172 lines
5.5 KiB
Nix
172 lines
5.5 KiB
Nix
# This Nix expression builds the initial ramdisk, which contains an
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# init script that performs the first stage of booting the system: it
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# loads the modules necessary to mount the root file system, then
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# calls the init in the root file system to start the second boot
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# stage.
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{pkgs, config}:
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let
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kernelPackages = config.boot.kernelPackages;
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modulesTree = config.system.modulesTree;
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in
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rec {
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pkgsDiet = import "${pkgs.path}/top-level/all-packages.nix" {
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system = pkgs.stdenv.system;
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bootStdenv = pkgs.useDietLibC pkgs.stdenv;
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};
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pkgsKlibc = import "${pkgs.path}/top-level/all-packages.nix" {
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system = pkgs.stdenv.system;
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bootStdenv = pkgs.useKlibc pkgs.stdenv pkgs.klibc;
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};
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pkgsStatic = import "${pkgs.path}/top-level/all-packages.nix" {
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system = pkgs.stdenv.system;
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bootStdenv = pkgs.makeStaticBinaries pkgs.stdenv;
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};
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stdenvLinuxStuff = import "${pkgs.path}/stdenv/linux" {
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system = pkgs.stdenv.system;
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allPackages = import "${pkgs.path}/top-level/all-packages.nix";
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};
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# Determine the set of modules that we need to mount the root FS.
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modulesClosure = pkgs.makeModulesClosure {
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rootModules =
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config.boot.initrd.extraKernelModules ++
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config.boot.initrd.kernelModules;
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kernel = modulesTree;
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allowMissing = config.boot.initrd.allowMissing;
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};
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udev = pkgsKlibc.udev;
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# Some additional utilities needed in stage 1, notably mount. We
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# don't want to bring in all of util-linux, so we just copy what we
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# need.
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extraUtils = pkgs.runCommand "extra-utils"
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{ buildInputs = [pkgs.nukeReferences];
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inherit (pkgsStatic) utillinux;
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inherit udev;
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e2fsprogs = pkgsDiet.e2fsprogs;
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devicemapper =
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if config.boot.initrd.lvm
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then assert pkgs.devicemapper.enableStatic; pkgs.devicemapper
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else null;
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lvm2 =
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if config.boot.initrd.lvm
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then assert pkgs.lvm2.enableStatic; pkgs.lvm2
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else null;
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allowedReferences = []; # prevent accidents like glibc being included in the initrd
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}
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''
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ensureDir $out/bin
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if test -n "$devicemapper"; then
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cp $devicemapper/sbin/dmsetup.static $out/bin/dmsetup
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cp $lvm2/sbin/lvm.static $out/bin/lvm
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fi
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cp $utillinux/bin/mount $utillinux/bin/umount $utillinux/sbin/pivot_root $out/bin
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cp -p $e2fsprogs/sbin/fsck* $e2fsprogs/sbin/e2fsck $e2fsprogs/sbin/tune2fs $out/bin
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cp $udev/sbin/udevd $udev/sbin/udevadm $out/bin
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cp $udev/lib/udev/*_id $out/bin
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nuke-refs $out/bin/*
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''; # */
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# The initrd only has to mount / or any FS marked as necessary for
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# booting (such as the FS containing /nix/store, or an FS needed for
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# mounting /, like / on a loopback).
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fileSystems = pkgs.lib.filter
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(fs: fs.mountPoint == "/" || (fs ? neededForBoot && fs.neededForBoot))
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config.fileSystems;
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udevRules = pkgs.stdenv.mkDerivation {
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name = "udev-rules";
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buildCommand = ''
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ensureDir $out
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cp ${udev}/*/udev/rules.d/60-persistent-storage.rules $out/
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substituteInPlace $out/60-persistent-storage.rules \
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--replace ata_id ${extraUtils}/bin/ata_id \
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--replace usb_id ${extraUtils}/bin/usb_id \
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--replace scsi_id ${extraUtils}/bin/scsi_id \
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--replace path_id ${extraUtils}/bin/path_id \
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--replace vol_id ${extraUtils}/bin/vol_id
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''; # */
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};
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# The udev configuration file for in the initrd.
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udevConf = pkgs.writeText "udev-initrd.conf" ''
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udev_rules="${udevRules}"
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#udev_log="debug"
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'';
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# The init script of boot stage 1 (loading kernel modules for
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# mounting the root FS).
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bootStage1 = pkgs.substituteAll {
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src = ./boot-stage-1-init.sh;
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isExecutable = true;
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staticShell = stdenvLinuxStuff.bootstrapTools.bash;
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inherit modulesClosure udevConf;
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inherit (config.boot) isLiveCD resumeDevice;
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# !!! copy&pasted from upstart-jobs/filesystems.nix.
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mountPoints =
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if fileSystems == []
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then abort "You must specify the fileSystems option!"
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else map (fs: fs.mountPoint) fileSystems;
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devices = map (fs: if fs ? device then fs.device else "/dev/disk/by-label/${fs.label}") fileSystems;
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fsTypes = map (fs: if fs ? fsType then fs.fsType else "auto") fileSystems;
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optionss = map (fs: if fs ? options then fs.options else "defaults") fileSystems;
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path = [
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# `extraUtils' comes first because it overrides the `mount'
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# command provided by klibc (which isn't capable of
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# auto-detecting FS types).
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extraUtils
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pkgs.klibcShrunk
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];
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};
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# The closure of the init script of boot stage 1 is what we put in
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# the initial RAM disk.
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initialRamdisk = pkgs.makeInitrd {
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contents = [
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{ object = bootStage1;
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symlink = "/init";
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}
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] ++
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pkgs.lib.optionals
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(config.boot.initrd.enableSplashScreen && kernelPackages.splashutils != null)
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[
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{ object = pkgs.runCommand "splashutils" {allowedReferences = []; buildInputs = [pkgs.nukeReferences];} ''
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ensureDir $out/bin
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cp ${kernelPackages.splashutils}/${kernelPackages.splashutils.helperName} $out/bin/splash_helper
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nuke-refs $out/bin/*
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'';
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suffix = "/bin/splash_helper";
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symlink = "/${kernelPackages.splashutils.helperName}";
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} # */
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{ object = import ../helpers/unpack-theme.nix {
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inherit (pkgs) stdenv;
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theme = config.services.ttyBackgrounds.defaultTheme;
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};
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symlink = "/etc/splash";
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}
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];
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};
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}
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