# Arch Linux Installation Guide These are the steps necessary to install [Arch Linux](https://www.archlinux.org/) with [LUKS](https://en.wikipedia.org/wiki/Linux_Unified_Key_Setup) disk encryption using [Logical Volume Manager](https://en.wikipedia.org/wiki/Logical_Volume_Manager_(Linux)) booting with [UEFI](https://en.wikipedia.org/wiki/Unified_Extensible_Firmware_Interface). --- ## Prepare Installation Media [Download](https://www.archlinux.org/download/) the ISO and create a bootable USB drive. The simplest way to create bootable media on Linux is using the dd command: sudo dd bs=4M if=/path_to_arch_.iso of=/dev/sdX && sync If you prefer a graphical interface, I've heard good things about [Etcher](https://etcher.io/) and it runs on Linux, Mac, and Windows. Alternately you can use UNetbootin (on Mac or Windows) or Rufus on Windows. --- ## BIOS Configuration Hold F12 (or whatever key is used on your system) during startup to access bios. Then... * __Turn UEFI On.__ Most modern systems use UEFI, so it's generally on by default. * __Disable Secure Boot.__ If secure boot is enabled it must be turned off since Linux boot loaders don't typically have digital signatures. Note that if you intend on running a dual-boot system with Windows and Linux you won't be able to use BitLocker disk encryption on the partition containing Windows, as it requires secure boot. * __Disable Fast Startup Mode.__ If you are dual booting with Windows turn off Fast Startup. This feature puts Windows into hibernation when you power off. Because some systems are still active during hibernation, booting into Linux can cause various nasty problems. --- ## Boot Arch from the USB Drive Hold F12 (or whatever key is used on your system) during startup to access startup menu. Select the USB drive and boot into Arch. --- ## Establish an Internet Connection The most reliable way is to use a wired connection, as Arch is setup by default to connect to DHCP. However, you can usually get WiFi working by running: wifi-menu To test your connection: ping -c 3 www.google.com --- ## Hard Drive Preparation To view your disc information: fdisk -l ### Delete Existing Disk Partitions This step is only necessary if you are using a drive with existing partitions. If you are installing onto a drive with unallocated space, skip this step. To remove partitions you can use parted: parted -s /dev/sd* rm 1 parted -s /dev/sd* rm 2 parted -s /dev/sd* rm 3 etc. ### Zero Hard Drive with Random Data Optional step if you are using a hard drive with existing data. Here's how to do it using dd: dd if=/dev/urandom of=/dev/sd* status=progress Or if you're paranoid you can use a multi-pass tool like shred. shred -vfz -n 5 /dev/sd* --- ## Partition Hard Drive __NOTE:__ Since we're using LVM we only need two drive partitions: boot, and root. The LVM will live on root. First, launch __parted__ on your desired drive node; parted /dev/sd* Then run the following commands with your particular values: (parted) mklabel gpt (parted) mkpart primary 1MiB 512MiB name 1 boot (parted) set 1 boot on (parted) mkpart primary 512MiB 100% name 2 root (parted) quit --- ## Disk Encryption Before we setup our LVM we need to encrypt the root partition we just created. cryptsetup luksFormat -v -s 512 -h sha512 /dev/sd* Now let's decrypt it so we can use it. __Note__: I'm labeling this partition as "lvm". We will use this label later when we create the LVM. cryptsetup open --type luks /dev/sd* lvm To verify our "lvm" label we can use: ls /dev/mapper/lvm --- ## LVM Setup ### Create Physical Volume pvcreate /dev/mapper/lvm ### Create Volume Group __Note:__ I'm labelling my volume group as "vg". vgcreate vg /dev/mapper/lvm ### Create Logical Volumes At minimum we need two volumes. One for swap, the other for root. We can additionally put home on its own volume. __Note:__ The sizes below can be specified in megabytes (100M) or gigs (10G). __Also__ the "L" arguments below are case sensitive. The capital L is used when you want to specify a fixed size volume, the lowercalse l lets you specify percentages. lvcreate -L 4G vg -n swap lvcreate -L 20G vg -n root lvcreate -l 100%FREE vg -n home ### Create Filesystems __Note:__ The boot partition is on the non-LVM partition. mkfs.vfat -F32 /dev/sd* mkfs.ext4 /dev/mapper/vg-root mkfs.ext4 /dev/mapper/vg-home mkswap /dev/mapper/vg-swap ### Mount the volumes We need to create a couple directories while we're at it. mount /dev/mapper/vg-root /mnt mkdir /mnt/home mount /dev/mapper/vg-home /mnt/home mkdir /mnt/boot mount /dev/sda1 /mnt/boot ### Enable Swap swapon -s /dev/mapper/vg-swap --- ## Update mirrorlist By default Arch has a selection of servers from various countries listed in the local mirrorlist. While you might get adequate results with the defaults, to ensure the best possible download speeds it's recommended that you update the mirrorlist with servers from your country. To do that you use an application called reflector. ### Install Reflector Note that reflector has two dependencies (rsync and curl) which should be installed by default in Arch, but to be safe we specify them: sudo pacman -S reflector rsync curl ### Backup your local mirrorlist sudo cp /etc/pacman.d/mirrorlist /etc/pacman.d/mirrorlist.bak ### Create New Mirrorlist Note: If you are in a different country change "United States" to your country. sudo reflector --verbose --country 'United States' -l 5 --sort rate --save /etc/pacman.d/mirrorlist --- ## Install Arch Linux Finally! pacstrap -i /mnt base base-devel --- ### Generate fstab We now need to update the filesystem table on the new installation. Fstab contains the association between filesystems and mountpoints. genfstab -U -p /mnt >> /mnt/etc/fstab You can verify fstab with: cat /mnt/etc/fstab __TO INVESTIGATE!!!__ When we generated the fstab did it add our swap to it? /dev/mapper/vg-swap swap swap defaults 0 0 --- ## Change Root Since we're still booted via USB, in order to configure our new system we need to change root. If we don't do that, every change we make will be applied to the USB installation. arch-chroot /mnt --- ## Install and configure bootloader While there are various bootloaders that may be used, since the Linux kernel has a built-in EFI image, all we need is a way to execute it. For that we will install systemd-boot, a minimalist boot manager: bootctl --path=/boot install ### Update the loader.conf file Using nano we can edit the config file: nano /boot/loader/loader.conf Make sure that __only__ the following lines are in the file: default arch timeout 3 editor 0 __Notes:__ The timeout setting is the number of seconds the menu is displayed. The editor setting determines whether the kernel parameters are editable. For security reasons we disable this. ### Get the UUID for root In the next step we will update the boot loader config file. But first, we need to determine the UUID of our root partition. In order to get the UUID you first need to know what device node root is on. Look it up using: fdisk -l The device node will be something like /dev/sda2 You can now get the UUID that corresponds to the root node you just looked up using: blkid /dev/sda2 You can either write down the UUID (which could be painful given the length), or what I prefer to do is pipe the output of the above command to the config file that we will need that information in: blkid /dev/sda2 > /boot/loader/entries/arch.conf Then open the config file in nano: nano /boot/loader/entries/arch.conf Arrow over to the UUID and shift/arrow to highlight it. Use Ctl+K to cut the line. It will remain in the clipboard for use next. Now delete everything in that file and add the following info. Make sure to replace __YOUR-UUID__ with the ID gathered previously (which you can paste from your clipboard using Ctrl+U). title Arch Linux linux /vmlinuz-linux initrd /initramfs-linux.img options cryptdevice=UUID=YOUR-UUID:vg root=/dev/mapper/vg-root quiet rw ### Update the bootloader bootctl update --- ## Update mkinitcpio Since we're using disk encryption we need to make sure that it gets initialized by the kernel so we can decrypt our drive prior to booting. We also need to make sure that the keyboard is available for use prior to initializing the filesystem, otherwise we will have no input device to type in our password. Edit the following config file: nano /etc/mkintcpio.conf Scroll down to the hooks section. It should look similar to this: HOOKS="base udev autodetect modconf block filesystems keyboard fsck" Change it to this: HOOKS="base udev autodetect modconf block keyboard keymap encrypt lvm2 filesystems fsck" Now update the initramfs image with our hooks change: mkinitcpio -p linux If you're curious what modules are available as intcpio hooks: ls /usr/lib/initcpio/install ## Add NVMe to mkinitcpio This step is only necessary if your computer is running PCIe storage rather than SATA. NVMe is a specification for accessing SSDs attached through the PCI Express bus. The Linux kernel includes an NVMe driver, so we just need to tell the kernel to load it. This is done by updating the MODULES variable in mkinitcpio (which is responsible for creating the initial ramdisk). Edit the following config file: nano /etc/mkintcpio.conf Add __nvme__ to the MODULES variable: MODULES="nvme" Now update the initramfs image with our module change: mkinitcpio -p linux --- ## Set language Open the locale.gen file and uncomment your preferred language (I'm using en_US.UTF-8): nano /etc/local.gen Now save the file and generate the locale: locale-gen Add your language choice to the locale.conf file: echo LANG=en_US.UTF-8 > /etc/locale.conf Export the language as an environmental shell variable: export LANG=en_US.UTF-8 --- ## Set Timezone Invoke this command to be prompted to find your timezone: tzselect Now, use the provided TZ to create a symbolic link to /etc/localtime: ln -s /usr/share/zoneinfo/America/Denver /etc/localtime Update the hardware clock: hwclock --systohc --utc --- ## Set hostname This is the name of your computer. Note: Change "arch" to whatever you want your host to be. echo arch > /etc/hostname --- ## Set root password passwd --- ## Create the user account useradd -m -G wheel,users -s /bin/bash ### Set password for user passwd --- ## Grant user sudo powers Install sudo: pacman -S sudo Then run the following command, which will open the sudoers file: EDITOR=nano visudo Find this line and uncomment: %wheel ALL=(ALL) ALL --- ## Enable multilib repositories and Yaourt First we need to edit the pacman.conf file: nano /etc/pacman.conf Uncomment the following lines: [multilib] Include = /etc/pacman.d/mirrorlist Then add these lines for yaourt: [archlinuxfr] SigLevel = Never Server = http://repo.archlinux.fr/$arch Save the file and exit. ### Refresh the package databases pacman -Syy ### Install Yaourt sudo pacman -S yaourt --- ## Update all packages The installation is basically done so we now update all installed packages: pacman -Syu --- ## Reboot You should now have a working Arch Linux installation. It doesn't have a desktop environtment or any applications yet, but the base installation is done. You can now reboot and remove the USB drive: unmount -R /mnt reboot