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d5047faede
It's redundant because you can (and should) specify an option type, or an apply function.
208 lines
5.9 KiB
Nix
208 lines
5.9 KiB
Nix
# Definitions related to run-time type checking. Used in particular
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# to type-check NixOS configurations.
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let lib = import ./default.nix; in
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with lib.lists;
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with lib.attrsets;
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with lib.options;
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with lib.trivial;
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with lib.modules;
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rec {
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isType = type: x: (x._type or "") == type;
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typeOf = x: x._type or "";
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setType = typeName: value: value // {
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_type = typeName;
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};
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# name (name of the type)
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# check (check the config value)
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# merge (default merge function)
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# getSubOptions (returns sub-options for manual generation)
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isOptionType = isType "option-type";
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mkOptionType =
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{ name
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, check ? (x: true)
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, merge ? mergeDefaultOption
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, merge' ? args: merge
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, getSubOptions ? prefix: {}
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}:
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{ _type = "option-type";
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inherit name check merge merge' getSubOptions;
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};
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addToPrefix = args: name: args // { prefix = args.prefix ++ [name]; };
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types = rec {
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unspecified = mkOptionType {
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name = "unspecified";
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};
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bool = mkOptionType {
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name = "boolean";
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check = builtins.isBool;
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merge = fold lib.or false;
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};
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int = mkOptionType {
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name = "integer";
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check = builtins.isInt;
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};
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string = mkOptionType {
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name = "string";
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check = builtins.isString;
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merge = lib.concatStrings;
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};
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# Like ‘string’, but add newlines between every value. Useful for
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# configuration file contents.
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lines = mkOptionType {
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name = "string";
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check = builtins.isString;
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merge = lib.concatStringsSep "\n";
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};
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commas = mkOptionType {
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name = "string";
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check = builtins.isString;
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merge = lib.concatStringsSep ",";
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};
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envVar = mkOptionType {
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name = "environment variable";
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inherit (string) check;
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merge = lib.concatStringsSep ":";
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};
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attrs = mkOptionType {
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name = "attribute set";
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check = isAttrs;
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merge = fold lib.mergeAttrs {};
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};
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# derivation is a reserved keyword.
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package = mkOptionType {
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name = "derivation";
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check = isDerivation;
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};
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path = mkOptionType {
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name = "path";
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# Hacky: there is no ‘isPath’ primop.
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check = x: builtins.unsafeDiscardStringContext (builtins.substring 0 1 (toString x)) == "/";
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};
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# drop this in the future:
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list = builtins.trace "types.list is deprecated; use types.listOf instead" types.listOf;
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listOf = elemType: mkOptionType {
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name = "list of ${elemType.name}s";
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check = value: isList value && all elemType.check value;
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merge' = args: defs: imap (n: def: elemType.merge' (addToPrefix args (toString n)) [def]) (concatLists defs);
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getSubOptions = prefix: elemType.getSubOptions (prefix ++ ["*"]);
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};
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attrsOf = elemType: mkOptionType {
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name = "attribute set of ${elemType.name}s";
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check = x: isAttrs x && all elemType.check (lib.attrValues x);
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merge' = args: lib.zipAttrsWith (name:
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elemType.merge' (addToPrefix (args // { inherit name; }) name));
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getSubOptions = prefix: elemType.getSubOptions (prefix ++ ["<name>"]);
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};
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# List or attribute set of ...
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loaOf = elemType:
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let
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convertIfList = defIdx: def:
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if isList def then
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listToAttrs (
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flip imap def (elemIdx: elem:
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{ name = "unnamed-${toString defIdx}.${toString elemIdx}"; value = elem; }))
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else
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def;
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listOnly = listOf elemType;
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attrOnly = attrsOf elemType;
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in mkOptionType {
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name = "list or attribute set of ${elemType.name}s";
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check = x:
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if isList x then listOnly.check x
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else if isAttrs x then attrOnly.check x
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else false;
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merge' = args: defs: attrOnly.merge' args (imap convertIfList defs);
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getSubOptions = prefix: elemType.getSubOptions (prefix ++ ["<name?>"]);
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};
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uniq = elemType: mkOptionType {
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inherit (elemType) name check;
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merge = list:
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if length list == 1 then
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head list
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else
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throw "Multiple definitions of ${elemType.name}. Only one is allowed for this option.";
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getSubOptions = elemType.getSubOptions;
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};
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none = elemType: mkOptionType {
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inherit (elemType) name check;
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merge = list:
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throw "No definitions are allowed for this option.";
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getSubOptions = elemType.getSubOptions;
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};
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nullOr = elemType: mkOptionType {
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name = "null or ${elemType.name}";
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check = x: builtins.isNull x || elemType.check x;
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merge' = args: defs:
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if all isNull defs then null
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else if any isNull defs then
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throw "Some but not all values are null."
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else elemType.merge' args defs;
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getSubOptions = elemType.getSubOptions;
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};
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functionTo = elemType: mkOptionType {
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name = "function that evaluates to a(n) ${elemType.name}";
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check = builtins.isFunction;
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merge' = args: fns:
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fnArgs: elemType.merge' args (map (fn: fn fnArgs) fns);
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getSubOptions = elemType.getSubOptions;
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};
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submodule = opts:
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let opts' = toList opts; in
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mkOptionType rec {
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name = "submodule";
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check = x: isAttrs x || builtins.isFunction x;
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merge = merge' {};
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merge' = args: defs:
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let
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coerce = def: if builtins.isFunction def then def else { config = def; };
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modules = opts' ++ map coerce defs;
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in (evalModules { inherit modules args; prefix = args.prefix; }).config;
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getSubOptions = prefix: (evalModules
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{ modules = opts'; inherit prefix;
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# FIXME: hack to get shit to evaluate.
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args = { name = ""; }; }).options;
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};
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# Obsolete alternative to configOf. It takes its option
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# declarations from the ‘options’ attribute of containing option
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# declaration.
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optionSet = mkOptionType {
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name = /* builtins.trace "types.optionSet is deprecated; use types.submodule instead" */ "option set";
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};
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};
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}
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