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And even when it checks if the erase worked, the result of that check is often ignored. Convert all erase functions and actually check return codes almost everywhere. Check inside all erase_* routines if erase worked, not outside. erase_sector_jedec and erase_block_jedec have changed prototypes to enable erase checking. Uwe successfully tested LPC on an CK804 box and SPI on some SB600 box. Corresponding to flashrom svn r595. Signed-off-by: Carl-Daniel Hailfinger <c-d.hailfinger.devel.2006@gmx.net> Signed-off-by: Urja Rannikko <urjaman@gmail.com> Acked-by: Uwe Hermann <uwe@hermann-uwe.de>
210 lines
5.1 KiB
C
210 lines
5.1 KiB
C
/*
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* This file is part of the flashrom project.
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*
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* Copyright (C) 2008 coresystems GmbH
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (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., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "flash.h"
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int probe_winbond_fwhub(struct flashchip *flash)
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{
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chipaddr bios = flash->virtual_memory;
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uint8_t id1, id2;
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/* Product Identification Entry */
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0x90, bios + 0x5555);
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programmer_delay(10);
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/* Read product ID */
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id1 = chip_readb(bios);
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id2 = chip_readb(bios + 0x01);
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/* Product Identifixation Exit */
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0xF0, bios + 0x5555);
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programmer_delay(10);
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printf_debug("%s: id1 0x%x, id2 0x%x\n", __FUNCTION__, id1, id2);
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if (id1 != flash->manufacture_id || id2 != flash->model_id)
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return 0;
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map_flash_registers(flash);
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return 1;
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}
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static int unlock_block_winbond_fwhub(struct flashchip *flash, int offset)
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{
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chipaddr wrprotect = flash->virtual_registers + offset + 2;
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uint8_t locking;
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printf_debug("Trying to unlock block @0x%08x = 0x%02x\n", offset,
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chip_readb(wrprotect));
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locking = chip_readb(wrprotect);
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switch (locking & 0x7) {
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case 0:
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printf_debug("Full Access.\n");
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return 0;
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case 1:
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printf_debug("Write Lock (Default State).\n");
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chip_writeb(0, wrprotect);
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return 0;
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case 2:
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printf_debug("Locked Open (Full Access, Lock Down).\n");
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return 0;
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case 3:
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fprintf(stderr, "Error: Write Lock, Locked Down.\n");
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return -1;
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case 4:
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printf_debug("Read Lock.\n");
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chip_writeb(0, wrprotect);
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return 0;
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case 5:
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printf_debug("Read/Write Lock.\n");
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chip_writeb(0, wrprotect);
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return 0;
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case 6:
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fprintf(stderr, "Error: Read Lock, Locked Down.\n");
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return -1;
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case 7:
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fprintf(stderr, "Error: Read/Write Lock, Locked Down.\n");
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return -1;
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}
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/* We will never reach this point, but GCC doesn't know */
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return -1;
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}
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int unlock_winbond_fwhub(struct flashchip *flash)
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{
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int i, total_size = flash->total_size * 1024;
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chipaddr bios = flash->virtual_memory;
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uint8_t locking;
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/* Are there any hardware restrictions that we can't overcome?
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* If flashrom fail here, someone's got to check all those GPIOs.
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*/
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/* Product Identification Entry */
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0x90, bios + 0x5555);
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programmer_delay(10);
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/* Read Hardware Lock Bits */
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locking = chip_readb(bios + 0xffff2);
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/* Product Identification Exit */
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0xF0, bios + 0x5555);
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programmer_delay(10);
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printf_debug("Lockout bits:\n");
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if (locking & (1 << 2))
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fprintf(stderr, "Error: hardware bootblock locking (#TBL).\n");
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else
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printf_debug("No hardware bootblock locking (good!)\n");
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if (locking & (1 << 3))
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fprintf(stderr, "Error: hardware block locking (#WP).\n");
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else
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printf_debug("No hardware block locking (good!)\n");
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if (locking & ((1 << 2) | (1 << 3)))
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return -1;
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/* Unlock the complete chip */
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for (i = 0; i < total_size; i += flash->page_size)
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if (unlock_block_winbond_fwhub(flash, i))
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return -1;
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return 0;
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}
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static int erase_sector_winbond_fwhub(struct flashchip *flash,
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unsigned int sector)
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{
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chipaddr bios = flash->virtual_memory;
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/* Remember: too much sleep can waste your day. */
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printf("0x%08x\b\b\b\b\b\b\b\b\b\b", sector);
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/* Sector Erase */
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0x80, bios + 0x5555);
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chip_writeb(0xAA, bios + 0x5555);
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chip_writeb(0x55, bios + 0x2AAA);
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chip_writeb(0x30, bios + sector);
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/* wait for Toggle bit ready */
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toggle_ready_jedec(bios);
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if (check_erased_range(flash, sector, flash->page_size)) {
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fprintf(stderr, "ERASE FAILED!\n");
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return -1;
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}
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return 0;
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}
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int erase_winbond_fwhub(struct flashchip *flash)
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{
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int i, total_size = flash->total_size * 1024;
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unlock_winbond_fwhub(flash);
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printf("Erasing: ");
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for (i = 0; i < total_size; i += flash->page_size) {
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if (erase_sector_winbond_fwhub(flash, i)) {
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fprintf(stderr, "ERASE FAILED!\n");
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return -1;
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}
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}
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printf("\n");
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return 0;
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}
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int write_winbond_fwhub(struct flashchip *flash, uint8_t *buf)
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{
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int i;
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int total_size = flash->total_size * 1024;
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chipaddr bios = flash->virtual_memory;
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if (erase_winbond_fwhub(flash))
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return -1;
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printf("Programming: ");
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for (i = 0; i < total_size; i += flash->page_size) {
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printf("0x%08x\b\b\b\b\b\b\b\b\b\b", i);
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write_sector_jedec(bios, buf + i, bios + i, flash->page_size);
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}
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printf("\n");
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return 0;
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}
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