eba8f94069
svn path=/nixos/trunk/; revision=17769
208 lines
6.1 KiB
Nix
208 lines
6.1 KiB
Nix
{pkgs, config, ...}:
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with pkgs.lib;
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let
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inherit (pkgs) stdenv writeText udev procps;
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cfg = config.services.udev;
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extraUdevRules = pkgs.writeTextFile {
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name = "extra-udev-rules";
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text = cfg.extraRules;
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destination = "/etc/udev/rules.d/10-local.rules";
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};
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modprobe = config.system.sbin.modprobe;
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nixosRules = ''
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# Miscellaneous devices.
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KERNEL=="sonypi", MODE="0666"
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KERNEL=="kvm", MODE="0666"
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KERNEL=="kqemu", NAME="%k", MODE="0666"
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KERNEL=="vboxdrv", NAME="vboxdrv", OWNER="root", GROUP="root", MODE="0666"
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'';
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# Perform substitutions in all udev rules files.
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udevRules = stdenv.mkDerivation {
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name = "udev-rules";
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buildCommand = ''
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ensureDir $out
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shopt -s nullglob
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# Use all the default udev rules.
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cp ${udev}/libexec/rules.d/*.rules $out/
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# Set a reasonable $PATH for programs called by udev rules.
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echo 'ENV{PATH}="${pkgs.coreutils}/bin:${pkgs.gnused}/bin:${pkgs.utillinux}/bin"' > $out/00-path.rules
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# Set the firmware search path so that the firmware.sh helper
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# called by 50-firmware.rules works properly.
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echo 'ENV{FIRMWARE_DIRS}="${toString config.hardware.firmware}"' >> $out/00-path.rules
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# Fix some paths in the standard udev rules.
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for i in $out/*.rules; do
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substituteInPlace $i \
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--replace /sbin/modprobe ${modprobe}/sbin/modprobe \
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--replace /sbin/blkid ${pkgs.utillinux}/sbin/blkid \
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--replace /sbin/mdadm ${pkgs.mdadm}/sbin/madm
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done
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# If auto-configuration is disabled, then remove
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# udev's 80-drivers.rules file, which contains rules for
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# automatically calling modprobe.
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${if !config.boot.hardwareScan then "rm $out/80-drivers.rules" else ""}
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# Add the udev rules from other packages.
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for i in ${toString cfg.packages}; do
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for j in $i/*/udev/rules.d/*; do
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ln -s $j $out/$(basename $j)
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done
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done
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# Use the persistent device rules (naming for CD/DVD and
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# network devices) stored in
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# /var/lib/udev/rules.d/70-persistent-{cd,net}.rules. These are
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# modified by the write_{cd,net}_rules helpers called from
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# 75-cd-aliases-generator.rules and
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# 75-persistent-net-generator.rules.
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ln -s /var/lib/udev/rules.d/70-persistent-cd.rules $out/
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ln -s /var/lib/udev/rules.d/70-persistent-net.rules $out/
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''; # */
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};
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# The udev configuration file.
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conf = writeText "udev.conf" ''
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udev_rules="${udevRules}"
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#udev_log="debug"
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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.hardwareScan = mkOption {
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default = true;
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description = ''
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Whether to try to load kernel modules for all detected hardware.
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Usually this does a good job of providing you with the modules
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you need, but sometimes it can crash the system or cause other
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nasty effects. If the hardware scan is turned on, it can be
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disabled at boot time by adding the <literal>safemode</literal>
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parameter to the kernel command line.
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'';
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};
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services.udev = {
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packages = mkOption {
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default = [];
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merge = mergeListOption;
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description = ''
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List of packages containing <command>udev</command> rules.
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All files found in
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<filename><replaceable>pkg</replaceable>/etc/udev/rules.d</filename> and
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<filename><replaceable>pkg</replaceable>/lib/udev/rules.d</filename>
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will be included.
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'';
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};
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extraRules = mkOption {
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default = "";
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example = ''
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KERNEL=="eth*", ATTR{address}=="00:1D:60:B9:6D:4F", NAME="my_fast_network_card"
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'';
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merge = mergeStringOption;
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description = ''
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Additional <command>udev</command> rules. They'll be written
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into file <filename>10-local.rules</filename>. Thus they are
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read before all other rules.
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'';
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};
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};
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hardware.firmware = mkOption {
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default = [];
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example = ["/root/my-firmware"];
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merge = mergeListOption;
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description = ''
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List of directories containing firmware files. Such files
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will be loaded automatically if the kernel asks for them
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(i.e., when it has detected specific hardware that requires
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firmware to function).
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'';
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};
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};
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###### implementation
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config = {
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services.udev.extraRules = nixosRules;
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services.udev.packages = [extraUdevRules];
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jobs.udev =
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{ startOn = "startup";
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stopOn = "shutdown";
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environment = { UDEV_CONFIG_FILE = conf; };
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preStart =
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''
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echo "" > /proc/sys/kernel/hotplug
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mkdir -p /var/lib/udev/rules.d
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# Get rid of possible old udev processes.
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${procps}/bin/pkill -u root "^udevd$" || true
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# Do the loading of additional stage 2 kernel modules.
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# Maybe this isn't the best place...
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for i in ${toString config.boot.kernelModules}; do
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echo "Loading kernel module $i..."
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${modprobe}/sbin/modprobe $i || true
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done
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# Start udev.
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mkdir -p /dev/.udev # !!! bug in udev?
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${udev}/sbin/udevd --daemon
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# Let udev create device nodes for all modules that have already
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# been loaded into the kernel (or for which support is built into
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# the kernel).
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${udev}/sbin/udevadm trigger
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${udev}/sbin/udevadm settle # wait for udev to finish
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# Kill udev, let Upstart restart and monitor it. (This is nasty,
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# but we have to run `udevadm trigger' first. Maybe we can use
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# Upstart's `binary' keyword, but it isn't implemented yet.)
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if ! ${procps}/bin/pkill -u root "^udevd$"; then
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echo "couldn't stop udevd"
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fi
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while ${procps}/bin/pgrep -u root "^udevd$"; do
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sleep 1
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done
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initctl emit new-devices
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'';
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exec = "${udev}/sbin/udevd";
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};
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};
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}
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