keid-geometry-0.1.1.2: Geometry primitives for Keid engine.
Safe HaskellSafe-Inferred
LanguageHaskell2010

Geometry.Face

Documentation

data Face a Source #

Constructors

Face 

Fields

Instances

Instances details
Foldable Face Source # 
Instance details

Defined in Geometry.Face

Methods

fold :: Monoid m => Face m -> m #

foldMap :: Monoid m => (a -> m) -> Face a -> m #

foldMap' :: Monoid m => (a -> m) -> Face a -> m #

foldr :: (a -> b -> b) -> b -> Face a -> b #

foldr' :: (a -> b -> b) -> b -> Face a -> b #

foldl :: (b -> a -> b) -> b -> Face a -> b #

foldl' :: (b -> a -> b) -> b -> Face a -> b #

foldr1 :: (a -> a -> a) -> Face a -> a #

foldl1 :: (a -> a -> a) -> Face a -> a #

toList :: Face a -> [a] #

null :: Face a -> Bool #

length :: Face a -> Int #

elem :: Eq a => a -> Face a -> Bool #

maximum :: Ord a => Face a -> a #

minimum :: Ord a => Face a -> a #

sum :: Num a => Face a -> a #

product :: Num a => Face a -> a #

Traversable Face Source # 
Instance details

Defined in Geometry.Face

Methods

traverse :: Applicative f => (a -> f b) -> Face a -> f (Face b) #

sequenceA :: Applicative f => Face (f a) -> f (Face a) #

mapM :: Monad m => (a -> m b) -> Face a -> m (Face b) #

sequence :: Monad m => Face (m a) -> m (Face a) #

Functor Face Source # 
Instance details

Defined in Geometry.Face

Methods

fmap :: (a -> b) -> Face a -> Face b #

(<$) :: a -> Face b -> Face a #

Show a => Show (Face a) Source # 
Instance details

Defined in Geometry.Face

Methods

showsPrec :: Int -> Face a -> ShowS #

show :: Face a -> String #

showList :: [Face a] -> ShowS #

Eq a => Eq (Face a) Source # 
Instance details

Defined in Geometry.Face

Methods

(==) :: Face a -> Face a -> Bool #

(/=) :: Face a -> Face a -> Bool #

Ord a => Ord (Face a) Source # 
Instance details

Defined in Geometry.Face

Methods

compare :: Face a -> Face a -> Ordering #

(<) :: Face a -> Face a -> Bool #

(<=) :: Face a -> Face a -> Bool #

(>) :: Face a -> Face a -> Bool #

(>=) :: Face a -> Face a -> Bool #

max :: Face a -> Face a -> Face a #

min :: Face a -> Face a -> Face a #

facesR :: [a] -> Maybe [Face a] Source #