1c8c24183e
Factor common elf/sb read/write/printf routines. Factor sb zero key, move sb version guess. Change-Id: I5ae1885587456736e782e623610281bbee545039
439 lines
15 KiB
C
439 lines
15 KiB
C
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Copyright (C) 2011 Amaury Pouly
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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
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#define _ISOC99_SOURCE
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#define _POSIX_C_SOURCE 200809L /* for strdup */
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#include <stdio.h>
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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 <ctype.h>
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#include <time.h>
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#include <stdarg.h>
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#include <strings.h>
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#include <getopt.h>
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#include "crypto.h"
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#include "elf.h"
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#include "sb.h"
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#include "dbparser.h"
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#include "misc.h"
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char **g_extern;
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int g_extern_count;
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#define ROUND_UP(val, round) ((((val) + (round) - 1) / (round)) * (round))
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#define crypto_cbc(...) \
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do { int ret = crypto_cbc(__VA_ARGS__); \
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if(ret != CRYPTO_ERROR_SUCCESS) \
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bug("crypto_cbc error: %d\n", ret); \
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}while(0)
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/**
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* command file to sb conversion
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*/
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static void resolve_extern(struct cmd_source_t *src)
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{
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if(!src->is_extern)
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return;
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src->is_extern = false;
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if(src->extern_nr < 0 || src->extern_nr >= g_extern_count)
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bug("There aren't enough file on command file to resolve extern(%d)\n", src->extern_nr);
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/* first free the old src->filename content */
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free(src->filename);
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src->filename = strdup(g_extern[src->extern_nr]);
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}
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static void load_elf_by_id(struct cmd_file_t *cmd_file, const char *id)
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{
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struct cmd_source_t *src = db_find_source_by_id(cmd_file, id);
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if(src == NULL)
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bug("undefined reference to source '%s'\n", id);
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/* avoid reloading */
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if(src->type == CMD_SRC_ELF && src->loaded)
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return;
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if(src->type != CMD_SRC_UNK)
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bug("source '%s' seen both as elf and binary file\n", id);
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/* resolve potential extern file */
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resolve_extern(src);
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/* load it */
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src->type = CMD_SRC_ELF;
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FILE *fd = fopen(src->filename, "rb");
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if(fd == NULL)
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bug("cannot open '%s' (id '%s')\n", src->filename, id);
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if(g_debug)
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printf("Loading ELF file '%s'...\n", src->filename);
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elf_init(&src->elf);
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src->loaded = elf_read_file(&src->elf, elf_std_read, elf_std_printf, fd);
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fclose(fd);
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if(!src->loaded)
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bug("error loading elf file '%s' (id '%s')\n", src->filename, id);
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elf_translate_addresses(&src->elf);
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}
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static void load_bin_by_id(struct cmd_file_t *cmd_file, const char *id)
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{
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struct cmd_source_t *src = db_find_source_by_id(cmd_file, id);
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if(src == NULL)
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bug("undefined reference to source '%s'\n", id);
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/* avoid reloading */
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if(src->type == CMD_SRC_BIN && src->loaded)
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return;
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if(src->type != CMD_SRC_UNK)
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bug("source '%s' seen both as elf and binary file\n", id);
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/* resolve potential extern file */
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resolve_extern(src);
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/* load it */
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src->type = CMD_SRC_BIN;
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FILE *fd = fopen(src->filename, "rb");
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if(fd == NULL)
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bug("cannot open '%s' (id '%s')\n", src->filename, id);
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if(g_debug)
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printf("Loading BIN file '%s'...\n", src->filename);
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fseek(fd, 0, SEEK_END);
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src->bin.size = ftell(fd);
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fseek(fd, 0, SEEK_SET);
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src->bin.data = xmalloc(src->bin.size);
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fread(src->bin.data, 1, src->bin.size, fd);
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fclose(fd);
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src->loaded = true;
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}
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static struct sb_file_t *apply_cmd_file(struct cmd_file_t *cmd_file)
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{
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struct sb_file_t *sb = xmalloc(sizeof(struct sb_file_t));
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memset(sb, 0, sizeof(struct sb_file_t));
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db_generate_default_sb_version(&sb->product_ver);
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db_generate_default_sb_version(&sb->component_ver);
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if(g_debug)
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printf("Applying command file...\n");
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/* count sections */
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struct cmd_section_t *csec = cmd_file->section_list;
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while(csec)
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{
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sb->nr_sections++;
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csec = csec->next;
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}
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sb->sections = xmalloc(sb->nr_sections * sizeof(struct sb_section_t));
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memset(sb->sections, 0, sb->nr_sections * sizeof(struct sb_section_t));
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/* flatten sections */
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csec = cmd_file->section_list;
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for(int i = 0; i < sb->nr_sections; i++, csec = csec->next)
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{
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struct sb_section_t *sec = &sb->sections[i];
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sec->identifier = csec->identifier;
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/* options */
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do
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{
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/* cleartext */
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struct cmd_option_t *opt = db_find_option_by_id(csec->opt_list, "cleartext");
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if(opt != NULL)
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{
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if(opt->is_string)
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bug("Cleartext section attribute must be an integer\n");
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if(opt->val != 0 && opt->val != 1)
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bug("Cleartext section attribute must be 0 or 1\n");
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sec->is_cleartext = opt->val;
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}
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/* alignment */
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opt = db_find_option_by_id(csec->opt_list, "alignment");
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if(opt != NULL)
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{
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if(opt->is_string)
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bug("Cleartext section attribute must be an integer\n");
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// n is a power of 2 iff n & (n - 1) = 0
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// alignement cannot be lower than block size
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if((opt->val & (opt->val - 1)) != 0)
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bug("Cleartext section attribute must be a power of two\n");
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if(opt->val < BLOCK_SIZE)
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sec->alignment = BLOCK_SIZE;
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else
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sec->alignment = opt->val;
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}
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else
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sec->alignment = BLOCK_SIZE;
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}while(0);
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if(csec->is_data)
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{
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sec->is_data = true;
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sec->nr_insts = 1;
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sec->insts = xmalloc(sec->nr_insts * sizeof(struct sb_inst_t));
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memset(sec->insts, 0, sec->nr_insts * sizeof(struct sb_inst_t));
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load_bin_by_id(cmd_file, csec->source_id);
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struct bin_param_t *bin = &db_find_source_by_id(cmd_file, csec->source_id)->bin;
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sec->insts[0].inst = SB_INST_DATA;
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sec->insts[0].size = bin->size;
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sec->insts[0].data = memdup(bin->data, bin->size);
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}
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else
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{
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sec->is_data = false;
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/* count instructions and loads things */
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struct cmd_inst_t *cinst = csec->inst_list;
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while(cinst)
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{
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if(cinst->type == CMD_LOAD)
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{
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load_elf_by_id(cmd_file, cinst->identifier);
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struct elf_params_t *elf = &db_find_source_by_id(cmd_file, cinst->identifier)->elf;
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sec->nr_insts += elf_get_nr_sections(elf);
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}
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else if(cinst->type == CMD_JUMP || cinst->type == CMD_CALL)
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{
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load_elf_by_id(cmd_file, cinst->identifier);
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struct elf_params_t *elf = &db_find_source_by_id(cmd_file, cinst->identifier)->elf;
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if(!elf_get_start_addr(elf, NULL))
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bug("cannot jump/call '%s' because it has no starting point !\n", cinst->identifier);
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sec->nr_insts++;
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}
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else if(cinst->type == CMD_CALL_AT || cinst->type == CMD_JUMP_AT)
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{
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sec->nr_insts++;
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}
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else if(cinst->type == CMD_LOAD_AT)
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{
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load_bin_by_id(cmd_file, cinst->identifier);
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sec->nr_insts++;
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}
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else if(cinst->type == CMD_MODE)
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{
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sec->nr_insts++;
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}
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else
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bug("die\n");
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cinst = cinst->next;
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}
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sec->insts = xmalloc(sec->nr_insts * sizeof(struct sb_inst_t));
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memset(sec->insts, 0, sec->nr_insts * sizeof(struct sb_inst_t));
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/* flatten */
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int idx = 0;
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cinst = csec->inst_list;
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while(cinst)
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{
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if(cinst->type == CMD_LOAD)
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{
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struct elf_params_t *elf = &db_find_source_by_id(cmd_file, cinst->identifier)->elf;
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struct elf_section_t *esec = elf->first_section;
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while(esec)
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{
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if(esec->type == EST_LOAD)
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{
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sec->insts[idx].inst = SB_INST_LOAD;
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sec->insts[idx].addr = esec->addr;
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sec->insts[idx].size = esec->size;
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sec->insts[idx++].data = memdup(esec->section, esec->size);
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}
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else if(esec->type == EST_FILL)
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{
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sec->insts[idx].inst = SB_INST_FILL;
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sec->insts[idx].addr = esec->addr;
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sec->insts[idx].size = esec->size;
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sec->insts[idx++].pattern = esec->pattern;
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}
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esec = esec->next;
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}
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}
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else if(cinst->type == CMD_JUMP || cinst->type == CMD_CALL)
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{
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struct elf_params_t *elf = &db_find_source_by_id(cmd_file, cinst->identifier)->elf;
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sec->insts[idx].argument = cinst->argument;
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sec->insts[idx].inst = (cinst->type == CMD_JUMP) ? SB_INST_JUMP : SB_INST_CALL;
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sec->insts[idx++].addr = elf->start_addr;
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}
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else if(cinst->type == CMD_JUMP_AT || cinst->type == CMD_CALL_AT)
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{
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sec->insts[idx].argument = cinst->argument;
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sec->insts[idx].inst = (cinst->type == CMD_JUMP_AT) ? SB_INST_JUMP : SB_INST_CALL;
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sec->insts[idx++].addr = cinst->addr;
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}
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else if(cinst->type == CMD_LOAD_AT)
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{
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struct bin_param_t *bin = &db_find_source_by_id(cmd_file, cinst->identifier)->bin;
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sec->insts[idx].inst = SB_INST_LOAD;
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sec->insts[idx].addr = cinst->addr;
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sec->insts[idx].data = memdup(bin->data, bin->size);
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sec->insts[idx++].size = bin->size;
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}
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else if(cinst->type == CMD_MODE)
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{
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sec->insts[idx].inst = SB_INST_MODE;
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sec->insts[idx++].addr = cinst->argument;
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}
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else
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bug("die\n");
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cinst = cinst->next;
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}
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}
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}
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return sb;
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}
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static void usage(void)
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{
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printf("Usage: elftosb [options | file]...\n");
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printf("Options:\n");
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printf(" -?/--help\tDisplay this message\n");
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printf(" -o <file>\tSet output file\n");
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printf(" -c <file>\tSet command file\n");
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printf(" -d/--debug\tEnable debug output\n");
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printf(" -k <file>\tAdd key file\n");
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printf(" -z\t\tAdd zero key\n");
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printf(" --add-key <key>\tAdd single key (hex or usbotp)\n");
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printf(" --real-key <key>\tOverride real key\n");
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printf(" --crypto-iv <iv>\tOverride crypto IV\n");
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exit(1);
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}
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int main(int argc, char **argv)
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{
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char *cmd_filename = NULL;
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char *output_filename = NULL;
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struct crypto_key_t real_key;
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struct crypto_key_t crypto_iv;
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real_key.method = CRYPTO_NONE;
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crypto_iv.method = CRYPTO_NONE;
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while(1)
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{
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static struct option long_options[] =
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{
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{"help", no_argument, 0, '?'},
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{"debug", no_argument, 0, 'd'},
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{"add-key", required_argument, 0, 'a'},
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{"real-key", required_argument, 0, 'r'},
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{"crypto-iv", required_argument, 0, 'i'},
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{0, 0, 0, 0}
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};
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int c = getopt_long(argc, argv, "?do:c:k:za:", long_options, NULL);
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if(c == -1)
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break;
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switch(c)
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{
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case 'd':
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g_debug = true;
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break;
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case '?':
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usage();
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break;
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case 'o':
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output_filename = optarg;
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break;
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case 'c':
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cmd_filename = optarg;
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break;
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case 'k':
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{
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if(!add_keys_from_file(optarg))
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bug("Cannot keys from %s\n", optarg);
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break;
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}
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case 'z':
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{
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struct crypto_key_t g_zero_key;
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sb_get_zero_key(&g_zero_key);
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add_keys(&g_zero_key, 1);
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break;
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}
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case 'a':
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case 'r':
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case 'i':
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{
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struct crypto_key_t key;
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char *s = optarg;
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if(!parse_key(&s, &key))
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bug("Invalid key/iv specified as argument");
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if(*s != 0)
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bug("Trailing characters after key/iv specified as argument");
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if(c == 'r')
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memcpy(&real_key, &key, sizeof(key));
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else if(c == 'i')
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memcpy(&crypto_iv, &key, sizeof(key));
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else
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add_keys(&key, 1);
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break;
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}
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default:
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bug("Internal error: unknown option '%c'\n", c);
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}
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}
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if(!cmd_filename)
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bug("You must specify a command file\n");
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if(!output_filename)
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bug("You must specify an output file\n");
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g_extern = &argv[optind];
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g_extern_count = argc - optind;
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if(g_debug)
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{
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printf("key: %d\n", g_nr_keys);
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for(int i = 0; i < g_nr_keys; i++)
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{
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printf(" ");
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print_key(&g_key_array[i], true);
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}
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for(int i = 0; i < g_extern_count; i++)
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printf("extern(%d)=%s\n", i, g_extern[i]);
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}
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struct cmd_file_t *cmd_file = db_parse_file(cmd_filename);
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struct sb_file_t *sb_file = apply_cmd_file(cmd_file);
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db_free(cmd_file);
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if(real_key.method == CRYPTO_KEY)
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{
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sb_file->override_real_key = true;
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memcpy(sb_file->real_key, real_key.u.key, 16);
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}
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if(crypto_iv.method == CRYPTO_KEY)
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{
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sb_file->override_crypto_iv = true;
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memcpy(sb_file->crypto_iv, crypto_iv.u.key, 16);
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}
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/* fill with default parameters since there is no command file support for them */
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sb_file->drive_tag = 0;
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sb_file->first_boot_sec_id = sb_file->sections[0].identifier;
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sb_file->flags = 0;
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sb_file->minor_version = 1;
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sb_write_file(sb_file, output_filename);
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sb_free(sb_file);
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clear_keys();
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return 0;
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}
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