1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
|
module MonadTransformersScratch where
import Control.Monad
import qualified Control.Monad.Trans.Maybe as M
import qualified Control.Monad.Trans.Reader as R
import qualified Control.Monad.Trans.State as S
import Data.Function ((&))
--------------------------------------------------------------------------------
newtype MaybeT m a =
MaybeT { runMaybeT :: m (Maybe a) }
instance (Functor f) => Functor (MaybeT f) where
fmap f (MaybeT run) =
MaybeT $ (fmap . fmap) f run
instance (Applicative m) => Applicative (MaybeT m) where
pure x = x & pure & pure & MaybeT
_ <*> _ = undefined
instance (Monad m) => Monad (MaybeT m) where
return = pure
(MaybeT ma) >>= f = MaybeT $ do
maybeX <- ma
case maybeX of
Nothing -> pure Nothing
Just x -> x & f & runMaybeT
--------------------------------------------------------------------------------
newtype EitherT e m a =
EitherT { runEitherT :: m (Either e a) }
instance (Functor m) => Functor (EitherT e m) where
fmap f (EitherT mEither) =
EitherT $ (fmap . fmap) f mEither
instance (Applicative m) => Applicative (EitherT e m) where
pure x = EitherT $ (pure . pure) x
EitherT mEitherF <*> EitherT mEitherX =
EitherT $ (fmap (<*>) mEitherF) <*> mEitherX
instance (Monad m) => Monad (EitherT e m) where
return = pure
EitherT mEitherX >>= f = EitherT $ do
eitherX <- mEitherX
case eitherX of
Left x -> pure $ Left x
Right x -> runEitherT $ f x
swapEither :: Either l r -> Either r l
swapEither (Left x) = Right x
swapEither (Right x) = Left x
swapEitherT :: (Functor m) => EitherT e m a -> EitherT a m e
swapEitherT (EitherT mEitherX) =
EitherT $ fmap swapEither mEitherX
eitherT :: Monad m => (a -> m c) -> (b -> m c) -> EitherT a m b -> m c
eitherT aToMC bToMC (EitherT mEitherX) = do
eitherX <- mEitherX
case eitherX of
Left x -> aToMC x
Right x -> bToMC x
--------------------------------------------------------------------------------
newtype ReaderT r m a = ReaderT { runReaderT :: r -> m a }
instance (Functor m) => Functor (ReaderT r m) where
fmap f (ReaderT rma) =
ReaderT $ (fmap . fmap) f rma
instance (Applicative m) => Applicative (ReaderT r m) where
pure x = x & pure & pure & ReaderT
ReaderT f <*> ReaderT x = ReaderT $ fmap (<*>) f <*> x
-- instance (Monad m) => Monad (ReaderT r m) where
-- return = pure
-- ReaderT rma >>= f =
-- ReaderT $ \r -> do
-- a <- rma r
-- runReaderT (f a) r
-- --------------------------------------------------------------------------------
rDec :: Num a => R.Reader a a
rDec = R.ReaderT $ \x -> pure $ x + 1
rShow :: Show a => R.Reader a String
rShow = R.ReaderT $ \x -> pure $ show x
rPrintAndInc :: (Num a, Show a) => R.ReaderT a IO a
rPrintAndInc = R.ReaderT $ \x ->
putStrLn ("Hi: " ++ show x) >> pure (x + 1)
sPrintIncAccum :: (Num a, Show a) => S.StateT a IO String
sPrintIncAccum = S.StateT $ \x -> do
putStrLn ("Hi: " ++ show x)
pure (show x, x + 1)
--------------------------------------------------------------------------------
isValid :: String -> Bool
isValid v = '!' `elem` v
maybeExcite :: M.MaybeT IO String
maybeExcite = M.MaybeT $ do
x <- getLine
putStrLn ""
case isValid x of
False -> pure Nothing
True -> pure $ Just x
doExcite :: IO ()
doExcite = do
putStr "Say something *exciting*: "
excite <- M.runMaybeT maybeExcite
case excite of
Nothing -> putStrLn "Gonna need some more excitement..."
Just x -> putStrLn "Now THAT'S exciting...nice!"
--------------------------------------------------------------------------------
data Participant
= Man
| Machine
deriving (Show, Eq)
newtype Hand = Hand (Integer, Integer) deriving (Show, Eq)
newtype Score = Score (Integer, Integer) deriving (Show, Eq)
getLineLn :: String -> IO String
getLineLn prompt = do
putStr prompt
x <- getLine
putStrLn ""
pure x
promptGuess :: IO Hand
promptGuess = do
fingers <- getLineLn "How many fingers (0-5): "
guess <- getLineLn "Guess: "
pure $ Hand (read guess, read fingers)
aiGuess :: IO Hand
aiGuess = pure $ Hand (2, 3)
whoWon :: Hand -> Hand -> Maybe Participant
whoWon (Hand (guessA, fingersA)) (Hand (guessB, fingersB))
| guessA == guessB && guessA == (fingersA + fingersB) = Nothing
| guessA == (fingersA + fingersB) = Just Man
| guessB == (fingersA + fingersB) = Just Machine
| otherwise = Nothing
initScore :: Score
initScore = Score (0, 0)
printScore :: Score -> IO ()
printScore (Score (man, machine)) =
putStrLn $ "Man: " ++ show man ++ " Machine: " ++ show machine
startMorra :: S.StateT Score IO ()
startMorra = S.StateT $ \(Score (man, machine)) -> do
Hand (guessA, fingersA) <- promptGuess
Hand (guessB, fingersB) <- aiGuess
putStrLn $ "P: " ++ show fingersA ++ "," ++ show guessA
putStrLn $ "C: " ++ show fingersB ++ "," ++ show guessB
case whoWon (Hand (guessA, fingersA)) (Hand (guessB, fingersB)) of
Nothing -> do
putStrLn "Nobody won..."
printScore (Score (man, machine))
pure ((), Score (man, machine))
Just Man -> do
putStrLn "Man won!"
printScore (Score (man + 1, machine))
pure ((), Score (man + 1, machine))
Just Machine -> do
putStrLn "Oh no... Machine won..."
printScore (Score (man, machine + 1))
pure ((), Score (man, machine + 1))
playMorra = S.runStateT (forever startMorra) initScore
|