| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229 | /*-----------------------------------------------------------------------*//* Low level disk I/O module SKELETON for FatFs     (C)ChaN, 2019        *//*-----------------------------------------------------------------------*//* If a working storage control module is available, it should be        *//* attached to the FatFs via a glue function rather than modifying it.   *//* This is an example of glue functions to attach various exsisting      *//* storage control modules to the FatFs module with a defined API.       *//*-----------------------------------------------------------------------*/#include "ff.h"			/* Obtains integer types */#include "diskio.h"		/* Declarations of disk functions *//* Definitions of physical drive number for each drive */#define DEV_RAM		0	/* Example: Map Ramdisk to physical drive 0 */#define DEV_MMC		1	/* Example: Map MMC/SD card to physical drive 1 */#define DEV_USB		2	/* Example: Map USB MSD to physical drive 2 *//*-----------------------------------------------------------------------*//* Get Drive Status                                                      *//*-----------------------------------------------------------------------*/DSTATUS disk_status (	BYTE pdrv		/* Physical drive nmuber to identify the drive */){	DSTATUS stat;	int result;	switch (pdrv) {	case DEV_RAM :		result = RAM_disk_status();		// translate the reslut code here		return stat;	case DEV_MMC :		result = MMC_disk_status();		// translate the reslut code here		return stat;	case DEV_USB :		result = USB_disk_status();		// translate the reslut code here		return stat;	}	return STA_NOINIT;}/*-----------------------------------------------------------------------*//* Inidialize a Drive                                                    *//*-----------------------------------------------------------------------*/DSTATUS disk_initialize (	BYTE pdrv				/* Physical drive nmuber to identify the drive */){	DSTATUS stat;	int result;	switch (pdrv) {	case DEV_RAM :		result = RAM_disk_initialize();		// translate the reslut code here		return stat;	case DEV_MMC :		result = MMC_disk_initialize();		// translate the reslut code here		return stat;	case DEV_USB :		result = USB_disk_initialize();		// translate the reslut code here		return stat;	}	return STA_NOINIT;}/*-----------------------------------------------------------------------*//* Read Sector(s)                                                        *//*-----------------------------------------------------------------------*/DRESULT disk_read (	BYTE pdrv,		/* Physical drive nmuber to identify the drive */	BYTE *buff,		/* Data buffer to store read data */	LBA_t sector,	/* Start sector in LBA */	UINT count		/* Number of sectors to read */){	DRESULT res;	int result;	switch (pdrv) {	case DEV_RAM :		// translate the arguments here		result = RAM_disk_read(buff, sector, count);		// translate the reslut code here		return res;	case DEV_MMC :		// translate the arguments here		result = MMC_disk_read(buff, sector, count);		// translate the reslut code here		return res;	case DEV_USB :		// translate the arguments here		result = USB_disk_read(buff, sector, count);		// translate the reslut code here		return res;	}	return RES_PARERR;}/*-----------------------------------------------------------------------*//* Write Sector(s)                                                       *//*-----------------------------------------------------------------------*/#if FF_FS_READONLY == 0DRESULT disk_write (	BYTE pdrv,			/* Physical drive nmuber to identify the drive */	const BYTE *buff,	/* Data to be written */	LBA_t sector,		/* Start sector in LBA */	UINT count			/* Number of sectors to write */){	DRESULT res;	int result;	switch (pdrv) {	case DEV_RAM :		// translate the arguments here		result = RAM_disk_write(buff, sector, count);		// translate the reslut code here		return res;	case DEV_MMC :		// translate the arguments here		result = MMC_disk_write(buff, sector, count);		// translate the reslut code here		return res;	case DEV_USB :		// translate the arguments here		result = USB_disk_write(buff, sector, count);		// translate the reslut code here		return res;	}	return RES_PARERR;}#endif/*-----------------------------------------------------------------------*//* Miscellaneous Functions                                               *//*-----------------------------------------------------------------------*/DRESULT disk_ioctl (	BYTE pdrv,		/* Physical drive nmuber (0..) */	BYTE cmd,		/* Control code */	void *buff		/* Buffer to send/receive control data */){	DRESULT res;	int result;	switch (pdrv) {	case DEV_RAM :		// Process of the command for the RAM drive		return res;	case DEV_MMC :		// Process of the command for the MMC/SD card		return res;	case DEV_USB :		// Process of the command the USB drive		return res;	}	return RES_PARERR;}
 |