lib.lists.hasPrefix: init
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@@ -612,6 +612,21 @@ rec {
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# Input list
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# Input list
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list: sublist count (length list) list;
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list: sublist count (length list) list;
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/* Whether the first list is a prefix of the second list.
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Type: hasPrefix :: [a] -> [a] -> bool
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Example:
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hasPrefix [ 1 2 ] [ 1 2 3 4 ]
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=> true
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hasPrefix [ 0 1 ] [ 1 2 3 4 ]
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=> false
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*/
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hasPrefix =
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list1:
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list2:
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take (length list1) list2 == list1;
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/* Return a list consisting of at most `count` elements of `list`,
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/* Return a list consisting of at most `count` elements of `list`,
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starting at index `start`.
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starting at index `start`.
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@@ -480,6 +480,27 @@ runTests {
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([ 1 2 3 ] == (take 4 [ 1 2 3 ]))
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([ 1 2 3 ] == (take 4 [ 1 2 3 ]))
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];
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];
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testListHasPrefixExample1 = {
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expr = lists.hasPrefix [ 1 2 ] [ 1 2 3 4 ];
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expected = true;
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};
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testListHasPrefixExample2 = {
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expr = lists.hasPrefix [ 0 1 ] [ 1 2 3 4 ];
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expected = false;
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};
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testListHasPrefixLazy = {
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expr = lists.hasPrefix [ 1 ] [ 1 (abort "lib.lists.hasPrefix is not lazy") ];
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expected = true;
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};
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testListHasPrefixEmptyPrefix = {
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expr = lists.hasPrefix [ ] [ 1 2 ];
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expected = true;
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};
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testListHasPrefixEmptyList = {
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expr = lists.hasPrefix [ 1 2 ] [ ];
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expected = false;
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};
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testFoldAttrs = {
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testFoldAttrs = {
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expr = foldAttrs (n: a: [n] ++ a) [] [
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expr = foldAttrs (n: a: [n] ++ a) [] [
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{ a = 2; b = 7; }
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{ a = 2; b = 7; }
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