Added first map prototype (unstripyfied), added show instances (for dev), this and that
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@ -41,6 +41,7 @@ type GraphicsMap = Array (Int, Int) MapEntry
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lineHeight :: GLfloat
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lineHeight = 0.8660254
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-- Number of GLfloats per Stride
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numComponents :: Int
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numComponents = 10
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@ -67,7 +68,6 @@ getMapBufferObject :: IO (BufferObject, NumArrayIndices)
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getMapBufferObject = do
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map' <- testmap
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! map' <- return $ generateTriangles map'
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--putStrLn $ P.unlines $ P.map show (prettyMap map')
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len <- return $ fromIntegral $ P.length map' `div` numComponents
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putStrLn $ P.unwords ["num verts in map:",show len]
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bo <- genObjectName -- create a new buffer
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@ -79,55 +79,6 @@ getMapBufferObject = do
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checkError "initBuffer"
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return (bo,len)
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prettyMap :: [GLfloat] -> [(GLfloat,GLfloat,GLfloat,GLfloat,GLfloat,GLfloat,GLfloat,GLfloat,GLfloat,GLfloat)]
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prettyMap (a:b:c:d:x:y:z:u:v:w:ms) = (a,b,c,d,x,y,z,u,v,w):(prettyMap ms)
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prettyMap _ = []
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generateCube :: [GLfloat]
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generateCube = [ -- lower plane
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-3.0,-3.0,-3.0,
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3.0,-3.0,3.0,
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3.0,-3.0,-3.0,
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-3.0,-3.0,-3.0,
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-3.0,-3.0,3.0,
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3.0,-3.0,3.0,
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-- upper plane
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-3.0,3.0,-3.0,
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3.0,3.0,3.0,
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3.0,3.0,-3.0,
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-3.0,3.0,-3.0,
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-3.0,3.0,3.0,
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3.0,3.0,3.0,
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-- left plane
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-3.0,-3.0,-3.0,
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-3.0,3.0,3.0,
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-3.0,-3.0,3.0,
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-3.0,-3.0,-3.0,
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-3.0,3.0,3.0,
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-3.0,3.0,-3.0,
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-- right plane
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3.0,-3.0,-3.0,
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3.0,3.0,3.0,
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3.0,-3.0,3.0,
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3.0,-3.0,-3.0,
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3.0,3.0,3.0,
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3.0,3.0,-3.0,
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-- front plane
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-3.0,-3.0,-3.0,
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3.0,3.0,-3.0,
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3.0,-3.0,-3.0,
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-3.0,-3.0,-3.0,
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3.0,3.0,-3.0,
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-3.0,3.0,-3.0,
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-- back plane
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-3.0,-3.0,3.0,
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3.0,3.0,3.0,
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3.0,-3.0,3.0,
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-3.0,-3.0,3.0,
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3.0,3.0,3.0,
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-3.0,3.0,3.0
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]
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generateTriangles :: GraphicsMap -> [GLfloat]
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generateTriangles map' =
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let ((xl,yl),(xh,yh)) = bounds map' in
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@ -2,8 +2,36 @@ module Map.StaticMaps
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where
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import Map.Types
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import Data.Array
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emptyMap :: PlayMap
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emptyMap = array ((0,0), (100,100)) [((a,b), (Minimal (a,b) 0.5)) | a <- [0..100], b <- [0..100]]
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gauss2Dgeneral :: Floating q => q -> q -> q -> q -> q -> q -> q -> q
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gauss2Dgeneral amp x0 y0 sX sY x y = amp * exp (-(((x-x0)^2/(2 * sX^2))+((y-y0)^2/(2 * sY^2))))
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gauss2D :: Floating q => q -> q -> q
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gauss2D x y = gauss2Dgeneral 45 100.0 100.0 50.0 50.0 x y
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-- 2D Manhattan distance
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mnh2D :: (Int,Int) -> (Int,Int) -> Int
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mnh2D (a,b) (c,d) = abs (a-c) + abs (b-d)
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-- entirely empty map, only uses the minimal constructor
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mapEmpty :: PlayMap
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mapEmpty = array ((0,0), (200,200)) [((a,b), (Minimal (a,b) 0.5)) | a <- [0..200], b <- [0..200]]
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-- TODO: Stripify
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mapCenterMountain :: PlayMap
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mapCenterMountain = array ((0,0),(200,200)) nodes
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where
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nodes = water ++ beach ++ grass ++ hill ++ mountain
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water = [((a,b), (Full (a,b) 0.0 Ocean BNothing NoPlayer NoPath Plain [])) | a <- [0..200], b <- [0..200], (m2d (a,b)) > 95]
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beach = [((a,b), (Full (a,b) (g2d a b) Beach BNothing NoPlayer NoPath Plain [])) | a <- [0..200], b <- [0..200], (m2d (a,b)) <= 95, (m2d (a,b)) > 75]
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grass = [((a,b), (Full (a,b) (g2d a b) Grass BNothing NoPlayer NoPath Plain [])) | a <- [0..200], b <- [0..200], (m2d (a,b)) <= 75, (m2d (a,b)) > 25]
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hill = [((a,b), (Full (a,b) (g2d a b) Hill BNothing NoPlayer NoPath Plain [])) | a <- [0..200], b <- [0..200], (m2d (a,b)) <= 25, (m2d (a,b)) > 10]
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mountain = [((a,b), (Full (a,b) (g2d a b) Mountain BNothing NoPlayer NoPath Plain [])) | a <- [0..200], b <- [0..200], (m2d (a,b)) <= 10]
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g2d :: Int -> Int -> Float
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g2d x y = gauss2D (fromIntegral x) (fromIntegral y)
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m2d :: (Int,Int) -> Int
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m2d (x,y) = mnh2D (x,y) (100,100)
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@ -5,34 +5,58 @@ import PioneerTypes
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import Data.Array
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type PlayMap = Array (XCoord, YCoord) Node
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type PlayMap = Array (XCoord, ZCoord) Node
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type XCoord = Int
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type YCoord = Int
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type ZCoord = Float
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type ZCoord = Int
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type YCoord = Float
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data MapType = GrassIslandMap
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| DesertMap
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-- | Ownership information, Parameter to occupied is player number
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data PlayerInfo = NoPlayer
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| Occupied Int
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instance Show PlayerInfo where
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show (NoPlayer) = "not occupied"
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show (Occupied i) = "occupied by player " ++ (show i)
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-- | Path info, is this node part of a path?
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data PathInfo = NoPath
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| Path
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| Border
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deriving (Show, Eq)
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-- | What resources can be harvested here?
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data ResInfo = ResInfo Resource Amount
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data ResInfo = Plain
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| ResInfo Resource Amount
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instance Show ResInfo where
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show (Plain) = "no resources"
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show (ResInfo res amt) = "Resource: " ++ (show res) ++ "," ++ (show amt)
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-- | What commodities are currently stored here?
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data StorInfo = StorInfo Commodity Amount
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type StorInfo = [(Commodity,Amount)]
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-- | What kind of structures may be erected here?
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data BuildInfo = BStruc Structure
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| BNothing
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| BFlag
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| BMine
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| BSmall
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| BMedium
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| BLarge
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instance Show BuildInfo where
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show (BStruc s) = "Structure: " ++ (show s)
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show (BNothing) = "no Structure possible"
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show (BFlag) = "only flags possible"
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show (BMine) = "mines possible"
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show (BSmall) = "small buildings possible"
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show (BMedium) = "medium buildings possible"
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show (BLarge) = "large buildings possible"
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data TileType = Ocean
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| Beach
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| Grass
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@ -40,9 +64,9 @@ data TileType = Ocean
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| Lake
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| Hill -- ^ Accessible
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| Mountain -- ^ Not accessible
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deriving (Eq)
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deriving (Show, Eq)
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-- TODO: Record Syntax
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data Node = Full (XCoord, YCoord) ZCoord TileType BuildInfo PlayerInfo PathInfo ResInfo StorInfo
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| Minimal (XCoord, YCoord) ZCoord -- defaults to empty green grass node on height 0.5
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data Node = Full (XCoord, ZCoord) YCoord TileType BuildInfo PlayerInfo PathInfo ResInfo StorInfo
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| Minimal (XCoord, ZCoord) YCoord -- defaults to empty green grass node on height 0.5
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deriving (Show)
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@ -33,7 +33,7 @@ data Structure = Flag -- Flag
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| DonkeyBreeder
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| Harbor
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| Fortress
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deriving Eq
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deriving (Show, Eq)
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data Amount = Infinite -- Neverending supply
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| Finite Int -- Finite supply
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@ -50,4 +50,13 @@ data Resource = Coal
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| Granite
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| Water
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| Fishes
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deriving Eq
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deriving (Show, Eq)
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instance Show Amount where
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show (Infinite) = "inexhaustable supply"
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show (Finite n) = (show n) ++ " left"
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instance Show Commodity where
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show WoodPlank = "wooden plank"
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show Sword = "sword"
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show Fish = "fish"
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