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7ad185bd2d
a/bash-5.0.002-x86_64-2.txz: Rebuilt. Rebuilt with --libdir=/usr/lib${LIBDIRSUFFIX}. Thanks to RandomTroll. a/btrfs-progs-4.20.1-x86_64-1.txz: Upgraded. a/mkinitrd-1.4.11-x86_64-9.txz: Rebuilt. Automatically generate an initial ramdisk from the installer. Added 'geninitrd' script to generate an initial ramdisk for the kernel that /boot/vmlinuz-generic (and/or /boot/vmlinuz-generic-smp) points to. ap/man-db-2.8.5-x86_64-2.txz: Rebuilt. Comment out all the options in /etc/profile.d/man-db.{csh,sh} and let the user decide whether or not to choose anything. d/python-pip-19.0.1-x86_64-1.txz: Upgraded. l/mozilla-nss-3.41.1-x86_64-1.txz: Upgraded. n/dhcpcd-7.1.0-x86_64-1.txz: Upgraded.
356 lines
12 KiB
Bash
356 lines
12 KiB
Bash
#!/bin/ash
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#
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# /init: init script to load kernel modules from an initramfs
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# This requires that your kernel supports initramfs!!!
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#
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# Copyright 2004 Slackware Linux, Inc., Concord, CA, USA
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# Copyright 2007, 2008, 2009, 2010, 2012 Patrick J. Volkerding, Sebeka, MN, USA
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# All rights reserved.
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#
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# Redistribution and use of this script, with or without modification, is
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# permitted provided that the following conditions are met:
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#
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# 1. Redistributions of this script must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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#
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# THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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# WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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# MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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# EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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# PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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# OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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# WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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# OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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# ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#
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##################################################################################
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# With a generic kernel, you need to load the modules needed to mount the
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# root partition. This might mean a SCSI, RAID, or other drive controller
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# module, as well as the module to support the root filesystem. Once the
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# root partition is mounted all the other modules will be available so you
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# don't need to load them here.
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#
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# Config files used by this script:
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#
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# /rootdev Contains the name of the root device, such as: /dev/hda1
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#
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# /rootfs Contains the root filesystem type, such as: xfs
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#
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# /initrd-name Contains the name of the initrd file.
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#
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# /resumedev Contains the name of the device to resume from hibernation.
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#
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# /luksdev Contains colon separated list of luks encrypted devices to
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# be unlocked.
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#
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# /lukstrim Contains colon separated list of luks encrypted devices to
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# pass '--allow-discards' when unlocking
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#
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# /lukskey Contains the path to a LUKS key-file for automatic unlock
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# Format: LABEL=<partition_label>:/path/to/file
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# UUID=<partition_uuid>:/path/to/file
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#
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# /wait-for-root Contains a number - the init script will wait this amount
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# of seconds before creating device nodes.
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#
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# /keymap Contains the name for a custom keyboard map
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#
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# Optional:
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#
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# /load_kernel_modules
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# A script that uses modprobe to load the desired modules.
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#
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# There's an example in here. To actually use it, you'll
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# need to make it executable:
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#
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# chmod 755 load_kernel_modules
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##################################################################################
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# Changelog
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# 10-Dec-2012 <mozes@slackware.com>
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# * Added support for the official Kernel parameters to select root filesystem
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# type ('rootfstype') and pause before attempting to mount the root filesystem
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# ('rootdelay'). The original parameters may continue to be used.
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##################################################################################
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INITRD=$(cat /initrd-name)
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ROOTDEV=$(cat /rootdev)
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ROOTFS=$(cat /rootfs)
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LUKSDEV=$(cat /luksdev)
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LUKSTRIM=$(cat /lukstrim 2>/dev/null)
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LUKSKEY=$(cat /lukskey)
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RESUMEDEV=$(cat /resumedev)
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WAIT=$(cat /wait-for-root)
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KEYMAP=$(cat /keymap)
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INIT=/sbin/init
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PATH="/sbin:/bin:/usr/sbin:/usr/bin"
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# Mount /proc and /sys:
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mount -n proc /proc -t proc
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mount -n sysfs /sys -t sysfs
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mount -n tmpfs /run -t tmpfs -o mode=0755,size=32M,nodev,nosuid,noexec
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if grep devtmpfs /proc/filesystems 1>/dev/null 2>/dev/null ; then
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DEVTMPFS=1
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mount -n devtmpfs /dev -t devtmpfs -o size=8M
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fi
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# Parse command line
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for ARG in $(cat /proc/cmdline); do
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case $ARG in
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0|1|2|3|4|5|6|S|s|single)
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RUNLEVEL=$ARG
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;;
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init=*)
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INIT=$(echo $ARG | cut -f2 -d=)
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;;
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luksdev=/dev/*)
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LUKSDEV=$(echo $ARG | cut -f2 -d=)
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;;
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lukskey=*)
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LUKSKEY=$(echo $ARG | cut -f2- -d=)
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;;
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rescue)
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RESCUE=1
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;;
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resume=*)
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RESUMEDEV=$(echo $ARG | cut -f2- -d=)
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;;
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root=/dev/*)
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ROOTDEV=$(echo $ARG | cut -f2 -d=)
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;;
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root=LABEL=*)
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ROOTDEV=$(echo $ARG | cut -f2- -d=)
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;;
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root=UUID=*)
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ROOTDEV=$(echo $ARG | cut -f2- -d=)
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;;
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rootfs=*|rootfstype=*)
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ROOTFS=$(echo $ARG | cut -f2 -d=)
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;;
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rootflags=*)
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ROOTFLAGS=$(echo $ARG | cut -f2- -d=)
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;;
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waitforroot=*|rootdelay=*)
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WAIT=$(echo $ARG | cut -f2 -d=)
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;;
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esac
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done
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# If udevd is available, use it to generate block devices
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# else use mdev to read sysfs and generate the needed devices
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if [ -x /sbin/udevd -a -x /sbin/udevadm ]; then
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/sbin/udevd --daemon --resolve-names=never
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/sbin/udevadm trigger --subsystem-match=block --action=add
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/sbin/udevadm settle --timeout=10
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else
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[ "$DEVTMPFS" != "1" ] && mdev -s
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fi
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# Load kernel modules (ideally this was already done by udev):
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if [ ! -d /lib/modules/$(uname -r) ]; then
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echo "No kernel modules found for Linux $(uname -r)."
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elif [ -x ./load_kernel_modules ]; then # use load_kernel_modules script:
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echo "${INITRD}: Loading kernel modules from initrd image:"
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. ./load_kernel_modules
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else # load modules (if any) in order:
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if ls /lib/modules/$(uname -r)/*.*o 1> /dev/null 2> /dev/null ; then
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echo "${INITRD}: Loading kernel modules from initrd image:"
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for module in /lib/modules/$(uname -r)/*.*o ; do
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/sbin/modprobe $module
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done
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unset module
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fi
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fi
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# Sometimes the devices need extra time to be available.
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# A root filesystem on USB is a good example of that.
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sleep $WAIT
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# Load a custom keyboard mapping:
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if [ -n "$KEYMAP" ]; then
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echo "${INITRD}: Loading '$KEYMAP' keyboard mapping:"
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tar xzOf /etc/keymaps.tar.gz ${KEYMAP}.bmap | loadkmap
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fi
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if [ "$RESCUE" = "" ]; then
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# Initialize RAID:
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if [ -x /sbin/mdadm ]; then
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# If /etc/mdadm.conf is present, udev should DTRT on its own;
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# If not, we'll make one and go from there:
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if [ ! -r /etc/mdadm.conf ]; then
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/sbin/mdadm -E -s >/etc/mdadm.conf
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/sbin/mdadm -S -s
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/sbin/mdadm -A -s
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# This seems to make the kernel see partitions more reliably:
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fdisk -l /dev/md* 1> /dev/null 2> /dev/null
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fi
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fi
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# Unlock any encrypted partitions necessary to access the
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# root filesystem, such as encrypted LVM Physical volumes, disk
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# partitions or mdadm arrays.
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# Unavailable devices such as LVM Logical Volumes will need to be
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# deferred until they become available after the vgscan.
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if [ -x /sbin/cryptsetup ]; then
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# Determine if we have to use a LUKS keyfile:
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if [ ! -z "$LUKSKEY" ]; then
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mkdir /mountkey
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KEYPART=$(echo $LUKSKEY |cut -f1 -d:)
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KEYNAME=$(echo $KEYPART |cut -f2 -d=)
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LUKSPATH="/mountkey$(echo $LUKSKEY |cut -f2 -d:)"
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# Catch possible mount failure:
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if blkid |grep "TYPE=\"vfat\"" |grep $KEYNAME 1>/dev/null 2>&1 ; then
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MOUNTOPTS="-t vfat -o shortname=mixed"
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else
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MOUNTOPTS="-t auto"
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fi
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mount $MOUNTOPTS $(findfs $KEYPART) /mountkey 2>/dev/null
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# Check if we can actually use this file:
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if [ ! -f $LUKSPATH ]; then
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LUKSKEY=""
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else
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echo ">>> Using LUKS key file: '$LUKSKEY'"
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LUKSKEY="-d $LUKSPATH"
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fi
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fi
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LUKSLIST_DEFERRED=""
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LUKSLIST=$(echo $LUKSDEV | tr -s ':' ' ')
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for LUKSDEV in $LUKSLIST ; do
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if echo $LUKSDEV | grep -q "LABEL=" || echo $LUKSDEV | grep -q "UUID=" ; then
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LUKSDEV=$(findfs $LUKSDEV)
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fi
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if /sbin/cryptsetup isLuks ${LUKSDEV} 1>/dev/null 2>/dev/null ; then
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if echo $ROOTDEV | grep -q "LABEL=" || echo $ROOTDEV | grep -q "UUID=" ; then
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CRYPTDEV="luks$(basename $LUKSDEV)"
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elif [ "x$ROOTDEV" = "x$(basename $ROOTDEV)" ]; then
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CRYPTDEV="$ROOTDEV"
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else
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CRYPTDEV="luks$(basename $LUKSDEV)"
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fi
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if echo $LUKSTRIM | grep -wq $LUKSDEV 2>/dev/null ; then
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LUKSOPTS="--allow-discards"
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else
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LUKSOPTS=""
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fi
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if [ -z "${LUKSOPTS}" ]; then
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echo "Unlocking LUKS encrypted device '${LUKSDEV}' as luks mapped device '$CRYPTDEV':"
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else
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echo "Unlocking LUKS encrypted device '${LUKSDEV}' as luks mapped device '$CRYPTDEV' with '$LUKSOPTS':"
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fi
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/sbin/cryptsetup ${LUKSOPTS} ${LUKSKEY} luksOpen ${LUKSDEV} ${CRYPTDEV} </dev/tty0 >/dev/tty0 2>&1
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if [ "$ROOTDEV" = "$LUKSDEV" -o "$ROOTDEV" = "$CRYPTDEV" ] ; then
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ROOTDEV="/dev/mapper/$CRYPTDEV"
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fi
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else
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LUKSLIST_DEFERRED="${LUKSLIST_DEFERRED} ${LUKSDEV}"
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fi
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done
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fi
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# Initialize LVM:
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if [ -x /sbin/vgchange ]; then
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mkdir -p /var/lock/lvm # this avoids useless warnings
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/sbin/vgchange -ay --ignorelockingfailure 2>/dev/null
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/sbin/udevadm settle --timeout=10
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fi
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# Unlock any LUKS encrypted devices that were deferred above but have now
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# become available due to the vgscan (i.e. filesystems on LVM Logical Volumes)
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if [ -x /sbin/cryptsetup -a -n "${LUKSLIST_DEFERRED}" ]; then
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for LUKSDEV in ${LUKSLIST_DEFERRED} ; do
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if /sbin/cryptsetup isLuks ${LUKSDEV} 1>/dev/null 2>/dev/null ; then
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if echo $ROOTDEV | grep -q "LABEL=" || echo $ROOTDEV | grep -q "UUID=" ; then
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CRYPTDEV="luks$(basename $LUKSDEV)"
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elif [ "x$ROOTDEV" = "x$(basename $ROOTDEV)" ]; then
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CRYPTDEV="$ROOTDEV"
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else
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CRYPTDEV="luks$(basename $LUKSDEV)"
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fi
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echo "Unlocking LUKS encrypted device '${LUKSDEV}' as luks mapped device '$CRYPTDEV':"
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/sbin/cryptsetup ${LUKSKEY} luksOpen ${LUKSDEV} ${CRYPTDEV} </dev/tty0 >/dev/tty0 2>&1
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if [ "$ROOTDEV" = "$LUKSDEV" -o "$ROOTDEV" = "$CRYPTDEV" ] ; then
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ROOTDEV="/dev/mapper/$CRYPTDEV"
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fi
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else
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echo "LUKS device '${LUKSDEV}' unavailable for unlocking!"
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fi
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done
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/sbin/udevadm settle --timeout=10
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fi
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# Scan for btrfs multi-device filesystems:
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if [ -x /sbin/btrfs ]; then
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/sbin/btrfs device scan
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fi
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# Find root device if a label or UUID was given:
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if echo $ROOTDEV | grep -q "LABEL=" || \
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echo $ROOTDEV | grep -q "UUID=" ; then
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ROOTDEV=$(findfs $ROOTDEV)
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fi
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# Clean up after LUKS unlock using a keyfile:
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if grep -q mountkey /proc/mounts 2>/dev/null ; then
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umount -l /mountkey
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rmdir /mountkey 2>/dev/null
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fi
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# Resume state from swap
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if [ "$RESUMEDEV" != "" ]; then
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# Find resume device if a label or UUID was given:
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if echo $RESUMEDEV | grep -q "LABEL=" || \
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echo $RESUMEDEV | grep -q "UUID=" ; then
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RESUMEDEV=$(findfs $RESUMEDEV)
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elif ls -l $RESUMEDEV | grep -q "^l" ; then
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RESUMEDEV=$(readlink -f $RESUMEDEV)
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fi
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echo "Trying to resume from $RESUMEDEV"
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RESMAJMIN=$(ls -l $RESUMEDEV | tr , : | awk '{ print $5$6 }')
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echo $RESMAJMIN > /sys/power/resume
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fi
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# Switch to real root partition:
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/sbin/udevadm settle --timeout=10
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echo 0x0100 > /proc/sys/kernel/real-root-dev
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mount -o ro${ROOTFLAGS:+,$ROOTFLAGS} -t $ROOTFS $ROOTDEV /mnt
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if [ ! -r /mnt/sbin/init ]; then
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echo "ERROR: No /sbin/init found on rootdev (or not mounted). Trouble ahead."
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echo " You can try to fix it. Type 'exit' when things are done."
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echo
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/bin/sh
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fi
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else
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echo
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echo "RESCUE mode"
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echo
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echo " You can try to fix or rescue your system now. If you want"
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echo " to boot into your fixed system, mount your root filesystem"
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echo " read-only under /mnt:"
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echo
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echo " # mount -o ro -t filesystem root_device /mnt"
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echo
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echo " Type 'exit' when things are done."
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echo
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/bin/sh
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fi
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# Need to make sure OPTIONS+="db_persist" exists for all dm devices
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# That should be handled in /sbin/mkinitrd now
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/sbin/udevadm info --cleanup-db
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/sbin/udevadm control --exit
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unset ERR
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mount -o move /proc /mnt/proc
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mount -o move /sys /mnt/sys
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mount -o move /run /mnt/run
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[ "$DEVTMPFS" = "1" ] && mount -o move /dev /mnt/dev
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echo "${INITRD}: exiting"
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exec switch_root /mnt $INIT $RUNLEVEL
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