forked from OSS/graphql
Merge selection sets
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@ -18,6 +18,7 @@ and this project adheres to
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- Argument value coercion.
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- Variable value coercion.
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- The executor should skip the fields missing in the object type and not fail.
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- Merging subselections.
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### Changed
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- `Schema.Resolver` was moved to `Type.Out`, it is a field and resolver function
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@ -10,6 +10,7 @@ import Control.Monad.Trans.Class (lift)
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import Control.Monad.Trans.Except (runExceptT)
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import Control.Monad.Trans.Reader (runReaderT)
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import Control.Monad.Trans.State (gets)
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import Data.List.NonEmpty (NonEmpty(..))
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import Data.Map.Strict (Map)
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import Data.HashMap.Strict (HashMap)
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import qualified Data.HashMap.Strict as HashMap
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@ -17,7 +18,6 @@ import qualified Data.Map.Strict as Map
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import Data.Maybe (fromMaybe)
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import Data.Sequence (Seq(..))
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import Data.Text (Text)
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import qualified Data.Sequence as Seq
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import Language.GraphQL.AST (Name)
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import Language.GraphQL.AST.Core
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import Language.GraphQL.Error
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@ -42,12 +42,12 @@ resolveFieldValue result args =
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collectFields :: Monad m
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=> Out.ObjectType m
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-> Seq (Selection m)
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-> Map Name (Seq (Field m))
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-> Map Name (NonEmpty (Field m))
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collectFields objectType = foldl forEach Map.empty
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where
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forEach groupedFields (SelectionField field) =
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let responseKey = aliasOrName field
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in Map.insertWith (<>) responseKey (Seq.singleton field) groupedFields
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in Map.insertWith (<>) responseKey (field :| []) groupedFields
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forEach groupedFields (SelectionFragment selectionFragment)
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| Fragment fragmentType fragmentSelectionSet <- selectionFragment
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, doesFragmentTypeApply fragmentType objectType =
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@ -98,24 +98,24 @@ instanceOf objectType (AbstractUnionType unionType) =
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go unionMemberType acc = acc || objectType == unionMemberType
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executeField :: Monad m
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=> Definition.Value
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-> Field m
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-> Out.Resolver m
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=> Out.Resolver m
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-> Definition.Value
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-> NonEmpty (Field m)
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-> CollectErrsT m Aeson.Value
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executeField prev field (Out.Resolver fieldDefinition resolver) = do
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executeField (Out.Resolver fieldDefinition resolver) prev fields = do
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let Out.Field _ fieldType argumentDefinitions = fieldDefinition
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let Field _ _ arguments' _ = field
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let (Field _ _ arguments' _ :| []) = fields
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case coerceArgumentValues argumentDefinitions arguments' of
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Nothing -> errmsg "Argument coercing failed."
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Just argumentValues -> do
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answer <- lift $ resolveFieldValue prev argumentValues resolver
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case answer of
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Right result -> completeValue fieldType field result
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Right result -> completeValue fieldType fields result
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Left errorMessage -> errmsg errorMessage
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completeValue :: Monad m
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=> Out.Type m
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-> Field m
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-> NonEmpty (Field m)
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-> Definition.Value
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-> CollectErrsT m Aeson.Value
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completeValue _ _ Definition.Null = pure Aeson.Null
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@ -124,24 +124,32 @@ completeValue _ _ (Definition.Boolean boolean') = pure $ Aeson.Bool boolean'
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completeValue _ _ (Definition.Float float') = pure $ Aeson.toJSON float'
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completeValue _ _ (Definition.Enum enum) = pure $ Aeson.String enum
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completeValue _ _ (Definition.String string') = pure $ Aeson.String string'
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completeValue (Out.ObjectBaseType objectType) (Field _ _ _ seqSelection) result =
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executeSelectionSet result objectType seqSelection
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completeValue (Out.ListBaseType listType) selectionField (Definition.List list) =
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Aeson.toJSON <$> traverse (completeValue listType selectionField) list
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completeValue (Out.InterfaceBaseType interfaceType) (Field _ _ _ seqSelection) result
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completeValue (Out.ListBaseType listType) fields (Definition.List list) =
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Aeson.toJSON <$> traverse (completeValue listType fields) list
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completeValue (Out.ObjectBaseType objectType) fields result =
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executeSelectionSet result objectType $ mergeSelectionSets fields
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completeValue (Out.InterfaceBaseType interfaceType) fields result
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| Definition.Object objectMap <- result = do
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abstractType <- resolveAbstractType (AbstractInterfaceType interfaceType) objectMap
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case abstractType of
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Just objectType -> executeSelectionSet result objectType seqSelection
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Just objectType -> executeSelectionSet result objectType
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$ mergeSelectionSets fields
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Nothing -> errmsg "Value completion failed."
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completeValue (Out.UnionBaseType unionType) (Field _ _ _ seqSelection) result
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completeValue (Out.UnionBaseType unionType) fields result
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| Definition.Object objectMap <- result = do
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abstractType <- resolveAbstractType (AbstractUnionType unionType) objectMap
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case abstractType of
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Just objectType -> executeSelectionSet result objectType seqSelection
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Just objectType -> executeSelectionSet result objectType
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$ mergeSelectionSets fields
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Nothing -> errmsg "Value completion failed."
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completeValue _ _ _ = errmsg "Value completion failed."
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mergeSelectionSets :: Monad m => NonEmpty (Field m) -> Seq (Selection m)
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mergeSelectionSets fields = foldr forEach mempty fields
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where
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forEach (Field _ _ _ fieldSelectionSet) selectionSet =
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selectionSet <> fieldSelectionSet
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errmsg :: Monad m => Text -> CollectErrsT m Aeson.Value
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errmsg errorMessage = addErrMsg errorMessage >> pure Aeson.Null
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@ -154,17 +162,16 @@ executeSelectionSet :: Monad m
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-> Seq (Selection m)
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-> CollectErrsT m Aeson.Value
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executeSelectionSet result objectType@(Out.ObjectType _ _ _ resolvers) selectionSet = do
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resolvedValues <- Map.traverseMaybeWithKey forEach
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$ collectFields objectType selectionSet
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let fields = collectFields objectType selectionSet
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resolvedValues <- Map.traverseMaybeWithKey forEach fields
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pure $ Aeson.toJSON resolvedValues
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where
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forEach _responseKey (field :<| _) =
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forEach _ fields@(field :| _) =
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let Field _ name _ _ = field
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in traverse (tryResolver field) $ lookupResolver name
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forEach _ _ = pure Nothing
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in traverse (tryResolver fields) $ lookupResolver name
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lookupResolver = flip HashMap.lookup resolvers
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tryResolver typeField field =
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executeField result typeField field >>= lift . pure
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tryResolver fields resolver =
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executeField resolver result fields >>= lift . pure
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coerceArgumentValues
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:: HashMap Name In.Argument
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@ -22,21 +22,54 @@ schema = Schema {query = queryType, mutation = Nothing}
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queryType :: Out.ObjectType Identity
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queryType = Out.ObjectType "Query" Nothing []
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$ HashMap.singleton "count"
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$ Out.Resolver countField
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$ HashMap.singleton "philosopher"
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$ Out.Resolver philosopherField
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$ pure
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$ Int 8
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$ Object mempty
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where
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countField = Out.Field Nothing (Out.NonNullScalarType int) HashMap.empty
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philosopherField =
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Out.Field Nothing (Out.NonNullObjectType philosopherType) HashMap.empty
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philosopherType :: Out.ObjectType Identity
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philosopherType = Out.ObjectType "Philosopher" Nothing []
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$ HashMap.fromList resolvers
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where
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resolvers =
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[ ("firstName", firstNameResolver)
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, ("lastName", lastNameResolver)
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]
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firstNameResolver = Out.Resolver firstNameField $ pure $ String "Friedrich"
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lastNameResolver = Out.Resolver lastNameField $ pure $ String "Nietzsche"
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firstNameField = Out.Field Nothing (Out.NonNullScalarType string) HashMap.empty
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lastNameField = Out.Field Nothing (Out.NonNullScalarType string) HashMap.empty
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spec :: Spec
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spec =
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describe "execute" $
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describe "execute" $ do
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it "skips unknown fields" $
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let expected = Aeson.object
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["data" .= Aeson.object ["count" .= (8 :: Int)]]
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[ "data" .= Aeson.object
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[ "philosopher" .= Aeson.object
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[ "firstName" .= ("Friedrich" :: String)
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]
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]
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]
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execute' = execute schema (mempty :: HashMap Name Aeson.Value)
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actual = runIdentity
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$ either parseError execute'
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$ parse document "" "{ count number }"
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$ parse document "" "{ philosopher { firstName surname } }"
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in actual `shouldBe` expected
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it "merges selections" $
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let expected = Aeson.object
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[ "data" .= Aeson.object
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[ "philosopher" .= Aeson.object
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[ "firstName" .= ("Friedrich" :: String)
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, "lastName" .= ("Nietzsche" :: String)
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]
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]
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]
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execute' = execute schema (mempty :: HashMap Name Aeson.Value)
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actual = runIdentity
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$ either parseError execute'
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$ parse document "" "{ philosopher { firstName } philosopher { lastName } }"
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in actual `shouldBe` expected
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