mirror of
https://github.com/NixOS/nixpkgs.git
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574 lines
10 KiB
Nix
574 lines
10 KiB
Nix
/**
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A partial and basic implementation of GVariant formatted strings.
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See [GVariant Format Strings](https://docs.gtk.org/glib/gvariant-format-strings.html) for details.
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:::{.warning}
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This API is not considered fully stable and it might therefore
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change in backwards incompatible ways without prior notice.
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:::
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*/
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# This file is based on https://github.com/nix-community/home-manager
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# Copyright (c) 2017-2022 Home Manager contributors
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{ lib }:
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let
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inherit (lib)
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concatMapStringsSep concatStrings escape head replaceStrings;
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mkPrimitive = t: v: {
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_type = "gvariant";
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type = t;
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value = v;
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__toString = self: "@${self.type} ${toString self.value}"; # https://docs.gtk.org/glib/gvariant-text.html
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};
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type = {
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arrayOf = t: "a${t}";
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maybeOf = t: "m${t}";
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tupleOf = ts: "(${concatStrings ts})";
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dictionaryEntryOf = nameType: valueType: "{${nameType}${valueType}}";
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string = "s";
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boolean = "b";
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uchar = "y";
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int16 = "n";
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uint16 = "q";
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int32 = "i";
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uint32 = "u";
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int64 = "x";
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uint64 = "t";
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double = "d";
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variant = "v";
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};
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in
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rec {
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inherit type;
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/**
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Check if a value is a GVariant value
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# Inputs
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`v`
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: value to check
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# Type
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```
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isGVariant :: Any -> Bool
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```
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*/
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isGVariant = v: v._type or "" == "gvariant";
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intConstructors = [
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{
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name = "mkInt32";
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type = type.int32;
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min = -2147483648;
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max = 2147483647;
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}
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{
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name = "mkUint32";
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type = type.uint32;
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min = 0;
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max = 4294967295;
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}
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{
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name = "mkInt64";
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type = type.int64;
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# Nix does not support such large numbers.
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min = null;
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max = null;
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}
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{
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name = "mkUint64";
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type = type.uint64;
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min = 0;
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# Nix does not support such large numbers.
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max = null;
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}
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{
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name = "mkInt16";
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type = type.int16;
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min = -32768;
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max = 32767;
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}
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{
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name = "mkUint16";
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type = type.uint16;
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min = 0;
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max = 65535;
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}
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{
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name = "mkUchar";
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type = type.uchar;
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min = 0;
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max = 255;
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}
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];
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/**
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Returns the GVariant value that most closely matches the given Nix value.
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If no GVariant value can be found unambiguously then error is thrown.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkValue :: Any -> gvariant
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```
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*/
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mkValue = v:
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if builtins.isBool v then
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mkBoolean v
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else if builtins.isFloat v then
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mkDouble v
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else if builtins.isString v then
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mkString v
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else if builtins.isList v then
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mkArray v
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else if isGVariant v then
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v
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else if builtins.isInt v then
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let
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validConstructors = builtins.filter ({ min, max, ... }: (min == null || min <= v) && (max == null || v <= max)) intConstructors;
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in
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throw ''
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The GVariant type for number “${builtins.toString v}” is unclear.
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Please wrap the value with one of the following, depending on the value type in GSettings schema:
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${lib.concatMapStringsSep "\n" ({ name, type, ...}: "- `lib.gvariant.${name}` for `${type}`") validConstructors}
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''
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else if builtins.isAttrs v then
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throw "Cannot construct GVariant value from an attribute set. If you want to construct a dictionary, you will need to create an array containing items constructed with `lib.gvariant.mkDictionaryEntry`."
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else
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throw "The GVariant type of “${builtins.typeOf v}” can't be inferred.";
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/**
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Returns the GVariant array from the given type of the elements and a Nix list.
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# Inputs
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`elems`
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: 1\. Function argument
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# Type
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```
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mkArray :: [Any] -> gvariant
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```
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# Examples
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:::{.example}
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## `lib.gvariant.mkArray` usage example
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```nix
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# Creating a string array
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lib.gvariant.mkArray [ "a" "b" "c" ]
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```
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:::
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*/
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mkArray = elems:
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let
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vs = map mkValue (lib.throwIf (elems == [ ]) "Please create empty array with mkEmptyArray." elems);
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elemType = lib.throwIfNot (lib.all (t: (head vs).type == t) (map (v: v.type) vs))
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"Elements in a list should have same type."
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(head vs).type;
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in
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mkPrimitive (type.arrayOf elemType) vs // {
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__toString = self:
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"@${self.type} [${concatMapStringsSep "," toString self.value}]";
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};
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/**
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Returns the GVariant array from the given empty Nix list.
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# Inputs
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`elemType`
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: 1\. Function argument
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# Type
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```
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mkEmptyArray :: gvariant.type -> gvariant
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```
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# Examples
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:::{.example}
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## `lib.gvariant.mkEmptyArray` usage example
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```nix
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# Creating an empty string array
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lib.gvariant.mkEmptyArray (lib.gvariant.type.string)
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```
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:::
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*/
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mkEmptyArray = elemType: mkPrimitive (type.arrayOf elemType) [ ] // {
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__toString = self: "@${self.type} []";
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};
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/**
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Returns the GVariant variant from the given Nix value. Variants are containers
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of different GVariant type.
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# Inputs
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`elem`
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: 1\. Function argument
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# Type
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```
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mkVariant :: Any -> gvariant
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```
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# Examples
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:::{.example}
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## `lib.gvariant.mkVariant` usage example
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```nix
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lib.gvariant.mkArray [
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(lib.gvariant.mkVariant "a string")
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(lib.gvariant.mkVariant (lib.gvariant.mkInt32 1))
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]
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```
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:::
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*/
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mkVariant = elem:
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let gvarElem = mkValue elem;
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in mkPrimitive type.variant gvarElem // {
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__toString = self: "<${toString self.value}>";
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};
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/**
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Returns the GVariant dictionary entry from the given key and value.
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# Inputs
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`name`
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: The key of the entry
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`value`
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: The value of the entry
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# Type
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```
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mkDictionaryEntry :: String -> Any -> gvariant
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```
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# Examples
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:::{.example}
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## `lib.gvariant.mkDictionaryEntry` usage example
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```nix
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# A dictionary describing an Epiphany’s search provider
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[
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(lib.gvariant.mkDictionaryEntry "url" (lib.gvariant.mkVariant "https://duckduckgo.com/?q=%s&t=epiphany"))
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(lib.gvariant.mkDictionaryEntry "bang" (lib.gvariant.mkVariant "!d"))
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(lib.gvariant.mkDictionaryEntry "name" (lib.gvariant.mkVariant "DuckDuckGo"))
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]
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```
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:::
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*/
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mkDictionaryEntry =
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name:
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value:
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let
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name' = mkValue name;
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value' = mkValue value;
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dictionaryType = type.dictionaryEntryOf name'.type value'.type;
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in
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mkPrimitive dictionaryType { inherit name value; } // {
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__toString = self: "@${self.type} {${name'},${value'}}";
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};
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/**
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Returns the GVariant maybe from the given element type.
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# Inputs
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`elemType`
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: 1\. Function argument
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`elem`
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: 2\. Function argument
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# Type
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```
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mkMaybe :: gvariant.type -> Any -> gvariant
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```
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*/
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mkMaybe = elemType: elem:
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mkPrimitive (type.maybeOf elemType) elem // {
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__toString = self:
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if self.value == null then
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"@${self.type} nothing"
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else
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"just ${toString self.value}";
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};
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/**
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Returns the GVariant nothing from the given element type.
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# Inputs
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`elemType`
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: 1\. Function argument
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# Type
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```
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mkNothing :: gvariant.type -> gvariant
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```
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*/
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mkNothing = elemType: mkMaybe elemType null;
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/**
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Returns the GVariant just from the given Nix value.
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# Inputs
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`elem`
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: 1\. Function argument
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# Type
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```
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mkJust :: Any -> gvariant
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```
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*/
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mkJust = elem: let gvarElem = mkValue elem; in mkMaybe gvarElem.type gvarElem;
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/**
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Returns the GVariant tuple from the given Nix list.
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# Inputs
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`elems`
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: 1\. Function argument
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# Type
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```
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mkTuple :: [Any] -> gvariant
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```
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*/
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mkTuple = elems:
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let
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gvarElems = map mkValue elems;
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tupleType = type.tupleOf (map (e: e.type) gvarElems);
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in
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mkPrimitive tupleType gvarElems // {
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__toString = self:
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"@${self.type} (${concatMapStringsSep "," toString self.value})";
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};
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/**
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Returns the GVariant boolean from the given Nix bool value.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkBoolean :: Bool -> gvariant
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```
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*/
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mkBoolean = v:
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mkPrimitive type.boolean v // {
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__toString = self: if self.value then "true" else "false";
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};
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/**
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Returns the GVariant string from the given Nix string value.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkString :: String -> gvariant
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```
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*/
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mkString = v:
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let sanitize = s: replaceStrings [ "\n" ] [ "\\n" ] (escape [ "'" "\\" ] s);
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in mkPrimitive type.string v // {
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__toString = self: "'${sanitize self.value}'";
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};
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/**
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Returns the GVariant object path from the given Nix string value.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkObjectpath :: String -> gvariant
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```
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*/
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mkObjectpath = v:
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mkPrimitive type.string v // {
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__toString = self: "objectpath '${escape [ "'" ] self.value}'";
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};
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/**
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Returns the GVariant uchar from the given Nix int value.
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# Type
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```
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mkUchar :: Int -> gvariant
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```
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*/
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mkUchar = mkPrimitive type.uchar;
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/**
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Returns the GVariant int16 from the given Nix int value.
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# Type
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```
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mkInt16 :: Int -> gvariant
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```
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*/
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mkInt16 = mkPrimitive type.int16;
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/**
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Returns the GVariant uint16 from the given Nix int value.
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# Type
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```
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mkUint16 :: Int -> gvariant
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```
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*/
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mkUint16 = mkPrimitive type.uint16;
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/**
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Returns the GVariant int32 from the given Nix int value.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkInt32 :: Int -> gvariant
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```
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*/
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mkInt32 = v:
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mkPrimitive type.int32 v // {
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__toString = self: toString self.value;
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};
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/**
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Returns the GVariant uint32 from the given Nix int value.
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# Type
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```
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mkUint32 :: Int -> gvariant
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```
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*/
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mkUint32 = mkPrimitive type.uint32;
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/**
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Returns the GVariant int64 from the given Nix int value.
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# Type
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```
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mkInt64 :: Int -> gvariant
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```
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*/
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mkInt64 = mkPrimitive type.int64;
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/**
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Returns the GVariant uint64 from the given Nix int value.
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# Type
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```
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mkUint64 :: Int -> gvariant
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```
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*/
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mkUint64 = mkPrimitive type.uint64;
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/**
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Returns the GVariant double from the given Nix float value.
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# Inputs
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`v`
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: 1\. Function argument
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# Type
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```
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mkDouble :: Float -> gvariant
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```
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*/
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mkDouble = v:
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mkPrimitive type.double v // {
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__toString = self: toString self.value;
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};
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}
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