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https://github.com/linuxboot/heads.git
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commit
ebdcc8523c
@ -159,28 +159,6 @@ check_root_checksums() {
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fi
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}
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# Check if a device is an LVM2 PV, and if so print the VG name
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find_lvm_vg_name() {
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TRACE_FUNC
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local DEVICE VG
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DEVICE="$1"
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mkdir -p /tmp/root-hashes-gui
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if ! lvm pvs "$DEVICE" >/tmp/root-hashes-gui/lvm_vg 2>/dev/null; then
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# It's not an LVM PV
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return 1
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fi
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VG="$(tail -n +2 /tmp/root-hashes-gui/lvm_vg | awk '{print $2}')"
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if [ -z "$VG" ]; then
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DEBUG "Could not find LVM2 VG from lvm pvs output:"
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DEBUG "$(cat /tmp/root-hashes-gui/lvm_vg)"
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return 1
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fi
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echo "$VG"
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}
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# Open an LVM volume group, then continue looking for more layers in the 'root'
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# logical volume.
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open_block_device_lvm() {
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@ -154,6 +154,28 @@ enable_usb_storage() {
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fi
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}
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device_has_partitions() {
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local DEVICE="$1"
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# fdisk normally says "doesn't contain a valid partition table" for
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# devices that lack a partition table - except for FAT32.
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#
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# FAT32 devices have a volume boot record that looks enough like an MBR
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# to satisfy fdisk. In that case, fdisk prints a partition table header
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# but no partitions.
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#
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# This check covers that: [ $(fdisk -l "$b" | wc -l) -eq 5 ]
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# In both cases the output is 5 lines: 3 about device info, 1 empty line
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# and the 5th will be the table header or the invalid message.
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local DISK_DATA=$(fdisk -l "$DEVICE")
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if echo "$DISK_DATA" | grep -q "doesn't contain a valid partition table" || \
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[ "$(echo "$DISK_DATA" | wc -l)" -eq 5 ]; then
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# No partition table
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return 1
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fi
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# There is a partition table
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return 0
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}
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list_usb_storage() {
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TRACE_FUNC
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# List all USB storage devices, including partitions unless we received argument stating we want drives only
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@ -184,16 +206,7 @@ list_usb_storage() {
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# never usable directly, and this allows the "wait for
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# disks" loop in mount-usb to correctly wait for the
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# partitions.
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# This check: [ $(fdisk -l "$b" | wc -l) -eq 5 ]
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# covers the case of a device without partition table but
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# formatted as fat32, which contains a sortof partition table.
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# this causes fdisk to not print the invalid partition table
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# message and instead it'll print an empty table with header.
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# In both cases the output is 5 lines: 3 about device info,
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# 1 empty line and the 5th will be the table header or the
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# unvalid message.
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DISK_DATA=$(fdisk -l "$b")
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if echo "$DISK_DATA" | grep -q "doesn't contain a valid partition table" || [ $(echo "$DISK_DATA" | wc -l) -eq 5 ]; then
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if ! device_has_partitions "$b"; then
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# No partition table, include this device
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DEBUG "USB storage device without partition table: $b"
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echo "$b"
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@ -520,52 +533,143 @@ verify_checksums() {
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return $?
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}
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# Check if a device is an LVM2 PV, and if so print the VG name
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find_lvm_vg_name() {
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TRACE_FUNC
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local DEVICE VG
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DEVICE="$1"
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mkdir -p /tmp/root-hashes-gui
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if ! lvm pvs "$DEVICE" >/tmp/root-hashes-gui/lvm_vg 2>/dev/null; then
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# It's not an LVM PV
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return 1
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fi
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VG="$(tail -n +2 /tmp/root-hashes-gui/lvm_vg | awk '{print $2}')"
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if [ -z "$VG" ]; then
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DEBUG "Could not find LVM2 VG from lvm pvs output:"
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DEBUG "$(cat /tmp/root-hashes-gui/lvm_vg)"
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return 1
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fi
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echo "$VG"
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}
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# If a block device is a partition, check if it is a bios-grub partition on a
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# GPT-partitioned disk.
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is_gpt_bios_grub() {
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TRACE_FUNC
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local PART_DEV="$1" DEVICE NUMBER
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# Figure out the partitioned device containing this device (if there is
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# one) from /sys/class/block.
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local DEVICE_MATCHES=("/sys/class/block/"*"/$(basename "$PART_DEV")")
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DEVICE="$(echo "${DEVICE_MATCHES[0]}" | cut -d/ -f5)"
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if [ "${#DEVICE_MATCHES[@]}" -ne 1 ] || [ "$DEVICE" = "*" ]; then
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return 0
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fi
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# Extract the partition number
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if ! [[ $(basename "$PART_DEV") =~ ([0-9]+)$ ]]; then
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return 0 # Can't figure out the partition number
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fi
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NUMBER="${BASH_REMATCH[1]}"
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# Now we know the device and partition number, get the type. This is
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# specific to GPT disks, MBR disks are shown differently by fdisk.
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TRACE "$PART_DEV is partition $NUMBER of $DEVICE"
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if [ "$(fdisk -l "/dev/$DEVICE" | awk '$1 == '"$NUMBER"' {print $5}')" == grub ]; then
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return 0
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fi
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return 1
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}
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# Test if a block device could be used as /boot - we can mount it and it
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# contains /boot/grub* files. (Here, the block device could be a partition or
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# an unpartitioned device.)
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#
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# If the device is a partition, its type is also checked. Some common types
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# that we definitely can't mount this way are excluded to silence spurious exFAT
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# errors.
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#
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# Any existing /boot is unmounted. If the device is a reasonable boot device,
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# it's left mounted on /boot.
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mount_possible_boot_device() {
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TRACE_FUNC
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local BOOT_DEV="$1"
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local PARTITION_TYPE
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# Unmount anything on /boot. Ignore failure since there might not be
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# anything. If there is something mounted and we cannot unmount it for
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# some reason, mount will fail, which is handled.
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umount /boot 2>/dev/null || true
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# Skip bios-grub partitions on GPT disks, LUKS partitions, and LVM PVs,
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# we can't mount these as /boot.
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if is_gpt_bios_grub "$BOOT_DEV" || cryptsetup isLuks "$BOOT_DEV" ||
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find_lvm_vg_name "$BOOT_DEV" >/dev/null; then
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TRACE "$BOOT_DEV is not a mountable partition for /boot"
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return 1
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fi
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TRACE "Try mounting $BOOT_DEV as /boot"
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if mount -o ro "$BOOT_DEV" /boot >/dev/null 2>&1; then
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if ls -d /boot/grub* >/dev/null 2>&1; then
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# This device is a reasonable boot device
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return 0
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fi
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umount /boot || true
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fi
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return 1
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}
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# detect and set /boot device
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# mount /boot if successful
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detect_boot_device() {
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TRACE_FUNC
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local devname
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# unmount /boot to be safe
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cd / && umount /boot 2>/dev/null
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# check $CONFIG_BOOT_DEV if set/valid
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if [ -e "$CONFIG_BOOT_DEV" ]; then
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if mount -o ro $CONFIG_BOOT_DEV /boot >/dev/null 2>&1; then
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if ls -d /boot/grub* >/dev/null 2>&1; then
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# CONFIG_BOOT_DEV is valid device and contains an installed OS
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return 0
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fi
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fi
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if [ -e "$CONFIG_BOOT_DEV" ] && mount_possible_boot_device "$CONFIG_BOOT_DEV"; then
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# CONFIG_BOOT_DEV is valid device and contains an installed OS
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return 0
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fi
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# generate list of possible boot devices
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fdisk -l | grep "Disk /dev/" | cut -f2 -d " " | cut -f1 -d ":" >/tmp/disklist
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# filter out extraneous options
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>/tmp/boot_device_list
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# Check each possible boot device
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for i in $(cat /tmp/disklist); do
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# remove block device from list if numeric partitions exist, since not bootable
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DEV_NUM_PARTITIONS=$(($(ls -1 $i* | wc -l) - 1))
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if [ ${DEV_NUM_PARTITIONS} -eq 0 ]; then
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echo $i >>/tmp/boot_device_list
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# If the device has partitions, check the partitions instead
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if device_has_partitions "$i"; then
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devname="$(basename "$i")"
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partitions=("/sys/class/block/$devname/$devname"?*)
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else
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ls $i* | tail -${DEV_NUM_PARTITIONS} >>/tmp/boot_device_list
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partitions=("$i") # Use the device itself
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fi
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done
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# iterate thru possible options and check for grub dir
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for i in $(cat /tmp/boot_device_list); do
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umount /boot 2>/dev/null
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if mount -o ro $i /boot >/dev/null 2>&1; then
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if ls -d /boot/grub* >/dev/null 2>&1; then
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CONFIG_BOOT_DEV="$i"
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for partition in "${partitions[@]}"; do
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partition_dev=/dev/"$(basename "$partition")"
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# No sense trying something we already tried above
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if [ "$partition_dev" = "$CONFIG_BOOT_DEV" ]; then
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continue
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fi
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# If this is a reasonable boot device, select it and finish
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if mount_possible_boot_device "$partition_dev"; then
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CONFIG_BOOT_DEV="$partition_dev"
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return 0
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fi
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fi
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done
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done
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# no valid boot device found
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echo "Unable to locate /boot files on any mounted disk"
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umount /boot 2>/dev/null
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return 1
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}
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@ -49,6 +49,12 @@ fi
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# Load the date from the hardware clock, setting it in local time
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hwclock -l -s
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# When mounting a filesystem, try exFAT last, since it logs errors if the
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# filesystem is not exFAT, and the errors go to the console. Those errors are
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# spurious when the medium is iso9660. By default in our config, the only
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# filesystem after exFAT is iso9660, move exFAT last.
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(grep -v '^\texfat$' /proc/filesystems && echo -e '\texfat') >/etc/filesystems
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# Read the system configuration parameters
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. /etc/ash_functions
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. /etc/config
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