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b5af504a3d
* doc: migrate lib.filesystem to doc-comment format * defintion list fixes lib/filesystem.nix Co-authored-by: Daniel Sidhion <DanielSidhion@users.noreply.github.com> --------- Co-authored-by: Daniel Sidhion <DanielSidhion@users.noreply.github.com>
412 lines
9.4 KiB
Nix
412 lines
9.4 KiB
Nix
/**
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Functions for querying information about the filesystem
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without copying any files to the Nix store.
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*/
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{ lib }:
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# Tested in lib/tests/filesystem.sh
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let
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inherit (builtins)
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readDir
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pathExists
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toString
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;
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inherit (lib.attrsets)
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mapAttrs'
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filterAttrs
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;
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inherit (lib.filesystem)
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pathType
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;
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inherit (lib.strings)
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hasSuffix
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removeSuffix
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;
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in
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{
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/**
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The type of a path. The path needs to exist and be accessible.
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The result is either "directory" for a directory, "regular" for a regular file, "symlink" for a symlink, or "unknown" for anything else.
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# Inputs
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path
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: The path to query
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# Type
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```
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pathType :: Path -> String
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```
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# Examples
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:::{.example}
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## `lib.filesystem.pathType` usage example
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```nix
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pathType /.
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=> "directory"
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pathType /some/file.nix
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=> "regular"
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```
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:::
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*/
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pathType =
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builtins.readFileType or
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# Nix <2.14 compatibility shim
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(path:
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if ! pathExists path
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# Fail irrecoverably to mimic the historic behavior of this function and
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# the new builtins.readFileType
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then abort "lib.filesystem.pathType: Path ${toString path} does not exist."
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# The filesystem root is the only path where `dirOf / == /` and
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# `baseNameOf /` is not valid. We can detect this and directly return
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# "directory", since we know the filesystem root can't be anything else.
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else if dirOf path == path
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then "directory"
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else (readDir (dirOf path)).${baseNameOf path}
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);
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/**
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Whether a path exists and is a directory.
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# Inputs
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`path`
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: 1\. Function argument
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# Type
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```
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pathIsDirectory :: Path -> Bool
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```
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# Examples
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:::{.example}
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## `lib.filesystem.pathIsDirectory` usage example
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```nix
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pathIsDirectory /.
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=> true
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pathIsDirectory /this/does/not/exist
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=> false
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pathIsDirectory /some/file.nix
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=> false
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```
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:::
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*/
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pathIsDirectory = path:
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pathExists path && pathType path == "directory";
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/**
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Whether a path exists and is a regular file, meaning not a symlink or any other special file type.
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# Inputs
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`path`
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: 1\. Function argument
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# Type
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```
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pathIsRegularFile :: Path -> Bool
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```
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# Examples
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:::{.example}
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## `lib.filesystem.pathIsRegularFile` usage example
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```nix
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pathIsRegularFile /.
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=> false
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pathIsRegularFile /this/does/not/exist
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=> false
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pathIsRegularFile /some/file.nix
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=> true
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```
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:::
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*/
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pathIsRegularFile = path:
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pathExists path && pathType path == "regular";
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/**
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A map of all haskell packages defined in the given path,
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identified by having a cabal file with the same name as the
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directory itself.
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# Inputs
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`root`
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: The directory within to search
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# Type
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```
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Path -> Map String Path
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```
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*/
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haskellPathsInDir =
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root:
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let # Files in the root
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root-files = builtins.attrNames (builtins.readDir root);
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# Files with their full paths
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root-files-with-paths =
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map (file:
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{ name = file; value = root + "/${file}"; }
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) root-files;
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# Subdirectories of the root with a cabal file.
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cabal-subdirs =
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builtins.filter ({ name, value }:
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builtins.pathExists (value + "/${name}.cabal")
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) root-files-with-paths;
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in builtins.listToAttrs cabal-subdirs;
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/**
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Find the first directory containing a file matching 'pattern'
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upward from a given 'file'.
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Returns 'null' if no directories contain a file matching 'pattern'.
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# Inputs
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`pattern`
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: The pattern to search for
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`file`
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: The file to start searching upward from
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# Type
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```
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RegExp -> Path -> Nullable { path : Path; matches : [ MatchResults ]; }
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```
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*/
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locateDominatingFile =
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pattern:
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file:
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let go = path:
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let files = builtins.attrNames (builtins.readDir path);
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matches = builtins.filter (match: match != null)
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(map (builtins.match pattern) files);
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in
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if builtins.length matches != 0
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then { inherit path matches; }
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else if path == /.
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then null
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else go (dirOf path);
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parent = dirOf file;
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isDir =
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let base = baseNameOf file;
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type = (builtins.readDir parent).${base} or null;
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in file == /. || type == "directory";
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in go (if isDir then file else parent);
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/**
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Given a directory, return a flattened list of all files within it recursively.
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# Inputs
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`dir`
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: The path to recursively list
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# Type
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```
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Path -> [ Path ]
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```
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*/
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listFilesRecursive =
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dir:
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lib.flatten (lib.mapAttrsToList (name: type:
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if type == "directory" then
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lib.filesystem.listFilesRecursive (dir + "/${name}")
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else
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dir + "/${name}"
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) (builtins.readDir dir));
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/**
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Transform a directory tree containing package files suitable for
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`callPackage` into a matching nested attribute set of derivations.
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For a directory tree like this:
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```
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my-packages
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├── a.nix
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├── b.nix
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├── c
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│ ├── my-extra-feature.patch
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│ ├── package.nix
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│ └── support-definitions.nix
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└── my-namespace
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├── d.nix
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├── e.nix
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└── f
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└── package.nix
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```
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`packagesFromDirectoryRecursive` will produce an attribute set like this:
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```nix
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# packagesFromDirectoryRecursive {
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# callPackage = pkgs.callPackage;
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# directory = ./my-packages;
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# }
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{
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a = pkgs.callPackage ./my-packages/a.nix { };
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b = pkgs.callPackage ./my-packages/b.nix { };
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c = pkgs.callPackage ./my-packages/c/package.nix { };
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my-namespace = {
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d = pkgs.callPackage ./my-packages/my-namespace/d.nix { };
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e = pkgs.callPackage ./my-packages/my-namespace/e.nix { };
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f = pkgs.callPackage ./my-packages/my-namespace/f/package.nix { };
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};
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}
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```
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In particular:
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- If the input directory contains a `package.nix` file, then
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`callPackage <directory>/package.nix { }` is returned.
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- Otherwise, the input directory's contents are listed and transformed into
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an attribute set.
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- If a file name has the `.nix` extension, it is turned into attribute
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where:
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- The attribute name is the file name without the `.nix` extension
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- The attribute value is `callPackage <file path> { }`
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- Other files are ignored.
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- Directories are turned into an attribute where:
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- The attribute name is the name of the directory
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- The attribute value is the result of calling
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`packagesFromDirectoryRecursive { ... }` on the directory.
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As a result, directories with no `.nix` files (including empty
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directories) will be transformed into empty attribute sets.
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# Inputs
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Structured function argument
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: Attribute set containing the following attributes.
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Additional attributes are ignored.
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`callPackage`
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: `pkgs.callPackage`
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Type: `Path -> AttrSet -> a`
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`directory`
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: The directory to read package files from
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Type: `Path`
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# Type
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```
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packagesFromDirectoryRecursive :: AttrSet -> AttrSet
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```
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# Examples
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:::{.example}
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## `lib.filesystem.packagesFromDirectoryRecursive` usage example
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```nix
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packagesFromDirectoryRecursive {
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inherit (pkgs) callPackage;
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directory = ./my-packages;
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}
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=> { ... }
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lib.makeScope pkgs.newScope (
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self: packagesFromDirectoryRecursive {
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callPackage = self.callPackage;
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directory = ./my-packages;
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}
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)
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=> { ... }
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```
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:::
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*/
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packagesFromDirectoryRecursive =
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{
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callPackage,
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directory,
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...
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}:
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let
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# Determine if a directory entry from `readDir` indicates a package or
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# directory of packages.
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directoryEntryIsPackage = basename: type:
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type == "directory" || hasSuffix ".nix" basename;
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# List directory entries that indicate packages in the given `path`.
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packageDirectoryEntries = path:
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filterAttrs directoryEntryIsPackage (readDir path);
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# Transform a directory entry (a `basename` and `type` pair) into a
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# package.
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directoryEntryToAttrPair = subdirectory: basename: type:
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let
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path = subdirectory + "/${basename}";
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in
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if type == "regular"
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then
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{
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name = removeSuffix ".nix" basename;
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value = callPackage path { };
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}
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else
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if type == "directory"
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then
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{
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name = basename;
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value = packagesFromDirectory path;
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}
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else
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throw
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''
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lib.filesystem.packagesFromDirectoryRecursive: Unsupported file type ${type} at path ${toString subdirectory}
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'';
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# Transform a directory into a package (if there's a `package.nix`) or
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# set of packages (otherwise).
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packagesFromDirectory = path:
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let
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defaultPackagePath = path + "/package.nix";
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in
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if pathExists defaultPackagePath
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then callPackage defaultPackagePath { }
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else mapAttrs'
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(directoryEntryToAttrPair path)
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(packageDirectoryEntries path);
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in
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packagesFromDirectory directory;
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}
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