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  *   ˆl–Ü4ý( ©³( 	Å€fàB¦-ÿÂ415_†I|¥�+ÂÁ Ÿ    /* SPDX-License-Identifier: GPL-2.0 */
/*
 * Common values for blowfish algorithms
 */

#ifndef _CRYPTO_BLOWFISH_H
#define _CRYPTO_BLOWFISH_H

#include <linux/types.h>
#include <linux/crypto.h>

#define BF_BLOCK_SIZE 8
#define BF_MIN_KEY_SIZE 4
#define BF_MAX_KEY_SIZE 56

struct bf_ctx {
	u32 p[18];
	u32 s[1024];
};

int blowfish_setkey(struct crypto_tfm *tfm, const u8 *key,
		    unsigned int key_len);

#endif
     ˆ¿Ãƒmñ;¾ÂÁ '    /* SPDX-License-Identifier: GPL-2.0
 *
 * SuperH FLCTL nand controller
 *
 * Copyright Â© 2008 Renesas Solutions Corp.
 */

#ifndef __SH_FLCTL_H__
#define __SH_FLCTL_H__

#include <linux/completion.h>
#include <linux/mtd/mtd.h>
#include <linux/mtd/rawnand.h>
#include <linux/mtd/partitions.h>
#include <linux/pm_qos.h>

/* FLCTL registers */
#define FLCMNCR(f)		(f->reg + 0x0)
#define FLCMDCR(f)		(f->reg + 0x4)
#define FLCMCDR(f)		(f->reg + 0x8)
#define FLADR(f)		(f->reg + 0xC)
#define FLADR2(f)		(f->reg + 0x3C)
#define FLDATAR(f)		(f->reg + 0x10)
#define FLDTCNTR(f)		(f->reg + 0x14)
#define FLINTDMACR(f)		(f->reg + 0x18)
#define FLBSYTMR(f)		(f->reg + 0x1C)
#define FLBSYCNT(f)		(f->reg + 0x20)
#define FLDTFIFO(f)		(f->reg + 0x24)
#define FLECFIFO(f)		(f->reg + 0x28)
#define FLTRCR(f)		(f->reg + 0x2C)
#define FLHOLDCR(f)		(f->reg + 0x38)
#define	FL4ECCRESULT0(f)	(f->reg + 0x80)
#define	FL4ECCRESULT1(f)	(f->reg + 0x84)
#define	FL4ECCRESULT2(f)	(f->reg + 0x88)
#define	FL4ECCRESULT3(f)	(f->reg + 0x8C)
#define	FL4ECCCR(f)		(f->reg + 0x90)
#define	FL4ECCCNT(f)		(f->reg + 0x94)
#define	FLERRADR(f)		(f->reg + 0x98)

/* FLCMNCR control bits */
#define _4ECCCNTEN	(0x1 << 24)
#define _4ECCEN		(0x1 << 23)
#define _4ECCCORRECT	(0x1 << 22)
#define SHBUSSEL	(0x1 << 20)
#define SEL_16BIT	(0x1 << 19)
#define SNAND_E		(0x1 << 18)	/* SNAND (0=512 1=2048)*/
#define QTSEL_E		(0x1 << 17)
#define ENDIAN		(0x1 << 16)	/* 1 = little endian */
#define FCKSEL_E	(0x1 << 15)
#define ACM_SACCES_MODE	(0x01 << 10)
#define NANWF_E		(0x1 << 9)
#define SE_D		(0x1 << 8)	/* Spare area disable */
#define	CE1_ENABLE	(0x1 << 4)	/* Chip Enable 1 */
#define	CE0_ENABLE	(0x1 << 3)	/* Chip Enable 0 */
#define	TYPESEL_SET	(0x1 << 0)

/*
 * Clock settings using the PULSEx registers from FLCMNCR
 *
 * Some hardware uses bits called PULSEx instead of FCKSEL_E and QTSEL_E
 * to control the clock divider used between the High-Speed Peripheral Clock
 * and the FLCTL internal clock. If so, use CLK_8_BIT_xxx for connecting 8 bit
 * and CLK_16_BIT_xxx for connecting 16 bit bus bandwith NAND chips. For the 16
 * bit version the divider is seperate for the pulse width of high and low
 * signals.
 */
#define PULSE3	(0x1 << 27)
#define PULSE2	(0x1 << 17)
#define PULSE1	(0x1 << 15)
#define PULSE0	(0x1 << 9)
#define CLK_8B_0_5			PULSE1
#define CLK_8B_1			0x0
#define CLK_8B_1_5			(PULSE1 | PULSE2)
#define CLK_8B_2			PULSE0
#define CLK_8B_3			(PULSE0 | PULSE1 | PULSE2)
#define CLK_8B_4			(PULSE0 | PULSE2)
#define CLK_16B_6L_2H			PULSE0
#define CLK_16B_9L_3H			(PULSE0 | PULSE1 | PULSE2)
#define CLK_16B_12L_4H			(PULSE0 | PULSE2)

/* FLCMDCR control bits */
#define ADRCNT2_E	(0x1 << 31)	/* 5byte address enable */
#define ADRMD_E		(0x1 << 26)	/* Sector address access */
#define CDSRC_E		(0x1 << 25)	/* Data buffer selection */
#define DOSR_E		(0x1 << 24)	/* Status read check */
#define SELRW		(0x1 << 21)	/*  0:read 1:write */
#define DOADR_E		(0x1 << 20)	/* Address stage execute */
#define ADRCNT_1	(0x00 << 18)	/* Address data bytes: 1byte */
#define ADRCNT_2	(0x01 << 18)	/* Address data bytes: 2byte */
#define ADRCNT_3	(0x02 << 18)	/* Address data bytes: 3byte */
#define ADRCNT_4	(0x03 << 18)	/* Address data bytes: 4byte */
#define DOCMD2_E	(0x1 << 17)	/* 2nd cmd stage execute */
#define DOCMD1_E	(0x1 << 16)	/* 1st cmd stage execute */

/* FLINTDMACR control bits */
#define ESTERINTE	(0x1 << 24)	/* ECC error interrupt enable */
#define AC1CLR		(0x1 << 19)	/* ECC FIFO clear */
#define AC0CLR		(0x1 << 18)	/* Data FIFO clear */
#define DREQ0EN		(0x1 << 16)	/* FLDTFIFODMA Request Enable */
#defi