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- extern "C" {
- typedef enum
- {
- HAL_PCD_STATE_RESET = 0x00,
- HAL_PCD_STATE_READY = 0x01,
- HAL_PCD_STATE_ERROR = 0x02,
- HAL_PCD_STATE_BUSY = 0x03,
- HAL_PCD_STATE_TIMEOUT = 0x04
- } PCD_StateTypeDef;
- typedef enum
- {
- LPM_L0 = 0x00,
- LPM_L1 = 0x01,
- LPM_L2 = 0x02,
- LPM_L3 = 0x03,
- } PCD_LPM_StateTypeDef;
- typedef enum
- {
- PCD_LPM_L0_ACTIVE = 0x00,
- PCD_LPM_L1_ACTIVE = 0x01,
- } PCD_LPM_MsgTypeDef;
- typedef enum
- {
- PCD_BCD_ERROR = 0xFF,
- PCD_BCD_CONTACT_DETECTION = 0xFE,
- PCD_BCD_STD_DOWNSTREAM_PORT = 0xFD,
- PCD_BCD_CHARGING_DOWNSTREAM_PORT = 0xFC,
- PCD_BCD_DEDICATED_CHARGING_PORT = 0xFB,
- PCD_BCD_DISCOVERY_COMPLETED = 0x00,
- } PCD_BCD_MsgTypeDef;
- typedef USB_TypeDef PCD_TypeDef;
- typedef USB_CfgTypeDef PCD_InitTypeDef;
- typedef USB_EPTypeDef PCD_EPTypeDef;
- typedef struct __PCD_HandleTypeDef
- typedef struct
- {
- PCD_TypeDef *Instance;
- PCD_InitTypeDef Init;
- __IO uint8_t USB_Address;
- PCD_EPTypeDef IN_ep[8];
- PCD_EPTypeDef OUT_ep[8];
- HAL_LockTypeDef Lock;
- __IO PCD_StateTypeDef State;
- __IO uint32_t ErrorCode;
- uint32_t Setup[12];
- PCD_LPM_StateTypeDef LPM_State;
- uint32_t BESL;
- uint32_t lpm_active;
- uint32_t battery_charging_active;
- void *pData;
- void (* SOFCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* SetupStageCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* ResetCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* SuspendCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* ResumeCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* ConnectCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* DisconnectCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* DataOutStageCallback)(struct __PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void (* DataInStageCallback)(struct __PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void (* ISOOUTIncompleteCallback)(struct __PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void (* ISOINIncompleteCallback)(struct __PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void (* BCDCallback)(struct __PCD_HandleTypeDef *hpcd, PCD_BCD_MsgTypeDef msg);
- void (* LPMCallback)(struct __PCD_HandleTypeDef *hpcd, PCD_LPM_MsgTypeDef msg);
- void (* MspInitCallback)(struct __PCD_HandleTypeDef *hpcd);
- void (* MspDeInitCallback)(struct __PCD_HandleTypeDef *hpcd);
- } PCD_HandleTypeDef;
- ((USB_ReadInterrupts((__HANDLE__)->Instance) & (__INTERRUPT__)) == (__INTERRUPT__))
- #define __HAL_PCD_CLEAR_FLAG(__HANDLE__, __INTERRUPT__) (((__HANDLE__)->Instance->ISTR)\
- &= (uint16_t)(~(__INTERRUPT__)))
- #define __HAL_USB_WAKEUP_EXTI_ENABLE_IT() EXTI->IMR |= USB_WAKEUP_EXTI_LINE
- HAL_StatusTypeDef HAL_PCD_Init(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_DeInit(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_MspInit(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_MspDeInit(PCD_HandleTypeDef *hpcd);
- typedef enum
- {
- HAL_PCD_SOF_CB_ID = 0x01,
- HAL_PCD_SETUPSTAGE_CB_ID = 0x02,
- HAL_PCD_RESET_CB_ID = 0x03,
- HAL_PCD_SUSPEND_CB_ID = 0x04,
- HAL_PCD_RESUME_CB_ID = 0x05,
- HAL_PCD_CONNECT_CB_ID = 0x06,
- HAL_PCD_DISCONNECT_CB_ID = 0x07,
- HAL_PCD_MSPINIT_CB_ID = 0x08,
- HAL_PCD_MSPDEINIT_CB_ID = 0x09 /*!< USB PCD MspDeInit callback ID */
- } HAL_PCD_CallbackIDTypeDef;
- typedef void (*pPCD_CallbackTypeDef)(PCD_HandleTypeDef *hpcd);
- typedef void (*pPCD_DataOutStageCallbackTypeDef)(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- typedef void (*pPCD_DataInStageCallbackTypeDef)(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- typedef void (*pPCD_IsoOutIncpltCallbackTypeDef)(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- typedef void (*pPCD_IsoInIncpltCallbackTypeDef)(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- typedef void (*pPCD_LpmCallbackTypeDef)(PCD_HandleTypeDef *hpcd, PCD_LPM_MsgTypeDef msg);
- typedef void (*pPCD_BcdCallbackTypeDef)(PCD_HandleTypeDef *hpcd, PCD_BCD_MsgTypeDef msg);
- HAL_StatusTypeDef HAL_PCD_RegisterCallback(PCD_HandleTypeDef *hpcd, HAL_PCD_CallbackIDTypeDef CallbackID,
- pPCD_CallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterCallback(PCD_HandleTypeDef *hpcd, HAL_PCD_CallbackIDTypeDef CallbackID);
- HAL_StatusTypeDef HAL_PCD_RegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd,
- pPCD_DataOutStageCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_RegisterDataInStageCallback(PCD_HandleTypeDef *hpcd,
- pPCD_DataInStageCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterDataInStageCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_RegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd,
- pPCD_IsoOutIncpltCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_RegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd,
- pPCD_IsoInIncpltCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_RegisterBcdCallback(PCD_HandleTypeDef *hpcd, pPCD_BcdCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterBcdCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_RegisterLpmCallback(PCD_HandleTypeDef *hpcd, pPCD_LpmCallbackTypeDef pCallback);
- HAL_StatusTypeDef HAL_PCD_UnRegisterLpmCallback(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_Start(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_Stop(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_IRQHandler(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_SOFCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_SuspendCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd);
- void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
- HAL_StatusTypeDef HAL_PCD_DevConnect(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_DevDisconnect(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_SetAddress(PCD_HandleTypeDef *hpcd, uint8_t address);
- HAL_StatusTypeDef HAL_PCD_EP_Open(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint16_t ep_mps, uint8_t ep_type);
- HAL_StatusTypeDef HAL_PCD_EP_Close(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- HAL_StatusTypeDef HAL_PCD_EP_Receive(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len);
- HAL_StatusTypeDef HAL_PCD_EP_Transmit(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len);
- HAL_StatusTypeDef HAL_PCD_EP_SetStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- HAL_StatusTypeDef HAL_PCD_EP_ClrStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- HAL_StatusTypeDef HAL_PCD_EP_Flush(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- HAL_StatusTypeDef HAL_PCD_EP_Abort(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- HAL_StatusTypeDef HAL_PCD_ActivateRemoteWakeup(PCD_HandleTypeDef *hpcd);
- HAL_StatusTypeDef HAL_PCD_DeActivateRemoteWakeup(PCD_HandleTypeDef *hpcd);
- uint32_t HAL_PCD_EP_GetRxCount(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
- PCD_StateTypeDef HAL_PCD_GetState(PCD_HandleTypeDef *hpcd);
- (*(__IO uint16_t *)(&(USBx)->EP0R + ((bEpNum) * 2U)) = (uint16_t)(wRegValue))
- /* GetENDPOINT */
- #define PCD_GET_ENDPOINT(USBx, bEpNum) (*(__IO uint16_t *)(&(USBx)->EP0R + ((bEpNum) * 2U)))
- /**
- * @brief sets the type in the endpoint register(bits EP_TYPE[1:0])
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param wType Endpoint Type.
- * @retval None
- */
- #define PCD_SET_EPTYPE(USBx, bEpNum, wType) \
- (PCD_SET_ENDPOINT((USBx), (bEpNum), \
- ((PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_T_MASK) | (wType) | USB_EP_CTR_TX | USB_EP_CTR_RX)))
- /**
- * @brief gets the type in the endpoint register(bits EP_TYPE[1:0])
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval Endpoint Type
- */
- #define PCD_GET_EPTYPE(USBx, bEpNum) (PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_T_FIELD)
- /**
- * @brief free buffer used from the application realizing it to the line
- * toggles bit SW_BUF in the double buffered endpoint register
- * @param USBx USB device.
- * @param bEpNum, bDir
- * @retval None
- */
- #define PCD_FREE_USER_BUFFER(USBx, bEpNum, bDir) \
- do { \
- if ((bDir) == 0U) \
- { \
- /* OUT double buffered endpoint */ \
- PCD_TX_DTOG((USBx), (bEpNum)); \
- } \
- else if ((bDir) == 1U) \
- { \
- /* IN double buffered endpoint */ \
- PCD_RX_DTOG((USBx), (bEpNum)); \
- } \
- } while(0)
- /**
- * @brief sets the status for tx transfer (bits STAT_TX[1:0]).
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param wState new state
- * @retval None
- */
- #define PCD_SET_EP_TX_STATUS(USBx, bEpNum, wState) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPTX_DTOGMASK; \
- /* toggle first bit ? */ \
- if ((USB_EPTX_DTOG1 & (wState))!= 0U) \
- { \
- _wRegVal ^= USB_EPTX_DTOG1; \
- } \
- /* toggle second bit ? */ \
- if ((USB_EPTX_DTOG2 & (wState))!= 0U) \
- { \
- _wRegVal ^= USB_EPTX_DTOG2; \
- } \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX)); \
- } while(0) /* PCD_SET_EP_TX_STATUS */
- /**
- * @brief sets the status for rx transfer (bits STAT_TX[1:0])
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param wState new state
- * @retval None
- */
- #define PCD_SET_EP_RX_STATUS(USBx, bEpNum,wState) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPRX_DTOGMASK; \
- /* toggle first bit ? */ \
- if ((USB_EPRX_DTOG1 & (wState))!= 0U) \
- { \
- _wRegVal ^= USB_EPRX_DTOG1; \
- } \
- /* toggle second bit ? */ \
- if ((USB_EPRX_DTOG2 & (wState))!= 0U) \
- { \
- _wRegVal ^= USB_EPRX_DTOG2; \
- } \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX)); \
- } while(0) /* PCD_SET_EP_RX_STATUS */
- /**
- * @brief sets the status for rx & tx (bits STAT_TX[1:0] & STAT_RX[1:0])
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param wStaterx new state.
- * @param wStatetx new state.
- * @retval None
- */
- #define PCD_SET_EP_TXRX_STATUS(USBx, bEpNum, wStaterx, wStatetx) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & (USB_EPRX_DTOGMASK | USB_EPTX_STAT); \
- /* toggle first bit ? */ \
- if ((USB_EPRX_DTOG1 & (wStaterx))!= 0U) \
- { \
- _wRegVal ^= USB_EPRX_DTOG1; \
- } \
- /* toggle second bit ? */ \
- if ((USB_EPRX_DTOG2 & (wStaterx))!= 0U) \
- { \
- _wRegVal ^= USB_EPRX_DTOG2; \
- } \
- /* toggle first bit ? */ \
- if ((USB_EPTX_DTOG1 & (wStatetx))!= 0U) \
- { \
- _wRegVal ^= USB_EPTX_DTOG1; \
- } \
- /* toggle second bit ? */ \
- if ((USB_EPTX_DTOG2 & (wStatetx))!= 0U) \
- { \
- _wRegVal ^= USB_EPTX_DTOG2; \
- } \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX)); \
- } while(0) /* PCD_SET_EP_TXRX_STATUS */
- /**
- * @brief gets the status for tx/rx transfer (bits STAT_TX[1:0]
- * /STAT_RX[1:0])
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval status
- */
- #define PCD_GET_EP_TX_STATUS(USBx, bEpNum) ((uint16_t)PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPTX_STAT)
- #define PCD_GET_EP_RX_STATUS(USBx, bEpNum) ((uint16_t)PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPRX_STAT)
- /**
- * @brief sets directly the VALID tx/rx-status into the endpoint register
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_SET_EP_TX_VALID(USBx, bEpNum) (PCD_SET_EP_TX_STATUS((USBx), (bEpNum), USB_EP_TX_VALID))
- #define PCD_SET_EP_RX_VALID(USBx, bEpNum) (PCD_SET_EP_RX_STATUS((USBx), (bEpNum), USB_EP_RX_VALID))
- /**
- * @brief checks stall condition in an endpoint.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval TRUE = endpoint in stall condition.
- */
- #define PCD_GET_EP_TX_STALL_STATUS(USBx, bEpNum) (PCD_GET_EP_TX_STATUS((USBx), (bEpNum)) == USB_EP_TX_STALL)
- #define PCD_GET_EP_RX_STALL_STATUS(USBx, bEpNum) (PCD_GET_EP_RX_STATUS((USBx), (bEpNum)) == USB_EP_RX_STALL)
- /**
- * @brief set & clear EP_KIND bit.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_SET_EP_KIND(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK; \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX | USB_EP_KIND)); \
- } while(0) /* PCD_SET_EP_KIND */
- #define PCD_CLEAR_EP_KIND(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPKIND_MASK; \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX)); \
- } while(0) /* PCD_CLEAR_EP_KIND */
- /**
- * @brief Sets/clears directly STATUS_OUT bit in the endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_SET_OUT_STATUS(USBx, bEpNum) PCD_SET_EP_KIND((USBx), (bEpNum))
- #define PCD_CLEAR_OUT_STATUS(USBx, bEpNum) PCD_CLEAR_EP_KIND((USBx), (bEpNum))
- /**
- * @brief Sets/clears directly EP_KIND bit in the endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_SET_BULK_EP_DBUF(USBx, bEpNum) PCD_SET_EP_KIND((USBx), (bEpNum))
- #define PCD_CLEAR_BULK_EP_DBUF(USBx, bEpNum) PCD_CLEAR_EP_KIND((USBx), (bEpNum))
- /**
- * @brief Clears bit CTR_RX / CTR_TX in the endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_CLEAR_RX_EP_CTR(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & (0x7FFFU & USB_EPREG_MASK); \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_TX)); \
- } while(0) /* PCD_CLEAR_RX_EP_CTR */
- #define PCD_CLEAR_TX_EP_CTR(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & (0xFF7FU & USB_EPREG_MASK); \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX)); \
- } while(0) /* PCD_CLEAR_TX_EP_CTR */
- /**
- * @brief Toggles DTOG_RX / DTOG_TX bit in the endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_RX_DTOG(USBx, bEpNum) \
- do { \
- uint16_t _wEPVal; \
- \
- _wEPVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK; \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wEPVal | USB_EP_CTR_RX | USB_EP_CTR_TX | USB_EP_DTOG_RX)); \
- } while(0) /* PCD_RX_DTOG */
- #define PCD_TX_DTOG(USBx, bEpNum) \
- do { \
- uint16_t _wEPVal; \
- \
- _wEPVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK; \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wEPVal | USB_EP_CTR_RX | USB_EP_CTR_TX | USB_EP_DTOG_TX)); \
- } while(0) /* PCD_TX_DTOG */
- /**
- * @brief Clears DTOG_RX / DTOG_TX bit in the endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_CLEAR_RX_DTOG(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)); \
- \
- if ((_wRegVal & USB_EP_DTOG_RX) != 0U)\
- { \
- PCD_RX_DTOG((USBx), (bEpNum)); \
- } \
- } while(0) /* PCD_CLEAR_RX_DTOG */
- #define PCD_CLEAR_TX_DTOG(USBx, bEpNum) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)); \
- \
- if ((_wRegVal & USB_EP_DTOG_TX) != 0U)\
- { \
- PCD_TX_DTOG((USBx), (bEpNum)); \
- } \
- } while(0) /* PCD_CLEAR_TX_DTOG */
- /**
- * @brief Sets address in an endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param bAddr Address.
- * @retval None
- */
- #define PCD_SET_EP_ADDRESS(USBx, bEpNum, bAddr) \
- do { \
- uint16_t _wRegVal; \
- \
- _wRegVal = (PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK) | (bAddr); \
- \
- PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX | USB_EP_CTR_TX)); \
- } while(0) /* PCD_SET_EP_ADDRESS */
- /**
- * @brief Gets address in an endpoint register.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @retval None
- */
- #define PCD_GET_EP_ADDRESS(USBx, bEpNum) ((uint8_t)(PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPADDR_FIELD))
- #define PCD_EP_TX_CNT(USBx, bEpNum) \
- ((uint16_t *)((((uint32_t)(USBx)->BTABLE + \
- ((uint32_t)(bEpNum) * 8U) + 2U) * PMA_ACCESS) + ((uint32_t)(USBx) + 0x400U)))
- #define PCD_EP_RX_CNT(USBx, bEpNum) \
- ((uint16_t *)((((uint32_t)(USBx)->BTABLE + \
- ((uint32_t)(bEpNum) * 8U) + 6U) * PMA_ACCESS) + ((uint32_t)(USBx) + 0x400U)))
- /**
- * @brief sets address of the tx/rx buffer.
- * @param USBx USB peripheral instance register address.
- * @param bEpNum Endpoint Number.
- * @param wAddr address to be set (must be word aligned).
- * @retval None
- */
- #define PCD_SET_EP_TX_ADDRESS(USBx, bEpNum, wAddr) \
- do { \
- __IO uint16_t *_wRegVal; \
- uint32_t _wRegBase = (uint32_t)USBx; \
- \
- _wRegBase += (uint32_t)(USBx)->BTABLE; \
- _wRegVal = (__IO uint16_t *)(_wRegBase + 0x400U + (((uint32_t)(bEpNum) * 8U) * PMA_ACCESS)); \
- *_wRegVal = ((wAddr) >> 1) << 1; \
- } while(0)
- do { \
- __IO uint16_t *_wRegVal; \
- uint32_t _wRegBase = (uint32_t)USBx; \
- \
- _wRegBase += (uint32_t)(USBx)->BTABLE; \
- _wRegVal = (__IO uint16_t *)(_wRegBase + 0x400U + ((((uint32_t)(bEpNum) * 8U) + 4U) * PMA_ACCESS)); \
- *_wRegVal = ((wAddr) >> 1) << 1; \
- } while(0)
- do { \
- (wNBlocks) = (wCount) >> 5; \
- if (((wCount) & 0x1fU) == 0U) \
- { \
- (wNBlocks)--; \
- } \
- *(pdwReg) |= (uint16_t)(((wNBlocks) << 10) | USB_CNTRX_BLSIZE); \
- } while(0)
- do { \
- (wNBlocks) = (wCount) >> 1; \
- if (((wCount) & 0x1U) != 0U) \
- { \
- (wNBlocks)++; \
- } \
- *(pdwReg) |= (uint16_t)((wNBlocks) << 10); \
- } while(0)
- do { \
- uint32_t wNBlocks; \
- \
- *(pdwReg) &= 0x3FFU; \
- \
- if ((wCount) > 62U) \
- { \
- PCD_CALC_BLK32((pdwReg), (wCount), wNBlocks); \
- } \
- else \
- { \
- if ((wCount) == 0U) \
- { \
- *(pdwReg) |= USB_CNTRX_BLSIZE; \
- } \
- else \
- { \
- PCD_CALC_BLK2((pdwReg), (wCount), wNBlocks); \
- } \
- } \
- } while(0)
- do { \
- uint32_t _wRegBase = (uint32_t)(USBx); \
- __IO uint16_t *pdwReg; \
- \
- _wRegBase += (uint32_t)(USBx)->BTABLE; \
- pdwReg = (__IO uint16_t *)(_wRegBase + 0x400U + ((((uint32_t)(bEpNum) * 8U) + 2U) * PMA_ACCESS)); \
- PCD_SET_EP_CNT_RX_REG(pdwReg, (wCount)); \
- } while(0)
- do { \
- uint32_t _wRegBase = (uint32_t)(USBx); \
- __IO uint16_t *_wRegVal; \
- \
- _wRegBase += (uint32_t)(USBx)->BTABLE; \
- _wRegVal = (__IO uint16_t *)(_wRegBase + 0x400U + ((((uint32_t)(bEpNum) * 8U) + 2U) * PMA_ACCESS)); \
- *_wRegVal = (uint16_t)(wCount); \
- } while(0)
- do { \
- uint32_t _wRegBase = (uint32_t)(USBx); \
- __IO uint16_t *_wRegVal; \
- \
- _wRegBase += (uint32_t)(USBx)->BTABLE; \
- _wRegVal = (__IO uint16_t *)(_wRegBase + 0x400U + ((((uint32_t)(bEpNum) * 8U) + 6U) * PMA_ACCESS)); \
- PCD_SET_EP_CNT_RX_REG(_wRegVal, (wCount)); \
- } while(0)
- do { \
- PCD_SET_EP_TX_ADDRESS((USBx), (bEpNum), (wBuf0Addr)); \
- } while(0)
- do { \
- PCD_SET_EP_RX_ADDRESS((USBx), (bEpNum), (wBuf1Addr)); \
- } while(0)
- do { \
- PCD_SET_EP_DBUF0_ADDR((USBx), (bEpNum), (wBuf0Addr)); \
- PCD_SET_EP_DBUF1_ADDR((USBx), (bEpNum), (wBuf1Addr)); \
- } while(0)
- do { \
- if ((bDir) == 0U) \
- \
- { \
- PCD_SET_EP_RX_DBUF0_CNT((USBx), (bEpNum), (wCount)); \
- } \
- else \
- { \
- if ((bDir) == 1U) \
- { \
- \
- PCD_SET_EP_TX_CNT((USBx), (bEpNum), (wCount)); \
- } \
- } \
- } while(0)
- do { \
- uint32_t _wBase = (uint32_t)(USBx); \
- __IO uint16_t *_wEPRegVal; \
- \
- if ((bDir) == 0U) \
- { \
- \
- PCD_SET_EP_RX_CNT((USBx), (bEpNum), (wCount)); \
- } \
- else \
- { \
- if ((bDir) == 1U) \
- { \
- \
- _wBase += (uint32_t)(USBx)->BTABLE; \
- _wEPRegVal = (__IO uint16_t *)(_wBase + 0x400U + ((((uint32_t)(bEpNum) * 8U) + 6U) * PMA_ACCESS)); \
- *_wEPRegVal = (uint16_t)(wCount); \
- } \
- } \
- } while(0)
- do { \
- PCD_SET_EP_DBUF0_CNT((USBx), (bEpNum), (bDir), (wCount)); \
- PCD_SET_EP_DBUF1_CNT((USBx), (bEpNum), (bDir), (wCount)); \
- } while(0)
- }
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