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20 Intermediate Haskell Exercises
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-- https://haskell.fpcomplete.com/user/DanBurton/20-intermediate-exercises | |
-- Originally from http://blog.tmorris.net/posts/20-intermediate-haskell-exercises/ | |
class Fluffy f where | |
furry :: (a -> b) -> f a -> f b | |
-- Exercise 1 | |
-- Relative Difficulty: 1 | |
instance Fluffy [] where | |
furry = fmap | |
-- Exercise 2 | |
-- Relative Difficulty: 1 | |
instance Fluffy Maybe where | |
furry = fmap | |
-- Exercise 3 | |
-- Relative Difficulty: 5 | |
instance Fluffy ((->) t) where | |
furry = (.) | |
newtype EitherLeft b a = EitherLeft (Either a b) | |
newtype EitherRight a b = EitherRight (Either a b) | |
-- Exercise 4 | |
-- Relative Difficulty: 5 | |
instance Fluffy (EitherLeft t) where | |
furry f (EitherLeft (Left a)) = EitherLeft . Left . f $ a | |
furry f (EitherLeft (Right b)) = EitherLeft . Right $ b | |
-- Exercise 5 | |
-- Relative Difficulty: 5 | |
instance Fluffy (EitherRight t) where | |
furry f (EitherRight (Right b)) = EitherRight . Right . f $ b | |
furry f (EitherRight (Left a)) = EitherRight . Left $ a | |
class Misty m where | |
banana :: (a -> m b) -> m a -> m b | |
unicorn :: a -> m a | |
-- Exercise 7 | |
-- Relative Difficulty: 2 | |
instance Misty [] where | |
banana = concatMap | |
unicorn e = [e] | |
-- Exercise 8 | |
-- Relative Difficulty: 2 | |
instance Misty Maybe where | |
banana f (Just a) = f a | |
banana f Nothing = Nothing | |
unicorn = Just | |
-- Exercise 9 | |
-- Relative Difficulty: 6 | |
instance Misty ((->) t) where | |
banana f g t = f (g t) t | |
unicorn = const | |
newtype EitherLeft b a = EitherLeft (Either a b) | |
newtype EitherRight a b = EitherRight (Either a b) | |
-- Exercise 10 | |
-- Relative Difficulty: 6 | |
instance Misty (EitherLeft t) where | |
banana f (EitherLeft (Left a)) = f a | |
banana f (EitherLeft (Right b)) = EitherLeft . Right $ b | |
unicorn = EitherLeft . Left | |
-- Exercise 11 | |
-- Relative Difficulty: 6 | |
instance Misty (EitherRight t) where | |
banana f (EitherRight (Right b)) = f b | |
banana f (EitherRight (Left a)) = EitherRight . Left $ a | |
unicorn = EitherRight . Right | |
class Misty m where | |
banana :: (a -> m b) -> m a -> m b | |
unicorn :: a -> m a | |
-- Exercise 6 | |
-- Relative Difficulty: 3 | |
-- (use banana and/or unicorn) | |
furry' :: (Misty m) => (a -> b) -> m a -> m b | |
furry' f ma = banana (unicorn . f) ma | |
-- Exercise 12 | |
-- Relative Difficulty: 3 | |
jellybean :: (Misty m) => m (m a) -> m a | |
jellybean = banana id | |
-- Exercise 13 | |
-- Relative Difficulty: 6 | |
apple :: (Misty m) => m a -> m (a -> b) -> m b | |
apple ma mf = banana (\f -> furry' f ma) mf | |
-- Exercise 14 | |
-- Relative Difficulty: 6 | |
moppy :: (Misty m) => [a] -> (a -> m b) -> m [b] | |
moppy [] f = unicorn [] | |
moppy (x:xs) f = apple (moppy xs f) (furry' (:) (f x)) | |
-- Exercise 15 | |
-- Relative Difficulty: 6 | |
-- (bonus: use moppy) | |
sausage :: (Misty m) => [m a] -> m [a] | |
sausage xs = moppy xs id | |
-- Exercise 16 | |
-- Relative Difficulty: 6 | |
-- (bonus: use apple + furry') | |
banana2 :: (Misty m) => (a -> b -> c) -> m a -> m b -> m c | |
banana2 f ma mb = apple mb ((furry' f) ma) | |
-- Exercise 17 | |
-- Relative Difficulty: 6 | |
-- (bonus: use apple + banana2) | |
banana3 :: (Misty m) => (a -> b -> c -> d) -> m a -> m b -> m c -> m d | |
banana3 f ma mb mc = apple mc (banana2 f ma mb) | |
-- Exercise 18 | |
-- Relative Difficulty: 6 | |
-- (bonus: use apple + banana3) | |
banana4 :: (Misty m) => (a -> b -> c -> d -> e) -> m a -> m b -> m c -> m d -> m e | |
banana4 f ma mb mc md = apple md (banana3 f ma mb mc) | |
class Misty m where | |
banana :: (a -> m b) -> m a -> m b | |
unicorn :: a -> m a | |
class Fluffy f where | |
furry :: (a -> b) -> f a -> f b | |
newtype State s a = State { | |
state :: (s -> (s, a)) | |
} | |
-- Exercise 19 | |
-- Relative Difficulty: 9 | |
instance Fluffy (State s) where | |
furry f st = State (\s -> let (s', a) = state st s in (s', f a)) | |
-- Exercise 20 | |
-- Relative Difficulty: 10 | |
instance Misty (State s) where | |
banana f ma = State (\s -> let (s', a) = state ma s in state (f a) s') | |
unicorn a = State (\s -> (s, a)) |
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