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lib.lists.ifilter0: init
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@ -89,7 +89,7 @@ let
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recurseIntoAttrs dontRecurseIntoAttrs cartesianProduct cartesianProductOfSets
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recurseIntoAttrs dontRecurseIntoAttrs cartesianProduct cartesianProductOfSets
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mapCartesianProduct updateManyAttrsByPath;
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mapCartesianProduct updateManyAttrsByPath;
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inherit (self.lists) singleton forEach foldr fold foldl foldl' imap0 imap1
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inherit (self.lists) singleton forEach foldr fold foldl foldl' imap0 imap1
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concatMap flatten remove findSingle findFirst any all count
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ifilter0 concatMap flatten remove findSingle findFirst any all count
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optional optionals toList range replicate partition zipListsWith zipLists
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optional optionals toList range replicate partition zipListsWith zipLists
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reverseList listDfs toposort sort sortOn naturalSort compareLists take
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reverseList listDfs toposort sort sortOn naturalSort compareLists take
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drop sublist last init crossLists unique allUnique intersectLists
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drop sublist last init crossLists unique allUnique intersectLists
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@ -4,7 +4,7 @@
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{ lib }:
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{ lib }:
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let
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let
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inherit (lib.strings) toInt;
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inherit (lib.strings) toInt;
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inherit (lib.trivial) compare min id warn;
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inherit (lib.trivial) compare min id warn pipe;
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inherit (lib.attrsets) mapAttrs;
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inherit (lib.attrsets) mapAttrs;
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in
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in
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rec {
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rec {
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@ -333,6 +333,54 @@ rec {
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*/
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*/
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imap1 = f: list: genList (n: f (n + 1) (elemAt list n)) (length list);
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imap1 = f: list: genList (n: f (n + 1) (elemAt list n)) (length list);
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/**
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Filter a list for elements that satisfy a predicate function.
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The predicate function is called with both the index and value for each element.
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It must return `true`/`false` to include/exclude a given element in the result.
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This function is strict in the result of the predicate function for each element.
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This function has O(n) complexity.
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Also see [`builtins.filter`](https://nixos.org/manual/nix/stable/language/builtins.html#builtins-filter) (available as `lib.lists.filter`),
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which can be used instead when the index isn't needed.
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# Inputs
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`ipred`
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: The predicate function, it takes two arguments:
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- 1. (int): the index of the element.
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- 2. (a): the value of the element.
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It must return `true`/`false` to include/exclude a given element from the result.
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`list`
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: The list to filter using the predicate.
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# Type
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```
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ifilter0 :: (int -> a -> bool) -> [a] -> [a]
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```
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# Examples
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:::{.example}
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## `lib.lists.ifilter0` usage example
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```nix
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ifilter0 (i: v: i == 0 || v > 2) [ 1 2 3 ]
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=> [ 1 3 ]
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```
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:::
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*/
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ifilter0 =
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ipred:
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input:
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map (idx: elemAt input idx) (
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filter (idx: ipred idx (elemAt input idx)) (
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genList (x: x) (length input)
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)
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);
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/**
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/**
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Map and concatenate the result.
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Map and concatenate the result.
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@ -63,8 +63,10 @@ let
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hasAttrByPath
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hasAttrByPath
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hasInfix
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hasInfix
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id
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id
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ifilter0
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isStorePath
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isStorePath
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lazyDerivation
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lazyDerivation
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length
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lists
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lists
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listToAttrs
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listToAttrs
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makeExtensible
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makeExtensible
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@ -651,6 +653,31 @@ runTests {
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expected = ["b" "c"];
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expected = ["b" "c"];
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};
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};
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testIfilter0Example = {
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expr = ifilter0 (i: v: i == 0 || v > 2) [ 1 2 3 ];
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expected = [ 1 3 ];
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};
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testIfilter0Empty = {
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expr = ifilter0 (i: v: abort "shouldn't be evaluated!") [ ];
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expected = [ ];
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};
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testIfilter0IndexOnly = {
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expr = length (ifilter0 (i: v: mod i 2 == 0) [ (throw "0") (throw "1") (throw "2") (throw "3")]);
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expected = 2;
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};
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testIfilter0All = {
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expr = ifilter0 (i: v: true) [ 10 11 12 13 14 15 ];
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expected = [ 10 11 12 13 14 15 ];
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};
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testIfilter0First = {
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expr = ifilter0 (i: v: i == 0) [ 10 11 12 13 14 15 ];
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expected = [ 10 ];
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};
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testIfilter0Last = {
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expr = ifilter0 (i: v: i == 5) [ 10 11 12 13 14 15 ];
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expected = [ 15 ];
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};
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testFold =
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testFold =
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let
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let
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f = op: fold: fold op 0 (range 0 100);
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f = op: fold: fold op 0 (range 0 100);
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