Replace Alternative with MonadPlus
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@ -1,7 +1,7 @@
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-- | This module provides the functions to parse and execute @GraphQL@ queries.
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module Data.GraphQL where
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import Control.Applicative (Alternative)
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import Control.Monad (MonadPlus)
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import qualified Data.Text as T
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@ -21,7 +21,7 @@ import Data.GraphQL.Error
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-- executed according to the given 'Schema'.
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--
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-- Returns the response as an @Aeson.@'Aeson.Value'.
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graphql :: (Alternative m, Monad m) => Schema m -> T.Text -> m Aeson.Value
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graphql :: MonadPlus m => Schema m -> T.Text -> m Aeson.Value
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graphql = flip graphqlSubs $ const Nothing
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-- | Takes a 'Schema', a variable substitution function and text
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@ -30,7 +30,7 @@ graphql = flip graphqlSubs $ const Nothing
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-- query and the query is then executed according to the given 'Schema'.
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--
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-- Returns the response as an @Aeson.@'Aeson.Value'.
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graphqlSubs :: (Alternative m, Monad m) => Schema m -> Subs -> T.Text -> m Aeson.Value
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graphqlSubs :: MonadPlus m => Schema m -> Subs -> T.Text -> m Aeson.Value
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graphqlSubs schema f =
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either (parseError . errorBundlePretty) (execute schema f)
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. parse document ""
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@ -1,57 +1,57 @@
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE TupleSections #-}
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module Data.GraphQL.Error (
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parseError,
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CollectErrsT,
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addErr,
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addErrMsg,
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runCollectErrs,
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joinErrs,
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errWrap
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module Data.GraphQL.Error
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( parseError
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, CollectErrsT
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, addErr
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, addErrMsg
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, runCollectErrs
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, runAppendErrs
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) where
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import qualified Data.Aeson as Aeson
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import Data.Text (Text, pack)
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import Control.Arrow ((&&&))
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import Control.Monad.Trans.Class (lift)
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import Control.Monad.Trans.State ( StateT
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, modify
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, runStateT
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)
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-- | Wraps a parse error into a list of errors.
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parseError :: Applicative f => String -> f Aeson.Value
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parseError s =
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pure $ Aeson.object [("errors", Aeson.toJSON [makeErrorMsg $ pack s])]
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-- | A wrapper for an 'Applicative' to pass error messages around.
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type CollectErrsT f a = f (a,[Aeson.Value])
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-- | Takes a (wrapped) list (foldable functor) of values and errors,
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-- joins the values into a list and concatenates the errors.
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joinErrs
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:: (Functor m, Functor f, Foldable f)
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=> m (f (a,[Aeson.Value])) -> CollectErrsT m (f a)
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joinErrs = fmap $ fmap fst &&& concatMap snd
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-- | Wraps the given 'Applicative' to handle errors
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errWrap :: Functor f => f a -> f (a, [Aeson.Value])
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errWrap = fmap (, [])
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-- | A wrapper to pass error messages around.
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type CollectErrsT m = StateT [Aeson.Value] m
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-- | Adds an error to the list of errors.
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addErr :: Functor f => Aeson.Value -> CollectErrsT f a -> CollectErrsT f a
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addErr v = (fmap . fmap) (v :)
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addErr :: Monad m => Aeson.Value -> CollectErrsT m ()
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addErr v = modify (v :)
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makeErrorMsg :: Text -> Aeson.Value
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makeErrorMsg s = Aeson.object [("message",Aeson.toJSON s)]
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makeErrorMsg s = Aeson.object [("message", Aeson.toJSON s)]
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-- | Convenience function for just wrapping an error message.
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addErrMsg :: Functor f => Text -> CollectErrsT f a -> CollectErrsT f a
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addErrMsg :: Monad m => Text -> CollectErrsT m ()
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addErrMsg = addErr . makeErrorMsg
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-- | Runs the given query, but collects the errors into an error
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-- list which is then sent back with the data.
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runCollectErrs :: Functor f => CollectErrsT f Aeson.Value -> f Aeson.Value
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runCollectErrs = fmap finalD
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where
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finalD (dat,errs) =
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Aeson.object
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$ if null errs
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then [("data",dat)]
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else [("data",dat),("errors",Aeson.toJSON $ reverse errs)]
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-- | Appends the given list of errors to the current list of errors.
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appendErrs :: Monad m => [Aeson.Value] -> CollectErrsT m ()
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appendErrs errs = modify (errs ++)
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-- | Runs the given query computation, but collects the errors into an error
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-- list, which is then sent back with the data.
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runCollectErrs :: Monad m => CollectErrsT m Aeson.Value -> m Aeson.Value
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runCollectErrs res = do
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(dat, errs) <- runStateT res []
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if null errs
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then return $ Aeson.object [("data", dat)]
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else return $ Aeson.object [("data", dat), ("errors", Aeson.toJSON $ reverse errs)]
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-- | Runs the given computation, collecting the errors and appending them
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-- to the previous list of errors.
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runAppendErrs :: Monad m => CollectErrsT m a -> CollectErrsT m a
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runAppendErrs f = do
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(v, errs) <- lift $ runStateT f []
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appendErrs errs
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return v
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@ -3,7 +3,7 @@
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-- according to a 'Schema'.
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module Data.GraphQL.Execute (execute) where
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import Control.Applicative (Alternative, empty)
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import Control.Monad (MonadPlus(..))
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import Data.GraphQL.Error
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import qualified Data.List.NonEmpty as NE
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import Data.List.NonEmpty (NonEmpty((:|)))
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@ -21,15 +21,17 @@ import qualified Data.GraphQL.Schema as Schema
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-- Returns the result of the query against the 'Schema' wrapped in a /data/ field, or
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-- errors wrapped in an /errors/ field.
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execute
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:: (Alternative f, Monad f)
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=> Schema f -> Schema.Subs -> AST.Document -> f Aeson.Value
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execute schema subs doc = document schema =<< maybe empty pure (Transform.document subs doc)
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:: (MonadPlus m)
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=> Schema m -> Schema.Subs -> AST.Document -> m Aeson.Value
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execute schema subs doc = do
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coreDocument <- maybe mzero pure (Transform.document subs doc)
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document schema coreDocument
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document :: Alternative f => Schema f -> AST.Core.Document -> f Aeson.Value
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document :: MonadPlus m => Schema m -> AST.Core.Document -> m Aeson.Value
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document schema (op :| []) = operation schema op
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document _ _ = error "Multiple operations not supported yet"
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operation :: Alternative f => Schema f -> AST.Core.Operation -> f Aeson.Value
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operation :: MonadPlus m => Schema m -> AST.Core.Operation -> m Aeson.Value
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operation schema (AST.Core.Query flds)
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= runCollectErrs (Schema.resolve (NE.toList schema) (NE.toList flds))
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operation schema (AST.Core.Mutation flds)
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@ -25,13 +25,17 @@ module Data.GraphQL.Schema
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, Value(..)
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) where
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import Control.Applicative (Alternative(empty), (<|>))
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import Data.Bifunctor (first)
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import Control.Applicative (Alternative(..))
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import Control.Monad (MonadPlus)
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import Control.Monad.Trans.Class (lift)
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import Control.Monad.Trans.State ( get
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, put
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)
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import Data.Foldable (fold)
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import Data.GraphQL.Error
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import Data.List.NonEmpty (NonEmpty)
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import Data.Maybe (fromMaybe)
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import Data.Monoid (Alt(Alt,getAlt))
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import Data.Monoid (Alt(..))
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import qualified Data.Aeson as Aeson
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import Data.HashMap.Strict (HashMap)
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import qualified Data.HashMap.Strict as HashMap
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@ -41,13 +45,13 @@ import Data.GraphQL.AST.Core
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-- | A GraphQL schema.
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-- @f@ is usually expected to be an instance of 'Alternative'.
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type Schema f = NonEmpty (Resolver f)
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type Schema m = NonEmpty (Resolver m)
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-- | Resolves a 'Field' into an @Aeson.@'Aeson.Object' with error information
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-- (or 'empty'). @f@ is usually expected to be an instance of 'Alternative'.
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type Resolver f = Field -> CollectErrsT f Aeson.Object
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type Resolver m = Field -> CollectErrsT m Aeson.Object
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type Resolvers f = [Resolver f]
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type Resolvers m = [Resolver m]
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type Fields = [Field]
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@ -57,107 +61,108 @@ type Arguments = [Argument]
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type Subs = Name -> Maybe Value
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-- | Create a new 'Resolver' with the given 'Name' from the given 'Resolver's.
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object :: Alternative f => Name -> Resolvers f -> Resolver f
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object :: MonadPlus m => Name -> Resolvers m -> Resolver m
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object name resolvers = objectA name $ \case
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[] -> resolvers
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_ -> empty
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-- | Like 'object' but also taking 'Argument's.
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objectA
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:: Alternative f
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=> Name -> (Arguments -> Resolvers f) -> Resolver f
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:: MonadPlus m
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=> Name -> (Arguments -> Resolvers m) -> Resolver m
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objectA name f fld@(Field _ _ args flds) = withField name (resolve (f args) flds) fld
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-- | Create a named 'Resolver' from a list of 'Resolver's.
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object' :: (Alternative f, Monad f) => T.Text -> f [Resolver f] -> Resolver f
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object' :: MonadPlus m => Name -> m (Resolvers m) -> Resolver m
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object' name resolvs = objectA' name $ \case
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[] -> resolvs
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_ -> empty
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-- | Like 'object'' but also taking 'Argument's.
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objectA'
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:: (Alternative f, Monad f)
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=> T.Text -> ([Argument] -> f [Resolver f]) -> Resolver f
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:: MonadPlus m
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=> Name -> (Arguments -> m (Resolvers m)) -> Resolver m
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objectA' name f fld@(Field _ _ args flds) = do
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resolvs <- f args
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resolvs <- lift $ f args
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withField name (resolve resolvs flds) fld
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-- | A scalar represents a primitive value, like a string or an integer.
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scalar :: (Alternative f, Aeson.ToJSON a) => Name -> a -> Resolver f
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scalar :: (MonadPlus m, Aeson.ToJSON a) => Name -> a -> Resolver m
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scalar name s = scalarA name $ \case
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[] -> pure s
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_ -> empty
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-- | Like 'scalar' but also taking 'Argument's.
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scalarA
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:: (Alternative f, Aeson.ToJSON a)
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=> Name -> (Arguments -> f a) -> Resolver f
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scalarA name f fld@(Field _ _ args []) = withField name (errWrap $ f args) fld
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:: (MonadPlus m, Aeson.ToJSON a)
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=> Name -> (Arguments -> m a) -> Resolver m
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scalarA name f fld@(Field _ _ args []) = withField name (lift $ f args) fld
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scalarA _ _ _ = empty
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array :: Alternative f => Name -> [Resolvers f] -> Resolver f
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array :: MonadPlus m => Name -> [Resolvers m] -> Resolver m
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array name resolvers = arrayA name $ \case
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[] -> resolvers
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_ -> empty
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-- | Like 'array' but also taking 'Argument's.
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arrayA
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:: Alternative f
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=> T.Text -> (Arguments -> [Resolvers f]) -> Resolver f
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:: MonadPlus m
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=> Name -> (Arguments -> [Resolvers m]) -> Resolver m
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arrayA name f fld@(Field _ _ args sels) =
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withField name (joinErrs $ traverse (`resolve` sels) $ f args) fld
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withField name (traverse (`resolve` sels) $ f args) fld
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-- | Like 'object'' but taking lists of 'Resolver's instead of a single list.
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array' :: (Alternative f, Monad f) => T.Text -> f [[Resolver f]] -> Resolver f
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array' :: MonadPlus m => Name -> m [Resolvers m] -> Resolver m
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array' name resolvs = arrayA' name $ \case
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[] -> resolvs
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_ -> empty
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-- | Like 'array'' but also taking 'Argument's.
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arrayA'
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:: (Alternative f, Monad f)
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=> T.Text -> ([Argument] -> f [[Resolver f]]) -> Resolver f
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:: MonadPlus m
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=> Name -> (Arguments -> m [Resolvers m]) -> Resolver m
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arrayA' name f fld@(Field _ _ args sels) = do
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resolvs <- f args
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withField name (joinErrs $ traverse (`resolve` sels) resolvs) fld
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resolvs <- lift $ f args
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withField name (traverse (`resolve` sels) resolvs) fld
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-- | Represents one of a finite set of possible values.
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-- Used in place of a 'scalar' when the possible responses are easily enumerable.
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enum :: Alternative f => T.Text -> f [T.Text] -> Resolver f
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enum :: MonadPlus m => Name -> m [T.Text] -> Resolver m
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enum name enums = enumA name $ \case
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[] -> enums
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_ -> empty
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-- | Like 'enum' but also taking 'Argument's.
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enumA :: Alternative f => T.Text -> ([Argument] -> f [T.Text]) -> Resolver f
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enumA name f fld@(Field _ _ args []) = withField name (errWrap $ f args) fld
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enumA :: MonadPlus m => Name -> (Arguments -> m [T.Text]) -> Resolver m
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enumA name f fld@(Field _ _ args []) = withField name (lift $ f args) fld
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enumA _ _ _ = empty
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-- | Helper function to facilitate 'Argument' handling.
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withField
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:: (Alternative f, Aeson.ToJSON a)
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=> Name -> CollectErrsT f a -> Field -> CollectErrsT f (HashMap T.Text Aeson.Value)
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withField :: (MonadPlus m, Aeson.ToJSON a)
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=> Name -> CollectErrsT m a -> Field -> CollectErrsT m (HashMap T.Text Aeson.Value)
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withField name v (Field alias name' _ _)
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| name == name' = fmap getValue v
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| name == name' = do
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collection <- HashMap.singleton aliasOrName . Aeson.toJSON <$> runAppendErrs v
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errors <- get
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if null errors
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then return collection
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-- TODO: Report error when Non-Nullable type for field argument.
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else put [] >> return (HashMap.singleton aliasOrName Aeson.Null)
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| otherwise = empty
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where
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aliasOrName = fromMaybe name alias
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getValue (x, []) = (HashMap.singleton aliasOrName $ Aeson.toJSON x, [])
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-- TODO: Report error when Non-Nullable type for field argument.
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getValue (_, _) = (HashMap.singleton aliasOrName Aeson.Null, [])
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-- | Takes a list of 'Resolver's and a list of 'Field's and applies each
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-- 'Resolver' to each 'Field'. Resolves into a value containing the
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-- resolved 'Field', or a null value and error information.
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resolve :: Alternative f => Resolvers f -> Fields -> CollectErrsT f Aeson.Value
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resolve :: MonadPlus m => Resolvers m -> Fields -> CollectErrsT m Aeson.Value
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resolve resolvers =
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fmap (first Aeson.toJSON . fold)
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fmap (Aeson.toJSON . fold)
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. traverse (\fld -> getAlt (foldMap (Alt . ($ fld)) resolvers) <|> errmsg fld)
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where
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errmsg (Field alias name _ _) = addErrMsg msg $ (errWrap . pure) val
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errmsg (Field alias name _ _) = do
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addErrMsg $ T.unwords ["field", name, "not resolved."]
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return $ HashMap.singleton aliasOrName Aeson.Null
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where
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val = HashMap.singleton aliasOrName Aeson.Null
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msg = T.unwords ["field", name, "not resolved."]
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aliasOrName = fromMaybe name alias
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|
@ -1,10 +1,10 @@
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cabal-version: 1.12
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-- This file has been generated from package.yaml by hpack version 0.31.1.
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-- This file has been generated from package.yaml by hpack version 0.31.2.
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--
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-- see: https://github.com/sol/hpack
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--
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-- hash: 06d3fa29e37864ef5e4254215c50d95942b4a33b0ea4f4d4c930a071fdcd2872
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-- hash: aba9e6c1a0e250a7d0dbabbbdae5dceb119343f6acf06744da66677a487fcca6
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name: graphql
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version: 0.3
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@ -57,6 +57,7 @@ library
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, megaparsec
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, scientific
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, text
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, transformers
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, unordered-containers
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default-language: Haskell2010
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@ -81,5 +82,6 @@ test-suite tasty
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, tasty
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, tasty-hunit
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, text
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, transformers
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, unordered-containers
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default-language: Haskell2010
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|
@ -30,6 +30,7 @@ dependencies:
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- base >= 4.7 && < 5
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- megaparsec
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- text
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- transformers
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- unordered-containers
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library:
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|
@ -2,10 +2,15 @@
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{-# LANGUAGE OverloadedStrings #-}
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module Test.StarWars.Schema where
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import Control.Applicative (Alternative, empty)
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import Control.Applicative (Alternative(..))
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import Control.Monad (MonadPlus)
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import Data.List.NonEmpty (NonEmpty((:|)))
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import Data.GraphQL.Schema (Schema, Resolver, Argument(..), Value(..))
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import Data.GraphQL.Schema ( Schema
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, Resolver
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, Argument(..)
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, Value(..)
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)
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import qualified Data.GraphQL.Schema as Schema
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import Test.StarWars.Data
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@ -13,10 +18,10 @@ import Test.StarWars.Data
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-- * Schema
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-- See https://github.com/graphql/graphql-js/blob/master/src/__tests__/starWarsSchema.js
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schema :: Alternative f => Schema f
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schema :: MonadPlus m => Schema m
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schema = hero :| [human, droid]
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hero :: Alternative f => Resolver f
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hero :: MonadPlus m => Resolver m
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hero = Schema.objectA "hero" $ \case
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[] -> character artoo
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[Argument "episode" (ValueInt n)] -> character . getHero $ fromIntegral n
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@ -25,17 +30,17 @@ hero = Schema.objectA "hero" $ \case
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[Argument "episode" (ValueEnum "JEDI" )] -> character $ getHero 6
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_ -> empty
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human :: Alternative f => Resolver f
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human :: MonadPlus m => Resolver m
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human = Schema.objectA "human" $ \case
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[Argument "id" (ValueString i)] -> character =<< getHuman i
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_ -> empty
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droid :: Alternative f => Resolver f
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droid :: MonadPlus m => Resolver m
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droid = Schema.objectA "droid" $ \case
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[Argument "id" (ValueString i)] -> character =<< getDroid i
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_ -> empty
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character :: Alternative f => Character -> [Resolver f]
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character :: MonadPlus m => Character -> [Resolver m]
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character char =
|
||||
[ Schema.scalar "id" $ id_ char
|
||||
, Schema.scalar "name" $ name char
|
||||
|
Loading…
Reference in New Issue
Block a user