cmd_ide.c 50.4 KB
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/*
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 * (C) Copyright 2000-2005
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 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
 *
 * See file CREDITS for list of people who contributed to this
 * project.
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License as
 * published by the Free Software Foundation; either version 2 of
 * the License, or (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
 * MA 02111-1307 USA
 *
 */

/*
 * IDE support
 */
#include <common.h>
#include <config.h>
#include <watchdog.h>
#include <command.h>
#include <image.h>
#include <asm/byteorder.h>
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#if defined(CONFIG_IDE_8xx_DIRECT) || defined(CONFIG_IDE_PCMCIA)
# include <pcmcia.h>
#endif
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#ifdef CONFIG_8xx
# include <mpc8xx.h>
#endif
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#ifdef CONFIG_MPC5xxx
#include <mpc5xxx.h>
#endif
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#include <ide.h>
#include <ata.h>
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#ifdef CONFIG_STATUS_LED
# include <status_led.h>
#endif
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#ifndef __PPC__
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#include <asm/io.h>
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#ifdef __MIPS__
/* Macros depend on this variable */
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unsigned long mips_io_port_base = 0;
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#endif
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#endif
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#ifdef CONFIG_SHOW_BOOT_PROGRESS
# include <status_led.h>
# define SHOW_BOOT_PROGRESS(arg)	show_boot_progress(arg)
#else
# define SHOW_BOOT_PROGRESS(arg)
#endif

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#ifdef CONFIG_IDE_8xx_DIRECT
DECLARE_GLOBAL_DATA_PTR;
#endif

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#ifdef __PPC__
# define EIEIO		__asm__ volatile ("eieio")
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# define SYNC		__asm__ volatile ("sync")
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#else
# define EIEIO		/* nothing */
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# define SYNC		/* nothing */
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#endif

#if (CONFIG_COMMANDS & CFG_CMD_IDE)

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#ifdef CONFIG_IDE_8xx_DIRECT
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/* Timings for IDE Interface
 *
 * SETUP / LENGTH / HOLD - cycles valid for 50 MHz clk
 * 70	   165	    30	   PIO-Mode 0, [ns]
 *  4	     9	     2		       [Cycles]
 * 50	   125	    20	   PIO-Mode 1, [ns]
 *  3	     7	     2		       [Cycles]
 * 30	   100	    15	   PIO-Mode 2, [ns]
 *  2	     6	     1		       [Cycles]
 * 30	    80	    10	   PIO-Mode 3, [ns]
 *  2	     5	     1		       [Cycles]
 * 25	    70	    10	   PIO-Mode 4, [ns]
 *  2	     4	     1		       [Cycles]
 */

const static pio_config_t pio_config_ns [IDE_MAX_PIO_MODE+1] =
{
    /*	Setup  Length  Hold  */
	{ 70,	165,	30 },		/* PIO-Mode 0, [ns]	*/
	{ 50,	125,	20 },		/* PIO-Mode 1, [ns]	*/
	{ 30,	101,	15 },		/* PIO-Mode 2, [ns]	*/
	{ 30,	 80,	10 },		/* PIO-Mode 3, [ns]	*/
	{ 25,	 70,	10 },		/* PIO-Mode 4, [ns]	*/
};

static pio_config_t pio_config_clk [IDE_MAX_PIO_MODE+1];

#ifndef	CFG_PIO_MODE
#define	CFG_PIO_MODE	0		/* use a relaxed default */
#endif
static int pio_mode = CFG_PIO_MODE;

/* Make clock cycles and always round up */

#define PCMCIA_MK_CLKS( t, T ) (( (t) * (T) + 999U ) / 1000U )

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#endif /* CONFIG_IDE_8xx_DIRECT */

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/* ------------------------------------------------------------------------- */

/* Current I/O Device	*/
static int curr_device = -1;

/* Current offset for IDE0 / IDE1 bus access	*/
ulong ide_bus_offset[CFG_IDE_MAXBUS] = {
#if defined(CFG_ATA_IDE0_OFFSET)
	CFG_ATA_IDE0_OFFSET,
#endif
#if defined(CFG_ATA_IDE1_OFFSET) && (CFG_IDE_MAXBUS > 1)
	CFG_ATA_IDE1_OFFSET,
#endif
};

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#define	ATA_CURR_BASE(dev)	(CFG_ATA_BASE_ADDR+ide_bus_offset[IDE_BUS(dev)])

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#ifndef CONFIG_AMIGAONEG3SE
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static int ide_bus_ok[CFG_IDE_MAXBUS];
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#else
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static int ide_bus_ok[CFG_IDE_MAXBUS] = {0,};
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#endif
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block_dev_desc_t ide_dev_desc[CFG_IDE_MAXDEVICE];
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/* ------------------------------------------------------------------------- */

#ifdef CONFIG_IDE_LED
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#if !defined(CONFIG_KUP4K) &&  !defined(CONFIG_KUP4X) &&!defined(CONFIG_BMS2003) &&!defined(CONFIG_CPC45)
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static void  ide_led   (uchar led, uchar status);
#else
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extern void  ide_led   (uchar led, uchar status);
#endif
#else
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#ifndef CONFIG_AMIGAONEG3SE
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#define ide_led(a,b)	/* dummy */
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#else
extern void ide_led(uchar led, uchar status);
#define LED_IDE1  1
#define LED_IDE2  2
#define CONFIG_IDE_LED 1
#define DEVICE_LED(x) 1
#endif
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#endif

#ifdef CONFIG_IDE_RESET
static void  ide_reset (void);
#else
#define ide_reset()	/* dummy */
#endif

static void  ide_ident (block_dev_desc_t *dev_desc);
static uchar ide_wait  (int dev, ulong t);

#define IDE_TIME_OUT	2000	/* 2 sec timeout */

#define ATAPI_TIME_OUT	7000	/* 7 sec timeout (5 sec seems to work...) */

#define IDE_SPIN_UP_TIME_OUT 5000 /* 5 sec spin-up timeout */

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static void __inline__ ide_outb(int dev, int port, unsigned char val);
static unsigned char __inline__ ide_inb(int dev, int port);
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static void input_data(int dev, ulong *sect_buf, int words);
static void output_data(int dev, ulong *sect_buf, int words);
static void ident_cpy (unsigned char *dest, unsigned char *src, unsigned int len);


#ifdef CONFIG_ATAPI
static void	atapi_inquiry(block_dev_desc_t *dev_desc);
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ulong atapi_read (int device, lbaint_t blknr, ulong blkcnt, void *buffer);
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#endif


#ifdef CONFIG_IDE_8xx_DIRECT
static void set_pcmcia_timing (int pmode);
#endif

/* ------------------------------------------------------------------------- */

int do_ide (cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
{
    int rcode = 0;

    switch (argc) {
    case 0:
    case 1:
	printf ("Usage:\n%s\n", cmdtp->usage);
	return 1;
    case 2:
	if (strncmp(argv[1],"res",3) == 0) {
		puts ("\nReset IDE"
#ifdef CONFIG_IDE_8xx_DIRECT
			" on PCMCIA " PCMCIA_SLOT_MSG
#endif
			": ");

		ide_init ();
		return 0;
	} else if (strncmp(argv[1],"inf",3) == 0) {
		int i;

		putc ('\n');

		for (i=0; i<CFG_IDE_MAXDEVICE; ++i) {
			if (ide_dev_desc[i].type==DEV_TYPE_UNKNOWN)
				continue; /* list only known devices */
			printf ("IDE device %d: ", i);
			dev_print(&ide_dev_desc[i]);
		}
		return 0;

	} else if (strncmp(argv[1],"dev",3) == 0) {
		if ((curr_device < 0) || (curr_device >= CFG_IDE_MAXDEVICE)) {
			puts ("\nno IDE devices available\n");
			return 1;
		}
		printf ("\nIDE device %d: ", curr_device);
		dev_print(&ide_dev_desc[curr_device]);
		return 0;
	} else if (strncmp(argv[1],"part",4) == 0) {
		int dev, ok;

		for (ok=0, dev=0; dev<CFG_IDE_MAXDEVICE; ++dev) {
			if (ide_dev_desc[dev].part_type!=PART_TYPE_UNKNOWN) {
				++ok;
				if (dev)
					putc ('\n');
				print_part(&ide_dev_desc[dev]);
			}
		}
		if (!ok) {
			puts ("\nno IDE devices available\n");
			rcode ++;
		}
		return rcode;
	}
	printf ("Usage:\n%s\n", cmdtp->usage);
	return 1;
    case 3:
	if (strncmp(argv[1],"dev",3) == 0) {
		int dev = (int)simple_strtoul(argv[2], NULL, 10);

		printf ("\nIDE device %d: ", dev);
		if (dev >= CFG_IDE_MAXDEVICE) {
			puts ("unknown device\n");
			return 1;
		}
		dev_print(&ide_dev_desc[dev]);
		/*ide_print (dev);*/

		if (ide_dev_desc[dev].type == DEV_TYPE_UNKNOWN) {
			return 1;
		}

		curr_device = dev;

		puts ("... is now current device\n");

		return 0;
	} else if (strncmp(argv[1],"part",4) == 0) {
		int dev = (int)simple_strtoul(argv[2], NULL, 10);

		if (ide_dev_desc[dev].part_type!=PART_TYPE_UNKNOWN) {
				print_part(&ide_dev_desc[dev]);
		} else {
			printf ("\nIDE device %d not available\n", dev);
			rcode = 1;
		}
		return rcode;
#if 0
	} else if (strncmp(argv[1],"pio",4) == 0) {
		int mode = (int)simple_strtoul(argv[2], NULL, 10);

		if ((mode >= 0) && (mode <= IDE_MAX_PIO_MODE)) {
			puts ("\nSetting ");
			pio_mode = mode;
			ide_init ();
		} else {
			printf ("\nInvalid PIO mode %d (0 ... %d only)\n",
				mode, IDE_MAX_PIO_MODE);
		}
		return;
#endif
	}

	printf ("Usage:\n%s\n", cmdtp->usage);
	return 1;
    default:
	/* at least 4 args */

	if (strcmp(argv[1],"read") == 0) {
		ulong addr = simple_strtoul(argv[2], NULL, 16);
		ulong cnt  = simple_strtoul(argv[4], NULL, 16);
		ulong n;
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#ifdef CFG_64BIT_STRTOUL
		lbaint_t blk  = simple_strtoull(argv[3], NULL, 16);
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		printf ("\nIDE read: device %d block # %qd, count %ld ... ",
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			curr_device, blk, cnt);
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#else
		lbaint_t blk  = simple_strtoul(argv[3], NULL, 16);

		printf ("\nIDE read: device %d block # %ld, count %ld ... ",
			curr_device, blk, cnt);
#endif
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		n = ide_dev_desc[curr_device].block_read (curr_device,
							  blk, cnt,
							  (ulong *)addr);
		/* flush cache after read */
		flush_cache (addr, cnt*ide_dev_desc[curr_device].blksz);

		printf ("%ld blocks read: %s\n",
			n, (n==cnt) ? "OK" : "ERROR");
		if (n==cnt) {
			return 0;
		} else {
			return 1;
		}
	} else if (strcmp(argv[1],"write") == 0) {
		ulong addr = simple_strtoul(argv[2], NULL, 16);
		ulong cnt  = simple_strtoul(argv[4], NULL, 16);
		ulong n;
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#ifdef CFG_64BIT_STRTOUL
		lbaint_t blk  = simple_strtoull(argv[3], NULL, 16);
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		printf ("\nIDE write: device %d block # %qd, count %ld ... ",
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			curr_device, blk, cnt);
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#else
		lbaint_t blk  = simple_strtoul(argv[3], NULL, 16);

		printf ("\nIDE write: device %d block # %ld, count %ld ... ",
			curr_device, blk, cnt);
#endif
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		n = ide_write (curr_device, blk, cnt, (ulong *)addr);

		printf ("%ld blocks written: %s\n",
			n, (n==cnt) ? "OK" : "ERROR");
		if (n==cnt) {
			return 0;
		} else {
			return 1;
		}
	} else {
		printf ("Usage:\n%s\n", cmdtp->usage);
		rcode = 1;
	}

	return rcode;
    }
}

int do_diskboot (cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
{
	char *boot_device = NULL;
	char *ep;
	int dev, part = 0;
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	ulong addr, cnt, checksum;
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	disk_partition_t info;
	image_header_t *hdr;
	int rcode = 0;

	switch (argc) {
	case 1:
		addr = CFG_LOAD_ADDR;
		boot_device = getenv ("bootdevice");
		break;
	case 2:
		addr = simple_strtoul(argv[1], NULL, 16);
		boot_device = getenv ("bootdevice");
		break;
	case 3:
		addr = simple_strtoul(argv[1], NULL, 16);
		boot_device = argv[2];
		break;
	default:
		printf ("Usage:\n%s\n", cmdtp->usage);
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

	if (!boot_device) {
		puts ("\n** No boot device **\n");
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

	dev = simple_strtoul(boot_device, &ep, 16);

	if (ide_dev_desc[dev].type==DEV_TYPE_UNKNOWN) {
		printf ("\n** Device %d not available\n", dev);
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

	if (*ep) {
		if (*ep != ':') {
			puts ("\n** Invalid boot device, use `dev[:part]' **\n");
			SHOW_BOOT_PROGRESS (-1);
			return 1;
		}
		part = simple_strtoul(++ep, NULL, 16);
	}
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	if (get_partition_info (ide_dev_desc, part, &info)) {
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		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}
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	if ((strncmp((char *)info.type, BOOT_PART_TYPE, sizeof(info.type)) != 0) &&
	    (strncmp((char *)info.type, BOOT_PART_COMP, sizeof(info.type)) != 0)) {
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		printf ("\n** Invalid partition type \"%.32s\""
			" (expect \"" BOOT_PART_TYPE "\")\n",
			info.type);
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

	printf ("\nLoading from IDE device %d, partition %d: "
		"Name: %.32s  Type: %.32s\n",
		dev, part, info.name, info.type);

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	debug ("First Block: %ld,  # of blocks: %ld, Block Size: %ld\n",
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		info.start, info.size, info.blksz);

	if (ide_dev_desc[dev].block_read (dev, info.start, 1, (ulong *)addr) != 1) {
		printf ("** Read error on %d:%d\n", dev, part);
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

	hdr = (image_header_t *)addr;

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	if (ntohl(hdr->ih_magic) != IH_MAGIC) {
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		printf("\n** Bad Magic Number **\n");
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}

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	checksum = ntohl(hdr->ih_hcrc);
	hdr->ih_hcrc = 0;

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	if (crc32 (0, (uchar *)hdr, sizeof(image_header_t)) != checksum) {
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		puts ("\n** Bad Header Checksum **\n");
		SHOW_BOOT_PROGRESS (-2);
		return 1;
	}
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	hdr->ih_hcrc = htonl(checksum); /* restore checksum for later use */
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	print_image_hdr (hdr);

	cnt = (ntohl(hdr->ih_size) + sizeof(image_header_t));
	cnt += info.blksz - 1;
	cnt /= info.blksz;
	cnt -= 1;

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	if (ide_dev_desc[dev].block_read (dev, info.start+1, cnt,
		      (ulong *)(addr+info.blksz)) != cnt) {
		printf ("** Read error on %d:%d\n", dev, part);
		SHOW_BOOT_PROGRESS (-1);
		return 1;
	}


	/* Loading ok, update default load address */

	load_addr = addr;

	/* Check if we should attempt an auto-start */
	if (((ep = getenv("autostart")) != NULL) && (strcmp(ep,"yes") == 0)) {
		char *local_args[2];
		extern int do_bootm (cmd_tbl_t *, int, int, char *[]);

		local_args[0] = argv[0];
		local_args[1] = NULL;

		printf ("Automatic boot of image at addr 0x%08lX ...\n", addr);

		do_bootm (cmdtp, 0, 1, local_args);
		rcode = 1;
	}
	return rcode;
}

/* ------------------------------------------------------------------------- */

void ide_init (void)
{

#ifdef CONFIG_IDE_8xx_DIRECT
	volatile immap_t *immr = (immap_t *)CFG_IMMR;
	volatile pcmconf8xx_t *pcmp = &(immr->im_pcmcia);
#endif
	unsigned char c;
	int i, bus;
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#if defined(CONFIG_AMIGAONEG3SE) || defined(CONFIG_SC3)
	unsigned int ata_reset_time;
#endif
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#ifdef CONFIG_AMIGAONEG3SE
	unsigned int max_bus_scan;
	char *s;
#endif
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#ifdef CONFIG_IDE_8xx_PCCARD
	extern int pcmcia_on (void);
	extern int ide_devices_found; /* Initialized in check_ide_device() */
#endif	/* CONFIG_IDE_8xx_PCCARD */

#ifdef CONFIG_IDE_PREINIT
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	extern int ide_preinit (void);
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	WATCHDOG_RESET();

	if (ide_preinit ()) {
		puts ("ide_preinit failed\n");
		return;
	}
#endif	/* CONFIG_IDE_PREINIT */
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#ifdef CONFIG_IDE_8xx_PCCARD
	extern int pcmcia_on (void);
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	extern int ide_devices_found; /* Initialized in check_ide_device() */
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	WATCHDOG_RESET();

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	ide_devices_found = 0;
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	/* initialize the PCMCIA IDE adapter card */
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	pcmcia_on();
	if (!ide_devices_found)
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		return;
	udelay (1000000);	/* 1 s */
#endif	/* CONFIG_IDE_8xx_PCCARD */

	WATCHDOG_RESET();

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#ifdef CONFIG_IDE_8xx_DIRECT
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	/* Initialize PIO timing tables */
	for (i=0; i <= IDE_MAX_PIO_MODE; ++i) {
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		pio_config_clk[i].t_setup  = PCMCIA_MK_CLKS(pio_config_ns[i].t_setup,
								gd->bus_clk);
		pio_config_clk[i].t_length = PCMCIA_MK_CLKS(pio_config_ns[i].t_length,
								gd->bus_clk);
		pio_config_clk[i].t_hold   = PCMCIA_MK_CLKS(pio_config_ns[i].t_hold,
								gd->bus_clk);
		debug ( "PIO Mode %d: setup=%2d ns/%d clk"
			"  len=%3d ns/%d clk"
			"  hold=%2d ns/%d clk\n",
			i,
			pio_config_ns[i].t_setup,  pio_config_clk[i].t_setup,
			pio_config_ns[i].t_length, pio_config_clk[i].t_length,
			pio_config_ns[i].t_hold,   pio_config_clk[i].t_hold);
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	}
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#endif /* CONFIG_IDE_8xx_DIRECT */
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	/* Reset the IDE just to be sure.
	 * Light LED's to show
	 */
	ide_led ((LED_IDE1 | LED_IDE2), 1);		/* LED's on	*/
	ide_reset (); /* ATAPI Drives seems to need a proper IDE Reset */

#ifdef CONFIG_IDE_8xx_DIRECT
	/* PCMCIA / IDE initialization for common mem space */
	pcmp->pcmc_pgcrb = 0;

	/* start in PIO mode 0 - most relaxed timings */
	pio_mode = 0;
	set_pcmcia_timing (pio_mode);
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#endif /* CONFIG_IDE_8xx_DIRECT */
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	/*
	 * Wait for IDE to get ready.
	 * According to spec, this can take up to 31 seconds!
	 */
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#ifndef CONFIG_AMIGAONEG3SE
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	for (bus=0; bus<CFG_IDE_MAXBUS; ++bus) {
		int dev = bus * (CFG_IDE_MAXDEVICE / CFG_IDE_MAXBUS);
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#else
	s = getenv("ide_maxbus");
	if (s)
598
		max_bus_scan = simple_strtol(s, NULL, 10);
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	else
600
		max_bus_scan = CFG_IDE_MAXBUS;
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	for (bus=0; bus<max_bus_scan; ++bus) {
		int dev = bus * (CFG_IDE_MAXDEVICE / max_bus_scan);
#endif
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606 607 608 609 610 611 612
#ifdef CONFIG_IDE_8xx_PCCARD
		/* Skip non-ide devices from probing */
		if ((ide_devices_found & (1 << bus)) == 0) {
			ide_led ((LED_IDE1 | LED_IDE2), 0); /* LED's off */
			continue;
		}
#endif
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		printf ("Bus %d: ", bus);

		ide_bus_ok[bus] = 0;

		/* Select device
		 */
		udelay (100000);		/* 100 ms */
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		ide_outb (dev, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(dev));
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		udelay (100000);		/* 100 ms */
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#if defined(CONFIG_AMIGAONEG3SE) || defined(CONFIG_SC3)
		if ((s = getenv("ide_reset_timeout")) != NULL)
			ata_reset_time = simple_strtol(s, NULL, 10);
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#endif
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		i = 0;
		do {
			udelay (10000);		/* 10 ms */

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			c = ide_inb (dev, ATA_STATUS);
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			i++;
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#if defined(CONFIG_AMIGAONEG3SE) || defined(CONFIG_SC3)
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			if (i > (ata_reset_time * 100)) {
#else
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			if (i > (ATA_RESET_TIME * 100)) {
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#endif
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				puts ("** Timeout **\n");
				ide_led ((LED_IDE1 | LED_IDE2), 0); /* LED's off */
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#ifdef CONFIG_AMIGAONEG3SE
				/* If this is the second bus, the first one was OK */
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				if (bus != 0) {
642 643
					ide_bus_ok[bus] = 0;
					goto skip_bus;
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				}
#endif
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				return;
			}
			if ((i >= 100) && ((i%100)==0)) {
				putc ('.');
			}
		} while (c & ATA_STAT_BUSY);

		if (c & (ATA_STAT_BUSY | ATA_STAT_FAULT)) {
			puts ("not available  ");
655
			debug ("Status = 0x%02X ", c);
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#ifndef CONFIG_ATAPI /* ATAPI Devices do not set DRDY */
		} else  if ((c & ATA_STAT_READY) == 0) {
			puts ("not available  ");
659
			debug ("Status = 0x%02X ", c);
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#endif
		} else {
			puts ("OK ");
			ide_bus_ok[bus] = 1;
		}
		WATCHDOG_RESET();
	}
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#ifdef CONFIG_AMIGAONEG3SE
      skip_bus:
#endif
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	putc ('\n');

	ide_led ((LED_IDE1 | LED_IDE2), 0);	/* LED's off	*/

	curr_device = -1;
	for (i=0; i<CFG_IDE_MAXDEVICE; ++i) {
#ifdef CONFIG_IDE_LED
		int led = (IDE_BUS(i) == 0) ? LED_IDE1 : LED_IDE2;
#endif
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		ide_dev_desc[i].type=DEV_TYPE_UNKNOWN;
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		ide_dev_desc[i].if_type=IF_TYPE_IDE;
		ide_dev_desc[i].dev=i;
		ide_dev_desc[i].part_type=PART_TYPE_UNKNOWN;
		ide_dev_desc[i].blksz=0;
		ide_dev_desc[i].lba=0;
		ide_dev_desc[i].block_read=ide_read;
		if (!ide_bus_ok[IDE_BUS(i)])
			continue;
		ide_led (led, 1);		/* LED on	*/
		ide_ident(&ide_dev_desc[i]);
		ide_led (led, 0);		/* LED off	*/
		dev_print(&ide_dev_desc[i]);
/*		ide_print (i); */
		if ((ide_dev_desc[i].lba > 0) && (ide_dev_desc[i].blksz > 0)) {
			init_part (&ide_dev_desc[i]);			/* initialize partition type */
			if (curr_device < 0)
				curr_device = i;
		}
	}
	WATCHDOG_RESET();
}

/* ------------------------------------------------------------------------- */

block_dev_desc_t * ide_get_dev(int dev)
{
707
	return (dev < CFG_IDE_MAXDEVICE) ? &ide_dev_desc[dev] : NULL;
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}


#ifdef CONFIG_IDE_8xx_DIRECT

static void
set_pcmcia_timing (int pmode)
{
	volatile immap_t *immr = (immap_t *)CFG_IMMR;
	volatile pcmconf8xx_t *pcmp = &(immr->im_pcmcia);
	ulong timings;

720
	debug ("Set timing for PIO Mode %d\n", pmode);
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	timings = PCMCIA_SHT(pio_config_clk[pmode].t_hold)
		| PCMCIA_SST(pio_config_clk[pmode].t_setup)
		| PCMCIA_SL (pio_config_clk[pmode].t_length)
		;

	/* IDE 0
	 */
	pcmp->pcmc_pbr0 = CFG_PCMCIA_PBR0;
	pcmp->pcmc_por0 = CFG_PCMCIA_POR0
#if (CFG_PCMCIA_POR0 != 0)
			| timings
#endif
			;
735
	debug ("PBR0: %08x  POR0: %08x\n", pcmp->pcmc_pbr0, pcmp->pcmc_por0);
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	pcmp->pcmc_pbr1 = CFG_PCMCIA_PBR1;
	pcmp->pcmc_por1 = CFG_PCMCIA_POR1
#if (CFG_PCMCIA_POR1 != 0)
			| timings
#endif
			;
743
	debug ("PBR1: %08x  POR1: %08x\n", pcmp->pcmc_pbr1, pcmp->pcmc_por1);
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	pcmp->pcmc_pbr2 = CFG_PCMCIA_PBR2;
	pcmp->pcmc_por2 = CFG_PCMCIA_POR2
#if (CFG_PCMCIA_POR2 != 0)
			| timings
#endif
			;
751
	debug ("PBR2: %08x  POR2: %08x\n", pcmp->pcmc_pbr2, pcmp->pcmc_por2);
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	pcmp->pcmc_pbr3 = CFG_PCMCIA_PBR3;
	pcmp->pcmc_por3 = CFG_PCMCIA_POR3
#if (CFG_PCMCIA_POR3 != 0)
			| timings
#endif
			;
759
	debug ("PBR3: %08x  POR3: %08x\n", pcmp->pcmc_pbr3, pcmp->pcmc_por3);
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	/* IDE 1
	 */
	pcmp->pcmc_pbr4 = CFG_PCMCIA_PBR4;
	pcmp->pcmc_por4 = CFG_PCMCIA_POR4
#if (CFG_PCMCIA_POR4 != 0)
			| timings
#endif
			;
769
	debug ("PBR4: %08x  POR4: %08x\n", pcmp->pcmc_pbr4, pcmp->pcmc_por4);
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	pcmp->pcmc_pbr5 = CFG_PCMCIA_PBR5;
	pcmp->pcmc_por5 = CFG_PCMCIA_POR5
#if (CFG_PCMCIA_POR5 != 0)
			| timings
#endif
			;
777
	debug ("PBR5: %08x  POR5: %08x\n", pcmp->pcmc_pbr5, pcmp->pcmc_por5);
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	pcmp->pcmc_pbr6 = CFG_PCMCIA_PBR6;
	pcmp->pcmc_por6 = CFG_PCMCIA_POR6
#if (CFG_PCMCIA_POR6 != 0)
			| timings
#endif
			;
785
	debug ("PBR6: %08x  POR6: %08x\n", pcmp->pcmc_pbr6, pcmp->pcmc_por6);
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	pcmp->pcmc_pbr7 = CFG_PCMCIA_PBR7;
	pcmp->pcmc_por7 = CFG_PCMCIA_POR7
#if (CFG_PCMCIA_POR7 != 0)
			| timings
#endif
			;
793
	debug ("PBR7: %08x  POR7: %08x\n", pcmp->pcmc_pbr7, pcmp->pcmc_por7);
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}

#endif	/* CONFIG_IDE_8xx_DIRECT */

/* ------------------------------------------------------------------------- */

801
#if defined(__PPC__) || defined(CONFIG_PXA_PCMCIA)
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static void __inline__
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ide_outb(int dev, int port, unsigned char val)
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{
805
	debug ("ide_outb (dev= %d, port= 0x%x, val= 0x%02x) : @ 0x%08lx\n",
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		dev, port, val, (ATA_CURR_BASE(dev)+port));
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	/* Ensure I/O operations complete */
809
	EIEIO;
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	*((uchar *)(ATA_CURR_BASE(dev)+port)) = val;
}
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#else	/* ! __PPC__ */
static void __inline__
ide_outb(int dev, int port, unsigned char val)
{
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	outb(val, ATA_CURR_BASE(dev)+port);
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}
#endif	/* __PPC__ */

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821
#if defined(__PPC__) || defined(CONFIG_PXA_PCMCIA)
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static unsigned char __inline__
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ide_inb(int dev, int port)
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{
	uchar val;
	/* Ensure I/O operations complete */
827
	EIEIO;
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	val = *((uchar *)(ATA_CURR_BASE(dev)+port));
829
	debug ("ide_inb (dev= %d, port= 0x%x) : @ 0x%08lx -> 0x%02x\n",
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		dev, port, (ATA_CURR_BASE(dev)+port), val);
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	return (val);
}
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#else	/* ! __PPC__ */
static unsigned char __inline__
ide_inb(int dev, int port)
{
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  return inb(ATA_CURR_BASE(dev)+port);
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}
#endif	/* __PPC__ */
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#ifdef __PPC__
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# ifdef CONFIG_AMIGAONEG3SE
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static void
output_data_short(int dev, ulong *sect_buf, int words)
{
	ushort	*dbuf;
	volatile ushort	*pbuf;
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	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;
	while (words--) {
852
		EIEIO;
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		*pbuf = *dbuf++;
854
		EIEIO;
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	}

	if (words&1)
858
		*pbuf = 0;
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}
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# endif	/* CONFIG_AMIGAONEG3SE */
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#endif /* __PPC_ */
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/* We only need to swap data if we are running on a big endian cpu. */
/* But Au1x00 cpu:s already swaps data in big endian mode! */
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#if defined(__LITTLE_ENDIAN) || ( defined(CONFIG_AU1X00) && !defined(CONFIG_GTH2) )
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#define input_swap_data(x,y,z) input_data(x,y,z)
#else
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static void
input_swap_data(int dev, ulong *sect_buf, int words)
{
871
#if defined(CONFIG_HMI10) || defined(CONFIG_CPC45)
872 873 874 875 876 877 878 879 880 881 882 883
	uchar i;
	volatile uchar *pbuf_even = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_EVEN);
	volatile uchar *pbuf_odd  = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_ODD);
	ushort  *dbuf = (ushort *)sect_buf;

	while (words--) {
		for (i=0; i<2; i++) {
			*(((uchar *)(dbuf)) + 1) = *pbuf_even;
			*(uchar *)dbuf = *pbuf_odd;
			dbuf+=1;
		}
	}
884
#else
885 886 887 888 889 890
	volatile ushort	*pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	ushort	*dbuf = (ushort *)sect_buf;

	debug("in input swap data base for read is %lx\n", (unsigned long) pbuf);

	while (words--) {
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#ifdef __MIPS__
		*dbuf++ = swab16p((u16*)pbuf);
		*dbuf++ = swab16p((u16*)pbuf);
#else
895 896
		*dbuf++ = ld_le16(pbuf);
		*dbuf++ = ld_le16(pbuf);
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#endif /* !MIPS */
898 899
	}
#endif
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}
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901
#endif	/* __LITTLE_ENDIAN || CONFIG_AU1X00 */
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904
#if defined(__PPC__) || defined(CONFIG_PXA_PCMCIA)
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static void
output_data(int dev, ulong *sect_buf, int words)
{
908
#if defined(CONFIG_HMI10) || defined(CONFIG_CPC45)
909 910 911 912 913 914 915 916
	uchar	*dbuf;
	volatile uchar	*pbuf_even;
	volatile uchar	*pbuf_odd;

	pbuf_even = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_EVEN);
	pbuf_odd  = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_ODD);
	dbuf = (uchar *)sect_buf;
	while (words--) {
917
		EIEIO;
918
		*pbuf_even = *dbuf++;
919
		EIEIO;
920
		*pbuf_odd = *dbuf++;
921
		EIEIO;
922
		*pbuf_even = *dbuf++;
923
		EIEIO;
924 925
		*pbuf_odd = *dbuf++;
	}
926 927 928 929 930 931 932 933 934 935 936 937 938
#else
	ushort	*dbuf;
	volatile ushort	*pbuf;

	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;
	while (words--) {
		EIEIO;
		*pbuf = *dbuf++;
		EIEIO;
		*pbuf = *dbuf++;
	}
#endif
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}
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#else	/* ! __PPC__ */
static void
output_data(int dev, ulong *sect_buf, int words)
{
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	outsw(ATA_CURR_BASE(dev)+ATA_DATA_REG, sect_buf, words<<1);
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}
#endif	/* __PPC__ */
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948
#if defined(__PPC__) || defined(CONFIG_PXA_PCMCIA)
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static void
input_data(int dev, ulong *sect_buf, int words)
{
952
#if defined(CONFIG_HMI10) || defined(CONFIG_CPC45)
953 954 955 956 957 958 959 960
	uchar	*dbuf;
	volatile uchar	*pbuf_even;
	volatile uchar	*pbuf_odd;

	pbuf_even = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_EVEN);
	pbuf_odd  = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_ODD);
	dbuf = (uchar *)sect_buf;
	while (words--) {
961
		*dbuf++ = *pbuf_even;
962
		EIEIO;
963 964
		SYNC;
		*dbuf++ = *pbuf_odd;
965
		EIEIO;
966
		SYNC;
967
		*dbuf++ = *pbuf_even;
968
		EIEIO;
969
		SYNC;
970
		*dbuf++ = *pbuf_odd;
971
		EIEIO;
972 973 974 975 976 977 978 979 980 981 982 983
		SYNC;
	}
#else
	ushort	*dbuf;
	volatile ushort	*pbuf;

	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;

	debug("in input data base for read is %lx\n", (unsigned long) pbuf);

	while (words--) {
984
		EIEIO;
985
		*dbuf++ = *pbuf;
986
		EIEIO;
987
		*dbuf++ = *pbuf;
988
	}
989
#endif
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}
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#else	/* ! __PPC__ */
static void
input_data(int dev, ulong *sect_buf, int words)
{
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	insw(ATA_CURR_BASE(dev)+ATA_DATA_REG, sect_buf, words << 1);
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}

#endif	/* __PPC__ */
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#ifdef CONFIG_AMIGAONEG3SE
static void
input_data_short(int dev, ulong *sect_buf, int words)
{
	ushort	*dbuf;
	volatile ushort	*pbuf;

	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;
	while (words--) {
1010
		EIEIO;
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1011
		*dbuf++ = *pbuf;
1012
		EIEIO;
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1013 1014
	}

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	if (words&1) {
1016 1017
		ushort dummy;
		dummy = *pbuf;
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	}
}
#endif

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/* -------------------------------------------------------------------------
 */
static void ide_ident (block_dev_desc_t *dev_desc)
{
	ulong iobuf[ATA_SECTORWORDS];
	unsigned char c;
	hd_driveid_t *iop = (hd_driveid_t *)iobuf;

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#ifdef CONFIG_AMIGAONEG3SE
	int max_bus_scan;
	char *s;
1033 1034 1035
#endif
#ifdef CONFIG_ATAPI
	int retries = 0;
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	int do_retry = 0;
#endif

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#if 0
	int mode, cycle_time;
#endif
	int device;
	device=dev_desc->dev;
	printf ("  Device %d: ", device);

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#ifdef CONFIG_AMIGAONEG3SE
	s = getenv("ide_maxbus");
	if (s) {
		max_bus_scan = simple_strtol(s, NULL, 10);
	} else {
		max_bus_scan = CFG_IDE_MAXBUS;
	}
	if (device >= max_bus_scan*2) {
		dev_desc->type=DEV_TYPE_UNKNOWN;
		return;
	}
#endif

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	ide_led (DEVICE_LED(device), 1);	/* LED on	*/
	/* Select device
	 */
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	ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
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	dev_desc->if_type=IF_TYPE_IDE;
#ifdef CONFIG_ATAPI
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    do_retry = 0;
    retries = 0;

    /* Warning: This will be tricky to read */
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    while (retries <= 1) {
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	/* check signature */
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	if ((ide_inb(device,ATA_SECT_CNT) == 0x01) &&
		 (ide_inb(device,ATA_SECT_NUM) == 0x01) &&
		 (ide_inb(device,ATA_CYL_LOW)  == 0x14) &&
		 (ide_inb(device,ATA_CYL_HIGH) == 0xEB)) {
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		/* ATAPI Signature found */
		dev_desc->if_type=IF_TYPE_ATAPI;
		/* Start Ident Command
		 */
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		ide_outb (device, ATA_COMMAND, ATAPI_CMD_IDENT);
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1081 1082 1083 1084 1085
		/*
		 * Wait for completion - ATAPI devices need more time
		 * to become ready
		 */
		c = ide_wait (device, ATAPI_TIME_OUT);
W
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1086
	} else
W
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1087 1088 1089 1090
#endif
	{
		/* Start Ident Command
		 */
W
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1091
		ide_outb (device, ATA_COMMAND, ATA_CMD_IDENT);
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1092 1093 1094 1095 1096 1097 1098 1099 1100

		/* Wait for completion
		 */
		c = ide_wait (device, IDE_TIME_OUT);
	}
	ide_led (DEVICE_LED(device), 0);	/* LED off	*/

	if (((c & ATA_STAT_DRQ) == 0) ||
	    ((c & (ATA_STAT_FAULT|ATA_STAT_ERR)) != 0) ) {
1101
#ifdef CONFIG_ATAPI
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1102
#ifdef CONFIG_AMIGAONEG3SE
1103 1104 1105
		s = getenv("ide_doreset");
		if (s && strcmp(s, "on") == 0)
#endif
1106 1107 1108 1109 1110 1111 1112 1113
		{
			/* Need to soft reset the device in case it's an ATAPI...  */
			debug ("Retrying...\n");
			ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
			udelay(100000);
			ide_outb (device, ATA_COMMAND, 0x08);
			udelay (500000);	/* 500 ms */
		}
1114 1115
		/* Select device
		 */
W
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1116 1117
		ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
		retries++;
1118 1119 1120
#else
		return;
#endif
W
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1121
	}
1122 1123 1124
#ifdef CONFIG_ATAPI
	else
		break;
W
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1125
    }	/* see above - ugly to read */
1126 1127 1128 1129

	if (retries == 2) /* Not found */
		return;
#endif
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1130 1131 1132 1133 1134 1135

	input_swap_data (device, iobuf, ATA_SECTORWORDS);

	ident_cpy (dev_desc->revision, iop->fw_rev, sizeof(dev_desc->revision));
	ident_cpy (dev_desc->vendor, iop->model, sizeof(dev_desc->vendor));
	ident_cpy (dev_desc->product, iop->serial_no, sizeof(dev_desc->product));
W
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1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147
#ifdef __LITTLE_ENDIAN
	/*
	 * firmware revision and model number have Big Endian Byte
	 * order in Word. Convert both to little endian.
	 *
	 * See CF+ and CompactFlash Specification Revision 2.0:
	 * 6.2.1.6: Identfy Drive, Table 39 for more details
	 */

	strswab (dev_desc->revision);
	strswab (dev_desc->vendor);
#endif /* __LITTLE_ENDIAN */
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1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162

	if ((iop->config & 0x0080)==0x0080)
		dev_desc->removable = 1;
	else
		dev_desc->removable = 0;

#if 0
	/*
	 * Drive PIO mode autoselection
	 */
	mode = iop->tPIO;

	printf ("tPIO = 0x%02x = %d\n",mode, mode);
	if (mode > 2) {		/* 2 is maximum allowed tPIO value */
		mode = 2;
1163
		debug ("Override tPIO -> 2\n");
W
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1164 1165
	}
	if (iop->field_valid & 2) {	/* drive implements ATA2? */
1166
		debug ("Drive implements ATA2\n");
W
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1167 1168 1169 1170 1171
		if (iop->capability & 8) {	/* drive supports use_iordy? */
			cycle_time = iop->eide_pio_iordy;
		} else {
			cycle_time = iop->eide_pio;
		}
1172
		debug ("cycle time = %d\n", cycle_time);
W
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1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188
		mode = 4;
		if (cycle_time > 120) mode = 3;	/* 120 ns for PIO mode 4 */
		if (cycle_time > 180) mode = 2;	/* 180 ns for PIO mode 3 */
		if (cycle_time > 240) mode = 1;	/* 240 ns for PIO mode 4 */
		if (cycle_time > 383) mode = 0;	/* 383 ns for PIO mode 4 */
	}
	printf ("PIO mode to use: PIO %d\n", mode);
#endif /* 0 */

#ifdef CONFIG_ATAPI
	if (dev_desc->if_type==IF_TYPE_ATAPI) {
		atapi_inquiry(dev_desc);
		return;
	}
#endif /* CONFIG_ATAPI */

W
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1189
#ifdef __BIG_ENDIAN
W
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1190 1191
	/* swap shorts */
	dev_desc->lba = (iop->lba_capacity << 16) | (iop->lba_capacity >> 16);
W
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1192 1193 1194 1195 1196 1197 1198 1199 1200
#else	/* ! __BIG_ENDIAN */
	/*
	 * do not swap shorts on little endian
	 *
	 * See CF+ and CompactFlash Specification Revision 2.0:
	 * 6.2.1.6: Identfy Drive, Table 39, Word Address 57-58 for details.
	 */
	dev_desc->lba = iop->lba_capacity;
#endif	/* __BIG_ENDIAN */
W
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1201

1202
#ifdef CONFIG_LBA48
W
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1203
	if (iop->command_set_2 & 0x0400) { /* LBA 48 support */
W
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1204 1205
		dev_desc->lba48 = 1;
		dev_desc->lba = (unsigned long long)iop->lba48_capacity[0] |
W
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1206 1207 1208 1209 1210 1211 1212
						  ((unsigned long long)iop->lba48_capacity[1] << 16) |
						  ((unsigned long long)iop->lba48_capacity[2] << 32) |
						  ((unsigned long long)iop->lba48_capacity[3] << 48);
	} else {
		dev_desc->lba48 = 0;
	}
#endif /* CONFIG_LBA48 */
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1213 1214 1215 1216 1217 1218 1219 1220
	/* assuming HD */
	dev_desc->type=DEV_TYPE_HARDDISK;
	dev_desc->blksz=ATA_BLOCKSIZE;
	dev_desc->lun=0; /* just to fill something in... */

#if 0 	/* only used to test the powersaving mode,
	 * if enabled, the drive goes after 5 sec
	 * in standby mode */
W
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1221
	ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
W
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1222
	c = ide_wait (device, IDE_TIME_OUT);
W
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1223 1224 1225 1226
	ide_outb (device, ATA_SECT_CNT, 1);
	ide_outb (device, ATA_LBA_LOW,  0);
	ide_outb (device, ATA_LBA_MID,  0);
	ide_outb (device, ATA_LBA_HIGH, 0);
1227
	ide_outb (device, ATA_DEV_HD,   ATA_LBA | ATA_DEVICE(device));
W
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1228
	ide_outb (device, ATA_COMMAND,  0xe3);
W
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1229 1230 1231 1232 1233 1234 1235 1236
	udelay (50);
	c = ide_wait (device, IDE_TIME_OUT);	/* can't take over 500 ms */
#endif
}


/* ------------------------------------------------------------------------- */

1237
ulong ide_read (int device, lbaint_t blknr, ulong blkcnt, void *buffer)
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1238 1239 1240 1241
{
	ulong n = 0;
	unsigned char c;
	unsigned char pwrsave=0; /* power save */
1242
#ifdef CONFIG_LBA48
W
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1243
	unsigned char lba48 = 0;
W
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1244

W
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1245 1246 1247 1248 1249
	if (blknr & 0x0000fffff0000000) {
		/* more than 28 bits used, use 48bit mode */
		lba48 = 1;
	}
#endif
1250
	debug ("ide_read dev %d start %qX, blocks %lX buffer at %lX\n",
W
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1251 1252 1253 1254 1255 1256
		device, blknr, blkcnt, (ulong)buffer);

	ide_led (DEVICE_LED(device), 1);	/* LED on	*/

	/* Select device
	 */
W
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1257
	ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
W
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1258 1259 1260 1261 1262 1263 1264 1265 1266
	c = ide_wait (device, IDE_TIME_OUT);

	if (c & ATA_STAT_BUSY) {
		printf ("IDE read: device %d not ready\n", device);
		goto IDE_READ_E;
	}

	/* first check if the drive is in Powersaving mode, if yes,
	 * increase the timeout value */
W
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1267
	ide_outb (device, ATA_COMMAND,  ATA_CMD_CHK_PWR);
W
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1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278
	udelay (50);

	c = ide_wait (device, IDE_TIME_OUT);	/* can't take over 500 ms */

	if (c & ATA_STAT_BUSY) {
		printf ("IDE read: device %d not ready\n", device);
		goto IDE_READ_E;
	}
	if ((c & ATA_STAT_ERR) == ATA_STAT_ERR) {
		printf ("No Powersaving mode %X\n", c);
	} else {
W
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1279
		c = ide_inb(device,ATA_SECT_CNT);
1280
		debug ("Powersaving %02X\n",c);
W
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1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293
		if(c==0)
			pwrsave=1;
	}


	while (blkcnt-- > 0) {

		c = ide_wait (device, IDE_TIME_OUT);

		if (c & ATA_STAT_BUSY) {
			printf ("IDE read: device %d not ready\n", device);
			break;
		}
1294
#ifdef CONFIG_LBA48
W
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1295 1296 1297 1298 1299 1300 1301 1302
		if (lba48) {
			/* write high bits */
			ide_outb (device, ATA_SECT_CNT, 0);
			ide_outb (device, ATA_LBA_LOW,	(blknr >> 24) & 0xFF);
			ide_outb (device, ATA_LBA_MID,	(blknr >> 32) & 0xFF);
			ide_outb (device, ATA_LBA_HIGH, (blknr >> 40) & 0xFF);
		}
#endif
W
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1303 1304 1305 1306
		ide_outb (device, ATA_SECT_CNT, 1);
		ide_outb (device, ATA_LBA_LOW,  (blknr >>  0) & 0xFF);
		ide_outb (device, ATA_LBA_MID,  (blknr >>  8) & 0xFF);
		ide_outb (device, ATA_LBA_HIGH, (blknr >> 16) & 0xFF);
W
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1307

1308
#ifdef CONFIG_LBA48
W
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1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320
		if (lba48) {
			ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device) );
			ide_outb (device, ATA_COMMAND, ATA_CMD_READ_EXT);

		} else
#endif
		{
			ide_outb (device, ATA_DEV_HD,   ATA_LBA		|
						    ATA_DEVICE(device)	|
						    ((blknr >> 24) & 0xF) );
			ide_outb (device, ATA_COMMAND,  ATA_CMD_READ);
		}
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1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331

		udelay (50);

		if(pwrsave) {
			c = ide_wait (device, IDE_SPIN_UP_TIME_OUT);	/* may take up to 4 sec */
			pwrsave=0;
		} else {
			c = ide_wait (device, IDE_TIME_OUT);	/* can't take over 500 ms */
		}

		if ((c&(ATA_STAT_DRQ|ATA_STAT_BUSY|ATA_STAT_ERR)) != ATA_STAT_DRQ) {
1332
#if defined(CFG_64BIT_LBA) && defined(CFG_64BIT_VSPRINTF)
W
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1333
			printf ("Error (no IRQ) dev %d blk %qd: status 0x%02x\n",
W
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1334
				device, blknr, c);
W
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1335 1336 1337 1338
#else
			printf ("Error (no IRQ) dev %d blk %ld: status 0x%02x\n",
				device, (ulong)blknr, c);
#endif
W
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1339 1340 1341 1342
			break;
		}

		input_data (device, buffer, ATA_SECTORWORDS);
W
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1343
		(void) ide_inb (device, ATA_STATUS);	/* clear IRQ */
W
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1344 1345 1346

		++n;
		++blknr;
1347
		buffer += ATA_BLOCKSIZE;
W
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1348 1349 1350 1351 1352 1353 1354 1355 1356
	}
IDE_READ_E:
	ide_led (DEVICE_LED(device), 0);	/* LED off	*/
	return (n);
}

/* ------------------------------------------------------------------------- */


1357
ulong ide_write (int device, lbaint_t blknr, ulong blkcnt, void *buffer)
W
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1358 1359 1360
{
	ulong n = 0;
	unsigned char c;
1361
#ifdef CONFIG_LBA48
W
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1362 1363 1364 1365 1366 1367 1368
	unsigned char lba48 = 0;

	if (blknr & 0x0000fffff0000000) {
		/* more than 28 bits used, use 48bit mode */
		lba48 = 1;
	}
#endif
W
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1369 1370 1371 1372 1373

	ide_led (DEVICE_LED(device), 1);	/* LED on	*/

	/* Select device
	 */
W
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1374
	ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
W
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1375 1376 1377 1378 1379 1380 1381 1382 1383

	while (blkcnt-- > 0) {

		c = ide_wait (device, IDE_TIME_OUT);

		if (c & ATA_STAT_BUSY) {
			printf ("IDE read: device %d not ready\n", device);
			goto WR_OUT;
		}
1384
#ifdef CONFIG_LBA48
W
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1385 1386 1387 1388 1389 1390 1391 1392
		if (lba48) {
			/* write high bits */
			ide_outb (device, ATA_SECT_CNT, 0);
			ide_outb (device, ATA_LBA_LOW,	(blknr >> 24) & 0xFF);
			ide_outb (device, ATA_LBA_MID,	(blknr >> 32) & 0xFF);
			ide_outb (device, ATA_LBA_HIGH, (blknr >> 40) & 0xFF);
		}
#endif
W
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1393 1394 1395 1396
		ide_outb (device, ATA_SECT_CNT, 1);
		ide_outb (device, ATA_LBA_LOW,  (blknr >>  0) & 0xFF);
		ide_outb (device, ATA_LBA_MID,  (blknr >>  8) & 0xFF);
		ide_outb (device, ATA_LBA_HIGH, (blknr >> 16) & 0xFF);
W
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1397

1398
#ifdef CONFIG_LBA48
W
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1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410
		if (lba48) {
			ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device) );
			ide_outb (device, ATA_COMMAND,	ATA_CMD_WRITE_EXT);

		} else
#endif
		{
			ide_outb (device, ATA_DEV_HD,   ATA_LBA		|
						    ATA_DEVICE(device)	|
						    ((blknr >> 24) & 0xF) );
			ide_outb (device, ATA_COMMAND,  ATA_CMD_WRITE);
		}
W
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1411 1412 1413 1414 1415 1416

		udelay (50);

		c = ide_wait (device, IDE_TIME_OUT);	/* can't take over 500 ms */

		if ((c&(ATA_STAT_DRQ|ATA_STAT_BUSY|ATA_STAT_ERR)) != ATA_STAT_DRQ) {
1417
#if defined(CFG_64BIT_LBA) && defined(CFG_64BIT_VSPRINTF)
W
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1418
			printf ("Error (no IRQ) dev %d blk %qd: status 0x%02x\n",
W
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1419
				device, blknr, c);
W
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1420 1421 1422 1423
#else
			printf ("Error (no IRQ) dev %d blk %ld: status 0x%02x\n",
				device, (ulong)blknr, c);
#endif
W
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1424 1425 1426 1427
			goto WR_OUT;
		}

		output_data (device, buffer, ATA_SECTORWORDS);
W
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1428
		c = ide_inb (device, ATA_STATUS);	/* clear IRQ */
W
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1429 1430
		++n;
		++blknr;
1431
		buffer += ATA_BLOCKSIZE;
W
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1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442
	}
WR_OUT:
	ide_led (DEVICE_LED(device), 0);	/* LED off	*/
	return (n);
}

/* ------------------------------------------------------------------------- */

/*
 * copy src to dest, skipping leading and trailing blanks and null
 * terminate the string
W
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 * "len" is the size of available memory including the terminating '\0'
W
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1444
 */
W
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1445
static void ident_cpy (unsigned char *dst, unsigned char *src, unsigned int len)
W
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1446
{
W
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1447 1448 1449
	unsigned char *end, *last;

	last = dst;
1450
	end  = src + len - 1;
W
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1451 1452 1453 1454

	/* reserve space for '\0' */
	if (len < 2)
		goto OUT;
1455

W
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1456 1457 1458 1459 1460 1461 1462 1463 1464
	/* skip leading white space */
	while ((*src) && (src<end) && (*src==' '))
		++src;

	/* copy string, omitting trailing white space */
	while ((*src) && (src<end)) {
		*dst++ = *src;
		if (*src++ != ' ')
			last = dst;
W
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1465
	}
W
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1466 1467
OUT:
	*last = '\0';
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1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480
}

/* ------------------------------------------------------------------------- */

/*
 * Wait until Busy bit is off, or timeout (in ms)
 * Return last status
 */
static uchar ide_wait (int dev, ulong t)
{
	ulong delay = 10 * t;		/* poll every 100 us */
	uchar c;

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1481
	while ((c = ide_inb(dev, ATA_STATUS)) & ATA_STAT_BUSY) {
W
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1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569
		udelay (100);
		if (delay-- == 0) {
			break;
		}
	}
	return (c);
}

/* ------------------------------------------------------------------------- */

#ifdef CONFIG_IDE_RESET
extern void ide_set_reset(int idereset);

static void ide_reset (void)
{
#if defined(CFG_PB_12V_ENABLE) || defined(CFG_PB_IDE_MOTOR)
	volatile immap_t *immr = (immap_t *)CFG_IMMR;
#endif
	int i;

	curr_device = -1;
	for (i=0; i<CFG_IDE_MAXBUS; ++i)
		ide_bus_ok[i] = 0;
	for (i=0; i<CFG_IDE_MAXDEVICE; ++i)
		ide_dev_desc[i].type = DEV_TYPE_UNKNOWN;

	ide_set_reset (1); /* assert reset */

	WATCHDOG_RESET();

#ifdef CFG_PB_12V_ENABLE
	immr->im_cpm.cp_pbdat &= ~(CFG_PB_12V_ENABLE);	/* 12V Enable output OFF */
	immr->im_cpm.cp_pbpar &= ~(CFG_PB_12V_ENABLE);
	immr->im_cpm.cp_pbodr &= ~(CFG_PB_12V_ENABLE);
	immr->im_cpm.cp_pbdir |=   CFG_PB_12V_ENABLE;

	/* wait 500 ms for the voltage to stabilize
	 */
	for (i=0; i<500; ++i) {
		udelay (1000);
	}

	immr->im_cpm.cp_pbdat |=   CFG_PB_12V_ENABLE;	/* 12V Enable output ON */
#endif	/* CFG_PB_12V_ENABLE */

#ifdef CFG_PB_IDE_MOTOR
	/* configure IDE Motor voltage monitor pin as input */
	immr->im_cpm.cp_pbpar &= ~(CFG_PB_IDE_MOTOR);
	immr->im_cpm.cp_pbodr &= ~(CFG_PB_IDE_MOTOR);
	immr->im_cpm.cp_pbdir &= ~(CFG_PB_IDE_MOTOR);

	/* wait up to 1 s for the motor voltage to stabilize
	 */
	for (i=0; i<1000; ++i) {
		if ((immr->im_cpm.cp_pbdat & CFG_PB_IDE_MOTOR) != 0) {
			break;
		}
		udelay (1000);
	}

	if (i == 1000) {	/* Timeout */
		printf ("\nWarning: 5V for IDE Motor missing\n");
# ifdef CONFIG_STATUS_LED
#  ifdef STATUS_LED_YELLOW
		status_led_set  (STATUS_LED_YELLOW, STATUS_LED_ON );
#  endif
#  ifdef STATUS_LED_GREEN
		status_led_set  (STATUS_LED_GREEN,  STATUS_LED_OFF);
#  endif
# endif	/* CONFIG_STATUS_LED */
	}
#endif	/* CFG_PB_IDE_MOTOR */

	WATCHDOG_RESET();

	/* de-assert RESET signal */
	ide_set_reset(0);

	/* wait 250 ms */
	for (i=0; i<250; ++i) {
		udelay (1000);
	}
}

#endif	/* CONFIG_IDE_RESET */

/* ------------------------------------------------------------------------- */

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1570 1571 1572 1573 1574 1575
#if defined(CONFIG_IDE_LED)	&& \
   !defined(CONFIG_AMIGAONEG3SE)&& \
   !defined(CONFIG_CPC45)	&& \
   !defined(CONFIG_HMI10)	&& \
   !defined(CONFIG_KUP4K)	&& \
   !defined(CONFIG_KUP4X)
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static	uchar	led_buffer = 0;		/* Buffer for current LED status	*/

static void ide_led (uchar led, uchar status)
{
	uchar *led_port = LED_PORT;

	if (status)	{		/* switch LED on	*/
		led_buffer |=  led;
	} else {			/* switch LED off	*/
		led_buffer &= ~led;
	}

	*led_port = led_buffer;
}

#endif	/* CONFIG_IDE_LED */

/* ------------------------------------------------------------------------- */

#ifdef CONFIG_ATAPI
/****************************************************************************
 * ATAPI Support
 */

1601
#if defined(__PPC__) || defined(CONFIG_PXA_PCMCIA)
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/* since ATAPI may use commands with not 4 bytes alligned length
 * we have our own transfer functions, 2 bytes alligned */
static void
output_data_shorts(int dev, ushort *sect_buf, int shorts)
{
1607
#if defined(CONFIG_HMI10) || defined(CONFIG_CPC45)
1608 1609 1610 1611 1612 1613 1614
	uchar	*dbuf;
	volatile uchar	*pbuf_even;
	volatile uchar	*pbuf_odd;

	pbuf_even = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_EVEN);
	pbuf_odd  = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_ODD);
	while (shorts--) {
1615
		EIEIO;
1616
		*pbuf_even = *dbuf++;
1617
		EIEIO;
1618 1619
		*pbuf_odd = *dbuf++;
	}
1620
#else
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	ushort	*dbuf;
	volatile ushort	*pbuf;

	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;
1626

1627
	debug ("in output data shorts base for read is %lx\n", (unsigned long) pbuf);
1628

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	while (shorts--) {
1630
		EIEIO;
1631
		*pbuf = *dbuf++;
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	}
1633 1634 1635 1636 1637 1638 1639
#endif
}

static void
input_data_shorts(int dev, ushort *sect_buf, int shorts)
{
#if defined(CONFIG_HMI10) || defined(CONFIG_CPC45)
1640 1641 1642 1643 1644 1645 1646
	uchar	*dbuf;
	volatile uchar	*pbuf_even;
	volatile uchar	*pbuf_odd;

	pbuf_even = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_EVEN);
	pbuf_odd  = (uchar *)(ATA_CURR_BASE(dev)+ATA_DATA_ODD);
	while (shorts--) {
1647
		EIEIO;
1648
		*dbuf++ = *pbuf_even;
1649
		EIEIO;
1650 1651
		*dbuf++ = *pbuf_odd;
	}
1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665
#else
	ushort	*dbuf;
	volatile ushort	*pbuf;

	pbuf = (ushort *)(ATA_CURR_BASE(dev)+ATA_DATA_REG);
	dbuf = (ushort *)sect_buf;

	debug("in input data shorts base for read is %lx\n", (unsigned long) pbuf);

	while (shorts--) {
		EIEIO;
		*dbuf++ = *pbuf;
	}
#endif
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}

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#else	/* ! __PPC__ */
static void
output_data_shorts(int dev, ushort *sect_buf, int shorts)
{
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	outsw(ATA_CURR_BASE(dev)+ATA_DATA_REG, sect_buf, shorts);
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}

static void
input_data_shorts(int dev, ushort *sect_buf, int shorts)
{
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	insw(ATA_CURR_BASE(dev)+ATA_DATA_REG, sect_buf, shorts);
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}

#endif	/* __PPC__ */

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/*
 * Wait until (Status & mask) == res, or timeout (in ms)
 * Return last status
 * This is used since some ATAPI CD ROMs clears their Busy Bit first
 * and then they set their DRQ Bit
 */
static uchar atapi_wait_mask (int dev, ulong t,uchar mask, uchar res)
{
	ulong delay = 10 * t;		/* poll every 100 us */
	uchar c;

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	c = ide_inb(dev,ATA_DEV_CTL); /* prevents to read the status before valid */
	while (((c = ide_inb(dev, ATA_STATUS)) & mask) != res) {
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		/* break if error occurs (doesn't make sense to wait more) */
		if((c & ATA_STAT_ERR)==ATA_STAT_ERR)
			break;
		udelay (100);
		if (delay-- == 0) {
			break;
		}
	}
	return (c);
}

/*
 * issue an atapi command
 */
unsigned char atapi_issue(int device,unsigned char* ccb,int ccblen, unsigned char * buffer,int buflen)
{
	unsigned char c,err,mask,res;
	int n;
	ide_led (DEVICE_LED(device), 1);	/* LED on	*/

	/* Select device
	 */
	mask = ATA_STAT_BUSY|ATA_STAT_DRQ;
	res = 0;
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#ifdef	CONFIG_AMIGAONEG3SE
# warning THF: Removed LBA mode ???
#endif
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	ide_outb (device, ATA_DEV_HD, ATA_LBA | ATA_DEVICE(device));
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	c = atapi_wait_mask(device,ATAPI_TIME_OUT,mask,res);
	if ((c & mask) != res) {
		printf ("ATAPI_ISSUE: device %d not ready status %X\n", device,c);
		err=0xFF;
		goto AI_OUT;
	}
	/* write taskfile */
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	ide_outb (device, ATA_ERROR_REG, 0); /* no DMA, no overlaped */
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	ide_outb (device, ATA_SECT_CNT, 0);
	ide_outb (device, ATA_SECT_NUM, 0);
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	ide_outb (device, ATA_CYL_LOW,  (unsigned char)(buflen & 0xFF));
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	ide_outb (device, ATA_CYL_HIGH, (unsigned char)((buflen>>8) & 0xFF));
#ifdef	CONFIG_AMIGAONEG3SE
# warning THF: Removed LBA mode ???
#endif
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	ide_outb (device, ATA_DEV_HD,   ATA_LBA | ATA_DEVICE(device));
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	ide_outb (device, ATA_COMMAND,  ATAPI_CMD_PACKET);
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	udelay (50);

	mask = ATA_STAT_DRQ|ATA_STAT_BUSY|ATA_STAT_ERR;
	res = ATA_STAT_DRQ;
	c = atapi_wait_mask(device,ATAPI_TIME_OUT,mask,res);

	if ((c & mask) != res) { /* DRQ must be 1, BSY 0 */
		printf ("ATTAPI_ISSUE: Error (no IRQ) before sending ccb dev %d status 0x%02x\n",device,c);
		err=0xFF;
		goto AI_OUT;
	}

	output_data_shorts (device, (unsigned short *)ccb,ccblen/2); /* write command block */
 	/* ATAPI Command written wait for completition */
	udelay (5000); /* device must set bsy */

	mask = ATA_STAT_DRQ|ATA_STAT_BUSY|ATA_STAT_ERR;
	/* if no data wait for DRQ = 0 BSY = 0
	 * if data wait for DRQ = 1 BSY = 0 */
	res=0;
	if(buflen)
		res = ATA_STAT_DRQ;
	c = atapi_wait_mask(device,ATAPI_TIME_OUT,mask,res);
	if ((c & mask) != res ) {
		if (c & ATA_STAT_ERR) {
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			err=(ide_inb(device,ATA_ERROR_REG))>>4;
1768
			debug ("atapi_issue 1 returned sense key %X status %02X\n",err,c);
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		} else {
			printf ("ATTAPI_ISSUE: (no DRQ) after sending ccb (%x)  status 0x%02x\n", ccb[0],c);
			err=0xFF;
		}
		goto AI_OUT;
	}
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	n=ide_inb(device, ATA_CYL_HIGH);
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	n<<=8;
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	n+=ide_inb(device, ATA_CYL_LOW);
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	if(n>buflen) {
		printf("ERROR, transfer bytes %d requested only %d\n",n,buflen);
		err=0xff;
		goto AI_OUT;
	}
	if((n==0)&&(buflen<0)) {
		printf("ERROR, transfer bytes %d requested %d\n",n,buflen);
		err=0xff;
		goto AI_OUT;
	}
	if(n!=buflen) {
1789
		debug ("WARNING, transfer bytes %d not equal with requested %d\n",n,buflen);
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	}
	if(n!=0) { /* data transfer */
1792
		debug ("ATAPI_ISSUE: %d Bytes to transfer\n",n);
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		 /* we transfer shorts */
		n>>=1;
		/* ok now decide if it is an in or output */
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		if ((ide_inb(device, ATA_SECT_CNT)&0x02)==0) {
1797
			debug ("Write to device\n");
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			output_data_shorts(device,(unsigned short *)buffer,n);
		} else {
1800
			debug ("Read from device @ %p shorts %d\n",buffer,n);
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			input_data_shorts(device,(unsigned short *)buffer,n);
		}
	}
	udelay(5000); /* seems that some CD ROMs need this... */
	mask = ATA_STAT_BUSY|ATA_STAT_ERR;
	res=0;
	c = atapi_wait_mask(device,ATAPI_TIME_OUT,mask,res);
	if ((c & ATA_STAT_ERR) == ATA_STAT_ERR) {
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		err=(ide_inb(device,ATA_ERROR_REG) >> 4);
1810
		debug ("atapi_issue 2 returned sense key %X status %X\n",err,c);
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	} else {
		err = 0;
	}
AI_OUT:
	ide_led (DEVICE_LED(device), 0);	/* LED off	*/
	return (err);
}

/*
 * sending the command to atapi_issue. If an status other than good
 * returns, an request_sense will be issued
 */

#define ATAPI_DRIVE_NOT_READY 	100
#define ATAPI_UNIT_ATTN		10

unsigned char atapi_issue_autoreq (int device,
				   unsigned char* ccb,
				   int ccblen,
				   unsigned char *buffer,
				   int buflen)
{
	unsigned char sense_data[18],sense_ccb[12];
	unsigned char res,key,asc,ascq;
	int notready,unitattn;

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#ifdef CONFIG_AMIGAONEG3SE
	char *s;
	unsigned int timeout, retrycnt;

	s = getenv("ide_cd_timeout");
	timeout = s ? (simple_strtol(s, NULL, 10)*1000000)/5 : 0;

	retrycnt = 0;
#endif

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	unitattn=ATAPI_UNIT_ATTN;
	notready=ATAPI_DRIVE_NOT_READY;

retry:
	res= atapi_issue(device,ccb,ccblen,buffer,buflen);
	if (res==0)
		return (0); /* Ok */

	if (res==0xFF)
		return (0xFF); /* error */

1858
	debug ("(auto_req)atapi_issue returned sense key %X\n",res);
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	memset(sense_ccb,0,sizeof(sense_ccb));
	memset(sense_data,0,sizeof(sense_data));
	sense_ccb[0]=ATAPI_CMD_REQ_SENSE;
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	sense_ccb[4]=18; /* allocation Length */
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	res=atapi_issue(device,sense_ccb,12,sense_data,18);
	key=(sense_data[2]&0xF);
	asc=(sense_data[12]);
	ascq=(sense_data[13]);

1870 1871
	debug ("ATAPI_CMD_REQ_SENSE returned %x\n",res);
	debug (" Sense page: %02X key %02X ASC %02X ASCQ %02X\n",
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		sense_data[0],
		key,
		asc,
		ascq);

	if((key==0))
		return 0; /* ok device ready */

	if((key==6)|| (asc==0x29) || (asc==0x28)) { /* Unit Attention */
		if(unitattn-->0) {
			udelay(200*1000);
			goto retry;
		}
		printf("Unit Attention, tried %d\n",ATAPI_UNIT_ATTN);
		goto error;
	}
	if((asc==0x4) && (ascq==0x1)) { /* not ready, but will be ready soon */
		if (notready-->0) {
			udelay(200*1000);
			goto retry;
		}
		printf("Drive not ready, tried %d times\n",ATAPI_DRIVE_NOT_READY);
		goto error;
	}
	if(asc==0x3a) {
1897
		debug ("Media not present\n");
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		goto error;
	}
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#ifdef CONFIG_AMIGAONEG3SE
	if ((sense_data[2]&0xF)==0x0B) {
1903
		debug ("ABORTED COMMAND...retry\n");
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		if (retrycnt++ < 4)
			goto retry;
		return (0xFF);
	}

	if ((sense_data[2]&0xf) == 0x02 &&
	    sense_data[12] == 0x04	&&
	    sense_data[13] == 0x01	) {
1912
		debug ("Waiting for unit to become active\n");
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		udelay(timeout);
		if (retrycnt++ < 4)
			goto retry;
		return 0xFF;
	}
#endif	/* CONFIG_AMIGAONEG3SE */

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	printf ("ERROR: Unknown Sense key %02X ASC %02X ASCQ %02X\n",key,asc,ascq);
error:
1922
	debug  ("ERROR Sense key %02X ASC %02X ASCQ %02X\n",key,asc,ascq);
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	return (0xFF);
}


static void	atapi_inquiry(block_dev_desc_t * dev_desc)
{
	unsigned char ccb[12]; /* Command descriptor block */
	unsigned char iobuf[64]; /* temp buf */
	unsigned char c;
	int device;

	device=dev_desc->dev;
	dev_desc->type=DEV_TYPE_UNKNOWN; /* not yet valid */
	dev_desc->block_read=atapi_read;

	memset(ccb,0,sizeof(ccb));
	memset(iobuf,0,sizeof(iobuf));

	ccb[0]=ATAPI_CMD_INQUIRY;
	ccb[4]=40; /* allocation Legnth */
	c=atapi_issue_autoreq(device,ccb,12,(unsigned char *)iobuf,40);

1945
	debug ("ATAPI_CMD_INQUIRY returned %x\n",c);
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	if (c!=0)
		return;

	/* copy device ident strings */
	ident_cpy(dev_desc->vendor,&iobuf[8],8);
	ident_cpy(dev_desc->product,&iobuf[16],16);
	ident_cpy(dev_desc->revision,&iobuf[32],5);

	dev_desc->lun=0;
	dev_desc->lba=0;
	dev_desc->blksz=0;
	dev_desc->type=iobuf[0] & 0x1f;

	if ((iobuf[1]&0x80)==0x80)
		dev_desc->removable = 1;
	else
		dev_desc->removable = 0;

	memset(ccb,0,sizeof(ccb));
	memset(iobuf,0,sizeof(iobuf));
	ccb[0]=ATAPI_CMD_START_STOP;
	ccb[4]=0x03; /* start */

	c=atapi_issue_autoreq(device,ccb,12,(unsigned char *)iobuf,0);

1971
	debug ("ATAPI_CMD_START_STOP returned %x\n",c);
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	if (c!=0)
		return;

	memset(ccb,0,sizeof(ccb));
	memset(iobuf,0,sizeof(iobuf));
	c=atapi_issue_autoreq(device,ccb,12,(unsigned char *)iobuf,0);

1979
	debug ("ATAPI_CMD_UNIT_TEST_READY returned %x\n",c);
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	if (c!=0)
		return;

	memset(ccb,0,sizeof(ccb));
	memset(iobuf,0,sizeof(iobuf));
	ccb[0]=ATAPI_CMD_READ_CAP;
	c=atapi_issue_autoreq(device,ccb,12,(unsigned char *)iobuf,8);
1987
	debug ("ATAPI_CMD_READ_CAP returned %x\n",c);
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	if (c!=0)
		return;

1991
	debug ("Read Cap: LBA %02X%02X%02X%02X blksize %02X%02X%02X%02X\n",
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		iobuf[0],iobuf[1],iobuf[2],iobuf[3],
		iobuf[4],iobuf[5],iobuf[6],iobuf[7]);

	dev_desc->lba  =((unsigned long)iobuf[0]<<24) +
			((unsigned long)iobuf[1]<<16) +
			((unsigned long)iobuf[2]<< 8) +
			((unsigned long)iobuf[3]);
	dev_desc->blksz=((unsigned long)iobuf[4]<<24) +
			((unsigned long)iobuf[5]<<16) +
			((unsigned long)iobuf[6]<< 8) +
			((unsigned long)iobuf[7]);
2003
#ifdef CONFIG_LBA48
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	dev_desc->lba48 = 0; /* ATAPI devices cannot use 48bit addressing (ATA/ATAPI v7) */
2005
#endif
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	return;
}


/*
 * atapi_read:
 * we transfer only one block per command, since the multiple DRQ per
 * command is not yet implemented
 */
#define ATAPI_READ_MAX_BYTES	2048	/* we read max 2kbytes */
#define ATAPI_READ_BLOCK_SIZE	2048	/* assuming CD part */
#define ATAPI_READ_MAX_BLOCK ATAPI_READ_MAX_BYTES/ATAPI_READ_BLOCK_SIZE	/* max blocks */

2019
ulong atapi_read (int device, lbaint_t blknr, ulong blkcnt, void *buffer)
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{
	ulong n = 0;
	unsigned char ccb[12]; /* Command descriptor block */
	ulong cnt;

2025
	debug  ("atapi_read dev %d start %lX, blocks %lX buffer at %lX\n",
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		device, blknr, blkcnt, (ulong)buffer);

	do {
		if (blkcnt>ATAPI_READ_MAX_BLOCK) {
			cnt=ATAPI_READ_MAX_BLOCK;
		} else {
			cnt=blkcnt;
		}
		ccb[0]=ATAPI_CMD_READ_12;
		ccb[1]=0; /* reserved */
		ccb[2]=(unsigned char) (blknr>>24) & 0xFF; /* MSB Block */
		ccb[3]=(unsigned char) (blknr>>16) & 0xFF; /*  */
		ccb[4]=(unsigned char) (blknr>> 8) & 0xFF;
		ccb[5]=(unsigned char)  blknr      & 0xFF; /* LSB Block */
		ccb[6]=(unsigned char) (cnt  >>24) & 0xFF; /* MSB Block count */
		ccb[7]=(unsigned char) (cnt  >>16) & 0xFF;
		ccb[8]=(unsigned char) (cnt  >> 8) & 0xFF;
		ccb[9]=(unsigned char)  cnt	   & 0xFF; /* LSB Block */
		ccb[10]=0; /* reserved */
		ccb[11]=0; /* reserved */

		if (atapi_issue_autoreq(device,ccb,12,
					(unsigned char *)buffer,
					cnt*ATAPI_READ_BLOCK_SIZE) == 0xFF) {
			return (n);
		}
		n+=cnt;
		blkcnt-=cnt;
		blknr+=cnt;
2055
		buffer+=(cnt*ATAPI_READ_BLOCK_SIZE);
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	} while (blkcnt > 0);
	return (n);
}

/* ------------------------------------------------------------------------- */

#endif /* CONFIG_ATAPI */

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U_BOOT_CMD(
	ide,  5,  1,  do_ide,
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	"ide     - IDE sub-system\n",
	"reset - reset IDE controller\n"
	"ide info  - show available IDE devices\n"
	"ide device [dev] - show or set current device\n"
	"ide part [dev] - print partition table of one or all IDE devices\n"
	"ide read  addr blk# cnt\n"
	"ide write addr blk# cnt - read/write `cnt'"
	" blocks starting at block `blk#'\n"
	"    to/from memory address `addr'\n"
);

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U_BOOT_CMD(
	diskboot,	3,	1,	do_diskboot,
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	"diskboot- boot from IDE device\n",
	"loadAddr dev:part\n"
);

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#endif	/* CONFIG_COMMANDS & CFG_CMD_IDE */