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2 | mjames | 1 | /** |
2 | ****************************************************************************** |
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3 | * @file stm32f0xx_hal_cec.c |
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4 | * @author MCD Application Team |
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5 | * @brief CEC 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 High Definition Multimedia Interface |
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8 | * Consumer Electronics Control Peripheral (CEC). |
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9 | * + Initialization and de-initialization function |
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10 | * + IO operation function |
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11 | * + Peripheral Control function |
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12 | * |
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13 | * |
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14 | @verbatim |
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15 | =============================================================================== |
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16 | ##### How to use this driver ##### |
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17 | =============================================================================== |
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18 | [..] |
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19 | The CEC HAL driver can be used as follow: |
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20 | |||
21 | (#) Declare a CEC_HandleTypeDef handle structure. |
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22 | (#) Initialize the CEC low level resources by implementing the HAL_CEC_MspInit ()API: |
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23 | (##) Enable the CEC interface clock. |
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24 | (##) CEC pins configuration: |
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25 | (+++) Enable the clock for the CEC GPIOs. |
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26 | (+++) Configure these CEC pins as alternate function pull-up. |
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27 | (##) NVIC configuration if you need to use interrupt process (HAL_CEC_Transmit_IT() |
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28 | and HAL_CEC_Receive_IT() APIs): |
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29 | (+++) Configure the CEC interrupt priority. |
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30 | (+++) Enable the NVIC CEC IRQ handle. |
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31 | (+++) The specific CEC interrupts (Transmission complete interrupt, |
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32 | RXNE interrupt and Error Interrupts) will be managed using the macros |
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33 | __HAL_CEC_ENABLE_IT() and __HAL_CEC_DISABLE_IT() inside the transmit |
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34 | and receive process. |
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35 | |||
36 | (#) Program the Signal Free Time (SFT) and SFT option, Tolerance, reception stop in |
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37 | in case of Bit Rising Error, Error-Bit generation conditions, device logical |
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38 | address and Listen mode in the hcec Init structure. |
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39 | |||
40 | (#) Initialize the CEC registers by calling the HAL_CEC_Init() API. |
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41 | |||
42 | [..] |
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43 | (@) This API (HAL_CEC_Init()) configures also the low level Hardware (GPIO, CLOCK, CORTEX...etc) |
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44 | by calling the customed HAL_CEC_MspInit() API. |
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45 | *** Callback registration *** |
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46 | ============================================= |
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47 | |||
48 | The compilation define USE_HAL_CEC_REGISTER_CALLBACKS when set to 1 |
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49 | allows the user to configure dynamically the driver callbacks. |
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6 | mjames | 50 | Use Functions HAL_CEC_RegisterCallback() or HAL_CEC_RegisterXXXCallback() |
2 | mjames | 51 | to register an interrupt callback. |
52 | |||
6 | mjames | 53 | Function HAL_CEC_RegisterCallback() allows to register following callbacks: |
2 | mjames | 54 | (+) TxCpltCallback : Tx Transfer completed callback. |
55 | (+) ErrorCallback : callback for error detection. |
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56 | (+) MspInitCallback : CEC MspInit. |
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57 | (+) MspDeInitCallback : CEC MspDeInit. |
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58 | This function takes as parameters the HAL peripheral handle, the Callback ID |
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59 | and a pointer to the user callback function. |
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60 | |||
61 | For specific callback HAL_CEC_RxCpltCallback use dedicated register callbacks |
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6 | mjames | 62 | HAL_CEC_RegisterRxCpltCallback(). |
2 | mjames | 63 | |
6 | mjames | 64 | Use function HAL_CEC_UnRegisterCallback() to reset a callback to the default |
2 | mjames | 65 | weak function. |
6 | mjames | 66 | HAL_CEC_UnRegisterCallback() takes as parameters the HAL peripheral handle, |
2 | mjames | 67 | and the Callback ID. |
68 | This function allows to reset following callbacks: |
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69 | (+) TxCpltCallback : Tx Transfer completed callback. |
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70 | (+) ErrorCallback : callback for error detection. |
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71 | (+) MspInitCallback : CEC MspInit. |
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72 | (+) MspDeInitCallback : CEC MspDeInit. |
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73 | |||
74 | For callback HAL_CEC_RxCpltCallback use dedicated unregister callback : |
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6 | mjames | 75 | HAL_CEC_UnRegisterRxCpltCallback(). |
2 | mjames | 76 | |
6 | mjames | 77 | By default, after the HAL_CEC_Init() and when the state is HAL_CEC_STATE_RESET |
2 | mjames | 78 | all callbacks are set to the corresponding weak functions : |
6 | mjames | 79 | examples HAL_CEC_TxCpltCallback() , HAL_CEC_RxCpltCallback(). |
2 | mjames | 80 | Exception done for MspInit and MspDeInit functions that are |
6 | mjames | 81 | reset to the legacy weak function in the HAL_CEC_Init()/ HAL_CEC_DeInit() only when |
2 | mjames | 82 | these callbacks are null (not registered beforehand). |
6 | mjames | 83 | if not, MspInit or MspDeInit are not null, the HAL_CEC_Init() / HAL_CEC_DeInit() |
2 | mjames | 84 | keep and use the user MspInit/MspDeInit functions (registered beforehand) |
85 | |||
86 | Callbacks can be registered/unregistered in HAL_CEC_STATE_READY state only. |
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87 | Exception done MspInit/MspDeInit callbacks that can be registered/unregistered |
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88 | in HAL_CEC_STATE_READY or HAL_CEC_STATE_RESET state, |
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89 | thus registered (user) MspInit/DeInit callbacks can be used during the Init/DeInit. |
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90 | In that case first register the MspInit/MspDeInit user callbacks |
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6 | mjames | 91 | using HAL_CEC_RegisterCallback() before calling HAL_CEC_DeInit() |
92 | or HAL_CEC_Init() function. |
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2 | mjames | 93 | |
94 | When the compilation define USE_HAL_CEC_REGISTER_CALLBACKS is set to 0 or |
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95 | not defined, the callback registration feature is not available and all callbacks |
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96 | are set to the corresponding weak functions. |
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97 | @endverbatim |
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98 | ****************************************************************************** |
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99 | * @attention |
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100 | * |
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101 | * <h2><center>© Copyright (c) 2016 STMicroelectronics. |
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102 | * All rights reserved.</center></h2> |
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103 | * |
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104 | * This software component is licensed by ST under BSD 3-Clause license, |
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105 | * the "License"; You may not use this file except in compliance with the |
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106 | * License. You may obtain a copy of the License at: |
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107 | * opensource.org/licenses/BSD-3-Clause |
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108 | * |
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109 | ****************************************************************************** |
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110 | */ |
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111 | |||
112 | /* Includes ------------------------------------------------------------------*/ |
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113 | #include "stm32f0xx_hal.h" |
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114 | |||
115 | /** @addtogroup STM32F0xx_HAL_Driver |
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116 | * @{ |
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117 | */ |
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118 | |||
119 | /** @defgroup CEC CEC |
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120 | * @brief HAL CEC module driver |
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121 | * @{ |
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122 | */ |
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123 | #ifdef HAL_CEC_MODULE_ENABLED |
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124 | #if defined (CEC) |
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125 | |||
126 | /* Private typedef -----------------------------------------------------------*/ |
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127 | /* Private define ------------------------------------------------------------*/ |
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128 | /** @defgroup CEC_Private_Constants CEC Private Constants |
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129 | * @{ |
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130 | */ |
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131 | /** |
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132 | * @} |
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133 | */ |
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134 | |||
135 | /* Private macro -------------------------------------------------------------*/ |
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136 | /* Private variables ---------------------------------------------------------*/ |
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137 | /* Private function prototypes -----------------------------------------------*/ |
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138 | /** @defgroup CEC_Private_Functions CEC Private Functions |
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139 | * @{ |
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140 | */ |
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141 | /** |
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142 | * @} |
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143 | */ |
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144 | |||
145 | /* Exported functions ---------------------------------------------------------*/ |
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146 | |||
147 | /** @defgroup CEC_Exported_Functions CEC Exported Functions |
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148 | * @{ |
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149 | */ |
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150 | |||
151 | /** @defgroup CEC_Exported_Functions_Group1 Initialization and de-initialization functions |
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152 | * @brief Initialization and Configuration functions |
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153 | * |
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154 | @verbatim |
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155 | =============================================================================== |
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156 | ##### Initialization and Configuration functions ##### |
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157 | =============================================================================== |
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158 | [..] |
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159 | This subsection provides a set of functions allowing to initialize the CEC |
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160 | (+) The following parameters need to be configured: |
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161 | (++) SignalFreeTime |
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162 | (++) Tolerance |
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163 | (++) BRERxStop (RX stopped or not upon Bit Rising Error) |
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164 | (++) BREErrorBitGen (Error-Bit generation in case of Bit Rising Error) |
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165 | (++) LBPEErrorBitGen (Error-Bit generation in case of Long Bit Period Error) |
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166 | (++) BroadcastMsgNoErrorBitGen (Error-bit generation in case of broadcast message error) |
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167 | (++) SignalFreeTimeOption (SFT Timer start definition) |
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168 | (++) OwnAddress (CEC device address) |
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169 | (++) ListenMode |
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170 | |||
171 | @endverbatim |
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172 | * @{ |
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173 | */ |
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174 | |||
175 | /** |
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176 | * @brief Initializes the CEC mode according to the specified |
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177 | * parameters in the CEC_InitTypeDef and creates the associated handle . |
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178 | * @param hcec CEC handle |
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179 | * @retval HAL status |
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180 | */ |
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181 | HAL_StatusTypeDef HAL_CEC_Init(CEC_HandleTypeDef *hcec) |
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182 | { |
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183 | /* Check the CEC handle allocation */ |
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184 | if ((hcec == NULL) || (hcec->Init.RxBuffer == NULL)) |
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185 | { |
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186 | return HAL_ERROR; |
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187 | } |
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188 | |||
189 | /* Check the parameters */ |
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190 | assert_param(IS_CEC_ALL_INSTANCE(hcec->Instance)); |
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191 | assert_param(IS_CEC_SIGNALFREETIME(hcec->Init.SignalFreeTime)); |
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192 | assert_param(IS_CEC_TOLERANCE(hcec->Init.Tolerance)); |
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193 | assert_param(IS_CEC_BRERXSTOP(hcec->Init.BRERxStop)); |
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194 | assert_param(IS_CEC_BREERRORBITGEN(hcec->Init.BREErrorBitGen)); |
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195 | assert_param(IS_CEC_LBPEERRORBITGEN(hcec->Init.LBPEErrorBitGen)); |
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196 | assert_param(IS_CEC_BROADCASTERROR_NO_ERRORBIT_GENERATION(hcec->Init.BroadcastMsgNoErrorBitGen)); |
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197 | assert_param(IS_CEC_SFTOP(hcec->Init.SignalFreeTimeOption)); |
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198 | assert_param(IS_CEC_LISTENING_MODE(hcec->Init.ListenMode)); |
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199 | assert_param(IS_CEC_OWN_ADDRESS(hcec->Init.OwnAddress)); |
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200 | |||
201 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1) |
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202 | if (hcec->gState == HAL_CEC_STATE_RESET) |
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203 | { |
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204 | /* Allocate lock resource and initialize it */ |
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205 | hcec->Lock = HAL_UNLOCKED; |
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206 | |||
207 | hcec->TxCpltCallback = HAL_CEC_TxCpltCallback; /* Legacy weak TxCpltCallback */ |
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208 | hcec->RxCpltCallback = HAL_CEC_RxCpltCallback; /* Legacy weak RxCpltCallback */ |
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209 | hcec->ErrorCallback = HAL_CEC_ErrorCallback; /* Legacy weak ErrorCallback */ |
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210 | |||
211 | if (hcec->MspInitCallback == NULL) |
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212 | { |
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213 | hcec->MspInitCallback = HAL_CEC_MspInit; /* Legacy weak MspInit */ |
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214 | } |
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215 | |||
216 | /* Init the low level hardware */ |
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217 | hcec->MspInitCallback(hcec); |
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218 | } |
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219 | #else |
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220 | if (hcec->gState == HAL_CEC_STATE_RESET) |
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221 | { |
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222 | /* Allocate lock resource and initialize it */ |
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223 | hcec->Lock = HAL_UNLOCKED; |
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224 | /* Init the low level hardware : GPIO, CLOCK */ |
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225 | HAL_CEC_MspInit(hcec); |
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226 | } |
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227 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
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228 | |||
229 | hcec->gState = HAL_CEC_STATE_BUSY; |
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230 | |||
231 | /* Disable the Peripheral */ |
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232 | __HAL_CEC_DISABLE(hcec); |
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233 | |||
234 | /* Write to CEC Control Register */ |
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235 | hcec->Instance->CFGR = hcec->Init.SignalFreeTime | hcec->Init.Tolerance | hcec->Init.BRERxStop | \ |
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236 | hcec->Init.BREErrorBitGen | hcec->Init.LBPEErrorBitGen | hcec->Init.BroadcastMsgNoErrorBitGen | \ |
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237 | hcec->Init.SignalFreeTimeOption | ((uint32_t)(hcec->Init.OwnAddress) << 16U) | \ |
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238 | hcec->Init.ListenMode; |
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239 | |||
240 | /* Enable the following CEC Transmission/Reception interrupts as |
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241 | * well as the following CEC Transmission/Reception Errors interrupts |
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242 | * Rx Byte Received IT |
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243 | * End of Reception IT |
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244 | * Rx overrun |
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245 | * Rx bit rising error |
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246 | * Rx short bit period error |
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247 | * Rx long bit period error |
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248 | * Rx missing acknowledge |
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249 | * Tx Byte Request IT |
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250 | * End of Transmission IT |
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251 | * Tx Missing Acknowledge IT |
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252 | * Tx-Error IT |
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253 | * Tx-Buffer Underrun IT |
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254 | * Tx arbitration lost */ |
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255 | __HAL_CEC_ENABLE_IT(hcec, CEC_IT_RXBR | CEC_IT_RXEND | CEC_IER_RX_ALL_ERR | CEC_IT_TXBR | CEC_IT_TXEND | |
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256 | CEC_IER_TX_ALL_ERR); |
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257 | |||
258 | /* Enable the CEC Peripheral */ |
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259 | __HAL_CEC_ENABLE(hcec); |
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260 | |||
261 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
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262 | hcec->gState = HAL_CEC_STATE_READY; |
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263 | hcec->RxState = HAL_CEC_STATE_READY; |
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264 | |||
265 | return HAL_OK; |
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266 | } |
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267 | |||
268 | /** |
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269 | * @brief DeInitializes the CEC peripheral |
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270 | * @param hcec CEC handle |
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271 | * @retval HAL status |
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272 | */ |
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273 | HAL_StatusTypeDef HAL_CEC_DeInit(CEC_HandleTypeDef *hcec) |
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274 | { |
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275 | /* Check the CEC handle allocation */ |
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276 | if (hcec == NULL) |
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277 | { |
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278 | return HAL_ERROR; |
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279 | } |
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280 | |||
281 | /* Check the parameters */ |
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282 | assert_param(IS_CEC_ALL_INSTANCE(hcec->Instance)); |
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283 | |||
284 | hcec->gState = HAL_CEC_STATE_BUSY; |
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285 | |||
286 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1) |
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287 | if (hcec->MspDeInitCallback == NULL) |
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288 | { |
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289 | hcec->MspDeInitCallback = HAL_CEC_MspDeInit; /* Legacy weak MspDeInit */ |
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290 | } |
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291 | |||
292 | /* DeInit the low level hardware */ |
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293 | hcec->MspDeInitCallback(hcec); |
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294 | |||
295 | #else |
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296 | /* DeInit the low level hardware */ |
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297 | HAL_CEC_MspDeInit(hcec); |
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298 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
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299 | |||
300 | /* Disable the Peripheral */ |
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301 | __HAL_CEC_DISABLE(hcec); |
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302 | |||
303 | /* Clear Flags */ |
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304 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_TXEND | CEC_FLAG_TXBR | CEC_FLAG_RXBR | CEC_FLAG_RXEND | CEC_ISR_ALL_ERROR); |
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305 | |||
306 | /* Disable the following CEC Transmission/Reception interrupts as |
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307 | * well as the following CEC Transmission/Reception Errors interrupts |
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308 | * Rx Byte Received IT |
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309 | * End of Reception IT |
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310 | * Rx overrun |
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311 | * Rx bit rising error |
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312 | * Rx short bit period error |
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313 | * Rx long bit period error |
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314 | * Rx missing acknowledge |
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315 | * Tx Byte Request IT |
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316 | * End of Transmission IT |
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317 | * Tx Missing Acknowledge IT |
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318 | * Tx-Error IT |
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319 | * Tx-Buffer Underrun IT |
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320 | * Tx arbitration lost */ |
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321 | __HAL_CEC_DISABLE_IT(hcec, CEC_IT_RXBR | CEC_IT_RXEND | CEC_IER_RX_ALL_ERR | CEC_IT_TXBR | CEC_IT_TXEND | |
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322 | CEC_IER_TX_ALL_ERR); |
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323 | |||
324 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
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325 | hcec->gState = HAL_CEC_STATE_RESET; |
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326 | hcec->RxState = HAL_CEC_STATE_RESET; |
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327 | |||
328 | /* Process Unlock */ |
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329 | __HAL_UNLOCK(hcec); |
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330 | |||
331 | return HAL_OK; |
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332 | } |
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333 | |||
334 | /** |
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335 | * @brief Initializes the Own Address of the CEC device |
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336 | * @param hcec CEC handle |
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337 | * @param CEC_OwnAddress The CEC own address. |
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338 | * @retval HAL status |
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339 | */ |
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340 | HAL_StatusTypeDef HAL_CEC_SetDeviceAddress(CEC_HandleTypeDef *hcec, uint16_t CEC_OwnAddress) |
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341 | { |
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342 | /* Check the parameters */ |
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343 | assert_param(IS_CEC_OWN_ADDRESS(CEC_OwnAddress)); |
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344 | |||
345 | if ((hcec->gState == HAL_CEC_STATE_READY) && (hcec->RxState == HAL_CEC_STATE_READY)) |
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346 | { |
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347 | /* Process Locked */ |
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348 | __HAL_LOCK(hcec); |
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349 | |||
350 | hcec->gState = HAL_CEC_STATE_BUSY; |
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351 | |||
352 | /* Disable the Peripheral */ |
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353 | __HAL_CEC_DISABLE(hcec); |
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354 | |||
355 | if (CEC_OwnAddress != CEC_OWN_ADDRESS_NONE) |
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356 | { |
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357 | hcec->Instance->CFGR |= ((uint32_t)CEC_OwnAddress << 16); |
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358 | } |
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359 | else |
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360 | { |
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361 | hcec->Instance->CFGR &= ~(CEC_CFGR_OAR); |
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362 | } |
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363 | |||
364 | hcec->gState = HAL_CEC_STATE_READY; |
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365 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
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366 | |||
367 | /* Process Unlocked */ |
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368 | __HAL_UNLOCK(hcec); |
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369 | |||
370 | /* Enable the Peripheral */ |
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371 | __HAL_CEC_ENABLE(hcec); |
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372 | |||
373 | return HAL_OK; |
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374 | } |
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375 | else |
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376 | { |
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377 | return HAL_BUSY; |
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378 | } |
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379 | } |
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380 | |||
381 | /** |
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382 | * @brief CEC MSP Init |
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383 | * @param hcec CEC handle |
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384 | * @retval None |
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385 | */ |
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386 | __weak void HAL_CEC_MspInit(CEC_HandleTypeDef *hcec) |
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387 | { |
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388 | /* Prevent unused argument(s) compilation warning */ |
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389 | UNUSED(hcec); |
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390 | /* NOTE : This function should not be modified, when the callback is needed, |
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391 | the HAL_CEC_MspInit can be implemented in the user file |
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392 | */ |
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393 | } |
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394 | |||
395 | /** |
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396 | * @brief CEC MSP DeInit |
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397 | * @param hcec CEC handle |
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398 | * @retval None |
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399 | */ |
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400 | __weak void HAL_CEC_MspDeInit(CEC_HandleTypeDef *hcec) |
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401 | { |
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402 | /* Prevent unused argument(s) compilation warning */ |
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403 | UNUSED(hcec); |
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404 | /* NOTE : This function should not be modified, when the callback is needed, |
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405 | the HAL_CEC_MspDeInit can be implemented in the user file |
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406 | */ |
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407 | } |
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408 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1) |
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409 | /** |
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410 | * @brief Register a User CEC Callback |
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411 | * To be used instead of the weak predefined callback |
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412 | * @param hcec CEC handle |
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413 | * @param CallbackID ID of the callback to be registered |
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414 | * This parameter can be one of the following values: |
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415 | * @arg @ref HAL_CEC_TX_CPLT_CB_ID Tx Complete callback ID |
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416 | * @arg @ref HAL_CEC_ERROR_CB_ID Error callback ID |
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417 | * @arg @ref HAL_CEC_MSPINIT_CB_ID MspInit callback ID |
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418 | * @arg @ref HAL_CEC_MSPDEINIT_CB_ID MspDeInit callback ID |
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419 | * @param pCallback pointer to the Callback function |
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420 | * @retval HAL status |
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421 | */ |
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422 | HAL_StatusTypeDef HAL_CEC_RegisterCallback(CEC_HandleTypeDef *hcec, HAL_CEC_CallbackIDTypeDef CallbackID, |
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423 | pCEC_CallbackTypeDef pCallback) |
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424 | { |
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425 | HAL_StatusTypeDef status = HAL_OK; |
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426 | |||
427 | if (pCallback == NULL) |
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428 | { |
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429 | /* Update the error code */ |
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430 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
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431 | return HAL_ERROR; |
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432 | } |
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433 | /* Process locked */ |
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434 | __HAL_LOCK(hcec); |
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435 | |||
436 | if (hcec->gState == HAL_CEC_STATE_READY) |
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437 | { |
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438 | switch (CallbackID) |
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439 | { |
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440 | case HAL_CEC_TX_CPLT_CB_ID : |
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441 | hcec->TxCpltCallback = pCallback; |
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442 | break; |
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443 | |||
444 | case HAL_CEC_ERROR_CB_ID : |
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445 | hcec->ErrorCallback = pCallback; |
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446 | break; |
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447 | |||
448 | case HAL_CEC_MSPINIT_CB_ID : |
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449 | hcec->MspInitCallback = pCallback; |
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450 | break; |
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451 | |||
452 | case HAL_CEC_MSPDEINIT_CB_ID : |
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453 | hcec->MspDeInitCallback = pCallback; |
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454 | break; |
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455 | |||
456 | default : |
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457 | /* Update the error code */ |
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458 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
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459 | /* Return error status */ |
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460 | status = HAL_ERROR; |
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461 | break; |
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462 | } |
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463 | } |
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464 | else if (hcec->gState == HAL_CEC_STATE_RESET) |
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465 | { |
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466 | switch (CallbackID) |
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467 | { |
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468 | case HAL_CEC_MSPINIT_CB_ID : |
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469 | hcec->MspInitCallback = pCallback; |
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470 | break; |
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471 | |||
472 | case HAL_CEC_MSPDEINIT_CB_ID : |
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473 | hcec->MspDeInitCallback = pCallback; |
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474 | break; |
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475 | |||
476 | default : |
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477 | /* Update the error code */ |
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478 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
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479 | /* Return error status */ |
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480 | status = HAL_ERROR; |
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481 | break; |
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482 | } |
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483 | } |
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484 | else |
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485 | { |
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486 | /* Update the error code */ |
||
487 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
488 | /* Return error status */ |
||
489 | status = HAL_ERROR; |
||
490 | } |
||
491 | |||
492 | /* Release Lock */ |
||
493 | __HAL_UNLOCK(hcec); |
||
494 | |||
495 | return status; |
||
496 | } |
||
497 | |||
498 | /** |
||
499 | * @brief Unregister an CEC Callback |
||
500 | * CEC callabck is redirected to the weak predefined callback |
||
501 | * @param hcec uart handle |
||
502 | * @param CallbackID ID of the callback to be unregistered |
||
503 | * This parameter can be one of the following values: |
||
504 | * @arg @ref HAL_CEC_TX_CPLT_CB_ID Tx Complete callback ID |
||
505 | * @arg @ref HAL_CEC_ERROR_CB_ID Error callback ID |
||
506 | * @arg @ref HAL_CEC_MSPINIT_CB_ID MspInit callback ID |
||
507 | * @arg @ref HAL_CEC_MSPDEINIT_CB_ID MspDeInit callback ID |
||
508 | * @retval status |
||
509 | */ |
||
510 | HAL_StatusTypeDef HAL_CEC_UnRegisterCallback(CEC_HandleTypeDef *hcec, HAL_CEC_CallbackIDTypeDef CallbackID) |
||
511 | { |
||
512 | HAL_StatusTypeDef status = HAL_OK; |
||
513 | |||
514 | /* Process locked */ |
||
515 | __HAL_LOCK(hcec); |
||
516 | |||
517 | if (hcec->gState == HAL_CEC_STATE_READY) |
||
518 | { |
||
519 | switch (CallbackID) |
||
520 | { |
||
521 | case HAL_CEC_TX_CPLT_CB_ID : |
||
522 | hcec->TxCpltCallback = HAL_CEC_TxCpltCallback; /* Legacy weak TxCpltCallback */ |
||
523 | break; |
||
524 | |||
525 | case HAL_CEC_ERROR_CB_ID : |
||
526 | hcec->ErrorCallback = HAL_CEC_ErrorCallback; /* Legacy weak ErrorCallback */ |
||
527 | break; |
||
528 | |||
529 | case HAL_CEC_MSPINIT_CB_ID : |
||
530 | hcec->MspInitCallback = HAL_CEC_MspInit; |
||
531 | break; |
||
532 | |||
533 | case HAL_CEC_MSPDEINIT_CB_ID : |
||
534 | hcec->MspDeInitCallback = HAL_CEC_MspDeInit; |
||
535 | break; |
||
536 | |||
537 | default : |
||
538 | /* Update the error code */ |
||
539 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
540 | /* Return error status */ |
||
541 | status = HAL_ERROR; |
||
542 | break; |
||
543 | } |
||
544 | } |
||
545 | else if (hcec->gState == HAL_CEC_STATE_RESET) |
||
546 | { |
||
547 | switch (CallbackID) |
||
548 | { |
||
549 | case HAL_CEC_MSPINIT_CB_ID : |
||
550 | hcec->MspInitCallback = HAL_CEC_MspInit; |
||
551 | break; |
||
552 | |||
553 | case HAL_CEC_MSPDEINIT_CB_ID : |
||
554 | hcec->MspDeInitCallback = HAL_CEC_MspDeInit; |
||
555 | break; |
||
556 | |||
557 | default : |
||
558 | /* Update the error code */ |
||
559 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
560 | /* Return error status */ |
||
561 | status = HAL_ERROR; |
||
562 | break; |
||
563 | } |
||
564 | } |
||
565 | else |
||
566 | { |
||
567 | /* Update the error code */ |
||
568 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
569 | /* Return error status */ |
||
570 | status = HAL_ERROR; |
||
571 | } |
||
572 | |||
573 | /* Release Lock */ |
||
574 | __HAL_UNLOCK(hcec); |
||
575 | |||
576 | return status; |
||
577 | } |
||
578 | |||
579 | /** |
||
580 | * @brief Register CEC RX complete Callback |
||
581 | * To be used instead of the weak HAL_CEC_RxCpltCallback() predefined callback |
||
582 | * @param hcec CEC handle |
||
583 | * @param pCallback pointer to the Rx transfer compelete Callback function |
||
584 | * @retval HAL status |
||
585 | */ |
||
586 | HAL_StatusTypeDef HAL_CEC_RegisterRxCpltCallback(CEC_HandleTypeDef *hcec, pCEC_RxCallbackTypeDef pCallback) |
||
587 | { |
||
588 | HAL_StatusTypeDef status = HAL_OK; |
||
589 | |||
590 | if (pCallback == NULL) |
||
591 | { |
||
592 | /* Update the error code */ |
||
593 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
594 | return HAL_ERROR; |
||
595 | } |
||
596 | /* Process locked */ |
||
597 | __HAL_LOCK(hcec); |
||
598 | |||
599 | if (HAL_CEC_STATE_READY == hcec->RxState) |
||
600 | { |
||
601 | hcec->RxCpltCallback = pCallback; |
||
602 | } |
||
603 | else |
||
604 | { |
||
605 | /* Update the error code */ |
||
606 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
607 | /* Return error status */ |
||
608 | status = HAL_ERROR; |
||
609 | } |
||
610 | |||
611 | /* Release Lock */ |
||
612 | __HAL_UNLOCK(hcec); |
||
613 | return status; |
||
614 | } |
||
615 | |||
616 | /** |
||
617 | * @brief UnRegister CEC RX complete Callback |
||
618 | * CEC RX complete Callback is redirected to the weak HAL_CEC_RxCpltCallback() predefined callback |
||
619 | * @param hcec CEC handle |
||
620 | * @retval HAL status |
||
621 | */ |
||
622 | HAL_StatusTypeDef HAL_CEC_UnRegisterRxCpltCallback(CEC_HandleTypeDef *hcec) |
||
623 | { |
||
624 | HAL_StatusTypeDef status = HAL_OK; |
||
625 | |||
626 | /* Process locked */ |
||
627 | __HAL_LOCK(hcec); |
||
628 | |||
629 | if (HAL_CEC_STATE_READY == hcec->RxState) |
||
630 | { |
||
631 | hcec->RxCpltCallback = HAL_CEC_RxCpltCallback; /* Legacy weak CEC RxCpltCallback */ |
||
632 | } |
||
633 | else |
||
634 | { |
||
635 | /* Update the error code */ |
||
636 | hcec->ErrorCode |= HAL_CEC_ERROR_INVALID_CALLBACK; |
||
637 | /* Return error status */ |
||
638 | status = HAL_ERROR; |
||
639 | } |
||
640 | |||
641 | /* Release Lock */ |
||
642 | __HAL_UNLOCK(hcec); |
||
643 | return status; |
||
644 | } |
||
645 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
||
646 | |||
647 | /** |
||
648 | * @} |
||
649 | */ |
||
650 | |||
651 | /** @defgroup CEC_Exported_Functions_Group2 Input and Output operation functions |
||
652 | * @brief CEC Transmit/Receive functions |
||
653 | * |
||
654 | @verbatim |
||
655 | =============================================================================== |
||
656 | ##### IO operation functions ##### |
||
657 | =============================================================================== |
||
658 | This subsection provides a set of functions allowing to manage the CEC data transfers. |
||
659 | |||
660 | (#) The CEC handle must contain the initiator (TX side) and the destination (RX side) |
||
661 | logical addresses (4-bit long addresses, 0xF for broadcast messages destination) |
||
662 | |||
663 | (#) The communication is performed using Interrupts. |
||
664 | These API's return the HAL status. |
||
665 | The end of the data processing will be indicated through the |
||
666 | dedicated CEC IRQ when using Interrupt mode. |
||
667 | The HAL_CEC_TxCpltCallback(), HAL_CEC_RxCpltCallback() user callbacks |
||
668 | will be executed respectively at the end of the transmit or Receive process |
||
669 | The HAL_CEC_ErrorCallback() user callback will be executed when a communication |
||
670 | error is detected |
||
671 | |||
672 | (#) API's with Interrupt are : |
||
673 | (+) HAL_CEC_Transmit_IT() |
||
674 | (+) HAL_CEC_IRQHandler() |
||
675 | |||
676 | (#) A set of User Callbacks are provided: |
||
677 | (+) HAL_CEC_TxCpltCallback() |
||
678 | (+) HAL_CEC_RxCpltCallback() |
||
679 | (+) HAL_CEC_ErrorCallback() |
||
680 | |||
681 | @endverbatim |
||
682 | * @{ |
||
683 | */ |
||
684 | |||
685 | /** |
||
686 | * @brief Send data in interrupt mode |
||
687 | * @param hcec CEC handle |
||
688 | * @param InitiatorAddress Initiator address |
||
689 | * @param DestinationAddress destination logical address |
||
690 | * @param pData pointer to input byte data buffer |
||
691 | * @param Size amount of data to be sent in bytes (without counting the header). |
||
692 | * 0 means only the header is sent (ping operation). |
||
693 | * Maximum TX size is 15 bytes (1 opcode and up to 14 operands). |
||
694 | * @retval HAL status |
||
695 | */ |
||
696 | HAL_StatusTypeDef HAL_CEC_Transmit_IT(CEC_HandleTypeDef *hcec, uint8_t InitiatorAddress, uint8_t DestinationAddress, |
||
697 | uint8_t *pData, uint32_t Size) |
||
698 | { |
||
6 | mjames | 699 | /* if the peripheral isn't already busy and if there is no previous transmission |
2 | mjames | 700 | already pending due to arbitration lost */ |
701 | if (hcec->gState == HAL_CEC_STATE_READY) |
||
702 | { |
||
703 | if ((pData == NULL) && (Size > 0U)) |
||
704 | { |
||
705 | return HAL_ERROR; |
||
706 | } |
||
707 | |||
708 | assert_param(IS_CEC_ADDRESS(DestinationAddress)); |
||
709 | assert_param(IS_CEC_ADDRESS(InitiatorAddress)); |
||
710 | assert_param(IS_CEC_MSGSIZE(Size)); |
||
711 | |||
712 | /* Process Locked */ |
||
713 | __HAL_LOCK(hcec); |
||
714 | hcec->pTxBuffPtr = pData; |
||
715 | hcec->gState = HAL_CEC_STATE_BUSY_TX; |
||
716 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
||
717 | |||
718 | /* initialize the number of bytes to send, |
||
719 | * 0 means only one header is sent (ping operation) */ |
||
720 | hcec->TxXferCount = (uint16_t)Size; |
||
721 | |||
722 | /* in case of no payload (Size = 0), sender is only pinging the system; |
||
723 | Set TX End of Message (TXEOM) bit, must be set before writing data to TXDR */ |
||
724 | if (Size == 0U) |
||
725 | { |
||
726 | __HAL_CEC_LAST_BYTE_TX_SET(hcec); |
||
727 | } |
||
728 | |||
729 | /* send header block */ |
||
730 | hcec->Instance->TXDR = (uint32_t)(((uint32_t)InitiatorAddress << CEC_INITIATOR_LSB_POS) | DestinationAddress); |
||
731 | |||
732 | /* Set TX Start of Message (TXSOM) bit */ |
||
733 | __HAL_CEC_FIRST_BYTE_TX_SET(hcec); |
||
734 | |||
735 | /* Process Unlocked */ |
||
736 | __HAL_UNLOCK(hcec); |
||
737 | |||
738 | return HAL_OK; |
||
739 | |||
740 | } |
||
741 | else |
||
742 | { |
||
743 | return HAL_BUSY; |
||
744 | } |
||
745 | } |
||
746 | |||
747 | /** |
||
748 | * @brief Get size of the received frame. |
||
749 | * @param hcec CEC handle |
||
750 | * @retval Frame size |
||
751 | */ |
||
752 | uint32_t HAL_CEC_GetLastReceivedFrameSize(CEC_HandleTypeDef *hcec) |
||
753 | { |
||
754 | return hcec->RxXferSize; |
||
755 | } |
||
756 | |||
757 | /** |
||
758 | * @brief Change Rx Buffer. |
||
759 | * @param hcec CEC handle |
||
760 | * @param Rxbuffer Rx Buffer |
||
761 | * @note This function can be called only inside the HAL_CEC_RxCpltCallback() |
||
762 | * @retval Frame size |
||
763 | */ |
||
764 | void HAL_CEC_ChangeRxBuffer(CEC_HandleTypeDef *hcec, uint8_t *Rxbuffer) |
||
765 | { |
||
766 | hcec->Init.RxBuffer = Rxbuffer; |
||
767 | } |
||
768 | |||
769 | /** |
||
770 | * @brief This function handles CEC interrupt requests. |
||
771 | * @param hcec CEC handle |
||
772 | * @retval None |
||
773 | */ |
||
774 | void HAL_CEC_IRQHandler(CEC_HandleTypeDef *hcec) |
||
775 | { |
||
776 | |||
777 | /* save interrupts register for further error or interrupts handling purposes */ |
||
778 | uint32_t reg; |
||
779 | reg = hcec->Instance->ISR; |
||
780 | |||
781 | |||
782 | /* ----------------------------Arbitration Lost Management----------------------------------*/ |
||
783 | /* CEC TX arbitration error interrupt occurred --------------------------------------*/ |
||
784 | if ((reg & CEC_FLAG_ARBLST) != 0U) |
||
785 | { |
||
786 | hcec->ErrorCode = HAL_CEC_ERROR_ARBLST; |
||
787 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_ARBLST); |
||
788 | } |
||
789 | |||
790 | /* ----------------------------Rx Management----------------------------------*/ |
||
791 | /* CEC RX byte received interrupt ---------------------------------------------------*/ |
||
792 | if ((reg & CEC_FLAG_RXBR) != 0U) |
||
793 | { |
||
794 | /* reception is starting */ |
||
795 | hcec->RxState = HAL_CEC_STATE_BUSY_RX; |
||
796 | hcec->RxXferSize++; |
||
797 | /* read received byte */ |
||
798 | *hcec->Init.RxBuffer = (uint8_t) hcec->Instance->RXDR; |
||
799 | hcec->Init.RxBuffer++; |
||
800 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_RXBR); |
||
801 | } |
||
802 | |||
803 | /* CEC RX end received interrupt ---------------------------------------------------*/ |
||
804 | if ((reg & CEC_FLAG_RXEND) != 0U) |
||
805 | { |
||
806 | /* clear IT */ |
||
807 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_RXEND); |
||
808 | |||
809 | /* Rx process is completed, restore hcec->RxState to Ready */ |
||
810 | hcec->RxState = HAL_CEC_STATE_READY; |
||
811 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
||
812 | hcec->Init.RxBuffer -= hcec->RxXferSize; |
||
813 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1U) |
||
814 | hcec->RxCpltCallback(hcec, hcec->RxXferSize); |
||
815 | #else |
||
816 | HAL_CEC_RxCpltCallback(hcec, hcec->RxXferSize); |
||
817 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
||
818 | hcec->RxXferSize = 0U; |
||
819 | } |
||
820 | |||
821 | /* ----------------------------Tx Management----------------------------------*/ |
||
822 | /* CEC TX byte request interrupt ------------------------------------------------*/ |
||
823 | if ((reg & CEC_FLAG_TXBR) != 0U) |
||
824 | { |
||
6 | mjames | 825 | --hcec->TxXferCount; |
2 | mjames | 826 | if (hcec->TxXferCount == 0U) |
827 | { |
||
828 | /* if this is the last byte transmission, set TX End of Message (TXEOM) bit */ |
||
829 | __HAL_CEC_LAST_BYTE_TX_SET(hcec); |
||
830 | } |
||
6 | mjames | 831 | /* In all cases transmit the byte */ |
832 | hcec->Instance->TXDR = *hcec->pTxBuffPtr; |
||
833 | hcec->pTxBuffPtr++; |
||
2 | mjames | 834 | /* clear Tx-Byte request flag */ |
835 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_TXBR); |
||
836 | } |
||
837 | |||
838 | /* CEC TX end interrupt ------------------------------------------------*/ |
||
839 | if ((reg & CEC_FLAG_TXEND) != 0U) |
||
840 | { |
||
841 | __HAL_CEC_CLEAR_FLAG(hcec, CEC_FLAG_TXEND); |
||
842 | |||
843 | /* Tx process is ended, restore hcec->gState to Ready */ |
||
844 | hcec->gState = HAL_CEC_STATE_READY; |
||
845 | /* Call the Process Unlocked before calling the Tx call back API to give the possibility to |
||
846 | start again the Transmission under the Tx call back API */ |
||
847 | __HAL_UNLOCK(hcec); |
||
848 | hcec->ErrorCode = HAL_CEC_ERROR_NONE; |
||
849 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1U) |
||
850 | hcec->TxCpltCallback(hcec); |
||
851 | #else |
||
852 | HAL_CEC_TxCpltCallback(hcec); |
||
853 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
||
854 | } |
||
855 | |||
856 | /* ----------------------------Rx/Tx Error Management----------------------------------*/ |
||
857 | if ((reg & (CEC_ISR_RXOVR | CEC_ISR_BRE | CEC_ISR_SBPE | CEC_ISR_LBPE | CEC_ISR_RXACKE | CEC_ISR_TXUDR | CEC_ISR_TXERR | |
||
858 | CEC_ISR_TXACKE)) != 0U) |
||
859 | { |
||
860 | hcec->ErrorCode = reg; |
||
861 | __HAL_CEC_CLEAR_FLAG(hcec, HAL_CEC_ERROR_RXOVR | HAL_CEC_ERROR_BRE | CEC_FLAG_LBPE | CEC_FLAG_SBPE | |
||
862 | HAL_CEC_ERROR_RXACKE | HAL_CEC_ERROR_TXUDR | HAL_CEC_ERROR_TXERR | HAL_CEC_ERROR_TXACKE); |
||
863 | |||
864 | |||
865 | if ((reg & (CEC_ISR_RXOVR | CEC_ISR_BRE | CEC_ISR_SBPE | CEC_ISR_LBPE | CEC_ISR_RXACKE)) != 0U) |
||
866 | { |
||
867 | hcec->Init.RxBuffer -= hcec->RxXferSize; |
||
868 | hcec->RxXferSize = 0U; |
||
869 | hcec->RxState = HAL_CEC_STATE_READY; |
||
870 | } |
||
871 | else if (((reg & CEC_ISR_ARBLST) == 0U) && ((reg & (CEC_ISR_TXUDR | CEC_ISR_TXERR | CEC_ISR_TXACKE)) != 0U)) |
||
872 | { |
||
873 | /* Set the CEC state ready to be able to start again the process */ |
||
874 | hcec->gState = HAL_CEC_STATE_READY; |
||
875 | } |
||
876 | else |
||
877 | { |
||
878 | /* Nothing todo*/ |
||
879 | } |
||
880 | #if (USE_HAL_CEC_REGISTER_CALLBACKS == 1U) |
||
881 | hcec->ErrorCallback(hcec); |
||
882 | #else |
||
883 | /* Error Call Back */ |
||
884 | HAL_CEC_ErrorCallback(hcec); |
||
885 | #endif /* USE_HAL_CEC_REGISTER_CALLBACKS */ |
||
886 | } |
||
887 | else |
||
888 | { |
||
889 | /* Nothing todo*/ |
||
890 | } |
||
891 | } |
||
892 | |||
893 | /** |
||
894 | * @brief Tx Transfer completed callback |
||
895 | * @param hcec CEC handle |
||
896 | * @retval None |
||
897 | */ |
||
898 | __weak void HAL_CEC_TxCpltCallback(CEC_HandleTypeDef *hcec) |
||
899 | { |
||
900 | /* Prevent unused argument(s) compilation warning */ |
||
901 | UNUSED(hcec); |
||
902 | /* NOTE : This function should not be modified, when the callback is needed, |
||
903 | the HAL_CEC_TxCpltCallback can be implemented in the user file |
||
904 | */ |
||
905 | } |
||
906 | |||
907 | /** |
||
908 | * @brief Rx Transfer completed callback |
||
909 | * @param hcec CEC handle |
||
910 | * @param RxFrameSize Size of frame |
||
911 | * @retval None |
||
912 | */ |
||
913 | __weak void HAL_CEC_RxCpltCallback(CEC_HandleTypeDef *hcec, uint32_t RxFrameSize) |
||
914 | { |
||
915 | /* Prevent unused argument(s) compilation warning */ |
||
916 | UNUSED(hcec); |
||
917 | UNUSED(RxFrameSize); |
||
918 | /* NOTE : This function should not be modified, when the callback is needed, |
||
919 | the HAL_CEC_RxCpltCallback can be implemented in the user file |
||
920 | */ |
||
921 | } |
||
922 | |||
923 | /** |
||
924 | * @brief CEC error callbacks |
||
925 | * @param hcec CEC handle |
||
926 | * @retval None |
||
927 | */ |
||
928 | __weak void HAL_CEC_ErrorCallback(CEC_HandleTypeDef *hcec) |
||
929 | { |
||
930 | /* Prevent unused argument(s) compilation warning */ |
||
931 | UNUSED(hcec); |
||
932 | /* NOTE : This function should not be modified, when the callback is needed, |
||
933 | the HAL_CEC_ErrorCallback can be implemented in the user file |
||
934 | */ |
||
935 | } |
||
936 | /** |
||
937 | * @} |
||
938 | */ |
||
939 | |||
940 | /** @defgroup CEC_Exported_Functions_Group3 Peripheral Control function |
||
941 | * @brief CEC control functions |
||
942 | * |
||
943 | @verbatim |
||
944 | =============================================================================== |
||
945 | ##### Peripheral Control function ##### |
||
946 | =============================================================================== |
||
947 | [..] |
||
948 | This subsection provides a set of functions allowing to control the CEC. |
||
949 | (+) HAL_CEC_GetState() API can be helpful to check in run-time the state of the CEC peripheral. |
||
950 | (+) HAL_CEC_GetError() API can be helpful to check in run-time the error of the CEC peripheral. |
||
951 | @endverbatim |
||
952 | * @{ |
||
953 | */ |
||
954 | /** |
||
955 | * @brief return the CEC state |
||
956 | * @param hcec pointer to a CEC_HandleTypeDef structure that contains |
||
957 | * the configuration information for the specified CEC module. |
||
958 | * @retval HAL state |
||
959 | */ |
||
960 | HAL_CEC_StateTypeDef HAL_CEC_GetState(CEC_HandleTypeDef *hcec) |
||
961 | { |
||
962 | uint32_t temp1, temp2; |
||
963 | temp1 = hcec->gState; |
||
964 | temp2 = hcec->RxState; |
||
965 | |||
966 | return (HAL_CEC_StateTypeDef)(temp1 | temp2); |
||
967 | } |
||
968 | |||
969 | /** |
||
970 | * @brief Return the CEC error code |
||
971 | * @param hcec pointer to a CEC_HandleTypeDef structure that contains |
||
972 | * the configuration information for the specified CEC. |
||
973 | * @retval CEC Error Code |
||
974 | */ |
||
975 | uint32_t HAL_CEC_GetError(CEC_HandleTypeDef *hcec) |
||
976 | { |
||
977 | return hcec->ErrorCode; |
||
978 | } |
||
979 | |||
980 | /** |
||
981 | * @} |
||
982 | */ |
||
983 | |||
984 | /** |
||
985 | * @} |
||
986 | */ |
||
987 | #endif /* CEC */ |
||
988 | #endif /* HAL_CEC_MODULE_ENABLED */ |
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989 | /** |
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990 | * @} |
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991 | */ |
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992 | |||
993 | /** |
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994 | * @} |
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995 | */ |
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996 | |||
997 | /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ |