341 lines
12 KiB
Nix
341 lines
12 KiB
Nix
args @ {
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lib,
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pkgs,
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config,
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...
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}: let
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datasetSubmodule = (import ./submodules/dataset.nix) args;
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# Hash function for disk names (max 27 chars to fit GPT limitations)
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hashDisk = drive: (builtins.substring 0 27 (builtins.hashString "sha256" drive));
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# Helper to flatten vdevs into list of devices with names
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allVdevDevices = lib.lists.flatten (builtins.map (
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vdev:
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builtins.map (
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device:
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lib.attrsets.nameValuePair (hashDisk device.device) device
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)
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vdev
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)
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config.storage.zfs.pool.vdevs);
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# Cache devices with names
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allCacheDevices = builtins.map (
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device:
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lib.attrsets.nameValuePair (hashDisk device.device) device
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) (config.storage.zfs.pool.cache);
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# All devices (vdevs + cache)
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allDevices = allVdevDevices ++ allCacheDevices;
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# Boot devices - filter devices that have boot = true
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bootDevices = builtins.filter (device: device.value.boot) allDevices;
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# Helper function to convert dataset options to ZFS properties
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datasetToZfsOptions = dataset: let
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baseOptions =
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(lib.attrsets.optionalAttrs (dataset.acltype != null) {acltype = dataset.acltype;})
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// (lib.attrsets.optionalAttrs (dataset.relatime != null) {relatime = dataset.relatime;})
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// (lib.attrsets.optionalAttrs (dataset.atime != null) {atime = dataset.atime;})
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// (lib.attrsets.optionalAttrs (dataset.xattr != null) {xattr = dataset.xattr;})
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// (lib.attrsets.optionalAttrs (dataset.compression != null) {compression = dataset.compression;})
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// (lib.attrsets.optionalAttrs (dataset.sync != null) {sync = dataset.sync;})
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// (lib.attrsets.optionalAttrs (dataset.recordSize != null) {recordSize = dataset.recordSize;});
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encryptionOptions = lib.attrsets.optionalAttrs (dataset.encryption.enable) (
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(lib.attrsets.optionalAttrs (dataset.encryption ? type) {encryption = dataset.encryption.type;})
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// (lib.attrsets.optionalAttrs (dataset.encryption ? keyformat) {keyformat = dataset.encryption.keyformat;})
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// (lib.attrsets.optionalAttrs (dataset.encryption ? keylocation) {keylocation = dataset.encryption.keylocation;})
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);
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mountOptions = lib.attrsets.optionalAttrs (dataset ? mount && dataset.mount ? enable) (
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if builtins.isBool dataset.mount.enable
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then {
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canmount =
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if dataset.mount.enable
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then "on"
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else "off";
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}
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else {canmount = dataset.mount.enable;}
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);
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snapshotOptions = lib.attrsets.optionalAttrs (dataset ? snapshot && dataset.snapshot ? autoSnapshot) {
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"com.sun:auto-snapshot" =
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if dataset.snapshot.autoSnapshot
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then "true"
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else "false";
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};
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in
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baseOptions // encryptionOptions // mountOptions // snapshotOptions;
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# Helper to generate post create hooks
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generatePostCreateHook = name: dataset:
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dataset.postCreateHook
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+ (lib.optionalString dataset.snapshot.blankSnapshot ''
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zfs snapshot rpool/${name}@blank
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'');
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# Convert datasets to disko format
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convertedDatasets = builtins.listToAttrs (
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(lib.attrsets.mapAttrsToList (
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name: dataset:
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lib.attrsets.nameValuePair name {
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type = dataset.type;
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options = datasetToZfsOptions dataset;
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mountpoint = dataset.mount or null;
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postCreateHook = generatePostCreateHook name dataset;
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}
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)
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config.storage.zfs.datasets)
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++ (lib.optional (config.storage.zfs.rootDataset != null) (
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lib.attrsets.nameValuePair "" {
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type = config.storage.zfs.rootDataset.type;
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options = datasetToZfsOptions config.storage.zfs.rootDataset;
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mountpoint = config.storage.zfs.rootDataset.mount or null;
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postCreateHook = generatePostCreateHook "" config.storage.zfs.rootDataset;
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}
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))
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);
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in {
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options.storage = {
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zfs = {
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enable = lib.mkEnableOption "Should zfs be enabled on this system.";
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notifications = {
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enable = lib.mkEnableOption "are notifications enabled";
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host = lib.mkOption {
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type = lib.types.str;
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description = "what is the host that we are going to send the email to";
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};
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port = lib.mkOption {
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type = lib.types.port;
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description = "what port is the host using to receive mail on";
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};
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to = lib.mkOption {
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type = lib.types.str;
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description = "what account is the email going to be sent to";
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};
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user = lib.mkOption {
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type = lib.types.str;
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description = "what user is the email going to be set from";
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};
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tokenFile = lib.mkOption {
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type = lib.types.str;
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description = "file containing the password to be used by msmtp for notifications";
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};
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};
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pool = let
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deviceType =
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lib.types.coercedTo lib.types.str (device: {
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device = device;
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boot = false;
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}) (lib.types.submodule {
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options = {
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device = lib.mkOption {
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type = lib.types.str;
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};
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boot = lib.mkEnableOption "should this device be a boot device";
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};
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});
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in {
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encryption = {
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enable = lib.mkEnableOption "Should encryption be enabled on this pool.";
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keyformat = lib.mkOption {
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type = lib.types.enum ["raw" "hex" "passphrase"];
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default = "hex";
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description = "Format of the encryption key";
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};
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keylocation = lib.mkOption {
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type = lib.types.str;
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default = "prompt";
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description = "Location of the encryption key";
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};
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};
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mode = lib.mkOption {
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type = lib.types.enum ["stripe" "mirror" "raidz1" "raidz2" "raidz3"];
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default = "raidz2";
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description = "ZFS redundancy mode for the pool";
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};
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bootPartitionSize = lib.mkOption {
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type = lib.types.str;
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default = "2G";
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description = "Size of the boot partition on boot drives";
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};
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vdevs = lib.mkOption {
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type = lib.types.listOf (lib.types.listOf deviceType);
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default = [];
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description = "List of vdevs, where each vdev is a list of devices";
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};
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cache = lib.mkOption {
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type = lib.types.listOf deviceType;
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default = [];
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};
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};
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rootDataset = lib.mkOption {
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type = lib.types.nullOr (lib.types.submodule datasetSubmodule);
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description = "Root ZFS dataset to create";
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default = null;
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};
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datasets = lib.mkOption {
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type = lib.types.attrsOf (lib.types.submodule datasetSubmodule);
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description = "Additional ZFS datasets to create";
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default = {};
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};
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};
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};
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config = lib.mkIf config.storage.zfs.enable (lib.mkMerge [
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{
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# Assertion that we have at least one boot device
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assertions = [
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{
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assertion = (builtins.length bootDevices) > 0;
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message = "ZFS configuration requires at least one boot device. Set boot = true for at least one device in your vdevs or cache.";
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}
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];
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# # Warning about disk/dataset mismatches - these would be runtime checks
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# warnings = let
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# configuredDisks = builtins.map (device: device.device) (builtins.map (dev: dev.value) allDevices);
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# diskWarnings =
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# lib.optional (config.storage.zfs.enable)
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# "ZFS: Please ensure the following disks are available on your system: ${builtins.concatStringsSep ", " configuredDisks}";
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# configuredDatasets = builtins.attrNames config.storage.zfs.datasets;
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# datasetWarnings =
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# lib.optional (config.storage.zfs.enable && (builtins.length configuredDatasets) > 0)
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# "ZFS: Configured datasets: ${builtins.concatStringsSep ", " configuredDatasets}. Ensure these match your intended ZFS layout.";
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# in
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# diskWarnings ++ datasetWarnings;
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# services.zfs = {
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# autoScrub.enable = true;
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# autoSnapshot.enable = true;
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# };
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# # Configure disko for ZFS setup
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disko.devices = {
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disk = builtins.listToAttrs (
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builtins.map (
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drive:
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lib.attrsets.nameValuePair (drive.name) {
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type = "disk";
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device = "/dev/disk/by-id/${drive.value.device}";
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content = {
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type = "gpt";
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partitions = {
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ESP = lib.mkIf drive.value.boot {
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size = config.storage.zfs.pool.bootPartitionSize;
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type = "EF00";
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content = {
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type = "filesystem";
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format = "vfat";
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mountpoint = "/boot";
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mountOptions = ["umask=0077"];
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};
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};
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zfs = {
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size = "100%";
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content = {
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type = "zfs";
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pool = "rpool";
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};
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};
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};
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};
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}
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)
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allDevices
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);
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zpool = {
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rpool = {
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type = "zpool";
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mode = {
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topology = {
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type = "topology";
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vdev =
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builtins.map (vdev: {
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mode = config.storage.zfs.pool.mode;
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members = builtins.map (device: hashDisk device.device) vdev;
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})
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config.storage.zfs.pool.vdevs;
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cache = builtins.map (device: hashDisk device.device) config.storage.zfs.pool.cache;
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};
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};
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options = {
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ashift = "12";
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autotrim = "on";
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};
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rootFsOptions =
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{
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canmount = "off";
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mountpoint = "none";
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xattr = "sa";
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acltype = "posixacl";
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relatime = "on";
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compression = "lz4";
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"com.sun:auto-snapshot" = "false";
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}
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// (lib.attrsets.optionalAttrs config.storage.zfs.pool.encryption.enable {
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encryption = "on";
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keyformat = config.storage.zfs.pool.encryption.keyformat;
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keylocation = config.storage.zfs.pool.encryption.keylocation;
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});
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datasets = convertedDatasets;
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};
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};
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};
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}
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(lib.mkIf config.storage.zfs.notifications.enable {
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programs.msmtp = {
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enable = true;
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setSendmail = true;
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defaults = {
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aliases = "/etc/aliases";
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port = config.storage.zfs.notifications.port;
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tls_trust_file = "/etc/ssl/certs/ca-certificates.crt";
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tls = "on";
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auth = "login";
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tls_starttls = "off";
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};
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accounts = {
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zfs_notifications = {
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auth = true;
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tls = true;
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host = config.storage.zfs.notifications.host;
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passwordeval = "cat ${config.storage.zfs.notifications.tokenFile}";
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user = config.storage.zfs.notifications.user;
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from = config.storage.zfs.notifications.user;
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};
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};
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};
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services.zfs = {
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zed = {
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enableMail = true;
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settings = {
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ZED_DEBUG_LOG = "/tmp/zed.debug.log";
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ZED_EMAIL_ADDR = [config.storage.zfs.notifications.to];
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ZED_EMAIL_PROG = "${pkgs.msmtp}/bin/msmtp";
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ZED_EMAIL_OPTS = "-a zfs_notifications @ADDRESS@";
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ZED_NOTIFY_INTERVAL_SECS = 3600;
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ZED_NOTIFY_VERBOSE = true;
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ZED_USE_ENCLOSURE_LEDS = true;
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ZED_SCRUB_AFTER_RESILVER = true;
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};
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};
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};
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})
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]);
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}
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