fe6c1539cc
$ ./benchmark.sh HEAD [...] Mean CPU time 0.04006 (σ = 0.0040146) for 10 runs is 8.193619775953792% (σ = 0.9584251052704821%) of the old value 0.488917 (σ = 0.0294955) [...]
385 lines
14 KiB
Nix
385 lines
14 KiB
Nix
{ lib ? import ../. }:
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let
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inherit (builtins)
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isAttrs
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isPath
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isString
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pathExists
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readDir
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typeOf
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split
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;
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inherit (lib.attrsets)
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attrValues
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mapAttrs
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setAttrByPath
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zipAttrsWith
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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.lists)
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all
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commonPrefix
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drop
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elemAt
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filter
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findFirstIndex
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foldl'
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head
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length
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sublist
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tail
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;
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inherit (lib.path)
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append
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splitRoot
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;
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inherit (lib.path.subpath)
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components
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join
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;
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inherit (lib.strings)
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isStringLike
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concatStringsSep
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substring
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stringLength
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;
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in
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# Rare case of justified usage of rec:
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# - This file is internal, so the return value doesn't matter, no need to make things overridable
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# - The functions depend on each other
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# - We want to expose all of these functions for easy testing
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rec {
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# If you change the internal representation, make sure to:
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# - Increment this version
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# - Add an additional migration function below
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# - Update the description of the internal representation in ./README.md
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_currentVersion = 2;
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# Migrations between versions. The 0th element converts from v0 to v1, and so on
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migrations = [
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# Convert v0 into v1: Add the _internalBase{Root,Components} attributes
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(
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filesetV0:
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let
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parts = splitRoot filesetV0._internalBase;
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in
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filesetV0 // {
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_internalVersion = 1;
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_internalBaseRoot = parts.root;
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_internalBaseComponents = components parts.subpath;
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}
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)
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# Convert v1 into v2: filesetTree's can now also omit attributes to signal paths not being included
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(
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filesetV1:
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# This change is backwards compatible (but not forwards compatible, so we still need a new version)
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filesetV1 // {
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_internalVersion = 2;
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}
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)
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];
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# Create a fileset, see ./README.md#fileset
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# Type: path -> filesetTree -> fileset
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_create = base: tree:
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let
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# Decompose the base into its components
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# See ../path/README.md for why we're not just using `toString`
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parts = splitRoot base;
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in
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{
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_type = "fileset";
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_internalVersion = _currentVersion;
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_internalBase = base;
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_internalBaseRoot = parts.root;
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_internalBaseComponents = components parts.subpath;
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_internalTree = tree;
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# Double __ to make it be evaluated and ordered first
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__noEval = throw ''
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lib.fileset: Directly evaluating a file set is not supported. Use `lib.fileset.toSource` to turn it into a usable source instead.'';
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};
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# Coerce a value to a fileset, erroring when the value cannot be coerced.
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# The string gives the context for error messages.
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# Type: String -> (fileset | Path) -> fileset
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_coerce = context: value:
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if value._type or "" == "fileset" then
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if value._internalVersion > _currentVersion then
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throw ''
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${context} is a file set created from a future version of the file set library with a different internal representation:
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- Internal version of the file set: ${toString value._internalVersion}
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- Internal version of the library: ${toString _currentVersion}
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Make sure to update your Nixpkgs to have a newer version of `lib.fileset`.''
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else if value._internalVersion < _currentVersion then
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let
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# Get all the migration functions necessary to convert from the old to the current version
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migrationsToApply = sublist value._internalVersion (_currentVersion - value._internalVersion) migrations;
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in
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foldl' (value: migration: migration value) value migrationsToApply
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else
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value
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else if ! isPath value then
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if isStringLike value then
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throw ''
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${context} "${toString value}" is a string-like value, but it should be a path instead.
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Paths represented as strings are not supported by `lib.fileset`, use `lib.sources` or derivations instead.''
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else
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throw ''
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${context} is of type ${typeOf value}, but it should be a path instead.''
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else if ! pathExists value then
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throw ''
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${context} ${toString value} does not exist.''
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else
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_singleton value;
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# Coerce many values to filesets, erroring when any value cannot be coerced,
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# or if the filesystem root of the values doesn't match.
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# Type: String -> [ { context :: String, value :: fileset | Path } ] -> [ fileset ]
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_coerceMany = functionContext: list:
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let
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filesets = map ({ context, value }:
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_coerce "${functionContext}: ${context}" value
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) list;
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firstBaseRoot = (head filesets)._internalBaseRoot;
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# Finds the first element with a filesystem root different than the first element, if any
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differentIndex = findFirstIndex (fileset:
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firstBaseRoot != fileset._internalBaseRoot
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) null filesets;
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in
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if differentIndex != null then
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throw ''
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${functionContext}: Filesystem roots are not the same:
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${(head list).context}: root "${toString firstBaseRoot}"
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${(elemAt list differentIndex).context}: root "${toString (elemAt filesets differentIndex)._internalBaseRoot}"
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Different roots are not supported.''
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else
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filesets;
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# Create a file set from a path.
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# Type: Path -> fileset
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_singleton = path:
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let
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type = pathType path;
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in
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if type == "directory" then
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_create path type
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else
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# This turns a file path ./default.nix into a fileset with
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# - _internalBase: ./.
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# - _internalTree: {
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# "default.nix" = <type>;
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# }
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# See ./README.md#single-files
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_create (dirOf path)
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{
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${baseNameOf path} = type;
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};
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# Expand a directory representation to an equivalent one in attribute set form.
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# All directory entries are included in the result.
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# Type: Path -> filesetTree -> { <name> = filesetTree; }
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_directoryEntries = path: value:
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if value == "directory" then
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readDir path
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else
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# Set all entries not present to null
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mapAttrs (name: value: null) (readDir path)
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// value;
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/*
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Simplify a filesetTree recursively:
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- Replace all directories that have no files with `null`
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This removes directories that would be empty
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- Replace all directories with all files with `"directory"`
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This speeds up the source filter function
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Note that this function is strict, it evaluates the entire tree
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Type: Path -> filesetTree -> filesetTree
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*/
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_simplifyTree = path: tree:
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if tree == "directory" || isAttrs tree then
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let
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entries = _directoryEntries path tree;
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simpleSubtrees = mapAttrs (name: _simplifyTree (path + "/${name}")) entries;
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subtreeValues = attrValues simpleSubtrees;
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in
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# This triggers either when all files in a directory are filtered out
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# Or when the directory doesn't contain any files at all
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if all isNull subtreeValues then
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null
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# Triggers when we have the same as a `readDir path`, so we can turn it back into an equivalent "directory".
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else if all isString subtreeValues then
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"directory"
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else
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simpleSubtrees
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else
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tree;
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# Turn a fileset into a source filter function suitable for `builtins.path`
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# Only directories recursively containing at least one files are recursed into
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# Type: Path -> fileset -> (String -> String -> Bool)
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_toSourceFilter = fileset:
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let
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# Simplify the tree, necessary to make sure all empty directories are null
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# which has the effect that they aren't included in the result
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tree = _simplifyTree fileset._internalBase fileset._internalTree;
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# The base path as a string with a single trailing slash
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baseString =
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if fileset._internalBaseComponents == [] then
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# Need to handle the filesystem root specially
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"/"
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else
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"/" + concatStringsSep "/" fileset._internalBaseComponents + "/";
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baseLength = stringLength baseString;
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# Check whether a list of path components under the base path exists in the tree.
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# This function is called often, so it should be fast.
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# Type: [ String ] -> Bool
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inTree = components:
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let
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recurse = index: localTree:
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if isAttrs localTree then
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# We have an attribute set, meaning this is a directory with at least one file
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if index >= length components then
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# The path may have no more components though, meaning the filter is running on the directory itself,
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# so we always include it, again because there's at least one file in it.
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true
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else
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# If we do have more components, the filter runs on some entry inside this directory, so we need to recurse
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# We do +2 because builtins.split is an interleaved list of the inbetweens and the matches
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recurse (index + 2) localTree.${elemAt components index}
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else
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# If it's not an attribute set it can only be either null (in which case it's not included)
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# or a string ("directory" or "regular", etc.) in which case it's included
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localTree != null;
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in recurse 0 tree;
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# Filter suited when there's no files
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empty = _: _: false;
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# Filter suited when there's some files
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# This can't be used for when there's no files, because the base directory is always included
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nonEmpty =
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path: _:
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let
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# Add a slash to the path string, turning "/foo" to "/foo/",
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# making sure to not have any false prefix matches below.
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# Note that this would produce "//" for "/",
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# but builtins.path doesn't call the filter function on the `path` argument itself,
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# meaning this function can never receive "/" as an argument
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pathSlash = path + "/";
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in
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# Same as `hasPrefix pathSlash baseString`, but more efficient.
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# With base /foo/bar we need to include /foo:
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# hasPrefix "/foo/" "/foo/bar/"
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if substring 0 (stringLength pathSlash) baseString == pathSlash then
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true
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# Same as `! hasPrefix baseString pathSlash`, but more efficient.
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# With base /foo/bar we need to exclude /baz
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# ! hasPrefix "/baz/" "/foo/bar/"
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else if substring 0 baseLength pathSlash != baseString then
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false
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else
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# Same as `removePrefix baseString path`, but more efficient.
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# From the above code we know that hasPrefix baseString pathSlash holds, so this is safe.
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# We don't use pathSlash here because we only needed the trailing slash for the prefix matching.
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# With base /foo and path /foo/bar/baz this gives
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# inTree (split "/" (removePrefix "/foo/" "/foo/bar/baz"))
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# == inTree (split "/" "bar/baz")
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# == inTree [ "bar" "baz" ]
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inTree (split "/" (substring baseLength (-1) path));
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in
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# Special case because the code below assumes that the _internalBase is always included in the result
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# which shouldn't be done when we have no files at all in the base
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# This also forces the tree before returning the filter, leads to earlier error messages
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if tree == null then
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empty
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else
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nonEmpty;
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# Computes the union of a list of filesets.
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# The filesets must already be coerced and validated to be in the same filesystem root
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# Type: [ Fileset ] -> Fileset
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_unionMany = filesets:
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let
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first = head filesets;
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# To be able to union filesetTree's together, they need to have the same base path.
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# Base paths can be unioned by taking their common prefix,
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# e.g. such that `union /foo/bar /foo/baz` has the base path `/foo`
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# A list of path components common to all base paths.
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# Note that commonPrefix can only be fully evaluated,
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# so this cannot cause a stack overflow due to a build-up of unevaluated thunks.
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commonBaseComponents = foldl'
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(components: el: commonPrefix components el._internalBaseComponents)
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first._internalBaseComponents
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# We could also not do the `tail` here to avoid a list allocation,
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# but then we'd have to pay for a potentially expensive
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# but unnecessary `commonPrefix` call
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(tail filesets);
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# The common base path assembled from a filesystem root and the common components
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commonBase = append first._internalBaseRoot (join commonBaseComponents);
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# The number of path components common to all base paths
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commonBaseComponentsCount = length commonBaseComponents;
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# A list of filesetTree's that all have the same base path
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# This is achieved by nesting the trees into the components they have over the common base path
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# E.g. `union /foo/bar /foo/baz` has the base path /foo
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# So the tree under `/foo/bar` gets nested under `{ bar = ...; ... }`,
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# while the tree under `/foo/baz` gets nested under `{ baz = ...; ... }`
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# Therefore allowing combined operations over them.
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trees = map (fileset:
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setAttrByPath
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(drop commonBaseComponentsCount fileset._internalBaseComponents)
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fileset._internalTree
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) filesets;
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# Folds all trees together into a single one using _unionTree
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# We do not use a fold here because it would cause a thunk build-up
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# which could cause a stack overflow for a large number of trees
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resultTree = _unionTrees trees;
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in
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_create commonBase resultTree;
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# The union of multiple filesetTree's with the same base path.
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# Later elements are only evaluated if necessary.
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# Type: [ filesetTree ] -> filesetTree
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_unionTrees = trees:
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let
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stringIndex = findFirstIndex isString null trees;
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withoutNull = filter (tree: tree != null) trees;
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in
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if stringIndex != null then
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# If there's a string, it's always a fully included tree (dir or file),
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# no need to look at other elements
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elemAt trees stringIndex
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else if withoutNull == [ ] then
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# If all trees are null, then the resulting tree is also null
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null
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else
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# The non-null elements have to be attribute sets representing partial trees
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# We need to recurse into those
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zipAttrsWith (name: _unionTrees) withoutNull;
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}
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