/* USER CODE BEGIN Header */
/**
  ******************************************************************************
  * @file    FatFs/FatFs_uSD_DMA_Standalone/FatFs/Target/sram_diskio.c
  * @author  MCD Application Team
  * @brief   SD Disk I/O driver
  ******************************************************************************
  * @attention
  *
  * <h2><center>&copy; Copyright (c) 2019 STMicroelectronics.
  * All rights reserved.</center></h2>
  *
  * This software component is licensed by ST under Ultimate Liberty license
  * SLA0044, the "License"; You may not use this file except in compliance with
  * the License. You may obtain a copy of the License at:
  *                             www.st.com/SLA0044
  *
  ******************************************************************************
  */
/* USER CODE END Header */

/* Note: code generation based on sd_diskio_dma_template.c for L5 as "Use dma template" is enabled. */

/* Includes ------------------------------------------------------------------*/
#include "ff_gen_drv.h"
#include "sd_diskio.h"

/* Private includes ----------------------------------------------------------*/
/* USER CODE BEGIN Includes */

/* USER CODE END Includes */

/* Private typedef -----------------------------------------------------------*/
/* USER CODE BEGIN PTD */

/* USER CODE END PTD */

/* Private define ------------------------------------------------------------*/
/* USER CODE BEGIN PD */
#if defined(SDMMC_DATATIMEOUT)
#define SD_TIMEOUT SDMMC_DATATIMEOUT
#elif defined(SD_DATATIMEOUT)
#define SD_TIMEOUT SD_DATATIMEOUT
#else
#define SD_TIMEOUT 30 * 1000
#endif

#define SD_BLOCK_SIZE 512
#define DISABLE_SD_INIT       1
/* USER CODE END PD */

/* Private macro -------------------------------------------------------------*/
/* USER CODE BEGIN PM */

/* USER CODE END PM */

/* Private variables ---------------------------------------------------------*/
/* Disk status */
static volatile DSTATUS Stat = STA_NOINIT;
static volatile  UINT  WriteStatus = 0, ReadStatus = 0;
/* USER CODE BEGIN PV */

/* USER CODE END PV */

/* Private function prototypes -----------------------------------------------*/
static DSTATUS SD_CheckStatus(BYTE lun);
DSTATUS SD_initialize (BYTE);
DSTATUS SD_status (BYTE);
DRESULT SD_read (BYTE, BYTE*, DWORD, UINT);
#if _USE_WRITE == 1
  DRESULT SD_write (BYTE, const BYTE*, DWORD, UINT);
#endif /* _USE_WRITE == 1 */
#if _USE_IOCTL == 1
  DRESULT SD_ioctl (BYTE, BYTE, void*);
#endif  /* _USE_IOCTL == 1 */

/* USER CODE BEGIN PFP */

/* USER CODE END PFP */

const Diskio_drvTypeDef  SD_Driver =
{
  SD_initialize,
  SD_status,
  SD_read,
#if  _USE_WRITE == 1
  SD_write,
#endif /* _USE_WRITE == 1 */

#if  _USE_IOCTL == 1
  SD_ioctl,
#endif /* _USE_IOCTL == 1 */
};

/* Private functions ---------------------------------------------------------*/
static DSTATUS SD_CheckStatus(BYTE lun)
{
  Stat = STA_NOINIT;
  if(BSP_SD_GetCardState(0) == BSP_ERROR_NONE)
  {
    Stat &= ~STA_NOINIT;
  }

  return Stat;
}

/**
  * @brief  Initializes a Drive
  * @param  lun : not used
  * @retval DSTATUS: Operation status
  */
DSTATUS SD_initialize(BYTE lun)
{
  /* USER CODE BEGIN SDinitialize */
  Stat = STA_NOINIT;
#if !defined(DISABLE_SD_INIT)
  if(BSP_SD_Init(0) == BSP_ERROR_NONE)
  {
    Stat = SD_CheckStatus(lun);
  }
  BSP_SD_DetectITConfig(0);
#else
  Stat = SD_CheckStatus(lun);
#endif
  return Stat;
  /* USER CODE END SDinitialize */
}

/**
  * @brief  Gets Disk Status
  * @param  lun : not used
  * @retval DSTATUS: Operation status
  */
DSTATUS SD_status(BYTE lun)
{
  return SD_CheckStatus(lun);
}

/**
  * @brief  Reads Sector(s)
  * @param  lun : not used
  * @param  *buff: Data buffer to store read data
  * @param  sector: Sector address (LBA)
  * @param  count: Number of sectors to read (1..128)
  * @retval DRESULT: Operation result
  */
DRESULT SD_read(BYTE lun, BYTE *buff, DWORD sector, UINT count)
{
  DRESULT res = RES_ERROR;
  ReadStatus = 0;
  uint32_t timeout;
#if (ENABLE_SD_DMA_CACHE_MAINTENANCE == 1)
  uint32_t alignedAddr;
#endif
  if(BSP_SD_ReadBlocks_DMA(0, (uint32_t*)buff,
                       (uint32_t) (sector),
                       count) == BSP_ERROR_NONE)
  {
    /* Wait for the Rading process is completed or a timeout occurs */
    timeout = HAL_GetTick();
//	  while ((ReadStatus == 0) && ((HAL_GetTick() - timeout) < SD_TIMEOUT))
    while((ReadStatus == 0) && ((HAL_GetTick() - timeout) < 10000))
	{
    }
    /* incase of a timeout return error */
    if (ReadStatus == 0)
    {
      res = RES_ERROR;
    }
    else
    {
      ReadStatus = 0;
      timeout = HAL_GetTick();

      while((HAL_GetTick() - timeout) < SD_TIMEOUT)
      {
        if (BSP_SD_GetCardState(0) == SD_TRANSFER_OK)
        {
          res = RES_OK;
#if (ENABLE_SD_DMA_CACHE_MAINTENANCE == 1)
          /*
            the SCB_InvalidateDCache_by_Addr() requires a 32-Byte aligned address,
            adjust the address and the D-Cache size to invalidate accordingly.
            */
          alignedAddr = (uint32_t)buff & ~0x1F;
          SCB_InvalidateDCache_by_Addr((uint32_t*)alignedAddr, count*BLOCKSIZE + ((uint32_t)buff - alignedAddr));
#endif
          break;
        }
      }
    }
  }
  return res;
}

/**
  * @brief  Writes Sector(s)
  * @param  lun : not used
  * @param  *buff: Data to be written
  * @param  sector: Sector address (LBA)
  * @param  count: Number of sectors to write (1..128)
  * @retval DRESULT: Operation result
  */
#if _USE_WRITE == 1
DRESULT SD_write(BYTE lun, const BYTE *buff, DWORD sector, UINT count)
{
  DRESULT res = RES_ERROR;
  WriteStatus = 0;
  uint32_t timeout = HAL_GetTick();
  if(BSP_SD_WriteBlocks_DMA(0, (uint32_t*)buff,
                        (uint32_t)(sector),
                        count) == BSP_ERROR_NONE)
  {
    /* Wait for the Rading process is completed or a timeout occurs */
    while((WriteStatus == 0) && ((HAL_GetTick() - timeout) < SD_TIMEOUT))
    {
    }
    /* incase of a timeout return error */
    if (WriteStatus == 0)
    {
      res = RES_ERROR;
    }
    else
    {
      WriteStatus = 0;
      timeout = HAL_GetTick();

      while((HAL_GetTick() - timeout) < SD_TIMEOUT)
      {
        if (BSP_SD_GetCardState(0) == SD_TRANSFER_OK)
        {
          res = RES_OK;
          break;
        }
      }
    }
  }

  return res;

}
#endif /* _USE_WRITE == 1 */

/**
  * @brief  I/O control operation
  * @param  lun : not used
  * @param  cmd: Control code
  * @param  *buff: Buffer to send/receive control data
  * @retval DRESULT: Operation result
  */
#if _USE_IOCTL == 1
DRESULT SD_ioctl(BYTE lun, BYTE cmd, void *buff)
{
  DRESULT res = RES_ERROR;
  HAL_SD_CardInfoTypeDef CardInfo;

  if (Stat & STA_NOINIT) return RES_NOTRDY;

  switch (cmd)
  {
  /* Make sure that no pending write process */
  case CTRL_SYNC :
    res = RES_OK;
    break;

  /* Get number of sectors on the disk (DWORD) */
  case GET_SECTOR_COUNT :
    BSP_SD_GetCardInfo(0,&CardInfo);
    *(DWORD*)buff = CardInfo.BlockNbr / SD_BLOCK_SIZE;
    res = RES_OK;
    break;

  /* Get R/W sector size (WORD) */
  case GET_SECTOR_SIZE :
    *(DWORD*)buff = SD_BLOCK_SIZE;
    res = RES_OK;
    break;

  /* Get erase block size in unit of sector (DWORD) */
  case GET_BLOCK_SIZE :
     *(DWORD*)buff = SD_BLOCK_SIZE;
	res = RES_OK;
    break;

  default:
    res = RES_PARERR;
  }

  return res;
}

/**
  * @brief Tx Transfer completed callbacks
  * @param hsd: SD handle
  * @retval None
  */
void BSP_SD_WriteCpltCallback(uint32_t Instance)
{
  WriteStatus = 1;
}

/**
  * @brief Rx Transfer completed callbacks
  * @param hsd: SD handle
  * @retval None
  */
void BSP_SD_ReadCpltCallback(uint32_t Instance)
{
  ReadStatus = 1;
}

#endif /* _USE_IOCTL == 1 */

/* USER CODE BEGIN lastSection */ 
/* can be used to modify / undefine previous code or add new code */
/* USER CODE END lastSection */

/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

