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1ba3165b4e
overriden. Some defaults should not be evaluated because they cause unnecessary evaluation or might cause evaluation errors (e.g. assertions). For instance, the value of the `boot.kernelPackages' option is an attribute set. Some packages in that set might not evaluate (e.g. AUFS2 on kernels that don't have the AUFS2 patch), and in any case it slows down nixos-rebuild to evaluate lots of packages that are not actually used in the configuration. svn path=/nixpkgs/trunk/; revision=22043
291 lines
9.6 KiB
Nix
291 lines
9.6 KiB
Nix
# Nixpkgs/NixOS option handling.
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let lib = import ./default.nix; in
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with { inherit (builtins) head tail; };
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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) typeOf;
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isOption = attrs: (typeOf attrs) == "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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mapSubOptions = f: opt:
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if opt ? options then
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opt // {
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options = map 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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if decl ? type && decl.type ? merge then
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opt
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// optionalAttrs (decl.type ? merge) { inherit (decl.type) merge; }
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// optionalAttrs (decl.type ? check) { inherit (decl.type) check; }
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else
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opt;
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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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optionConfig = vals: args:
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map (f: lib.applyIfFunction f args)
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(opt.options ++ toList vals);
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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 result = recurseInto path (optionConfig vals args); in {
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inherit (result) config options;
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name = lib.removePrefix (opt.name + ".") path;
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}
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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 tail opts == [] 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 (attrByPath ["options"] [] opt1))
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++ (toList (attrByPath ["options"] [] opt2));
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}
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// optionalAttrs (opt1 ? extraConfigs || opt2 ? extraConfigs) {
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extraConfigs =
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(attrByPath ["extraConfigs"] [] opt1)
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++ (attrByPath ["extraConfigs"] [] opt2);
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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 typeOf defValue == "option"
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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 list != [] && tail list == [] 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 tail list != [] 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) x
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else x;
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}
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