Control type,
  154. * EP_TYPE_ISOC: Isochronous type,
  155. * EP_TYPE_BULK: Bulk type,
  156. * EP_TYPE_INTR: Interrupt type
  157. * @param mps: Max Packet Size.
  158. * This parameter can be a value from 0 to32K
  159. * @retval HAL status
  160. */
  161. HAL_StatusTypeDef HAL_HCD_HC_Init(HCD_HandleTypeDef *hhcd,
  162. uint8_t ch_num,
  163. uint8_t epnum,
  164. uint8_t dev_address,
  165. uint8_t speed,
  166. uint8_t ep_type,
  167. uint16_t mps)
  168. {
  169. HAL_StatusTypeDef status = HAL_OK;
  170. __HAL_LOCK(hhcd);
  171. hhcd->hc[ch_num].dev_addr = dev_address;
  172. hhcd->hc[ch_num].max_packet = mps;
  173. hhcd->hc[ch_num].ch_num = ch_num;
  174. hhcd->hc[ch_num].ep_type = ep_type;
  175. hhcd->hc[ch_num].ep_num = epnum & 0x7FU;
  176. hhcd->hc[ch_num].ep_is_in = ((epnum & 0x80U) == 0x80U);
  177. hhcd->hc[ch_num].speed = speed;
  178. status = USB_HC_Init(hhcd->Instance,
  179. ch_num,
  180. epnum,
  181. dev_address,
  182. speed,
  183. ep_type,
  184. mps);
  185. __HAL_UNLOCK(hhcd);
  186. return status;
  187. }
  188. /**
  189. * @brief Halt a host channel
  190. * @param hhcd: HCD handle
  191. * @param ch_num: Channel number.
  192. * This parameter can be a value from 1 to 15
  193. * @retval HAL status
  194. */
  195. HAL_StatusTypeDef HAL_HCD_HC_Halt(HCD_HandleTypeDef *hhcd,
  196. uint8_t ch_num)
  197. {
  198. __HAL_LOCK(hhcd);
  199. USB_HC_Halt(hhcd->Instance, ch_num);
  200. __HAL_UNLOCK(hhcd);
  201. return HAL_OK;
  202. }
  203. /**
  204. * @brief DeInitialize the host driver
  205. * @param hhcd: HCD handle
  206. * @retval HAL status
  207. */
  208. HAL_StatusTypeDef HAL_HCD_DeInit(HCD_HandleTypeDef *hhcd)
  209. {
  210. /* Check the HCD handle allocation */
  211. if(hhcd == NULL)
  212. {
  213. return HAL_ERROR;
  214. }
  215. hhcd->State = HAL_HCD_STATE_BUSY;
  216. /* DeInit the low level hardware */
  217. HAL_HCD_MspDeInit(hhcd);
  218. __HAL_HCD_DISABLE(hhcd);
  219. hhcd->State = HAL_HCD_STATE_RESET;
  220. return HAL_OK;
  221. }
  222. /**
  223. * @brief Initializes the HCD MSP.
  224. * @param hhcd: HCD handle
  225. * @retval None
  226. */
  227. __weak void HAL_HCD_MspInit(HCD_HandleTypeDef *hhcd)
  228. {
  229. /* Prevent unused argument(s) compilation warning */
  230. UNUSED(hhcd);
  231. /* NOTE : This function Should not be modified, when the callback is needed,
  232. the HAL_HCD_MspInit could be implemented in the user file
  233. */
  234. }
  235. /**
  236. * @brief DeInitializes HCD MSP.
  237. * @param hhcd: HCD handle
  238. * @retval None
  239. */
  240. __weak void HAL_HCD_MspDeInit(HCD_HandleTypeDef *hhcd)
  241. {
  242. /* Prevent unused argument(s) compilation warning */
  243. UNUSED(hhcd);
  244. /* NOTE : This function Should not be modified, when the callback is needed,
  245. the HAL_HCD_MspDeInit could be implemented in the user file
  246. */
  247. }
  248. /**
  249. * @}
  250. */
  251. /** @defgroup HCD_Exported_Functions_Group2 IO operation functions
  252. * @brief HCD IO operation functions
  253. *
  254. @verbatim
  255. ===============================================================================
  256. ##### IO operation functions #####
  257. ===============================================================================
  258. This subsection provides a set of functions allowing to manage the USB Host Data
  259. Transfer
  260. @endverbatim
  261. * @{
  262. */
  263. /**
  264. * @brief Submit a new URB for processing
  265. * @param hhcd: HCD handle
  266. * @param ch_num: Channel number.
  267. * This parameter can be a value from 1 to 15
  268. * @param direction: Channel number.
  269. * This parameter can be one of these values:
  270. * 0 : Output / 1 : Input
  271. * @param ep_type: Endpoint Type.
  272. * This parameter can be one of these values:
  273. * EP_TYPE_CTRL: Control type/
  274. * EP_TYPE_ISOC: Isochronous type/
  275. * EP_TYPE_BULK: Bulk type/
  276. * EP_TYPE_INTR: Interrupt type/
  277. * @param token: Endpoint Type.
  278. * This parameter can be one of these values:
  279. * 0: HC_PID_SETUP / 1: HC_PID_DATA1
  280. * @param pbuff: pointer to URB data
  281. * @param length: Length of URB data
  282. * @param do_ping: activate do ping protocol (for high speed only).
  283. * This parameter can be one of these values:
  284. * 0 : do ping inactive / 1 : do ping active
  285. * @retval HAL status
  286. */
  287. HAL_StatusTypeDef HAL_HCD_HC_SubmitRequest(HCD_HandleTypeDef *hhcd,
  288. uint8_t ch_num,
  289. uint8_t direction,
  290. uint8_t ep_type,
  291. uint8_t token,
  292. uint8_t* pbuff,
  293. uint16_t length,
  294. uint8_t do_ping)
  295. {
  296. hhcd->hc[ch_num].ep_is_in = direction;
  297. hhcd->hc[ch_num].ep_type = ep_type;
  298. if(token == 0U)
  299. {
  300. hhcd->hc[ch_num].data_pid = HC_PID_SETUP;
  301. }
  302. else
  303. {
  304. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  305. }
  306. /* Manage Data Toggle */
  307. switch(ep_type)
  308. {
  309. case EP_TYPE_CTRL:
  310. if((token == 1U) && (direction == 0U)) /*send data */
  311. {
  312. if (length == 0U)
  313. { /* For Status OUT stage, Length==0, Status Out PID = 1 */
  314. hhcd->hc[ch_num].toggle_out = 1U;
  315. }
  316. /* Set the Data Toggle bit as per the Flag */
  317. if ( hhcd->hc[ch_num].toggle_out == 0U)
  318. { /* Put the PID 0 */
  319. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  320. }
  321. else
  322. { /* Put the PID 1 */
  323. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  324. }
  325. if(hhcd->hc[ch_num].urb_state != URB_NOTREADY)
  326. {
  327. hhcd->hc[ch_num].do_ping = do_ping;
  328. }
  329. }
  330. break;
  331. case EP_TYPE_BULK:
  332. if(direction == 0U)
  333. {
  334. /* Set the Data Toggle bit as per the Flag */
  335. if ( hhcd->hc[ch_num].toggle_out == 0U)
  336. { /* Put the PID 0 */
  337. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  338. }
  339. else
  340. { /* Put the PID 1 */
  341. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  342. }
  343. if(hhcd->hc[ch_num].urb_state != URB_NOTREADY)
  344. {
  345. hhcd->hc[ch_num].do_ping = do_ping;
  346. }
  347. }
  348. else
  349. {
  350. if( hhcd->hc[ch_num].toggle_in == 0U)
  351. {
  352. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  353. }
  354. else
  355. {
  356. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  357. }
  358. }
  359. break;
  360. case EP_TYPE_INTR:
  361. if(direction == 0U)
  362. {
  363. /* Set the Data Toggle bit as per the Flag */
  364. if ( hhcd->hc[ch_num].toggle_out == 0U)
  365. { /* Put the PID 0 */
  366. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  367. }
  368. else
  369. { /* Put the PID 1 */
  370. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  371. }
  372. }
  373. else
  374. {
  375. if( hhcd->hc[ch_num].toggle_in == 0U)
  376. {
  377. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  378. }
  379. else
  380. {
  381. hhcd->hc[ch_num].data_pid = HC_PID_DATA1;
  382. }
  383. }
  384. break;
  385. case EP_TYPE_ISOC:
  386. hhcd->hc[ch_num].data_pid = HC_PID_DATA0;
  387. break;
  388. }
  389. hhcd->hc[ch_num].xfer_buff = pbuff;
  390. hhcd->hc[ch_num].xfer_len = length;
  391. hhcd->hc[ch_num].urb_state = URB_IDLE;
  392. hhcd->hc[ch_num].xfer_count = 0U;
  393. hhcd->hc[ch_num].ch_num = ch_num;
  394. hhcd->hc[ch_num].state = HC_IDLE;
  395. return USB_HC_StartXfer(hhcd->Instance, &(hhcd->hc[ch_num]));
  396. }
  397. /**
  398. * @brief handle HCD interrupt request.
  399. * @param hhcd: HCD handle
  400. * @retval None
  401. */
  402. void HAL_HCD_IRQHandler(HCD_HandleTypeDef *hhcd)
  403. {
  404. USB_OTG_GlobalTypeDef *USBx = hhcd->Instance;
  405. uint32_t index = 0U, interrupt = 0U;
  406. /* ensure that we are in device mode */
  407. if (USB_GetMode(hhcd->Instance) == USB_OTG_MODE_HOST)
  408. {
  409. /* Avoid spurious interrupt */
  410. if(__HAL_HCD_IS_INVALID_INTERRUPT(hhcd))
  411. {
  412. return;
  413. }
  414. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_PXFR_INCOMPISOOUT))
  415. {
  416. /* Incorrect mode, acknowledge the interrupt */
  417. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_PXFR_INCOMPISOOUT);
  418. }
  419. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_IISOIXFR))
  420. {
  421. /* Incorrect mode, acknowledge the interrupt */
  422. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_IISOIXFR);
  423. }
  424. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_PTXFE))
  425. {
  426. /* Incorrect mode, acknowledge the interrupt */
  427. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_PTXFE);
  428. }
  429. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_MMIS))
  430. {
  431. /* Incorrect mode, acknowledge the interrupt */
  432. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_MMIS);
  433. }
  434. /* Handle Host Disconnect Interrupts */
  435. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_DISCINT))
  436. {
  437. /* Cleanup HPRT */
  438. USBx_HPRT0 &= ~(USB_OTG_HPRT_PENA | USB_OTG_HPRT_PCDET |\
  439. USB_OTG_HPRT_PENCHNG | USB_OTG_HPRT_POCCHNG );
  440. /* Handle Host Port Interrupts */
  441. HAL_HCD_Disconnect_Callback(hhcd);
  442. USB_InitFSLSPClkSel(hhcd->Instance ,HCFG_48_MHZ);
  443. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_DISCINT);
  444. }
  445. /* Handle Host Port Interrupts */
  446. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_HPRTINT))
  447. {
  448. HCD_Port_IRQHandler (hhcd);
  449. }
  450. /* Handle Host SOF Interrupts */
  451. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_SOF))
  452. {
  453. HAL_HCD_SOF_Callback(hhcd);
  454. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_SOF);
  455. }
  456. /* Handle Host channel Interrupts */
  457. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_HCINT))
  458. {
  459. interrupt = USB_HC_ReadInterrupt(hhcd->Instance);
  460. for (index = 0U; index < hhcd->Init.Host_channels ; index++)
  461. {
  462. if (interrupt & (1 << index))
  463. {
  464. if ((USBx_HC(index)->HCCHAR) & USB_OTG_HCCHAR_EPDIR)
  465. {
  466. HCD_HC_IN_IRQHandler (hhcd, index);
  467. }
  468. else
  469. {
  470. HCD_HC_OUT_IRQHandler (hhcd, index);
  471. }
  472. }
  473. }
  474. __HAL_HCD_CLEAR_FLAG(hhcd, USB_OTG_GINTSTS_HCINT);
  475. }
  476. /* Handle Rx Queue Level Interrupts */
  477. if(__HAL_HCD_GET_FLAG(hhcd, USB_OTG_GINTSTS_RXFLVL))
  478. {
  479. USB_MASK_INTERRUPT(hhcd->Instance, USB_OTG_GINTSTS_RXFLVL);
  480. HCD_RXQLVL_IRQHandler (hhcd);
  481. USB_UNMASK_INTERRUPT(hhcd->Instance, USB_OTG_GINTSTS_RXFLVL);
  482. }
  483. }
  484. }
  485. /**
  486. * @brief SOF callback.
  487. * @param hhcd: HCD handle
  488. * @retval None
  489. */
  490. __weak void HAL_HCD_SOF_Callback(HCD_HandleTypeDef *hhcd)
  491. {
  492. /* Prevent unused argument(s) compilation warning */
  493. UNUSED(hhcd);
  494. /* NOTE : This function Should not be modified, when the callback is needed,
  495. the HAL_HCD_SOF_Callback could be implemented in the user file
  496. */
  497. }
  498. /**
  499. * @brief Connexion Event callback.
  500. * @param hhcd: HCD handle
  501. * @retval None
  502. */
  503. __weak void HAL_HCD_Connect_Callback(HCD_HandleTypeDef *hhcd)
  504. {
  505. /* Prevent unused argument(s) compilation warning */
  506. UNUSED(hhcd);
  507. /* NOTE : This function Should not be modified, when the callback is needed,
  508. the HAL_HCD_Connect_Callback could be implemented in the user file
  509. */
  510. }
  511. /**
  512. * @brief Disonnection Event callback.
  513. * @param hhcd: HCD handle
  514. * @retval None
  515. */
  516. __weak void HAL_HCD_Disconnect_Callback(HCD_HandleTypeDef *hhcd)
  517. {
  518. /* Prevent unused argument(s) compilation warning */
  519. UNUSED(hhcd);
  520. /* NOTE : This function Should not be modified, when the callback is needed,
  521. the HAL_HCD_Disconnect_Callback could be implemented in the user file
  522. */
  523. }
  524. /**
  525. * @brief Notify URB state change callback.
  526. * @param hhcd: HCD handle
  527. * @param chnum: Channel number.
  528. * This parameter can be a value from 1 to 15
  529. * @param urb_state:
  530. * This parameter can be one of these values:
  531. * URB_IDLE/
  532. * URB_DONE/
  533. * URB_NOTREADY/
  534. * URB_NYET/
  535. * URB_ERROR/
  536. * URB_STALL/
  537. * @retval None
  538. */
  539. __weak void HAL_HCD_HC_NotifyURBChange_Callback(HCD_HandleTypeDef *hhcd, uint8_t chnum, HCD_URBStateTypeDef urb_state)
  540. {
  541. /* Prevent unused argument(s) compilation warning */
  542. UNUSED(hhcd);
  543. UNUSED(chnum);
  544. UNUSED(urb_state);
  545. /* NOTE : This function Should not be modified, when the callback is needed,
  546. the HAL_HCD_HC_NotifyURBChange_Callback could be implemented in the user file
  547. */
  548. }
  549. /**
  550. * @}
  551. */
  552. /** @defgroup HCD_Exported_Functions_Group3 Peripheral Control functions
  553. * @brief management functions
  554. *
  555. @verbatim
  556. ===============================================================================
  557. ##### Peripheral Control functions #####
  558. ===============================================================================
  559. [..]
  560. This subsection provides a set of functions allowing to control the HCD data
  561. transfers.
  562. @endverbatim
  563. * @{
  564. */
  565. /**
  566. * @brief Start the host driver
  567. * @param hhcd: HCD handle
  568. * @retval HAL status
  569. */
  570. HAL_StatusTypeDef HAL_HCD_Start(HCD_HandleTypeDef *hhcd)
  571. {
  572. __HAL_LOCK(hhcd);
  573. __HAL_HCD_ENABLE(hhcd);
  574. USB_DriveVbus(hhcd->Instance, 1U);
  575. __HAL_UNLOCK(hhcd);
  576. return HAL_OK;
  577. }
  578. /**
  579. * @brief Stop the host driver
  580. * @param hhcd: HCD handle
  581. * @retval HAL status
  582. */
  583. HAL_StatusTypeDef HAL_HCD_Stop(HCD_HandleTypeDef *hhcd)
  584. {
  585. __HAL_LOCK(hhcd);
  586. USB_StopHost(hhcd->Instance);
  587. __HAL_UNLOCK(hhcd);
  588. return HAL_OK;
  589. }
  590. /**
  591. * @brief Reset the host port
  592. * @param hhcd: HCD handle
  593. * @retval HAL status
  594. */
  595. HAL_StatusTypeDef HAL_HCD_ResetPort(HCD_HandleTypeDef *hhcd)
  596. {
  597. return (USB_ResetPort(hhcd->Instance));
  598. }
  599. /**
  600. * @}
  601. */
  602. /** @defgroup HCD_Exported_Functions_Group4 Peripheral State functions
  603. * @brief Peripheral State functions
  604. *
  605. @verbatim
  606. ===============================================================================
  607. ##### Peripheral State functions #####
  608. ===============================================================================
  609. [..]
  610. This subsection permits to get in run-time the status of the peripheral
  611. and the data flow.
  612. @endverbatim
  613. * @{
  614. */
  615. /**
  616. * @brief Return the HCD handle state
  617. * @param hhcd: HCD handle
  618. * @retval HAL state
  619. */
  620. HCD_StateTypeDef HAL_HCD_GetState(HCD_HandleTypeDef *hhcd)
  621. {
  622. return hhcd->State;
  623. }
  624. /**
  625. * @brief Return URB state for a channel
  626. * @param hhcd: HCD handle
  627. * @param chnum: Channel number.
  628. * This parameter can be a value from 1 to 15
  629. * @retval URB state.
  630. * This parameter can be one of these values:
  631. * URB_IDLE/
  632. * URB_DONE/
  633. * URB_NOTREADY/
  634. * URB_NYET/
  635. * URB_ERROR/
  636. * URB_STALL/
  637. */
  638. HCD_URBStateTypeDef HAL_HCD_HC_GetURBState(HCD_HandleTypeDef *hhcd, uint8_t chnum)
  639. {
  640. return hhcd->hc[chnum].urb_state;
  641. }
  642. /**
  643. * @brief Return the last host transfer size
  644. * @param hhcd: HCD handle
  645. * @param chnum: Channel number.
  646. * This parameter can be a value from 1 to 15
  647. * @retval last transfer size in byte
  648. */
  649. uint32_t HAL_HCD_HC_GetXferCount(HCD_HandleTypeDef *hhcd, uint8_t chnum)
  650. {
  651. return hhcd->hc[chnum].xfer_count;
  652. }
  653. /**
  654. * @brief Return the Host Channel state
  655. * @param hhcd: HCD handle
  656. * @param chnum: Channel number.
  657. * This parameter can be a value from 1 to 15
  658. * @retval Host channel state
  659. * This parameter can be one of the these values:
  660. * HC_IDLE/
  661. * HC_XFRC/
  662. * HC_HALTED/
  663. * HC_NYET/
  664. * HC_NAK/
  665. * HC_STALL/
  666. * HC_XACTERR/
  667. * HC_BBLERR/
  668. * HC_DATATGLERR/
  669. */
  670. HCD_HCStateTypeDef HAL_HCD_HC_GetState(HCD_HandleTypeDef *hhcd, uint8_t chnum)
  671. {
  672. return hhcd->hc[chnum].state;
  673. }
  674. /**
  675. * @brief Return the current Host frame number
  676. * @param hhcd: HCD handle
  677. * @retval Current Host frame number
  678. */
  679. uint32_t HAL_HCD_GetCurrentFrame(HCD_HandleTypeDef *hhcd)
  680. {
  681. return (USB_GetCurrentFrame(hhcd->Instance));
  682. }
  683. /**
  684. * @brief Return the Host enumeration speed
  685. * @param hhcd: HCD handle
  686. * @retval Enumeration speed
  687. */
  688. uint32_t HAL_HCD_GetCurrentSpeed(HCD_HandleTypeDef *hhcd)
  689. {
  690. return (USB_GetHostSpeed(hhcd->Instance));
  691. }
  692. /**
  693. * @}
  694. */
  695. /**
  696. * @}
  697. */
  698. /** @addtogroup HCD_Private_Functions
  699. * @{
  700. */
  701. /**
  702. * @brief This function handles Host Channel IN interrupt requests.
  703. * @param hhcd: HCD handle
  704. * @param chnum: Channel number.
  705. * This parameter can be a value from 1 to 15
  706. * @retval none
  707. */
  708. static void HCD_HC_IN_IRQHandler (HCD_HandleTypeDef *hhcd, uint8_t chnum)
  709. {
  710. USB_OTG_GlobalTypeDef *USBx = hhcd->Instance;
  711. uint32_t tmpreg = 0U;
  712. if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_AHBERR)
  713. {
  714. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_AHBERR);
  715. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  716. }
  717. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_ACK)
  718. {
  719. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_ACK);
  720. }
  721. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_STALL)
  722. {
  723. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  724. hhcd->hc[chnum].state = HC_STALL;
  725. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  726. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_STALL);
  727. USB_HC_Halt(hhcd->Instance, chnum);
  728. }
  729. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_DTERR)
  730. {
  731. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  732. USB_HC_Halt(hhcd->Instance, chnum);
  733. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  734. hhcd->hc[chnum].state = HC_DATATGLERR;
  735. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_DTERR);
  736. }
  737. if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_FRMOR)
  738. {
  739. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  740. USB_HC_Halt(hhcd->Instance, chnum);
  741. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_FRMOR);
  742. }
  743. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_XFRC)
  744. {
  745. hhcd->hc[chnum].state = HC_XFRC;
  746. hhcd->hc[chnum].ErrCnt = 0U;
  747. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_XFRC);
  748. if ((hhcd->hc[chnum].ep_type == EP_TYPE_CTRL)||
  749. (hhcd->hc[chnum].ep_type == EP_TYPE_BULK))
  750. {
  751. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  752. USB_HC_Halt(hhcd->Instance, chnum);
  753. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  754. }
  755. else if(hhcd->hc[chnum].ep_type == EP_TYPE_INTR)
  756. {
  757. USBx_HC(chnum)->HCCHAR |= USB_OTG_HCCHAR_ODDFRM;
  758. hhcd->hc[chnum].urb_state = URB_DONE;
  759. HAL_HCD_HC_NotifyURBChange_Callback(hhcd, chnum, hhcd->hc[chnum].urb_state);
  760. }
  761. hhcd->hc[chnum].toggle_in ^= 1U;
  762. }
  763. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_CHH)
  764. {
  765. __HAL_HCD_MASK_HALT_HC_INT(chnum);
  766. if(hhcd->hc[chnum].state == HC_XFRC)
  767. {
  768. hhcd->hc[chnum].urb_state = URB_DONE;
  769. }
  770. else if (hhcd->hc[chnum].state == HC_STALL)
  771. {
  772. hhcd->hc[chnum].urb_state = URB_STALL;
  773. }
  774. else if((hhcd->hc[chnum].state == HC_XACTERR) ||
  775. (hhcd->hc[chnum].state == HC_DATATGLERR))
  776. {
  777. if(hhcd->hc[chnum].ErrCnt++ > 3U)
  778. {
  779. hhcd->hc[chnum].ErrCnt = 0U;
  780. hhcd->hc[chnum].urb_state = URB_ERROR;
  781. }
  782. else
  783. {
  784. hhcd->hc[chnum].urb_state = URB_NOTREADY;
  785. }
  786. /* re-activate the channel */
  787. tmpreg = USBx_HC(chnum)->HCCHAR;
  788. tmpreg &= ~USB_OTG_HCCHAR_CHDIS;
  789. tmpreg |= USB_OTG_HCCHAR_CHENA;
  790. USBx_HC(chnum)->HCCHAR = tmpreg;
  791. }
  792. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_CHH);
  793. HAL_HCD_HC_NotifyURBChange_Callback(hhcd, chnum, hhcd->hc[chnum].urb_state);
  794. }
  795. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_TXERR)
  796. {
  797. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  798. hhcd->hc[chnum].ErrCnt++;
  799. hhcd->hc[chnum].state = HC_XACTERR;
  800. USB_HC_Halt(hhcd->Instance, chnum);
  801. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_TXERR);
  802. }
  803. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_NAK)
  804. {
  805. if(hhcd->hc[chnum].ep_type == EP_TYPE_INTR)
  806. {
  807. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  808. USB_HC_Halt(hhcd->Instance, chnum);
  809. }
  810. else if ((hhcd->hc[chnum].ep_type == EP_TYPE_CTRL)||
  811. (hhcd->hc[chnum].ep_type == EP_TYPE_BULK))
  812. {
  813. /* re-activate the channel */
  814. tmpreg = USBx_HC(chnum)->HCCHAR;
  815. tmpreg &= ~USB_OTG_HCCHAR_CHDIS;
  816. tmpreg |= USB_OTG_HCCHAR_CHENA;
  817. USBx_HC(chnum)->HCCHAR = tmpreg;
  818. }
  819. hhcd->hc[chnum].state = HC_NAK;
  820. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  821. }
  822. }
  823. /**
  824. * @brief This function handles Host Channel OUT interrupt requests.
  825. * @param hhcd: HCD handle
  826. * @param chnum: Channel number.
  827. * This parameter can be a value from 1 to 15
  828. * @retval none
  829. */
  830. static void HCD_HC_OUT_IRQHandler (HCD_HandleTypeDef *hhcd, uint8_t chnum)
  831. {
  832. USB_OTG_GlobalTypeDef *USBx = hhcd->Instance;
  833. uint32_t tmpreg = 0U;
  834. if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_AHBERR)
  835. {
  836. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_AHBERR);
  837. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  838. }
  839. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_ACK)
  840. {
  841. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_ACK);
  842. if( hhcd->hc[chnum].do_ping == 1U)
  843. {
  844. hhcd->hc[chnum].state = HC_NYET;
  845. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  846. USB_HC_Halt(hhcd->Instance, chnum);
  847. hhcd->hc[chnum].urb_state = URB_NOTREADY;
  848. }
  849. }
  850. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_NYET)
  851. {
  852. hhcd->hc[chnum].state = HC_NYET;
  853. hhcd->hc[chnum].ErrCnt= 0U;
  854. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  855. USB_HC_Halt(hhcd->Instance, chnum);
  856. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NYET);
  857. }
  858. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_FRMOR)
  859. {
  860. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  861. USB_HC_Halt(hhcd->Instance, chnum);
  862. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_FRMOR);
  863. }
  864. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_XFRC)
  865. {
  866. hhcd->hc[chnum].ErrCnt = 0U;
  867. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  868. USB_HC_Halt(hhcd->Instance, chnum);
  869. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_XFRC);
  870. hhcd->hc[chnum].state = HC_XFRC;
  871. }
  872. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_STALL)
  873. {
  874. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_STALL);
  875. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  876. USB_HC_Halt(hhcd->Instance, chnum);
  877. hhcd->hc[chnum].state = HC_STALL;
  878. }
  879. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_NAK)
  880. {
  881. hhcd->hc[chnum].ErrCnt = 0U;
  882. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  883. USB_HC_Halt(hhcd->Instance, chnum);
  884. hhcd->hc[chnum].state = HC_NAK;
  885. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  886. }
  887. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_TXERR)
  888. {
  889. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  890. USB_HC_Halt(hhcd->Instance, chnum);
  891. hhcd->hc[chnum].state = HC_XACTERR;
  892. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_TXERR);
  893. }
  894. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_DTERR)
  895. {
  896. __HAL_HCD_UNMASK_HALT_HC_INT(chnum);
  897. USB_HC_Halt(hhcd->Instance, chnum);
  898. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_NAK);
  899. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_DTERR);
  900. hhcd->hc[chnum].state = HC_DATATGLERR;
  901. }
  902. else if ((USBx_HC(chnum)->HCINT) & USB_OTG_HCINT_CHH)
  903. {
  904. __HAL_HCD_MASK_HALT_HC_INT(chnum);
  905. if(hhcd->hc[chnum].state == HC_XFRC)
  906. {
  907. hhcd->hc[chnum].urb_state = URB_DONE;
  908. if (hhcd->hc[chnum].ep_type == EP_TYPE_BULK)
  909. {
  910. hhcd->hc[chnum].toggle_out ^= 1U;
  911. }
  912. }
  913. else if (hhcd->hc[chnum].state == HC_NAK)
  914. {
  915. hhcd->hc[chnum].urb_state = URB_NOTREADY;
  916. }
  917. else if (hhcd->hc[chnum].state == HC_NYET)
  918. {
  919. hhcd->hc[chnum].urb_state = URB_NOTREADY;
  920. hhcd->hc[chnum].do_ping = 0U;
  921. }
  922. else if (hhcd->hc[chnum].state == HC_STALL)
  923. {
  924. hhcd->hc[chnum].urb_state = URB_STALL;
  925. }
  926. else if((hhcd->hc[chnum].state == HC_XACTERR) ||
  927. (hhcd->hc[chnum].state == HC_DATATGLERR))
  928. {
  929. if(hhcd->hc[chnum].ErrCnt++ > 3U)
  930. {
  931. hhcd->hc[chnum].ErrCnt = 0U;
  932. hhcd->hc[chnum].urb_state = URB_ERROR;
  933. }
  934. else
  935. {
  936. hhcd->hc[chnum].urb_state = URB_NOTREADY;
  937. }
  938. /* re-activate the channel */
  939. tmpreg = USBx_HC(chnum)->HCCHAR;
  940. tmpreg &= ~USB_OTG_HCCHAR_CHDIS;
  941. tmpreg |= USB_OTG_HCCHAR_CHENA;
  942. USBx_HC(chnum)->HCCHAR = tmpreg;
  943. }
  944. __HAL_HCD_CLEAR_HC_INT(chnum, USB_OTG_HCINT_CHH);
  945. HAL_HCD_HC_NotifyURBChange_Callback(hhcd, chnum, hhcd->hc[chnum].urb_state);
  946. }
  947. }
  948. /**
  949. * @brief This function handles Rx Queue Level interrupt requests.
  950. * @param hhcd: HCD handle
  951. * @retval none
  952. */
  953. static void HCD_RXQLVL_IRQHandler (HCD_HandleTypeDef *hhcd)
  954. {
  955. USB_OTG_GlobalTypeDef *USBx = hhcd->Instance;
  956. uint8_t channelnum =0U;
  957. uint32_t pktsts;
  958. uint32_t pktcnt;
  959. uint32_t temp = 0U;
  960. uint32_t tmpreg = 0U;
  961. temp = hhcd->Instance->GRXSTSP;
  962. channelnum = temp & USB_OTG_GRXSTSP_EPNUM;
  963. pktsts = (temp & USB_OTG_GRXSTSP_PKTSTS) >> 17U;
  964. pktcnt = (temp & USB_OTG_GRXSTSP_BCNT) >> 4U;
  965. switch (pktsts)
  966. {
  967. case GRXSTS_PKTSTS_IN:
  968. /* Read the data into the host buffer. */
  969. if ((pktcnt > 0U) && (hhcd->hc[channelnum].xfer_buff != (void *)0U))
  970. {
  971. USB_ReadPacket(hhcd->Instance, hhcd->hc[channelnum].xfer_buff, pktcnt);
  972. /*manage multiple Xfer */
  973. hhcd->hc[channelnum].xfer_buff += pktcnt;
  974. hhcd->hc[channelnum].xfer_count += pktcnt;
  975. if((USBx_HC(channelnum)->HCTSIZ & USB_OTG_HCTSIZ_PKTCNT) > 0U)
  976. {
  977. /* re-activate the channel when more packets are expected */
  978. tmpreg = USBx_HC(channelnum)->HCCHAR;
  979. tmpreg &= ~USB_OTG_HCCHAR_CHDIS;
  980. tmpreg |= USB_OTG_HCCHAR_CHENA;
  981. USBx_HC(channelnum)->HCCHAR = tmpreg;
  982. hhcd->hc[channelnum].toggle_in ^= 1U;
  983. }
  984. }
  985. break;
  986. case GRXSTS_PKTSTS_DATA_TOGGLE_ERR:
  987. break;
  988. case GRXSTS_PKTSTS_IN_XFER_COMP:
  989. case GRXSTS_PKTSTS_CH_HALTED:
  990. default:
  991. break;
  992. }
  993. }
  994. /**
  995. * @brief This function handles Host Port interrupt requests.
  996. * @param hhcd: HCD handle
  997. * @retval None
  998. */
  999. static void HCD_Port_IRQHandler (HCD_HandleTypeDef *hhcd)
  1000. {
  1001. USB_OTG_GlobalTypeDef *USBx = hhcd->Instance;
  1002. __IO uint32_t hprt0 = 0, hprt0_dup = 0U;
  1003. /* Handle Host Port Interrupts */
  1004. hprt0 = USBx_HPRT0;
  1005. hprt0_dup = USBx_HPRT0;
  1006. hprt0_dup &= ~(USB_OTG_HPRT_PENA | USB_OTG_HPRT_PCDET |\
  1007. USB_OTG_HPRT_PENCHNG | USB_OTG_HPRT_POCCHNG );
  1008. /* Check whether Port Connect Detected */
  1009. if((hprt0 & USB_OTG_HPRT_PCDET) == USB_OTG_HPRT_PCDET)
  1010. {
  1011. if((hprt0 & USB_OTG_HPRT_PCSTS) == USB_OTG_HPRT_PCSTS)
  1012. {
  1013. USB_MASK_INTERRUPT(hhcd->Instance, USB_OTG_GINTSTS_DISCINT);
  1014. HAL_HCD_Connect_Callback(hhcd);
  1015. }
  1016. hprt0_dup |= USB_OTG_HPRT_PCDET;
  1017. }
  1018. /* Check whether Port Enable Changed */
  1019. if((hprt0 & USB_OTG_HPRT_PENCHNG) == USB_OTG_HPRT_PENCHNG)
  1020. {
  1021. hprt0_dup |= USB_OTG_HPRT_PENCHNG;
  1022. if((hprt0 & USB_OTG_HPRT_PENA) == USB_OTG_HPRT_PENA)
  1023. {
  1024. if ((hprt0 & USB_OTG_HPRT_PSPD) == (HPRT0_PRTSPD_LOW_SPEED << 17U))
  1025. {
  1026. USB_InitFSLSPClkSel(hhcd->Instance ,HCFG_6_MHZ );
  1027. }
  1028. else
  1029. {
  1030. USB_InitFSLSPClkSel(hhcd->Instance ,HCFG_48_MHZ );
  1031. }
  1032. HAL_HCD_Connect_Callback(hhcd);
  1033. }
  1034. else
  1035. {
  1036. /* Cleanup HPRT */
  1037. USBx_HPRT0 &= ~(USB_OTG_HPRT_PENA | USB_OTG_HPRT_PCDET |\
  1038. USB_OTG_HPRT_PENCHNG | USB_OTG_HPRT_POCCHNG );
  1039. USB_UNMASK_INTERRUPT(hhcd->Instance, USB_OTG_GINTSTS_DISCINT);
  1040. }
  1041. }
  1042. /* Check For an over current */
  1043. if((hprt0 & USB_OTG_HPRT_POCCHNG) == USB_OTG_HPRT_POCCHNG)
  1044. {
  1045. hprt0_dup |= USB_OTG_HPRT_POCCHNG;
  1046. }
  1047. /* Clear Port Interrupts */
  1048. USBx_HPRT0 = hprt0_dup;
  1049. }
  1050. /**
  1051. * @}
  1052. */
  1053. /**
  1054. * @}
  1055. */
  1056. #endif /* STM32F105xC || STM32F107xC */
  1057. #endif /* HAL_HCD_MODULE_ENABLED */
  1058. /**
  1059. * @}
  1060. */
  1061. /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/