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6ca024ae3b
* Also add experimental support for Syslinux/NTFS * Closes #391
174 lines
5.4 KiB
C
174 lines
5.4 KiB
C
/* ----------------------------------------------------------------------- *
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*
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* Copyright 1998-2011 H. Peter Anvin - All Rights Reserved
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* Copyright 2009-2011 Intel Corporation; author H. Peter Anvin
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* Copyright 2011 Paulo Alcantara <pcacjr@gmail.com>
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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, Inc., 53 Temple Place Ste 330,
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* Boston MA 02111-1307, USA; either version 2 of the License, or
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* (at your option) any later version; incorporated herein by reference.
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*
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* ----------------------------------------------------------------------- */
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/*
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* fs.c - Generic sanity check for FAT/NTFS-based installers
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*/
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#define _XOPEN_SOURCE 500 /* Required on glibc 2.x */
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#define _BSD_SOURCE
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/* glibc 2.20 deprecates _BSD_SOURCE in favour of _DEFAULT_SOURCE */
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#define _DEFAULT_SOURCE 1
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#include <stdio.h>
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#include <inttypes.h>
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#include <string.h>
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#include <stddef.h>
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#include <stdlib.h>
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#include "syslinux.h"
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#include "syslxint.h"
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#include "syslxcom.h"
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#include "syslxfs.h"
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void syslinux_make_bootsect(void *bs, int fs_type)
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{
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if (fs_type == VFAT) {
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struct fat_boot_sector *bootsect = bs;
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const struct fat_boot_sector *sbs =
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(const struct fat_boot_sector *)boot_sector;
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memcpy(&bootsect->FAT_bsHead, &sbs->FAT_bsHead, FAT_bsHeadLen);
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memcpy(&bootsect->FAT_bsCode, &sbs->FAT_bsCode, FAT_bsCodeLen);
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} else if (fs_type == NTFS) {
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struct ntfs_boot_sector *bootsect = bs;
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const struct ntfs_boot_sector *sbs =
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(const struct ntfs_boot_sector *)boot_sector;
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memcpy(&bootsect->NTFS_bsHead, &sbs->NTFS_bsHead, NTFS_bsHeadLen);
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memcpy(&bootsect->NTFS_bsCode, &sbs->NTFS_bsCode, NTFS_bsCodeLen);
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}
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}
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static const char *check_fat_bootsect(const void *bs, int *fs_type)
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{
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int sectorsize;
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const struct fat_boot_sector *sectbuf = bs;
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long long sectors, fatsectors, dsectors;
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long long clusters;
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int rootdirents, clustersize;
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sectorsize = get_16(§buf->bsBytesPerSec);
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clustersize = get_8(§buf->bsSecPerClust);
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if (clustersize == 0 || (clustersize & (clustersize - 1)))
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return "impossible cluster size on an FAT volume";
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sectors = get_16(§buf->bsSectors);
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sectors = sectors ? sectors : get_32(§buf->bsHugeSectors);
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dsectors = sectors - get_16(§buf->bsResSectors);
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fatsectors = get_16(§buf->bsFATsecs);
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fatsectors = fatsectors ? fatsectors : get_32(§buf->bs32.FATSz32);
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fatsectors *= get_8(§buf->bsFATs);
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dsectors -= fatsectors;
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rootdirents = get_16(§buf->bsRootDirEnts);
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dsectors -= (rootdirents + sectorsize / 32 - 1) / sectorsize;
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if (dsectors < 0)
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return "negative number of data sectors on an FAT volume";
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clusters = dsectors / clustersize;
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fatsectors = get_16(§buf->bsFATsecs);
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fatsectors = fatsectors ? fatsectors : get_32(§buf->bs32.FATSz32);
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fatsectors *= get_8(§buf->bsFATs);
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if (!fatsectors)
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return "zero FAT sectors";
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if (clusters < 0xFFF5) {
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/* FAT12 or FAT16 */
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if (!get_16(§buf->bsFATsecs))
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return "zero FAT sectors (FAT12/16)";
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if (get_8(§buf->bs16.BootSignature) == 0x29) {
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if (!memcmp(§buf->bs16.FileSysType, "FAT12 ", 8)) {
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if (clusters >= 0xFF5)
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return "more than 4084 clusters but claims FAT12";
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} else if (!memcmp(§buf->bs16.FileSysType, "FAT16 ", 8)) {
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if (clusters < 0xFF5)
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return "less than 4084 clusters but claims FAT16";
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} else if (!memcmp(§buf->bs16.FileSysType, "FAT32 ", 8)) {
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return "less than 65525 clusters but claims FAT32";
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} else if (memcmp(§buf->bs16.FileSysType, "FAT ", 8)) {
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static char fserr[] = "filesystem type \"????????\" not "
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"supported";
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memcpy(fserr + 17, §buf->bs16.FileSysType, 8);
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return fserr;
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}
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}
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} else if (clusters < 0x0FFFFFF5) {
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/*
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* FAT32...
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*
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* Moving the FileSysType and BootSignature was a lovely stroke
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* of M$ idiocy...
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*/
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if (get_8(§buf->bs32.BootSignature) != 0x29 ||
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memcmp(§buf->bs32.FileSysType, "FAT32 ", 8))
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return "missing FAT32 signature";
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} else {
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return "impossibly large number of clusters on an FAT volume";
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}
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if (fs_type)
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*fs_type = VFAT;
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return NULL;
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}
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static const char *check_ntfs_bootsect(const void *bs, int *fs_type)
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{
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const struct ntfs_boot_sector *sectbuf = bs;
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if (memcmp(§buf->bsOemName, "NTFS ", 8) &&
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memcmp(§buf->bsOemName, "MSWIN4.0", 8) &&
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memcmp(§buf->bsOemName, "MSWIN4.1", 8))
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return "unknown OEM name but claims NTFS";
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if (fs_type)
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*fs_type = NTFS;
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return NULL;
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}
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const char *syslinux_check_bootsect(const void *bs, int *fs_type)
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{
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uint8_t media_sig;
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int sectorsize;
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const struct fat_boot_sector *sectbuf = bs;
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const char *retval;
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media_sig = get_8(§buf->bsMedia);
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/* Must be 0xF0 or 0xF8-0xFF for FAT/NTFS volumes */
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if (media_sig != 0xF0 && media_sig < 0xF8)
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return "invalid media signature (not an FAT/NTFS volume?)";
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sectorsize = get_16(§buf->bsBytesPerSec);
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if (sectorsize == SECTOR_SIZE) ; /* ok */
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else if (sectorsize >= 512 && sectorsize <= 4096 &&
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(sectorsize & (sectorsize - 1)) == 0)
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return "unsupported sectors size";
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else
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return "impossible sector size";
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if (ntfs_check_zero_fields((struct ntfs_boot_sector *)bs))
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retval = check_ntfs_bootsect(bs, fs_type);
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else
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retval = check_fat_bootsect(bs, fs_type);
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return retval;
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}
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