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4a724cb84c
Specifically, - directly export `modules/lib/dag.nix` instead of renaming attributes, - run through utilities to reuse code where possible, - expose `lib.hm.dag.isEntry` and reuse it in `modules/lib/types-dag.nix`, - reuse utilities through `lib` set instead of passing imports to functions, and - eta reduction of `map`, `entryAnywhere`, `entryAfter` and `entryBefore`.
113 lines
4.1 KiB
Nix
113 lines
4.1 KiB
Nix
{ lib }:
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let
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inherit (lib)
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concatStringsSep defaultFunctor fixedWidthNumber hm imap1 isAttrs isList
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length listToAttrs mapAttrs mkIf mkOrder mkOption mkOptionType nameValuePair
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stringLength types warn;
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dagEntryOf = elemType:
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let
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submoduleType = types.submodule ({ name, ... }: {
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options = {
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data = mkOption { type = elemType; };
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after = mkOption { type = with types; listOf str; };
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before = mkOption { type = with types; listOf str; };
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};
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config = mkIf (elemType.name == "submodule") {
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data._module.args.dagName = name;
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};
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});
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maybeConvert = def:
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if hm.dag.isEntry def.value then
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def.value
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else
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hm.dag.entryAnywhere (if def ? priority then
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mkOrder def.priority def.value
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else
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def.value);
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in mkOptionType {
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name = "dagEntryOf";
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description = "DAG entry of ${elemType.description}";
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# leave the checking to the submodule type
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merge = loc: defs:
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submoduleType.merge loc (map (def: {
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inherit (def) file;
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value = maybeConvert def;
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}) defs);
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};
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in rec {
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# A directed acyclic graph of some inner type.
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#
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# Note, if the element type is a submodule then the `name` argument
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# will always be set to the string "data" since it picks up the
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# internal structure of the DAG values. To give access to the
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# "actual" attribute name a new submodule argument is provided with
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# the name `dagName`.
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dagOf = elemType:
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let attrEquivalent = types.attrsOf (dagEntryOf elemType);
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in mkOptionType rec {
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name = "dagOf";
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description = "DAG of ${elemType.description}";
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inherit (attrEquivalent) check merge emptyValue;
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getSubOptions = prefix: elemType.getSubOptions (prefix ++ [ "<name>" ]);
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getSubModules = elemType.getSubModules;
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substSubModules = m: dagOf (elemType.substSubModules m);
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functor = (defaultFunctor name) // { wrapped = elemType; };
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nestedTypes.elemType = elemType;
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};
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# A directed acyclic graph of some inner type OR a list of that
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# inner type. This is a temporary hack for use by the
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# `programs.ssh.matchBlocks` and is only guaranteed to be vaguely
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# correct!
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#
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# In particular, adding a dependency on one of the "unnamed-N-M"
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# entries generated by a list value is almost guaranteed to destroy
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# the list's order.
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#
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# This function will be removed in version 20.09.
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listOrDagOf = elemType:
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let
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paddedIndexStr = list: i:
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let padWidth = stringLength (toString (length list));
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in fixedWidthNumber padWidth i;
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convertAll = loc: defs:
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let
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convertListValue = namePrefix: def:
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let
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vs = def.value;
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pad = paddedIndexStr vs;
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makeEntry = i: v: nameValuePair "${namePrefix}.${pad i}" v;
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warning = ''
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In file ${def.file}
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a list is being assigned to the option '${
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concatStringsSep "." loc
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}'.
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This will soon be an error due to the list form being deprecated.
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Please use the attribute set form instead with DAG functions to
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express the desired order of entries.
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'';
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in warn warning (listToAttrs (imap1 makeEntry vs));
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convertValue = i: def:
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if isList def.value then
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convertListValue "unnamed-${paddedIndexStr defs i}" def
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else
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def.value;
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in imap1 (i: def: def // { value = convertValue i def; }) defs;
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dagType = dagOf elemType;
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in mkOptionType rec {
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name = "listOrDagOf";
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description = "list or DAG of ${elemType.description}s";
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check = x: isList x || dagType.check x;
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merge = loc: defs: dagType.merge loc (convertAll loc defs);
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getSubOptions = dagType.getSubOptions;
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getSubModules = dagType.getSubModules;
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substSubModules = m: listOrDagOf (elemType.substSubModules m);
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functor = (defaultFunctor name) // { wrapped = elemType; };
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};
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}
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