38
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1 /**
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2 ******************************************************************************
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3 * @file stm32f4xx_hal_pccard.c
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4 * @author MCD Application Team
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5 * @version V1.2.0
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6 * @date 26-December-2014
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7 * @brief PCCARD HAL module driver.
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8 * This file provides a generic firmware to drive PCCARD memories mounted
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9 * as external device.
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10 *
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11 @verbatim
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12 ===============================================================================
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13 ##### How to use this driver #####
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14 ===============================================================================
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15 [..]
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16 This driver is a generic layered driver which contains a set of APIs used to
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17 control PCCARD/compact flash memories. It uses the FMC/FSMC layer functions
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18 to interface with PCCARD devices. This driver is used for:
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19
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20 (+) PCCARD/Compact Flash memory configuration sequence using the function
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21 HAL_PCCARD_Init()/HAL_CF_Init() with control and timing parameters for
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22 both common and attribute spaces.
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23
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24 (+) Read PCCARD/Compact Flash memory maker and device IDs using the function
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25 HAL_PCCARD_Read_ID()/HAL_CF_Read_ID(). The read information is stored in
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26 the CompactFlash_ID structure declared by the function caller.
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27
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28 (+) Access PCCARD/Compact Flash memory by read/write operations using the functions
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29 HAL_PCCARD_Read_Sector()/ HAL_PCCARD_Write_Sector() -
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30 HAL_CF_Read_Sector()/HAL_CF_Write_Sector(), to read/write sector.
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31
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32 (+) Perform PCCARD/Compact Flash Reset chip operation using the function
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33 HAL_PCCARD_Reset()/HAL_CF_Reset.
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34
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35 (+) Perform PCCARD/Compact Flash erase sector operation using the function
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36 HAL_PCCARD_Erase_Sector()/HAL_CF_Erase_Sector.
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37
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38 (+) Read the PCCARD/Compact Flash status operation using the function
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39 HAL_PCCARD_ReadStatus()/HAL_CF_ReadStatus().
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40
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41 (+) You can monitor the PCCARD/Compact Flash device HAL state by calling
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42 the function HAL_PCCARD_GetState()/HAL_CF_GetState()
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43
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44 [..]
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45 (@) This driver is a set of generic APIs which handle standard PCCARD/compact flash
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46 operations. If a PCCARD/Compact Flash device contains different operations
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47 and/or implementations, it should be implemented separately.
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48
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49 @endverbatim
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50 ******************************************************************************
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51 * @attention
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52 *
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53 * <h2><center>© COPYRIGHT(c) 2014 STMicroelectronics</center></h2>
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54 *
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55 * Redistribution and use in source and binary forms, with or without modification,
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56 * are permitted provided that the following conditions are met:
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57 * 1. Redistributions of source code must retain the above copyright notice,
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58 * this list of conditions and the following disclaimer.
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59 * 2. Redistributions in binary form must reproduce the above copyright notice,
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60 * this list of conditions and the following disclaimer in the documentation
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61 * and/or other materials provided with the distribution.
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62 * 3. Neither the name of STMicroelectronics nor the names of its contributors
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63 * may be used to endorse or promote products derived from this software
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64 * without specific prior written permission.
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65 *
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66 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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67 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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68 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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69 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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70 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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71 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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72 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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73 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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74 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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75 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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76 *
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77 ******************************************************************************
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78 */
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79
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80 /* Includes ------------------------------------------------------------------*/
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81 #include "stm32f4xx_hal.h"
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82
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83 /** @addtogroup STM32F4xx_HAL_Driver
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84 * @{
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85 */
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86
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87 #ifdef HAL_PCCARD_MODULE_ENABLED
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88 #if defined(STM32F405xx) || defined(STM32F415xx) || defined(STM32F407xx) || defined(STM32F417xx) || defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)
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89 /** @defgroup PCCARD PCCARD
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90 * @brief PCCARD HAL module driver
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91 * @{
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92 */
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93 /* Private typedef -----------------------------------------------------------*/
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94 /* Private define ---------------------------------------------------------*/
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95 /* Private macro -------------------------------------------------------------*/
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96 /* Private variables ---------------------------------------------------------*/
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97 /* Private function ----------------------------------------------------------*/
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98 /* Exported functions --------------------------------------------------------*/
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99 /** @defgroup PCCARD_Exported_Functions PCCARD Exported Functions
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100 * @{
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101 */
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102
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103 /** @defgroup PCCARD_Exported_Functions_Group1 Initialization and de-initialization functions
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104 * @brief Initialization and Configuration functions
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105 *
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106 @verbatim
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107 ==============================================================================
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108 ##### PCCARD Initialization and de-initialization functions #####
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109 ==============================================================================
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110 [..]
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111 This section provides functions allowing to initialize/de-initialize
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112 the PCCARD memory
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113
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114 @endverbatim
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115 * @{
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116 */
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117
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118 /**
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119 * @brief Perform the PCCARD memory Initialization sequence
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120 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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121 * the configuration information for PCCARD module.
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122 * @param ComSpaceTiming: Common space timing structure
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123 * @param AttSpaceTiming: Attribute space timing structure
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124 * @param IOSpaceTiming: IO space timing structure
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125 * @retval HAL status
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126 */
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127 HAL_StatusTypeDef HAL_PCCARD_Init(PCCARD_HandleTypeDef *hpccard, FMC_NAND_PCC_TimingTypeDef *ComSpaceTiming, FMC_NAND_PCC_TimingTypeDef *AttSpaceTiming, FMC_NAND_PCC_TimingTypeDef *IOSpaceTiming)
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128 {
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129 /* Check the PCCARD controller state */
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130 if(hpccard == NULL)
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131 {
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132 return HAL_ERROR;
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133 }
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134
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135 if(hpccard->State == HAL_PCCARD_STATE_RESET)
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136 {
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137 /* Initialize the low level hardware (MSP) */
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138 HAL_PCCARD_MspInit(hpccard);
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139 }
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140
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141 /* Initialize the PCCARD state */
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142 hpccard->State = HAL_PCCARD_STATE_BUSY;
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143
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144 /* Initialize PCCARD control Interface */
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145 FMC_PCCARD_Init(hpccard->Instance, &(hpccard->Init));
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146
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147 /* Init PCCARD common space timing Interface */
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148 FMC_PCCARD_CommonSpace_Timing_Init(hpccard->Instance, ComSpaceTiming);
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149
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150 /* Init PCCARD attribute space timing Interface */
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151 FMC_PCCARD_AttributeSpace_Timing_Init(hpccard->Instance, AttSpaceTiming);
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152
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153 /* Init PCCARD IO space timing Interface */
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154 FMC_PCCARD_IOSpace_Timing_Init(hpccard->Instance, IOSpaceTiming);
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155
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156 /* Enable the PCCARD device */
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157 __FMC_PCCARD_ENABLE(hpccard->Instance);
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158
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159 /* Update the PCCARD state */
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160 hpccard->State = HAL_PCCARD_STATE_READY;
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161
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162 return HAL_OK;
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163
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164 }
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165
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166 /**
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167 * @brief Perform the PCCARD memory De-initialization sequence
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168 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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169 * the configuration information for PCCARD module.
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170 * @retval HAL status
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171 */
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172 HAL_StatusTypeDef HAL_PCCARD_DeInit(PCCARD_HandleTypeDef *hpccard)
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173 {
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174 /* De-Initialize the low level hardware (MSP) */
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175 HAL_PCCARD_MspDeInit(hpccard);
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176
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177 /* Configure the PCCARD registers with their reset values */
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178 FMC_PCCARD_DeInit(hpccard->Instance);
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179
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180 /* Update the PCCARD controller state */
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181 hpccard->State = HAL_PCCARD_STATE_RESET;
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182
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183 /* Release Lock */
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184 __HAL_UNLOCK(hpccard);
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185
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186 return HAL_OK;
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187 }
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188
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189 /**
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190 * @brief PCCARD MSP Init
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191 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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192 * the configuration information for PCCARD module.
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193 * @retval None
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194 */
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195 __weak void HAL_PCCARD_MspInit(PCCARD_HandleTypeDef *hpccard)
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196 {
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197 /* NOTE : This function Should not be modified, when the callback is needed,
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198 the HAL_PCCARD_MspInit could be implemented in the user file
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199 */
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200 }
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201
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202 /**
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203 * @brief PCCARD MSP DeInit
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204 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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205 * the configuration information for PCCARD module.
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206 * @retval None
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207 */
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208 __weak void HAL_PCCARD_MspDeInit(PCCARD_HandleTypeDef *hpccard)
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209 {
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210 /* NOTE : This function Should not be modified, when the callback is needed,
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211 the HAL_PCCARD_MspDeInit could be implemented in the user file
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212 */
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213 }
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214
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215 /**
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216 * @}
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217 */
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218
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219 /** @defgroup PCCARD_Exported_Functions_Group2 Input and Output functions
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220 * @brief Input Output and memory control functions
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221 *
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222 @verbatim
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223 ==============================================================================
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224 ##### PCCARD Input and Output functions #####
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225 ==============================================================================
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226 [..]
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227 This section provides functions allowing to use and control the PCCARD memory
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228
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229 @endverbatim
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230 * @{
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231 */
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232
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233 /**
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234 * @brief Read Compact Flash's ID.
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235 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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236 * the configuration information for PCCARD module.
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237 * @param CompactFlash_ID: Compact flash ID structure.
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238 * @param pStatus: pointer to compact flash status
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239 * @retval HAL status
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240 *
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241 */
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242 HAL_StatusTypeDef HAL_PCCARD_Read_ID(PCCARD_HandleTypeDef *hpccard, uint8_t CompactFlash_ID[], uint8_t *pStatus)
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243 {
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244 uint32_t timeout = 0xFFFF, index;
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245 uint8_t status;
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246
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247 /* Process Locked */
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248 __HAL_LOCK(hpccard);
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249
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250 /* Check the PCCARD controller state */
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251 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
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252 {
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253 return HAL_BUSY;
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254 }
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255
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256 /* Update the PCCARD controller state */
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257 hpccard->State = HAL_PCCARD_STATE_BUSY;
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258
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259 /* Initialize the PCCARD status */
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260 *pStatus = PCCARD_READY;
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261
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262 /* Send the Identify Command */
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263 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD) = 0xECEC;
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264
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265 /* Read PCCARD IDs and timeout treatment */
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266 do
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267 {
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268 /* Read the PCCARD status */
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269 status = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
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270
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271 timeout--;
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272 }while((status != 0x58) && timeout);
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273
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274 if(timeout == 0)
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275 {
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276 *pStatus = PCCARD_TIMEOUT_ERROR;
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277 }
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278 else
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279 {
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280 /* Read PCCARD ID bytes */
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281 for(index = 0; index < 16; index++)
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282 {
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283 CompactFlash_ID[index] = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_DATA);
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284 }
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285 }
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286
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287 /* Update the PCCARD controller state */
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288 hpccard->State = HAL_PCCARD_STATE_READY;
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289
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290 /* Process unlocked */
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291 __HAL_UNLOCK(hpccard);
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292
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293 return HAL_OK;
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294 }
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295
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296 /**
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297 * @brief Read sector from PCCARD memory
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298 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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299 * the configuration information for PCCARD module.
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300 * @param pBuffer: pointer to destination read buffer
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301 * @param SectorAddress: Sector address to read
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302 * @param pStatus: pointer to PCCARD status
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303 * @retval HAL status
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304 */
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305 HAL_StatusTypeDef HAL_PCCARD_Read_Sector(PCCARD_HandleTypeDef *hpccard, uint16_t *pBuffer, uint16_t SectorAddress, uint8_t *pStatus)
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306 {
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307 uint32_t timeout = 0xFFFF, index = 0;
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308 uint8_t status;
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309
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310 /* Process Locked */
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311 __HAL_LOCK(hpccard);
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312
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313 /* Check the PCCARD controller state */
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314 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
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315 {
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316 return HAL_BUSY;
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317 }
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318
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319 /* Update the PCCARD controller state */
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320 hpccard->State = HAL_PCCARD_STATE_BUSY;
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321
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322 /* Initialize PCCARD status */
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323 *pStatus = PCCARD_READY;
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324
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325 /* Set the parameters to write a sector */
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326 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_CYLINDER_HIGH) = (uint16_t)0x00;
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327 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_SECTOR_COUNT) = ((uint16_t)0x0100 ) | ((uint16_t)SectorAddress);
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328 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD) = (uint16_t)0xE4A0;
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329
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330 do
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331 {
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332 /* wait till the Status = 0x80 */
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333 status = *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
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334 timeout--;
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335 }while((status == 0x80) && timeout);
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336
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337 if(timeout == 0)
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338 {
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339 *pStatus = PCCARD_TIMEOUT_ERROR;
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340 }
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341
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342 timeout = 0xFFFF;
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343
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344 do
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345 {
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346 /* wait till the Status = 0x58 */
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347 status = *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
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348 timeout--;
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349 }while((status != 0x58) && timeout);
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350
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351 if(timeout == 0)
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352 {
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353 *pStatus = PCCARD_TIMEOUT_ERROR;
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354 }
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355
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356 /* Read bytes */
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357 for(; index < PCCARD_SECTOR_SIZE; index++)
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358 {
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359 *(uint16_t *)pBuffer++ = *(uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR);
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360 }
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361
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362 /* Update the PCCARD controller state */
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363 hpccard->State = HAL_PCCARD_STATE_READY;
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364
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365 /* Process unlocked */
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366 __HAL_UNLOCK(hpccard);
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367
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368 return HAL_OK;
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369 }
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370
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371
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372 /**
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373 * @brief Write sector to PCCARD memory
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374 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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375 * the configuration information for PCCARD module.
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376 * @param pBuffer: pointer to source write buffer
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377 * @param SectorAddress: Sector address to write
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378 * @param pStatus: pointer to PCCARD status
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379 * @retval HAL status
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380 */
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381 HAL_StatusTypeDef HAL_PCCARD_Write_Sector(PCCARD_HandleTypeDef *hpccard, uint16_t *pBuffer, uint16_t SectorAddress, uint8_t *pStatus)
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382 {
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383 uint32_t timeout = 0xFFFF, index = 0;
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384 uint8_t status;
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385
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386 /* Process Locked */
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387 __HAL_LOCK(hpccard);
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388
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389 /* Check the PCCARD controller state */
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390 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
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391 {
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392 return HAL_BUSY;
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393 }
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394
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395 /* Update the PCCARD controller state */
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396 hpccard->State = HAL_PCCARD_STATE_BUSY;
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397
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398 /* Initialize PCCARD status */
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399 *pStatus = PCCARD_READY;
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400
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401 /* Set the parameters to write a sector */
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402 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_CYLINDER_HIGH) = (uint16_t)0x00;
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403 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_SECTOR_COUNT) = ((uint16_t)0x0100 ) | ((uint16_t)SectorAddress);
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404 *(__IO uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD) = (uint16_t)0x30A0;
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405
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406 do
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407 {
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408 /* Wait till the Status = 0x58 */
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409 status = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
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410 timeout--;
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411 }while((status != 0x58) && timeout);
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412
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413 if(timeout == 0)
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414 {
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415 *pStatus = PCCARD_TIMEOUT_ERROR;
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416 }
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417
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418 /* Write bytes */
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419 for(; index < PCCARD_SECTOR_SIZE; index++)
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420 {
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421 *(uint16_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR) = *(uint16_t *)pBuffer++;
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422 }
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423
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424 do
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425 {
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426 /* Wait till the Status = 0x50 */
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427 status = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
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428 timeout--;
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429 }while((status != 0x50) && timeout);
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430
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431 if(timeout == 0)
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432 {
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433 *pStatus = PCCARD_TIMEOUT_ERROR;
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434 }
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435
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436 /* Update the PCCARD controller state */
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437 hpccard->State = HAL_PCCARD_STATE_READY;
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438
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439 /* Process unlocked */
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440 __HAL_UNLOCK(hpccard);
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441
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442 return HAL_OK;
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443 }
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444
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445
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446 /**
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447 * @brief Erase sector from PCCARD memory
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448 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
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449 * the configuration information for PCCARD module.
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450 * @param SectorAddress: Sector address to erase
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451 * @param pStatus: pointer to PCCARD status
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452 * @retval HAL status
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453 */
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454 HAL_StatusTypeDef HAL_PCCARD_Erase_Sector(PCCARD_HandleTypeDef *hpccard, uint16_t SectorAddress, uint8_t *pStatus)
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455 {
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456 uint32_t timeout = 0x400;
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457 uint8_t status;
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458
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459 /* Process Locked */
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460 __HAL_LOCK(hpccard);
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461
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462 /* Check the PCCARD controller state */
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463 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
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464 {
|
|
465 return HAL_BUSY;
|
|
466 }
|
|
467
|
|
468 /* Update the PCCARD controller state */
|
|
469 hpccard->State = HAL_PCCARD_STATE_BUSY;
|
|
470
|
|
471 /* Initialize PCCARD status */
|
|
472 *pStatus = PCCARD_READY;
|
|
473
|
|
474 /* Set the parameters to write a sector */
|
|
475 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_CYLINDER_LOW) = 0x00;
|
|
476 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_CYLINDER_HIGH) = 0x00;
|
|
477 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_SECTOR_NUMBER) = SectorAddress;
|
|
478 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_SECTOR_COUNT) = 0x01;
|
|
479 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_CARD_HEAD) = 0xA0;
|
|
480 *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD) = ATA_ERASE_SECTOR_CMD;
|
|
481
|
|
482 /* wait till the PCCARD is ready */
|
|
483 status = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
|
|
484
|
|
485 while((status != 0x50) && timeout)
|
|
486 {
|
|
487 status = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
|
|
488 timeout--;
|
|
489 }
|
|
490
|
|
491 if(timeout == 0)
|
|
492 {
|
|
493 *pStatus = PCCARD_TIMEOUT_ERROR;
|
|
494 }
|
|
495
|
|
496 /* Check the PCCARD controller state */
|
|
497 hpccard->State = HAL_PCCARD_STATE_READY;
|
|
498
|
|
499 /* Process unlocked */
|
|
500 __HAL_UNLOCK(hpccard);
|
|
501
|
|
502 return HAL_OK;
|
|
503 }
|
|
504
|
|
505 /**
|
|
506 * @brief Reset the PCCARD memory
|
|
507 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
508 * the configuration information for PCCARD module.
|
|
509 * @retval HAL status
|
|
510 */
|
|
511 HAL_StatusTypeDef HAL_PCCARD_Reset(PCCARD_HandleTypeDef *hpccard)
|
|
512 {
|
|
513
|
|
514 /* Process Locked */
|
|
515 __HAL_LOCK(hpccard);
|
|
516
|
|
517 /* Check the PCCARD controller state */
|
|
518 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
|
|
519 {
|
|
520 return HAL_BUSY;
|
|
521 }
|
|
522
|
|
523 /* Provide a SW reset and Read and verify the:
|
|
524 - PCCard Configuration Option Register at address 0x98000200 --> 0x80
|
|
525 - Card Configuration and Status Register at address 0x98000202 --> 0x00
|
|
526 - Pin Replacement Register at address 0x98000204 --> 0x0C
|
|
527 - Socket and Copy Register at address 0x98000206 --> 0x00
|
|
528 */
|
|
529
|
|
530 /* Check the PCCARD controller state */
|
|
531 hpccard->State = HAL_PCCARD_STATE_BUSY;
|
|
532
|
|
533 *(__IO uint8_t *)(0x98000202) = 0x01;
|
|
534
|
|
535 /* Check the PCCARD controller state */
|
|
536 hpccard->State = HAL_PCCARD_STATE_READY;
|
|
537
|
|
538 /* Process unlocked */
|
|
539 __HAL_UNLOCK(hpccard);
|
|
540
|
|
541 return HAL_OK;
|
|
542 }
|
|
543
|
|
544 /**
|
|
545 * @brief This function handles PCCARD device interrupt request.
|
|
546 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
547 * the configuration information for PCCARD module.
|
|
548 * @retval HAL status
|
|
549 */
|
|
550 void HAL_PCCARD_IRQHandler(PCCARD_HandleTypeDef *hpccard)
|
|
551 {
|
|
552 /* Check PCCARD interrupt Rising edge flag */
|
|
553 if(__FMC_PCCARD_GET_FLAG(hpccard->Instance, FMC_FLAG_RISING_EDGE))
|
|
554 {
|
|
555 /* PCCARD interrupt callback*/
|
|
556 HAL_PCCARD_ITCallback(hpccard);
|
|
557
|
|
558 /* Clear PCCARD interrupt Rising edge pending bit */
|
|
559 __FMC_PCCARD_CLEAR_FLAG(hpccard->Instance, FMC_FLAG_RISING_EDGE);
|
|
560 }
|
|
561
|
|
562 /* Check PCCARD interrupt Level flag */
|
|
563 if(__FMC_PCCARD_GET_FLAG(hpccard->Instance, FMC_FLAG_LEVEL))
|
|
564 {
|
|
565 /* PCCARD interrupt callback*/
|
|
566 HAL_PCCARD_ITCallback(hpccard);
|
|
567
|
|
568 /* Clear PCCARD interrupt Level pending bit */
|
|
569 __FMC_PCCARD_CLEAR_FLAG(hpccard->Instance, FMC_FLAG_LEVEL);
|
|
570 }
|
|
571
|
|
572 /* Check PCCARD interrupt Falling edge flag */
|
|
573 if(__FMC_PCCARD_GET_FLAG(hpccard->Instance, FMC_FLAG_FALLING_EDGE))
|
|
574 {
|
|
575 /* PCCARD interrupt callback*/
|
|
576 HAL_PCCARD_ITCallback(hpccard);
|
|
577
|
|
578 /* Clear PCCARD interrupt Falling edge pending bit */
|
|
579 __FMC_PCCARD_CLEAR_FLAG(hpccard->Instance, FMC_FLAG_FALLING_EDGE);
|
|
580 }
|
|
581
|
|
582 /* Check PCCARD interrupt FIFO empty flag */
|
|
583 if(__FMC_PCCARD_GET_FLAG(hpccard->Instance, FMC_FLAG_FEMPT))
|
|
584 {
|
|
585 /* PCCARD interrupt callback*/
|
|
586 HAL_PCCARD_ITCallback(hpccard);
|
|
587
|
|
588 /* Clear PCCARD interrupt FIFO empty pending bit */
|
|
589 __FMC_PCCARD_CLEAR_FLAG(hpccard->Instance, FMC_FLAG_FEMPT);
|
|
590 }
|
|
591
|
|
592 }
|
|
593
|
|
594 /**
|
|
595 * @brief PCCARD interrupt feature callback
|
|
596 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
597 * the configuration information for PCCARD module.
|
|
598 * @retval None
|
|
599 */
|
|
600 __weak void HAL_PCCARD_ITCallback(PCCARD_HandleTypeDef *hpccard)
|
|
601 {
|
|
602 /* NOTE : This function Should not be modified, when the callback is needed,
|
|
603 the HAL_PCCARD_ITCallback could be implemented in the user file
|
|
604 */
|
|
605 }
|
|
606
|
|
607 /**
|
|
608 * @}
|
|
609 */
|
|
610
|
|
611 /** @defgroup PCCARD_Exported_Functions_Group3 State functions
|
|
612 * @brief Peripheral State functions
|
|
613 *
|
|
614 @verbatim
|
|
615 ==============================================================================
|
|
616 ##### PCCARD State functions #####
|
|
617 ==============================================================================
|
|
618 [..]
|
|
619 This subsection permits to get in run-time the status of the PCCARD controller
|
|
620 and the data flow.
|
|
621
|
|
622 @endverbatim
|
|
623 * @{
|
|
624 */
|
|
625
|
|
626 /**
|
|
627 * @brief return the PCCARD controller state
|
|
628 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
629 * the configuration information for PCCARD module.
|
|
630 * @retval HAL state
|
|
631 */
|
|
632 HAL_PCCARD_StateTypeDef HAL_PCCARD_GetState(PCCARD_HandleTypeDef *hpccard)
|
|
633 {
|
|
634 return hpccard->State;
|
|
635 }
|
|
636
|
|
637 /**
|
|
638 * @brief Get the compact flash memory status
|
|
639 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
640 * the configuration information for PCCARD module.
|
|
641 * @retval New status of the PCCARD operation. This parameter can be:
|
|
642 * - CompactFlash_TIMEOUT_ERROR: when the previous operation generate
|
|
643 * a Timeout error
|
|
644 * - CompactFlash_READY: when memory is ready for the next operation
|
|
645 */
|
|
646 HAL_PCCARD_StatusTypeDef HAL_PCCARD_GetStatus(PCCARD_HandleTypeDef *hpccard)
|
|
647 {
|
|
648 uint32_t timeout = 0x1000000, status_pccard;
|
|
649
|
|
650 /* Check the PCCARD controller state */
|
|
651 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
|
|
652 {
|
|
653 return HAL_PCCARD_STATUS_ONGOING;
|
|
654 }
|
|
655
|
|
656 status_pccard = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
|
|
657
|
|
658 while((status_pccard == PCCARD_BUSY) && timeout)
|
|
659 {
|
|
660 status_pccard = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
|
|
661 timeout--;
|
|
662 }
|
|
663
|
|
664 if(timeout == 0)
|
|
665 {
|
|
666 status_pccard = PCCARD_TIMEOUT_ERROR;
|
|
667 }
|
|
668
|
|
669 /* Return the operation status */
|
|
670 return (HAL_PCCARD_StatusTypeDef) status_pccard;
|
|
671 }
|
|
672
|
|
673 /**
|
|
674 * @brief Reads the Compact Flash memory status using the Read status command
|
|
675 * @param hpccard: pointer to a PCCARD_HandleTypeDef structure that contains
|
|
676 * the configuration information for PCCARD module.
|
|
677 * @retval The status of the Compact Flash memory. This parameter can be:
|
|
678 * - CompactFlash_BUSY: when memory is busy
|
|
679 * - CompactFlash_READY: when memory is ready for the next operation
|
|
680 * - CompactFlash_ERROR: when the previous operation generates error
|
|
681 */
|
|
682 HAL_PCCARD_StatusTypeDef HAL_PCCARD_ReadStatus(PCCARD_HandleTypeDef *hpccard)
|
|
683 {
|
|
684 uint8_t data = 0, status_pccard = PCCARD_BUSY;
|
|
685
|
|
686 /* Check the PCCARD controller state */
|
|
687 if(hpccard->State == HAL_PCCARD_STATE_BUSY)
|
|
688 {
|
|
689 return HAL_PCCARD_STATUS_ONGOING;
|
|
690 }
|
|
691
|
|
692 /* Read status operation */
|
|
693 data = *(__IO uint8_t *)(PCCARD_IO_SPACE_PRIMARY_ADDR | ATA_STATUS_CMD_ALTERNATE);
|
|
694
|
|
695 if((data & PCCARD_TIMEOUT_ERROR) == PCCARD_TIMEOUT_ERROR)
|
|
696 {
|
|
697 status_pccard = PCCARD_TIMEOUT_ERROR;
|
|
698 }
|
|
699 else if((data & PCCARD_READY) == PCCARD_READY)
|
|
700 {
|
|
701 status_pccard = PCCARD_READY;
|
|
702 }
|
|
703
|
|
704 return (HAL_PCCARD_StatusTypeDef) status_pccard;
|
|
705 }
|
|
706
|
|
707 /**
|
|
708 * @}
|
|
709 */
|
|
710
|
|
711 /**
|
|
712 * @}
|
|
713 */
|
|
714 #endif /* STM32F405xx || STM32F415xx || STM32F407xx || STM32F417xx || STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx */
|
|
715 #endif /* HAL_PCCARD_MODULE_ENABLED */
|
|
716
|
|
717 /**
|
|
718 * @}
|
|
719 */
|
|
720
|
|
721 /**
|
|
722 * @}
|
|
723 */
|
|
724
|
|
725 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
|