fix LPC812 PWM

Dependents:   IR_LED_Send

Fork of mbed-dev by mbed official

Committer:
bogdanm
Date:
Thu Oct 01 15:25:22 2015 +0300
Revision:
0:9b334a45a8ff
Initial commit on mbed-dev

Replaces mbed-src (now inactive)

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 0:9b334a45a8ff 1 /**
bogdanm 0:9b334a45a8ff 2 ******************************************************************************
bogdanm 0:9b334a45a8ff 3 * @file stm32l1xx_hal_pcd.h
bogdanm 0:9b334a45a8ff 4 * @author MCD Application Team
bogdanm 0:9b334a45a8ff 5 * @version V1.0.0
bogdanm 0:9b334a45a8ff 6 * @date 5-September-2014
bogdanm 0:9b334a45a8ff 7 * @brief Header file of PCD HAL module.
bogdanm 0:9b334a45a8ff 8 ******************************************************************************
bogdanm 0:9b334a45a8ff 9 * @attention
bogdanm 0:9b334a45a8ff 10 *
bogdanm 0:9b334a45a8ff 11 * <h2><center>&copy; COPYRIGHT(c) 2014 STMicroelectronics</center></h2>
bogdanm 0:9b334a45a8ff 12 *
bogdanm 0:9b334a45a8ff 13 * Redistribution and use in source and binary forms, with or without modification,
bogdanm 0:9b334a45a8ff 14 * are permitted provided that the following conditions are met:
bogdanm 0:9b334a45a8ff 15 * 1. Redistributions of source code must retain the above copyright notice,
bogdanm 0:9b334a45a8ff 16 * this list of conditions and the following disclaimer.
bogdanm 0:9b334a45a8ff 17 * 2. Redistributions in binary form must reproduce the above copyright notice,
bogdanm 0:9b334a45a8ff 18 * this list of conditions and the following disclaimer in the documentation
bogdanm 0:9b334a45a8ff 19 * and/or other materials provided with the distribution.
bogdanm 0:9b334a45a8ff 20 * 3. Neither the name of STMicroelectronics nor the names of its contributors
bogdanm 0:9b334a45a8ff 21 * may be used to endorse or promote products derived from this software
bogdanm 0:9b334a45a8ff 22 * without specific prior written permission.
bogdanm 0:9b334a45a8ff 23 *
bogdanm 0:9b334a45a8ff 24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
bogdanm 0:9b334a45a8ff 25 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
bogdanm 0:9b334a45a8ff 26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
bogdanm 0:9b334a45a8ff 27 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
bogdanm 0:9b334a45a8ff 28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
bogdanm 0:9b334a45a8ff 29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
bogdanm 0:9b334a45a8ff 30 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
bogdanm 0:9b334a45a8ff 31 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
bogdanm 0:9b334a45a8ff 32 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
bogdanm 0:9b334a45a8ff 33 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
bogdanm 0:9b334a45a8ff 34 *
bogdanm 0:9b334a45a8ff 35 ******************************************************************************
bogdanm 0:9b334a45a8ff 36 */
bogdanm 0:9b334a45a8ff 37
bogdanm 0:9b334a45a8ff 38 /* Define to prevent recursive inclusion -------------------------------------*/
bogdanm 0:9b334a45a8ff 39 #ifndef __STM32L1xx_HAL_PCD_H
bogdanm 0:9b334a45a8ff 40 #define __STM32L1xx_HAL_PCD_H
bogdanm 0:9b334a45a8ff 41
bogdanm 0:9b334a45a8ff 42 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 43 extern "C" {
bogdanm 0:9b334a45a8ff 44 #endif
bogdanm 0:9b334a45a8ff 45
bogdanm 0:9b334a45a8ff 46 /* Includes ------------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 47 #include "stm32l1xx_hal_def.h"
bogdanm 0:9b334a45a8ff 48
bogdanm 0:9b334a45a8ff 49 /** @addtogroup STM32L1xx_HAL_Driver
bogdanm 0:9b334a45a8ff 50 * @{
bogdanm 0:9b334a45a8ff 51 */
bogdanm 0:9b334a45a8ff 52
bogdanm 0:9b334a45a8ff 53 /** @addtogroup PCD
bogdanm 0:9b334a45a8ff 54 * @{
bogdanm 0:9b334a45a8ff 55 */
bogdanm 0:9b334a45a8ff 56
bogdanm 0:9b334a45a8ff 57 /* Exported types ------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 58 /** @defgroup PCD_Exported_Types PCD Exported Types
bogdanm 0:9b334a45a8ff 59 * @{
bogdanm 0:9b334a45a8ff 60 */
bogdanm 0:9b334a45a8ff 61
bogdanm 0:9b334a45a8ff 62 /**
bogdanm 0:9b334a45a8ff 63 * @brief PCD State structures definition
bogdanm 0:9b334a45a8ff 64 */
bogdanm 0:9b334a45a8ff 65 typedef enum
bogdanm 0:9b334a45a8ff 66 {
bogdanm 0:9b334a45a8ff 67 PCD_READY = 0x00,
bogdanm 0:9b334a45a8ff 68 PCD_ERROR = 0x01,
bogdanm 0:9b334a45a8ff 69 PCD_BUSY = 0x02,
bogdanm 0:9b334a45a8ff 70 PCD_TIMEOUT = 0x03
bogdanm 0:9b334a45a8ff 71 } PCD_StateTypeDef;
bogdanm 0:9b334a45a8ff 72
bogdanm 0:9b334a45a8ff 73 typedef enum
bogdanm 0:9b334a45a8ff 74 {
bogdanm 0:9b334a45a8ff 75 /* double buffered endpoint direction */
bogdanm 0:9b334a45a8ff 76 PCD_EP_DBUF_OUT,
bogdanm 0:9b334a45a8ff 77 PCD_EP_DBUF_IN,
bogdanm 0:9b334a45a8ff 78 PCD_EP_DBUF_ERR,
bogdanm 0:9b334a45a8ff 79 }PCD_EP_DBUF_DIR;
bogdanm 0:9b334a45a8ff 80
bogdanm 0:9b334a45a8ff 81 /* endpoint buffer number */
bogdanm 0:9b334a45a8ff 82 typedef enum
bogdanm 0:9b334a45a8ff 83 {
bogdanm 0:9b334a45a8ff 84 PCD_EP_NOBUF,
bogdanm 0:9b334a45a8ff 85 PCD_EP_BUF0,
bogdanm 0:9b334a45a8ff 86 PCD_EP_BUF1
bogdanm 0:9b334a45a8ff 87 }PCD_EP_BUF_NUM;
bogdanm 0:9b334a45a8ff 88
bogdanm 0:9b334a45a8ff 89 /**
bogdanm 0:9b334a45a8ff 90 * @brief PCD Initialization Structure definition
bogdanm 0:9b334a45a8ff 91 */
bogdanm 0:9b334a45a8ff 92 typedef struct
bogdanm 0:9b334a45a8ff 93 {
bogdanm 0:9b334a45a8ff 94 uint32_t dev_endpoints; /*!< Device Endpoints number.
bogdanm 0:9b334a45a8ff 95 This parameter depends on the used USB core.
bogdanm 0:9b334a45a8ff 96 This parameter must be a number between Min_Data = 1 and Max_Data = 15 */
bogdanm 0:9b334a45a8ff 97
bogdanm 0:9b334a45a8ff 98 uint32_t speed; /*!< USB Core speed.
bogdanm 0:9b334a45a8ff 99 This parameter can be any value of @ref USB_Core_Speed */
bogdanm 0:9b334a45a8ff 100
bogdanm 0:9b334a45a8ff 101 uint32_t ep0_mps; /*!< Set the Endpoint 0 Max Packet size.
bogdanm 0:9b334a45a8ff 102 This parameter can be any value of @ref USB_EP0_MPS */
bogdanm 0:9b334a45a8ff 103
bogdanm 0:9b334a45a8ff 104 uint32_t phy_itface; /*!< Select the used PHY interface.
bogdanm 0:9b334a45a8ff 105 This parameter can be any value of @ref USB_Core_PHY */
bogdanm 0:9b334a45a8ff 106
bogdanm 0:9b334a45a8ff 107 uint32_t Sof_enable; /*!< Enable or disable the output of the SOF signal. */
bogdanm 0:9b334a45a8ff 108
bogdanm 0:9b334a45a8ff 109 uint32_t low_power_enable; /*!< Enable or disable Low Power mode */
bogdanm 0:9b334a45a8ff 110
bogdanm 0:9b334a45a8ff 111 uint32_t lpm_enable; /*!< Enable or disable Battery charging. */
bogdanm 0:9b334a45a8ff 112
bogdanm 0:9b334a45a8ff 113 uint32_t battery_charging_enable; /*!< Enable or disable Battery charging. */
bogdanm 0:9b334a45a8ff 114
bogdanm 0:9b334a45a8ff 115 }PCD_InitTypeDef;
bogdanm 0:9b334a45a8ff 116
bogdanm 0:9b334a45a8ff 117 typedef struct
bogdanm 0:9b334a45a8ff 118 {
bogdanm 0:9b334a45a8ff 119 uint8_t num; /*!< Endpoint number
bogdanm 0:9b334a45a8ff 120 This parameter must be a number between Min_Data = 1 and Max_Data = 15 */
bogdanm 0:9b334a45a8ff 121
bogdanm 0:9b334a45a8ff 122 uint8_t is_in; /*!< Endpoint direction
bogdanm 0:9b334a45a8ff 123 This parameter must be a number between Min_Data = 0 and Max_Data = 1 */
bogdanm 0:9b334a45a8ff 124
bogdanm 0:9b334a45a8ff 125 uint8_t is_stall; /*!< Endpoint stall condition
bogdanm 0:9b334a45a8ff 126 This parameter must be a number between Min_Data = 0 and Max_Data = 1 */
bogdanm 0:9b334a45a8ff 127
bogdanm 0:9b334a45a8ff 128 uint8_t type; /*!< Endpoint type
bogdanm 0:9b334a45a8ff 129 This parameter can be any value of @ref USB_EP_Type */
bogdanm 0:9b334a45a8ff 130
bogdanm 0:9b334a45a8ff 131 uint16_t pmaadress; /*!< PMA Address
bogdanm 0:9b334a45a8ff 132 This parameter can be any value between Min_addr = 0 and Max_addr = 1K */
bogdanm 0:9b334a45a8ff 133
bogdanm 0:9b334a45a8ff 134
bogdanm 0:9b334a45a8ff 135 uint16_t pmaaddr0; /*!< PMA Address0
bogdanm 0:9b334a45a8ff 136 This parameter can be any value between Min_addr = 0 and Max_addr = 1K */
bogdanm 0:9b334a45a8ff 137
bogdanm 0:9b334a45a8ff 138
bogdanm 0:9b334a45a8ff 139 uint16_t pmaaddr1; /*!< PMA Address1
bogdanm 0:9b334a45a8ff 140 This parameter can be any value between Min_addr = 0 and Max_addr = 1K */
bogdanm 0:9b334a45a8ff 141
bogdanm 0:9b334a45a8ff 142
bogdanm 0:9b334a45a8ff 143 uint8_t doublebuffer; /*!< Double buffer enable
bogdanm 0:9b334a45a8ff 144 This parameter can be 0 or 1 */
bogdanm 0:9b334a45a8ff 145
bogdanm 0:9b334a45a8ff 146 uint32_t maxpacket; /*!< Endpoint Max packet size
bogdanm 0:9b334a45a8ff 147 This parameter must be a number between Min_Data = 0 and Max_Data = 64KB */
bogdanm 0:9b334a45a8ff 148
bogdanm 0:9b334a45a8ff 149 uint8_t *xfer_buff; /*!< Pointer to transfer buffer */
bogdanm 0:9b334a45a8ff 150
bogdanm 0:9b334a45a8ff 151
bogdanm 0:9b334a45a8ff 152 uint32_t xfer_len; /*!< Current transfer length */
bogdanm 0:9b334a45a8ff 153
bogdanm 0:9b334a45a8ff 154 uint32_t xfer_count; /*!< Partial transfer length in case of multi packet transfer */
bogdanm 0:9b334a45a8ff 155
bogdanm 0:9b334a45a8ff 156 }PCD_EPTypeDef;
bogdanm 0:9b334a45a8ff 157
bogdanm 0:9b334a45a8ff 158 typedef USB_TypeDef PCD_TypeDef;
bogdanm 0:9b334a45a8ff 159
bogdanm 0:9b334a45a8ff 160 /**
bogdanm 0:9b334a45a8ff 161 * @brief PCD Handle Structure definition
bogdanm 0:9b334a45a8ff 162 */
bogdanm 0:9b334a45a8ff 163 typedef struct
bogdanm 0:9b334a45a8ff 164 {
bogdanm 0:9b334a45a8ff 165 PCD_TypeDef *Instance; /*!< Register base address */
bogdanm 0:9b334a45a8ff 166 PCD_InitTypeDef Init; /*!< PCD required parameters */
bogdanm 0:9b334a45a8ff 167 __IO uint8_t USB_Address; /*!< USB Address */
bogdanm 0:9b334a45a8ff 168 PCD_EPTypeDef IN_ep[8]; /*!< IN endpoint parameters */
bogdanm 0:9b334a45a8ff 169 PCD_EPTypeDef OUT_ep[8]; /*!< OUT endpoint parameters */
bogdanm 0:9b334a45a8ff 170 HAL_LockTypeDef Lock; /*!< PCD peripheral status */
bogdanm 0:9b334a45a8ff 171 __IO PCD_StateTypeDef State; /*!< PCD communication state */
bogdanm 0:9b334a45a8ff 172 uint32_t Setup[12]; /*!< Setup packet buffer */
bogdanm 0:9b334a45a8ff 173 void *pData; /*!< Pointer to upper stack Handler */
bogdanm 0:9b334a45a8ff 174
bogdanm 0:9b334a45a8ff 175 } PCD_HandleTypeDef;
bogdanm 0:9b334a45a8ff 176
bogdanm 0:9b334a45a8ff 177 /**
bogdanm 0:9b334a45a8ff 178 * @}
bogdanm 0:9b334a45a8ff 179 */
bogdanm 0:9b334a45a8ff 180
bogdanm 0:9b334a45a8ff 181 #include "stm32l1xx_hal_pcd_ex.h"
bogdanm 0:9b334a45a8ff 182 /* Exported constants --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 183 /** @defgroup PCD_Exported_Constants PCD Exported Constants
bogdanm 0:9b334a45a8ff 184 * @{
bogdanm 0:9b334a45a8ff 185 */
bogdanm 0:9b334a45a8ff 186
bogdanm 0:9b334a45a8ff 187 /** @defgroup USB_Exti_Line_Wakeup USB_Exti_Line_Wakeup
bogdanm 0:9b334a45a8ff 188 * @{
bogdanm 0:9b334a45a8ff 189 */
bogdanm 0:9b334a45a8ff 190
bogdanm 0:9b334a45a8ff 191 #define USB_EXTI_LINE_WAKEUP ((uint32_t)0x00040000) /*!< External interrupt line 18 Connected to the USB FS EXTI Line */
bogdanm 0:9b334a45a8ff 192 /**
bogdanm 0:9b334a45a8ff 193 * @}
bogdanm 0:9b334a45a8ff 194 */
bogdanm 0:9b334a45a8ff 195
bogdanm 0:9b334a45a8ff 196
bogdanm 0:9b334a45a8ff 197 /** @defgroup USB_Core_Speed USB Core Speed
bogdanm 0:9b334a45a8ff 198 * @{
bogdanm 0:9b334a45a8ff 199 */
bogdanm 0:9b334a45a8ff 200 #define PCD_SPEED_HIGH 0 /* Not Supported */
bogdanm 0:9b334a45a8ff 201 #define PCD_SPEED_FULL 2
bogdanm 0:9b334a45a8ff 202 /**
bogdanm 0:9b334a45a8ff 203 * @}
bogdanm 0:9b334a45a8ff 204 */
bogdanm 0:9b334a45a8ff 205
bogdanm 0:9b334a45a8ff 206 /** @defgroup USB_Core_PHY USB Core PHY
bogdanm 0:9b334a45a8ff 207 * @{
bogdanm 0:9b334a45a8ff 208 */
bogdanm 0:9b334a45a8ff 209 #define PCD_PHY_EMBEDDED 2
bogdanm 0:9b334a45a8ff 210 /**
bogdanm 0:9b334a45a8ff 211 * @}
bogdanm 0:9b334a45a8ff 212 */
bogdanm 0:9b334a45a8ff 213
bogdanm 0:9b334a45a8ff 214 /** @defgroup USB_EP0_MPS USB EP0 MPS
bogdanm 0:9b334a45a8ff 215 * @{
bogdanm 0:9b334a45a8ff 216 */
bogdanm 0:9b334a45a8ff 217 #define DEP0CTL_MPS_64 0
bogdanm 0:9b334a45a8ff 218 #define DEP0CTL_MPS_32 1
bogdanm 0:9b334a45a8ff 219 #define DEP0CTL_MPS_16 2
bogdanm 0:9b334a45a8ff 220 #define DEP0CTL_MPS_8 3
bogdanm 0:9b334a45a8ff 221
bogdanm 0:9b334a45a8ff 222 #define PCD_EP0MPS_64 DEP0CTL_MPS_64
bogdanm 0:9b334a45a8ff 223 #define PCD_EP0MPS_32 DEP0CTL_MPS_32
bogdanm 0:9b334a45a8ff 224 #define PCD_EP0MPS_16 DEP0CTL_MPS_16
bogdanm 0:9b334a45a8ff 225 #define PCD_EP0MPS_08 DEP0CTL_MPS_8
bogdanm 0:9b334a45a8ff 226 /**
bogdanm 0:9b334a45a8ff 227 * @}
bogdanm 0:9b334a45a8ff 228 */
bogdanm 0:9b334a45a8ff 229
bogdanm 0:9b334a45a8ff 230 /** @defgroup USB_EP_Type USB EP Type
bogdanm 0:9b334a45a8ff 231 * @{
bogdanm 0:9b334a45a8ff 232 */
bogdanm 0:9b334a45a8ff 233 #define PCD_EP_TYPE_CTRL 0
bogdanm 0:9b334a45a8ff 234 #define PCD_EP_TYPE_ISOC 1
bogdanm 0:9b334a45a8ff 235 #define PCD_EP_TYPE_BULK 2
bogdanm 0:9b334a45a8ff 236 #define PCD_EP_TYPE_INTR 3
bogdanm 0:9b334a45a8ff 237 /**
bogdanm 0:9b334a45a8ff 238 * @}
bogdanm 0:9b334a45a8ff 239 */
bogdanm 0:9b334a45a8ff 240
bogdanm 0:9b334a45a8ff 241 /** @defgroup USB_ENDP_Type USB_ENDP_Type
bogdanm 0:9b334a45a8ff 242 * @{
bogdanm 0:9b334a45a8ff 243 */
bogdanm 0:9b334a45a8ff 244
bogdanm 0:9b334a45a8ff 245 #define PCD_ENDP0 ((uint8_t)0)
bogdanm 0:9b334a45a8ff 246 #define PCD_ENDP1 ((uint8_t)1)
bogdanm 0:9b334a45a8ff 247 #define PCD_ENDP2 ((uint8_t)2)
bogdanm 0:9b334a45a8ff 248 #define PCD_ENDP3 ((uint8_t)3)
bogdanm 0:9b334a45a8ff 249 #define PCD_ENDP4 ((uint8_t)4)
bogdanm 0:9b334a45a8ff 250 #define PCD_ENDP5 ((uint8_t)5)
bogdanm 0:9b334a45a8ff 251 #define PCD_ENDP6 ((uint8_t)6)
bogdanm 0:9b334a45a8ff 252 #define PCD_ENDP7 ((uint8_t)7)
bogdanm 0:9b334a45a8ff 253
bogdanm 0:9b334a45a8ff 254 /* Endpoint Kind */
bogdanm 0:9b334a45a8ff 255 #define PCD_SNG_BUF 0
bogdanm 0:9b334a45a8ff 256 #define PCD_DBL_BUF 1
bogdanm 0:9b334a45a8ff 257
bogdanm 0:9b334a45a8ff 258 #define IS_PCD_ALL_INSTANCE IS_USB_ALL_INSTANCE
bogdanm 0:9b334a45a8ff 259
bogdanm 0:9b334a45a8ff 260 /**
bogdanm 0:9b334a45a8ff 261 * @}
bogdanm 0:9b334a45a8ff 262 */
bogdanm 0:9b334a45a8ff 263
bogdanm 0:9b334a45a8ff 264
bogdanm 0:9b334a45a8ff 265 /**
bogdanm 0:9b334a45a8ff 266 * @}
bogdanm 0:9b334a45a8ff 267 */
bogdanm 0:9b334a45a8ff 268
bogdanm 0:9b334a45a8ff 269 /* Exported macros -----------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 270
bogdanm 0:9b334a45a8ff 271 /** @defgroup PCD_Exported_Macros PCD Exported Macros
bogdanm 0:9b334a45a8ff 272 * @brief macros to handle interrupts and specific clock configurations
bogdanm 0:9b334a45a8ff 273 * @{
bogdanm 0:9b334a45a8ff 274 */
bogdanm 0:9b334a45a8ff 275 #define __HAL_PCD_GET_FLAG(__HANDLE__, __INTERRUPT__) ((((__HANDLE__)->Instance->ISTR) & (__INTERRUPT__)) == (__INTERRUPT__))
bogdanm 0:9b334a45a8ff 276 #define __HAL_PCD_CLEAR_FLAG(__HANDLE__, __INTERRUPT__) (((__HANDLE__)->Instance->ISTR) &= ~(__INTERRUPT__))
bogdanm 0:9b334a45a8ff 277
bogdanm 0:9b334a45a8ff 278 #define __HAL_USB_EXTI_ENABLE_IT() EXTI->IMR |= USB_EXTI_LINE_WAKEUP
bogdanm 0:9b334a45a8ff 279 #define __HAL_USB_EXTI_DISABLE_IT() EXTI->IMR &= ~(USB_EXTI_LINE_WAKEUP)
bogdanm 0:9b334a45a8ff 280 #define __HAL_USB_EXTI_GET_FLAG() EXTI->PR & (USB_EXTI_LINE_WAKEUP)
bogdanm 0:9b334a45a8ff 281 #define __HAL_USB_EXTI_CLEAR_FLAG() EXTI->PR = USB_EXTI_LINE_WAKEUP
bogdanm 0:9b334a45a8ff 282
bogdanm 0:9b334a45a8ff 283 #define __HAL_USB_EXTI_SET_RISING_EDGE_TRIGGER() EXTI->FTSR &= ~(USB_EXTI_LINE_WAKEUP);\
bogdanm 0:9b334a45a8ff 284 EXTI->RTSR |= USB_EXTI_LINE_WAKEUP
bogdanm 0:9b334a45a8ff 285
bogdanm 0:9b334a45a8ff 286
bogdanm 0:9b334a45a8ff 287 #define __HAL_USB_EXTI_SET_FALLING_EDGE_TRIGGER() EXTI->FTSR |= (USB_EXTI_LINE_WAKEUP);\
bogdanm 0:9b334a45a8ff 288 EXTI->RTSR &= ~(USB_EXTI_LINE_WAKEUP)
bogdanm 0:9b334a45a8ff 289
bogdanm 0:9b334a45a8ff 290
bogdanm 0:9b334a45a8ff 291 #define __HAL_USB_EXTI_SET_FALLINGRISING_TRIGGER() EXTI->RTSR &= ~(USB_EXTI_LINE_WAKEUP);\
bogdanm 0:9b334a45a8ff 292 EXTI->FTSR &= ~(USB_EXTI_LINE_WAKEUP);\
bogdanm 0:9b334a45a8ff 293 EXTI->RTSR |= USB_EXTI_LINE_WAKEUP;\
bogdanm 0:9b334a45a8ff 294 EXTI->FTSR |= USB_EXTI_LINE_WAKEUP
bogdanm 0:9b334a45a8ff 295
bogdanm 0:9b334a45a8ff 296 /**
bogdanm 0:9b334a45a8ff 297 * @}
bogdanm 0:9b334a45a8ff 298 */
bogdanm 0:9b334a45a8ff 299
bogdanm 0:9b334a45a8ff 300 /* Internal macros -----------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 301
bogdanm 0:9b334a45a8ff 302 /** @defgroup PCD_Private_Macros PCD Private Macros
bogdanm 0:9b334a45a8ff 303 * @brief macros to handle interrupts and specific clock configurations
bogdanm 0:9b334a45a8ff 304 * @{
bogdanm 0:9b334a45a8ff 305 */
bogdanm 0:9b334a45a8ff 306
bogdanm 0:9b334a45a8ff 307 /* SetENDPOINT */
bogdanm 0:9b334a45a8ff 308 #define PCD_SET_ENDPOINT(USBx, bEpNum,wRegValue) (*(&(USBx)->EP0R + (bEpNum) * 2)= (uint16_t)(wRegValue))
bogdanm 0:9b334a45a8ff 309
bogdanm 0:9b334a45a8ff 310 /* GetENDPOINT */
bogdanm 0:9b334a45a8ff 311 #define PCD_GET_ENDPOINT(USBx, bEpNum) (*(&(USBx)->EP0R + (bEpNum) * 2))
bogdanm 0:9b334a45a8ff 312
bogdanm 0:9b334a45a8ff 313
bogdanm 0:9b334a45a8ff 314
bogdanm 0:9b334a45a8ff 315 /**
bogdanm 0:9b334a45a8ff 316 * @brief sets the type in the endpoint register(bits EP_TYPE[1:0])
bogdanm 0:9b334a45a8ff 317 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 318 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 319 * @param wType: Endpoint Type.
bogdanm 0:9b334a45a8ff 320 * @retval None
bogdanm 0:9b334a45a8ff 321 */
bogdanm 0:9b334a45a8ff 322 #define PCD_SET_EPTYPE(USBx, bEpNum,wType) (PCD_SET_ENDPOINT((USBx), (bEpNum),\
bogdanm 0:9b334a45a8ff 323 ((PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_T_MASK) | (wType) )))
bogdanm 0:9b334a45a8ff 324
bogdanm 0:9b334a45a8ff 325 /**
bogdanm 0:9b334a45a8ff 326 * @brief gets the type in the endpoint register(bits EP_TYPE[1:0])
bogdanm 0:9b334a45a8ff 327 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 328 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 329 * @retval Endpoint Type
bogdanm 0:9b334a45a8ff 330 */
bogdanm 0:9b334a45a8ff 331 #define PCD_GET_EPTYPE(USBx, bEpNum) (PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_T_FIELD)
bogdanm 0:9b334a45a8ff 332
bogdanm 0:9b334a45a8ff 333
bogdanm 0:9b334a45a8ff 334 /**
bogdanm 0:9b334a45a8ff 335 * @brief free buffer used from the application realizing it to the line
bogdanm 0:9b334a45a8ff 336 toggles bit SW_BUF in the double buffered endpoint register
bogdanm 0:9b334a45a8ff 337 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 338 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 339 * @param bDir: Direction
bogdanm 0:9b334a45a8ff 340 * @retval None
bogdanm 0:9b334a45a8ff 341 */
bogdanm 0:9b334a45a8ff 342 #define PCD_FreeUserBuffer(USBx, bEpNum, bDir)\
bogdanm 0:9b334a45a8ff 343 {\
bogdanm 0:9b334a45a8ff 344 if ((bDir) == PCD_EP_DBUF_OUT)\
bogdanm 0:9b334a45a8ff 345 { /* OUT double buffered endpoint */\
bogdanm 0:9b334a45a8ff 346 PCD_TX_DTOG((USBx), (bEpNum));\
bogdanm 0:9b334a45a8ff 347 }\
bogdanm 0:9b334a45a8ff 348 else if ((bDir) == PCD_EP_DBUF_IN)\
bogdanm 0:9b334a45a8ff 349 { /* IN double buffered endpoint */\
bogdanm 0:9b334a45a8ff 350 PCD_RX_DTOG((USBx), (bEpNum));\
bogdanm 0:9b334a45a8ff 351 }\
bogdanm 0:9b334a45a8ff 352 }
bogdanm 0:9b334a45a8ff 353
bogdanm 0:9b334a45a8ff 354 /**
bogdanm 0:9b334a45a8ff 355 * @brief gets direction of the double buffered endpoint
bogdanm 0:9b334a45a8ff 356 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 357 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 358 * @retval EP_DBUF_OUT, EP_DBUF_IN,
bogdanm 0:9b334a45a8ff 359 * EP_DBUF_ERR if the endpoint counter not yet programmed.
bogdanm 0:9b334a45a8ff 360 */
bogdanm 0:9b334a45a8ff 361 #define PCD_GET_DB_DIR(USBx, bEpNum)\
bogdanm 0:9b334a45a8ff 362 {\
bogdanm 0:9b334a45a8ff 363 if ((uint16_t)(*PCD_EP_RX_CNT((USBx), (bEpNum)) & 0xFC00) != 0)\
bogdanm 0:9b334a45a8ff 364 return(PCD_EP_DBUF_OUT);\
bogdanm 0:9b334a45a8ff 365 else if (((uint16_t)(*PCD_EP_TX_CNT((USBx), (bEpNum))) & 0x03FF) != 0)\
bogdanm 0:9b334a45a8ff 366 return(PCD_EP_DBUF_IN);\
bogdanm 0:9b334a45a8ff 367 else\
bogdanm 0:9b334a45a8ff 368 return(PCD_EP_DBUF_ERR);\
bogdanm 0:9b334a45a8ff 369 }
bogdanm 0:9b334a45a8ff 370
bogdanm 0:9b334a45a8ff 371 /**
bogdanm 0:9b334a45a8ff 372 * @brief sets the status for tx transfer (bits STAT_TX[1:0]).
bogdanm 0:9b334a45a8ff 373 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 374 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 375 * @param wState: new state
bogdanm 0:9b334a45a8ff 376 * @retval None
bogdanm 0:9b334a45a8ff 377 */
bogdanm 0:9b334a45a8ff 378 #define PCD_SET_EP_TX_STATUS(USBx, bEpNum, wState) { register uint16_t _wRegVal;\
bogdanm 0:9b334a45a8ff 379 \
bogdanm 0:9b334a45a8ff 380 _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPTX_DTOGMASK;\
bogdanm 0:9b334a45a8ff 381 /* toggle first bit ? */ \
bogdanm 0:9b334a45a8ff 382 if((USB_EPTX_DTOG1 & (wState))!= 0) \
bogdanm 0:9b334a45a8ff 383 { \
bogdanm 0:9b334a45a8ff 384 _wRegVal ^= USB_EPTX_DTOG1; \
bogdanm 0:9b334a45a8ff 385 } \
bogdanm 0:9b334a45a8ff 386 /* toggle second bit ? */ \
bogdanm 0:9b334a45a8ff 387 if((USB_EPTX_DTOG2 & (wState))!= 0) \
bogdanm 0:9b334a45a8ff 388 { \
bogdanm 0:9b334a45a8ff 389 _wRegVal ^= USB_EPTX_DTOG2; \
bogdanm 0:9b334a45a8ff 390 } \
bogdanm 0:9b334a45a8ff 391 PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX|USB_EP_CTR_TX)); \
bogdanm 0:9b334a45a8ff 392 } /* PCD_SET_EP_TX_STATUS */
bogdanm 0:9b334a45a8ff 393
bogdanm 0:9b334a45a8ff 394 /**
bogdanm 0:9b334a45a8ff 395 * @brief sets the status for rx transfer (bits STAT_TX[1:0])
bogdanm 0:9b334a45a8ff 396 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 397 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 398 * @param wState: new state
bogdanm 0:9b334a45a8ff 399 * @retval None
bogdanm 0:9b334a45a8ff 400 */
bogdanm 0:9b334a45a8ff 401 #define PCD_SET_EP_RX_STATUS(USBx, bEpNum,wState) {\
bogdanm 0:9b334a45a8ff 402 register uint16_t _wRegVal; \
bogdanm 0:9b334a45a8ff 403 \
bogdanm 0:9b334a45a8ff 404 _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPRX_DTOGMASK;\
bogdanm 0:9b334a45a8ff 405 /* toggle first bit ? */ \
bogdanm 0:9b334a45a8ff 406 if((USB_EPRX_DTOG1 & (wState))!= 0) \
bogdanm 0:9b334a45a8ff 407 { \
bogdanm 0:9b334a45a8ff 408 _wRegVal ^= USB_EPRX_DTOG1; \
bogdanm 0:9b334a45a8ff 409 } \
bogdanm 0:9b334a45a8ff 410 /* toggle second bit ? */ \
bogdanm 0:9b334a45a8ff 411 if((USB_EPRX_DTOG2 & (wState))!= 0) \
bogdanm 0:9b334a45a8ff 412 { \
bogdanm 0:9b334a45a8ff 413 _wRegVal ^= USB_EPRX_DTOG2; \
bogdanm 0:9b334a45a8ff 414 } \
bogdanm 0:9b334a45a8ff 415 PCD_SET_ENDPOINT((USBx), (bEpNum), (_wRegVal | USB_EP_CTR_RX|USB_EP_CTR_TX)); \
bogdanm 0:9b334a45a8ff 416 } /* PCD_SET_EP_RX_STATUS */
bogdanm 0:9b334a45a8ff 417
bogdanm 0:9b334a45a8ff 418 /**
bogdanm 0:9b334a45a8ff 419 * @brief sets the status for rx & tx (bits STAT_TX[1:0] & STAT_RX[1:0])
bogdanm 0:9b334a45a8ff 420 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 421 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 422 * @param wStaterx: new state.
bogdanm 0:9b334a45a8ff 423 * @param wStatetx: new state.
bogdanm 0:9b334a45a8ff 424 * @retval None
bogdanm 0:9b334a45a8ff 425 */
bogdanm 0:9b334a45a8ff 426 #define PCD_SET_EP_TXRX_STATUS(USBx,bEpNum,wStaterx,wStatetx) {\
bogdanm 0:9b334a45a8ff 427 register uint32_t _wRegVal; \
bogdanm 0:9b334a45a8ff 428 \
bogdanm 0:9b334a45a8ff 429 _wRegVal = PCD_GET_ENDPOINT((USBx), (bEpNum)) & (USB_EPRX_DTOGMASK |USB_EPTX_STAT) ;\
bogdanm 0:9b334a45a8ff 430 /* toggle first bit ? */ \
bogdanm 0:9b334a45a8ff 431 if((USB_EPRX_DTOG1 & ((wStaterx)))!= 0) \
bogdanm 0:9b334a45a8ff 432 { \
bogdanm 0:9b334a45a8ff 433 _wRegVal ^= USB_EPRX_DTOG1; \
bogdanm 0:9b334a45a8ff 434 } \
bogdanm 0:9b334a45a8ff 435 /* toggle second bit ? */ \
bogdanm 0:9b334a45a8ff 436 if((USB_EPRX_DTOG2 & (wStaterx))!= 0) \
bogdanm 0:9b334a45a8ff 437 { \
bogdanm 0:9b334a45a8ff 438 _wRegVal ^= USB_EPRX_DTOG2; \
bogdanm 0:9b334a45a8ff 439 } \
bogdanm 0:9b334a45a8ff 440 /* toggle first bit ? */ \
bogdanm 0:9b334a45a8ff 441 if((USB_EPTX_DTOG1 & (wStatetx))!= 0) \
bogdanm 0:9b334a45a8ff 442 { \
bogdanm 0:9b334a45a8ff 443 _wRegVal ^= USB_EPTX_DTOG1; \
bogdanm 0:9b334a45a8ff 444 } \
bogdanm 0:9b334a45a8ff 445 /* toggle second bit ? */ \
bogdanm 0:9b334a45a8ff 446 if((USB_EPTX_DTOG2 & (wStatetx))!= 0) \
bogdanm 0:9b334a45a8ff 447 { \
bogdanm 0:9b334a45a8ff 448 _wRegVal ^= USB_EPTX_DTOG2; \
bogdanm 0:9b334a45a8ff 449 } \
bogdanm 0:9b334a45a8ff 450 PCD_SET_ENDPOINT((USBx), (bEpNum), _wRegVal | USB_EP_CTR_RX|USB_EP_CTR_TX); \
bogdanm 0:9b334a45a8ff 451 } /* PCD_SET_EP_TXRX_STATUS */
bogdanm 0:9b334a45a8ff 452
bogdanm 0:9b334a45a8ff 453 /**
bogdanm 0:9b334a45a8ff 454 * @brief gets the status for tx/rx transfer (bits STAT_TX[1:0]
bogdanm 0:9b334a45a8ff 455 * /STAT_RX[1:0])
bogdanm 0:9b334a45a8ff 456 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 457 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 458 * @retval status
bogdanm 0:9b334a45a8ff 459 */
bogdanm 0:9b334a45a8ff 460 #define PCD_GET_EP_TX_STATUS(USBx, bEpNum) ((uint16_t)PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPTX_STAT)
bogdanm 0:9b334a45a8ff 461
bogdanm 0:9b334a45a8ff 462 #define PCD_GET_EP_RX_STATUS(USBx, bEpNum) ((uint16_t)PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPRX_STAT)
bogdanm 0:9b334a45a8ff 463
bogdanm 0:9b334a45a8ff 464 /**
bogdanm 0:9b334a45a8ff 465 * @brief sets directly the VALID tx/rx-status into the endpoint register
bogdanm 0:9b334a45a8ff 466 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 467 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 468 * @retval None
bogdanm 0:9b334a45a8ff 469 */
bogdanm 0:9b334a45a8ff 470 #define PCD_SET_EP_TX_VALID(USBx, bEpNum) (PCD_SET_EP_TX_STATUS((USBx), (bEpNum), USB_EP_TX_VALID))
bogdanm 0:9b334a45a8ff 471
bogdanm 0:9b334a45a8ff 472 #define PCD_SET_EP_RX_VALID(USBx, bEpNum) (PCD_SET_EP_RX_STATUS((USBx), (bEpNum), USB_EP_RX_VALID))
bogdanm 0:9b334a45a8ff 473
bogdanm 0:9b334a45a8ff 474 /**
bogdanm 0:9b334a45a8ff 475 * @brief checks stall condition in an endpoint.
bogdanm 0:9b334a45a8ff 476 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 477 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 478 * @retval TRUE = endpoint in stall condition.
bogdanm 0:9b334a45a8ff 479 */
bogdanm 0:9b334a45a8ff 480 #define PCD_GET_EP_TX_STALL_STATUS(USBx, bEpNum) (PCD_GET_EP_TX_STATUS((USBx), (bEpNum)) \
bogdanm 0:9b334a45a8ff 481 == USB_EP_TX_STALL)
bogdanm 0:9b334a45a8ff 482 #define PCD_GET_EP_RX_STALL_STATUS(USBx, bEpNum) (PCD_GET_EP_RX_STATUS((USBx), (bEpNum)) \
bogdanm 0:9b334a45a8ff 483 == USB_EP_RX_STALL)
bogdanm 0:9b334a45a8ff 484
bogdanm 0:9b334a45a8ff 485 /**
bogdanm 0:9b334a45a8ff 486 * @brief set & clear EP_KIND bit.
bogdanm 0:9b334a45a8ff 487 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 488 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 489 * @retval None
bogdanm 0:9b334a45a8ff 490 */
bogdanm 0:9b334a45a8ff 491 #define PCD_SET_EP_KIND(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum), \
bogdanm 0:9b334a45a8ff 492 (USB_EP_CTR_RX|USB_EP_CTR_TX|((PCD_GET_ENDPOINT((USBx), (bEpNum)) | USB_EP_KIND) & USB_EPREG_MASK))))
bogdanm 0:9b334a45a8ff 493 #define PCD_CLEAR_EP_KIND(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum), \
bogdanm 0:9b334a45a8ff 494 (USB_EP_CTR_RX|USB_EP_CTR_TX|(PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPKIND_MASK))))
bogdanm 0:9b334a45a8ff 495
bogdanm 0:9b334a45a8ff 496 /**
bogdanm 0:9b334a45a8ff 497 * @brief Sets/clears directly STATUS_OUT bit in the endpoint register.
bogdanm 0:9b334a45a8ff 498 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 499 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 500 * @retval None
bogdanm 0:9b334a45a8ff 501 */
bogdanm 0:9b334a45a8ff 502 #define PCD_SET_OUT_STATUS(USBx, bEpNum) PCD_SET_EP_KIND((USBx), (bEpNum))
bogdanm 0:9b334a45a8ff 503 #define PCD_CLEAR_OUT_STATUS(USBx, bEpNum) PCD_CLEAR_EP_KIND((USBx), (bEpNum))
bogdanm 0:9b334a45a8ff 504
bogdanm 0:9b334a45a8ff 505 /**
bogdanm 0:9b334a45a8ff 506 * @brief Sets/clears directly EP_KIND bit in the endpoint register.
bogdanm 0:9b334a45a8ff 507 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 508 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 509 * @retval None
bogdanm 0:9b334a45a8ff 510 */
bogdanm 0:9b334a45a8ff 511 #define PCD_SET_EP_DBUF(USBx, bEpNum) PCD_SET_EP_KIND((USBx), (bEpNum))
bogdanm 0:9b334a45a8ff 512 #define PCD_CLEAR_EP_DBUF(USBx, bEpNum) PCD_CLEAR_EP_KIND((USBx), (bEpNum))
bogdanm 0:9b334a45a8ff 513
bogdanm 0:9b334a45a8ff 514 /**
bogdanm 0:9b334a45a8ff 515 * @brief Clears bit CTR_RX / CTR_TX in the endpoint register.
bogdanm 0:9b334a45a8ff 516 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 517 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 518 * @retval None
bogdanm 0:9b334a45a8ff 519 */
bogdanm 0:9b334a45a8ff 520 #define PCD_CLEAR_RX_EP_CTR(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum),\
bogdanm 0:9b334a45a8ff 521 PCD_GET_ENDPOINT((USBx), (bEpNum)) & 0x7FFF & USB_EPREG_MASK))
bogdanm 0:9b334a45a8ff 522 #define PCD_CLEAR_TX_EP_CTR(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum),\
bogdanm 0:9b334a45a8ff 523 PCD_GET_ENDPOINT((USBx), (bEpNum)) & 0xFF7F & USB_EPREG_MASK))
bogdanm 0:9b334a45a8ff 524
bogdanm 0:9b334a45a8ff 525 /**
bogdanm 0:9b334a45a8ff 526 * @brief Toggles DTOG_RX / DTOG_TX bit in the endpoint register.
bogdanm 0:9b334a45a8ff 527 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 528 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 529 * @retval None
bogdanm 0:9b334a45a8ff 530 */
bogdanm 0:9b334a45a8ff 531 #define PCD_RX_DTOG(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum), \
bogdanm 0:9b334a45a8ff 532 USB_EP_CTR_RX|USB_EP_CTR_TX|USB_EP_DTOG_RX | (PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK)))
bogdanm 0:9b334a45a8ff 533 #define PCD_TX_DTOG(USBx, bEpNum) (PCD_SET_ENDPOINT((USBx), (bEpNum), \
bogdanm 0:9b334a45a8ff 534 USB_EP_CTR_RX|USB_EP_CTR_TX|USB_EP_DTOG_TX | (PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK)))
bogdanm 0:9b334a45a8ff 535
bogdanm 0:9b334a45a8ff 536 /**
bogdanm 0:9b334a45a8ff 537 * @brief Clears DTOG_RX / DTOG_TX bit in the endpoint register.
bogdanm 0:9b334a45a8ff 538 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 539 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 540 * @retval None
bogdanm 0:9b334a45a8ff 541 */
bogdanm 0:9b334a45a8ff 542 #define PCD_CLEAR_RX_DTOG(USBx, bEpNum) if((PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_DTOG_RX) != 0)\
bogdanm 0:9b334a45a8ff 543 { \
bogdanm 0:9b334a45a8ff 544 PCD_RX_DTOG((USBx), (bEpNum)); \
bogdanm 0:9b334a45a8ff 545 }
bogdanm 0:9b334a45a8ff 546 #define PCD_CLEAR_TX_DTOG(USBx, bEpNum) if((PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EP_DTOG_TX) != 0)\
bogdanm 0:9b334a45a8ff 547 { \
bogdanm 0:9b334a45a8ff 548 PCD_TX_DTOG((USBx), (bEpNum)); \
bogdanm 0:9b334a45a8ff 549 }
bogdanm 0:9b334a45a8ff 550
bogdanm 0:9b334a45a8ff 551 /**
bogdanm 0:9b334a45a8ff 552 * @brief Sets address in an endpoint register.
bogdanm 0:9b334a45a8ff 553 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 554 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 555 * @param bAddr: Address.
bogdanm 0:9b334a45a8ff 556 * @retval None
bogdanm 0:9b334a45a8ff 557 */
bogdanm 0:9b334a45a8ff 558 #define PCD_SET_EP_ADDRESS(USBx, bEpNum,bAddr) PCD_SET_ENDPOINT((USBx), (bEpNum),\
bogdanm 0:9b334a45a8ff 559 USB_EP_CTR_RX|USB_EP_CTR_TX|(PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPREG_MASK) | (bAddr))
bogdanm 0:9b334a45a8ff 560
bogdanm 0:9b334a45a8ff 561 #define PCD_GET_EP_ADDRESS(USBx, bEpNum) ((uint8_t)(PCD_GET_ENDPOINT((USBx), (bEpNum)) & USB_EPADDR_FIELD))
bogdanm 0:9b334a45a8ff 562
bogdanm 0:9b334a45a8ff 563 #define PCD_EP_TX_ADDRESS(USBx, bEpNum) ((uint32_t *)(((USBx)->BTABLE+(bEpNum)*8)*2+ ((uint32_t)(USBx) + 0x400)))
bogdanm 0:9b334a45a8ff 564 #define PCD_EP_TX_CNT(USBx, bEpNum) ((uint32_t *)(((USBx)->BTABLE+(bEpNum)*8+2)*2+ ((uint32_t)(USBx) + 0x400)))
bogdanm 0:9b334a45a8ff 565 #define PCD_EP_RX_ADDRESS(USBx, bEpNum) ((uint32_t *)(((USBx)->BTABLE+(bEpNum)*8+4)*2+ ((uint32_t)(USBx) + 0x400)))
bogdanm 0:9b334a45a8ff 566 #define PCD_EP_RX_CNT(USBx, bEpNum) ((uint32_t *)(((USBx)->BTABLE+(bEpNum)*8+6)*2+ ((uint32_t)(USBx) + 0x400)))
bogdanm 0:9b334a45a8ff 567
bogdanm 0:9b334a45a8ff 568 #define PCD_SET_EP_RX_CNT(USBx, bEpNum,wCount) {\
bogdanm 0:9b334a45a8ff 569 uint32_t *pdwReg = PCD_EP_RX_CNT((USBx), (bEpNum)); \
bogdanm 0:9b334a45a8ff 570 PCD_SET_EP_CNT_RX_REG(pdwReg, (wCount));\
bogdanm 0:9b334a45a8ff 571 }
bogdanm 0:9b334a45a8ff 572
bogdanm 0:9b334a45a8ff 573 /**
bogdanm 0:9b334a45a8ff 574 * @brief sets address of the tx/rx buffer.
bogdanm 0:9b334a45a8ff 575 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 576 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 577 * @param wAddr: address to be set (must be word aligned).
bogdanm 0:9b334a45a8ff 578 * @retval None
bogdanm 0:9b334a45a8ff 579 */
bogdanm 0:9b334a45a8ff 580 #define PCD_SET_EP_TX_ADDRESS(USBx, bEpNum,wAddr) (*PCD_EP_TX_ADDRESS((USBx), (bEpNum)) = (((wAddr) >> 1) << 1))
bogdanm 0:9b334a45a8ff 581 #define PCD_SET_EP_RX_ADDRESS(USBx, bEpNum,wAddr) (*PCD_EP_RX_ADDRESS((USBx), (bEpNum)) = (((wAddr) >> 1) << 1))
bogdanm 0:9b334a45a8ff 582
bogdanm 0:9b334a45a8ff 583 /**
bogdanm 0:9b334a45a8ff 584 * @brief Gets address of the tx/rx buffer.
bogdanm 0:9b334a45a8ff 585 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 586 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 587 * @retval address of the buffer.
bogdanm 0:9b334a45a8ff 588 */
bogdanm 0:9b334a45a8ff 589 #define PCD_GET_EP_TX_ADDRESS(USBx, bEpNum) ((uint16_t)*PCD_EP_TX_ADDRESS((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 590 #define PCD_GET_EP_RX_ADDRESS(USBx, bEpNum) ((uint16_t)*PCD_EP_RX_ADDRESS((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 591
bogdanm 0:9b334a45a8ff 592 /**
bogdanm 0:9b334a45a8ff 593 * @brief Sets counter of rx buffer with no. of blocks.
bogdanm 0:9b334a45a8ff 594 * @param dwReg: Register
bogdanm 0:9b334a45a8ff 595 * @param wCount: Counter.
bogdanm 0:9b334a45a8ff 596 * @param wNBlocks: no. of Blocks.
bogdanm 0:9b334a45a8ff 597 * @retval None
bogdanm 0:9b334a45a8ff 598 */
bogdanm 0:9b334a45a8ff 599 #define PCD_CALC_BLK32(dwReg,wCount,wNBlocks) {\
bogdanm 0:9b334a45a8ff 600 (wNBlocks) = (wCount) >> 5;\
bogdanm 0:9b334a45a8ff 601 if(((wCount) & 0x1f) == 0)\
bogdanm 0:9b334a45a8ff 602 { \
bogdanm 0:9b334a45a8ff 603 (wNBlocks)--;\
bogdanm 0:9b334a45a8ff 604 } \
bogdanm 0:9b334a45a8ff 605 *pdwReg = (uint16_t)((uint16_t)((wNBlocks) << 10) | 0x8000); \
bogdanm 0:9b334a45a8ff 606 }/* PCD_CALC_BLK32 */
bogdanm 0:9b334a45a8ff 607
bogdanm 0:9b334a45a8ff 608 #define PCD_CALC_BLK2(dwReg,wCount,wNBlocks) {\
bogdanm 0:9b334a45a8ff 609 (wNBlocks) = (wCount) >> 1;\
bogdanm 0:9b334a45a8ff 610 if(((wCount) & 0x1) != 0)\
bogdanm 0:9b334a45a8ff 611 { \
bogdanm 0:9b334a45a8ff 612 (wNBlocks)++;\
bogdanm 0:9b334a45a8ff 613 } \
bogdanm 0:9b334a45a8ff 614 *pdwReg = (uint16_t)((wNBlocks) << 10);\
bogdanm 0:9b334a45a8ff 615 }/* PCD_CALC_BLK2 */
bogdanm 0:9b334a45a8ff 616
bogdanm 0:9b334a45a8ff 617 #define PCD_SET_EP_CNT_RX_REG(dwReg,wCount) {\
bogdanm 0:9b334a45a8ff 618 uint16_t wNBlocks;\
bogdanm 0:9b334a45a8ff 619 if((wCount) > 62) \
bogdanm 0:9b334a45a8ff 620 { \
bogdanm 0:9b334a45a8ff 621 PCD_CALC_BLK32((dwReg),(wCount),wNBlocks); \
bogdanm 0:9b334a45a8ff 622 } \
bogdanm 0:9b334a45a8ff 623 else \
bogdanm 0:9b334a45a8ff 624 { \
bogdanm 0:9b334a45a8ff 625 PCD_CALC_BLK2((dwReg),(wCount),wNBlocks); \
bogdanm 0:9b334a45a8ff 626 } \
bogdanm 0:9b334a45a8ff 627 }/* PCD_SET_EP_CNT_RX_REG */
bogdanm 0:9b334a45a8ff 628
bogdanm 0:9b334a45a8ff 629 #define PCD_SET_EP_RX_DBUF0_CNT(USBx, bEpNum,wCount) {\
bogdanm 0:9b334a45a8ff 630 uint16_t *pdwReg = PCD_EP_TX_CNT((USBx), (bEpNum)); \
bogdanm 0:9b334a45a8ff 631 PCD_SET_EP_CNT_RX_REG(pdwReg, (wCount));\
bogdanm 0:9b334a45a8ff 632 }
bogdanm 0:9b334a45a8ff 633 /**
bogdanm 0:9b334a45a8ff 634 * @brief sets counter for the tx/rx buffer.
bogdanm 0:9b334a45a8ff 635 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 636 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 637 * @param wCount: Counter value.
bogdanm 0:9b334a45a8ff 638 * @retval None
bogdanm 0:9b334a45a8ff 639 */
bogdanm 0:9b334a45a8ff 640 #define PCD_SET_EP_TX_CNT(USBx, bEpNum,wCount) (*PCD_EP_TX_CNT((USBx), (bEpNum)) = (wCount))
bogdanm 0:9b334a45a8ff 641
bogdanm 0:9b334a45a8ff 642
bogdanm 0:9b334a45a8ff 643 /**
bogdanm 0:9b334a45a8ff 644 * @brief gets counter of the tx buffer.
bogdanm 0:9b334a45a8ff 645 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 646 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 647 * @retval Counter value
bogdanm 0:9b334a45a8ff 648 */
bogdanm 0:9b334a45a8ff 649 #define PCD_GET_EP_TX_CNT(USBx, bEpNum)((uint16_t)(*PCD_EP_TX_CNT((USBx), (bEpNum))) & 0x3ff)
bogdanm 0:9b334a45a8ff 650 #define PCD_GET_EP_RX_CNT(USBx, bEpNum)((uint16_t)(*PCD_EP_RX_CNT((USBx), (bEpNum))) & 0x3ff)
bogdanm 0:9b334a45a8ff 651
bogdanm 0:9b334a45a8ff 652 /**
bogdanm 0:9b334a45a8ff 653 * @brief Sets buffer 0/1 address in a double buffer endpoint.
bogdanm 0:9b334a45a8ff 654 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 655 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 656 * @param wBuf0Addr: buffer 0 address.
bogdanm 0:9b334a45a8ff 657 * @retval Counter value
bogdanm 0:9b334a45a8ff 658 */
bogdanm 0:9b334a45a8ff 659 #define PCD_SET_EP_DBUF0_ADDR(USBx, bEpNum,wBuf0Addr) {PCD_SET_EP_TX_ADDRESS((USBx), (bEpNum), (wBuf0Addr));}
bogdanm 0:9b334a45a8ff 660 #define PCD_SET_EP_DBUF1_ADDR(USBx, bEpNum,wBuf1Addr) {PCD_SET_EP_RX_ADDRESS((USBx), (bEpNum), (wBuf1Addr));}
bogdanm 0:9b334a45a8ff 661
bogdanm 0:9b334a45a8ff 662 /**
bogdanm 0:9b334a45a8ff 663 * @brief Sets addresses in a double buffer endpoint.
bogdanm 0:9b334a45a8ff 664 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 665 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 666 * @param wBuf0Addr: buffer 0 address.
bogdanm 0:9b334a45a8ff 667 * @param wBuf1Addr = buffer 1 address.
bogdanm 0:9b334a45a8ff 668 * @retval None
bogdanm 0:9b334a45a8ff 669 */
bogdanm 0:9b334a45a8ff 670 #define PCD_SET_EP_DBUF_ADDR(USBx, bEpNum,wBuf0Addr,wBuf1Addr) { \
bogdanm 0:9b334a45a8ff 671 PCD_SET_EP_DBUF0_ADDR((USBx), (bEpNum), (wBuf0Addr));\
bogdanm 0:9b334a45a8ff 672 PCD_SET_EP_DBUF1_ADDR((USBx), (bEpNum), (wBuf1Addr));\
bogdanm 0:9b334a45a8ff 673 } /* PCD_SET_EP_DBUF_ADDR */
bogdanm 0:9b334a45a8ff 674
bogdanm 0:9b334a45a8ff 675 /**
bogdanm 0:9b334a45a8ff 676 * @brief Gets buffer 0/1 address of a double buffer endpoint.
bogdanm 0:9b334a45a8ff 677 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 678 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 679 * @retval None
bogdanm 0:9b334a45a8ff 680 */
bogdanm 0:9b334a45a8ff 681 #define PCD_GET_EP_DBUF0_ADDR(USBx, bEpNum) (PCD_GET_EP_TX_ADDRESS((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 682 #define PCD_GET_EP_DBUF1_ADDR(USBx, bEpNum) (PCD_GET_EP_RX_ADDRESS((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 683
bogdanm 0:9b334a45a8ff 684 /**
bogdanm 0:9b334a45a8ff 685 * @brief Gets buffer 0/1 address of a double buffer endpoint.
bogdanm 0:9b334a45a8ff 686 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 687 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 688 * @param bDir: endpoint dir EP_DBUF_OUT = OUT
bogdanm 0:9b334a45a8ff 689 * EP_DBUF_IN = IN
bogdanm 0:9b334a45a8ff 690 * @param wCount: Counter value
bogdanm 0:9b334a45a8ff 691 * @retval None
bogdanm 0:9b334a45a8ff 692 */
bogdanm 0:9b334a45a8ff 693 #define PCD_SET_EP_DBUF0_CNT(USBx, bEpNum, bDir, wCount) { \
bogdanm 0:9b334a45a8ff 694 if((bDir) == PCD_EP_DBUF_OUT)\
bogdanm 0:9b334a45a8ff 695 /* OUT endpoint */ \
bogdanm 0:9b334a45a8ff 696 {PCD_SET_EP_RX_DBUF0_CNT((USBx), (bEpNum),(wCount));} \
bogdanm 0:9b334a45a8ff 697 else if((bDir) == PCD_EP_DBUF_IN)\
bogdanm 0:9b334a45a8ff 698 /* IN endpoint */ \
bogdanm 0:9b334a45a8ff 699 *PCD_EP_TX_CNT((USBx), (bEpNum)) = (uint32_t)(wCount); \
bogdanm 0:9b334a45a8ff 700 } /* SetEPDblBuf0Count*/
bogdanm 0:9b334a45a8ff 701
bogdanm 0:9b334a45a8ff 702 #define PCD_SET_EP_DBUF1_CNT(USBx, bEpNum, bDir, wCount) { \
bogdanm 0:9b334a45a8ff 703 if((bDir) == PCD_EP_DBUF_OUT)\
bogdanm 0:9b334a45a8ff 704 {/* OUT endpoint */ \
bogdanm 0:9b334a45a8ff 705 PCD_SET_EP_RX_CNT((USBx), (bEpNum),(wCount)); \
bogdanm 0:9b334a45a8ff 706 } \
bogdanm 0:9b334a45a8ff 707 else if((bDir) == PCD_EP_DBUF_IN)\
bogdanm 0:9b334a45a8ff 708 {/* IN endpoint */ \
bogdanm 0:9b334a45a8ff 709 *PCD_EP_RX_CNT((USBx), (bEpNum)) = (uint32_t)(wCount); \
bogdanm 0:9b334a45a8ff 710 } \
bogdanm 0:9b334a45a8ff 711 } /* SetEPDblBuf1Count */
bogdanm 0:9b334a45a8ff 712
bogdanm 0:9b334a45a8ff 713 #define PCD_SET_EP_DBUF_CNT(USBx, bEpNum, bDir, wCount) {\
bogdanm 0:9b334a45a8ff 714 PCD_SET_EP_DBUF0_CNT((USBx), (bEpNum), (bDir), (wCount)); \
bogdanm 0:9b334a45a8ff 715 PCD_SET_EP_DBUF1_CNT((USBx), (bEpNum), (bDir), (wCount)); \
bogdanm 0:9b334a45a8ff 716 } /* PCD_SET_EP_DBUF_CNT */
bogdanm 0:9b334a45a8ff 717
bogdanm 0:9b334a45a8ff 718 /**
bogdanm 0:9b334a45a8ff 719 * @brief Gets buffer 0/1 rx/tx counter for double buffering.
bogdanm 0:9b334a45a8ff 720 * @param USBx: USB peripheral instance register address.
bogdanm 0:9b334a45a8ff 721 * @param bEpNum: Endpoint Number.
bogdanm 0:9b334a45a8ff 722 * @retval None
bogdanm 0:9b334a45a8ff 723 */
bogdanm 0:9b334a45a8ff 724 #define PCD_GET_EP_DBUF0_CNT(USBx, bEpNum) (PCD_GET_EP_TX_CNT((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 725 #define PCD_GET_EP_DBUF1_CNT(USBx, bEpNum) (PCD_GET_EP_RX_CNT((USBx), (bEpNum)))
bogdanm 0:9b334a45a8ff 726
bogdanm 0:9b334a45a8ff 727
bogdanm 0:9b334a45a8ff 728 /**
bogdanm 0:9b334a45a8ff 729 * @}
bogdanm 0:9b334a45a8ff 730 */
bogdanm 0:9b334a45a8ff 731
bogdanm 0:9b334a45a8ff 732 /* Exported functions --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 733
bogdanm 0:9b334a45a8ff 734 /** @addtogroup PCD_Exported_Functions
bogdanm 0:9b334a45a8ff 735 * @{
bogdanm 0:9b334a45a8ff 736 */
bogdanm 0:9b334a45a8ff 737
bogdanm 0:9b334a45a8ff 738 /* Initialization/de-initialization functions **********************************/
bogdanm 0:9b334a45a8ff 739
bogdanm 0:9b334a45a8ff 740
bogdanm 0:9b334a45a8ff 741 /** @addtogroup PCD_Exported_Functions_Group1
bogdanm 0:9b334a45a8ff 742 * @{
bogdanm 0:9b334a45a8ff 743 */
bogdanm 0:9b334a45a8ff 744
bogdanm 0:9b334a45a8ff 745 HAL_StatusTypeDef HAL_PCD_Init(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 746 HAL_StatusTypeDef HAL_PCD_DeInit (PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 747 void HAL_PCD_MspInit(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 748 void HAL_PCD_MspDeInit(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 749
bogdanm 0:9b334a45a8ff 750 /**
bogdanm 0:9b334a45a8ff 751 * @}
bogdanm 0:9b334a45a8ff 752 */
bogdanm 0:9b334a45a8ff 753
bogdanm 0:9b334a45a8ff 754 /* I/O operation functions *****************************************************/
bogdanm 0:9b334a45a8ff 755 /* Non-Blocking mode: Interrupt */
bogdanm 0:9b334a45a8ff 756 /** @addtogroup PCD_Exported_Functions_Group2
bogdanm 0:9b334a45a8ff 757 * @{
bogdanm 0:9b334a45a8ff 758 */
bogdanm 0:9b334a45a8ff 759
bogdanm 0:9b334a45a8ff 760 HAL_StatusTypeDef HAL_PCD_Start(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 761 HAL_StatusTypeDef HAL_PCD_Stop(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 762 void HAL_PCD_IRQHandler(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 763
bogdanm 0:9b334a45a8ff 764 void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
bogdanm 0:9b334a45a8ff 765 void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
bogdanm 0:9b334a45a8ff 766 void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 767 void HAL_PCD_SOFCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 768 void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 769 void HAL_PCD_SuspendCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 770 void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 771 void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
bogdanm 0:9b334a45a8ff 772 void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
bogdanm 0:9b334a45a8ff 773 void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 774 void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 775
bogdanm 0:9b334a45a8ff 776 /**
bogdanm 0:9b334a45a8ff 777 * @}
bogdanm 0:9b334a45a8ff 778 */
bogdanm 0:9b334a45a8ff 779
bogdanm 0:9b334a45a8ff 780 /* Peripheral Control functions ************************************************/
bogdanm 0:9b334a45a8ff 781 /** @addtogroup PCD_Exported_Functions_Group3
bogdanm 0:9b334a45a8ff 782 * @{
bogdanm 0:9b334a45a8ff 783 */
bogdanm 0:9b334a45a8ff 784 HAL_StatusTypeDef HAL_PCD_DevConnect(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 785 HAL_StatusTypeDef HAL_PCD_DevDisconnect(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 786 HAL_StatusTypeDef HAL_PCD_SetAddress(PCD_HandleTypeDef *hpcd, uint8_t address);
bogdanm 0:9b334a45a8ff 787 HAL_StatusTypeDef HAL_PCD_EP_Open(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint16_t ep_mps, uint8_t ep_type);
bogdanm 0:9b334a45a8ff 788 HAL_StatusTypeDef HAL_PCD_EP_Close(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
bogdanm 0:9b334a45a8ff 789 HAL_StatusTypeDef HAL_PCD_EP_Receive(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len);
bogdanm 0:9b334a45a8ff 790 HAL_StatusTypeDef HAL_PCD_EP_Transmit(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len);
bogdanm 0:9b334a45a8ff 791 uint16_t HAL_PCD_EP_GetRxCount(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
bogdanm 0:9b334a45a8ff 792 HAL_StatusTypeDef HAL_PCD_EP_SetStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
bogdanm 0:9b334a45a8ff 793 HAL_StatusTypeDef HAL_PCD_EP_ClrStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
bogdanm 0:9b334a45a8ff 794 HAL_StatusTypeDef HAL_PCD_EP_Flush(PCD_HandleTypeDef *hpcd, uint8_t ep_addr);
bogdanm 0:9b334a45a8ff 795 HAL_StatusTypeDef HAL_PCD_ActiveRemoteWakeup(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 796 HAL_StatusTypeDef HAL_PCD_DeActiveRemoteWakeup(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 797 /**
bogdanm 0:9b334a45a8ff 798 * @}
bogdanm 0:9b334a45a8ff 799 */
bogdanm 0:9b334a45a8ff 800
bogdanm 0:9b334a45a8ff 801
bogdanm 0:9b334a45a8ff 802 /* Peripheral State functions **************************************************/
bogdanm 0:9b334a45a8ff 803 /** @addtogroup PCD_Exported_Functions_Group4
bogdanm 0:9b334a45a8ff 804 * @{
bogdanm 0:9b334a45a8ff 805 */
bogdanm 0:9b334a45a8ff 806 PCD_StateTypeDef HAL_PCD_GetState(PCD_HandleTypeDef *hpcd);
bogdanm 0:9b334a45a8ff 807 void HAL_PCDEx_SetConnectionState(PCD_HandleTypeDef *hpcd, uint8_t state);
bogdanm 0:9b334a45a8ff 808 /**
bogdanm 0:9b334a45a8ff 809 * @}
bogdanm 0:9b334a45a8ff 810 */
bogdanm 0:9b334a45a8ff 811
bogdanm 0:9b334a45a8ff 812
bogdanm 0:9b334a45a8ff 813 /**
bogdanm 0:9b334a45a8ff 814 * @}
bogdanm 0:9b334a45a8ff 815 */
bogdanm 0:9b334a45a8ff 816
bogdanm 0:9b334a45a8ff 817
bogdanm 0:9b334a45a8ff 818 /**
bogdanm 0:9b334a45a8ff 819 * @}
bogdanm 0:9b334a45a8ff 820 */
bogdanm 0:9b334a45a8ff 821
bogdanm 0:9b334a45a8ff 822 /**
bogdanm 0:9b334a45a8ff 823 * @}
bogdanm 0:9b334a45a8ff 824 */
bogdanm 0:9b334a45a8ff 825
bogdanm 0:9b334a45a8ff 826 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 827 }
bogdanm 0:9b334a45a8ff 828 #endif
bogdanm 0:9b334a45a8ff 829
bogdanm 0:9b334a45a8ff 830
bogdanm 0:9b334a45a8ff 831 #endif /* __STM32L1xx_HAL_PCD_H */
bogdanm 0:9b334a45a8ff 832
bogdanm 0:9b334a45a8ff 833 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/