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793 lines
20 KiB
793 lines
20 KiB
#!/bin/sh
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# Functions library :: for Linux Live Kit scripts
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# Author: Tomas M. <http://www.linux-live.org>
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#
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# =================================================================
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# debug and output functions
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# =================================================================
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debug_start() {
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if grep -q debug /proc/cmdline; then
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DEBUG_IS_ENABLED=1
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set -x
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else
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DEBUG_IS_ENABLED=
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fi
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}
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debug_log() {
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if [ "$DEBUG_IS_ENABLED" ]; then
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echo "- debug: $*" >&2
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log "- debug: $*"
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fi
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}
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# header
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# $1 = text to show
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#
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header() {
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echo "[0;1m""$@""[0;0m"
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}
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# echo green star
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#
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echo_green_star() {
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echo -ne "[0;32m""* ""[0;39m"
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}
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# log - store given text in /var/log/livedbg
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log() {
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echo "$@" 2>/dev/null >>/var/log/livedbg
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}
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echolog() {
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echo "$@"
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log "$@"
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}
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# show information about the debug shell
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show_debug_banner() {
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echo
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echo "====="
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echo ": Debugging started. Here is the root shell for you."
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echo ": Type your desired commands or hit Ctrl+D to continue booting."
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echo
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}
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# debug_shell
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# executed when debug boot parameter is present
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#
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debug_shell() {
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if [ "$DEBUG_IS_ENABLED" ]; then
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show_debug_banner
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setsid sh -c 'exec sh < /dev/tty1 >/dev/tty1 2>&1'
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echo
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fi
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}
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fatal() {
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echolog
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header "Fatal error occured - $1"
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echolog "Something went wrong and we can't continue. This should never happen."
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echolog "Please reboot your computer with Ctrl+Alt+Delete ..."
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echolog
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setsid sh -c 'exec sh < /dev/tty1 >/dev/tty1 2>&1'
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}
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# get value of commandline parameter $1
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# $1 = parameter to search for
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#
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cmdline_value() {
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cat /proc/cmdline | egrep -o "(^|[[:space:]])$1=[^[:space:]]+" | tr -d " " | cut -d "=" -f 2- | tail -n 1
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}
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# test if the script is started by root user. If not, exit
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#
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allow_only_root() {
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if [ "0$UID" -ne 0 ]; then
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echo "Only root can run $(basename $0)"
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exit 1
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fi
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}
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# Create bundle
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# call mksquashfs with apropriate arguments
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# $1 = directory which will be compressed to squashfs bundle
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# $2 = output file
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# $3..$9 = optional arguments like -keep-as-directory or -b 123456789
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#
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create_bundle() {
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debug_log "create_module" "$*"
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rm -f "$2" # overwrite, never append to existing file
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mksquashfs "$1" "$2" -comp xz -b 1024K -always-use-fragments $3 $4 $5 $6 $7 $8 $9 >/dev/null
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}
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# Move entire initramfs tree to tmpfs mount.
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# It's a bit tricky but is necessray to enable pivot_root
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# even for initramfs boot image
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#
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transfer_initramfs() {
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if [ ! -r /lib/initramfs_escaped ]; then
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echo "switch root from initramfs to ramfs"
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SWITCH=/m # one letter directory
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mkdir -p $SWITCH
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mount -t tmpfs -o size="100%" tmpfs $SWITCH
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cp -a /??* $SWITCH 2>/dev/null # only copy two-and-more-letter directories
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cd $SWITCH
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echo "This file indicates that we successfully escaped initramfs" >$SWITCH/lib/initramfs_escaped
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exec switch_root -c /dev/console . $0
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fi
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}
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# mount virtual filesystems like proc etc
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#
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init_proc_sysfs() {
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debug_log "init_proc_sysfs" "$*"
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mkdir -p /proc /sys /etc $MEMORY
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mount -n -t proc proc /proc
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echo "0" >/proc/sys/kernel/printk
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mount -n -t sysfs sysfs /sys
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mount -n -o remount,rw rootfs /
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ln -sf /proc/mounts /etc/mtab
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}
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# modprobe all modules found in initial ramdisk
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# $1 = -e for match, -v for negative match
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# $2 = regex pattern
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#
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modprobe_everything() {
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debug_log "modprobe_everything" "$*"
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echo_green_star >&2
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echo "Probing for hardware" >&2
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find /lib/modules/ | fgrep .ko | egrep $1 $2 | sed -r "s:^.*/|[.]ko\$::g" | xargs -n 1 modprobe 2>/dev/null
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refresh_devs
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}
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refresh_devs() {
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debug_log "refresh_devs" "$*"
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if [ -r /proc/sys/kernel/hotplug ]; then
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echo /sbin/mdev >/proc/sys/kernel/hotplug
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fi
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mdev -s
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}
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# make sure some devices are there
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init_devs() {
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debug_log "init_devs" "$*"
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modprobe zram 2>/dev/null
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modprobe loop 2>/dev/null
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modprobe squashfs 2>/dev/null
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modprobe fuse 2>/dev/null
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refresh_devs
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}
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# Activate zram (auto-compression of RAM)
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# Compressed RAM consumes 1/2 or even 1/4 of original size
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# Setup static size of 500MB
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#
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init_zram() {
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debug_log "init_zram" "$*"
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echo_green_star
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echo "Setting dynamic RAM compression using ZRAM if available"
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if [ -r /sys/block/zram0/disksize ]; then
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echo 536870912 >/sys/block/zram0/disksize # 512MB
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mkswap /dev/zram0 >/dev/null
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swapon /dev/zram0
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echo 100 >/proc/sys/vm/swappiness
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fi
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}
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# load the AUFS kernel module if needed
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#
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init_aufs() {
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debug_log "init_aufs" "$*"
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# TODO maybe check here if aufs support is working at all
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# and produce useful error message if user has no aufs
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modprobe aufs 2>/dev/null
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refresh_devs
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}
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# Setup empty union
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# $1 = changes directory (ramfs or persistent changes)
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# $2 = union directory where to mount the union
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#
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init_union() {
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debug_log "init_union" "$*"
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echo_green_star
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echo "Setting up union using AUFS"
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mkdir -p "$1"
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mkdir -p "$2"
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mount -t aufs -o xino="/.xino",trunc_xino,br="$1" aufs "$2"
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}
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# Return device mounted for given directory
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# $1 = directory
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#
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mounted_device() {
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debug_log "mounted_device" "$*"
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local MNT TARGET
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MNT="$1"
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while [ "$MNT" != "/" -a "$MNT" != "." -a "$MNT" != "" ]; do
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TARGET="$(grep -F " $MNT " /proc/mounts | cut -d " " -f 1)"
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if [ "$TARGET" != "" ]; then
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echo "$TARGET"
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return
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fi
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MNT="$(dirname "$MNT")"
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done
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}
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# Return mounted dir for given directory
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# $1 = directory
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#
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mounted_dir() {
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debug_log "mounted_dir" "$*"
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local MNT
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MNT="$1"
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while [ "$MNT" != "/" -a "$MNT" != "." -a "$MNT" != "" ]; do
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if mountpoint -q "$MNT" 2>/dev/null; then
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echo "$MNT"
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return
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fi
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MNT="$(dirname "$MNT")"
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done
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}
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# Get device tag.
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# $1 = device
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# $2 = tag name, such as TYPE, LABEL, UUID, etc
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#
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device_tag() {
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blkid -s $2 "$1" | sed -r "s/^[^=]+=//" | tr -d '"'
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}
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# Make sure to mount FAT12/16/32 using vfat
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# in order to support long filenames
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# $1 = device
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# $2 = prefix to add, like -t
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#
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device_bestfs() {
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debug_log "device_bestfs" "$*"
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local FS
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FS="$(device_tag "$1" TYPE | tr [A-Z] [a-z])"
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if [ "$FS" = "msdos" -o "$FS" = "fat" -o "$FS" = "vfat" ]; then
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FS="vfat"
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elif [ "$FS" = "ntfs" ]; then
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FS="ntfs-3g"
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fi
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if [ "$2" != "" ]; then
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echo -n "$2"
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fi
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echo "$FS"
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}
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# Filesystem options for initial mount
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# $1.. = filesystem
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#
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fs_options() {
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debug_log "fs_options" "$*"
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if [ "$1" != "ntfs-3g" ]; then
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echo -n "-t $1 "
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fi
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echo -n "-o rw"
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if [ "$1" = "vfat" ]; then
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echo ",check=s,shortname=mixed,iocharset=utf8"
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fi
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}
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# Mount command for given filesystem
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# $1.. = filesystem
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#
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mount_command() {
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debug_log "mount_command" "$*"
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if [ "$1" = "ntfs-3g" ]; then
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echo "@mount.ntfs-3g"
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else
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echo "mount"
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fi
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}
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# echo first network device known at the moment of calling, eg. eth0
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#
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network_device() {
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debug_log "network_device" "$*"
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cat /proc/net/dev | grep : | grep -v lo: | cut -d : -f 1 | tr -d " " | head -n 1
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}
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# Modprobe network kernel modules until a working driver is found.
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# These drivers are (or used to be) probed in Slackware's initrd.
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# The function returns the first device found, yet it doesn't have
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# to be a working one, eg. if the computer has two network interfaces
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# and ethernet cable is plugged only to one of them.
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#
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init_network_dev() {
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debug_log "init_network_dev" "$*"
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local MODULE ETH
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for MODULE in 3c59x acenic e1000 e1000e e100 epic100 hp100 ne2k-pci \
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pcnet32 8139too 8139cp tulip via-rhine r8169 atl1e yellowfin tg3 \
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dl2k ns83820 atl1 b44 bnx2 skge sky2 tulip forcedeth sb1000 sis900; do
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modprobe $MODULE 2>/dev/null
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ETH="$(network_device)"
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if [ "$ETH" != "" ]; then
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echo $ETH
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return 0
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fi
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rmmod $MODULE 2>/dev/null
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done
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# If we are here, none of the above specified modules worked.
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# As a last chance, try to modprobe everything else
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modprobe_everything -e /drivers/net/
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echo $(network_device)
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}
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# Initialize network IP address
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# either static from ip=bootparameter, or from DHCP
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#
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init_network_ip() {
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debug_log "init_network_ip" "$*"
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local IP ETH SCRIPT CLIENT SERVER GW MASK
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SCRIPT=/tmp/dhcpscript
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ETH=$(init_network_dev)
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IP=$(cmdline_value ip)
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echo "* Setting up network" >&2
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if [ "$IP" != "" ]; then
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# set IP address as given by boot paramter
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echo "$IP" | while IFS=":" read CLIENT SERVER GW MASK; do
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ifconfig $ETH "$CLIENT" netmask "$MASK"
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route add default gw "$GW"
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echo nameserver "$GW" >>/etc/resolv.conf
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echo nameserver "$SERVER" >>/etc/resolv.conf
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done
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else
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# if client ip is unknown, try to get a DHCP lease
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ifconfig $ETH up
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echo -e '#!/bin/sh\nif [ "$1" != "bound" ]; then exit; fi\nifconfig $interface $ip netmask $subnet\nroute add default gw $router\necho nameserver $dns >>/etc/resolv.conf' >$SCRIPT
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chmod a+x $SCRIPT
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udhcpc -i $ETH -n -s $SCRIPT -q >/dev/null
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fi
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}
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# Mount data from http using httpfs
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# $1 = from URL
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# $2 = target
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mount_data_http() {
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debug_log "mount_data_http" "$*"
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local CACHE
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echo_green_star >&2
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echo "Load data from $1" >&2
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CACHE=$(cmdline_value cache | sed -r "s/[^0-9]//g" | sed -r "s/^0+//g")
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if [ "$CACHE" != "" ]; then
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CACHE="-C /tmp/httpfs.cache -S "$(($CACHE * 1024 * 1024))
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fi
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init_network_ip
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if [ "$(network_device)" != "" ]; then
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echo "* Mounting remote file..." >&2
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mkdir -p "$2"
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@mount.httpfs2 -r 9999 -t 5 $CACHE -c /dev/null "$1" "$2" -o ro >/dev/null 2>/dev/null
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mount -o loop "$2"/* "$2" # self mount
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echo "$2/$LIVEKITNAME"
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fi
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}
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# stdin = files to get
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# $1 = server
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# $2 = destination directory
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#
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tftp_mget() {
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while read FNAME; do
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echo "* $FNAME ..." >&2
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tftp -b 1486 -g -r "$FNAME" -l "$2/$FNAME" "$1"
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done
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}
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# Download data from tftp
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# $1 = target (store downloaded files there)
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#
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download_data_pxe() {
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debug_log "download_data_pxe" "$*"
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local IP CMD CLIENT SERVER GW MASK PORT PROTOCOL JOBS
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mkdir -p "$1/$LIVEKITNAME"
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IP="$(cmdline_value ip)"
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echo "$IP" | while IFS=":" read CLIENT SERVER GW MASK PORT; do
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echo_green_star >&2
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echo "Contacting PXE server $SERVER" >&2
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if [ "$PORT" = "" ]; then PORT="7529"; fi
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init_network_ip
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echo "* Downloading PXE file list" >&2
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PROTOCOL=http
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wget -q -O "$1/PXEFILELIST" "http://$SERVER:$PORT/PXEFILELIST?$(uname -r):$(uname -m)"
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if [ $? -ne 0 ]; then
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echo "Error downloading from http://$SERVER:$PORT, trying TFTP" >&2
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PROTOCOL=tftp
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echo PXEFILELIST | tftp_mget "$SERVER" "$1"
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fi
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echo "* Downloading files from the list" >&2
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if [ "$PROTOCOL" = "http" ]; then
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cat "$1/PXEFILELIST" | while read FILE; do
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wget -O "$1/$LIVEKITNAME/$FILE" "http://$SERVER:$PORT/$FILE"
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done
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else
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JOBS=3
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for i in $(seq 1 $JOBS); do
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awk "NR % $JOBS == $i-1" "$1/PXEFILELIST" | tftp_mget "$SERVER" "$1/$LIVEKITNAME" &
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done
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wait
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fi
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done
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echo "$1/$LIVEKITNAME"
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}
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# Find LIVEKIT data by mounting all devices
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# If found, keep mounted, else unmount
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# $1 = data directory target (mount here)
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# $2 = data directory which contains compressed bundles
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#
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find_data_try() {
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debug_log "find_data_try" "$*"
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local DEVICE FS FROM OPTIONS MOUNT
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mkdir -p "$1"
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blkid | sort | cut -d: -f 1 | grep -E -v "/loop|/ram|/zram" | while read DEVICE; do
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FROM="$2"
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FS="$(device_bestfs "$DEVICE")"
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OPTIONS="$(fs_options $FS)"
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MOUNT="$(mount_command $FS)"
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$MOUNT "$DEVICE" "$1" $OPTIONS 2>/dev/null
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# if the FROM parameter is actual file, mount it again as loop (eg. iso)
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if [ -f "$1/$FROM" ]; then
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mkdir -p "$1/../iso"
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mount -o loop,ro "$1/$FROM" "$1/../iso" 2>/dev/null
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FROM="../iso/$LIVEKITNAME"
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fi
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# search for bundles in the mounted directory
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if [ "$(find "$1/$FROM" -maxdepth 1 -name "*.$BEXT" 2>/dev/null)" != "" ]; then
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# we found at least one bundle/module here
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echo "$1/$FROM" | tr -s "/" | sed -r "s:/[^/]+/[.][.]/:/:g"
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return
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fi
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# unmount twice, since there could be mounted ISO as loop too. If not, it doesn't hurt
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umount "$1" 2>/dev/null
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umount "$1" 2>/dev/null
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done
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}
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# Retry finding LIVEKIT data several times,
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# until timeouted or until data is found
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# $1 = timeout
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# $2 = data directory target (mount here)
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#
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find_data() {
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debug_log "find_data" "$*"
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local DATA FROM
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FROM="$(cmdline_value from)"
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# boot parameter specified as from=http://server.com/file.iso
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if [ "$(echo $FROM | grep 'http://')" != "" ]; then
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mount_data_http "$FROM" "$2"
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return
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fi
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# if we got IP address as boot parameter, it means we booted over PXE
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if [ "$(cmdline_value ip)" != "" ]; then
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download_data_pxe "$2"
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return
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fi
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if [ "$FROM" = "" ]; then FROM="$LIVEKITNAME"; fi
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echo_green_star >&2
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echo -n "Looking for $LIVEKITNAME data in /$FROM .." | tr -s "/" >&2
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for timeout in $(seq 1 $1); do
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echo -n "." >&2
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refresh_devs
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DATA="$(find_data_try "$2" "$FROM")"
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if [ "$DATA" != "" ]; then
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echo "" >&2
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echo "* Found on $(mounted_device "$2")" >&2
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echo "$DATA"
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return
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fi
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sleep 1
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done
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echo "" >&2
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}
|
|
|
|
# Check if data is found and exists
|
|
# $1 = data directory
|
|
#
|
|
check_data_found() {
|
|
if [ "$1" = "" -o ! -d "$1" ]; then
|
|
fatal "Could not locate $LIVEKITNAME data"
|
|
fi
|
|
}
|
|
|
|
# Activate persistent changes
|
|
# $1 = data directory
|
|
# $2 = target changes directory
|
|
#
|
|
persistent_changes() {
|
|
debug_log "persistent_changes" "$*"
|
|
|
|
local CHANGES T1 T2 EXISTS
|
|
|
|
CHANGES="$1/$(basename "$2")"
|
|
T1="$CHANGES/.empty"
|
|
T2="$T1"2
|
|
|
|
# Setup the directory anyway, it will be used in all cases
|
|
mkdir -p "$2"
|
|
|
|
# If persistent changes are not requested, end here
|
|
if grep -vq perch /proc/cmdline; then
|
|
return
|
|
fi
|
|
|
|
# check if changes directory exists and is writable
|
|
touch "$T1" 2>/dev/null && rm -f "$T1" 2>/dev/null
|
|
|
|
# if not, simply return back
|
|
if [ $? -ne 0 ]; then
|
|
echo "* Persistent changes not writable or not used"
|
|
return
|
|
fi
|
|
|
|
echo_green_star
|
|
echo "Testing persistent changes for posix compatibility"
|
|
touch "$T1" && ln -sf "$T1" "$T2" 2>/dev/null &&
|
|
chmod +x "$T1" 2>/dev/null && test -x "$T1" &&
|
|
chmod -x "$T1" 2>/dev/null && test ! -x "$T1" &&
|
|
rm "$T1" "$T2" 2>/dev/null
|
|
|
|
if [ $? -eq 0 ]; then
|
|
echo "* Activating native persistent changes"
|
|
mount --bind "$CHANGES" "$2"
|
|
return
|
|
fi
|
|
|
|
if [ -e "$CHANGES/changes.dat" ]; then
|
|
echo "* Restoring persistent changes"
|
|
EXISTS="true"
|
|
else
|
|
echo "* Creating new persistent changes"
|
|
EXISTS=""
|
|
fi
|
|
|
|
@mount.dynfilefs "$CHANGES/changes.dat" 4000 "$2"
|
|
if [ ! "$EXISTS" ]; then
|
|
mke2fs -F "$2/loop.fs" >/dev/null 2>&1
|
|
fi
|
|
mount -o loop,sync "$2/loop.fs" "$2"
|
|
|
|
# if test failed at any point, we may have temp files left behind
|
|
rm "$T1" "$T2" 2>/dev/null
|
|
rmdir "$2/lost+found" 2>/dev/null
|
|
}
|
|
|
|
# Copy content of rootcopy directory to union
|
|
# $1 = data directory
|
|
# $2 = union directory
|
|
copy_rootcopy_content() {
|
|
debug_log "copy_rootcopy_content" "$*"
|
|
|
|
if [ "$(ls -1 "$1/rootcopy/" 2>/dev/null)" != "" ]; then
|
|
echo_green_star
|
|
echo "Copying content of rootcopy directory..."
|
|
cp -a "$1"/rootcopy/* "$2"
|
|
fi
|
|
}
|
|
|
|
# Copy data to RAM if requested
|
|
# $1 = live data directory
|
|
# $2 = changes directory
|
|
#
|
|
copy_to_ram() {
|
|
debug_log "copy_to_ram" "$*"
|
|
|
|
local MDIR MDEV RAM CHANGES
|
|
|
|
if grep -vq toram /proc/cmdline; then
|
|
echo "$1"
|
|
return
|
|
fi
|
|
|
|
echo "* Copying $LIVEKITNAME data to RAM..." >&2
|
|
RAM="$(dirname "$2")"/toram
|
|
mkdir -p "$RAM"
|
|
cp -a "$1"/* "$RAM"
|
|
echo "$RAM"
|
|
|
|
MDIR="$(mounted_dir "$1")"
|
|
MDEV="$(mounted_device "$1")"
|
|
MDEV="$(losetup $MDEV 2>/dev/null | cut -d " " -f 3)"
|
|
umount "$MDIR" 2>/dev/null
|
|
|
|
if [ "$MDEV" ]; then # iso was mounted here, try to unmount the FS it resides on too
|
|
MDEV="$(mounted_device "$MDEV")"
|
|
umount "$MDEV" 2>/dev/null
|
|
fi
|
|
}
|
|
|
|
# load filter
|
|
#
|
|
filter_load() {
|
|
local FILTER
|
|
FILTER=$(cmdline_value load)
|
|
if [ "$FILTER" = "" ]; then
|
|
cat -
|
|
else
|
|
cat - | egrep "$FILTER"
|
|
fi
|
|
}
|
|
|
|
# noload filter
|
|
#
|
|
filter_noload() {
|
|
local FILTER
|
|
FILTER=$(cmdline_value noload)
|
|
if [ "$FILTER" = "" ]; then
|
|
cat -
|
|
else
|
|
cat - | egrep -v "$FILTER"
|
|
fi
|
|
}
|
|
|
|
# sort modules by number even if they are in subdirectory
|
|
#
|
|
sortmod() {
|
|
cat - | sed -r "s,(.*/(.*)),\\2:\\1," | sort -n | cut -d : -f 2-
|
|
}
|
|
|
|
# Mount squashfs filesystem bundles
|
|
# and add them to union
|
|
# $1 = directory where to search for bundles
|
|
# $2 = directory where to mount bundles
|
|
# $3 = directory where union is mounted
|
|
#
|
|
union_append_bundles() {
|
|
debug_log "union_append_bundles" "$*"
|
|
|
|
local BUN
|
|
|
|
echo_green_star
|
|
echo "Adding bundles to union"
|
|
(
|
|
ls -1 "$1" | sort -n
|
|
cd "$1"
|
|
find modules/ 2>/dev/null | sortmod | filter_load
|
|
) | grep '[.]'$BEXT'$' | filter_noload | while read BUNDLE; do
|
|
echo "* $BUNDLE"
|
|
BUN="$(basename "$BUNDLE")"
|
|
mkdir -p "$2/$BUN"
|
|
mount -o loop,ro -t squashfs "$1/$BUNDLE" "$2/$BUN"
|
|
mount -o remount,add:1:"$2/$BUN" aufs "$3"
|
|
done
|
|
}
|
|
|
|
# Create empty fstab properly
|
|
# $1 = root directory
|
|
# $2 = directory where boot disk is mounted
|
|
#
|
|
fstab_create() {
|
|
debug_log "fstab_create" "$*"
|
|
|
|
local FSTAB DEVICE FS LABEL BOOTDEVICE OPTS
|
|
|
|
FSTAB="$1/etc/fstab"
|
|
echo aufs / aufs defaults 0 0 >$FSTAB
|
|
echo proc /proc proc defaults 0 0 >>$FSTAB
|
|
echo sysfs /sys sysfs defaults 0 0 >>$FSTAB
|
|
echo devpts /dev/pts devpts gid=5,mode=620 0 0 >>$FSTAB
|
|
echo tmpfs /dev/shm tmpfs defaults 0 0 >>$FSTAB
|
|
|
|
if grep -vq automount /proc/cmdline; then
|
|
return
|
|
fi
|
|
|
|
BOOTDEVICE=$(df "$2" | tail -n 1 | cut -d " " -f 1)
|
|
|
|
echo >>$FSTAB
|
|
|
|
blkid | grep -v "^/dev/loop" | grep -v "^/dev/zram" | cut -d: -f 1 | while read DEVICE; do
|
|
FS="$(device_bestfs $DEVICE)"
|
|
LABEL="$(basename $DEVICE)"
|
|
OPTS="defaults,noatime,nofail,x-systemd.device-timeout=10"
|
|
|
|
if [ "$FS" != "" -a "$FS" != "swap" -a "$FS" != "squashfs" -a "$DEVICE" != "$BOOTDEVICE" ]; then
|
|
mkdir -p "$1/media/$LABEL"
|
|
echo "$DEVICE" "/media/$LABEL" $FS $OPTS 0 0 >>$FSTAB
|
|
fi
|
|
done
|
|
}
|
|
|
|
# Change root and execute init
|
|
# $1 = where to change root
|
|
#
|
|
change_root() {
|
|
debug_log "change_root" "$*"
|
|
|
|
# if we are booting over httpfs, we need to copyup some files so they are
|
|
# accessible on union without any further lookup down, else httpfs locks
|
|
# костыль для MiniOS, который добавляет
|
|
# дополнительную проверку, что загрузка
|
|
# идёт не через http. Иначе цикл срабатывает
|
|
# при любых типах загрузки.
|
|
#############################################
|
|
if [ "$(network_device)" != "" ] && [ "$(echo $FROM | grep 'http://')" != "" ]; then
|
|
touch "/net.up.flag"
|
|
touch "$1/etc/resolv.conf"
|
|
touch "$1/etc/hosts"
|
|
touch "$1/etc/gai.conf"
|
|
fi
|
|
|
|
umount /proc
|
|
umount /sys
|
|
|
|
cd "$1"
|
|
|
|
# make sure important device files and directories are in union
|
|
mkdir -p boot dev proc sys tmp media mnt run
|
|
chmod 1777 tmp
|
|
if [ ! -e dev/console ]; then mknod dev/console c 5 1; fi
|
|
if [ ! -e dev/tty ]; then mknod dev/tty c 5 0; fi
|
|
if [ ! -e dev/tty0 ]; then mknod dev/tty0 c 4 0; fi
|
|
if [ ! -e dev/tty1 ]; then mknod dev/tty1 c 4 1; fi
|
|
if [ ! -e dev/null ]; then mknod dev/null c 1 3; fi
|
|
if [ ! -e sbin/fsck.aufs ]; then ln -s /bin/true sbin/fsck.aufs; fi
|
|
|
|
# find chroot and init
|
|
if [ -x bin/chroot -o -L bin/chroot ]; then CHROOT=bin/chroot; fi
|
|
if [ -x sbin/chroot -o -L sbin/chroot ]; then CHROOT=sbin/chroot; fi
|
|
if [ -x usr/bin/chroot -o -L usr/bin/chroot ]; then CHROOT=usr/bin/chroot; fi
|
|
if [ -x usr/sbin/chroot -o -L usr/sbin/chroot ]; then CHROOT=usr/sbin/chroot; fi
|
|
if [ "$CHROOT" = "" ]; then fatal "Can't find executable chroot command"; fi
|
|
|
|
if [ -x bin/init -o -L bin/init ]; then INIT=bin/init; fi
|
|
if [ -x sbin/init -o -L sbin/init ]; then INIT=sbin/init; fi
|
|
if [ "$INIT" = "" ]; then fatal "Can't find executable init command"; fi
|
|
|
|
mkdir -p run
|
|
mount -t tmpfs tmpfs run
|
|
mkdir -p run/initramfs
|
|
mount -n -o remount,ro aufs .
|
|
pivot_root . run/initramfs
|
|
exec $CHROOT . $INIT <dev/console >dev/console 2>&1
|
|
}
|
|
|