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1 | /** |
1 | /** |
2 | ****************************************************************************** |
2 | ****************************************************************************** |
3 | * @file stm32l1xx_hal_pcd.c |
3 | * @file stm32l1xx_hal_pcd.c |
4 | * @author MCD Application Team |
4 | * @author MCD Application Team |
5 | * @brief PCD HAL module driver. |
5 | * @brief PCD HAL module driver. |
6 | * This file provides firmware functions to manage the following |
6 | * This file provides firmware functions to manage the following |
7 | * functionalities of the USB Peripheral Controller: |
7 | * functionalities of the USB Peripheral Controller: |
8 | * + Initialization and de-initialization functions |
8 | * + Initialization and de-initialization functions |
9 | * + IO operation functions |
9 | * + IO operation functions |
10 | * + Peripheral Control functions |
10 | * + Peripheral Control functions |
11 | * + Peripheral State functions |
11 | * + Peripheral State functions |
12 | * |
12 | * |
13 | @verbatim |
13 | ****************************************************************************** |
14 | ============================================================================== |
14 | * @attention |
15 | ##### How to use this driver ##### |
15 | * |
16 | ============================================================================== |
16 | * Copyright (c) 2016 STMicroelectronics. |
17 | [..] |
17 | * All rights reserved. |
18 | The PCD HAL driver can be used as follows: |
18 | * |
19 | 19 | * This software is licensed under terms that can be found in the LICENSE file |
|
20 | (#) Declare a PCD_HandleTypeDef handle structure, for example: |
20 | * in the root directory of this software component. |
21 | PCD_HandleTypeDef hpcd; |
21 | * If no LICENSE file comes with this software, it is provided AS-IS. |
22 | 22 | * |
|
23 | (#) Fill parameters of Init structure in HCD handle |
23 | ****************************************************************************** |
24 | 24 | @verbatim |
|
25 | (#) Call HAL_PCD_Init() API to initialize the PCD peripheral (Core, Device core, ...) |
25 | ============================================================================== |
26 | 26 | ##### How to use this driver ##### |
|
27 | (#) Initialize the PCD low level resources through the HAL_PCD_MspInit() API: |
27 | ============================================================================== |
28 | (##) Enable the PCD/USB Low Level interface clock using |
28 | [..] |
29 | (+++) __HAL_RCC_USB_CLK_ENABLE(); For USB Device only FS peripheral |
29 | The PCD HAL driver can be used as follows: |
30 | 30 | ||
31 | (##) Initialize the related GPIO clocks |
31 | (#) Declare a PCD_HandleTypeDef handle structure, for example: |
32 | (##) Configure PCD pin-out |
32 | PCD_HandleTypeDef hpcd; |
33 | (##) Configure PCD NVIC interrupt |
33 | |
34 | 34 | (#) Fill parameters of Init structure in HCD handle |
|
35 | (#)Associate the Upper USB device stack to the HAL PCD Driver: |
35 | |
36 | (##) hpcd.pData = pdev; |
36 | (#) Call HAL_PCD_Init() API to initialize the PCD peripheral (Core, Device core, ...) |
37 | 37 | ||
38 | (#)Enable PCD transmission and reception: |
38 | (#) Initialize the PCD low level resources through the HAL_PCD_MspInit() API: |
39 | (##) HAL_PCD_Start(); |
39 | (##) Enable the PCD/USB Low Level interface clock using |
40 | 40 | (+++) __HAL_RCC_USB_CLK_ENABLE(); For USB Device FS peripheral |
|
41 | @endverbatim |
41 | |
42 | ****************************************************************************** |
42 | (##) Initialize the related GPIO clocks |
43 | * @attention |
43 | (##) Configure PCD pin-out |
44 | * |
44 | (##) Configure PCD NVIC interrupt |
45 | * <h2><center>© Copyright (c) 2016 STMicroelectronics. |
45 | |
46 | * All rights reserved.</center></h2> |
46 | (#)Associate the Upper USB device stack to the HAL PCD Driver: |
47 | * |
47 | (##) hpcd.pData = pdev; |
48 | * This software component is licensed by ST under BSD 3-Clause license, |
48 | |
49 | * the "License"; You may not use this file except in compliance with the |
49 | (#)Enable PCD transmission and reception: |
50 | * License. You may obtain a copy of the License at: |
50 | (##) HAL_PCD_Start(); |
51 | * opensource.org/licenses/BSD-3-Clause |
51 | |
52 | * |
52 | @endverbatim |
53 | ****************************************************************************** |
53 | ****************************************************************************** |
54 | */ |
54 | */ |
55 | 55 | ||
56 | /* Includes ------------------------------------------------------------------*/ |
56 | /* Includes ------------------------------------------------------------------*/ |
57 | #include "stm32l1xx_hal.h" |
57 | #include "stm32l1xx_hal.h" |
58 | 58 | ||
59 | /** @addtogroup STM32L1xx_HAL_Driver |
59 | /** @addtogroup STM32L1xx_HAL_Driver |
60 | * @{ |
60 | * @{ |
61 | */ |
61 | */ |
62 | 62 | ||
63 | /** @defgroup PCD PCD |
63 | /** @defgroup PCD PCD |
64 | * @brief PCD HAL module driver |
64 | * @brief PCD HAL module driver |
65 | * @{ |
65 | * @{ |
66 | */ |
66 | */ |
67 | 67 | ||
68 | #ifdef HAL_PCD_MODULE_ENABLED |
68 | #ifdef HAL_PCD_MODULE_ENABLED |
69 | 69 | ||
70 | #if defined (USB) |
70 | #if defined (USB) |
71 | 71 | ||
72 | /* Private types -------------------------------------------------------------*/ |
72 | /* Private types -------------------------------------------------------------*/ |
73 | /* Private variables ---------------------------------------------------------*/ |
73 | /* Private variables ---------------------------------------------------------*/ |
74 | /* Private constants ---------------------------------------------------------*/ |
74 | /* Private constants ---------------------------------------------------------*/ |
75 | /* Private macros ------------------------------------------------------------*/ |
75 | /* Private macros ------------------------------------------------------------*/ |
76 | /** @defgroup PCD_Private_Macros PCD Private Macros |
76 | /** @defgroup PCD_Private_Macros PCD Private Macros |
77 | * @{ |
77 | * @{ |
78 | */ |
78 | */ |
79 | #define PCD_MIN(a, b) (((a) < (b)) ? (a) : (b)) |
79 | #define PCD_MIN(a, b) (((a) < (b)) ? (a) : (b)) |
80 | #define PCD_MAX(a, b) (((a) > (b)) ? (a) : (b)) |
80 | #define PCD_MAX(a, b) (((a) > (b)) ? (a) : (b)) |
81 | /** |
81 | /** |
82 | * @} |
82 | * @} |
83 | */ |
83 | */ |
84 | 84 | ||
85 | /* Private functions prototypes ----------------------------------------------*/ |
85 | /* Private functions prototypes ----------------------------------------------*/ |
86 | /** @defgroup PCD_Private_Functions PCD Private Functions |
86 | /** @defgroup PCD_Private_Functions PCD Private Functions |
87 | * @{ |
87 | * @{ |
88 | */ |
88 | */ |
89 | 89 | ||
90 | static HAL_StatusTypeDef PCD_EP_ISR_Handler(PCD_HandleTypeDef *hpcd); |
90 | static HAL_StatusTypeDef PCD_EP_ISR_Handler(PCD_HandleTypeDef *hpcd); |
91 | static HAL_StatusTypeDef HAL_PCD_EP_DB_Transmit(PCD_HandleTypeDef *hpcd, PCD_EPTypeDef *ep, uint16_t wEPVal); |
91 | #if (USE_USB_DOUBLE_BUFFER == 1U) |
92 | static uint16_t HAL_PCD_EP_DB_Receive(PCD_HandleTypeDef *hpcd, PCD_EPTypeDef *ep, uint16_t wEPVal); |
92 | static HAL_StatusTypeDef HAL_PCD_EP_DB_Transmit(PCD_HandleTypeDef *hpcd, PCD_EPTypeDef *ep, uint16_t wEPVal); |
93 | 93 | static uint16_t HAL_PCD_EP_DB_Receive(PCD_HandleTypeDef *hpcd, PCD_EPTypeDef *ep, uint16_t wEPVal); |
|
94 | /** |
94 | #endif /* (USE_USB_DOUBLE_BUFFER == 1U) */ |
95 | * @} |
95 | |
96 | */ |
96 | /** |
97 | 97 | * @} |
|
98 | /* Exported functions --------------------------------------------------------*/ |
98 | */ |
99 | /** @defgroup PCD_Exported_Functions PCD Exported Functions |
99 | |
100 | * @{ |
100 | /* Exported functions --------------------------------------------------------*/ |
101 | */ |
101 | /** @defgroup PCD_Exported_Functions PCD Exported Functions |
102 | 102 | * @{ |
|
103 | /** @defgroup PCD_Exported_Functions_Group1 Initialization and de-initialization functions |
103 | */ |
104 | * @brief Initialization and Configuration functions |
104 | |
105 | * |
105 | /** @defgroup PCD_Exported_Functions_Group1 Initialization and de-initialization functions |
106 | @verbatim |
106 | * @brief Initialization and Configuration functions |
107 | =============================================================================== |
107 | * |
108 | ##### Initialization and de-initialization functions ##### |
108 | @verbatim |
109 | =============================================================================== |
109 | =============================================================================== |
110 | [..] This section provides functions allowing to: |
110 | ##### Initialization and de-initialization functions ##### |
111 | 111 | =============================================================================== |
|
112 | @endverbatim |
112 | [..] This section provides functions allowing to: |
113 | * @{ |
113 | |
114 | */ |
114 | @endverbatim |
115 | 115 | * @{ |
|
116 | /** |
116 | */ |
117 | * @brief Initializes the PCD according to the specified |
117 | |
118 | * parameters in the PCD_InitTypeDef and initialize the associated handle. |
118 | /** |
119 | * @param hpcd PCD handle |
119 | * @brief Initializes the PCD according to the specified |
120 | * @retval HAL status |
120 | * parameters in the PCD_InitTypeDef and initialize the associated handle. |
121 | */ |
121 | * @param hpcd PCD handle |
122 | HAL_StatusTypeDef HAL_PCD_Init(PCD_HandleTypeDef *hpcd) |
122 | * @retval HAL status |
123 | { |
123 | */ |
124 | uint8_t i; |
124 | HAL_StatusTypeDef HAL_PCD_Init(PCD_HandleTypeDef *hpcd) |
125 | 125 | { |
|
126 | /* Check the PCD handle allocation */ |
126 | uint8_t i; |
127 | if (hpcd == NULL) |
127 | |
128 | { |
128 | /* Check the PCD handle allocation */ |
129 | return HAL_ERROR; |
129 | if (hpcd == NULL) |
130 | } |
130 | { |
131 | 131 | return HAL_ERROR; |
|
132 | /* Check the parameters */ |
132 | } |
133 | assert_param(IS_PCD_ALL_INSTANCE(hpcd->Instance)); |
133 | |
134 | 134 | /* Check the parameters */ |
|
135 | if (hpcd->State == HAL_PCD_STATE_RESET) |
135 | assert_param(IS_PCD_ALL_INSTANCE(hpcd->Instance)); |
136 | { |
136 | |
137 | /* Allocate lock resource and initialize it */ |
137 | if (hpcd->State == HAL_PCD_STATE_RESET) |
138 | hpcd->Lock = HAL_UNLOCKED; |
138 | { |
139 | 139 | /* Allocate lock resource and initialize it */ |
|
140 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
140 | hpcd->Lock = HAL_UNLOCKED; |
141 | hpcd->SOFCallback = HAL_PCD_SOFCallback; |
141 | |
142 | hpcd->SetupStageCallback = HAL_PCD_SetupStageCallback; |
142 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
143 | hpcd->ResetCallback = HAL_PCD_ResetCallback; |
143 | hpcd->SOFCallback = HAL_PCD_SOFCallback; |
144 | hpcd->SuspendCallback = HAL_PCD_SuspendCallback; |
144 | hpcd->SetupStageCallback = HAL_PCD_SetupStageCallback; |
145 | hpcd->ResumeCallback = HAL_PCD_ResumeCallback; |
145 | hpcd->ResetCallback = HAL_PCD_ResetCallback; |
146 | hpcd->ConnectCallback = HAL_PCD_ConnectCallback; |
146 | hpcd->SuspendCallback = HAL_PCD_SuspendCallback; |
147 | hpcd->DisconnectCallback = HAL_PCD_DisconnectCallback; |
147 | hpcd->ResumeCallback = HAL_PCD_ResumeCallback; |
148 | hpcd->DataOutStageCallback = HAL_PCD_DataOutStageCallback; |
148 | hpcd->ConnectCallback = HAL_PCD_ConnectCallback; |
149 | hpcd->DataInStageCallback = HAL_PCD_DataInStageCallback; |
149 | hpcd->DisconnectCallback = HAL_PCD_DisconnectCallback; |
150 | hpcd->ISOOUTIncompleteCallback = HAL_PCD_ISOOUTIncompleteCallback; |
150 | hpcd->DataOutStageCallback = HAL_PCD_DataOutStageCallback; |
151 | hpcd->ISOINIncompleteCallback = HAL_PCD_ISOINIncompleteCallback; |
151 | hpcd->DataInStageCallback = HAL_PCD_DataInStageCallback; |
152 | 152 | hpcd->ISOOUTIncompleteCallback = HAL_PCD_ISOOUTIncompleteCallback; |
|
153 | if (hpcd->MspInitCallback == NULL) |
153 | hpcd->ISOINIncompleteCallback = HAL_PCD_ISOINIncompleteCallback; |
154 | { |
154 | |
155 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
155 | if (hpcd->MspInitCallback == NULL) |
156 | } |
156 | { |
157 | 157 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
|
158 | /* Init the low level hardware */ |
158 | } |
159 | hpcd->MspInitCallback(hpcd); |
159 | |
160 | #else |
160 | /* Init the low level hardware */ |
161 | /* Init the low level hardware : GPIO, CLOCK, NVIC... */ |
161 | hpcd->MspInitCallback(hpcd); |
162 | HAL_PCD_MspInit(hpcd); |
162 | #else |
163 | #endif /* (USE_HAL_PCD_REGISTER_CALLBACKS) */ |
163 | /* Init the low level hardware : GPIO, CLOCK, NVIC... */ |
164 | } |
164 | HAL_PCD_MspInit(hpcd); |
165 | 165 | #endif /* (USE_HAL_PCD_REGISTER_CALLBACKS) */ |
|
166 | hpcd->State = HAL_PCD_STATE_BUSY; |
166 | } |
167 | 167 | ||
168 | /* Disable the Interrupts */ |
168 | hpcd->State = HAL_PCD_STATE_BUSY; |
169 | __HAL_PCD_DISABLE(hpcd); |
169 | |
170 | 170 | /* Disable the Interrupts */ |
|
171 | /* Init endpoints structures */ |
171 | __HAL_PCD_DISABLE(hpcd); |
172 | for (i = 0U; i < hpcd->Init.dev_endpoints; i++) |
172 | |
173 | { |
173 | /* Init endpoints structures */ |
174 | /* Init ep structure */ |
174 | for (i = 0U; i < hpcd->Init.dev_endpoints; i++) |
175 | hpcd->IN_ep[i].is_in = 1U; |
175 | { |
176 | hpcd->IN_ep[i].num = i; |
176 | /* Init ep structure */ |
177 | hpcd->IN_ep[i].tx_fifo_num = i; |
177 | hpcd->IN_ep[i].is_in = 1U; |
178 | /* Control until ep is activated */ |
178 | hpcd->IN_ep[i].num = i; |
179 | hpcd->IN_ep[i].type = EP_TYPE_CTRL; |
179 | /* Control until ep is activated */ |
180 | hpcd->IN_ep[i].maxpacket = 0U; |
180 | hpcd->IN_ep[i].type = EP_TYPE_CTRL; |
181 | hpcd->IN_ep[i].xfer_buff = 0U; |
181 | hpcd->IN_ep[i].maxpacket = 0U; |
182 | hpcd->IN_ep[i].xfer_len = 0U; |
182 | hpcd->IN_ep[i].xfer_buff = 0U; |
183 | } |
183 | hpcd->IN_ep[i].xfer_len = 0U; |
184 | 184 | } |
|
185 | for (i = 0U; i < hpcd->Init.dev_endpoints; i++) |
185 | |
186 | { |
186 | for (i = 0U; i < hpcd->Init.dev_endpoints; i++) |
187 | hpcd->OUT_ep[i].is_in = 0U; |
187 | { |
188 | hpcd->OUT_ep[i].num = i; |
188 | hpcd->OUT_ep[i].is_in = 0U; |
189 | /* Control until ep is activated */ |
189 | hpcd->OUT_ep[i].num = i; |
190 | hpcd->OUT_ep[i].type = EP_TYPE_CTRL; |
190 | /* Control until ep is activated */ |
191 | hpcd->OUT_ep[i].maxpacket = 0U; |
191 | hpcd->OUT_ep[i].type = EP_TYPE_CTRL; |
192 | hpcd->OUT_ep[i].xfer_buff = 0U; |
192 | hpcd->OUT_ep[i].maxpacket = 0U; |
193 | hpcd->OUT_ep[i].xfer_len = 0U; |
193 | hpcd->OUT_ep[i].xfer_buff = 0U; |
194 | } |
194 | hpcd->OUT_ep[i].xfer_len = 0U; |
195 | 195 | } |
|
196 | /* Init Device */ |
196 | |
197 | (void)USB_DevInit(hpcd->Instance, hpcd->Init); |
197 | /* Init Device */ |
198 | 198 | (void)USB_DevInit(hpcd->Instance, hpcd->Init); |
|
199 | hpcd->USB_Address = 0U; |
199 | |
200 | hpcd->State = HAL_PCD_STATE_READY; |
200 | hpcd->USB_Address = 0U; |
201 | return HAL_OK; |
201 | hpcd->State = HAL_PCD_STATE_READY; |
202 | } |
202 | return HAL_OK; |
203 | 203 | } |
|
204 | /** |
204 | |
205 | * @brief DeInitializes the PCD peripheral. |
205 | /** |
206 | * @param hpcd PCD handle |
206 | * @brief DeInitializes the PCD peripheral. |
207 | * @retval HAL status |
207 | * @param hpcd PCD handle |
208 | */ |
208 | * @retval HAL status |
209 | HAL_StatusTypeDef HAL_PCD_DeInit(PCD_HandleTypeDef *hpcd) |
209 | */ |
210 | { |
210 | HAL_StatusTypeDef HAL_PCD_DeInit(PCD_HandleTypeDef *hpcd) |
211 | /* Check the PCD handle allocation */ |
211 | { |
212 | if (hpcd == NULL) |
212 | /* Check the PCD handle allocation */ |
213 | { |
213 | if (hpcd == NULL) |
214 | return HAL_ERROR; |
214 | { |
215 | } |
215 | return HAL_ERROR; |
216 | 216 | } |
|
217 | hpcd->State = HAL_PCD_STATE_BUSY; |
217 | |
218 | 218 | hpcd->State = HAL_PCD_STATE_BUSY; |
|
219 | /* Stop Device */ |
219 | |
220 | if (USB_StopDevice(hpcd->Instance) != HAL_OK) |
220 | /* Stop Device */ |
221 | { |
221 | if (USB_StopDevice(hpcd->Instance) != HAL_OK) |
222 | return HAL_ERROR; |
222 | { |
223 | } |
223 | return HAL_ERROR; |
224 | 224 | } |
|
225 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
225 | |
226 | if (hpcd->MspDeInitCallback == NULL) |
226 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
227 | { |
227 | if (hpcd->MspDeInitCallback == NULL) |
228 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; /* Legacy weak MspDeInit */ |
228 | { |
229 | } |
229 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; /* Legacy weak MspDeInit */ |
230 | 230 | } |
|
231 | /* DeInit the low level hardware */ |
231 | |
232 | hpcd->MspDeInitCallback(hpcd); |
232 | /* DeInit the low level hardware */ |
233 | #else |
233 | hpcd->MspDeInitCallback(hpcd); |
234 | /* DeInit the low level hardware: CLOCK, NVIC.*/ |
234 | #else |
235 | HAL_PCD_MspDeInit(hpcd); |
235 | /* DeInit the low level hardware: CLOCK, NVIC.*/ |
236 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
236 | HAL_PCD_MspDeInit(hpcd); |
237 | 237 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
|
238 | hpcd->State = HAL_PCD_STATE_RESET; |
238 | |
239 | 239 | hpcd->State = HAL_PCD_STATE_RESET; |
|
240 | return HAL_OK; |
240 | |
241 | } |
241 | return HAL_OK; |
242 | 242 | } |
|
243 | /** |
243 | |
244 | * @brief Initializes the PCD MSP. |
244 | /** |
245 | * @param hpcd PCD handle |
245 | * @brief Initializes the PCD MSP. |
246 | * @retval None |
246 | * @param hpcd PCD handle |
247 | */ |
247 | * @retval None |
248 | __weak void HAL_PCD_MspInit(PCD_HandleTypeDef *hpcd) |
248 | */ |
249 | { |
249 | __weak void HAL_PCD_MspInit(PCD_HandleTypeDef *hpcd) |
250 | /* Prevent unused argument(s) compilation warning */ |
250 | { |
251 | UNUSED(hpcd); |
251 | /* Prevent unused argument(s) compilation warning */ |
252 | 252 | UNUSED(hpcd); |
|
253 | /* NOTE : This function should not be modified, when the callback is needed, |
253 | |
254 | the HAL_PCD_MspInit could be implemented in the user file |
254 | /* NOTE : This function should not be modified, when the callback is needed, |
255 | */ |
255 | the HAL_PCD_MspInit could be implemented in the user file |
256 | } |
256 | */ |
257 | 257 | } |
|
258 | /** |
258 | |
259 | * @brief DeInitializes PCD MSP. |
259 | /** |
260 | * @param hpcd PCD handle |
260 | * @brief DeInitializes PCD MSP. |
261 | * @retval None |
261 | * @param hpcd PCD handle |
262 | */ |
262 | * @retval None |
263 | __weak void HAL_PCD_MspDeInit(PCD_HandleTypeDef *hpcd) |
263 | */ |
264 | { |
264 | __weak void HAL_PCD_MspDeInit(PCD_HandleTypeDef *hpcd) |
265 | /* Prevent unused argument(s) compilation warning */ |
265 | { |
266 | UNUSED(hpcd); |
266 | /* Prevent unused argument(s) compilation warning */ |
267 | 267 | UNUSED(hpcd); |
|
268 | /* NOTE : This function should not be modified, when the callback is needed, |
268 | |
269 | the HAL_PCD_MspDeInit could be implemented in the user file |
269 | /* NOTE : This function should not be modified, when the callback is needed, |
270 | */ |
270 | the HAL_PCD_MspDeInit could be implemented in the user file |
271 | } |
271 | */ |
272 | 272 | } |
|
273 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
273 | |
274 | /** |
274 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
275 | * @brief Register a User USB PCD Callback |
275 | /** |
276 | * To be used instead of the weak predefined callback |
276 | * @brief Register a User USB PCD Callback |
277 | * @param hpcd USB PCD handle |
277 | * To be used instead of the weak predefined callback |
278 | * @param CallbackID ID of the callback to be registered |
278 | * @param hpcd USB PCD handle |
279 | * This parameter can be one of the following values: |
279 | * @param CallbackID ID of the callback to be registered |
280 | * @arg @ref HAL_PCD_SOF_CB_ID USB PCD SOF callback ID |
280 | * This parameter can be one of the following values: |
281 | * @arg @ref HAL_PCD_SETUPSTAGE_CB_ID USB PCD Setup callback ID |
281 | * @arg @ref HAL_PCD_SOF_CB_ID USB PCD SOF callback ID |
282 | * @arg @ref HAL_PCD_RESET_CB_ID USB PCD Reset callback ID |
282 | * @arg @ref HAL_PCD_SETUPSTAGE_CB_ID USB PCD Setup callback ID |
283 | * @arg @ref HAL_PCD_SUSPEND_CB_ID USB PCD Suspend callback ID |
283 | * @arg @ref HAL_PCD_RESET_CB_ID USB PCD Reset callback ID |
284 | * @arg @ref HAL_PCD_RESUME_CB_ID USB PCD Resume callback ID |
284 | * @arg @ref HAL_PCD_SUSPEND_CB_ID USB PCD Suspend callback ID |
285 | * @arg @ref HAL_PCD_CONNECT_CB_ID USB PCD Connect callback ID |
285 | * @arg @ref HAL_PCD_RESUME_CB_ID USB PCD Resume callback ID |
286 | * @arg @ref HAL_PCD_DISCONNECT_CB_ID OTG PCD Disconnect callback ID |
286 | * @arg @ref HAL_PCD_CONNECT_CB_ID USB PCD Connect callback ID |
287 | * @arg @ref HAL_PCD_MSPINIT_CB_ID MspDeInit callback ID |
287 | * @arg @ref HAL_PCD_DISCONNECT_CB_ID USB PCD Disconnect callback ID |
288 | * @arg @ref HAL_PCD_MSPDEINIT_CB_ID MspDeInit callback ID |
288 | * @arg @ref HAL_PCD_MSPINIT_CB_ID MspDeInit callback ID |
289 | * @param pCallback pointer to the Callback function |
289 | * @arg @ref HAL_PCD_MSPDEINIT_CB_ID MspDeInit callback ID |
290 | * @retval HAL status |
290 | * @param pCallback pointer to the Callback function |
291 | */ |
291 | * @retval HAL status |
292 | HAL_StatusTypeDef HAL_PCD_RegisterCallback(PCD_HandleTypeDef *hpcd, |
292 | */ |
293 | HAL_PCD_CallbackIDTypeDef CallbackID, |
293 | HAL_StatusTypeDef HAL_PCD_RegisterCallback(PCD_HandleTypeDef *hpcd, |
294 | pPCD_CallbackTypeDef pCallback) |
294 | HAL_PCD_CallbackIDTypeDef CallbackID, |
295 | { |
295 | pPCD_CallbackTypeDef pCallback) |
296 | HAL_StatusTypeDef status = HAL_OK; |
296 | { |
297 | 297 | HAL_StatusTypeDef status = HAL_OK; |
|
298 | if (pCallback == NULL) |
298 | |
299 | { |
299 | if (pCallback == NULL) |
300 | /* Update the error code */ |
300 | { |
301 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
301 | /* Update the error code */ |
302 | return HAL_ERROR; |
302 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
303 | } |
303 | return HAL_ERROR; |
304 | /* Process locked */ |
304 | } |
305 | __HAL_LOCK(hpcd); |
305 | /* Process locked */ |
306 | 306 | __HAL_LOCK(hpcd); |
|
307 | if (hpcd->State == HAL_PCD_STATE_READY) |
307 | |
308 | { |
308 | if (hpcd->State == HAL_PCD_STATE_READY) |
309 | switch (CallbackID) |
309 | { |
310 | { |
310 | switch (CallbackID) |
311 | case HAL_PCD_SOF_CB_ID : |
311 | { |
312 | hpcd->SOFCallback = pCallback; |
312 | case HAL_PCD_SOF_CB_ID : |
313 | break; |
313 | hpcd->SOFCallback = pCallback; |
314 | 314 | break; |
|
315 | case HAL_PCD_SETUPSTAGE_CB_ID : |
315 | |
316 | hpcd->SetupStageCallback = pCallback; |
316 | case HAL_PCD_SETUPSTAGE_CB_ID : |
317 | break; |
317 | hpcd->SetupStageCallback = pCallback; |
318 | 318 | break; |
|
319 | case HAL_PCD_RESET_CB_ID : |
319 | |
320 | hpcd->ResetCallback = pCallback; |
320 | case HAL_PCD_RESET_CB_ID : |
321 | break; |
321 | hpcd->ResetCallback = pCallback; |
322 | 322 | break; |
|
323 | case HAL_PCD_SUSPEND_CB_ID : |
323 | |
324 | hpcd->SuspendCallback = pCallback; |
324 | case HAL_PCD_SUSPEND_CB_ID : |
325 | break; |
325 | hpcd->SuspendCallback = pCallback; |
326 | 326 | break; |
|
327 | case HAL_PCD_RESUME_CB_ID : |
327 | |
328 | hpcd->ResumeCallback = pCallback; |
328 | case HAL_PCD_RESUME_CB_ID : |
329 | break; |
329 | hpcd->ResumeCallback = pCallback; |
330 | 330 | break; |
|
331 | case HAL_PCD_CONNECT_CB_ID : |
331 | |
332 | hpcd->ConnectCallback = pCallback; |
332 | case HAL_PCD_CONNECT_CB_ID : |
333 | break; |
333 | hpcd->ConnectCallback = pCallback; |
334 | 334 | break; |
|
335 | case HAL_PCD_DISCONNECT_CB_ID : |
335 | |
336 | hpcd->DisconnectCallback = pCallback; |
336 | case HAL_PCD_DISCONNECT_CB_ID : |
337 | break; |
337 | hpcd->DisconnectCallback = pCallback; |
338 | 338 | break; |
|
339 | case HAL_PCD_MSPINIT_CB_ID : |
339 | |
340 | hpcd->MspInitCallback = pCallback; |
340 | case HAL_PCD_MSPINIT_CB_ID : |
341 | break; |
341 | hpcd->MspInitCallback = pCallback; |
342 | 342 | break; |
|
343 | case HAL_PCD_MSPDEINIT_CB_ID : |
343 | |
344 | hpcd->MspDeInitCallback = pCallback; |
344 | case HAL_PCD_MSPDEINIT_CB_ID : |
345 | break; |
345 | hpcd->MspDeInitCallback = pCallback; |
346 | 346 | break; |
|
347 | default : |
347 | |
348 | /* Update the error code */ |
348 | default : |
349 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
349 | /* Update the error code */ |
350 | /* Return error status */ |
350 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
351 | status = HAL_ERROR; |
351 | /* Return error status */ |
352 | break; |
352 | status = HAL_ERROR; |
353 | } |
353 | break; |
354 | } |
354 | } |
355 | else if (hpcd->State == HAL_PCD_STATE_RESET) |
355 | } |
356 | { |
356 | else if (hpcd->State == HAL_PCD_STATE_RESET) |
357 | switch (CallbackID) |
357 | { |
358 | { |
358 | switch (CallbackID) |
359 | case HAL_PCD_MSPINIT_CB_ID : |
359 | { |
360 | hpcd->MspInitCallback = pCallback; |
360 | case HAL_PCD_MSPINIT_CB_ID : |
361 | break; |
361 | hpcd->MspInitCallback = pCallback; |
362 | 362 | break; |
|
363 | case HAL_PCD_MSPDEINIT_CB_ID : |
363 | |
364 | hpcd->MspDeInitCallback = pCallback; |
364 | case HAL_PCD_MSPDEINIT_CB_ID : |
365 | break; |
365 | hpcd->MspDeInitCallback = pCallback; |
366 | 366 | break; |
|
367 | default : |
367 | |
368 | /* Update the error code */ |
368 | default : |
369 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
369 | /* Update the error code */ |
370 | /* Return error status */ |
370 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
371 | status = HAL_ERROR; |
371 | /* Return error status */ |
372 | break; |
372 | status = HAL_ERROR; |
373 | } |
373 | break; |
374 | } |
374 | } |
375 | else |
375 | } |
376 | { |
376 | else |
377 | /* Update the error code */ |
377 | { |
378 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
378 | /* Update the error code */ |
379 | /* Return error status */ |
379 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
380 | status = HAL_ERROR; |
380 | /* Return error status */ |
381 | } |
381 | status = HAL_ERROR; |
382 | 382 | } |
|
383 | /* Release Lock */ |
383 | |
384 | __HAL_UNLOCK(hpcd); |
384 | /* Release Lock */ |
385 | return status; |
385 | __HAL_UNLOCK(hpcd); |
386 | } |
386 | return status; |
387 | 387 | } |
|
388 | /** |
388 | |
389 | * @brief Unregister an USB PCD Callback |
389 | /** |
390 | * USB PCD callabck is redirected to the weak predefined callback |
390 | * @brief Unregister an USB PCD Callback |
391 | * @param hpcd USB PCD handle |
391 | * USB PCD callback is redirected to the weak predefined callback |
392 | * @param CallbackID ID of the callback to be unregistered |
392 | * @param hpcd USB PCD handle |
393 | * This parameter can be one of the following values: |
393 | * @param CallbackID ID of the callback to be unregistered |
394 | * @arg @ref HAL_PCD_SOF_CB_ID USB PCD SOF callback ID |
394 | * This parameter can be one of the following values: |
395 | * @arg @ref HAL_PCD_SETUPSTAGE_CB_ID USB PCD Setup callback ID |
395 | * @arg @ref HAL_PCD_SOF_CB_ID USB PCD SOF callback ID |
396 | * @arg @ref HAL_PCD_RESET_CB_ID USB PCD Reset callback ID |
396 | * @arg @ref HAL_PCD_SETUPSTAGE_CB_ID USB PCD Setup callback ID |
397 | * @arg @ref HAL_PCD_SUSPEND_CB_ID USB PCD Suspend callback ID |
397 | * @arg @ref HAL_PCD_RESET_CB_ID USB PCD Reset callback ID |
398 | * @arg @ref HAL_PCD_RESUME_CB_ID USB PCD Resume callback ID |
398 | * @arg @ref HAL_PCD_SUSPEND_CB_ID USB PCD Suspend callback ID |
399 | * @arg @ref HAL_PCD_CONNECT_CB_ID USB PCD Connect callback ID |
399 | * @arg @ref HAL_PCD_RESUME_CB_ID USB PCD Resume callback ID |
400 | * @arg @ref HAL_PCD_DISCONNECT_CB_ID OTG PCD Disconnect callback ID |
400 | * @arg @ref HAL_PCD_CONNECT_CB_ID USB PCD Connect callback ID |
401 | * @arg @ref HAL_PCD_MSPINIT_CB_ID MspDeInit callback ID |
401 | * @arg @ref HAL_PCD_DISCONNECT_CB_ID USB PCD Disconnect callback ID |
402 | * @arg @ref HAL_PCD_MSPDEINIT_CB_ID MspDeInit callback ID |
402 | * @arg @ref HAL_PCD_MSPINIT_CB_ID MspDeInit callback ID |
403 | * @retval HAL status |
403 | * @arg @ref HAL_PCD_MSPDEINIT_CB_ID MspDeInit callback ID |
404 | */ |
404 | * @retval HAL status |
405 | HAL_StatusTypeDef HAL_PCD_UnRegisterCallback(PCD_HandleTypeDef *hpcd, HAL_PCD_CallbackIDTypeDef CallbackID) |
405 | */ |
406 | { |
406 | HAL_StatusTypeDef HAL_PCD_UnRegisterCallback(PCD_HandleTypeDef *hpcd, HAL_PCD_CallbackIDTypeDef CallbackID) |
407 | HAL_StatusTypeDef status = HAL_OK; |
407 | { |
408 | 408 | HAL_StatusTypeDef status = HAL_OK; |
|
409 | /* Process locked */ |
409 | |
410 | __HAL_LOCK(hpcd); |
410 | /* Process locked */ |
411 | 411 | __HAL_LOCK(hpcd); |
|
412 | /* Setup Legacy weak Callbacks */ |
412 | |
413 | if (hpcd->State == HAL_PCD_STATE_READY) |
413 | /* Setup Legacy weak Callbacks */ |
414 | { |
414 | if (hpcd->State == HAL_PCD_STATE_READY) |
415 | switch (CallbackID) |
415 | { |
416 | { |
416 | switch (CallbackID) |
417 | case HAL_PCD_SOF_CB_ID : |
417 | { |
418 | hpcd->SOFCallback = HAL_PCD_SOFCallback; |
418 | case HAL_PCD_SOF_CB_ID : |
419 | break; |
419 | hpcd->SOFCallback = HAL_PCD_SOFCallback; |
420 | 420 | break; |
|
421 | case HAL_PCD_SETUPSTAGE_CB_ID : |
421 | |
422 | hpcd->SetupStageCallback = HAL_PCD_SetupStageCallback; |
422 | case HAL_PCD_SETUPSTAGE_CB_ID : |
423 | break; |
423 | hpcd->SetupStageCallback = HAL_PCD_SetupStageCallback; |
424 | 424 | break; |
|
425 | case HAL_PCD_RESET_CB_ID : |
425 | |
426 | hpcd->ResetCallback = HAL_PCD_ResetCallback; |
426 | case HAL_PCD_RESET_CB_ID : |
427 | break; |
427 | hpcd->ResetCallback = HAL_PCD_ResetCallback; |
428 | 428 | break; |
|
429 | case HAL_PCD_SUSPEND_CB_ID : |
429 | |
430 | hpcd->SuspendCallback = HAL_PCD_SuspendCallback; |
430 | case HAL_PCD_SUSPEND_CB_ID : |
431 | break; |
431 | hpcd->SuspendCallback = HAL_PCD_SuspendCallback; |
432 | 432 | break; |
|
433 | case HAL_PCD_RESUME_CB_ID : |
433 | |
434 | hpcd->ResumeCallback = HAL_PCD_ResumeCallback; |
434 | case HAL_PCD_RESUME_CB_ID : |
435 | break; |
435 | hpcd->ResumeCallback = HAL_PCD_ResumeCallback; |
436 | 436 | break; |
|
437 | case HAL_PCD_CONNECT_CB_ID : |
437 | |
438 | hpcd->ConnectCallback = HAL_PCD_ConnectCallback; |
438 | case HAL_PCD_CONNECT_CB_ID : |
439 | break; |
439 | hpcd->ConnectCallback = HAL_PCD_ConnectCallback; |
440 | 440 | break; |
|
441 | case HAL_PCD_DISCONNECT_CB_ID : |
441 | |
442 | hpcd->DisconnectCallback = HAL_PCD_DisconnectCallback; |
442 | case HAL_PCD_DISCONNECT_CB_ID : |
443 | break; |
443 | hpcd->DisconnectCallback = HAL_PCD_DisconnectCallback; |
444 | 444 | break; |
|
445 | case HAL_PCD_MSPINIT_CB_ID : |
445 | |
446 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
446 | case HAL_PCD_MSPINIT_CB_ID : |
447 | break; |
447 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
448 | 448 | break; |
|
449 | case HAL_PCD_MSPDEINIT_CB_ID : |
449 | |
450 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; |
450 | case HAL_PCD_MSPDEINIT_CB_ID : |
451 | break; |
451 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; |
452 | 452 | break; |
|
453 | default : |
453 | |
454 | /* Update the error code */ |
454 | default : |
455 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
455 | /* Update the error code */ |
456 | 456 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
457 | /* Return error status */ |
457 | |
458 | status = HAL_ERROR; |
458 | /* Return error status */ |
459 | break; |
459 | status = HAL_ERROR; |
460 | } |
460 | break; |
461 | } |
461 | } |
462 | else if (hpcd->State == HAL_PCD_STATE_RESET) |
462 | } |
463 | { |
463 | else if (hpcd->State == HAL_PCD_STATE_RESET) |
464 | switch (CallbackID) |
464 | { |
465 | { |
465 | switch (CallbackID) |
466 | case HAL_PCD_MSPINIT_CB_ID : |
466 | { |
467 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
467 | case HAL_PCD_MSPINIT_CB_ID : |
468 | break; |
468 | hpcd->MspInitCallback = HAL_PCD_MspInit; |
469 | 469 | break; |
|
470 | case HAL_PCD_MSPDEINIT_CB_ID : |
470 | |
471 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; |
471 | case HAL_PCD_MSPDEINIT_CB_ID : |
472 | break; |
472 | hpcd->MspDeInitCallback = HAL_PCD_MspDeInit; |
473 | 473 | break; |
|
474 | default : |
474 | |
475 | /* Update the error code */ |
475 | default : |
476 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
476 | /* Update the error code */ |
477 | 477 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
478 | /* Return error status */ |
478 | |
479 | status = HAL_ERROR; |
479 | /* Return error status */ |
480 | break; |
480 | status = HAL_ERROR; |
481 | } |
481 | break; |
482 | } |
482 | } |
483 | else |
483 | } |
484 | { |
484 | else |
485 | /* Update the error code */ |
485 | { |
486 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
486 | /* Update the error code */ |
487 | 487 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
488 | /* Return error status */ |
488 | |
489 | status = HAL_ERROR; |
489 | /* Return error status */ |
490 | } |
490 | status = HAL_ERROR; |
491 | 491 | } |
|
492 | /* Release Lock */ |
492 | |
493 | __HAL_UNLOCK(hpcd); |
493 | /* Release Lock */ |
494 | return status; |
494 | __HAL_UNLOCK(hpcd); |
495 | } |
495 | return status; |
496 | 496 | } |
|
497 | /** |
497 | |
498 | * @brief Register USB PCD Data OUT Stage Callback |
498 | /** |
499 | * To be used instead of the weak HAL_PCD_DataOutStageCallback() predefined callback |
499 | * @brief Register USB PCD Data OUT Stage Callback |
500 | * @param hpcd PCD handle |
500 | * To be used instead of the weak HAL_PCD_DataOutStageCallback() predefined callback |
501 | * @param pCallback pointer to the USB PCD Data OUT Stage Callback function |
501 | * @param hpcd PCD handle |
502 | * @retval HAL status |
502 | * @param pCallback pointer to the USB PCD Data OUT Stage Callback function |
503 | */ |
503 | * @retval HAL status |
504 | HAL_StatusTypeDef HAL_PCD_RegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd, |
504 | */ |
505 | pPCD_DataOutStageCallbackTypeDef pCallback) |
505 | HAL_StatusTypeDef HAL_PCD_RegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd, |
506 | { |
506 | pPCD_DataOutStageCallbackTypeDef pCallback) |
507 | HAL_StatusTypeDef status = HAL_OK; |
507 | { |
508 | 508 | HAL_StatusTypeDef status = HAL_OK; |
|
509 | if (pCallback == NULL) |
509 | |
510 | { |
510 | if (pCallback == NULL) |
511 | /* Update the error code */ |
511 | { |
512 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
512 | /* Update the error code */ |
513 | 513 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
514 | return HAL_ERROR; |
514 | |
515 | } |
515 | return HAL_ERROR; |
516 | 516 | } |
|
517 | /* Process locked */ |
517 | |
518 | __HAL_LOCK(hpcd); |
518 | /* Process locked */ |
519 | 519 | __HAL_LOCK(hpcd); |
|
520 | if (hpcd->State == HAL_PCD_STATE_READY) |
520 | |
521 | { |
521 | if (hpcd->State == HAL_PCD_STATE_READY) |
522 | hpcd->DataOutStageCallback = pCallback; |
522 | { |
523 | } |
523 | hpcd->DataOutStageCallback = pCallback; |
524 | else |
524 | } |
525 | { |
525 | else |
526 | /* Update the error code */ |
526 | { |
527 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
527 | /* Update the error code */ |
528 | 528 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
529 | /* Return error status */ |
529 | |
530 | status = HAL_ERROR; |
530 | /* Return error status */ |
531 | } |
531 | status = HAL_ERROR; |
532 | 532 | } |
|
533 | /* Release Lock */ |
533 | |
534 | __HAL_UNLOCK(hpcd); |
534 | /* Release Lock */ |
535 | 535 | __HAL_UNLOCK(hpcd); |
|
536 | return status; |
536 | |
537 | } |
537 | return status; |
538 | 538 | } |
|
539 | /** |
539 | |
540 | * @brief Unregister the USB PCD Data OUT Stage Callback |
540 | /** |
541 | * USB PCD Data OUT Stage Callback is redirected to the weak HAL_PCD_DataOutStageCallback() predefined callback |
541 | * @brief Unregister the USB PCD Data OUT Stage Callback |
542 | * @param hpcd PCD handle |
542 | * USB PCD Data OUT Stage Callback is redirected to the weak HAL_PCD_DataOutStageCallback() predefined callback |
543 | * @retval HAL status |
543 | * @param hpcd PCD handle |
544 | */ |
544 | * @retval HAL status |
545 | HAL_StatusTypeDef HAL_PCD_UnRegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd) |
545 | */ |
546 | { |
546 | HAL_StatusTypeDef HAL_PCD_UnRegisterDataOutStageCallback(PCD_HandleTypeDef *hpcd) |
547 | HAL_StatusTypeDef status = HAL_OK; |
547 | { |
548 | 548 | HAL_StatusTypeDef status = HAL_OK; |
|
549 | /* Process locked */ |
549 | |
550 | __HAL_LOCK(hpcd); |
550 | /* Process locked */ |
551 | 551 | __HAL_LOCK(hpcd); |
|
552 | if (hpcd->State == HAL_PCD_STATE_READY) |
552 | |
553 | { |
553 | if (hpcd->State == HAL_PCD_STATE_READY) |
554 | hpcd->DataOutStageCallback = HAL_PCD_DataOutStageCallback; /* Legacy weak DataOutStageCallback */ |
554 | { |
555 | } |
555 | hpcd->DataOutStageCallback = HAL_PCD_DataOutStageCallback; /* Legacy weak DataOutStageCallback */ |
556 | else |
556 | } |
557 | { |
557 | else |
558 | /* Update the error code */ |
558 | { |
559 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
559 | /* Update the error code */ |
560 | 560 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
561 | /* Return error status */ |
561 | |
562 | status = HAL_ERROR; |
562 | /* Return error status */ |
563 | } |
563 | status = HAL_ERROR; |
564 | 564 | } |
|
565 | /* Release Lock */ |
565 | |
566 | __HAL_UNLOCK(hpcd); |
566 | /* Release Lock */ |
567 | 567 | __HAL_UNLOCK(hpcd); |
|
568 | return status; |
568 | |
569 | } |
569 | return status; |
570 | 570 | } |
|
571 | /** |
571 | |
572 | * @brief Register USB PCD Data IN Stage Callback |
572 | /** |
573 | * To be used instead of the weak HAL_PCD_DataInStageCallback() predefined callback |
573 | * @brief Register USB PCD Data IN Stage Callback |
574 | * @param hpcd PCD handle |
574 | * To be used instead of the weak HAL_PCD_DataInStageCallback() predefined callback |
575 | * @param pCallback pointer to the USB PCD Data IN Stage Callback function |
575 | * @param hpcd PCD handle |
576 | * @retval HAL status |
576 | * @param pCallback pointer to the USB PCD Data IN Stage Callback function |
577 | */ |
577 | * @retval HAL status |
578 | HAL_StatusTypeDef HAL_PCD_RegisterDataInStageCallback(PCD_HandleTypeDef *hpcd, |
578 | */ |
579 | pPCD_DataInStageCallbackTypeDef pCallback) |
579 | HAL_StatusTypeDef HAL_PCD_RegisterDataInStageCallback(PCD_HandleTypeDef *hpcd, |
580 | { |
580 | pPCD_DataInStageCallbackTypeDef pCallback) |
581 | HAL_StatusTypeDef status = HAL_OK; |
581 | { |
582 | 582 | HAL_StatusTypeDef status = HAL_OK; |
|
583 | if (pCallback == NULL) |
583 | |
584 | { |
584 | if (pCallback == NULL) |
585 | /* Update the error code */ |
585 | { |
586 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
586 | /* Update the error code */ |
587 | 587 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
588 | return HAL_ERROR; |
588 | |
589 | } |
589 | return HAL_ERROR; |
590 | 590 | } |
|
591 | /* Process locked */ |
591 | |
592 | __HAL_LOCK(hpcd); |
592 | /* Process locked */ |
593 | 593 | __HAL_LOCK(hpcd); |
|
594 | if (hpcd->State == HAL_PCD_STATE_READY) |
594 | |
595 | { |
595 | if (hpcd->State == HAL_PCD_STATE_READY) |
596 | hpcd->DataInStageCallback = pCallback; |
596 | { |
597 | } |
597 | hpcd->DataInStageCallback = pCallback; |
598 | else |
598 | } |
599 | { |
599 | else |
600 | /* Update the error code */ |
600 | { |
601 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
601 | /* Update the error code */ |
602 | 602 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
603 | /* Return error status */ |
603 | |
604 | status = HAL_ERROR; |
604 | /* Return error status */ |
605 | } |
605 | status = HAL_ERROR; |
606 | 606 | } |
|
607 | /* Release Lock */ |
607 | |
608 | __HAL_UNLOCK(hpcd); |
608 | /* Release Lock */ |
609 | 609 | __HAL_UNLOCK(hpcd); |
|
610 | return status; |
610 | |
611 | } |
611 | return status; |
612 | 612 | } |
|
613 | /** |
613 | |
614 | * @brief Unregister the USB PCD Data IN Stage Callback |
614 | /** |
615 | * USB PCD Data OUT Stage Callback is redirected to the weak HAL_PCD_DataInStageCallback() predefined callback |
615 | * @brief Unregister the USB PCD Data IN Stage Callback |
616 | * @param hpcd PCD handle |
616 | * USB PCD Data OUT Stage Callback is redirected to the weak HAL_PCD_DataInStageCallback() predefined callback |
617 | * @retval HAL status |
617 | * @param hpcd PCD handle |
618 | */ |
618 | * @retval HAL status |
619 | HAL_StatusTypeDef HAL_PCD_UnRegisterDataInStageCallback(PCD_HandleTypeDef *hpcd) |
619 | */ |
620 | { |
620 | HAL_StatusTypeDef HAL_PCD_UnRegisterDataInStageCallback(PCD_HandleTypeDef *hpcd) |
621 | HAL_StatusTypeDef status = HAL_OK; |
621 | { |
622 | 622 | HAL_StatusTypeDef status = HAL_OK; |
|
623 | /* Process locked */ |
623 | |
624 | __HAL_LOCK(hpcd); |
624 | /* Process locked */ |
625 | 625 | __HAL_LOCK(hpcd); |
|
626 | if (hpcd->State == HAL_PCD_STATE_READY) |
626 | |
627 | { |
627 | if (hpcd->State == HAL_PCD_STATE_READY) |
628 | hpcd->DataInStageCallback = HAL_PCD_DataInStageCallback; /* Legacy weak DataInStageCallback */ |
628 | { |
629 | } |
629 | hpcd->DataInStageCallback = HAL_PCD_DataInStageCallback; /* Legacy weak DataInStageCallback */ |
630 | else |
630 | } |
631 | { |
631 | else |
632 | /* Update the error code */ |
632 | { |
633 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
633 | /* Update the error code */ |
634 | 634 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
635 | /* Return error status */ |
635 | |
636 | status = HAL_ERROR; |
636 | /* Return error status */ |
637 | } |
637 | status = HAL_ERROR; |
638 | 638 | } |
|
639 | /* Release Lock */ |
639 | |
640 | __HAL_UNLOCK(hpcd); |
640 | /* Release Lock */ |
641 | 641 | __HAL_UNLOCK(hpcd); |
|
642 | return status; |
642 | |
643 | } |
643 | return status; |
644 | 644 | } |
|
645 | /** |
645 | |
646 | * @brief Register USB PCD Iso OUT incomplete Callback |
646 | /** |
647 | * To be used instead of the weak HAL_PCD_ISOOUTIncompleteCallback() predefined callback |
647 | * @brief Register USB PCD Iso OUT incomplete Callback |
648 | * @param hpcd PCD handle |
648 | * To be used instead of the weak HAL_PCD_ISOOUTIncompleteCallback() predefined callback |
649 | * @param pCallback pointer to the USB PCD Iso OUT incomplete Callback function |
649 | * @param hpcd PCD handle |
650 | * @retval HAL status |
650 | * @param pCallback pointer to the USB PCD Iso OUT incomplete Callback function |
651 | */ |
651 | * @retval HAL status |
652 | HAL_StatusTypeDef HAL_PCD_RegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd, |
652 | */ |
653 | pPCD_IsoOutIncpltCallbackTypeDef pCallback) |
653 | HAL_StatusTypeDef HAL_PCD_RegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd, |
654 | { |
654 | pPCD_IsoOutIncpltCallbackTypeDef pCallback) |
655 | HAL_StatusTypeDef status = HAL_OK; |
655 | { |
656 | 656 | HAL_StatusTypeDef status = HAL_OK; |
|
657 | if (pCallback == NULL) |
657 | |
658 | { |
658 | if (pCallback == NULL) |
659 | /* Update the error code */ |
659 | { |
660 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
660 | /* Update the error code */ |
661 | 661 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
662 | return HAL_ERROR; |
662 | |
663 | } |
663 | return HAL_ERROR; |
664 | 664 | } |
|
665 | /* Process locked */ |
665 | |
666 | __HAL_LOCK(hpcd); |
666 | /* Process locked */ |
667 | 667 | __HAL_LOCK(hpcd); |
|
668 | if (hpcd->State == HAL_PCD_STATE_READY) |
668 | |
669 | { |
669 | if (hpcd->State == HAL_PCD_STATE_READY) |
670 | hpcd->ISOOUTIncompleteCallback = pCallback; |
670 | { |
671 | } |
671 | hpcd->ISOOUTIncompleteCallback = pCallback; |
672 | else |
672 | } |
673 | { |
673 | else |
674 | /* Update the error code */ |
674 | { |
675 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
675 | /* Update the error code */ |
676 | 676 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
677 | /* Return error status */ |
677 | |
678 | status = HAL_ERROR; |
678 | /* Return error status */ |
679 | } |
679 | status = HAL_ERROR; |
680 | 680 | } |
|
681 | /* Release Lock */ |
681 | |
682 | __HAL_UNLOCK(hpcd); |
682 | /* Release Lock */ |
683 | 683 | __HAL_UNLOCK(hpcd); |
|
684 | return status; |
684 | |
685 | } |
685 | return status; |
686 | 686 | } |
|
687 | /** |
687 | |
688 | * @brief Unregister the USB PCD Iso OUT incomplete Callback |
688 | /** |
689 | * USB PCD Iso OUT incomplete Callback is redirected |
689 | * @brief Unregister the USB PCD Iso OUT incomplete Callback |
690 | * to the weak HAL_PCD_ISOOUTIncompleteCallback() predefined callback |
690 | * USB PCD Iso OUT incomplete Callback is redirected |
691 | * @param hpcd PCD handle |
691 | * to the weak HAL_PCD_ISOOUTIncompleteCallback() predefined callback |
692 | * @retval HAL status |
692 | * @param hpcd PCD handle |
693 | */ |
693 | * @retval HAL status |
694 | HAL_StatusTypeDef HAL_PCD_UnRegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd) |
694 | */ |
695 | { |
695 | HAL_StatusTypeDef HAL_PCD_UnRegisterIsoOutIncpltCallback(PCD_HandleTypeDef *hpcd) |
696 | HAL_StatusTypeDef status = HAL_OK; |
696 | { |
697 | 697 | HAL_StatusTypeDef status = HAL_OK; |
|
698 | /* Process locked */ |
698 | |
699 | __HAL_LOCK(hpcd); |
699 | /* Process locked */ |
700 | 700 | __HAL_LOCK(hpcd); |
|
701 | if (hpcd->State == HAL_PCD_STATE_READY) |
701 | |
702 | { |
702 | if (hpcd->State == HAL_PCD_STATE_READY) |
703 | hpcd->ISOOUTIncompleteCallback = HAL_PCD_ISOOUTIncompleteCallback; /* Legacy weak ISOOUTIncompleteCallback */ |
703 | { |
704 | } |
704 | hpcd->ISOOUTIncompleteCallback = HAL_PCD_ISOOUTIncompleteCallback; /* Legacy weak ISOOUTIncompleteCallback */ |
705 | else |
705 | } |
706 | { |
706 | else |
707 | /* Update the error code */ |
707 | { |
708 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
708 | /* Update the error code */ |
709 | 709 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
710 | /* Return error status */ |
710 | |
711 | status = HAL_ERROR; |
711 | /* Return error status */ |
712 | } |
712 | status = HAL_ERROR; |
713 | 713 | } |
|
714 | /* Release Lock */ |
714 | |
715 | __HAL_UNLOCK(hpcd); |
715 | /* Release Lock */ |
716 | 716 | __HAL_UNLOCK(hpcd); |
|
717 | return status; |
717 | |
718 | } |
718 | return status; |
719 | 719 | } |
|
720 | /** |
720 | |
721 | * @brief Register USB PCD Iso IN incomplete Callback |
721 | /** |
722 | * To be used instead of the weak HAL_PCD_ISOINIncompleteCallback() predefined callback |
722 | * @brief Register USB PCD Iso IN incomplete Callback |
723 | * @param hpcd PCD handle |
723 | * To be used instead of the weak HAL_PCD_ISOINIncompleteCallback() predefined callback |
724 | * @param pCallback pointer to the USB PCD Iso IN incomplete Callback function |
724 | * @param hpcd PCD handle |
725 | * @retval HAL status |
725 | * @param pCallback pointer to the USB PCD Iso IN incomplete Callback function |
726 | */ |
726 | * @retval HAL status |
727 | HAL_StatusTypeDef HAL_PCD_RegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd, |
727 | */ |
728 | pPCD_IsoInIncpltCallbackTypeDef pCallback) |
728 | HAL_StatusTypeDef HAL_PCD_RegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd, |
729 | { |
729 | pPCD_IsoInIncpltCallbackTypeDef pCallback) |
730 | HAL_StatusTypeDef status = HAL_OK; |
730 | { |
731 | 731 | HAL_StatusTypeDef status = HAL_OK; |
|
732 | if (pCallback == NULL) |
732 | |
733 | { |
733 | if (pCallback == NULL) |
734 | /* Update the error code */ |
734 | { |
735 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
735 | /* Update the error code */ |
736 | 736 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
737 | return HAL_ERROR; |
737 | |
738 | } |
738 | return HAL_ERROR; |
739 | 739 | } |
|
740 | /* Process locked */ |
740 | |
741 | __HAL_LOCK(hpcd); |
741 | /* Process locked */ |
742 | 742 | __HAL_LOCK(hpcd); |
|
743 | if (hpcd->State == HAL_PCD_STATE_READY) |
743 | |
744 | { |
744 | if (hpcd->State == HAL_PCD_STATE_READY) |
745 | hpcd->ISOINIncompleteCallback = pCallback; |
745 | { |
746 | } |
746 | hpcd->ISOINIncompleteCallback = pCallback; |
747 | else |
747 | } |
748 | { |
748 | else |
749 | /* Update the error code */ |
749 | { |
750 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
750 | /* Update the error code */ |
751 | 751 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
752 | /* Return error status */ |
752 | |
753 | status = HAL_ERROR; |
753 | /* Return error status */ |
754 | } |
754 | status = HAL_ERROR; |
755 | 755 | } |
|
756 | /* Release Lock */ |
756 | |
757 | __HAL_UNLOCK(hpcd); |
757 | /* Release Lock */ |
758 | 758 | __HAL_UNLOCK(hpcd); |
|
759 | return status; |
759 | |
760 | } |
760 | return status; |
761 | 761 | } |
|
762 | /** |
762 | |
763 | * @brief Unregister the USB PCD Iso IN incomplete Callback |
763 | /** |
764 | * USB PCD Iso IN incomplete Callback is redirected |
764 | * @brief Unregister the USB PCD Iso IN incomplete Callback |
765 | * to the weak HAL_PCD_ISOINIncompleteCallback() predefined callback |
765 | * USB PCD Iso IN incomplete Callback is redirected |
766 | * @param hpcd PCD handle |
766 | * to the weak HAL_PCD_ISOINIncompleteCallback() predefined callback |
767 | * @retval HAL status |
767 | * @param hpcd PCD handle |
768 | */ |
768 | * @retval HAL status |
769 | HAL_StatusTypeDef HAL_PCD_UnRegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd) |
769 | */ |
770 | { |
770 | HAL_StatusTypeDef HAL_PCD_UnRegisterIsoInIncpltCallback(PCD_HandleTypeDef *hpcd) |
771 | HAL_StatusTypeDef status = HAL_OK; |
771 | { |
772 | 772 | HAL_StatusTypeDef status = HAL_OK; |
|
773 | /* Process locked */ |
773 | |
774 | __HAL_LOCK(hpcd); |
774 | /* Process locked */ |
775 | 775 | __HAL_LOCK(hpcd); |
|
776 | if (hpcd->State == HAL_PCD_STATE_READY) |
776 | |
777 | { |
777 | if (hpcd->State == HAL_PCD_STATE_READY) |
778 | hpcd->ISOINIncompleteCallback = HAL_PCD_ISOINIncompleteCallback; /* Legacy weak ISOINIncompleteCallback */ |
778 | { |
779 | } |
779 | hpcd->ISOINIncompleteCallback = HAL_PCD_ISOINIncompleteCallback; /* Legacy weak ISOINIncompleteCallback */ |
780 | else |
780 | } |
781 | { |
781 | else |
782 | /* Update the error code */ |
782 | { |
783 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
783 | /* Update the error code */ |
784 | 784 | hpcd->ErrorCode |= HAL_PCD_ERROR_INVALID_CALLBACK; |
|
785 | /* Return error status */ |
785 | |
786 | status = HAL_ERROR; |
786 | /* Return error status */ |
787 | } |
787 | status = HAL_ERROR; |
788 | 788 | } |
|
789 | /* Release Lock */ |
789 | |
790 | __HAL_UNLOCK(hpcd); |
790 | /* Release Lock */ |
791 | 791 | __HAL_UNLOCK(hpcd); |
|
792 | return status; |
792 | |
793 | } |
793 | return status; |
794 | 794 | } |
|
795 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
795 | |
796 | 796 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
|
797 | /** |
797 | |
798 | * @} |
798 | /** |
799 | */ |
799 | * @} |
800 | 800 | */ |
|
801 | /** @defgroup PCD_Exported_Functions_Group2 Input and Output operation functions |
801 | |
802 | * @brief Data transfers functions |
802 | /** @defgroup PCD_Exported_Functions_Group2 Input and Output operation functions |
803 | * |
803 | * @brief Data transfers functions |
804 | @verbatim |
804 | * |
805 | =============================================================================== |
805 | @verbatim |
806 | ##### IO operation functions ##### |
806 | =============================================================================== |
807 | =============================================================================== |
807 | ##### IO operation functions ##### |
808 | [..] |
808 | =============================================================================== |
809 | This subsection provides a set of functions allowing to manage the PCD data |
809 | [..] |
810 | transfers. |
810 | This subsection provides a set of functions allowing to manage the PCD data |
811 | 811 | transfers. |
|
812 | @endverbatim |
812 | |
813 | * @{ |
813 | @endverbatim |
814 | */ |
814 | * @{ |
815 | 815 | */ |
|
816 | /** |
816 | |
817 | * @brief Start the USB device |
817 | /** |
818 | * @param hpcd PCD handle |
818 | * @brief Start the USB device |
819 | * @retval HAL status |
819 | * @param hpcd PCD handle |
820 | */ |
820 | * @retval HAL status |
821 | HAL_StatusTypeDef HAL_PCD_Start(PCD_HandleTypeDef *hpcd) |
821 | */ |
822 | { |
822 | HAL_StatusTypeDef HAL_PCD_Start(PCD_HandleTypeDef *hpcd) |
823 | __HAL_LOCK(hpcd); |
823 | { |
824 | __HAL_PCD_ENABLE(hpcd); |
824 | __HAL_LOCK(hpcd); |
825 | 825 | __HAL_PCD_ENABLE(hpcd); |
|
826 | HAL_PCDEx_SetConnectionState(hpcd, 1U); |
826 | |
827 | 827 | HAL_PCDEx_SetConnectionState(hpcd, 1U); |
|
828 | (void)USB_DevConnect(hpcd->Instance); |
828 | |
829 | __HAL_UNLOCK(hpcd); |
829 | (void)USB_DevConnect(hpcd->Instance); |
830 | 830 | __HAL_UNLOCK(hpcd); |
|
831 | return HAL_OK; |
831 | |
832 | } |
832 | return HAL_OK; |
833 | 833 | } |
|
834 | /** |
834 | |
835 | * @brief Stop the USB device. |
835 | /** |
836 | * @param hpcd PCD handle |
836 | * @brief Stop the USB device. |
837 | * @retval HAL status |
837 | * @param hpcd PCD handle |
838 | */ |
838 | * @retval HAL status |
839 | HAL_StatusTypeDef HAL_PCD_Stop(PCD_HandleTypeDef *hpcd) |
839 | */ |
840 | { |
840 | HAL_StatusTypeDef HAL_PCD_Stop(PCD_HandleTypeDef *hpcd) |
841 | __HAL_LOCK(hpcd); |
841 | { |
842 | __HAL_PCD_DISABLE(hpcd); |
842 | __HAL_LOCK(hpcd); |
843 | 843 | __HAL_PCD_DISABLE(hpcd); |
|
844 | HAL_PCDEx_SetConnectionState(hpcd, 0U); |
844 | |
845 | 845 | HAL_PCDEx_SetConnectionState(hpcd, 0U); |
|
846 | (void)USB_DevDisconnect(hpcd->Instance); |
846 | |
847 | __HAL_UNLOCK(hpcd); |
847 | (void)USB_DevDisconnect(hpcd->Instance); |
848 | 848 | __HAL_UNLOCK(hpcd); |
|
849 | return HAL_OK; |
849 | |
850 | } |
850 | return HAL_OK; |
851 | 851 | } |
|
852 | 852 | ||
853 | /** |
853 | |
854 | * @brief This function handles PCD interrupt request. |
854 | /** |
855 | * @param hpcd PCD handle |
855 | * @brief This function handles PCD interrupt request. |
856 | * @retval HAL status |
856 | * @param hpcd PCD handle |
857 | */ |
857 | * @retval HAL status |
858 | void HAL_PCD_IRQHandler(PCD_HandleTypeDef *hpcd) |
858 | */ |
859 | { |
859 | void HAL_PCD_IRQHandler(PCD_HandleTypeDef *hpcd) |
860 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_CTR)) |
860 | { |
861 | { |
861 | uint32_t wIstr = USB_ReadInterrupts(hpcd->Instance); |
862 | /* servicing of the endpoint correct transfer interrupt */ |
862 | |
863 | /* clear of the CTR flag into the sub */ |
863 | if ((wIstr & USB_ISTR_CTR) == USB_ISTR_CTR) |
864 | (void)PCD_EP_ISR_Handler(hpcd); |
864 | { |
865 | } |
865 | /* servicing of the endpoint correct transfer interrupt */ |
866 | 866 | /* clear of the CTR flag into the sub */ |
|
867 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_RESET)) |
867 | (void)PCD_EP_ISR_Handler(hpcd); |
868 | { |
868 | |
869 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_RESET); |
869 | return; |
870 | 870 | } |
|
871 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
871 | |
872 | hpcd->ResetCallback(hpcd); |
872 | if ((wIstr & USB_ISTR_RESET) == USB_ISTR_RESET) |
873 | #else |
873 | { |
874 | HAL_PCD_ResetCallback(hpcd); |
874 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_RESET); |
875 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
875 | |
876 | 876 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
|
877 | (void)HAL_PCD_SetAddress(hpcd, 0U); |
877 | hpcd->ResetCallback(hpcd); |
878 | } |
878 | #else |
879 | 879 | HAL_PCD_ResetCallback(hpcd); |
|
880 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_PMAOVR)) |
880 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
881 | { |
881 | |
882 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_PMAOVR); |
882 | (void)HAL_PCD_SetAddress(hpcd, 0U); |
883 | } |
883 | |
884 | 884 | return; |
|
885 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_ERR)) |
885 | } |
886 | { |
886 | |
887 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_ERR); |
887 | if ((wIstr & USB_ISTR_PMAOVR) == USB_ISTR_PMAOVR) |
888 | } |
888 | { |
889 | 889 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_PMAOVR); |
|
890 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_WKUP)) |
890 | |
891 | { |
891 | return; |
892 | hpcd->Instance->CNTR &= (uint16_t) ~(USB_CNTR_LPMODE); |
892 | } |
893 | hpcd->Instance->CNTR &= (uint16_t) ~(USB_CNTR_FSUSP); |
893 | |
894 | 894 | if ((wIstr & USB_ISTR_ERR) == USB_ISTR_ERR) |
|
895 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
895 | { |
896 | hpcd->ResumeCallback(hpcd); |
896 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_ERR); |
897 | #else |
897 | |
898 | HAL_PCD_ResumeCallback(hpcd); |
898 | return; |
899 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
899 | } |
900 | 900 | ||
901 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_WKUP); |
901 | if ((wIstr & USB_ISTR_WKUP) == USB_ISTR_WKUP) |
902 | } |
902 | { |
903 | 903 | hpcd->Instance->CNTR &= (uint16_t) ~(USB_CNTR_LPMODE); |
|
904 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_SUSP)) |
904 | hpcd->Instance->CNTR &= (uint16_t) ~(USB_CNTR_FSUSP); |
905 | { |
905 | |
906 | /* Force low-power mode in the macrocell */ |
906 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
907 | hpcd->Instance->CNTR |= (uint16_t)USB_CNTR_FSUSP; |
907 | hpcd->ResumeCallback(hpcd); |
908 | 908 | #else |
|
909 | /* clear of the ISTR bit must be done after setting of CNTR_FSUSP */ |
909 | HAL_PCD_ResumeCallback(hpcd); |
910 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_SUSP); |
910 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
911 | 911 | ||
912 | hpcd->Instance->CNTR |= (uint16_t)USB_CNTR_LPMODE; |
912 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_WKUP); |
913 | 913 | ||
914 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
914 | return; |
915 | hpcd->SuspendCallback(hpcd); |
915 | } |
916 | #else |
916 | |
917 | HAL_PCD_SuspendCallback(hpcd); |
917 | if ((wIstr & USB_ISTR_SUSP) == USB_ISTR_SUSP) |
918 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
918 | { |
919 | } |
919 | /* Force low-power mode in the macrocell */ |
920 | 920 | hpcd->Instance->CNTR |= (uint16_t)USB_CNTR_FSUSP; |
|
921 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_SOF)) |
921 | |
922 | { |
922 | /* clear of the ISTR bit must be done after setting of CNTR_FSUSP */ |
923 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_SOF); |
923 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_SUSP); |
924 | 924 | ||
925 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
925 | hpcd->Instance->CNTR |= (uint16_t)USB_CNTR_LPMODE; |
926 | hpcd->SOFCallback(hpcd); |
926 | |
927 | #else |
927 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
928 | HAL_PCD_SOFCallback(hpcd); |
928 | hpcd->SuspendCallback(hpcd); |
929 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
929 | #else |
930 | } |
930 | HAL_PCD_SuspendCallback(hpcd); |
931 | 931 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
|
932 | if (__HAL_PCD_GET_FLAG(hpcd, USB_ISTR_ESOF)) |
932 | |
933 | { |
933 | return; |
934 | /* clear ESOF flag in ISTR */ |
934 | } |
935 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_ESOF); |
935 | |
936 | } |
936 | if ((wIstr & USB_ISTR_SOF) == USB_ISTR_SOF) |
937 | } |
937 | { |
938 | 938 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_SOF); |
|
939 | 939 | ||
940 | /** |
940 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
941 | * @brief Handles PCD Wakeup interrupt request. |
941 | hpcd->SOFCallback(hpcd); |
942 | * @param hpcd PCD handle |
942 | #else |
943 | * @retval HAL status |
943 | HAL_PCD_SOFCallback(hpcd); |
944 | */ |
944 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
945 | void HAL_PCD_WKUP_IRQHandler(PCD_HandleTypeDef *hpcd) |
945 | |
946 | { |
946 | return; |
947 | /* Clear EXTI pending Bit */ |
947 | } |
948 | __HAL_USB_WAKEUP_EXTI_CLEAR_FLAG(); |
948 | |
949 | } |
949 | if ((wIstr & USB_ISTR_ESOF) == USB_ISTR_ESOF) |
950 | 950 | { |
|
951 | 951 | /* clear ESOF flag in ISTR */ |
|
952 | /** |
952 | __HAL_PCD_CLEAR_FLAG(hpcd, USB_ISTR_ESOF); |
953 | * @brief Data OUT stage callback. |
953 | |
954 | * @param hpcd PCD handle |
954 | return; |
955 | * @param epnum endpoint number |
955 | } |
956 | * @retval None |
956 | } |
957 | */ |
957 | |
958 | __weak void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
958 | |
959 | { |
959 | /** |
960 | /* Prevent unused argument(s) compilation warning */ |
960 | * @brief Handles PCD Wakeup interrupt request. |
961 | UNUSED(hpcd); |
961 | * @param hpcd PCD handle |
962 | UNUSED(epnum); |
962 | * @retval HAL status |
963 | 963 | */ |
|
964 | /* NOTE : This function should not be modified, when the callback is needed, |
964 | void HAL_PCD_WKUP_IRQHandler(PCD_HandleTypeDef *hpcd) |
965 | the HAL_PCD_DataOutStageCallback could be implemented in the user file |
965 | { |
966 | */ |
966 | /* Clear EXTI pending Bit */ |
967 | } |
967 | __HAL_USB_WAKEUP_EXTI_CLEAR_FLAG(); |
968 | 968 | } |
|
969 | /** |
969 | |
970 | * @brief Data IN stage callback |
970 | |
971 | * @param hpcd PCD handle |
971 | /** |
972 | * @param epnum endpoint number |
972 | * @brief Data OUT stage callback. |
973 | * @retval None |
973 | * @param hpcd PCD handle |
974 | */ |
974 | * @param epnum endpoint number |
975 | __weak void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
975 | * @retval None |
976 | { |
976 | */ |
977 | /* Prevent unused argument(s) compilation warning */ |
977 | __weak void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
978 | UNUSED(hpcd); |
978 | { |
979 | UNUSED(epnum); |
979 | /* Prevent unused argument(s) compilation warning */ |
980 | 980 | UNUSED(hpcd); |
|
981 | /* NOTE : This function should not be modified, when the callback is needed, |
981 | UNUSED(epnum); |
982 | the HAL_PCD_DataInStageCallback could be implemented in the user file |
982 | |
983 | */ |
983 | /* NOTE : This function should not be modified, when the callback is needed, |
984 | } |
984 | the HAL_PCD_DataOutStageCallback could be implemented in the user file |
985 | /** |
985 | */ |
986 | * @brief Setup stage callback |
986 | } |
987 | * @param hpcd PCD handle |
987 | |
988 | * @retval None |
988 | /** |
989 | */ |
989 | * @brief Data IN stage callback |
990 | __weak void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd) |
990 | * @param hpcd PCD handle |
991 | { |
991 | * @param epnum endpoint number |
992 | /* Prevent unused argument(s) compilation warning */ |
992 | * @retval None |
993 | UNUSED(hpcd); |
993 | */ |
994 | 994 | __weak void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
|
995 | /* NOTE : This function should not be modified, when the callback is needed, |
995 | { |
996 | the HAL_PCD_SetupStageCallback could be implemented in the user file |
996 | /* Prevent unused argument(s) compilation warning */ |
997 | */ |
997 | UNUSED(hpcd); |
998 | } |
998 | UNUSED(epnum); |
999 | 999 | ||
1000 | /** |
1000 | /* NOTE : This function should not be modified, when the callback is needed, |
1001 | * @brief USB Start Of Frame callback. |
1001 | the HAL_PCD_DataInStageCallback could be implemented in the user file |
1002 | * @param hpcd PCD handle |
1002 | */ |
1003 | * @retval None |
1003 | } |
1004 | */ |
1004 | /** |
1005 | __weak void HAL_PCD_SOFCallback(PCD_HandleTypeDef *hpcd) |
1005 | * @brief Setup stage callback |
1006 | { |
1006 | * @param hpcd PCD handle |
1007 | /* Prevent unused argument(s) compilation warning */ |
1007 | * @retval None |
1008 | UNUSED(hpcd); |
1008 | */ |
1009 | 1009 | __weak void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd) |
|
1010 | /* NOTE : This function should not be modified, when the callback is needed, |
1010 | { |
1011 | the HAL_PCD_SOFCallback could be implemented in the user file |
1011 | /* Prevent unused argument(s) compilation warning */ |
1012 | */ |
1012 | UNUSED(hpcd); |
1013 | } |
1013 | |
1014 | 1014 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1015 | /** |
1015 | the HAL_PCD_SetupStageCallback could be implemented in the user file |
1016 | * @brief USB Reset callback. |
1016 | */ |
1017 | * @param hpcd PCD handle |
1017 | } |
1018 | * @retval None |
1018 | |
1019 | */ |
1019 | /** |
1020 | __weak void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd) |
1020 | * @brief USB Start Of Frame callback. |
1021 | { |
1021 | * @param hpcd PCD handle |
1022 | /* Prevent unused argument(s) compilation warning */ |
1022 | * @retval None |
1023 | UNUSED(hpcd); |
1023 | */ |
1024 | 1024 | __weak void HAL_PCD_SOFCallback(PCD_HandleTypeDef *hpcd) |
|
1025 | /* NOTE : This function should not be modified, when the callback is needed, |
1025 | { |
1026 | the HAL_PCD_ResetCallback could be implemented in the user file |
1026 | /* Prevent unused argument(s) compilation warning */ |
1027 | */ |
1027 | UNUSED(hpcd); |
1028 | } |
1028 | |
1029 | 1029 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1030 | /** |
1030 | the HAL_PCD_SOFCallback could be implemented in the user file |
1031 | * @brief Suspend event callback. |
1031 | */ |
1032 | * @param hpcd PCD handle |
1032 | } |
1033 | * @retval None |
1033 | |
1034 | */ |
1034 | /** |
1035 | __weak void HAL_PCD_SuspendCallback(PCD_HandleTypeDef *hpcd) |
1035 | * @brief USB Reset callback. |
1036 | { |
1036 | * @param hpcd PCD handle |
1037 | /* Prevent unused argument(s) compilation warning */ |
1037 | * @retval None |
1038 | UNUSED(hpcd); |
1038 | */ |
1039 | 1039 | __weak void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd) |
|
1040 | /* NOTE : This function should not be modified, when the callback is needed, |
1040 | { |
1041 | the HAL_PCD_SuspendCallback could be implemented in the user file |
1041 | /* Prevent unused argument(s) compilation warning */ |
1042 | */ |
1042 | UNUSED(hpcd); |
1043 | } |
1043 | |
1044 | 1044 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1045 | /** |
1045 | the HAL_PCD_ResetCallback could be implemented in the user file |
1046 | * @brief Resume event callback. |
1046 | */ |
1047 | * @param hpcd PCD handle |
1047 | } |
1048 | * @retval None |
1048 | |
1049 | */ |
1049 | /** |
1050 | __weak void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd) |
1050 | * @brief Suspend event callback. |
1051 | { |
1051 | * @param hpcd PCD handle |
1052 | /* Prevent unused argument(s) compilation warning */ |
1052 | * @retval None |
1053 | UNUSED(hpcd); |
1053 | */ |
1054 | 1054 | __weak void HAL_PCD_SuspendCallback(PCD_HandleTypeDef *hpcd) |
|
1055 | /* NOTE : This function should not be modified, when the callback is needed, |
1055 | { |
1056 | the HAL_PCD_ResumeCallback could be implemented in the user file |
1056 | /* Prevent unused argument(s) compilation warning */ |
1057 | */ |
1057 | UNUSED(hpcd); |
1058 | } |
1058 | |
1059 | 1059 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1060 | /** |
1060 | the HAL_PCD_SuspendCallback could be implemented in the user file |
1061 | * @brief Incomplete ISO OUT callback. |
1061 | */ |
1062 | * @param hpcd PCD handle |
1062 | } |
1063 | * @param epnum endpoint number |
1063 | |
1064 | * @retval None |
1064 | /** |
1065 | */ |
1065 | * @brief Resume event callback. |
1066 | __weak void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
1066 | * @param hpcd PCD handle |
1067 | { |
1067 | * @retval None |
1068 | /* Prevent unused argument(s) compilation warning */ |
1068 | */ |
1069 | UNUSED(hpcd); |
1069 | __weak void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd) |
1070 | UNUSED(epnum); |
1070 | { |
1071 | 1071 | /* Prevent unused argument(s) compilation warning */ |
|
1072 | /* NOTE : This function should not be modified, when the callback is needed, |
1072 | UNUSED(hpcd); |
1073 | the HAL_PCD_ISOOUTIncompleteCallback could be implemented in the user file |
1073 | |
1074 | */ |
1074 | /* NOTE : This function should not be modified, when the callback is needed, |
1075 | } |
1075 | the HAL_PCD_ResumeCallback could be implemented in the user file |
1076 | 1076 | */ |
|
1077 | /** |
1077 | } |
1078 | * @brief Incomplete ISO IN callback. |
1078 | |
1079 | * @param hpcd PCD handle |
1079 | /** |
1080 | * @param epnum endpoint number |
1080 | * @brief Incomplete ISO OUT callback. |
1081 | * @retval None |
1081 | * @param hpcd PCD handle |
1082 | */ |
1082 | * @param epnum endpoint number |
1083 | __weak void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
1083 | * @retval None |
1084 | { |
1084 | */ |
1085 | /* Prevent unused argument(s) compilation warning */ |
1085 | __weak void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
1086 | UNUSED(hpcd); |
1086 | { |
1087 | UNUSED(epnum); |
1087 | /* Prevent unused argument(s) compilation warning */ |
1088 | 1088 | UNUSED(hpcd); |
|
1089 | /* NOTE : This function should not be modified, when the callback is needed, |
1089 | UNUSED(epnum); |
1090 | the HAL_PCD_ISOINIncompleteCallback could be implemented in the user file |
1090 | |
1091 | */ |
1091 | /* NOTE : This function should not be modified, when the callback is needed, |
1092 | } |
1092 | the HAL_PCD_ISOOUTIncompleteCallback could be implemented in the user file |
1093 | 1093 | */ |
|
1094 | /** |
1094 | } |
1095 | * @brief Connection event callback. |
1095 | |
1096 | * @param hpcd PCD handle |
1096 | /** |
1097 | * @retval None |
1097 | * @brief Incomplete ISO IN callback. |
1098 | */ |
1098 | * @param hpcd PCD handle |
1099 | __weak void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd) |
1099 | * @param epnum endpoint number |
1100 | { |
1100 | * @retval None |
1101 | /* Prevent unused argument(s) compilation warning */ |
1101 | */ |
1102 | UNUSED(hpcd); |
1102 | __weak void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum) |
1103 | 1103 | { |
|
1104 | /* NOTE : This function should not be modified, when the callback is needed, |
1104 | /* Prevent unused argument(s) compilation warning */ |
1105 | the HAL_PCD_ConnectCallback could be implemented in the user file |
1105 | UNUSED(hpcd); |
1106 | */ |
1106 | UNUSED(epnum); |
1107 | } |
1107 | |
1108 | 1108 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1109 | /** |
1109 | the HAL_PCD_ISOINIncompleteCallback could be implemented in the user file |
1110 | * @brief Disconnection event callback. |
1110 | */ |
1111 | * @param hpcd PCD handle |
1111 | } |
1112 | * @retval None |
1112 | |
1113 | */ |
1113 | /** |
1114 | __weak void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd) |
1114 | * @brief Connection event callback. |
1115 | { |
1115 | * @param hpcd PCD handle |
1116 | /* Prevent unused argument(s) compilation warning */ |
1116 | * @retval None |
1117 | UNUSED(hpcd); |
1117 | */ |
1118 | 1118 | __weak void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd) |
|
1119 | /* NOTE : This function should not be modified, when the callback is needed, |
1119 | { |
1120 | the HAL_PCD_DisconnectCallback could be implemented in the user file |
1120 | /* Prevent unused argument(s) compilation warning */ |
1121 | */ |
1121 | UNUSED(hpcd); |
1122 | } |
1122 | |
1123 | 1123 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1124 | /** |
1124 | the HAL_PCD_ConnectCallback could be implemented in the user file |
1125 | * @} |
1125 | */ |
1126 | */ |
1126 | } |
1127 | 1127 | ||
1128 | /** @defgroup PCD_Exported_Functions_Group3 Peripheral Control functions |
1128 | /** |
1129 | * @brief management functions |
1129 | * @brief Disconnection event callback. |
1130 | * |
1130 | * @param hpcd PCD handle |
1131 | @verbatim |
1131 | * @retval None |
1132 | =============================================================================== |
1132 | */ |
1133 | ##### Peripheral Control functions ##### |
1133 | __weak void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd) |
1134 | =============================================================================== |
1134 | { |
1135 | [..] |
1135 | /* Prevent unused argument(s) compilation warning */ |
1136 | This subsection provides a set of functions allowing to control the PCD data |
1136 | UNUSED(hpcd); |
1137 | transfers. |
1137 | |
1138 | 1138 | /* NOTE : This function should not be modified, when the callback is needed, |
|
1139 | @endverbatim |
1139 | the HAL_PCD_DisconnectCallback could be implemented in the user file |
1140 | * @{ |
1140 | */ |
1141 | */ |
1141 | } |
1142 | 1142 | ||
1143 | /** |
1143 | /** |
1144 | * @brief Connect the USB device |
1144 | * @} |
1145 | * @param hpcd PCD handle |
1145 | */ |
1146 | * @retval HAL status |
1146 | |
1147 | */ |
1147 | /** @defgroup PCD_Exported_Functions_Group3 Peripheral Control functions |
1148 | HAL_StatusTypeDef HAL_PCD_DevConnect(PCD_HandleTypeDef *hpcd) |
1148 | * @brief management functions |
1149 | { |
1149 | * |
1150 | __HAL_LOCK(hpcd); |
1150 | @verbatim |
1151 | 1151 | =============================================================================== |
|
1152 | HAL_PCDEx_SetConnectionState(hpcd, 1U); |
1152 | ##### Peripheral Control functions ##### |
1153 | 1153 | =============================================================================== |
|
1154 | (void)USB_DevConnect(hpcd->Instance); |
1154 | [..] |
1155 | __HAL_UNLOCK(hpcd); |
1155 | This subsection provides a set of functions allowing to control the PCD data |
1156 | 1156 | transfers. |
|
1157 | return HAL_OK; |
1157 | |
1158 | } |
1158 | @endverbatim |
1159 | 1159 | * @{ |
|
1160 | /** |
1160 | */ |
1161 | * @brief Disconnect the USB device. |
1161 | |
1162 | * @param hpcd PCD handle |
1162 | /** |
1163 | * @retval HAL status |
1163 | * @brief Connect the USB device |
1164 | */ |
1164 | * @param hpcd PCD handle |
1165 | HAL_StatusTypeDef HAL_PCD_DevDisconnect(PCD_HandleTypeDef *hpcd) |
1165 | * @retval HAL status |
1166 | { |
1166 | */ |
1167 | __HAL_LOCK(hpcd); |
1167 | HAL_StatusTypeDef HAL_PCD_DevConnect(PCD_HandleTypeDef *hpcd) |
1168 | 1168 | { |
|
1169 | HAL_PCDEx_SetConnectionState(hpcd, 0U); |
1169 | __HAL_LOCK(hpcd); |
1170 | 1170 | ||
1171 | (void)USB_DevDisconnect(hpcd->Instance); |
1171 | HAL_PCDEx_SetConnectionState(hpcd, 1U); |
1172 | __HAL_UNLOCK(hpcd); |
1172 | |
1173 | 1173 | (void)USB_DevConnect(hpcd->Instance); |
|
1174 | return HAL_OK; |
1174 | __HAL_UNLOCK(hpcd); |
1175 | } |
1175 | |
1176 | 1176 | return HAL_OK; |
|
1177 | /** |
1177 | } |
1178 | * @brief Set the USB Device address. |
1178 | |
1179 | * @param hpcd PCD handle |
1179 | /** |
1180 | * @param address new device address |
1180 | * @brief Disconnect the USB device. |
1181 | * @retval HAL status |
1181 | * @param hpcd PCD handle |
1182 | */ |
1182 | * @retval HAL status |
1183 | HAL_StatusTypeDef HAL_PCD_SetAddress(PCD_HandleTypeDef *hpcd, uint8_t address) |
1183 | */ |
1184 | { |
1184 | HAL_StatusTypeDef HAL_PCD_DevDisconnect(PCD_HandleTypeDef *hpcd) |
1185 | __HAL_LOCK(hpcd); |
1185 | { |
1186 | hpcd->USB_Address = address; |
1186 | __HAL_LOCK(hpcd); |
1187 | (void)USB_SetDevAddress(hpcd->Instance, address); |
1187 | |
1188 | __HAL_UNLOCK(hpcd); |
1188 | HAL_PCDEx_SetConnectionState(hpcd, 0U); |
1189 | 1189 | ||
1190 | return HAL_OK; |
1190 | (void)USB_DevDisconnect(hpcd->Instance); |
1191 | } |
1191 | __HAL_UNLOCK(hpcd); |
1192 | /** |
1192 | |
1193 | * @brief Open and configure an endpoint. |
1193 | return HAL_OK; |
1194 | * @param hpcd PCD handle |
1194 | } |
1195 | * @param ep_addr endpoint address |
1195 | |
1196 | * @param ep_mps endpoint max packet size |
1196 | /** |
1197 | * @param ep_type endpoint type |
1197 | * @brief Set the USB Device address. |
1198 | * @retval HAL status |
1198 | * @param hpcd PCD handle |
1199 | */ |
1199 | * @param address new device address |
1200 | HAL_StatusTypeDef HAL_PCD_EP_Open(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, |
1200 | * @retval HAL status |
1201 | uint16_t ep_mps, uint8_t ep_type) |
1201 | */ |
1202 | { |
1202 | HAL_StatusTypeDef HAL_PCD_SetAddress(PCD_HandleTypeDef *hpcd, uint8_t address) |
1203 | HAL_StatusTypeDef ret = HAL_OK; |
1203 | { |
1204 | PCD_EPTypeDef *ep; |
1204 | __HAL_LOCK(hpcd); |
1205 | 1205 | hpcd->USB_Address = address; |
|
1206 | if ((ep_addr & 0x80U) == 0x80U) |
1206 | (void)USB_SetDevAddress(hpcd->Instance, address); |
1207 | { |
1207 | __HAL_UNLOCK(hpcd); |
1208 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1208 | |
1209 | ep->is_in = 1U; |
1209 | return HAL_OK; |
1210 | } |
1210 | } |
1211 | else |
1211 | /** |
1212 | { |
1212 | * @brief Open and configure an endpoint. |
1213 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1213 | * @param hpcd PCD handle |
1214 | ep->is_in = 0U; |
1214 | * @param ep_addr endpoint address |
1215 | } |
1215 | * @param ep_mps endpoint max packet size |
1216 | 1216 | * @param ep_type endpoint type |
|
1217 | ep->num = ep_addr & EP_ADDR_MSK; |
1217 | * @retval HAL status |
1218 | ep->maxpacket = ep_mps; |
1218 | */ |
1219 | ep->type = ep_type; |
1219 | HAL_StatusTypeDef HAL_PCD_EP_Open(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, |
1220 | 1220 | uint16_t ep_mps, uint8_t ep_type) |
|
1221 | if (ep->is_in != 0U) |
1221 | { |
1222 | { |
1222 | HAL_StatusTypeDef ret = HAL_OK; |
1223 | /* Assign a Tx FIFO */ |
1223 | PCD_EPTypeDef *ep; |
1224 | ep->tx_fifo_num = ep->num; |
1224 | |
1225 | } |
1225 | if ((ep_addr & 0x80U) == 0x80U) |
1226 | /* Set initial data PID. */ |
1226 | { |
1227 | if (ep_type == EP_TYPE_BULK) |
1227 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1228 | { |
1228 | ep->is_in = 1U; |
1229 | ep->data_pid_start = 0U; |
1229 | } |
1230 | } |
1230 | else |
1231 | 1231 | { |
|
1232 | __HAL_LOCK(hpcd); |
1232 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1233 | (void)USB_ActivateEndpoint(hpcd->Instance, ep); |
1233 | ep->is_in = 0U; |
1234 | __HAL_UNLOCK(hpcd); |
1234 | } |
1235 | 1235 | ||
1236 | return ret; |
1236 | ep->num = ep_addr & EP_ADDR_MSK; |
1237 | } |
1237 | ep->maxpacket = ep_mps; |
1238 | 1238 | ep->type = ep_type; |
|
1239 | /** |
1239 | |
1240 | * @brief Deactivate an endpoint. |
1240 | /* Set initial data PID. */ |
1241 | * @param hpcd PCD handle |
1241 | if (ep_type == EP_TYPE_BULK) |
1242 | * @param ep_addr endpoint address |
1242 | { |
1243 | * @retval HAL status |
1243 | ep->data_pid_start = 0U; |
1244 | */ |
1244 | } |
1245 | HAL_StatusTypeDef HAL_PCD_EP_Close(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1245 | |
1246 | { |
1246 | __HAL_LOCK(hpcd); |
1247 | PCD_EPTypeDef *ep; |
1247 | (void)USB_ActivateEndpoint(hpcd->Instance, ep); |
1248 | 1248 | __HAL_UNLOCK(hpcd); |
|
1249 | if ((ep_addr & 0x80U) == 0x80U) |
1249 | |
1250 | { |
1250 | return ret; |
1251 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1251 | } |
1252 | ep->is_in = 1U; |
1252 | |
1253 | } |
1253 | /** |
1254 | else |
1254 | * @brief Deactivate an endpoint. |
1255 | { |
1255 | * @param hpcd PCD handle |
1256 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1256 | * @param ep_addr endpoint address |
1257 | ep->is_in = 0U; |
1257 | * @retval HAL status |
1258 | } |
1258 | */ |
1259 | ep->num = ep_addr & EP_ADDR_MSK; |
1259 | HAL_StatusTypeDef HAL_PCD_EP_Close(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1260 | 1260 | { |
|
1261 | __HAL_LOCK(hpcd); |
1261 | PCD_EPTypeDef *ep; |
1262 | (void)USB_DeactivateEndpoint(hpcd->Instance, ep); |
1262 | |
1263 | __HAL_UNLOCK(hpcd); |
1263 | if ((ep_addr & 0x80U) == 0x80U) |
1264 | return HAL_OK; |
1264 | { |
1265 | } |
1265 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1266 | 1266 | ep->is_in = 1U; |
|
1267 | 1267 | } |
|
1268 | /** |
1268 | else |
1269 | * @brief Receive an amount of data. |
1269 | { |
1270 | * @param hpcd PCD handle |
1270 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1271 | * @param ep_addr endpoint address |
1271 | ep->is_in = 0U; |
1272 | * @param pBuf pointer to the reception buffer |
1272 | } |
1273 | * @param len amount of data to be received |
1273 | ep->num = ep_addr & EP_ADDR_MSK; |
1274 | * @retval HAL status |
1274 | |
1275 | */ |
1275 | __HAL_LOCK(hpcd); |
1276 | HAL_StatusTypeDef HAL_PCD_EP_Receive(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len) |
1276 | (void)USB_DeactivateEndpoint(hpcd->Instance, ep); |
1277 | { |
1277 | __HAL_UNLOCK(hpcd); |
1278 | PCD_EPTypeDef *ep; |
1278 | return HAL_OK; |
1279 | 1279 | } |
|
1280 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1280 | |
1281 | 1281 | ||
1282 | /*setup and start the Xfer */ |
1282 | /** |
1283 | ep->xfer_buff = pBuf; |
1283 | * @brief Receive an amount of data. |
1284 | ep->xfer_len = len; |
1284 | * @param hpcd PCD handle |
1285 | ep->xfer_count = 0U; |
1285 | * @param ep_addr endpoint address |
1286 | ep->is_in = 0U; |
1286 | * @param pBuf pointer to the reception buffer |
1287 | ep->num = ep_addr & EP_ADDR_MSK; |
1287 | * @param len amount of data to be received |
1288 | 1288 | * @retval HAL status |
|
1289 | if ((ep_addr & EP_ADDR_MSK) == 0U) |
1289 | */ |
1290 | { |
1290 | HAL_StatusTypeDef HAL_PCD_EP_Receive(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len) |
1291 | (void)USB_EP0StartXfer(hpcd->Instance, ep); |
1291 | { |
1292 | } |
1292 | PCD_EPTypeDef *ep; |
1293 | else |
1293 | |
1294 | { |
1294 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1295 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1295 | |
1296 | } |
1296 | /*setup and start the Xfer */ |
1297 | 1297 | ep->xfer_buff = pBuf; |
|
1298 | return HAL_OK; |
1298 | ep->xfer_len = len; |
1299 | } |
1299 | ep->xfer_count = 0U; |
1300 | 1300 | ep->is_in = 0U; |
|
1301 | /** |
1301 | ep->num = ep_addr & EP_ADDR_MSK; |
1302 | * @brief Get Received Data Size |
1302 | |
1303 | * @param hpcd PCD handle |
1303 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1304 | * @param ep_addr endpoint address |
1304 | |
1305 | * @retval Data Size |
1305 | return HAL_OK; |
1306 | */ |
1306 | } |
1307 | uint32_t HAL_PCD_EP_GetRxCount(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1307 | |
1308 | { |
1308 | /** |
1309 | return hpcd->OUT_ep[ep_addr & EP_ADDR_MSK].xfer_count; |
1309 | * @brief Get Received Data Size |
1310 | } |
1310 | * @param hpcd PCD handle |
1311 | /** |
1311 | * @param ep_addr endpoint address |
1312 | * @brief Send an amount of data |
1312 | * @retval Data Size |
1313 | * @param hpcd PCD handle |
1313 | */ |
1314 | * @param ep_addr endpoint address |
1314 | uint32_t HAL_PCD_EP_GetRxCount(PCD_HandleTypeDef const *hpcd, uint8_t ep_addr) |
1315 | * @param pBuf pointer to the transmission buffer |
1315 | { |
1316 | * @param len amount of data to be sent |
1316 | return hpcd->OUT_ep[ep_addr & EP_ADDR_MSK].xfer_count; |
1317 | * @retval HAL status |
1317 | } |
1318 | */ |
1318 | /** |
1319 | HAL_StatusTypeDef HAL_PCD_EP_Transmit(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len) |
1319 | * @brief Send an amount of data |
1320 | { |
1320 | * @param hpcd PCD handle |
1321 | PCD_EPTypeDef *ep; |
1321 | * @param ep_addr endpoint address |
1322 | 1322 | * @param pBuf pointer to the transmission buffer |
|
1323 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1323 | * @param len amount of data to be sent |
1324 | 1324 | * @retval HAL status |
|
1325 | /*setup and start the Xfer */ |
1325 | */ |
1326 | ep->xfer_buff = pBuf; |
1326 | HAL_StatusTypeDef HAL_PCD_EP_Transmit(PCD_HandleTypeDef *hpcd, uint8_t ep_addr, uint8_t *pBuf, uint32_t len) |
1327 | ep->xfer_len = len; |
1327 | { |
1328 | ep->xfer_fill_db = 1U; |
1328 | PCD_EPTypeDef *ep; |
1329 | ep->xfer_len_db = len; |
1329 | |
1330 | ep->xfer_count = 0U; |
1330 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1331 | ep->is_in = 1U; |
1331 | |
1332 | ep->num = ep_addr & EP_ADDR_MSK; |
1332 | /*setup and start the Xfer */ |
1333 | 1333 | ep->xfer_buff = pBuf; |
|
1334 | if ((ep_addr & EP_ADDR_MSK) == 0U) |
1334 | ep->xfer_len = len; |
1335 | { |
1335 | ep->xfer_fill_db = 1U; |
1336 | (void)USB_EP0StartXfer(hpcd->Instance, ep); |
1336 | ep->xfer_len_db = len; |
1337 | } |
1337 | ep->xfer_count = 0U; |
1338 | else |
1338 | ep->is_in = 1U; |
1339 | { |
1339 | ep->num = ep_addr & EP_ADDR_MSK; |
1340 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1340 | |
1341 | } |
1341 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1342 | 1342 | ||
1343 | return HAL_OK; |
1343 | return HAL_OK; |
1344 | } |
1344 | } |
1345 | 1345 | ||
1346 | /** |
1346 | /** |
1347 | * @brief Set a STALL condition over an endpoint |
1347 | * @brief Set a STALL condition over an endpoint |
1348 | * @param hpcd PCD handle |
1348 | * @param hpcd PCD handle |
1349 | * @param ep_addr endpoint address |
1349 | * @param ep_addr endpoint address |
1350 | * @retval HAL status |
1350 | * @retval HAL status |
1351 | */ |
1351 | */ |
1352 | HAL_StatusTypeDef HAL_PCD_EP_SetStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1352 | HAL_StatusTypeDef HAL_PCD_EP_SetStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1353 | { |
1353 | { |
1354 | PCD_EPTypeDef *ep; |
1354 | PCD_EPTypeDef *ep; |
1355 | 1355 | ||
1356 | if (((uint32_t)ep_addr & EP_ADDR_MSK) > hpcd->Init.dev_endpoints) |
1356 | if (((uint32_t)ep_addr & EP_ADDR_MSK) > hpcd->Init.dev_endpoints) |
1357 | { |
1357 | { |
1358 | return HAL_ERROR; |
1358 | return HAL_ERROR; |
1359 | } |
1359 | } |
1360 | 1360 | ||
1361 | if ((0x80U & ep_addr) == 0x80U) |
1361 | if ((0x80U & ep_addr) == 0x80U) |
1362 | { |
1362 | { |
1363 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1363 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1364 | ep->is_in = 1U; |
1364 | ep->is_in = 1U; |
1365 | } |
1365 | } |
1366 | else |
1366 | else |
1367 | { |
1367 | { |
1368 | ep = &hpcd->OUT_ep[ep_addr]; |
1368 | ep = &hpcd->OUT_ep[ep_addr]; |
1369 | ep->is_in = 0U; |
1369 | ep->is_in = 0U; |
1370 | } |
1370 | } |
1371 | 1371 | ||
1372 | ep->is_stall = 1U; |
1372 | ep->is_stall = 1U; |
1373 | ep->num = ep_addr & EP_ADDR_MSK; |
1373 | ep->num = ep_addr & EP_ADDR_MSK; |
1374 | 1374 | ||
1375 | __HAL_LOCK(hpcd); |
1375 | __HAL_LOCK(hpcd); |
1376 | 1376 | ||
1377 | (void)USB_EPSetStall(hpcd->Instance, ep); |
1377 | (void)USB_EPSetStall(hpcd->Instance, ep); |
1378 | 1378 | ||
1379 | __HAL_UNLOCK(hpcd); |
1379 | __HAL_UNLOCK(hpcd); |
1380 | 1380 | ||
1381 | return HAL_OK; |
1381 | return HAL_OK; |
1382 | } |
1382 | } |
1383 | 1383 | ||
1384 | /** |
1384 | /** |
1385 | * @brief Clear a STALL condition over in an endpoint |
1385 | * @brief Clear a STALL condition over in an endpoint |
1386 | * @param hpcd PCD handle |
1386 | * @param hpcd PCD handle |
1387 | * @param ep_addr endpoint address |
1387 | * @param ep_addr endpoint address |
1388 | * @retval HAL status |
1388 | * @retval HAL status |
1389 | */ |
1389 | */ |
1390 | HAL_StatusTypeDef HAL_PCD_EP_ClrStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1390 | HAL_StatusTypeDef HAL_PCD_EP_ClrStall(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1391 | { |
1391 | { |
1392 | PCD_EPTypeDef *ep; |
1392 | PCD_EPTypeDef *ep; |
1393 | 1393 | ||
1394 | if (((uint32_t)ep_addr & 0x0FU) > hpcd->Init.dev_endpoints) |
1394 | if (((uint32_t)ep_addr & 0x0FU) > hpcd->Init.dev_endpoints) |
1395 | { |
1395 | { |
1396 | return HAL_ERROR; |
1396 | return HAL_ERROR; |
1397 | } |
1397 | } |
1398 | 1398 | ||
1399 | if ((0x80U & ep_addr) == 0x80U) |
1399 | if ((0x80U & ep_addr) == 0x80U) |
1400 | { |
1400 | { |
1401 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1401 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1402 | ep->is_in = 1U; |
1402 | ep->is_in = 1U; |
1403 | } |
1403 | } |
1404 | else |
1404 | else |
1405 | { |
1405 | { |
1406 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1406 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1407 | ep->is_in = 0U; |
1407 | ep->is_in = 0U; |
1408 | } |
1408 | } |
1409 | 1409 | ||
1410 | ep->is_stall = 0U; |
1410 | ep->is_stall = 0U; |
1411 | ep->num = ep_addr & EP_ADDR_MSK; |
1411 | ep->num = ep_addr & EP_ADDR_MSK; |
1412 | 1412 | ||
1413 | __HAL_LOCK(hpcd); |
1413 | __HAL_LOCK(hpcd); |
1414 | (void)USB_EPClearStall(hpcd->Instance, ep); |
1414 | (void)USB_EPClearStall(hpcd->Instance, ep); |
1415 | __HAL_UNLOCK(hpcd); |
1415 | __HAL_UNLOCK(hpcd); |
1416 | 1416 | ||
1417 | return HAL_OK; |
1417 | return HAL_OK; |
1418 | } |
1418 | } |
1419 | 1419 | ||
1420 | /** |
1420 | /** |
1421 | * @brief Flush an endpoint |
1421 | * @brief Abort an USB EP transaction. |
1422 | * @param hpcd PCD handle |
1422 | * @param hpcd PCD handle |
1423 | * @param ep_addr endpoint address |
1423 | * @param ep_addr endpoint address |
1424 | * @retval HAL status |
1424 | * @retval HAL status |
1425 | */ |
1425 | */ |
1426 | HAL_StatusTypeDef HAL_PCD_EP_Flush(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1426 | HAL_StatusTypeDef HAL_PCD_EP_Abort(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1427 | { |
1427 | { |
1428 | /* Prevent unused argument(s) compilation warning */ |
1428 | HAL_StatusTypeDef ret; |
1429 | UNUSED(hpcd); |
1429 | PCD_EPTypeDef *ep; |
1430 | UNUSED(ep_addr); |
1430 | |
1431 | 1431 | if ((0x80U & ep_addr) == 0x80U) |
|
1432 | return HAL_OK; |
1432 | { |
1433 | } |
1433 | ep = &hpcd->IN_ep[ep_addr & EP_ADDR_MSK]; |
1434 | 1434 | } |
|
1435 | /** |
1435 | else |
1436 | * @brief Activate remote wakeup signalling |
1436 | { |
1437 | * @param hpcd PCD handle |
1437 | ep = &hpcd->OUT_ep[ep_addr & EP_ADDR_MSK]; |
1438 | * @retval HAL status |
1438 | } |
1439 | */ |
1439 | |
1440 | HAL_StatusTypeDef HAL_PCD_ActivateRemoteWakeup(PCD_HandleTypeDef *hpcd) |
1440 | /* Stop Xfer */ |
1441 | { |
1441 | ret = USB_EPStopXfer(hpcd->Instance, ep); |
1442 | return (USB_ActivateRemoteWakeup(hpcd->Instance)); |
1442 | |
1443 | } |
1443 | return ret; |
1444 | 1444 | } |
|
1445 | /** |
1445 | |
1446 | * @brief De-activate remote wakeup signalling. |
1446 | /** |
1447 | * @param hpcd PCD handle |
1447 | * @brief Flush an endpoint |
1448 | * @retval HAL status |
1448 | * @param hpcd PCD handle |
1449 | */ |
1449 | * @param ep_addr endpoint address |
1450 | HAL_StatusTypeDef HAL_PCD_DeActivateRemoteWakeup(PCD_HandleTypeDef *hpcd) |
1450 | * @retval HAL status |
1451 | { |
1451 | */ |
1452 | return (USB_DeActivateRemoteWakeup(hpcd->Instance)); |
1452 | HAL_StatusTypeDef HAL_PCD_EP_Flush(PCD_HandleTypeDef *hpcd, uint8_t ep_addr) |
1453 | } |
1453 | { |
1454 | 1454 | __HAL_LOCK(hpcd); |
|
1455 | /** |
1455 | |
1456 | * @} |
1456 | if ((ep_addr & 0x80U) == 0x80U) |
1457 | */ |
1457 | { |
1458 | 1458 | (void)USB_FlushTxFifo(hpcd->Instance, (uint32_t)ep_addr & EP_ADDR_MSK); |
|
1459 | /** @defgroup PCD_Exported_Functions_Group4 Peripheral State functions |
1459 | } |
1460 | * @brief Peripheral State functions |
1460 | else |
1461 | * |
1461 | { |
1462 | @verbatim |
1462 | (void)USB_FlushRxFifo(hpcd->Instance); |
1463 | =============================================================================== |
1463 | } |
1464 | ##### Peripheral State functions ##### |
1464 | |
1465 | =============================================================================== |
1465 | __HAL_UNLOCK(hpcd); |
1466 | [..] |
1466 | |
1467 | This subsection permits to get in run-time the status of the peripheral |
1467 | return HAL_OK; |
1468 | and the data flow. |
1468 | } |
1469 | 1469 | ||
1470 | @endverbatim |
1470 | /** |
1471 | * @{ |
1471 | * @brief Activate remote wakeup signalling |
1472 | */ |
1472 | * @param hpcd PCD handle |
1473 | 1473 | * @retval HAL status |
|
1474 | /** |
1474 | */ |
1475 | * @brief Return the PCD handle state. |
1475 | HAL_StatusTypeDef HAL_PCD_ActivateRemoteWakeup(PCD_HandleTypeDef *hpcd) |
1476 | * @param hpcd PCD handle |
1476 | { |
1477 | * @retval HAL state |
1477 | return (USB_ActivateRemoteWakeup(hpcd->Instance)); |
1478 | */ |
1478 | } |
1479 | PCD_StateTypeDef HAL_PCD_GetState(PCD_HandleTypeDef *hpcd) |
1479 | |
1480 | { |
1480 | /** |
1481 | return hpcd->State; |
1481 | * @brief De-activate remote wakeup signalling. |
1482 | } |
1482 | * @param hpcd PCD handle |
1483 | 1483 | * @retval HAL status |
|
1484 | /** |
1484 | */ |
1485 | * @} |
1485 | HAL_StatusTypeDef HAL_PCD_DeActivateRemoteWakeup(PCD_HandleTypeDef *hpcd) |
1486 | */ |
1486 | { |
1487 | 1487 | return (USB_DeActivateRemoteWakeup(hpcd->Instance)); |
|
1488 | /** |
1488 | } |
1489 | * @} |
1489 | |
1490 | */ |
1490 | /** |
1491 | 1491 | * @} |
|
1492 | /* Private functions ---------------------------------------------------------*/ |
1492 | */ |
1493 | /** @addtogroup PCD_Private_Functions |
1493 | |
1494 | * @{ |
1494 | /** @defgroup PCD_Exported_Functions_Group4 Peripheral State functions |
1495 | */ |
1495 | * @brief Peripheral State functions |
1496 | 1496 | * |
|
1497 | 1497 | @verbatim |
|
1498 | /** |
1498 | =============================================================================== |
1499 | * @brief This function handles PCD Endpoint interrupt request. |
1499 | ##### Peripheral State functions ##### |
1500 | * @param hpcd PCD handle |
1500 | =============================================================================== |
1501 | * @retval HAL status |
1501 | [..] |
1502 | */ |
1502 | This subsection permits to get in run-time the status of the peripheral |
1503 | static HAL_StatusTypeDef PCD_EP_ISR_Handler(PCD_HandleTypeDef *hpcd) |
1503 | and the data flow. |
1504 | { |
1504 | |
1505 | PCD_EPTypeDef *ep; |
1505 | @endverbatim |
1506 | uint16_t count, wIstr, wEPVal, TxByteNbre; |
1506 | * @{ |
1507 | uint8_t epindex; |
1507 | */ |
1508 | 1508 | ||
1509 | /* stay in loop while pending interrupts */ |
1509 | /** |
1510 | while ((hpcd->Instance->ISTR & USB_ISTR_CTR) != 0U) |
1510 | * @brief Return the PCD handle state. |
1511 | { |
1511 | * @param hpcd PCD handle |
1512 | wIstr = hpcd->Instance->ISTR; |
1512 | * @retval HAL state |
1513 | 1513 | */ |
|
1514 | /* extract highest priority endpoint number */ |
1514 | PCD_StateTypeDef HAL_PCD_GetState(PCD_HandleTypeDef const *hpcd) |
1515 | epindex = (uint8_t)(wIstr & USB_ISTR_EP_ID); |
1515 | { |
1516 | 1516 | return hpcd->State; |
|
1517 | if (epindex == 0U) |
1517 | } |
1518 | { |
1518 | |
1519 | /* Decode and service control endpoint interrupt */ |
1519 | /** |
1520 | 1520 | * @} |
|
1521 | /* DIR bit = origin of the interrupt */ |
1521 | */ |
1522 | if ((wIstr & USB_ISTR_DIR) == 0U) |
1522 | |
1523 | { |
1523 | /** |
1524 | /* DIR = 0 */ |
1524 | * @} |
1525 | 1525 | */ |
|
1526 | /* DIR = 0 => IN int */ |
1526 | |
1527 | /* DIR = 0 implies that (EP_CTR_TX = 1) always */ |
1527 | /* Private functions ---------------------------------------------------------*/ |
1528 | PCD_CLEAR_TX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1528 | /** @addtogroup PCD_Private_Functions |
1529 | ep = &hpcd->IN_ep[0]; |
1529 | * @{ |
1530 | 1530 | */ |
|
1531 | ep->xfer_count = PCD_GET_EP_TX_CNT(hpcd->Instance, ep->num); |
1531 | |
1532 | ep->xfer_buff += ep->xfer_count; |
1532 | |
1533 | 1533 | /** |
|
1534 | /* TX COMPLETE */ |
1534 | * @brief This function handles PCD Endpoint interrupt request. |
1535 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1535 | * @param hpcd PCD handle |
1536 | hpcd->DataInStageCallback(hpcd, 0U); |
1536 | * @retval HAL status |
1537 | #else |
1537 | */ |
1538 | HAL_PCD_DataInStageCallback(hpcd, 0U); |
1538 | static HAL_StatusTypeDef PCD_EP_ISR_Handler(PCD_HandleTypeDef *hpcd) |
1539 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1539 | { |
1540 | 1540 | PCD_EPTypeDef *ep; |
|
1541 | if ((hpcd->USB_Address > 0U) && (ep->xfer_len == 0U)) |
1541 | uint16_t count; |
1542 | { |
1542 | uint16_t wIstr; |
1543 | hpcd->Instance->DADDR = ((uint16_t)hpcd->USB_Address | USB_DADDR_EF); |
1543 | uint16_t wEPVal; |
1544 | hpcd->USB_Address = 0U; |
1544 | uint16_t TxPctSize; |
1545 | } |
1545 | uint8_t epindex; |
1546 | } |
1546 | |
1547 | else |
1547 | #if (USE_USB_DOUBLE_BUFFER != 1U) |
1548 | { |
1548 | count = 0U; |
1549 | /* DIR = 1 */ |
1549 | #endif /* USE_USB_DOUBLE_BUFFER */ |
1550 | 1550 | ||
1551 | /* DIR = 1 & CTR_RX => SETUP or OUT int */ |
1551 | /* stay in loop while pending interrupts */ |
1552 | /* DIR = 1 & (CTR_TX | CTR_RX) => 2 int pending */ |
1552 | while ((hpcd->Instance->ISTR & USB_ISTR_CTR) != 0U) |
1553 | ep = &hpcd->OUT_ep[0]; |
1553 | { |
1554 | wEPVal = PCD_GET_ENDPOINT(hpcd->Instance, PCD_ENDP0); |
1554 | wIstr = hpcd->Instance->ISTR; |
1555 | 1555 | ||
1556 | if ((wEPVal & USB_EP_SETUP) != 0U) |
1556 | /* extract highest priority endpoint number */ |
1557 | { |
1557 | epindex = (uint8_t)(wIstr & USB_ISTR_EP_ID); |
1558 | /* Get SETUP Packet */ |
1558 | |
1559 | ep->xfer_count = PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
1559 | if (epindex == 0U) |
1560 | 1560 | { |
|
1561 | USB_ReadPMA(hpcd->Instance, (uint8_t *)hpcd->Setup, |
1561 | /* Decode and service control endpoint interrupt */ |
1562 | ep->pmaadress, (uint16_t)ep->xfer_count); |
1562 | |
1563 | 1563 | /* DIR bit = origin of the interrupt */ |
|
1564 | /* SETUP bit kept frozen while CTR_RX = 1 */ |
1564 | if ((wIstr & USB_ISTR_DIR) == 0U) |
1565 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1565 | { |
1566 | 1566 | /* DIR = 0 */ |
|
1567 | /* Process SETUP Packet*/ |
1567 | |
1568 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1568 | /* DIR = 0 => IN int */ |
1569 | hpcd->SetupStageCallback(hpcd); |
1569 | /* DIR = 0 implies that (EP_CTR_TX = 1) always */ |
1570 | #else |
1570 | PCD_CLEAR_TX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1571 | HAL_PCD_SetupStageCallback(hpcd); |
1571 | ep = &hpcd->IN_ep[0]; |
1572 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1572 | |
1573 | } |
1573 | ep->xfer_count = PCD_GET_EP_TX_CNT(hpcd->Instance, ep->num); |
1574 | else if ((wEPVal & USB_EP_CTR_RX) != 0U) |
1574 | ep->xfer_buff += ep->xfer_count; |
1575 | { |
1575 | |
1576 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1576 | /* TX COMPLETE */ |
1577 | 1577 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
|
1578 | /* Get Control Data OUT Packet */ |
1578 | hpcd->DataInStageCallback(hpcd, 0U); |
1579 | ep->xfer_count = PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
1579 | #else |
1580 | 1580 | HAL_PCD_DataInStageCallback(hpcd, 0U); |
|
1581 | if ((ep->xfer_count != 0U) && (ep->xfer_buff != 0U)) |
1581 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1582 | { |
1582 | |
1583 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, |
1583 | if ((hpcd->USB_Address > 0U) && (ep->xfer_len == 0U)) |
1584 | ep->pmaadress, (uint16_t)ep->xfer_count); |
1584 | { |
1585 | 1585 | hpcd->Instance->DADDR = ((uint16_t)hpcd->USB_Address | USB_DADDR_EF); |
|
1586 | ep->xfer_buff += ep->xfer_count; |
1586 | hpcd->USB_Address = 0U; |
1587 | 1587 | } |
|
1588 | /* Process Control Data OUT Packet */ |
1588 | } |
1589 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1589 | else |
1590 | hpcd->DataOutStageCallback(hpcd, 0U); |
1590 | { |
1591 | #else |
1591 | /* DIR = 1 */ |
1592 | HAL_PCD_DataOutStageCallback(hpcd, 0U); |
1592 | |
1593 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1593 | /* DIR = 1 & CTR_RX => SETUP or OUT int */ |
1594 | } |
1594 | /* DIR = 1 & (CTR_TX | CTR_RX) => 2 int pending */ |
1595 | 1595 | ep = &hpcd->OUT_ep[0]; |
|
1596 | if ((PCD_GET_ENDPOINT(hpcd->Instance, PCD_ENDP0) & USB_EP_SETUP) == 0U) |
1596 | wEPVal = PCD_GET_ENDPOINT(hpcd->Instance, PCD_ENDP0); |
1597 | { |
1597 | |
1598 | PCD_SET_EP_RX_CNT(hpcd->Instance, PCD_ENDP0, ep->maxpacket); |
1598 | if ((wEPVal & USB_EP_SETUP) != 0U) |
1599 | PCD_SET_EP_RX_STATUS(hpcd->Instance, PCD_ENDP0, USB_EP_RX_VALID); |
1599 | { |
1600 | } |
1600 | /* Get SETUP Packet */ |
1601 | } |
1601 | ep->xfer_count = PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
1602 | } |
1602 | |
1603 | } |
1603 | USB_ReadPMA(hpcd->Instance, (uint8_t *)hpcd->Setup, |
1604 | else |
1604 | ep->pmaadress, (uint16_t)ep->xfer_count); |
1605 | { |
1605 | |
1606 | /* Decode and service non control endpoints interrupt */ |
1606 | /* SETUP bit kept frozen while CTR_RX = 1 */ |
1607 | /* process related endpoint register */ |
1607 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1608 | wEPVal = PCD_GET_ENDPOINT(hpcd->Instance, epindex); |
1608 | |
1609 | 1609 | /* Process SETUP Packet*/ |
|
1610 | if ((wEPVal & USB_EP_CTR_RX) != 0U) |
1610 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1611 | { |
1611 | hpcd->SetupStageCallback(hpcd); |
1612 | /* clear int flag */ |
1612 | #else |
1613 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, epindex); |
1613 | HAL_PCD_SetupStageCallback(hpcd); |
1614 | ep = &hpcd->OUT_ep[epindex]; |
1614 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1615 | 1615 | } |
|
1616 | /* OUT Single Buffering */ |
1616 | else if ((wEPVal & USB_EP_CTR_RX) != 0U) |
1617 | if (ep->doublebuffer == 0U) |
1617 | { |
1618 | { |
1618 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, PCD_ENDP0); |
1619 | count = (uint16_t)PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
1619 | |
1620 | 1620 | /* Get Control Data OUT Packet */ |
|
1621 | if (count != 0U) |
1621 | ep->xfer_count = PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
1622 | { |
1622 | |
1623 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaadress, count); |
1623 | if ((ep->xfer_count != 0U) && (ep->xfer_buff != 0U)) |
1624 | } |
1624 | { |
1625 | } |
1625 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, |
1626 | else |
1626 | ep->pmaadress, (uint16_t)ep->xfer_count); |
1627 | { |
1627 | |
1628 | /* manage double buffer bulk out */ |
1628 | ep->xfer_buff += ep->xfer_count; |
1629 | if (ep->type == EP_TYPE_BULK) |
1629 | |
1630 | { |
1630 | /* Process Control Data OUT Packet */ |
1631 | count = HAL_PCD_EP_DB_Receive(hpcd, ep, wEPVal); |
1631 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1632 | } |
1632 | hpcd->DataOutStageCallback(hpcd, 0U); |
1633 | else /* manage double buffer iso out */ |
1633 | #else |
1634 | { |
1634 | HAL_PCD_DataOutStageCallback(hpcd, 0U); |
1635 | /* free EP OUT Buffer */ |
1635 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1636 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 0U); |
1636 | } |
1637 | 1637 | ||
1638 | if ((PCD_GET_ENDPOINT(hpcd->Instance, ep->num) & USB_EP_DTOG_RX) != 0U) |
1638 | wEPVal = (uint16_t)PCD_GET_ENDPOINT(hpcd->Instance, PCD_ENDP0); |
1639 | { |
1639 | |
1640 | /* read from endpoint BUF0Addr buffer */ |
1640 | if (((wEPVal & USB_EP_SETUP) == 0U) && ((wEPVal & USB_EP_RX_STRX) != USB_EP_RX_VALID)) |
1641 | count = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
1641 | { |
1642 | 1642 | PCD_SET_EP_RX_CNT(hpcd->Instance, PCD_ENDP0, ep->maxpacket); |
|
1643 | if (count != 0U) |
1643 | PCD_SET_EP_RX_STATUS(hpcd->Instance, PCD_ENDP0, USB_EP_RX_VALID); |
1644 | { |
1644 | } |
1645 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, count); |
1645 | } |
1646 | } |
1646 | } |
1647 | } |
1647 | } |
1648 | else |
1648 | else |
1649 | { |
1649 | { |
1650 | /* read from endpoint BUF1Addr buffer */ |
1650 | /* Decode and service non control endpoints interrupt */ |
1651 | count = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
1651 | /* process related endpoint register */ |
1652 | 1652 | wEPVal = PCD_GET_ENDPOINT(hpcd->Instance, epindex); |
|
1653 | if (count != 0U) |
1653 | |
1654 | { |
1654 | if ((wEPVal & USB_EP_CTR_RX) != 0U) |
1655 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, count); |
1655 | { |
1656 | } |
1656 | /* clear int flag */ |
1657 | } |
1657 | PCD_CLEAR_RX_EP_CTR(hpcd->Instance, epindex); |
1658 | } |
1658 | ep = &hpcd->OUT_ep[epindex]; |
1659 | } |
1659 | |
1660 | /* multi-packet on the NON control OUT endpoint */ |
1660 | /* OUT Single Buffering */ |
1661 | ep->xfer_count += count; |
1661 | if (ep->doublebuffer == 0U) |
1662 | ep->xfer_buff += count; |
1662 | { |
1663 | 1663 | count = (uint16_t)PCD_GET_EP_RX_CNT(hpcd->Instance, ep->num); |
|
1664 | if ((ep->xfer_len == 0U) || (count < ep->maxpacket)) |
1664 | |
1665 | { |
1665 | if (count != 0U) |
1666 | /* RX COMPLETE */ |
1666 | { |
1667 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1667 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaadress, count); |
1668 | hpcd->DataOutStageCallback(hpcd, ep->num); |
1668 | } |
1669 | #else |
1669 | } |
1670 | HAL_PCD_DataOutStageCallback(hpcd, ep->num); |
1670 | #if (USE_USB_DOUBLE_BUFFER == 1U) |
1671 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1671 | else |
1672 | } |
1672 | { |
1673 | else |
1673 | /* manage double buffer bulk out */ |
1674 | { |
1674 | if (ep->type == EP_TYPE_BULK) |
1675 | (void) USB_EPStartXfer(hpcd->Instance, ep); |
1675 | { |
1676 | } |
1676 | count = HAL_PCD_EP_DB_Receive(hpcd, ep, wEPVal); |
1677 | 1677 | } |
|
1678 | } |
1678 | else /* manage double buffer iso out */ |
1679 | 1679 | { |
|
1680 | if ((wEPVal & USB_EP_CTR_TX) != 0U) |
1680 | /* free EP OUT Buffer */ |
1681 | { |
1681 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 0U); |
1682 | ep = &hpcd->IN_ep[epindex]; |
1682 | |
1683 | 1683 | if ((PCD_GET_ENDPOINT(hpcd->Instance, ep->num) & USB_EP_DTOG_RX) != 0U) |
|
1684 | /* clear int flag */ |
1684 | { |
1685 | PCD_CLEAR_TX_EP_CTR(hpcd->Instance, epindex); |
1685 | /* read from endpoint BUF0Addr buffer */ |
1686 | 1686 | count = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
|
1687 | /* Manage all non bulk/isoc transaction Bulk Single Buffer Transaction */ |
1687 | |
1688 | if ((ep->type == EP_TYPE_INTR) || (ep->type == EP_TYPE_CTRL) || |
1688 | if (count != 0U) |
1689 | ((ep->type == EP_TYPE_BULK) && ((wEPVal & USB_EP_KIND) == 0U))) |
1689 | { |
1690 | { |
1690 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, count); |
1691 | /* multi-packet on the NON control IN endpoint */ |
1691 | } |
1692 | TxByteNbre = (uint16_t)PCD_GET_EP_TX_CNT(hpcd->Instance, ep->num); |
1692 | } |
1693 | 1693 | else |
|
1694 | if (ep->xfer_len > TxByteNbre) |
1694 | { |
1695 | { |
1695 | /* read from endpoint BUF1Addr buffer */ |
1696 | ep->xfer_len -= TxByteNbre; |
1696 | count = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
1697 | } |
1697 | |
1698 | else |
1698 | if (count != 0U) |
1699 | { |
1699 | { |
1700 | ep->xfer_len = 0U; |
1700 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, count); |
1701 | } |
1701 | } |
1702 | 1702 | } |
|
1703 | /* Zero Length Packet? */ |
1703 | } |
1704 | if (ep->xfer_len == 0U) |
1704 | } |
1705 | { |
1705 | #endif /* (USE_USB_DOUBLE_BUFFER == 1U) */ |
1706 | /* TX COMPLETE */ |
1706 | |
1707 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1707 | /* multi-packet on the NON control OUT endpoint */ |
1708 | hpcd->DataInStageCallback(hpcd, ep->num); |
1708 | ep->xfer_count += count; |
1709 | #else |
1709 | ep->xfer_buff += count; |
1710 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1710 | |
1711 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1711 | if ((ep->xfer_len == 0U) || (count < ep->maxpacket)) |
1712 | } |
1712 | { |
1713 | else |
1713 | /* RX COMPLETE */ |
1714 | { |
1714 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1715 | /* Transfer is not yet Done */ |
1715 | hpcd->DataOutStageCallback(hpcd, ep->num); |
1716 | ep->xfer_buff += TxByteNbre; |
1716 | #else |
1717 | ep->xfer_count += TxByteNbre; |
1717 | HAL_PCD_DataOutStageCallback(hpcd, ep->num); |
1718 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1718 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1719 | } |
1719 | } |
1720 | } |
1720 | else |
1721 | /* Double Buffer Iso/bulk IN (bulk transfer Len > Ep_Mps) */ |
1721 | { |
1722 | else |
1722 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1723 | { |
1723 | } |
1724 | (void)HAL_PCD_EP_DB_Transmit(hpcd, ep, wEPVal); |
1724 | } |
1725 | } |
1725 | |
1726 | } |
1726 | if ((wEPVal & USB_EP_CTR_TX) != 0U) |
1727 | } |
1727 | { |
1728 | } |
1728 | ep = &hpcd->IN_ep[epindex]; |
1729 | 1729 | ||
1730 | return HAL_OK; |
1730 | /* clear int flag */ |
1731 | } |
1731 | PCD_CLEAR_TX_EP_CTR(hpcd->Instance, epindex); |
1732 | 1732 | ||
1733 | 1733 | if (ep->type == EP_TYPE_ISOC) |
|
1734 | /** |
1734 | { |
1735 | * @brief Manage double buffer bulk out transaction from ISR |
1735 | ep->xfer_len = 0U; |
1736 | * @param hpcd PCD handle |
1736 | |
1737 | * @param ep current endpoint handle |
1737 | #if (USE_USB_DOUBLE_BUFFER == 1U) |
1738 | * @param wEPVal Last snapshot of EPRx register value taken in ISR |
1738 | if (ep->doublebuffer != 0U) |
1739 | * @retval HAL status |
1739 | { |
1740 | */ |
1740 | if ((wEPVal & USB_EP_DTOG_TX) != 0U) |
1741 | static uint16_t HAL_PCD_EP_DB_Receive(PCD_HandleTypeDef *hpcd, |
1741 | { |
1742 | PCD_EPTypeDef *ep, uint16_t wEPVal) |
1742 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1743 | { |
1743 | } |
1744 | uint16_t count; |
1744 | else |
1745 | 1745 | { |
|
1746 | /* Manage Buffer0 OUT */ |
1746 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1747 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1747 | } |
1748 | { |
1748 | } |
1749 | /* Get count of received Data on buffer0 */ |
1749 | #endif /* (USE_USB_DOUBLE_BUFFER == 1U) */ |
1750 | count = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
1750 | |
1751 | 1751 | /* TX COMPLETE */ |
|
1752 | if (ep->xfer_len >= count) |
1752 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1753 | { |
1753 | hpcd->DataInStageCallback(hpcd, ep->num); |
1754 | ep->xfer_len -= count; |
1754 | #else |
1755 | } |
1755 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1756 | else |
1756 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1757 | { |
1757 | } |
1758 | ep->xfer_len = 0U; |
1758 | else |
1759 | } |
1759 | { |
1760 | 1760 | /* Manage Single Buffer Transaction */ |
|
1761 | if (ep->xfer_len == 0U) |
1761 | if ((wEPVal & USB_EP_KIND) == 0U) |
1762 | { |
1762 | { |
1763 | /* set NAK to OUT endpoint since double buffer is enabled */ |
1763 | /* multi-packet on the NON control IN endpoint */ |
1764 | PCD_SET_EP_RX_STATUS(hpcd->Instance, ep->num, USB_EP_RX_NAK); |
1764 | TxPctSize = (uint16_t)PCD_GET_EP_TX_CNT(hpcd->Instance, ep->num); |
1765 | } |
1765 | |
1766 | 1766 | if (ep->xfer_len > TxPctSize) |
|
1767 | /* Check if Buffer1 is in blocked sate which requires to toggle */ |
1767 | { |
1768 | if ((wEPVal & USB_EP_DTOG_TX) != 0U) |
1768 | ep->xfer_len -= TxPctSize; |
1769 | { |
1769 | } |
1770 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 0U); |
1770 | else |
1771 | } |
1771 | { |
1772 | 1772 | ep->xfer_len = 0U; |
|
1773 | if (count != 0U) |
1773 | } |
1774 | { |
1774 | |
1775 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, count); |
1775 | /* Zero Length Packet? */ |
1776 | } |
1776 | if (ep->xfer_len == 0U) |
1777 | } |
1777 | { |
1778 | /* Manage Buffer 1 DTOG_RX=0 */ |
1778 | /* TX COMPLETE */ |
1779 | else |
1779 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1780 | { |
1780 | hpcd->DataInStageCallback(hpcd, ep->num); |
1781 | /* Get count of received data */ |
1781 | #else |
1782 | count = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
1782 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1783 | 1783 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
|
1784 | if (ep->xfer_len >= count) |
1784 | } |
1785 | { |
1785 | else |
1786 | ep->xfer_len -= count; |
1786 | { |
1787 | } |
1787 | /* Transfer is not yet Done */ |
1788 | else |
1788 | ep->xfer_buff += TxPctSize; |
1789 | { |
1789 | ep->xfer_count += TxPctSize; |
1790 | ep->xfer_len = 0U; |
1790 | (void)USB_EPStartXfer(hpcd->Instance, ep); |
1791 | } |
1791 | } |
1792 | 1792 | } |
|
1793 | if (ep->xfer_len == 0U) |
1793 | #if (USE_USB_DOUBLE_BUFFER == 1U) |
1794 | { |
1794 | /* Double Buffer bulk IN (bulk transfer Len > Ep_Mps) */ |
1795 | /* set NAK on the current endpoint */ |
1795 | else |
1796 | PCD_SET_EP_RX_STATUS(hpcd->Instance, ep->num, USB_EP_RX_NAK); |
1796 | { |
1797 | } |
1797 | (void)HAL_PCD_EP_DB_Transmit(hpcd, ep, wEPVal); |
1798 | 1798 | } |
|
1799 | /*Need to FreeUser Buffer*/ |
1799 | #endif /* (USE_USB_DOUBLE_BUFFER == 1U) */ |
1800 | if ((wEPVal & USB_EP_DTOG_TX) == 0U) |
1800 | } |
1801 | { |
1801 | } |
1802 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 0U); |
1802 | } |
1803 | } |
1803 | } |
1804 | 1804 | ||
1805 | if (count != 0U) |
1805 | return HAL_OK; |
1806 | { |
1806 | } |
1807 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, count); |
1807 | |
1808 | } |
1808 | |
1809 | } |
1809 | #if (USE_USB_DOUBLE_BUFFER == 1U) |
1810 | 1810 | /** |
|
1811 | return count; |
1811 | * @brief Manage double buffer bulk out transaction from ISR |
1812 | } |
1812 | * @param hpcd PCD handle |
1813 | 1813 | * @param ep current endpoint handle |
|
1814 | 1814 | * @param wEPVal Last snapshot of EPRx register value taken in ISR |
|
1815 | /** |
1815 | * @retval HAL status |
1816 | * @brief Manage double buffer bulk IN transaction from ISR |
1816 | */ |
1817 | * @param hpcd PCD handle |
1817 | static uint16_t HAL_PCD_EP_DB_Receive(PCD_HandleTypeDef *hpcd, |
1818 | * @param ep current endpoint handle |
1818 | PCD_EPTypeDef *ep, uint16_t wEPVal) |
1819 | * @param wEPVal Last snapshot of EPRx register value taken in ISR |
1819 | { |
1820 | * @retval HAL status |
1820 | uint16_t count; |
1821 | */ |
1821 | |
1822 | static HAL_StatusTypeDef HAL_PCD_EP_DB_Transmit(PCD_HandleTypeDef *hpcd, |
1822 | /* Manage Buffer0 OUT */ |
1823 | PCD_EPTypeDef *ep, uint16_t wEPVal) |
1823 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1824 | { |
1824 | { |
1825 | uint32_t len; |
1825 | /* Get count of received Data on buffer0 */ |
1826 | uint16_t TxByteNbre; |
1826 | count = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
1827 | 1827 | ||
1828 | /* Data Buffer0 ACK received */ |
1828 | if (ep->xfer_len >= count) |
1829 | if ((wEPVal & USB_EP_DTOG_TX) != 0U) |
1829 | { |
1830 | { |
1830 | ep->xfer_len -= count; |
1831 | /* multi-packet on the NON control IN endpoint */ |
1831 | } |
1832 | TxByteNbre = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
1832 | else |
1833 | 1833 | { |
|
1834 | if (ep->xfer_len > TxByteNbre) |
1834 | ep->xfer_len = 0U; |
1835 | { |
1835 | } |
1836 | ep->xfer_len -= TxByteNbre; |
1836 | |
1837 | } |
1837 | if (ep->xfer_len == 0U) |
1838 | else |
1838 | { |
1839 | { |
1839 | /* set NAK to OUT endpoint since double buffer is enabled */ |
1840 | ep->xfer_len = 0U; |
1840 | PCD_SET_EP_RX_STATUS(hpcd->Instance, ep->num, USB_EP_RX_NAK); |
1841 | } |
1841 | } |
1842 | /* Transfer is completed */ |
1842 | |
1843 | if (ep->xfer_len == 0U) |
1843 | /* Check if Buffer1 is in blocked state which requires to toggle */ |
1844 | { |
1844 | if ((wEPVal & USB_EP_DTOG_TX) != 0U) |
1845 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1845 | { |
1846 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1846 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 0U); |
1847 | 1847 | } |
|
1848 | /* TX COMPLETE */ |
1848 | |
1849 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1849 | if (count != 0U) |
1850 | hpcd->DataInStageCallback(hpcd, ep->num); |
1850 | { |
1851 | #else |
1851 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, count); |
1852 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1852 | } |
1853 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1853 | } |
1854 | 1854 | /* Manage Buffer 1 DTOG_RX=0 */ |
|
1855 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1855 | else |
1856 | { |
1856 | { |
1857 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 1U); |
1857 | /* Get count of received data */ |
1858 | } |
1858 | count = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
1859 | } |
1859 | |
1860 | else /* Transfer is not yet Done */ |
1860 | if (ep->xfer_len >= count) |
1861 | { |
1861 | { |
1862 | /* need to Free USB Buff */ |
1862 | ep->xfer_len -= count; |
1863 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1863 | } |
1864 | { |
1864 | else |
1865 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 1U); |
1865 | { |
1866 | } |
1866 | ep->xfer_len = 0U; |
1867 | 1867 | } |
|
1868 | /* Still there is data to Fill in the next Buffer */ |
1868 | |
1869 | if (ep->xfer_fill_db == 1U) |
1869 | if (ep->xfer_len == 0U) |
1870 | { |
1870 | { |
1871 | ep->xfer_buff += TxByteNbre; |
1871 | /* set NAK on the current endpoint */ |
1872 | ep->xfer_count += TxByteNbre; |
1872 | PCD_SET_EP_RX_STATUS(hpcd->Instance, ep->num, USB_EP_RX_NAK); |
1873 | 1873 | } |
|
1874 | /* Calculate the len of the new buffer to fill */ |
1874 | |
1875 | if (ep->xfer_len_db >= ep->maxpacket) |
1875 | /*Need to FreeUser Buffer*/ |
1876 | { |
1876 | if ((wEPVal & USB_EP_DTOG_TX) == 0U) |
1877 | len = ep->maxpacket; |
1877 | { |
1878 | ep->xfer_len_db -= len; |
1878 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 0U); |
1879 | } |
1879 | } |
1880 | else if (ep->xfer_len_db == 0U) |
1880 | |
1881 | { |
1881 | if (count != 0U) |
1882 | len = TxByteNbre; |
1882 | { |
1883 | ep->xfer_fill_db = 0U; |
1883 | USB_ReadPMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, count); |
1884 | } |
1884 | } |
1885 | else |
1885 | } |
1886 | { |
1886 | |
1887 | ep->xfer_fill_db = 0U; |
1887 | return count; |
1888 | len = ep->xfer_len_db; |
1888 | } |
1889 | ep->xfer_len_db = 0U; |
1889 | |
1890 | } |
1890 | |
1891 | 1891 | /** |
|
1892 | /* Write remaining Data to Buffer */ |
1892 | * @brief Manage double buffer bulk IN transaction from ISR |
1893 | /* Set the Double buffer counter for pma buffer1 */ |
1893 | * @param hpcd PCD handle |
1894 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, len); |
1894 | * @param ep current endpoint handle |
1895 | 1895 | * @param wEPVal Last snapshot of EPRx register value taken in ISR |
|
1896 | /* Copy user buffer to USB PMA */ |
1896 | * @retval HAL status |
1897 | USB_WritePMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, (uint16_t)len); |
1897 | */ |
1898 | } |
1898 | static HAL_StatusTypeDef HAL_PCD_EP_DB_Transmit(PCD_HandleTypeDef *hpcd, |
1899 | } |
1899 | PCD_EPTypeDef *ep, uint16_t wEPVal) |
1900 | } |
1900 | { |
1901 | else /* Data Buffer1 ACK received */ |
1901 | uint32_t len; |
1902 | { |
1902 | uint16_t TxPctSize; |
1903 | /* multi-packet on the NON control IN endpoint */ |
1903 | |
1904 | TxByteNbre = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
1904 | /* Data Buffer0 ACK received */ |
1905 | 1905 | if ((wEPVal & USB_EP_DTOG_TX) != 0U) |
|
1906 | if (ep->xfer_len >= TxByteNbre) |
1906 | { |
1907 | { |
1907 | /* multi-packet on the NON control IN endpoint */ |
1908 | ep->xfer_len -= TxByteNbre; |
1908 | TxPctSize = (uint16_t)PCD_GET_EP_DBUF0_CNT(hpcd->Instance, ep->num); |
1909 | } |
1909 | |
1910 | else |
1910 | if (ep->xfer_len > TxPctSize) |
1911 | { |
1911 | { |
1912 | ep->xfer_len = 0U; |
1912 | ep->xfer_len -= TxPctSize; |
1913 | } |
1913 | } |
1914 | 1914 | else |
|
1915 | /* Transfer is completed */ |
1915 | { |
1916 | if (ep->xfer_len == 0U) |
1916 | ep->xfer_len = 0U; |
1917 | { |
1917 | } |
1918 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1918 | |
1919 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1919 | /* Transfer is completed */ |
1920 | 1920 | if (ep->xfer_len == 0U) |
|
1921 | /* TX COMPLETE */ |
1921 | { |
1922 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1922 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1923 | hpcd->DataInStageCallback(hpcd, ep->num); |
1923 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1924 | #else |
1924 | |
1925 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1925 | /* TX COMPLETE */ |
1926 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1926 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
1927 | 1927 | hpcd->DataInStageCallback(hpcd, ep->num); |
|
1928 | /* need to Free USB Buff */ |
1928 | #else |
1929 | if ((wEPVal & USB_EP_DTOG_RX) == 0U) |
1929 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
1930 | { |
1930 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
1931 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 1U); |
1931 | |
1932 | } |
1932 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1933 | } |
1933 | { |
1934 | else /* Transfer is not yet Done */ |
1934 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 1U); |
1935 | { |
1935 | } |
1936 | /* need to Free USB Buff */ |
1936 | } |
1937 | if ((wEPVal & USB_EP_DTOG_RX) == 0U) |
1937 | else /* Transfer is not yet Done */ |
1938 | { |
1938 | { |
1939 | PCD_FreeUserBuffer(hpcd->Instance, ep->num, 1U); |
1939 | /* need to Free USB Buff */ |
1940 | } |
1940 | if ((wEPVal & USB_EP_DTOG_RX) != 0U) |
1941 | 1941 | { |
|
1942 | /* Still there is data to Fill in the next Buffer */ |
1942 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 1U); |
1943 | if (ep->xfer_fill_db == 1U) |
1943 | } |
1944 | { |
1944 | |
1945 | ep->xfer_buff += TxByteNbre; |
1945 | /* Still there is data to Fill in the next Buffer */ |
1946 | ep->xfer_count += TxByteNbre; |
1946 | if (ep->xfer_fill_db == 1U) |
1947 | 1947 | { |
|
1948 | /* Calculate the len of the new buffer to fill */ |
1948 | ep->xfer_buff += TxPctSize; |
1949 | if (ep->xfer_len_db >= ep->maxpacket) |
1949 | ep->xfer_count += TxPctSize; |
1950 | { |
1950 | |
1951 | len = ep->maxpacket; |
1951 | /* Calculate the len of the new buffer to fill */ |
1952 | ep->xfer_len_db -= len; |
1952 | if (ep->xfer_len_db >= ep->maxpacket) |
1953 | } |
1953 | { |
1954 | else if (ep->xfer_len_db == 0U) |
1954 | len = ep->maxpacket; |
1955 | { |
1955 | ep->xfer_len_db -= len; |
1956 | len = TxByteNbre; |
1956 | } |
1957 | ep->xfer_fill_db = 0U; |
1957 | else if (ep->xfer_len_db == 0U) |
1958 | } |
1958 | { |
1959 | else |
1959 | len = TxPctSize; |
1960 | { |
1960 | ep->xfer_fill_db = 0U; |
1961 | len = ep->xfer_len_db; |
1961 | } |
1962 | ep->xfer_len_db = 0U; |
1962 | else |
1963 | ep->xfer_fill_db = 0; |
1963 | { |
1964 | } |
1964 | ep->xfer_fill_db = 0U; |
1965 | 1965 | len = ep->xfer_len_db; |
|
1966 | /* Set the Double buffer counter for pmabuffer1 */ |
1966 | ep->xfer_len_db = 0U; |
1967 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, len); |
1967 | } |
1968 | 1968 | ||
1969 | /* Copy the user buffer to USB PMA */ |
1969 | /* Write remaining Data to Buffer */ |
1970 | USB_WritePMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, (uint16_t)len); |
1970 | /* Set the Double buffer counter for pma buffer1 */ |
1971 | } |
1971 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, len); |
1972 | } |
1972 | |
1973 | } |
1973 | /* Copy user buffer to USB PMA */ |
1974 | 1974 | USB_WritePMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr0, (uint16_t)len); |
|
1975 | /*enable endpoint IN*/ |
1975 | } |
1976 | PCD_SET_EP_TX_STATUS(hpcd->Instance, ep->num, USB_EP_TX_VALID); |
1976 | } |
1977 | 1977 | } |
|
1978 | return HAL_OK; |
1978 | else /* Data Buffer1 ACK received */ |
1979 | } |
1979 | { |
1980 | 1980 | /* multi-packet on the NON control IN endpoint */ |
|
1981 | 1981 | TxPctSize = (uint16_t)PCD_GET_EP_DBUF1_CNT(hpcd->Instance, ep->num); |
|
1982 | 1982 | ||
1983 | /** |
1983 | if (ep->xfer_len >= TxPctSize) |
1984 | * @} |
1984 | { |
1985 | */ |
1985 | ep->xfer_len -= TxPctSize; |
1986 | #endif /* defined (USB) */ |
1986 | } |
1987 | #endif /* HAL_PCD_MODULE_ENABLED */ |
1987 | else |
1988 | 1988 | { |
|
1989 | /** |
1989 | ep->xfer_len = 0U; |
1990 | * @} |
1990 | } |
1991 | */ |
1991 | |
1992 | 1992 | /* Transfer is completed */ |
|
1993 | /** |
1993 | if (ep->xfer_len == 0U) |
1994 | * @} |
1994 | { |
1995 | */ |
1995 | PCD_SET_EP_DBUF0_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
1996 | 1996 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, 0U); |
|
1997 | /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ |
1997 | |
- | 1998 | /* TX COMPLETE */ |
|
- | 1999 | #if (USE_HAL_PCD_REGISTER_CALLBACKS == 1U) |
|
- | 2000 | hpcd->DataInStageCallback(hpcd, ep->num); |
|
- | 2001 | #else |
|
- | 2002 | HAL_PCD_DataInStageCallback(hpcd, ep->num); |
|
- | 2003 | #endif /* USE_HAL_PCD_REGISTER_CALLBACKS */ |
|
- | 2004 | ||
- | 2005 | /* need to Free USB Buff */ |
|
- | 2006 | if ((wEPVal & USB_EP_DTOG_RX) == 0U) |
|
- | 2007 | { |
|
- | 2008 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 1U); |
|
- | 2009 | } |
|
- | 2010 | } |
|
- | 2011 | else /* Transfer is not yet Done */ |
|
- | 2012 | { |
|
- | 2013 | /* need to Free USB Buff */ |
|
- | 2014 | if ((wEPVal & USB_EP_DTOG_RX) == 0U) |
|
- | 2015 | { |
|
- | 2016 | PCD_FREE_USER_BUFFER(hpcd->Instance, ep->num, 1U); |
|
- | 2017 | } |
|
- | 2018 | ||
- | 2019 | /* Still there is data to Fill in the next Buffer */ |
|
- | 2020 | if (ep->xfer_fill_db == 1U) |
|
- | 2021 | { |
|
- | 2022 | ep->xfer_buff += TxPctSize; |
|
- | 2023 | ep->xfer_count += TxPctSize; |
|
- | 2024 | ||
- | 2025 | /* Calculate the len of the new buffer to fill */ |
|
- | 2026 | if (ep->xfer_len_db >= ep->maxpacket) |
|
- | 2027 | { |
|
- | 2028 | len = ep->maxpacket; |
|
- | 2029 | ep->xfer_len_db -= len; |
|
- | 2030 | } |
|
- | 2031 | else if (ep->xfer_len_db == 0U) |
|
- | 2032 | { |
|
- | 2033 | len = TxPctSize; |
|
- | 2034 | ep->xfer_fill_db = 0U; |
|
- | 2035 | } |
|
- | 2036 | else |
|
- | 2037 | { |
|
- | 2038 | len = ep->xfer_len_db; |
|
- | 2039 | ep->xfer_len_db = 0U; |
|
- | 2040 | ep->xfer_fill_db = 0; |
|
- | 2041 | } |
|
- | 2042 | ||
- | 2043 | /* Set the Double buffer counter for pmabuffer1 */ |
|
- | 2044 | PCD_SET_EP_DBUF1_CNT(hpcd->Instance, ep->num, ep->is_in, len); |
|
- | 2045 | ||
- | 2046 | /* Copy the user buffer to USB PMA */ |
|
- | 2047 | USB_WritePMA(hpcd->Instance, ep->xfer_buff, ep->pmaaddr1, (uint16_t)len); |
|
- | 2048 | } |
|
- | 2049 | } |
|
- | 2050 | } |
|
- | 2051 | ||
- | 2052 | /*enable endpoint IN*/ |
|
- | 2053 | PCD_SET_EP_TX_STATUS(hpcd->Instance, ep->num, USB_EP_TX_VALID); |
|
- | 2054 | ||
- | 2055 | return HAL_OK; |
|
- | 2056 | } |
|
- | 2057 | #endif /* (USE_USB_DOUBLE_BUFFER == 1U) */ |
|
- | 2058 | ||
- | 2059 | ||
- | 2060 | ||
- | 2061 | /** |
|
- | 2062 | * @} |
|
- | 2063 | */ |
|
- | 2064 | #endif /* defined (USB) */ |
|
- | 2065 | #endif /* HAL_PCD_MODULE_ENABLED */ |
|
- | 2066 | ||
- | 2067 | /** |
|
- | 2068 | * @} |
|
- | 2069 | */ |
|
- | 2070 | ||
- | 2071 | /** |
|
- | 2072 | * @} |
|
- | 2073 | */ |