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[FatFs] 移植FATFS中遇到的问题,没找到头绪

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发表于 2024-11-11 17:33:53 | 显示全部楼层 |阅读模式

调试过程

调试过程

格式化可以成功,重新挂载又是无文件系统。

w25q64的获取芯片ID函数是可以的,0XEF 0X7017 与上面是对应的。
diskio.c
[C] 纯文本查看 复制代码
/*-----------------------------------------------------------------------*/
/* 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 */


/*-----------------------------------------------------------------------*/
/* 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();
		//stat=flash_spi_getid();
		// translate the reslut code here
		//flash_spi_getid();
		stat=0;
		return stat;
	default:break;
	}
	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
	
		w25q64_init();
	stat=RES_OK;
		return stat;
	default:break;
	}
	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
		SPI_FLASH_BufferRead((uint8_t *)buff,sector*4096,count*4096);//count*4096
		res=RES_OK;
		return res;

	default:break;
	}

	return RES_PARERR;
}



/*-----------------------------------------------------------------------*/
/* Write Sector(s)                                                       */
/*-----------------------------------------------------------------------*/

#if FF_FS_READONLY == 0

DRESULT 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);
		w25q64_sectorErase(sector*4096);
		// translate the reslut code here
		SPI_FLASH_BufferWrite((uint8_t *)buff,sector*4096, (count)*4096);//count*4096
		res=RES_OK;
		return res;

	default:break;
	}

	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 :
		switch(cmd)
        {
		// Process of the command for the RAM drive
			case CTRL_SYNC :  
				res =  RES_OK;
				break;
			case GET_SECTOR_COUNT:      // 多少个扇区
                // buff是void*类型指针(空指针),根据官网的disk_ioctl函数参数转换不同返回指针
                *(DWORD*)buff = 2048;   // SPI_FLASH有8M字节,每个扇区有4096个字节,即有2048个扇区
                res = RES_OK;
				break; 
             
			case GET_SECTOR_SIZE:       // 每个扇区大小
                *(WORD*)buff = 4096;    // 每个扇区有4096个字节
			res = RES_OK;
                break;
             
			case GET_BLOCK_SIZE:        // 块大小
                *(DWORD*)buff = 1;      // 设置为1,表示每次擦除1个扇区
				res=RES_OK;
                break;			
			default:
				res = RES_PARERR;
				break;		
		}
		
		return res;

			default:break;
	}

	return RES_PARERR;
}
DWORD get_fattime (void)
{
    return 0;
}


ffconf.h
[C] 纯文本查看 复制代码
/*---------------------------------------------------------------------------/
/  FatFs Functional Configurations
/---------------------------------------------------------------------------*/

#define FFCONF_DEF	86631	/* Revision ID */

/*---------------------------------------------------------------------------/
/ Function Configurations
/---------------------------------------------------------------------------*/

#define FF_FS_READONLY	0
/* This option switches read-only configuration. (0:Read/Write or 1:Read-only)
/  Read-only configuration removes writing API functions, f_write(), f_sync(),
/  f_unlink(), f_mkdir(), f_chmod(), f_rename(), f_truncate(), f_getfree()
/  and optional writing functions as well. */


#define FF_FS_MINIMIZE	0
/* This option defines minimization level to remove some basic API functions.
/
/   0: Basic functions are fully enabled.
/   1: f_stat(), f_getfree(), f_unlink(), f_mkdir(), f_truncate() and f_rename()
/      are removed.
/   2: f_opendir(), f_readdir() and f_closedir() are removed in addition to 1.
/   3: f_lseek() function is removed in addition to 2. */


#define FF_USE_FIND		1
/* This option switches filtered directory read functions, f_findfirst() and
/  f_findnext(). (0:Disable, 1:Enable 2:Enable with matching altname[] too) */


#define FF_USE_MKFS		1//0
/* This option switches f_mkfs() function. (0:Disable or 1:Enable) */


#define FF_USE_FASTSEEK	1//0
/* This option switches fast seek function. (0:Disable or 1:Enable) */


#define FF_USE_EXPAND	0
/* This option switches f_expand function. (0:Disable or 1:Enable) */


#define FF_USE_CHMOD	0
/* This option switches attribute manipulation functions, f_chmod() and f_utime().
/  (0:Disable or 1:Enable) Also FF_FS_READONLY needs to be 0 to enable this option. */


#define FF_USE_LABEL	0
/* This option switches volume label functions, f_getlabel() and f_setlabel().
/  (0:Disable or 1:Enable) */


#define FF_USE_FORWARD	0
/* This option switches f_forward() function. (0:Disable or 1:Enable) */


#define FF_USE_STRFUNC	1
#define FF_PRINT_LLI	0
#define FF_PRINT_FLOAT	0
#define FF_STRF_ENCODE	3
/* FF_USE_STRFUNC switches string functions, f_gets(), f_putc(), f_puts() and
/  f_printf().
/
/   0: Disable. FF_PRINT_LLI, FF_PRINT_FLOAT and FF_STRF_ENCODE have no effect.
/   1: Enable without LF-CRLF conversion.
/   2: Enable with LF-CRLF conversion.
/
/  FF_PRINT_LLI = 1 makes f_printf() support long long argument and FF_PRINT_FLOAT = 1/2
   makes f_printf() support floating point argument. These features want C99 or later.
/  When FF_LFN_UNICODE >= 1 with LFN enabled, string functions convert the character
/  encoding in it. FF_STRF_ENCODE selects assumption of character encoding ON THE FILE
/  to be read/written via those functions.
/
/   0: ANSI/OEM in current CP
/   1: Unicode in UTF-16LE
/   2: Unicode in UTF-16BE
/   3: Unicode in UTF-8
*/


/*---------------------------------------------------------------------------/
/ Locale and Namespace Configurations
/---------------------------------------------------------------------------*/

#define FF_CODE_PAGE	437
/* This option specifies the OEM code page to be used on the target system.
/  Incorrect code page setting can cause a file open failure.
/
/   437 - U.S.
/   720 - Arabic
/   737 - Greek
/   771 - KBL
/   775 - Baltic
/   850 - Latin 1
/   852 - Latin 2
/   855 - Cyrillic
/   857 - Turkish
/   860 - Portuguese
/   861 - Icelandic
/   862 - Hebrew
/   863 - Canadian French
/   864 - Arabic
/   865 - Nordic
/   866 - Russian
/   869 - Greek 2
/   932 - Japanese (DBCS)
/   936 - Simplified Chinese (DBCS)
/   949 - Korean (DBCS)
/   950 - Traditional Chinese (DBCS)
/     0 - Include all code pages above and configured by f_setcp()
*/


#define FF_USE_LFN		2
#define FF_MAX_LFN		255
/* The FF_USE_LFN switches the support for LFN (long file name).
/
/   0: Disable LFN. FF_MAX_LFN has no effect.
/   1: Enable LFN with static  working buffer on the BSS. Always NOT thread-safe.
/   2: Enable LFN with dynamic working buffer on the STACK.
/   3: Enable LFN with dynamic working buffer on the HEAP.
/
/  To enable the LFN, ffunicode.c needs to be added to the project. The LFN function
/  requiers certain internal working buffer occupies (FF_MAX_LFN + 1) * 2 bytes and
/  additional (FF_MAX_LFN + 44) / 15 * 32 bytes when exFAT is enabled.
/  The FF_MAX_LFN defines size of the working buffer in UTF-16 code unit and it can
/  be in range of 12 to 255. It is recommended to be set it 255 to fully support LFN
/  specification.
/  When use stack for the working buffer, take care on stack overflow. When use heap
/  memory for the working buffer, memory management functions, ff_memalloc() and
/  ff_memfree() exemplified in ffsystem.c, need to be added to the project. */


#define FF_LFN_UNICODE	2
/* This option switches the character encoding on the API when LFN is enabled.
/
/   0: ANSI/OEM in current CP (TCHAR = char)
/   1: Unicode in UTF-16 (TCHAR = WCHAR)
/   2: Unicode in UTF-8 (TCHAR = char)
/   3: Unicode in UTF-32 (TCHAR = DWORD)
/
/  Also behavior of string I/O functions will be affected by this option.
/  When LFN is not enabled, this option has no effect. */


#define FF_LFN_BUF		255
#define FF_SFN_BUF		12
/* This set of options defines size of file name members in the FILINFO structure
/  which is used to read out directory items. These values should be suffcient for
/  the file names to read. The maximum possible length of the read file name depends
/  on character encoding. When LFN is not enabled, these options have no effect. */


#define FF_FS_RPATH		0
/* This option configures support for relative path.
/
/   0: Disable relative path and remove related functions.
/   1: Enable relative path. f_chdir() and f_chdrive() are available.
/   2: f_getcwd() function is available in addition to 1.
*/


/*---------------------------------------------------------------------------/
/ Drive/Volume Configurations
/---------------------------------------------------------------------------*/

#define FF_VOLUMES		1//1
/* Number of volumes (logical drives) to be used. (1-10) */


#define FF_STR_VOLUME_ID	0
#define FF_VOLUME_STRS		"RAM","NAND","CF","SD","SD2","USB","USB2","USB3"
/* FF_STR_VOLUME_ID switches support for volume ID in arbitrary strings.
/  When FF_STR_VOLUME_ID is set to 1 or 2, arbitrary strings can be used as drive
/  number in the path name. FF_VOLUME_STRS defines the volume ID strings for each
/  logical drives. Number of items must not be less than FF_VOLUMES. Valid
/  characters for the volume ID strings are A-Z, a-z and 0-9, however, they are
/  compared in case-insensitive. If FF_STR_VOLUME_ID >= 1 and FF_VOLUME_STRS is
/  not defined, a user defined volume string table needs to be defined as:
/
/  const char* VolumeStr[FF_VOLUMES] = {"ram","flash","sd","usb",...
*/


#define FF_MULTI_PARTITION	0
/* This option switches support for multiple volumes on the physical drive.
/  By default (0), each logical drive number is bound to the same physical drive
/  number and only an FAT volume found on the physical drive will be mounted.
/  When this function is enabled (1), each logical drive number can be bound to
/  arbitrary physical drive and partition listed in the VolToPart[]. Also f_fdisk()
/  funciton will be available. */


#define FF_MIN_SS		4096
#define FF_MAX_SS		4096
/* This set of options configures the range of sector size to be supported. (512,
/  1024, 2048 or 4096) Always set both 512 for most systems, generic memory card and
/  harddisk, but a larger value may be required for on-board flash memory and some
/  type of optical media. When FF_MAX_SS is larger than FF_MIN_SS, FatFs is configured
/  for variable sector size mode and disk_ioctl() function needs to implement
/  GET_SECTOR_SIZE command. */


#define FF_LBA64		0
/* This option switches support for 64-bit LBA. (0:Disable or 1:Enable)
/  To enable the 64-bit LBA, also exFAT needs to be enabled. (FF_FS_EXFAT == 1) */


#define FF_MIN_GPT		0x10000000
/* Minimum number of sectors to switch GPT as partitioning format in f_mkfs and
/  f_fdisk function. 0x100000000 max. This option has no effect when FF_LBA64 == 0. */


#define FF_USE_TRIM		0
/* This option switches support for ATA-TRIM. (0:Disable or 1:Enable)
/  To enable Trim function, also CTRL_TRIM command should be implemented to the
/  disk_ioctl() function. */



/*---------------------------------------------------------------------------/
/ System Configurations
/---------------------------------------------------------------------------*/

#define FF_FS_TINY		0
/* This option switches tiny buffer configuration. (0:Normal or 1:Tiny)
/  At the tiny configuration, size of file object (FIL) is shrinked FF_MAX_SS bytes.
/  Instead of private sector buffer eliminated from the file object, common sector
/  buffer in the filesystem object (FATFS) is used for the file data transfer. */


#define FF_FS_EXFAT		0
/* This option switches support for exFAT filesystem. (0:Disable or 1:Enable)
/  To enable exFAT, also LFN needs to be enabled. (FF_USE_LFN >= 1)
/  Note that enabling exFAT discards ANSI C (C89) compatibility. */


#define FF_FS_NORTC		1//0
#define FF_NORTC_MON	1
#define FF_NORTC_MDAY	1
#define FF_NORTC_YEAR	2029
/* The option FF_FS_NORTC switches timestamp functiton. If the system does not have
/  any RTC function or valid timestamp is not needed, set FF_FS_NORTC = 1 to disable
/  the timestamp function. Every object modified by FatFs will have a fixed timestamp
/  defined by FF_NORTC_MON, FF_NORTC_MDAY and FF_NORTC_YEAR in local time.
/  To enable timestamp function (FF_FS_NORTC = 0), get_fattime() function need to be
/  added to the project to read current time form real-time clock. FF_NORTC_MON,
/  FF_NORTC_MDAY and FF_NORTC_YEAR have no effect.
/  These options have no effect in read-only configuration (FF_FS_READONLY = 1). */


#define FF_FS_NOFSINFO	0
/* If you need to know correct free space on the FAT32 volume, set bit 0 of this
/  option, and f_getfree() function at first time after volume mount will force
/  a full FAT scan. Bit 1 controls the use of last allocated cluster number.
/
/  bit0=0: Use free cluster count in the FSINFO if available.
/  bit0=1: Do not trust free cluster count in the FSINFO.
/  bit1=0: Use last allocated cluster number in the FSINFO if available.
/  bit1=1: Do not trust last allocated cluster number in the FSINFO.
*/


#define FF_FS_LOCK		0
/* The option FF_FS_LOCK switches file lock function to control duplicated file open
/  and illegal operation to open objects. This option must be 0 when FF_FS_READONLY
/  is 1.
/
/  0:  Disable file lock function. To avoid volume corruption, application program
/      should avoid illegal open, remove and rename to the open objects.
/  >0: Enable file lock function. The value defines how many files/sub-directories
/      can be opened simultaneously under file lock control. Note that the file
/      lock control is independent of re-entrancy. */


/* #include <somertos.h>	// O/S definitions */
#define FF_FS_REENTRANT	0
#define FF_FS_TIMEOUT	1000
#define FF_SYNC_t		HANDLE
/* The option FF_FS_REENTRANT switches the re-entrancy (thread safe) of the FatFs
/  module itself. Note that regardless of this option, file access to different
/  volume is always re-entrant and volume control functions, f_mount(), f_mkfs()
/  and f_fdisk() function, are always not re-entrant. Only file/directory access
/  to the same volume is under control of this function.
/
/   0: Disable re-entrancy. FF_FS_TIMEOUT and FF_SYNC_t have no effect.
/   1: Enable re-entrancy. Also user provided synchronization handlers,
/      ff_req_grant(), ff_rel_grant(), ff_del_syncobj() and ff_cre_syncobj()
/      function, must be added to the project. Samples are available in
/      option/syscall.c.
/
/  The FF_FS_TIMEOUT defines timeout period in unit of time tick.
/  The FF_SYNC_t defines O/S dependent sync object type. e.g. HANDLE, ID, OS_EVENT*,
/  SemaphoreHandle_t and etc. A header file for O/S definitions needs to be
/  included somewhere in the scope of ff.h. */



/*--- End of configuration options ---*/

w25q64 读写函数
[C] 纯文本查看 复制代码
void w25q64_pagewrite(uint32_t address,uint8_t *data,uint16_t len)
{
	uint16_t i=0;
	w25q64_waitbusy();
	w25q64_writeEN();
	_spi_start();
	_spi_WR_byte(0x02);
	_spi_WR_byte(address>>16);
	_spi_WR_byte(address>>8);
	_spi_WR_byte(address);
	for(i=0;i<len;i++)
	{
		_spi_WR_byte(data[i]);
	}
	_spi_stop();
	w25q64_waitbusy();
}
void w25q64_sectorErase(uint32_t address)
{
	w25q64_writeEN();
	_spi_start();
	_spi_WR_byte(0x20);
	_spi_WR_byte(address>>16);
	_spi_WR_byte(address>>8);
	_spi_WR_byte(address);
	_spi_stop();
	w25q64_waitbusy();

}
void w25q64_readdata(uint32_t address,uint8_t *data,uint32_t len)
{
	uint32_t i=0;
	_spi_start();
	_spi_WR_byte(0x03);
	_spi_WR_byte(address>>16);
	_spi_WR_byte(address>>8);
	_spi_WR_byte(address);
	for(i=0;i<len;i++)
	{
		data[i]=_spi_WR_byte(0xff);
	}
	_spi_stop();
	w25q64_waitbusy();

}




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发表于 2024-11-12 13:24:28 | 显示全部楼层
那你的底层应该确定是有问题的,FAT格式信息没有正常写入。

你的SPI_FLASH_BufferWrite怎么实现的,封装了多page操作了吧

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 楼主| 发表于 2024-11-12 15:39:53 | 显示全部楼层
eric2013 发表于 2024-11-12 13:24
那你的底层应该确定是有问题的,FAT格式信息没有正常写入。

你的SPI_FLASH_BufferWrite怎么实现的,封装 ...

(写的忘了写会自动回滚,已修改,现在f_open是显示OK了)
现在遇到:fatfs +freertos 会进入hardfault 这个是什么原因呀?heap_size 与 stack_size 都设为0x2000,就不知道任务里的堆栈要设置多少合适。
另外,昨天测试发现,(读写函数分开执行,即读写先后屏蔽)写进去了,读出来是空的。
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 楼主| 发表于 2024-11-12 15:49:03 | 显示全部楼层
PixPin_2024-11-12_15-47-46.gif 写的时候报 0x07,
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 楼主| 发表于 2024-11-12 17:50:28 | 显示全部楼层
eric2013 发表于 2024-11-12 13:24
那你的底层应该确定是有问题的,FAT格式信息没有正常写入。

你的SPI_FLASH_BufferWrite怎么实现的,封装 ...

[C] 纯文本查看 复制代码
void SPI_FLASH_BufferWrite(uint8_t* pBuffer, uint32_t WriteAddr, uint16_t NumByteToWrite)
{
//	w25q64_pagewrite(WriteAddr,pBuffer,NumByteToWrite);
	
  uint8_t NumOfPage = 0, NumOfSingle = 0, Addr = 0, count = 0, temp = 0;
	
	/*mod运算求余,若writeAddr是SPI_FLASH_PageSize整数倍,运算结果Addr值为0*/
  Addr = WriteAddr % SPI_FLASH_PageSize;
	
	/*差count个数据值,刚好可以对齐到页地址*/
  count = SPI_FLASH_PageSize - Addr;
	/*计算出要写多少整数页*/
  NumOfPage =  NumByteToWrite / SPI_FLASH_PageSize;
	/*mod运算求余,计算出剩余不满一页的字节数*/
  NumOfSingle = NumByteToWrite % SPI_FLASH_PageSize;
	
	/* Addr=0,则WriteAddr 刚好按页对齐 aligned  */
  if (Addr == 0)
  {
		/* NumByteToWrite < SPI_FLASH_PageSize */
    if (NumOfPage == 0) 
    {
      w25q64_pagewrite(WriteAddr, pBuffer,NumByteToWrite);
    }
    else /* NumByteToWrite > SPI_FLASH_PageSize */
    { 
			/*先把整数页都写了*/
      while (NumOfPage--)
      {
        w25q64_pagewrite(WriteAddr,pBuffer, SPI_FLASH_PageSize );
        WriteAddr +=  SPI_FLASH_PageSize;
        pBuffer += SPI_FLASH_PageSize;
      }
			/*若有多余的不满一页的数据,把它写完*/
      w25q64_pagewrite( WriteAddr,pBuffer, NumOfSingle);
    }
  }
	/* 若地址与 SPI_FLASH_PageSize 不对齐  */
  else 
  {
		/* NumByteToWrite < SPI_FLASH_PageSize */
    if (NumOfPage == 0)
    {
			/*当前页剩余的count个位置比NumOfSingle小,一页写不完*/
      if (NumOfSingle > count) 
      {
        temp = NumOfSingle - count;
				/*先写满当前页*/
        w25q64_pagewrite(WriteAddr,pBuffer,  count);
				
        WriteAddr +=  count;
        pBuffer += count;
				/*再写剩余的数据*/
        w25q64_pagewrite( WriteAddr,pBuffer, temp);
      }
      else /*当前页剩余的count个位置能写完NumOfSingle个数据*/
      {
        w25q64_pagewrite(WriteAddr, pBuffer, NumByteToWrite);
      }
    }
    else /* NumByteToWrite > SPI_FLASH_PageSize */
    {
			/*地址不对齐多出的count分开处理,不加入这个运算*/
      NumByteToWrite -= count;
      NumOfPage =  NumByteToWrite / SPI_FLASH_PageSize;
      NumOfSingle = NumByteToWrite % SPI_FLASH_PageSize;
			
			/* 先写完count个数据,为的是让下一次要写的地址对齐 */
      w25q64_pagewrite(WriteAddr, pBuffer, count);
			
			/* 接下来就重复地址对齐的情况 */
      WriteAddr +=  count;
      pBuffer += count;
			/*把整数页都写了*/
      while (NumOfPage--)
      {
        w25q64_pagewrite(WriteAddr,pBuffer,  SPI_FLASH_PageSize);
        WriteAddr +=  SPI_FLASH_PageSize;
        pBuffer += SPI_FLASH_PageSize;
      }
			/*若有多余的不满一页的数据,把它写完*/
      if (NumOfSingle != 0)
      {
        w25q64_pagewrite(WriteAddr,pBuffer,  NumOfSingle);
      }
    }
  }
}

[C] 纯文本查看 复制代码
void SPI_FLASH_BufferRead(uint8_t* pBuffer, uint32_t ReadAddr, uint16_t NumByteToRead)
{
	w25q64_readdata(ReadAddr,pBuffer,NumByteToRead);
}

[C] 纯文本查看 复制代码
void w25q64_readdata(uint32_t address,uint8_t *data,uint32_t len)
{
	uint32_t i=0;
	_spi_start();
	_spi_WR_byte(0x03);
	_spi_WR_byte(address>>16);
	_spi_WR_byte(address>>8);
	_spi_WR_byte(address);
	for(i=0;i<len;i++)
	{
		data[i]=_spi_WR_byte(0xff);
	}
	_spi_stop();
	w25q64_waitbusy();

}
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发表于 2024-11-13 10:30:01 | 显示全部楼层
Y1ng 发表于 2024-11-12 15:39
(写的忘了写会自动回滚,已修改,现在f_open是显示OK了)
现在遇到:fatfs +freertos 会进入hardfault  ...

MDK调试状态看下faults report里面的错误类型,另外就是看看能说的错误位置不
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