fcc95ff817
This allows for correct highlighting and maybe future automatic formatting. The AST was verified to work with nixfmt only.
710 lines
20 KiB
Markdown
710 lines
20 KiB
Markdown
# Trivial build helpers {#chap-trivial-builders}
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Nixpkgs provides a variety of wrapper functions that help build commonly useful derivations.
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Like [`stdenv.mkDerivation`](#sec-using-stdenv), each of these build helpers creates a derivation, but the arguments passed are different (usually simpler) from those required by `stdenv.mkDerivation`.
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## `runCommand` {#trivial-builder-runCommand}
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`runCommand :: String -> AttrSet -> String -> Derivation`
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The result of `runCommand name drvAttrs buildCommand` is a derivation that is built by running the specified shell commands.
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By default `runCommand` runs in a stdenv with no compiler environment, whereas [`runCommandCC`](#trivial-builder-runCommandCC) uses the default stdenv, `pkgs.stdenv`.
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`name :: String`
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: The name that Nix will append to the store path in the same way that `stdenv.mkDerivation` uses its `name` attribute.
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`drvAttr :: AttrSet`
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: Attributes to pass to the underlying call to [`stdenv.mkDerivation`](#chap-stdenv).
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`buildCommand :: String`
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: Shell commands to run in the derivation builder.
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::: {.note}
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You have to create a file or directory `$out` for Nix to be able to run the builder successfully.
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:::
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::: {.example #ex-runcommand-simple}
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# Invocation of `runCommand`
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```nix
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(import <nixpkgs> {}).runCommand "my-example" {} ''
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echo My example command is running
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mkdir $out
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echo I can write data to the Nix store > $out/message
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echo I can also run basic commands like:
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echo ls
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ls
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echo whoami
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whoami
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echo date
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date
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''
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```
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:::
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## `runCommandCC` {#trivial-builder-runCommandCC}
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This works just like `runCommand`. The only difference is that it also provides a C compiler in `buildCommand`'s environment. To minimize your dependencies, you should only use this if you are sure you will need a C compiler as part of running your command.
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## `runCommandLocal` {#trivial-builder-runCommandLocal}
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Variant of `runCommand` that forces the derivation to be built locally, it is not substituted. This is intended for very cheap commands (<1s execution time). It saves on the network round-trip and can speed up a build.
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::: {.note}
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This sets [`allowSubstitutes` to `false`](https://nixos.org/nix/manual/#adv-attr-allowSubstitutes), so only use `runCommandLocal` if you are certain the user will always have a builder for the `system` of the derivation. This should be true for most trivial use cases (e.g., just copying some files to a different location or adding symlinks) because there the `system` is usually the same as `builtins.currentSystem`.
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:::
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## Writing text files {#trivial-builder-text-writing}
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Nixpkgs provides the following functions for producing derivations which write text files or executable scripts into the Nix store.
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They are useful for creating files from Nix expression, and are all implemented as convenience wrappers around `writeTextFile`.
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Each of these functions will cause a derivation to be produced.
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When you coerce the result of each of these functions to a string with [string interpolation](https://nixos.org/manual/nix/stable/language/string-interpolation) or [`builtins.toString`](https://nixos.org/manual/nix/stable/language/builtins#builtins-toString), it will evaluate to the [store path](https://nixos.org/manual/nix/stable/store/store-path) of this derivation.
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:::: {.note}
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Some of these functions will put the resulting files within a directory inside the [derivation output](https://nixos.org/manual/nix/stable/language/derivations#attr-outputs).
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If you need to refer to the resulting files somewhere else in a Nix expression, append their path to the derivation's store path.
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For example, if the file destination is a directory:
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```nix
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{
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my-file = writeTextFile {
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name = "my-file";
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text = ''
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Contents of File
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'';
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destination = "/share/my-file";
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};
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}
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```
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Remember to append "/share/my-file" to the resulting store path when using it elsewhere:
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```nix
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writeShellScript "evaluate-my-file.sh" ''
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cat ${my-file}/share/my-file
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''
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```
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::::
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### `makeDesktopItem` {#trivial-builder-makeDesktopItem}
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Write an [XDG desktop file](https://specifications.freedesktop.org/desktop-entry-spec/1.4/) to the Nix store.
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This function is usually used to add desktop items to a package through the `copyDesktopItems` hook.
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`makeDesktopItem` adheres to version 1.4 of the specification.
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#### Inputs {#trivial-builder-makeDesktopItem-inputs}
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`makeDesktopItem` takes an attribute set that accepts most values from the [XDG specification](https://specifications.freedesktop.org/desktop-entry-spec/1.4/ar01s06.html).
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All recognised keys from the specification are supported with the exception of the "Hidden" field. The keys are converted into camelCase format, but correspond 1:1 to their equivalent in the specification: `genericName`, `noDisplay`, `comment`, `icon`, `onlyShowIn`, `notShowIn`, `dbusActivatable`, `tryExec`, `exec`, `path`, `terminal`, `mimeTypes`, `categories`, `implements`, `keywords`, `startupNotify`, `startupWMClass`, `url`, `prefersNonDefaultGPU`.
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The "Version" field is hardcoded to the version `makeDesktopItem` currently adheres to.
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The following fields are either required, are of a different type than in the specification, carry specific default values, or are additional fields supported by `makeDesktopItem`:
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`name` (String)
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: The name of the desktop file in the Nix store.
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`type` (String; _optional_)
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: Default value: `"Application"`
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`desktopName` (String)
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: Corresponds to the "Name" field of the specification.
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`actions` (List of Attribute set; _optional_)
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: A list of attribute sets {name, exec?, icon?}
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`extraConfig` (Attribute set; _optional_)
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: Additional key/value pairs to be added verbatim to the desktop file. Attributes need to be prefixed with 'X-'.
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#### Examples {#trivial-builder-makeDesktopItem-examples}
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::: {.example #ex-makeDesktopItem}
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# Usage 1 of `makeDesktopItem`
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Write a desktop file `/nix/store/<store path>/my-program.desktop` to the Nix store.
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```nix
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{makeDesktopItem}:
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makeDesktopItem {
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name = "my-program";
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desktopName = "My Program";
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genericName = "Video Player";
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noDisplay = false;
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comment = "Cool video player";
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icon = "/path/to/icon";
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onlyShowIn = [ "KDE" ];
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dbusActivatable = true;
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tryExec = "my-program";
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exec = "my-program --someflag";
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path = "/some/working/path";
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terminal = false;
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actions.example = {
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name = "New Window";
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exec = "my-program --new-window";
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icon = "/some/icon";
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};
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mimeTypes = [ "video/mp4" ];
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categories = [ "Utility" ];
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implements = [ "org.my-program" ];
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keywords = [ "Video" "Player" ];
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startupNotify = false;
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startupWMClass = "MyProgram";
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prefersNonDefaultGPU = false;
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extraConfig.X-SomeExtension = "somevalue";
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}
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```
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:::
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::: {.example #ex2-makeDesktopItem}
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# Usage 2 of `makeDesktopItem`
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Override the `hello` package to add a desktop item.
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```nix
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{ copyDesktopItems
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, hello
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, makeDesktopItem }:
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hello.overrideAttrs {
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nativeBuildInputs = [ copyDesktopItems ];
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desktopItems = [(makeDesktopItem {
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name = "hello";
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desktopName = "Hello";
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exec = "hello";
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})];
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}
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```
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:::
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### `writeTextFile` {#trivial-builder-writeTextFile}
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Write a text file to the Nix store.
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`writeTextFile` takes an attribute set with the following possible attributes:
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`name` (String)
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: Corresponds to the name used in the Nix store path identifier.
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`text` (String)
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: The contents of the file.
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`executable` (Bool, _optional_)
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: Make this file have the executable bit set.
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Default: `false`
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`destination` (String, _optional_)
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: A subpath under the derivation's output path into which to put the file.
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Subdirectories are created automatically when the derivation is realised.
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By default, the store path itself will be a file containing the text contents.
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Default: `""`
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`checkPhase` (String, _optional_)
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: Commands to run after generating the file.
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Default: `""`
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`meta` (Attribute set, _optional_)
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: Additional metadata for the derivation.
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Default: `{}`
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`allowSubstitutes` (Bool, _optional_)
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: Whether to allow substituting from a binary cache.
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Passed through to [`allowSubsitutes`](https://nixos.org/manual/nix/stable/language/advanced-attributes#adv-attr-allowSubstitutes) of the underlying call to `builtins.derivation`.
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It defaults to `false`, as running the derivation's simple `builder` executable locally is assumed to be faster than network operations.
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Set it to true if the `checkPhase` step is expensive.
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Default: `false`
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`preferLocalBuild` (Bool, _optional_)
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: Whether to prefer building locally, even if faster [remote build machines](https://nixos.org/manual/nix/stable/command-ref/conf-file#conf-substituters) are available.
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Passed through to [`preferLocalBuild`](https://nixos.org/manual/nix/stable/language/advanced-attributes#adv-attr-preferLocalBuild) of the underlying call to `builtins.derivation`.
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It defaults to `true` for the same reason `allowSubstitutes` defaults to `false`.
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Default: `true`
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`derivationArgs` (Attribute set, _optional_)
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: Extra arguments to pass to the underlying call to `stdenv.mkDerivation`.
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Default: `{}`
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The resulting store path will include some variation of the name, and it will be a file unless `destination` is used, in which case it will be a directory.
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::: {.example #ex-writeTextFile}
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# Usage 1 of `writeTextFile`
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Write `my-file` to `/nix/store/<store path>/some/subpath/my-cool-script`, making it executable.
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Also run a check on the resulting file in a `checkPhase`, and supply values for the less-used options.
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```nix
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writeTextFile {
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name = "my-cool-script";
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text = ''
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#!/bin/sh
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echo "This is my cool script!"
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'';
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executable = true;
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destination = "/some/subpath/my-cool-script";
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checkPhase = ''
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${pkgs.shellcheck}/bin/shellcheck $out/some/subpath/my-cool-script
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'';
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meta = {
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license = pkgs.lib.licenses.cc0;
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};
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allowSubstitutes = true;
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preferLocalBuild = false;
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}
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```
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:::
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::: {.example #ex2-writeTextFile}
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# Usage 2 of `writeTextFile`
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Write the string `Contents of File` to `/nix/store/<store path>`.
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See also the [](#trivial-builder-writeText) helper function.
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```nix
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writeTextFile {
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name = "my-file";
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text = ''
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Contents of File
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'';
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}
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```
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:::
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::: {.example #ex3-writeTextFile}
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# Usage 3 of `writeTextFile`
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Write an executable script `my-script` to `/nix/store/<store path>/bin/my-script`.
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See also the [](#trivial-builder-writeScriptBin) helper function.
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```nix
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writeTextFile {
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name = "my-script";
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text = ''
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echo "hi"
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'';
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executable = true;
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destination = "/bin/my-script";
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}
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```
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:::
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### `writeText` {#trivial-builder-writeText}
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Write a text file to the Nix store
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`writeText` takes the following arguments:
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a string.
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`name` (String)
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: The name used in the Nix store path.
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`text` (String)
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: The contents of the file.
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The store path will include the name, and it will be a file.
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::: {.example #ex-writeText}
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# Usage of `writeText`
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Write the string `Contents of File` to `/nix/store/<store path>`:
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```nix
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writeText "my-file"
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''
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Contents of File
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''
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```
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:::
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This is equivalent to:
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```nix
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writeTextFile {
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name = "my-file";
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text = ''
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Contents of File
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'';
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}
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```
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### `writeTextDir` {#trivial-builder-writeTextDir}
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Write a text file within a subdirectory of the Nix store.
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`writeTextDir` takes the following arguments:
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`path` (String)
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: The destination within the Nix store path under which to create the file.
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`text` (String)
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: The contents of the file.
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The store path will be a directory.
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::: {.example #ex-writeTextDir}
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# Usage of `writeTextDir`
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Write the string `Contents of File` to `/nix/store/<store path>/share/my-file`:
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```nix
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writeTextDir "share/my-file"
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''
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Contents of File
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''
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```
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:::
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This is equivalent to:
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```nix
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writeTextFile {
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name = "my-file";
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text = ''
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Contents of File
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'';
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destination = "share/my-file";
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}
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```
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### `writeScript` {#trivial-builder-writeScript}
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Write an executable script file to the Nix store.
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`writeScript` takes the following arguments:
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`name` (String)
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: The name used in the Nix store path.
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`text` (String)
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: The contents of the file.
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The created file is marked as executable.
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The store path will include the name, and it will be a file.
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::: {.example #ex-writeScript}
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# Usage of `writeScript`
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Write the string `Contents of File` to `/nix/store/<store path>` and make the file executable.
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```nix
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writeScript "my-file"
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''
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Contents of File
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''
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```
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:::
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This is equivalent to:
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```nix
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writeTextFile {
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name = "my-file";
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text = ''
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Contents of File
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'';
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executable = true;
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}
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```
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### `writeScriptBin` {#trivial-builder-writeScriptBin}
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Write a script within a `bin` subirectory of a directory in the Nix store.
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This is for consistency with the convention of software packages placing executables under `bin`.
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`writeScriptBin` takes the following arguments:
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`name` (String)
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: The name used in the Nix store path and within the file created under the store path.
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`text` (String)
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: The contents of the file.
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The created file is marked as executable.
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The file's contents will be put into `/nix/store/<store path>/bin/<name>`.
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The store path will include the the name, and it will be a directory.
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::: {.example #ex-writeScriptBin}
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# Usage of `writeScriptBin`
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```nix
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writeScriptBin "my-script"
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''
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echo "hi"
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''
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```
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:::
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This is equivalent to:
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```nix
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writeTextFile {
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name = "my-script";
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text = ''
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echo "hi"
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'';
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executable = true;
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destination = "bin/my-script";
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}
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```
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### `writeShellScript` {#trivial-builder-writeShellScript}
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Write a Bash script to the store.
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`writeShellScript` takes the following arguments:
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`name` (String)
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: The name used in the Nix store path.
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`text` (String)
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: The contents of the file.
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The created file is marked as executable.
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The store path will include the name, and it will be a file.
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This function is almost exactly like [](#trivial-builder-writeScript), except that it prepends to the file a [shebang](https://en.wikipedia.org/wiki/Shebang_%28Unix%29) line that points to the version of Bash used in Nixpkgs.
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<!-- this cannot be changed in practice, so there is no point pretending it's somehow generic -->
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::: {.example #ex-writeShellScript}
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# Usage of `writeShellScript`
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```nix
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writeShellScript "my-script"
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''
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echo "hi"
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''
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```
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:::
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This is equivalent to:
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```nix
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writeTextFile {
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name = "my-script";
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text = ''
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#! ${pkgs.runtimeShell}
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echo "hi"
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'';
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executable = true;
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}
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```
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### `writeShellScriptBin` {#trivial-builder-writeShellScriptBin}
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Write a Bash script to a "bin" subdirectory of a directory in the Nix store.
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`writeShellScriptBin` takes the following arguments:
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`name` (String)
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: The name used in the Nix store path and within the file generated under the store path.
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`text` (String)
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: The contents of the file.
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The file's contents will be put into `/nix/store/<store path>/bin/<name>`.
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The store path will include the the name, and it will be a directory.
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This function is a combination of [](#trivial-builder-writeShellScript) and [](#trivial-builder-writeScriptBin).
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::: {.example #ex-writeShellScriptBin}
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# Usage of `writeShellScriptBin`
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```nix
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writeShellScriptBin "my-script"
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''
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echo "hi"
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''
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```
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:::
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This is equivalent to:
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```nix
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|
writeTextFile {
|
|
name = "my-script";
|
|
text = ''
|
|
#! ${pkgs.runtimeShell}
|
|
echo "hi"
|
|
'';
|
|
executable = true;
|
|
destination = "bin/my-script";
|
|
}
|
|
```
|
|
|
|
## `concatTextFile`, `concatText`, `concatScript` {#trivial-builder-concatText}
|
|
|
|
These functions concatenate `files` to the Nix store in a single file. This is useful for configuration files structured in lines of text. `concatTextFile` takes an attribute set and expects two arguments, `name` and `files`. `name` corresponds to the name used in the Nix store path. `files` will be the files to be concatenated. You can also set `executable` to true to make this file have the executable bit set.
|
|
`concatText` and`concatScript` are simple wrappers over `concatTextFile`.
|
|
|
|
Here are a few examples:
|
|
```nix
|
|
|
|
# Writes my-file to /nix/store/<store path>
|
|
concatTextFile {
|
|
name = "my-file";
|
|
files = [ drv1 "${drv2}/path/to/file" ];
|
|
}
|
|
# See also the `concatText` helper function below.
|
|
|
|
# Writes executable my-file to /nix/store/<store path>/bin/my-file
|
|
concatTextFile {
|
|
name = "my-file";
|
|
files = [ drv1 "${drv2}/path/to/file" ];
|
|
executable = true;
|
|
destination = "/bin/my-file";
|
|
}
|
|
# Writes contents of files to /nix/store/<store path>
|
|
concatText "my-file" [ file1 file2 ]
|
|
|
|
# Writes contents of files to /nix/store/<store path>
|
|
concatScript "my-file" [ file1 file2 ]
|
|
```
|
|
|
|
## `writeShellApplication` {#trivial-builder-writeShellApplication}
|
|
|
|
`writeShellApplication` is similar to `writeShellScriptBin` and `writeScriptBin` but supports runtime dependencies with `runtimeInputs`.
|
|
Writes an executable shell script to `/nix/store/<store path>/bin/<name>` and checks its syntax with [`shellcheck`](https://github.com/koalaman/shellcheck) and the `bash`'s `-n` option.
|
|
Some basic Bash options are set by default (`errexit`, `nounset`, and `pipefail`), but can be overridden with `bashOptions`.
|
|
|
|
Extra arguments may be passed to `stdenv.mkDerivation` by setting `derivationArgs`; note that variables set in this manner will be set when the shell script is _built,_ not when it's run.
|
|
Runtime environment variables can be set with the `runtimeEnv` argument.
|
|
|
|
For example, the following shell application can refer to `curl` directly, rather than needing to write `${curl}/bin/curl`:
|
|
|
|
```nix
|
|
writeShellApplication {
|
|
name = "show-nixos-org";
|
|
|
|
runtimeInputs = [ curl w3m ];
|
|
|
|
text = ''
|
|
curl -s 'https://nixos.org' | w3m -dump -T text/html
|
|
'';
|
|
}
|
|
```
|
|
|
|
## `symlinkJoin` {#trivial-builder-symlinkJoin}
|
|
|
|
This can be used to put many derivations into the same directory structure. It works by creating a new derivation and adding symlinks to each of the paths listed. It expects two arguments, `name`, and `paths`. `name` is the name used in the Nix store path for the created derivation. `paths` is a list of paths that will be symlinked. These paths can be to Nix store derivations or any other subdirectory contained within.
|
|
Here is an example:
|
|
```nix
|
|
# adds symlinks of hello and stack to current build and prints "links added"
|
|
symlinkJoin { name = "myexample"; paths = [ pkgs.hello pkgs.stack ]; postBuild = "echo links added"; }
|
|
```
|
|
This creates a derivation with a directory structure like the following:
|
|
```
|
|
/nix/store/sglsr5g079a5235hy29da3mq3hv8sjmm-myexample
|
|
|-- bin
|
|
| |-- hello -> /nix/store/qy93dp4a3rqyn2mz63fbxjg228hffwyw-hello-2.10/bin/hello
|
|
| `-- stack -> /nix/store/6lzdpxshx78281vy056lbk553ijsdr44-stack-2.1.3.1/bin/stack
|
|
`-- share
|
|
|-- bash-completion
|
|
| `-- completions
|
|
| `-- stack -> /nix/store/6lzdpxshx78281vy056lbk553ijsdr44-stack-2.1.3.1/share/bash-completion/completions/stack
|
|
|-- fish
|
|
| `-- vendor_completions.d
|
|
| `-- stack.fish -> /nix/store/6lzdpxshx78281vy056lbk553ijsdr44-stack-2.1.3.1/share/fish/vendor_completions.d/stack.fish
|
|
...
|
|
```
|
|
|
|
## `writeReferencesToFile` {#trivial-builder-writeReferencesToFile}
|
|
|
|
Deprecated. Use [`writeClosure`](#trivial-builder-writeClosure) instead.
|
|
|
|
## `writeClosure` {#trivial-builder-writeClosure}
|
|
|
|
Given a list of [store paths](https://nixos.org/manual/nix/stable/glossary#gloss-store-path) (or string-like expressions coercible to store paths), write their collective [closure](https://nixos.org/manual/nix/stable/glossary#gloss-closure) to a text file.
|
|
|
|
The result is equivalent to the output of `nix-store -q --requisites`.
|
|
|
|
For example,
|
|
|
|
```nix
|
|
writeClosure [ (writeScriptBin "hi" ''${hello}/bin/hello'') ]
|
|
```
|
|
|
|
produces an output path `/nix/store/<hash>-runtime-deps` containing
|
|
|
|
```
|
|
/nix/store/<hash>-hello-2.10
|
|
/nix/store/<hash>-hi
|
|
/nix/store/<hash>-libidn2-2.3.0
|
|
/nix/store/<hash>-libunistring-0.9.10
|
|
/nix/store/<hash>-glibc-2.32-40
|
|
```
|
|
|
|
You can see that this includes `hi`, the original input path,
|
|
`hello`, which is a direct reference, but also
|
|
the other paths that are indirectly required to run `hello`.
|
|
|
|
## `writeDirectReferencesToFile` {#trivial-builder-writeDirectReferencesToFile}
|
|
|
|
Writes the set of references to the output file, that is, their immediate dependencies.
|
|
|
|
This produces the equivalent of `nix-store -q --references`.
|
|
|
|
For example,
|
|
|
|
```nix
|
|
writeDirectReferencesToFile (writeScriptBin "hi" ''${hello}/bin/hello'')
|
|
```
|
|
|
|
produces an output path `/nix/store/<hash>-runtime-references` containing
|
|
|
|
```
|
|
/nix/store/<hash>-hello-2.10
|
|
```
|
|
|
|
but none of `hello`'s dependencies because those are not referenced directly
|
|
by `hi`'s output.
|