forked from auxolotl/core
add WIP trivial
This commit is contained in:
parent
0911efe6d2
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6ce2f22854
593
nodes/1_lib/source/detangled/WIP_trivial.nix
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593
nodes/1_lib/source/detangled/WIP_trivial.nix
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@ -0,0 +1,593 @@
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let
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foundation = import ./detangled/1_foundation.nix;
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static = import ./detangled/2_static.nix;
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# FIXME: this file is currently broken because it depends on the following:
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# lib.pathIsGitRepo
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# lib.commitIdFromGitRepo
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# lib.fileContents
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# lib.subtractLists
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# lib.concatMapStrings
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in
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let
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isFunction = foundation.isFunction;
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functionArgs = foundation.functionArgs;
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in {
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# Pull in some builtins for backwards compatibility (ideally would be deprecated and people would use lib.builtins.THING)
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pathExists = builtins.pathExists;
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readFile = builtins.readFile;
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isBool = builtins.isBool;
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isInt = builtins.isInt;
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isFloat = builtins.isFloat;
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add = builtins.add;
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sub = builtins.sub;
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lessThan = builtins.lessThan;
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seq = builtins.seq;
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deepSeq = builtins.deepSeq;
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genericClosure = builtins.genericClosure;
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bitAnd = builtins.bitAnd;
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bitOr = builtins.bitOr;
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bitXor = builtins.bitXor;
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# static stuff
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release = static.setup.release;
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codeName = static.setup.codeName;
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versionSuffix = static.setup.versionSuffix;
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oldestSupportedRelease = static.setup.oldestSupportedRelease;
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version = static.setup.release + static.setup.versionSuffix;
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# helpers that are from foundation
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functionArgs = foundation.functionArgs;
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isFunction = foundation.isFunction;
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setFunctionArgs = foundation.setFunctionArgs;
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warn = foundation.warn;
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throwIfNot = foundation.throwIfNot;
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id = foundation.id;
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const = foundation.const;
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pipe = foundation.pipe;
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concat = foundation.concat;
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and = foundation.and;
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xor = foundation.xor;
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bitNot = foundation.bitNot;
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boolToString = foundation.boolToString;
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mergeAttrs = foundation.mergeAttrs;
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flip = foundation.flip;
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mapNullable = foundation.mapNullable;
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or = foundation.logicalOr; # different name mapping because of "or" being a keyword
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/**
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Whether a feature is supported in all supported releases (at the time of
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release branch-off, if applicable). See `oldestSupportedRelease`.
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# Inputs
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`release`
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: Release number of feature introduction as an integer, e.g. 2111 for 21.11.
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Set it to the upcoming release, matching the nixpkgs/.version file.
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*/
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isInOldestRelease =
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release:
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release <= static.setup.oldestSupportedRelease;
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/**
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Attempts to return the the current revision of nixpkgs and
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returns the supplied default value otherwise.
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# Inputs
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`default`
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: Default value to return if revision can not be determined
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# Type
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```
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revisionWithDefault :: string -> string
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```
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*/
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revisionWithDefault =
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default:
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let
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revisionFile = "${toString ./..}/.git-revision";
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gitRepo = "${toString ./..}/.git";
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in if lib.pathIsGitRepo gitRepo
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then lib.commitIdFromGitRepo gitRepo
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else if builtins.pathExists revisionFile then lib.fileContents revisionFile
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else default;
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nixpkgsVersion = foundation.warn "lib.nixpkgsVersion is a deprecated alias of lib.version." (static.setup.release + static.setup.versionSuffix);
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/**
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Determine whether the function is being called from inside a Nix
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shell.
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# Type
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```
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inNixShell :: bool
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```
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*/
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inNixShell = builtins.getEnv "IN_NIX_SHELL" != "";
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/**
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Determine whether the function is being called from inside pure-eval mode
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by seeing whether `builtins` contains `currentSystem`. If not, we must be in
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pure-eval mode.
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# Type
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```
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inPureEvalMode :: bool
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```
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*/
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inPureEvalMode = ! builtins ? currentSystem;
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## Integer operations
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/**
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Return minimum of two numbers.
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# Inputs
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`x`
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: 1\. Function argument
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`y`
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: 2\. Function argument
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*/
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min = x: y: if x < y then x else y;
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/**
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Return maximum of two numbers.
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# Inputs
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`x`
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: 1\. Function argument
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`y`
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: 2\. Function argument
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*/
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max = x: y: if x > y then x else y;
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/**
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Integer modulus
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# Inputs
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`base`
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: 1\. Function argument
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`int`
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: 2\. Function argument
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# Examples
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:::{.example}
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## `lib.trivial.mod` usage example
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```nix
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mod 11 10
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=> 1
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mod 1 10
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=> 1
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```
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:::
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*/
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mod = base: int: base - (int * (builtins.div base int));
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## Comparisons
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/**
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C-style comparisons
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a < b, compare a b => -1
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a == b, compare a b => 0
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a > b, compare a b => 1
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# Inputs
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`a`
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: 1\. Function argument
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`b`
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: 2\. Function argument
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*/
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compare = a: b:
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if a < b
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then -1
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else if a > b
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then 1
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else 0;
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/**
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Split type into two subtypes by predicate `p`, take all elements
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of the first subtype to be less than all the elements of the
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second subtype, compare elements of a single subtype with `yes`
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and `no` respectively.
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# Inputs
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`p`
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: Predicate
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`yes`
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: Comparison function if predicate holds for both values
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`no`
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: Comparison function if predicate holds for neither value
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`a`
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: First value to compare
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`b`
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: Second value to compare
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# Type
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```
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(a -> bool) -> (a -> a -> int) -> (a -> a -> int) -> (a -> a -> int)
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```
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# Examples
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:::{.example}
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## `lib.trivial.splitByAndCompare` usage example
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```nix
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let cmp = splitByAndCompare (hasPrefix "foo") compare compare; in
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cmp "a" "z" => -1
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cmp "fooa" "fooz" => -1
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cmp "f" "a" => 1
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cmp "fooa" "a" => -1
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# while
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compare "fooa" "a" => 1
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```
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:::
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*/
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splitByAndCompare =
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p: yes: no: a: b:
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if p a
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then if p b then yes a b else -1
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else if p b then 1 else no a b;
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/**
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Reads a JSON file.
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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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importJSON :: path -> any
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```
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*/
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importJSON = path:
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builtins.fromJSON (builtins.readFile path);
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/**
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Reads a TOML file.
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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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importTOML :: path -> any
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```
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*/
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importTOML = path:
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builtins.fromTOML (builtins.readFile path);
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## Warnings
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/**
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Like warn, but only warn when the first argument is `true`.
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# Inputs
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`cond`
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: 1\. Function argument
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`msg`
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: 2\. Function argument
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`val`
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: Value to return as-is.
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# Type
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```
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bool -> string -> a -> a
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```
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*/
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warnIf = cond: msg: if cond then warn msg else x: x;
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/**
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Like warnIf, but negated (warn if the first argument is `false`).
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# Inputs
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`cond`
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: 1\. Function argument
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`msg`
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: 2\. Function argument
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`val`
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: Value to return as-is.
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# Type
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```
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bool -> string -> a -> a
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```
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*/
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warnIfNot = cond: msg: if cond then x: x else warn msg;
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/**
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Like throwIfNot, but negated (throw if the first argument is `true`).
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# Inputs
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`cond`
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: 1\. Function argument
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`msg`
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: 2\. Function argument
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# Type
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```
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bool -> string -> a -> a
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```
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*/
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throwIf = cond: msg: if cond then throw msg else x: x;
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/**
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Check if the elements in a list are valid values from a enum, returning the identity function, or throwing an error message otherwise.
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# Inputs
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`msg`
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: 1\. Function argument
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`valid`
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: 2\. Function argument
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`given`
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: 3\. Function argument
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# Type
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```
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String -> List ComparableVal -> List ComparableVal -> a -> a
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```
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# Examples
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:::{.example}
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## `lib.trivial.checkListOfEnum` usage example
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```nix
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let colorVariants = ["bright" "dark" "black"]
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in checkListOfEnum "color variants" [ "standard" "light" "dark" ] colorVariants;
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=>
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error: color variants: bright, black unexpected; valid ones: standard, light, dark
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```
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:::
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*/
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checkListOfEnum = msg: valid: given:
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let
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unexpected = lib.subtractLists valid given;
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in
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foundation.throwIfNot (unexpected == [])
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"${msg}: ${builtins.concatStringsSep ", " (builtins.map builtins.toString unexpected)} unexpected; valid ones: ${builtins.concatStringsSep ", " (builtins.map builtins.toString valid)}";
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info = msg: builtins.trace "INFO: ${msg}";
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showWarnings = warnings: res: foundation.foldr (w: x: warn w x) res warnings;
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## Function annotations
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/**
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`mirrorFunctionArgs f g` creates a new function `g'` with the same behavior as `g` (`g' x == g x`)
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but its function arguments mirroring `f` (`lib.functionArgs g' == lib.functionArgs f`).
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# Inputs
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`f`
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: Function to provide the argument metadata
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`g`
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: Function to set the argument metadata to
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# Type
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```
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mirrorFunctionArgs :: (a -> b) -> (a -> c) -> (a -> c)
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```
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# Examples
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:::{.example}
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## `lib.trivial.mirrorFunctionArgs` usage example
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```nix
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addab = {a, b}: a + b
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addab { a = 2; b = 4; }
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=> 6
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lib.functionArgs addab
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=> { a = false; b = false; }
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addab1 = attrs: addab attrs + 1
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addab1 { a = 2; b = 4; }
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=> 7
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lib.functionArgs addab1
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=> { }
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addab1' = lib.mirrorFunctionArgs addab addab1
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addab1' { a = 2; b = 4; }
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=> 7
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lib.functionArgs addab1'
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=> { a = false; b = false; }
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```
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:::
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*/
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mirrorFunctionArgs =
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f:
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let
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fArgs = foundation.functionArgs f;
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in
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g:
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foundation.setFunctionArgs g fArgs;
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/**
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Turns any non-callable values into constant functions.
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Returns callable values as is.
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# Inputs
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`v`
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: Any value
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# Examples
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:::{.example}
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## `lib.trivial.toFunction` usage example
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```nix
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nix-repl> lib.toFunction 1 2
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1
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nix-repl> lib.toFunction (x: x + 1) 2
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3
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```
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:::
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*/
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toFunction =
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v:
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if foundation.isFunction v
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then v
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else k: v;
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/**
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`toBaseDigits base i` converts the positive integer i to a list of its
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digits in the given base. For example:
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toBaseDigits 10 123 => [ 1 2 3 ]
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toBaseDigits 2 6 => [ 1 1 0 ]
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toBaseDigits 16 250 => [ 15 10 ]
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# Inputs
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`base`
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: 1\. Function argument
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`i`
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: 2\. Function argument
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*/
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toBaseDigits = base: i:
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let
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go = i:
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if i < base
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then [i]
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else
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let
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r = i - ((i / base) * base);
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q = (i - r) / base;
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in
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[r] ++ go q;
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in
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assert (builtin.isInt base);
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assert (builtin.isInt i);
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assert (base >= 2);
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assert (i >= 0);
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foundation.reverseList (go i);
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/**
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Convert the given positive integer to a string of its hexadecimal
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representation. For example:
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toHexString 0 => "0"
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toHexString 16 => "10"
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toHexString 250 => "FA"
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*/
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toHexString = let
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hexDigits = {
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"10" = "A";
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"11" = "B";
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"12" = "C";
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"13" = "D";
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"14" = "E";
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"15" = "F";
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};
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toHexDigit = d:
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if d < 10
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then toString d
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else hexDigits.${toString d};
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in i: lib.concatMapStrings toHexDigit (toBaseDigits 16 i);
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}
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