jedec.c 8 KB
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/*
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 * This file is part of the flashrom project.
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 *
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 * Copyright (C) 2000 Silicon Integrated System Corporation
 * Copyright (C) 2006 Giampiero Giancipoli <gianci@email.it>
 * Copyright (C) 2006 coresystems GmbH <info@coresystems.de>
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 * Copyright (C) 2007 Carl-Daniel Hailfinger
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 *
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 * 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.
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 *
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 * 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.
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 *
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 * 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., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301 USA
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 */

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#include <stdio.h>
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#include <stdint.h>
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#include "flash.h"

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#define MAX_REFLASH_TRIES 0x10

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/* Check one byte for odd parity */
uint8_t oddparity(uint8_t val)
{
	val = (val ^ (val >> 4)) & 0xf;
	val = (val ^ (val >> 2)) & 0x3;
	return (val ^ (val >> 1)) & 0x1;
}

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void toggle_ready_jedec(volatile uint8_t *dst)
{
	unsigned int i = 0;
	uint8_t tmp1, tmp2;

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	tmp1 = chip_readb(dst) & 0x40;
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	while (i++ < 0xFFFFFFF) {
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		tmp2 = chip_readb(dst) & 0x40;
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		if (tmp1 == tmp2) {
			break;
		}
		tmp1 = tmp2;
	}
}

void data_polling_jedec(volatile uint8_t *dst, uint8_t data)
{
	unsigned int i = 0;
	uint8_t tmp;

	data &= 0x80;

	while (i++ < 0xFFFFFFF) {
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		tmp = chip_readb(dst) & 0x80;
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		if (tmp == data) {
			break;
		}
	}
}

void unprotect_jedec(volatile uint8_t *bios)
{
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	chip_writeb(0xAA, bios + 0x5555);
	chip_writeb(0x55, bios + 0x2AAA);
	chip_writeb(0x80, bios + 0x5555);
	chip_writeb(0xAA, bios + 0x5555);
	chip_writeb(0x55, bios + 0x2AAA);
	chip_writeb(0x20, bios + 0x5555);
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	usleep(200);
}

void protect_jedec(volatile uint8_t *bios)
{
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	chip_writeb(0xAA, bios + 0x5555);
	chip_writeb(0x55, bios + 0x2AAA);
	chip_writeb(0xA0, bios + 0x5555);
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	usleep(200);
}

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int probe_jedec(struct flashchip *flash)
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{
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	volatile uint8_t *bios = flash->virtual_memory;
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	uint8_t id1, id2;
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	uint32_t largeid1, largeid2;
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	uint32_t flashcontent1, flashcontent2;
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	/* Issue JEDEC Product ID Entry command */
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x90, bios + 0x5555);
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	/* Older chips may need up to 100 us to respond. The ATMEL 29C020
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	 * needs 10 ms according to the data sheet.
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	 */
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	myusec_delay(10000);
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	/* Read product ID */
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	id1 = chip_readb(bios);
	id2 = chip_readb(bios + 0x01);
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	largeid1 = id1;
	largeid2 = id2;

	/* Check if it is a continuation ID, this should be a while loop. */
	if (id1 == 0x7F) {
		largeid1 <<= 8;
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		id1 = chip_readb(bios + 0x100);
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		largeid1 |= id1;
	}
	if (id2 == 0x7F) {
		largeid2 <<= 8;
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		id2 = chip_readb(bios + 0x101);
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		largeid2 |= id2;
	}
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	/* Issue JEDEC Product ID Exit command */
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0xF0, bios + 0x5555);
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	myusec_delay(40);
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	printf_debug("%s: id1 0x%02x, id2 0x%02x", __FUNCTION__, largeid1, largeid2);
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	if (!oddparity(id1))
		printf_debug(", id1 parity violation");
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	/* Read the product ID location again. We should now see normal flash contents. */
	flashcontent1 = chip_readb(bios);
	flashcontent2 = chip_readb(bios + 0x01);

	/* Check if it is a continuation ID, this should be a while loop. */
	if (flashcontent1 == 0x7F) {
		flashcontent1 <<= 8;
		flashcontent1 |= chip_readb(bios + 0x100);
	}
	if (flashcontent2 == 0x7F) {
		flashcontent2 <<= 8;
		flashcontent2 |= chip_readb(bios + 0x101);
	}

	if (largeid1 == flashcontent1)
		printf_debug(", id1 is normal flash content");
	if (largeid2 == flashcontent2)
		printf_debug(", id2 is normal flash content");

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	printf_debug("\n");
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	if (largeid1 == flash->manufacture_id && largeid2 == flash->model_id)
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		return 1;
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	return 0;
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}
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int erase_sector_jedec(volatile uint8_t *bios, unsigned int page)
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{
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	/*  Issue the Sector Erase command   */
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x80, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x30, bios + page);
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	myusec_delay(10);
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	/* wait for Toggle bit ready         */
	toggle_ready_jedec(bios);

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	return 0;
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}
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int erase_block_jedec(volatile uint8_t *bios, unsigned int block)
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{
	/*  Issue the Sector Erase command   */
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x80, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x50, bios + block);
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	myusec_delay(10);
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	/* wait for Toggle bit ready         */
	toggle_ready_jedec(bios);
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	return 0;
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}

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int erase_chip_jedec(struct flashchip *flash)
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{
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	volatile uint8_t *bios = flash->virtual_memory;
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	/*  Issue the JEDEC Chip Erase command   */
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x80, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0xAA, bios + 0x5555);
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	myusec_delay(10);
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	chip_writeb(0x55, bios + 0x2AAA);
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	myusec_delay(10);
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	chip_writeb(0x10, bios + 0x5555);
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	myusec_delay(10);

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	toggle_ready_jedec(bios);
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	return 0;
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}

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int write_page_write_jedec(volatile uint8_t *bios, uint8_t *src,
			   volatile uint8_t *dst, int page_size)
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{
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	int i, tried = 0, start_index = 0, ok;
	volatile uint8_t *d = dst;
	uint8_t *s = src;
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retry:
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	/* Issue JEDEC Data Unprotect comand */
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	chip_writeb(0xAA, bios + 0x5555);
	chip_writeb(0x55, bios + 0x2AAA);
	chip_writeb(0xA0, bios + 0x5555);
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	/* transfer data from source to destination */
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	for (i = start_index; i < page_size; i++) {
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		/* If the data is 0xFF, don't program it */
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		if (*src != 0xFF)
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			chip_writeb(*src, dst);
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		dst++;
		src++;
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	}

	toggle_ready_jedec(dst - 1);
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	dst = d;
	src = s;
	ok = 1;
	for (i = 0; i < page_size; i++) {
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		if (chip_readb(dst) != *src) {
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			ok = 0;
			break;
		}
		dst++;
		src++;
	}
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	if (!ok && tried++ < MAX_REFLASH_TRIES) {
		start_index = i;
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		goto retry;
	}
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	if (!ok) {
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		fprintf(stderr, " page %d failed!\n",
			(unsigned int)(d - bios) / page_size);
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	}
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	return !ok;
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}

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int write_byte_program_jedec(volatile uint8_t *bios, uint8_t *src,
			     volatile uint8_t *dst)
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{
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	int tried = 0, ok = 1;
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	/* If the data is 0xFF, don't program it */
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	if (*src == 0xFF) {
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		return -1;
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	}
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retry:
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	/* Issue JEDEC Byte Program command */
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	chip_writeb(0xAA, bios + 0x5555);
	chip_writeb(0x55, bios + 0x2AAA);
	chip_writeb(0xA0, bios + 0x5555);
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	/* transfer data from source to destination */
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	chip_writeb(*src, dst);
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	toggle_ready_jedec(bios);
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	if (chip_readb(dst) != *src && tried++ < MAX_REFLASH_TRIES) {
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		goto retry;
	}
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	if (tried >= MAX_REFLASH_TRIES)
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		ok = 0;
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	return !ok;
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}

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int write_sector_jedec(volatile uint8_t *bios, uint8_t *src,
		       volatile uint8_t *dst, unsigned int page_size)
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{
	int i;

	for (i = 0; i < page_size; i++) {
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		write_byte_program_jedec(bios, src, dst);
		dst++, src++;
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	}

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	return 0;
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}

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int write_jedec(struct flashchip *flash, uint8_t *buf)
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{
	int i;
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	int total_size = flash->total_size * 1024;
	int page_size = flash->page_size;
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	volatile uint8_t *bios = flash->virtual_memory;
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	erase_chip_jedec(flash);
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	// dumb check if erase was successful.
	for (i = 0; i < total_size; i++) {
		if (bios[i] != (uint8_t) 0xff) {
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			printf("ERASE FAILED @%d, val %02x!\n", i, bios[i]);
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			return -1;
		}
	}
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	printf("Programming page: ");
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	for (i = 0; i < total_size / page_size; i++) {
		printf("%04d at address: 0x%08x", i, i * page_size);
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		write_page_write_jedec(bios, buf + i * page_size,
				       bios + i * page_size, page_size);
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		printf("\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b");
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	}
	printf("\n");
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	protect_jedec(bios);
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	return 0;
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}