weight distributions to have correct estimations after reduction
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+24
-23
@@ -4,7 +4,7 @@
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{-# LANGUAGE FlexibleContexts #-}
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{-# LANGUAGE FlexibleContexts #-}
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module AI.Rulebased (
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module AI.Rulebased (
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mkAIEnv, testds, remove789s, reduce
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mkAIEnv, testds, simplify
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) where
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) where
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import Data.Ord
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import Data.Ord
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@@ -185,7 +185,9 @@ distributions guess nos =
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in filterMap isOk (f card) hands
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in filterMap isOk (f card) hands
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cardsPerHand = (length guess - 2) `div` 3
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cardsPerHand = (length guess - 2) `div` 3
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abstract :: [Card] -> (Int, Int, Int, Int)
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type Abstract = (Int, Int, Int, Int)
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abstract :: [Card] -> Abstract
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abstract cs = foldr f (0, 0, 0, 0) cs
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abstract cs = foldr f (0, 0, 0, 0) cs
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where f c (clubs, spades, hearts, diamonds) =
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where f c (clubs, spades, hearts, diamonds) =
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let v = getID c in
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let v = getID c in
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@@ -195,21 +197,20 @@ abstract cs = foldr f (0, 0, 0, 0) cs
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Spades -> (clubs, spades + 1 + v*100, hearts, diamonds)
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Spades -> (clubs, spades + 1 + v*100, hearts, diamonds)
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Clubs -> (clubs + 1 + v*100, spades, hearts, diamonds)
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Clubs -> (clubs + 1 + v*100, spades, hearts, diamonds)
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remove789s :: Hand -> [Distribution] -> [Distribution]
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remove789s :: Hand -> [Distribution] -> M.Map (Abstract, Abstract)(Distribution, Int)
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remove789s hand ds = fst $ foldl' f ([], S.empty) ds
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remove789s hand ds = foldl' f M.empty ds
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where f (cleaned, abstracts) d =
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where f cleaned d =
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let (c1, c2) = reduce hand d
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let (c1, c2) = reduce hand d
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a = (abstract c1, abstract c2) in
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a = (abstract c1, abstract c2) in
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if a `S.member` abstracts then (cleaned, abstracts)
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M.insertWith (\(oldD, n) _ -> (oldD, n+1)) a (d, 1) cleaned
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else (d : cleaned, S.insert a abstracts)
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reduce :: Hand -> Distribution -> ([Card], [Card])
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reduce Hand1 (_, h2, h3, _) = (h2, h3)
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reduce Hand1 (_, h2, h3, _) = (h2, h3)
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reduce Hand2 (h1, _, h3, _) = (h1, h3)
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reduce Hand2 (h1, _, h3, _) = (h1, h3)
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reduce Hand3 (h1, h2, _, _) = (h1, h2)
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reduce Hand3 (h1, h2, _, _) = (h1, h2)
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simplify :: Hand -> [Distribution] -> [Distribution]
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simplify :: Hand -> [Distribution] -> M.Map Distribution Int
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simplify = remove789s
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simplify hand ds = M.foldl' f M.empty cleaned
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where cleaned = remove789s hand ds
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f m (d, n) = M.insert d n m
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onPlayed :: MonadPlayer m => CardS Played -> AI m ()
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onPlayed :: MonadPlayer m => CardS Played -> AI m ()
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onPlayed c = do
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onPlayed c = do
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@@ -264,17 +265,17 @@ chooseStatistic = do
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0 -> (0, 0, 0, 0)
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0 -> (0, 0, 0, 0)
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1 -> (-1, 0, -1, 0)
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1 -> (-1, 0, -1, 0)
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2 -> (0, 0, -1, 0)
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2 -> (0, 0, -1, 0)
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let dis' = distributions guess ns
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let realDis = distributions guess ns
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disNo' = length dis'
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realDisNo = length realDis
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dis = simplify Hand3 dis'
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reducedDis = simplify Hand3 realDis
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disNo = length dis
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reducedDisNo = length reducedDis
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piless = map (toPiles table) dis
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piless = M.mapKeys (toPiles table) reducedDis
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limit = if depth == 1 && length table == 2
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limit = if depth == 1 && length table == 2
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then 1
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then 1
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else min 10000 $ disNo `div` 2
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else min 10000 $ realDisNo `div` 2
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liftIO $ putStrLn $ "possible distrs without simp " ++ show disNo'
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liftIO $ putStrLn $ "possible distrs without simp " ++ show realDisNo
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liftIO $ putStrLn $ "possible distrs " ++ show disNo
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liftIO $ putStrLn $ "possible distrs " ++ show reducedDisNo
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vals <- M.toList <$> foldWithLimit limit runOnPiles M.empty piless
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vals <- M.toList <$> foldWithLimit limit runOnPiles M.empty (M.toList piless)
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liftIO $ print vals
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liftIO $ print vals
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return $ fst $ maximumBy (comparing snd) vals
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return $ fst $ maximumBy (comparing snd) vals
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@@ -292,10 +293,10 @@ foldWithLimit limit f start (x:xs) = do
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_ -> return start
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_ -> return start
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runOnPiles :: MonadPlayer m
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runOnPiles :: MonadPlayer m
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=> M.Map Card Int -> Piles -> AI m (M.Map Card Int)
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=> M.Map Card Int -> (Piles, Int) -> AI m (M.Map Card Int)
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runOnPiles m ps = do
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runOnPiles m (ps, n) = do
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c <- runWithPiles ps chooseOpen
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c <- runWithPiles ps chooseOpen
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return $ M.insertWith (+) c 1 m
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return $ M.insertWith (+) c n m
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chooseOpen :: (MonadState AIEnv m, MonadPlayerOpen m) => m Card
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chooseOpen :: (MonadState AIEnv m, MonadPlayerOpen m) => m Card
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chooseOpen = do
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chooseOpen = do
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+1
-1
@@ -2,4 +2,4 @@ import AI.Rulebased
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import Pile
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import Pile
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main :: IO ()
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main :: IO ()
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main = print $ length $ remove789s Hand3 testds
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main = print $ length $ simplify Hand3 testds
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@@ -14,7 +14,7 @@ data Team = Team | Single
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data CardS p = CardS { getCard :: Card
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data CardS p = CardS { getCard :: Card
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, getPile :: p }
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, getPile :: p }
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deriving (Show, Eq)
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deriving (Show, Eq, Ord)
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instance Countable (CardS p) Int where
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instance Countable (CardS p) Int where
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count = count . getCard
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count = count . getCard
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@@ -34,15 +34,15 @@ prev Hand3 = Hand2
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data Played = Table Hand
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data Played = Table Hand
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| Won Hand Team
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| Won Hand Team
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deriving (Show, Eq)
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deriving (Show, Eq, Ord)
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data SkatP = SkatP
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data SkatP = SkatP
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deriving (Show, Eq)
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deriving (Show, Eq, Ord)
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data Piles = Piles { hands :: [CardS Hand]
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data Piles = Piles { hands :: [CardS Hand]
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, played :: [CardS Played]
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, played :: [CardS Played]
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, skat :: [CardS SkatP] }
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, skat :: [CardS SkatP] }
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deriving (Show, Eq)
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deriving (Show, Eq, Ord)
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instance Countable Piles (Int, Int) where
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instance Countable Piles (Int, Int) where
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count ps = (sgl, tm)
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count ps = (sgl, tm)
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