19ab44d39b
Teach about the afd driver. Teach new char dev for ad driver. Make ownerships correct. Submitted by: jhb
286 lines
5.8 KiB
C
286 lines
5.8 KiB
C
/*
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* ----------------------------------------------------------------------------
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* "THE BEER-WARE LICENSE" (Revision 42):
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* <phk@login.dknet.dk> wrote this file. As long as you retain this notice you
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* can do whatever you want with this stuff. If we meet some day, and you think
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* this stuff is worth it, you can buy me a beer in return. Poul-Henning Kamp
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* ----------------------------------------------------------------------------
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*
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* $FreeBSD$
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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 <unistd.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sys/diskslice.h>
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#include <sys/disklabel.h>
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#include <err.h>
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#include "libdisk.h"
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int
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Track_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect)
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return 1;
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if (offset % d->bios_sect)
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return 0;
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return 1;
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}
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u_long
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Prev_Track_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect)
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return offset;
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return (offset / d->bios_sect) * d->bios_sect;
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}
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u_long
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Next_Track_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect)
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return offset;
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return Prev_Track_Aligned(d,offset + d->bios_sect-1);
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}
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int
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Cyl_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect || !d->bios_hd)
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return 1;
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if (offset % (d->bios_sect * d->bios_hd))
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return 0;
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return 1;
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}
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u_long
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Prev_Cyl_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect || !d->bios_hd)
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return offset;
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return (offset / (d->bios_sect*d->bios_hd)) * d->bios_sect * d->bios_hd;
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}
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u_long
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Next_Cyl_Aligned(struct disk *d, u_long offset)
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{
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if (!d->bios_sect || !d->bios_hd)
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return offset;
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return Prev_Cyl_Aligned(d,offset + (d->bios_sect * d->bios_hd)-1);
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}
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/*
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* Rule#0:
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* Chunks of type 'whole' can have max NDOSPART children.
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* Only one of them can have the "active" flag
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*/
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void
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Rule_000(struct disk *d, struct chunk *c, char *msg)
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{
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int i=0,j=0;
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struct chunk *c1;
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if (c->type != whole)
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return;
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for (c1=c->part; c1; c1=c1->next) {
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if (c1->type != unused) continue;
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if (c1->flags & CHUNK_ACTIVE)
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j++;
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i++;
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}
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if (i > NDOSPART)
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sprintf(msg+strlen(msg),
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"%d is too many children of the 'whole' chunk. Max is %d\n",
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i, NDOSPART);
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if (j > 1)
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sprintf(msg+strlen(msg),
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"Too many active children of 'whole'");
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}
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/*
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* Rule#1:
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* All children of 'whole' and 'extended' must be track-aligned.
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* Exception: the end can be unaligned if it matches the end of 'whole'
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*/
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void
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Rule_001(struct disk *d, struct chunk *c, char *msg)
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{
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int i;
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struct chunk *c1;
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if (c->type != whole && c->type != extended)
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return;
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for (i=0, c1=c->part; c1; c1=c1->next) {
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if (c1->type == unused) continue;
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c1->flags |= CHUNK_ALIGN;
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if (!Track_Aligned(d,c1->offset))
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sprintf(msg+strlen(msg),
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"chunk '%s' [%ld..%ld] does not start on a track boundary\n",
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c1->name,c1->offset,c1->end);
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if ((c->type == whole || c->end == c1->end)
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|| Cyl_Aligned(d,c1->end+1))
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;
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else
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sprintf(msg+strlen(msg),
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"chunk '%s' [%ld..%ld] does not end on a cylinder boundary\n",
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c1->name,c1->offset,c1->end);
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}
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}
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/*
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* Rule#2:
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* Max one 'fat' as child of 'whole'
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*/
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void
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Rule_002(struct disk *d, struct chunk *c, char *msg)
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{
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int i;
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struct chunk *c1;
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if (c->type != whole)
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return;
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for (i=0, c1=c->part; c1; c1=c1->next) {
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if (c1->type != fat)
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continue;
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i++;
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}
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if (i > 1) {
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sprintf(msg+strlen(msg),
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"Max one 'fat' allowed as child of 'whole'\n");
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}
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}
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/*
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* Rule#3:
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* Max one extended as child of 'whole'
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*/
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void
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Rule_003(struct disk *d, struct chunk *c, char *msg)
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{
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int i;
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struct chunk *c1;
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if (c->type != whole)
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return;
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for (i=0, c1=c->part; c1; c1=c1->next) {
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if (c1->type != extended)
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continue;
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i++;
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}
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if (i > 1) {
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sprintf(msg+strlen(msg),
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"Max one 'extended' allowed as child of 'whole'\n");
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}
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}
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/*
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* Rule#4:
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* Max seven 'part' as children of 'freebsd'
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* Max one CHUNK_IS_ROOT child per 'freebsd'
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* If Bad144, space for table must exist.
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* If Bad144 & root, bad144 table must be inside 1024
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*/
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void
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Rule_004(struct disk *d, struct chunk *c, char *msg)
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{
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int i=0,k=0;
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struct chunk *c1;
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if (c->type != freebsd)
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return;
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for (c1=c->part; c1; c1=c1->next) {
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if (c1->type != part)
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continue;
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if (c1->flags & CHUNK_IS_ROOT) {
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k++;
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if (c1->flags & CHUNK_PAST_1024)
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sprintf(msg+strlen(msg),
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"Root filesystem extends past cylinder 1024, and cannot be booted from\n");
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}
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i++;
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}
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if (i > 7) {
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sprintf(msg+strlen(msg),
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"Max seven partitions per freebsd slice\n");
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}
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if (k > 1) {
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sprintf(msg+strlen(msg),
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"Max one root partition child per freebsd slice\n");
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}
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}
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void
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Check_Chunk(struct disk *d, struct chunk *c, char *msg)
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{
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Rule_000(d,c,msg);
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Rule_001(d,c,msg);
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Rule_002(d,c,msg);
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Rule_003(d,c,msg);
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Rule_004(d,c,msg);
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if (c->part)
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Check_Chunk(d,c->part,msg);
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if (c->next)
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Check_Chunk(d,c->next,msg);
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if (c->end >= 1024*d->bios_hd*d->bios_sect)
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c->flags |= CHUNK_PAST_1024;
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else
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c->flags &= ~CHUNK_PAST_1024;
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}
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char *
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CheckRules(struct disk *d)
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{
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char msg[BUFSIZ];
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*msg = '\0';
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Check_Chunk(d,d->chunks,msg);
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if (*msg)
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return strdup(msg);
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return 0;
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}
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char *
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ChunkCanBeRoot(struct chunk *c)
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{
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struct chunk *c1;
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struct disk *d = c->disk;
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char msg[BUFSIZ];
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*msg = '\0';
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if (c->flags & CHUNK_PAST_1024) {
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strcat(msg,
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"The root partition must end before cylinder 1024 seen from\n");
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strcat(msg,
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"the BIOS' point of view, or it cannot be booted from.\n");
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return strdup(msg);
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}
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for (c1=d->chunks->part;;) {
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for (; c1; c1=c1->next)
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if (c1->offset <= c->offset && c1->end >= c->end)
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break;
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if (!c1) {
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strcat(msg,
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"Internal trouble, cannot find this chunk in the chunk-tree\n");
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return strdup(msg);
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}
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if (c1->type == freebsd)
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break;
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c1 = c1->part;
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}
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if (c1->type != freebsd) {
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strcat(msg,
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"The root partition must be in a FreeBSD slice, otherwise\n");
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strcat(msg,
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"the kernel cannot be booted from it\n");
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return strdup(msg);
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}
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return NULL;
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}
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