mirror of
https://review.coreboot.org/flashrom.git
synced 2025-04-26 22:52:34 +02:00

This reverts commit 40892b0c08fbc8029921e91511dd3f91fc956f90. The feature of returning progress for libflashrom users was introduced in original commit, however later a bug was found and reported as https://ticket.coreboot.org/issues/390. Reverting in a release branch to unblock release candidate, since it is unknown how much time needed to fix the bug. Meanwhile the feature remains in a master branch and will be fixed under ticket 390. TEST=scenarios below run successfully 1) flashrom -h does not show --progress 2) flashrom -p dummy:emulate=W25Q128FV -r /tmp/dump.bin 3) flashrom -p dummy:emulate=W25Q128FV -v /tmp/dump.bin 4) flashrom -p dummy:emulate=W25Q128FV -E 5) head -c 16777216 </dev/urandom >/tmp/image.bin flashrom -p dummy:image=/tmp/image.bin,emulate=W25Q128FV \ -w /tmp/dump.bin Change-Id: Id3d7ffcaf266a60a44eb453fd09b7c63c05349c2 Signed-off-by: Edward O'Callaghan <quasisec@google.com> Signed-off-by: Anastasia Klimchuk <aklm@chromium.org> Reviewed-on: https://review.coreboot.org/c/flashrom/+/69283 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Felix Singer <felixsinger@posteo.net>
509 lines
13 KiB
C
509 lines
13 KiB
C
/*
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* This file is part of the flashrom project.
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*
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* Copyright (C) 2012, 2016 secunet Security Networks AG
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* (Written by Nico Huber <nico.huber@secunet.com> for secunet)
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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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#include <errno.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdarg.h>
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#include "flash.h"
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#include "fmap.h"
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#include "programmer.h"
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#include "layout.h"
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#include "ich_descriptors.h"
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#include "libflashrom.h"
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#include "writeprotect.h"
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/** Pointer to log callback function. */
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static flashrom_log_callback *global_log_callback = NULL;
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int flashrom_init(const int perform_selfcheck)
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{
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if (perform_selfcheck && selfcheck())
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return 1;
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myusec_calibrate_delay();
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return 0;
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}
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int flashrom_shutdown(void)
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{
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return 0; /* TODO: nothing to do? */
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}
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/* TODO: flashrom_set_loglevel()? do we need it?
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For now, let the user decide in their callback. */
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void flashrom_set_log_callback(flashrom_log_callback *const log_callback)
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{
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global_log_callback = log_callback;
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}
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/** @private */
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int print(const enum flashrom_log_level level, const char *const fmt, ...)
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{
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if (global_log_callback) {
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int ret;
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va_list args;
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va_start(args, fmt);
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ret = global_log_callback(level, fmt, args);
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va_end(args);
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return ret;
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}
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return 0;
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}
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const char *flashrom_version_info(void)
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{
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return flashrom_version;
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}
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struct flashrom_flashchip_info *flashrom_supported_flash_chips(void)
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{
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unsigned int i = 0;
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struct flashrom_flashchip_info *supported_flashchips =
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malloc(flashchips_size * sizeof(*supported_flashchips));
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if (supported_flashchips != NULL) {
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for (; i < flashchips_size; ++i) {
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supported_flashchips[i].vendor = flashchips[i].vendor;
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supported_flashchips[i].name = flashchips[i].name;
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supported_flashchips[i].tested.erase =
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(enum flashrom_test_state)flashchips[i].tested.erase;
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supported_flashchips[i].tested.probe =
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(enum flashrom_test_state)flashchips[i].tested.probe;
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supported_flashchips[i].tested.read =
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(enum flashrom_test_state)flashchips[i].tested.read;
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supported_flashchips[i].tested.write =
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(enum flashrom_test_state)flashchips[i].tested.write;
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supported_flashchips[i].total_size = flashchips[i].total_size;
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}
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} else {
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msg_gerr("Memory allocation error!\n");
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}
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return supported_flashchips;
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}
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struct flashrom_board_info *flashrom_supported_boards(void)
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{
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#if CONFIG_INTERNAL == 1
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int boards_known_size = 0;
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int i = 0;
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const struct board_info *binfo = boards_known;
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while ((binfo++)->vendor)
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++boards_known_size;
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binfo = boards_known;
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/* add place for {0} */
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++boards_known_size;
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struct flashrom_board_info *supported_boards =
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malloc(boards_known_size * sizeof(*supported_boards));
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if (supported_boards != NULL) {
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for (; i < boards_known_size; ++i) {
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supported_boards[i].vendor = binfo[i].vendor;
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supported_boards[i].name = binfo[i].name;
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supported_boards[i].working =
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(enum flashrom_test_state) binfo[i].working;
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}
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} else {
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msg_gerr("Memory allocation error!\n");
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}
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return supported_boards;
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#else
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return NULL;
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#endif
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}
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struct flashrom_chipset_info *flashrom_supported_chipsets(void)
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{
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#if CONFIG_INTERNAL == 1
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int chipset_enables_size = 0;
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int i = 0;
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const struct penable *chipset = chipset_enables;
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while ((chipset++)->vendor_name)
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++chipset_enables_size;
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chipset = chipset_enables;
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/* add place for {0}*/
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++chipset_enables_size;
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struct flashrom_chipset_info *supported_chipsets =
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malloc(chipset_enables_size * sizeof(*supported_chipsets));
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if (supported_chipsets != NULL) {
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for (; i < chipset_enables_size; ++i) {
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supported_chipsets[i].vendor = chipset[i].vendor_name;
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supported_chipsets[i].chipset = chipset[i].device_name;
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supported_chipsets[i].vendor_id = chipset[i].vendor_id;
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supported_chipsets[i].chipset_id = chipset[i].device_id;
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supported_chipsets[i].status =
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(enum flashrom_test_state) chipset[i].status;
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}
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} else {
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msg_gerr("Memory allocation error!\n");
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}
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return supported_chipsets;
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#else
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return NULL;
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#endif
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}
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int flashrom_data_free(void *const p)
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{
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free(p);
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return 0;
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}
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int flashrom_programmer_init(struct flashrom_programmer **const flashprog,
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const char *const prog_name, const char *const prog_param)
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{
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unsigned prog;
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for (prog = 0; prog < programmer_table_size; prog++) {
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if (strcmp(prog_name, programmer_table[prog]->name) == 0)
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break;
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}
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if (prog >= programmer_table_size) {
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msg_ginfo("Error: Unknown programmer \"%s\". Valid choices are:\n", prog_name);
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list_programmers_linebreak(0, 80, 0);
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return 1;
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}
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return programmer_init(programmer_table[prog], prog_param);
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}
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int flashrom_programmer_shutdown(struct flashrom_programmer *const flashprog)
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{
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return programmer_shutdown();
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}
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/* TODO: flashrom_programmer_capabilities()? */
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int flashrom_flash_probe(struct flashrom_flashctx **const flashctx,
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const struct flashrom_programmer *const flashprog,
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const char *const chip_name)
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{
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int i, ret = 2;
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struct flashrom_flashctx second_flashctx = { 0, };
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chip_to_probe = chip_name; /* chip_to_probe is global in flashrom.c */
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*flashctx = malloc(sizeof(**flashctx));
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if (!*flashctx)
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return 1;
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memset(*flashctx, 0, sizeof(**flashctx));
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for (i = 0; i < registered_master_count; ++i) {
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int flash_idx = -1;
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if (!ret || (flash_idx = probe_flash(®istered_masters[i], 0, *flashctx, 0)) != -1) {
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ret = 0;
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/* We found one chip, now check that there is no second match. */
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if (probe_flash(®istered_masters[i], flash_idx + 1, &second_flashctx, 0) != -1) {
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flashrom_layout_release(second_flashctx.default_layout);
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free(second_flashctx.chip);
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ret = 3;
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break;
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}
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}
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}
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if (ret) {
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flashrom_flash_release(*flashctx);
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*flashctx = NULL;
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}
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return ret;
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}
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size_t flashrom_flash_getsize(const struct flashrom_flashctx *const flashctx)
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{
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return flashctx->chip->total_size * 1024;
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}
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void flashrom_flash_release(struct flashrom_flashctx *const flashctx)
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{
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if (!flashctx)
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return;
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flashrom_layout_release(flashctx->default_layout);
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free(flashctx->chip);
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free(flashctx);
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}
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void flashrom_flag_set(struct flashrom_flashctx *const flashctx,
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const enum flashrom_flag flag, const bool value)
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{
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switch (flag) {
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case FLASHROM_FLAG_FORCE: flashctx->flags.force = value; break;
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case FLASHROM_FLAG_FORCE_BOARDMISMATCH: flashctx->flags.force_boardmismatch = value; break;
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case FLASHROM_FLAG_VERIFY_AFTER_WRITE: flashctx->flags.verify_after_write = value; break;
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case FLASHROM_FLAG_VERIFY_WHOLE_CHIP: flashctx->flags.verify_whole_chip = value; break;
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}
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}
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bool flashrom_flag_get(const struct flashrom_flashctx *const flashctx, const enum flashrom_flag flag)
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{
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switch (flag) {
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case FLASHROM_FLAG_FORCE: return flashctx->flags.force;
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case FLASHROM_FLAG_FORCE_BOARDMISMATCH: return flashctx->flags.force_boardmismatch;
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case FLASHROM_FLAG_VERIFY_AFTER_WRITE: return flashctx->flags.verify_after_write;
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case FLASHROM_FLAG_VERIFY_WHOLE_CHIP: return flashctx->flags.verify_whole_chip;
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default: return false;
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}
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}
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int flashrom_layout_read_from_ifd(struct flashrom_layout **const layout, struct flashctx *const flashctx,
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const void *const dump, const size_t len)
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{
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#ifndef __FLASHROM_LITTLE_ENDIAN__
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return 6;
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#else
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struct flashrom_layout *dump_layout = NULL, *chip_layout = NULL;
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int ret = 1;
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void *const desc = malloc(0x1000);
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if (prepare_flash_access(flashctx, true, false, false, false))
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goto _free_ret;
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msg_cinfo("Reading ich descriptor... ");
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if (read_flash(flashctx, desc, 0, 0x1000)) {
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msg_cerr("Read operation failed!\n");
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msg_cinfo("FAILED.\n");
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ret = 2;
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goto _finalize_ret;
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}
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msg_cinfo("done.\n");
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if (layout_from_ich_descriptors(&chip_layout, desc, 0x1000)) {
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msg_cerr("Couldn't parse the descriptor!\n");
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ret = 3;
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goto _finalize_ret;
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}
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if (dump) {
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if (layout_from_ich_descriptors(&dump_layout, dump, len)) {
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msg_cerr("Couldn't parse the descriptor!\n");
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ret = 4;
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goto _finalize_ret;
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}
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const struct romentry *chip_entry = layout_next(chip_layout, NULL);
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const struct romentry *dump_entry = layout_next(dump_layout, NULL);
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while (chip_entry && dump_entry && !memcmp(chip_entry, dump_entry, sizeof(*chip_entry))) {
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chip_entry = layout_next(chip_layout, chip_entry);
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dump_entry = layout_next(dump_layout, dump_entry);
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}
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flashrom_layout_release(dump_layout);
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if (chip_entry || dump_entry) {
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msg_cerr("Descriptors don't match!\n");
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ret = 5;
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goto _finalize_ret;
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}
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}
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*layout = (struct flashrom_layout *)chip_layout;
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ret = 0;
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_finalize_ret:
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finalize_flash_access(flashctx);
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_free_ret:
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if (ret)
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flashrom_layout_release(chip_layout);
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free(desc);
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return ret;
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#endif
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}
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#ifdef __FLASHROM_LITTLE_ENDIAN__
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static int flashrom_layout_parse_fmap(struct flashrom_layout **layout,
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struct flashctx *const flashctx, const struct fmap *const fmap)
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{
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int i;
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char name[FMAP_STRLEN + 1];
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const struct fmap_area *area;
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struct flashrom_layout *l;
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if (!fmap || flashrom_layout_new(&l))
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return 1;
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for (i = 0, area = fmap->areas; i < fmap->nareas; i++, area++) {
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snprintf(name, sizeof(name), "%s", area->name);
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if (flashrom_layout_add_region(l, area->offset, area->offset + area->size - 1, name)) {
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flashrom_layout_release(l);
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return 1;
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}
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}
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*layout = l;
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return 0;
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}
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#endif /* __FLASHROM_LITTLE_ENDIAN__ */
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int flashrom_layout_read_fmap_from_rom(struct flashrom_layout **const layout,
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struct flashctx *const flashctx, size_t offset, size_t len)
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{
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#ifndef __FLASHROM_LITTLE_ENDIAN__
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return 3;
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#else
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struct fmap *fmap = NULL;
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int ret = 0;
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msg_gdbg("Attempting to read fmap from ROM content.\n");
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if (fmap_read_from_rom(&fmap, flashctx, offset, len)) {
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msg_gerr("Failed to read fmap from ROM.\n");
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return 1;
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}
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msg_gdbg("Adding fmap layout to global layout.\n");
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if (flashrom_layout_parse_fmap(layout, flashctx, fmap)) {
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msg_gerr("Failed to add fmap regions to layout.\n");
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ret = 1;
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}
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free(fmap);
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return ret;
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#endif
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}
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int flashrom_layout_read_fmap_from_buffer(struct flashrom_layout **const layout,
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struct flashctx *const flashctx, const uint8_t *const buf, size_t size)
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{
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#ifndef __FLASHROM_LITTLE_ENDIAN__
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return 3;
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#else
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struct fmap *fmap = NULL;
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int ret = 1;
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if (!buf || !size)
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goto _ret;
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msg_gdbg("Attempting to read fmap from buffer.\n");
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if (fmap_read_from_buffer(&fmap, buf, size)) {
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msg_gerr("Failed to read fmap from buffer.\n");
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goto _ret;
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}
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msg_gdbg("Adding fmap layout to global layout.\n");
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if (flashrom_layout_parse_fmap(layout, flashctx, fmap)) {
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msg_gerr("Failed to add fmap regions to layout.\n");
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goto _free_ret;
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}
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ret = 0;
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_free_ret:
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free(fmap);
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_ret:
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return ret;
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#endif
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}
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void flashrom_layout_set(struct flashrom_flashctx *const flashctx, const struct flashrom_layout *const layout)
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{
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flashctx->layout = layout;
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}
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enum flashrom_wp_result flashrom_wp_cfg_new(struct flashrom_wp_cfg **cfg)
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{
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*cfg = calloc(1, sizeof(**cfg));
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return *cfg ? 0 : FLASHROM_WP_ERR_OTHER;
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}
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void flashrom_wp_cfg_release(struct flashrom_wp_cfg *cfg)
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{
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free(cfg);
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}
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void flashrom_wp_set_mode(struct flashrom_wp_cfg *cfg, enum flashrom_wp_mode mode)
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{
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cfg->mode = mode;
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}
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enum flashrom_wp_mode flashrom_wp_get_mode(const struct flashrom_wp_cfg *cfg)
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{
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return cfg->mode;
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}
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void flashrom_wp_set_range(struct flashrom_wp_cfg *cfg, size_t start, size_t len)
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{
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cfg->range.start = start;
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cfg->range.len = len;
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}
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void flashrom_wp_get_range(size_t *start, size_t *len, const struct flashrom_wp_cfg *cfg)
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{
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*start = cfg->range.start;
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*len = cfg->range.len;
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}
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enum flashrom_wp_result flashrom_wp_write_cfg(struct flashctx *flash, const struct flashrom_wp_cfg *cfg)
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{
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if (flash->mst->buses_supported & BUS_PROG && flash->mst->opaque.wp_write_cfg)
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return flash->mst->opaque.wp_write_cfg(flash, cfg);
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if (wp_operations_available(flash))
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return wp_write_cfg(flash, cfg);
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return FLASHROM_WP_ERR_OTHER;
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}
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enum flashrom_wp_result flashrom_wp_read_cfg(struct flashrom_wp_cfg *cfg, struct flashctx *flash)
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{
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if (flash->mst->buses_supported & BUS_PROG && flash->mst->opaque.wp_read_cfg)
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return flash->mst->opaque.wp_read_cfg(cfg, flash);
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if (wp_operations_available(flash))
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return wp_read_cfg(cfg, flash);
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return FLASHROM_WP_ERR_OTHER;
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}
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enum flashrom_wp_result flashrom_wp_get_available_ranges(struct flashrom_wp_ranges **list, struct flashrom_flashctx *flash)
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{
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if (flash->mst->buses_supported & BUS_PROG && flash->mst->opaque.wp_get_ranges)
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return flash->mst->opaque.wp_get_ranges(list, flash);
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if (wp_operations_available(flash))
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return wp_get_available_ranges(list, flash);
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return FLASHROM_WP_ERR_OTHER;
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}
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size_t flashrom_wp_ranges_get_count(const struct flashrom_wp_ranges *list)
|
|
{
|
|
return list->count;
|
|
}
|
|
|
|
enum flashrom_wp_result flashrom_wp_ranges_get_range(size_t *start, size_t *len, const struct flashrom_wp_ranges *list, unsigned int index)
|
|
{
|
|
if (index >= list->count)
|
|
return FLASHROM_WP_ERR_OTHER;
|
|
|
|
*start = list->ranges[index].start;
|
|
*len = list->ranges[index].len;
|
|
|
|
return 0;
|
|
}
|
|
|
|
void flashrom_wp_ranges_release(struct flashrom_wp_ranges *list)
|
|
{
|
|
if (!list)
|
|
return;
|
|
|
|
free(list->ranges);
|
|
free(list);
|
|
}
|