openwrt/package/base-files/files/lib/upgrade/common.sh
李国 a6b7c3e672 x86: generate EFI platform bootable images
Add EFI platform bootable images for x86 platforms. These images can
also boot from legacy BIOS platform.

EFI System Partition need to be fat12/fat16/fat32 (not need to load
filesystem drivers), so the first partition of EFI images are not ext4
filesystem any more.

GPT partition table has an alternate partition table, we did not
generate it. This may cause problems when use these images as qemu disk
(kernel can not find rootfs), we pad enough sectors will be ok.

Signed-off-by: 李国 <uxgood.org@gmail.com>
[part_magic_* refactoring, removed genisoimage checks]
Signed-off-by: Petr Štetiar <ynezz@true.cz>
2020-03-31 16:20:47 +02:00

288 lines
6.6 KiB
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#!/bin/sh
RAM_ROOT=/tmp/root
export BACKUP_FILE=sysupgrade.tgz # file extracted by preinit
[ -x /usr/bin/ldd ] || ldd() { LD_TRACE_LOADED_OBJECTS=1 $*; }
libs() { ldd $* 2>/dev/null | sed -r 's/(.* => )?(.*) .*/\2/'; }
install_file() { # <file> [ <file> ... ]
local target dest dir
for file in "$@"; do
if [ -L "$file" ]; then
target="$(readlink -f "$file")"
dest="$RAM_ROOT/$file"
[ ! -f "$dest" ] && {
dir="$(dirname "$dest")"
mkdir -p "$dir"
ln -s "$target" "$dest"
}
file="$target"
fi
dest="$RAM_ROOT/$file"
[ -f "$file" -a ! -f "$dest" ] && {
dir="$(dirname "$dest")"
mkdir -p "$dir"
cp "$file" "$dest"
}
done
}
install_bin() {
local src files
src=$1
files=$1
[ -x "$src" ] && files="$src $(libs $src)"
install_file $files
}
run_hooks() {
local arg="$1"; shift
for func in "$@"; do
eval "$func $arg"
done
}
ask_bool() {
local default="$1"; shift;
local answer="$default"
[ "$INTERACTIVE" -eq 1 ] && {
case "$default" in
0) echo -n "$* (y/N): ";;
*) echo -n "$* (Y/n): ";;
esac
read answer
case "$answer" in
y*) answer=1;;
n*) answer=0;;
*) answer="$default";;
esac
}
[ "$answer" -gt 0 ]
}
v() {
[ "$VERBOSE" -ge 1 ] && echo "$@"
}
json_string() {
local v="$1"
v="${v//\\/\\\\}"
v="${v//\"/\\\"}"
echo "\"$v\""
}
rootfs_type() {
/bin/mount | awk '($3 ~ /^\/$/) && ($5 !~ /rootfs/) { print $5 }'
}
get_image() { # <source> [ <command> ]
local from="$1"
local cmd="$2"
if [ -z "$cmd" ]; then
local magic="$(dd if="$from" bs=2 count=1 2>/dev/null | hexdump -n 2 -e '1/1 "%02x"')"
case "$magic" in
1f8b) cmd="zcat";;
425a) cmd="bzcat";;
*) cmd="cat";;
esac
fi
cat "$from" 2>/dev/null | $cmd
}
get_magic_word() {
(get_image "$@" | dd bs=2 count=1 | hexdump -v -n 2 -e '1/1 "%02x"') 2>/dev/null
}
get_magic_long() {
(get_image "$@" | dd bs=4 count=1 | hexdump -v -n 4 -e '1/1 "%02x"') 2>/dev/null
}
get_magic_gpt() {
(get_image "$@" | dd bs=8 count=1 skip=64) 2>/dev/null
}
get_magic_vfat() {
(get_image "$@" | dd bs=1 count=3 skip=54) 2>/dev/null
}
part_magic_efi() {
local magic=$(get_magic_gpt "$@")
[ "$magic" = "EFI PART" ]
}
part_magic_fat() {
local magic=$(get_magic_vfat "$@")
[ "$magic" = "FAT" ]
}
export_bootdevice() {
local cmdline bootdisk rootpart uuid blockdev uevent line class
local MAJOR MINOR DEVNAME DEVTYPE
if read cmdline < /proc/cmdline; then
case "$cmdline" in
*block2mtd=*)
bootdisk="${cmdline##*block2mtd=}"
bootdisk="${bootdisk%%,*}"
;;
*root=*)
rootpart="${cmdline##*root=}"
rootpart="${rootpart%% *}"
;;
esac
case "$bootdisk" in
/dev/*)
uevent="/sys/class/block/${bootdisk##*/}/uevent"
;;
esac
case "$rootpart" in
PARTUUID=[a-f0-9][a-f0-9][a-f0-9][a-f0-9][a-f0-9][a-f0-9][a-f0-9][a-f0-9]-[a-f0-9][a-f0-9])
uuid="${rootpart#PARTUUID=}"
uuid="${uuid%-[a-f0-9][a-f0-9]}"
for blockdev in $(find /dev -type b); do
set -- $(dd if=$blockdev bs=1 skip=440 count=4 2>/dev/null | hexdump -v -e '4/1 "%02x "')
if [ "$4$3$2$1" = "$uuid" ]; then
uevent="/sys/class/block/${blockdev##*/}/uevent"
break
fi
done
;;
PARTUUID=????????-????-????-????-??????????02)
uuid="${rootpart#PARTUUID=}"
uuid="${uuid%02}00"
for disk in $(find /dev -type b); do
set -- $(dd if=$disk bs=1 skip=568 count=16 2>/dev/null | hexdump -v -e '8/1 "%02x "" "2/1 "%02x""-"6/1 "%02x"')
if [ "$4$3$2$1-$6$5-$8$7-$9" = "$uuid" ]; then
uevent="/sys/class/block/${disk##*/}/uevent"
break
fi
done
;;
/dev/*)
uevent="/sys/class/block/${rootpart##*/}/../uevent"
;;
0x[a-f0-9][a-f0-9][a-f0-9] | 0x[a-f0-9][a-f0-9][a-f0-9][a-f0-9] | \
[a-f0-9][a-f0-9][a-f0-9] | [a-f0-9][a-f0-9][a-f0-9][a-f0-9])
rootpart=0x${rootpart#0x}
for class in /sys/class/block/*; do
while read line; do
export -n "$line"
done < "$class/uevent"
if [ $((rootpart/256)) = $MAJOR -a $((rootpart%256)) = $MINOR ]; then
uevent="$class/../uevent"
fi
done
;;
esac
if [ -e "$uevent" ]; then
while read line; do
export -n "$line"
done < "$uevent"
export BOOTDEV_MAJOR=$MAJOR
export BOOTDEV_MINOR=$MINOR
return 0
fi
fi
return 1
}
export_partdevice() {
local var="$1" offset="$2"
local uevent line MAJOR MINOR DEVNAME DEVTYPE
for uevent in /sys/class/block/*/uevent; do
while read line; do
export -n "$line"
done < "$uevent"
if [ $BOOTDEV_MAJOR = $MAJOR -a $(($BOOTDEV_MINOR + $offset)) = $MINOR -a -b "/dev/$DEVNAME" ]; then
export "$var=$DEVNAME"
return 0
fi
done
return 1
}
hex_le32_to_cpu() {
[ "$(echo 01 | hexdump -v -n 2 -e '/2 "%x"')" = "3031" ] && {
echo "${1:0:2}${1:8:2}${1:6:2}${1:4:2}${1:2:2}"
return
}
echo "$@"
}
get_partitions() { # <device> <filename>
local disk="$1"
local filename="$2"
if [ -b "$disk" -o -f "$disk" ]; then
v "Reading partition table from $filename..."
local magic=$(dd if="$disk" bs=2 count=1 skip=255 2>/dev/null)
if [ "$magic" != $'\x55\xAA' ]; then
v "Invalid partition table on $disk"
exit
fi
rm -f "/tmp/partmap.$filename"
local part
part_magic_efi "$disk" && {
#export_partdevice will fail when partition number is greater than 15, as
#the partition major device number is not equal to the disk major device number
for part in 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15; do
set -- $(hexdump -v -n 48 -s "$((0x380 + $part * 0x80))" -e '4/4 "%08x"" "4/4 "%08x"" "4/4 "0x%08X "' "$disk")
local type="$1"
local lba="$(( $(hex_le32_to_cpu $4) * 0x100000000 + $(hex_le32_to_cpu $3) ))"
local end="$(( $(hex_le32_to_cpu $6) * 0x100000000 + $(hex_le32_to_cpu $5) ))"
local num="$(( $end - $lba ))"
[ "$type" = "00000000000000000000000000000000" ] && continue
printf "%2d %5d %7d\n" $part $lba $num >> "/tmp/partmap.$filename"
done
} || {
for part in 1 2 3 4; do
set -- $(hexdump -v -n 12 -s "$((0x1B2 + $part * 16))" -e '3/4 "0x%08X "' "$disk")
local type="$(( $(hex_le32_to_cpu $1) % 256))"
local lba="$(( $(hex_le32_to_cpu $2) ))"
local num="$(( $(hex_le32_to_cpu $3) ))"
[ $type -gt 0 ] || continue
printf "%2d %5d %7d\n" $part $lba $num >> "/tmp/partmap.$filename"
done
}
fi
}
indicate_upgrade() {
. /etc/diag.sh
set_state upgrade
}
# Flash firmware to MTD partition
#
# $(1): path to image
# $(2): (optional) pipe command to extract firmware, e.g. dd bs=n skip=m
default_do_upgrade() {
sync
if [ -n "$UPGRADE_BACKUP" ]; then
get_image "$1" "$2" | mtd $MTD_ARGS $MTD_CONFIG_ARGS -j "$UPGRADE_BACKUP" write - "${PART_NAME:-image}"
else
get_image "$1" "$2" | mtd $MTD_ARGS write - "${PART_NAME:-image}"
fi
[ $? -ne 0 ] && exit 1
}