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	- fix spelling errors
  - set GD_FLG_DEVINIT flag only after device function pointers
    are valid
  - Allow CFG_ALT_MEMTEST on systems where address zero isn't
    writeable
  - enable 3.rd UART (ST-UART) on PXA(XScale) CPUs
  - trigger watchdog while waiting in serial driver
		
	
			
		
			
				
	
	
		
			810 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			810 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  * (C) Copyright 2002, 2003
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|  * Daniel Engström, Omicron Ceti AB, daniel@omicron.se
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|  *
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|  * (C) Copyright 2002
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|  * Sysgo Real-Time Solutions, GmbH <www.elinos.com>
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|  * Alex Zuepke <azu@sysgo.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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| 
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| #include <common.h>
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| #include <asm/io.h>
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| #include <pci.h>
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| #include <asm/ic/sc520.h>
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| 
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| #define PROBE_BUFFER_SIZE 1024
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| static unsigned char buffer[PROBE_BUFFER_SIZE];
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| 
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| 
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| #define SC520_MAX_FLASH_BANKS  1
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| #define SC520_FLASH_BANK0_BASE 0x38000000  /* BOOTCS */
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| #define SC520_FLASH_BANKSIZE   0x8000000
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| 
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| #define A29LV641DH_SIZE        0x800000
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| #define A29LV641DH_SECTORS     128
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| 
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| #define A29LV641MH_SIZE        0x800000
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| #define A29LV641MH_SECTORS     128
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| 
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| #define I28F320J3A_SIZE        0x400000
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| #define I28F320J3A_SECTORS     32
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| 
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| #define I28F640J3A_SIZE        0x800000
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| #define I28F640J3A_SECTORS     64
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| 
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| #define I28F128J3A_SIZE        0x1000000
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| #define I28F128J3A_SECTORS     128
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| 
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| flash_info_t    flash_info[SC520_MAX_FLASH_BANKS];
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| 
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| #define READY 1
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| #define ERR   2
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| #define TMO   4
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| 
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| /*-----------------------------------------------------------------------
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|  */
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| 
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| 
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| static u32 _probe_flash(u32 addr, u32 bw, int il)
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| {
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| 	u32 result=0;
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| 
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| 	/* First do an unlock cycle for the benefit of
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| 	 * devices that need it */
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| 
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| 	switch (bw) {
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| 
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| 	case 1:
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| 		*(volatile u8*)(addr+0x5555) = 0xaa;
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| 		*(volatile u8*)(addr+0x2aaa) = 0x55;
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| 		*(volatile u8*)(addr+0x5555) = 0x90;
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| 
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| 		/* Read vendor */
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| 		result = *(volatile u8*)addr;
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| 		result <<= 16;
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| 
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| 		/* Read device */
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| 		result |= *(volatile u8*)(addr+2);
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| 
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| 		/* Return device to data mode */
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| 		*(volatile u8*)addr = 0xff;
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| 		*(volatile u8*)(addr+0x5555), 0xf0;
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| 		break;
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| 
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| 	case 2:
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| 		*(volatile u16*)(addr+0xaaaa) = 0xaaaa;
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| 		*(volatile u16*)(addr+0x5554) = 0x5555;
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| 
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| 		/* Issue identification command */
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| 		if (il == 2) {
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| 			*(volatile u16*)(addr+0xaaaa) = 0x9090;
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| 
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| 			/* Read vendor */
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| 			result = *(volatile u8*)addr;
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| 			result <<= 16;
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| 
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| 			/* Read device */
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| 			result |= *(volatile u8*)(addr+2);
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| 
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| 			/* Return device to data mode */
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| 			*(volatile u16*)addr =  0xffff;
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| 			*(volatile u16*)(addr+0xaaaa), 0xf0f0;
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| 
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| 		} else {
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| 			*(volatile u8*)(addr+0xaaaa) = 0x90;
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| 			/* Read vendor */
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| 			result = *(volatile u16*)addr;
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| 			result <<= 16;
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| 
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| 			/* Read device */
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| 			result |= *(volatile u16*)(addr+2);
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| 
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| 			/* Return device to data mode */
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| 			*(volatile u8*)addr = 0xff;
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| 			*(volatile u8*)(addr+0xaaaa), 0xf0;
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| 		}
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| 
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| 		break;
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| 
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| 	 case 4:
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| 		*(volatile u32*)(addr+0x5554) = 0xaaaaaaaa;
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| 		*(volatile u32*)(addr+0xaaa8) = 0x55555555;
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| 
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| 		switch (il) {
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| 		case 1:
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| 			/* Issue identification command */
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| 			*(volatile u8*)(addr+0x5554) = 0x90;
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| 
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| 			/* Read vendor */
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| 			result = *(volatile u16*)addr;
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| 			result <<= 16;
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| 
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| 			/* Read device */
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| 			result |= *(volatile u16*)(addr+4);
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| 
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| 			/* Return device to data mode */
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| 			*(volatile u8*)addr =  0xff;
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| 			*(volatile u8*)(addr+0x5554), 0xf0;
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| 			break;
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| 
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| 		case 2:
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| 			/* Issue identification command */
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| 			*(volatile u32*)(addr + 0x5554) = 0x00900090;
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| 
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| 			/* Read vendor */
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| 			result = *(volatile u16*)addr;
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| 			result <<= 16;
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| 
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| 			/* Read device */
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| 			result |= *(volatile u16*)(addr+4);
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| 
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| 			/* Return device to data mode */
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| 			*(volatile u32*)addr =  0x00ff00ff;
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| 			*(volatile u32*)(addr+0x5554), 0x00f000f0;
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| 			break;
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| 
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| 		case 4:
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| 			/* Issue identification command */
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| 			*(volatile u32*)(addr+0x5554) = 0x90909090;
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| 
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| 			/* Read vendor */
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| 			result = *(volatile u8*)addr;
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| 			result <<= 16;
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| 
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| 			/* Read device */
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| 			result |= *(volatile u8*)(addr+4);
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| 
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| 			/* Return device to data mode */
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| 			*(volatile u32*)addr =  0xffffffff;
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| 			*(volatile u32*)(addr+0x5554), 0xf0f0f0f0;
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| 			break;
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| 		}
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| 		break;
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| 	}
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| 
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| 
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| 	return result;
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| }
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| 
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| extern int _probe_flash_end;
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| asm ("_probe_flash_end:\n"
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|      ".long 0\n");
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| 
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| static int identify_flash(unsigned address, int width)
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| {
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| 	int is;
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| 	int device;
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| 	int vendor;
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| 	int size;
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| 	unsigned res;
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| 
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| 	u32 (*_probe_flash_ptr)(u32 a, u32 bw, int il);
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| 
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| 	size = (unsigned)&_probe_flash_end - (unsigned)_probe_flash;
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| 
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| 	if (size > PROBE_BUFFER_SIZE) {
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| 		printf("_probe_flash() routine too large (%d) %p - %p\n",
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| 		       size, &_probe_flash_end, _probe_flash);
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| 		return 0;
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| 	}
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| 
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| 	memcpy(buffer, _probe_flash, size);
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| 	_probe_flash_ptr = (void*)buffer;
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| 
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| 	is = disable_interrupts();
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| 	res = _probe_flash_ptr(address, width, 1);
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| 	if (is) {
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| 		enable_interrupts();
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| 	}
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| 
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| 
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| 	vendor = res >> 16;
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| 	device = res & 0xffff;
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| 
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| 
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| 	return res;
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| }
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| 
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| ulong flash_init(void)
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| {
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| 	int i, j;
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| 	ulong size = 0;
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| 
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| 	for (i = 0; i < SC520_MAX_FLASH_BANKS; i++) {
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| 		unsigned id;
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| 		ulong flashbase = 0;
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| 		int sectsize = 0;
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| 
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| 		memset(flash_info[i].protect, 0, CFG_MAX_FLASH_SECT);
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| 		switch (i) {
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| 		case 0:
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| 			flashbase = SC520_FLASH_BANK0_BASE;
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| 			break;
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| 		default:
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| 			panic("configured too many flash banks!\n");
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| 		}
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| 
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| 		id = identify_flash(flashbase, 2);
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| 		switch (id) {
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| 		case 0x000122d7:
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| 			/* 29LV641DH */
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| 			flash_info[i].flash_id =
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| 				(AMD_MANUFACT & FLASH_VENDMASK) |
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| 				(AMD_ID_LV640U & FLASH_TYPEMASK);
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| 
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| 			flash_info[i].size = A29LV641DH_SIZE;
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| 			flash_info[i].sector_count = A29LV641DH_SECTORS;
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| 			sectsize = A29LV641DH_SIZE/A29LV641DH_SECTORS;
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| 			printf("Bank %d: AMD 29LV641DH\n", i);
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| 			break;
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| 
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| 		case 0x0001227E:
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| 			/* 29LV641MH */
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| 			flash_info[i].flash_id =
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| 				(AMD_MANUFACT & FLASH_VENDMASK) |
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| 				(AMD_ID_DL640 & FLASH_TYPEMASK);
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| 
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| 			flash_info[i].size = A29LV641MH_SIZE;
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| 			flash_info[i].sector_count = A29LV641MH_SECTORS;
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| 			sectsize = A29LV641MH_SIZE/A29LV641MH_SECTORS;
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| 			printf("Bank %d: AMD 29LV641MH\n", i);
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| 			break;
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| 
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| 		case 0x00890016:
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| 			/* 28F320J3A */
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| 			flash_info[i].flash_id =
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| 				(INTEL_MANUFACT & FLASH_VENDMASK) |
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| 				(INTEL_ID_28F320J3A & FLASH_TYPEMASK);
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| 
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| 			flash_info[i].size = I28F320J3A_SIZE;
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| 			flash_info[i].sector_count = I28F320J3A_SECTORS;
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| 			sectsize = I28F320J3A_SIZE/I28F320J3A_SECTORS;
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| 			printf("Bank %d: Intel 28F320J3A\n", i);
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| 			break;
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| 
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| 		case 0x00890017:
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| 			/* 28F640J3A */
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| 			flash_info[i].flash_id =
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| 				(INTEL_MANUFACT & FLASH_VENDMASK) |
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| 				(INTEL_ID_28F640J3A & FLASH_TYPEMASK);
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| 
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| 			flash_info[i].size = I28F640J3A_SIZE;
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| 			flash_info[i].sector_count = I28F640J3A_SECTORS;
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| 			sectsize = I28F640J3A_SIZE/I28F640J3A_SECTORS;
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| 			printf("Bank %d: Intel 28F640J3A\n", i);
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| 			break;
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| 
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| 		case 0x00890018:
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| 			/* 28F128J3A */
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| 			flash_info[i].flash_id =
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| 				(INTEL_MANUFACT & FLASH_VENDMASK) |
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| 				(INTEL_ID_28F128J3A & FLASH_TYPEMASK);
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| 
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| 			flash_info[i].size = I28F128J3A_SIZE;
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| 			flash_info[i].sector_count = I28F128J3A_SECTORS;
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| 			sectsize = I28F128J3A_SIZE/I28F128J3A_SECTORS;
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| 			printf("Bank %d: Intel 28F128J3A\n", i);
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| 			break;
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| 
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| 		default:
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| 			printf("Bank %d have unknown flash %08x\n", i, id);
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| 			flash_info[i].flash_id = FLASH_UNKNOWN;
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| 			continue;
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| 		}
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| 
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| 		for (j = 0; j < flash_info[i].sector_count; j++) {
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| 			flash_info[i].start[j] = flashbase + j * sectsize;
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| 		}
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| 		size += flash_info[i].size;
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| 
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| 		flash_protect(FLAG_PROTECT_CLEAR,
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| 			      flash_info[i].start[0],
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| 			       flash_info[i].start[0] + flash_info[i].size - 1,
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| 			      &flash_info[i]);
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| 	}
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| 
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| 	/*
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| 	 * Protect monitor and environment sectors
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| 	 */
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| 	flash_protect(FLAG_PROTECT_SET,
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| 		      i386boot_start,
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| 		      i386boot_end,
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| 		      &flash_info[0]);
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| #ifdef CFG_ENV_ADDR
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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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| 	return size;
 | |
| }
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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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| 	int i;
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| 
 | |
| 	switch (info->flash_id & FLASH_VENDMASK) {
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| 	case (INTEL_MANUFACT & FLASH_VENDMASK):
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| 		printf("INTEL: ");
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| 		switch (info->flash_id & FLASH_TYPEMASK) {
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| 		case (INTEL_ID_28F320J3A & FLASH_TYPEMASK):
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| 			printf("1x I28F320J3A (32Mbit)\n");
 | |
| 			break;
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| 		case (INTEL_ID_28F640J3A & FLASH_TYPEMASK):
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| 			printf("1x I28F640J3A (64Mbit)\n");
 | |
| 			break;
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| 		case (INTEL_ID_28F128J3A & FLASH_TYPEMASK):
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| 			printf("1x I28F128J3A (128Mbit)\n");
 | |
| 			break;
 | |
| 		default:
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| 			printf("Unknown Chip Type\n");
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| 			goto done;
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| 			break;
 | |
| 		}
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| 
 | |
| 		break;
 | |
| 
 | |
| 	case (AMD_MANUFACT & FLASH_VENDMASK):
 | |
| 		printf("AMD:   ");
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| 		switch (info->flash_id & FLASH_TYPEMASK) {
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| 		case (AMD_ID_LV640U & FLASH_TYPEMASK):
 | |
| 			printf("1x AMD29LV641DH (64Mbit)\n");
 | |
| 			break;
 | |
| 		case (AMD_ID_DL640 & FLASH_TYPEMASK):
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| 			printf("1x AMD29LV641MH (64Mbit)\n");
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| 			break;
 | |
| 		default:
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| 			printf("Unknown Chip Type\n");
 | |
| 			goto done;
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| 			break;
 | |
| 		}
 | |
| 
 | |
| 		break;
 | |
| 	default:
 | |
| 		printf("Unknown Vendor ");
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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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| 		}
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| 		printf (" %08lX%s", info->start[i],
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| 			info->protect[i] ? " (RO)" : "     ");
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| 	}
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| 	printf ("\n");
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| 
 | |
| 	done:
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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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| static u32 _amd_erase_flash(u32 addr, u32 sector)
 | |
| {
 | |
| 	unsigned elapsed;
 | |
| 
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| 	/* Issue erase */
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| 	*(volatile u16*)(addr + 0xaaaa) = 0x00AA;
 | |
| 	*(volatile u16*)(addr + 0x5554) = 0x0055;
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| 	*(volatile u16*)(addr + 0xaaaa) = 0x0080;
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| 	/* And one unlock */
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| 	*(volatile u16*)(addr + 0xaaaa) = 0x00AA;
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| 	*(volatile u16*)(addr + 0x5554) = 0x0055;
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| 	/* Sector erase command comes last */
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| 	*(volatile u16*)(addr + sector) = 0x0030;
 | |
| 
 | |
| 	elapsed = *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI); /* dummy read */
 | |
| 	elapsed = 0;
 | |
| 	while (((*(volatile u16*)(addr + sector)) & 0x0080) != 0x0080) {
 | |
| 
 | |
| 		elapsed += *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI);
 | |
| 		if (elapsed > ((CFG_FLASH_ERASE_TOUT/CFG_HZ) * 1000)) {
 | |
| 			*(volatile u16*)(addr) = 0x00f0;
 | |
| 			return 1;
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 	*(volatile u16*)(addr) = 0x00f0;
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| extern int _amd_erase_flash_end;
 | |
| asm ("_amd_erase_flash_end:\n"
 | |
|      ".long 0\n");
 | |
| 
 | |
| /* this needs to be inlined, the SWTMRMMILLI register is reset by each read */
 | |
| #define __udelay(delay) \
 | |
| {	\
 | |
| 	unsigned micro; \
 | |
| 	unsigned milli=0; \
 | |
| 	\
 | |
| 	micro = *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI); \
 | |
| 	 \
 | |
| 	for (;;) { \
 | |
| 		\
 | |
| 		milli += *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI); \
 | |
| 		micro = *(volatile u16*)(0xfffef000+SC520_SWTMRMICRO); \
 | |
| 		\
 | |
| 		if ((delay) <= (micro + (milli * 1000))) { \
 | |
| 			break; \
 | |
| 		} \
 | |
| 	} \
 | |
| } while (0)
 | |
| 
 | |
| static u32 _intel_erase_flash(u32 addr, u32 sector)
 | |
| {
 | |
| 	unsigned elapsed;
 | |
| 
 | |
| 	*(volatile u16*)(addr + sector) = 0x0050;   /* clear status register */
 | |
| 	*(volatile u16*)(addr + sector) = 0x0020;   /* erase setup */
 | |
| 	*(volatile u16*)(addr + sector) = 0x00D0;   /* erase confirm */
 | |
| 
 | |
| 
 | |
| 	/* Wait at least 80us - let's wait 1 ms */
 | |
| 	__udelay(1000);
 | |
| 
 | |
| 	elapsed = 0;
 | |
| 	while (((*(volatile u16*)(addr + sector)) & 0x0080) != 0x0080) {
 | |
| 		elapsed += *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI);
 | |
| 		if (elapsed > ((CFG_FLASH_ERASE_TOUT/CFG_HZ) * 1000)) {
 | |
| 			*(volatile u16*)(addr + sector) = 0x00B0;  /* suspend erase      */
 | |
| 			*(volatile u16*)(addr + sector) = 0x00FF;  /* reset to read mode */
 | |
| 			return 1;
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 	*(volatile u16*)(addr + sector) = 0x00FF;  /* reset to read mode */
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| 
 | |
| extern int _intel_erase_flash_end;
 | |
| asm ("_intel_erase_flash_end:\n"
 | |
|      ".long 0\n");
 | |
| 
 | |
| int flash_erase(flash_info_t *info, int s_first, int s_last)
 | |
| {
 | |
| 	u32 (*_erase_flash_ptr)(u32 a, u32 so);
 | |
| 	int prot;
 | |
| 	int sect;
 | |
| 	unsigned size;
 | |
| 
 | |
| 	if ((s_first < 0) || (s_first > s_last)) {
 | |
| 		if (info->flash_id == FLASH_UNKNOWN) {
 | |
| 			printf("- missing\n");
 | |
| 		} else {
 | |
| 			printf("- no sectors to erase\n");
 | |
| 		}
 | |
| 		return 1;
 | |
| 	}
 | |
| 
 | |
| 	if ((info->flash_id & FLASH_VENDMASK) == (AMD_MANUFACT & FLASH_VENDMASK)) {
 | |
| 		size = (unsigned)&_amd_erase_flash_end - (unsigned)_amd_erase_flash;
 | |
| 
 | |
| 		if (size > PROBE_BUFFER_SIZE) {
 | |
| 			printf("_amd_erase_flash() routine too large (%d) %p - %p\n",
 | |
| 			       size, &_amd_erase_flash_end, _amd_erase_flash);
 | |
| 			return 0;
 | |
| 		}
 | |
| 
 | |
| 		memcpy(buffer, _amd_erase_flash, size);
 | |
| 		_erase_flash_ptr = (void*)buffer;
 | |
| 
 | |
| 	} else if ((info->flash_id & FLASH_VENDMASK) == (INTEL_MANUFACT & FLASH_VENDMASK)) {
 | |
| 		size = (unsigned)&_intel_erase_flash_end - (unsigned)_intel_erase_flash;
 | |
| 
 | |
| 		if (size > PROBE_BUFFER_SIZE) {
 | |
| 			printf("_intel_erase_flash() routine too large (%d) %p - %p\n",
 | |
| 			       size, &_intel_erase_flash_end, _intel_erase_flash);
 | |
| 			return 0;
 | |
| 		}
 | |
| 
 | |
| 		memcpy(buffer, _intel_erase_flash, size);
 | |
| 		_erase_flash_ptr = (void*)buffer;
 | |
| 	} else {
 | |
| 		printf ("Can't erase unknown flash type - aborted\n");
 | |
| 		return 1;
 | |
| 	}
 | |
| 
 | |
| 	prot = 0;
 | |
| 	for (sect=s_first; sect<=s_last; ++sect) {
 | |
| 		if (info->protect[sect]) {
 | |
| 			prot++;
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 	if (prot) {
 | |
| 		printf ("- Warning: %d protected sectors will not be erased!\n", prot);
 | |
| 	} else {
 | |
| 		printf ("\n");
 | |
| 	}
 | |
| 
 | |
| 
 | |
| 	/* Start erase on unprotected sectors */
 | |
| 	for (sect = s_first; sect<=s_last; sect++) {
 | |
| 
 | |
| 		if (info->protect[sect] == 0) { /* not protected */
 | |
| 			int res;
 | |
| 			int flag;
 | |
| 
 | |
| 			/* Disable interrupts which might cause a timeout here */
 | |
| 			flag = disable_interrupts();
 | |
| 
 | |
| 			res = _erase_flash_ptr(info->start[0], info->start[sect]-info->start[0]);
 | |
| 
 | |
| 			/* re-enable interrupts if necessary */
 | |
| 			if (flag) {
 | |
| 				enable_interrupts();
 | |
| 			}
 | |
| 
 | |
| 
 | |
| 			if (res) {
 | |
| 				printf("Erase timed out, sector %d\n", sect);
 | |
| 				return res;
 | |
| 			}
 | |
| 
 | |
| 			putc('.');
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| /*-----------------------------------------------------------------------
 | |
|  * Write a word to Flash, returns:
 | |
|  * 0 - OK
 | |
|  * 1 - write timeout
 | |
|  * 2 - Flash not erased
 | |
|  */
 | |
| static int _amd_write_word(unsigned start, unsigned dest, unsigned data)
 | |
| {
 | |
| 	volatile u16 *addr2 = (u16*)start;
 | |
| 	volatile u16 *dest2 = (u16*)dest;
 | |
| 	volatile u16 *data2 = (u16*)&data;
 | |
| 	int i;
 | |
| 	unsigned elapsed;
 | |
| 
 | |
| 	/* Check if Flash is (sufficiently) erased */
 | |
| 	if ((*((volatile u16*)dest) & (u16)data) != (u16)data) {
 | |
| 		return 2;
 | |
| 	}
 | |
| 
 | |
| 	for (i = 0; i < 2; i++) {
 | |
| 
 | |
| 
 | |
| 		addr2[0x5555] = 0x00AA;
 | |
| 		addr2[0x2aaa] = 0x0055;
 | |
| 		addr2[0x5555] = 0x00A0;
 | |
| 
 | |
| 		dest2[i] = (data >> (i*16)) & 0xffff;
 | |
| 
 | |
| 		elapsed = *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI); /* dummy read */
 | |
| 		elapsed = 0;
 | |
| 
 | |
| 		/* data polling for D7 */
 | |
| 		while ((dest2[i] & 0x0080) != (data2[i] & 0x0080)) {
 | |
| 			elapsed += *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI);
 | |
| 			if (elapsed > ((CFG_FLASH_WRITE_TOUT/CFG_HZ) * 1000)) {
 | |
| 				addr2[i] = 0x00f0;
 | |
| 				return 1;
 | |
| 			}
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 	addr2[i] = 0x00f0;
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| extern int _amd_write_word_end;
 | |
| asm ("_amd_write_word_end:\n"
 | |
|      ".long 0\n");
 | |
| 
 | |
| 
 | |
| static int _intel_write_word(unsigned start, unsigned dest, unsigned data)
 | |
| {
 | |
| 	int i;
 | |
| 	unsigned elapsed;
 | |
| 
 | |
| 	/* Check if Flash is (sufficiently) erased */
 | |
| 	if ((*((volatile u16*)dest) & (u16)data) != (u16)data) {
 | |
| 		return 2;
 | |
| 	}
 | |
| 
 | |
| 	for (i = 0; i < 2; i++) {
 | |
| 
 | |
| 		*(volatile u16*)(dest+2*i) = 0x0040; /* write setup */
 | |
| 		*(volatile u16*)(dest+2*i) = (data >> (i*16)) & 0xffff;
 | |
| 
 | |
| 		elapsed = *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI); /* dummy read */
 | |
| 		elapsed = 0;
 | |
| 
 | |
| 		/* data polling for D7 */
 | |
| 		while ((*(volatile u16*)dest & 0x0080) != 0x0080) {
 | |
| 			elapsed += *(volatile u16*)(0xfffef000+SC520_SWTMRMILLI);
 | |
| 			if (elapsed > ((CFG_FLASH_WRITE_TOUT/CFG_HZ) * 1000)) {
 | |
| 				*(volatile u16*)dest = 0x00ff;
 | |
| 				return 1;
 | |
| 			}
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
| 	*(volatile u16*)dest = 0x00ff;
 | |
| 
 | |
| 
 | |
| 	return 0;
 | |
| 
 | |
| }
 | |
| 
 | |
| extern int _intel_write_word_end;
 | |
| asm ("_intel_write_word_end:\n"
 | |
|      ".long 0\n");
 | |
| 
 | |
| 
 | |
| /*-----------------------------------------------------------------------
 | |
|  * Copy memory to flash, returns:
 | |
|  * 0 - OK
 | |
|  * 1 - write timeout
 | |
|  * 2 - Flash not erased
 | |
|  * 3 - Unsupported flash type
 | |
|  */
 | |
| 
 | |
| int write_buff(flash_info_t *info, uchar *src, ulong addr, ulong cnt)
 | |
| {
 | |
| 	ulong cp, wp, data;
 | |
| 	int i, l, rc;
 | |
| 	int flag;
 | |
| 	u32 (*_write_word_ptr)(unsigned start, unsigned dest, unsigned data);
 | |
| 	unsigned size;
 | |
| 
 | |
| 	if ((info->flash_id & FLASH_VENDMASK) == (AMD_MANUFACT & FLASH_VENDMASK)) {
 | |
| 		size = (unsigned)&_amd_write_word_end - (unsigned)_amd_write_word;
 | |
| 
 | |
| 		if (size > PROBE_BUFFER_SIZE) {
 | |
| 			printf("_amd_write_word() routine too large (%d) %p - %p\n",
 | |
| 			       size, &_amd_write_word_end, _amd_write_word);
 | |
| 			return 0;
 | |
| 		}
 | |
| 
 | |
| 		memcpy(buffer, _amd_write_word, size);
 | |
| 		_write_word_ptr = (void*)buffer;
 | |
| 
 | |
| 	} else if ((info->flash_id & FLASH_VENDMASK) == (INTEL_MANUFACT & FLASH_VENDMASK)) {
 | |
| 		size = (unsigned)&_intel_write_word_end - (unsigned)_intel_write_word;
 | |
| 
 | |
| 		if (size > PROBE_BUFFER_SIZE) {
 | |
| 			printf("_intel_write_word() routine too large (%d) %p - %p\n",
 | |
| 			       size, &_intel_write_word_end, _intel_write_word);
 | |
| 			return 0;
 | |
| 		}
 | |
| 
 | |
| 		memcpy(buffer, _intel_write_word, size);
 | |
| 		_write_word_ptr = (void*)buffer;
 | |
| 	} else {
 | |
| 		printf ("Can't program unknown flash type - aborted\n");
 | |
| 		return 3;
 | |
| 	}
 | |
| 
 | |
| 
 | |
| 	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 |= (*(uchar *)cp) << (8*i);
 | |
| 		}
 | |
| 		for (; i<4 && cnt>0; ++i) {
 | |
| 			data |= *src++ << (8*i);
 | |
| 			--cnt;
 | |
| 			++cp;
 | |
| 		}
 | |
| 		for (; cnt==0 && i<4; ++i, ++cp) {
 | |
| 			data |= (*(uchar *)cp)  << (8*i);
 | |
| 		}
 | |
| 
 | |
| 		/* Disable interrupts which might cause a timeout here */
 | |
| 		flag = disable_interrupts();
 | |
| 
 | |
| 		rc = _write_word_ptr(info->start[0], wp, data);
 | |
| 
 | |
| 		/* re-enable interrupts if necessary */
 | |
| 		if (flag) {
 | |
| 			enable_interrupts();
 | |
| 		}
 | |
| 		if (rc != 0) {
 | |
| 			return rc;
 | |
| 		}
 | |
| 		wp += 4;
 | |
| 	}
 | |
| 
 | |
| 	/*
 | |
| 	 * handle word aligned part
 | |
| 	 */
 | |
| 	while (cnt >= 4) {
 | |
| 		data = 0;
 | |
| 
 | |
| 		for (i=0; i<4; ++i) {
 | |
| 			data |= *src++ << (8*i);
 | |
| 		}
 | |
| 
 | |
| 		/* Disable interrupts which might cause a timeout here */
 | |
| 		flag = disable_interrupts();
 | |
| 
 | |
| 		rc = _write_word_ptr(info->start[0], wp, data);
 | |
| 
 | |
| 		/* re-enable interrupts if necessary */
 | |
| 		if (flag) {
 | |
| 			enable_interrupts();
 | |
| 		}
 | |
| 		if (rc != 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 |= *src++ << (8*i);
 | |
| 		--cnt;
 | |
| 	}
 | |
| 
 | |
| 	for (; i<4; ++i, ++cp) {
 | |
| 		data |= (*(uchar *)cp) << (8*i);
 | |
| 	}
 | |
| 
 | |
| 	/* Disable interrupts which might cause a timeout here */
 | |
| 	flag = disable_interrupts();
 | |
| 
 | |
| 	rc = _write_word_ptr(info->start[0], wp, data);
 | |
| 
 | |
| 	/* re-enable interrupts if necessary */
 | |
| 	if (flag) {
 | |
| 		enable_interrupts();
 | |
| 	}
 | |
| 
 | |
| 	return rc;
 | |
| 
 | |
| }
 |