DeepDarkFantasy-0.2017.4.19: A DSL for creating neural network.

Safe HaskellSafe
LanguageHaskell2010

DDF.Show

Documentation

data AST Source #

Constructors

Leaf String 
App String AST [AST] 
Lam String [String] AST 

Instances

Show AST Source # 

Methods

showsPrec :: Int -> AST -> ShowS #

show :: AST -> String #

showList :: [AST] -> ShowS #

newtype Show h a Source #

Constructors

Show 

Fields

Instances

DBI Show Source # 

Methods

z :: Show (a, h) a Source #

s :: Show h b -> Show (a, h) b Source #

abs :: Show (a, h) b -> Show h (a -> b) Source #

app :: Show h (a -> b) -> Show h a -> Show h b Source #

hoas :: (Show (a, h) a -> Show (a, h) b) -> Show h (a -> b) Source #

liftEnv :: Show () x -> Show h x Source #

com :: Show h ((b -> c) -> (a -> b) -> a -> c) Source #

flip :: Show h ((a -> b -> c) -> b -> a -> c) Source #

id :: Show h (a -> a) Source #

const :: Show h (a -> b -> a) Source #

scomb :: Show h ((a -> b -> c) -> (a -> b) -> a -> c) Source #

dup :: Show h ((a -> a -> b) -> a -> b) Source #

let_ :: Show h (a -> (a -> b) -> b) Source #

Double Show Source # 
Float Show Source # 
Option Show Source # 

Methods

nothing :: Show h (Maybe a) Source #

just :: Show h (a -> Maybe a) Source #

optionMatch :: Show h (b -> (a -> b) -> Maybe a -> b) Source #

Prod Show Source # 

Methods

mkProd :: Show h (a -> b -> (a, b)) Source #

zro :: Show h ((a, b) -> a) Source #

fst :: Show h ((a, b) -> b) Source #

swap :: Show h ((x, y) -> (y, x)) Source #

curry :: Show h (((a, b) -> c) -> a -> b -> c) Source #

uncurry :: Show h ((a -> b -> c) -> (a, b) -> c) Source #

Dual Show Source # 

Methods

dual :: Show h ((x, y) -> Dual x y) Source #

runDual :: Show h (Dual x y -> (x, y)) Source #

mkDual :: Show h (x -> y -> Dual x y) Source #

dualOrig :: Show h (Dual x y -> x) Source #

dualDiff :: Show h (Dual x y -> y) Source #

Map Show Source # 

Methods

empty :: Show h (Map k a) Source #

singleton :: Show h (k -> a -> Map k a) Source #

lookup :: Ord k => Show h (k -> Map k a -> Maybe a) Source #

alter :: Ord k => Show h ((Maybe a -> Maybe a) -> k -> Map k a -> Map k a) Source #

mapMap :: Show h ((a -> b) -> Map k a -> Map k b) Source #

Unit Show Source # 

Methods

unit :: Show h () Source #

Char Show Source # 

Methods

char :: Char -> Show h Char Source #

Bool Show Source # 

Methods

bool :: Bool -> Show h Bool Source #

ite :: Show h (a -> a -> Bool -> a) Source #

Bimap Show Source # 
Lang Show Source # 

Methods

fix :: Show h ((a -> a) -> a) Source #

left :: Show h (a -> Either a b) Source #

right :: Show h (b -> Either a b) Source #

sumMatch :: Show h ((a -> c) -> (b -> c) -> Either a b -> c) Source #

exfalso :: Show h (Void -> a) Source #

ioRet :: Show h (a -> IO a) Source #

ioBind :: Show h (IO a -> (a -> IO b) -> IO b) Source #

ioMap :: Show h ((a -> b) -> IO a -> IO b) Source #

nil :: Show h [a] Source #

cons :: Show h (a -> [a] -> [a]) Source #

listMatch :: Show h (b -> (a -> [a] -> b) -> [a] -> b) Source #

listAppend :: Show h ([a] -> [a] -> [a]) Source #

writer :: Show h ((a, w) -> Writer w a) Source #

runWriter :: Show h (Writer w a -> (a, w)) Source #

float2Double :: Show h (Float -> Double) Source #

double2Float :: Show h (Double -> Float) Source #

undefined :: Show h a Source #

state :: Show h ((x -> (y, x)) -> State x y) Source #

runState :: Show h (State x y -> x -> (y, x)) Source #

putStrLn :: Show h (String -> IO ()) Source #

DLang Show Source # 

name :: String -> Show h a Source #