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2 | mjames | 1 | /** |
2 | ****************************************************************************** |
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3 | * @file stm32f0xx_hal_smartcard.c |
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4 | * @author MCD Application Team |
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5 | * @brief SMARTCARD HAL module driver. |
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6 | * This file provides firmware functions to manage the following |
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7 | * functionalities of the SMARTCARD peripheral: |
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8 | * + Initialization and de-initialization functions |
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9 | * + IO operation functions |
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10 | * + Peripheral Control functions |
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11 | * + Peripheral State and Error functions |
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12 | * |
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13 | @verbatim |
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14 | ============================================================================== |
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15 | ##### How to use this driver ##### |
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16 | ============================================================================== |
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17 | [..] |
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18 | The SMARTCARD HAL driver can be used as follows: |
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19 | |||
20 | (#) Declare a SMARTCARD_HandleTypeDef handle structure (eg. SMARTCARD_HandleTypeDef hsmartcard). |
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21 | (#) Associate a USART to the SMARTCARD handle hsmartcard. |
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22 | (#) Initialize the SMARTCARD low level resources by implementing the HAL_SMARTCARD_MspInit() API: |
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23 | (++) Enable the USARTx interface clock. |
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24 | (++) USART pins configuration: |
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25 | (+++) Enable the clock for the USART GPIOs. |
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26 | (+++) Configure the USART pins (TX as alternate function pull-up, RX as alternate function Input). |
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27 | (++) NVIC configuration if you need to use interrupt process (HAL_SMARTCARD_Transmit_IT() |
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28 | and HAL_SMARTCARD_Receive_IT() APIs): |
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29 | (+++) Configure the USARTx interrupt priority. |
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30 | (+++) Enable the NVIC USART IRQ handle. |
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31 | (++) DMA Configuration if you need to use DMA process (HAL_SMARTCARD_Transmit_DMA() |
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32 | and HAL_SMARTCARD_Receive_DMA() APIs): |
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33 | (+++) Declare a DMA handle structure for the Tx/Rx channel. |
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34 | (+++) Enable the DMAx interface clock. |
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35 | (+++) Configure the declared DMA handle structure with the required Tx/Rx parameters. |
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36 | (+++) Configure the DMA Tx/Rx channel. |
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37 | (+++) Associate the initialized DMA handle to the SMARTCARD DMA Tx/Rx handle. |
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6 | mjames | 38 | (+++) Configure the priority and enable the NVIC for the transfer complete |
39 | interrupt on the DMA Tx/Rx channel. |
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2 | mjames | 40 | |
41 | (#) Program the Baud Rate, Parity, Mode(Receiver/Transmitter), clock enabling/disabling and accordingly, |
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42 | the clock parameters (parity, phase, last bit), prescaler value, guard time and NACK on transmission |
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43 | error enabling or disabling in the hsmartcard handle Init structure. |
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44 | |||
45 | (#) If required, program SMARTCARD advanced features (TX/RX pins swap, TimeOut, auto-retry counter,...) |
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46 | in the hsmartcard handle AdvancedInit structure. |
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47 | |||
48 | (#) Initialize the SMARTCARD registers by calling the HAL_SMARTCARD_Init() API: |
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49 | (++) This API configures also the low level Hardware GPIO, CLOCK, CORTEX...etc) |
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50 | by calling the customized HAL_SMARTCARD_MspInit() API. |
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51 | [..] |
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52 | (@) The specific SMARTCARD interrupts (Transmission complete interrupt, |
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53 | RXNE interrupt and Error Interrupts) will be managed using the macros |
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54 | __HAL_SMARTCARD_ENABLE_IT() and __HAL_SMARTCARD_DISABLE_IT() inside the transmit and receive process. |
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55 | |||
56 | [..] |
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57 | [..] Three operation modes are available within this driver : |
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58 | |||
59 | *** Polling mode IO operation *** |
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60 | ================================= |
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61 | [..] |
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62 | (+) Send an amount of data in blocking mode using HAL_SMARTCARD_Transmit() |
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63 | (+) Receive an amount of data in blocking mode using HAL_SMARTCARD_Receive() |
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64 | |||
65 | *** Interrupt mode IO operation *** |
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66 | =================================== |
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67 | [..] |
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68 | (+) Send an amount of data in non-blocking mode using HAL_SMARTCARD_Transmit_IT() |
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69 | (+) At transmission end of transfer HAL_SMARTCARD_TxCpltCallback() is executed and user can |
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70 | add his own code by customization of function pointer HAL_SMARTCARD_TxCpltCallback() |
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71 | (+) Receive an amount of data in non-blocking mode using HAL_SMARTCARD_Receive_IT() |
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72 | (+) At reception end of transfer HAL_SMARTCARD_RxCpltCallback() is executed and user can |
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73 | add his own code by customization of function pointer HAL_SMARTCARD_RxCpltCallback() |
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74 | (+) In case of transfer Error, HAL_SMARTCARD_ErrorCallback() function is executed and user can |
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75 | add his own code by customization of function pointer HAL_SMARTCARD_ErrorCallback() |
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76 | |||
77 | *** DMA mode IO operation *** |
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78 | ============================== |
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79 | [..] |
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80 | (+) Send an amount of data in non-blocking mode (DMA) using HAL_SMARTCARD_Transmit_DMA() |
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81 | (+) At transmission end of transfer HAL_SMARTCARD_TxCpltCallback() is executed and user can |
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82 | add his own code by customization of function pointer HAL_SMARTCARD_TxCpltCallback() |
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83 | (+) Receive an amount of data in non-blocking mode (DMA) using HAL_SMARTCARD_Receive_DMA() |
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84 | (+) At reception end of transfer HAL_SMARTCARD_RxCpltCallback() is executed and user can |
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85 | add his own code by customization of function pointer HAL_SMARTCARD_RxCpltCallback() |
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86 | (+) In case of transfer Error, HAL_SMARTCARD_ErrorCallback() function is executed and user can |
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87 | add his own code by customization of function pointer HAL_SMARTCARD_ErrorCallback() |
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88 | |||
89 | *** SMARTCARD HAL driver macros list *** |
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90 | ======================================== |
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91 | [..] |
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92 | Below the list of most used macros in SMARTCARD HAL driver. |
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93 | |||
94 | (+) __HAL_SMARTCARD_GET_FLAG : Check whether or not the specified SMARTCARD flag is set |
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95 | (+) __HAL_SMARTCARD_CLEAR_FLAG : Clear the specified SMARTCARD pending flag |
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96 | (+) __HAL_SMARTCARD_ENABLE_IT: Enable the specified SMARTCARD interrupt |
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97 | (+) __HAL_SMARTCARD_DISABLE_IT: Disable the specified SMARTCARD interrupt |
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98 | (+) __HAL_SMARTCARD_GET_IT_SOURCE: Check whether or not the specified SMARTCARD interrupt is enabled |
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99 | |||
100 | [..] |
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101 | (@) You can refer to the SMARTCARD HAL driver header file for more useful macros |
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102 | |||
103 | ##### Callback registration ##### |
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104 | ================================== |
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105 | |||
106 | [..] |
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107 | The compilation define USE_HAL_SMARTCARD_REGISTER_CALLBACKS when set to 1 |
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108 | allows the user to configure dynamically the driver callbacks. |
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109 | |||
110 | [..] |
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6 | mjames | 111 | Use Function HAL_SMARTCARD_RegisterCallback() to register a user callback. |
112 | Function HAL_SMARTCARD_RegisterCallback() allows to register following callbacks: |
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2 | mjames | 113 | (+) TxCpltCallback : Tx Complete Callback. |
114 | (+) RxCpltCallback : Rx Complete Callback. |
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115 | (+) ErrorCallback : Error Callback. |
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116 | (+) AbortCpltCallback : Abort Complete Callback. |
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117 | (+) AbortTransmitCpltCallback : Abort Transmit Complete Callback. |
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118 | (+) AbortReceiveCpltCallback : Abort Receive Complete Callback. |
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119 | (+) MspInitCallback : SMARTCARD MspInit. |
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120 | (+) MspDeInitCallback : SMARTCARD MspDeInit. |
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121 | This function takes as parameters the HAL peripheral handle, the Callback ID |
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122 | and a pointer to the user callback function. |
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123 | |||
124 | [..] |
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6 | mjames | 125 | Use function HAL_SMARTCARD_UnRegisterCallback() to reset a callback to the default |
2 | mjames | 126 | weak (surcharged) function. |
6 | mjames | 127 | HAL_SMARTCARD_UnRegisterCallback() takes as parameters the HAL peripheral handle, |
2 | mjames | 128 | and the Callback ID. |
129 | This function allows to reset following callbacks: |
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130 | (+) TxCpltCallback : Tx Complete Callback. |
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131 | (+) RxCpltCallback : Rx Complete Callback. |
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132 | (+) ErrorCallback : Error Callback. |
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133 | (+) AbortCpltCallback : Abort Complete Callback. |
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134 | (+) AbortTransmitCpltCallback : Abort Transmit Complete Callback. |
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135 | (+) AbortReceiveCpltCallback : Abort Receive Complete Callback. |
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136 | (+) MspInitCallback : SMARTCARD MspInit. |
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137 | (+) MspDeInitCallback : SMARTCARD MspDeInit. |
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138 | |||
139 | [..] |
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6 | mjames | 140 | By default, after the HAL_SMARTCARD_Init() and when the state is HAL_SMARTCARD_STATE_RESET |
2 | mjames | 141 | all callbacks are set to the corresponding weak (surcharged) functions: |
6 | mjames | 142 | examples HAL_SMARTCARD_TxCpltCallback(), HAL_SMARTCARD_RxCpltCallback(). |
2 | mjames | 143 | Exception done for MspInit and MspDeInit functions that are respectively |
6 | mjames | 144 | reset to the legacy weak (surcharged) functions in the HAL_SMARTCARD_Init() |
145 | and HAL_SMARTCARD_DeInit() only when these callbacks are null (not registered beforehand). |
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146 | If not, MspInit or MspDeInit are not null, the HAL_SMARTCARD_Init() and HAL_SMARTCARD_DeInit() |
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2 | mjames | 147 | keep and use the user MspInit/MspDeInit callbacks (registered beforehand). |
148 | |||
149 | [..] |
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150 | Callbacks can be registered/unregistered in HAL_SMARTCARD_STATE_READY state only. |
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151 | Exception done MspInit/MspDeInit that can be registered/unregistered |
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152 | in HAL_SMARTCARD_STATE_READY or HAL_SMARTCARD_STATE_RESET state, thus registered (user) |
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153 | MspInit/DeInit callbacks can be used during the Init/DeInit. |
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154 | In that case first register the MspInit/MspDeInit user callbacks |
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6 | mjames | 155 | using HAL_SMARTCARD_RegisterCallback() before calling HAL_SMARTCARD_DeInit() |
156 | or HAL_SMARTCARD_Init() function. |
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2 | mjames | 157 | |
158 | [..] |
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159 | When The compilation define USE_HAL_SMARTCARD_REGISTER_CALLBACKS is set to 0 or |
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160 | not defined, the callback registration feature is not available |
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161 | and weak (surcharged) callbacks are used. |
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162 | |||
163 | |||
164 | @endverbatim |
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165 | ****************************************************************************** |
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166 | * @attention |
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167 | * |
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168 | * <h2><center>© Copyright (c) 2016 STMicroelectronics. |
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169 | * All rights reserved.</center></h2> |
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170 | * |
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171 | * This software component is licensed by ST under BSD 3-Clause license, |
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172 | * the "License"; You may not use this file except in compliance with the |
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173 | * License. You may obtain a copy of the License at: |
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174 | * opensource.org/licenses/BSD-3-Clause |
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175 | * |
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176 | ****************************************************************************** |
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177 | */ |
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178 | #if !defined(STM32F030x6) && !defined(STM32F030x8) && !defined(STM32F070x6) && !defined(STM32F070xB) && !defined(STM32F030xC) |
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179 | /* Includes ------------------------------------------------------------------*/ |
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180 | #include "stm32f0xx_hal.h" |
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181 | |||
182 | /** @addtogroup STM32F0xx_HAL_Driver |
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183 | * @{ |
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184 | */ |
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185 | |||
186 | /** @defgroup SMARTCARD SMARTCARD |
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187 | * @brief HAL SMARTCARD module driver |
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188 | * @{ |
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189 | */ |
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190 | |||
191 | #ifdef HAL_SMARTCARD_MODULE_ENABLED |
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192 | |||
193 | /* Private typedef -----------------------------------------------------------*/ |
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194 | /* Private define ------------------------------------------------------------*/ |
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195 | /** @defgroup SMARTCARD_Private_Constants SMARTCARD Private Constants |
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196 | * @{ |
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197 | */ |
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6 | mjames | 198 | #define SMARTCARD_TEACK_REACK_TIMEOUT 1000U /*!< SMARTCARD TX or RX enable acknowledge time-out value */ |
2 | mjames | 199 | |
6 | mjames | 200 | #define USART_CR1_FIELDS ((uint32_t)(USART_CR1_M | USART_CR1_PCE | USART_CR1_PS | USART_CR1_TE | \ |
201 | USART_CR1_RE | USART_CR1_OVER8)) /*!< USART CR1 fields of parameters set by SMARTCARD_SetConfig API */ |
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2 | mjames | 202 | |
6 | mjames | 203 | #define USART_CR2_CLK_FIELDS ((uint32_t)(USART_CR2_CLKEN | USART_CR2_CPOL | \ |
204 | USART_CR2_CPHA | USART_CR2_LBCL)) /*!< SMARTCARD clock-related USART CR2 fields of parameters */ |
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2 | mjames | 205 | |
6 | mjames | 206 | #define USART_CR2_FIELDS ((uint32_t)(USART_CR2_RTOEN | USART_CR2_CLK_FIELDS | \ |
207 | USART_CR2_STOP)) /*!< USART CR2 fields of parameters set by SMARTCARD_SetConfig API */ |
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2 | mjames | 208 | |
6 | mjames | 209 | #define USART_CR3_FIELDS ((uint32_t)(USART_CR3_ONEBIT | USART_CR3_NACK | \ |
210 | USART_CR3_SCARCNT)) /*!< USART CR3 fields of parameters set by SMARTCARD_SetConfig API */ |
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2 | mjames | 211 | |
6 | mjames | 212 | #define USART_BRR_MIN 0x10U /*!< USART BRR minimum authorized value */ |
2 | mjames | 213 | |
6 | mjames | 214 | #define USART_BRR_MAX 0x0000FFFFU /*!< USART BRR maximum authorized value */ |
2 | mjames | 215 | /** |
216 | * @} |
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217 | */ |
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218 | |||
219 | /* Private macros ------------------------------------------------------------*/ |
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220 | /* Private variables ---------------------------------------------------------*/ |
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221 | /* Private function prototypes -----------------------------------------------*/ |
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222 | /** @addtogroup SMARTCARD_Private_Functions |
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223 | * @{ |
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224 | */ |
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225 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
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226 | void SMARTCARD_InitCallbacksToDefault(SMARTCARD_HandleTypeDef *hsmartcard); |
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227 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACKS */ |
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228 | static HAL_StatusTypeDef SMARTCARD_SetConfig(SMARTCARD_HandleTypeDef *hsmartcard); |
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229 | static void SMARTCARD_AdvFeatureConfig(SMARTCARD_HandleTypeDef *hsmartcard); |
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230 | static HAL_StatusTypeDef SMARTCARD_CheckIdleState(SMARTCARD_HandleTypeDef *hsmartcard); |
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231 | static HAL_StatusTypeDef SMARTCARD_WaitOnFlagUntilTimeout(SMARTCARD_HandleTypeDef *hsmartcard, uint32_t Flag, |
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232 | FlagStatus Status, uint32_t Tickstart, uint32_t Timeout); |
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233 | static void SMARTCARD_EndTxTransfer(SMARTCARD_HandleTypeDef *hsmartcard); |
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234 | static void SMARTCARD_EndRxTransfer(SMARTCARD_HandleTypeDef *hsmartcard); |
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235 | static void SMARTCARD_DMATransmitCplt(DMA_HandleTypeDef *hdma); |
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236 | static void SMARTCARD_DMAReceiveCplt(DMA_HandleTypeDef *hdma); |
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237 | static void SMARTCARD_DMAError(DMA_HandleTypeDef *hdma); |
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238 | static void SMARTCARD_DMAAbortOnError(DMA_HandleTypeDef *hdma); |
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239 | static void SMARTCARD_DMATxAbortCallback(DMA_HandleTypeDef *hdma); |
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240 | static void SMARTCARD_DMARxAbortCallback(DMA_HandleTypeDef *hdma); |
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241 | static void SMARTCARD_DMATxOnlyAbortCallback(DMA_HandleTypeDef *hdma); |
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242 | static void SMARTCARD_DMARxOnlyAbortCallback(DMA_HandleTypeDef *hdma); |
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243 | static void SMARTCARD_TxISR(SMARTCARD_HandleTypeDef *hsmartcard); |
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244 | static void SMARTCARD_EndTransmit_IT(SMARTCARD_HandleTypeDef *hsmartcard); |
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245 | static void SMARTCARD_RxISR(SMARTCARD_HandleTypeDef *hsmartcard); |
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246 | /** |
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247 | * @} |
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248 | */ |
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249 | |||
250 | /* Exported functions --------------------------------------------------------*/ |
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251 | |||
252 | /** @defgroup SMARTCARD_Exported_Functions SMARTCARD Exported Functions |
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253 | * @{ |
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254 | */ |
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255 | |||
256 | /** @defgroup SMARTCARD_Exported_Functions_Group1 Initialization and de-initialization functions |
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257 | * @brief Initialization and Configuration functions |
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258 | * |
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259 | @verbatim |
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260 | ============================================================================== |
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261 | ##### Initialization and Configuration functions ##### |
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262 | ============================================================================== |
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263 | [..] |
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264 | This subsection provides a set of functions allowing to initialize the USARTx |
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265 | associated to the SmartCard. |
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266 | (+) These parameters can be configured: |
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267 | (++) Baud Rate |
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268 | (++) Parity: parity should be enabled, frame Length is fixed to 8 bits plus parity |
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269 | (++) Receiver/transmitter modes |
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270 | (++) Synchronous mode (and if enabled, phase, polarity and last bit parameters) |
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271 | (++) Prescaler value |
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272 | (++) Guard bit time |
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273 | (++) NACK enabling or disabling on transmission error |
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274 | |||
275 | (+) The following advanced features can be configured as well: |
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276 | (++) TX and/or RX pin level inversion |
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277 | (++) data logical level inversion |
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278 | (++) RX and TX pins swap |
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279 | (++) RX overrun detection disabling |
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280 | (++) DMA disabling on RX error |
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281 | (++) MSB first on communication line |
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282 | (++) Time out enabling (and if activated, timeout value) |
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283 | (++) Block length |
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284 | (++) Auto-retry counter |
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285 | [..] |
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286 | The HAL_SMARTCARD_Init() API follows the USART synchronous configuration procedures |
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287 | (details for the procedures are available in reference manual). |
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288 | |||
289 | @endverbatim |
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290 | |||
291 | The USART frame format is given in the following table: |
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292 | |||
293 | Table 1. USART frame format. |
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294 | +---------------------------------------------------------------+ |
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295 | | M1M0 bits | PCE bit | USART frame | |
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296 | |-----------------------|---------------------------------------| |
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297 | | 01 | 1 | | SB | 8 bit data | PB | STB | | |
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298 | +---------------------------------------------------------------+ |
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299 | |||
300 | |||
301 | * @{ |
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302 | */ |
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303 | |||
304 | /** |
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305 | * @brief Initialize the SMARTCARD mode according to the specified |
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306 | * parameters in the SMARTCARD_HandleTypeDef and initialize the associated handle. |
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307 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
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308 | * the configuration information for the specified SMARTCARD module. |
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309 | * @retval HAL status |
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310 | */ |
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311 | HAL_StatusTypeDef HAL_SMARTCARD_Init(SMARTCARD_HandleTypeDef *hsmartcard) |
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312 | { |
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313 | /* Check the SMARTCARD handle allocation */ |
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314 | if (hsmartcard == NULL) |
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315 | { |
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316 | return HAL_ERROR; |
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317 | } |
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318 | |||
319 | /* Check the USART associated to the SMARTCARD handle */ |
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320 | assert_param(IS_SMARTCARD_INSTANCE(hsmartcard->Instance)); |
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321 | |||
322 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_RESET) |
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323 | { |
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324 | /* Allocate lock resource and initialize it */ |
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325 | hsmartcard->Lock = HAL_UNLOCKED; |
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326 | |||
327 | #if USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1 |
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328 | SMARTCARD_InitCallbacksToDefault(hsmartcard); |
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329 | |||
330 | if (hsmartcard->MspInitCallback == NULL) |
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331 | { |
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332 | hsmartcard->MspInitCallback = HAL_SMARTCARD_MspInit; |
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333 | } |
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334 | |||
335 | /* Init the low level hardware */ |
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336 | hsmartcard->MspInitCallback(hsmartcard); |
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337 | #else |
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338 | /* Init the low level hardware : GPIO, CLOCK */ |
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339 | HAL_SMARTCARD_MspInit(hsmartcard); |
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340 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACKS */ |
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341 | } |
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342 | |||
343 | hsmartcard->gState = HAL_SMARTCARD_STATE_BUSY; |
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344 | |||
345 | /* Disable the Peripheral to set smartcard mode */ |
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346 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
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347 | |||
348 | /* In SmartCard mode, the following bits must be kept cleared: |
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349 | - LINEN in the USART_CR2 register, |
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350 | - HDSEL and IREN bits in the USART_CR3 register.*/ |
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351 | CLEAR_BIT(hsmartcard->Instance->CR2, USART_CR2_LINEN); |
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352 | CLEAR_BIT(hsmartcard->Instance->CR3, (USART_CR3_HDSEL | USART_CR3_IREN)); |
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353 | |||
354 | /* set the USART in SMARTCARD mode */ |
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355 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_SCEN); |
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356 | |||
357 | /* Set the SMARTCARD Communication parameters */ |
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358 | if (SMARTCARD_SetConfig(hsmartcard) == HAL_ERROR) |
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359 | { |
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360 | return HAL_ERROR; |
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361 | } |
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362 | |||
363 | /* Set the SMARTCARD transmission completion indication */ |
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364 | SMARTCARD_TRANSMISSION_COMPLETION_SETTING(hsmartcard); |
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365 | |||
366 | if (hsmartcard->AdvancedInit.AdvFeatureInit != SMARTCARD_ADVFEATURE_NO_INIT) |
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367 | { |
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368 | SMARTCARD_AdvFeatureConfig(hsmartcard); |
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369 | } |
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370 | |||
371 | /* Enable the Peripheral */ |
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372 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
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373 | |||
374 | /* TEACK and/or REACK to check before moving hsmartcard->gState and hsmartcard->RxState to Ready */ |
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375 | return (SMARTCARD_CheckIdleState(hsmartcard)); |
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376 | } |
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377 | |||
378 | /** |
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379 | * @brief DeInitialize the SMARTCARD peripheral. |
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380 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
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381 | * the configuration information for the specified SMARTCARD module. |
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382 | * @retval HAL status |
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383 | */ |
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384 | HAL_StatusTypeDef HAL_SMARTCARD_DeInit(SMARTCARD_HandleTypeDef *hsmartcard) |
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385 | { |
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386 | /* Check the SMARTCARD handle allocation */ |
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387 | if (hsmartcard == NULL) |
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388 | { |
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389 | return HAL_ERROR; |
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390 | } |
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391 | |||
392 | /* Check the USART/UART associated to the SMARTCARD handle */ |
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393 | assert_param(IS_SMARTCARD_INSTANCE(hsmartcard->Instance)); |
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394 | |||
395 | hsmartcard->gState = HAL_SMARTCARD_STATE_BUSY; |
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396 | |||
397 | /* Disable the Peripheral */ |
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398 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
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399 | |||
400 | WRITE_REG(hsmartcard->Instance->CR1, 0x0U); |
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401 | WRITE_REG(hsmartcard->Instance->CR2, 0x0U); |
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402 | WRITE_REG(hsmartcard->Instance->CR3, 0x0U); |
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403 | WRITE_REG(hsmartcard->Instance->RTOR, 0x0U); |
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404 | WRITE_REG(hsmartcard->Instance->GTPR, 0x0U); |
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405 | |||
406 | /* DeInit the low level hardware */ |
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407 | #if USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1 |
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408 | if (hsmartcard->MspDeInitCallback == NULL) |
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409 | { |
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410 | hsmartcard->MspDeInitCallback = HAL_SMARTCARD_MspDeInit; |
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411 | } |
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412 | /* DeInit the low level hardware */ |
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413 | hsmartcard->MspDeInitCallback(hsmartcard); |
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414 | #else |
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415 | HAL_SMARTCARD_MspDeInit(hsmartcard); |
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416 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACKS */ |
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417 | |||
418 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
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419 | hsmartcard->gState = HAL_SMARTCARD_STATE_RESET; |
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420 | hsmartcard->RxState = HAL_SMARTCARD_STATE_RESET; |
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421 | |||
422 | /* Process Unlock */ |
||
423 | __HAL_UNLOCK(hsmartcard); |
||
424 | |||
425 | return HAL_OK; |
||
426 | } |
||
427 | |||
428 | /** |
||
429 | * @brief Initialize the SMARTCARD MSP. |
||
430 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
431 | * the configuration information for the specified SMARTCARD module. |
||
432 | * @retval None |
||
433 | */ |
||
434 | __weak void HAL_SMARTCARD_MspInit(SMARTCARD_HandleTypeDef *hsmartcard) |
||
435 | { |
||
436 | /* Prevent unused argument(s) compilation warning */ |
||
437 | UNUSED(hsmartcard); |
||
438 | |||
439 | /* NOTE : This function should not be modified, when the callback is needed, |
||
440 | the HAL_SMARTCARD_MspInit can be implemented in the user file |
||
441 | */ |
||
442 | } |
||
443 | |||
444 | /** |
||
445 | * @brief DeInitialize the SMARTCARD MSP. |
||
446 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
447 | * the configuration information for the specified SMARTCARD module. |
||
448 | * @retval None |
||
449 | */ |
||
450 | __weak void HAL_SMARTCARD_MspDeInit(SMARTCARD_HandleTypeDef *hsmartcard) |
||
451 | { |
||
452 | /* Prevent unused argument(s) compilation warning */ |
||
453 | UNUSED(hsmartcard); |
||
454 | |||
455 | /* NOTE : This function should not be modified, when the callback is needed, |
||
456 | the HAL_SMARTCARD_MspDeInit can be implemented in the user file |
||
457 | */ |
||
458 | } |
||
459 | |||
460 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
461 | /** |
||
462 | * @brief Register a User SMARTCARD Callback |
||
463 | * To be used instead of the weak predefined callback |
||
464 | * @param hsmartcard smartcard handle |
||
465 | * @param CallbackID ID of the callback to be registered |
||
466 | * This parameter can be one of the following values: |
||
467 | * @arg @ref HAL_SMARTCARD_TX_COMPLETE_CB_ID Tx Complete Callback ID |
||
468 | * @arg @ref HAL_SMARTCARD_RX_COMPLETE_CB_ID Rx Complete Callback ID |
||
469 | * @arg @ref HAL_SMARTCARD_ERROR_CB_ID Error Callback ID |
||
470 | * @arg @ref HAL_SMARTCARD_ABORT_COMPLETE_CB_ID Abort Complete Callback ID |
||
471 | * @arg @ref HAL_SMARTCARD_ABORT_TRANSMIT_COMPLETE_CB_ID Abort Transmit Complete Callback ID |
||
472 | * @arg @ref HAL_SMARTCARD_ABORT_RECEIVE_COMPLETE_CB_ID Abort Receive Complete Callback ID |
||
473 | * @arg @ref HAL_SMARTCARD_MSPINIT_CB_ID MspInit Callback ID |
||
474 | * @arg @ref HAL_SMARTCARD_MSPDEINIT_CB_ID MspDeInit Callback ID |
||
475 | * @param pCallback pointer to the Callback function |
||
476 | * @retval HAL status |
||
477 | */ |
||
478 | HAL_StatusTypeDef HAL_SMARTCARD_RegisterCallback(SMARTCARD_HandleTypeDef *hsmartcard, |
||
6 | mjames | 479 | HAL_SMARTCARD_CallbackIDTypeDef CallbackID, |
480 | pSMARTCARD_CallbackTypeDef pCallback) |
||
2 | mjames | 481 | { |
482 | HAL_StatusTypeDef status = HAL_OK; |
||
483 | |||
484 | if (pCallback == NULL) |
||
485 | { |
||
486 | /* Update the error code */ |
||
487 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
488 | |||
489 | return HAL_ERROR; |
||
490 | } |
||
491 | /* Process locked */ |
||
492 | __HAL_LOCK(hsmartcard); |
||
493 | |||
494 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
495 | { |
||
496 | switch (CallbackID) |
||
497 | { |
||
498 | |||
499 | case HAL_SMARTCARD_TX_COMPLETE_CB_ID : |
||
500 | hsmartcard->TxCpltCallback = pCallback; |
||
501 | break; |
||
502 | |||
503 | case HAL_SMARTCARD_RX_COMPLETE_CB_ID : |
||
504 | hsmartcard->RxCpltCallback = pCallback; |
||
505 | break; |
||
506 | |||
507 | case HAL_SMARTCARD_ERROR_CB_ID : |
||
508 | hsmartcard->ErrorCallback = pCallback; |
||
509 | break; |
||
510 | |||
511 | case HAL_SMARTCARD_ABORT_COMPLETE_CB_ID : |
||
512 | hsmartcard->AbortCpltCallback = pCallback; |
||
513 | break; |
||
514 | |||
515 | case HAL_SMARTCARD_ABORT_TRANSMIT_COMPLETE_CB_ID : |
||
516 | hsmartcard->AbortTransmitCpltCallback = pCallback; |
||
517 | break; |
||
518 | |||
519 | case HAL_SMARTCARD_ABORT_RECEIVE_COMPLETE_CB_ID : |
||
520 | hsmartcard->AbortReceiveCpltCallback = pCallback; |
||
521 | break; |
||
522 | |||
523 | |||
524 | case HAL_SMARTCARD_MSPINIT_CB_ID : |
||
525 | hsmartcard->MspInitCallback = pCallback; |
||
526 | break; |
||
527 | |||
528 | case HAL_SMARTCARD_MSPDEINIT_CB_ID : |
||
529 | hsmartcard->MspDeInitCallback = pCallback; |
||
530 | break; |
||
531 | |||
532 | default : |
||
533 | /* Update the error code */ |
||
534 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
535 | |||
536 | /* Return error status */ |
||
537 | status = HAL_ERROR; |
||
538 | break; |
||
539 | } |
||
540 | } |
||
541 | else if (hsmartcard->gState == HAL_SMARTCARD_STATE_RESET) |
||
542 | { |
||
543 | switch (CallbackID) |
||
544 | { |
||
545 | case HAL_SMARTCARD_MSPINIT_CB_ID : |
||
546 | hsmartcard->MspInitCallback = pCallback; |
||
547 | break; |
||
548 | |||
549 | case HAL_SMARTCARD_MSPDEINIT_CB_ID : |
||
550 | hsmartcard->MspDeInitCallback = pCallback; |
||
551 | break; |
||
552 | |||
553 | default : |
||
554 | /* Update the error code */ |
||
555 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
556 | |||
557 | /* Return error status */ |
||
558 | status = HAL_ERROR; |
||
559 | break; |
||
560 | } |
||
561 | } |
||
562 | else |
||
563 | { |
||
564 | /* Update the error code */ |
||
565 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
566 | |||
567 | /* Return error status */ |
||
568 | status = HAL_ERROR; |
||
569 | } |
||
570 | |||
571 | /* Release Lock */ |
||
572 | __HAL_UNLOCK(hsmartcard); |
||
573 | |||
574 | return status; |
||
575 | } |
||
576 | |||
577 | /** |
||
578 | * @brief Unregister an SMARTCARD callback |
||
579 | * SMARTCARD callback is redirected to the weak predefined callback |
||
580 | * @param hsmartcard smartcard handle |
||
581 | * @param CallbackID ID of the callback to be unregistered |
||
582 | * This parameter can be one of the following values: |
||
583 | * @arg @ref HAL_SMARTCARD_TX_COMPLETE_CB_ID Tx Complete Callback ID |
||
584 | * @arg @ref HAL_SMARTCARD_RX_COMPLETE_CB_ID Rx Complete Callback ID |
||
585 | * @arg @ref HAL_SMARTCARD_ERROR_CB_ID Error Callback ID |
||
586 | * @arg @ref HAL_SMARTCARD_ABORT_COMPLETE_CB_ID Abort Complete Callback ID |
||
587 | * @arg @ref HAL_SMARTCARD_ABORT_TRANSMIT_COMPLETE_CB_ID Abort Transmit Complete Callback ID |
||
588 | * @arg @ref HAL_SMARTCARD_ABORT_RECEIVE_COMPLETE_CB_ID Abort Receive Complete Callback ID |
||
589 | * @arg @ref HAL_SMARTCARD_MSPINIT_CB_ID MspInit Callback ID |
||
590 | * @arg @ref HAL_SMARTCARD_MSPDEINIT_CB_ID MspDeInit Callback ID |
||
591 | * @retval HAL status |
||
592 | */ |
||
593 | HAL_StatusTypeDef HAL_SMARTCARD_UnRegisterCallback(SMARTCARD_HandleTypeDef *hsmartcard, |
||
594 | HAL_SMARTCARD_CallbackIDTypeDef CallbackID) |
||
595 | { |
||
596 | HAL_StatusTypeDef status = HAL_OK; |
||
597 | |||
598 | /* Process locked */ |
||
599 | __HAL_LOCK(hsmartcard); |
||
600 | |||
601 | if (HAL_SMARTCARD_STATE_READY == hsmartcard->gState) |
||
602 | { |
||
603 | switch (CallbackID) |
||
604 | { |
||
605 | case HAL_SMARTCARD_TX_COMPLETE_CB_ID : |
||
6 | mjames | 606 | hsmartcard->TxCpltCallback = HAL_SMARTCARD_TxCpltCallback; /* Legacy weak TxCpltCallback */ |
2 | mjames | 607 | break; |
608 | |||
609 | case HAL_SMARTCARD_RX_COMPLETE_CB_ID : |
||
6 | mjames | 610 | hsmartcard->RxCpltCallback = HAL_SMARTCARD_RxCpltCallback; /* Legacy weak RxCpltCallback */ |
2 | mjames | 611 | break; |
612 | |||
613 | case HAL_SMARTCARD_ERROR_CB_ID : |
||
6 | mjames | 614 | hsmartcard->ErrorCallback = HAL_SMARTCARD_ErrorCallback; /* Legacy weak ErrorCallback */ |
2 | mjames | 615 | break; |
616 | |||
617 | case HAL_SMARTCARD_ABORT_COMPLETE_CB_ID : |
||
6 | mjames | 618 | hsmartcard->AbortCpltCallback = HAL_SMARTCARD_AbortCpltCallback; /* Legacy weak AbortCpltCallback */ |
2 | mjames | 619 | break; |
620 | |||
621 | case HAL_SMARTCARD_ABORT_TRANSMIT_COMPLETE_CB_ID : |
||
6 | mjames | 622 | hsmartcard->AbortTransmitCpltCallback = HAL_SMARTCARD_AbortTransmitCpltCallback; /* Legacy weak |
623 | AbortTransmitCpltCallback*/ |
||
2 | mjames | 624 | break; |
625 | |||
626 | case HAL_SMARTCARD_ABORT_RECEIVE_COMPLETE_CB_ID : |
||
6 | mjames | 627 | hsmartcard->AbortReceiveCpltCallback = HAL_SMARTCARD_AbortReceiveCpltCallback; /* Legacy weak |
628 | AbortReceiveCpltCallback */ |
||
2 | mjames | 629 | break; |
630 | |||
631 | |||
632 | case HAL_SMARTCARD_MSPINIT_CB_ID : |
||
6 | mjames | 633 | hsmartcard->MspInitCallback = HAL_SMARTCARD_MspInit; /* Legacy weak MspInitCallback */ |
2 | mjames | 634 | break; |
635 | |||
636 | case HAL_SMARTCARD_MSPDEINIT_CB_ID : |
||
6 | mjames | 637 | hsmartcard->MspDeInitCallback = HAL_SMARTCARD_MspDeInit; /* Legacy weak MspDeInitCallback */ |
2 | mjames | 638 | break; |
639 | |||
640 | default : |
||
641 | /* Update the error code */ |
||
642 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
643 | |||
644 | /* Return error status */ |
||
645 | status = HAL_ERROR; |
||
646 | break; |
||
647 | } |
||
648 | } |
||
649 | else if (HAL_SMARTCARD_STATE_RESET == hsmartcard->gState) |
||
650 | { |
||
651 | switch (CallbackID) |
||
652 | { |
||
653 | case HAL_SMARTCARD_MSPINIT_CB_ID : |
||
654 | hsmartcard->MspInitCallback = HAL_SMARTCARD_MspInit; |
||
655 | break; |
||
656 | |||
657 | case HAL_SMARTCARD_MSPDEINIT_CB_ID : |
||
658 | hsmartcard->MspDeInitCallback = HAL_SMARTCARD_MspDeInit; |
||
659 | break; |
||
660 | |||
661 | default : |
||
662 | /* Update the error code */ |
||
663 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
664 | |||
665 | /* Return error status */ |
||
666 | status = HAL_ERROR; |
||
667 | break; |
||
668 | } |
||
669 | } |
||
670 | else |
||
671 | { |
||
672 | /* Update the error code */ |
||
673 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_INVALID_CALLBACK; |
||
674 | |||
675 | /* Return error status */ |
||
676 | status = HAL_ERROR; |
||
677 | } |
||
678 | |||
679 | /* Release Lock */ |
||
680 | __HAL_UNLOCK(hsmartcard); |
||
681 | |||
682 | return status; |
||
683 | } |
||
684 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACKS */ |
||
685 | |||
686 | /** |
||
687 | * @} |
||
688 | */ |
||
689 | |||
690 | /** @defgroup SMARTCARD_Exported_Functions_Group2 IO operation functions |
||
691 | * @brief SMARTCARD Transmit and Receive functions |
||
692 | * |
||
693 | @verbatim |
||
694 | ============================================================================== |
||
695 | ##### IO operation functions ##### |
||
696 | ============================================================================== |
||
697 | [..] |
||
698 | This subsection provides a set of functions allowing to manage the SMARTCARD data transfers. |
||
699 | |||
700 | [..] |
||
701 | Smartcard is a single wire half duplex communication protocol. |
||
702 | The Smartcard interface is designed to support asynchronous protocol Smartcards as |
||
703 | defined in the ISO 7816-3 standard. The USART should be configured as: |
||
704 | (+) 8 bits plus parity: where M=1 and PCE=1 in the USART_CR1 register |
||
705 | (+) 1.5 stop bits when transmitting and receiving: where STOP=11 in the USART_CR2 register. |
||
706 | |||
707 | [..] |
||
6 | mjames | 708 | (#) There are two modes of transfer: |
709 | (##) Blocking mode: The communication is performed in polling mode. |
||
2 | mjames | 710 | The HAL status of all data processing is returned by the same function |
711 | after finishing transfer. |
||
6 | mjames | 712 | (##) Non-Blocking mode: The communication is performed using Interrupts |
2 | mjames | 713 | or DMA, the relevant API's return the HAL status. |
714 | The end of the data processing will be indicated through the |
||
715 | dedicated SMARTCARD IRQ when using Interrupt mode or the DMA IRQ when |
||
716 | using DMA mode. |
||
6 | mjames | 717 | (##) The HAL_SMARTCARD_TxCpltCallback(), HAL_SMARTCARD_RxCpltCallback() user callbacks |
2 | mjames | 718 | will be executed respectively at the end of the Transmit or Receive process |
719 | The HAL_SMARTCARD_ErrorCallback() user callback will be executed when a communication |
||
720 | error is detected. |
||
721 | |||
6 | mjames | 722 | (#) Blocking mode APIs are : |
723 | (##) HAL_SMARTCARD_Transmit() |
||
724 | (##) HAL_SMARTCARD_Receive() |
||
2 | mjames | 725 | |
6 | mjames | 726 | (#) Non Blocking mode APIs with Interrupt are : |
727 | (##) HAL_SMARTCARD_Transmit_IT() |
||
728 | (##) HAL_SMARTCARD_Receive_IT() |
||
729 | (##) HAL_SMARTCARD_IRQHandler() |
||
2 | mjames | 730 | |
6 | mjames | 731 | (#) Non Blocking mode functions with DMA are : |
732 | (##) HAL_SMARTCARD_Transmit_DMA() |
||
733 | (##) HAL_SMARTCARD_Receive_DMA() |
||
2 | mjames | 734 | |
6 | mjames | 735 | (#) A set of Transfer Complete Callbacks are provided in non Blocking mode: |
736 | (##) HAL_SMARTCARD_TxCpltCallback() |
||
737 | (##) HAL_SMARTCARD_RxCpltCallback() |
||
738 | (##) HAL_SMARTCARD_ErrorCallback() |
||
2 | mjames | 739 | |
740 | [..] |
||
741 | (#) Non-Blocking mode transfers could be aborted using Abort API's : |
||
6 | mjames | 742 | (##) HAL_SMARTCARD_Abort() |
743 | (##) HAL_SMARTCARD_AbortTransmit() |
||
744 | (##) HAL_SMARTCARD_AbortReceive() |
||
745 | (##) HAL_SMARTCARD_Abort_IT() |
||
746 | (##) HAL_SMARTCARD_AbortTransmit_IT() |
||
747 | (##) HAL_SMARTCARD_AbortReceive_IT() |
||
2 | mjames | 748 | |
6 | mjames | 749 | (#) For Abort services based on interrupts (HAL_SMARTCARD_Abortxxx_IT), |
750 | a set of Abort Complete Callbacks are provided: |
||
751 | (##) HAL_SMARTCARD_AbortCpltCallback() |
||
752 | (##) HAL_SMARTCARD_AbortTransmitCpltCallback() |
||
753 | (##) HAL_SMARTCARD_AbortReceiveCpltCallback() |
||
2 | mjames | 754 | |
755 | (#) In Non-Blocking mode transfers, possible errors are split into 2 categories. |
||
756 | Errors are handled as follows : |
||
6 | mjames | 757 | (##) Error is considered as Recoverable and non blocking : Transfer could go till end, but error severity is |
758 | to be evaluated by user : this concerns Frame Error, |
||
759 | Parity Error or Noise Error in Interrupt mode reception . |
||
760 | Received character is then retrieved and stored in Rx buffer, |
||
761 | Error code is set to allow user to identify error type, |
||
762 | and HAL_SMARTCARD_ErrorCallback() user callback is executed. Transfer is kept ongoing on SMARTCARD side. |
||
763 | If user wants to abort it, Abort services should be called by user. |
||
764 | (##) Error is considered as Blocking : Transfer could not be completed properly and is aborted. |
||
765 | This concerns Frame Error in Interrupt mode transmission, Overrun Error in Interrupt |
||
766 | mode reception and all errors in DMA mode. |
||
767 | Error code is set to allow user to identify error type, |
||
768 | and HAL_SMARTCARD_ErrorCallback() user callback is executed. |
||
2 | mjames | 769 | |
770 | @endverbatim |
||
771 | * @{ |
||
772 | */ |
||
773 | |||
774 | /** |
||
775 | * @brief Send an amount of data in blocking mode. |
||
776 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
777 | * the configuration information for the specified SMARTCARD module. |
||
778 | * @param pData pointer to data buffer. |
||
779 | * @param Size amount of data to be sent. |
||
780 | * @param Timeout Timeout duration. |
||
781 | * @retval HAL status |
||
782 | */ |
||
783 | HAL_StatusTypeDef HAL_SMARTCARD_Transmit(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size, |
||
784 | uint32_t Timeout) |
||
785 | { |
||
786 | uint32_t tickstart; |
||
787 | uint8_t *ptmpdata = pData; |
||
788 | |||
789 | /* Check that a Tx process is not already ongoing */ |
||
790 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
791 | { |
||
792 | if ((ptmpdata == NULL) || (Size == 0U)) |
||
793 | { |
||
794 | return HAL_ERROR; |
||
795 | } |
||
796 | |||
797 | /* Process Locked */ |
||
798 | __HAL_LOCK(hsmartcard); |
||
799 | |||
800 | hsmartcard->gState = HAL_SMARTCARD_STATE_BUSY_TX; |
||
801 | |||
802 | /* Init tickstart for timeout management */ |
||
803 | tickstart = HAL_GetTick(); |
||
804 | |||
805 | /* Disable the Peripheral first to update mode for TX master */ |
||
806 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
807 | |||
6 | mjames | 808 | /* In case of TX only mode, if NACK is enabled, the USART must be able to monitor |
809 | the bidirectional line to detect a NACK signal in case of parity error. |
||
810 | Therefore, the receiver block must be enabled as well (RE bit must be set). */ |
||
811 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX) |
||
812 | && (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
813 | { |
||
814 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_RE); |
||
815 | } |
||
816 | /* Enable Tx */ |
||
2 | mjames | 817 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_TE); |
818 | |||
819 | /* Enable the Peripheral */ |
||
820 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
821 | |||
6 | mjames | 822 | /* Perform a TX/RX FIFO Flush */ |
823 | __HAL_SMARTCARD_FLUSH_DRREGISTER(hsmartcard); |
||
824 | |||
2 | mjames | 825 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
826 | hsmartcard->TxXferSize = Size; |
||
827 | hsmartcard->TxXferCount = Size; |
||
828 | |||
829 | while (hsmartcard->TxXferCount > 0U) |
||
830 | { |
||
831 | hsmartcard->TxXferCount--; |
||
832 | if (SMARTCARD_WaitOnFlagUntilTimeout(hsmartcard, SMARTCARD_FLAG_TXE, RESET, tickstart, Timeout) != HAL_OK) |
||
833 | { |
||
834 | return HAL_TIMEOUT; |
||
835 | } |
||
836 | hsmartcard->Instance->TDR = (uint8_t)(*ptmpdata & 0xFFU); |
||
837 | ptmpdata++; |
||
838 | } |
||
6 | mjames | 839 | if (SMARTCARD_WaitOnFlagUntilTimeout(hsmartcard, SMARTCARD_TRANSMISSION_COMPLETION_FLAG(hsmartcard), RESET, |
840 | tickstart, Timeout) != HAL_OK) |
||
2 | mjames | 841 | { |
842 | return HAL_TIMEOUT; |
||
843 | } |
||
6 | mjames | 844 | |
845 | /* Disable the Peripheral first to update mode */ |
||
846 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
847 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX) |
||
848 | && (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
2 | mjames | 849 | { |
6 | mjames | 850 | /* In case of TX only mode, if NACK is enabled, receiver block has been enabled |
851 | for Transmit phase. Disable this receiver block. */ |
||
852 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_RE); |
||
2 | mjames | 853 | } |
6 | mjames | 854 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX_RX) |
855 | || (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
856 | { |
||
857 | /* Perform a TX FIFO Flush at end of Tx phase, as all sent bytes are appearing in Rx Data register */ |
||
858 | __HAL_SMARTCARD_FLUSH_DRREGISTER(hsmartcard); |
||
859 | } |
||
860 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
2 | mjames | 861 | |
862 | /* At end of Tx process, restore hsmartcard->gState to Ready */ |
||
863 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
864 | |||
865 | /* Process Unlocked */ |
||
866 | __HAL_UNLOCK(hsmartcard); |
||
867 | |||
868 | return HAL_OK; |
||
869 | } |
||
870 | else |
||
871 | { |
||
872 | return HAL_BUSY; |
||
873 | } |
||
874 | } |
||
875 | |||
876 | /** |
||
877 | * @brief Receive an amount of data in blocking mode. |
||
878 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
879 | * the configuration information for the specified SMARTCARD module. |
||
880 | * @param pData pointer to data buffer. |
||
881 | * @param Size amount of data to be received. |
||
882 | * @param Timeout Timeout duration. |
||
883 | * @retval HAL status |
||
884 | */ |
||
885 | HAL_StatusTypeDef HAL_SMARTCARD_Receive(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size, |
||
886 | uint32_t Timeout) |
||
887 | { |
||
888 | uint32_t tickstart; |
||
889 | uint8_t *ptmpdata = pData; |
||
890 | |||
891 | /* Check that a Rx process is not already ongoing */ |
||
892 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
893 | { |
||
894 | if ((ptmpdata == NULL) || (Size == 0U)) |
||
895 | { |
||
896 | return HAL_ERROR; |
||
897 | } |
||
898 | |||
899 | /* Process Locked */ |
||
900 | __HAL_LOCK(hsmartcard); |
||
901 | |||
902 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
903 | hsmartcard->RxState = HAL_SMARTCARD_STATE_BUSY_RX; |
||
904 | |||
905 | /* Init tickstart for timeout management */ |
||
906 | tickstart = HAL_GetTick(); |
||
907 | |||
908 | hsmartcard->RxXferSize = Size; |
||
909 | hsmartcard->RxXferCount = Size; |
||
910 | |||
911 | /* Check the remain data to be received */ |
||
912 | while (hsmartcard->RxXferCount > 0U) |
||
913 | { |
||
914 | hsmartcard->RxXferCount--; |
||
915 | |||
916 | if (SMARTCARD_WaitOnFlagUntilTimeout(hsmartcard, SMARTCARD_FLAG_RXNE, RESET, tickstart, Timeout) != HAL_OK) |
||
917 | { |
||
918 | return HAL_TIMEOUT; |
||
919 | } |
||
920 | *ptmpdata = (uint8_t)(hsmartcard->Instance->RDR & (uint8_t)0x00FF); |
||
921 | ptmpdata++; |
||
922 | } |
||
923 | |||
924 | /* At end of Rx process, restore hsmartcard->RxState to Ready */ |
||
925 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
926 | |||
927 | /* Process Unlocked */ |
||
928 | __HAL_UNLOCK(hsmartcard); |
||
929 | |||
930 | return HAL_OK; |
||
931 | } |
||
932 | else |
||
933 | { |
||
934 | return HAL_BUSY; |
||
935 | } |
||
936 | } |
||
937 | |||
938 | /** |
||
939 | * @brief Send an amount of data in interrupt mode. |
||
940 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
941 | * the configuration information for the specified SMARTCARD module. |
||
942 | * @param pData pointer to data buffer. |
||
943 | * @param Size amount of data to be sent. |
||
944 | * @retval HAL status |
||
945 | */ |
||
946 | HAL_StatusTypeDef HAL_SMARTCARD_Transmit_IT(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size) |
||
947 | { |
||
948 | /* Check that a Tx process is not already ongoing */ |
||
949 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
950 | { |
||
951 | if ((pData == NULL) || (Size == 0U)) |
||
952 | { |
||
953 | return HAL_ERROR; |
||
954 | } |
||
955 | |||
956 | /* Process Locked */ |
||
957 | __HAL_LOCK(hsmartcard); |
||
958 | |||
959 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
960 | hsmartcard->gState = HAL_SMARTCARD_STATE_BUSY_TX; |
||
961 | |||
962 | hsmartcard->pTxBuffPtr = pData; |
||
963 | hsmartcard->TxXferSize = Size; |
||
964 | hsmartcard->TxXferCount = Size; |
||
965 | hsmartcard->TxISR = NULL; |
||
966 | |||
967 | /* Disable the Peripheral first to update mode for TX master */ |
||
968 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
969 | |||
6 | mjames | 970 | /* In case of TX only mode, if NACK is enabled, the USART must be able to monitor |
971 | the bidirectional line to detect a NACK signal in case of parity error. |
||
972 | Therefore, the receiver block must be enabled as well (RE bit must be set). */ |
||
973 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX) |
||
974 | && (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
975 | { |
||
976 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_RE); |
||
977 | } |
||
978 | /* Enable Tx */ |
||
2 | mjames | 979 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_TE); |
980 | |||
981 | /* Enable the Peripheral */ |
||
982 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
983 | |||
6 | mjames | 984 | /* Perform a TX/RX FIFO Flush */ |
985 | __HAL_SMARTCARD_FLUSH_DRREGISTER(hsmartcard); |
||
986 | |||
2 | mjames | 987 | /* Configure Tx interrupt processing */ |
988 | /* Set the Tx ISR function pointer */ |
||
989 | hsmartcard->TxISR = SMARTCARD_TxISR; |
||
990 | |||
991 | /* Process Unlocked */ |
||
992 | __HAL_UNLOCK(hsmartcard); |
||
993 | |||
994 | /* Enable the SMARTCARD Error Interrupt: (Frame error) */ |
||
995 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
996 | |||
997 | /* Enable the SMARTCARD Transmit Data Register Empty Interrupt */ |
||
998 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_TXEIE); |
||
999 | |||
1000 | return HAL_OK; |
||
1001 | } |
||
1002 | else |
||
1003 | { |
||
1004 | return HAL_BUSY; |
||
1005 | } |
||
1006 | } |
||
1007 | |||
1008 | /** |
||
1009 | * @brief Receive an amount of data in interrupt mode. |
||
1010 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1011 | * the configuration information for the specified SMARTCARD module. |
||
1012 | * @param pData pointer to data buffer. |
||
1013 | * @param Size amount of data to be received. |
||
1014 | * @retval HAL status |
||
1015 | */ |
||
1016 | HAL_StatusTypeDef HAL_SMARTCARD_Receive_IT(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size) |
||
1017 | { |
||
1018 | /* Check that a Rx process is not already ongoing */ |
||
1019 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
1020 | { |
||
1021 | if ((pData == NULL) || (Size == 0U)) |
||
1022 | { |
||
1023 | return HAL_ERROR; |
||
1024 | } |
||
1025 | |||
1026 | /* Process Locked */ |
||
1027 | __HAL_LOCK(hsmartcard); |
||
1028 | |||
1029 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1030 | hsmartcard->RxState = HAL_SMARTCARD_STATE_BUSY_RX; |
||
1031 | |||
1032 | hsmartcard->pRxBuffPtr = pData; |
||
1033 | hsmartcard->RxXferSize = Size; |
||
1034 | hsmartcard->RxXferCount = Size; |
||
1035 | |||
1036 | /* Configure Rx interrupt processing */ |
||
1037 | /* Set the Rx ISR function pointer */ |
||
1038 | hsmartcard->RxISR = SMARTCARD_RxISR; |
||
1039 | |||
1040 | /* Process Unlocked */ |
||
1041 | __HAL_UNLOCK(hsmartcard); |
||
1042 | |||
1043 | /* Enable the SMARTCARD Parity Error and Data Register not empty Interrupts */ |
||
1044 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_PEIE | USART_CR1_RXNEIE); |
||
1045 | |||
1046 | /* Enable the SMARTCARD Error Interrupt: (Frame error, noise error, overrun error) */ |
||
1047 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1048 | |||
1049 | return HAL_OK; |
||
1050 | } |
||
1051 | else |
||
1052 | { |
||
1053 | return HAL_BUSY; |
||
1054 | } |
||
1055 | } |
||
1056 | |||
1057 | /** |
||
1058 | * @brief Send an amount of data in DMA mode. |
||
1059 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1060 | * the configuration information for the specified SMARTCARD module. |
||
1061 | * @param pData pointer to data buffer. |
||
1062 | * @param Size amount of data to be sent. |
||
1063 | * @retval HAL status |
||
1064 | */ |
||
1065 | HAL_StatusTypeDef HAL_SMARTCARD_Transmit_DMA(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size) |
||
1066 | { |
||
1067 | /* Check that a Tx process is not already ongoing */ |
||
1068 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
1069 | { |
||
1070 | if ((pData == NULL) || (Size == 0U)) |
||
1071 | { |
||
1072 | return HAL_ERROR; |
||
1073 | } |
||
1074 | |||
1075 | /* Process Locked */ |
||
1076 | __HAL_LOCK(hsmartcard); |
||
1077 | |||
1078 | hsmartcard->gState = HAL_SMARTCARD_STATE_BUSY_TX; |
||
1079 | |||
1080 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1081 | hsmartcard->pTxBuffPtr = pData; |
||
1082 | hsmartcard->TxXferSize = Size; |
||
1083 | hsmartcard->TxXferCount = Size; |
||
1084 | |||
1085 | /* Disable the Peripheral first to update mode for TX master */ |
||
1086 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
1087 | |||
6 | mjames | 1088 | /* In case of TX only mode, if NACK is enabled, the USART must be able to monitor |
1089 | the bidirectional line to detect a NACK signal in case of parity error. |
||
1090 | Therefore, the receiver block must be enabled as well (RE bit must be set). */ |
||
1091 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX) |
||
1092 | && (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
1093 | { |
||
1094 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_RE); |
||
1095 | } |
||
1096 | /* Enable Tx */ |
||
2 | mjames | 1097 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_TE); |
1098 | |||
1099 | /* Enable the Peripheral */ |
||
1100 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
1101 | |||
6 | mjames | 1102 | /* Perform a TX/RX FIFO Flush */ |
1103 | __HAL_SMARTCARD_FLUSH_DRREGISTER(hsmartcard); |
||
1104 | |||
2 | mjames | 1105 | /* Set the SMARTCARD DMA transfer complete callback */ |
1106 | hsmartcard->hdmatx->XferCpltCallback = SMARTCARD_DMATransmitCplt; |
||
1107 | |||
1108 | /* Set the SMARTCARD error callback */ |
||
1109 | hsmartcard->hdmatx->XferErrorCallback = SMARTCARD_DMAError; |
||
1110 | |||
1111 | /* Set the DMA abort callback */ |
||
1112 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
1113 | |||
1114 | /* Enable the SMARTCARD transmit DMA channel */ |
||
1115 | if (HAL_DMA_Start_IT(hsmartcard->hdmatx, (uint32_t)hsmartcard->pTxBuffPtr, (uint32_t)&hsmartcard->Instance->TDR, |
||
1116 | Size) == HAL_OK) |
||
1117 | { |
||
1118 | /* Clear the TC flag in the ICR register */ |
||
1119 | CLEAR_BIT(hsmartcard->Instance->ICR, USART_ICR_TCCF); |
||
1120 | |||
1121 | /* Process Unlocked */ |
||
1122 | __HAL_UNLOCK(hsmartcard); |
||
1123 | |||
1124 | /* Enable the UART Error Interrupt: (Frame error) */ |
||
1125 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1126 | |||
1127 | /* Enable the DMA transfer for transmit request by setting the DMAT bit |
||
1128 | in the SMARTCARD associated USART CR3 register */ |
||
1129 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1130 | |||
1131 | return HAL_OK; |
||
1132 | } |
||
1133 | else |
||
1134 | { |
||
1135 | /* Set error code to DMA */ |
||
1136 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1137 | |||
1138 | /* Process Unlocked */ |
||
1139 | __HAL_UNLOCK(hsmartcard); |
||
1140 | |||
1141 | /* Restore hsmartcard->State to ready */ |
||
1142 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1143 | |||
1144 | return HAL_ERROR; |
||
1145 | } |
||
1146 | } |
||
1147 | else |
||
1148 | { |
||
1149 | return HAL_BUSY; |
||
1150 | } |
||
1151 | } |
||
1152 | |||
1153 | /** |
||
1154 | * @brief Receive an amount of data in DMA mode. |
||
1155 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1156 | * the configuration information for the specified SMARTCARD module. |
||
1157 | * @param pData pointer to data buffer. |
||
1158 | * @param Size amount of data to be received. |
||
1159 | * @note The SMARTCARD-associated USART parity is enabled (PCE = 1), |
||
1160 | * the received data contain the parity bit (MSB position). |
||
1161 | * @retval HAL status |
||
1162 | */ |
||
1163 | HAL_StatusTypeDef HAL_SMARTCARD_Receive_DMA(SMARTCARD_HandleTypeDef *hsmartcard, uint8_t *pData, uint16_t Size) |
||
1164 | { |
||
1165 | /* Check that a Rx process is not already ongoing */ |
||
1166 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
1167 | { |
||
1168 | if ((pData == NULL) || (Size == 0U)) |
||
1169 | { |
||
1170 | return HAL_ERROR; |
||
1171 | } |
||
1172 | |||
1173 | /* Process Locked */ |
||
1174 | __HAL_LOCK(hsmartcard); |
||
1175 | |||
1176 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1177 | hsmartcard->RxState = HAL_SMARTCARD_STATE_BUSY_RX; |
||
1178 | |||
1179 | hsmartcard->pRxBuffPtr = pData; |
||
1180 | hsmartcard->RxXferSize = Size; |
||
1181 | |||
1182 | /* Set the SMARTCARD DMA transfer complete callback */ |
||
1183 | hsmartcard->hdmarx->XferCpltCallback = SMARTCARD_DMAReceiveCplt; |
||
1184 | |||
1185 | /* Set the SMARTCARD DMA error callback */ |
||
1186 | hsmartcard->hdmarx->XferErrorCallback = SMARTCARD_DMAError; |
||
1187 | |||
1188 | /* Set the DMA abort callback */ |
||
1189 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
1190 | |||
1191 | /* Enable the DMA channel */ |
||
1192 | if (HAL_DMA_Start_IT(hsmartcard->hdmarx, (uint32_t)&hsmartcard->Instance->RDR, (uint32_t)hsmartcard->pRxBuffPtr, |
||
1193 | Size) == HAL_OK) |
||
1194 | { |
||
1195 | /* Process Unlocked */ |
||
1196 | __HAL_UNLOCK(hsmartcard); |
||
1197 | |||
1198 | /* Enable the SMARTCARD Parity Error Interrupt */ |
||
1199 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_PEIE); |
||
1200 | |||
1201 | /* Enable the SMARTCARD Error Interrupt: (Frame error, noise error, overrun error) */ |
||
1202 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1203 | |||
1204 | /* Enable the DMA transfer for the receiver request by setting the DMAR bit |
||
1205 | in the SMARTCARD associated USART CR3 register */ |
||
1206 | SET_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1207 | |||
1208 | return HAL_OK; |
||
1209 | } |
||
1210 | else |
||
1211 | { |
||
1212 | /* Set error code to DMA */ |
||
1213 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1214 | |||
1215 | /* Process Unlocked */ |
||
1216 | __HAL_UNLOCK(hsmartcard); |
||
1217 | |||
1218 | /* Restore hsmartcard->State to ready */ |
||
1219 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1220 | |||
1221 | return HAL_ERROR; |
||
1222 | } |
||
1223 | } |
||
1224 | else |
||
1225 | { |
||
1226 | return HAL_BUSY; |
||
1227 | } |
||
1228 | } |
||
1229 | |||
1230 | /** |
||
1231 | * @brief Abort ongoing transfers (blocking mode). |
||
1232 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1233 | * the configuration information for the specified SMARTCARD module. |
||
1234 | * @note This procedure could be used for aborting any ongoing transfer started in Interrupt or DMA mode. |
||
1235 | * This procedure performs following operations : |
||
1236 | * - Disable SMARTCARD Interrupts (Tx and Rx) |
||
1237 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1238 | * - Abort DMA transfer by calling HAL_DMA_Abort (in case of transfer in DMA mode) |
||
1239 | * - Set handle State to READY |
||
1240 | * @note This procedure is executed in blocking mode : when exiting function, Abort is considered as completed. |
||
1241 | * @retval HAL status |
||
1242 | */ |
||
1243 | HAL_StatusTypeDef HAL_SMARTCARD_Abort(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1244 | { |
||
1245 | /* Disable RTOIE, EOBIE, TXEIE, TCIE, RXNE, PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
1246 | CLEAR_BIT(hsmartcard->Instance->CR1, |
||
6 | mjames | 1247 | (USART_CR1_RXNEIE | USART_CR1_PEIE | USART_CR1_TXEIE | USART_CR1_TCIE | USART_CR1_RTOIE | |
1248 | USART_CR1_EOBIE)); |
||
2 | mjames | 1249 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
1250 | |||
1251 | /* Disable the SMARTCARD DMA Tx request if enabled */ |
||
1252 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1253 | { |
||
1254 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1255 | |||
1256 | /* Abort the SMARTCARD DMA Tx channel : use blocking DMA Abort API (no callback) */ |
||
1257 | if (hsmartcard->hdmatx != NULL) |
||
1258 | { |
||
1259 | /* Set the SMARTCARD DMA Abort callback to Null. |
||
1260 | No call back execution at end of DMA abort procedure */ |
||
1261 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
1262 | |||
1263 | if (HAL_DMA_Abort(hsmartcard->hdmatx) != HAL_OK) |
||
1264 | { |
||
1265 | if (HAL_DMA_GetError(hsmartcard->hdmatx) == HAL_DMA_ERROR_TIMEOUT) |
||
1266 | { |
||
1267 | /* Set error code to DMA */ |
||
1268 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1269 | |||
1270 | return HAL_TIMEOUT; |
||
1271 | } |
||
1272 | } |
||
1273 | } |
||
1274 | } |
||
1275 | |||
1276 | /* Disable the SMARTCARD DMA Rx request if enabled */ |
||
1277 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1278 | { |
||
1279 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1280 | |||
1281 | /* Abort the SMARTCARD DMA Rx channel : use blocking DMA Abort API (no callback) */ |
||
1282 | if (hsmartcard->hdmarx != NULL) |
||
1283 | { |
||
1284 | /* Set the SMARTCARD DMA Abort callback to Null. |
||
1285 | No call back execution at end of DMA abort procedure */ |
||
1286 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
1287 | |||
1288 | if (HAL_DMA_Abort(hsmartcard->hdmarx) != HAL_OK) |
||
1289 | { |
||
1290 | if (HAL_DMA_GetError(hsmartcard->hdmarx) == HAL_DMA_ERROR_TIMEOUT) |
||
1291 | { |
||
1292 | /* Set error code to DMA */ |
||
1293 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1294 | |||
1295 | return HAL_TIMEOUT; |
||
1296 | } |
||
1297 | } |
||
1298 | } |
||
1299 | } |
||
1300 | |||
1301 | /* Reset Tx and Rx transfer counters */ |
||
1302 | hsmartcard->TxXferCount = 0U; |
||
1303 | hsmartcard->RxXferCount = 0U; |
||
1304 | |||
1305 | /* Clear the Error flags in the ICR register */ |
||
1306 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 1307 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | SMARTCARD_CLEAR_FEF | |
1308 | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 1309 | |
1310 | /* Restore hsmartcard->gState and hsmartcard->RxState to Ready */ |
||
1311 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1312 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1313 | |||
1314 | /* Reset Handle ErrorCode to No Error */ |
||
1315 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1316 | |||
1317 | return HAL_OK; |
||
1318 | } |
||
1319 | |||
1320 | /** |
||
1321 | * @brief Abort ongoing Transmit transfer (blocking mode). |
||
1322 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1323 | * the configuration information for the specified SMARTCARD module. |
||
1324 | * @note This procedure could be used for aborting any ongoing Tx transfer started in Interrupt or DMA mode. |
||
1325 | * This procedure performs following operations : |
||
1326 | * - Disable SMARTCARD Interrupts (Tx) |
||
1327 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1328 | * - Abort DMA transfer by calling HAL_DMA_Abort (in case of transfer in DMA mode) |
||
1329 | * - Set handle State to READY |
||
1330 | * @note This procedure is executed in blocking mode : when exiting function, Abort is considered as completed. |
||
1331 | * @retval HAL status |
||
1332 | */ |
||
1333 | HAL_StatusTypeDef HAL_SMARTCARD_AbortTransmit(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1334 | { |
||
1335 | /* Disable TXEIE and TCIE interrupts */ |
||
1336 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_TXEIE | USART_CR1_TCIE)); |
||
1337 | |||
1338 | /* Check if a receive process is ongoing or not. If not disable ERR IT */ |
||
1339 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
1340 | { |
||
1341 | /* Disable the SMARTCARD Error Interrupt: (Frame error) */ |
||
1342 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1343 | } |
||
1344 | |||
1345 | /* Disable the SMARTCARD DMA Tx request if enabled */ |
||
1346 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1347 | { |
||
1348 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1349 | |||
1350 | /* Abort the SMARTCARD DMA Tx channel : use blocking DMA Abort API (no callback) */ |
||
1351 | if (hsmartcard->hdmatx != NULL) |
||
1352 | { |
||
1353 | /* Set the SMARTCARD DMA Abort callback to Null. |
||
1354 | No call back execution at end of DMA abort procedure */ |
||
1355 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
1356 | |||
1357 | if (HAL_DMA_Abort(hsmartcard->hdmatx) != HAL_OK) |
||
1358 | { |
||
1359 | if (HAL_DMA_GetError(hsmartcard->hdmatx) == HAL_DMA_ERROR_TIMEOUT) |
||
1360 | { |
||
1361 | /* Set error code to DMA */ |
||
1362 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1363 | |||
1364 | return HAL_TIMEOUT; |
||
1365 | } |
||
1366 | } |
||
1367 | } |
||
1368 | } |
||
1369 | |||
1370 | /* Reset Tx transfer counter */ |
||
1371 | hsmartcard->TxXferCount = 0U; |
||
1372 | |||
1373 | /* Clear the Error flags in the ICR register */ |
||
1374 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, SMARTCARD_CLEAR_FEF); |
||
1375 | |||
1376 | /* Restore hsmartcard->gState to Ready */ |
||
1377 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1378 | |||
1379 | return HAL_OK; |
||
1380 | } |
||
1381 | |||
1382 | /** |
||
1383 | * @brief Abort ongoing Receive transfer (blocking mode). |
||
1384 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1385 | * the configuration information for the specified SMARTCARD module. |
||
1386 | * @note This procedure could be used for aborting any ongoing Rx transfer started in Interrupt or DMA mode. |
||
1387 | * This procedure performs following operations : |
||
1388 | * - Disable SMARTCARD Interrupts (Rx) |
||
1389 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1390 | * - Abort DMA transfer by calling HAL_DMA_Abort (in case of transfer in DMA mode) |
||
1391 | * - Set handle State to READY |
||
1392 | * @note This procedure is executed in blocking mode : when exiting function, Abort is considered as completed. |
||
1393 | * @retval HAL status |
||
1394 | */ |
||
1395 | HAL_StatusTypeDef HAL_SMARTCARD_AbortReceive(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1396 | { |
||
1397 | /* Disable RTOIE, EOBIE, RXNE, PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
1398 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_RXNEIE | USART_CR1_PEIE | USART_CR1_RTOIE | USART_CR1_EOBIE)); |
||
1399 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1400 | |||
1401 | /* Check if a Transmit process is ongoing or not. If not disable ERR IT */ |
||
1402 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
1403 | { |
||
1404 | /* Disable the SMARTCARD Error Interrupt: (Frame error) */ |
||
1405 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1406 | } |
||
1407 | |||
1408 | /* Disable the SMARTCARD DMA Rx request if enabled */ |
||
1409 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1410 | { |
||
1411 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1412 | |||
1413 | /* Abort the SMARTCARD DMA Rx channel : use blocking DMA Abort API (no callback) */ |
||
1414 | if (hsmartcard->hdmarx != NULL) |
||
1415 | { |
||
1416 | /* Set the SMARTCARD DMA Abort callback to Null. |
||
1417 | No call back execution at end of DMA abort procedure */ |
||
1418 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
1419 | |||
1420 | if (HAL_DMA_Abort(hsmartcard->hdmarx) != HAL_OK) |
||
1421 | { |
||
1422 | if (HAL_DMA_GetError(hsmartcard->hdmarx) == HAL_DMA_ERROR_TIMEOUT) |
||
1423 | { |
||
1424 | /* Set error code to DMA */ |
||
1425 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_DMA; |
||
1426 | |||
1427 | return HAL_TIMEOUT; |
||
1428 | } |
||
1429 | } |
||
1430 | } |
||
1431 | } |
||
1432 | |||
1433 | /* Reset Rx transfer counter */ |
||
1434 | hsmartcard->RxXferCount = 0U; |
||
1435 | |||
1436 | /* Clear the Error flags in the ICR register */ |
||
1437 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 1438 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | SMARTCARD_CLEAR_FEF | |
1439 | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 1440 | |
1441 | /* Restore hsmartcard->RxState to Ready */ |
||
1442 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1443 | |||
1444 | return HAL_OK; |
||
1445 | } |
||
1446 | |||
1447 | /** |
||
1448 | * @brief Abort ongoing transfers (Interrupt mode). |
||
1449 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1450 | * the configuration information for the specified SMARTCARD module. |
||
1451 | * @note This procedure could be used for aborting any ongoing transfer started in Interrupt or DMA mode. |
||
1452 | * This procedure performs following operations : |
||
1453 | * - Disable SMARTCARD Interrupts (Tx and Rx) |
||
1454 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1455 | * - Abort DMA transfer by calling HAL_DMA_Abort_IT (in case of transfer in DMA mode) |
||
1456 | * - Set handle State to READY |
||
1457 | * - At abort completion, call user abort complete callback |
||
1458 | * @note This procedure is executed in Interrupt mode, meaning that abort procedure could be |
||
1459 | * considered as completed only when user abort complete callback is executed (not when exiting function). |
||
1460 | * @retval HAL status |
||
1461 | */ |
||
1462 | HAL_StatusTypeDef HAL_SMARTCARD_Abort_IT(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1463 | { |
||
1464 | uint32_t abortcplt = 1U; |
||
1465 | |||
1466 | /* Disable RTOIE, EOBIE, TXEIE, TCIE, RXNE, PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
1467 | CLEAR_BIT(hsmartcard->Instance->CR1, |
||
6 | mjames | 1468 | (USART_CR1_RXNEIE | USART_CR1_PEIE | USART_CR1_TXEIE | USART_CR1_TCIE | USART_CR1_RTOIE | |
1469 | USART_CR1_EOBIE)); |
||
2 | mjames | 1470 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
1471 | |||
6 | mjames | 1472 | /* If DMA Tx and/or DMA Rx Handles are associated to SMARTCARD Handle, |
1473 | DMA Abort complete callbacks should be initialised before any call |
||
1474 | to DMA Abort functions */ |
||
2 | mjames | 1475 | /* DMA Tx Handle is valid */ |
1476 | if (hsmartcard->hdmatx != NULL) |
||
1477 | { |
||
1478 | /* Set DMA Abort Complete callback if SMARTCARD DMA Tx request if enabled. |
||
1479 | Otherwise, set it to NULL */ |
||
1480 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1481 | { |
||
1482 | hsmartcard->hdmatx->XferAbortCallback = SMARTCARD_DMATxAbortCallback; |
||
1483 | } |
||
1484 | else |
||
1485 | { |
||
1486 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
1487 | } |
||
1488 | } |
||
1489 | /* DMA Rx Handle is valid */ |
||
1490 | if (hsmartcard->hdmarx != NULL) |
||
1491 | { |
||
1492 | /* Set DMA Abort Complete callback if SMARTCARD DMA Rx request if enabled. |
||
1493 | Otherwise, set it to NULL */ |
||
1494 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1495 | { |
||
1496 | hsmartcard->hdmarx->XferAbortCallback = SMARTCARD_DMARxAbortCallback; |
||
1497 | } |
||
1498 | else |
||
1499 | { |
||
1500 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
1501 | } |
||
1502 | } |
||
1503 | |||
1504 | /* Disable the SMARTCARD DMA Tx request if enabled */ |
||
1505 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1506 | { |
||
1507 | /* Disable DMA Tx at UART level */ |
||
1508 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1509 | |||
1510 | /* Abort the SMARTCARD DMA Tx channel : use non blocking DMA Abort API (callback) */ |
||
1511 | if (hsmartcard->hdmatx != NULL) |
||
1512 | { |
||
1513 | /* SMARTCARD Tx DMA Abort callback has already been initialised : |
||
1514 | will lead to call HAL_SMARTCARD_AbortCpltCallback() at end of DMA abort procedure */ |
||
1515 | |||
1516 | /* Abort DMA TX */ |
||
1517 | if (HAL_DMA_Abort_IT(hsmartcard->hdmatx) != HAL_OK) |
||
1518 | { |
||
1519 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
1520 | } |
||
1521 | else |
||
1522 | { |
||
1523 | abortcplt = 0U; |
||
1524 | } |
||
1525 | } |
||
1526 | } |
||
1527 | |||
1528 | /* Disable the SMARTCARD DMA Rx request if enabled */ |
||
1529 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1530 | { |
||
1531 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1532 | |||
1533 | /* Abort the SMARTCARD DMA Rx channel : use non blocking DMA Abort API (callback) */ |
||
1534 | if (hsmartcard->hdmarx != NULL) |
||
1535 | { |
||
1536 | /* SMARTCARD Rx DMA Abort callback has already been initialised : |
||
1537 | will lead to call HAL_SMARTCARD_AbortCpltCallback() at end of DMA abort procedure */ |
||
1538 | |||
1539 | /* Abort DMA RX */ |
||
1540 | if (HAL_DMA_Abort_IT(hsmartcard->hdmarx) != HAL_OK) |
||
1541 | { |
||
1542 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
1543 | abortcplt = 1U; |
||
1544 | } |
||
1545 | else |
||
1546 | { |
||
1547 | abortcplt = 0U; |
||
1548 | } |
||
1549 | } |
||
1550 | } |
||
1551 | |||
1552 | /* if no DMA abort complete callback execution is required => call user Abort Complete callback */ |
||
1553 | if (abortcplt == 1U) |
||
1554 | { |
||
1555 | /* Reset Tx and Rx transfer counters */ |
||
1556 | hsmartcard->TxXferCount = 0U; |
||
1557 | hsmartcard->RxXferCount = 0U; |
||
1558 | |||
1559 | /* Clear ISR function pointers */ |
||
1560 | hsmartcard->RxISR = NULL; |
||
1561 | hsmartcard->TxISR = NULL; |
||
1562 | |||
1563 | /* Reset errorCode */ |
||
1564 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1565 | |||
1566 | /* Clear the Error flags in the ICR register */ |
||
1567 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 1568 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | |
1569 | SMARTCARD_CLEAR_FEF | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 1570 | |
1571 | /* Restore hsmartcard->gState and hsmartcard->RxState to Ready */ |
||
1572 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1573 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1574 | |||
1575 | /* As no DMA to be aborted, call directly user Abort complete callback */ |
||
1576 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1577 | /* Call registered Abort complete callback */ |
||
1578 | hsmartcard->AbortCpltCallback(hsmartcard); |
||
1579 | #else |
||
1580 | /* Call legacy weak Abort complete callback */ |
||
1581 | HAL_SMARTCARD_AbortCpltCallback(hsmartcard); |
||
1582 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1583 | } |
||
1584 | |||
1585 | return HAL_OK; |
||
1586 | } |
||
1587 | |||
1588 | /** |
||
1589 | * @brief Abort ongoing Transmit transfer (Interrupt mode). |
||
1590 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1591 | * the configuration information for the specified SMARTCARD module. |
||
1592 | * @note This procedure could be used for aborting any ongoing Tx transfer started in Interrupt or DMA mode. |
||
1593 | * This procedure performs following operations : |
||
1594 | * - Disable SMARTCARD Interrupts (Tx) |
||
1595 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1596 | * - Abort DMA transfer by calling HAL_DMA_Abort_IT (in case of transfer in DMA mode) |
||
1597 | * - Set handle State to READY |
||
1598 | * - At abort completion, call user abort complete callback |
||
1599 | * @note This procedure is executed in Interrupt mode, meaning that abort procedure could be |
||
1600 | * considered as completed only when user abort complete callback is executed (not when exiting function). |
||
1601 | * @retval HAL status |
||
1602 | */ |
||
1603 | HAL_StatusTypeDef HAL_SMARTCARD_AbortTransmit_IT(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1604 | { |
||
1605 | /* Disable TXEIE and TCIE interrupts */ |
||
1606 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_TXEIE | USART_CR1_TCIE)); |
||
1607 | |||
1608 | /* Check if a receive process is ongoing or not. If not disable ERR IT */ |
||
1609 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
1610 | { |
||
1611 | /* Disable the SMARTCARD Error Interrupt: (Frame error) */ |
||
1612 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1613 | } |
||
1614 | |||
1615 | /* Disable the SMARTCARD DMA Tx request if enabled */ |
||
1616 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1617 | { |
||
1618 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1619 | |||
1620 | /* Abort the SMARTCARD DMA Tx channel : use non blocking DMA Abort API (callback) */ |
||
1621 | if (hsmartcard->hdmatx != NULL) |
||
1622 | { |
||
1623 | /* Set the SMARTCARD DMA Abort callback : |
||
1624 | will lead to call HAL_SMARTCARD_AbortCpltCallback() at end of DMA abort procedure */ |
||
1625 | hsmartcard->hdmatx->XferAbortCallback = SMARTCARD_DMATxOnlyAbortCallback; |
||
1626 | |||
1627 | /* Abort DMA TX */ |
||
1628 | if (HAL_DMA_Abort_IT(hsmartcard->hdmatx) != HAL_OK) |
||
1629 | { |
||
1630 | /* Call Directly hsmartcard->hdmatx->XferAbortCallback function in case of error */ |
||
1631 | hsmartcard->hdmatx->XferAbortCallback(hsmartcard->hdmatx); |
||
1632 | } |
||
1633 | } |
||
1634 | else |
||
1635 | { |
||
1636 | /* Reset Tx transfer counter */ |
||
1637 | hsmartcard->TxXferCount = 0U; |
||
1638 | |||
1639 | /* Clear TxISR function pointers */ |
||
1640 | hsmartcard->TxISR = NULL; |
||
1641 | |||
1642 | /* Restore hsmartcard->gState to Ready */ |
||
1643 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1644 | |||
1645 | /* As no DMA to be aborted, call directly user Abort complete callback */ |
||
1646 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1647 | /* Call registered Abort Transmit Complete Callback */ |
||
1648 | hsmartcard->AbortTransmitCpltCallback(hsmartcard); |
||
1649 | #else |
||
1650 | /* Call legacy weak Abort Transmit Complete Callback */ |
||
1651 | HAL_SMARTCARD_AbortTransmitCpltCallback(hsmartcard); |
||
1652 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1653 | } |
||
1654 | } |
||
1655 | else |
||
1656 | { |
||
1657 | /* Reset Tx transfer counter */ |
||
1658 | hsmartcard->TxXferCount = 0U; |
||
1659 | |||
1660 | /* Clear TxISR function pointers */ |
||
1661 | hsmartcard->TxISR = NULL; |
||
1662 | |||
1663 | /* Clear the Error flags in the ICR register */ |
||
1664 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, SMARTCARD_CLEAR_FEF); |
||
1665 | |||
1666 | /* Restore hsmartcard->gState to Ready */ |
||
1667 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
1668 | |||
1669 | /* As no DMA to be aborted, call directly user Abort complete callback */ |
||
1670 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1671 | /* Call registered Abort Transmit Complete Callback */ |
||
1672 | hsmartcard->AbortTransmitCpltCallback(hsmartcard); |
||
1673 | #else |
||
1674 | /* Call legacy weak Abort Transmit Complete Callback */ |
||
1675 | HAL_SMARTCARD_AbortTransmitCpltCallback(hsmartcard); |
||
1676 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1677 | } |
||
1678 | |||
1679 | return HAL_OK; |
||
1680 | } |
||
1681 | |||
1682 | /** |
||
1683 | * @brief Abort ongoing Receive transfer (Interrupt mode). |
||
1684 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1685 | * the configuration information for the specified SMARTCARD module. |
||
1686 | * @note This procedure could be used for aborting any ongoing Rx transfer started in Interrupt or DMA mode. |
||
1687 | * This procedure performs following operations : |
||
1688 | * - Disable SMARTCARD Interrupts (Rx) |
||
1689 | * - Disable the DMA transfer in the peripheral register (if enabled) |
||
1690 | * - Abort DMA transfer by calling HAL_DMA_Abort_IT (in case of transfer in DMA mode) |
||
1691 | * - Set handle State to READY |
||
1692 | * - At abort completion, call user abort complete callback |
||
1693 | * @note This procedure is executed in Interrupt mode, meaning that abort procedure could be |
||
1694 | * considered as completed only when user abort complete callback is executed (not when exiting function). |
||
1695 | * @retval HAL status |
||
1696 | */ |
||
1697 | HAL_StatusTypeDef HAL_SMARTCARD_AbortReceive_IT(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1698 | { |
||
1699 | /* Disable RTOIE, EOBIE, RXNE, PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
1700 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_RXNEIE | USART_CR1_PEIE | USART_CR1_RTOIE | USART_CR1_EOBIE)); |
||
1701 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1702 | |||
1703 | /* Check if a Transmit process is ongoing or not. If not disable ERR IT */ |
||
1704 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
1705 | { |
||
1706 | /* Disable the SMARTCARD Error Interrupt: (Frame error) */ |
||
1707 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
1708 | } |
||
1709 | |||
1710 | /* Disable the SMARTCARD DMA Rx request if enabled */ |
||
1711 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1712 | { |
||
1713 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1714 | |||
1715 | /* Abort the SMARTCARD DMA Rx channel : use non blocking DMA Abort API (callback) */ |
||
1716 | if (hsmartcard->hdmarx != NULL) |
||
1717 | { |
||
1718 | /* Set the SMARTCARD DMA Abort callback : |
||
1719 | will lead to call HAL_SMARTCARD_AbortCpltCallback() at end of DMA abort procedure */ |
||
1720 | hsmartcard->hdmarx->XferAbortCallback = SMARTCARD_DMARxOnlyAbortCallback; |
||
1721 | |||
1722 | /* Abort DMA RX */ |
||
1723 | if (HAL_DMA_Abort_IT(hsmartcard->hdmarx) != HAL_OK) |
||
1724 | { |
||
1725 | /* Call Directly hsmartcard->hdmarx->XferAbortCallback function in case of error */ |
||
1726 | hsmartcard->hdmarx->XferAbortCallback(hsmartcard->hdmarx); |
||
1727 | } |
||
1728 | } |
||
1729 | else |
||
1730 | { |
||
1731 | /* Reset Rx transfer counter */ |
||
1732 | hsmartcard->RxXferCount = 0U; |
||
1733 | |||
1734 | /* Clear RxISR function pointer */ |
||
1735 | hsmartcard->RxISR = NULL; |
||
1736 | |||
1737 | /* Clear the Error flags in the ICR register */ |
||
1738 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 1739 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | |
1740 | SMARTCARD_CLEAR_FEF | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 1741 | |
1742 | /* Restore hsmartcard->RxState to Ready */ |
||
1743 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1744 | |||
1745 | /* As no DMA to be aborted, call directly user Abort complete callback */ |
||
1746 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1747 | /* Call registered Abort Receive Complete Callback */ |
||
1748 | hsmartcard->AbortReceiveCpltCallback(hsmartcard); |
||
1749 | #else |
||
1750 | /* Call legacy weak Abort Receive Complete Callback */ |
||
1751 | HAL_SMARTCARD_AbortReceiveCpltCallback(hsmartcard); |
||
1752 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1753 | } |
||
1754 | } |
||
1755 | else |
||
1756 | { |
||
1757 | /* Reset Rx transfer counter */ |
||
1758 | hsmartcard->RxXferCount = 0U; |
||
1759 | |||
1760 | /* Clear RxISR function pointer */ |
||
1761 | hsmartcard->RxISR = NULL; |
||
1762 | |||
1763 | /* Clear the Error flags in the ICR register */ |
||
1764 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 1765 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | |
1766 | SMARTCARD_CLEAR_FEF | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 1767 | |
1768 | /* Restore hsmartcard->RxState to Ready */ |
||
1769 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
1770 | |||
1771 | /* As no DMA to be aborted, call directly user Abort complete callback */ |
||
1772 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1773 | /* Call registered Abort Receive Complete Callback */ |
||
1774 | hsmartcard->AbortReceiveCpltCallback(hsmartcard); |
||
1775 | #else |
||
1776 | /* Call legacy weak Abort Receive Complete Callback */ |
||
1777 | HAL_SMARTCARD_AbortReceiveCpltCallback(hsmartcard); |
||
1778 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1779 | } |
||
1780 | |||
1781 | return HAL_OK; |
||
1782 | } |
||
1783 | |||
1784 | /** |
||
1785 | * @brief Handle SMARTCARD interrupt requests. |
||
1786 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
1787 | * the configuration information for the specified SMARTCARD module. |
||
1788 | * @retval None |
||
1789 | */ |
||
1790 | void HAL_SMARTCARD_IRQHandler(SMARTCARD_HandleTypeDef *hsmartcard) |
||
1791 | { |
||
1792 | uint32_t isrflags = READ_REG(hsmartcard->Instance->ISR); |
||
1793 | uint32_t cr1its = READ_REG(hsmartcard->Instance->CR1); |
||
1794 | uint32_t cr3its = READ_REG(hsmartcard->Instance->CR3); |
||
1795 | uint32_t errorflags; |
||
1796 | uint32_t errorcode; |
||
1797 | |||
1798 | /* If no error occurs */ |
||
1799 | errorflags = (isrflags & (uint32_t)(USART_ISR_PE | USART_ISR_FE | USART_ISR_ORE | USART_ISR_NE | USART_ISR_RTOF)); |
||
1800 | if (errorflags == 0U) |
||
1801 | { |
||
1802 | /* SMARTCARD in mode Receiver ---------------------------------------------------*/ |
||
1803 | if (((isrflags & USART_ISR_RXNE) != 0U) |
||
1804 | && ((cr1its & USART_CR1_RXNEIE) != 0U)) |
||
1805 | { |
||
1806 | if (hsmartcard->RxISR != NULL) |
||
1807 | { |
||
1808 | hsmartcard->RxISR(hsmartcard); |
||
1809 | } |
||
1810 | return; |
||
1811 | } |
||
1812 | } |
||
1813 | |||
1814 | /* If some errors occur */ |
||
1815 | if ((errorflags != 0U) |
||
1816 | && (((cr3its & USART_CR3_EIE) != 0U) |
||
1817 | || ((cr1its & (USART_CR1_RXNEIE | USART_CR1_PEIE)) != 0U))) |
||
1818 | { |
||
1819 | /* SMARTCARD parity error interrupt occurred -------------------------------------*/ |
||
1820 | if (((isrflags & USART_ISR_PE) != 0U) && ((cr1its & USART_CR1_PEIE) != 0U)) |
||
1821 | { |
||
1822 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_PEF); |
||
1823 | |||
1824 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_PE; |
||
1825 | } |
||
1826 | |||
1827 | /* SMARTCARD frame error interrupt occurred --------------------------------------*/ |
||
1828 | if (((isrflags & USART_ISR_FE) != 0U) && ((cr3its & USART_CR3_EIE) != 0U)) |
||
1829 | { |
||
1830 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_FEF); |
||
1831 | |||
1832 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_FE; |
||
1833 | } |
||
1834 | |||
1835 | /* SMARTCARD noise error interrupt occurred --------------------------------------*/ |
||
1836 | if (((isrflags & USART_ISR_NE) != 0U) && ((cr3its & USART_CR3_EIE) != 0U)) |
||
1837 | { |
||
1838 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_NEF); |
||
1839 | |||
1840 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_NE; |
||
1841 | } |
||
1842 | |||
1843 | /* SMARTCARD Over-Run interrupt occurred -----------------------------------------*/ |
||
1844 | if (((isrflags & USART_ISR_ORE) != 0U) |
||
1845 | && (((cr1its & USART_CR1_RXNEIE) != 0U) |
||
1846 | || ((cr3its & USART_CR3_EIE) != 0U))) |
||
1847 | { |
||
1848 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_OREF); |
||
1849 | |||
1850 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_ORE; |
||
1851 | } |
||
1852 | |||
1853 | /* SMARTCARD receiver timeout interrupt occurred -----------------------------------------*/ |
||
1854 | if (((isrflags & USART_ISR_RTOF) != 0U) && ((cr1its & USART_CR1_RTOIE) != 0U)) |
||
1855 | { |
||
1856 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_RTOF); |
||
1857 | |||
1858 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_RTO; |
||
1859 | } |
||
1860 | |||
1861 | /* Call SMARTCARD Error Call back function if need be --------------------------*/ |
||
1862 | if (hsmartcard->ErrorCode != HAL_SMARTCARD_ERROR_NONE) |
||
1863 | { |
||
1864 | /* SMARTCARD in mode Receiver ---------------------------------------------------*/ |
||
1865 | if (((isrflags & USART_ISR_RXNE) != 0U) |
||
1866 | && ((cr1its & USART_CR1_RXNEIE) != 0U)) |
||
1867 | { |
||
1868 | if (hsmartcard->RxISR != NULL) |
||
1869 | { |
||
1870 | hsmartcard->RxISR(hsmartcard); |
||
1871 | } |
||
1872 | } |
||
1873 | |||
1874 | /* If Error is to be considered as blocking : |
||
1875 | - Receiver Timeout error in Reception |
||
1876 | - Overrun error in Reception |
||
1877 | - any error occurs in DMA mode reception |
||
1878 | */ |
||
1879 | errorcode = hsmartcard->ErrorCode; |
||
1880 | if ((HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1881 | || ((errorcode & (HAL_SMARTCARD_ERROR_RTO | HAL_SMARTCARD_ERROR_ORE)) != 0U)) |
||
1882 | { |
||
1883 | /* Blocking error : transfer is aborted |
||
1884 | Set the SMARTCARD state ready to be able to start again the process, |
||
1885 | Disable Rx Interrupts, and disable Rx DMA request, if ongoing */ |
||
1886 | SMARTCARD_EndRxTransfer(hsmartcard); |
||
1887 | |||
1888 | /* Disable the SMARTCARD DMA Rx request if enabled */ |
||
1889 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
1890 | { |
||
1891 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
1892 | |||
1893 | /* Abort the SMARTCARD DMA Rx channel */ |
||
1894 | if (hsmartcard->hdmarx != NULL) |
||
1895 | { |
||
1896 | /* Set the SMARTCARD DMA Abort callback : |
||
1897 | will lead to call HAL_SMARTCARD_ErrorCallback() at end of DMA abort procedure */ |
||
1898 | hsmartcard->hdmarx->XferAbortCallback = SMARTCARD_DMAAbortOnError; |
||
1899 | |||
1900 | /* Abort DMA RX */ |
||
1901 | if (HAL_DMA_Abort_IT(hsmartcard->hdmarx) != HAL_OK) |
||
1902 | { |
||
1903 | /* Call Directly hsmartcard->hdmarx->XferAbortCallback function in case of error */ |
||
1904 | hsmartcard->hdmarx->XferAbortCallback(hsmartcard->hdmarx); |
||
1905 | } |
||
1906 | } |
||
1907 | else |
||
1908 | { |
||
1909 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1910 | /* Call registered user error callback */ |
||
1911 | hsmartcard->ErrorCallback(hsmartcard); |
||
1912 | #else |
||
1913 | /* Call legacy weak user error callback */ |
||
1914 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
1915 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1916 | } |
||
1917 | } |
||
1918 | else |
||
1919 | { |
||
1920 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1921 | /* Call registered user error callback */ |
||
1922 | hsmartcard->ErrorCallback(hsmartcard); |
||
1923 | #else |
||
1924 | /* Call legacy weak user error callback */ |
||
1925 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
1926 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1927 | } |
||
1928 | } |
||
1929 | /* other error type to be considered as blocking : |
||
1930 | - Frame error in Transmission |
||
1931 | */ |
||
1932 | else if ((hsmartcard->gState == HAL_SMARTCARD_STATE_BUSY_TX) |
||
1933 | && ((errorcode & HAL_SMARTCARD_ERROR_FE) != 0U)) |
||
1934 | { |
||
1935 | /* Blocking error : transfer is aborted |
||
1936 | Set the SMARTCARD state ready to be able to start again the process, |
||
1937 | Disable Tx Interrupts, and disable Tx DMA request, if ongoing */ |
||
1938 | SMARTCARD_EndTxTransfer(hsmartcard); |
||
1939 | |||
1940 | /* Disable the SMARTCARD DMA Tx request if enabled */ |
||
1941 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
1942 | { |
||
1943 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
1944 | |||
1945 | /* Abort the SMARTCARD DMA Tx channel */ |
||
1946 | if (hsmartcard->hdmatx != NULL) |
||
1947 | { |
||
1948 | /* Set the SMARTCARD DMA Abort callback : |
||
1949 | will lead to call HAL_SMARTCARD_ErrorCallback() at end of DMA abort procedure */ |
||
1950 | hsmartcard->hdmatx->XferAbortCallback = SMARTCARD_DMAAbortOnError; |
||
1951 | |||
1952 | /* Abort DMA TX */ |
||
1953 | if (HAL_DMA_Abort_IT(hsmartcard->hdmatx) != HAL_OK) |
||
1954 | { |
||
1955 | /* Call Directly hsmartcard->hdmatx->XferAbortCallback function in case of error */ |
||
1956 | hsmartcard->hdmatx->XferAbortCallback(hsmartcard->hdmatx); |
||
1957 | } |
||
1958 | } |
||
1959 | else |
||
1960 | { |
||
1961 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1962 | /* Call registered user error callback */ |
||
1963 | hsmartcard->ErrorCallback(hsmartcard); |
||
1964 | #else |
||
1965 | /* Call legacy weak user error callback */ |
||
1966 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
1967 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1968 | } |
||
1969 | } |
||
1970 | else |
||
1971 | { |
||
1972 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1973 | /* Call registered user error callback */ |
||
1974 | hsmartcard->ErrorCallback(hsmartcard); |
||
1975 | #else |
||
1976 | /* Call legacy weak user error callback */ |
||
1977 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
1978 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1979 | } |
||
1980 | } |
||
1981 | else |
||
1982 | { |
||
1983 | /* Non Blocking error : transfer could go on. |
||
1984 | Error is notified to user through user error callback */ |
||
1985 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
1986 | /* Call registered user error callback */ |
||
1987 | hsmartcard->ErrorCallback(hsmartcard); |
||
1988 | #else |
||
1989 | /* Call legacy weak user error callback */ |
||
1990 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
1991 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
1992 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
1993 | } |
||
1994 | } |
||
1995 | return; |
||
1996 | |||
1997 | } /* End if some error occurs */ |
||
1998 | |||
1999 | /* SMARTCARD in mode Receiver, end of block interruption ------------------------*/ |
||
2000 | if (((isrflags & USART_ISR_EOBF) != 0U) && ((cr1its & USART_CR1_EOBIE) != 0U)) |
||
2001 | { |
||
2002 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2003 | __HAL_UNLOCK(hsmartcard); |
||
2004 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2005 | /* Call registered Rx complete callback */ |
||
2006 | hsmartcard->RxCpltCallback(hsmartcard); |
||
2007 | #else |
||
2008 | /* Call legacy weak Rx complete callback */ |
||
2009 | HAL_SMARTCARD_RxCpltCallback(hsmartcard); |
||
2010 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2011 | /* Clear EOBF interrupt after HAL_SMARTCARD_RxCpltCallback() call for the End of Block information |
||
2012 | to be available during HAL_SMARTCARD_RxCpltCallback() processing */ |
||
2013 | __HAL_SMARTCARD_CLEAR_IT(hsmartcard, SMARTCARD_CLEAR_EOBF); |
||
2014 | return; |
||
2015 | } |
||
2016 | |||
2017 | /* SMARTCARD in mode Transmitter ------------------------------------------------*/ |
||
2018 | if (((isrflags & USART_ISR_TXE) != 0U) |
||
2019 | && ((cr1its & USART_CR1_TXEIE) != 0U)) |
||
2020 | { |
||
2021 | if (hsmartcard->TxISR != NULL) |
||
2022 | { |
||
2023 | hsmartcard->TxISR(hsmartcard); |
||
2024 | } |
||
2025 | return; |
||
2026 | } |
||
2027 | |||
2028 | /* SMARTCARD in mode Transmitter (transmission end) ------------------------*/ |
||
2029 | if (__HAL_SMARTCARD_GET_IT(hsmartcard, hsmartcard->AdvancedInit.TxCompletionIndication) != RESET) |
||
2030 | { |
||
2031 | if (__HAL_SMARTCARD_GET_IT_SOURCE(hsmartcard, hsmartcard->AdvancedInit.TxCompletionIndication) != RESET) |
||
2032 | { |
||
2033 | SMARTCARD_EndTransmit_IT(hsmartcard); |
||
2034 | return; |
||
2035 | } |
||
2036 | } |
||
2037 | |||
2038 | } |
||
2039 | |||
2040 | /** |
||
2041 | * @brief Tx Transfer completed callback. |
||
2042 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2043 | * the configuration information for the specified SMARTCARD module. |
||
2044 | * @retval None |
||
2045 | */ |
||
2046 | __weak void HAL_SMARTCARD_TxCpltCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2047 | { |
||
2048 | /* Prevent unused argument(s) compilation warning */ |
||
2049 | UNUSED(hsmartcard); |
||
2050 | |||
2051 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2052 | the HAL_SMARTCARD_TxCpltCallback can be implemented in the user file. |
||
2053 | */ |
||
2054 | } |
||
2055 | |||
2056 | /** |
||
2057 | * @brief Rx Transfer completed callback. |
||
2058 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2059 | * the configuration information for the specified SMARTCARD module. |
||
2060 | * @retval None |
||
2061 | */ |
||
2062 | __weak void HAL_SMARTCARD_RxCpltCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2063 | { |
||
2064 | /* Prevent unused argument(s) compilation warning */ |
||
2065 | UNUSED(hsmartcard); |
||
2066 | |||
2067 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2068 | the HAL_SMARTCARD_RxCpltCallback can be implemented in the user file. |
||
2069 | */ |
||
2070 | } |
||
2071 | |||
2072 | /** |
||
2073 | * @brief SMARTCARD error callback. |
||
2074 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2075 | * the configuration information for the specified SMARTCARD module. |
||
2076 | * @retval None |
||
2077 | */ |
||
2078 | __weak void HAL_SMARTCARD_ErrorCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2079 | { |
||
2080 | /* Prevent unused argument(s) compilation warning */ |
||
2081 | UNUSED(hsmartcard); |
||
2082 | |||
2083 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2084 | the HAL_SMARTCARD_ErrorCallback can be implemented in the user file. |
||
2085 | */ |
||
2086 | } |
||
2087 | |||
2088 | /** |
||
2089 | * @brief SMARTCARD Abort Complete callback. |
||
2090 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2091 | * the configuration information for the specified SMARTCARD module. |
||
2092 | * @retval None |
||
2093 | */ |
||
2094 | __weak void HAL_SMARTCARD_AbortCpltCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2095 | { |
||
2096 | /* Prevent unused argument(s) compilation warning */ |
||
2097 | UNUSED(hsmartcard); |
||
2098 | |||
2099 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2100 | the HAL_SMARTCARD_AbortCpltCallback can be implemented in the user file. |
||
2101 | */ |
||
2102 | } |
||
2103 | |||
2104 | /** |
||
2105 | * @brief SMARTCARD Abort Complete callback. |
||
2106 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2107 | * the configuration information for the specified SMARTCARD module. |
||
2108 | * @retval None |
||
2109 | */ |
||
2110 | __weak void HAL_SMARTCARD_AbortTransmitCpltCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2111 | { |
||
2112 | /* Prevent unused argument(s) compilation warning */ |
||
2113 | UNUSED(hsmartcard); |
||
2114 | |||
2115 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2116 | the HAL_SMARTCARD_AbortTransmitCpltCallback can be implemented in the user file. |
||
2117 | */ |
||
2118 | } |
||
2119 | |||
2120 | /** |
||
2121 | * @brief SMARTCARD Abort Receive Complete callback. |
||
2122 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2123 | * the configuration information for the specified SMARTCARD module. |
||
2124 | * @retval None |
||
2125 | */ |
||
2126 | __weak void HAL_SMARTCARD_AbortReceiveCpltCallback(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2127 | { |
||
2128 | /* Prevent unused argument(s) compilation warning */ |
||
2129 | UNUSED(hsmartcard); |
||
2130 | |||
2131 | /* NOTE : This function should not be modified, when the callback is needed, |
||
2132 | the HAL_SMARTCARD_AbortReceiveCpltCallback can be implemented in the user file. |
||
2133 | */ |
||
2134 | } |
||
2135 | |||
2136 | /** |
||
2137 | * @} |
||
2138 | */ |
||
2139 | |||
2140 | /** @defgroup SMARTCARD_Exported_Functions_Group4 Peripheral State and Errors functions |
||
2141 | * @brief SMARTCARD State and Errors functions |
||
2142 | * |
||
2143 | @verbatim |
||
2144 | ============================================================================== |
||
2145 | ##### Peripheral State and Errors functions ##### |
||
2146 | ============================================================================== |
||
2147 | [..] |
||
2148 | This subsection provides a set of functions allowing to return the State of SmartCard |
||
2149 | handle and also return Peripheral Errors occurred during communication process |
||
2150 | (+) HAL_SMARTCARD_GetState() API can be helpful to check in run-time the state |
||
2151 | of the SMARTCARD peripheral. |
||
2152 | (+) HAL_SMARTCARD_GetError() checks in run-time errors that could occur during |
||
2153 | communication. |
||
2154 | |||
2155 | @endverbatim |
||
2156 | * @{ |
||
2157 | */ |
||
2158 | |||
2159 | /** |
||
2160 | * @brief Return the SMARTCARD handle state. |
||
2161 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2162 | * the configuration information for the specified SMARTCARD module. |
||
2163 | * @retval SMARTCARD handle state |
||
2164 | */ |
||
2165 | HAL_SMARTCARD_StateTypeDef HAL_SMARTCARD_GetState(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2166 | { |
||
2167 | /* Return SMARTCARD handle state */ |
||
2168 | uint32_t temp1; |
||
2169 | uint32_t temp2; |
||
2170 | temp1 = (uint32_t)hsmartcard->gState; |
||
2171 | temp2 = (uint32_t)hsmartcard->RxState; |
||
2172 | |||
2173 | return (HAL_SMARTCARD_StateTypeDef)(temp1 | temp2); |
||
2174 | } |
||
2175 | |||
2176 | /** |
||
2177 | * @brief Return the SMARTCARD handle error code. |
||
2178 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2179 | * the configuration information for the specified SMARTCARD module. |
||
2180 | * @retval SMARTCARD handle Error Code |
||
2181 | */ |
||
2182 | uint32_t HAL_SMARTCARD_GetError(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2183 | { |
||
2184 | return hsmartcard->ErrorCode; |
||
2185 | } |
||
2186 | |||
2187 | /** |
||
2188 | * @} |
||
2189 | */ |
||
2190 | |||
2191 | /** |
||
2192 | * @} |
||
2193 | */ |
||
2194 | |||
2195 | /** @defgroup SMARTCARD_Private_Functions SMARTCARD Private Functions |
||
2196 | * @{ |
||
2197 | */ |
||
2198 | |||
2199 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2200 | /** |
||
2201 | * @brief Initialize the callbacks to their default values. |
||
2202 | * @param hsmartcard SMARTCARD handle. |
||
2203 | * @retval none |
||
2204 | */ |
||
2205 | void SMARTCARD_InitCallbacksToDefault(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2206 | { |
||
2207 | /* Init the SMARTCARD Callback settings */ |
||
6 | mjames | 2208 | hsmartcard->TxCpltCallback = HAL_SMARTCARD_TxCpltCallback; /* Legacy weak TxCpltCallback */ |
2209 | hsmartcard->RxCpltCallback = HAL_SMARTCARD_RxCpltCallback; /* Legacy weak RxCpltCallback */ |
||
2210 | hsmartcard->ErrorCallback = HAL_SMARTCARD_ErrorCallback; /* Legacy weak ErrorCallback */ |
||
2211 | hsmartcard->AbortCpltCallback = HAL_SMARTCARD_AbortCpltCallback; /* Legacy weak AbortCpltCallback */ |
||
2212 | hsmartcard->AbortTransmitCpltCallback = HAL_SMARTCARD_AbortTransmitCpltCallback; /* Legacy weak |
||
2213 | AbortTransmitCpltCallback */ |
||
2214 | hsmartcard->AbortReceiveCpltCallback = HAL_SMARTCARD_AbortReceiveCpltCallback; /* Legacy weak |
||
2215 | AbortReceiveCpltCallback */ |
||
2 | mjames | 2216 | |
2217 | } |
||
2218 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACKS */ |
||
2219 | |||
2220 | /** |
||
2221 | * @brief Configure the SMARTCARD associated USART peripheral. |
||
2222 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2223 | * the configuration information for the specified SMARTCARD module. |
||
2224 | * @retval HAL status |
||
2225 | */ |
||
2226 | static HAL_StatusTypeDef SMARTCARD_SetConfig(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2227 | { |
||
2228 | uint32_t tmpreg; |
||
2229 | SMARTCARD_ClockSourceTypeDef clocksource; |
||
2230 | HAL_StatusTypeDef ret = HAL_OK; |
||
2231 | uint32_t pclk; |
||
2232 | |||
2233 | /* Check the parameters */ |
||
2234 | assert_param(IS_SMARTCARD_INSTANCE(hsmartcard->Instance)); |
||
2235 | assert_param(IS_SMARTCARD_BAUDRATE(hsmartcard->Init.BaudRate)); |
||
2236 | assert_param(IS_SMARTCARD_WORD_LENGTH(hsmartcard->Init.WordLength)); |
||
2237 | assert_param(IS_SMARTCARD_STOPBITS(hsmartcard->Init.StopBits)); |
||
2238 | assert_param(IS_SMARTCARD_PARITY(hsmartcard->Init.Parity)); |
||
2239 | assert_param(IS_SMARTCARD_MODE(hsmartcard->Init.Mode)); |
||
2240 | assert_param(IS_SMARTCARD_POLARITY(hsmartcard->Init.CLKPolarity)); |
||
2241 | assert_param(IS_SMARTCARD_PHASE(hsmartcard->Init.CLKPhase)); |
||
2242 | assert_param(IS_SMARTCARD_LASTBIT(hsmartcard->Init.CLKLastBit)); |
||
2243 | assert_param(IS_SMARTCARD_ONE_BIT_SAMPLE(hsmartcard->Init.OneBitSampling)); |
||
2244 | assert_param(IS_SMARTCARD_NACK(hsmartcard->Init.NACKEnable)); |
||
2245 | assert_param(IS_SMARTCARD_TIMEOUT(hsmartcard->Init.TimeOutEnable)); |
||
2246 | assert_param(IS_SMARTCARD_AUTORETRY_COUNT(hsmartcard->Init.AutoRetryCount)); |
||
2247 | |||
2248 | /*-------------------------- USART CR1 Configuration -----------------------*/ |
||
2249 | /* In SmartCard mode, M and PCE are forced to 1 (8 bits + parity). |
||
2250 | * Oversampling is forced to 16 (OVER8 = 0). |
||
2251 | * Configure the Parity and Mode: |
||
2252 | * set PS bit according to hsmartcard->Init.Parity value |
||
2253 | * set TE and RE bits according to hsmartcard->Init.Mode value */ |
||
6 | mjames | 2254 | tmpreg = (((uint32_t)hsmartcard->Init.Parity) | ((uint32_t)hsmartcard->Init.Mode) | |
2255 | ((uint32_t)hsmartcard->Init.WordLength)); |
||
2 | mjames | 2256 | MODIFY_REG(hsmartcard->Instance->CR1, USART_CR1_FIELDS, tmpreg); |
2257 | |||
2258 | /*-------------------------- USART CR2 Configuration -----------------------*/ |
||
2259 | tmpreg = hsmartcard->Init.StopBits; |
||
2260 | /* Synchronous mode is activated by default */ |
||
2261 | tmpreg |= (uint32_t) USART_CR2_CLKEN | hsmartcard->Init.CLKPolarity; |
||
2262 | tmpreg |= (uint32_t) hsmartcard->Init.CLKPhase | hsmartcard->Init.CLKLastBit; |
||
2263 | tmpreg |= (uint32_t) hsmartcard->Init.TimeOutEnable; |
||
2264 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_FIELDS, tmpreg); |
||
2265 | |||
2266 | /*-------------------------- USART CR3 Configuration -----------------------*/ |
||
2267 | /* Configure |
||
2268 | * - one-bit sampling method versus three samples' majority rule |
||
2269 | * according to hsmartcard->Init.OneBitSampling |
||
2270 | * - NACK transmission in case of parity error according |
||
2271 | * to hsmartcard->Init.NACKEnable |
||
2272 | * - autoretry counter according to hsmartcard->Init.AutoRetryCount */ |
||
2273 | |||
2274 | tmpreg = (uint32_t) hsmartcard->Init.OneBitSampling | hsmartcard->Init.NACKEnable; |
||
2275 | tmpreg |= ((uint32_t)hsmartcard->Init.AutoRetryCount << USART_CR3_SCARCNT_Pos); |
||
2276 | MODIFY_REG(hsmartcard->Instance->CR3, USART_CR3_FIELDS, tmpreg); |
||
2277 | |||
2278 | |||
2279 | /*-------------------------- USART GTPR Configuration ----------------------*/ |
||
2280 | tmpreg = (hsmartcard->Init.Prescaler | ((uint32_t)hsmartcard->Init.GuardTime << USART_GTPR_GT_Pos)); |
||
2281 | MODIFY_REG(hsmartcard->Instance->GTPR, (uint16_t)(USART_GTPR_GT | USART_GTPR_PSC), (uint16_t)tmpreg); |
||
2282 | |||
2283 | /*-------------------------- USART RTOR Configuration ----------------------*/ |
||
2284 | tmpreg = ((uint32_t)hsmartcard->Init.BlockLength << USART_RTOR_BLEN_Pos); |
||
2285 | if (hsmartcard->Init.TimeOutEnable == SMARTCARD_TIMEOUT_ENABLE) |
||
2286 | { |
||
2287 | assert_param(IS_SMARTCARD_TIMEOUT_VALUE(hsmartcard->Init.TimeOutValue)); |
||
2288 | tmpreg |= (uint32_t) hsmartcard->Init.TimeOutValue; |
||
2289 | } |
||
2290 | MODIFY_REG(hsmartcard->Instance->RTOR, (USART_RTOR_RTO | USART_RTOR_BLEN), tmpreg); |
||
2291 | |||
2292 | /*-------------------------- USART BRR Configuration -----------------------*/ |
||
2293 | SMARTCARD_GETCLOCKSOURCE(hsmartcard, clocksource); |
||
2294 | tmpreg = 0U; |
||
2295 | switch (clocksource) |
||
2296 | { |
||
2297 | case SMARTCARD_CLOCKSOURCE_PCLK1: |
||
2298 | pclk = HAL_RCC_GetPCLK1Freq(); |
||
2299 | tmpreg = (uint16_t)((pclk + (hsmartcard->Init.BaudRate / 2U)) / hsmartcard->Init.BaudRate); |
||
2300 | break; |
||
2301 | case SMARTCARD_CLOCKSOURCE_HSI: |
||
2302 | tmpreg = (uint16_t)((HSI_VALUE + (hsmartcard->Init.BaudRate / 2U)) / hsmartcard->Init.BaudRate); |
||
2303 | break; |
||
2304 | case SMARTCARD_CLOCKSOURCE_SYSCLK: |
||
2305 | pclk = HAL_RCC_GetSysClockFreq(); |
||
2306 | tmpreg = (uint16_t)((pclk + (hsmartcard->Init.BaudRate / 2U)) / hsmartcard->Init.BaudRate); |
||
2307 | break; |
||
2308 | case SMARTCARD_CLOCKSOURCE_LSE: |
||
2309 | tmpreg = (uint16_t)((LSE_VALUE + (hsmartcard->Init.BaudRate / 2U)) / hsmartcard->Init.BaudRate); |
||
2310 | break; |
||
2311 | default: |
||
2312 | ret = HAL_ERROR; |
||
2313 | break; |
||
2314 | } |
||
2315 | |||
2316 | /* USARTDIV must be greater than or equal to 0d16 */ |
||
2317 | if ((tmpreg >= USART_BRR_MIN) && (tmpreg <= USART_BRR_MAX)) |
||
2318 | { |
||
2319 | hsmartcard->Instance->BRR = tmpreg; |
||
2320 | } |
||
2321 | else |
||
2322 | { |
||
2323 | ret = HAL_ERROR; |
||
2324 | } |
||
2325 | |||
2326 | |||
2327 | /* Clear ISR function pointers */ |
||
2328 | hsmartcard->RxISR = NULL; |
||
2329 | hsmartcard->TxISR = NULL; |
||
2330 | |||
2331 | return ret; |
||
2332 | } |
||
2333 | |||
2334 | |||
2335 | /** |
||
2336 | * @brief Configure the SMARTCARD associated USART peripheral advanced features. |
||
2337 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2338 | * the configuration information for the specified SMARTCARD module. |
||
2339 | * @retval None |
||
2340 | */ |
||
2341 | static void SMARTCARD_AdvFeatureConfig(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2342 | { |
||
2343 | /* Check whether the set of advanced features to configure is properly set */ |
||
2344 | assert_param(IS_SMARTCARD_ADVFEATURE_INIT(hsmartcard->AdvancedInit.AdvFeatureInit)); |
||
2345 | |||
2346 | /* if required, configure TX pin active level inversion */ |
||
2347 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_TXINVERT_INIT)) |
||
2348 | { |
||
2349 | assert_param(IS_SMARTCARD_ADVFEATURE_TXINV(hsmartcard->AdvancedInit.TxPinLevelInvert)); |
||
2350 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_TXINV, hsmartcard->AdvancedInit.TxPinLevelInvert); |
||
2351 | } |
||
2352 | |||
2353 | /* if required, configure RX pin active level inversion */ |
||
2354 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_RXINVERT_INIT)) |
||
2355 | { |
||
2356 | assert_param(IS_SMARTCARD_ADVFEATURE_RXINV(hsmartcard->AdvancedInit.RxPinLevelInvert)); |
||
2357 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_RXINV, hsmartcard->AdvancedInit.RxPinLevelInvert); |
||
2358 | } |
||
2359 | |||
2360 | /* if required, configure data inversion */ |
||
2361 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_DATAINVERT_INIT)) |
||
2362 | { |
||
2363 | assert_param(IS_SMARTCARD_ADVFEATURE_DATAINV(hsmartcard->AdvancedInit.DataInvert)); |
||
2364 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_DATAINV, hsmartcard->AdvancedInit.DataInvert); |
||
2365 | } |
||
2366 | |||
2367 | /* if required, configure RX/TX pins swap */ |
||
2368 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_SWAP_INIT)) |
||
2369 | { |
||
2370 | assert_param(IS_SMARTCARD_ADVFEATURE_SWAP(hsmartcard->AdvancedInit.Swap)); |
||
2371 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_SWAP, hsmartcard->AdvancedInit.Swap); |
||
2372 | } |
||
2373 | |||
2374 | /* if required, configure RX overrun detection disabling */ |
||
2375 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_RXOVERRUNDISABLE_INIT)) |
||
2376 | { |
||
2377 | assert_param(IS_SMARTCARD_OVERRUN(hsmartcard->AdvancedInit.OverrunDisable)); |
||
2378 | MODIFY_REG(hsmartcard->Instance->CR3, USART_CR3_OVRDIS, hsmartcard->AdvancedInit.OverrunDisable); |
||
2379 | } |
||
2380 | |||
2381 | /* if required, configure DMA disabling on reception error */ |
||
2382 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_DMADISABLEONERROR_INIT)) |
||
2383 | { |
||
2384 | assert_param(IS_SMARTCARD_ADVFEATURE_DMAONRXERROR(hsmartcard->AdvancedInit.DMADisableonRxError)); |
||
2385 | MODIFY_REG(hsmartcard->Instance->CR3, USART_CR3_DDRE, hsmartcard->AdvancedInit.DMADisableonRxError); |
||
2386 | } |
||
2387 | |||
2388 | /* if required, configure MSB first on communication line */ |
||
2389 | if (HAL_IS_BIT_SET(hsmartcard->AdvancedInit.AdvFeatureInit, SMARTCARD_ADVFEATURE_MSBFIRST_INIT)) |
||
2390 | { |
||
2391 | assert_param(IS_SMARTCARD_ADVFEATURE_MSBFIRST(hsmartcard->AdvancedInit.MSBFirst)); |
||
2392 | MODIFY_REG(hsmartcard->Instance->CR2, USART_CR2_MSBFIRST, hsmartcard->AdvancedInit.MSBFirst); |
||
2393 | } |
||
2394 | |||
2395 | } |
||
2396 | |||
2397 | /** |
||
2398 | * @brief Check the SMARTCARD Idle State. |
||
2399 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2400 | * the configuration information for the specified SMARTCARD module. |
||
2401 | * @retval HAL status |
||
2402 | */ |
||
2403 | static HAL_StatusTypeDef SMARTCARD_CheckIdleState(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2404 | { |
||
2405 | uint32_t tickstart; |
||
2406 | |||
2407 | /* Initialize the SMARTCARD ErrorCode */ |
||
2408 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
2409 | |||
2410 | /* Init tickstart for timeout management */ |
||
2411 | tickstart = HAL_GetTick(); |
||
2412 | |||
2413 | /* Check if the Transmitter is enabled */ |
||
2414 | if ((hsmartcard->Instance->CR1 & USART_CR1_TE) == USART_CR1_TE) |
||
2415 | { |
||
2416 | /* Wait until TEACK flag is set */ |
||
2417 | if (SMARTCARD_WaitOnFlagUntilTimeout(hsmartcard, USART_ISR_TEACK, RESET, tickstart, |
||
2418 | SMARTCARD_TEACK_REACK_TIMEOUT) != HAL_OK) |
||
2419 | { |
||
2420 | /* Timeout occurred */ |
||
2421 | return HAL_TIMEOUT; |
||
2422 | } |
||
2423 | } |
||
2424 | /* Check if the Receiver is enabled */ |
||
2425 | if ((hsmartcard->Instance->CR1 & USART_CR1_RE) == USART_CR1_RE) |
||
2426 | { |
||
2427 | /* Wait until REACK flag is set */ |
||
2428 | if (SMARTCARD_WaitOnFlagUntilTimeout(hsmartcard, USART_ISR_REACK, RESET, tickstart, |
||
2429 | SMARTCARD_TEACK_REACK_TIMEOUT) != HAL_OK) |
||
2430 | { |
||
2431 | /* Timeout occurred */ |
||
2432 | return HAL_TIMEOUT; |
||
2433 | } |
||
2434 | } |
||
2435 | |||
2436 | /* Initialize the SMARTCARD states */ |
||
2437 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2438 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2439 | |||
2440 | /* Process Unlocked */ |
||
2441 | __HAL_UNLOCK(hsmartcard); |
||
2442 | |||
2443 | return HAL_OK; |
||
2444 | } |
||
2445 | |||
2446 | /** |
||
2447 | * @brief Handle SMARTCARD Communication Timeout. |
||
2448 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2449 | * the configuration information for the specified SMARTCARD module. |
||
2450 | * @param Flag Specifies the SMARTCARD flag to check. |
||
2451 | * @param Status The new Flag status (SET or RESET). |
||
2452 | * @param Tickstart Tick start value |
||
2453 | * @param Timeout Timeout duration. |
||
2454 | * @retval HAL status |
||
2455 | */ |
||
2456 | static HAL_StatusTypeDef SMARTCARD_WaitOnFlagUntilTimeout(SMARTCARD_HandleTypeDef *hsmartcard, uint32_t Flag, |
||
2457 | FlagStatus Status, uint32_t Tickstart, uint32_t Timeout) |
||
2458 | { |
||
2459 | /* Wait until flag is set */ |
||
2460 | while ((__HAL_SMARTCARD_GET_FLAG(hsmartcard, Flag) ? SET : RESET) == Status) |
||
2461 | { |
||
2462 | /* Check for the Timeout */ |
||
2463 | if (Timeout != HAL_MAX_DELAY) |
||
2464 | { |
||
2465 | if (((HAL_GetTick() - Tickstart) > Timeout) || (Timeout == 0U)) |
||
2466 | { |
||
6 | mjames | 2467 | /* Disable TXE, RXNE, PE and ERR (Frame error, noise error, overrun error) |
2468 | interrupts for the interrupt process */ |
||
2 | mjames | 2469 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_RXNEIE | USART_CR1_PEIE | USART_CR1_TXEIE)); |
2470 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2471 | |||
2472 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2473 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2474 | |||
2475 | /* Process Unlocked */ |
||
2476 | __HAL_UNLOCK(hsmartcard); |
||
2477 | return HAL_TIMEOUT; |
||
2478 | } |
||
2479 | } |
||
2480 | } |
||
2481 | return HAL_OK; |
||
2482 | } |
||
2483 | |||
2484 | |||
2485 | /** |
||
2486 | * @brief End ongoing Tx transfer on SMARTCARD peripheral (following error detection or Transmit completion). |
||
2487 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2488 | * the configuration information for the specified SMARTCARD module. |
||
2489 | * @retval None |
||
2490 | */ |
||
2491 | static void SMARTCARD_EndTxTransfer(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2492 | { |
||
2493 | /* Disable TXEIE, TCIE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
2494 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_TXEIE | USART_CR1_TCIE)); |
||
2495 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2496 | |||
2497 | /* At end of Tx process, restore hsmartcard->gState to Ready */ |
||
2498 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2499 | } |
||
2500 | |||
2501 | |||
2502 | /** |
||
2503 | * @brief End ongoing Rx transfer on UART peripheral (following error detection or Reception completion). |
||
2504 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2505 | * the configuration information for the specified SMARTCARD module. |
||
2506 | * @retval None |
||
2507 | */ |
||
2508 | static void SMARTCARD_EndRxTransfer(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2509 | { |
||
2510 | /* Disable RXNE, PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
2511 | CLEAR_BIT(hsmartcard->Instance->CR1, (USART_CR1_RXNEIE | USART_CR1_PEIE)); |
||
2512 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2513 | |||
2514 | /* At end of Rx process, restore hsmartcard->RxState to Ready */ |
||
2515 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2516 | } |
||
2517 | |||
2518 | |||
2519 | /** |
||
2520 | * @brief DMA SMARTCARD transmit process complete callback. |
||
2521 | * @param hdma Pointer to a DMA_HandleTypeDef structure that contains |
||
2522 | * the configuration information for the specified DMA module. |
||
2523 | * @retval None |
||
2524 | */ |
||
2525 | static void SMARTCARD_DMATransmitCplt(DMA_HandleTypeDef *hdma) |
||
2526 | { |
||
2527 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2528 | hsmartcard->TxXferCount = 0U; |
||
2529 | |||
2530 | /* Disable the DMA transfer for transmit request by resetting the DMAT bit |
||
2531 | in the SMARTCARD associated USART CR3 register */ |
||
2532 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAT); |
||
2533 | |||
2534 | /* Enable the SMARTCARD Transmit Complete Interrupt */ |
||
2535 | __HAL_SMARTCARD_ENABLE_IT(hsmartcard, hsmartcard->AdvancedInit.TxCompletionIndication); |
||
2536 | } |
||
2537 | |||
2538 | /** |
||
2539 | * @brief DMA SMARTCARD receive process complete callback. |
||
2540 | * @param hdma Pointer to a DMA_HandleTypeDef structure that contains |
||
2541 | * the configuration information for the specified DMA module. |
||
2542 | * @retval None |
||
2543 | */ |
||
2544 | static void SMARTCARD_DMAReceiveCplt(DMA_HandleTypeDef *hdma) |
||
2545 | { |
||
2546 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2547 | hsmartcard->RxXferCount = 0U; |
||
2548 | |||
2549 | /* Disable PE and ERR (Frame error, noise error, overrun error) interrupts */ |
||
2550 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_PEIE); |
||
2551 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2552 | |||
2553 | /* Disable the DMA transfer for the receiver request by resetting the DMAR bit |
||
2554 | in the SMARTCARD associated USART CR3 register */ |
||
2555 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_DMAR); |
||
2556 | |||
2557 | /* At end of Rx process, restore hsmartcard->RxState to Ready */ |
||
2558 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2559 | |||
2560 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2561 | /* Call registered Rx complete callback */ |
||
2562 | hsmartcard->RxCpltCallback(hsmartcard); |
||
2563 | #else |
||
2564 | /* Call legacy weak Rx complete callback */ |
||
2565 | HAL_SMARTCARD_RxCpltCallback(hsmartcard); |
||
2566 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2567 | } |
||
2568 | |||
2569 | /** |
||
2570 | * @brief DMA SMARTCARD communication error callback. |
||
2571 | * @param hdma Pointer to a DMA_HandleTypeDef structure that contains |
||
2572 | * the configuration information for the specified DMA module. |
||
2573 | * @retval None |
||
2574 | */ |
||
2575 | static void SMARTCARD_DMAError(DMA_HandleTypeDef *hdma) |
||
2576 | { |
||
2577 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2578 | |||
2579 | /* Stop SMARTCARD DMA Tx request if ongoing */ |
||
2580 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_BUSY_TX) |
||
2581 | { |
||
2582 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAT)) |
||
2583 | { |
||
2584 | hsmartcard->TxXferCount = 0U; |
||
2585 | SMARTCARD_EndTxTransfer(hsmartcard); |
||
2586 | } |
||
2587 | } |
||
2588 | |||
2589 | /* Stop SMARTCARD DMA Rx request if ongoing */ |
||
2590 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_BUSY_RX) |
||
2591 | { |
||
2592 | if (HAL_IS_BIT_SET(hsmartcard->Instance->CR3, USART_CR3_DMAR)) |
||
2593 | { |
||
2594 | hsmartcard->RxXferCount = 0U; |
||
2595 | SMARTCARD_EndRxTransfer(hsmartcard); |
||
2596 | } |
||
2597 | } |
||
2598 | |||
2599 | hsmartcard->ErrorCode |= HAL_SMARTCARD_ERROR_DMA; |
||
2600 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2601 | /* Call registered user error callback */ |
||
2602 | hsmartcard->ErrorCallback(hsmartcard); |
||
2603 | #else |
||
2604 | /* Call legacy weak user error callback */ |
||
2605 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
2606 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2607 | } |
||
2608 | |||
2609 | /** |
||
2610 | * @brief DMA SMARTCARD communication abort callback, when initiated by HAL services on Error |
||
2611 | * (To be called at end of DMA Abort procedure following error occurrence). |
||
2612 | * @param hdma DMA handle. |
||
2613 | * @retval None |
||
2614 | */ |
||
2615 | static void SMARTCARD_DMAAbortOnError(DMA_HandleTypeDef *hdma) |
||
2616 | { |
||
2617 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2618 | hsmartcard->RxXferCount = 0U; |
||
2619 | hsmartcard->TxXferCount = 0U; |
||
2620 | |||
2621 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2622 | /* Call registered user error callback */ |
||
2623 | hsmartcard->ErrorCallback(hsmartcard); |
||
2624 | #else |
||
2625 | /* Call legacy weak user error callback */ |
||
2626 | HAL_SMARTCARD_ErrorCallback(hsmartcard); |
||
2627 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2628 | } |
||
2629 | |||
2630 | /** |
||
2631 | * @brief DMA SMARTCARD Tx communication abort callback, when initiated by user |
||
2632 | * (To be called at end of DMA Tx Abort procedure following user abort request). |
||
2633 | * @note When this callback is executed, User Abort complete call back is called only if no |
||
2634 | * Abort still ongoing for Rx DMA Handle. |
||
2635 | * @param hdma DMA handle. |
||
2636 | * @retval None |
||
2637 | */ |
||
2638 | static void SMARTCARD_DMATxAbortCallback(DMA_HandleTypeDef *hdma) |
||
2639 | { |
||
2640 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2641 | |||
2642 | hsmartcard->hdmatx->XferAbortCallback = NULL; |
||
2643 | |||
2644 | /* Check if an Abort process is still ongoing */ |
||
2645 | if (hsmartcard->hdmarx != NULL) |
||
2646 | { |
||
2647 | if (hsmartcard->hdmarx->XferAbortCallback != NULL) |
||
2648 | { |
||
2649 | return; |
||
2650 | } |
||
2651 | } |
||
2652 | |||
2653 | /* No Abort process still ongoing : All DMA channels are aborted, call user Abort Complete callback */ |
||
2654 | hsmartcard->TxXferCount = 0U; |
||
2655 | hsmartcard->RxXferCount = 0U; |
||
2656 | |||
2657 | /* Reset errorCode */ |
||
2658 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
2659 | |||
2660 | /* Clear the Error flags in the ICR register */ |
||
2661 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 2662 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | SMARTCARD_CLEAR_FEF | |
2663 | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 2664 | |
2665 | /* Restore hsmartcard->gState and hsmartcard->RxState to Ready */ |
||
2666 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2667 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2668 | |||
2669 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2670 | /* Call registered Abort complete callback */ |
||
2671 | hsmartcard->AbortCpltCallback(hsmartcard); |
||
2672 | #else |
||
2673 | /* Call legacy weak Abort complete callback */ |
||
2674 | HAL_SMARTCARD_AbortCpltCallback(hsmartcard); |
||
2675 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2676 | } |
||
2677 | |||
2678 | |||
2679 | /** |
||
2680 | * @brief DMA SMARTCARD Rx communication abort callback, when initiated by user |
||
2681 | * (To be called at end of DMA Rx Abort procedure following user abort request). |
||
2682 | * @note When this callback is executed, User Abort complete call back is called only if no |
||
2683 | * Abort still ongoing for Tx DMA Handle. |
||
2684 | * @param hdma DMA handle. |
||
2685 | * @retval None |
||
2686 | */ |
||
2687 | static void SMARTCARD_DMARxAbortCallback(DMA_HandleTypeDef *hdma) |
||
2688 | { |
||
2689 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2690 | |||
2691 | hsmartcard->hdmarx->XferAbortCallback = NULL; |
||
2692 | |||
2693 | /* Check if an Abort process is still ongoing */ |
||
2694 | if (hsmartcard->hdmatx != NULL) |
||
2695 | { |
||
2696 | if (hsmartcard->hdmatx->XferAbortCallback != NULL) |
||
2697 | { |
||
2698 | return; |
||
2699 | } |
||
2700 | } |
||
2701 | |||
2702 | /* No Abort process still ongoing : All DMA channels are aborted, call user Abort Complete callback */ |
||
2703 | hsmartcard->TxXferCount = 0U; |
||
2704 | hsmartcard->RxXferCount = 0U; |
||
2705 | |||
2706 | /* Reset errorCode */ |
||
2707 | hsmartcard->ErrorCode = HAL_SMARTCARD_ERROR_NONE; |
||
2708 | |||
2709 | /* Clear the Error flags in the ICR register */ |
||
2710 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 2711 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | SMARTCARD_CLEAR_FEF | |
2712 | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 2713 | |
2714 | /* Restore hsmartcard->gState and hsmartcard->RxState to Ready */ |
||
2715 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2716 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2717 | |||
2718 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2719 | /* Call registered Abort complete callback */ |
||
2720 | hsmartcard->AbortCpltCallback(hsmartcard); |
||
2721 | #else |
||
2722 | /* Call legacy weak Abort complete callback */ |
||
2723 | HAL_SMARTCARD_AbortCpltCallback(hsmartcard); |
||
2724 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2725 | } |
||
2726 | |||
2727 | |||
2728 | /** |
||
2729 | * @brief DMA SMARTCARD Tx communication abort callback, when initiated by user by a call to |
||
2730 | * HAL_SMARTCARD_AbortTransmit_IT API (Abort only Tx transfer) |
||
2731 | * (This callback is executed at end of DMA Tx Abort procedure following user abort request, |
||
2732 | * and leads to user Tx Abort Complete callback execution). |
||
2733 | * @param hdma DMA handle. |
||
2734 | * @retval None |
||
2735 | */ |
||
2736 | static void SMARTCARD_DMATxOnlyAbortCallback(DMA_HandleTypeDef *hdma) |
||
2737 | { |
||
2738 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2739 | |||
2740 | hsmartcard->TxXferCount = 0U; |
||
2741 | |||
2742 | /* Clear the Error flags in the ICR register */ |
||
2743 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, SMARTCARD_CLEAR_FEF); |
||
2744 | |||
2745 | /* Restore hsmartcard->gState to Ready */ |
||
2746 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2747 | |||
2748 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2749 | /* Call registered Abort Transmit Complete Callback */ |
||
2750 | hsmartcard->AbortTransmitCpltCallback(hsmartcard); |
||
2751 | #else |
||
2752 | /* Call legacy weak Abort Transmit Complete Callback */ |
||
2753 | HAL_SMARTCARD_AbortTransmitCpltCallback(hsmartcard); |
||
2754 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2755 | } |
||
2756 | |||
2757 | /** |
||
2758 | * @brief DMA SMARTCARD Rx communication abort callback, when initiated by user by a call to |
||
2759 | * HAL_SMARTCARD_AbortReceive_IT API (Abort only Rx transfer) |
||
2760 | * (This callback is executed at end of DMA Rx Abort procedure following user abort request, |
||
2761 | * and leads to user Rx Abort Complete callback execution). |
||
2762 | * @param hdma DMA handle. |
||
2763 | * @retval None |
||
2764 | */ |
||
2765 | static void SMARTCARD_DMARxOnlyAbortCallback(DMA_HandleTypeDef *hdma) |
||
2766 | { |
||
2767 | SMARTCARD_HandleTypeDef *hsmartcard = (SMARTCARD_HandleTypeDef *)(hdma->Parent); |
||
2768 | |||
2769 | hsmartcard->RxXferCount = 0U; |
||
2770 | |||
2771 | /* Clear the Error flags in the ICR register */ |
||
2772 | __HAL_SMARTCARD_CLEAR_FLAG(hsmartcard, |
||
6 | mjames | 2773 | SMARTCARD_CLEAR_OREF | SMARTCARD_CLEAR_NEF | SMARTCARD_CLEAR_PEF | SMARTCARD_CLEAR_FEF | |
2774 | SMARTCARD_CLEAR_RTOF | SMARTCARD_CLEAR_EOBF); |
||
2 | mjames | 2775 | |
2776 | /* Restore hsmartcard->RxState to Ready */ |
||
2777 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2778 | |||
2779 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2780 | /* Call registered Abort Receive Complete Callback */ |
||
2781 | hsmartcard->AbortReceiveCpltCallback(hsmartcard); |
||
2782 | #else |
||
2783 | /* Call legacy weak Abort Receive Complete Callback */ |
||
2784 | HAL_SMARTCARD_AbortReceiveCpltCallback(hsmartcard); |
||
2785 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2786 | } |
||
2787 | |||
2788 | /** |
||
2789 | * @brief Send an amount of data in non-blocking mode. |
||
2790 | * @note Function called under interruption only, once |
||
2791 | * interruptions have been enabled by HAL_SMARTCARD_Transmit_IT(). |
||
2792 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2793 | * the configuration information for the specified SMARTCARD module. |
||
2794 | * @retval None |
||
2795 | */ |
||
2796 | static void SMARTCARD_TxISR(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2797 | { |
||
2798 | /* Check that a Tx process is ongoing */ |
||
2799 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_BUSY_TX) |
||
2800 | { |
||
2801 | if (hsmartcard->TxXferCount == 0U) |
||
2802 | { |
||
2803 | /* Disable the SMARTCARD Transmit Data Register Empty Interrupt */ |
||
2804 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_TXEIE); |
||
2805 | |||
2806 | /* Enable the SMARTCARD Transmit Complete Interrupt */ |
||
2807 | __HAL_SMARTCARD_ENABLE_IT(hsmartcard, hsmartcard->AdvancedInit.TxCompletionIndication); |
||
2808 | } |
||
2809 | else |
||
2810 | { |
||
2811 | hsmartcard->Instance->TDR = (uint8_t)(*hsmartcard->pTxBuffPtr & 0xFFU); |
||
2812 | hsmartcard->pTxBuffPtr++; |
||
2813 | hsmartcard->TxXferCount--; |
||
2814 | } |
||
2815 | } |
||
2816 | } |
||
2817 | |||
2818 | /** |
||
2819 | * @brief Wrap up transmission in non-blocking mode. |
||
2820 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2821 | * the configuration information for the specified SMARTCARD module. |
||
2822 | * @retval None |
||
2823 | */ |
||
2824 | static void SMARTCARD_EndTransmit_IT(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2825 | { |
||
2826 | /* Disable the SMARTCARD Transmit Complete Interrupt */ |
||
2827 | __HAL_SMARTCARD_DISABLE_IT(hsmartcard, hsmartcard->AdvancedInit.TxCompletionIndication); |
||
2828 | |||
2829 | /* Check if a receive process is ongoing or not. If not disable ERR IT */ |
||
2830 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_READY) |
||
2831 | { |
||
2832 | /* Disable the SMARTCARD Error Interrupt: (Frame error) */ |
||
2833 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2834 | } |
||
2835 | |||
6 | mjames | 2836 | /* Disable the Peripheral first to update mode */ |
2837 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
2838 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX) |
||
2839 | && (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
2 | mjames | 2840 | { |
6 | mjames | 2841 | /* In case of TX only mode, if NACK is enabled, receiver block has been enabled |
2842 | for Transmit phase. Disable this receiver block. */ |
||
2843 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_RE); |
||
2 | mjames | 2844 | } |
6 | mjames | 2845 | if ((hsmartcard->Init.Mode == SMARTCARD_MODE_TX_RX) |
2846 | || (hsmartcard->Init.NACKEnable == SMARTCARD_NACK_ENABLE)) |
||
2847 | { |
||
2848 | /* Perform a TX FIFO Flush at end of Tx phase, as all sent bytes are appearing in Rx Data register */ |
||
2849 | __HAL_SMARTCARD_FLUSH_DRREGISTER(hsmartcard); |
||
2850 | } |
||
2851 | SET_BIT(hsmartcard->Instance->CR1, USART_CR1_UE); |
||
2 | mjames | 2852 | |
2853 | /* Tx process is ended, restore hsmartcard->gState to Ready */ |
||
2854 | hsmartcard->gState = HAL_SMARTCARD_STATE_READY; |
||
2855 | |||
2856 | /* Clear TxISR function pointer */ |
||
2857 | hsmartcard->TxISR = NULL; |
||
2858 | |||
2859 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2860 | /* Call registered Tx complete callback */ |
||
2861 | hsmartcard->TxCpltCallback(hsmartcard); |
||
2862 | #else |
||
2863 | /* Call legacy weak Tx complete callback */ |
||
2864 | HAL_SMARTCARD_TxCpltCallback(hsmartcard); |
||
2865 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2866 | } |
||
2867 | |||
2868 | /** |
||
2869 | * @brief Receive an amount of data in non-blocking mode. |
||
2870 | * @note Function called under interruption only, once |
||
2871 | * interruptions have been enabled by HAL_SMARTCARD_Receive_IT(). |
||
2872 | * @param hsmartcard Pointer to a SMARTCARD_HandleTypeDef structure that contains |
||
2873 | * the configuration information for the specified SMARTCARD module. |
||
2874 | * @retval None |
||
2875 | */ |
||
2876 | static void SMARTCARD_RxISR(SMARTCARD_HandleTypeDef *hsmartcard) |
||
2877 | { |
||
2878 | /* Check that a Rx process is ongoing */ |
||
2879 | if (hsmartcard->RxState == HAL_SMARTCARD_STATE_BUSY_RX) |
||
2880 | { |
||
2881 | *hsmartcard->pRxBuffPtr = (uint8_t)(hsmartcard->Instance->RDR & (uint8_t)0xFF); |
||
2882 | hsmartcard->pRxBuffPtr++; |
||
2883 | |||
2884 | hsmartcard->RxXferCount--; |
||
2885 | if (hsmartcard->RxXferCount == 0U) |
||
2886 | { |
||
2887 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_RXNEIE); |
||
2888 | |||
2889 | /* Check if a transmit process is ongoing or not. If not disable ERR IT */ |
||
2890 | if (hsmartcard->gState == HAL_SMARTCARD_STATE_READY) |
||
2891 | { |
||
2892 | /* Disable the SMARTCARD Error Interrupt: (Frame error, noise error, overrun error) */ |
||
2893 | CLEAR_BIT(hsmartcard->Instance->CR3, USART_CR3_EIE); |
||
2894 | } |
||
2895 | |||
2896 | /* Disable the SMARTCARD Parity Error Interrupt */ |
||
2897 | CLEAR_BIT(hsmartcard->Instance->CR1, USART_CR1_PEIE); |
||
2898 | |||
2899 | hsmartcard->RxState = HAL_SMARTCARD_STATE_READY; |
||
2900 | |||
2901 | /* Clear RxISR function pointer */ |
||
2902 | hsmartcard->RxISR = NULL; |
||
2903 | |||
2904 | #if (USE_HAL_SMARTCARD_REGISTER_CALLBACKS == 1) |
||
2905 | /* Call registered Rx complete callback */ |
||
2906 | hsmartcard->RxCpltCallback(hsmartcard); |
||
2907 | #else |
||
2908 | /* Call legacy weak Rx complete callback */ |
||
2909 | HAL_SMARTCARD_RxCpltCallback(hsmartcard); |
||
2910 | #endif /* USE_HAL_SMARTCARD_REGISTER_CALLBACK */ |
||
2911 | } |
||
2912 | } |
||
2913 | else |
||
2914 | { |
||
2915 | /* Clear RXNE interrupt flag */ |
||
2916 | __HAL_SMARTCARD_SEND_REQ(hsmartcard, SMARTCARD_RXDATA_FLUSH_REQUEST); |
||
2917 | } |
||
2918 | } |
||
2919 | |||
2920 | /** |
||
2921 | * @} |
||
2922 | */ |
||
2923 | |||
2924 | #endif /* HAL_SMARTCARD_MODULE_ENABLED */ |
||
2925 | /** |
||
2926 | * @} |
||
2927 | */ |
||
2928 | |||
2929 | /** |
||
2930 | * @} |
||
2931 | */ |
||
2932 | #endif /* !defined(STM32F030x6) && !defined(STM32F030x8) && !defined(STM32F070x6) && !defined(STM32F070xB) && !defined(STM32F030xC) */ |
||
2933 | /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ |