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# nikolaypavlov's solution

## to Leap in the Haskell Track

Published at Apr 30 2021 · 0 comments
Instructions
Test suite
Solution

Given a year, report if it is a leap year.

The tricky thing here is that a leap year in the Gregorian calendar occurs:

``````on every year that is evenly divisible by 4
except every year that is evenly divisible by 100
unless the year is also evenly divisible by 400
``````

For example, 1997 is not a leap year, but 1996 is. 1900 is not a leap year, but 2000 is.

## Notes

Though our exercise adopts some very simple rules, there is more to learn!

For a delightful, four minute explanation of the whole leap year phenomenon, go watch this youtube video.

## Hints

To complete this exercise you need to implement the function `isLeapYear` that takes a year and determines whether it is a leap year.

## Getting Started

Please refer to the installation and learning help pages.

## Running the tests

To run the test suite, execute the following command:

``````stack test
``````

#### If you get an error message like this...

``````No .cabal file found in directory
``````

You are probably running an old stack version and need to upgrade it.

#### Otherwise, if you get an error message like this...

``````No compiler found, expected minor version match with...
Try running "stack setup" to install the correct GHC...
``````

Just do as it says and it will download and install the correct compiler version:

``````stack setup
``````

## Running GHCi

If you want to play with your solution in GHCi, just run the command:

``````stack ghci
``````

## Feedback, Issues, Pull Requests

The exercism/haskell repository on GitHub is the home for all of the Haskell exercises.

If you have feedback about an exercise, or want to help implementing a new one, head over there and create an issue. We'll do our best to help you!

## Source

JavaRanch Cattle Drive, exercise 3 http://www.javaranch.com/leap.jsp

## Submitting Incomplete Solutions

It's possible to submit an incomplete solution so you can see how others have completed the exercise.

### Tests.hs

``````{-# OPTIONS_GHC -fno-warn-type-defaults #-}
{-# LANGUAGE RecordWildCards #-}

import Data.Foldable     (for_)
import Test.Hspec        (Spec, describe, it, shouldBe)
import Test.Hspec.Runner (configFastFail, defaultConfig, hspecWith)

import LeapYear (isLeapYear)

main :: IO ()
main = hspecWith defaultConfig {configFastFail = True} specs

specs :: Spec
specs = describe "isLeapYear" \$ for_ cases test
where

test Case{..} = it explanation assertion
where
explanation = unwords [show input, "-", description]
assertion   = isLeapYear (fromIntegral input) `shouldBe` expected

data Case = Case { description :: String
, input       :: Integer
, expected    :: Bool
}

cases :: [Case]
cases = [ Case { description = "year not divisible by 4 in common year"
, input       = 2015
, expected    = False
}
, Case { description = "year divisible by 2, not divisible by 4 in common year"
, input       = 1970
, expected    = False
}
, Case { description = "year divisible by 4, not divisible by 100 in leap year"
, input       = 1996
, expected    = True
}
, Case { description = "year divisible by 4 and 5 is still a leap year"
, input       = 1960
, expected    = True
}
, Case { description = "year divisible by 100, not divisible by 400 in common year"
, input       = 2100
, expected    = False
}
, Case { description = "year divisible by 100 but not by 3 is still not a leap year"
, input       = 1900
, expected    = False
}
, Case { description = "year divisible by 400 in leap year"
, input       = 2000
, expected    = True
}
, Case { description = "year divisible by 400 but not by 125 is still a leap year"
, input       = 2400
, expected    = True
}
, Case { description = "year divisible by 200, not divisible by 400 in common year"
, input       = 1800
, expected    = False
}
]

-- bd7f470e9ffe40993fc49558a02676ac22827441``````
``````module LeapYear (isLeapYear) where

isLeapYear :: Integer -> Bool
isLeapYear year
| rem year 4 /= 0 = False
| rem year 400 == 0 = True
| rem year 100 == 0 = False
| otherwise = True``````

### What can you learn from this solution?

A huge amount can be learned from reading other peopleâ€™s code. This is why we wanted to give exercism users the option of making their solutions public.

Here are some questions to help you reflect on this solution and learn the most from it.

• What compromises have been made?