463 lines
14 KiB
Markdown
463 lines
14 KiB
Markdown
# Dhall {#sec-language-dhall}
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The Nixpkgs support for Dhall assumes some familiarity with Dhall's language
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support for importing Dhall expressions, which is documented here:
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* [`dhall-lang.org` - Installing packages](https://docs.dhall-lang.org/tutorials/Language-Tour.html#installing-packages)
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## Remote imports {#ssec-dhall-remote-imports}
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Nixpkgs bypasses Dhall's support for remote imports using Dhall's
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semantic integrity checks. Specifically, any Dhall import can be protected by
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an integrity check like:
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```dhall
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https://prelude.dhall-lang.org/v20.1.0/package.dhall
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sha256:26b0ef498663d269e4dc6a82b0ee289ec565d683ef4c00d0ebdd25333a5a3c98
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```
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… and if the import is cached then the interpreter will load the import from
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cache instead of fetching the URL.
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Nixpkgs uses this trick to add all of a Dhall expression's dependencies into the
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cache so that the Dhall interpreter never needs to resolve any remote URLs. In
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fact, Nixpkgs uses a Dhall interpreter with remote imports disabled when
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packaging Dhall expressions to enforce that the interpreter never resolves a
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remote import. This means that Nixpkgs only supports building Dhall expressions
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if all of their remote imports are protected by semantic integrity checks.
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Instead of remote imports, Nixpkgs uses Nix to fetch remote Dhall code. For
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example, the Prelude Dhall package uses `pkgs.fetchFromGitHub` to fetch the
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`dhall-lang` repository containing the Prelude. Relying exclusively on Nix
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to fetch Dhall code ensures that Dhall packages built using Nix remain pure and
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also behave well when built within a sandbox.
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## Packaging a Dhall expression from scratch {#ssec-dhall-packaging-expression}
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We can illustrate how Nixpkgs integrates Dhall by beginning from the following
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trivial Dhall expression with one dependency (the Prelude):
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```dhall
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-- ./true.dhall
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let Prelude = https://prelude.dhall-lang.org/v20.1.0/package.dhall
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in Prelude.Bool.not False
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```
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As written, this expression cannot be built using Nixpkgs because the
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expression does not protect the Prelude import with a semantic integrity
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check, so the first step is to freeze the expression using `dhall freeze`,
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like this:
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```ShellSession
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$ dhall freeze --inplace ./true.dhall
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```
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… which gives us:
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```dhall
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-- ./true.dhall
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let Prelude =
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https://prelude.dhall-lang.org/v20.1.0/package.dhall
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sha256:26b0ef498663d269e4dc6a82b0ee289ec565d683ef4c00d0ebdd25333a5a3c98
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in Prelude.Bool.not False
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```
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To package that expression, we create a `./true.nix` file containing the
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following specification for the Dhall package:
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```nix
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# ./true.nix
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{ buildDhallPackage, Prelude }:
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buildDhallPackage {
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name = "true";
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code = ./true.dhall;
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dependencies = [ Prelude ];
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source = true;
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}
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```
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… and we complete the build by incorporating that Dhall package into the
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`pkgs.dhallPackages` hierarchy using an overlay, like this:
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```nix
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# ./example.nix
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let
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nixpkgs = builtins.fetchTarball {
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url = "https://github.com/NixOS/nixpkgs/archive/94b2848559b12a8ed1fe433084686b2a81123c99.tar.gz";
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sha256 = "1pbl4c2dsaz2lximgd31m96jwbps6apn3anx8cvvhk1gl9rkg107";
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};
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dhallOverlay = self: super: {
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true = self.callPackage ./true.nix { };
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};
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overlay = self: super: {
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dhallPackages = super.dhallPackages.override (old: {
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overrides =
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self.lib.composeExtensions (old.overrides or (_: _: {})) dhallOverlay;
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});
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};
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pkgs = import nixpkgs { config = {}; overlays = [ overlay ]; };
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in
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pkgs
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```
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… which we can then build using this command:
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```ShellSession
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$ nix build --file ./example.nix dhallPackages.true
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```
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## Contents of a Dhall package {#ssec-dhall-package-contents}
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The above package produces the following directory tree:
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```ShellSession
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$ tree -a ./result
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result
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├── .cache
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│ └── dhall
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│ └── 122027abdeddfe8503496adeb623466caa47da5f63abd2bc6fa19f6cfcb73ecfed70
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├── binary.dhall
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└── source.dhall
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```
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… where:
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* `source.dhall` contains the result of interpreting our Dhall package:
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```ShellSession
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$ cat ./result/source.dhall
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True
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```
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* The `.cache` subdirectory contains one binary cache product encoding the
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same result as `source.dhall`:
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```ShellSession
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$ dhall decode < ./result/.cache/dhall/122027abdeddfe8503496adeb623466caa47da5f63abd2bc6fa19f6cfcb73ecfed70
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True
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```
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* `binary.dhall` contains a Dhall expression which handles fetching and decoding
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the same cache product:
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```ShellSession
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$ cat ./result/binary.dhall
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missing sha256:27abdeddfe8503496adeb623466caa47da5f63abd2bc6fa19f6cfcb73ecfed70
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$ cp -r ./result/.cache .cache
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$ chmod -R u+w .cache
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$ XDG_CACHE_HOME=.cache dhall --file ./result/binary.dhall
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True
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```
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The `source.dhall` file is only present for packages that specify
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`source = true;`. By default, Dhall packages omit the `source.dhall` in order
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to conserve disk space when they are used exclusively as dependencies. For
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example, if we build the Prelude package it will only contain the binary
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encoding of the expression:
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```ShellSession
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$ nix build --file ./example.nix dhallPackages.Prelude
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$ tree -a result
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result
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├── .cache
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│ └── dhall
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│ └── 122026b0ef498663d269e4dc6a82b0ee289ec565d683ef4c00d0ebdd25333a5a3c98
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└── binary.dhall
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2 directories, 2 files
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```
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Typically, you only specify `source = true;` for the top-level Dhall expression
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of interest (such as our example `true.nix` Dhall package). However, if you
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wish to specify `source = true` for all Dhall packages, then you can amend the
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Dhall overlay like this:
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```nix
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dhallOverrides = self: super: {
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# Enable source for all Dhall packages
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buildDhallPackage =
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args: super.buildDhallPackage (args // { source = true; });
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true = self.callPackage ./true.nix { };
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};
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```
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… and now the Prelude will contain the fully decoded result of interpreting
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the Prelude:
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```ShellSession
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$ nix build --file ./example.nix dhallPackages.Prelude
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$ tree -a result
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result
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├── .cache
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│ └── dhall
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│ └── 122026b0ef498663d269e4dc6a82b0ee289ec565d683ef4c00d0ebdd25333a5a3c98
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├── binary.dhall
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└── source.dhall
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$ cat ./result/source.dhall
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{ Bool =
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{ and =
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\(_ : List Bool) ->
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List/fold Bool _ Bool (\(_ : Bool) -> \(_ : Bool) -> _@1 && _) True
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, build = \(_ : Type -> _ -> _@1 -> _@2) -> _ Bool True False
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, even =
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\(_ : List Bool) ->
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List/fold Bool _ Bool (\(_ : Bool) -> \(_ : Bool) -> _@1 == _) True
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, fold =
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\(_ : Bool) ->
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…
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```
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## Packaging functions {#ssec-dhall-packaging-functions}
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We already saw an example of using `buildDhallPackage` to create a Dhall
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package from a single file, but most Dhall packages consist of more than one
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file and there are two derived utilities that you may find more useful when
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packaging multiple files:
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* `buildDhallDirectoryPackage` - build a Dhall package from a local directory
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* `buildDhallGitHubPackage` - build a Dhall package from a GitHub repository
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The `buildDhallPackage` is the lowest-level function and accepts the following
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arguments:
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* `name`: The name of the derivation
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* `dependencies`: Dhall dependencies to build and cache ahead of time
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* `code`: The top-level expression to build for this package
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Note that the `code` field accepts an arbitrary Dhall expression. You're
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not limited to just a file.
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* `source`: Set to `true` to include the decoded result as `source.dhall` in the
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build product, at the expense of requiring more disk space
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* `documentationRoot`: Set to the root directory of the package if you want
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`dhall-docs` to generate documentation underneath the `docs` subdirectory of
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the build product
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The `buildDhallDirectoryPackage` is a higher-level function implemented in terms
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of `buildDhallPackage` that accepts the following arguments:
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* `name`: Same as `buildDhallPackage`
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* `dependencies`: Same as `buildDhallPackage`
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* `source`: Same as `buildDhallPackage`
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* `src`: The directory containing Dhall code that you want to turn into a Dhall
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package
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* `file`: The top-level file (`package.dhall` by default) that is the entrypoint
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to the rest of the package
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* `document`: Set to `true` to generate documentation for the package
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The `buildDhallGitHubPackage` is another higher-level function implemented in
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terms of `buildDhallPackage` that accepts the following arguments:
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* `name`: Same as `buildDhallPackage`
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* `dependencies`: Same as `buildDhallPackage`
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* `source`: Same as `buildDhallPackage`
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* `owner`: The owner of the repository
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* `repo`: The repository name
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* `rev`: The desired revision (or branch, or tag)
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* `directory`: The subdirectory of the Git repository to package (if a
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directory other than the root of the repository)
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* `file`: The top-level file (`${directory}/package.dhall` by default) that is
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the entrypoint to the rest of the package
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* `document`: Set to `true` to generate documentation for the package
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Additionally, `buildDhallGitHubPackage` accepts the same arguments as
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`fetchFromGitHub`, such as `sha256` or `fetchSubmodules`.
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## `dhall-to-nixpkgs` {#ssec-dhall-dhall-to-nixpkgs}
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You can use the `dhall-to-nixpkgs` command-line utility to automate
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packaging Dhall code. For example:
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```ShellSession
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$ nix-env --install --attr haskellPackages.dhall-nixpkgs
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$ nix-env --install --attr nix-prefetch-git # Used by dhall-to-nixpkgs
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$ dhall-to-nixpkgs github https://github.com/Gabriel439/dhall-semver.git
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{ buildDhallGitHubPackage, Prelude }:
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buildDhallGitHubPackage {
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name = "dhall-semver";
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githubBase = "github.com";
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owner = "Gabriel439";
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repo = "dhall-semver";
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rev = "2d44ae605302ce5dc6c657a1216887fbb96392a4";
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fetchSubmodules = false;
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sha256 = "0y8shvp8srzbjjpmnsvz9c12ciihnx1szs0yzyi9ashmrjvd0jcz";
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directory = "";
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file = "package.dhall";
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source = false;
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document = false;
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dependencies = [ (Prelude.overridePackage { file = "package.dhall"; }) ];
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}
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```
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The utility takes care of automatically detecting remote imports and converting
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them to package dependencies. You can also use the utility on local
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Dhall directories, too:
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```ShellSession
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$ dhall-to-nixpkgs directory ~/proj/dhall-semver
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{ buildDhallDirectoryPackage, Prelude }:
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buildDhallDirectoryPackage {
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name = "proj";
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src = ~/proj/dhall-semver;
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file = "package.dhall";
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source = false;
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document = false;
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dependencies = [ (Prelude.overridePackage { file = "package.dhall"; }) ];
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}
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```
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### Remote imports as fixed-output derivations {#ssec-dhall-remote-imports-as-fod}
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`dhall-to-nixpkgs` has the ability to fetch and build remote imports as
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fixed-output derivations by using their Dhall integrity check. This is
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sometimes easier than manually packaging all remote imports.
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This can be used like the following:
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```ShellSession
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$ dhall-to-nixpkgs directory --fixed-output-derivations ~/proj/dhall-semver
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{ buildDhallDirectoryPackage, buildDhallUrl }:
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buildDhallDirectoryPackage {
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name = "proj";
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src = ~/proj/dhall-semver;
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file = "package.dhall";
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source = false;
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document = false;
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dependencies = [
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(buildDhallUrl {
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url = "https://prelude.dhall-lang.org/v17.0.0/package.dhall";
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hash = "sha256-ENs8kZwl6QRoM9+Jeo/+JwHcOQ+giT2VjDQwUkvlpD4=";
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dhallHash = "sha256:10db3c919c25e9046833df897a8ffe2701dc390fa0893d958c3430524be5a43e";
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})
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];
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}
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```
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Here, `dhall-semver`'s `Prelude` dependency is fetched and built with the
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`buildDhallUrl` helper function, instead of being passed in as a function
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argument.
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## Overriding dependency versions {#ssec-dhall-overriding-dependency-versions}
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Suppose that we change our `true.dhall` example expression to depend on an older
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version of the Prelude (19.0.0):
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```dhall
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-- ./true.dhall
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let Prelude =
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https://prelude.dhall-lang.org/v19.0.0/package.dhall
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sha256:eb693342eb769f782174157eba9b5924cf8ac6793897fc36a31ccbd6f56dafe2
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in Prelude.Bool.not False
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```
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If we try to rebuild that expression the build will fail:
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```ShellSession
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$ nix build --file ./example.nix dhallPackages.true
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builder for '/nix/store/0f1hla7ff1wiaqyk1r2ky4wnhnw114fi-true.drv' failed with exit code 1; last 10 log lines:
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Dhall was compiled without the 'with-http' flag.
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The requested URL was: https://prelude.dhall-lang.org/v19.0.0/package.dhall
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4│ https://prelude.dhall-lang.org/v19.0.0/package.dhall
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5│ sha256:eb693342eb769f782174157eba9b5924cf8ac6793897fc36a31ccbd6f56dafe2
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/nix/store/rsab4y99h14912h4zplqx2iizr5n4rc2-true.dhall:4:7
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[1 built (1 failed), 0.0 MiB DL]
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error: build of '/nix/store/0f1hla7ff1wiaqyk1r2ky4wnhnw114fi-true.drv' failed
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```
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… because the default Prelude selected by Nixpkgs revision
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`94b2848559b12a8ed1fe433084686b2a81123c99is` is version 20.1.0, which doesn't
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have the same integrity check as version 19.0.0. This means that version
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19.0.0 is not cached and the interpreter is not allowed to fall back to
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importing the URL.
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However, we can override the default Prelude version by using `dhall-to-nixpkgs`
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to create a Dhall package for our desired Prelude:
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```ShellSession
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$ dhall-to-nixpkgs github https://github.com/dhall-lang/dhall-lang.git \
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--name Prelude \
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--directory Prelude \
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--rev v19.0.0 \
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> Prelude.nix
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```
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… and then referencing that package in our Dhall overlay, by either overriding
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the Prelude globally for all packages, like this:
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```nix
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dhallOverrides = self: super: {
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true = self.callPackage ./true.nix { };
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Prelude = self.callPackage ./Prelude.nix { };
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};
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```
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… or selectively overriding the Prelude dependency for just the `true` package,
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like this:
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```nix
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dhallOverrides = self: super: {
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true = self.callPackage ./true.nix {
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Prelude = self.callPackage ./Prelude.nix { };
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};
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};
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```
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## Overrides {#ssec-dhall-overrides}
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You can override any of the arguments to `buildDhallGitHubPackage` or
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`buildDhallDirectoryPackage` using the `overridePackage` attribute of a package.
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For example, suppose we wanted to selectively enable `source = true` just for the Prelude. We can do that like this:
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```nix
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dhallOverrides = self: super: {
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Prelude = super.Prelude.overridePackage { source = true; };
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…
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};
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```
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[semantic-integrity-checks]: https://docs.dhall-lang.org/tutorials/Language-Tour.html#installing-packages
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