3 # $miros: src/sys/arch/i386/stand/bootxx/mkbxinst.sh,v 1.28 2010/11/12 21:20:35 tg Exp $
4 # $miros: src/sys/arch/i386/stand/bootxx/bootxx.S,v 1.25 2009/06/29 20:50:59 tg Exp $ +t:GRUB +s:MBR
6 # Copyright (c) 2007, 2008, 2009, 2010
7 # Thorsten Glaser <tg@mirbsd.org>
9 # Provided that these terms and disclaimer and all copyright notices
10 # are retained or reproduced in an accompanying document, permission
11 # is granted to deal in this work without restriction, including un‐
12 # limited rights to use, publicly perform, distribute, sell, modify,
13 # merge, give away, or sublicence.
15 # This work is provided “AS IS” and WITHOUT WARRANTY of any kind, to
16 # the utmost extent permitted by applicable law, neither express nor
17 # implied; without malicious intent or gross negligence. In no event
18 # may a licensor, author or contributor be held liable for indirect,
19 # direct, other damage, loss, or other issues arising in any way out
20 # of dealing in the work, even if advised of the possibility of such
21 # damage or existence of a defect, except proven that it results out
22 # of said person’s immediate fault when using the work as intended.
24 # Self-installing 32-bit x86 boot blocks for GNU GRUB2 on i386-pc
25 # Reads a list of extents (firstblock lastblock) from standard input
26 # and writes bootxx to standard output, which can subsequentially be
27 # stored as partition boot record (or floppy boot sector) on disc.
29 set -A thecode 0x66 0x31 0xC9 0x8E 0xD1 0xBC 0xFC 0x7B 0x66 0x51 0x66 0x9D 0x8E 0xC1 0xBE 0x00 0x7C 0x8E 0xD9 0xBB 0x00 0x08 0x53 0x53 0x8E 0xC3 0xBF 0x00 0xFE 0xB5 0x02 0xF3 0xA4 0x1F 0x68 0x6B 0xFE 0xCB 0x30 0x41 0x41 0x44 0x20 0x4C 0x6F 0x61 0x64 0x69 0x6E 0x67 0x20 0x00 0x20 0x65 0x72 0x72 0x6F 0x72 0x0D 0x0A 0x00 0x96 0x02 0x00 0x12 0x00 0x00 0x80 0x65 0xFF 0xB4 0x0E 0xBB 0x07 0x00 0xCD 0x10 0xAC 0x08 0xC0 0x75 0xF4 0xC3 0xE8 0xF7 0xFF 0xB8 0x41 0xFF 0x87 0x06 0x44 0xFE 0x3D 0x41 0xFF 0x75 0x19 0x31 0xC0 0xCD 0x16 0xEA 0xF0 0xFF 0x00 0xF0 0xFB 0x88 0x16 0x43 0xFE 0xBE 0x26 0xFE 0x80 0xFA 0x80 0x72 0xDB 0xE8 0xD2 0xFF 0x31 0xDB 0xBE 0x68 0xFF 0x0F 0xB6 0x2E 0x3D 0xFE 0xAC 0x0F 0xB6 0xC8 0xC0 0xE9 0x05 0x83 0xE0 0x1F 0x40 0x41 0x50 0xBF 0x10 0xFE 0xB8 0x10 0x00 0xAB 0xB0 0x01 0xAB 0x89 0xD8 0xAB 0x8C 0xC8 0xAB 0xF3 0xA4 0x31 0xC0 0xAB 0xAB 0xAB 0xAB 0x5F 0x55 0x56 0xBE 0x10 0xFE 0xFF 0x16 0x44 0xFE 0xBD 0x04 0x00 0x8A 0x16 0x43 0xFE 0x60 0xF9 0xCD 0x13 0x9C 0xB8 0x2E 0x0E 0xBB 0x07 0x00 0xCD 0x10 0x9D 0xFB 0x61 0x73 0x1C 0x4D 0x60 0x9C 0x31 0xC0 0xCD 0x13 0x9D 0xBE 0x34 0xFE 0x0F 0x84 0x77 0xFF 0xB8 0x30 0x0E 0x01 0xE8 0xBB 0x07 0x00 0xCD 0x10 0x61 0xEB 0xD2 0xB4 0x02 0x00 0xE7 0x89 0x5C 0x04 0x00 0xFC 0x72 0x14 0x66 0x83 0x44 0x08 0x01 0x66 0x83 0x54 0x0C 0x00 0x4F 0x75 0xAC 0x5E 0x5D 0x4D 0x0F 0x85 0x7D 0xFF 0xBE 0x3A 0xFE 0xE8 0x3F 0xFF 0x66 0x31 0xD2 0x52 0x66 0x4A 0x8A 0x16 0x43 0xFE 0xB8 0x00 0x82 0x50 0xFA 0xCB 0x60 0x06 0xB4 0x08 0x8A 0x16 0x43 0xFE 0xF9 0xCD 0x13 0xFB 0x07 0xBE 0x34 0xFE 0x0F 0x82 0x21 0xFF 0x80 0xE1 0x3F 0x88 0x0E 0x40 0xFE 0x0F 0xB6 0xC6 0x40 0xA3 0x3E 0xFE 0x61 0x8B 0x0E 0x40 0xFE 0xE3 0xD7 0x8B 0x44 0x08 0x8B 0x54 0x0A 0xF7 0xF1 0x42 0x31 0xC9 0x87 0xD1 0xF7 0x36 0x3E 0xFE 0xC0 0xE4 0x06 0x86 0xC4 0x09 0xC1 0x88 0xD6 0xB8 0x01 0x02 0xC3 0xB4 0x42 0xC3
30 typeset -i ofs_bkcnt=61
31 typeset -i ofs_geomh=62
32 typeset -i ofs_geoms=64
33 typeset -i ofs_partp=66
34 typeset -i ofs_secsz=234
38 typeset -Uui16 curptr=begptr
39 typeset -i wnum=0 wofs=0 wrec=0 bkend=0x1FE
42 typeset -Ui blk=$1 cnt=$2 n
43 typeset -Uui16 x=blk y
45 (( blk && cnt )) || return
47 print -u2 "$wrec @0x${curptr#16#}: $cnt @$blk (0x${x#16#})"
51 (( n = blk < 0x00000100 ? 0 :
52 blk < 0x00010000 ? 1 :
53 blk < 0x01000000 ? 2 : 3 ))
54 (( x = cnt < 33 ? cnt : 32 ))
56 print -u2 " - 0x${curptr#16#}: $((x)) (0x${x#16#}) @ $blk" \
58 (( thecode[curptr++] = (n++ << 5) | (x - 1) ))
62 (( thecode[curptr++] = y & 0xFF ))
68 function record_block {
71 if (( !blk || (wofs && blk != (wofs + wnum)) )); then
72 # flush the blocks from the cache
73 (( wnum )) && do_record $wofs $wnum
78 # record some new block into the cache
79 (( wofs )) || let wofs=blk
80 (( wnum += 1 << sscale ))
84 typeset -i partp=0 numheads=0 numsecs=0 sscale=0 bsh=9 mbrpno=0 mbrptp=0 pofs=0
87 while getopts ":0:1AB:g:h:M:O:p:S:s:" ch; do
94 (B) if (( (bsh = OPTARG) < 9 || OPTARG > 15 )); then
95 print -u2 Error: invalid block size "2^'$OPTARG'"
99 (g) if [[ $OPTARG != +([0-9]):+([0-9]):+([0-9]) ]]; then
100 print -u2 Error: invalid geometry code "'$OPTARG'"
105 set -A g_code -- $OPTARG
107 (h) if (( (numheads = OPTARG) < 1 || OPTARG > 256 )); then
108 print -u2 Warning: invalid head count "'$OPTARG'"
111 (M) if [[ $OPTARG != +([0-9])?(:?(0[Xx])+([0-9])) ]]; then
112 print -u2 Warning: invalid partition info "'$OPTARG'"
118 set -A mbr_code -- $OPTARG
120 (( mbrpno = mbr_code[0] ))
121 (( mbrptp = mbr_code[1] ))
122 if (( mbrpno < 1 || mbrpno > 4 )); then
123 print -u2 Warning: invalid partition \
127 if (( mbrptp < 1 || mbrptp > 255 )); then
128 print -u2 Warning: invalid partition \
133 (O) if [[ $OPTARG != +([0-9]) ]]; then
134 print -u2 Warning: invalid partition offset "'$OPTARG'"
138 (p) if (( (partp = OPTARG) < 1 || OPTARG > 255 )); then
139 print -u2 Warning: invalid partition type "'$OPTARG'"
142 (S) if (( (sscale = OPTARG) < 0 || OPTARG > 24 )); then
143 print -u2 Error: invalid input scale "'$OPTARG'"
146 (s) if (( (numsecs = OPTARG) < 1 || OPTARG > 63 )); then
147 print -u2 Warning: invalid sector count "'$OPTARG'"
150 (*) print -u2 'Syntax:
151 bxinst [-1A] [-B blocksize] [-g C:H:S] [-h heads] [-M pno(1..4)[:typ]]
152 [-O partitionofs] [-p type] [-S scale] [-s secs] <sectorlist | \\
153 dd of=image conv=notrunc
154 Default values: blocksize=9 heads=16 sectors=63 part.ofs=0 type=0x27 scale=0
155 partno=4 if -g (create MBR partition) is given; -A = auto boot geometry'
159 shift $((OPTIND - 1))
161 typeset -Ui psz=0 # must be unsigned
162 if (( g_code[0] )); then
163 # bounds check partition table values, calculate total sectors
164 if (( g_code[0] < 1 || g_code[1] < 1 || g_code[1] > 256 ||
165 g_code[2] < 1 || g_code[2] > 63 )); then
166 print -u2 Invalid geometry, values out of bounds.
167 elif [[ $(print "(${g_code[0]} * ${g_code[1]} * ${g_code[2]})" \
168 "> 4294967295" | bc) = 1 ]]; then
169 print -u2 Invalid geometry, more than 2 TiB of data.
171 # we know it's <= 2^32-1
172 (( psz = g_code[0] * g_code[1] * g_code[2] ))
176 print -u2 geometry is $psz sectors \($(print \
177 "$psz * $((1 << bsh))" | bc) bytes\) in ${g_code[0]} cylinders, \
178 ${g_code[1]} heads, ${g_code[2]} sectors per track
179 if (( numsecs == 0 || (numsecs != 99 && numheads == 0) )); then
180 print -u2 Warning: using these values for C/H/S boot
181 numheads=${g_code[1]}
184 (( mbrpno )) || mbrpno=4 # default partition number
186 if (( mbrpno )); then
188 (( psz )) || print -u2 Warning: no geometry given, will not \
189 create an MBR partition table entry
192 if (( numsecs == 99 )); then
196 if (( !numheads )); then
197 print -u2 Warning: using default value of 16 heads
201 if (( !numsecs )); then
202 print -u2 Warning: using default value of 63 sectors
207 # read in the extents
208 while read firstblock lastblock junk; do
209 while (( firstblock <= lastblock )); do
210 record_block $((firstblock++ << sscale))
213 record_block 0 # just flush
214 print -u2 "using $wrec blocks, $((curptr-begptr)) bytes ($((bkend-curptr)) free)"
216 # fill the block table
217 if (( curptr-- > bkend )); then
218 print -u2 Error: too many blocks
221 while (( ++curptr < bkend )); do
222 (( thecode[curptr] = (curptr & 0xFCF) == 0x1C2 ? 0 : RANDOM & 0xFF ))
223 # ensure the “active” flag is never set to 0x00 or 0x80
224 if (( ((curptr + 2) & 0xFCF) == 0x01C0 )); then
225 (( thecode[curptr] & 0x7F )) || let --curptr
232 (( thecode[ofs_bkcnt] = wrec ))
233 (( thecode[ofs_geomh] = numheads & 0xFF ))
234 (( thecode[ofs_geomh + 1] = numheads >> 8 ))
235 (( thecode[ofs_geoms] = numsecs ))
236 (( thecode[ofs_partp] = partp ))
237 print -u2 "using sectors of 2^$bsh = $((1 << bsh)) bytes"
238 (( thecode[ofs_secsz] = (1 << (bsh - 8)) ))
240 # create an MBR partition if desired
242 (( mbrpno = 0x1BE + ((mbrpno - 1) * 16) ))
243 set -A o_code # g_code equivalent for partition offset
244 (( o_code[2] = pofs % g_code[2] + 1 ))
245 (( o_code[1] = pofs / g_code[2] ))
246 (( o_code[0] = o_code[1] / g_code[1] + 1 ))
247 (( o_code[1] = o_code[1] % g_code[1] + 1 ))
248 # boot flag; C/H/S offset
249 thecode[mbrpno++]=0x80
250 (( thecode[mbrpno++] = o_code[1] - 1 ))
251 (( cylno = o_code[0] > 1024 ? 1023 : o_code[0] - 1 ))
252 (( thecode[mbrpno++] = o_code[2] | ((cylno & 0x0300) >> 2) ))
253 (( thecode[mbrpno++] = cylno & 0x00FF ))
254 # partition type; C/H/S end
255 (( thecode[mbrpno++] = (mbrptp ? mbrptp : partp ? partp : 0x27) ))
256 (( thecode[mbrpno++] = g_code[1] - 1 ))
257 (( cylno = g_code[0] > 1024 ? 1023 : g_code[0] - 1 ))
258 (( thecode[mbrpno++] = g_code[2] | ((cylno & 0x0300) >> 2) ))
259 (( thecode[mbrpno++] = cylno & 0x00FF ))
260 # partition offset, size (LBA)
261 (( thecode[mbrpno++] = pofs & 0xFF ))
262 (( thecode[mbrpno++] = (pofs >> 8) & 0xFF ))
263 (( thecode[mbrpno++] = (pofs >> 16) & 0xFF ))
264 (( thecode[mbrpno++] = (pofs >> 24) & 0xFF ))
265 (( pssz = psz - pofs ))
266 (( thecode[mbrpno++] = pssz & 0xFF ))
267 (( thecode[mbrpno++] = (pssz >> 8) & 0xFF ))
268 (( thecode[mbrpno++] = (pssz >> 16) & 0xFF ))
269 (( thecode[mbrpno++] = (pssz >> 24) & 0xFF ))
272 # create the output string
275 while (( curptr < 512 )); do
276 ostr=$ostr\\0${thecode[curptr++]#8#}