316 lines
11 KiB
Nix
316 lines
11 KiB
Nix
# Nixpkgs/NixOS option handling.
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let lib = import ./default.nix; in
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with { inherit (builtins) head length; };
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with import ./trivial.nix;
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with import ./lists.nix;
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with import ./misc.nix;
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with import ./attrsets.nix;
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with import ./properties.nix;
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rec {
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inherit (lib) isType;
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isOption = isType "option";
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mkOption = attrs: attrs // {
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_type = "option";
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# name (this is the name of the attributem it is automatically generated by the traversal)
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# default (value used when no definition exists)
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# example (documentation)
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# description (documentation)
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# type (option type, provide a default merge function and ensure type correctness)
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# merge (function used to merge definitions into one definition: [ /type/ ] -> /type/)
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# apply (convert the option value to ease the manipulation of the option result)
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# options (set of sub-options declarations & definitions)
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# extraConfigs (list of possible configurations)
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};
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mkEnableOption = name: mkOption {
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default = false;
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example = true;
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description = "Whether to enable ${name}";
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type = lib.types.bool;
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};
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mapSubOptions = f: opt:
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if opt ? options then
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opt // {
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options = imap f (toList opt.options);
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}
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else
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opt;
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# Make the option declaration more user-friendly by adding default
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# settings and some verifications based on the declaration content (like
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# type correctness).
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addOptionMakeUp = {name, recurseInto}: decl:
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let
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init = {
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inherit name;
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merge = mergeDefaultOption;
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apply = lib.id;
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};
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functionsFromType = opt:
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opt // (builtins.intersectAttrs { merge = 1; check = 1; } (decl.type or {}));
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addDeclaration = opt: opt // decl;
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ensureMergeInputType = opt:
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if opt ? check then
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opt // {
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merge = list:
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if all opt.check list then
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opt.merge list
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else
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throw "One of the definitions has a bad type.";
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}
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else opt;
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ensureDefaultType = opt:
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if opt ? check && opt ? default then
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opt // {
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default =
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if opt.check opt.default then
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opt.default
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else
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throw "The default value has a bad type.";
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}
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else opt;
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handleOptionSets = opt:
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if opt ? type && opt.type.hasOptions then
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let
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# Evaluate sub-modules.
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subModuleMerge = path: vals:
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lib.fix (args:
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let
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result = recurseInto path (opt.options ++ imap (index: v: args: {
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key = rec {
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#!!! Would be nice if we had the file the val was from
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option = path;
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number = index;
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outPath = "option ${option} config number ${toString number}";
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};
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} // (lib.applyIfFunction v args)) (toList vals)) args;
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name = lib.removePrefix (opt.name + ".") path;
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extraArgs = opt.extraArgs or {};
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individualExtraArgs = opt.individualExtraArgs or {};
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in {
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inherit (result) config options;
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inherit name;
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} //
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(opt.extraArgs or {}) //
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(if hasAttr name individualExtraArgs then getAttr name individualExtraArgs else {})
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);
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# Add _options in sub-modules to make it viewable from other
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# modules.
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subModuleMergeConfig = path: vals:
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let result = subModuleMerge path vals; in
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{ _args = result; } // result.config;
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in
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opt // {
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merge = list:
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opt.type.iter
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subModuleMergeConfig
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opt.name
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(opt.merge list);
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options =
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let path = opt.type.docPath opt.name; in
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(subModuleMerge path []).options;
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}
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else
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opt;
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in
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foldl (opt: f: f opt) init [
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# default settings
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functionsFromType
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# user settings
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addDeclaration
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# override settings
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ensureMergeInputType
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ensureDefaultType
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handleOptionSets
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];
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# Merge a list of options containning different field. This is useful to
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# separate the merge & apply fields from the interface.
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mergeOptionDecls = opts:
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if opts == [] then {}
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else if length opts == 1 then
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let opt = head opts; in
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if opt ? options then
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opt // { options = toList opt.options; }
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else
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opt
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else
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fold (opt1: opt2:
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lib.addErrorContext "opt1 = ${lib.showVal opt1}\nopt2 = ${lib.showVal opt2}" (
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# You cannot merge if two options have the same field.
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assert opt1 ? default -> ! opt2 ? default;
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assert opt1 ? example -> ! opt2 ? example;
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assert opt1 ? description -> ! opt2 ? description;
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assert opt1 ? merge -> ! opt2 ? merge;
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assert opt1 ? apply -> ! opt2 ? apply;
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assert opt1 ? type -> ! opt2 ? type;
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opt1 // opt2
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// optionalAttrs (opt1 ? options || opt2 ? options) {
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options =
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(toList (opt1.options or []))
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++ (toList (opt2.options or []));
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}
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// optionalAttrs (opt1 ? extraConfigs || opt2 ? extraConfigs) {
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extraConfigs = opt1.extraConfigs or [] ++ opt2.extraConfigs or [];
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}
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// optionalAttrs (opt1 ? extraArgs || opt2 ? extraArgs) {
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extraArgs = opt1.extraArgs or {} // opt2.extraArgs or {};
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}
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// optionalAttrs (opt1 ? individualExtraArgs || opt2 ? individualExtraArgs) {
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individualExtraArgs = zipAttrsWith (name: values:
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if length values == 1 then head values else (head values // (head (tail values)))
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) [ (opt1.individualExtraArgs or {}) (opt2.individualExtraArgs or {}) ];
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}
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)) {} opts;
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# !!! This function will be removed because this can be done with the
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# multiple option declarations.
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addDefaultOptionValues = defs: opts: opts //
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builtins.listToAttrs (map (defName:
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{ name = defName;
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value =
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let
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defValue = builtins.getAttr defName defs;
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optValue = builtins.getAttr defName opts;
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in
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if isOption defValue
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then
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# `defValue' is an option.
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if hasAttr defName opts
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then builtins.getAttr defName opts
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else defValue.default
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else
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# `defValue' is an attribute set containing options.
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# So recurse.
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if hasAttr defName opts && isAttrs optValue
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then addDefaultOptionValues defValue optValue
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else addDefaultOptionValues defValue {};
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}
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) (attrNames defs));
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mergeDefaultOption = list:
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if length list == 1 then head list
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else if all builtins.isFunction list then x: mergeDefaultOption (map (f: f x) list)
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else if all isList list then concatLists list
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else if all isAttrs list then fold lib.mergeAttrs {} list
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else if all builtins.isBool list then fold lib.or false list
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else if all builtins.isString list then lib.concatStrings list
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else if all builtins.isInt list && all (x: x == head list) list
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then head list
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else throw "Cannot merge values.";
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mergeTypedOption = typeName: predicate: merge: list:
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if all predicate list then merge list
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else throw "Expect a ${typeName}.";
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mergeEnableOption = mergeTypedOption "boolean"
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(x: true == x || false == x) (fold lib.or false);
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mergeListOption = mergeTypedOption "list" isList concatLists;
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mergeStringOption = mergeTypedOption "string"
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(x: if builtins ? isString then builtins.isString x else x + "")
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lib.concatStrings;
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mergeOneOption = list:
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if list == [] then abort "This case should never happen."
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else if length list != 1 then throw "Multiple definitions. Only one is allowed for this option."
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else head list;
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fixableMergeFun = merge: f: config:
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merge (
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# generate the list of option sets.
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f config
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);
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fixableMergeModules = merge: initModules: {...}@args: config:
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fixableMergeFun merge (config:
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lib.moduleClosure initModules (args // { inherit config; })
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) config;
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fixableDefinitionsOf = initModules: {...}@args:
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fixableMergeModules (modules: (lib.moduleMerge "" modules).config) initModules args;
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fixableDeclarationsOf = initModules: {...}@args:
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fixableMergeModules (modules: (lib.moduleMerge "" modules).options) initModules args;
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definitionsOf = initModules: {...}@args:
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(lib.fix (module:
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fixableMergeModules (lib.moduleMerge "") initModules args module.config
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)).config;
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declarationsOf = initModules: {...}@args:
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(lib.fix (module:
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fixableMergeModules (lib.moduleMerge "") initModules args module.config
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)).options;
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# Generate documentation template from the list of option declaration like
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# the set generated with filterOptionSets.
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optionAttrSetToDocList = ignore: newOptionAttrSetToDocList;
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newOptionAttrSetToDocList = attrs:
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let options = collect isOption attrs; in
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fold (opt: rest:
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let
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docOption = {
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inherit (opt) name;
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description = if opt ? description then opt.description else
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throw "Option ${opt.name}: No description.";
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declarations = map (x: toString x.source) opt.declarations;
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#definitions = map (x: toString x.source) opt.definitions;
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}
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// optionalAttrs (opt ? example) { example = scrubOptionValue opt.example; }
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// optionalAttrs (opt ? default) { default = scrubOptionValue opt.default; }
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// optionalAttrs (opt ? defaultText) { default = opt.defaultText; };
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subOptions =
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if opt ? options then
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newOptionAttrSetToDocList opt.options
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else
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[];
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in
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[ docOption ] ++ subOptions ++ rest
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) [] options;
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/* This function recursively removes all derivation attributes from
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`x' except for the `name' attribute. This is to make the
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generation of `options.xml' much more efficient: the XML
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representation of derivations is very large (on the order of
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megabytes) and is not actually used by the manual generator. */
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scrubOptionValue = x:
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if isDerivation x then { type = "derivation"; drvPath = x.name; outPath = x.name; name = x.name; }
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else if isList x then map scrubOptionValue x
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else if isAttrs x then mapAttrs (n: v: scrubOptionValue v) (removeAttrs x ["_args"])
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else x;
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/* For use in the ‘example’ option attribute. It causes the given
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text to be included verbatim in documentation. This is necessary
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for example values that are not simple values, e.g.,
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functions. */
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literalExample = text: { _type = "literalExample"; inherit text; };
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}
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