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/* SPDX-License-Identifier: GPL-2.0 */
/*
* Common SPI flash Interface
*
* Copyright (C) 2008 Atmel Corporation
* Copyright (C) 2013 Jagannadha Sutradharudu Teki, Xilinx Inc.
*/
#ifndef _SPI_FLASH_H_
#define _SPI_FLASH_H_
#include <dm.h> /* Because we dereference struct udevice here */
#include <linux/types.h>
#include <linux/mtd/spi-nor.h>
#include <spi.h>
#ifdef CONFIG_SPI_BLOCK_PROTECT
#define BP_OP_SET 0
#define BP_OP_GET 1
#define BT_LOC_RDSR 0
#define BT_LOC_RDCR 1
#define BP_CMP_TOP 0
#define BP_CMP_BOTTOM 1
#define BP_CMP_UPDATE_FLAG 0xff
enum block_protection_level {
BP_LEVEL_0 = 0,
BP_LEVEL_1 = 1,
BP_LEVEL_2 = 2,
BP_LEVEL_3 = 3,
BP_LEVEL_4 = 4,
BP_LEVEL_5 = 5,
BP_LEVEL_6 = 6,
BP_LEVEL_7 = 7,
BP_LEVEL_8 = 8,
BP_LEVEL_9 = 9,
BP_LEVEL_10 = 10,
BP_LEVEL_END,
};
#define BP_LEVEL_MAX (BP_LEVEL_END - 1)
#define BP_NUM_3 3
#define BP_NUM_4 4
#define BP_NUM_5 5
void spi_flash_lock(unsigned char cmp, unsigned char level, unsigned char op);
#endif /* CONFIG_SPI_BLOCK_PROTECT */
#define MID_SPANSION 0x01 /* Spansion Manufacture ID */
#define MID_WINBOND 0xef /* Winbond Manufacture ID */
#define MID_MXIC 0xc2 /* MXIC Manufacture ID */
#define MID_MICRON 0x20 /* Micron Manufacture ID */
#define MID_GD 0xc8 /* GD Manufacture ID */
#define MID_ESMT 0x8c /* ESMT Manufacture ID */
#define MID_CFEON 0x1c /* CFeon Manufacture ID */
#define MID_MICRON 0x20 /* Micron Manufacture ID */
#define MID_PARAGON 0xe0 /* Paragon Manufacture ID */
#define MID_PUYA 0x85 /* Puya Manufacture ID */
#ifndef CONFIG_SF_DEFAULT_SPEED
# define CONFIG_SF_DEFAULT_SPEED 1000000
#endif
#ifndef CONFIG_SF_DEFAULT_MODE
# define CONFIG_SF_DEFAULT_MODE SPI_MODE_3
#endif
#ifndef CONFIG_SF_DEFAULT_CS
# define CONFIG_SF_DEFAULT_CS 0
#endif
#ifndef CONFIG_SF_DEFAULT_BUS
# define CONFIG_SF_DEFAULT_BUS 0
#endif
/* by default ENV use the same parameters than SF command */
#ifndef CONFIG_ENV_SPI_BUS
# define CONFIG_ENV_SPI_BUS CONFIG_SF_DEFAULT_BUS
#endif
#ifndef CONFIG_ENV_SPI_CS
# define CONFIG_ENV_SPI_CS CONFIG_SF_DEFAULT_CS
#endif
#ifndef CONFIG_ENV_SPI_MAX_HZ
# define CONFIG_ENV_SPI_MAX_HZ CONFIG_SF_DEFAULT_SPEED
#endif
#ifndef CONFIG_ENV_SPI_MODE
# define CONFIG_ENV_SPI_MODE CONFIG_SF_DEFAULT_MODE
#endif
struct spi_slave;
struct dm_spi_flash_ops {
int (*read)(struct udevice *dev, u32 offset, size_t len, void *buf);
int (*write)(struct udevice *dev, u32 offset, size_t len,
const void *buf);
int (*erase)(struct udevice *dev, u32 offset, size_t len);
/**
* get_sw_write_prot() - Check state of software write-protect feature
*
* SPI flash chips can lock a region of the flash defined by a
* 'protected area'. This function checks if this protected area is
* defined.
*
* @dev: SPI flash device
* @return 0 if no region is write-protected, 1 if a region is
* write-protected, -ENOSYS if the driver does not implement this,
* other -ve value on error
*/
int (*get_sw_write_prot)(struct udevice *dev);
};
/* Access the serial operations for a device */
#define sf_get_ops(dev) ((struct dm_spi_flash_ops *)(dev)->driver->ops)
#ifdef CONFIG_DM_SPI_FLASH
/**
* spi_flash_read_dm() - Read data from SPI flash
*
* @dev: SPI flash device
* @offset: Offset into device in bytes to read from
* @len: Number of bytes to read
* @buf: Buffer to put the data that is read
* @return 0 if OK, -ve on error
*/
int spi_flash_read_dm(struct udevice *dev, u32 offset, size_t len, void *buf);
/**
* spi_flash_write_dm() - Write data to SPI flash
*
* @dev: SPI flash device
* @offset: Offset into device in bytes to write to
* @len: Number of bytes to write
* @buf: Buffer containing bytes to write
* @return 0 if OK, -ve on error
*/
int spi_flash_write_dm(struct udevice *dev, u32 offset, size_t len,
const void *buf);
/**
* spi_flash_erase_dm() - Erase blocks of the SPI flash
*
* Note that @len must be a muiltiple of the flash sector size.
*
* @dev: SPI flash device
* @offset: Offset into device in bytes to start erasing
* @len: Number of bytes to erase
* @return 0 if OK, -ve on error
*/
int spi_flash_erase_dm(struct udevice *dev, u32 offset, size_t len);
/**
* spl_flash_get_sw_write_prot() - Check state of software write-protect feature
*
* SPI flash chips can lock a region of the flash defined by a
* 'protected area'. This function checks if this protected area is
* defined.
*
* @dev: SPI flash device
* @return 0 if no region is write-protected, 1 if a region is
* write-protected, -ENOSYS if the driver does not implement this,
* other -ve value on error
*/
int spl_flash_get_sw_write_prot(struct udevice *dev);
int spi_flash_probe_bus_cs(unsigned int busnum, unsigned int cs,
unsigned int max_hz, unsigned int spi_mode,
struct udevice **devp);
/* Compatibility function - this is the old U-Boot API */
struct spi_flash *spi_flash_probe(unsigned int bus, unsigned int cs,
unsigned int max_hz, unsigned int spi_mode);
/* Compatibility function - this is the old U-Boot API */
void spi_flash_free(struct spi_flash *flash);
static inline int spi_flash_read(struct spi_flash *flash, u32 offset,
size_t len, void *buf)
{
return spi_flash_read_dm(flash->dev, offset, len, buf);
}
static inline int spi_flash_write(struct spi_flash *flash, u32 offset,
size_t len, const void *buf)
{
return spi_flash_write_dm(flash->dev, offset, len, buf);
}
static inline int spi_flash_erase(struct spi_flash *flash, u32 offset,
size_t len)
{
return spi_flash_erase_dm(flash->dev, offset, len);
}
struct sandbox_state;
int sandbox_sf_bind_emul(struct sandbox_state *state, int busnum, int cs,
struct udevice *bus, ofnode node, const char *spec);
void sandbox_sf_unbind_emul(struct sandbox_state *state, int busnum, int cs);
#else
struct spi_flash *spi_flash_probe(unsigned int bus, unsigned int cs,
unsigned int max_hz, unsigned int spi_mode);
void spi_flash_free(struct spi_flash *flash);
static inline int spi_flash_read(struct spi_flash *flash, u32 offset,
size_t len, void *buf)
{
#ifndef CONFIG_FMC
struct mtd_info *mtd = &flash->mtd;
size_t retlen;
return mtd->_read(mtd, offset, len, &retlen, buf);
#else
return flash->read(flash, offset, len, buf);
#endif
}
static inline int spi_flash_write(struct spi_flash *flash, u32 offset,
size_t len, const void *buf)
{
#ifndef CONFIG_FMC
struct mtd_info *mtd = &flash->mtd;
size_t retlen;
return mtd->_write(mtd, offset, len, &retlen, buf);
#else
return flash->write(flash, offset, len, buf);
#endif
}
static inline int spi_flash_erase(struct spi_flash *flash, u32 offset,
size_t len)
{
#ifndef CONFIG_FMC
struct mtd_info *mtd = &flash->mtd;
struct erase_info instr;
if (offset % mtd->erasesize || len % mtd->erasesize) {
printf("SF: Erase offset/length not multiple of erase size\n");
return -EINVAL;
}
memset(&instr, 0, sizeof(instr));
instr.addr = offset;
instr.len = len;
return mtd->_erase(mtd, &instr);
#else
#ifdef CONFIG_FMC_SPI_NOR
extern int fmc100_reg_erase(struct spi_flash *spiflash, u32 offset,
size_t length);
return fmc100_reg_erase(flash, offset, len);
#else
return 0;
#endif
#endif
}
#endif
static inline int spi_flash_protect(struct spi_flash *flash, u32 ofs, u32 len,
bool prot)
{
if (!flash->flash_lock || !flash->flash_unlock)
return -EOPNOTSUPP;
if (prot)
return flash->flash_lock(flash, ofs, len);
else
return flash->flash_unlock(flash, ofs, len);
}
#endif /* _SPI_FLASH_H_ */