nixpkgs-suyu/pkgs/lib/modules.nix

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# NixOS module handling.
let lib = import ./default.nix; in
with { inherit (builtins) head tail; };
with import ./trivial.nix;
with import ./lists.nix;
with import ./misc.nix;
with import ./attrsets.nix;
with import ./options.nix;
with import ./properties.nix;
rec {
# Unfortunately this can also be a string.
isPath = x: !(
builtins.isFunction x
|| builtins.isAttrs x
|| builtins.isInt x
|| builtins.isBool x
|| builtins.isList x
);
importIfPath = path:
if isPath path then
import path
else
path;
applyIfFunction = f: arg:
if builtins.isFunction f then
f arg
else
f;
isModule = m:
(m ? config && isAttrs m.config && ! isOption m.config)
|| (m ? options && isAttrs m.options && ! isOption m.options);
# Convert module to a set which has imports / options and config
# attributes.
unifyModuleSyntax = m:
let
getImports = m:
if m ? config || m ? options then
attrByPath ["imports"] [] m
else
toList (rmProperties (attrByPath ["require"] [] (delayProperties m)));
getImportedPaths = m: filter isPath (getImports m);
getImportedSets = m: filter (x: !isPath x) (getImports m);
getConfig = m:
removeAttrs (delayProperties m) ["require"];
in
if isModule m then
{ key = "<unknown location>"; } // m
else
{
key = "<unknown location>";
imports = getImportedPaths m;
config = getConfig m;
} // (
if getImportedSets m != [] then
assert tail (getImportedSets m) == [];
{ options = head (getImportedSets m); }
else
{}
);
unifyOptionModule = {key ? "<unknown location>"}: m: (args:
let module = lib.applyIfFunction m args; in
if lib.isModule module then
{ inherit key; } // module
else
{ inherit key; options = module; }
);
moduleClosure = initModules: args:
let
moduleImport = m:
(unifyModuleSyntax (applyIfFunction (importIfPath m) args)) // {
# used by generic closure to avoid duplicated imports.
key = if isPath m then m else "<unknown location>";
};
getImports = m: attrByPath ["imports"] [] m;
in
(lazyGenericClosure {
startSet = map moduleImport (filter isPath initModules);
operator = m: map moduleImport (getImports m);
}) ++ (map moduleImport (filter (m: ! isPath m) initModules));
selectDeclsAndDefs = modules:
lib.concatMap (m:
if m ? config || m ? options then
[ (attrByPath ["options"] {} m) ]
++ [ (attrByPath ["config"] {} m) ]
else
[ m ]
) modules;
moduleApply = funs: module:
lib.mapAttrs (name: value:
if builtins.hasAttr name funs then
let fun = lib.getAttr name funs; in
fun value
else
value
) module;
delayModule = module:
moduleApply { config = delayProperties; } module;
evalDefinitions = opt: values:
if opt ? type && opt.type.delayOnGlobalEval then
map (delayPropertiesWithIter opt.type.iter opt.name)
(evalLocalProperties values)
else
evalProperties values;
selectModule = name: m:
{ inherit (m) key;
} // (
if m ? options && builtins.hasAttr name m.options then
{ options = lib.getAttr name m.options; }
else {}
) // (
if m ? config && builtins.hasAttr name m.config then
{ config = lib.getAttr name m.config; }
else {}
);
filterModules = name: modules:
filter (m: m ? config || m ? options) (
map (selectModule name) modules
);
modulesNames = modules:
lib.concatMap (m: []
++ optionals (m ? options) (lib.attrNames m.options)
++ optionals (m ? config) (lib.attrNames m.config)
) modules;
moduleZip = funs: modules:
lib.mapAttrs (name: fun:
fun (catAttrs name modules)
) funs;
moduleMerge = path: modules:
let modules_ = modules; in
let
addName = name:
if path == "" then name else path + "." + name;
modules = map delayModule modules_;
modulesOf = name: filterModules name modules;
declarationsOf = name: filter (m: m ? options) (modulesOf name);
definitionsOf = name: filter (m: m ? config ) (modulesOf name);
recurseInto = name:
moduleMerge (addName name) (modulesOf name);
recurseForOption = name: modules:
moduleMerge name (
map unifyModuleSyntax modules
);
errorSource = modules:
"The error may come from the following files:\n" + (
lib.concatStringsSep "\n" (
map (m:
if m ? key then toString m.key else "<unknown location>"
) modules
)
);
eol = "\n";
allNames = modulesNames modules;
getResults = m:
let fetchResult = s: mapAttrs (n: v: v.result) s; in {
options = fetchResult m.options;
config = fetchResult m.config;
};
endRecursion = { options = {}; config = {}; };
in if modules == [] then endRecursion else
getResults (fix (crossResults: moduleZip {
options = lib.zipWithNames allNames (name: values: rec {
config = lib.getAttr name crossResults.config;
declarations = declarationsOf name;
declarationSources =
map (m: {
source = m.key;
}) declarations;
hasOptions = values != [];
isOption = any lib.isOption values;
decls = # add location to sub-module options.
map (m:
mapSubOptions
(unifyOptionModule {inherit (m) key;})
m.options
) declarations;
decl =
lib.addErrorContext "${eol
}while enhancing option '${addName name}'.${eol
}${errorSource declarations}${eol
}" (
addOptionMakeUp
{ name = addName name; recurseInto = recurseForOption; }
(mergeOptionDecls decls)
);
value = decl // (with config; {
inherit (config) isNotDefined;
isDefined = ! isNotDefined;
declarations = declarationSources;
definitions = definitionSources;
config = strictResult;
});
recurse = (recurseInto name).options;
result =
if isOption then value
else if !hasOptions then {}
else if all isAttrs values then recurse
else
throw "${eol
}Unexpected type where option declarations are expected.${eol
}${errorSource declarations}${eol
}";
});
config = lib.zipWithNames allNames (name: values_: rec {
option = lib.getAttr name crossResults.options;
definitions = definitionsOf name;
definitionSources =
map (m: {
source = m.key;
value = m.config;
}) definitions;
values = values_ ++
optionals (option.isOption && option.decl ? extraConfigs)
option.decl.extraConfigs;
defs = evalDefinitions option.decl values;
isNotDefined = defs == [];
value =
lib.addErrorContext "${eol
}while evaluating the option '${addName name}'.${eol
}${errorSource (modulesOf name)}${eol
}" (
let opt = option.decl; in
opt.apply (
if isNotDefined then
if opt ? default then opt.default
else throw "Not defined."
else opt.merge defs
)
);
strictResult = builtins.tryEval (builtins.toXML value);
recurse = (recurseInto name).config;
configIsAnOption = v: isOption (rmProperties v);
errConfigIsAnOption =
let badModules = filter (m: configIsAnOption m.config) definitions; in
"${eol
}Option ${addName name} is defined in the configuration section.${eol
}${errorSource badModules}${eol
}";
errDefinedWithoutDeclaration =
let badModules = definitions; in
"${eol
}Option '${addName name}' defined without option declaration.${eol
}${errorSource badModules}${eol
}";
result =
if option.isOption then value
else if !option.hasOptions then throw errDefinedWithoutDeclaration
else if any configIsAnOption values then throw errConfigIsAnOption
else if all isAttrs values then recurse
# plain value during the traversal
else throw errDefinedWithoutDeclaration;
});
} modules));
fixMergeModules = initModules: {...}@args:
lib.fix (result:
# This trick avoid an infinite loop because names of attribute are
# know and it is not require to evaluate the result of moduleMerge to
# know which attribute are present as argument.
let module = { inherit (result) options config; }; in
moduleMerge "" (
moduleClosure initModules (module // args)
)
);
# Visit all definitions to raise errors related to undeclared options.
checkModule = path: {config, options, ...}@m:
let
eol = "\n";
addName = name:
if path == "" then name else path + "." + name;
in
if lib.isOption options then
if options ? options then
options.type.fold
(cfg: res: res && checkModule (options.type.docPath path) cfg._args)
true config
else
true
else if isAttrs options && lib.attrNames m.options != [] then
all (name:
lib.addErrorContext "${eol
}while checking the attribute '${addName name}'.${eol
}" (checkModule (addName name) (selectModule name m))
) (lib.attrNames m.config)
else
builtins.trace "try to evaluate config ${lib.showVal config}."
false;
}