Extend execute
for deeper queries
The second graphql-js end-to-end test was ported and passed successfully.
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@ -1,34 +1,41 @@
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{-# LANGUAGE CPP #-}
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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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#if !MIN_VERSION_base(4,8,0)
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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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import Control.Applicative (Alternative, empty)
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import Data.Foldable (fold)
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import qualified Data.Aeson as Aeson
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import qualified Data.HashMap.Strict as HashMap
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import Data.GraphQL.AST
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import Data.GraphQL.Schema
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type Response = Aeson.Value
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execute :: (Alternative f, Monad f) => Schema f -> Document -> f Aeson.Value
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execute (Schema resolv) doc = selectionSet resolv =<< query doc
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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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where
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root :: Applicative f => Document -> f Selection
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root (Document [DefinitionOperation (Query (Node _ _ _ [sel]))]) = pure sel
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root _ = error "root: Not implemented yet"
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query :: Applicative f => Document -> f SelectionSet
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query (Document [DefinitionOperation (Query (Node _ _ _ sels))]) = pure sels
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query _ = error "query: Not implemented yet"
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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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resolv (InputField n) >>= \case
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(OutputScalar s) ->
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if null sfs
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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)]) <$> go resolv' (head sfs)
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_ -> error "go case resolv: Not implemented yet"
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go _ _ = error "go: Not implemented yet"
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selectionSet :: (Alternative f, Monad f) => Resolver f -> SelectionSet -> f Aeson.Value
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selectionSet resolv sels = Aeson.Object . fold <$> traverse (selection resolv) sels
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selection :: (Alternative f, Monad f) => Resolver f -> Selection -> f Aeson.Object
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selection resolv (SelectionField (Field _ n _ _ sfs)) =
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fmap (HashMap.singleton n) $ output sfs =<< resolv (InputField n)
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selection _ _ = error "selection: Not implemented yet"
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output :: (Alternative f, Monad f) => SelectionSet -> Output f -> f Aeson.Value
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output sels (OutputResolver resolv) = selectionSet resolv sels
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output sels (OutputList os) = fmap array . traverse (output sels) =<< os
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output sels (OutputScalar s)
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| null sels = Aeson.toJSON <$> s
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| otherwise = empty
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array :: [Aeson.Value] -> Aeson.Value
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array = Aeson.toJSON
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@ -31,7 +31,8 @@ library
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build-depends: base >= 4.7 && < 5,
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text >= 0.11.3.1,
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aeson >= 0.7.0.3,
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attoparsec >= 0.10.4.0
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attoparsec >= 0.10.4.0,
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unordered-containers >= 0.2.5.0
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test-suite tasty
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default-language: Haskell2010
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@ -45,6 +46,7 @@ test-suite tasty
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aeson >= 0.7.0.3,
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text >= 0.11.3.1,
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attoparsec >= 0.10.4.0,
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raw-strings-qq >= 1.1,
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tasty >= 0.10,
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tasty-hunit >= 0.9,
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graphql
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@ -1,10 +1,11 @@
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{-# LANGUAGE CPP #-}
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{-# LANGUAGE OverloadedLists #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE QuasiQuotes #-}
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module Test.StarWars where
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#if !MIN_VERSION_base(4,8,0)
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import Control.Applicative (Applicative, (<$>), pure)
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import Data.Monoid (mempty)
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import Data.Traversable (traverse)
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#endif
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import Control.Applicative (Alternative, (<|>), empty, liftA2)
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@ -12,6 +13,7 @@ import Data.Maybe (catMaybes)
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import Data.Aeson (object, (.=))
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import Data.Text (Text)
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import Text.RawString.QQ (r)
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import Test.Tasty (TestTree, testGroup)
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import Test.Tasty.HUnit (testCase, (@?=))
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@ -24,9 +26,39 @@ import Data.GraphQL.Schema
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test :: TestTree
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test = testGroup "Basic Queries"
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[testCase "R2-D2"
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$ graphql schema "query HeroNameQuery{hero{name}}"
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@?= Just (object ["hero" .= object ["name" .= ("R2-D2" :: Text)]])
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[ testCase "R2-D2 hero" $ (@?=) (graphql schema [r|
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query HeroNameQuery {
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hero {
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id
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}
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}|]) . Just
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$ object [
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"hero" .= object [
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"id" .= ("2001" :: Text)
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]
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]
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, testCase "R2-D2 ID and friends" $ (@?=) (graphql schema [r|
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query HeroNameAndFriendsQuery {
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hero {
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id
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name
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friends {
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name
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}
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}
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}|]) . Just
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$ object [
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"hero" .= object [
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"id" .= ("2001" :: Text)
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, "name" .= ("R2-D2" :: Text)
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, "friends" .= [
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object ["name" .= ("Luke Skywalker" :: Text)]
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, object ["name" .= ("Han Solo" :: Text)]
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, object ["name" .= ("Leia Organa" :: Text)]
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]
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]
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]
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]
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-- * Schema
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@ -65,7 +97,6 @@ characterOutput "id" char =
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characterOutput "name" char =
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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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@ -96,6 +127,51 @@ luke = Character
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, homePlanet = "Tatoonie"
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}
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vader :: Character
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vader = Character
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{ id_ = "1001"
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, name = "Darth Vader"
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, friends = ["1004"]
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, appearsIn = [4,5,6]
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, homePlanet = "Tatooine"
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}
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han :: Character
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han = Character
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{ id_ = "1002"
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, name = "Han Solo"
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, friends = ["1000","1003","2001" ]
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, appearsIn = [4,5,6]
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, homePlanet = mempty
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}
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leia :: Character
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leia = Character
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{ id_ = "1003"
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, name = "Leia Organa"
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, friends = ["1000","1002","2000","2001"]
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, appearsIn = [4,5,6]
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, homePlanet = "Alderaan"
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}
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tarkin :: Character
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tarkin = Character
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{ id_ = "1004"
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, name = "Wilhuff Tarkin"
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, friends = ["1001"]
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, appearsIn = [4]
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, homePlanet = mempty
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}
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threepio :: Character
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threepio = Character
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{ id_ = "2000"
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, name = "C-3PO"
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, friends = ["1000","1002","1003","2001" ]
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, appearsIn = [ 4, 5, 6 ]
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, homePlanet = "Protocol"
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}
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artoo :: Character
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artoo = Character
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{ id_ = "2001"
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@ -116,14 +192,14 @@ 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 "1002" = "han"
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-- getHuman "1003" = "leia"
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-- getHuman "1004" = "tarkin"
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getHuman "1001" = pure vader
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getHuman "1002" = pure han
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getHuman "1003" = pure leia
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getHuman "1004" = pure tarkin
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getHuman _ = empty
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getDroid :: Alternative f => ID -> f Character
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-- getDroid "2000" = "threepio"
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getDroid "2000" = pure threepio
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getDroid "2001" = pure artoo
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getDroid _ = empty
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