Generalize Maybe
type constructor to any Monad
This allows schema definitions with side-effects for any type with a Monadic/Alternative implementation like IO for example.
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@ -1,10 +1,12 @@
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{-# LANGUAGE CPP #-}
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{-# LANGUAGE CPP #-}
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{-# LANGUAGE OverloadedLists #-}
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{-# LANGUAGE OverloadedLists #-}
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{-# LANGUAGE LambdaCase #-}
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module Data.GraphQL.Execute where
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module Data.GraphQL.Execute where
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#if !MIN_VERSION_base(4,8,0)
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#if !MIN_VERSION_base(4,8,0)
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import Control.Applicative ((<$>))
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import Control.Applicative (Applicative, (<$>), pure)
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#endif
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#endif
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import Control.Applicative (Alternative, empty)
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import qualified Data.Aeson as Aeson
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import qualified Data.Aeson as Aeson
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@ -13,20 +15,20 @@ import Data.GraphQL.Schema
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type Response = Aeson.Value
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type Response = Aeson.Value
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execute :: Schema -> Document -> Maybe Response
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execute :: (Alternative f, Monad f) => Schema f -> Document -> f Response
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execute (Schema resolv0) doc = go resolv0 =<< root doc
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execute (Schema resolv0) doc = go resolv0 =<< root doc
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where
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where
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root :: Applicative f => Document -> f Selection
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root :: Document -> Maybe Selection
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root (Document [DefinitionOperation (Query (Node _ _ _ [sel]))]) = pure sel
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root (Document [DefinitionOperation (Query (Node _ _ _ [sel]))]) = Just sel
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root _ = error "root: Not implemented yet"
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root _ = error "root: Not implemented yet"
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go :: Resolver -> Selection -> Maybe Response
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go :: (Alternative f, Monad f) => Resolver f -> Selection -> f Response
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go resolv (SelectionField (Field _ n _ _ sfs)) =
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go resolv (SelectionField (Field _ n _ _ sfs)) =
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case resolv (InputField n) of
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resolv (InputField n) >>= \case
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(OutputScalar s) -> if null sfs
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(OutputScalar s) ->
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then Just $ Aeson.Object [(n, Aeson.toJSON s)]
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if null sfs
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else Nothing
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then (\s' -> Aeson.Object [(n, Aeson.toJSON s')]) <$> s
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else empty
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(OutputResolver resolv') -> (\r-> Aeson.Object [(n, r)]) <$> go resolv' (head sfs)
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(OutputResolver resolv') -> (\r-> Aeson.Object [(n, r)]) <$> go resolv' (head sfs)
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_ -> error "go case resolv: Not implemented yet"
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_ -> error "go case resolv: Not implemented yet"
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go _ _ = error "go: Not implemented yet"
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go _ _ = error "go: Not implemented yet"
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@ -1,27 +1,22 @@
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module Data.GraphQL.Schema where
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module Data.GraphQL.Schema where
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import Data.Maybe (catMaybes)
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import Data.Maybe (catMaybes)
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import Text.Show.Functions ()
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import Data.Text (Text)
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import Data.Text (Text)
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import Data.Aeson (ToJSON(toJSON))
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import Data.Aeson (ToJSON(toJSON))
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-- TODO: Support side-effects
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data Schema f = Schema (QueryRoot f) -- (Maybe MutationRoot)
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data Schema = Schema QueryRoot -- (Maybe MutationRoot)
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type QueryRoot f = Resolver f
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type QueryRoot = Resolver
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type Resolver f = Input -> f (Output f)
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type Resolver = Input -> Output
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data Output f = OutputResolver (Resolver f)
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| OutputList (f [Output f])
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data Output = OutputResolver Resolver
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| OutputScalar (f Scalar)
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| OutputList [Output]
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-- | OutputUnion [Output]
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| OutputScalar Scalar
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-- | OutputEnum [Scalar]
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-- | OutputUnion [Output]
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-- | OutputNonNull (Output)
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-- | OutputEnum [Scalar]
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-- | OutputNonNull (Output)
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| OutputError
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deriving (Show)
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data Input = InputScalar Scalar
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data Input = InputScalar Scalar
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| InputField Text
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| InputField Text
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@ -4,14 +4,15 @@
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module Test.StarWars where
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module Test.StarWars where
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#if !MIN_VERSION_base(4,8,0)
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#if !MIN_VERSION_base(4,8,0)
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import Control.Applicative ((<$>))
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import Control.Applicative (Applicative, (<$>), pure)
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import Data.Traversable (traverse)
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#endif
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#endif
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import Control.Applicative ((<|>), liftA2)
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import Control.Applicative (Alternative, (<|>), empty, liftA2)
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import Data.Maybe (catMaybes)
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import Data.Maybe (catMaybes)
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import Data.Text (Text)
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import qualified Data.Aeson as Aeson
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import qualified Data.Aeson as Aeson
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import Data.Attoparsec.Text (parseOnly)
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import Data.Attoparsec.Text (parseOnly)
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import Data.Text (Text)
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import Test.Tasty (TestTree)
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import Test.Tasty (TestTree)
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import Test.Tasty.HUnit
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import Test.Tasty.HUnit
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@ -40,38 +41,45 @@ test = testCase "R2-D2" $ execute schema heroQuery @?= expected
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type ID = Text
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type ID = Text
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schema :: Schema
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schema :: Alternative f => Schema f
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schema = Schema query
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schema = Schema query
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query :: QueryRoot
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query :: Alternative f => QueryRoot f
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query (InputField "hero") = OutputResolver hero
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query (InputField "hero") = pure $ OutputResolver hero
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query (InputField "human") = OutputResolver human
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query (InputField "human") = pure $ OutputResolver human
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query (InputField "droid") = OutputResolver droid
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query (InputField "droid") = pure $ OutputResolver droid
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query _ = OutputError
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query _ = empty
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-- TODO: Extract helper function from next 3 functions.
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hero :: Alternative f => Resolver f
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hero :: Resolver
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hero (InputList (InputScalar (ScalarInt ep) : inputFields)) =
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hero (InputList (InputScalar (ScalarInt ep) : inputFields)) =
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maybe OutputError (\char -> OutputList $ (`characterOutput` char) <$> fields inputFields) $ getHero ep
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withFields inputFields <$> getHero ep
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hero (InputField fld) = characterOutput fld artoo
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hero (InputField fld) = characterOutput fld artoo
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hero _ = OutputError
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hero _ = empty
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human :: Resolver
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human :: Alternative f => Resolver f
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human (InputList (InputScalar (ScalarID i) : inputFields)) =
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human (InputList (InputScalar (ScalarID i) : inputFields)) =
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maybe OutputError (\char -> OutputList $ (`characterOutput` char) <$> fields inputFields) $ getHuman i
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withFields inputFields <$> getHuman i
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human _ = OutputError
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human _ = empty
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droid :: Resolver
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droid :: Alternative f => Resolver f
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droid (InputList (InputScalar (ScalarID i) : inputFields)) =
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droid (InputList (InputScalar (ScalarID i) : inputFields)) =
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maybe OutputError (\char -> OutputList $ (`characterOutput` char) <$> fields inputFields) $ getDroid i
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withFields inputFields <$> getDroid i
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droid _ = OutputError
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droid _ = empty
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characterOutput :: Text -> Character -> Output
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characterOutput :: Alternative f => Text -> Character -> f (Output f)
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characterOutput "id" char = OutputScalar . ScalarString $ id_ char
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characterOutput "id" char =
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characterOutput "name" char = OutputScalar . ScalarString $ name char
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pure $ OutputScalar . pure . ScalarString $ id_ char
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characterOutput "friends" char = OutputList $ OutputResolver . (\c (InputField f) -> characterOutput f c) <$> getFriends char
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characterOutput "name" char =
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characterOutput _ _ = OutputError
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pure $ OutputScalar . pure . ScalarString $ name char
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characterOutput "friends" char =
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-- TODO: Cleanup
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pure . OutputList . pure $ OutputResolver . (\c (InputField f) ->
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characterOutput f c) <$> getFriends char
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characterOutput _ _ = empty
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withFields :: Alternative f => [Input] -> Character -> Output f
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withFields inputFields char =
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OutputList . traverse (`characterOutput` char) $ fields inputFields
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-- * Data
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-- * Data
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-- See https://github.com/graphql/graphql-js/blob/master/src/__tests__/starWarsData.js
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-- See https://github.com/graphql/graphql-js/blob/master/src/__tests__/starWarsData.js
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@ -106,23 +114,25 @@ artoo = Character
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-- ** Helper functions
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-- ** Helper functions
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getHero :: Int -> Maybe Character
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getHero :: Applicative f => Int -> f Character
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getHero 5 = Just luke
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getHero 5 = pure luke
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getHero _ = Just artoo
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getHero _ = pure artoo
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getHuman :: ID -> Maybe Character
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getHeroIO :: Int -> IO Character
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getHuman "1000" = Just luke
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getHeroIO = getHero
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getHuman :: Alternative f => ID -> f Character
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getHuman "1000" = pure luke
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-- getHuman "1001" = "vader"
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-- getHuman "1001" = "vader"
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-- getHuman "1002" = "han"
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-- getHuman "1002" = "han"
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-- getHuman "1003" = "leia"
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-- getHuman "1003" = "leia"
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-- getHuman "1004" = "tarkin"
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-- getHuman "1004" = "tarkin"
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getHuman _ = Nothing
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getHuman _ = empty
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getDroid :: ID -> Maybe Character
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getDroid :: Alternative f => ID -> f Character
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-- getDroid "2000" = "threepio"
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-- getDroid "2000" = "threepio"
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getDroid "2001" = Just artoo
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getDroid "2001" = pure artoo
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getDroid _ = Nothing
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getDroid _ = empty
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getFriends :: Character -> [Character]
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getFriends :: Character -> [Character]
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getFriends char = catMaybes $ liftA2 (<|>) getDroid getHuman <$> friends char
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getFriends char = catMaybes $ liftA2 (<|>) getDroid getHuman <$> friends char
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