# -*- shell-script -*- _log_msg() { if [ "$quiet" = "y" ]; then return; fi printf "$@" } log_success_msg() { _log_msg "Success: $@\n" } log_failure_msg() { _log_msg "Failure: $@\n" } log_warning_msg() { _log_msg "Warning: $@\n" } log_begin_msg() { _log_msg "Begin: $@ ... " } log_end_msg() { _log_msg "done.\n" } # Add failure hook add_mountroot_fail_hook() { mkdir -p /tmp/mountroot-fail-hooks.d ln -s "$0" /tmp/mountroot-fail-hooks.d/"$1" } # Run failure hooks. # When a failure hook exits "1", it has not done anything to correct the # system. Exiting "0" means that something has been attempted to resolve # the lack of a root filesystem. # Hooks are run in lexigraphical order, and are responsible for removing # themselves if they should not re-run in a later cycle. When one exits # "0", the stack is stopped, so the caller can return to the main rootfs # wait loop. try_failure_hooks() { local hook # Disable usplash so text from hooks can be seen if [ -x /sbin/usplash_write ]; then /sbin/usplash_write "QUIT" fi chvt 1 if [ -x /bin/plymouth ] && plymouth --ping; then /bin/plymouth hide-splash > /dev/null 2>&1 fi for hook in /tmp/mountroot-fail-hooks.d/*; do if [ -x ${hook} ] && ${hook} mountfail; then return 0 fi done return 1 } panic() { if command -v chvt >/dev/null 2>&1; then chvt 1 fi echo "$@" # Disallow console access if [ -n "${panic}" ]; then echo "Rebooting automatically due to panic= boot argument" sleep ${panic} reboot exit # in case reboot fails, force kernel panic fi modprobe -v i8042 || true modprobe -v atkbd || true modprobe -v ehci-pci || true modprobe -v ehci-orion || true modprobe -v ehci-hcd || true modprobe -v uhci-hcd || true modprobe -v ohci-hcd || true modprobe -v usbhid || true run_scripts /scripts/panic REASON="$@" PS1='(initramfs) ' /bin/sh -i /dev/console 2>&1 } maybe_break() { case ",$break," in *,$1,*) panic "Spawning shell within the initramfs" ;; esac } render() { eval "echo -n \${$@}" } # For boot time only; this is overridden at build time in hook-functions run_scripts() { initdir=${1} [ ! -d ${initdir} ] && return shift . ${initdir}/ORDER } # Load custom modules first load_modules() { if [ -e /conf/modules ]; then cat /conf/modules | while read m; do # Skip empty lines if [ -z "$m" ]; then continue fi # Skip comments - d?ash removes whitespace prefix com=$(printf "%.1s" "${m}") if [ "$com" = "#" ]; then continue fi modprobe $m done fi } # lilo compatibility parse_numeric() { case $1 in *:*) # Does it match /[0-9]*:[0-9]*/? minor=${1#*:} major=${1%:*} case $major$minor in *[!0-9]*) # No. return ;; esac ;; "" | *[!A-Fa-f0-9]*) # "", "/*", etc. return ;; *) # [A-Fa-f0-9]* value=$(( 0x${1} )) minor=$(( (${value} & 0xff) | (${value} >> 12) & 0xfff00 )) major=$(( (${value} >> 8) & 0xfff )) ;; esac ROOT="$(readlink -f /dev/block/${major}:${minor})" } # Parameter: device node to check # Echos fstype to stdout # Return value: indicates if an fs could be recognized get_fstype () { local FS FSTYPE FSSIZE RET FS="${1}" # blkid has a more complete list of file systems, # but fstype is more robust FSTYPE="unknown" eval $(fstype "${FS}" 2> /dev/null) if [ "$FSTYPE" = "unknown" ] && command -v blkid >/dev/null 2>&1 ; then FSTYPE=$(blkid -o value -s TYPE "${FS}") elif [ "$FSTYPE" = "unknown" ] && [ -x /lib/udev/vol_id ]; then FSTYPE=$(/lib/udev/vol_id -t "${FS}" 2> /dev/null) fi RET=$? if [ -z "${FSTYPE}" ]; then FSTYPE="unknown" fi echo "${FSTYPE}" return ${RET} } configure_networking() { if [ -n "${BOOTIF}" ]; then # pxelinux sets BOOTIF to a value based on the mac address of the # network card used to PXE boot, so use this value for DEVICE rather # than a hard-coded device name from initramfs.conf. this facilitates # network booting when machines may have multiple network cards. # pxelinux sets BOOTIF to 01-$mac_address # strip off the leading "01-", which isn't part of the mac # address temp_mac=${BOOTIF#*-} # convert to typical mac address format by replacing "-" with ":" bootif_mac="" IFS='-' for x in $temp_mac ; do if [ -z "$bootif_mac" ]; then bootif_mac="$x" else bootif_mac="$bootif_mac:$x" fi done unset IFS # look for devices with matching mac address, and set DEVICE to # appropriate value if match is found. for device in /sys/class/net/* ; do if [ -f "$device/address" ]; then current_mac=$(cat "$device/address") if [ "$bootif_mac" = "$current_mac" ]; then DEVICE=${device##*/} break fi fi done fi # networking already configured thus bail out [ -n "${DEVICE}" ] && [ -e /run/net-"${DEVICE}".conf ] && return 0 wait_for_udev 10 # support ip options see linux sources # Documentation/filesystems/nfs/nfsroot.txt # Documentation/frv/booting.txt for ROUNDTTT in 2 3 4 6 9 16 25 36 64 100; do # The NIC is to be configured if this file does not exist. # Ip-Config tries to create this file and when it succeds # creating the file, ipconfig is not run again. for x in /run/net-"${DEVICE}".conf /run/net-*.conf ; do [ -e "$x" ] && break 2 done case ${IP} in none|off) # Do nothing ;; ""|on|any) # Bring up device ipconfig -t ${ROUNDTTT} "${DEVICE}" ;; dhcp|bootp|rarp|both) ipconfig -t ${ROUNDTTT} -c ${IP} -d "${DEVICE}" ;; *) ipconfig -t ${ROUNDTTT} -d $IP # grab device entry from ip option NEW_DEVICE=${IP#*:*:*:*:*:*} if [ "${NEW_DEVICE}" != "${IP}" ]; then NEW_DEVICE=${NEW_DEVICE%%:*} else # wrong parse, possibly only a partial string NEW_DEVICE= fi if [ -n "${NEW_DEVICE}" ]; then DEVICE="${NEW_DEVICE}" fi ;; esac done # source ipconfig output if [ -n "${DEVICE}" ]; then # source specific bootdevice . /run/net-${DEVICE}.conf else # source any interface... # ipconfig should have quit after first response . /run/net-*.conf fi } # Wait for queued kernel/udev events wait_for_udev() { command -v udevadm >/dev/null 2>&1 || return 0 udevadm settle ${1:+--timeout=$1} } # Find a specific fstab entry # $1=mountpoint # $2=fstype (optional) # returns 0 on success, 1 on failure (not found or no fstab) read_fstab_entry() { # Not found by default. found=1 for file in ${rootmnt}/etc/fstab; do if [ -f "$file" ]; then while read MNT_FSNAME MNT_DIR MNT_TYPE MNT_OPTS MNT_FREQ MNT_PASS MNT_JUNK; do case "$MNT_FSNAME" in ""|\#*) continue; ;; esac if [ "$MNT_DIR" = "$1" ]; then if [ -n "$2" ]; then [ "$MNT_TYPE" = "$2" ] || continue; fi found=0 break 2 fi done < "$file" fi done return $found } # Resolve device node from a name. This expands any LABEL or UUID. # $1=name # Resolved name is echoed. resolve_device() { DEV="$1" local orig="$DEV" case "$DEV" in LABEL=* | UUID=* | PARTLABEL=* | PARTUUID=*) if command -v blkid >/dev/null 2>&1; then DEV="$(blkid -l -t "$DEV" -o device)" if [ "$?" != 0 ]; then DEV="$orig" # Support uppercase and lowercase UUIDs -- see RFC#4122: # "Each field is treated as an integer and has its value printed as # a zero-filled hexadecimal digit string with the most significant # digit first. The hexadecimal values "a" through "f" are output as # lower case characters and are case insensitive on input." # # Note: that blkid which we will use to map these assums the input is lower # case. # Only apply this behaviour to UUIDs. case "$DEV" in UUID=* | PARTUUID=*) ;; *) return 1 ;; esac # Pull DEV appart and map it. local type=$(echo ${DEV} | cut -f 1 -d =) local value=$(echo ${DEV} | cut -f 2 -d = | tr '[A-F]' '[a-f]') # ... in RFC#4122 format; # look for five hexadecimal fragments separated by minus signs. local fmt=$( echo "$value" | sed -e 's/[0-9a-fA-F]*//g' ) if [ "$fmt" != '----' ]; then return 1 fi DEV="${type}=${value}" # Retry with the lower cased UUID. DEV="$(blkid -l -t "$DEV" -o device)" || return 1 fi else log_warning_msg "blkid not present, so cannot resolve $DEV" return 1 fi ;; esac [ -e "$DEV" ] && echo "$DEV" } # Check a file system. # $1=device # $2=mountpoint (for diagnostics only) _checkfs_once() { DEV="$1" NAME="$2" if [ "$NAME" = "/" ] ; then NAME="root" fi FSCK_LOGFILE=/run/initramfs/fsck.log FSCK_STAMPFILE=/run/initramfs/fsck-${NAME#/} TYPE=$(get_fstype "$1") FSCKCODE=0 if ! command -v fsck >/dev/null 2>&1; then log_warning_msg "fsck not present, so skipping $NAME file system" return fi if [ "$fastboot" = "y" ] ; then log_warning_msg "Fast boot enabled, so skipping $NAME file system check." return fi if [ "$forcefsck" = "y" ] then force="-f" else force="" fi if [ "$fsckfix" = "y" ] then fix="-y" elif [ "$fsckfix" = "n" ] then fix="-n" else fix="-a" fi spinner="" if [ -z "${debug}" ]; then spinner="-C" fi if [ "${quiet}" = n ] then log_begin_msg "Will now check $NAME file system" logsave -a -s $FSCK_LOGFILE fsck $spinner $force $fix -V -t $TYPE $DEV FSCKCODE=$? log_end_msg else log_begin_msg "Checking $NAME file system" logsave -a -s $FSCK_LOGFILE fsck $spinner $force $fix -T -t $TYPE $DEV FSCKCODE=$? log_end_msg fi # NOTE: "failure" is defined as exiting with a return code of # 4, possibly or-ed with other flags. A return code of 1 # indicates that file system errors were corrected but that # the boot may proceed. # if [ "$FSCKCODE" -eq 32 ] then log_warning_msg "File system check was interrupted by user" elif [ $((FSCKCODE & 4)) -eq 4 ] then log_failure_msg "File system check of the $NAME filesystem failed" return 1 elif [ "$FSCKCODE" -gt 1 ] then log_warning_msg "File system check failed but did not detect errors" sleep 5 else > $FSCK_STAMPFILE fi return 0 } checkfs() { while ! _checkfs_once "$@"; do panic "The $2 filesystem on $1 requires a manual fsck" done } # Mount a file system. We parse the information from the fstab. This # should be overridden by any boot script which can mount arbitrary # filesystems such as /usr. This default implementation delegates to # local or nfs based upon the filesystem type. # $1=mountpoint mount location mountfs() { type=local read_fstab_entry "$1" if [ "${MNT_TYPE}" = "nfs" ] || [ "${MNT_TYPE}" = "nfs4" ]; then type=nfs fi ${type}_mount_fs "$1" } # Mount the root file system. It should be overridden by all # boot scripts. mountroot() { : } # Run /scripts/${boot}-top. This should be overridden by all boot # scripts. mount_top() { : } # Run /scripts/${boot}-premount. This should be overridden by all boot # scripts. mount_premount() { : } # Run /scripts/${boot}-bottom. This should be overridden by all boot # scripts. mount_bottom() { : }