mirror of
https://github.com/NixOS/nixpkgs.git
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424 lines
13 KiB
Nix
424 lines
13 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 release.nix -A tests.login.x86_64-linux’,
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# or equivalently, ‘nix-build tests/login.nix’.
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# See also nixosTests in pkgs/top-level/all-packages.nix
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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 ./.. { inherit system; };
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callTest = config: {
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${system} = hydraJob config.test;
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};
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} // {
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# for typechecking of the scripts and evaluation of
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# the nodes, without running VMs.
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allDrivers =
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import ./tests/all-tests.nix {
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inherit system;
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pkgs = import ./.. { inherit system; };
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callTest = config: {
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${system} = hydraJob config.driver;
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};
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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 ./.. { 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 ./.. { 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 ./.. { 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 ./.. { 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} - ${stdenv.hostPlatform.linux-kernel.name}";
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maintainers = map (x: lib.maintainers.${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.linux-kernel.target;
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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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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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kexec = forMatchingSystems supportedSystems (system: (import lib/eval-config.nix {
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inherit system;
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modules = [
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./modules/installer/netboot/netboot-minimal.nix
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];
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}).config.system.build.kexecTree);
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netboot = forMatchingSystems supportedSystems (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_plasma5 = forMatchingSystems supportedSystems (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-graphical-calamares-plasma5.nix;
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type = "plasma5";
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inherit system;
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});
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iso_gnome = forMatchingSystems supportedSystems (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-graphical-calamares-gnome.nix;
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type = "gnome";
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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 that might support more hardware.
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# This variant keeps zfs support enabled, hoping it will build and work.
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iso_minimal_new_kernel = forMatchingSystems [ "x86_64-linux" "aarch64-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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# A variant with a more recent (but possibly less stable) kernel that might support more hardware.
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# ZFS support disabled since it is unlikely to support the latest kernel.
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iso_minimal_new_kernel_no_zfs = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system: makeIso {
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module = ./modules/installer/cd-dvd/installation-cd-minimal-new-kernel-no-zfs.nix;
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type = "minimal-new-kernel-no-zfs";
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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/sd-card/sd-image-raspberrypi-installer.nix;
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armv7l-linux = ./modules/installer/sd-card/sd-image-armv7l-multiplatform-installer.nix;
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aarch64-linux = ./modules/installer/sd-card/sd-image-aarch64-installer.nix;
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}.${system};
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inherit system;
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});
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sd_image_new_kernel = forMatchingSystems [ "aarch64-linux" ] (system: makeSdImage {
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module = {
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aarch64-linux = ./modules/installer/sd-card/sd-image-aarch64-new-kernel-installer.nix;
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}.${system};
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type = "minimal-new-kernel";
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inherit system;
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});
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sd_image_new_kernel_no_zfs = forMatchingSystems [ "aarch64-linux" ] (system: makeSdImage {
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module = {
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aarch64-linux = ./modules/installer/sd-card/sd-image-aarch64-new-kernel-no-zfs-installer.nix;
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}.${system};
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type = "minimal-new-kernel-no-zfs";
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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 ./.. { 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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# KVM image for proxmox in VMA format
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proxmoxImage = forMatchingSystems [ "x86_64-linux" ] (system:
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with import ./.. { 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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./modules/virtualisation/proxmox-image.nix
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];
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}).config.system.build.VMA)
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);
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# LXC tarball for proxmox
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proxmoxLXC = forMatchingSystems [ "x86_64-linux" ] (system:
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with import ./.. { 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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./modules/virtualisation/proxmox-lxc.nix
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];
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}).config.system.build.tarball)
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);
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# A disk image that can be imported to Amazon EC2 and registered as an AMI
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amazonImage = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system:
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with import ./.. { 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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[ configuration
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versionModule
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./maintainers/scripts/ec2/amazon-image.nix
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];
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}).config.system.build.amazonImage)
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);
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amazonImageZfs = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system:
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with import ./.. { 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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[ configuration
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versionModule
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./maintainers/scripts/ec2/amazon-image-zfs.nix
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];
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}).config.system.build.amazonImage)
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);
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# Test job for https://github.com/NixOS/nixpkgs/issues/121354 to test
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# automatic sizing without blocking the channel.
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amazonImageAutomaticSize = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system:
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with import ./.. { 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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[ configuration
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versionModule
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./maintainers/scripts/ec2/amazon-image.nix
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({ ... }: { amazonImage.sizeMB = "auto"; })
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];
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}).config.system.build.amazonImage)
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);
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# An image that can be imported into lxd and used for container creation
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lxdImage = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system:
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with import ./.. { 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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[ configuration
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versionModule
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./maintainers/scripts/lxd/lxd-image.nix
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];
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}).config.system.build.tarball)
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);
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# Metadata for the lxd image
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lxdMeta = forMatchingSystems [ "x86_64-linux" "aarch64-linux" ] (system:
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with import ./.. { 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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[ configuration
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versionModule
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./maintainers/scripts/lxd/lxd-image.nix
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];
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}).config.system.build.metadata)
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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 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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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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gnome = makeClosure ({ ... }:
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{ services.xserver.enable = true;
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services.xserver.displayManager.gdm.enable = true;
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services.xserver.desktopManager.gnome.enable = true;
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});
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pantheon = makeClosure ({ ... }:
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{ services.xserver.enable = true;
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services.xserver.desktopManager.pantheon.enable = true;
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});
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deepin = makeClosure ({ ... }:
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{ services.xserver.enable = true;
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services.xserver.displayManager.lightdm.enable = true;
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services.xserver.desktopManager.deepin.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.httpd.enablePHP = true;
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services.postgresql.enable = true;
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services.postgresql.package = pkgs.postgresql;
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});
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};
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}
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