0a2f21fa71
Add an option (-O) to calculate rootfs offset for combined images. This is needed for the TP-Link mtdsplit driver to locate the rootfs when the start is not aligned to an erase block. This will be the case for sysupgrade images produced by tplink-safeloader with upcoming dynamic partition splitting. Signed-off-by: Alex Maclean <monkeh@monkeh.net>
642 lines
16 KiB
C
642 lines
16 KiB
C
/*
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* Copyright (C) 2009 Gabor Juhos <juhosg@openwrt.org>
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*
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* This tool was based on:
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* TP-Link WR941 V2 firmware checksum fixing tool.
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* Copyright (C) 2008,2009 Wang Jian <lark@linux.net.cn>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 as published
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* by the Free Software Foundation.
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*
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <string.h>
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#include <unistd.h> /* for unlink() */
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#include <libgen.h>
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#include <getopt.h> /* for getopt() */
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#include <stdarg.h>
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#include <stdbool.h>
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#include <endian.h>
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#include <errno.h>
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#include <sys/stat.h>
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#include <arpa/inet.h>
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#include <netinet/in.h>
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#include "md5.h"
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#include "mktplinkfw-lib.h"
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#define HEADER_VERSION_V1 0x01000000
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#define HEADER_VERSION_V2 0x02000000
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struct fw_header {
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uint32_t version; /* header version */
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char vendor_name[24];
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char fw_version[36];
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uint32_t hw_id; /* hardware id */
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uint32_t hw_rev; /* hardware revision */
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uint32_t region_code; /* region code */
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uint8_t md5sum1[MD5SUM_LEN];
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uint32_t unk2;
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uint8_t md5sum2[MD5SUM_LEN];
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uint32_t unk3;
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uint32_t kernel_la; /* kernel load address */
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uint32_t kernel_ep; /* kernel entry point */
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uint32_t fw_length; /* total length of the firmware */
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uint32_t kernel_ofs; /* kernel data offset */
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uint32_t kernel_len; /* kernel data length */
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uint32_t rootfs_ofs; /* rootfs data offset */
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uint32_t rootfs_len; /* rootfs data length */
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uint32_t boot_ofs; /* bootloader data offset */
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uint32_t boot_len; /* bootloader data length */
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uint16_t ver_hi;
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uint16_t ver_mid;
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uint16_t ver_lo;
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uint8_t pad[130];
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char region_str1[32];
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char region_str2[32];
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uint8_t pad2[160];
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} __attribute__ ((packed));
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struct fw_region {
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char name[4];
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uint32_t code;
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};
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/*
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* Globals
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*/
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char *ofname;
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char *progname;
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static char *vendor = "TP-LINK Technologies";
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static char *version = "ver. 1.0";
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static char *fw_ver = "0.0.0";
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static uint32_t hdr_ver = HEADER_VERSION_V1;
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static char *layout_id;
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struct flash_layout *layout;
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static char *opt_hw_id;
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static uint32_t hw_id;
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static char *opt_hw_rev;
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static uint32_t hw_rev;
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static uint32_t opt_hdr_ver = 1;
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static char *country;
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static const struct fw_region *region;
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static int fw_ver_lo;
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static int fw_ver_mid;
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static int fw_ver_hi;
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struct file_info kernel_info;
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static uint32_t kernel_la = 0;
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static uint32_t kernel_ep = 0;
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uint32_t kernel_len = 0;
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struct file_info rootfs_info;
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uint32_t rootfs_ofs = 0;
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uint32_t rootfs_align;
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static struct file_info boot_info;
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int combined;
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int strip_padding;
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int add_jffs2_eof;
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static uint32_t fw_max_len;
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static uint32_t reserved_space;
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static struct file_info inspect_info;
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static int extract = 0;
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static bool endian_swap = false;
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static bool rootfs_ofs_calc = false;
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static const char md5salt_normal[MD5SUM_LEN] = {
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0xdc, 0xd7, 0x3a, 0xa5, 0xc3, 0x95, 0x98, 0xfb,
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0xdd, 0xf9, 0xe7, 0xf4, 0x0e, 0xae, 0x47, 0x38,
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};
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static const char md5salt_boot[MD5SUM_LEN] = {
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0x8c, 0xef, 0x33, 0x5b, 0xd5, 0xc5, 0xce, 0xfa,
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0xa7, 0x9c, 0x28, 0xda, 0xb2, 0xe9, 0x0f, 0x42,
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};
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static struct flash_layout layouts[] = {
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{
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.id = "4M",
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.fw_max_len = 0x3c0000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x140000,
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}, {
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.id = "4Mlzma",
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.fw_max_len = 0x3c0000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x100000,
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}, {
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.id = "8M",
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.fw_max_len = 0x7c0000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x140000,
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}, {
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.id = "8Mlzma",
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.fw_max_len = 0x7c0000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x100000,
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}, {
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.id = "16M",
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.fw_max_len = 0xf80000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x140000,
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}, {
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.id = "16Mlzma",
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.fw_max_len = 0xf80000,
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.kernel_la = 0x80060000,
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.kernel_ep = 0x80060000,
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.rootfs_ofs = 0x100000,
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}, {
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.id = "16Mppc",
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.fw_max_len = 0xf80000,
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.kernel_la = 0x00000000 ,
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.kernel_ep = 0xc0000000,
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.rootfs_ofs = 0x2a0000,
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}, {
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/* terminating entry */
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}
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};
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static const struct fw_region regions[] = {
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/* Default region (universal) uses code 0 as well */
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{"US", 1},
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{"EU", 0},
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{"BR", 0},
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};
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static const struct fw_region * find_region(const char *country) {
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size_t i;
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for (i = 0; i < ARRAY_SIZE(regions); i++) {
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if (strcasecmp(regions[i].name, country) == 0)
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return ®ions[i];
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}
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return NULL;
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}
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static void usage(int status)
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{
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fprintf(stderr, "Usage: %s [OPTIONS...]\n", progname);
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fprintf(stderr,
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"\n"
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"Options:\n"
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" -c use combined kernel image\n"
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" -e swap endianness in kernel load address and entry point\n"
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" -E <ep> overwrite kernel entry point with <ep> (hexval prefixed with 0x)\n"
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" -L <la> overwrite kernel load address with <la> (hexval prefixed with 0x)\n"
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" -H <hwid> use hardware id specified with <hwid>\n"
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" -W <hwrev> use hardware revision specified with <hwrev>\n"
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" -C <country> set region code to <country>\n"
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" -F <id> use flash layout specified with <id>\n"
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" -k <file> read kernel image from the file <file>\n"
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" -r <file> read rootfs image from the file <file>\n"
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" -a <align> align the rootfs start on an <align> bytes boundary\n"
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" -R <offset> overwrite rootfs offset with <offset> (hexval prefixed with 0x)\n"
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" -O calculate rootfs offset for combined images\n"
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" -o <file> write output to the file <file>\n"
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" -s strip padding from the end of the image\n"
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" -j add jffs2 end-of-filesystem markers\n"
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" -N <vendor> set image vendor to <vendor>\n"
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" -V <version> set image version to <version>\n"
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" -v <version> set firmware version to <version>\n"
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" -m <version> set header version to <version>\n"
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" -i <file> inspect given firmware file <file>\n"
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" -x extract kernel and rootfs while inspecting (requires -i)\n"
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" -X <size> reserve <size> bytes in the firmware image (hexval prefixed with 0x)\n"
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" -h show this screen\n"
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);
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exit(status);
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}
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static int check_options(void)
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{
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int ret;
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int exceed_bytes;
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if (inspect_info.file_name) {
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ret = get_file_stat(&inspect_info);
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if (ret)
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return ret;
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return 0;
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} else if (extract) {
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ERR("no firmware for inspection specified");
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return -1;
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}
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if (opt_hw_id == NULL) {
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ERR("hardware id not specified");
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return -1;
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}
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hw_id = strtoul(opt_hw_id, NULL, 0);
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if (!combined && layout_id == NULL) {
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ERR("flash layout is not specified");
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return -1;
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}
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if (opt_hw_rev)
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hw_rev = strtoul(opt_hw_rev, NULL, 0);
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else
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hw_rev = 1;
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if (country) {
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region = find_region(country);
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if (!region) {
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ERR("unknown region code \"%s\"", country);
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return -1;
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}
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}
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if (combined) {
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if (!kernel_la || !kernel_ep) {
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ERR("kernel loading address and entry point must be specified for combined image");
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return -1;
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}
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} else {
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layout = find_layout(layouts, layout_id);
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if (layout == NULL) {
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ERR("unknown flash layout \"%s\"", layout_id);
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return -1;
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}
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if (!kernel_la)
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kernel_la = layout->kernel_la;
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if (!kernel_ep)
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kernel_ep = layout->kernel_ep;
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if (!rootfs_ofs)
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rootfs_ofs = layout->rootfs_ofs;
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if (reserved_space > layout->fw_max_len) {
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ERR("reserved space is not valid");
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return -1;
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}
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}
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if (kernel_info.file_name == NULL) {
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ERR("no kernel image specified");
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return -1;
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}
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ret = get_file_stat(&kernel_info);
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if (ret)
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return ret;
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kernel_len = kernel_info.file_size;
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if (!combined) {
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fw_max_len = layout->fw_max_len - reserved_space;
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if (rootfs_info.file_name == NULL) {
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ERR("no rootfs image specified");
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return -1;
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}
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ret = get_file_stat(&rootfs_info);
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if (ret)
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return ret;
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if (rootfs_align) {
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kernel_len += sizeof(struct fw_header);
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rootfs_ofs = ALIGN(kernel_len, rootfs_align);
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kernel_len -= sizeof(struct fw_header);
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DBG("rootfs offset aligned to 0x%u", rootfs_ofs);
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exceed_bytes = kernel_len + rootfs_info.file_size - (fw_max_len - sizeof(struct fw_header));
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if (exceed_bytes > 0) {
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ERR("images are too big by %i bytes", exceed_bytes);
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return -1;
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}
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} else {
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exceed_bytes = kernel_info.file_size - (rootfs_ofs - sizeof(struct fw_header));
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if (exceed_bytes > 0) {
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ERR("kernel image is too big by %i bytes", exceed_bytes);
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return -1;
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}
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exceed_bytes = rootfs_info.file_size - (fw_max_len - rootfs_ofs);
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if (exceed_bytes > 0) {
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ERR("rootfs image is too big by %i bytes", exceed_bytes);
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return -1;
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}
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}
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}
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if (ofname == NULL) {
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ERR("no output file specified");
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return -1;
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}
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ret = sscanf(fw_ver, "%d.%d.%d", &fw_ver_hi, &fw_ver_mid, &fw_ver_lo);
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if (ret != 3) {
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ERR("invalid firmware version '%s'", fw_ver);
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return -1;
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}
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if (opt_hdr_ver == 1) {
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hdr_ver = HEADER_VERSION_V1;
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} else if (opt_hdr_ver == 2) {
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hdr_ver = HEADER_VERSION_V2;
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} else {
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ERR("invalid header version '%u'", opt_hdr_ver);
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return -1;
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}
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return 0;
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}
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void fill_header(char *buf, int len)
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{
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struct fw_header *hdr = (struct fw_header *)buf;
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memset(hdr, 0, sizeof(struct fw_header));
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hdr->version = htonl(hdr_ver);
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strncpy(hdr->vendor_name, vendor, sizeof(hdr->vendor_name));
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strncpy(hdr->fw_version, version, sizeof(hdr->fw_version));
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hdr->hw_id = htonl(hw_id);
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hdr->hw_rev = htonl(hw_rev);
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hdr->kernel_la = htonl(kernel_la);
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hdr->kernel_ep = htonl(kernel_ep);
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hdr->kernel_ofs = htonl(sizeof(struct fw_header));
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hdr->kernel_len = htonl(kernel_len);
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if (!combined) {
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if (boot_info.file_size == 0)
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memcpy(hdr->md5sum1, md5salt_normal, sizeof(hdr->md5sum1));
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else
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memcpy(hdr->md5sum1, md5salt_boot, sizeof(hdr->md5sum1));
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hdr->fw_length = htonl(layout->fw_max_len);
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hdr->rootfs_ofs = htonl(rootfs_ofs);
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hdr->rootfs_len = htonl(rootfs_info.file_size);
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}
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if (combined && rootfs_ofs_calc) {
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hdr->rootfs_ofs = htonl(sizeof(struct fw_header) + kernel_len);
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}
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hdr->ver_hi = htons(fw_ver_hi);
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hdr->ver_mid = htons(fw_ver_mid);
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hdr->ver_lo = htons(fw_ver_lo);
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if (region) {
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hdr->region_code = htonl(region->code);
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snprintf(
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hdr->region_str1, sizeof(hdr->region_str1), "00000000;%02X%02X%02X%02X;",
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region->name[0], region->name[1], region->name[2], region->name[3]
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);
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snprintf(
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hdr->region_str2, sizeof(hdr->region_str2), "%02X%02X%02X%02X",
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region->name[0], region->name[1], region->name[2], region->name[3]
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);
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}
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if (endian_swap) {
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hdr->kernel_la = bswap_32(hdr->kernel_la);
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hdr->kernel_ep = bswap_32(hdr->kernel_ep);
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}
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if (!combined)
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get_md5(buf, len, hdr->md5sum1);
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}
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static int inspect_fw(void)
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{
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char *buf;
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struct fw_header *hdr;
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uint8_t md5sum[MD5SUM_LEN];
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int ret = EXIT_FAILURE;
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buf = malloc(inspect_info.file_size);
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if (!buf) {
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ERR("no memory for buffer!\n");
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goto out;
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}
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ret = read_to_buf(&inspect_info, buf);
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if (ret)
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goto out_free_buf;
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hdr = (struct fw_header *)buf;
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inspect_fw_pstr("File name", inspect_info.file_name);
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inspect_fw_phexdec("File size", inspect_info.file_size);
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if ((ntohl(hdr->version) != HEADER_VERSION_V1) &&
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(ntohl(hdr->version) != HEADER_VERSION_V2)) {
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ERR("file does not seem to have V1/V2 header!\n");
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goto out_free_buf;
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}
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inspect_fw_phexdec("Version 1 Header size", sizeof(struct fw_header));
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memcpy(md5sum, hdr->md5sum1, sizeof(md5sum));
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if (ntohl(hdr->boot_len) == 0)
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memcpy(hdr->md5sum1, md5salt_normal, sizeof(md5sum));
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else
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memcpy(hdr->md5sum1, md5salt_boot, sizeof(md5sum));
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get_md5(buf, inspect_info.file_size, hdr->md5sum1);
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if (memcmp(md5sum, hdr->md5sum1, sizeof(md5sum))) {
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inspect_fw_pmd5sum("Header MD5Sum1", md5sum, "(*ERROR*)");
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inspect_fw_pmd5sum(" --> expected", hdr->md5sum1, "");
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} else {
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inspect_fw_pmd5sum("Header MD5Sum1", md5sum, "(ok)");
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}
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if (ntohl(hdr->unk2) != 0)
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inspect_fw_phexdec("Unknown value 2", hdr->unk2);
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inspect_fw_pmd5sum("Header MD5Sum2", hdr->md5sum2,
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"(purpose yet unknown, unchecked here)");
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if (ntohl(hdr->unk3) != 0)
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inspect_fw_phexdec("Unknown value 3", hdr->unk3);
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printf("\n");
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inspect_fw_pstr("Vendor name", hdr->vendor_name);
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inspect_fw_pstr("Firmware version", hdr->fw_version);
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inspect_fw_phex("Hardware ID", ntohl(hdr->hw_id));
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inspect_fw_phex("Hardware Revision", ntohl(hdr->hw_rev));
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inspect_fw_phex("Region code", ntohl(hdr->region_code));
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printf("\n");
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inspect_fw_phexdec("Kernel data offset",
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ntohl(hdr->kernel_ofs));
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inspect_fw_phexdec("Kernel data length",
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ntohl(hdr->kernel_len));
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inspect_fw_phex("Kernel load address",
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ntohl(hdr->kernel_la));
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inspect_fw_phex("Kernel entry point",
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ntohl(hdr->kernel_ep));
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inspect_fw_phexdec("Rootfs data offset",
|
|
ntohl(hdr->rootfs_ofs));
|
|
inspect_fw_phexdec("Rootfs data length",
|
|
ntohl(hdr->rootfs_len));
|
|
inspect_fw_phexdec("Boot loader data offset",
|
|
ntohl(hdr->boot_ofs));
|
|
inspect_fw_phexdec("Boot loader data length",
|
|
ntohl(hdr->boot_len));
|
|
inspect_fw_phexdec("Total firmware length",
|
|
ntohl(hdr->fw_length));
|
|
|
|
if (extract) {
|
|
FILE *fp;
|
|
char *filename;
|
|
|
|
printf("\n");
|
|
|
|
filename = malloc(strlen(inspect_info.file_name) + 8);
|
|
sprintf(filename, "%s-kernel", inspect_info.file_name);
|
|
printf("Extracting kernel to \"%s\"...\n", filename);
|
|
fp = fopen(filename, "w");
|
|
if (fp) {
|
|
if (!fwrite(buf + ntohl(hdr->kernel_ofs),
|
|
ntohl(hdr->kernel_len), 1, fp)) {
|
|
ERR("error in fwrite(): %s", strerror(errno));
|
|
}
|
|
fclose(fp);
|
|
} else {
|
|
ERR("error in fopen(): %s", strerror(errno));
|
|
}
|
|
free(filename);
|
|
|
|
filename = malloc(strlen(inspect_info.file_name) + 8);
|
|
sprintf(filename, "%s-rootfs", inspect_info.file_name);
|
|
printf("Extracting rootfs to \"%s\"...\n", filename);
|
|
fp = fopen(filename, "w");
|
|
if (fp) {
|
|
if (!fwrite(buf + ntohl(hdr->rootfs_ofs),
|
|
ntohl(hdr->rootfs_len), 1, fp)) {
|
|
ERR("error in fwrite(): %s", strerror(errno));
|
|
}
|
|
fclose(fp);
|
|
} else {
|
|
ERR("error in fopen(): %s", strerror(errno));
|
|
}
|
|
free(filename);
|
|
}
|
|
|
|
out_free_buf:
|
|
free(buf);
|
|
out:
|
|
return ret;
|
|
}
|
|
|
|
int main(int argc, char *argv[])
|
|
{
|
|
int ret = EXIT_FAILURE;
|
|
|
|
progname = basename(argv[0]);
|
|
|
|
while ( 1 ) {
|
|
int c;
|
|
|
|
c = getopt(argc, argv, "a:H:E:F:L:m:V:N:W:C:ci:k:r:R:o:OxX:ehsjv:");
|
|
if (c == -1)
|
|
break;
|
|
|
|
switch (c) {
|
|
case 'a':
|
|
sscanf(optarg, "0x%x", &rootfs_align);
|
|
break;
|
|
case 'H':
|
|
opt_hw_id = optarg;
|
|
break;
|
|
case 'E':
|
|
sscanf(optarg, "0x%x", &kernel_ep);
|
|
break;
|
|
case 'F':
|
|
layout_id = optarg;
|
|
break;
|
|
case 'W':
|
|
opt_hw_rev = optarg;
|
|
break;
|
|
case 'C':
|
|
country = optarg;
|
|
break;
|
|
case 'L':
|
|
sscanf(optarg, "0x%x", &kernel_la);
|
|
break;
|
|
case 'm':
|
|
sscanf(optarg, "%u", &opt_hdr_ver);
|
|
break;
|
|
case 'V':
|
|
version = optarg;
|
|
break;
|
|
case 'v':
|
|
fw_ver = optarg;
|
|
break;
|
|
case 'N':
|
|
vendor = optarg;
|
|
break;
|
|
case 'c':
|
|
combined++;
|
|
break;
|
|
case 'k':
|
|
kernel_info.file_name = optarg;
|
|
break;
|
|
case 'r':
|
|
rootfs_info.file_name = optarg;
|
|
break;
|
|
case 'R':
|
|
sscanf(optarg, "0x%x", &rootfs_ofs);
|
|
break;
|
|
case 'o':
|
|
ofname = optarg;
|
|
break;
|
|
case 'O':
|
|
rootfs_ofs_calc = 1;
|
|
break;
|
|
case 's':
|
|
strip_padding = 1;
|
|
break;
|
|
case 'i':
|
|
inspect_info.file_name = optarg;
|
|
break;
|
|
case 'j':
|
|
add_jffs2_eof = 1;
|
|
break;
|
|
case 'x':
|
|
extract = 1;
|
|
break;
|
|
case 'e':
|
|
endian_swap = true;
|
|
break;
|
|
case 'h':
|
|
usage(EXIT_SUCCESS);
|
|
break;
|
|
case 'X':
|
|
sscanf(optarg, "0x%x", &reserved_space);
|
|
break;
|
|
default:
|
|
usage(EXIT_FAILURE);
|
|
break;
|
|
}
|
|
}
|
|
|
|
ret = check_options();
|
|
if (ret)
|
|
goto out;
|
|
|
|
if (!inspect_info.file_name)
|
|
ret = build_fw(sizeof(struct fw_header));
|
|
else
|
|
ret = inspect_fw();
|
|
|
|
out:
|
|
return ret;
|
|
}
|