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these changes were generated with nixq 0.0.2, by running nixq ">> lib.mdDoc[remove] Argument[keep]" --batchmode nixos/**.nix nixq ">> mdDoc[remove] Argument[keep]" --batchmode nixos/**.nix nixq ">> Inherit >> mdDoc[remove]" --batchmode nixos/**.nix two mentions of the mdDoc function remain in nixos/, both of which are inside of comments. Since lib.mdDoc is already defined as just id, this commit is a no-op as far as Nix (and the built manual) is concerned.
121 lines
3.9 KiB
Nix
121 lines
3.9 KiB
Nix
{ config, lib, ... }:
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with lib;
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let
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fileSystems = config.system.build.fileSystems ++ config.swapDevices;
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encDevs = filter (dev: dev.encrypted.enable) fileSystems;
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# With scripted initrd, devices with a keyFile have to be opened
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# late, after file systems are mounted, because that could be where
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# the keyFile is located. With systemd initrd, each individual
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# systemd-cryptsetup@ unit has RequiresMountsFor= to delay until all
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# the mount units for the key file are done; i.e. no special
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# treatment is needed.
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lateEncDevs =
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if config.boot.initrd.systemd.enable
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then { }
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else filter (dev: dev.encrypted.keyFile != null) encDevs;
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earlyEncDevs =
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if config.boot.initrd.systemd.enable
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then encDevs
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else filter (dev: dev.encrypted.keyFile == null) encDevs;
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anyEncrypted =
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foldr (j: v: v || j.encrypted.enable) false encDevs;
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encryptedFSOptions = {
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options.encrypted = {
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enable = mkOption {
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default = false;
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type = types.bool;
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description = "The block device is backed by an encrypted one, adds this device as a initrd luks entry.";
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};
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blkDev = mkOption {
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default = null;
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example = "/dev/sda1";
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type = types.nullOr types.str;
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description = "Location of the backing encrypted device.";
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};
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label = mkOption {
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default = null;
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example = "rootfs";
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type = types.nullOr types.str;
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description = "Label of the unlocked encrypted device. Set `fileSystems.<name?>.device` to `/dev/mapper/<label>` to mount the unlocked device.";
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};
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keyFile = mkOption {
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default = null;
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example = "/mnt-root/root/.swapkey";
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type = types.nullOr types.str;
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description = ''
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Path to a keyfile used to unlock the backing encrypted
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device. When systemd stage 1 is not enabled, at the time
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this keyfile is accessed, the `neededForBoot` filesystems
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(see `utils.fsNeededForBoot`) will have been mounted under
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`/mnt-root`, so the keyfile path should usually start with
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"/mnt-root/". When systemd stage 1 is enabled,
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`fsNeededForBoot` file systems will be mounted as needed
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under `/sysroot`, and the keyfile will not be accessed until
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its requisite mounts are done.
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'';
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};
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};
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};
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in
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{
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options = {
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fileSystems = mkOption {
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type = with lib.types; attrsOf (submodule encryptedFSOptions);
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};
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swapDevices = mkOption {
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type = with lib.types; listOf (submodule encryptedFSOptions);
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};
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};
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config = mkIf anyEncrypted {
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assertions = concatMap (dev: [
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{
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assertion = dev.encrypted.label != null;
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message = ''
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The filesystem for ${dev.mountPoint} has encrypted.enable set to true, but no encrypted.label set
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'';
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}
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{
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assertion =
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config.boot.initrd.systemd.enable -> (
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dev.encrypted.keyFile == null
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|| !lib.any (x: lib.hasPrefix x dev.encrypted.keyFile) ["/mnt-root" "$targetRoot"]
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);
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message = ''
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Bad use of '/mnt-root' or '$targetRoot` in 'keyFile'.
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When 'boot.initrd.systemd.enable' is enabled, file systems
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are mounted at '/sysroot' instead of '/mnt-root'.
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'';
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}
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]) encDevs;
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boot.initrd = {
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luks = {
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devices =
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builtins.listToAttrs (map (dev: {
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name = dev.encrypted.label;
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value = { device = dev.encrypted.blkDev; inherit (dev.encrypted) keyFile; };
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}) earlyEncDevs);
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forceLuksSupportInInitrd = true;
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};
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# TODO: systemd stage 1
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postMountCommands = lib.mkIf (!config.boot.initrd.systemd.enable)
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(concatMapStrings (dev:
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"cryptsetup luksOpen --key-file ${dev.encrypted.keyFile} ${dev.encrypted.blkDev} ${dev.encrypted.label};\n"
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) lateEncDevs);
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};
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};
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}
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