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boot.c revision 1.21.4.1
      1       1.1        ws 
      2       1.1        ws /*
      3       1.5        ws  * Copyright (C) 1995, 1997 Wolfgang Solfrank
      4       1.1        ws  * Copyright (c) 1995 Martin Husemann
      5       1.1        ws  *
      6       1.1        ws  * Redistribution and use in source and binary forms, with or without
      7       1.1        ws  * modification, are permitted provided that the following conditions
      8       1.1        ws  * are met:
      9       1.1        ws  * 1. Redistributions of source code must retain the above copyright
     10       1.1        ws  *    notice, this list of conditions and the following disclaimer.
     11       1.1        ws  * 2. Redistributions in binary form must reproduce the above copyright
     12       1.1        ws  *    notice, this list of conditions and the following disclaimer in the
     13       1.1        ws  *    documentation and/or other materials provided with the distribution.
     14       1.1        ws  *
     15       1.1        ws  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
     16       1.1        ws  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     17       1.1        ws  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     18       1.1        ws  * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
     19       1.1        ws  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     20       1.1        ws  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     21       1.1        ws  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     22       1.1        ws  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     23       1.1        ws  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     24       1.1        ws  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     25       1.1        ws  */
     26       1.1        ws 
     27       1.1        ws 
     28       1.4     lukem #include <sys/cdefs.h>
     29       1.1        ws #ifndef lint
     30  1.21.4.1    martin __RCSID("$NetBSD: boot.c,v 1.21.4.1 2020/04/08 14:07:19 martin Exp $");
     31       1.1        ws #endif /* not lint */
     32       1.1        ws 
     33       1.1        ws #include <stdlib.h>
     34       1.1        ws #include <string.h>
     35      1.16  christos #include <strings.h>
     36      1.18   msaitoh #include <inttypes.h>
     37       1.1        ws #include <stdio.h>
     38       1.1        ws #include <unistd.h>
     39       1.1        ws 
     40       1.1        ws #include "ext.h"
     41       1.3  christos #include "fsutil.h"
     42       1.1        ws 
     43       1.1        ws int
     44      1.10   xtraeme readboot(int dosfs, struct bootblock *boot)
     45       1.1        ws {
     46       1.1        ws 	u_char block[DOSBOOTBLOCKSIZE];
     47       1.5        ws 	u_char fsinfo[2 * DOSBOOTBLOCKSIZE];
     48       1.5        ws 	u_char backup[DOSBOOTBLOCKSIZE];
     49       1.5        ws 	int ret = FSOK;
     50      1.13       gdt 	int i;
     51       1.1        ws 
     52      1.15     lukem 	if ((size_t)read(dosfs, block, sizeof block) != sizeof block) {
     53      1.11  christos 		perr("could not read boot block");
     54       1.1        ws 		return FSFATAL;
     55       1.1        ws 	}
     56       1.1        ws 
     57       1.5        ws 	if (block[510] != 0x55 || block[511] != 0xaa) {
     58       1.5        ws 		pfatal("Invalid signature in boot block: %02x%02x", block[511], block[510]);
     59       1.5        ws 		return FSFATAL;
     60       1.5        ws 	}
     61       1.5        ws 
     62       1.5        ws 	memset(boot, 0, sizeof *boot);
     63       1.5        ws 	boot->ValidFat = -1;
     64       1.5        ws 
     65       1.1        ws 	/* decode bios parameter block */
     66       1.1        ws 	boot->BytesPerSec = block[11] + (block[12] << 8);
     67       1.1        ws 	boot->SecPerClust = block[13];
     68      1.16  christos 	if (boot->SecPerClust == 0 || popcount(boot->SecPerClust) != 1) {
     69      1.16  christos  		pfatal("Invalid cluster size: %u\n", boot->SecPerClust);
     70      1.16  christos 		return FSFATAL;
     71      1.16  christos 	}
     72       1.1        ws 	boot->ResSectors = block[14] + (block[15] << 8);
     73       1.1        ws 	boot->FATs = block[16];
     74      1.16  christos 	if (boot->FATs == 0) {
     75      1.16  christos 		pfatal("Invalid number of FATs: %u\n", boot->FATs);
     76      1.16  christos 		return FSFATAL;
     77      1.16  christos 	}
     78       1.1        ws 	boot->RootDirEnts = block[17] + (block[18] << 8);
     79       1.1        ws 	boot->Sectors = block[19] + (block[20] << 8);
     80       1.1        ws 	boot->Media = block[21];
     81       1.5        ws 	boot->FATsmall = block[22] + (block[23] << 8);
     82       1.1        ws 	boot->SecPerTrack = block[24] + (block[25] << 8);
     83       1.1        ws 	boot->Heads = block[26] + (block[27] << 8);
     84  1.21.4.1    martin 	boot->HiddenSecs = block[28] + (block[29] << 8) + (block[30] << 16) + ((uint32_t)block[31] << 24);
     85  1.21.4.1    martin 	boot->HugeSectors = block[32] + (block[33] << 8) + (block[34] << 16) + ((uint32_t)block[35] << 24);
     86       1.5        ws 
     87       1.5        ws 	boot->FATsecs = boot->FATsmall;
     88       1.5        ws 
     89       1.5        ws 	if (!boot->RootDirEnts)
     90       1.5        ws 		boot->flags |= FAT32;
     91       1.5        ws 	if (boot->flags & FAT32) {
     92       1.5        ws 		boot->FATsecs = block[36] + (block[37] << 8)
     93  1.21.4.1    martin 				+ (block[38] << 16) + ((uint32_t)block[39] << 24);
     94       1.5        ws 		if (block[40] & 0x80)
     95       1.5        ws 			boot->ValidFat = block[40] & 0x0f;
     96       1.5        ws 
     97       1.5        ws 		/* check version number: */
     98       1.5        ws 		if (block[42] || block[43]) {
     99       1.5        ws 			/* Correct?				XXX */
    100       1.5        ws 			pfatal("Unknown filesystem version: %x.%x",
    101       1.5        ws 			       block[43], block[42]);
    102       1.5        ws 			return FSFATAL;
    103       1.5        ws 		}
    104       1.5        ws 		boot->RootCl = block[44] + (block[45] << 8)
    105  1.21.4.1    martin 			       + (block[46] << 16) + ((uint32_t)block[47] << 24);
    106       1.5        ws 		boot->FSInfo = block[48] + (block[49] << 8);
    107       1.5        ws 		boot->Backup = block[50] + (block[51] << 8);
    108       1.5        ws 
    109       1.5        ws 		if (lseek(dosfs, boot->FSInfo * boot->BytesPerSec, SEEK_SET)
    110       1.5        ws 		    != boot->FSInfo * boot->BytesPerSec
    111       1.5        ws 		    || read(dosfs, fsinfo, sizeof fsinfo)
    112       1.5        ws 		    != sizeof fsinfo) {
    113      1.11  christos 			perr("could not read fsinfo block");
    114       1.5        ws 			return FSFATAL;
    115       1.5        ws 		}
    116       1.5        ws 		if (memcmp(fsinfo, "RRaA", 4)
    117       1.5        ws 		    || memcmp(fsinfo + 0x1e4, "rrAa", 4)
    118       1.5        ws 		    || fsinfo[0x1fc]
    119       1.5        ws 		    || fsinfo[0x1fd]
    120       1.5        ws 		    || fsinfo[0x1fe] != 0x55
    121       1.5        ws 		    || fsinfo[0x1ff] != 0xaa
    122       1.5        ws 		    || fsinfo[0x3fc]
    123       1.5        ws 		    || fsinfo[0x3fd]
    124       1.5        ws 		    || fsinfo[0x3fe] != 0x55
    125       1.5        ws 		    || fsinfo[0x3ff] != 0xaa) {
    126       1.5        ws 			pwarn("Invalid signature in fsinfo block");
    127       1.5        ws 			if (ask(0, "fix")) {
    128       1.5        ws 				memcpy(fsinfo, "RRaA", 4);
    129       1.5        ws 				memcpy(fsinfo + 0x1e4, "rrAa", 4);
    130       1.5        ws 				fsinfo[0x1fc] = fsinfo[0x1fd] = 0;
    131       1.5        ws 				fsinfo[0x1fe] = 0x55;
    132       1.5        ws 				fsinfo[0x1ff] = 0xaa;
    133       1.5        ws 				fsinfo[0x3fc] = fsinfo[0x3fd] = 0;
    134       1.5        ws 				fsinfo[0x3fe] = 0x55;
    135       1.5        ws 				fsinfo[0x3ff] = 0xaa;
    136       1.5        ws 				if (lseek(dosfs, boot->FSInfo * boot->BytesPerSec, SEEK_SET)
    137       1.5        ws 				    != boot->FSInfo * boot->BytesPerSec
    138       1.5        ws 				    || write(dosfs, fsinfo, sizeof fsinfo)
    139       1.5        ws 				    != sizeof fsinfo) {
    140      1.11  christos 					perr("Unable to write FSInfo");
    141       1.5        ws 					return FSFATAL;
    142       1.5        ws 				}
    143       1.5        ws 				ret = FSBOOTMOD;
    144       1.5        ws 			} else
    145       1.5        ws 				boot->FSInfo = 0;
    146       1.5        ws 		}
    147       1.5        ws 		if (boot->FSInfo) {
    148       1.5        ws 			boot->FSFree = fsinfo[0x1e8] + (fsinfo[0x1e9] << 8)
    149       1.5        ws 				       + (fsinfo[0x1ea] << 16)
    150  1.21.4.1    martin 				       + ((uint32_t)fsinfo[0x1eb] << 24);
    151       1.5        ws 			boot->FSNext = fsinfo[0x1ec] + (fsinfo[0x1ed] << 8)
    152       1.5        ws 				       + (fsinfo[0x1ee] << 16)
    153  1.21.4.1    martin 				       + ((uint32_t)fsinfo[0x1ef] << 24);
    154       1.5        ws 		}
    155       1.5        ws 
    156       1.5        ws 		if (lseek(dosfs, boot->Backup * boot->BytesPerSec, SEEK_SET)
    157       1.5        ws 		    != boot->Backup * boot->BytesPerSec
    158       1.5        ws 		    || read(dosfs, backup, sizeof backup) != sizeof  backup) {
    159      1.11  christos 			perr("could not read backup bootblock");
    160       1.5        ws 			return FSFATAL;
    161       1.5        ws 		}
    162       1.9        ws 		backup[65] = block[65];				/* XXX */
    163       1.9        ws 		if (memcmp(block + 11, backup + 11, 79)) {
    164      1.13       gdt 			/*
    165      1.13       gdt 			 * XXX We require a reference that explains
    166      1.13       gdt 			 * that these bytes need to match, or should
    167      1.13       gdt 			 * drop the check.  gdt@ has observed
    168      1.13       gdt 			 * filesystems that work fine under Windows XP
    169      1.13       gdt 			 * and NetBSD that do not match, so the
    170      1.13       gdt 			 * requirement is suspect.  For now, just
    171      1.13       gdt 			 * print out useful information and continue.
    172      1.13       gdt 			 */
    173      1.13       gdt 			pfatal("backup (block %d) mismatch with primary bootblock:\n",
    174      1.13       gdt 			        boot->Backup);
    175      1.13       gdt 			for (i = 11; i < 11 + 90; i++) {
    176      1.13       gdt 				if (block[i] != backup[i])
    177      1.13       gdt 					pfatal("\ti=%d\tprimary 0x%02x\tbackup 0x%02x\n",
    178      1.13       gdt 					       i, block[i], backup[i]);
    179      1.13       gdt 			}
    180       1.5        ws 		}
    181       1.5        ws 		/* Check backup FSInfo?					XXX */
    182       1.5        ws 	}
    183      1.16  christos 	if (boot->FATsecs == 0) {
    184      1.16  christos 		pfatal("Invalid number of FAT sectors: %u\n", boot->FATsecs);
    185      1.16  christos 		return FSFATAL;
    186      1.16  christos 	}
    187       1.5        ws 
    188      1.19   mlelstv 	boot->FirstCluster = (boot->RootDirEnts * 32 + boot->BytesPerSec - 1)
    189       1.1        ws 	    / boot->BytesPerSec
    190       1.1        ws 	    + boot->ResSectors
    191      1.19   mlelstv 	    + boot->FATs * boot->FATsecs;
    192       1.1        ws 
    193       1.1        ws 	if (boot->BytesPerSec % DOSBOOTBLOCKSIZE != 0) {
    194       1.5        ws 		pfatal("Invalid sector size: %u", boot->BytesPerSec);
    195       1.1        ws 		return FSFATAL;
    196       1.1        ws 	}
    197       1.1        ws 	if (boot->SecPerClust == 0) {
    198       1.5        ws 		pfatal("Invalid cluster size: %u", boot->SecPerClust);
    199       1.1        ws 		return FSFATAL;
    200       1.1        ws 	}
    201       1.1        ws 	if (boot->Sectors) {
    202       1.1        ws 		boot->HugeSectors = 0;
    203       1.1        ws 		boot->NumSectors = boot->Sectors;
    204       1.1        ws 	} else
    205       1.1        ws 		boot->NumSectors = boot->HugeSectors;
    206       1.1        ws 
    207      1.19   mlelstv 	if (boot->FirstCluster + boot->SecPerClust > boot->NumSectors) {
    208      1.19   mlelstv 		pfatal("Cluster offset too large (%u clusters)\n",
    209      1.19   mlelstv 		    boot->FirstCluster);
    210      1.16  christos 		return FSFATAL;
    211      1.16  christos 	}
    212      1.16  christos 
    213  1.21.4.1    martin 	/*
    214  1.21.4.1    martin 	 * The number of clusters is derived from available data sectors,
    215  1.21.4.1    martin 	 * divided by sectors per cluster.
    216  1.21.4.1    martin 	 */
    217  1.21.4.1    martin 	boot->NumClusters =
    218  1.21.4.1    martin 	    (boot->NumSectors - boot->FirstCluster) / boot->SecPerClust;
    219      1.19   mlelstv 
    220       1.5        ws 	if (boot->flags&FAT32)
    221       1.5        ws 		boot->ClustMask = CLUST32_MASK;
    222       1.5        ws 	else if (boot->NumClusters < (CLUST_RSRVD&CLUST12_MASK))
    223       1.5        ws 		boot->ClustMask = CLUST12_MASK;
    224       1.5        ws 	else if (boot->NumClusters < (CLUST_RSRVD&CLUST16_MASK))
    225       1.5        ws 		boot->ClustMask = CLUST16_MASK;
    226       1.5        ws 	else {
    227       1.5        ws 		pfatal("Filesystem too big (%u clusters) for non-FAT32 partition",
    228       1.5        ws 		       boot->NumClusters);
    229       1.5        ws 		return FSFATAL;
    230       1.5        ws 	}
    231       1.5        ws 
    232       1.5        ws 	switch (boot->ClustMask) {
    233       1.5        ws 	case CLUST32_MASK:
    234       1.5        ws 		boot->NumFatEntries = (boot->FATsecs * boot->BytesPerSec) / 4;
    235       1.5        ws 		break;
    236       1.5        ws 	case CLUST16_MASK:
    237       1.1        ws 		boot->NumFatEntries = (boot->FATsecs * boot->BytesPerSec) / 2;
    238       1.5        ws 		break;
    239       1.5        ws 	default:
    240       1.1        ws 		boot->NumFatEntries = (boot->FATsecs * boot->BytesPerSec * 2) / 3;
    241       1.5        ws 		break;
    242       1.5        ws 	}
    243       1.5        ws 
    244  1.21.4.1    martin 	if (boot->NumFatEntries < boot->NumClusters) {
    245       1.5        ws 		pfatal("FAT size too small, %u entries won't fit into %u sectors\n",
    246       1.1        ws 		       boot->NumClusters, boot->FATsecs);
    247       1.1        ws 		return FSFATAL;
    248       1.1        ws 	}
    249  1.21.4.1    martin 
    250  1.21.4.1    martin 	/*
    251  1.21.4.1    martin 	 * There are two reserved clusters. To avoid adding CLUST_FIRST every
    252  1.21.4.1    martin 	 * time we perform boundary checks, we increment the NumClusters by 2,
    253  1.21.4.1    martin 	 * which is CLUST_FIRST to denote the first out-of-range cluster number.
    254  1.21.4.1    martin 	 */
    255  1.21.4.1    martin 	boot->NumClusters += CLUST_FIRST;
    256  1.21.4.1    martin 
    257       1.1        ws 	boot->ClusterSize = boot->BytesPerSec * boot->SecPerClust;
    258       1.1        ws 
    259       1.1        ws 	boot->NumFiles = 1;
    260       1.1        ws 	boot->NumFree = 0;
    261       1.5        ws 
    262       1.5        ws 	return ret;
    263       1.5        ws }
    264       1.5        ws 
    265       1.5        ws int
    266      1.10   xtraeme writefsinfo(int dosfs, struct bootblock *boot)
    267       1.5        ws {
    268       1.5        ws 	u_char fsinfo[2 * DOSBOOTBLOCKSIZE];
    269       1.5        ws 
    270       1.5        ws 	if (lseek(dosfs, boot->FSInfo * boot->BytesPerSec, SEEK_SET)
    271       1.5        ws 	    != boot->FSInfo * boot->BytesPerSec
    272       1.5        ws 	    || read(dosfs, fsinfo, sizeof fsinfo) != sizeof fsinfo) {
    273      1.11  christos 		perr("could not read fsinfo block");
    274       1.5        ws 		return FSFATAL;
    275       1.5        ws 	}
    276       1.5        ws 	fsinfo[0x1e8] = (u_char)boot->FSFree;
    277       1.5        ws 	fsinfo[0x1e9] = (u_char)(boot->FSFree >> 8);
    278       1.5        ws 	fsinfo[0x1ea] = (u_char)(boot->FSFree >> 16);
    279       1.5        ws 	fsinfo[0x1eb] = (u_char)(boot->FSFree >> 24);
    280       1.5        ws 	fsinfo[0x1ec] = (u_char)boot->FSNext;
    281       1.5        ws 	fsinfo[0x1ed] = (u_char)(boot->FSNext >> 8);
    282       1.5        ws 	fsinfo[0x1ee] = (u_char)(boot->FSNext >> 16);
    283       1.5        ws 	fsinfo[0x1ef] = (u_char)(boot->FSNext >> 24);
    284       1.5        ws 	if (lseek(dosfs, boot->FSInfo * boot->BytesPerSec, SEEK_SET)
    285       1.5        ws 	    != boot->FSInfo * boot->BytesPerSec
    286       1.5        ws 	    || write(dosfs, fsinfo, sizeof fsinfo)
    287       1.5        ws 	    != sizeof fsinfo) {
    288      1.11  christos 		perr("Unable to write FSInfo");
    289       1.5        ws 		return FSFATAL;
    290       1.5        ws 	}
    291       1.6        ws 	/*
    292       1.6        ws 	 * Technically, we should return FSBOOTMOD here.
    293       1.6        ws 	 *
    294       1.6        ws 	 * However, since Win95 OSR2 (the first M$ OS that has
    295       1.6        ws 	 * support for FAT32) doesn't maintain the FSINFO block
    296       1.6        ws 	 * correctly, it has to be fixed pretty often.
    297       1.6        ws 	 *
    298      1.21  dholland 	 * Therefore, we handle the FSINFO block only informally,
    299       1.7       wiz 	 * fixing it if necessary, but otherwise ignoring the
    300       1.6        ws 	 * fact that it was incorrect.
    301       1.6        ws 	 */
    302       1.6        ws 	return 0;
    303       1.1        ws }
    304