mirror of
https://codeberg.org/privacy1st/arch-installer
synced 2024-12-23 02:16:05 +01:00
518 lines
15 KiB
Bash
Executable File
518 lines
15 KiB
Bash
Executable File
#!/bin/bash
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# Exit on error.
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set -e
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# Exit on undefined variable reference.
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set -u
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script_dir="$(dirname "${BASH_SOURCE[0]}")"
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function script_is_installed(){
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# Check if this script is run installed or locally (development setup).
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[ "${script_dir}" = '/usr/bin' ]
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}
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if script_is_installed; then
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lib_dir='/usr/lib/de-p1st-installer'
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else
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lib_dir='./lib'
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# Print commands before they get executed.
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set -v
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fi
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# Source library files.
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# shellcheck source=lib/util.sh
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source "${lib_dir}"/util.sh
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# shellcheck source=lib/user-input.sh
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source "${lib_dir}"/user-input.sh
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# shellcheck source=lib/block-device.sh
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source "${lib_dir}"/block-device.sh
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# Get path of configuration file.
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if [ $# -eq 0 ]; then
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# No arguments given.
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if script_is_installed; then
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cfg_file=/etc/de-p1st-installer/installer.cfg
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else
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cfg_file="${script_dir}"/installer.cfg
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fi
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else
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# >= 1 arguments given.
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# First argument is the configuration file!
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cfg_file="${1}"
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fi
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# Source the configuration file.
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# shellcheck source=installer.cfg
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source "${cfg_file}"
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function main() {
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# @pre
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# bash libraries imported
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# @post
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# installation finished
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check_network
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system_time
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# in: BOOT_FIRMWARE, FS, HOSTNAME, USERNAME, USER_PWD, FDE, LUKS_PWD; (all variables are optional)
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# out: BOOT_FIRMWARE, FS, HOSTNAME, USERNAME, USER_PWD, FDE, LUKS_PWD (if FDE='true')
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get_user_input
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# in: CPU_VENDOR (optional)
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# out: CPU_VENDOR
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get_cpu_vendor
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# in: FS
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# out: FS_DEFAULT_MOUNT_OPTIONS
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get_default_mount_options
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# in: FS
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# out: FS_ADDITIONAL_MOUNT_OPTIONS
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get_additional_mount_options
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# in: TARGET_BLOCK_DEVICE, BOOT_FIRMWARE
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# out: BOOT_PART, LUKS_PART
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partition
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# in: BOOT_FIRMWARE, BOOT_PART, LUKS_PART, FDE, LUKS_PWD, FS
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# out: LUKS_PART_UUID (if FDE='true'), DATA_PART
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format
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# Combine default and additional mount options
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# out: FS_MOUNT_OPTIONS
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{
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TMP1=("${FS_DEFAULT_MOUNT_OPTIONS[@]}" "${FS_ADDITIONAL_MOUNT_OPTIONS[@]}")
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# Join array elements by ","
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join_by ',' TMP1 FS_MOUNT_OPTIONS
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}
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mount_partitions
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# in: BOOT_FIRMWARE, PACSTRAP_INTERACTIVE (optional)
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run_pacstrap
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# in: FS
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run_genfstab
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# in: HOSTNAME, FQDN (optional), STATIC_IP (optional), IPV6_CAPABLE (optional)
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config_hostname_and_hosts
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# in: USERNAME, USER_PWD, ROOT_PWD (optional)
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user_and_pwd
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sudo arch-chroot /mnt mkinitcpio -P
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# in: TARGET_BLOCK_DEVICE, FDE, LUKS_PART_UUID
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bootloader
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if [ "${LEAVE_MOUNTED}" = 'true' ]; then
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echo 'Leaving partitions below /mnt mounted and '"${DATA_PART}"' opened.'
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else
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sudo umount -R /mnt
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if [ "${FDE}" = 'true' ]; then
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sudo cryptsetup luksClose "$(basename "${DATA_PART}")"
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fi
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fi
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echo 'Finished installation without errors!'
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}
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function check_network() {
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echo 'Sending ping to wikipedia.de ...'
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ping -c 1 wikipedia.de >/dev/null || {
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echo 'Pleas set up network access.'
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return 1
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}
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}
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function system_time() {
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# Use timedatectl(1) to ensure the system clock is accurate
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timedatectl set-ntp true
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}
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function increase_cow_space() {
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# May be useful when running 'pacman -Syu' on the live medium.
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# Usually not necessary!
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# Make sure that we are on a live medium:
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findmnt /run/archiso/cowspace >/dev/null || {
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echo 'Not on live medium, did not increase cowspace!'
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return 1
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}
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echo 'Increasing cowspace partition of live medium ...'
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sudo mount -o remount,size=2G /run/archiso/cowspace
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}
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function get_user_input() {
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# @post
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# BOOT_FIRMWARE: 'uefi' | 'bios'
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# FS: 'BTRFS' | 'EXT4' | 'F2FS'
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# FS_BTRFS_SUBVOL_LAYOUT: 'root_only' | '@root@home'
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# HOSTNAME
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# USERNAME, USER_PWD
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# FDE: 'true' | 'false'
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# LUKS_PWD: only set if FDE='true'
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get_block_devices_with_size
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single_choice_if_empty TARGET_BLOCK_DEVICE 'Select target device for installation' BLOCK_DEVICE_SIZES
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if [ "${BOOT_FIRMWARE}" = 'autodetect' ]; then
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# Detect boot firmware type: https://askubuntu.com/a/162573
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# Check exit code; if 0 EFI, else BIOS.
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# "-q": tell grep to output nothing
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if dmesg | grep -q 'EFI v'; then
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echo 'Detected EFI boot.'
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BOOT_FIRMWARE='uefi'
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else
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echo 'Detected BIOS boot'
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BOOT_FIRMWARE='bios'
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fi
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else # If $BOOT_FIRMWARE is empty: Let user select BIOS type
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TMP1=('uefi' 'Newer mainboards' \
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'bios' 'Legacy BIOS on older mainboards')
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single_choice_if_empty BOOT_FIRMWARE 'Select your bios type' TMP1
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fi
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TMP1=('BTRFS' 'Allows snapshots and dynamic extension of the FS' \
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'EXT4' 'Default FS of many distributions' \
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'F2FS' 'Flash-Friendly-FS for SSD or NVMe')
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single_choice_if_empty FS 'Select filesystem to use' TMP1
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if [ "${FS}" = 'BTRFS' ]; then
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TMP1=('root_only' 'Just one subvolume for "/".' \
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'@root@home' 'Two subvolumes @ and @home. This configuration allows usage of "Timeshift".')
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single_choice_if_empty FS_BTRFS_SUBVOL_LAYOUT 'Select your preferred subvolume layout' TMP1
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fi
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ask_user_if_empty HOSTNAME 'Enter hostname:'
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ask_user_if_empty USERNAME 'Enter username:'
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if [ -z "${USER_PWD}" ]; then
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ask_user_if_empty USER_PWD 'Enter a user password:'
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ask_user_if_empty USER_PWD2 'Please enter the password again:'
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# shellcheck disable=SC2153
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[[ "${USER_PWD}" == "${USER_PWD2}" ]] || {
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echo 'Passwords did not match'
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exit 1
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}
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fi
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TMP1=('true' 'Yes' 'false' 'No')
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single_choice_if_empty FDE 'Shall Full-Disk-Encryption be enabled?' TMP1
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if [ "${FDE}" = 'true' ] && [ -z "${LUKS_PWD}" ]; then
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ask_user_if_empty LUKS_PWD 'Enter a disk encryption password:'
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ask_user_if_empty LUKS_PWD2 'Please enter the password again:'
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# shellcheck disable=SC2153
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[[ "${LUKS_PWD}" == "${LUKS_PWD2}" ]] || {
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echo 'Passwords did not match'
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exit 1
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}
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fi
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}
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function get_default_mount_options() {
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# @pre
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# FS
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# @post
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# FS_DEFAULT_MOUNT_OPTIONS (array)
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FS_DEFAULT_MOUNT_OPTIONS=()
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case "${FS}" in
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BTRFS)
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# "compress=lzo": archwiki -> Btrfs#Compression
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# "compress=zstd:1":
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# -> https://btrfs.wiki.kernel.org/index.php/Compression#What_are_the_differences_between_compression_methods.3F
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# -> https://fedoraproject.org/wiki/Changes/BtrfsTransparentCompression#Q:_Why_use_zstd:1_specifically.3F
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#
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# "Enable compression (better performance, longer flash lifespan)"
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FS_DEFAULT_MOUNT_OPTIONS+=('compress=zstd:1')
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;;
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EXT4)
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# https://wiki.archlinux.org/index.php/Ext4#Enabling_metadata_checksums
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# If the CPU supports SSE 4.2, make sure the crc32c_intel kernel module is loaded
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FS_DEFAULT_MOUNT_OPTIONS+=('metadata_csum')
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;;
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F2FS)
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# When mounting the filesystem, specify compress_algorithm=(lzo|lz4|zstd|lzo-rle).
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# Using compress_extension=txt will cause all txt files to be compressed by default.
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FS_DEFAULT_MOUNT_OPTIONS+=('compress_algorithm=lz4')
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;;
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*)
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echo 'Filesystem '"${FS}"' not yet supported!'
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return 1
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;;
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esac
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}
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function get_additional_mount_options() {
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# @pre
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# FS
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# @post
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# FS_ADDITIONAL_MOUNT_OPTIONS (array)
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case "${FS}" in
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BTRFS)
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# noatime, nodiratime:
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# - The atime options do impact drive performance;
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# - noatime implies nodiratime, one does not need to specify both;
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# - The noatime option fully disables writing file access times to the drive every time you read a file.
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# This works well for almost all applications, except for those that need to know if a file has been
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# read since the last time it was modified.
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TMP1=('noatime' 'Don'\''t write file/folder access times' 'on' 'ssd' 'Enable if using SSD/NVMe' 'off')
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;;
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EXT4)
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TMP1=('noatime' 'Don'\''t write file/folder access times' 'on')
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;;
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F2FS)
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# shellcheck disable=SC2034
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TMP1=('noatime' 'Don'\''t write file/folder access times' 'on')
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;;
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*)
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echo 'Filesystem '"${FS}"' not yet supported!'
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return 1
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;;
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esac
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multi_choice_if_empty FS_ADDITIONAL_MOUNT_OPTIONS 'Select mount options' TMP1
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}
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function mount_partitions() {
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# @pre
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# FS, FS_BTRFS_SUBVOL_LAYOUT, FS_MOUNT_OPTIONS, DATA_PART, BOOT_PART
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if [ "${FS}" = 'BTRFS' ]; then
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case "${FS_BTRFS_SUBVOL_LAYOUT}" in
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'root_only')
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# Nothing special; same steps as for a regular FS
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echo 'Mounting data partition with options: '"${FS_MOUNT_OPTIONS}"
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sudo mount -o "${FS_MOUNT_OPTIONS}" "${DATA_PART}" /mnt
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;;
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'@root@home')
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# Timeshift BTRFS subvol layout:
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# https://github.com/teejee2008/timeshift#supported-system-configurations
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# Mount top level subvolume
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sudo mount -o subvolid=5 "${DATA_PART}" /mnt
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# Create subvolumes @ and @home
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sudo btrfs subvolume create /mnt/@
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sudo btrfs subvolume create /mnt/@home
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# List the created subvolumes
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sudo btrfs subvolume list /mnt
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# Umount the top level subvolume
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sudo umount -R /mnt
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echo 'Mounting @ and @home subvolumes with options: '"${FS_MOUNT_OPTIONS}"
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sudo mount -o 'subvol=@,'"${FS_MOUNT_OPTIONS}" "${DATA_PART}" /mnt
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sudo mkdir /mnt/home
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sudo mount -o 'subvol=@home,'"${FS_MOUNT_OPTIONS}" "${DATA_PART}" /mnt/home
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;;
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*)
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echo 'BTRFS subvolume layout '"${FS_BTRFS_SUBVOL_LAYOUT}"' not supported!'
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return 1
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;;
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esac
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else
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echo 'Mounting data partition with options: '"${FS_MOUNT_OPTIONS}"
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sudo mount -o "${FS_MOUNT_OPTIONS}" "${DATA_PART}" /mnt
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fi
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echo 'Mounting boot partition ...'
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sudo mkdir /mnt/boot
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sudo mount "${BOOT_PART}" /mnt/boot
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}
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function run_pacstrap() {
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# @pre
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# BOOT_FIRMWARE
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# PACSTRAP_INTERACTIVE: optional, 'true'
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echo 'Running pacstrap ...'
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PKGS=("${ADDITIONAL_PKGS[@]}")
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case "${BOOT_FIRMWARE}" in
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uefi)
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PKGS+=('de-p1st-base')
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;;
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bios)
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echo 'Not yet implemented'
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return 1
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;;
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*)
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echo 'Not yet implemented!'
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return 1
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;;
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esac
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# If CPU_VENDOR is not empty, then
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if [ -n "${CPU_VENDOR}" ]; then
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case "${CPU_VENDOR}" in
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amd)
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PKGS+=('de-p1st-ucode-amd')
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;;
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intel)
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PKGS+=('de-p1st-ucode-intel')
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;;
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none)
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PKGS+=('de-p1st-ucode-placeholder')
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;;
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*)
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echo 'Invalid option: '"${CPU_VENDOR}"
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return 1
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;;
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esac
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fi
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local args=()
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if [ "${PACSTRAP_INTERACTIVE}" = 'true' ]; then
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args+=('-i') # Run interactively
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fi
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sudo pacstrap -K "${args[@]}" /mnt "${PKGS[@]}"
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}
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function run_genfstab() {
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# @pre
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# FS
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echo 'Generating fstab ...'
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local fstab
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fstab="$(genfstab -U /mnt)"
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case "${FS}" in
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BTRFS)
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# Remove "subvolid=..." mount option but leave "subvol=..." mount option
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fstab=$(printf '%s' "${fstab}" | sed 's/,subvolid=[^,\s]\+//')
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# Check if fstab does still contain subvolid mount option
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if printf '%s' "${fstab}" | grep -q 'subvolid='; then
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echo 'This should not happen!'
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return 1
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fi
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;;
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EXT4)
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true
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;;
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F2FS)
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true
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;;
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*)
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echo 'Filesystem '"${FS}"' not yet supported!'
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return 1
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;;
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esac
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printf '%s' "${fstab}" | sudo tee /mnt/etc/fstab >/dev/null
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}
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function config_hostname_and_hosts() {
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# @pre
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# HOSTNAME
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# FQDN: optional, e.g. sub.domain.de
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# STATIC_IP: optional, e.g. 93.133.433.133
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# IPV6_CAPABLE: optional, 'true'
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echo 'Set hostname ...'
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echo "${HOSTNAME}" | sudo tee /mnt/etc/hostname >/dev/null
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echo 'Create hosts file ...'
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# If the system has a permanent IP address, it should be used instead of 127.0.1.1.
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# * https://wiki.archlinux.org/index.php/Installation_guide#Network_configuration
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# Desirable entries IPv4/IPv6:
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# * https://man.archlinux.org/man/hosts.5#EXAMPLES
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# If FQDN not given, use $HOSTNAME.localdomain instead
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FQDN="${FQDN:="${HOSTNAME}.localdomain"}"
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# If STATIC_IP not given, use 127.0.1.1 instead
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STATIC_IP="${STATIC_IP:=127.0.1.1}"
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echo '# The following lines are desirable for IPv4 capable hosts
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127.0.0.1 localhost
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# 127.0.1.1 is often used for the FQDN of the machine
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'"${STATIC_IP} ${FQDN} ${HOSTNAME}" | sudo tee /mnt/etc/hosts >/dev/null
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if [ "${IPV6_CAPABLE}" = 'true' ]; then
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echo '
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# The following lines are desirable for IPv6 capable hosts
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::1 localhost ip6-localhost ip6-loopback
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ff02::1 ip6-allnodes
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ff02::2 ip6-allrouters' | sudo tee -a /mnt/etc/hosts >/dev/null
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fi
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}
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function user_and_pwd() {
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# @pre
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# USERNAME
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# USER_PWD
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# ROOT_PWD (optional)
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echo 'Adding user and changing shell to /bin/zsh ...'
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# -m: Create home
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# -U: Create a group with the same name as the user, and add the user to this group.
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sudo arch-chroot /mnt useradd -m -s /usr/bin/zsh -g wheel "${USERNAME}"
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sudo arch-chroot /mnt chsh -s /usr/bin/zsh
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# If ROOT_PWD is not given, the use USER_PWD for root user
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ROOT_PWD="${ROOT_PWD:="${USER_PWD}"}"
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printf '%s:%s' "${USERNAME}" "${USER_PWD}" | sudo chpasswd --root /mnt
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printf '%s:%s' "root" "${ROOT_PWD}" | sudo chpasswd --root /mnt
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}
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function bootloader() {
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# @pre
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# TARGET_BLOCK_DEVICE
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# FDE: 'true' | 'false'
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# LUKS_PART_UUID: required if FDE='true'
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echo 'Installing grub ...'
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case "${BOOT_FIRMWARE}" in
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uefi)
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# Portable fallback efi name for grub:
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# * https://www.rodsbooks.com/efi-bootloaders/installation.html#alternative-naming
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# * arch-chroot /mnt cp /boot/EFI/GRUB/grubx64.efi /boot/EFI/BOOT/bootx64.efi
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sudo arch-chroot /mnt grub-install --target=x86_64-efi --bootloader-id=GRUB --efi-directory=/boot --removable
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;;
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bios)
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sudo arch-chroot /mnt grub-install --target=i386-pc "${TARGET_BLOCK_DEVICE}"
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;;
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*)
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echo 'Not yet implemented!'
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return 1
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;;
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esac
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echo 'Generating /boot/grub/grub.cfg ...'
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{
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case "${FDE}" in
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true)
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# /etc/default/grub is managed by Holo. Therefore we should not manually modify it.
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# Instead, we create a holosript which writes $LUKS_PART_UUID into GRUB_CMDLINE_LINUX of /etc/default/grub
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{
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# Assert
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grep --quiet '^GRUB_CMDLINE_LINUX=""$' < /mnt/etc/default/grub || return
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# Use filename .../20- for the holoscript so that it gets executed after the one from de-p1st-grub
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local holoScriptDir=/mnt/usr/share/holo/files/20-de-p1st-installer/etc/default/
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# The holoscript shall contain one 'sed "..."' command
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sudo mkdir -p "${holoScriptDir}"
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sudo echo '#!/bin/sh
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sed "s|^GRUB_CMDLINE_LINUX=\"\"\$|GRUB_CMDLINE_LINUX=\"cryptdevice=/dev/disk/by-uuid/'"${LUKS_PART_UUID}"':crypt\"|"' \
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| sudo tee "${holoScriptDir}"/grub.holoscript
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sudo chmod 0544 "${holoScriptDir}"/grub.holoscript
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}
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# Then we apply the holoscript
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sudo arch-chroot /mnt holo apply --force file:/etc/default/grub
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|
;;
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|
false)
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|
true
|
|
;;
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|
*)
|
|
echo 'Invalid option: '"${FDE}"
|
|
return 1
|
|
;;
|
|
esac
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|
|
|
# And finally run grub-mkconfig
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|
sudo arch-chroot /mnt grub-mkconfig -o /boot/grub/grub.cfg
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|
}
|
|
}
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|
|
|
main "$@"
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