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	instead CFG_MONITOR_LEN is now only used to determine _at_compile_ _time_ (!) if the environment is embedded within the U-Boot image, or in a separate flash sector. * Cleanup CFG_DER #defines in config files (wd maintained only)
		
			
				
	
	
		
			524 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			524 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * (C) Copyright 2001
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 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
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 *
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 * See file CREDITS for list of people who contributed to this
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 * project.
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 *
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 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public License as
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 * published by the Free Software Foundation; either version 2 of
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 * the License, or (at your option) any later version.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, write to the Free Software
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 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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 * MA 02111-1307 USA
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 */
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#include <common.h>
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#include <configs/sacsng.h>
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#undef  DEBUG
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#ifndef	CFG_ENV_ADDR
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#define CFG_ENV_ADDR	(CFG_FLASH_BASE + CFG_ENV_OFFSET)
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#endif
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#ifndef CFG_ENV_SIZE
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#define CFG_ENV_SIZE	CFG_ENV_SECT_SIZE
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#endif
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flash_info_t	flash_info[CFG_MAX_FLASH_BANKS]; /* info for FLASH chips	*/
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/*-----------------------------------------------------------------------
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 * Functions
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 */
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static ulong flash_get_size (vu_short *addr, flash_info_t *info);
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static int write_word (flash_info_t *info, ulong dest, ulong data);
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/*-----------------------------------------------------------------------
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 */
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unsigned long flash_init (void)
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{
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	unsigned long size_b0, size_b1;
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	int i;
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	/* Init: no FLASHes known */
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	for (i=0; i<CFG_MAX_FLASH_BANKS; ++i) {
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		flash_info[i].flash_id = FLASH_UNKNOWN;
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	}
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	size_b0 = flash_get_size((vu_short *)CFG_FLASH0_BASE, &flash_info[0]);
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	if (flash_info[0].flash_id == FLASH_UNKNOWN) {
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		printf ("## Unknown FLASH on Bank 0 - Size = 0x%08lx = %ld MB\n",
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			size_b0, size_b0<<20);
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	}
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	size_b1 = flash_get_size((vu_short *)CFG_FLASH1_BASE, &flash_info[1]);
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#if CFG_MONITOR_BASE >= CFG_FLASH_BASE
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	/* monitor protection ON by default */
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	flash_protect(FLAG_PROTECT_SET,
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		      CFG_MONITOR_BASE,
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		      CFG_MONITOR_BASE+monitor_flash_len-1,
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		      &flash_info[0]);
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#endif
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#ifdef	CFG_ENV_IS_IN_FLASH
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	/* ENV protection ON by default */
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	flash_protect(FLAG_PROTECT_SET,
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		      CFG_ENV_ADDR,
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		      CFG_ENV_ADDR+CFG_ENV_SIZE-1,
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		      &flash_info[0]);
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#endif
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	if (size_b1) {
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#if CFG_MONITOR_BASE >= CFG_FLASH_BASE
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		/* monitor protection ON by default */
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		flash_protect(FLAG_PROTECT_SET,
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			      CFG_MONITOR_BASE,
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			      CFG_MONITOR_BASE+monitor_flash_len-1,
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			      &flash_info[1]);
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#endif
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#ifdef	CFG_ENV_IS_IN_FLASH
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		/* ENV protection ON by default */
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		flash_protect(FLAG_PROTECT_SET,
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			      CFG_ENV_ADDR,
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			      CFG_ENV_ADDR+CFG_ENV_SIZE-1,
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			      &flash_info[1]);
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#endif
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	} else {
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		flash_info[1].flash_id = FLASH_UNKNOWN;
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		flash_info[1].sector_count = -1;
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	}
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	flash_info[0].size = size_b0;
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	flash_info[1].size = size_b1;
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	/*
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	 * We only report the primary flash for U-Boot's use.
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	 */
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	return (size_b0);
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}
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/*-----------------------------------------------------------------------
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 */
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void flash_print_info  (flash_info_t *info)
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{
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	int i;
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	if (info->flash_id == FLASH_UNKNOWN) {
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		printf ("missing or unknown FLASH type\n");
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		return;
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	}
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	switch (info->flash_id & FLASH_VENDMASK) {
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	case FLASH_MAN_AMD:	printf ("AMD ");		break;
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	case FLASH_MAN_FUJ:	printf ("FUJITSU ");		break;
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	default:		printf ("Unknown Vendor ");	break;
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	}
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	switch (info->flash_id & FLASH_TYPEMASK) {
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	case FLASH_AM400B:	printf ("AM29LV400B (4 Mbit, bottom boot sect)\n");
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				break;
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	case FLASH_AM400T:	printf ("AM29LV400T (4 Mbit, top boot sector)\n");
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				break;
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	case FLASH_AM800B:	printf ("AM29LV800B (8 Mbit, bottom boot sect)\n");
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				break;
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	case FLASH_AM800T:	printf ("AM29LV800T (8 Mbit, top boot sector)\n");
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				break;
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	case FLASH_AM160B:	printf ("AM29LV160B (16 Mbit, bottom boot sect)\n");
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				break;
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	case FLASH_AM160T:	printf ("AM29LV160T (16 Mbit, top boot sector)\n");
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				break;
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	case FLASH_AM320B:	printf ("AM29LV320B (32 Mbit, bottom boot sect)\n");
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				break;
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	case FLASH_AM320T:	printf ("AM29LV320T (32 Mbit, top boot sector)\n");
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				break;
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	default:		printf ("Unknown Chip Type\n");
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				break;
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	}
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	printf ("  Size: %ld MB in %d Sectors\n",
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		info->size >> 20, info->sector_count);
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	printf ("  Sector Start Addresses:");
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	for (i=0; i<info->sector_count; ++i) {
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		if ((i % 5) == 0)
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			printf ("\n   ");
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		printf (" %08lX%s",
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			info->start[i],
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			info->protect[i] ? " (RO)" : "     "
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		);
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	}
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	printf ("\n");
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	return;
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}
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/*-----------------------------------------------------------------------
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 */
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/*-----------------------------------------------------------------------
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 */
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/*
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 * The following code cannot be run from FLASH!
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 */
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static ulong flash_get_size (vu_short *addr, flash_info_t *info)
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{
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	short i;
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	ushort value;
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	ulong  base = (ulong)addr;
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	/* Write auto select command: read Manufacturer ID */
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	addr[0x0555] = 0xAAAA;
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	addr[0x02AA] = 0x5555;
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	addr[0x0555] = 0x9090;
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	__asm__ __volatile__(" sync\n ");
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	value = addr[0];
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#ifdef DEBUG
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	printf("Flash manufacturer 0x%04X\n", value);
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#endif
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	if(value == (ushort)AMD_MANUFACT) {
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		info->flash_id = FLASH_MAN_AMD;
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	} else if (value == (ushort)FUJ_MANUFACT) {
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		info->flash_id = FLASH_MAN_FUJ;
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	} else {
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#ifdef DEBUG
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		printf("Unknown flash manufacturer 0x%04X\n", value);
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#endif
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		info->flash_id = FLASH_UNKNOWN;
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		info->sector_count = 0;
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		info->size = 0;
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		return (0);			/* no or unknown flash	*/
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	}
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	value = addr[1];			/* device ID		*/
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#ifdef DEBUG
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	printf("Flash type 0x%04X\n", value);
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#endif
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	if(value == (ushort)AMD_ID_LV400T) {
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		info->flash_id += FLASH_AM400T;
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		info->sector_count = 11;
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		info->size = 0x00080000;	/* => 0.5 MB		*/
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	} else if(value == (ushort)AMD_ID_LV400B) {
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		info->flash_id += FLASH_AM400B;
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		info->sector_count = 11;
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		info->size = 0x00080000;	/* => 0.5 MB		*/
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	} else if(value == (ushort)AMD_ID_LV800T) {
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		info->flash_id += FLASH_AM800T;
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		info->sector_count = 19;
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		info->size = 0x00100000;	/* => 1 MB		*/
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	} else if(value == (ushort)AMD_ID_LV800B) {
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		info->flash_id += FLASH_AM800B;
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		info->sector_count = 19;
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		info->size = 0x00100000;	/* => 1 MB		*/
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	} else if(value == (ushort)AMD_ID_LV160T) {
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		info->flash_id += FLASH_AM160T;
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		info->sector_count = 35;
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		info->size = 0x00200000;	/* => 2 MB		*/
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	} else if(value == (ushort)AMD_ID_LV160B) {
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		info->flash_id += FLASH_AM160B;
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		info->sector_count = 35;
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		info->size = 0x00200000;	/* => 2 MB		*/
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	} else if(value == (ushort)AMD_ID_LV320T) {
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		info->flash_id += FLASH_AM320T;
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		info->sector_count = 67;
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		info->size = 0x00400000;	/* => 4 MB		*/
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	} else if(value == (ushort)AMD_ID_LV320B) {
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		info->flash_id += FLASH_AM320B;
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		info->sector_count = 67;
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		info->size = 0x00400000;	/* => 4 MB		*/
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	} else {
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#ifdef DEBUG
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		printf("Unknown flash type 0x%04X\n", value);
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		info->size = CFG_FLASH_SIZE;
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#else
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		info->flash_id = FLASH_UNKNOWN;
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		return (0);			/* => no or unknown flash */
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#endif
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	}
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	/* set up sector start address table */
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	if (info->flash_id & FLASH_BTYPE) {
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		/* set sector offsets for bottom boot block type	*/
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		info->start[0] = base + 0x00000000;
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		info->start[1] = base + 0x00004000;
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		info->start[2] = base + 0x00006000;
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		info->start[3] = base + 0x00008000;
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		for (i = 4; i < info->sector_count; i++) {
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			info->start[i] = base + ((i - 3) * 0x00010000);
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		}
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	} else {
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		/* set sector offsets for top boot block type		*/
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		i = info->sector_count - 1;
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		info->start[i--] = base + info->size - 0x00004000;
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		info->start[i--] = base + info->size - 0x00006000;
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		info->start[i--] = base + info->size - 0x00008000;
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		for (; i >= 0; i--) {
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			info->start[i] = base + (i * 0x00010000);
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		}
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	}
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	/* check for protected sectors */
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	for (i = 0; i < info->sector_count; i++) {
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		/* read sector protection at sector address, (A7 .. A0) = 0x02 */
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		/* D0 = 1 if protected */
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		addr = (volatile unsigned short *)(info->start[i]);
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		info->protect[i] = addr[2] & 1;
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	}
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	/*
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	 * Prevent writes to uninitialized FLASH.
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	 */
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	if (info->flash_id != FLASH_UNKNOWN) {
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		addr = (volatile unsigned short *)info->start[0];
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	}
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	addr[0] = 0xF0F0;	/* reset bank */
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	__asm__ __volatile__(" sync\n ");
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	return (info->size);
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}
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/*-----------------------------------------------------------------------
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 */
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int	flash_erase (flash_info_t *info, int s_first, int s_last)
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{
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	vu_short *addr = (vu_short*)(info->start[0]);
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	int flag, prot, sect, l_sect;
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	ulong start, now, last;
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	if ((s_first < 0) || (s_first > s_last)) {
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		if (info->flash_id == FLASH_UNKNOWN) {
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			printf ("- missing\n");
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		} else {
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			printf ("- no sectors to erase\n");
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		}
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		return 1;
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	}
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	if ((info->flash_id == FLASH_UNKNOWN) ||
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	    (info->flash_id > FLASH_AMD_COMP)) {
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		printf ("Can't erase unknown flash type %08lx - aborted\n",
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			info->flash_id);
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		return 1;
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	}
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 | 
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	prot = 0;
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	for (sect=s_first; sect<=s_last; ++sect) {
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		if (info->protect[sect]) {
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			prot++;
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		}
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	}
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 | 
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	if (prot) {
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		printf ("- Warning: %d protected sectors will not be erased!\n",
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			prot);
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	} else {
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		printf ("\n");
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	}
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	l_sect = -1;
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 | 
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	/* Disable interrupts which might cause a timeout here */
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	flag = disable_interrupts();
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	addr[0x0555] = 0xAAAA;
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	addr[0x02AA] = 0x5555;
 | 
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	addr[0x0555] = 0x8080;
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	addr[0x0555] = 0xAAAA;
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	addr[0x02AA] = 0x5555;
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	__asm__ __volatile__(" sync\n ");
 | 
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 | 
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	/* Start erase on unprotected sectors */
 | 
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	for (sect = s_first; sect<=s_last; sect++) {
 | 
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		if (info->protect[sect] == 0) {	/* not protected */
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			addr = (vu_short*)(info->start[sect]);
 | 
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			addr[0] = 0x3030;
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			l_sect = sect;
 | 
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		}
 | 
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	}
 | 
						|
 | 
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	/* re-enable interrupts if necessary */
 | 
						|
	if (flag)
 | 
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		enable_interrupts();
 | 
						|
 | 
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	/* wait at least 80us - let's wait 1 ms */
 | 
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	udelay (1000);
 | 
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 | 
						|
	/*
 | 
						|
	 * We wait for the last triggered sector
 | 
						|
	 */
 | 
						|
	if (l_sect < 0)
 | 
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		goto DONE;
 | 
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 | 
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	start = get_timer (0);
 | 
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	last  = start;
 | 
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	addr = (vu_short*)(info->start[l_sect]);
 | 
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	while ((addr[0] & 0x0080) != 0x0080) {
 | 
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		if ((now = get_timer(start)) > CFG_FLASH_ERASE_TOUT) {
 | 
						|
			printf ("Timeout\n");
 | 
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			addr[0] = 0xF0F0;	/* reset bank */
 | 
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			__asm__ __volatile__(" sync\n ");
 | 
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			return 1;
 | 
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		}
 | 
						|
		/* show that we're waiting */
 | 
						|
		if ((now - last) > 1000) {	/* every second */
 | 
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			putc ('.');
 | 
						|
			last = now;
 | 
						|
		}
 | 
						|
	}
 | 
						|
 | 
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DONE:
 | 
						|
	/* reset to read mode */
 | 
						|
	addr = (vu_short*)info->start[0];
 | 
						|
	addr[0] = 0xF0F0;	/* reset bank */
 | 
						|
	__asm__ __volatile__(" sync\n ");
 | 
						|
 | 
						|
	printf (" done\n");
 | 
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	return 0;
 | 
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}
 | 
						|
 | 
						|
/*-----------------------------------------------------------------------
 | 
						|
 * Copy memory to flash, returns:
 | 
						|
 * 0 - OK
 | 
						|
 * 1 - write timeout
 | 
						|
 * 2 - Flash not erased
 | 
						|
 */
 | 
						|
 | 
						|
int write_buff (flash_info_t *info, uchar *src, ulong addr, ulong cnt)
 | 
						|
{
 | 
						|
	ulong cp, wp, data;
 | 
						|
	int i, l, rc;
 | 
						|
 | 
						|
	wp = (addr & ~3);	/* get lower word aligned address */
 | 
						|
 | 
						|
	/*
 | 
						|
	 * handle unaligned start bytes
 | 
						|
	 */
 | 
						|
	if ((l = addr - wp) != 0) {
 | 
						|
		data = 0;
 | 
						|
		for (i=0, cp=wp; i<l; ++i, ++cp) {
 | 
						|
			data = (data << 8) | (*(uchar *)cp);
 | 
						|
		}
 | 
						|
		for (; i<4 && cnt>0; ++i) {
 | 
						|
			data = (data << 8) | *src++;
 | 
						|
			--cnt;
 | 
						|
			++cp;
 | 
						|
		}
 | 
						|
		for (; cnt==0 && i<4; ++i, ++cp) {
 | 
						|
			data = (data << 8) | (*(uchar *)cp);
 | 
						|
		}
 | 
						|
 | 
						|
		if ((rc = write_word(info, wp, data)) != 0) {
 | 
						|
			return (rc);
 | 
						|
		}
 | 
						|
		wp += 4;
 | 
						|
	}
 | 
						|
 | 
						|
	/*
 | 
						|
	 * handle word aligned part
 | 
						|
	 */
 | 
						|
	while (cnt >= 4) {
 | 
						|
		data = 0;
 | 
						|
		for (i=0; i<4; ++i) {
 | 
						|
			data = (data << 8) | *src++;
 | 
						|
		}
 | 
						|
		if ((rc = write_word(info, wp, data)) != 0) {
 | 
						|
			return (rc);
 | 
						|
		}
 | 
						|
		wp  += 4;
 | 
						|
		cnt -= 4;
 | 
						|
	}
 | 
						|
 | 
						|
	if (cnt == 0) {
 | 
						|
		return (0);
 | 
						|
	}
 | 
						|
 | 
						|
	/*
 | 
						|
	 * handle unaligned tail bytes
 | 
						|
	 */
 | 
						|
	data = 0;
 | 
						|
	for (i=0, cp=wp; i<4 && cnt>0; ++i, ++cp) {
 | 
						|
		data = (data << 8) | *src++;
 | 
						|
		--cnt;
 | 
						|
	}
 | 
						|
	for (; i<4; ++i, ++cp) {
 | 
						|
		data = (data << 8) | (*(uchar *)cp);
 | 
						|
	}
 | 
						|
 | 
						|
	return (write_word(info, wp, data));
 | 
						|
}
 | 
						|
 | 
						|
/*-----------------------------------------------------------------------
 | 
						|
 * Write a word to Flash, returns:
 | 
						|
 * 0 - OK
 | 
						|
 * 1 - write timeout
 | 
						|
 * 2 - Flash not erased
 | 
						|
 */
 | 
						|
static int write_word (flash_info_t *info, ulong dest, ulong data)
 | 
						|
{
 | 
						|
	vu_short *addr = (vu_short*)(info->start[0]);
 | 
						|
	ulong start;
 | 
						|
	int flag;
 | 
						|
	int j;
 | 
						|
 | 
						|
	/* Check if Flash is (sufficiently) erased */
 | 
						|
	if (((*(vu_long *)dest) & data) != data) {
 | 
						|
		return (2);
 | 
						|
	}
 | 
						|
	/* Disable interrupts which might cause a timeout here */
 | 
						|
	flag = disable_interrupts();
 | 
						|
 | 
						|
	/* The original routine was designed to write 32 bit words to
 | 
						|
	 * 32 bit wide memory.	We have 16 bit wide memory so we do
 | 
						|
	 * two writes.	We write the LSB first at dest+2 and then the
 | 
						|
	 * MSB at dest (lousy big endian).
 | 
						|
	 */
 | 
						|
	dest += 2;
 | 
						|
	for(j = 0; j < 2; j++) {
 | 
						|
		addr[0x0555] = 0xAAAA;
 | 
						|
		addr[0x02AA] = 0x5555;
 | 
						|
		addr[0x0555] = 0xA0A0;
 | 
						|
		__asm__ __volatile__(" sync\n ");
 | 
						|
 | 
						|
		*((vu_short *)dest) = (ushort)data;
 | 
						|
 | 
						|
		/* re-enable interrupts if necessary */
 | 
						|
		if (flag)
 | 
						|
			enable_interrupts();
 | 
						|
 | 
						|
		/* data polling for D7 */
 | 
						|
		start = get_timer (0);
 | 
						|
		while (*(vu_short *)dest != (ushort)data) {
 | 
						|
			if (get_timer(start) > CFG_FLASH_WRITE_TOUT) {
 | 
						|
				return (1);
 | 
						|
			}
 | 
						|
		}
 | 
						|
		dest -= 2;
 | 
						|
		data >>= 16;
 | 
						|
	}
 | 
						|
	return (0);
 | 
						|
}
 | 
						|
 | 
						|
/*-----------------------------------------------------------------------
 | 
						|
 */
 |