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list-ops-exercise: added new exercise.
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SimaDovakin committed Jul 8, 2024
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8 changes: 8 additions & 0 deletions config.json
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"practices": [],
"prerequisites": [],
"difficulty": 1
},
{
"slug": "list-ops",
"name": "List-Ops",
"uuid": "e7e3d67a-8c2b-49b7-9dc0-9c4d2677c7d0",
"practices": [],
"prerequisites": [],
"difficulty": 4
}
]
},
Expand Down
19 changes: 19 additions & 0 deletions exercises/practice/list-ops/.docs/instructions.md
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# Instructions

Implement basic list operations.

In functional languages list operations like `length`, `map`, and `reduce` are very common.
Implement a series of basic list operations, without using existing functions.

The precise number and names of the operations to be implemented will be track dependent to avoid conflicts with existing names, but the general operations you will implement include:

- `append` (_given two lists, add all items in the second list to the end of the first list_);
- `concatenate` (_given a series of lists, combine all items in all lists into one flattened list_);
- `filter` (_given a predicate and a list, return the list of all items for which `predicate(item)` is True_);
- `length` (_given a list, return the total number of items within it_);
- `map` (_given a function and a list, return the list of the results of applying `function(item)` on all items_);
- `foldl` (_given a function, a list, and initial accumulator, fold (reduce) each item into the accumulator from the left_);
- `foldr` (_given a function, a list, and an initial accumulator, fold (reduce) each item into the accumulator from the right_);
- `reverse` (_given a list, return a list with all the original items, but in reversed order_).

Note, the ordering in which arguments are passed to the fold functions (`foldl`, `foldr`) is significant.
17 changes: 17 additions & 0 deletions exercises/practice/list-ops/.meta/config.json
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{
"authors": [
"SimaDovakin"
],
"files": {
"solution": [
"listOps.u"
],
"test": [
"listOps.test.u"
],
"example": [
".meta/examples/listOps.example.u"
]
},
"blurb": "Implement basic list operations."
}
46 changes: 46 additions & 0 deletions exercises/practice/list-ops/.meta/examples/listOps.example.u
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listOps.append : [a] -> [a] -> [a]
listOps.append list1 list2 =
match list1 with
[] -> list2
x +: xs -> x +: listOps.append xs list2

listOps.concat : [[a]] -> [a]
listOps.concat nestedList =
listOps.foldl append [] nestedList

listOps.filter : (a -> Boolean) -> [a] -> [a]
listOps.filter predicate list =
match list with
[] -> []
x +: xs ->
match predicate x with
true -> x +: listOps.filter predicate xs
false -> listOps.filter predicate xs

listOps.length : [a] -> Nat
listOps.length list =
match list with
[] -> 0
x +: xs -> 1 + listOps.length xs

listOps.map : (a -> b) -> [a] -> [b]
listOps.map function list =
match list with
[] -> []
x +: xs -> function x +: listOps.map function xs

listOps.foldl : (a -> b -> a) -> a -> [b] -> a
listOps.foldl function initial list =
match list with
[] -> initial
x +: xs -> listOps.foldl function (function initial x) xs

listOps.foldr : (a -> b -> a) -> a -> [b] -> a
listOps.foldr function initial list =
listOps.foldl function initial (listOps.reverse list)

listOps.reverse : [a] -> [a]
listOps.reverse list =
match list with
[] -> []
x +: xs -> listOps.append (listOps.reverse xs) [x]
90 changes: 90 additions & 0 deletions exercises/practice/list-ops/.meta/testAnnotation.json
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[
{
"name": "listOps.append.tests.ex1",
"test_code": "Test.expect ([] === (listOps.append [] []))\n |> Test.label \"append entries to a list and return the new list - empty lists\""
},
{
"name": "listOps.append.tests.ex2",
"test_code": "Test.expect ([1, 2, 3, 4] === listOps.append [] [1, 2, 3, 4])\n |> Test.label \"append entries to a list and return the new list - list to empty list\""
},
{
"name": "listOps.append.tests.ex3",
"test_code": "Test.expect ([1, 2, 3, 4] === listOps.append [1, 2, 3, 4] [])\n |> Test.label \"append entries to a list and return the new list - empty list to list\""
},
{
"name": "listOps.append.tests.ex4",
"test_code": "Test.expect ([1, 2, 2, 3, 4, 5] === listOps.append [1, 2] [2, 3, 4, 5])\n |> Test.label \"append entries to a list and return the new list - non-empty lists\""
},
{
"name": "listOps.concat.tests.ex1",
"test_code": "Test.expect ([] === listOps.concat [])\n |> Test.label \"concatenate a list of lists - empty list\""
},
{
"name": "listOps.concat.tests.ex2",
"test_code": "Test.expect ([1, 2, 3, 4, 5, 6] === listOps.concat [[1, 2], [3], [], [4, 5, 6]])\n |> Test.label \"concatenate a list of lists - list of lists\""
},
{
"name": "listOps.concat.tests.ex3",
"test_code": "Test.expect ([[1], [2], [3], [], [4, 5, 6]] === listOps.concat [[[1], [2]], [[3]], [[]], [[4, 5, 6]]])\n |> Test.label \"concatenate a list of lists - list of nested lists\""
},
{
"name": "listOps.filter.tests.ex1",
"test_code": "Test.expect ([] === listOps.filter (x -> 1 == mod x 2) [])\n |> Test.label \"filter list returning only values that satisfy the filter function - empty list\""
},
{
"name": "listOps.filter.tests.ex2",
"test_code": "Test.expect ([1, 3, 5] === listOps.filter (x -> 1 == mod x 2) [1, 2, 3, 5])\n |> Test.label \"filter list returning only values that satisfy the filter function - non-empty list\""
},
{
"name": "listOps.foldl.tests.ex1",
"test_code": "use Nat *\n Test.expect (2 == listOps.foldl (acc el -> el * acc) 2 [])\n |> Test.label \"folds (reduces) the given list from the left with a function - empty list\""
},
{
"name": "listOps.foldl.tests.ex2",
"test_code": "use Nat +\n Test.expect (15 == listOps.foldl (acc el -> el + acc) 5 [1, 2, 3, 4])\n |> Test.label \"folds (reduces) the given list from the left with a function - direction independent function applied to non-empty list\""
},
{
"name": "listOps.foldl.tests.ex3",
"test_code": "use Float /\n Test.expect (64.0 == listOps.foldl (acc el -> el / acc) 24.0 [1.0, 2.0, 3.0, 4.0])\n |> Test.label \"folds (reduces) the given list from the left with a function - direction dependent function applied to non-empty list\""
},
{
"name": "listOps.foldr.tests.ex1",
"test_code": "use Nat *\n Test.expect (2 == listOps.foldr (acc el -> el * acc) 2 [])\n |> Test.label \"folds (reduces) the given list from the right with a function - empty list\""
},
{
"name": "listOps.foldr.tests.ex2",
"test_code": "use Nat +\n Test.expect (15 == listOps.foldr (acc el -> el + acc) 5 [1, 2, 3, 4])\n |> Test.label \"folds (reduces) the given list from the right with a function - direction independent function applied to non-empty list\""
},
{
"name": "listOps.foldr.tests.ex3",
"test_code": "use Float /\n Test.expect (9.0 == listOps.foldr (acc el -> el / acc) 24.0 [1.0, 2.0, 3.0, 4.0])\n |> Test.label \"folds (reduces) the given list from the right with a function - direction dependent function applied to non-empty list\""
},
{
"name": "listOps.length.tests.ex1",
"test_code": "Test.expect (0 == listOps.length [])\n |> Test.label \"returns the length of a list - empty list\""
},
{
"name": "listOps.length.tests.ex2",
"test_code": "Test.expect (4 == listOps.length [1, 2, 3, 4])\n |> Test.label \"returns the length of a list - non-empty list\""
},
{
"name": "listOps.map.tests.ex1",
"test_code": "Test.expect ([] === listOps.map (x -> x + 1) [])\n |> Test.label \"return a list of elements whose values equal the list value transformed by the mapping function - empty list\""
},
{
"name": "listOps.map.tests.ex2",
"test_code": "Test.expect ([2, 4, 6, 8] === listOps.map (x -> x + 1) [1, 3, 5, 7])\n |> Test.label \"return a list of elements whose values equal the list value transformed by the mapping function - non-empty list\""
},
{
"name": "listOps.reverse.tests.ex1",
"test_code": "Test.expect ([] === listOps.reverse [])\n |> Test.label \"reverse the elements of the list - empty list\""
},
{
"name": "listOps.reverse.tests.ex2",
"test_code": "Test.expect ([7, 5, 3, 1] === listOps.reverse [1, 3, 5, 7])\n |> Test.label \"reverse the elements of the list - non-empty list\""
},
{
"name": "listOps.reverse.tests.ex3",
"test_code": "Test.expect ([[4, 5, 6], [], [3], [1, 2]] === listOps.reverse [[1, 2], [3], [], [4, 5, 6]])\n |> Test.label \"reverse the elements of the list - list of lists is not flattened\""
}
]
9 changes: 9 additions & 0 deletions exercises/practice/list-ops/.meta/testLoader.md
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# Testing transcript for list-ops exercise

```ucm
.> load ./listOps.u
.> add
.> load ./listOps.test.u
.> add
.> move.term listOps.tests tests
```
106 changes: 106 additions & 0 deletions exercises/practice/list-ops/.meta/tests.toml
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# This is an auto-generated file.
#
# Regenerating this file via `configlet sync` will:
# - Recreate every `description` key/value pair
# - Recreate every `reimplements` key/value pair, where they exist in problem-specifications
# - Remove any `include = true` key/value pair (an omitted `include` key implies inclusion)
# - Preserve any other key/value pair
#
# As user-added comments (using the # character) will be removed when this file
# is regenerated, comments can be added via a `comment` key.

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reimplements = "be396a53-c074-4db3-8dd6-f7ed003cce7c"

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description = "reverse the elements of the list -> non-empty list"

[40872990-b5b8-4cb8-9085-d91fc0d05d26]
description = "reverse the elements of the list -> list of lists is not flattened"
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