83b27f60ce
This will make the list much easier to re-use, eg. for `nixosTests` The drawback is that this approaches makes the ``` nix-build release.nix -A tests.opensmtpd.x86_64-linux ``` command about twice as slow (3s to 6s): it now has to evaluate `nixpkgs` once for each architecture, instead of just having the hardcoded list of tests that allowed to say “ok just evaluate for x86_64-linux”. On the other hand, complete evaluation of `release.nix` should be much faster because we no longer import `nixpkgs` for each test: testing with the following command went from 30s to 18s, and that's just for a few tests. ``` time nix-instantiate --eval --strict nixos/release.nix -A tests.nat ``` I initially wanted to test on the whole `release.nix`, but there are too many broken tests and it takes too long to eval them all, especially compared to the fact that the current implementation breaks some setup. Given developers can just `nix-build nixos/tests/my-test.nix`, it sounds like an overall win.
280 lines
8.8 KiB
Nix
280 lines
8.8 KiB
Nix
with import ../lib;
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{ nixpkgs ? { outPath = cleanSource ./..; revCount = 130979; shortRev = "gfedcba"; }
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, stableBranch ? false
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, supportedSystems ? [ "x86_64-linux" "aarch64-linux" ]
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, configuration ? {}
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}:
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with import ../pkgs/top-level/release-lib.nix { inherit supportedSystems; };
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let
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version = fileContents ../.version;
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versionSuffix =
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(if stableBranch then "." else "pre") + "${toString nixpkgs.revCount}.${nixpkgs.shortRev}";
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# Run the tests for each platform. You can run a test by doing
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# e.g. ‘nix-build -A tests.login.x86_64-linux’, or equivalently,
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# ‘nix-build tests/login.nix -A result’.
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allTestsForSystem = system:
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import ./tests/all-tests.nix {
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inherit system;
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pkgs = import nixpkgs { inherit system; };
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callTest = t: {
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${system} = hydraJob t.test;
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};
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};
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allTests =
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foldAttrs recursiveUpdate {} (map allTestsForSystem supportedSystems);
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pkgs = import nixpkgs { system = "x86_64-linux"; };
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versionModule =
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{ system.nixos.versionSuffix = versionSuffix;
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system.nixos.revision = nixpkgs.rev or nixpkgs.shortRev;
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};
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makeModules = module: rest: [ configuration versionModule module rest ];
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makeIso =
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{ module, type, system, ... }:
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with import nixpkgs { inherit system; };
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hydraJob ((import lib/eval-config.nix {
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inherit system;
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modules = makeModules module {
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isoImage.isoBaseName = "nixos-${type}";
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};
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}).config.system.build.isoImage);
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makeSdImage =
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{ module, system, ... }:
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with import nixpkgs { inherit system; };
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hydraJob ((import lib/eval-config.nix {
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inherit system;
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modules = makeModules module {};
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}).config.system.build.sdImage);
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makeSystemTarball =
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{ module, maintainers ? ["viric"], system }:
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with import nixpkgs { inherit system; };
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let
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config = (import lib/eval-config.nix {
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inherit system;
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modules = makeModules module {};
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}).config;
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tarball = config.system.build.tarball;
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in
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tarball //
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{ meta = {
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description = "NixOS system tarball for ${system} - ${stdenv.hostPlatform.platform.name}";
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maintainers = map (x: lib.maintainers.${x}) maintainers;
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};
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inherit config;
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};
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makeClosure = module: buildFromConfig module (config: config.system.build.toplevel);
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buildFromConfig = module: sel: forAllSystems (system: hydraJob (sel (import ./lib/eval-config.nix {
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inherit system;
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modules = makeModules module
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({ ... }:
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{ fileSystems."/".device = mkDefault "/dev/sda1";
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boot.loader.grub.device = mkDefault "/dev/sda";
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});
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}).config));
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makeNetboot = { module, system, ... }:
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let
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configEvaled = import lib/eval-config.nix {
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inherit system;
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modules = makeModules module {};
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};
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build = configEvaled.config.system.build;
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kernelTarget = configEvaled.pkgs.stdenv.hostPlatform.platform.kernelTarget;
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in
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pkgs.symlinkJoin {
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name = "netboot";
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paths = [
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build.netbootRamdisk
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build.kernel
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build.netbootIpxeScript
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];
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postBuild = ''
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mkdir -p $out/nix-support
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echo "file ${kernelTarget} ${build.kernel}/${kernelTarget}" >> $out/nix-support/hydra-build-products
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echo "file initrd ${build.netbootRamdisk}/initrd" >> $out/nix-support/hydra-build-products
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echo "file ipxe ${build.netbootIpxeScript}/netboot.ipxe" >> $out/nix-support/hydra-build-products
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'';
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preferLocalBuild = true;
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};
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in rec {
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channel = import lib/make-channel.nix { inherit pkgs nixpkgs version versionSuffix; };
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manualHTML = buildFromConfig ({ ... }: { }) (config: config.system.build.manual.manualHTML);
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manual = manualHTML; # TODO(@oxij): remove eventually
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manualEpub = (buildFromConfig ({ ... }: { }) (config: config.system.build.manual.manualEpub));
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manpages = buildFromConfig ({ ... }: { }) (config: config.system.build.manual.manpages);
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manualGeneratedSources = buildFromConfig ({ ... }: { }) (config: config.system.build.manual.generatedSources);
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options = (buildFromConfig ({ ... }: { }) (config: config.system.build.manual.optionsJSON)).x86_64-linux;
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# Build the initial ramdisk so Hydra can keep track of its size over time.
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initialRamdisk = buildFromConfig ({ ... }: { }) (config: config.system.build.initialRamdisk);
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netboot = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system: makeNetboot {
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module = ./modules/installer/netboot/netboot-minimal.nix;
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inherit system;
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});
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iso_minimal = forAllSystems (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-minimal.nix;
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type = "minimal";
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inherit system;
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});
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iso_graphical = forMatchingSystems [ "x86_64-linux" ] (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-graphical-kde.nix;
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type = "graphical";
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inherit system;
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});
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# A variant with a more recent (but possibly less stable) kernel
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# that might support more hardware.
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iso_minimal_new_kernel = forMatchingSystems [ "x86_64-linux" ] (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-minimal-new-kernel.nix;
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type = "minimal-new-kernel";
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inherit system;
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});
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sd_image = forMatchingSystems [ "armv6l-linux" "armv7l-linux" "aarch64-linux" ] (system: makeSdImage {
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module = {
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armv6l-linux = ./modules/installer/cd-dvd/sd-image-raspberrypi.nix;
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armv7l-linux = ./modules/installer/cd-dvd/sd-image-armv7l-multiplatform.nix;
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aarch64-linux = ./modules/installer/cd-dvd/sd-image-aarch64.nix;
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}.${system};
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inherit system;
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});
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# A bootable VirtualBox virtual appliance as an OVA file (i.e. packaged OVF).
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ova = forMatchingSystems [ "x86_64-linux" ] (system:
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with import nixpkgs { inherit system; };
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hydraJob ((import lib/eval-config.nix {
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inherit system;
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modules =
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[ versionModule
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./modules/installer/virtualbox-demo.nix
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];
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}).config.system.build.virtualBoxOVA)
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);
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# Ensure that all packages used by the minimal NixOS config end up in the channel.
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dummy = forAllSystems (system: pkgs.runCommand "dummy"
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{ toplevel = (import lib/eval-config.nix {
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inherit system;
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modules = singleton ({ ... }:
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{ fileSystems."/".device = mkDefault "/dev/sda1";
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boot.loader.grub.device = mkDefault "/dev/sda";
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system.stateVersion = mkDefault "18.03";
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});
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}).config.system.build.toplevel;
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preferLocalBuild = true;
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}
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"mkdir $out; ln -s $toplevel $out/dummy");
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# Provide a tarball that can be unpacked into an SD card, and easily
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# boot that system from uboot (like for the sheevaplug).
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# The pc variant helps preparing the expression for the system tarball
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# in a machine faster than the sheevpalug
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/*
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system_tarball_pc = forAllSystems (system: makeSystemTarball {
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module = ./modules/installer/cd-dvd/system-tarball-pc.nix;
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inherit system;
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});
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*/
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# Provide container tarball for lxc, libvirt-lxc, docker-lxc, ...
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containerTarball = forAllSystems (system: makeSystemTarball {
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module = ./modules/virtualisation/lxc-container.nix;
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inherit system;
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});
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/*
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system_tarball_fuloong2f =
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assert builtins.currentSystem == "mips64-linux";
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makeSystemTarball {
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module = ./modules/installer/cd-dvd/system-tarball-fuloong2f.nix;
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system = "mips64-linux";
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};
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system_tarball_sheevaplug =
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assert builtins.currentSystem == "armv5tel-linux";
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makeSystemTarball {
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module = ./modules/installer/cd-dvd/system-tarball-sheevaplug.nix;
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system = "armv5tel-linux";
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};
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*/
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tests = allTests;
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/* Build a bunch of typical closures so that Hydra can keep track of
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the evolution of closure sizes. */
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closures = {
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smallContainer = makeClosure ({ ... }:
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{ boot.isContainer = true;
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services.openssh.enable = true;
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});
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tinyContainer = makeClosure ({ ... }:
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{ boot.isContainer = true;
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imports = [ modules/profiles/minimal.nix ];
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});
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ec2 = makeClosure ({ ... }:
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{ imports = [ modules/virtualisation/amazon-image.nix ];
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});
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kde = makeClosure ({ ... }:
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{ services.xserver.enable = true;
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services.xserver.displayManager.sddm.enable = true;
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services.xserver.desktopManager.plasma5.enable = true;
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});
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xfce = makeClosure ({ ... }:
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{ services.xserver.enable = true;
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services.xserver.desktopManager.xfce.enable = true;
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});
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# Linux/Apache/PostgreSQL/PHP stack.
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lapp = makeClosure ({ pkgs, ... }:
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{ services.httpd.enable = true;
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services.httpd.adminAddr = "foo@example.org";
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services.postgresql.enable = true;
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services.postgresql.package = pkgs.postgresql_9_3;
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environment.systemPackages = [ pkgs.php ];
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});
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};
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}
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