✅ haskell: collatz-conjecture
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haskell/collatz-conjecture/HELP.md
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haskell/collatz-conjecture/HELP.md
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# Help
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## Running the tests
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To run the test suite, execute the following command:
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```bash
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stack test
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```
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#### If you get an error message like this...
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```
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No .cabal file found in directory
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```
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or
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```
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RedownloadInvalidResponse Request {
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...
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}
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"/home/username/.stack/build-plan/lts-xx.yy.yaml" (Response {responseStatus = Status {statusCode = 404, statusMessage = "Not Found"},
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```
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You are probably running an old stack version and need
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to upgrade it. Try running:
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```bash
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stack upgrade
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```
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Or see other options for upgrading at [Stack documentation](https://docs.haskellstack.org/en/stable/install_and_upgrade/#upgrade).
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#### Otherwise, if you get an error message like this...
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```
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No compiler found, expected minor version match with...
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Try running "stack setup" to install the correct GHC...
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```
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Just do as it says and it will download and install
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the correct compiler version:
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```bash
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stack setup
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```
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If you want to play with your solution in GHCi, just run the command:
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```bash
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stack ghci
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```
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## Submitting your solution
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You can submit your solution using the `exercism submit src/CollatzConjecture.hs` command.
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This command will upload your solution to the Exercism website and print the solution page's URL.
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It's possible to submit an incomplete solution which allows you to:
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- See how others have completed the exercise
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- Request help from a mentor
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## Need to get help?
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If you'd like help solving the exercise, check the following pages:
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- The [Haskell track's documentation](https://exercism.org/docs/tracks/haskell)
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- [Exercism's support channel on gitter](https://gitter.im/exercism/support)
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- The [Frequently Asked Questions](https://exercism.org/docs/using/faqs)
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Should those resources not suffice, you could submit your (incomplete) solution to request mentoring.
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## Getting Started
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Please refer to the [installation](https://exercism.io/tracks/haskell/installation)
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and [learning](https://exercism.io/tracks/haskell/learning) help pages.
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## Feedback, Issues, Pull Requests
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The [exercism/haskell](https://github.com/exercism/haskell) repository on
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GitHub is the home for all of the Haskell exercises.
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If you have feedback about an exercise, or want to help implementing a new
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one, head over there and create an issue. We'll do our best to help you!
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{{ with .Spec.Credits }}
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haskell/collatz-conjecture/README.md
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# Collatz Conjecture
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Welcome to Collatz Conjecture on Exercism's Haskell Track.
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If you need help running the tests or submitting your code, check out `HELP.md`.
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## Instructions
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The Collatz Conjecture or 3x+1 problem can be summarized as follows:
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Take any positive integer n. If n is even, divide n by 2 to get n / 2. If n is
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odd, multiply n by 3 and add 1 to get 3n + 1. Repeat the process indefinitely.
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The conjecture states that no matter which number you start with, you will
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always reach 1 eventually.
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Given a number n, return the number of steps required to reach 1.
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## Examples
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Starting with n = 12, the steps would be as follows:
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0. 12
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1. 6
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2. 3
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3. 10
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4. 5
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5. 16
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6. 8
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7. 4
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8. 2
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9. 1
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Resulting in 9 steps. So for input n = 12, the return value would be 9.
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## Source
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### Contributed to by
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- @guygastineau
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- @iHiD
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- @navossoc
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- @petertseng
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- @ppartarr
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- @sshine
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- @tejasbubane
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### Based on
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An unsolved problem in mathematics named after mathematician Lothar Collatz - https://en.wikipedia.org/wiki/3x_%2B_1_problem
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name: collatz-conjecture
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dependencies:
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- base
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library:
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exposed-modules: CollatzConjecture
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source-dirs: src
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tests:
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test:
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main: Tests.hs
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source-dirs: test
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dependencies:
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- collatz-conjecture
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- hspec
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haskell/collatz-conjecture/package.yaml
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name: collatz-conjecture
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version: 1.2.1.4
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dependencies:
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- base
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library:
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exposed-modules: CollatzConjecture
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source-dirs: src
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ghc-options: -Wall
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# dependencies:
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# - foo # List here the packages you
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# - bar # want to use in your solution.
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tests:
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test:
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main: Tests.hs
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source-dirs: test
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dependencies:
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- collatz-conjecture
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- hspec
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haskell/collatz-conjecture/src/CollatzConjecture.hs
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module CollatzConjecture (collatz) where
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collatz :: Integer -> Maybe Integer
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collatz n = if n <= 0 then Nothing else step 0 n
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step :: Integer -> Integer -> Maybe Integer
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step count n
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| n == 1 = Just count
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| even n = step (count + 1) (n `div` 2)
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| otherwise = step (count + 1) (3 * n + 1)
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haskell/collatz-conjecture/stack.yaml
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resolver: lts-16.21
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haskell/collatz-conjecture/test/Tests.hs
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{-# OPTIONS_GHC -fno-warn-type-defaults #-}
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{-# LANGUAGE RecordWildCards #-}
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import Data.Foldable (for_)
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import Test.Hspec (Spec, describe, it, shouldBe)
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import Test.Hspec.Runner (configFastFail, defaultConfig, hspecWith)
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import CollatzConjecture (collatz)
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main :: IO ()
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main = hspecWith defaultConfig {configFastFail = True} specs
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specs :: Spec
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specs = describe "collatz" $ for_ cases test
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where
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test Case{..} = it description assertion
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where
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assertion = collatz number `shouldBe` expected
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data Case = Case { description :: String
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, number :: Integer
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, expected :: Maybe Integer
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}
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cases :: [Case]
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cases = [ Case { description = "zero steps for one"
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, number = 1
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, expected = Just 0
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}
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, Case { description = "divide if even"
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, number = 16
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, expected = Just 4
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}
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, Case { description = "even and odd steps"
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, number = 12
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, expected = Just 9
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}
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, Case { description = "large number of even and odd steps"
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, number = 1000000
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, expected = Just 152
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}
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, Case { description = "zero is an error"
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, number = 0
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, expected = Nothing
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}
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, Case { description = "negative value is an error"
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, number = -15
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, expected = Nothing
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}
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]
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-- 553e2f7a6ce638a6cf622985b9138e6013626eb3
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