bf4c0c1900
those are added by mkEnableOption, and .. is replaced to … by markdown processing.
393 lines
14 KiB
Nix
393 lines
14 KiB
Nix
{ config, lib, pkgs, ... }:
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with lib;
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let
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inherit (config.boot) kernelPatches;
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inherit (config.boot.kernel) features randstructSeed;
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inherit (config.boot.kernelPackages) kernel;
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kernelModulesConf = pkgs.writeText "nixos.conf"
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''
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${concatStringsSep "\n" config.boot.kernelModules}
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'';
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in
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{
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###### interface
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options = {
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boot.kernel.enable = mkEnableOption (lib.mdDoc "the Linux kernel. This is useful for systemd-like containers which do not require a kernel") // {
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default = true;
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};
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boot.kernel.features = mkOption {
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default = {};
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example = literalExpression "{ debug = true; }";
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internal = true;
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description = lib.mdDoc ''
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This option allows to enable or disable certain kernel features.
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It's not API, because it's about kernel feature sets, that
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make sense for specific use cases. Mostly along with programs,
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which would have separate nixos options.
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`grep features pkgs/os-specific/linux/kernel/common-config.nix`
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'';
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};
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boot.kernelPackages = mkOption {
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default = pkgs.linuxPackages;
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type = types.raw;
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apply = kernelPackages: kernelPackages.extend (self: super: {
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kernel = super.kernel.override (originalArgs: {
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inherit randstructSeed;
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kernelPatches = (originalArgs.kernelPatches or []) ++ kernelPatches;
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features = lib.recursiveUpdate super.kernel.features features;
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});
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});
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# We don't want to evaluate all of linuxPackages for the manual
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# - some of it might not even evaluate correctly.
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defaultText = literalExpression "pkgs.linuxPackages";
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example = literalExpression "pkgs.linuxKernel.packages.linux_5_10";
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description = lib.mdDoc ''
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This option allows you to override the Linux kernel used by
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NixOS. Since things like external kernel module packages are
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tied to the kernel you're using, it also overrides those.
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This option is a function that takes Nixpkgs as an argument
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(as a convenience), and returns an attribute set containing at
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the very least an attribute {var}`kernel`.
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Additional attributes may be needed depending on your
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configuration. For instance, if you use the NVIDIA X driver,
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then it also needs to contain an attribute
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{var}`nvidia_x11`.
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Please note that we strictly support kernel versions that are
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maintained by the Linux developers only. More information on the
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availability of kernel versions is documented
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[in the Linux section of the manual](https://nixos.org/manual/nixos/unstable/index.html#sec-kernel-config).
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'';
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};
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boot.kernelPatches = mkOption {
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type = types.listOf types.attrs;
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default = [];
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example = literalExpression ''
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[
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{
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name = "foo";
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patch = ./foo.patch;
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extraStructuredConfig.FOO = lib.kernel.yes;
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features.foo = true;
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}
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]
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'';
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description = lib.mdDoc ''
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A list of additional patches to apply to the kernel.
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Every item should be an attribute set with the following attributes:
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```nix
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{
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name = "foo"; # descriptive name, required
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patch = ./foo.patch; # path or derivation that contains the patch source
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# (required, but can be null if only config changes
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# are needed)
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extraStructuredConfig = { # attrset of extra configuration parameters
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FOO = lib.kernel.yes; # (without the CONFIG_ prefix, optional)
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}; # values should generally be lib.kernel.yes,
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# lib.kernel.no or lib.kernel.module
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features = { # attrset of extra "features" the kernel is considered to have
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foo = true; # (may be checked by other NixOS modules, optional)
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};
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extraConfig = "CONFIG_FOO y"; # extra configuration options in string form
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# (deprecated, use extraStructuredConfig instead, optional)
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}
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```
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There's a small set of existing kernel patches in Nixpkgs, available as `pkgs.kernelPatches`,
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that follow this format and can be used directly.
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'';
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};
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boot.kernel.randstructSeed = mkOption {
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type = types.str;
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default = "";
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example = "my secret seed";
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description = lib.mdDoc ''
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Provides a custom seed for the {var}`RANDSTRUCT` security
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option of the Linux kernel. Note that {var}`RANDSTRUCT` is
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only enabled in NixOS hardened kernels. Using a custom seed requires
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building the kernel and dependent packages locally, since this
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customization happens at build time.
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'';
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};
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boot.kernelParams = mkOption {
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type = types.listOf (types.strMatching ''([^"[:space:]]|"[^"]*")+'' // {
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name = "kernelParam";
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description = "string, with spaces inside double quotes";
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});
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default = [ ];
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description = lib.mdDoc "Parameters added to the kernel command line.";
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};
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boot.consoleLogLevel = mkOption {
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type = types.int;
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default = 4;
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description = lib.mdDoc ''
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The kernel console `loglevel`. All Kernel Messages with a log level smaller
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than this setting will be printed to the console.
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'';
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};
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boot.vesa = mkOption {
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type = types.bool;
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default = false;
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description = lib.mdDoc ''
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(Deprecated) This option, if set, activates the VESA 800x600 video
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mode on boot and disables kernel modesetting. It is equivalent to
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specifying `[ "vga=0x317" "nomodeset" ]` in the
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{option}`boot.kernelParams` option. This option is
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deprecated as of 2020: Xorg now works better with modesetting, and
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you might want a different VESA vga setting, anyway.
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'';
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};
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boot.extraModulePackages = mkOption {
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type = types.listOf types.package;
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default = [];
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example = literalExpression "[ config.boot.kernelPackages.nvidia_x11 ]";
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description = lib.mdDoc "A list of additional packages supplying kernel modules.";
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};
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boot.kernelModules = mkOption {
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type = types.listOf types.str;
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default = [];
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description = lib.mdDoc ''
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The set of kernel modules to be loaded in the second stage of
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the boot process. Note that modules that are needed to
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mount the root file system should be added to
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{option}`boot.initrd.availableKernelModules` or
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{option}`boot.initrd.kernelModules`.
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'';
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};
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boot.initrd.availableKernelModules = mkOption {
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type = types.listOf types.str;
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default = [];
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example = [ "sata_nv" "ext3" ];
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description = lib.mdDoc ''
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The set of kernel modules in the initial ramdisk used during the
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boot process. This set must include all modules necessary for
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mounting the root device. That is, it should include modules
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for the physical device (e.g., SCSI drivers) and for the file
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system (e.g., ext3). The set specified here is automatically
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closed under the module dependency relation, i.e., all
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dependencies of the modules list here are included
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automatically. The modules listed here are available in the
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initrd, but are only loaded on demand (e.g., the ext3 module is
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loaded automatically when an ext3 filesystem is mounted, and
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modules for PCI devices are loaded when they match the PCI ID
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of a device in your system). To force a module to be loaded,
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include it in {option}`boot.initrd.kernelModules`.
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'';
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};
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boot.initrd.kernelModules = mkOption {
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type = types.listOf types.str;
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default = [];
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description = lib.mdDoc "List of modules that are always loaded by the initrd.";
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};
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boot.initrd.includeDefaultModules = mkOption {
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type = types.bool;
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default = true;
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description = lib.mdDoc ''
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This option, if set, adds a collection of default kernel modules
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to {option}`boot.initrd.availableKernelModules` and
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{option}`boot.initrd.kernelModules`.
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'';
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};
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system.modulesTree = mkOption {
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type = types.listOf types.path;
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internal = true;
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default = [];
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description = lib.mdDoc ''
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Tree of kernel modules. This includes the kernel, plus modules
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built outside of the kernel. Combine these into a single tree of
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symlinks because modprobe only supports one directory.
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'';
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# Convert the list of path to only one path.
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apply = pkgs.aggregateModules;
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};
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system.requiredKernelConfig = mkOption {
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default = [];
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example = literalExpression ''
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with config.lib.kernelConfig; [
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(isYes "MODULES")
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(isEnabled "FB_CON_DECOR")
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(isEnabled "BLK_DEV_INITRD")
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]
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'';
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internal = true;
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type = types.listOf types.attrs;
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description = lib.mdDoc ''
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This option allows modules to specify the kernel config options that
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must be set (or unset) for the module to work. Please use the
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lib.kernelConfig functions to build list elements.
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'';
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};
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};
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###### implementation
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config = mkMerge
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[ (mkIf config.boot.initrd.enable {
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boot.initrd.availableKernelModules =
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optionals config.boot.initrd.includeDefaultModules ([
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# Note: most of these (especially the SATA/PATA modules)
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# shouldn't be included by default since nixos-generate-config
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# detects them, but I'm keeping them for now for backwards
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# compatibility.
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# Some SATA/PATA stuff.
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"ahci"
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"sata_nv"
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"sata_via"
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"sata_sis"
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"sata_uli"
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"ata_piix"
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"pata_marvell"
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# Standard SCSI stuff.
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"sd_mod"
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"sr_mod"
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# SD cards and internal eMMC drives.
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"mmc_block"
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# Support USB keyboards, in case the boot fails and we only have
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# a USB keyboard, or for LUKS passphrase prompt.
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"uhci_hcd"
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"ehci_hcd"
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"ehci_pci"
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"ohci_hcd"
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"ohci_pci"
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"xhci_hcd"
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"xhci_pci"
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"usbhid"
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"hid_generic" "hid_lenovo" "hid_apple" "hid_roccat"
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"hid_logitech_hidpp" "hid_logitech_dj" "hid_microsoft" "hid_cherry"
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] ++ optionals pkgs.stdenv.hostPlatform.isx86 [
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# Misc. x86 keyboard stuff.
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"pcips2" "atkbd" "i8042"
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# x86 RTC needed by the stage 2 init script.
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"rtc_cmos"
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]);
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boot.initrd.kernelModules =
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optionals config.boot.initrd.includeDefaultModules [
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# For LVM.
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"dm_mod"
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];
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})
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(mkIf config.boot.kernel.enable {
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system.build = { inherit kernel; };
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system.modulesTree = [ kernel ] ++ config.boot.extraModulePackages;
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# Implement consoleLogLevel both in early boot and using sysctl
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# (so you don't need to reboot to have changes take effect).
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boot.kernelParams =
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[ "loglevel=${toString config.boot.consoleLogLevel}" ] ++
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optionals config.boot.vesa [ "vga=0x317" "nomodeset" ];
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boot.kernel.sysctl."kernel.printk" = mkDefault config.boot.consoleLogLevel;
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boot.kernelModules = [ "loop" "atkbd" ];
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# Create /etc/modules-load.d/nixos.conf, which is read by
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# systemd-modules-load.service to load required kernel modules.
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environment.etc =
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{ "modules-load.d/nixos.conf".source = kernelModulesConf;
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};
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systemd.services.systemd-modules-load =
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{ wantedBy = [ "multi-user.target" ];
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restartTriggers = [ kernelModulesConf ];
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serviceConfig =
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{ # Ignore failed module loads. Typically some of the
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# modules in ‘boot.kernelModules’ are "nice to have but
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# not required" (e.g. acpi-cpufreq), so we don't want to
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# barf on those.
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SuccessExitStatus = "0 1";
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};
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};
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lib.kernelConfig = {
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isYes = option: {
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assertion = config: config.isYes option;
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message = "CONFIG_${option} is not yes!";
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configLine = "CONFIG_${option}=y";
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};
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isNo = option: {
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assertion = config: config.isNo option;
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message = "CONFIG_${option} is not no!";
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configLine = "CONFIG_${option}=n";
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};
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isModule = option: {
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assertion = config: config.isModule option;
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message = "CONFIG_${option} is not built as a module!";
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configLine = "CONFIG_${option}=m";
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};
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### Usually you will just want to use these two
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# True if yes or module
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isEnabled = option: {
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assertion = config: config.isEnabled option;
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message = "CONFIG_${option} is not enabled!";
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configLine = "CONFIG_${option}=y";
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};
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# True if no or omitted
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isDisabled = option: {
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assertion = config: config.isDisabled option;
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message = "CONFIG_${option} is not disabled!";
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configLine = "CONFIG_${option}=n";
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};
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};
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# The config options that all modules can depend upon
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system.requiredKernelConfig = with config.lib.kernelConfig;
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[
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# !!! Should this really be needed?
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(isYes "MODULES")
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(isYes "BINFMT_ELF")
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] ++ (optional (randstructSeed != "") (isYes "GCC_PLUGIN_RANDSTRUCT"));
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# nixpkgs kernels are assumed to have all required features
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assertions = if config.boot.kernelPackages.kernel ? features then [] else
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let cfg = config.boot.kernelPackages.kernel.config; in map (attrs:
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{ assertion = attrs.assertion cfg; inherit (attrs) message; }
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) config.system.requiredKernelConfig;
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})
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];
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}
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